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unblocks |
| 33928 |
jsm28 author:jsm28 |
feat(Combinatorics/Tiling/TileSet): indexed families of tiles |
Define the type `TileSet` for indexed families of tiles (in a discrete context), and some associated definitions (including `symmetryGroup`) and API lemmas.
`TileSet` can be used for tilings of the whole space; for tilings of part of the space; for patches of tiles (extracted from a tiling by considering tiles meeting some set of points, or considered on their own without extracting from a tiling); for multiple tilings (covering the space more than once). In particular, the fact that people study multiple tilings provides a clear justification for using indexed families rather than sets of tiles, and basic definitions and API lemmas generally work for all these different uses of `TileSet` (sometimes with weak constraints such as tiles being finite, nonempty and only having finitely many tiles meeting any point of the space).
Definitions for saying e.g. "this `TileSet` is a tiling of the whole space" are to be included in subsequent files in subsequent PRs.
From AperiodicMonotilesLean.
---
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|
t-combinatorics |
460/0 |
Mathlib.lean,Mathlib/Combinatorics/Tiling/TileSet.lean |
2 |
23 |
['Parcly-Taxel', 'b-mehta', 'eric-wieser', 'github-actions', 'jsm28', 'vihdzp'] |
nobody |
125-62109 4 months ago |
250-79217 250 days ago |
250-78991 250 days |
0 |
| 35069 |
A-M-Berns author:A-M-Berns |
feat(Geometry/Polygon): simple polygons and boundary map |
This PR introduces Simple polygons with the predicate `IsSimple`, which captures the idea of a non-self-intersecting boundary, in the file Simple.lean. In the file Boundary.lean, a boundary map from `AddCircle n` is defined. I prove that the range of this map is the boundary and that this map is injective if and only if the polygon is simple. I kept Boundary.lean and Simple.lean separate because future results will include stuff just about the boundary map independent of simplicity (e.g. that it is continuous in the appropriate setting) and stuff just about simple polygons independent of the boundary map (e.g. that for n = 3, IsSimple iff HasNondegenerateVertices.) I used Claude Code to help generate some of the proof material, but I golfed and edited all AI contribution.
- [x] depends on: #34598
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new-contributor
t-euclidean-geometry
LLM-generated
|
360/0 |
Mathlib.lean,Mathlib/Geometry/Polygon/Boundary.lean,Mathlib/Geometry/Polygon/Simple.lean,Mathlib/Logic/Equiv/Fin/Rotate.lean |
4 |
30 |
['A-M-Berns', 'eric-wieser', 'github-actions', 'joneugster', 'jsm28', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'vihdzp', 'wwylele'] |
nobody |
121-62110 3 months ago |
208-1565 208 days ago |
210-35625 210 days |
0 |
| 40274 |
gasparattila author:gasparattila |
chore(Order/Partition/Finpartition): deprecate `ofPairwiseDisjoint` |
This is a duplicate of `Finpartition.ofErase`.
---
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|
t-order |
8/16 |
Mathlib/MeasureTheory/VectorMeasure/Variation/Basic.lean,Mathlib/Order/Partition/Finpartition.lean |
2 |
2 |
['gasparattila', 'github-actions'] |
nobody |
104-38499 3 months ago |
107-76743 107 days ago |
107-76517 107 days |
0 |
| 39427 |
Hagb author:Hagb |
feat(Order/Interval/Finset/Defs): `LocallyFiniteOrder{Bot,Top}` implies `WellFounded{LT,GT}` |
---
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|
t-order |
11/0 |
Mathlib/Order/Interval/Finset/Defs.lean |
1 |
5 |
['Hagb', 'github-actions', 'leanprover-radar', 'mathlib-dependent-issues'] |
nobody |
91-77220 2 months ago |
91-78943 91 days ago |
91-82744 91 days |
0 |
| 40967 |
Formalistic03 author:Formalistic03 |
feat(Combinatorics/SimpleGraph/Paths): some lemmas about inducing walks |
Could also be done via `SimpleGraph.Walk.map_induce`, but I thought that doing it directly is not much worse.
---
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|
new-contributor
t-combinatorics
|
48/0 |
Mathlib/Combinatorics/SimpleGraph/Paths.lean,Mathlib/Combinatorics/SimpleGraph/Walk/Maps.lean,Mathlib/Data/List/Nodup.lean |
3 |
2 |
['github-actions'] |
nobody |
86-47280 2 months ago |
89-83506 89 days ago |
89-83365 89 days |
0 |
| 41217 |
Probablism author:Probablism |
feat(SimpleGraph/Matching): add graph-level IsMatching |
Closes #11911.
This adds a graph-level `SimpleGraph.IsMatching` predicate. It is support-based, so isolated
vertices are allowed: every vertex in the graph support is incident to exactly one edge.
The existing `Subgraph.IsMatching` predicate is unchanged. I added compatibility lemmas relating it
to `M.spanningCoe`, including an iff characterizing the subgraph predicate as graph-level matching
plus `M.support = M.verts`.
Validation:
- `lake env lean Mathlib/Combinatorics/SimpleGraph/Matching.lean`
- `lake build Mathlib.Combinatorics.SimpleGraph.Matching`
- `lake build Mathlib.Combinatorics.SimpleGraph.Hall Mathlib.Combinatorics.SimpleGraph.Tutte Mathlib.Combinatorics.SimpleGraph.UniversalVerts`
- `lake exe lint-style Mathlib/Combinatorics/SimpleGraph/Matching.lean`
- `lake build Mathlib`
- `lake test`
AI assistance: OpenAI Codex assisted with testing and validation.
|
t-combinatorics
new-contributor
|
41/3 |
Mathlib/Combinatorics/SimpleGraph/Matching.lean |
1 |
4 |
['Probablism', 'SnirBroshi', 'github-actions'] |
nobody |
82-64641 2 months ago |
82-65830 82 days ago |
82-65604 82 days |
0 |
| 35669 |
SnirBroshi author:SnirBroshi |
feat(Mathlib/Data/Finset/Mex): `sInf sᶜ ≤ s.encard` |
---
It's in a separate file because I couldn't find a sensible place with the required imports, not because "mex" is particularly interesting.
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|
t-order |
59/0 |
Mathlib.lean,Mathlib/Data/Finset/Mex.lean |
2 |
14 |
['SnirBroshi', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'vihdzp'] |
nobody |
82-10170 2 months ago |
82-10716 82 days ago |
86-12944 86 days |
0 |
| 41327 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph/Subgraph): `induce` lemmas |
`Subgraph.induce` API for sup / inf / iSup / iInf / inter / iUnion / iInter (union already exists)
---
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|
t-combinatorics |
58/0 |
Mathlib/Combinatorics/SimpleGraph/Subgraph.lean |
1 |
1 |
['github-actions'] |
nobody |
80-9314 2 months ago |
80-10678 80 days ago |
80-10452 80 days |
0 |
| 41337 |
gotrevor author:gotrevor |
doc(1000-yaml): add Goodstein's theorem and the Kirby–Paris theorem |
Claims two listed-but-unclaimed entries in the 1000+ theorems scoreboard by adding external-formalization pointers (no mathlib declaration; same pattern as Löb's theorem [`Q204884`](https://github.com/leanprover-community/mathlib4/blob/master/docs/1000.yaml#L201), the flypitch continuum-hypothesis independence [`Q208416`](https://github.com/leanprover-community/mathlib4/blob/master/docs/1000.yaml#L216), and Arrow's impossibility theorem [`Q33481`](https://github.com/leanprover-community/mathlib4/blob/master/docs/1000.yaml#L30)).
## Entries
| Wikidata | Theorem | Formalization |
|----------|---------|---------------|
| `Q1149185` | **Goodstein's theorem** — every Goodstein sequence terminates | [`lean-gallery`](https://github.com/gotrevor/lean-gallery/blob/main/LeanGallery/Logic/Goodstein/Statement.lean) (ordinal-descent proof) |
| `Q1149185X` | **Kirby–Paris theorem** — PA does not prove that every Goodstein sequence terminates | [`goodstein-independence`](https://github.com/gotrevor/goodstein-independence/blob/main/src/GoodsteinPA/Statement.lean) |
## Notes
- **`Q1149185X` (Kirby–Paris, 1982)** is built on the [`FormalizedFormalLogic/Foundation`](https://github.com/FormalizedFormalLogic/Foundation) library (the same library that backs the existing Löb's-theorem entry [`Q204884`](https://github.com/leanprover-community/mathlib4/blob/master/docs/1000.yaml#L201)), via the Wainer growth-rate route (`Goodstein` outgrows every PA-provably-total function). The headline `peano_not_proves_goodstein` is sorry-free and `#print axioms`-clean — it rests on exactly `[propext, Classical.choice, Quot.sound]`.
- **`Q1149185`** is Goodstein's theorem proper (the termination statement, provable in ZFC / Lean); mathlib does not currently contain it.
- Both formalizations are by Trevor Morris, developed with AI assistance: Claude Code (Fable 5, Opus), Codex, and Harmonic's Aristotle.
🤖 Generated with [Claude Code](https://claude.com/claude-code) |
new-contributor
LLM-generated
|
6/0 |
docs/1000.yaml |
1 |
4 |
['felixpernegger', 'github-actions'] |
nobody |
79-60328 2 months ago |
79-62583 79 days ago |
79-62357 79 days |
0 |
| 41358 |
erdkocak author:erdkocak |
doc(ModelTheory): fix partial equivalence theorem reference |
Fix a stale module doc reference in `ModelTheory.PartialEquiv`: the theorem is `equiv_between_cg`, and the conclusion is an isomorphism `M ≃[L] N`.
---
This documentation-only PR was split out from #41111 following review feedback.
Please note that ChatGPT Codex was used to help prepare this documentation-only PR. |
t-logic
new-contributor
|
3/3 |
Mathlib/ModelTheory/PartialEquiv.lean |
1 |
2 |
['github-actions'] |
nobody |
79-31896 2 months ago |
79-32485 79 days ago |
79-32259 79 days |
5 |
| 37683 |
SabrinaJewson author:SabrinaJewson |
feat(Order/OrdContinuous): every map between complete lattices that preserves sSup is a left adjoint of some Galois connection |
It is already proven that the left side of a Galois connection is left-continuous; this provides the converse.
---
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|
new-contributor
t-order
|
14/0 |
Mathlib/Order/OrdContinuous.lean |
1 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
76-77074 2 months ago |
76-78741 76 days ago |
76-79962 76 days |
0 |
| 41469 |
SnirBroshi author:SnirBroshi |
feat(SimpleGraph/Coloring/EdgeLabeling): `Unique` & `IsEmpty` instances and simplify `mk` |
---
The changes aren't related, they're just small so I grouped them together.
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|
t-combinatorics |
8/5 |
Mathlib/Combinatorics/SimpleGraph/Coloring/EdgeLabeling.lean |
1 |
1 |
['github-actions'] |
nobody |
75-77779 2 months ago |
75-79669 75 days ago |
75-79443 75 days |
0 |
| 36813 |
AlexeyMilovanov author:AlexeyMilovanov |
feat(Computability.Encoding): add self-delimiting unary and pair encodings |
Adds self-delimiting boolean encodings to `Mathlib.Computability.Encoding`.
**Key changes:**
* **`unaryPrefixEncodingNat`**: A self-delimiting unary `Encoding ℕ Bool`, using the code $1^n0$.
* **`encodingProdBool`**: Builds an `Encoding (α × β) Bool` from boolean encodings of `α` and `β`, by prefixing the length of the first encoded component.
* **`encodingListBool`**: Builds an `Encoding (List α) Bool` from a boolean encoding of `α`, using self-delimiting element encodings.
* **`UnaryPrefix` helpers**: Internal-style helper API for the underlying length-prefixed boolean-list encoding and decoding. |
t-computability
new-contributor
|
98/0 |
Mathlib/Computability/Encoding.lean |
1 |
6 |
['AlexeyMilovanov', 'Komyyy', 'github-actions', 'mathlib-bors', 'mathlib-merge-conflicts'] |
nobody |
75-8532 2 months ago |
75-8532 75 days ago |
91-50583 91 days |
0 |
| 41537 |
Mathias-Stout author:Mathias-Stout |
feat(RingTheory/TwoSidedIdeal/Lattice): add lemmas on two-sided ideals |
We add three lemmas on two-sided ideals.
These are analogues of existing lemmas of `Submodule` with the same names.
This prepares a follow-up PR proving that quaternions are central simple.
Co-authored-by: Justus Springer [justusspringer@gmx.de](mailto:justusspringer@gmx.de)
---
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t-ring-theory
new-contributor
|
13/0 |
Mathlib/RingTheory/TwoSidedIdeal/Lattice.lean |
1 |
5 |
['Whysoserioushah', 'github-actions', 'kbuzzard'] |
nobody |
74-2863 2 months ago |
74-5306 74 days ago |
74-12857 74 days |
1 |
| 41548 |
JovanGerb author:JovanGerb |
chore: use `to_dual` for `DedekindCut` |
This PR uses `to_dual` in DedekindCut.
To make this work, we add a shortcut `PartialOrder` instance. We also add some specialized `DedekindCut` theorems, from the more general `Concept` theorems.
Two `gcongr` tags are also added on appropriate lemmas.
---
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|
t-order |
35/18 |
Mathlib/Order/Completion.lean |
1 |
1 |
['github-actions'] |
nobody |
73-86059 2 months ago |
74-392 74 days ago |
74-166 74 days |
0 |
| 41429 |
felixpernegger author:felixpernegger |
chore(Combinatorics): remove a `set_option backward.privateInPublic` |
Together with #41410 this removes all but one global `set_option backward.privateInPublic true`
---
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|
t-combinatorics |
8/7 |
Mathlib/Combinatorics/Matroid/Basic.lean,Mathlib/Combinatorics/Matroid/Dual.lean,Mathlib/Combinatorics/Matroid/Loop.lean,Mathlib/Combinatorics/Matroid/Minor/Restrict.lean |
4 |
13 |
['felixpernegger', 'github-actions', 'leanprover-radar', 'mathlib-bors', 'mathlib-merge-conflicts', 'vlad902'] |
nobody |
73-19962 2 months ago |
73-20830 73 days ago |
75-20713 75 days |
0 |
| 41629 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph/Subgraph): `neighborSet` of `coe`/`spanningCoe` |
---
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|
t-combinatorics |
15/3 |
Mathlib/Combinatorics/SimpleGraph/Subgraph.lean |
1 |
1 |
['github-actions'] |
nobody |
71-55045 2 months ago |
71-55614 71 days ago |
71-55388 71 days |
0 |
| 41668 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph/Decomp): `dropUntil` API to match existing `takeUntil` API |
---
Slightly more complicated theorems than usual "API" though.
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|
t-combinatorics |
56/9 |
Mathlib/Combinatorics/SimpleGraph/Walk/Decomp.lean |
1 |
1 |
['github-actions'] |
nobody |
69-51672 2 months ago |
69-52240 69 days ago |
70-56304 70 days |
0 |
| 41722 |
SnirBroshi author:SnirBroshi |
feat(SimpleGraph/Connectivity/Subgraph): `mapToSubgraph` API |
---
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|
t-combinatorics |
36/0 |
Mathlib/Combinatorics/SimpleGraph/Connectivity/Subgraph.lean |
1 |
1 |
['github-actions'] |
nobody |
69-37585 2 months ago |
69-38191 69 days ago |
69-37965 69 days |
1 |
| 41793 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph): `fromEdgeSet edgeSet` for subgraphs and walks |
`fromEdgeSet G'.edgeSet = G'.spanningCoe` for a subgraph `G'`
`fromEdgeSet p.edgeSet = p.toSubgraph.spanningCoe` for a walk `p`
---
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|
t-combinatorics |
16/2 |
Mathlib/Combinatorics/SimpleGraph/Basic.lean,Mathlib/Combinatorics/SimpleGraph/Connectivity/Subgraph.lean,Mathlib/Combinatorics/SimpleGraph/Subgraph.lean |
3 |
1 |
['github-actions'] |
nobody |
67-78339 2 months ago |
67-78916 67 days ago |
67-78690 67 days |
0 |
| 36719 |
NoneMore author:NoneMore |
feat(ModelTheory): add `PartialType` for first-order theories |
This PR adds the definitions of partial types over theories and over parameter sets, and proves several equivalent characterizations.
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t-logic
new-contributor
|
432/17 |
Mathlib.lean,Mathlib/ModelTheory/PartialTypes.lean,Mathlib/ModelTheory/Semantics.lean |
3 |
7 |
['NoneMore', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'vihdzp'] |
nobody |
67-59831 2 months ago |
67-60352 67 days ago |
75-43087 75 days |
0 |
| 41821 |
Timeroot author:Timeroot |
chore(Order/Basic): add grind _=_ to Subtype.coe_lt_coe, coe_le_coe |
Add grind annotations to Subtype.coe_le_coe and Subtype.coe_lt_coe.
As noted in [this zulip thread](https://leanprover.zulipchat.com/#narrow/channel/113488-general/topic/grind.20failures/near/610812085), grind was failing to solve some fairly simple goals, and I think these are generally good annotations to have. (I think they will usually fire usefully.)
---
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t-order |
2/2 |
Mathlib/Order/Basic.lean |
1 |
4 |
['Timeroot', 'github-actions', 'leanprover-radar'] |
nobody |
67-8044 2 months ago |
67-13447 67 days ago |
67-13221 67 days |
0 |
| 41823 |
tb65536 author:tb65536 |
feat(Combinatorics/Design/Defs): definitions of combinatorial designs |
This PR adds the definitions of combinatorial designs.
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|
t-combinatorics |
141/0 |
Mathlib.lean,Mathlib/Combinatorics/Design/Defs.lean |
2 |
1 |
['github-actions'] |
nobody |
66-77043 2 months ago |
66-77098 66 days ago |
66-76873 66 days |
1 |
| 41887 |
Ljon4ik4 author:Ljon4ik4 |
feat: lemmas showing properties of ofDerivation added |
Given an `R`-Lie algebra `L` and a commutative `R`-algebra `A`, there is a Lie algebra structure on `(A ⊗[R] L)`.
A derivation of `A` induces a Lie derivation of `(A ⊗[R] L)`, and one obtains a Lie algebra map
```
ofDerivation : Derivation R A A →ₗ⁅R⁆ LieDerivation R (A ⊗[R] L) (A ⊗[R] L)
```
In this PR we add a Lemma showing that `ofDerivation` is in fact `A`-linear, and that the resulting LieDerivation satisfies a Leibniz rule with respect to the `A`-multiplication on `A ⊗[R] L`.
---
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|
t-algebra label:t-algebra$ |
13/0 |
Mathlib/Algebra/Lie/Derivation/BaseChange.lean |
1 |
1 |
['github-actions'] |
nobody |
65-13313 2 months ago |
65-13858 65 days ago |
65-16608 65 days |
0 |
| 41570 |
kim-em author:kim-em |
doc: fix and add docstrings in RingTheory/Invariant/Galois |
This PR fixes the docstring of `Ideal.Quotient.normal`, which was copy-pasted from `Ideal.Quotient.exists_algHom_fixedPoint_quotient_under` and did not describe the statement `Normal (A ⧸ P) (B ⧸ Q)`, and add docstrings to `Ideal.IsFractionRing.normal` and `Ideal.IsFractionRing.finite_of_isInvariant`, matching the phrasing of the sibling results in `RingTheory/Invariant/Basic.lean`.
Follow-up to [#40247 (feat(RingTheory/Invariant/Basic): generalize `Ideal.Quotient.normal` to `IsFractionRing`)](https://github.com/leanprover-community/mathlib4/pull/40247).
🤖 Prepared with Claude Code
|
t-ring-theory
LLM-generated
|
5/3 |
Mathlib/RingTheory/Invariant/Galois.lean |
1 |
1 |
['github-actions'] |
nobody |
65-8481 2 months ago |
65-8508 65 days ago |
65-8282 65 days |
0 |
| 41583 |
kim-em author:kim-em |
chore: move simple_obj into Functor namespace, golf proofs, tidy docstring |
This PR moves `CategoryTheory.simple_obj` and `CategoryTheory.simple_obj_iff` into the `Functor` namespace (matching their sibling `Functor.simple_of_simple_obj` and enabling dot notation), golf `Functor.simple_obj` and the forward direction of `isSimpleModule_iff_eq_zero_or_injective` via the existing `LinearMap.injective_or_eq_zero`, remove unused `variable` binders in `RingTheory/SimpleRing/DivisionRing.lean`, and fix inverted heading levels and an "an unique" typo in that file's module docstring. The one call site of the renamed lemmas is updated; no deprecated aliases are added since the declarations merged a week ago.
Follow-up to [#41233 (feat(SimpleRing/DivisionRing): simple module is preserved by ModuleCat equivs)](https://github.com/leanprover-community/mathlib4/pull/41233).
🤖 Prepared with Claude Code
|
LLM-generated |
16/19 |
Mathlib/CategoryTheory/Simple.lean,Mathlib/RingTheory/SimpleRing/DivisionRing.lean |
2 |
1 |
['github-actions'] |
nobody |
65-7985 2 months ago |
65-7985 65 days ago |
65-7759 65 days |
0 |
| 41432 |
SnirBroshi author:SnirBroshi |
chore(Combinatorics/SimpleGraph/Paths): spell `getVert` injectivity lemmas using `Set` intervals |
e.g. replace `{i | i ≤ p.length}` with `Iic p.length` in `IsPath.getVert_injOn`, which is the canonical spelling.
Proofs using `Set.mem_setOf`/`Set.mem_setOf_eq` had to be fixed, and got golfed along the way.
I also rewrote the proof of `IsPath.getVert_injOn` since it seemed too long.
---
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|
t-combinatorics |
29/60 |
Mathlib/Combinatorics/SimpleGraph/Connectivity/Subgraph.lean,Mathlib/Combinatorics/SimpleGraph/Paths.lean |
2 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
65-6213 2 months ago |
65-7542 65 days ago |
76-37778 76 days |
1 |
| 39420 |
mbkybky author:mbkybky |
feat(RingTheory/LocalProperties): `Module.Invertible` is a local property |
Let `M` be a finite `R`-module. We show that `M` is invertible if `Mₘ` is invertible for any maximal ideal `m` of `R`.
- [x] depends on: #39109
- [x] depends on: #39412
---
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|
t-ring-theory |
101/0 |
Mathlib.lean,Mathlib/RingTheory/LocalProperties/Invertible.lean |
2 |
2 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
64-51023 2 months ago |
64-51580 64 days ago |
73-24561 73 days |
1 |
| 41934 |
NickKobs author:NickKobs |
feat(Order/Nucleus): a nucleus on a Boolean algebra is closed |
Adds `Mathlib/Order/Nucleus/Boolean.lean` — the Boolean specialization of the nucleus API:
```lean
theorem Nucleus.apply_eq_sup_apply_bot [BooleanAlgebra X] (n : Nucleus X) (a : X) :
n a = a ⊔ n ⊥
theorem Nucleus.isClosed_of_booleanAlgebra [BooleanAlgebra X] (n : Nucleus X) :
⇑n = fun a => a ⊔ n ⊥
theorem Nucleus.eq_of_apply_bot_eq [BooleanAlgebra X] {m n : Nucleus X} (h : m ⊥ = n ⊥) :
m = n
```
**Why.** `Mathlib.Order.Nucleus` provides the frame / Heyting-algebra structure of `Nucleus X`, the closure-operator view (`toClosureOperator`), and the pointwise `le_apply` / `idempotent` / `map_inf` API, but no Boolean specialization. On a Boolean algebra every nucleus is *closed* — completely determined by its value at `⊥` — which is the pointwise algebraic core of the classical fact that the assembly `N(L)` is Boolean iff `L` is (Beazer–Macnab; Simmons; Johnstone, *Stone Spaces*, II.2). It is the natural companion to the existing frame structure and a common building block in point-free topology.
**Proof.** `n a = n a ⊓ (a ⊔ aᶜ) = (n a ⊓ a) ⊔ (n a ⊓ aᶜ)`; the left join-and is `a` (inflationarity), the right is `≤ n a ⊓ n aᶜ = n (a ⊓ aᶜ) = n ⊥` (inflationarity of `aᶜ` + `map_inf`). The reverse inequality is inflationarity plus monotonicity applied to `⊥ ≤ a`. No completeness is needed — the statement is pointwise, so `[BooleanAlgebra X]` (not a complete Boolean algebra) suffices.
**References.**
* R. Beazer, D. S. Macnab, *Modal extensions of Heyting algebras*.
* H. Simmons, *A framework for topology*, Logic Colloquium '77.
* P. T. Johnstone, *Stone Spaces*, CUP (1982), II.2.
**Provenance.** The theorem was first mechanized (Mathlib-free, over a finite Boolean frame) in the BETTI/Araksha refusal-algebra work; this PR is the generalization to an arbitrary `BooleanAlgebra` against Mathlib's own `Nucleus` API. The result is classical open mathematics, cited above. An earlier revision of the file was compiled clean against master `c81c5cbb` (Lean `v4.33.0-rc1`); this revision adapts the header to the module system (`module` / `public import` / `@[expose] public section`).
|
t-order
new-contributor
LLM-generated
|
71/0 |
Mathlib.lean,Mathlib/Order/Nucleus/Boolean.lean |
2 |
5 |
['felixpernegger', 'github-actions'] |
nobody |
63-62867 2 months ago |
63-76610 63 days ago |
63-76384 63 days |
0 |
| 30637 |
strihanje01 author:strihanje01 |
feat(Combinatorics/SetFamily/Lindstrom): Lindstrom's theorem for subfamilies with equal unions |
add Lindstrom's theorem and its strengthening for equal intersections
---
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|
t-combinatorics
new-contributor
|
211/0 |
Mathlib.lean,Mathlib/Combinatorics/SetFamily/Lindstrom.lean |
2 |
2 |
['github-actions', 'mathlib4-merge-conflict-bot'] |
nobody |
60-62111 1 month ago |
82-29175 82 days ago |
113-78445 113 days |
0 |
| 42046 |
LegaSage author:LegaSage |
feat(Polynomial): add Wronskian linear dependence lemmas |
This extends the polynomial Wronskian API of Baek and Lee from the existing coprime case to arbitrary polynomials over a characteristic-zero field.
It adds:
* an explicit nontrivial scalar relation for any pair with zero Wronskian, including zero-polynomial edge cases;
* scalar-multiple corollaries when either polynomial is nonzero;
* the weighted derivative corollary that solutions of `a * f' - n * a' * f = 0` are scalar multiples of `a ^ n` when `a ≠ 0`.
The proof factors out the polynomial gcd and applies the existing `IsCoprime.wronskian_eq_zero_iff` theorem. This PR makes no novelty claim; it packages standard consequences of the existing Baek–Lee coprime Wronskian API.
-------
The implementation was prepared with assistance from OpenAI Codex and reviewed and submitted by LegaSage.
|
t-ring-theory
new-contributor
large-import
LLM-generated
|
96/1 |
Mathlib/RingTheory/Polynomial/Wronskian.lean |
1 |
2 |
['github-actions'] |
nobody |
59-22826 1 month ago |
59-60796 59 days ago |
59-60570 59 days |
0 |
| 42047 |
LegaSage author:LegaSage |
feat(RingTheory): add locally nilpotent derivations |
This introduces `Derivation.IsLocallyNilpotent` and basic iteration lemmas for locally nilpotent derivations. The main result is the method-style theorem `Derivation.IsLocallyNilpotent.apply_eq_zero_of_dvd`: over a characteristic-zero domain, if `f ∣ D f` for a locally nilpotent derivation `D`, then `D f = 0`.
The proof uses the iterated Leibniz rule and the top nonvanishing iterates of the two factors.
-----
The implementation and PR text were prepared with assistance from OpenAI Codex. |
t-ring-theory
new-contributor
LLM-generated
|
167/0 |
Mathlib.lean,Mathlib/RingTheory/Derivation/LocallyNilpotent.lean |
2 |
2 |
['github-actions'] |
nobody |
59-22807 1 month ago |
59-60796 59 days ago |
59-60570 59 days |
0 |
| 42082 |
attilavjda author:attilavjda |
feat(FieldTheory): reduce Frobenius powers modulo the extension degree |
Adds ring-hom and pointwise lemmas reducing powers of Frobenius modulo the extension degree of a finite field.
---
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|
t-algebra
new-contributor
label:t-algebra$ |
12/0 |
Mathlib/FieldTheory/Finite/Basic.lean |
1 |
5 |
['attilavjda', 'felixpernegger', 'github-actions'] |
nobody |
58-12621 1 month ago |
58-13405 58 days ago |
58-21650 58 days |
0 |
| 42140 |
mcdoll author:mcdoll |
feat(LinearAlgebra): use `IsApply` for `AlternatingMap` |
---
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|
t-algebra label:t-algebra$ |
56/52 |
Mathlib/LinearAlgebra/Alternating/Basic.lean,Mathlib/LinearAlgebra/Alternating/DomCoprod.lean,Mathlib/LinearAlgebra/Determinant.lean,Mathlib/LinearAlgebra/Orientation.lean,Mathlib/MeasureTheory/Measure/Lebesgue/EqHaar.lean |
5 |
3 |
['github-actions', 'mcdoll'] |
nobody |
55-65756 1 month ago |
55-65756 55 days ago |
55-65530 55 days |
0 |
| 42153 |
Whysoserioushah author:Whysoserioushah |
feat(LinearAlgebra/Projectivization/PSL): the general case of PSL |
---
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|
t-group-theory
LLM-generated
|
328/20 |
Mathlib.lean,Mathlib/GroupTheory/Subgroup/Center.lean,Mathlib/LinearAlgebra/Matrix/SpecialLinearGroup.lean,Mathlib/LinearAlgebra/Projectivization/Action.lean,Mathlib/LinearAlgebra/Projectivization/PSL/PSL2.lean,Mathlib/LinearAlgebra/Projectivization/PSL/PSLn.lean,Mathlib/LinearAlgebra/Projectivization/PSL/Stabilizer.lean |
7 |
3 |
['github-actions', 'mathlib-bors'] |
nobody |
55-53563 1 month ago |
56-3645 56 days ago |
56-3442 56 days |
0 |
| 42182 |
gasparattila author:gasparattila |
feat(Order/Partition): converting a `Finpartition` into a `Partition` |
---
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[](https://gitpod.io/from-referrer/)
|
t-order
large-import
|
60/3 |
Mathlib/Order/Partition/Basic.lean,Mathlib/Order/Partition/Finpartition.lean,Mathlib/Order/SupIndep.lean |
3 |
1 |
['github-actions'] |
nobody |
55-18386 1 month ago |
55-20558 55 days ago |
55-20332 55 days |
0 |
| 42079 |
JX-Mo author:JX-Mo |
refactor(RepresentationTheory): weaken condition of Schur's lemma |
Replace the condition `[FiniteDimensional k V]` of Schur's lemma by `[FiniteDimensional k (IntertwiningMap ρ ρ)]`. Note that the former will automatically give the latter by typeclass inference.
This has an immediate downstream application: irreducible admissible smooth representations (of e.g. GL2(Qp)) are usually not finite dimensional but the weaker condition`[FiniteDimensional k (IntertwiningMap ρ ρ)]` can be easily deduced from the definition of being "irreducible admissible smooth". |
new-contributor
t-algebra
label:t-algebra$ |
16/14 |
Mathlib/RepresentationTheory/AlgebraRepresentation/Basic.lean,Mathlib/RepresentationTheory/Irreducible.lean |
2 |
6 |
['JX-Mo', 'Whysoserioushah', 'github-actions', 'pepamontero'] |
nobody |
55-12787 1 month ago |
58-50824 58 days ago |
58-50598 58 days |
0 |
| 42226 |
espottesmith author:espottesmith |
feat(Combinatorics/Hypergraph): add restriction `x ≠ y` to hypergraph vertex and edge adjacency |
---
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This introduces a small change to the definitions of adjacency and edge-adjacency for undirected hypergraphs, based on a conversation with @Jun2M and @b-mehta in [#28613](https://github.com/leanprover-community/mathlib4/pull/28613).
Previously, any two vertices (edges) `x` and `y` could be adjacent, provided that there was an edge in the edge set containing both of them (there was a vertex contained in both of them). Now, we add the restriction that `x` is not equal to `y`.
This should allow `SimpleGraph` to be a clean specialization of `Hypergraph` and to ease the eventual implementation of walks.
This PR has no dependencies, but see also [42164](https://github.com/leanprover-community/mathlib4/pull/42162), @Jun2M's implementation of `HyperGraphLike` and formalization that `Hypergraph`s are `HyperGraphLike`, which includes this restriction on `Adj`.
[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
|
4/4 |
Mathlib/Combinatorics/Hypergraph/Basic.lean |
1 |
3 |
['github-actions'] |
nobody |
54-35256 1 month ago |
54-35822 54 days ago |
54-35596 54 days |
0 |
| 42223 |
cameronfreer author:cameronfreer |
feat(Computability/Reduce): the halting problem is many-one complete |
`Mathlib/Computability/Halting.lean` proves that the halting problem is recursively enumerable (`ComputablePred.halting_problem_re`) and not computable (`ComputablePred.halting_problem`), but not that it is complete: there is no `REPred R → R ≤₀ K`, and neither `Halting.lean` nor `RE.lean` mentions `≤₀`.
This PR adds three results:
```lean
theorem REPred.manyOneReducible_halting_problem {R : ℕ → Prop} (h : REPred R) (n : ℕ) :
R ≤₀ fun c : Code => (Code.eval c n).Dom
theorem halting_problem_manyOneEquiv_halting_problem₂ (n : ℕ) :
ManyOneEquiv (fun c : Code => (Code.eval c n).Dom)
(fun p : Code × ℕ => (Code.eval p.1 p.2).Dom)
theorem REPred.manyOneReducible_halting_problem₂ {R : ℕ → Prop} (h : REPred R) :
R ≤₀ fun p : Code × ℕ => (Code.eval p.1 p.2).Dom
```
(I've stated the results in `Reduce.lean` rather than alongside the other halting-problem results because `≤₀` is defined here, and `Reduce` imports `Halting` rather than the other way around.)
🤖 These proofs were written with the assistance of Claude Opus 5 high and reviewed by GPT Sol 5.6 xhigh.
|
t-computability
new-contributor
LLM-generated
|
41/0 |
Mathlib/Computability/Reduce.lean |
1 |
3 |
['cameronfreer', 'github-actions'] |
nobody |
53-11945 1 month ago |
54-39753 54 days ago |
54-39527 54 days |
0 |
| 42189 |
cameronfreer author:cameronfreer |
feat(ModelTheory/Basic): add characterization of languages with countably many symbols |
`Language.Countable.countable_functions` currently projects `Countable L.Symbols` onto the function symbols, but there is no counterpart for relations. This PR adds the missing instance; in doing so it relates the two ways that Mathlib already expresses "countable language": the bundled `Language.card ≤ ℵ₀` and the unbundled `Countable (Σ l, L.Functions l)` / `Countable (Σ l, L.Relations l)` hypotheses that model-theoretic statements tend to carry separately.
* `Countable.countable_relations`, `countable_symbols_iff`, and `card_le_aleph0_iff_countable` connect the bundled and unbundled formulations of symbol countability.
* `Countable.countable_sum`, `Countable.countable_constantsOn`, and `Countable.countable_withConstants` centralize countability instances for language constructors and remove the corresponding local instances from `Encoding.lean`.
## Motivation
Following review feedback from @NoneMore, this PR now also simplifies existing Mathlib code: generic countability instances for `Language.sum`, `constantsOn`, and `withConstants` live beside those constructors, so `Encoding.lean` no longer needs its own cardinal-arithmetic proofs for them.
The broader motivation comes from projects in infinitary model theory that build on Mathlib, in which one typically needs to carry around a hypothesis about countability of the set of symbols.
Specifically, in [cameronfreer/infinitary-logic](https://github.com/cameronfreer/infinitary-logic) the two sorts are carried unbundled and independently throughout; there are roughly 180 occurrences of the relation-symbol hypothesis and 24 of the function-symbol one. Here are a few examples:
* [`Methods/Henkin/ModelExistence.lean#L60`](https://github.com/cameronfreer/infinitary-logic/blob/1a478e80794080a536931c029281bb65266b3171/InfinitaryLogic/Methods/Henkin/ModelExistence.lean#L60): model existence, carrying both hypotheses side by side;
* [`Admissible/Compactness.lean#L90`](https://github.com/cameronfreer/infinitary-logic/blob/1a478e80794080a536931c029281bb65266b3171/InfinitaryLogic/Admissible/Compactness.lean#L90): Barwise completeness, likewise;
* [`Descriptive/Polish.lean#L46`](https://github.com/cameronfreer/infinitary-logic/blob/1a478e80794080a536931c029281bb65266b3171/InfinitaryLogic/Descriptive/Polish.lean#L46): a section variable assuming only the relation symbols are countable, which is where one notices the missing companion instance;
* [`Methods/LopezEscobar/CodeClass.lean#L29`](https://github.com/cameronfreer/infinitary-logic/blob/1a478e80794080a536931c029281bb65266b3171/InfinitaryLogic/Methods/LopezEscobar/CodeClass.lean#L29): a custom `Countable (Σ n, L.Functions n)` instance for relational languages, which is an example of the bookkeeping that arises from the two sorts not being related by a single lemma.
(Note that the `countable_functions` and `countable_relations` instances only project *out of* `Countable L.Symbols` into a summand; the converse direction is stated as a theorem rather than an instance, so there is no risk of an instance cycle.)
🤖 These proofs were written with the assistance of Claude Opus 5 high and reviewed by GPT Sol 5.6 xhigh.
|
t-logic
new-contributor
LLM-generated
|
33/12 |
Mathlib/ModelTheory/Basic.lean,Mathlib/ModelTheory/Encoding.lean,Mathlib/ModelTheory/LanguageMap.lean |
3 |
5 |
['NoneMore', 'cameronfreer', 'github-actions'] |
nobody |
53-11919 1 month ago |
54-38691 54 days ago |
54-41673 54 days |
0 |
| 42203 |
cameronfreer author:cameronfreer |
feat(Algebra/MvPolynomial): compact only the right summand of a sum of variables |
Currently `exists_fin_rename` reindexes the entire variable type along an injection `Fin n → σ`. At `σ ⊕ τ` this renumbers the left-hand variables together with the right-hand ones, so it cannot be used when the left summand carries meaning that has to be preserved.
This PR adds two variants that leave the left summand alone, mirroring the existing `exists_finset_rename` / `exists_fin_rename` pair:
```lean
theorem exists_finset_right_rename (p : MvPolynomial (σ ⊕ τ) R) :
∃ (t : Finset τ) (q : MvPolynomial (σ ⊕ { x // x ∈ t }) R),
p = rename (Sum.map id (↑)) q
theorem exists_fin_right_rename (p : MvPolynomial (σ ⊕ τ) R) :
∃ (n : ℕ) (f : Fin n → τ) (_hf : Injective f) (q : MvPolynomial (σ ⊕ Fin n) R),
p = rename (Sum.map id f) q
```
The first of these factors `exists_finset_rename` through `Finset.toRight`: rename along the map that fixes the left-hand variables and sends each right-hand variable of the finset into `s.toRight`.
The second one then enumerates that right-hand finset with `Fintype.equivFin`, the same way that `exists_fin_rename` does.
Motivation: a Diophantine relation is presented as a polynomial in input variables along with existentially quantified witness variables, and the normal form wants inputs indexed by `Fin n` and witnesses compacted to `Fin m`. Only the witnesses may be reindexed; renumbering the inputs changes the relation being represented. This comes up in work I've been exploring towards Hilbert's tenth problem (the TODO in `Mathlib.NumberTheory.Dioph`), though the statement is independent of that.
🤖 These proofs were written with the assistance of Claude Opus 5 high and reviewed by GPT Sol 5.6 xhigh.
|
t-algebra
new-contributor
LLM-generated
label:t-algebra$ |
41/0 |
Mathlib/Algebra/MvPolynomial/Rename.lean |
1 |
3 |
['cameronfreer', 'github-actions'] |
nobody |
53-11919 1 month ago |
54-75722 54 days ago |
54-76320 54 days |
0 |
| 42178 |
cameronfreer author:cameronfreer |
feat(Computability/Primrec/List): add theorems showing that List.all, List.any and List.sum are primitive recursive |
Add the parameterized `list_all`, `list_any` and natural-number `list_sum`, in the style of the existing `list_map`, `list_foldr` and `list_findIdx`.
Mathlib already has a parameterized core, but no direct lemmas for these standard list operations, so downstream developments tend to reconstruct them from `list_foldr` at each use site. In the course of writing [cameronfreer/computable-analysis](https://github.com/cameronfreer/computable-analysis) I ended up needing this in three places, all of which can now make use of the results here instead (see [a6898b5](https://github.com/cameronfreer/computable-analysis/commit/a6898b5), in particular `Weihrauch/Principles/Limit.lean:117`, `TypeTwo/PrefixTable.lean:334,351,369`, and `Measure/DisintegrateLower.lean:877,902`).
:robot: These proofs were written with the assistance of Claude Opus 5 high and reviewed by GPT Sol 5.6 xhigh. |
t-computability
new-contributor
LLM-generated
|
21/1 |
Mathlib/Computability/Primrec/List.lean |
1 |
4 |
['cameronfreer', 'github-actions'] |
nobody |
53-11912 1 month ago |
55-31837 55 days ago |
55-31611 55 days |
0 |
| 42128 |
SnirBroshi author:SnirBroshi |
feat(Order/UpperLower/CompleteLattice): induce the `PartialOrder` for `LowerSet`s from `SetLike` |
Now `#synth IsConcreteLE (LowerSet α) α` works so `SetLike.coe_subset_coe` and the like can be used with `LowerSet`s.
---
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[](https://gitpod.io/from-referrer/)
|
t-order |
4/1 |
Mathlib/Order/Birkhoff.lean,Mathlib/Order/UpperLower/CompleteLattice.lean |
2 |
1 |
['github-actions'] |
nobody |
51-78984 1 month ago |
51-80759 51 days ago |
51-81743 51 days |
0 |
| 42113 |
LAC1213 author:LAC1213 |
feat(RingTheory/Noetherian): injective modules over a Noetherian ring… |
… surject onto localizations by powers of an element. [Hartshorne III.3.3]
Disclaimer: I used Claude to help me find the names of useful lemmas and definitions and explain lean errors to me.
---
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[](https://gitpod.io/from-referrer/)
|
t-ring-theory
new-contributor
LLM-generated
|
114/0 |
Mathlib.lean,Mathlib/Algebra/Module/Torsion/Basic.lean,Mathlib/RingTheory/Noetherian/InjectiveModule.lean |
3 |
42 |
['LAC1213', 'NoahW314', 'github-actions', 'robin-carlier'] |
nobody |
50-67983 1 month ago |
56-16172 56 days ago |
56-40674 56 days |
0 |
| 42358 |
homeowmorphism author:homeowmorphism |
doc(RingTheory/Extension/Generators): remove stale TODO and clarify docstring |
Update the docstring in light of #25085 refactoring the bundled type into an unbundled type. A fix to the docstring has been done in #39705.
The TODO still to be removed and the docstring is clarified a bit to be clear that the type iota is now unbundled.
---
Use of AI: Claude Fable was used to help me understand this API in light of me working on a similar API for `Group.Presentation` (#41936). It came to my attention that the docstring was outdated and I had Claude fetch the PR history.
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[](https://gitpod.io/from-referrer/)
|
t-ring-theory |
7/17 |
Mathlib/RingTheory/Extension/Generators.lean |
1 |
2 |
['github-actions'] |
nobody |
50-63682 1 month ago |
50-64378 50 days ago |
50-64152 50 days |
0 |
| 42225 |
matt-w-horn author:matt-w-horn |
feat(Order): Knaster–Tarski fixed points on an interval |
`lfpIcc f a b` and `gfpIcc f a b`: least and greatest fixed points of `f` on `Set.Icc a b` in a conditionally complete lattice, for `f` monotone on the interval and mapping it into itself. Also interval membership, endpoint-iterate bounds, and monotonicity in `f`.
`OrderHom.lfp` gives this through the complete-lattice instance on the subtype, but wants a `Fact (a ≤ b)` and returns subtype elements. These take `MonotoneOn` and `MapsTo` directly and stay in `α`. Bridge lemmas between the two are a follow-up.
Used on intervals of ℝ in Overload, a sorry-free Lean library on retry and overload dynamics: https://github.com/matt-w-horn/overload/tree/main/Overload
Claude Fable wrote the Lean from a spec I gave it. I reviewed and tested it myself, including adversarial tests and the suites in the library above, and did the same for its dependencies.
Assisted-by: Claude Fable 5 |
t-order
new-contributor
LLM-generated
|
168/0 |
Mathlib.lean,Mathlib/Order/FixedPointsIcc.lean |
2 |
7 |
['github-actions', 'matt-w-horn', 'wwylele'] |
nobody |
48-52379 1 month ago |
49-61965 49 days ago |
49-61739 49 days |
0 |
| 42513 |
plp127 author:plp127 |
feat(ModelTheory): typeclass for theory to have nonempty models |
We add a typeclass for a theory to have nonempty models. We provide instances for `nonemptyTheory`, `infiniteTheory`, and `completeTheory`.
---
- [x] depends on: #42508
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[](https://gitpod.io/from-referrer/)
|
t-logic |
51/0 |
Mathlib/ModelTheory/Algebra/Ring/Basic.lean,Mathlib/ModelTheory/Semantics.lean |
2 |
2 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
45-21149 1 month ago |
45-28628 45 days ago |
45-30952 45 days |
1 |
| 42541 |
NoahW314 author:NoahW314 |
feat: add `CharZero`/`CharP` instances on `OrderDual` and `Lex` |
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|
t-algebra
large-import
label:t-algebra$ |
11/1 |
Mathlib/Algebra/Order/Ring/Synonym.lean,Mathlib/LinearAlgebra/Eigenspace/Basic.lean |
2 |
1 |
['github-actions'] |
nobody |
45-3623 1 month ago |
45-6043 45 days ago |
45-7575 45 days |
0 |
| 42538 |
NoahW314 author:NoahW314 |
feat: add Semilattice lemmas for `IsBotOneClass` |
These lemmas are analogous to the existing lemmas for `LinearOrder` + `IsBotOneClass`. The bot versions for Semilattices and LinearOrder also exist already.
---
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|
t-algebra label:t-algebra$ |
29/4 |
Mathlib/Algebra/Order/IsBotOne.lean |
1 |
1 |
['github-actions'] |
nobody |
45-2244 1 month ago |
45-5665 45 days ago |
45-8511 45 days |
0 |
| 42569 |
astrainfinita author:astrainfinita |
refactor: use `cmpLE` in `LinearOrder` |
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|
t-order
tech debt
|
110/69 |
Mathlib/Data/Ordering/Basic.lean,Mathlib/Data/Prod/Lex.lean,Mathlib/Data/String/Basic.lean,Mathlib/Order/Basic.lean,Mathlib/Order/Compare.lean,Mathlib/Order/CompleteLattice/Defs.lean,Mathlib/Order/ConditionallyCompleteLattice/Defs.lean,Mathlib/Order/Defs/LinearOrder.lean,Mathlib/Order/OrderDual.lean,Mathlib/Order/Std.lean,scripts/nolints.json |
11 |
3 |
['JovanGerb', 'astrainfinita', 'github-actions'] |
nobody |
43-85682 1 month ago |
44-2537 44 days ago |
44-5612 44 days |
1 |
| 42314 |
sfingali author:sfingali |
feat(RingTheory): continuous valuations |
### Summary
Defines continuous valuations on topological rings: a valuation `v : A → Γ₀`
whose underlying function is continuous for the order topology on `Γ₀`
(Wedhorn, *Adic Spaces*, arXiv:1910.05934, Def. 7.7 and Rem. 7.8(1), p. 58).
* `ContinuousValuationClass` — the class of continuous valuations: a
`ValuationClass` whose functions are continuous.
* `ContinuousValuation` — a bundled continuous valuation.
* `ContinuousValuation.isOpen_lt` — the primary definition of Wedhorn,
Def. 7.7: `{a | v a < γ}` is open for every `γ`.
This is the second step of an adic/perfectoid pipeline (Huber rings → Huber
pairs → continuous valuations → Spa → perfectoid → tilting); #42312 defines
Huber rings. The subspace `Cont(A) ⊆ Spv(A)` of continuous valuations
(Wedhorn, p. 58) will build on `ValuationSpectrum` once #38009 lands — this
PR provides the element-level notion, which is independent of the spectrum
topology.
### References
* T. Wedhorn, *Adic Spaces*, arXiv:1910.05934, Def. 7.7, Rem. 7.8 (p. 58).
|
t-ring-theory
new-contributor
|
99/0 |
Mathlib.lean,Mathlib/RingTheory/Valuation/ContinuousValuation.lean |
2 |
7 |
['github-actions', 'sfingali', 'wwylele'] |
nobody |
43-76873 1 month ago |
51-67694 51 days ago |
51-68014 51 days |
0 |
| 40741 |
AntoineduFresne author:AntoineduFresne |
feat(order): dilworth's and mirsky's theorems for finite orders |
I add Dilworth's theorem and its order dual, Mirsky's theorem, for finite subsets of a partial order, together with the order-theoretic lemmas they rest on.
A prior external formalization by Vlad Tsyrklevich is linked from `1000.yaml`; this is an independent `Finset`-based development using Galvin's proof, and I agreed the `1000.yaml` update with him.
I split the min-max content, as for Hall's marriage theorem, into a weak-duality inequality and a strong-duality existence of a matching pair, so I never define an extremal quantity over families of sets (no `Finset.min'` / `Finset.max'`):
- `dilworth` / `mirsky` — an antichain and a chain cover (resp. a chain and an antichain cover) of equal size;
- `antichain_le_chain_cover` / `chain_le_antichain_cover` — the weak-duality inequalities, for an arbitrary relation;
- `dilworth_partition` / `mirsky_partition` — the same with a pairwise-disjoint partition.
For Dilworth I use Galvin's induction (gluing step `chainCover_glue`); I avoid the König /
bipartite-matching route since König isn't in Mathlib yet (at least last time I checked). I prove Mirsky directly (peeling off minimal elements) rather than via `OrderDual`, since the direct induction seems simpler to me and the two proofs already share their foundations (the closure lemmas and the injective weak dualities).
Internally I work with an injection `f : α → Finset α` on the antichain rather than with the
`Finset (Finset α)` cover directly, so distinctness of the chains comes from the antichain property instead of a separate bookkeeping.
## Questions I'd like input on
1. Explicit min-max? I give weak duality plus a matching pair, from which "largest antichain = smallest chain cover" follows; I do not state that equality as a single theorem (doing so would, I think, mean defining the extremal quantities I wanted to avoid). Would you also like an explicit min-max statement?
2. Two layers of weak duality. I expose it twice: an injective form (`IsAntichain.exists_injOn_mem_chains`, over an arbitrary relation and an arbitrary index type, no finiteness) and a `Finset` cardinality form (`antichain_le_chain_cover`), the latter a one-line specialization of the former. I'm not sure whether exposing both is right, or whether one of them should be canonical. And is there appetite to push the general core to an `ℕ∞` / infinite version, or is the finite form the right scope here?
3. `[DecidableEq α]` on the main theorems. It comes only from writing the cover as
`s = 𝒞.biUnion id` (`Finset.biUnion` needs it); a membership-form coverage condition such as `∀ x, x ∈ s ↔ ∃ C ∈ 𝒞, x ∈ C` would drop the assumption, though it seems to me a bit less readable. Which do you prefer? (I think the injective-form weak dualities assume neither order, finiteness, nor `DecidableEq`.)
4. Naming. I use `C` / `A` for a chain / antichain and `𝒞` / `𝒜` for a chain / antichain cover (for hopefully obvious reason). Happy to change these if you would prefer something else.
## Open questions
- File placement (`Mathlib/Order/Dilworth.lean`?), and whether the general lemmas (the injective transversal and the weak dualities) should live in `Mathlib/Order/Antichain.lean` rather than in a new file.
The maximal-antichain closure lemma that was originally here has been split out into #42590.
Zulip: https://leanprover.zulipchat.com/#narrow/channel/113489-new-members/topic/Antoine.20du.20Fresne.20von.20Hohenesche/with/604112426
AI use: I worked out all proofs on paper first and most of the design structure of the file. I then used Claude Code (Claude Opus) to transcribe my paper proofs into Lean, weaken hypotheses, reduce redundancy, and fix comment typos.
|
t-order
new-contributor
LLM-generated
|
568/3 |
Mathlib.lean,Mathlib/Order/Dilworth.lean,docs/1000.yaml |
3 |
18 |
['AntoineduFresne', 'SnirBroshi', 'github-actions', 'tdwag123'] |
nobody |
43-31826 1 month ago |
43-32458 43 days ago |
95-40697 95 days |
0 |
| 42624 |
xgenereux author:xgenereux |
perf(IntermediateField/Basic): algebra instance for IntermediateField.restrictScalars |
Add `Algebra` / `IsScalarTower` instance for `IntermediateField.restrictScalars`.
This simplifies a proof in `FunctionField.lean`.
I also tried to hunt for another similar application and found one in `Mathlib.FieldTheory.Extension`.
AI disclaimer: I asked an AI assistant to suggest an improvement to the proof in the FunctionField.lean file. This PR is the result of this discussion.
---
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|
t-algebra label:t-algebra$ |
9/12 |
Mathlib/FieldTheory/Extension.lean,Mathlib/FieldTheory/IntermediateField/Basic.lean,Mathlib/NumberTheory/FunctionField.lean |
3 |
6 |
['github-actions', 'leanprover-radar', 'xgenereux'] |
nobody |
41-70228 1 month ago |
41-73749 41 days ago |
41-73523 41 days |
0 |
| 41909 |
wwylele author:wwylele |
feat(FieldTheory): field equivalences for bot subfield |
Make it easier to use than the existing Subfield equality lemma.
---
~~The ZMod version `Subfield.botEquivZMod_symm_apply` is missing because the statement
`(Subfield.botEquivZMod K p).symm x = algebraMap (ZMod p) (⊥ : Subfield K) x` doesn't type-check, which is missing the instance `Algebra (ZMod p) (⊥ : Subfield K)`, which is because [ZMod.algebra](https://leanprover-community.github.io/mathlib4_docs/Mathlib/Algebra/Algebra/ZMod.html#ZMod.algebra) is a `def`~~
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|
t-algebra label:t-algebra$ |
44/3 |
Mathlib/FieldTheory/PrimeField.lean |
1 |
4 |
['copilot-pull-request-reviewer', 'github-actions', 'plp127', 'wwylele'] |
nobody |
41-13019 1 month ago |
64-62005 64 days ago |
64-62300 64 days |
0 |
| 42265 |
cameronfreer author:cameronfreer |
chore(RingTheory/PowerSeries): simplify coeff_inv_aux |
This replaces the hand-written `Finset.sum_nbij'` in `coeff_inv_aux` with `simp_rw` + `simp`, via `Finsupp.antidiagonal_single`, the same rewrite that `PowerSeries.coeff_mul` already uses.
:robot: Golfing target found by GPT Pro 5.6 Sol, initial version of code written by Opus 5 high, refined by GPT 5.6 Sol xhigh, then again by Opus 5 high following @felixpernegger's review suggestion. |
t-ring-theory
new-contributor
LLM-generated
|
2/19 |
Mathlib/RingTheory/PowerSeries/Inverse.lean |
1 |
8 |
['cameronfreer', 'felixpernegger', 'github-actions', 'mathlib-bors', 'mathlib-merge-conflicts'] |
nobody |
41-3780 1 month ago |
41-4480 41 days ago |
53-31664 53 days |
0 |
| 41905 |
wwylele author:wwylele |
feat(FieldTheory): relrank lemma about sup |
The main lemma I want is `(A ⊔ C).relrank (B ⊔ C) ≤ A.relrank B`. Added some trivial lemma along the way.
---
AI usage disclosure: this was originally drafted by Aristotle, then cleaned up by me.
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|
t-algebra
LLM-generated
label:t-algebra$ |
89/0 |
Mathlib/FieldTheory/Relrank.lean |
1 |
10 |
['copilot-pull-request-reviewer', 'github-actions', 'sharky564'] |
nobody |
41-2822 1 month ago |
64-74389 64 days ago |
64-74163 64 days |
0 |
| 42644 |
artie2000 author:artie2000 |
feat(Order/Lattice): add `grind` attributes to `sup_of_le_left` etc |
* Add the equations for sup and inf being equal to either argument in a poset to `grind`.
* These rules sit alongside the "sup = if .. then .. else .." `grind` rule in a total order.
---
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|
t-order
t-meta
|
13/6 |
Mathlib/Analysis/SpecialFunctions/Artanh.lean,Mathlib/Order/Lattice.lean |
2 |
3 |
['JovanGerb', 'artie2000', 'github-actions'] |
nobody |
41-2606 1 month ago |
41-5914 41 days ago |
41-8106 41 days |
0 |
| 42675 |
vlad902 author:vlad902 |
feat(NielsenSchreier): add `to_additive` to Nielsen-Schreier theorem |
The proof of the Nielsen-Schreier theorem is not currently `to_additive`ized because it relies on category theory infrastructure like `End`/`IsFreeGroupoid`/`Quiver` that are not `to_additive` and don't appear to be very amenable to adding it.
Instead, `to_additive`ize Nielsen-Schreier by directly going across the isomorphism between `FreeGroup` and `Multiplicative (FreeAddGroup)`.
---
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|
t-group-theory |
25/2 |
Mathlib/GroupTheory/FreeGroup/Basic.lean,Mathlib/GroupTheory/FreeGroup/NielsenSchreier.lean,docs/1000.yaml |
3 |
4 |
['github-actions', 'vihdzp', 'vlad902'] |
nobody |
40-37403 1 month ago |
40-39261 40 days ago |
40-40538 40 days |
1 |
| 42639 |
Raph-DG author:Raph-DG |
feat(Order): krullDimLE characterisation |
In this PR, we show that a preorder has krull dim at most n if and only if every element with coheight greater than n is minimal (+ the dual version and some small corollaries).
---
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|
t-order |
42/0 |
Mathlib/Order/KrullDimension.lean |
1 |
2 |
['github-actions'] |
nobody |
40-35726 1 month ago |
40-37454 40 days ago |
40-40261 40 days |
0 |
| 42629 |
SnirBroshi author:SnirBroshi |
feat(Order/RelSeries): `FiniteDimensionalOrder` implies `WellFoundedLT` |
and `WellFoundedGT`
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[](https://gitpod.io/from-referrer/)
|
t-order |
13/0 |
Mathlib/Order/RelSeries.lean |
1 |
6 |
['SnirBroshi', 'github-actions', 'plp127', 'vihdzp'] |
nobody |
40-32297 1 month ago |
40-48904 40 days ago |
40-50716 40 days |
0 |
| 42685 |
harahu author:harahu |
chore(Geometry): tidy markdown headers |
This PR:
- Ensures files in `Mathlib/Geometry` have one and only one H1 header,
- Standardizes some H2 headers,
both enforcing the style guide.
The new title for `Mathlib/Geometry/Convex/Cone/Face/Lattice.lean` was suggested by Claude Opus 5.
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[](https://gitpod.io/from-referrer/)
|
|
14/13 |
Mathlib/Geometry/Convex/Cone/Face/Lattice.lean,Mathlib/Geometry/Manifold/Bordism.lean,Mathlib/Geometry/Manifold/ContMDiff/Basic.lean,Mathlib/Geometry/Manifold/ContMDiff/Constructions.lean,Mathlib/Geometry/Manifold/ContMDiff/NormedSpace.lean,Mathlib/Geometry/Manifold/ContMDiffMFDeriv.lean,Mathlib/Geometry/Manifold/Instances/Quotient.lean,Mathlib/Geometry/Manifold/IntegralCurve/Basic.lean,Mathlib/Geometry/Manifold/IntegralCurve/ExistUnique.lean,Mathlib/Geometry/Manifold/IntegralCurve/Transform.lean,Mathlib/Geometry/Manifold/IntegralCurve/UniformTime.lean,Mathlib/Geometry/Manifold/MFDeriv/FDeriv.lean,Mathlib/Geometry/Manifold/VectorBundle/CovariantDerivative/Metric.lean |
13 |
1 |
['github-actions'] |
nobody |
40-28073 1 month ago |
40-29160 40 days ago |
40-28934 40 days |
0 |
| 40759 |
CoolRmal author:CoolRmal |
feat(Order): a sequence converges if every subsequence has a further convergent subsequence |
This PR proves `tendsto_of_forall_filter_le_exists_tendsto`, which is the filter version of the theorem in the title: if for any filter `m ≤ l₁`, there exists a nontrivial filter `n ≤ m` such that `f` converges to `l₂` along `n`, then `f` converges to `l₂` along `l₁`.
Mostly generated in a chat with GPT Pro 5.5. Polished and reviewed by me.
---
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[](https://gitpod.io/from-referrer/)
|
t-order
LLM-generated
|
10/0 |
Mathlib/Order/Filter/Tendsto.lean |
1 |
5 |
['ADedecker', 'CoolRmal', 'attilavjda', 'github-actions'] |
nobody |
40-27032 1 month ago |
93-59103 93 days ago |
95-2307 95 days |
0 |
| 42472 |
yuanyi-350 author:yuanyi-350 |
feat(Topology/Homotopy/Lifting): add bijectivity results for monodromy evaluation |
|
t-topology |
40/0 |
Mathlib/Topology/Homotopy/Lifting.lean |
1 |
1 |
['github-actions'] |
nobody |
40-23266 1 month ago |
47-34595 47 days ago |
47-34369 47 days |
0 |
| 33864 |
Timeroot author:Timeroot |
feat(Computability/Primrec): Proving several Nat arithmetic functions are primrec |
Prove that gcd, lcm, coprimality, divisiblity, primality, factorial, descending factorial, powers, and various logarithms are all primitive recursive.
Co-authored-by: Aristotle Harmonic <[aristotle-harmonic@harmonic.fun](mailto:aristotle-harmonic@harmonic.fun)>
|
large-import
t-computability
|
194/3 |
Mathlib.lean,Mathlib/Computability/Primrec/List.lean,Mathlib/Computability/Primrec/Nat.lean,Mathlib/Data/Nat/Log.lean |
4 |
8 |
['eric-wieser', 'github-actions', 'mathlib-merge-conflicts', 'mathlib4-merge-conflict-bot'] |
nobody |
40-13571 1 month ago |
40-15455 40 days ago |
87-39695 87 days |
0 |
| 28700 |
Timeroot author:Timeroot |
feat(ModelTheory): Set.Definable is transitive |
---
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This PR continues the work from #19695.
Original PR: https://github.com/leanprover-community/mathlib4/pull/19695
- [x] depends on: #26332
[](https://gitpod.io/from-referrer/)
|
t-logic
large-import
|
369/3 |
Mathlib/ModelTheory/Definability.lean,Mathlib/ModelTheory/Semantics.lean,Mathlib/ModelTheory/Syntax.lean |
3 |
9 |
['Timeroot', 'github-actions', 'mathlib-merge-conflicts', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot', 'staroperator'] |
nobody |
39-84805 1 month ago |
39-85422 39 days ago |
43-2488 43 days |
0 |
| 42720 |
justinhalford author:justinhalford |
feat(Order/KrullDimension): level sets of height are antichains |
Adds one lemma to `Mathlib/Order/KrullDimension.lean`, directly after `height_strictMono`:
```lean
lemma isAntichain_lt_height_preimage {n : ℕ∞} (hn : n ≠ ⊤) :
IsAntichain (· < ·) {x : α | height x = n}
```
Elements sharing a common *finite* height are pairwise incomparable — the level sets of `height` are antichains.
### Why
This is the combinatorial content of **Mirsky's theorem**, which partitions a finite-dimensional order into `krullDim + 1` antichains (and is the easy dual of Dilworth's theorem). Neither Mirsky nor Dilworth currently appears in Mathlib — both are on the tracked list in `docs/1000.yaml` without a `decl`, and searching for `Mirsky` and `Dilworth` returns nothing.
Rather than introduce the partition machinery up front, this contributes the underlying fact, which is what any route to Mirsky needs and is independently useful for reasoning about graded and finite-dimensional orders.
### Design
Stated with `(· < ·)` rather than `(· ≤ ·)` so that it lives in the existing `[Preorder α]` section and needs no antisymmetry; in a partial order the two coincide for distinct elements. The hypothesis is `n ≠ ⊤` rather than a finiteness typeclass, which keeps it usable without extra assumptions — `height_strictMono` needs exactly that much.
### Proof
Three lines on `height_strictMono`, immediately above it in the same file.
### Verification
Compiles against `master` with no errors or warnings. `#print axioms` reports only `[propext, Classical.choice, Quot.sound]`. No new imports or definitions — `+11 -0` in one file.
### Disclosure
Written with AI assistance (Claude Opus 5) and checked against the Lean kernel; I have read the statement and proof before submitting. Happy to rename, or to restate as `IsAntichain (· ≤ ·)` in a `PartialOrder` section if that is preferred.
|
t-order
new-contributor
|
11/0 |
Mathlib/Order/KrullDimension.lean |
1 |
2 |
['github-actions'] |
nobody |
39-27286 1 month ago |
39-29047 39 days ago |
39-28821 39 days |
0 |
| 42718 |
justinhalford author:justinhalford |
feat(Combinatorics/SetFamily): the linear algebra method and the Oddtown theorem |
Adds the basic form of the **linear algebra method** for set families (Babai–Frankl) together with its standard first application, the **Oddtown theorem** (Berlekamp, 1969).
### What's here
- `linearIndependent_of_dotProduct_eq_ite` — a family of vectors whose pairwise dot products form the identity matrix is linearly independent. Stated over an arbitrary field, so it does not rely on positivity; this is the engine of the method.
- `Finset.charVec` — the characteristic vector of a finset, valued in a semiring, with `charVec_apply`.
- `Finset.charVec_dotProduct_charVec` — the dot product of two characteristic vectors is the cardinality of the intersection.
- `Finset.card_le_card_of_odd_card_of_even_card_inter` — **Oddtown**: a family of finsets of odd cardinality, any two of which meet in an even number of elements, has at most `Fintype.card α` members.
### Why
I could not find the linear algebra method anywhere in Mathlib. Searching for `Oddtown`, `Eventown`, Fisher's inequality, `RayChaudhuri` and `FranklWilson` returns nothing, and exactly one file under `Mathlib/Combinatorics/` uses `finrank`/`LinearIndependent` (`SimpleGraph/LapMatrix.lean`, for spectral graph theory). Since the technique underlies a large family of extremal results, the general lemma is stated separately from Oddtown so that Eventown, Fisher's inequality and Ray-Chaudhuri–Wilson can be added on top later.
If this does already exist under a formulation I did not think to search for, I would be glad to be pointed at it.
### Verification
Compiles against `master` (Lean 4.34.0-rc1) with no errors or warnings. `#print axioms` on each of the three results reports only `[propext, Classical.choice, Quot.sound]`. No `sorry`, no new axioms, no `set_option` overrides.
### Disclosure
This file was written with AI assistance (Claude Opus 5) and then checked against the Lean kernel; that is noted in the module docstring as well. Every statement, proof and docstring has been read through by me before submission. Happy to adjust naming, generality or placement to whatever the maintainers prefer.
### Process note
I am a first-time contributor and I am aware the usual convention is to raise a new file on Zulip before opening a PR. Apologies for going in the other order — I am glad to move the discussion to `#mathlib4` if that is preferred, or to close this if the material is not wanted.
---
[](https://gitpod.io/#https://github.com/leanprover-community/mathlib4)
|
t-combinatorics
new-contributor
|
144/0 |
Mathlib.lean,Mathlib/Combinatorics/SetFamily/Oddtown.lean |
2 |
3 |
['D-Thomine', 'github-actions'] |
nobody |
39-25777 1 month ago |
39-30261 39 days ago |
39-30035 39 days |
0 |
| 42737 |
Jack1320 author:Jack1320 |
feat(Algebra/Order/Kleene): add Kleene algebra instances for MulOppos… |
Add IdemSemiring, IdemCommSemiring, and KleeneAlgebra instances for MulOpposite, AddOpposite, and ULift, partially addressing #7987.
In accordance to the AI disclosure guidelines - Claude was used as a learning aid, but all code is personally written and reasoned through.
The remaining instances (Subsemiring, Subring, Subalgebra) are deferred to a follow-up PR.
|
t-algebra
new-contributor
label:t-algebra$ |
100/2 |
Mathlib/Algebra/Order/Kleene.lean |
1 |
2 |
['github-actions'] |
nobody |
39-6258 1 month ago |
39-8277 39 days ago |
39-9399 39 days |
0 |
| 42343 |
brianrabern author:brianrabern |
feat(Combinatorics/SimpleGraph): extend a coloring to one more vertex |
Add `Colorable.of_induce_compl_singleton`: if deleting a vertex `v` leaves an `n`-colourable graph and `deg(v) < n`, then `G` itself is `n`-colourable.
This is a local colouring-extension / induction step (colour `G - v`, then assign `v` a free colour). It is useful for inductive arguments such as Brooks' theorem. The global greedy bound `χ ≤ Δ + 1` is developed separately in #38357.
AI assistance: LLM was used to smooth it out and put things in the expected style
---
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[](https://gitpod.io/from-referrer/) |
t-combinatorics
new-contributor
LLM-generated
|
35/0 |
Mathlib/Combinatorics/SimpleGraph/Coloring/Vertex.lean |
1 |
11 |
['Parcly-Taxel', 'SnirBroshi', 'bocowgill', 'brianrabern', 'github-actions'] |
nobody |
38-74139 1 month ago |
48-9172 48 days ago |
50-50466 50 days |
0 |
| 41042 |
Raph-DG author:Raph-DG |
feat(Topology/CategoryTheory): the skyscraper sheaf as a sheaf of modules |
In this PR we define the skyscraper sheaf as a sheaf of modules
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra label:t-algebra$ |
383/0 |
Mathlib.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/Skyscraper.lean |
2 |
5 |
['Raph-DG', 'attilavjda', 'chrisflav', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
38-38788 1 month ago |
38-39321 38 days ago |
53-52437 53 days |
0 |
| 42471 |
mo271 author:mo271 |
feat(RingTheory/LaurentSeries): add Leibniz rule |
This adds `hasseDeriv_mul` and `derivative_mul`.
Written with the help of Gemini
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t-ring-theory
LLM-generated
|
101/0 |
Mathlib/RingTheory/LaurentSeries.lean |
1 |
10 |
['felixpernegger', 'github-actions', 'mathlib-bors', 'mo271', 'wwylele'] |
nobody |
38-37039 1 month ago |
38-37039 38 days ago |
44-35089 44 days |
0 |
| 41478 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph/Paths): more length upper bounds |
Bound the lengths of trails/paths/circuits/cycles by `ENat.card V`/`Nat.card V`/`G.edgeSet.encard`/`G.edgeSet.ncard`.
---
I then used these to slightly golf some other lemmas.
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|
large-import
t-combinatorics
|
37/31 |
Mathlib/Combinatorics/SimpleGraph/Paths.lean |
1 |
2 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
38-21984 1 month ago |
38-24188 38 days ago |
38-27735 38 days |
0 |
| 41373 |
SnirBroshi author:SnirBroshi |
feat(SimpleGraph): some `CliqueFree`/`Free` lemmas |
---
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|
t-combinatorics |
29/0 |
Mathlib/Combinatorics/SimpleGraph/Clique.lean,Mathlib/Combinatorics/SimpleGraph/Copy.lean |
2 |
1 |
['github-actions'] |
nobody |
37-83482 1 month ago |
78-69147 78 days ago |
78-68921 78 days |
1 |
| 41540 |
plp127 author:plp127 |
chore: rename arguments of `Nat.strong_induction_on` |
Name the motive `motive` and name the minor premises according to the case. Also rename for `Fin.strong_induction_on`.
---
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|
63/67 |
Archive/Imo/Imo1981Q3.lean,Archive/Imo/Imo2024Q3.lean,Mathlib/Algebra/Lie/LieTheorem.lean,Mathlib/Algebra/Polynomial/Derivative.lean,Mathlib/Algebra/Polynomial/RuleOfSigns.lean,Mathlib/Algebra/Polynomial/Sequence.lean,Mathlib/Analysis/Analytic/Inverse.lean,Mathlib/Analysis/Analytic/Uniqueness.lean,Mathlib/Combinatorics/Enumerative/Bell.lean,Mathlib/Combinatorics/SimpleGraph/Connectivity/Subgraph.lean,Mathlib/Computability/Language.lean,Mathlib/Data/Fin/Basic.lean,Mathlib/Data/Fintype/Basic.lean,Mathlib/Data/Fintype/Card.lean,Mathlib/Data/Nat/Choose/Central.lean,Mathlib/Data/Nat/Digits/Lemmas.lean,Mathlib/Data/Nat/Init.lean,Mathlib/Data/Nat/Nth.lean,Mathlib/FieldTheory/IsRealClosed/Basic.lean,Mathlib/FieldTheory/Separable.lean,Mathlib/GroupTheory/GroupAction/Jordan.lean,Mathlib/GroupTheory/SpecificGroups/Cyclic.lean,Mathlib/LinearAlgebra/Eigenspace/Triangularizable.lean,Mathlib/LinearAlgebra/Finsupp/Pi.lean,Mathlib/LinearAlgebra/Multilinear/Basic.lean,Mathlib/ModelTheory/Arithmetic/Presburger/Semilinear/Defs.lean,Mathlib/NumberTheory/Bernoulli.lean,Mathlib/NumberTheory/BernoulliPolynomials.lean,Mathlib/NumberTheory/DiophantineApproximation/Basic.lean,Mathlib/NumberTheory/ModularForms/LevelOne/DimensionFormula.lean,Mathlib/NumberTheory/Pell.lean,Mathlib/NumberTheory/Primorial.lean,Mathlib/Order/Fin/Basic.lean,Mathlib/Order/KrullDimension.lean,Mathlib/RingTheory/AdjoinRoot.lean,Mathlib/RingTheory/Etale/QuasiFinite.lean,Mathlib/RingTheory/Ideal/KrullsHeightTheorem.lean,Mathlib/RingTheory/Ideal/Quotient/Nilpotent.lean,Mathlib/RingTheory/IntegralClosure/IsIntegral/AlmostIntegral.lean,Mathlib/RingTheory/LittleWedderburn.lean,Mathlib/RingTheory/Polynomial/Basic.lean,Mathlib/RingTheory/Polynomial/Cyclotomic/Basic.lean,Mathlib/RingTheory/Polynomial/Cyclotomic/Eval.lean,Mathlib/RingTheory/Polynomial/IsIntegral.lean,Mathlib/RingTheory/Polynomial/Nilpotent.lean,Mathlib/RingTheory/Polynomial/Resultant/Basic.lean,Mathlib/RingTheory/WittVector/Defs.lean,Mathlib/RingTheory/WittVector/Frobenius.lean,Mathlib/RingTheory/WittVector/StructurePolynomial.lean,Mathlib/RingTheory/ZariskisMainTheorem.lean,Mathlib/Topology/Metrizable/Uniformity.lean |
51 |
3 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
37-69374 1 month ago |
37-72447 37 days ago |
40-58858 40 days |
0 |
| 42788 |
andreylukin author:andreylukin |
feat(Combinatorics/Sperner): define facet incidence data |
## Summary
Adds a small finite facet-ridge incidence interface intended as a prerequisite for the general Sperner lemma (#25231).
- defines finite facets, ridges, and their incidence relation;
- assumes every ridge has one or two cofacets;
- defines boundary and interior ridges and proves that they are disjoint and partition the ridges.
This deliberately does not claim the geometric Sperner theorem. A future development must connect finite triangulations of the standard simplex to this incidence interface and establish the required coface-count property.
## Validation
- `lake build Mathlib.Combinatorics.Sperner.Basic`
- `lake env lean -DwarningAsError=false Mathlib.lean`
Towards #25231
|
t-combinatorics
new-contributor
|
117/0 |
Mathlib.lean,Mathlib/Combinatorics/Sperner/Basic.lean |
2 |
2 |
['github-actions'] |
nobody |
37-7243 1 month ago |
37-9938 37 days ago |
37-9832 37 days |
0 |
| 42758 |
cameronfreer author:cameronfreer |
feat(ModelTheory): add syntax and semantics for infinitary logic |
Add basic syntax and semantics for infinitary model theory of L∞ω (and Lω₁ω).
The new `BoundedFormulaInf L ι α n` uses index type `ι` for all of a formula's infinitary conjunctions and disjunctions, and the definitional
```lean
abbrev BoundedFormulaω (α : Type u') (n : ℕ) := L.BoundedFormulaInf ℕ α n
```
lands in exactly the universe of the finitary `BoundedFormula`, as suggested by @plp127 in [#mathlib4 > ModelTheory: API for infinitary formulas of L_{∞,ω} @ 💬](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/ModelTheory.3A.20API.20for.20infinitary.20formulas.20of.20L_.7B.E2.88.9E.2C.CF.89.7D/near/613390601).
This PR contains `iSup`/`iInf` constructors, derived connectives together with `alls`/`exs`, `Realize` with `simp` lemmas for every constructor and derived connective, and the embedding `BoundedFormula.toInf` with `realize_toInf`.
I developed this with extensive assistance from several Claude and GPT models along with [lean4-skills](https://github.com/cameronfreer/lean4-skills) and [lean-lsp-mcp](https://github.com/oOo0oOo/lean-lsp-mcp) as part of the ongoing project [cameronfreer/infinitary-logic](https://github.com/cameronfreer/infinitary-logic/). |
t-logic
LLM-generated
new-contributor
|
446/0 |
Mathlib.lean,Mathlib/ModelTheory/Infinitary/Semantics.lean,Mathlib/ModelTheory/Infinitary/Syntax.lean,MathlibTest/InfinitarySyntax.lean |
4 |
4 |
['cameronfreer', 'github-actions'] |
nobody |
36-78281 1 month ago |
38-61182 38 days ago |
38-60956 38 days |
0 |
| 42819 |
SnirBroshi author:SnirBroshi |
feat(Order/ConditionallyCompleteLattice/Indexed): a binary function achieves its minimum |
In a `ConditionallyCompleteLinearOrder` with `WellFoundedLT`.
Also spell the existing unary version as `∃ i, f i = ⨅ i, f i` instead of `iInf f ∈ range f`.
---
Dual theorems are blocked by #39438
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|
t-order |
16/10 |
Mathlib/Combinatorics/SimpleGraph/Girth.lean,Mathlib/Data/ENat/Lattice.lean,Mathlib/Dynamics/TopologicalEntropy/CoverEntropy.lean,Mathlib/Order/ConditionallyCompleteLattice/Indexed.lean,Mathlib/SetTheory/Cardinal/Cofinality/Basic.lean,Mathlib/SetTheory/Ordinal/Basic.lean |
6 |
1 |
['github-actions'] |
nobody |
36-21183 1 month ago |
36-23651 36 days ago |
36-24243 36 days |
0 |
| 42820 |
tolgadgrmnc27 author:tolgadgrmnc27 |
feat(Data/Nat/Choose): elementary Chernoff bound for tail sums of binomial coefficients |
Adds an elementary, purely combinatorial Chernoff-type bound on tail sums of
binomial coefficients:
```lean
theorem Nat.sum_Ico_choose_le_div (n m : ℕ) {x : α} (hx : 1 ≤ x) :
∑ j ∈ Ico m (n + 1), (n.choose j : α) ≤ (1 + x) ^ n / x ^ m
```
together with the specialization at `x = 2`:
```lean
theorem Nat.sum_Ico_choose_le_three_pow_div (n m : ℕ) :
∑ j ∈ Ico m (n + 1), (n.choose j : α) ≤ 3 ^ n / 2 ^ m
```
The proof is the classical exponential moment trick done combinatorially: for
`m ≤ j` and `1 ≤ x` we have `x ^ m ≤ x ^ j`, so the tail sum is bounded by
`x ^ (-m) * ∑ j, n.choose j * x ^ j = x ^ (-m) * (1 + x) ^ n` by the binomial
theorem. A helper `Nat.sum_range_choose_mul_pow` states the binomial theorem in
the convenient form `∑ j ≤ n, n.choose j * x ^ j = (1 + x) ^ n`.
### Why this is not already in Mathlib
* `Nat.sum_range_choose` gives the *total* sum `∑ j ≤ n, n.choose j = 2 ^ n`.
* `Mathlib/Data/Nat/Choose/Bounds.lean` bounds a *single* coefficient
(`choose_le_pow`, `choose_le_two_pow`, `choose_le_pow_div`, …).
* `Mathlib/Probability/Moments/SubGaussian.lean` has Chernoff/Hoeffding, but
measure-theoretically: using it for a counting argument requires setting up a
probability space with independent Bernoulli variables and translating back
to cardinalities.
I could not find a statement bounding a *partial* sum of binomial
coefficients. The version here needs no probability space and applies directly
to counting arguments (its original use was bounding the number of `n < 2 ^ k`
whose first `k` binary digits contain at least `m` ones).
### Notes
* Stated over a general `[Semifield α] [LinearOrder α] [IsStrictOrderedRing α]`,
matching the typeclass style of `Mathlib/Data/Nat/Choose/Bounds.lean`.
* `Ico m (n + 1)` rather than a `filter (m ≤ ·)` form, as is idiomatic in
Mathlib; the two are equal by `Finset.filter_le_eq_Ico`-style reasoning.
* Names are of course open to bikeshedding.
---
- [x] depends on: nothing
|
t-data
new-contributor
|
84/0 |
Mathlib.lean,Mathlib/Data/Nat/Choose/Tail.lean |
2 |
3 |
['github-actions'] |
nobody |
36-11220 1 month ago |
36-23986 36 days ago |
36-23760 36 days |
0 |
| 42808 |
rshlyakh author:rshlyakh |
feat(Algebra/MonoidAlgebra/Grading): add decomposition lemma |
Adds a `simp` lemma about the decomposition of the `AddMonoidAlgebra R M` grading.
---
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|
t-algebra
new-contributor
label:t-algebra$ |
10/0 |
Mathlib/Algebra/MonoidAlgebra/Grading.lean |
1 |
4 |
['github-actions', 'wwylele'] |
nobody |
36-6619 1 month ago |
36-68887 36 days ago |
36-69272 36 days |
0 |
| 38055 |
felixpernegger author:felixpernegger |
feat(Topology/EMetricSpace): add r-variation |
Redoing #37007 (I had accidently deleted my fork which nuked the PR).
See https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/p-variation for discussion.
---
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|
t-topology
t-analysis
|
395/0 |
Mathlib.lean,Mathlib/Topology/EMetricSpace/RVariation.lean |
2 |
22 |
['felixpernegger', 'github-actions', 'luigi-massacci', 'luigimassacci-ax', 'mathlib-merge-conflicts'] |
nobody |
35-62111 1 month ago |
47-24573 47 days ago |
152-17589 152 days |
0 |
| 42783 |
barni120400 author:barni120400 |
feat(Algebra/MvPolynomial): partial derivatives commute |
Add `MvPolynomial.pderiv_comm`: partial derivatives of a multivariate polynomial commute.
🤖 Prepared with Claude Code
|
t-algebra
new-contributor
LLM-generated
label:t-algebra$ |
10/0 |
Mathlib/Algebra/MvPolynomial/PDeriv.lean |
1 |
2 |
['github-actions', 'wwylele'] |
nobody |
35-33094 1 month ago |
37-72770 37 days ago |
37-72595 37 days |
0 |
| 42540 |
shaikidris author:shaikidris |
feat(Combinatorics): asymptotic / natural density and linear-growth bridge |
Redefines asymptotic / natural density around a shared finite relative-density profile, instead of density along `SummationFilter`s.
* `Set.partialDensity S A b` — proportion of `A ∩ Iio b` in `S`
* `Set.lowerDensity` / `Set.upperDensity` — liminf / limsup of that profile
* `Set.HasDensity` — convergence of the profile; `Set.HasNaturalDensity` — `ℕ` case with `A = univ`
* Basic API: `[0,1]` bounds, empty/univ, finite sets have density `0`, `Finset.range` characterizations
* Drops the filter-parametric layer and the junk-valued `naturalDensity`
* Opt-in `Mathlib.Combinatorics.AsymptoticDensity.LinearGrowth`: exact lower/upper density equalities for the counting function `n ↦ #{x ∈ Finset.range n | x ∈ S}`, with no `LinearGrowth` dependency on the core density module
* Retargets the Schnirelmann TODO to this module; Schnirelmann-density comparison proofs are left for follow-up (the linear-growth bridge is proved here)
AI disclosure: this PR is primarily LLM-generated (OpenAI Codex). I reviewed the design (with review comments feedback), public APIs and edge-cases.
I primarily used these as part of my other project on quantitative descent and I think there is a merit in reusability.
---
---
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|
new-contributor
t-combinatorics
LLM-generated
|
358/2 |
Mathlib.lean,Mathlib/Combinatorics/AsymptoticDensity.lean,Mathlib/Combinatorics/AsymptoticDensity/LinearGrowth.lean,Mathlib/Combinatorics/Schnirelmann.lean |
4 |
16 |
['D-Thomine', 'b-mehta', 'github-actions', 'jcommelin', 'mathlib-bors', 'shaikidris', 'wwylele'] |
nobody |
35-29639 1 month ago |
41-33349 41 days ago |
44-51315 44 days |
0 |
| 41380 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph/Girth): relate `girth` and `egirth` |
Also add `le_girth` to match `le_egirth`, which is the only `egirth` lemma that's missing a `girth` counterpart.
---
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|
t-combinatorics |
38/4 |
Mathlib/Combinatorics/SimpleGraph/Girth.lean |
1 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
35-3816 1 month ago |
65-7108 65 days ago |
78-26421 78 days |
1 |
| 41433 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph/Paths): more path/circuit/cycle lemmas |
- two `(p.append q).IsPath` lemmas (splitting to either `p` & `q.tail` or `p.dropLast` & `q`)
- `p.reverse.IsCircuit`
- `p.IsTrail → p.{take/drop/tail/dropLast}.IsTrail`
- `p.dropLast.IsPath ↔ p.tail.IsPath`
- `p.IsCycle ↔ p.dropLast.IsPath ∧ 3 ≤ p.length`
---
Golfs a few small things using the new lemmas as a drive by.
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|
t-combinatorics |
50/15 |
Mathlib/Combinatorics/SimpleGraph/Paths.lean |
1 |
1 |
['github-actions'] |
nobody |
34-81759 1 month ago |
74-27489 74 days ago |
76-59149 76 days |
1 |
| 42731 |
martinwintermath author:martinwintermath |
feat(LinearAlgebra/Dimension): add corank for submodules |
Adds
```lean4
noncomputable def corank (p : Submodule R M) : Cardinal :=
Module.rank R (M ⧸ p)
```
and basic lemmas.
---
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|
t-algebra label:t-algebra$ |
107/0 |
Mathlib.lean,Mathlib/LinearAlgebra/Dimension/Corank.lean |
2 |
1 |
['github-actions'] |
nobody |
34-78319 1 month ago |
39-14726 39 days ago |
39-14500 39 days |
0 |
| 42881 |
forxhunter author:forxhunter |
feat(Analysis/SpecialFunctions/Gamma): Mittag-Leffler expansion of the Beta function |
For `0 < re u` and `0 < re v`, the Beta function admits the classical absolutely
convergent partial-fraction (Mittag-Leffler) expansion over its poles in the first
variable:
`Β(u, v) = ∑' n : ℕ, Ring.choose (n - v) n / (n + u)` (`Complex.hasSum_betaIntegral`),
where `Ring.choose (n - v) n = (1 - v)⁽ⁿ⁾ / n!` is the `n`-th binomial-series
coefficient of `x ↦ (1 - x) ^ (v - 1)`. The proof expands the Euler integral
`Complex.betaIntegral` by the binomial series
(`Complex.one_div_one_sub_cpow_hasFPowerSeriesOnBall_zero`) and integrates term by
term via `MeasureTheory.hasSum_integral_of_summable_integral_norm`.
Main new results, in `Mathlib/Analysis/SpecialFunctions/Gamma/BetaMittagLeffler.lean`:
* `Ring.choose_add_natCast_eq_prod_range`:
`Ring.choose (t + n) n = ∏ k < n, (t + k + 1) / (k + 1)` in a characteristic-zero
field (the rising-factorial form `(t + 1)⁽ⁿ⁾ / n!` with the factorial distributed
into the product).
* `Complex.norm_ringChoose_add_natCast_le`: the Stirling-free growth bound
`‖Ring.choose (t + n) n‖ ≤ Real.exp (normSq t) * (n + 1) ^ t.re` for `t.re ≤ 0`.
Mathlib has no complex Stirling formula and no `Γ`-ratio asymptotics, so the
textbook route via `Ring.choose (t + n) n ∼ n ^ t / Γ (t + 1)` is unavailable; the
proof instead applies `Real.log (1 + u) ≤ u` to each factor of the product above and
sums against `Real.log (n + 1) ≤ harmonic n` and the telescoping bound
`∑ k < n, 1 / (k + 1) ^ 2 ≤ 2 - 2 / (n + 1)`. This bound is what makes the pole
series absolutely convergent (`Complex.summable_norm_ringChoose_div`) for
`t.re < 0`, a restriction that is sharp: at `t = 0` the series is harmonic.
* `Complex.hasSum_ringChoose_mul_pow`: the binomial series
`(1 - x) ^ (-t - 1) = ∑' n, Ring.choose (t + n) n * x ^ n` on the open unit disc,
in `HasSum` form.
* `integral_Ioo_cpow` / `integral_Ioo_rpow`: `∫ x in Ioo 0 1, x ^ w = 1 / (w + 1)`,
`Ioo`-restricted versions of `integral_cpow` / `integral_rpow`.
Motivation: this arises from an ongoing Lean formalization of dispersion relations
and positivity bounds in effective field theory, where the Beta function (the
tree-level Veneziano amplitude at fixed momentum transfer) serves as the witness for
a dispersive spectral representation; the expansion above is exactly its pole/residue
form. The material here is the physics-free analytic core, stated purely in terms of
`Complex.betaIntegral` and `Ring.choose`.
**AI disclosure**: this PR was substantially generated with Claude Code (Anthropic) —
proof scripts, the Stirling-free bounding strategy, and the port to current master.
It is opened as a **draft** while the human author reviews the content; it will be
marked ready only after that review, per the policy that contributors must understand
and be able to defend AI-assisted contributions. The `LLM-generated` label applies
and should be added by a maintainer.
awaiting-author items (will be resolved before marking ready):
- [x] Author review of the full file per the AI-contribution policy: done.
- [x] The `Authors:` line is finalized as `Tianyu (forxhunter)`
- [ ] If reviewers prefer, `Ring.choose_add_natCast_eq_prod_range` can move to
`Mathlib/RingTheory/Binomial.lean` and `integral_Ioo_cpow` / `integral_Ioo_rpow`
to `Mathlib/Analysis/SpecialFunctions/Integrals/Basic.lean`; they are kept in the
new file for now to keep the PR single-file.
---
Possible follow-ups (not in this PR): positivity of `Ring.choose (t + n) n` for real
`t > -1` (and its sharpness at `t < -1`), and the residue identification of
`u ↦ Β(u, v)` at `u = -n` as a `Tendsto`/`meromorphicAt` statement.
|
new-contributor
t-analysis
|
425/0 |
Mathlib.lean,Mathlib/Analysis/SpecialFunctions/Gamma/BetaMittagLeffler.lean |
2 |
2 |
['github-actions'] |
nobody |
34-77304 1 month ago |
34-77898 34 days ago |
34-77862 34 days |
0 |
| 42365 |
hawkrobe author:hawkrobe |
feat(LinearAlgebra/TensorProduct): tensor product of graded modules is graded |
---
Split from #39849, also a first step toward the TODO in `LinearAlgebra/TensorProduct/Graded/Internal.lean` (the tensor product of graded algebras is graded.) I tried to model it after [AddMonoidAlgebra.gradeBy](https://leanprover-community.github.io/mathlib4_docs/Mathlib/Algebra/MonoidAlgebra/Grading.html#AddMonoidAlgebra.gradeBy).
[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
label:t-algebra$ |
158/0 |
Mathlib/Data/DFinsupp/Defs.lean,Mathlib/LinearAlgebra/TensorProduct/Decomposition.lean,Mathlib/LinearAlgebra/TensorProduct/Map.lean |
3 |
2 |
['github-actions'] |
nobody |
34-72978 1 month ago |
34-82467 34 days ago |
49-75848 49 days |
2 |
| 42775 |
hawkrobe author:hawkrobe |
feat(RingTheory/HopfAlgebra): construct Hopf algebras from generators |
Upgrade a bialgebra to a Hopf algebra from antipode data on an algebra-generating set (`HopfAlgebra.ofGenerators`), plus the primitive-element form `HopfAlgebra.ofPrimitives`. Split out of #39841.
This looks more elegant using Sweedler notation (this proof was taken from a comment in #31898) but mathlib doesn't have the notation available as far as I know.
- [x] depends on: #39841 |
t-ring-theory
new-contributor
|
153/6 |
Mathlib.lean,Mathlib/RingTheory/HopfAlgebra/Generators.lean,Mathlib/RingTheory/HopfAlgebra/Primitive.lean |
3 |
3 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
34-31462 1 month ago |
35-44450 35 days ago |
35-59100 35 days |
1 |
| 40955 |
tb65536 author:tb65536 |
feat(NumberTheory/NumberField/ExistsRamified): galois groups are generated by inertia subgroups |
This PR uses Minkowski's theorem to prove that a Galois group of a number field is generated by its inertia subgroups.
---
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- [x] depends on: #40438
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[](https://gitpod.io/from-referrer/)
|
t-ring-theory
t-algebra
label:t-algebra$ |
50/9 |
Mathlib/NumberTheory/NumberField/ExistsRamified.lean |
1 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
34-10233 1 month ago |
34-13587 34 days ago |
34-13363 34 days |
1 |
| 42451 |
FawadHa1der author:FawadHa1der |
perf(Analysis/Distribution/SchwartzSpace): split denseRange_toLpCLM off Basic to shorten the longest pole |
Shortening the "longest pole" in the mathlib build. LLM help was used.
Per [lake prof report](https://speed.lean-lang.org/mathlib4-out/c8830a1d9ceaffabd7c8c7493d9a9be3ead6ea74/) SchwartzSpace/Basic.lean sits on the longest pole. With this change SchwartzSpace/Basic no longer imports SmoothApprox( which imported the whole manifold chain) hence shortening the longest pole by **23s** of ~502 s
denseRange_toLpCLM is moved to a new file SchwartzSpace/DenseLp.lean. |
t-analysis
new-contributor
longest-pole
|
58/16 |
Mathlib.lean,Mathlib/Analysis/Distribution/SchwartzSpace/Basic.lean,Mathlib/Analysis/Distribution/SchwartzSpace/DenseLp.lean,Mathlib/Analysis/Fourier/LpSpace.lean |
4 |
8 |
['FawadHa1der', 'github-actions', 'luigi-massacci', 'mathlib-merge-conflicts'] |
nobody |
34-10042 1 month ago |
34-11574 34 days ago |
41-26125 41 days |
0 |
| 42874 |
teorth author:teorth |
feat(RingTheory/MvPolynomial/Symmetric): basic API lemmas for Multiset.esymm |
Add basic lemmas for the elementary symmetric functions `Multiset.esymm`: `esymm_cons`, `esymm_zero`, `esymm_one`, `esymm_card`, `esymm_eq_zero_of_card_lt`, `two_mul_esymm_two`, and `esymm_map_inv` (with a private auxiliary). Also drop the redundant `@[simp]` on `esymm_pair_one`, which is now provable by `simp` from `esymm_one`.
---
The code here was prepared with AI assistance, but then golfed and reviewed by myself. It will be used in a forthcoming PR on the Newton and Maclaurin inequalities.
[](https://gitpod.io/from-referrer/)
|
t-ring-theory |
46/5 |
Mathlib/RingTheory/MvPolynomial/Symmetric/Defs.lean |
1 |
8 |
['felixpernegger', 'github-actions', 'teorth', 'vlad902'] |
nobody |
33-84968 1 month ago |
34-379 34 days ago |
35-3444 35 days |
1 |
| 42919 |
tb65536 author:tb65536 |
feat(NumberTheory/RamificationInertia/Unramified): generalize `IsUnramifiedAt.of_liesOver` to flat algebras |
This PR generalizes `IsUnramifiedAt.of_liesOver` to flat algebras and deprecates the technical auxiliary lemma `IsUnramifiedAt.of_liesOver_of_ne_bot` for the previous proof.
This also avoids the usage of the old `Ideal.ramificationIdx'`.
---
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[](https://gitpod.io/from-referrer/)
|
t-ring-theory
t-algebra
label:t-algebra$ |
24/6 |
Mathlib/NumberTheory/RamificationInertia/Unramified.lean,Mathlib/RingTheory/Flat/FaithfullyFlat/Algebra.lean,Mathlib/RingTheory/Ideal/GoingDown.lean,Mathlib/RingTheory/Unramified/LocalRing.lean |
4 |
1 |
['github-actions'] |
nobody |
33-69238 1 month ago |
33-74517 33 days ago |
33-74293 33 days |
0 |
| 42921 |
tb65536 author:tb65536 |
chore(RingTheory/RamificationInertia/Ramification): reorganize proofs |
This PR reorganizes the proofs in `RingTheory/RamificationInertia/Ramification.lean` so that `ramificationIdx_eq_normalizedFactors_count` is proved directly rather than relying on `IsDedekindDomain.ramificationIdx'_eq_normalizedFactors_count` which will soon be deprecated.
---
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t-ring-theory
t-algebra
label:t-algebra$ |
42/39 |
Mathlib/RingTheory/RamificationInertia/Ramification.lean |
1 |
1 |
['github-actions'] |
nobody |
33-68443 1 month ago |
33-68502 33 days ago |
33-68277 33 days |
0 |
| 42154 |
plp127 author:plp127 |
feat(RingTheory,FieldTheory): add instances for `adjoin` |
Provide instances of `Algebra.FiniteType` and `Module.Finite` and `Algebra.IsIntegral` for `Algebra.adjoin`. Provide instances of `Algebra.EssFiniteType` and `FiniteDimensional` for `IntermediateField.adjoin`.
---
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|
t-ring-theory |
16/1 |
Mathlib/FieldTheory/IntermediateField/Adjoin/Algebra.lean,Mathlib/FieldTheory/IntermediateField/Adjoin/Basic.lean,Mathlib/RingTheory/FiniteType.lean,Mathlib/RingTheory/IntegralClosure/IsIntegralClosure/Basic.lean |
4 |
5 |
['github-actions', 'leanprover-radar', 'mathlib-merge-conflicts', 'plp127'] |
nobody |
33-66734 1 month ago |
33-68300 33 days ago |
56-2379 56 days |
1 |
| 42649 |
vlad902 author:vlad902 |
chore: delete outdated `proof_wanted` |
[`MvPolynomial.ringKrullDim_of_isNoetherianRing`](https://leanprover-community.github.io/mathlib4_docs/Mathlib/RingTheory/KrullDimension/Polynomial.html#MvPolynomial.ringKrullDim_of_isNoetherianRing) was added two years after this `proof_wanted` and is nearly identical. The difference is that it is defined for arbitrary index sets instead of `Fin` and for `CommRing` instead of `CommSemiring`. This is an artifact of `Ideal.height` being defined for `CommRing`s and `ringKrullDim` for `CommSemiring`s. Otherwise I think the original intention of this `proof_wanted` has already been satisfied.
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file-removed
t-ring-theory
|
0/16 |
Wanted.lean,Wanted/RingTheory/KrullDimension/Basic.lean |
2 |
1 |
['github-actions'] |
nobody |
33-35219 1 month ago |
41-14151 41 days ago |
41-13925 41 days |
0 |
| 41831 |
YaelDillies author:YaelDillies |
chore(RingTheory/TwoSidedIdeal): rid the `SMulMemClass (TwoSidedIdeal R) Rᵐᵒᵖ R` non-instance from its `inst` |
See https://github.com/leanprover-community/mathlib4/pull/40718#discussion_r3573863027.
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|
t-ring-theory |
3/1 |
Mathlib/RingTheory/TwoSidedIdeal/Basic.lean |
1 |
3 |
['Ruben-VandeVelde', 'YaelDillies', 'github-actions'] |
nobody |
32-29469 1 month ago |
32-31783 32 days ago |
66-82847 66 days |
0 |
| 42961 |
D-Thomine author:D-Thomine |
feat(SpecialFunctions/Pow): versions of `le_rpow_inv_iff` for negative exponents |
This PR introduces negative exponent versions of `le_rpow_inv_iff` and `rpow_le_inv_iff`, and golfs a few adjacent lemmas.
---
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|
t-analysis |
24/24 |
Mathlib/Analysis/SpecialFunctions/Pow/Asymptotics.lean,Mathlib/Analysis/SpecialFunctions/Pow/NNReal.lean |
2 |
15 |
['D-Thomine', 'felixpernegger', 'github-actions'] |
nobody |
31-74342 1 month ago |
31-75494 31 days ago |
31-80840 31 days |
0 |
| 42965 |
arihallak author:arihallak |
feat(Analysis/Normed/Group/Pointwise): diameter of pointwise inversion, multiplication, and division |
This PR adds API lemmas for extended and real diameters (`EMetric.ediam` and `Metric.diam`) of pointwise inversion, multiplication, and division of sets in a `SeminormedCommGroup` (and automatically generates the additive counterparts via `@[to_additive]`).
### New declarations
- `ediam_inv` (additive: `ediam_neg`): `ediam s⁻¹ = ediam s`
- `ediam_div_le` (additive: `ediam_sub_le`): `ediam (s / t) ≤ ediam s + ediam t`
- `diam_inv` (additive: `diam_neg`): `diam s⁻¹ = diam s`
- `diam_mul_le` (additive: `diam_add_le`): `diam (s * t) ≤ diam s + diam t` (for bounded sets)
- `diam_div_le` (additive: `diam_sub_le`): `diam (s / t) ≤ diam s + diam t` (for bounded sets)
Tested with all 14 `#lint` linters. |
t-analysis
new-contributor
|
26/0 |
Mathlib/Analysis/Normed/Group/Pointwise.lean |
1 |
6 |
['github-actions', 'wwylele'] |
nobody |
31-63871 1 month ago |
32-61007 32 days ago |
32-60781 32 days |
0 |
| 43015 |
tb65536 author:tb65536 |
refactor(Analysis/Normed/Unbundled/SpectralNorm): extract, generalize, and golf uniqueness of power-multiplicative norms |
This PR extracts uniqueness of power-multiplicative norms to a separate file so that it can be used in a non-archimedean context.
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|
t-analysis |
65/69 |
Mathlib.lean,Mathlib/Analysis/Normed/Unbundled/IsPowMulUnique.lean,Mathlib/Analysis/Normed/Unbundled/SpectralNorm.lean |
3 |
1 |
['github-actions'] |
nobody |
31-16890 1 month ago |
31-17247 31 days ago |
31-17021 31 days |
1 |
| 42956 |
SnirBroshi author:SnirBroshi |
feat(SimpleGraph/Walk/Chord): chords of `Walk.map` |
---
Not sure if `Chord.lean` should import `Maps.lean` or vice versa.
Importing both from `Copy.lean` would avoid `large-import`, but I don't think that's right.
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|
t-combinatorics
large-import
|
38/2 |
Mathlib/Combinatorics/SimpleGraph/Walk/Chord.lean |
1 |
1 |
['github-actions'] |
nobody |
31-1708 1 month ago |
32-76656 32 days ago |
32-76430 32 days |
0 |
| 41522 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph/Paths): existence of longest paths/trails/cycles/circuits |
We already have the existence of a longest path/trail. This adds:
- the existence of a longest cycle/circuit
- the existence of a longest path/trail from a specific vertex
- the existence of a longest path/trail between specific endpoints
- the existence of a longest cycle/circuit at a specific vertex
---
`exists_isTrail_forall_length_le_of_pred` is the common argument that works for any predicate on trails, which is then used to prove the 10 versions mentioned above.
I know this looks a bit ugly, but taking a longest path/trail/cycle/circuit is a useful proof technique.
Also, that predicate version might be useful to get Kempe chains, although I haven't tried it.
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t-combinatorics |
128/22 |
Mathlib/Combinatorics/SimpleGraph/Acyclic.lean,Mathlib/Combinatorics/SimpleGraph/Connectivity/Connected.lean,Mathlib/Combinatorics/SimpleGraph/Paths.lean |
3 |
1 |
['github-actions'] |
nobody |
31-1662 1 month ago |
31-5556 31 days ago |
74-48410 74 days |
0 |
| 42995 |
jacob-greenfield author:jacob-greenfield |
feat: add `List.Pairwise.orderedInsert'`, `List.sortedLE_orderedInsert_LT`, and `List.sortedGE_orderedInsert_GT` |
Introduce a generalized `Pairwise.orderedInsert'` lemma to prove that `Pairwise r l` is maintained after performing an `orderedInsert` using a relation stronger than `r` under certain conditions. Prove `sortedLE_orderedInsert_LT`, showing that `l.orderedInsert (· < ·) a` preserves `SortedLE` for decidable total preorders (analogously for `sortedGE_orderedInsert_GT`). This is useful for inserting an element into a sorted list *behind* any other elements which compare equal.
---
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I was hoping to avoid `omit`, but that would require moving all of `Pairwise.orderedInsert'`, `Pairwise.orderedInsert`, `pairwise_insertionSort`, `sublist_insertionSort'`, `pair_sublist_insertionSort'`, and `mergeSort_eq_insertionSort` after `end sort` on line 365 and reintroducing all the section variables. I also considered moving `Pairwise.orderedInsert'` somewhere _before_ `variable {α β : Type*} (r : α → α → Prop) (s : β → β → Prop)` on line 30, but that would place it before `orderedInsert` is defined. "Omit" seemed like the least invasive approach.
[](https://gitpod.io/from-referrer/)
|
t-data
new-contributor
|
31/11 |
Mathlib/Data/List/Sort.lean |
1 |
2 |
['github-actions'] |
nobody |
30-79544 30 days ago |
31-53373 31 days ago |
31-53147 31 days |
0 |
| 42605 |
tb65536 author:tb65536 |
feat(Analysis/Subadditive): multiplicative Fekete's lemma |
This PR proves Fekete's lemma for nonnegative submultiplicative sequences (the nth roots of a submultiplicative sequence converge). This will be applied to the sequence `‖a ^ k‖ ^ (k : ℝ)⁻¹` in a normed ring.
---
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t-analysis
large-import
|
83/16 |
Mathlib/Analysis/Subadditive.lean |
1 |
3 |
['ADedecker', 'github-actions', 'tb65536'] |
nobody |
30-72709 30 days ago |
42-32857 42 days ago |
42-32632 42 days |
2 |
| 42561 |
SnirBroshi author:SnirBroshi |
feat(Order/RelSeries): order series by refinement |
Define a partial order on `RelSeries`, add basic lemmas for the operations (e.g. `p < p.append q`), and relate to `IsChain` on sets.
This lets us spell "maximal chain" using series.
---
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|
tech debt
t-order
|
150/6 |
Mathlib/Order/RelSeries.lean |
1 |
1 |
['github-actions'] |
nobody |
30-39598 30 days ago |
44-37065 44 days ago |
44-49486 44 days |
0 |
| 43040 |
Qinghev author:Qinghev |
feat(Analysis/Convex): add center mass residual identity |
This adds `Finset.sum_smul_sub_centerMass_eq_zero`, stating that the weighted sum of displacements from a finite center of mass is zero whenever the total weight is nonzero.
---
Codex assisted with drafting and verification. |
t-analysis
new-contributor
|
5/0 |
Mathlib/Analysis/Convex/Combination.lean |
1 |
2 |
['github-actions'] |
nobody |
30-37963 30 days ago |
30-39120 30 days ago |
30-38894 30 days |
0 |
| 43048 |
alreadydone author:alreadydone |
feat(Counterexamples): an invertible semimodule of different cardinality than the semiring |
example due to Sixuan Gu (CUHKSZ) and Wei Qi (Ohio State U)
---
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|
t-algebra label:t-algebra$ |
183/0 |
Counterexamples.lean,Counterexamples/CommSemiring7InvertibleModule6.lean,Mathlib/RingTheory/Spectrum/Maximal/Basic.lean |
3 |
1 |
['github-actions'] |
nobody |
29-80697 29 days ago |
29-82830 29 days ago |
29-82604 29 days |
0 |
| 43051 |
j-loreaux author:j-loreaux |
feat: the non-unital Stone–Weierstrass theorem |
Taken from the module documentation:
The Stone-Weierstrass theorem
(`ContinuousMap.subalgebra_topologicalClosure_eq_top_of_separatesPoints`) guarantees that a
(star) subalgebra of `C(X, 𝕜)`, for `X` compact and `RCLike 𝕜`, which separates points is dense.
The non-unital version is a statement about non-unital (star) subalgebras of `C₀(X, 𝕜)`, the
continuous functions vanishing at infinity on a not-necessarily-compact space `X`. In particular,
a non-unital (star) subalgebra of `C₀(X, 𝕜)` which separates points and is **nowhere vanishing**
(see `Set.NowhereVanishing`) is dense.
We deduce these from the unital versions by passing to the one-point compactification. There
are natural maps `ZeroAtInftyContinuousMap.toOnePoint : C₀(X, R) → C(OnePoint X, R)` sending
`f : C₀(X, R)` to the extension to `OnePoint X` that takes the value `f ∞ = 0`, and in the reverse
direction `ContinuousMap.toZeroAtInfty : C(OnePoint X, R) → C₀(X, R)` sending `f : C(OnePoint X, R)`
to the restriction `fun x : X ↦ f ↑x - f ∞`. The former is a non-unital algebra homomorphism, and
the latter is a continuous linear map (Lipschitz with constant `2`) which maps all the constant
functions to zero. Given a subalgebra `S` of `C₀(X, R)` which is nowhere vanishing and separates
points, the (non-unital) subalgebra `S' := map toOnePoint S` also separates points so the (unital)
subalgebra `adjoin R S'` also separates points, and by the unital version of Stone–Weierstrass
is dense in `C(OnePoint X, R)`. As a submodule, the `adjoin R S' = R ∙ 1 ⊔ S'`. Mapping this
back to `C₀(X, R)` we find that `toZeroAtInfty (adjoin R S') = ⊥ ⊔ toZeroAtInfty S' = S`
since `f.toOnePoint.toZeroAtInfty = f` for all `f : C₀(X, R)`. Since `toZeroAtInfty` is a continuous
surjection, `S` must be dense because `adjoin R S'` is dense.
---
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|
t-topology |
285/1 |
Mathlib.lean,Mathlib/Algebra/Algebra/NonUnitalSubalgebra.lean,Mathlib/Algebra/Notation/Support.lean,Mathlib/Algebra/Star/NonUnitalSubalgebra.lean,Mathlib/Topology/Algebra/Algebra.lean,Mathlib/Topology/Algebra/NonUnitalAlgebra.lean,Mathlib/Topology/Algebra/NonUnitalStarAlgebra.lean,Mathlib/Topology/Algebra/StarSubalgebra.lean,Mathlib/Topology/ContinuousMap/NonUnitalStoneWeierstrass.lean,Mathlib/Topology/ContinuousMap/ZeroAtInftyUnitization.lean |
10 |
1 |
['github-actions'] |
nobody |
29-75988 29 days ago |
29-78630 29 days ago |
29-78444 29 days |
0 |
| 41710 |
WenrongZou author:WenrongZou |
feat(FormalGroup): generalize the definition of `FormalGroup.Point` |
This PR generalizes the definition of the point of formal group. This will fit into more cases of applications.
---
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|
t-ring-theory |
120/75 |
Mathlib/RingTheory/FormalGroup/Basic.lean |
1 |
1 |
['github-actions'] |
nobody |
29-49773 29 days ago |
29-50394 29 days ago |
68-5680 68 days |
1 |
| 42608 |
Deicyde author:Deicyde |
doc: add wikidata attributes |
This PR adds a batch of 10 `@[wikidata]` attributes.
Claude helped generate the list of crossrefs (by scanning Wikidata + Mathlib). Comments are generated by [crossref-report](https://github.com/jcommelin/mathlib-crossref-report) and Wikilean.
See https://wikilean.jackmccarthy.org/review?pr=42608 for reviewer UI.
---
|
LLM-generated |
17/3 |
Mathlib/Analysis/Convex/Segment.lean,Mathlib/Analysis/Convex/SimplicialComplex/Basic.lean,Mathlib/Combinatorics/SimpleGraph/Basic.lean,Mathlib/Combinatorics/SimpleGraph/Subgraph.lean,Mathlib/Data/Matrix/Diagonal.lean,Mathlib/Data/Set/Defs.lean,Mathlib/Order/Defs/PartialOrder.lean,Mathlib/RingTheory/MvPolynomial/Homogeneous.lean,Mathlib/Topology/Constructions.lean |
9 |
18 |
['Deicyde', 'SnirBroshi', 'github-actions'] |
nobody |
28-30014 28 days ago |
42-25043 42 days ago |
42-24817 42 days |
0 |
| 43079 |
Parcly-Taxel author:Parcly-Taxel |
chore: rename underscore defs in `JacobiTheta.Bounds` |
In the `HurwitzKernelBounds` namespace:
* `f_nat, g_nat, F_nat -> f, g, F`
* `f_int, F_int -> fZ, FZ` |
t-number-theory
tech debt
|
111/93 |
Mathlib/NumberTheory/LSeries/HurwitzZetaEven.lean,Mathlib/NumberTheory/LSeries/HurwitzZetaOdd.lean,Mathlib/NumberTheory/ModularForms/JacobiTheta/Bounds.lean |
3 |
3 |
['Parcly-Taxel', 'github-actions', 'jcommelin'] |
nobody |
28-29478 28 days ago |
28-47722 28 days ago |
28-47496 28 days |
0 |
| 43029 |
harahu author:harahu |
chore(RingTheory): tidy markdown headers |
This PR:
- ensures all files in `Mathlib/RingTheory` have one and only one H1 header,
- better aligns some H2 headers with the style guide.
For files missing a module header, new headers were authored by Claude Opus 5.
---
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|
t-ring-theory |
48/36 |
Mathlib/RingTheory/AdicCompletion/LocalRing.lean,Mathlib/RingTheory/Algebraic/StronglyTranscendental.lean,Mathlib/RingTheory/DedekindDomain/GaussLemma.lean,Mathlib/RingTheory/Flat/IsBaseChange.lean,Mathlib/RingTheory/GradedAlgebra/Radical.lean,Mathlib/RingTheory/HopkinsLevitzki.lean,Mathlib/RingTheory/Ideal/IdempotentFG.lean,Mathlib/RingTheory/Jacobson/Radical.lean,Mathlib/RingTheory/Kaehler/JacobiZariski.lean,Mathlib/RingTheory/LocalRing/Quotient.lean,Mathlib/RingTheory/Localization/Away/AdjoinRoot.lean,Mathlib/RingTheory/MvPolynomial/MonomialOrder.lean,Mathlib/RingTheory/MvPowerSeries/Expand.lean,Mathlib/RingTheory/MvPowerSeries/LinearTopology.lean,Mathlib/RingTheory/NoetherNormalization.lean,Mathlib/RingTheory/Perfectoid/BDeRham.lean,Mathlib/RingTheory/Perfectoid/FontaineTheta.lean,Mathlib/RingTheory/Perfectoid/Untilt.lean,Mathlib/RingTheory/Polynomial/ShiftedLegendre.lean,Mathlib/RingTheory/PowerSeries/Expand.lean,Mathlib/RingTheory/RegularLocalRing/Defs.lean,Mathlib/RingTheory/SimpleModule/InjectiveProjective.lean,Mathlib/RingTheory/SimpleRing/DivisionRing.lean,Mathlib/RingTheory/SimpleRing/Matrix.lean,Mathlib/RingTheory/Spectrum/Prime/IsOpenComapC.lean,Mathlib/RingTheory/TensorProduct/IsBaseChangeRightExact.lean,Mathlib/RingTheory/TensorProduct/MvPolynomial.lean,Mathlib/RingTheory/Trace/Quotient.lean,Mathlib/RingTheory/WittVector/Frobenius.lean,Mathlib/RingTheory/WittVector/Identities.lean,Mathlib/RingTheory/WittVector/Isocrystal.lean,Mathlib/RingTheory/WittVector/MulP.lean,Mathlib/RingTheory/WittVector/Verschiebung.lean |
33 |
11 |
['github-actions', 'grunweg', 'harahu'] |
nobody |
28-19941 28 days ago |
28-21882 28 days ago |
30-38280 30 days |
0 |
| 40470 |
gasparattila author:gasparattila |
feat(Order/Partition/Finpartition): generalize `atomise` to `GeneralizedBooleanAlgebra` |
---
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|
t-order |
141/66 |
Mathlib/Combinatorics/SimpleGraph/Regularity/Chunk.lean,Mathlib/Order/Partition/Finpartition.lean |
2 |
4 |
['gasparattila', 'github-actions', 'mathlib-dependent-issues'] |
nobody |
28-10217 28 days ago |
39-76307 39 days ago |
39-84820 39 days |
0 |
| 41481 |
SnirBroshi author:SnirBroshi |
feat(SimpleGraph/Connectivity/Connected): a preconnected graph with finitely many edges has finitely many vertices |
`Finite V ↔ Finite G.Dart ↔ G.support.Finite ↔ G.edgeSet.Finite`
---
`#G.Dart = 2 * #G.edgeSet` is also true (#36406) which could simplify the `edgeSet` proof, but it's in `DegreeSum.lean` and more complicated. Having `Finite` theorems seems useful.
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|
t-combinatorics
large-import
|
79/1 |
Mathlib/Combinatorics/SimpleGraph/Basic.lean,Mathlib/Combinatorics/SimpleGraph/Connectivity/Connected.lean,Mathlib/Combinatorics/SimpleGraph/Dart.lean,Mathlib/Combinatorics/SimpleGraph/Walk/Basic.lean |
4 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
27-83264 27 days ago |
49-1379 49 days ago |
61-44336 61 days |
0 |
| 43036 |
SnirBroshi author:SnirBroshi |
feat(Order/RelSeries): a strict order on a finite domain is finite dimensional |
Bound the length of a `RelSeries r` by the cardinality of `α` when `r` is a strict order (irreflexive and transitive), and show:
- `Finite α → r.IsIrrefl → r.IsTrans → Finite (RelSeries r)`
- `Infinite α → Infinite (RelSeries r)`
- `Finite α → Nonempty α → r.IsIrrefl → r.IsTrans → r.FiniteDimensional`
- `r.IsIrrefl → r.IsTrans → r.InfiniteDimensional → Infinite α`
---
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|
t-order |
62/13 |
Mathlib.lean,Mathlib/Order/RelSeries.lean,Mathlib/Order/RelSeries/Lemmas.lean |
3 |
1 |
['github-actions'] |
nobody |
27-70047 27 days ago |
30-52558 30 days ago |
30-53706 30 days |
0 |
| 41685 |
plp127 author:plp127 |
feat: free modular lattice on three generators |
We define `FreeModLatThree`, the free modular lattice on three generators, as an inductive type and prove the universal property.
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|
t-order
t-data
|
587/0 |
Mathlib.lean,Mathlib/Data/FreeModLatThree.lean |
2 |
9 |
['alreadydone', 'github-actions', 'plp127', 'tb65536'] |
nobody |
27-14749 27 days ago |
65-80266 65 days ago |
69-17461 69 days |
0 |
| 43023 |
SnirBroshi author:SnirBroshi |
feat(Order/RelSeries): change `FiniteDimensional` to allow empty types |
This also means that the zero ring is now `FiniteRingKrullDim`, and that `Empty` is `FiniteDimensionalOrder`.
[#mathlib4 > Should zero ring be finite-dimensional?](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Should.20zero.20ring.20be.20finite-dimensional.3F/with/495871110)
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|
t-order |
67/55 |
Mathlib/Order/KrullDimension.lean,Mathlib/Order/RelSeries.lean,Mathlib/RingTheory/Ideal/Height.lean,Mathlib/RingTheory/Ideal/KrullsHeightTheorem.lean,Mathlib/RingTheory/KrullDimension/Basic.lean |
5 |
3 |
['SnirBroshi', 'github-actions', 'themathqueen'] |
nobody |
27-1841 27 days ago |
31-8367 31 days ago |
31-8141 31 days |
0 |
| 43109 |
tb65536 author:tb65536 |
chore(Algebra/Order/Hom/Basic): split file by imports |
I ran intro trouble importing `Algebra/Order/Hom/Basic` into `Algebra/Order/BigOperators/Group/Finset` (which has `assert_not_exists Ring`) in order to prove subadditivity for finite sums.
The file `Algebra/Order/Hom/Basic` is already organized into a basic section, a group norms section, and a ring norms section, so splitting the file along those divisions seemed simplest.
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|
t-algebra
t-order
label:t-algebra$ |
268/198 |
Mathlib.lean,Mathlib/Algebra/Order/AbsoluteValue/Basic.lean,Mathlib/Algebra/Order/Hom/Basic.lean,Mathlib/Algebra/Order/Hom/GroupNormClass.lean,Mathlib/Algebra/Order/Hom/RingNormClass.lean,Mathlib/Analysis/Normed/Order/Hom/Basic.lean |
6 |
1 |
['github-actions'] |
nobody |
26-86293 26 days ago |
26-86347 26 days ago |
26-86122 26 days |
1 |
| 43112 |
themathqueen author:themathqueen |
feat(Topology/Algebra/Module/Spaces/CLM): linear map version of `apply` |
This is the linear map version of `apply` that can be used for non-normed spaces.
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|
t-topology |
31/2 |
Mathlib/Analysis/Normed/Operator/Bilinear.lean,Mathlib/Topology/Algebra/Module/Spaces/ContinuousLinearMap.lean |
2 |
1 |
['github-actions'] |
nobody |
26-81376 26 days ago |
26-84359 26 days ago |
26-84133 26 days |
1 |
| 43113 |
themathqueen author:themathqueen |
feat(Topology/Algebra/Module/Spaces/CLM): linear map version of `smulRightL` |
This is the linear map version of `smulRightL` that can be used for non-normed spaces.
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t-topology |
20/1 |
Mathlib/Analysis/Normed/Operator/Bilinear.lean,Mathlib/Topology/Algebra/Module/Spaces/ContinuousLinearMap.lean |
2 |
1 |
['github-actions'] |
nobody |
26-80074 26 days ago |
26-82389 26 days ago |
26-82336 26 days |
1 |
| 43102 |
tb65536 author:tb65536 |
chore(GroupTheory/PGroup): to_additivize most of the file |
This PR to_additivizes most of `GroupTheory/PGroup.lean`.
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|
t-algebra
t-group-theory
label:t-algebra$ |
82/16 |
Mathlib/Algebra/Module/ZMod.lean,Mathlib/GroupTheory/PGroup.lean,Mathlib/Tactic/Translate/ToAdditive.lean |
3 |
6 |
['SnirBroshi', 'acmepjz', 'github-actions', 'tb65536'] |
nobody |
26-77785 26 days ago |
27-8447 27 days ago |
27-8223 27 days |
0 |
| 40620 |
SnirBroshi author:SnirBroshi |
feat(Order/SuccPred/CompleteLinearOrder): `sSup s = ⊤` iff theorems for `WithTop` |
For a `[ConditionallyCompleteLinearOrderBot α]` with `(s : Set (WithTop α))`:
- `sSup s = ⊤ ↔ ∀ a : α, ∃ b ∈ s, a < b`
- `[NoMaxOrder α] → sSup s = ⊤ ↔ ∀ a : α, ∃ b ∈ s, a ≤ b`
and the matching `iSup` theorems.
These can't be dualized because `ConditionallyCompleteLinearOrderBot` has no dual.
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|
t-order |
26/0 |
Mathlib/Order/SuccPred/CompleteLinearOrder.lean,Mathlib/Order/WithBot.lean |
2 |
2 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
26-70387 26 days ago |
26-73302 26 days ago |
26-80374 26 days |
1 |
| 42815 |
korbonits author:korbonits |
feat(Analysis/Calculus/VectorField): the Lie bracket acts as a derivation on functions |
Add `VectorField.lieBracket_apply_fun`: for a function `f` with derivative `f'` and vector fields `V`, `W`,
D(f' W) V - D(f' V) W = f' [V, W]
i.e. the familiar `[V, W] f = V (W f) - W (V f)`. The two second-derivative terms cancel by symmetry of the second derivative, leaving exactly the bracket.
Placed beside the existing `lieBracket_smul_*` product rules. Needs no new import: `FDeriv.Symmetric` is already imported for `second_derivative_symmetric`, which supplies the symmetry and is the source of the `IsRCLikeNormedField` hypothesis.
---
AI disclosure
- level: Level 5 / Level 6 in [the link shared](https://www.visidata.org/blog/2026/ai/#self-assessed-ai-level-for-contributions) I feel confident about the math but I am still learning Lean itself
- code: most of the Lean in this PR was drafted by Claude Code (statements, proofs, docstrings).
- direction and review: I chose the contribution, made the decisions, reviewed every line, and wrote all GitHub/Zulip comments. |
t-analysis
new-contributor
LLM-generated
|
29/0 |
Mathlib/Analysis/Calculus/VectorField.lean |
1 |
4 |
['github-actions', 'korbonits'] |
nobody |
26-44958 26 days ago |
36-48032 36 days ago |
36-47806 36 days |
0 |
| 43123 |
harahu author:harahu |
chore(Testing): tidy markdown headers |
This PR ensures files in `Mathlib/Testing` have one and only one H1 header.
In the cases where the file did not already have an obvious H1 header candidate, a new header was authored by Claude Opus 5.
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|
5/1 |
Mathlib/Testing/Plausible/Functions.lean,Mathlib/Testing/Plausible/Sampleable.lean,Mathlib/Testing/Plausible/Testable.lean |
3 |
1 |
['github-actions'] |
nobody |
26-33563 26 days ago |
26-34297 26 days ago |
26-34071 26 days |
0 |
| 43122 |
harahu author:harahu |
chore(Tactic): tidy markdown headers |
This PR ensures files in `Mathlib/Tactic` have one and only one H1 header.
In the cases where the file did not already have an obvious H1 header candidate, a new header was authored by Claude Opus 5.
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|
|
60/37 |
Mathlib/Tactic/Algebraize.lean,Mathlib/Tactic/ApplyCongr.lean,Mathlib/Tactic/Bound.lean,Mathlib/Tactic/CategoryTheory/CheckCompositions.lean,Mathlib/Tactic/Conv.lean,Mathlib/Tactic/CrossRefAttribute.lean,Mathlib/Tactic/DSimpPercent.lean,Mathlib/Tactic/DeclarationNames.lean,Mathlib/Tactic/DepRewrite.lean,Mathlib/Tactic/FunProp/Attr.lean,Mathlib/Tactic/FunProp/Decl.lean,Mathlib/Tactic/FunProp/Elab.lean,Mathlib/Tactic/FunProp/FunctionData.lean,Mathlib/Tactic/FunProp/Mor.lean,Mathlib/Tactic/FunProp/Theorems.lean,Mathlib/Tactic/FunProp/ToBatteries.lean,Mathlib/Tactic/FunProp/Types.lean,Mathlib/Tactic/GuardGoalNums.lean,Mathlib/Tactic/GuardHypNums.lean,Mathlib/Tactic/Inhabit.lean,Mathlib/Tactic/Linarith.lean,Mathlib/Tactic/Linter/Style.lean,Mathlib/Tactic/Linter/TextBased.lean,Mathlib/Tactic/Linter/UnusedTacticExtension.lean,Mathlib/Tactic/NormNum/Core.lean,Mathlib/Tactic/NormNum/OfScientific.lean,Mathlib/Tactic/NormNum/Pow.lean,Mathlib/Tactic/NormNum/Result.lean,Mathlib/Tactic/Positivity/Basic.lean,Mathlib/Tactic/Positivity/Core.lean,Mathlib/Tactic/Ring/NamePolyVars.lean,Mathlib/Tactic/Ring/NamePowerVars.lean,Mathlib/Tactic/SplitIfs.lean,Mathlib/Tactic/Tauto.lean,Mathlib/Tactic/ToAdditive.lean,Mathlib/Tactic/ToDual.lean,Mathlib/Tactic/Widget/CommDiag.lean |
37 |
1 |
['github-actions'] |
nobody |
26-33044 26 days ago |
26-36322 26 days ago |
26-36096 26 days |
0 |
| 42578 |
harahu author:harahu |
chore: avoid lazy continuation lines in markdown |
This PR fixes Markdown lazy continuation lines in documentation. The bulk of the changes are:
1. Continuation lines of a list item are indented to the item's content column instead of sitting flush with the marker.
2. A blank line is inserted where a paragraph following a list was being absorbed into the final list item.
This is done because lazy continuation can make it hard to understand the intent of the text when reading the raw source. It is also a source of flawed rendering, as in case 2 above.
Some other minor changes are also included:
- RingTheory/FormalGroup/Basic.lean: the qualifier "when F is a commutative formal group law" moves from AddMonoid to AddCommMonoid, which is where it belongs: instance : AddMonoid (F.Point σ) is unconditional, instance [F.IsComm] : AddCommMonoid (F.Point σ) is not.
- Tactic/Algebra/Basic.lean: typo, experssions → expressions.
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|
136/121 |
Mathlib/Algebra/Category/ModuleCat/Presheaf/ColimitFunctor.lean,Mathlib/Algebra/Group/Subgroup/Basic.lean,Mathlib/Algebra/Homology/SpectralSequence/ComplexShape.lean,Mathlib/Algebra/Lie/LieTheorem.lean,Mathlib/Algebra/Lie/Prod.lean,Mathlib/Algebra/LieRinehartAlgebra/Subalgebra.lean,Mathlib/AlgebraicGeometry/EllipticCurve/LFunction.lean,Mathlib/AlgebraicGeometry/Gluing.lean,Mathlib/AlgebraicGeometry/ProjectiveSpectrum/Scheme.lean,Mathlib/AlgebraicTopology/Reedy/Basic.lean,Mathlib/AlgebraicTopology/SimplicialSet/AnodyneExtensions/PushoutProduct.lean,Mathlib/AlgebraicTopology/SimplicialSet/Subdivision.lean,Mathlib/AlgebraicTopology/SimplicialSet/TopAdj.lean,Mathlib/Analysis/Calculus/UniformLimitsDeriv.lean,Mathlib/Analysis/Distribution/ContDiffMapSupportedIn.lean,Mathlib/Analysis/Normed/Field/Approximation.lean,Mathlib/Analysis/Normed/Field/Dense.lean,Mathlib/Analysis/Normed/Field/Krasner.lean,Mathlib/Analysis/Normed/Module/Bases.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Chebyshev/Extremal.lean,Mathlib/CategoryTheory/Abelian/Preradical/Colon.lean,Mathlib/CategoryTheory/Limits/Shapes/Pullback/ChosenPullback.lean,Mathlib/CategoryTheory/Sites/Point/OfIsCofiltered.lean,Mathlib/Combinatorics/SimpleGraph/Connectivity/Finite.lean,Mathlib/Data/Bracket.lean,Mathlib/Dynamics/SymbolicDynamics/Basic.lean,Mathlib/GroupTheory/FinitelyPresentedGroup.lean,Mathlib/GroupTheory/Generators.lean,Mathlib/GroupTheory/GroupAction/Blocks.lean,Mathlib/GroupTheory/Perm/Fin.lean,Mathlib/Lean/Meta/RefinedDiscrTree/Basic.lean,Mathlib/LinearAlgebra/InvariantBasisNumber.lean,Mathlib/LinearAlgebra/LinearPMap.lean,Mathlib/LinearAlgebra/Matrix/Rank.lean,Mathlib/LinearAlgebra/SymplecticGroup.lean,Mathlib/Logic/Equiv/Array.lean,Mathlib/Logic/Equiv/Fin/Rotate.lean,Mathlib/NumberTheory/WellApproximable.lean,Mathlib/Probability/Process/Adapted.lean,Mathlib/RingTheory/FormalGroup/Basic.lean,Mathlib/Tactic/Algebra/Basic.lean,Mathlib/Tactic/Polynomial/Basic.lean,Mathlib/Topology/Category/LightProfinite/Injective.lean,Mathlib/Topology/Gluing.lean,Mathlib/Topology/MetricSpace/PiNat.lean,Mathlib/Topology/Sheaves/Presheaf.lean,Mathlib/Topology/Sion.lean |
47 |
3 |
['SnirBroshi', 'github-actions', 'harahu'] |
nobody |
26-24389 26 days ago |
26-26470 26 days ago |
26-26244 26 days |
0 |
| 40496 |
thefundamentaltheor3m author:thefundamentaltheor3m |
feat(LinearAlgebra/AffineSpace/Simplex): the surface of a simplex |
I wrote the definition myself, and got Claude to generate some of the boilerplate code (which I then reviewed and had it clean up).
---
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|
t-algebra
LLM-generated
new-contributor
label:t-algebra$ |
97/5 |
Mathlib/LinearAlgebra/AffineSpace/Simplex/Basic.lean |
1 |
8 |
['github-actions', 'grunweg', 'mathlib-bors', 'mathlib-merge-conflicts', 'thefundamentaltheor3m', 'wwylele'] |
nobody |
25-84788 25 days ago |
46-23500 46 days ago |
59-52694 59 days |
0 |
| 42771 |
xgenereux author:xgenereux |
feat(RingTheory/DedekindDomain/AdicValuation): adic valuations are trivial on subfields |
Two lemmas about height one primes and their behaviors on a subfield `k` of `R`.
- Its associated valuation is trivial on `k`.
- Its nonzero elements are transcendental over `k`
AI disclaimer: I used AI to suggest placement in the file and docstring. Lemmas are mine.
Co-authored-by: María Inés de Frutos Fernández <[mariaines.dff@gmail.com](mailto:mariaines.dff@gmail.com)>
---
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|
t-ring-theory |
21/0 |
Mathlib/RingTheory/DedekindDomain/AdicValuation.lean |
1 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
25-82328 25 days ago |
25-82865 25 days ago |
29-3041 29 days |
0 |
| 42626 |
mkaratarakis author:mkaratarakis |
feat(Analysis/Matrix): operator norm and spectral radius of row-stochastic matrices |
Operator-norm and spectral-radius bounds for row-stochastic matrices: ‖A *ᵥ v‖ ≤ ‖v‖, ‖A‖ ≤ 1, and spectralRadius ℝ A ≤ These need Analysis imports, so they go in a new file rather than in `LinearAlgebra/Matrix/Stochastic.lean`.More material on stochastic matrices will follow here. Split off from #39914.
---
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@or4nge19
|
t-analysis |
52/1 |
Mathlib.lean,Mathlib/Analysis/Matrix/Stochastic.lean,Mathlib/LinearAlgebra/Matrix/Stochastic.lean |
3 |
10 |
['eric-wieser', 'github-actions', 'j-loreaux', 'mkaratarakis', 'tb65536'] |
nobody |
25-79677 25 days ago |
27-13911 27 days ago |
29-36486 29 days |
2 |
| 43139 |
plp127 author:plp127 |
feat: make `MvPFunctor` universe-polymorphic |
We mirror what is done for the univariate `PFunctor` and make `MvPFunctor` universe-polymorphic. Certain declarations are kept not universe polymorphic for now, including `MvQPF` and many things relating to the `W` and `M` types being fixpoints.
---
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|
t-data |
130/105 |
Mathlib/Data/PFunctor/Multivariate/Basic.lean,Mathlib/Data/PFunctor/Multivariate/M.lean,Mathlib/Data/PFunctor/Multivariate/W.lean,Mathlib/Data/QPF/Multivariate/Basic.lean,Mathlib/Data/QPF/Multivariate/Constructions/Cofix.lean,Mathlib/Data/QPF/Multivariate/Constructions/Fix.lean |
6 |
1 |
['github-actions'] |
nobody |
25-76978 25 days ago |
25-82124 25 days ago |
25-81898 25 days |
0 |
| 43144 |
gotrevor author:gotrevor |
doc(100-yaml): claim #53 (Pi is Transcendental) via an external Lean 4 formalization |
Adds `authors` + `links.result` to `docs/100.yaml` entry **53, "Pi is Transcendental"**, which
currently has a title and nothing else.
The formalization lives outside mathlib, in Lean 4:
[`PiTranscendental.lean`](https://github.com/gotrevor/lean-formalizations/blob/main/src/LeanFormalizations/NumberTheory/Transcendence/PiTranscendental.lean)
— `transcendental_pi_axiomClean : Transcendental ℚ Real.pi`, with
`#print axioms` = `[propext, Classical.choice, Quot.sound]` (re-verified 2026-08-25 against
mathlib v4.31.0). It builds the full Lindemann assembly on mathlib's own
`exp_polynomial_approx`: the analytic engine generalised to an arbitrary conjugate polynomial,
plus the algebraic half (symmetric functions over the Galois conjugates of `iπ`, via the
fundamental theorem of symmetric polynomials). `e_transcendental` is proved in the same chain.
No `decl` field, since that is for in-mathlib declarations and is existence-checked. `title` is
untouched. This follows the existing external-formalization entries: 8 (Compass), 24
(flypitch/CH), 31 (Ramsey), 36 (Brouwer), and 67 ("e is Transcendental").
`scripts/yaml_check.py docs/{100,1000,overview,undergrad}.yaml` exits 0.
### On #28013
[#28013](https://github.com/leanprover-community/mathlib4/pull/28013) (Lindemann–Weierstrass,
@astrainfinita) is open and active, and when it lands entry 53 should get a proper in-mathlib
`decl` — at which point this pointer has done its job and should be replaced or dropped. I am
not proposing this as an alternative to that work, and I would rather it landed than mine be
listed. This is only meant to record that a checkable Lean 4 proof exists in the meantime, which
is what `links.result` is for on the other five entries. Happy to close this if maintainers would
rather the entry stay empty until #28013 merges.
### Use of AI
The Lean development this points at was largely written by Claude working in long autonomous
sessions against a `lake build` + `#print axioms` gate, and two symmetric-function lemmas came
from Harmonic's Aristotle and were re-verified in the repository's own kernel; the repo's README
and commit history say so. This PR's four-line YAML diff was likewise drafted with Claude. I have
checked the axiom footprint myself and the linked file is machine-checked end to end.
|
LLM-generated
new-contributor
|
4/0 |
docs/100.yaml |
1 |
3 |
['github-actions', 'gotrevor'] |
nobody |
25-70189 25 days ago |
25-70771 25 days ago |
25-70545 25 days |
0 |
| 41578 |
kim-em author:kim-em |
chore: weaken hypotheses of Algebra.IsUnramifiedIn.ramificationIdx_eq_one |
This PR drops the unused `[IsDomain R] [Module.Finite ℤ R] [CharZero R] [Algebra.IsIntegral R S]` hypotheses from `Algebra.IsUnramifiedIn.ramificationIdx_eq_one` by proving via `Ideal.ramificationIdx_eq_one` directly rather than through `Ideal.ramificationIdx_eq_one_iff`, and tidy the docstrings in `Mathlib/RingTheory/Unramified/Locus.lean` (fix a stray space before a period, mention `Algebra.IsUnramifiedIn` in the module docstring, add a missing blank line).
Follow-up to [#40886 (feat: add Algebra.IsUnramifiedIn)](https://github.com/leanprover-community/mathlib4/pull/40886).
🤖 Prepared with Claude Code
|
LLM-generated |
9/7 |
Mathlib/NumberTheory/RamificationInertia/Unramified.lean,Mathlib/RingTheory/Unramified/Locus.lean |
2 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
25-45877 25 days ago |
25-47296 25 days ago |
54-28410 54 days |
0 |
| 42353 |
sankalpsthakur author:sankalpsthakur |
feat(RingTheory): add nilpotence lemmas for zero sums |
In a commutative semiring, adds:
- `sq_eq_sq_of_add_eq_zero`: if `x + y = 0` then `x^2 = y^2`
- `IsNilpotent.of_add_eq_zero_left`: if `x + y = 0` and `y` is nilpotent, so is `x`
- `isNilpotent_iff_of_add_eq_zero`: under `x + y = 0`, `x` is nilpotent iff `y` is
Motivated by #10539.
### Validation
Built locally: `lake build Mathlib.RingTheory.Nilpotent.Basic` — succeeds.
Closes #10539
### AI/LLM disclosure
AI coding tools were used to help draft this change and PR description. I reviewed the complete change, understand the reasoning, and verified the build locally before submitting. |
t-ring-theory
new-contributor
LLM-generated
|
49/0 |
Mathlib/RingTheory/Nilpotent/Basic.lean |
1 |
27 |
['github-actions', 'sankalpsthakur', 'tb65536'] |
nobody |
25-24550 25 days ago |
26-40096 26 days ago |
32-47658 32 days |
0 |
| 43157 |
NoahW314 author:NoahW314 |
feat(Algebra/Category): divisible R-modules over a PID are injective |
This generalizes the existing result that divisible groups that injective to hold over any principal ideal ring. The same proof works with only minor modifications.
---
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|
large-import
t-algebra
label:t-algebra$ |
27/16 |
Mathlib/Algebra/Category/Grp/Injective.lean,Mathlib/Algebra/Category/ModuleCat/Injective.lean,Mathlib/Algebra/Module/CharacterModule.lean |
3 |
2 |
['NoahW314', 'github-actions'] |
nobody |
25-1162 25 days ago |
25-47060 25 days ago |
25-47375 25 days |
0 |
| 39870 |
YaelDillies author:YaelDillies |
feat(Data): interleaving lists |
Define interleaving of lists as a relation.
This will be used to define interleaving polynomials, which in turn are a central concept in the line of work that earned June Huh his 2022 Fields medal.
From RealRooted
---
Interleaving of lists as an operation was merged in https://github.com/leanprover-community/batteries/pull/1853.
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|
t-data |
137/0 |
Mathlib.lean,Mathlib/Data/List/Interleave.lean |
2 |
21 |
['YaelDillies', 'chenson2018', 'eric-wieser', 'github-actions', 'mathlib-merge-conflicts', 'ocfnash'] |
nobody |
24-62106 24 days ago |
80-11891 80 days ago |
117-66622 117 days |
0 |
| 43082 |
WenrongZou author:WenrongZou |
feat(RingTheory/Henselian): add Hensel lemma for non-monic polynomials |
In a ring `R` that is Henselian at an ideal `I`, a simple root modulo `I` lifts to a root in `R` even when the polynomial is not monic.
And for local ring, we prove two more equivalent description of the theorem [`HenselianLocalRing.TFAE`](https://leanprover-community.github.io/mathlib4_docs/Mathlib/RingTheory/Henselian.html#HenselianLocalRing.TFAE).
---
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|
t-ring-theory |
111/20 |
Mathlib/Algebra/Polynomial/Reverse.lean,Mathlib/RingTheory/Henselian.lean |
2 |
2 |
['github-actions'] |
nobody |
24-39427 24 days ago |
28-36999 28 days ago |
28-36773 28 days |
0 |
| 42283 |
YaelDillies author:YaelDillies |
feat(RingTheory): diagonalisable Hopf algebras |
Define diagonalisable Hopf algebras as those that are isomorphic to some group algebra. We will prove in a later PR that they are closed under tensor product.
From Toric
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|
t-ring-theory
toric
|
168/1 |
Mathlib.lean,Mathlib/LinearAlgebra/Finsupp/LinearCombination.lean,Mathlib/LinearAlgebra/LinearIndependent/Defs.lean,Mathlib/RingTheory/HopfAlgebra/Basic.lean,Mathlib/RingTheory/HopfAlgebra/Diagonalisable.lean |
5 |
1 |
['github-actions'] |
nobody |
24-14944 24 days ago |
52-40329 52 days ago |
52-40155 52 days |
1 |
| 40826 |
felixpernegger author:felixpernegger |
feat(ci): autolabel PRs with "Generated with Claude Code" |
When one tells Claude code to open a PR, it will usually end the description with "🤖 Generated with [Claude Code](https://claude.com/claude-code)" (Im sure almost everyone will have seen this at this point).
This PR adds an action that will autolabel PRs with that ending as "LLM-generated", which might save a bit of time.
[List of all such PRs to mathlib](https://github.com/leanprover-community/mathlib4/pulls?q=is%3Apr+%F0%9F%A4%96+Generated+with+Claude+Code+)
(Ironically enough, I made this PR with Codex...)
---
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[](https://gitpod.io/from-referrer/)
|
CI
LLM-generated
|
44/0 |
.github/workflows/label_llm_generated.yml,docs/workflows.md |
2 |
6 |
['SnirBroshi', 'felixpernegger', 'github-actions', 'joneugster'] |
nobody |
24-7712 24 days ago |
93-77556 93 days ago |
93-77675 93 days |
0 |
| 42507 |
yuanyi-350 author:yuanyi-350 |
feat(Topology/MetricSpace): prove Caristi's fixed-point theorem |
|
t-topology |
77/2 |
Mathlib/Topology/MetricSpace/Contracting.lean |
1 |
1 |
['github-actions'] |
nobody |
23-62111 23 days ago |
45-85743 45 days ago |
45-85517 45 days |
0 |
| 32294 |
jsm28 author:jsm28 |
feat(Geometry/Euclidean/Angle/Incenter): distance from second intersection with circumcircle |
Add the following lemma: given a triangle ABC, suppose an angle bisector from A through the incenter or excenter I meets the circumcircle again at X (including the case of an external bisector at A tangent to the circle, in which case X = A). Then XB = XI (= XC, by applying this lemma again). This is a standard configuration: https://en.wikipedia.org/wiki/Incenter%E2%80%93excenter_lemma
---
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- [x] depends on: #32021
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[](https://gitpod.io/from-referrer/)
|
t-euclidean-geometry |
187/0 |
Mathlib/Geometry/Euclidean/Angle/Incenter.lean |
1 |
24 |
['YaelDillies', 'felixpernegger', 'github-actions', 'jsm28', 'mathlib-dependent-issues', 'mathlib4-merge-conflict-bot', 'peakpoint'] |
nobody |
23-23123 23 days ago |
30-918 30 days ago |
176-62144 176 days |
1 |
| 43197 |
SnirBroshi author:SnirBroshi |
feat(Order/Basic): relation properties of complement relations |
The complement turns `Refl` into `Irrefl`, `Total` into `Asymm`, and `Trichotomous` into `Antisymm`.
---
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|
t-order |
57/9 |
Mathlib/Order/Antichain.lean,Mathlib/Order/Basic.lean |
2 |
5 |
['SnirBroshi', 'chenson2018', 'github-actions'] |
nobody |
23-13980 23 days ago |
23-55955 23 days ago |
23-55729 23 days |
0 |
| 42377 |
norbsvr author:norbsvr |
doc(1000.yaml): add Brauer's theorem on induced characters |
Claims a proof of [Q4958218:](https://www.wikidata.org/wiki/Q4958218) Brauer's theorem on induced characters.
The formalization is in an <a href="https://github.com/norbsvr/BrauerInduction/">external Lean 4 repository</a>. Please see file `README.md` for further information.
---
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|
new-contributor |
3/0 |
docs/1000.yaml |
1 |
3 |
['github-actions'] |
nobody |
22-76056 22 days ago |
49-82874 49 days ago |
49-82648 49 days |
0 |
| 42933 |
teorth author:teorth |
feat(Analysis/Fourier): decay of the Fourier transform of a function with integrable derivatives |
If `f : ℝ → E` is `C^n` and its first `n` derivatives are integrable, then `𝓕 f` decays like `|u| ^ (-n)`. Specifically, `Real.one_add_pow_mul_norm_fourier_le` states that
```
(1 + |u| ^ n) * ‖𝓕 f u‖ ≤ (∫ v, ‖f v‖) + ((2 * π) ^ n)⁻¹ * ∫ v, ‖iteratedDeriv n f v‖
```
which, unlike a bound of the shape `‖u‖ ^ n * ‖𝓕 f u‖ ≤ C`, is also nontrivial at `u = 0`, and so can be used to deduce integrability of `𝓕 f`. The case `n = 2` is recorded separately as `Real.one_add_sq_mul_norm_fourier_le`, in terms of `1 + u ^ 2`. Also included is `Real.norm_fourier_le_integral_norm`, the `𝓕`-level form of `VectorFourier.norm_fourierIntegral_le_integral_norm`. (This will be useful in a future PR of the prime number theorem.)
Mathlib already implies a decay bound of this kind, via `Real.pow_mul_norm_iteratedFDeriv_fourier_le` with `k = 0`, but with a lossy constant, a sum over all lower-order derivatives, and no content at `u = 0`.
A higher-dimensional analogue holds by the same argument, but needs a reverse bound for `fourierPowSMulRight`, for which mathlib currently only has the `≤` direction; this is left to a future PR.
---
AI was used to prepare the initial version of the code, which was then golfed and reviewed by myself. |
t-analysis |
35/1 |
Mathlib/Analysis/Fourier/FourierTransform.lean,Mathlib/Analysis/Fourier/FourierTransformDeriv.lean,Mathlib/Analysis/Fourier/RiemannLebesgueLemma.lean |
3 |
9 |
['ajirving', 'github-actions', 'teorth'] |
nobody |
22-41102 22 days ago |
30-84738 30 days ago |
33-34584 33 days |
2 |
| 42931 |
yui9696 author:yui9696 |
feat(Analysis/Matrix): simultaneous diagonalization of two Hermitian forms and generalized eigenvalues |
Adds the simultaneous diagonalization theorem for two real quadratic forms, one of which is positive definite:
if `A : Matrix n n ℝ` is positive definite and `B : Matrix n n ℝ` is symmetric, then there is an invertible `P` with `Pᵀ * A * P = 1` and `Pᵀ * B * P` diagonal.
This is the entry "simultaneous diagonalization of two real quadratic forms" from the [missing undergraduate mathematics list](https://leanprover-community.github.io/undergrad_todo.html) (Bilinear and quadratic forms).
### Contents
* `Matrix.PosDef.exists_simultaneous_diagonalization` — the matrix statement above.
* `Matrix.PosDef.exists_simultaneous_diagonalization_quadratic` — the same fact read off on the quadratic forms themselves: one invertible change of variables takes the form of `A` to `∑ xᵢ ^ 2` and the form of `B` to `∑ dᵢ * xᵢ ^ 2`. This is the phrasing the undergraduate list actually asks for, so it seemed worth stating explicitly rather than leaving to the reader.
* `Matrix.PosDef.exists_simultaneous_diagonalization_of_posDef` — when `B` is positive definite as well, the diagonal entries are positive.
### Implementation
Conjugating by the inverse of `CFC.sqrt A` turns `A` into the identity; the congruence of `B` is then symmetric, so `Matrix.IsHermitian.spectral_theorem` diagonalizes it and the two changes of basis compose.
A note on the history of this branch, in case a reviewer reads the commits: the first version went through the LDL decomposition, because I had convinced myself Mathlib no longer had a square root for positive semidefinite matrices. That was simply wrong — `CFC.sqrt` applies to matrices, as `Mathlib/Analysis/Matrix/Order.lean` already uses. Redoing it that way removed the `LinearOrder`, `WellFoundedLT` and `LocallyFiniteOrderBot` hypotheses that LDL imposed on the index type, so the statement is now proved for an arbitrary `Fintype` with decidable equality.
This is my first Mathlib contribution, so I would be glad to hear if the placement or naming should be different. Two specific questions:
* Would a `QuadraticForm` / `LinearMap.BilinForm` statement be preferred to the `dotProduct` phrasing used in the `_quadratic` version?
* Is `∃ d, _ = diagonal d` the right conclusion, or would `Matrix.IsDiag` be more idiomatic here?
### Use of AI
Per the [contribution guidelines](https://leanprover-community.github.io/contribute/index.html), I am disclosing my use of AI on this PR.
**Tool:** Claude (Anthropic), used through Claude Code.
**How I used it:** I used it to draft and iterate on the Lean proofs in this file, to search Mathlib for the relevant existing lemmas, and to carry out the rewrite from the first LDL-based version to the `CFC.sqrt` version described above. I have read and checked every declaration in the file myself, and I can justify the statements, the proof design and the placement without AI assistance.
A substantial part of the code was AI-drafted, so I am adding the `LLM-generated` label.
---
[](https://gitpod.io/#https://github.com/leanprover-community/mathlib4)
|
t-analysis
new-contributor
LLM-generated
|
246/0 |
Mathlib.lean,Mathlib/Analysis/Matrix/SimultaneousDiagonalization.lean |
2 |
8 |
['github-actions', 'themathqueen', 'vlad902', 'yui9696'] |
nobody |
22-40178 22 days ago |
28-51534 28 days ago |
28-68546 28 days |
0 |
| 43231 |
E-M-Bailey author:E-M-Bailey |
feat(Analysis/Analytic): expand and update `AnalyticAt.comp_sub`-type theorems |
Adds `.comp_add` and biconditional versions of the `AnalyticAt.comp_sub`-type theorems. Also shortens the `.comp_sub` statements and simplifies a few of their proofs.
---
The purpose of this minor change, and in particular the biconditional versions, is to make it more convenient to shift power series. For example, I am currently working on a proof with a hypothesis of type `∀ᶠ w in 𝓝 z, ∀ i, AnalyticAt ℂ (f <| update w i ·) (w i)`, and I wanted to simplify the proof by assuming `z = 0`. This makes the `wlog` step shorter.
---
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[](https://gitpod.io/from-referrer/)
|
t-analysis
new-contributor
|
202/32 |
Mathlib/Analysis/Analytic/Basic.lean |
1 |
3 |
['github-actions'] |
nobody |
22-6970 22 days ago |
22-8386 22 days ago |
22-8243 22 days |
0 |
| 41338 |
kim-em author:kim-em |
refactor(Combinatorics/SimpleGraph/CycleGraph): golf cycleGraph_isContained_iff via getVert |
Reopened from my fork, replacing #41268 (previously a branch on the main repo).
This PR rewrites the reverse direction of `cycleGraph_isContained_iff` from https://github.com/leanprover-community/mathlib4/pull/35255. Building the copy on `Walk.getVert` instead of `support` indexing makes the vertex map total, dispatches both adjacency cases through a single cyclic-successor helper (no `wlog`), handles the wraparound with `adj_penultimate`, and gets injectivity directly from `IsCycle.getVert_injOn'`.
🤖 Prepared with Claude Code |
t-combinatorics
LLM-generated
|
12/16 |
Mathlib/Combinatorics/SimpleGraph/CycleGraph.lean |
1 |
16 |
['SnirBroshi', 'github-actions', 'kim-em', 'mathlib-merge-conflicts', 'vlad902'] |
nobody |
21-48956 21 days ago |
21-50000 21 days ago |
40-6452 40 days |
0 |
| 42494 |
JadAbouHawili author:JadAbouHawili |
feat(Combinatorics/SimpleGraph/Connectivity): add edge reachability and connectivity numbers |
Define edge reachability and connectivity numbers with some basic API
Partially solves #34961
---
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|
new-contributor
t-combinatorics
|
59/0 |
Mathlib/Combinatorics/SimpleGraph/Connectivity/EdgeConnectivity.lean |
1 |
91 |
['JadAbouHawili', 'SnirBroshi', 'github-actions', 'grunweg'] |
nobody |
21-35082 21 days ago |
34-4733 34 days ago |
41-60008 41 days |
0 |
| 43196 |
danderson70-UNL author:danderson70-UNL |
doc: add Jacobi Four-Square proof to the list of 1000 theorems |
|
new-contributor |
3/0 |
docs/1000.yaml |
1 |
3 |
['github-actions'] |
nobody |
21-5853 21 days ago |
23-71800 23 days ago |
23-71574 23 days |
0 |
| 42669 |
kris-gaudel author:kris-gaudel |
feat(Analysis/Convex): add `ShapleyFolkman` lemma |
Closes https://github.com/leanprover-community/mathlib4/issues/14427
Formalizes the Shapley-Folkman Lemma, uses the proof outlined [here](https://en.wikipedia.org/wiki/Shapley%E2%80%93Folkman_lemma#Proofs) (Via reduction from Carathéodory's theorem) |
t-analysis
new-contributor
|
346/0 |
Mathlib.lean,Mathlib/Analysis/Convex/ShapleyFolkman.lean |
2 |
3 |
['github-actions'] |
nobody |
21-3647 21 days ago |
40-74814 40 days ago |
40-74588 40 days |
0 |
| 43264 |
riccardobrasca author:riccardobrasca |
feat: add Algebra.Polynomial.Laurent.Roots |
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra label:t-algebra$ |
52/0 |
Mathlib.lean,Mathlib/Algebra/Polynomial/Laurent/Roots.lean |
2 |
1 |
['github-actions'] |
nobody |
20-86076 20 days ago |
21-2081 21 days ago |
21-1855 21 days |
0 |
| 43143 |
martinwintermath author:martinwintermath |
feat(LinearAlgebra/SesquilinearForm): add instances for SeparatingLeft, SeparatingRight and Nondegenerate |
Add typeclass instances for `Fact B.SeparatingLeft`, `Fact B.SeparatingRight`, `Fact B.Nondegenerate`:
* inferring `Fact B.flip.SeparatingLeft` from `Fact B.SeparatingRight` and vice versa
* inferring `Fact B.SeparatingLeft` and `Fact B.SeparatingRight` from `Fact B.Nondegenerate`
* inferring `Fact B.SeparatingLeft` and `Fact B.Nondegenerate` for `.id` and `Dual.eval`
* inferring `Fact B.Nondegenerate` from `B.IsPerfPair`
I also updated `PointedCone.dual_univ` to demonstrate a use for these additions. Note that I needed to add an import to `Cone/Dual.lean` which somehow imports cardinals. So I needed to remove cardinals from `assert_not_exists`.
Zulip: [#mathlib4 > Typeclass instances for separating bilinear forms](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Typeclass.20instances.20for.20separating.20bilinear.20forms/with/570348517)
---
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[](https://gitpod.io/from-referrer/)
|
large-import
t-algebra
label:t-algebra$ |
33/4 |
Mathlib/Geometry/Convex/Cone/Dual.lean,Mathlib/LinearAlgebra/PerfectPairing/Basic.lean,Mathlib/LinearAlgebra/SesquilinearForm/Basic.lean |
3 |
2 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
20-74548 20 days ago |
20-75778 20 days ago |
20-79196 20 days |
0 |
| 43258 |
ScottCarnahan author:ScottCarnahan |
feat(Algebra/MonoidAlgebra/PointwiseSMul): add smulAntidiagonal and API |
Given actions of `R` on `V` and `G` on `P`, the `smulAntidiagonal` of `f : MonoidAlgebra R G` and `x : P → V` at `p : P` is the finset in `G × P` whose elements scalar-multiply to `p` and whose components lie in the support of `f` and `x`. This PR defines the `smulAntidiagonal` and shows that convolutional scalar multiplication coincides with monoid algebra multiplication when `V = R` and `P = G`.
---
[](https://gitpod.io/from-referrer/)
|
t-algebra label:t-algebra$ |
49/0 |
Mathlib/Algebra/MonoidAlgebra/PointwiseSMul.lean |
1 |
1 |
['github-actions'] |
nobody |
20-70134 20 days ago |
21-18529 21 days ago |
21-18303 21 days |
0 |
| 40531 |
tb65536 author:tb65536 |
feat(Combinatorics/Hypergraph/Coloring): define hypergraph colorings |
This PR defines hypergraph colorings and the chromatic index of a hypergraph.
---
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[](https://gitpod.io/from-referrer/)
|
t-combinatorics |
66/0 |
Mathlib.lean,Mathlib/Combinatorics/Hypergraph/Coloring/Edge.lean |
2 |
4 |
['SnirBroshi', 'b-mehta', 'github-actions', 'tb65536'] |
b-mehta assignee:b-mehta |
20-63011 20 days ago |
98-25464 98 days ago |
98-73371 98 days |
0 |
| 41206 |
Ljon4ik4 author:Ljon4ik4 |
feat: strict Lie-Rinehart ideals and Quotients by them |
In this PR strict ideals in the context of Lie-Rinehart algebras are defined and it is shown that quotients by them are again Lie-Rinehart algebras.
## Context on Lie-Rinehart algebras
A Lie-Rinehart algebra is given by a couple of an `R`-algebra `A` and an `R`-Lie-Algebra `L` acting on each other and satisfying certain compatibility conditions. The most important example of Lie-Rinehart algebras in geometry is given by `A`=smooth functions on a smooth manifold, and `L`= vector fields on the manifold. Many important geometric constructions (differential forms, Cartan calculus) are defined naturally in terms of Lie-Rinehart algebras.
## Relevance of the construction
This construction of quotients by ideals will be important to define the Basechange of Lie-Rineahart algebras, which in turn is necessary to define 'comorphisms'. Comorphisms are the right notion of morphism to do geometry (e.g. a smooth map between two manifolds corresponds to a comorphism of their associated Lie-Rinehart algebras).
## Strictness
The ideals here are called strict, because it is assumed that `A` remains untouched and one only considers a subobject of `L`. There seems to be constructions for non-strict ideals, but the definitions are more complicated:
https://www.uni-math.gwdg.de/mjotz/JotzLean18c.pdf
https://arxiv.org/pdf/1706.07084
## Changes made
The files `StrictIdeal.lean` and `Quotient.lean` are new, containing the definition of the ideals and the fact that quotients are again Lie-Rinehart algebras. The `Subalgebra.lean` was mildly changed, since it seemed strange to have `comap` and `ker` without having `map` and `range`.
## Disclosure of AI use
All code is hand-written, I used claude interpret debug messages and search for lemmas.
I think most notably the following patterns were proposed by claude:
* `mul_smul := by rintro r₁ r₂ ⟨x⟩; exact congrArg mk (mul_smul r₁ r₂ x)` to show that things are well-defined on the quotient.
* `change f.toLinearMap' ⁅x, y⁆ ∈ s₂` in the proof in `comap`. (I had a simp there, which had as a result `f.toLinearMap' ⁅x, y⁆ ∈ s₂`, but somehow the subsequent steps did not work then)
## Questions open
* I am not sure if strict is a good prefix, and am happy to change it to something else.
(Also, one could even argue that the subalgebras, as defined currently, should be called strict, too...)
* In the definition of `mk'` the `toFun` field seems obsolete to me, but somehow if I remove it I get an error in one of the lemmas after it.
* I am not sure I fully understand the 'per-definition' expose rules. When I first committed I got some errors so I made two defs exposed, but I am not sure that is the correct way to go.
---
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|
t-algebra label:t-algebra$ |
442/0 |
Mathlib.lean,Mathlib/Algebra/LieRinehartAlgebra/Quotient.lean,Mathlib/Algebra/LieRinehartAlgebra/StrictIdeal.lean,Mathlib/Algebra/LieRinehartAlgebra/Subalgebra.lean |
4 |
1 |
['github-actions'] |
eric-wieser assignee:eric-wieser |
20-63009 20 days ago |
64-4307 64 days ago |
82-84886 82 days |
0 |
| 41308 |
sergantche author:sergantche |
feat: add `List.insertIdx_eraseIdx_getElem_perm` |
Adds `List.insertIdx_eraseIdx_getElem_perm`, showing that erasing an element by index and inserting it at any valid position gives a permutation of the original list.
This packages the existing lemmas `List.perm_insertIdx` and `List.getElem_cons_eraseIdx_perm` into a direct API lemma.
AI assistance was used in preparing this PR; I reviewed the statement and proof.
[](https://gitpod.io/from-referrer/) |
t-data
new-contributor
LLM-generated
|
5/0 |
Mathlib/Data/List/Perm/Basic.lean |
1 |
5 |
['github-actions', 'sergantche', 'vlad902'] |
TwoFX assignee:TwoFX |
20-63008 20 days ago |
70-72885 70 days ago |
74-76054 74 days |
0 |
| 41904 |
rshlyakh author:rshlyakh |
feat(RingTheory/KrullDimension): add Krull dimension preservation under injective integral extensions |
This proves that an injective integral homomorphism of commutative rings
preserves Krull dimension, based on the `Algebra.HasGoingUp` infrastructure from #40911. It includes:
- `RingHom.IsIntegral.ringKrullDim_eq_of_injective`: injective integral homomorphisms of
commutative rings preserve Krull dimension.
- `RingHom.IsIntegral.ringKrullDim_quotient_ker_eq`: for an integral extension `f : A →+* B`,
the Krull dimension of `B` is equal to the Krull dimension of `A ⧸ RingHom.ker f`.
- [x] depends on: #40911
- [x] depends on: #41058
---
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|
t-ring-theory
new-contributor
|
77/12 |
Mathlib.lean,Mathlib/RingTheory/Ideal/HasGoingUp.lean,Mathlib/RingTheory/KrullDimension/Integral.lean |
3 |
14 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'rshlyakh', 'vlad902'] |
nobody |
20-56240 20 days ago |
37-69918 37 days ago |
64-43185 64 days |
1 |
| 43280 |
idontgetoutmuch author:idontgetoutmuch |
feat(Topology/VectorBundle): coordinate lemmas for the bundle of bilinear forms |
Two coordinate-level identities for the bundle of scalar-valued bilinear forms
`fun x ↦ E x →L[ℝ] E x →L[ℝ] ℝ` over a real vector bundle:
* `inCoordinates_apply_eq₂_bilin`: the `inCoordinates` expression evaluated on
coordinate inputs equals the intrinsic form on the transported inputs;
* `trivializationAt_symm_apply_bilin`: the inverse trivialization of the bilinear-forms
bundle, applied to fibre vectors, equals the model form on their images under
`continuousLinearMapAt`.
These are used when transporting a fibrewise bilinear form (such as a Riemannian metric)
through a trivialization, and are the first piece split out of #33714 (existence of a
Riemannian metric on a manifold), which will be rebased on top of this PR.
---
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[](https://gitpod.io/from-referrer/)
|
t-topology
new-contributor
|
83/0 |
Mathlib.lean,Mathlib/Topology/VectorBundle/HomBilinear.lean |
2 |
2 |
['github-actions'] |
nobody |
20-37790 20 days ago |
20-37790 20 days ago |
20-37564 20 days |
0 |
| 42590 |
AntoineduFresne author:AntoineduFresne |
feat(Order/UpperLower/Closure): the upper and lower closures of a maximal antichain cover the order |
I add `IsMaxAntichain.upperClosure_union_lowerClosure`. It says that the upper and lower closures of a maximal antichain cover the whole order.
I put it right after `ordConnected_iff_upperClosure_inter_lowerClosure`, next to `upperClosure_inter_lowerClosure`, which seems the right spot.
The lemma is about antichains, so `Mathlib/Order/Antichain.lean` would have looked like the natural file to modify, but `upperClosure` is defined in `Mathlib/Order/UpperLower/Closure.lean`, which imports `Mathlib.Order.Interval.Set.OrdConnected`, which imports `Mathlib.Order.Antichain`. So to avoid an import loop I put it in `Closure.lean`.
I split this out of #40741, where a reviewer suggested it. Nothing in that PR uses the lemma.
|
t-order
new-contributor
|
13/0 |
Mathlib/Order/Antichain.lean,Mathlib/Order/UpperLower/Closure.lean |
2 |
12 |
['AntoineduFresne', 'Ruben-VandeVelde', 'SnirBroshi', 'github-actions', 'tdwag123'] |
nobody |
20-35478 20 days ago |
20-73938 20 days ago |
36-30747 36 days |
0 |
| 43128 |
dannyhe652 author:dannyhe652 |
feat(SimpleGraph/Coloring): add edge colorings and missing colors |
## Summary
This PR starts the edge-coloring API needed for Vizing's theorem.
It defines edge colorings as vertex colorings of the line graph, introduces edge
colorability and the chromatic index, and adds the basic local color-set API around a
vertex.
Main additions:
- `vizing.edgeColoring`
- `vizing.edgeColorable`
- `vizing.chromaticIndex`
- `vizing.incidentEdges`
- `vizing.incidentColors`
- `vizing.missingColors`
It also proves the basic cardinality estimates relating incident colors to vertex degree,
including that with more available colors than the degree, some color is missing at the
vertex.
This is the first PR in a stacked development toward Vizing's theorem.
## Co-authors
Co-authored-by: Daniel Raggi <dr495@cam.ac.uk>
Co-authored-by: Aristotle (Harmonic) <aristotle-harmonic@harmonic.fun>
Co-authored-by: Claude Opus 4.5 & 4.6 <noreply@anthropic.com>
---
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|
t-combinatorics
new-contributor
LLM-generated
|
271/0 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/Coloring/EdgeColoring.lean,Mathlib/Combinatorics/SimpleGraph/Coloring/KempeChain.lean,Mathlib/Combinatorics/SimpleGraph/Coloring/KempeChain/Basic.lean |
4 |
6 |
['SnirBroshi', 'dannyhe652', 'github-actions'] |
nobody |
20-18573 20 days ago |
26-29075 26 days ago |
26-28945 26 days |
4 |
| 43307 |
Parcly-Taxel author:Parcly-Taxel |
feat: quaternion operations wrt coordinates |
Add `QuaternionAlgebra.mk_{zero,one,natCast,intCast}` and `QuaternionAlgebra.{mk_mul_mk,star_mk}` as convenience lemmas for working with quaternions whose coordinates are explicitly given. These lemmas allow [the following code](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Transparency.20problem.20with.20quaternions/near/618254305) to work:
```lean
import Mathlib.Analysis.Quaternion
import Mathlib.NumberTheory.Real.GoldenRatio
noncomputable section
open goldenRatio Quaternion
/-- The unit icosian `(1 + i + j + k) / 2`, which has order 6. -/
def icosian6 : ℍˣ where
val := ⟨2⁻¹, 2⁻¹, 2⁻¹, 2⁻¹⟩
inv := ⟨2⁻¹, -2⁻¹, -2⁻¹, -2⁻¹⟩
val_inv := by rw [mk_mul_mk, QuaternionAlgebra.mk_one]; norm_num
inv_val := by rw [mk_mul_mk, QuaternionAlgebra.mk_one]; norm_num
/-- The unit icosian `(φ + i + ψ*j) / 2`, which has order 10. -/
def icosian10 : ℍˣ where
val := ⟨φ / 2, 2⁻¹, ψ / 2, 0⟩
inv := ⟨φ / 2, -2⁻¹, -ψ / 2, 0⟩
val_inv := by rw [mk_mul_mk, QuaternionAlgebra.mk_one]; grind
inv_val := by rw [mk_mul_mk, QuaternionAlgebra.mk_one]; grind
/-- The unit icosians. -/
def Icosian : Subgroup ℍˣ := Subgroup.closure {icosian6, icosian10}
``` |
t-algebra label:t-algebra$ |
18/0 |
Mathlib/Algebra/Quaternion.lean |
1 |
1 |
['github-actions'] |
nobody |
20-6860 20 days ago |
20-8172 20 days ago |
20-7946 20 days |
0 |
| 43205 |
wwylele author:wwylele |
feat(FieldTheory): extension is separable if its degree is less than the positive char |
This is a series of lemma analog to the existing CharZero lemma
- `Polynomial.mem_support_derivative` -> `Polynomial.mem_support_derivative_of_isSMulRegular` (I used SMulRegular as this seems to be the right spelling for Semiring)
- `Polynomial.degree_derivative` -> `Polynomial.degree_derivative_of_isSMulRegular`
- `Polynomial.natDegree_derivative` -> `Polynomial.natDegree_derivative_of_isSMulRegular`
- `Irreducible.separable` -> `Irreducible.separable_of_natCast_natDegree_ne_zero`
- `IsSeparable.of_integral` -> `IsSeparable.of_integral_of_natCast_natDegree_ne_zero`
- `Algebra.IsSeparable.of_integral` -> `Algebra.IsSeparable.of_integral_of_finrank_lt` & `Algebra.IsSeparable.of_integral_of_rank_lt`
---
From https://github.com/wwylele/Compass
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|
t-algebra label:t-algebra$ |
69/16 |
Mathlib/Algebra/Polynomial/Derivative.lean,Mathlib/FieldTheory/Separable.lean |
2 |
2 |
['copilot-pull-request-reviewer', 'github-actions'] |
nobody |
20-627 20 days ago |
23-11098 23 days ago |
23-11408 23 days |
0 |
| 41719 |
peakpoint author:peakpoint |
feat(Topology): paracompact TFAE for regular spaces |
This adds a result of Michael (https://ncatlab.org/nlab/show/Michael%27s+theorem) that states the equivalence of paracompactness with a few similar conditions for a regular space.
A consequence is that a regular Lindelof space is paracompact.
- [ ] depends on: #41967
---
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|
t-topology |
125/1 |
Mathlib/Topology/Compactness/Paracompact.lean,Mathlib/Topology/LocallyFinite.lean |
2 |
2 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
19-78842 19 days ago |
20-13546 20 days ago |
27-9165 27 days |
0 |
| 42468 |
Cobord author:Cobord |
feat: added lambda rings |
Description:
This does lambda rings. It is mostly over rationals so we can concern ourselves only with the psi^n operations and not the more complicated lambda^n operations. Doing the more general case could be another PR. This also includes the Getzler type formulation as the map involving Lambda_R the ring of symmetric functions in countably many variables (which again because R is assumed as [Algebra Q R] is described with it's power sum generators). That is to say the Plethystic action. Homomorphisms of such lambda rings are also covered. In particular, those of inclusions of subrings closed under those psi^n operations. In addition, one of the primary motivating examples of K(GL(n)/P) otimes_Z Q is described as such an instance to provide an example that is not Lambda_R.
This was done with Claude Code for generating initial versions but I had not given a good full prompt about prefering psi^n over lambda^n or using a structure instead of a prop in AdamsHom so I ended up rewriting most of those parts by hand anyway. The exception is the PrimeExtend file which is about only giving the psi^p instead of all of the psi^n, but abstracted away from those particular details per clarifying instructions after an initial version.
Because PrimeExtend is so much, this has a tag of
LLM-generated
In addition even though it is in RingTheory it is highly relevant to
t-combinatorics
in the sense of algebraic combinatorics due to use of ring of symmetric functions in countably many variables. |
t-ring-theory
new-contributor
t-combinatorics
LLM-generated
|
898/0 |
Mathlib.lean,Mathlib/RingTheory/LambdaRing/AdamsHom.lean,Mathlib/RingTheory/LambdaRing/AdamsOperations.lean,Mathlib/RingTheory/LambdaRing/KFlagExample.lean,Mathlib/RingTheory/LambdaRing/PrimeExtend.lean,Mathlib/RingTheory/LambdaRing/SymmetricFunctions.lean |
6 |
4 |
['Cobord', 'github-actions'] |
nobody |
19-67170 19 days ago |
42-6361 42 days ago |
42-6906 42 days |
0 |
| 42849 |
mcdoll author:mcdoll |
feat(Analysis/LocallyConvex): induction principles for `WithSeminorm` |
Adds two "induction principles" for seminorms: a property holds for a continuous seminorm if it holds for all seminorms that induce the topology, the zero seminorm, is monotone, and closed under taking suprema and scalar multiplication.
We add two versions: one where we checked suprema and one where we check addition (the later being more convenient in practice).
Co-authored-by: Anatole Dedecker <anatolededecker@gmail.com>
---
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|
t-analysis |
49/0 |
Mathlib/Analysis/LocallyConvex/WithSeminorms.lean |
1 |
5 |
['github-actions', 'j-loreaux', 'mcdoll'] |
nobody |
19-64094 19 days ago |
19-65463 19 days ago |
35-62189 35 days |
1 |
| 40736 |
tb65536 author:tb65536 |
feat(NumberTheory/NumberField/HeckeLFunction): define Hecke L-Functions |
This PR defines Hecke L-Functions.
---
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[](https://gitpod.io/from-referrer/)
|
t-number-theory
t-algebra
label:t-algebra$ |
130/0 |
Mathlib.lean,Mathlib/NumberTheory/NumberField/HeckeLFunction.lean |
2 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
riccardobrasca assignee:riccardobrasca |
19-63010 19 days ago |
24-78401 24 days ago |
24-78579 24 days |
0 |
| 43281 |
keyframe41 author:keyframe41 |
feat(NumberTheory/DiophantineApproximation): prove Hurwitz's approximation theorem |
Prove **Hurwitz's approximation theorem**: for irrational `ξ`, the set of rationals `q` with `|ξ - q| < 1 / (√5 * q.den ^ 2)` is infinite.
This strengthens `Real.infinite_rat_abs_sub_lt_one_div_den_sq_of_irrational` from`Mathlib/NumberTheory/DiophantineApproximation/Basic.lean`, which gives the same statement with constant `1` instead of `√5`. The constant `√5` is optimal, though the sharpness (using the golden ratio) is not included here.
The proof avoids continued fractions and opts for Farey brackets (quadruples `p/q < ξ < r/s` with `q * r - p * s = 1`) packaged as `Real.Hurwitz.IsFarey`. It uses the fact that at least one of `p/q`, `r/s`, and the mediant `(p + r)/(q + s)` satisfies the bound, as if not, we can contradict the irrationality of `√5`. By creating brackets of arbitrarily small width, infinitude follows by the same argument as in `Basic.lean`.
Some design choices:
* No `GenContFract` to avoid continued fractions/recursive sequences. This also follows the spirit of `Basic.lean`, which defines its own `Real.convergent` rather than building Legendre's theorem on `GenContFract.convs`.
* `Real.Hurwitz` namespace. Mirrors `Real.ContfracLegendre` in `Basic.lean` by putting the main result in `Real` and the technical material in a secondary namespace.
* `IsGoodApprox` is stated without division ** as `|y * ξ - x| * y * √5 < 1` for easier manipulation and linked to the quotient form in the actual theorem using `Real.Hurwitz.isGoodApprox_div_bound`.
---
I used Claude (Anthropic) which suggested the overall proof strategy/lemmas and reviewed naming and documentation against the mathlib conventions. All proofs are my own. As a first-time contributor, AI was also used to help in learning Lean.
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|
t-number-theory
new-contributor
|
390/0 |
Mathlib.lean,Mathlib/NumberTheory/DiophantineApproximation/Hurwitz.lean |
2 |
11 |
['SnirBroshi', 'github-actions'] |
MichaelStollBayreuth assignee:MichaelStollBayreuth |
19-62999 19 days ago |
20-40425 20 days ago |
20-41398 20 days |
0 |
| 43220 |
wwylele author:wwylele |
refactor(Combinatorics/Partition): eliminate T2Space requirement from generating function |
Previously, the key lemma in this file had the shape `HasProd (fun i ↦ 1 + ∑' j, f (i + 1) (j + 1) • X ^ ((i + 1) * (j + 1))) (genFun f)`, which has a nested infinite sum inside the infinite prod. As a result, all related lemma needed T2Space when it doesn't have to. The new formulation extract the inner sum into a power series definition `genFunFactor` that works in general topological space, eliminating `T2Space` for the `HasProd`/`HasSum` lemma.
The old formula is kept under the name `hasProd_genFun'`. This is still used in the downstream file `Glaisher.lean`. To reduce the code change size, the refactor in `Glaisher.lean` is deferred to a future PR
---
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|
t-combinatorics |
96/79 |
Mathlib/Combinatorics/Enumerative/Partition/Basic.lean,Mathlib/Combinatorics/Enumerative/Partition/GenFun.lean,Mathlib/Combinatorics/Enumerative/Partition/Glaisher.lean |
3 |
2 |
['copilot-pull-request-reviewer', 'github-actions'] |
CoolRmal assignee:CoolRmal |
19-48708 19 days ago |
22-60530 22 days ago |
22-60304 22 days |
1 |
| 43321 |
owenpkent author:owenpkent |
feat(RingTheory/Polynomial/RationalRoot): rational root theorem with multiplicity |
This PR adds the rational root theorem with multiplicity to
`Mathlib/RingTheory/Polynomial/RationalRoot.lean`:
- `den_pow_rootMultiplicity_dvd_leadingCoeff`: if `r : K` is a root of `p : A[X]` (`A` a UFD, `K`
its fraction field) with multiplicity `m = rootMultiplicity r (p.map (algebraMap A K))`, then
`(den A r) ^ m ∣ p.leadingCoeff`;
- `prod_den_pow_rootMultiplicity_dvd_leadingCoeff`: the multi-point version, `∏ r ∈ s, (den A r) ^
rootMultiplicity r ∣ p.leadingCoeff` over any finite set `s : Finset K` (the denominators need
**not** be pairwise coprime in `A`; the recombination happens on the polynomial side, where the
root factors at distinct points are pairwise coprime over `K`);
- `den_mul_X_sub_C_num_pow_rootMultiplicity_dvd`: the `A`-level form both corollaries come from,
`(C (den A r) * X - C (num A r)) ^ m ∣ p` in `A[X]`.
These generalize the existing multiplicity-one statement `den_dvd_of_is_root`: at `m = 1` the new
theorem recovers it exactly (a guard `example` confirmed this against the branch). Two supporting
lemmas travel with them, placed in `Content.lean`, whose existing content they extend:
- `Polynomial.IsPrimitive.pow` and `Polynomial.isPrimitive_prod`: powers and finite
products of primitive polynomials stay primitive.
**Proof route.** The reduced linear factor `C (den A r) * X - C (num A r)` is primitive (a constant
divisor of both coefficients divides the reduced numerator/denominator pair, hence is a unit) and,
over `K`, a unit multiple of `X - C r`. Its `rootMultiplicity`-power therefore divides `p.map
(algebraMap A K)` (`pow_rootMultiplicity_dvd`), and one-sided Gauss descent (the existing
`IsPrimitive.dvd_of_fraction_map_dvd_fraction_map`) brings the divisibility back down to `A`;
multiplicativity of the leading coefficient finishes. The multi-point case recombines the same
argument over a product of linear factors that are pairwise coprime over `K`
(`isCoprime_X_sub_C_of_isUnit_sub`, `Finset.prod_dvd_of_coprime`).
**A hypothesis note.** `Polynomial.IsPrimitive.pow` / `Polynomial.isPrimitive_prod` are stated
under `[NormalizedGCDMonoid R]`, matching the hypothesis level of their host section in
`Content.lean` (neither proof needs anything UFD-specific). The six `RationalRoot.lean`
declarations (three public, and three `private` helpers about the reduced linear factor:
`isPrimitive_den_mul_X_sub_C_num`, `map_den_mul_X_sub_C_num`,
`leadingCoeff_den_mul_X_sub_C_num`) need only the file's existing
`UniqueFactorizationMonoid A` context: where a
`NormalizedGCDMonoid A` instance is required to invoke the `Content.lean` lemmas, the proofs
materialize one locally via `let : NormalizedGCDMonoid A := Nonempty.some inferInstance` (the
`Nonempty` instance comes from `UniqueFactorizationMonoid A` through `IsGCDMonoid A`, in scope via
the file's existing `RingTheory.Localization.NumDen` import), the same idiom `GaussLemma.lean`
already uses. The statements are instance-independent.
All eight new declarations (two in `Content.lean`, six in `RationalRoot.lean`) build green and
`#print axioms` clean (`[propext, Classical.choice, Quot.sound]`; no `sorryAx`, no
`native_decide`) on master commit `8acb872c31` (toolchain v4.34.0-rc2), with `lake exe lint-style`
and the batteries env linter (`runLinter`) passing on both touched modules, and all direct
downstream importers rebuilt green. Three `public import`s are added to `RationalRoot.lean`
(`RingTheory.Polynomial.GaussLemma`, `Algebra.Polynomial.BigOperators`,
`RingTheory.Coprime.Lemmas`); each is used directly by the new proofs (`shake` no longer exists as
a lake executable on current master, so no automated minimization pass was run).
**Import-graph cost: zero downstream.** The three added imports grow `RationalRoot.lean`'s own
transitive closure by 30 modules (1614 -> 1644), mostly the `FieldTheory.SplittingField` /
`IntermediateField` / `Minpoly` cone that `GaussLemma.lean` pulls in. That growth does not
propagate: `RationalRoot.lean` has exactly three importers in Mathlib
(`RingTheory/Polynomial/IsIntegral.lean`, `RingTheory/DedekindDomain/Basic.lean`,
`NumberTheory/Niven.lean`), and all three already import `GaussLemma` and
`SplittingField.Construction` transitively today, so no file in Mathlib gains an import from this
PR. If a maintainer would still rather keep `RationalRoot.lean` light, the six declarations move to
a new `RingTheory/Polynomial/RationalRootMultiplicity.lean` without any proof change; I am happy to
do that on request.
---
**AI use disclosure** (per Mathlib's contribution guidelines): this generalization was developed in
a personal research project with the help of an AI coding agent (Claude Code). The agent developed
the multiplicity generalization and its proof (building on the existing single-multiplicity
`den_dvd_of_is_root`), then ported it directly onto Mathlib's own source files: placing the two
primitivity lemmas in `Content.lean`'s existing `NormalizedGCDMonoid` section (a weaker hypothesis
than the UFD one the standalone draft used; neither proof needs anything UFD-specific), adapting
the imports to the module system, and rebasing onto current master. During the rebase the agent
found that Mathlib had independently generalized
`IsPrimitive.dvd_of_fraction_map_dvd_fraction_map` to the one-sided form an earlier draft of this
PR supplied as a new lemma, so that lemma was dropped and the proofs call the existing one. Build
green, `#print axioms` clean, and linters passing were confirmed directly against Mathlib's source
tree. The underlying result is a natural generalization of an existing Mathlib theorem, and every
proof step uses only existing Mathlib API. I have reviewed and understand the proofs, take
responsibility for the content, and will respond to review in my own words.
|
t-ring-theory
new-contributor
LLM-generated
|
129/1 |
Mathlib/RingTheory/Polynomial/Content.lean,Mathlib/RingTheory/Polynomial/RationalRoot.lean |
2 |
2 |
['github-actions'] |
nobody |
19-44506 19 days ago |
19-74062 19 days ago |
19-73836 19 days |
0 |
| 43332 |
SnirBroshi author:SnirBroshi |
feat(SimpleGraph/Walk/Basic): walks with equal support have equal darts |
and similar statements:
- `p.darts = q.darts ↔ p.support = q.support` (equal)
- `p.darts <:+: q.darts ↔ p.support <:+: q.support` (infix)
- `p.darts <+: q.darts ↔ p.support <+: q.support` (prefix)
- `p.darts <:+ q.darts ↔ p.support <:+ q.support` (suffix)
---
I hope the review process can help golf these or find better proofs.
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|
t-combinatorics |
71/7 |
Mathlib/Combinatorics/SimpleGraph/Walk/Basic.lean,Mathlib/Combinatorics/SimpleGraph/Walk/Operations.lean |
2 |
1 |
['github-actions'] |
nobody |
19-39587 19 days ago |
19-41184 19 days ago |
19-40958 19 days |
0 |
| 31884 |
Thmoas-Guan author:Thmoas-Guan |
feat(RingTheory): definition of Gorenstein local ring |
In this PR, we gave basic definition of Gorenstein local ring and Gorestein ring and prove that they are stable under ring equiv.
---
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|
t-ring-theory |
73/0 |
Mathlib.lean,Mathlib/RingTheory/Gorenstein/Defs.lean |
2 |
12 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'mathlib4-merge-conflict-bot'] |
nobody |
19-31481 19 days ago |
60-45082 60 days ago |
60-47430 60 days |
7 |
| 32098 |
Thmoas-Guan author:Thmoas-Guan |
feat(RingTheory): injective dimension of quotSMulTop |
In this PR, we proved for finitely generated module `M` over noetherian ring `R`, if `x` in maximal ideal being both `R`-regular and `M`-regular, `injdim_R (M/xM) + 1 = injdim_{R/(x)} (M)`.
---
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|
t-ring-theory |
454/0 |
Mathlib.lean,Mathlib/RingTheory/Regular/InjectiveDimension.lean |
2 |
9 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'mathlib4-merge-conflict-bot'] |
nobody |
19-30898 19 days ago |
20-22632 20 days ago |
20-24465 20 days |
6 |
| 39834 |
or4nge19 author:or4nge19 |
feat(LinearAlgebra): triangularizability via flags and block-triangular matrices |
Part 2/3 of #39139.
In finite dimension, shows that `⨆ μ, f.maxGenEigenspace μ = ⊤` is equivalent to:
- existence of a `Basis` whose `flag` lies in `f.invtSubmodule`;
- existence of an invariant `Flag`;
- `Matrix.BlockTriangular id` for `LinearMap.toMatrix b b f` in some basis.
Over an algebraically closed field, deduces the above from `IsAlgClosed.splits` on the charpoly. Compared to #39139 we do not introduce new global `IsTriangularizable` (or similar) predicates.
This also fills the previous TODO and replaces/shorten the proof of `iSup_maxGenEigenspace_eq_top` by a charpoly-splitting argument.
- [ ] depends on: #39829 [Part 1/3 of #39139. ]
Co-authored-by: [kuotsanhsu](https://github.com/kuotsanhsu) [learningstud@gmail.com](mailto:learningstud@gmail.com)
---
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|
t-algebra
large-import
tech debt
label:t-algebra$ |
381/76 |
Mathlib/LinearAlgebra/Basis/Flag.lean,Mathlib/LinearAlgebra/Eigenspace/Basic.lean,Mathlib/LinearAlgebra/Eigenspace/Triangularizable.lean |
3 |
3 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
19-9708 19 days ago |
19-9711 19 days ago |
19-11092 19 days |
2 |
| 43349 |
Nicola9Falciola author:Nicola9Falciola |
feat(Algebra/FreeAbelianGroup/Finsupp): add api for the coeff of a single element |
---
Add two API lemmas computing the coefficent of the form `of x` for `x : X` in the FreeAbelianGroup.
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|
new-contributor
t-algebra
label:t-algebra$ |
8/0 |
Mathlib/Algebra/FreeAbelianGroup/Finsupp.lean |
1 |
2 |
['github-actions'] |
nobody |
19-8669 19 days ago |
19-12665 19 days ago |
19-12439 19 days |
0 |
| 42912 |
justin-palumbo author:justin-palumbo |
feat(Topology/GDelta): a completely metrizable subspace of a T6 space is Gδ |
Adds TopologicalSpace.IsCompletelyMetrizableSpace.isGδ: a completely metrizable subspace of a T6 space is Gδ
This is one direction of a foundational fact in descriptive set theory --- the Polish subspaces of a Polish space are exactly the Gδ subsets.
The proof here is modeled on the exposition in Anush Tserunyan's descriptive set theory notes https://www.math.mcgill.ca/atserunyan/Teaching_notes/dst_lectures.pdf, with one adjustment; to make the formalization easier and avoid having multiple distance metrics instantiated at the same time, instead of directly defining open `U_n` with `s = ⋂ n, U` define them such that `s = closure s ∩ ⋂ n, U n` and then appeal to the fact closed sets are Gδ in a perfectly normal space.
---
- [x] depends on: #42896 [which fixes buggy naming present in Topology/Metrizable/CompletelyMetrizable]
This can be viewed as a companion to #42693, which - under the stronger assumption of the ambient space being Polish - establishes the other direction --- a Gδ subspace of a Polish space is itself Polish.
Together, these give Alexandrov's theorem, characterizing the Polish subspaces of an ambient Polish space as exactly the Gδ ones, and (via `Metric.PiNatEmbed.exists_embedding_to_hilbert_cube`) Polish spaces as exactly the Gδ subsets of the Hilbert cube. If and when both these PRs are committed, I anticipate adding these consequences to Topology/MetricSpace/Polish.lean
LLM usage: I wrote the initial version myself, while using Google's free "AI mode" to help me find relevant lemma names in the codebase, and afterward used helped Claude Opus to review, which led to simplifying some of the arguments. I take full responsibility for the code here
|
t-topology
new-contributor
|
91/0 |
Mathlib.lean,Mathlib/Topology/GDelta/CompletelyMetrizable.lean |
2 |
8 |
['github-actions', 'justin-palumbo', 'mathlib-dependent-issues', 'plp127'] |
nobody |
18-82096 18 days ago |
33-19794 33 days ago |
33-19865 33 days |
0 |
| 42693 |
justin-palumbo author:justin-palumbo |
feat(Topology/MetricSpace): a Gδ subset of a Polish space is Polish |
Adds `IsGδ.polishSpace`: a Gδ subset of a Polish space is Polish, which strengthens the existing IsOpen.polishSpace.
The proof follows the outline in Anush Tserunyan's descriptive set theory notes, https://www.math.mcgill.ca/atserunyan/Teaching_notes/dst_lectures.pdf where it is attributed to A. Bernshteyn. The "usual" approach (as in Kechris's Classical Descriptive Set Theory) constructs a complete compatible metric (the "Alexandrov metric"). The approach taken here is snappier to formalize - the idea is to give a closed embeddding from the G\delta set into another Polish space, and appeal to the fact closed subsets of Polish spaces are Polish. [Note the Alexandrov metric is recoverable from the embedding via the induced complete metrics on the product topology.]
---
Question: `IsOpen.polishSpace` could now be proven directly from`isGδ.polishSpace`, and `CompleteCopy` completely retired. That feels cleaner to me, given `CompleteCopy` has had no users since it was ported along with everything else in 2023: #3357. The main argument for keeping is that leveraging `CompleteCopy` is slightly more explicit in proving that open subsets are Polish. Happy to remove in a follow-up, in this PR, or not at all :)
LLM usage disclaimer: I wrote an original local version of this PR myself, and then used Claude Opus to double-check / simplify / help me pull out names of relevant theorems from mathlib. The primary non-trivial contribution from LLM was idea of leveraging isClosed_eq (ie proving closure of range by framing the range of the embedding as a countable intersection of pairs satisfying closed equations). I take full responsibility for the code here |
new-contributor
t-topology
|
117/2 |
Mathlib/Topology/MetricSpace/Polish.lean |
1 |
9 |
['felixpernegger', 'github-actions', 'justin-palumbo'] |
nobody |
18-82036 18 days ago |
40-1832 40 days ago |
40-1606 40 days |
0 |
| 41776 |
JovanGerb author:JovanGerb |
fix(Order/Heyting/Regular): fix `Lattice` instance diamond |
This PR fixes a diamond in the `Lattice` instance on `Regular`.
It's a bit awkward that `Lattice` does not extend `Min`, so `fast_instance%` doesn't save us here.
---
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|
tech debt
t-order
|
1/2 |
Mathlib/Order/Heyting/Regular.lean |
1 |
10 |
['JovanGerb', 'YaelDillies', 'eric-wieser', 'github-actions', 'j-loreaux'] |
nobody |
18-81589 18 days ago |
18-81589 18 days ago |
40-34941 40 days |
0 |
| 42096 |
NoahW314 author:NoahW314 |
feat(Algebra/Order/IsBotOne): add `IsBotOneClass` instances (Prod, Pi, Subsingleton) |
---
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|
t-algebra label:t-algebra$ |
15/0 |
Mathlib/Algebra/Order/IsBotOne.lean |
1 |
9 |
['NoahW314', 'github-actions', 'leanprover-radar', 'themathqueen'] |
nobody |
18-80779 18 days ago |
19-22863 19 days ago |
57-12786 57 days |
0 |
| 42914 |
lman310 author:lman310 |
feat(Algebra): add zpow_right_injective |
Add `zpow_right_injective`, stating that for a nontrivial element `a` of a
multiplicatively torsion free group, the map `n : ℤ ↦ a ^ n` is injective,
as well as the corresponding additive theorem `zsmul_left_injective` using
`to_additive`
Use the new additive theorem in `CharZero.of_isAddTorsionFree`, replacing its
dependency on the general `smul_left_injective`. This allows
`CharZero.of_isAddTorsionFree` to move from
`Mathlib.Algebra.Module.Torsion.Free` to the earlier
`Mathlib.Algebra.Module.NatInt`, resolving the existing TODO
---
Codex was used to find the appropriate file `Mathlib.Algebra.Module.NatInt` for moving `CharZero.of_isAddTorsionFree`
---
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|
t-algebra
new-contributor
label:t-algebra$ |
25/14 |
Mathlib/Algebra/Group/Torsion.lean,Mathlib/Algebra/Module/NatInt.lean,Mathlib/Algebra/Module/Torsion/Free.lean |
3 |
14 |
['felixpernegger', 'github-actions', 'lman310', 'mathlib-merge-conflicts', 'themathqueen'] |
nobody |
18-76015 18 days ago |
18-79228 18 days ago |
30-15852 30 days |
0 |
| 43363 |
BoltonBailey author:BoltonBailey |
feat(Data/Nat/Init): dvd_div_of_mul_dvd_right |
This PR adds `Nat.dvd_div_of_mul_dvd_right`, a version of `Nat.dvd_div_of_mul_dvd` with symmetry applied to the multiplication (we also make an alias of the latter to `dvd_div_of_mul_dvd_left` to mirror the API).
This PR was made with the assistance of Claude code, but I have reviewed it myself.
---
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|
t-data
LLM-generated
|
8/1 |
Mathlib/Data/Nat/Init.lean |
1 |
1 |
['github-actions'] |
nobody |
18-67342 18 days ago |
18-72703 18 days ago |
18-75444 18 days |
0 |
| 41940 |
mcdoll author:mcdoll |
chore(Dynamics): deprecate `IsForwardInvariant` in favour of new `Set.IsInvariantOn` |
We define a predicate `Set.IsInvariantOn` that generalizes `IsInvariant` and as a special case contains `IsForwardInvariant`. The later is hence removed. We also move `IsInvariant` into the `Set` namespace to allow for dot-notation.
---
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|
t-dynamics
dynsys
|
52/17 |
Mathlib/Dynamics/Flow.lean,Mathlib/Dynamics/OmegaLimit.lean |
2 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
urkud assignee:urkud |
18-60633 18 days ago |
19-58002 19 days ago |
50-37337 50 days |
0 |
| 43374 |
plp127 author:plp127 |
chore: remove `WittVector.mk'` |
Override the structure constructor transparencies so that duplicating a `WittVector.mk'` is no longer necessary.
---
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|
t-ring-theory |
28/19 |
Mathlib/RingTheory/WittVector/Defs.lean,Mathlib/RingTheory/WittVector/DiscreteValuationRing.lean,Mathlib/RingTheory/WittVector/Domain.lean,Mathlib/RingTheory/WittVector/Frobenius.lean,Mathlib/RingTheory/WittVector/FrobeniusFractionField.lean,Mathlib/RingTheory/WittVector/InitTail.lean,Mathlib/RingTheory/WittVector/IsPoly.lean,Mathlib/RingTheory/WittVector/Teichmuller.lean,Mathlib/RingTheory/WittVector/Truncated.lean,Mathlib/RingTheory/WittVector/Verschiebung.lean |
10 |
1 |
['github-actions'] |
nobody |
18-24300 18 days ago |
18-25300 18 days ago |
18-25169 18 days |
0 |
| 43338 |
sgouezel author:sgouezel |
feat: in characteristic 0, precomposition by a linear map is analytic on the space of alternating maps |
This is the main missing ingredient to show that the bundle of alternating maps between C^n vector bundles is C^n, in #43234.
I was surprised to see that I need characteristic 0 (I could also do the proof in positive characteristic for finite-dimensional T2 spaces, but not in general -- not included in this PR, because the characteristic 0 is the one that interests me). I was afraid I was missing something stupid, then I checked Bourbaki and they have the same condition so it's probably reasonable after all.
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|
t-topology |
297/10 |
Mathlib/Analysis/Analytic/CPolynomial.lean,Mathlib/Analysis/Normed/Module/Alternating/Basic.lean,Mathlib/Topology/Algebra/Module/Alternating/Basic.lean,Mathlib/Topology/Algebra/Module/Alternating/Topology.lean,Mathlib/Topology/Algebra/Module/Multilinear/Basic.lean,Mathlib/Topology/Algebra/Module/Multilinear/Topology.lean |
6 |
15 |
['ADedecker', 'github-actions', 'sgouezel'] |
nobody |
18-22429 18 days ago |
19-5532 19 days ago |
19-29067 19 days |
1 |
| 43394 |
harahu author:harahu |
feat(Order/WithBot): add `WithBot.map_lt_map_iff` |
Add `WithBot.map_lt_map_iff`, the `<` analogue of `WithBot.map_le_iff`, for use in a follow-up.
Its natural home is the `LT` section. For symmetry, we also generalize `WithBot.map_le_iff`.
Also rename `map_le_iff` to `map_le_map_iff`, since the operation appears on both sides of the relation. The bare `X_le_iff` form is used throughout Mathlib for the one-sided shape `f a ≤ b ↔ ...`.
---
Developed with help from of Claude Opus 5.
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|
t-order
LLM-generated
|
12/5 |
Mathlib/Order/Hom/WithTopBot.lean,Mathlib/Order/WithBot.lean |
2 |
1 |
['github-actions'] |
nobody |
18-17120 18 days ago |
18-19782 18 days ago |
18-19556 18 days |
0 |
| 43174 |
Raph-DG author:Raph-DG |
feat(RingTheory): algebraic hartogs' lemma for ufds |
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|
t-ring-theory |
94/0 |
Mathlib/RingTheory/Ideal/UFD.lean |
1 |
1 |
['github-actions'] |
nobody |
18-15118 18 days ago |
20-68153 20 days ago |
20-67927 20 days |
0 |
| 42402 |
justus-springer author:justus-springer |
refactor(AlgebraicGeometry/Birational): phase out `Scheme.Over` for rational maps |
Split off from #40871
We refactor `PartialMap.IsOver` to not use `Scheme.Hom.IsOver`, which is being phased out. We still keep it as class with one field for now (as opposed to making it an abbrev for the morphism equation directly). This is because I think it's still useful to have instances for `PartialMap.restrict` and `PartialMap.toRationalMap`. However, some things which used to be instances (`isOver_comp` and `IsOver.compHom`) now need to be lemmas.
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|
t-algebraic-geometry
tech debt
|
100/86 |
Mathlib/AlgebraicGeometry/Birational/Composition.lean,Mathlib/AlgebraicGeometry/Birational/RationalMap.lean |
2 |
1 |
['github-actions'] |
nobody |
18-14656 18 days ago |
49-16086 49 days ago |
49-15860 49 days |
1 |
| 43409 |
gasparattila author:gasparattila |
doc: expand the documentation on `SMul ℕ` defeq issues |
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|
t-algebra label:t-algebra$ |
20/1 |
Mathlib/Algebra/Group/Monoid.lean |
1 |
1 |
['github-actions'] |
nobody |
18-1985 18 days ago |
18-7039 18 days ago |
18-6813 18 days |
0 |
| 43095 |
plp127 author:plp127 |
chore(Data/PFunctor): reduce defeq abuse around `PFunctor.W` |
Reduce the defeq abuse around `PFunctor.W` by adding some API.
---
- [x] depends on: #43056
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t-data
tech debt
|
88/52 |
Mathlib/Data/PFunctor/Multivariate/W.lean,Mathlib/Data/PFunctor/Univariate/Basic.lean,Mathlib/Data/QPF/Univariate/Basic.lean |
3 |
2 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
17-83187 17 days ago |
18-7617 18 days ago |
18-8228 18 days |
0 |
| 42482 |
SauersML author:SauersML |
feat(Probability/Decision): add data processing inequalities for minimax risk |
This PR adds the minimax analogs of the three data processing inequalities for the Bayes risk in Mathlib.Probability.Decision.Risk.Basic.
It is similar to the compositions section in PR #29143, but with minimax.
-----------
Claude Fable 5 wrote the code and GPT 5.6 Sol reviewed the code. This was written for a different project, and I identified this as a candidate for upstreaming into Mathlib.
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|
t-measure-probability
LLM-generated
new-contributor
|
31/0 |
Mathlib/Probability/Decision/Risk/Basic.lean |
1 |
3 |
['SauersML', 'github-actions'] |
RemyDegenne assignee:RemyDegenne |
17-62995 17 days ago |
46-59831 46 days ago |
46-59605 46 days |
0 |
| 42955 |
mpacholski author:mpacholski |
feat(diffgeo): add Hom-bundle support and fix pullback base points in T% elaborator |
# Changes
## `Mathlib/Geometry/Manifold/Notation.lean`
* **Add support for pullback bundles:** Replaced the hardcoded bound variable `x` with the dynamically extracted argument `arg`, which allows for using elaborator `T%` with pullback bundles, where the base point lies in a different manifold, e.g. `v : Π (m : M), E₁ (b m)`, where `b : M → B`.
* **Add support for Hom-bundles:** The elaborator now supports sections of Hom-bundles (`ContinuousLinearMap` between two fiber bundles, e.g. `ϕ : ∀ x, (E₁ x →L[𝕜] E₂ x`). It also supports the case where the base point lies in a different manifold (e.g. `ϕ : ∀ x, (E₁ (b x) →L[𝕜] E₂ (b x))`)
* **Support nested `TangentSpace`:** Modified `findModelFiber?` to natively intercept `TangentSpace` applications and extract the model fiber at index 2. This prevents typeclass synthesis failures when `TangentSpace` is used inside a Hom-bundle.
## `MathlibTest/DifferentialGeometry/Notation/Basic.lean`
* **Added tests for all the new usecases** this includes pullback bundles, Hom-bundles, pullback Hom-bundles, and Hom-bundles where one of the fibers is a `TangentSpace`.
## `Mathlib/Geometry/Manifold/VectorBundle/Hom.lean`
* **Refactor `Hom.lean`:** Replaced verbose `TotalSpace.mk'` boilerplate in with the newly supported `T%` syntax (e.g. `MDiffAt[s] T% ϕ x` instead of `MDiffAt[s] (fun m ↦ TotalSpace.mk' (F₁ →L[𝕜] F₂) (E := fun (x : B) ↦ (E₁ x →L[𝕜] E₂ x)) (b m) (ϕ m)) x)`
# Use of AI
The help of AI was used in writing the code in `Mathlib/Geometry/Manifold/Notation.lean`. It was hence manually edited to simplify the code as much as possible. While the author is not yet an expert in metaprogramming in Lean, he is willing to learn and receive feedback, and put all the effort to understand the presented code. The code was carefully tested with different parts of it changed and removed to make sure that every line serves a purpose to provide the expected functionality.
---
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t-differential-geometry
new-contributor
LLM-generated
|
127/36 |
Mathlib/Geometry/Manifold/Notation.lean,Mathlib/Geometry/Manifold/VectorBundle/Hom.lean,MathlibTest/DifferentialGeometry/Notation/Basic.lean |
3 |
5 |
['github-actions', 'grunweg', 'mpacholski'] |
ocfnash assignee:ocfnash |
17-62994 17 days ago |
32-11320 32 days ago |
32-11094 32 days |
3 |
| 43129 |
EtienneC30 author:EtienneC30 |
feat: define indistinguishability relation |
Introduce a predicate `Indistinguishable P X Y`, denoted `X ≡ᵐ[P] Y`, which states that `∀ᵐ ω ∂P, ∀ t, X t ω = Y t ω`. This proved quite nice to work with in the Brownian motion project, especially because it allows to use the `gcongr` tactic extensively.
---
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|
brownian
t-measure-probability
|
118/0 |
Mathlib.lean,Mathlib/Probability/Process/Indistinguishable.lean |
2 |
1 |
['github-actions'] |
RemyDegenne assignee:RemyDegenne |
17-62993 17 days ago |
26-28650 26 days ago |
26-28424 26 days |
2 |
| 43420 |
Timeroot author:Timeroot |
chore(AlgebraicGeometry): refactor and clean up AffineTransitionLimit.lean |
Refactor and cleans up very long proofs in AffineTransitionLimit.lean
Several proofs in this file were the largest in Mathlib (as measured by actual time to validate the proof term) and I noticed they were terrible. This was the result of some ~20 rounds of me with Claude together doing cleanup, not just shortening the proofs but also cleaning up the file in other ways. It involved pulling 15 helpful little lemmas out in other related files, reordering some declarations into an easier order to re-use, changing some section variables (to make declarations much more readable), a great reduction in `set_option backward.isDefEq.respectTransparency false` and `set_option backward.defeqAttrib.useBackward` debt, and of course, simplifying many proofs to use cleaner or more direct arguments.
The net result is 138 less lines than before, and instead of having a massive `Scheme.exists_π_app_comp_eq_of_locallyOfFinitePresentation` (and friends) that's 104 lines, nearly everything is at a sane length.
---
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|
tech debt |
532/670 |
Mathlib/AlgebraicGeometry/AffineScheme.lean,Mathlib/AlgebraicGeometry/AffineTransitionLimit.lean,Mathlib/AlgebraicGeometry/Gluing.lean,Mathlib/AlgebraicGeometry/Morphisms/QuasiSeparated.lean,Mathlib/AlgebraicGeometry/Restrict.lean,Mathlib/AlgebraicGeometry/Scheme.lean,Mathlib/CategoryTheory/Filtered/Basic.lean |
7 |
2 |
['github-actions'] |
nobody |
17-54540 17 days ago |
17-57303 17 days ago |
17-57077 17 days |
0 |
| 43411 |
JovanGerb author:JovanGerb |
chore: mark local tactics as `local` so they don't pollute the tactic documentation |
The tactic documentation is a very crowded place. This PR helps that by marking some tactics as `local`.
Other tactics could be removed from it by marking them with `@[tactic_alt]`.
Note: there is a tactic called `valid` that can't be made local because it is used in autoParams. It should probably be renamed instead.
---
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|
8/12 |
Archive/Imo/Imo2001Q5.lean,Counterexamples/ZeroDivisorsInAddMonoidAlgebras.lean,Mathlib/AlgebraicGeometry/ProjectiveSpectrum/Scheme.lean,Mathlib/Data/Nat/Bitwise.lean,Mathlib/FieldTheory/RatFunc/Basic.lean,Mathlib/RingTheory/WittVector/Basic.lean,Mathlib/RingTheory/WittVector/Truncated.lean |
7 |
1 |
['github-actions'] |
nobody |
17-51861 17 days ago |
18-1973 18 days ago |
18-2811 18 days |
0 |
| 43087 |
JX-Mo author:JX-Mo |
feat(RepresentationTheory): add Hecke/Basic.lean |
This file defines `HeckeModule` of a representation `ρ` as `Hom_G(k[G ⧸ H], ρ)` and identifies it
with the space of `H`-invariants. |
new-contributor
t-algebra
label:t-algebra$ |
87/0 |
Mathlib.lean,Mathlib/RepresentationTheory/Hecke/Basic.lean |
2 |
8 |
['JX-Mo', 'Whysoserioushah', 'github-actions'] |
nobody |
17-38625 17 days ago |
28-15568 28 days ago |
28-15444 28 days |
0 |
| 43407 |
thomaskwaring author:thomaskwaring |
feat(Order/Hom/CompleteLattice): order adjoints for `{sSup/sInf}Hom` |
This PR defines the order adjoint of a `sSup` or `sInf` preserving function, which defines an equivalence `sSupHom α β ≃ sInfHom β α`, and an order isomorphism `sSupHom α β ≃o (sInfHom β α)ᵒᵈ` (plus duals).
---
I'm not 100% certain on the naming here, and would very much appreciate any advice & help with `to_dual` — an alternative option is `upperAdj` and `lowerAdj`, which `to_dual`-ises automatically.
[](https://gitpod.io/from-referrer/)
|
t-order |
69/0 |
Mathlib/Order/Hom/CompleteLattice.lean |
1 |
4 |
['SnirBroshi', 'github-actions', 'thomaskwaring'] |
nobody |
17-25574 17 days ago |
18-8948 18 days ago |
18-8722 18 days |
0 |
| 39935 |
FordUniver author:FordUniver |
feat(Combinatorics/SimpleGraph/Finite): LocallyFiniteOrder |
Adds `LocallyFiniteOrder (SimpleGraph V)` for finite `V` and decidability of `G ≤ H` for a fintype `V` with decidable adjacency. Required for finite sums over intervals of simple graphs.
Co-authored-by: Malte Jackisch <45597826+MaltyBlanket@users.noreply.github.com>
---
Came up while writing a Möbius inversion between copy counts and induced copy counts ([WIP](https://github.com/FordUniver/mathlib4/pull/36/changes)) that sums over the closed interval `Finset.Icc G ⊤` of supergraphs. Decidability of the order plus local-finiteness of the lattice felt like a clean standalone piece to land first, before the rest of the Möbius file.
Less sure about what the conventions for declaring type class instances are in mathlib, let me know if this is not of the expected shape or should not be included at all. |
t-combinatorics |
13/0 |
Mathlib/Combinatorics/SimpleGraph/Finite.lean |
1 |
15 |
['FordUniver', 'SnirBroshi', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
17-19085 17 days ago |
17-33276 17 days ago |
94-3346 94 days |
0 |
| 42716 |
Raph-DG author:Raph-DG |
feat(CategoryTheory): module structure on ext groups |
In this PR, we construct an R module structure on Ext A G n given a ring homomorphism (φ : R →+* End G). We also show that this module structure agrees with the existing module structure on Ext A G n in the case where the ambient category is R linear.
The main motivation for doing this is that until we have some nice comparison lemmas going between cohomology taken in the category of sheaves of modules and cohomology taken in the category of sheaf of abelian groups, I think it will be more useful to work with the cohomology of the underlying sheaf of abelian groups of a sheaf of modules. However, the category of sheaves of abelian groups is not R linear for most R, so we do not immediately inherit R-module structure on the cohomology groups from this machinery.
AI disclosure: I had AI perform some cleanups and edits to some code originally written by me, as well as having it move things into the correct files. I also had it create this branch from another branch which I decided had too much content for a single PR.
---
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|
t-algebra label:t-algebra$ |
31/0 |
Mathlib/Algebra/Homology/DerivedCategory/Ext/Linear.lean |
1 |
3 |
['github-actions', 'mathlib-bors'] |
nobody |
17-18309 17 days ago |
24-20362 24 days ago |
39-21880 39 days |
1 |
| 43183 |
BorisTheBrave author:BorisTheBrave |
fix(Tactic/Linarith): carry `!` and the configuration into `linarith?… |
`linarith?` uses the same configuration as `linarith`,
but previously printed a bare `linarith only [...]` suggestion regardless
of the configuration.
Now all config options except `minimize` are carried into the suggestion.
---
Note: #42588 has a [test](https://github.com/leanprover-community/mathlib4/pull/42588/files#diff-3657543f804f0a57e384f6a9338cc53803a50bebdfb16c1ecd0b514f3fda332fR863) that
unintentionally highlights the problem:
```lean
/--
info: Try this:
[apply] linarith only [hne, hle]
-/
#guard_msgs in
example (a b : ℚ) (hne : a ≠ b) (hle : a ≥ b) (junk : (0:ℚ) < 1) : b < a := by
linarith? +splitNe
```
This suggestion doesn't actually close the proof.
It should suggest `linarith +splitNE only [hne, hle]`.
Should we be using `says` syntax for these tests? I'm unclear on the rule here.
Note: `simp?` has very similar code, `filterSuggestionsAndLocalsFromSimpConfig`, that this PR was modelled after.
AI disclosure:
Claude Code (Fable) first flagged this problem to me, and wrote the first draft. I
made some tweaks to better fit mathlib's style, and wrote all the prose.
[](https://gitpod.io/from-referrer/) |
t-meta
new-contributor
|
70/6 |
Mathlib/Tactic/Linarith/Frontend.lean,MathlibTest/Tactic/Linarith/Basic.lean |
2 |
12 |
['BorisTheBrave', 'JovanGerb', 'github-actions', 'sharky564'] |
JovanGerb assignee:JovanGerb |
17-10320 17 days ago |
17-30178 17 days ago |
24-28172 24 days |
0 |
| 41702 |
smmercuri author:smmercuri |
chore: make `adicCompletion` and `Completion` print nicer |
- Stop `toCompletion` and `ofCompletion` printing with braces
- Arguments to `completionMap` should be explicit.
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[](https://gitpod.io/from-referrer/)
|
|
28/6 |
Mathlib/NumberTheory/NumberField/Completion/InfinitePlace.lean,Mathlib/NumberTheory/NumberField/Completion/LiesOverInstances.lean,Mathlib/RingTheory/DedekindDomain/AdicValuation.lean |
3 |
3 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
17-2678 17 days ago |
18-37563 18 days ago |
56-12328 56 days |
0 |
| 34910 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph/Acyclic): a graph is a tree iff it's acyclic and has exactly `n - 1` edges |
---
This was my white whale for quite some time. Hooray!
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[](https://gitpod.io/from-referrer/)
|
t-combinatorics |
91/6 |
Mathlib/Combinatorics/SimpleGraph/Acyclic.lean,Mathlib/Combinatorics/SimpleGraph/Connectivity/Connected.lean,Mathlib/Order/RelIso/Basic.lean |
3 |
24 |
['Rida-Hamadani', 'SnirBroshi', 'amellendijk', 'github-actions', 'jt0202', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
16-77438 16 days ago |
71-79144 71 days ago |
97-27679 97 days |
0 |
| 42926 |
NoahW314 author:NoahW314 |
feat(Algebra/Order): add `MulLeftMono` implies `IsDedekindFinite` instance |
In the process, generalize an existing lemma that required both `MulLeftMono` and `MulRightMono` into two lemmas that only require one of `MulLeftMono` or `MulRightMono`.
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra label:t-algebra$ |
47/25 |
Mathlib/Algebra/Order/BigOperators/Group/Finset.lean,Mathlib/Algebra/Order/Monoid/Unbundled/Basic.lean,Mathlib/Algebra/Order/Ring/Unbundled/Basic.lean,Mathlib/Algebra/Quaternion.lean,Mathlib/Algebra/Ring/IsFormallyReal.lean,Mathlib/Analysis/Convex/Basic.lean,Mathlib/Analysis/Normed/Unbundled/SmoothingSeminorm.lean,Mathlib/Geometry/Euclidean/Angle/Unoriented/RightAngle.lean,Mathlib/LinearAlgebra/QuadraticForm/Prod.lean,Mathlib/NumberTheory/Dioph.lean,Mathlib/NumberTheory/Zsqrtd/Basic.lean,Mathlib/RingTheory/Coprime/Basic.lean,Mathlib/SetTheory/Cardinal/Divisibility.lean |
13 |
6 |
['NoahW314', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts'] |
nobody |
16-65722 16 days ago |
16-70278 16 days ago |
33-25984 33 days |
0 |
| 38009 |
CBirkbeck author:CBirkbeck |
feat(RingTheory/Valuation): define the valuation spectrum and its topology |
Define the valuation spectrum `Spv A` of a commutative ring and equip it with the topology generated by basic open sets, following Wedhorn's *Adic Spaces*. Also define the pullback (`comap`) of a `ValuativeRel` along a ring homomorphism. This is preparation for later defining adic spaces.
Note the code was generated by claude code, but I have cleaned up and pre-reviewed the work.
---
**Refreshed 3 Sep 2026:** merged current master; `ValuativeRel.comap` and `not_vle_zero_of_isUnit` generalised to semirings (the class is stated for semirings); names aligned with `PrimeSpectrum` (`continuous_comap`, `isEmbedding_comap_quotientMk`, `range_comap_quotientMk`, `localization_comap_range`); `mem_basicOpen_iff`/`isOpen_basicOpen` added and `@[simp]` on the round-trip lemmas. Ported and exercised in TauCeti (`TauCeti/AlgebraicGeometry/AdicSpace/ValuationSpectrum.lean`), which builds Wedhorn §7 on top of this API.
🤖 Generated with [Claude Code](https://claude.com/claude-code)
https://claude.ai/code/session_01A6f2mYh682Cc9g7DbpQZ2k
|
t-ring-theory
LLM-generated
|
421/0 |
Mathlib.lean,Mathlib/RingTheory/Valuation/ValuationSpectrum.lean,Mathlib/RingTheory/Valuation/ValuativeRel/Comap.lean |
3 |
78 |
['CBirkbeck', 'adamtopaz', 'chrisflav', 'dagurtomas', 'faenuccio', 'github-actions', 'jcommelin', 'jjdishere', 'riccardobrasca', 'sfingali'] |
mattrobball assignee:mattrobball |
16-63012 16 days ago |
70-36437 70 days ago |
155-9922 155 days |
0 |
| 38716 |
YaelDillies author:YaelDillies |
feat(Algebra/Order): `NNRat.cast_sub` |
From AddCombi
---
- [x] depends on: #41850
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[](https://gitpod.io/from-referrer/)
|
t-algebra
large-import
label:t-algebra$ |
13/2 |
Mathlib/Algebra/Order/Field/Rat.lean,Mathlib/Data/NNRat/Defs.lean |
2 |
2 |
['github-actions', 'mathlib-dependent-issues'] |
kim-em assignee:kim-em |
16-63011 16 days ago |
59-33122 59 days ago |
59-39181 59 days |
2 |
| 40582 |
dennj author:dennj |
feat(Analysis): the one-sided Laplace transform |
Introducing Laplace transform `ℒ(f)(s) = ∫ t in Ioi 0, exp (-s * t) • f t`
It is needed in physlib
I modelled the file following Mellin transform.
## Main definitions
* `LaplaceConvergent f s`: the Laplace integral is well-defined at `s`.
* `laplace f s`: the Laplace transform, a total function
* `HasLaplace f s m`: convergence together with the value `m`.
## Main results
* Linearity: `laplace_add`/`sub`/`const_smul`/`neg`/`zero`/`div_const`, at the `laplace`, `LaplaceConvergent`, and `HasLaplace` levels.
* `laplaceConvergent_iff_norm`, `norm_laplace_le_integral_norm`: reduction of convergence and norm bounds to the real exponential weight.
* `laplaceConvergent_of_isBigO_exp`: existence for functions of exponential order, on the appropriate right half-plane.
* `LaplaceConvergent.of_re_le`/`of_re_lt`: monotonicity of convergence in `s.re` (the half-plane structure).
* `laplace_cexp_smul`: the frequency-shift rule.
* `laplace_indicator_comp_sub`: the time-shift rule.
* `laplace_comp_mul_left`/`right`: behaviour under positive dilation.
* `hasLaplace_const`/`hasLaplace_one`/`hasLaplace_cexp`: basic transform values.
Human made PR |
t-measure-probability
new-contributor
|
653/0 |
Mathlib.lean,Mathlib/Analysis/LaplaceTransform.lean |
2 |
34 |
['AlyciaBHZ', 'EtienneC30', 'dennj', 'github-actions', 'mathlib-splicebot'] |
urkud assignee:urkud |
16-63008 16 days ago |
46-11693 46 days ago |
98-56514 98 days |
0 |
| 41111 |
erdkocak author:erdkocak |
feat(ModelTheory): add cardinal-generated substructure API |
This is the first PR in a sequence splitting #40561.
It adds a `CardinalLTGenerated` predicate for substructures, basic closure and map lemmas, and the finitely generated specialization.
Co-authored-by: Yağız Kaan Aydoğdu <y.kaan.aydogdu@gmail.com>
Co-authored-by: Yusuf Demir <yusufdemir12610@gmail.com>
Advised-by: Ayhan Günaydın <ayhan.gunaydin@bogazici.edu.tr>
Advised-by: Metin Ersin Arıcan <metin.arican@bogazici.edu.tr>
Please note that we utilized agentic AI tools (Claude Opus, ChatGPT Codex) during the development of this PR. Most of the proofs of the major theorems are direct translations from human-language source material (see the diff in `references.bib`) into Lean proofs using the mentioned AI tools. However, all design and formalization decisions were made by us. |
t-logic
new-contributor
LLM-generated
|
51/0 |
Mathlib/ModelTheory/FinitelyGenerated.lean,Mathlib/ModelTheory/Substructures.lean |
2 |
9 |
['NoahW314', 'erdkocak', 'felixpernegger', 'github-actions'] |
fpvandoorn assignee:fpvandoorn |
16-63006 16 days ago |
79-31847 79 days ago |
85-29206 85 days |
5 |
| 43229 |
yui9696 author:yui9696 |
feat(Probability/Moments): probability generating function |
Define the probability generating function `pgf X μ t = μ[t ^ X]` of an `ℕ`-valued random variable, mirroring the `mgf` API in `Mathlib/Probability/Moments/Basic.lean`.
API:
- values at `0` and `1`, nonnegativity, monotonicity and boundedness on `[0, 1]`;
- `integrable_pow_pgf`: the defining integrand is integrable on `[-1, 1]` for any finite measure;
- congruence lemmas (`pgf_congr`, `pgf_id_map`, `pgf_congr_identDistrib`);
- `pgf_eq_tsum`: the power-series form `pgf X μ t = ∑' n, μ.real (X ⁻¹' {n}) * t ^ n`;
- `pgf_exp_eq_mgf`: the bridge to the moment-generating function;
- `IndepFun.pgf_add` / `iIndepFun.pgf_sum`: the product formula for sums of independent variables.
Main result: `map_eq_map_of_pgf_eq` — **the generating function determines the law**. The point masses are read off as the coefficients of a power series of radius at least 1 (via `FormalMultilinearSeries.ofScalars`), and the uniqueness of power-series coefficients recovers them from the function.
Everything is stated for a general (finite) measure where possible, with `IsProbabilityMeasure` only where it is genuinely needed.
🤖 Generated with [Claude Code](https://claude.com/claude-code) |
t-measure-probability
LLM-generated
new-contributor
|
234/0 |
Mathlib.lean,Mathlib/Probability/Moments/PGF.lean |
2 |
3 |
['github-actions', 'yui9696'] |
EtienneC30 assignee:EtienneC30 |
16-63003 16 days ago |
22-13553 22 days ago |
22-13327 22 days |
0 |
| 39075 |
Thmoas-Guan author:Thmoas-Guan |
feat(Algebra/CommRingCat): colimit of local ring via local hom |
In this PR, we deal with filtered colimit of local ring via local homomorphisms, proving it is
again local, with maximal ideal equal to the union of images of maximal ideals.
Further more, we proved their residue field is colimit too (in category of local ring, residue field functor preserve colimit).
Co-authored-by: Wang Jingting <wangjt2020@163.com>
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra label:t-algebra$ |
211/0 |
Mathlib.lean,Mathlib/Algebra/Category/Ring/FilteredColimitsLocal.lean |
2 |
3 |
['Thmoas-Guan', 'github-actions', 'riccardobrasca'] |
mattrobball assignee:mattrobball |
16-54432 16 days ago |
71-53216 71 days ago |
136-17940 136 days |
5 |
| 35561 |
Thmoas-Guan author:Thmoas-Guan |
feat(RingTheory): power series over regular local ring |
In this PR, we proved that power series over regular local ring is again regular local ring.
Same for finite multivariable power series.
---
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- [x] depends on: #28682
[](https://gitpod.io/from-referrer/)
|
t-ring-theory |
71/0 |
Mathlib.lean,Mathlib/RingTheory/RegularLocalRing/PowerSeries.lean |
2 |
6 |
['github-actions', 'mathlib-bors', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
16-53210 16 days ago |
16-53973 16 days ago |
27-8320 27 days |
3 |
| 40922 |
Thmoas-Guan author:Thmoas-Guan |
feat(Algebra/Module): minimal generators of module over local ring |
In this PR, we proved for fg module over local ring, "two set of minimal generators can be transported by an invertible matrix", implemented as the commuting morphism between the source of the two surjection must be bijective.
(The last lemma is for transport between Koszul complex form two set of generators)
---
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|
t-algebra label:t-algebra$ |
93/0 |
Mathlib.lean,Mathlib/Algebra/Module/MinimalGenerators.lean |
2 |
1 |
['github-actions'] |
mattrobball assignee:mattrobball |
16-52852 16 days ago |
90-38756 90 days ago |
90-38530 90 days |
2 |
| 37953 |
Thmoas-Guan author:Thmoas-Guan |
feat(RingTheory/Smooth): transcendental separable extension is formally smooth |
In this PR, we proved that transcendental separable extension is formally smooth via reduction to fg cases.
---
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|
t-ring-theory |
141/2 |
Mathlib/RingTheory/Smooth/Field.lean |
1 |
2 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
16-33076 16 days ago |
17-1175 17 days ago |
17-1033 17 days |
4 |
| 43446 |
gasparattila author:gasparattila |
feat: `direction` of `AffineSubspace.comap` |
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|
t-algebra label:t-algebra$ |
19/0 |
Mathlib/LinearAlgebra/AffineSpace/AffineSubspace/Basic.lean |
1 |
2 |
['github-actions', 'wwylele'] |
nobody |
16-32151 16 days ago |
16-83080 16 days ago |
16-82854 16 days |
1 |
| 43461 |
mcdoll author:mcdoll |
feat(Analysis/SchwartzMap): missing lemmas about inverse Fourier transform |
Adds lemmas that are already present for the Fourier transform, plus a pair of lemmas for the relation to the `L1` Fourier transform.
---
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|
t-analysis |
54/0 |
Mathlib/Analysis/Distribution/SchwartzSpace/Fourier.lean |
1 |
1 |
['github-actions'] |
nobody |
16-23313 16 days ago |
16-24682 16 days ago |
16-24456 16 days |
1 |
| 41892 |
Ljon4ik4 author:Ljon4ik4 |
feat: mapOfCompatibleSMul is the same map independently of S |
The `mapOfCompatibleSMul : M ⊗[A] N →ₗ[S] M ⊗[R] N` is the same map independently of `S`. This PR adds two lemmas asserting that (one for the underlying AddHom, one for the kernels).
I am not quite sure whether the second one is in the optimal shape: It was the shape useful to me, but maybe there is some better way to phrase it or it should be omitted completely (since it follows from the first one...).
---
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|
t-algebra label:t-algebra$ |
14/1 |
Mathlib/LinearAlgebra/TensorProduct/Basic.lean |
1 |
11 |
['Ljon4ik4', 'Ruben-VandeVelde', 'github-actions', 'mathlib-merge-conflicts', 'themathqueen'] |
nobody |
16-20811 16 days ago |
16-20811 16 days ago |
63-40533 63 days |
0 |
| 43464 |
gasparattila author:gasparattila |
fix(LinearAlgebra/Projectivization/Subspace): fix non-defeq `Min` instances |
The `CompleteLattice` instance of `Projectivization.Subspace` is currently defined using `completeLatticeOfInf`, which conflicts with the `Min` instance defined earlier. This PR fixes this by overriding the `inf` field. To avoid possible issues with `⊥` and `⊤`, they are also redefined to have good defeqs.
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|
t-algebra label:t-algebra$ |
17/20 |
Mathlib/LinearAlgebra/Projectivization/Subspace.lean |
1 |
1 |
['github-actions'] |
nobody |
16-19552 16 days ago |
16-20330 16 days ago |
16-20104 16 days |
0 |
| 41633 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph/Paths): length of closed a walk/trail isn't `1`/`2` |
For a closed walk `p`:
- `p.length ≠ 1`
- `p.IsTrail` → `p.length ≠ 2`
- `p.IsTrail` → `p.length ≤ 2` → `p.Nil`
---
Since a circuit is a closed non-nil trail, `IsTrail.nil_of_length_le_two` is basically the contrapositive of `IsCircuit.three_le_length`, but I think this form is useful.
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|
t-combinatorics |
11/4 |
Mathlib/Combinatorics/SimpleGraph/Paths.lean,Mathlib/Combinatorics/SimpleGraph/Walk/Basic.lean |
2 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
16-13845 16 days ago |
16-14617 16 days ago |
67-33497 67 days |
0 |
| 41729 |
vaca22 author:vaca22 |
feat(RingTheory/DedekindDomain): add divisor group core |
Add the divisor group of a Dedekind domain as a formal-sum model, together with the additive equivalence to the multiplicative group of nonzero fractional ideals.
**Relation to what Mathlib already has.** As pointed out on Zulip, Mathlib already knows that fractional ideals factor: `FractionalIdeal.count` gives the exponent of a height-one prime, and `ClassGroup` is built from fractional ideals directly. This PR does not re-prove any of that — it reuses `count` and `finite_factors` verbatim. What it adds is the *additive* packaging:
* `IsDedekindDomain.Divisor R := HeightOneSpectrum R →₀ ℤ`, so a divisor is a finitely supported integer-valued function and one can write `D₁ + D₂`, `-D`, `D v`, and use the whole `Finsupp` API (`support`, `sum`, induction on the support);
* `FractionalIdeal.divisorEquiv`, an `AddEquiv` from `(FractionalIdeal R⁰ K)ˣ` to `Divisor R`, turning ideal multiplication into divisor addition.
The multiplicative view is the right one for the class group; the additive one is what divisor-theoretic arguments are written in, where one constantly forms `D - D'`, compares coefficients prime by prime, and does induction over `D.support`. Having both, related by a single `AddEquiv`, means neither side has to be re-derived.
**Downstream use.** This is the bottom layer of a formalization of Riemann–Roch for algebraic function fields (announced in `#AI authored projects > Riemann–Roch for function fields`): `L(D)`, `deg D`, and the statement `ℓ(D) = deg D + 1 - g + ℓ(W - D)` are all phrased in terms of additive divisors, and the degree map is defined by summing coefficients over `D.support`.
Happy to reshape the API — in particular whether `Divisor` should be an `abbrev` or a structure, and whether this belongs next to `Factorization` rather than in its own file.
AI usage: LLM-generated, disclosed per the AI policy.
|
t-ring-theory
new-contributor
LLM-generated
|
100/0 |
Mathlib.lean,Mathlib/RingTheory/DedekindDomain/Divisor.lean |
2 |
4 |
['github-actions', 'grunweg', 'vaca22'] |
nobody |
16-11675 16 days ago |
66-72979 66 days ago |
68-69956 68 days |
0 |
| 41732 |
vaca22 author:vaca22 |
feat(RingTheory/ClassGroup): add mulEquiv_mk0 |
Add `ClassGroup.mulEquiv_mk0`: the class-group isomorphism induced by a ring equivalence `e : R ≃+* S` sends `ClassGroup.mk0 I` to `ClassGroup.mk0 (I.map e)`.
`ClassGroup.mulEquiv` is currently only characterized through the `FractionRing` comparison equivalences, so any concrete computation has to unfold `ClassGroup.equiv` and chase fractional ideals through `IsFractionRing.semilinearEquivOfRingEquiv` by hand. This lemma states the expected behaviour on generators — classes of nonzero ideals — and is marked `@[simp 1100]` so that transporting class-group facts along a ring equivalence becomes a `simp` step.
**Downstream use.** This came out of a formalization of Riemann–Roch for algebraic function fields (announced in `#AI authored projects > Riemann–Roch for function fields`). There the group law on a Weierstrass elliptic curve is compared with the degree-zero class group, and the comparison is set up along a ring equivalence between two coordinate presentations; without this lemma the transport is several lines of manual fractional-ideal chasing at each use site.
The proof is by injectivity of `ClassGroup.equiv (FractionRing S)`, reducing to the statement that the semilinear equivalence maps `coeSubmodule` of `I` onto `coeSubmodule` of `I.map e`.
AI usage: LLM-generated, disclosed per the AI policy.
|
t-ring-theory
new-contributor
LLM-generated
|
43/0 |
Mathlib/RingTheory/ClassGroup/Basic.lean |
1 |
3 |
['github-actions', 'vaca22'] |
nobody |
16-11644 16 days ago |
69-18406 69 days ago |
69-18180 69 days |
0 |
| 41399 |
vlad902 author:vlad902 |
feat(MvPolynomial): ideal generated by variables is prime over a domain |
---
AI: Used Claude to help search for lemmas and golf, no AI code made it into the final PR.
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|
t-ring-theory |
46/7 |
Mathlib/Algebra/MvPolynomial/Variables.lean,Mathlib/RingTheory/AdicCompletion/Completeness.lean,Mathlib/RingTheory/MvPolynomial/Ideal.lean |
3 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
16-8025 16 days ago |
16-16557 16 days ago |
75-64332 75 days |
1 |
| 42723 |
kim-em author:kim-em |
feat(GroupTheory/Perm): cycle type of a power of a cycle |
This PR computes the cycle type of a power of a cycle. If `f` has support cardinality `n` and `d = gcd n k`, then `f ^ k` is the identity when `n ∣ k`; otherwise its cycle type is `Multiset.replicate d (n / d)`. It also adds the pointwise criterion that `f ^ k` fixes any point in the support of `f` exactly when `n ∣ k`, complementing the existing `orderOf_pow` and `Equiv.Perm.IsCycle.pow_iff` API.
This contribution originated in the [Tau Ceti project](https://github.com/TauCetiProject/TauCeti), an AI-written mathematics repository; it was adapted for Mathlib with Claude Code and reviewed with OpenAI Codex, supervised by Kim Morrison.
:robot: Prepared with OpenAI Codex
|
t-group-theory
LLM-generated
TauCeti
|
73/0 |
Mathlib/GroupTheory/Perm/Cycle/Basic.lean,Mathlib/GroupTheory/Perm/Cycle/Type.lean |
2 |
1 |
['github-actions'] |
nobody |
15-66621 15 days ago |
18-53773 18 days ago |
18-53547 18 days |
0 |
| 42968 |
j-loreaux author:j-loreaux |
feat(Analysis/Calculus): derivatives of parametric circle integrals |
This PR adds theorems computing the derivative of parametric circle integrals. These are analogues of the same theorems for interval integrals, and they are proven by reducing to those.
---
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|
t-analysis |
167/0 |
Mathlib.lean,Mathlib/Analysis/Calculus/ParametricCircleIntegral.lean,Mathlib/Analysis/SpecialFunctions/Complex/CircleMap.lean |
3 |
5 |
['github-actions', 'j-loreaux', 'kebekus'] |
nobody |
15-62105 15 days ago |
32-56851 32 days ago |
32-56625 32 days |
0 |
| 43478 |
plp127 author:plp127 |
feat(Data/PFunctor): pointfree lemmas for map |
Prove `PFunctor.map_id` and `PFunctor.map_comp_map`, pointfree analogues of `PFunctor.id_map` and `PFunctor.map_map`. The names are chosen to match the corresponding lemmas for `LawfulFunctor`.
---
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|
t-data |
5/0 |
Mathlib/Data/PFunctor/Univariate/Basic.lean |
1 |
1 |
['github-actions'] |
nobody |
15-52913 15 days ago |
15-53658 15 days ago |
15-53574 15 days |
0 |
| 43487 |
justus-springer author:justus-springer |
feat(LinearAlgebra/LinearIndependent/Basic): promote `LinearIndepOn.id_imageₛ` to iff, and add `smul_set` version |
This is the "id"-version of `LinearMap.linearIndepOn_iff_of_injOn`. Now `LinearIndepOn.id_imageₛ` is an alias for the mpr direction.
The smul version looks similar to `LinearIndependent.group_smul_iff`, but theirs needs a group action on the ring, not the module.
---
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|
t-algebra label:t-algebra$ |
13/3 |
Mathlib/LinearAlgebra/LinearIndependent/Basic.lean |
1 |
1 |
['github-actions'] |
nobody |
15-27670 15 days ago |
15-30615 15 days ago |
15-30389 15 days |
0 |
| 43100 |
JJYYY-JJY author:JJYYY-JJY |
feat(Analysis/Complex/CauchyIntegral): add Cauchy formula at interior points |
This generalizes the higher-order Cauchy integral formula from the center of a disc to an arbitrary point in its interior, and closes the TODO.
Co-authored-by: ajirving <29164966+ajirving@users.noreply.github.com>
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|
t-analysis |
58/14 |
Mathlib/Analysis/Complex/CauchyIntegral.lean |
1 |
2 |
['ajirving', 'github-actions'] |
nobody |
15-12984 15 days ago |
27-40948 27 days ago |
27-40722 27 days |
0 |
| 42839 |
JadAbouHawili author:JadAbouHawili |
feat(Combinatorics/SimpleGraph/Connectivity): simple graph is 2-edge-connected iff it has no bridge |
This PR proves the equivalence of a graph being 2-edge-connected iff it has no bridge resolving the relevant TODO.
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|
t-combinatorics
new-contributor
|
16/3 |
Mathlib/Combinatorics/SimpleGraph/Connectivity/EdgeConnectivity.lean |
1 |
39 |
['JadAbouHawili', 'SnirBroshi', 'github-actions'] |
nobody |
15-7911 15 days ago |
15-82301 15 days ago |
34-76959 34 days |
0 |
| 42370 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph/Maps): more `map`/`comap` API |
---
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|
t-combinatorics |
114/9 |
Mathlib/Combinatorics/SimpleGraph/Maps.lean |
1 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
14-76355 14 days ago |
14-77157 14 days ago |
49-35728 49 days |
1 |
| 42647 |
martinwintermath author:martinwintermath |
feat(Geometry/Convex): add polytopes |
This PR adds the predicate `IsPolytope` for a subset of a `ConvexSpace`.
This is the first PR in a series of PRs implementing polytope theory.
---
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|
t-convex-geometry
maintainer-merge
|
113/0 |
Mathlib.lean,Mathlib/Geometry/Convex/Polytope/Basic.lean |
2 |
23 |
['Parcly-Taxel', 'YaelDillies', 'github-actions', 'grunweg', 'martinwintermath', 'vihdzp'] |
nobody |
14-74526 14 days ago |
17-20967 17 days ago |
37-21740 37 days |
0 |
| 41666 |
alreadydone author:alreadydone |
feat(Order): constructors for DistribLattice and IsModularLattice |
Add three constructors for DistribLattice and one for IsModularLattice.
Co-authored-by: Aaron Liu @plp127
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|
t-order |
189/96 |
Mathlib.lean,Mathlib/Order/Lattice.lean,Mathlib/Order/Lattice/Constructor.lean,Mathlib/Order/ModularLattice.lean |
4 |
12 |
['SnirBroshi', 'alreadydone', 'github-actions', 'leanprover-radar', 'plp127'] |
nobody |
14-70900 14 days ago |
29-80625 29 days ago |
55-59245 55 days |
1 |
| 43503 |
carlok author:carlok |
chore: weaken unused typeclass assumptions on section variables |
This PR has been described at
https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/unused.20hypotheses.3A.20431.20in.20a.2029k.20sample.2C.20and.2033.20one-line.20PRs/near/622113682
it is a list of mechanically found [1] one-liners relaxing theorems whose setting is stronger than their proof needs. Each change compiled alone against an unmodified file (whole library building locally at 633b366493).
More information on the project https://github.com/carlok/unused-assumptions
In the zulip thread, @SnirBroshi spotted that the refactored Topology/EMetricSpace/Pi.lean takes [EDist α] in place of two binders.
PS: A single PR because I noticed #42214 (813 files, merged, same kind of change).
Thank you for your work.
[1] LLM + Lean4 itself |
new-contributor |
32/32 |
Mathlib/Algebra/Algebra/Tower.lean,Mathlib/Algebra/Category/ModuleCat/ChangeOfRingsExact.lean,Mathlib/Algebra/CharP/Algebra.lean,Mathlib/Algebra/Group/Submonoid/Pointwise.lean,Mathlib/Algebra/Order/Archimedean/Defs.lean,Mathlib/Algebra/Order/CauSeq/Basic.lean,Mathlib/Algebra/Order/Group/Indicator.lean,Mathlib/Algebra/Order/Sub/Unbundled/Hom.lean,Mathlib/Algebra/Order/WithTop/Untop0.lean,Mathlib/Algebra/Regular/SMul.lean,Mathlib/Algebra/Star/SelfAdjoint.lean,Mathlib/Analysis/Convex/Cone/TensorProduct.lean,Mathlib/Analysis/Convex/Gauge.lean,Mathlib/Analysis/Normed/Group/CocompactMap.lean,Mathlib/Analysis/Normed/Group/Seminorm.lean,Mathlib/Data/Finset/Pairwise.lean,Mathlib/GroupTheory/Torsion.lean,Mathlib/LinearAlgebra/BilinearMap.lean,Mathlib/LinearAlgebra/LinearIndependent/Defs.lean,Mathlib/Order/Antichain.lean,Mathlib/Order/Monotone/Extension.lean,Mathlib/RingTheory/AlgebraTower.lean,Mathlib/RingTheory/DedekindDomain/Ideal/Basic.lean,Mathlib/RingTheory/Ideal/Quotient/Over.lean,Mathlib/RingTheory/Localization/Basic.lean,Mathlib/RingTheory/Localization/Module.lean,Mathlib/RingTheory/Valuation/ValuationRing.lean,Mathlib/Topology/EMetricSpace/Pi.lean,Mathlib/Topology/Instances/Sign.lean |
29 |
5 |
['github-actions', 'leanprover-radar', 'themathqueen'] |
nobody |
14-60230 14 days ago |
14-75147 14 days ago |
14-74921 14 days |
0 |
| 43502 |
teorth author:teorth |
feat(NumberTheory/LSeries): root numbers and non-vanishing in the left half-plane |
`Mathlib/NumberTheory/LSeries/Nonvanishing.lean` currently establishes nonvanishing of Dirichlet
`L`-functions and the Riemann zeta function are non-zero to the **right** of the critical strip
(`re s ≥ 1`). This PR adds the counterparts on the **left** (`re s ≤ 0`), which follow from the
functional equation, together with some auxiliary facts about root-numbers and Gauss-sums which
could be independently useful.
---
## Root numbers and Gauss sums
* `DirichletCharacter.completedLFunction_ne_zero_of_one_le_re`: the completed `L`-function
`Λ(χ, s)` is non-zero for `1 ≤ re s` (except for the trivial character at `s = 1`).
* `DirichletCharacter.rootNumber_mul_rootNumber_inv`: for a primitive character,
`rootNumber χ * rootNumber χ⁻¹ = 1`, obtained formally from the functional equation applied to
both `χ` and `χ⁻¹`.
* `DirichletCharacter.norm_rootNumber`: `‖rootNumber χ‖ = 1` for primitive `χ`.
* `DirichletCharacter.norm_gaussSum_stdAddChar`: `‖gaussSum χ stdAddChar‖ = √N` for primitive `χ`
— the classical evaluation `|τ(χ)| = √N`, here derived from the functional equation rather than
the usual finite-field argument, so it holds for every modulus (Mathlib previously only had
Gauss-sum non-vanishing over finite fields).
## Non-vanishing in the left half-plane
* `DirichletCharacter.LFunction_eq_zero_iff_of_re_nonpos`: for a primitive character and `re s ≤ 0` with `χ ≠ 1` or `s` non-zero, the L-function vanishes precisely when the gamma factor vanishes.
* `riemannZeta_eq_zero_iff_of_re_nonpos`: for `re s ≤ 0`, `ζ s = 0` iff `s` is a
negative even integer.
The code here was initially LLM-generated, but then heavily golfed and reviewed by the author. |
t-number-theory |
97/4 |
Mathlib/NumberTheory/DirichletCharacter/Basic.lean,Mathlib/NumberTheory/DirichletCharacter/Bounds.lean,Mathlib/NumberTheory/LSeries/Dirichlet.lean,Mathlib/NumberTheory/LSeries/DirichletContinuation.lean,Mathlib/NumberTheory/LSeries/Nonvanishing.lean |
5 |
1 |
['github-actions'] |
nobody |
14-54407 14 days ago |
14-76311 14 days ago |
14-76085 14 days |
0 |
| 43507 |
SnirBroshi author:SnirBroshi |
fix(Combinatorics/SimpleGraph): namespace `completeBipartiteGraph` under `SimpleGraph` |
and fix the names of `CompleteBipartiteGraph.bicoloring` and `CompleteBipartiteGraph.chromaticNumber`.
---
Moved the `namespace SimpleGraph` in `Basic.lean` to right after the definition of `SimpleGraph`, to avoid putting things outside of the namespace.
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t-combinatorics |
29/20 |
Mathlib/Combinatorics/SimpleGraph/Basic.lean,Mathlib/Combinatorics/SimpleGraph/Coloring/Vertex.lean |
2 |
1 |
['github-actions'] |
nobody |
14-44159 14 days ago |
14-59059 14 days ago |
14-58833 14 days |
0 |
| 43322 |
JovanGerb author:JovanGerb |
chore(Order/Atoms): use `to_dual` |
This PR uses `to_dual` for `IsAtomic`/`IsCoatomic` and `IsAtomistic`/`IsCoatomistic`.
---
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tech debt
t-order
|
118/334 |
Mathlib/Order/Atoms.lean,Mathlib/Order/Disjoint.lean,Mathlib/Order/ModularLattice.lean,Mathlib/Tactic/Translate/ToDual.lean |
4 |
3 |
['JovanGerb', 'github-actions', 'vihdzp'] |
nobody |
14-24762 14 days ago |
19-40403 19 days ago |
19-42590 19 days |
0 |
| 43519 |
harahu author:harahu |
chore(Order/Interval/Set/SuccPred): generalize lemmas |
We generalize five lemmas from `LinearOrder` to `Preorder` and three to `PartialOrder`.
The motivation for the `Preorder` generalizations is to enable deprecation of the almost identical results in `Mathlib/Order/SuccPred/Basic.lean`. The results in that file are stated more generally, so we need to generalize in order to subsume them properly.
---
We're aiming to keep the statements in the touched file rather than those in `SuccPred/Basic.lean` based on [this discussion](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/duplicate.20succ.20interval.20lemmas/with/621955635).
This PR has significant overlap with #23810, but does not cover `Finset/SuccPred.lean`. The touched file in this PR asks to be kept in sync with the `Finset` sibling, but there is already a lot of divergence since the `Finset` file hasn't been treated with `to_dual` yet. I therefore suggest that `Finset/SuccPred.lean` and the other sibling files be brought up to date in a subsequent PR.
The generalizations were performed by Claude Code, and thereafter reviewed and somewhat cleaned up by me.
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[](https://gitpod.io/from-referrer/)
|
t-order |
61/19 |
Mathlib/Order/Interval/Set/SuccPred.lean |
1 |
3 |
['github-actions', 'harahu', 'vihdzp'] |
vihdzp assignee:vihdzp |
14-24275 14 days ago |
14-31317 14 days ago |
14-31091 14 days |
0 |
| 43526 |
vihdzp author:vihdzp |
chore(Topology/CantorBendixson): cleanup + more basic API |
We perform various small golfs, make some variables explicit, and add a few trivial lemmas.
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I would've suggested all of this in #37375, but somehow that PR went under my radar.
[](https://gitpod.io/from-referrer/)
|
t-topology |
58/57 |
Mathlib/SetTheory/Ordinal/FixedPointApproximants.lean,Mathlib/Topology/CantorBendixson.lean,Mathlib/Topology/DerivedSet.lean |
3 |
1 |
['github-actions'] |
nobody |
14-24105 14 days ago |
14-28082 14 days ago |
14-27856 14 days |
0 |
| 43406 |
luigi-massacci author:luigi-massacci |
ci: add comment with rendered links for PRs with new crossref tags |
Add a new workflow that computes the list of added cross-reference tags, and renders it as a markdown table with the declaration name (as a clickable link to the code line) side by side with the tag (as a clickable link to the corresponding database entry). This is then be added as a comment to the PR.
The possibility to have something like this was discussed before both on Zulip and in the comments of PRs adding tags, as it is currently highly annoying for a reviewer to see exactly what is being referenced to in the database, this should make it significantly easier.
To compute the diffs, I am recycling the existing `export_crossref` infrastructure so that nothing has to be elaborated again, which seems very reasonable to me. I am only making one change to it, namely adding the resolved url to the json computed in `export_crossrefs.lean`. This won't break anything in the downstream `export-crossref` repo (that reads the entries it needs off a dict), but allows this workflow to not have to re-elaborate all the tags. Unfortunately some entry urls (e.g. for pi-base) cannot be extracted just from the database name and id, so it's either this or re-elaborating.
In order to use it, I'm also adding the currently generated and discarded `crossrefs.json`to the `import-graph`. Looking at the current state, I'm neither the first nor the second to piggy-back off of `import-graph`, and by now we should probably change the name in a follow up PR, if I don't misunderstand something.
Note that the new workflow file is mostly identical to the existing `declDiff`, the changes only start at line 153 (out of 214).
This is the corresponding PR to mathlib-ci for the script that computes the table: https://github.com/leanprover-community/mathlib-ci/pull/68
I've also made a [PR to the crossref-export](https://github.com/leanprover-community/crossref-exports/pulls) repo adjusting the documentation (README).
One thing is I made a documentation choice that can be discussed: I've removed all explicit references to the existing tags from the various script doc-strings and markdown docs, and replaced them with generic phrases. The reason is that every single one was out of date with what is currently in mathlib, and it seems an unnecessary maintenance burden to list the available databases in all those places, especially since none of the scripts actually care (they are not hard-coded).
AI use: I've never added anything to CI before so I had Claude help me a bit with the first draft.
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[](https://gitpod.io/from-referrer/)
|
CI |
238/15 |
.github/workflows/build_template.yml,.github/workflows/crossrefDiff.yml,.github/workflows/export_crossrefs.yml,docs/workflows.md,scripts/README.md,scripts/export_crossrefs.lean |
6 |
2 |
['github-actions', 'luigi-massacci'] |
bryangingechen assignee:bryangingechen |
14-21244 14 days ago |
18-9405 18 days ago |
18-9179 18 days |
0 |
| 43348 |
tb65536 author:tb65536 |
chore(GroupTheory/Nilpotent): split off material on lower central series |
`GroupTheory/Nilpotent.lean` is getting rather long and messy. This PR splits off the material on lower central series to a new file.
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[](https://gitpod.io/from-referrer/)
|
t-algebra
t-group-theory
label:t-algebra$ |
250/203 |
Mathlib.lean,Mathlib/GroupTheory/Nilpotent.lean,Mathlib/GroupTheory/Nilpotent/LowerCentralSeries.lean |
3 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
14-17047 14 days ago |
14-17654 14 days ago |
16-40173 16 days |
0 |
| 43025 |
j-loreaux author:j-loreaux |
feat(Analysis/CStarAlgebra): grind patterns for cfc junk values |
This adds `grind` patterns with guards to discharge cases when `cfc` takes the junk value `0`.
Along the way we add `continuous_star_iff` and friends, and provide `to_fun` versions of both those and also `continuous_{neg,inv}_iff`. But for those changes, this PR would have much more `-` than `+` lines.
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[](https://gitpod.io/from-referrer/)
|
t-analysis |
124/127 |
Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Basic.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/NonUnital.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Order.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Range.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Restrict.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Unital.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/Abs.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/PosPart/Basic.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/Rpow/Basic.lean,Mathlib/NumberTheory/LSeries/DirichletContinuation.lean,Mathlib/Probability/Distributions/Gaussian/Multivariate.lean,Mathlib/Topology/Algebra/Group/ContinuousInv.lean,Mathlib/Topology/Algebra/Group/ZPow.lean,Mathlib/Topology/Algebra/Star.lean,Mathlib/Topology/ContinuousMap/Basic.lean,Mathlib/Topology/ContinuousMap/ContinuousMapZero.lean |
16 |
4 |
['github-actions', 'j-loreaux', 'mathlib-merge-conflicts'] |
nobody |
14-12296 14 days ago |
14-14841 14 days ago |
23-77980 23 days |
0 |
| 43360 |
metakunt author:metakunt |
feat(RingTheory/AdjoinRoot/MapCyclotomic): define algebra isomorphism isAdjoinRoot for roots of unity |
From #43343
Section is deliberately not exposed. I think the API developed should be enough. But if needed it can always be exposed later. |
t-ring-theory
LLM-generated
|
111/7 |
Mathlib.lean,Mathlib/RingTheory/AdjoinRoot/MapCyclotomic.lean,Mathlib/RingTheory/IsAdjoinRoot.lean |
3 |
19 |
['github-actions', 'mathlib-bors', 'metakunt', 'tb65536'] |
nobody |
14-4369 14 days ago |
14-6356 14 days ago |
15-85106 15 days |
0 |
| 43549 |
JovanGerb author:JovanGerb |
chore(Algebra/Homology/HasNoLoop): use `to_dual` |
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[](https://gitpod.io/from-referrer/)
|
t-algebra label:t-algebra$ |
4/16 |
Mathlib/Algebra/Homology/HasNoLoop.lean |
1 |
1 |
['github-actions'] |
nobody |
14-1525 14 days ago |
14-2371 14 days ago |
14-2145 14 days |
0 |
| 43545 |
gasparattila author:gasparattila |
refactor(Algebra/Order/Ring/Idempotent): introduce bundled types |
This file currently has several instances defined for specific subtypes. This PR replaces these with bundled structures. This also fixes possible typeclass diamonds when the order defined here conflicts with the general one on subtypes.
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[](https://gitpod.io/from-referrer/)
|
t-ring-theory |
242/111 |
Mathlib/Algebra/Order/Ring/Idempotent.lean,Mathlib/RingTheory/Spectrum/Prime/Topology.lean |
2 |
1 |
['github-actions'] |
nobody |
13-84742 13 days ago |
14-6011 14 days ago |
14-8650 14 days |
1 |
| 38534 |
AlexeyMilovanov author:AlexeyMilovanov |
refactor(Computability): make `PFun` a one-field structure |
This PR refactors `PFun` from `def PFun α β := α → Part β` to a structure with a `FunLike` instance.
[Discussion](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Fix.20for.20fun_prop.20on.20PFun.20.28context.3A.20Computability.20Theory.29)
### Main changes
- Redefine `PFun` as a structure with one field, `toFun : α → Part β`.
- Add the `FunLike (α →. β) α (Part β)` instance and configure `simps` projections.
- Add the projection and application simp lemmas required by the structure wrapper.
- Add `fun x ↦. ...` notation for partial-function literals.
- Adapt downstream equality proofs to use `PFun.ext` or `DFunLike.ext` where
`funext` no longer applies directly.
- Remove 33 local `backward.isDefEq.respectTransparency false` workarounds that
are no longer needed after the refactor.
### Downstream impact
The refactor mainly impacts Computability Theory and Category Theory (`Category/PartialFun.lean`). Since `PFun` is no longer definitionally equal to `α → Part β`, tactics such as `rfl`, `simp`, and `funext` can no longer always see through the old raw-function representation.
### Note on LLM usage
The core `PFun` change caused numerous downstream errors. I initially used an LLM to help draft fixes for these files. Afterwards, I spent a significant amount of time manually correcting and modifying all of the generated changes. |
new-contributor
t-computability
tech debt
LLM-generated
maintainer-merge
|
599/544 |
Mathlib/CategoryTheory/Category/PartialFun.lean,Mathlib/Computability/Ackermann.lean,Mathlib/Computability/Partrec.lean,Mathlib/Computability/PartrecBasis.lean,Mathlib/Computability/PartrecCode.lean,Mathlib/Computability/RE.lean,Mathlib/Computability/RecursiveIn.lean,Mathlib/Computability/StateTransition.lean,Mathlib/Computability/TuringDegree.lean,Mathlib/Computability/TuringMachine/Config.lean,Mathlib/Data/Finset/PImage.lean,Mathlib/Data/PFun.lean,Mathlib/NumberTheory/Dioph.lean |
13 |
78 |
['AlexeyMilovanov', 'JovanGerb', 'YaelDillies', 'dagurtomas', 'github-actions', 'j-loreaux', 'jcommelin', 'leanprover-radar', 'mathlib-bors', 'mathlib-merge-conflicts'] |
nobody |
13-77298 13 days ago |
14-29047 14 days ago |
117-50346 117 days |
0 |
| 43556 |
teorth author:teorth |
feat(Analysis/SpecialFunctions/Gamma/Digamma): the real digamma function, its asymptotics, and Gauss' series |
This extends the digamma file with the real digamma function, its logarithmic
asymptotics, and Gauss' series for `ψ`.
---
Main additions:
`Mathlib/Analysis/SpecialFunctions/Gamma/Digamma.lean`
* `Real.digamma`, the real digamma function `logDeriv Real.Gamma`, and its
real functional equations (`Real.digamma_apply_add_one`, `..._add_nat`,
`..._nat_add_one`, `..._one_sub`, `..._two_mul`), obtained from the complex
versions via the bridge below.
* `Complex.digamma_ofReal : Complex.digamma x = Real.digamma x` (a `simp`
lemma, unconditional thanks to matching junk values at the non-positive
integers), and `Complex.digamma_eq_re`.
* Real asymptotics: `Real.monotoneOn_digamma` (monotone on `Ioi 0`, via
log-convexity of `Γ`), `Real.digamma_le_log_le` (`ψ x ≤ log x ≤ ψ (x + 1)`),
and `Real.abs_digamma_sub_log_le` (`|ψ x - log x| ≤ 1 / x`).
* `Complex.gammaAnalyticSet`, the complement of the non-positive integers,
with `isOpen_gammaAnalyticSet`, `isPreconnected_gammaAnalyticSet`,
`Complex.differentiableOn_Gamma`, and `Complex.differentiableOn_digamma`.
* **Gauss' series** `ψ(s) = -γ + ∑ₙ (1/(n+1) - 1/(s+n))`
(`Complex.digamma_eq_gaussSeries`, `Real.digamma_eq_gaussSeries`,
`summable_gaussSeries`). The error is shown to vanish on the positive reals
(a finite partial-sum identity together with `abs_digamma_sub_log_le`) and to
be analytic off the poles, hence zero everywhere by the identity theorem.
`Mathlib/Analysis/Complex/RealDeriv.lean`
* `logDeriv_comp_ofReal`, `logDeriv_ofReal_comp`, relating the real and complex
logarithmic derivatives along the reals.
`Mathlib/Analysis/SpecialFunctions/Gamma/Deriv.lean`
* Real analogues of the existing complex lemmas: `Real.continuousAt_Gamma`,
and non-continuity/non-differentiability of `Real.Gamma` at the non-positive
integers.
Several complex analysis imports were added to `Digamma.lean` in order to justify the proof of the Gauss identity in the complex case.
The code was initially generated by an AI, and then heavily golfed and reviewed by the author.
[](https://gitpod.io/from-referrer/)
|
t-analysis |
413/23 |
Mathlib/Analysis/Complex/RealDeriv.lean,Mathlib/Analysis/SpecialFunctions/Gamma/Deriv.lean,Mathlib/Analysis/SpecialFunctions/Gamma/Digamma.lean |
3 |
2 |
['github-actions', 'metakunt'] |
nobody |
13-73829 13 days ago |
13-74806 13 days ago |
13-74580 13 days |
0 |
| 40266 |
WangJiabai author:WangJiabai |
feat(RingTheory/MvPolynomial): define generic determinantal ideals |
This PR adds a foundational API for determinantal ideals of the generic matrix.
It defines `Matrix.MinorIndex`, the corresponding minors of the existing generic
matrix `Matrix.mvPolynomialX`, the finite set of all `t × t` generic minors, and
the ideal generated by these minors in `MvPolynomial (Fin m × Fin n) R`.
It also proves basic membership, evaluation, coefficient-map/base-change, and
finite-generation lemmas.
This PR intentionally does not include the Sturmfels/KRS/straightening/Groebner
part of the development.
---
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Additional context:
This is extracted and refactored from a standalone project on determinantal
ideals and the Gröbner-basis theorem for generic determinantal ideals:
https://github.com/WangJiabai/Determinantal-Ideals-Formalization
The current PR is intentionally limited to the small foundational API for
generic minors and generic determinantal ideals.
AI use:
ChatGPT was used for planning/refactoring discussion, and Codex was used to
draft some proof scripts. I reviewed the statements and proofs and am
responsible for the submitted code.
[](https://gitpod.io/from-referrer/)
|
t-ring-theory
new-contributor
LLM-generated
|
180/0 |
Mathlib.lean,Mathlib/RingTheory/MvPolynomial/DeterminantalIdeal.lean |
2 |
17 |
['WangJiabai', 'github-actions', 'tb65536'] |
riccardobrasca assignee:riccardobrasca |
13-73063 13 days ago |
17-31365 17 days ago |
107-73666 107 days |
0 |
| 42794 |
JovanGerb author:JovanGerb |
chore(CategoryTheory/Limits/Shapes/WidePullBacks): use `to_dual` |
Use `to_dual` for wide pullbacks/pushouts.
Additionally:
- Tag `WidePullbackShape.mkCone` with `implicit_reducible` and remove some backward options.
---
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- [ ] depends on: #42861
[](https://gitpod.io/from-referrer/)
|
tech debt |
133/295 |
Mathlib/AlgebraicTopology/CechNerve.lean,Mathlib/AlgebraicTopology/ExtraDegeneracy.lean,Mathlib/CategoryTheory/Limits/FormalCoproducts/ExtraDegeneracy.lean,Mathlib/CategoryTheory/Limits/Shapes/ConcreteCategory.lean,Mathlib/CategoryTheory/Limits/Shapes/WidePullbacks.lean |
5 |
2 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
13-72247 13 days ago |
17-4098 17 days ago |
17-58289 17 days |
0 |
| 42859 |
Scarlett-le author:Scarlett-le |
feat(Geometry/Euclidean/Sphere): line or orthogonal radius through two points |
feat(Geometry/Euclidean/Sphere): line or orthogonal radius through two points
Define `Sphere.lineOrOrthRadius`, the affine subspace through two points,
or the orthogonal radius (tangent) at that point when they coincide.
Provide the basic API: membership of both endpoints, commutativity, and a
characterization of its intersection with the sphere as exactly the two
endpoints.
Split off from #34164. |
t-euclidean-geometry |
65/0 |
Mathlib/Geometry/Euclidean/Sphere/OrthRadius.lean |
1 |
3 |
['github-actions', 'jsm28'] |
nobody |
13-62109 13 days ago |
35-40710 35 days ago |
35-40484 35 days |
1 |
| 41872 |
plp127 author:plp127 |
chore(NumberTheory/Niven): generalize theorems |
Move some theorems out of the Niven's theorem file and generalize them.
---
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[](https://gitpod.io/from-referrer/)
|
|
30/19 |
Mathlib/NumberTheory/Niven.lean,Mathlib/RingTheory/IntegralClosure/IsIntegral/Basic.lean,Mathlib/RingTheory/IntegralClosure/IsIntegralClosure/Basic.lean,Mathlib/RingTheory/Polynomial/RationalRoot.lean |
4 |
4 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
13-56984 13 days ago |
13-58299 13 days ago |
65-46749 65 days |
0 |
| 43565 |
Parcly-Taxel author:Parcly-Taxel |
refactor(Archive/FriendshipGraphs): golf everything |
Also remove the file's `set_option`s and `@[expose]`. Like #43434, no deprecations are added since this is a leaf file in Archive. |
tech debt |
103/295 |
Archive/Wiedijk100Theorems/FriendshipGraphs.lean |
1 |
7 |
['Parcly-Taxel', 'SnirBroshi', 'github-actions'] |
nobody |
13-38005 13 days ago |
13-38732 13 days ago |
13-54752 13 days |
0 |
| 37456 |
Robertboy18 author:Robertboy18 |
feat(LinearAlgebra/AffineSpace): add parallel form of Desargues's theorem |
This PR adds an affine parallel form of the Desargues theorem, following the related Rocq/Coq affine-geometry statement.
**Main changes**
- New file `Mathlib/LinearAlgebra/AffineSpace/Desargues.lean` with `parallel_third_side_of_perspective`.
- Add the corresponding `public import` to `Mathlib.lean`.
**Proof idea**
The proof compares side vectors using `exists_eq_smul_of_parallel` for the two given pairs of parallel sides. The shared comparison along `SA` forces the same scalar, which gives parallelism of the third pair of sides.
Tests: `lake build Mathlib.LinearAlgebra.AffineSpace.Desargues`
AI disclosure: GPT-5.2 Pro was used for assistance with web search/background details about the theorem and for finding useful existing Mathlib lemmas. The theorem statement and Lean formalization were written and checked by hand.
---
[](https://gitpod.io/from-referrer/) |
t-algebra
new-contributor
LLM-generated
label:t-algebra$ |
133/0 |
Mathlib.lean,Mathlib/LinearAlgebra/AffineSpace/Desargues.lean |
2 |
22 |
['Robertboy18', 'SnirBroshi', 'copilot-pull-request-reviewer', 'eric-wieser', 'github-actions', 'mathlib-merge-conflicts', 'wwylele'] |
eric-wieser assignee:eric-wieser |
13-32894 13 days ago |
16-6763 16 days ago |
41-28453 41 days |
0 |
| 42041 |
FrankieNC author:FrankieNC |
feat(Topology/MetricSpace): minkowski (box-counting) dimension |
Define the lower and upper Minkowski (box-counting) dimensions of a set in a pseudo-emetric space via covering numbers, prove the basic API (monotonicity, closure invariance, unions, finite sets), and show `dimH s ≤ lowerMinkowskiDim s ≤ upperMinkowskiDim s` (Falconer, Fractal Geometry, Ch. 3). |
t-topology |
354/0 |
Mathlib.lean,Mathlib/Topology/MetricSpace/Cover.lean,Mathlib/Topology/MetricSpace/CoveringNumbers.lean,Mathlib/Topology/MetricSpace/MinkowskiDimension.lean,docs/references.bib |
5 |
5 |
['github-actions', 'wwylele'] |
CoolRmal assignee:CoolRmal |
13-30576 13 days ago |
13-31389 13 days ago |
58-73667 58 days |
0 |
| 43570 |
kim-em author:kim-em |
refactor(AlgebraicGeometry/Modules): transport pushforward along Opens.map functoriality isos |
This PR defines `Scheme.Modules.pushforwardId` and `pushforwardComp` by transporting the sheaf-of-modules isomorphisms along the existing `Opens.mapId` and `Opens.mapComp` (via `SheafOfModules.pushforwardCongr₂`) rather than by identifying `Opens.map (𝟙 X).base` with `𝟭` and `Opens.map (f ≫ g).base` with `Opens.map g.base ⋙ Opens.map f.base` by unfolding `Opens.map`. The componentwise simp lemmas become `M.presheaf.map_id` rather than `rfl`, and the pseudofunctor coherence fields are discharged explicitly since `cat_disch` no longer finds them by reflexivity. Also adds the simp lemma `Adj.eqToHom_τl`.
It is extracted from Paul Reichert's experiment making `Functor.comp` and `Functor.id` `instance_reducible` (https://github.com/leanprover-community/mathlib4/compare/master...leanprover-community:mathlib4-nightly-testing:datokrat/functorcomp, discussed at https://leanprover.zulipchat.com/#narrow/channel/113488-general/topic/backward.2EisDefEq.2ErespectTransparency), and depends on https://github.com/leanprover-community/mathlib4/pull/43569. The diff relative to that PR is https://github.com/kim-em/mathlib4/compare/associators-sheaves...opens-map.
🤖 Prepared with Claude Code |
tech debt |
516/139 |
Mathlib/Algebra/Category/ModuleCat/Presheaf.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/Pullback.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/Pushforward.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/PullbackContinuous.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/PushforwardContinuous.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/Quasicoherent.lean,Mathlib/AlgebraicGeometry/Modules/Sheaf.lean,Mathlib/CategoryTheory/Adjunction/CompositionIso.lean,Mathlib/CategoryTheory/Bicategory/Adjunction/Adj.lean,Mathlib/Topology/Sheaves/Module.lean |
10 |
1 |
['github-actions'] |
nobody |
13-24652 13 days ago |
13-25485 13 days ago |
13-27081 13 days |
0 |
| 43569 |
kim-em author:kim-em |
refactor(ModuleCat): state pushforward coherence without identifying functor bracketings |
This PR makes the pushforward of (pre)sheaves of modules along the identity functor and along a composition of functors honestly typed. Currently `pushforwardId` takes `𝟙 S` at the type `S ⟶ (𝟭 C).op ⋙ S` and `pushforwardComp` takes `φ ≫ whiskerLeft F.op ψ` at the type `S ⟶ (F ⋙ G).op ⋙ T`, which only elaborate because `Functor.comp`, `Functor.id` and `Functor.op` unfold. The new `pushforwardIdHom` and `pushforwardCompHom` are the unitor and associator composed with `Functor.opId`/`Functor.opComp` (see `pushforwardIdHom_eq` and `pushforwardCompHom_eq`), and the associativity and unitality isomorphisms of pushforward and pullback are transported along the functor associator and unitors through the new `pushforwardCongr₂`/`pullbackCongr₂` (added at the presheaf level, together with `pushforwardCongr`, `pushforwardNatTrans` and `pushforwardNatIso`). The scheme-level pseudofunctor coherence lemmas in `AlgebraicGeometry.Modules.Sheaf` are reproved from these, and `Adjunction.leftAdjointCompIso_trans` is added for that purpose.
It is extracted from Paul Reichert's experiment making `Functor.comp` and `Functor.id` `instance_reducible` (https://github.com/leanprover-community/mathlib4/compare/master...leanprover-community:mathlib4-nightly-testing:datokrat/functorcomp, discussed at https://leanprover.zulipchat.com/#narrow/channel/113488-general/topic/backward.2EisDefEq.2ErespectTransparency), and is the (pre)sheaf-of-modules half of https://github.com/leanprover-community/mathlib4/pull/43566; it is independent of that PR.
🤖 Prepared with Claude Code |
tech debt |
480/131 |
Mathlib/Algebra/Category/ModuleCat/Presheaf.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/Pullback.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/Pushforward.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/PullbackContinuous.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/PushforwardContinuous.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/Quasicoherent.lean,Mathlib/AlgebraicGeometry/Modules/Sheaf.lean,Mathlib/CategoryTheory/Adjunction/CompositionIso.lean,Mathlib/Topology/Sheaves/Module.lean |
9 |
1 |
['github-actions'] |
nobody |
13-24290 13 days ago |
13-26265 13 days ago |
13-27666 13 days |
0 |
| 42871 |
WilliamCoram author:WilliamCoram |
feat: multivariate gauss norm API and a lemma to discharge hdom in mul_eq_mul |
We add some missing API as well as lemmas that compute explicit values of the gauss norm (e.g. on monomials, X, C). Finally, we add a lemma that will be used to discharge `hdom` in `mul_eq_mul` in applications.
---
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[](https://gitpod.io/from-referrer/)
|
t-ring-theory |
118/4 |
Mathlib/RingTheory/MvPowerSeries/GaussNorm.lean |
1 |
10 |
['WilliamCoram', 'github-actions', 'riccardobrasca'] |
riccardobrasca assignee:riccardobrasca |
13-24043 13 days ago |
35-15193 35 days ago |
35-14967 35 days |
0 |
| 43577 |
javgomzar author:javgomzar |
chore(Order/BooleanAlgebra): Add push tags |
Add push tags to some lemmas in Mathlib/Order/BooleanAlgebra/Set.lean
---
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[](https://gitpod.io/from-referrer/)
|
t-order
new-contributor
|
19/4 |
Mathlib/Order/BooleanAlgebra/Set.lean |
1 |
3 |
['github-actions'] |
nobody |
13-8277 13 days ago |
13-13311 13 days ago |
13-16948 13 days |
0 |
| 43415 |
gasparattila author:gasparattila |
feat: lattice lemmas about `Submodule.toAffineSubspace` |
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra label:t-algebra$ |
55/0 |
Mathlib/LinearAlgebra/AffineSpace/AffineSubspace/Defs.lean |
1 |
1 |
['github-actions'] |
nobody |
13-4097 13 days ago |
17-81538 17 days ago |
17-81312 17 days |
0 |
| 43591 |
mariainesdff author:mariainesdff |
feat(RingTheory/Valuation/ValuationSubring): algebraic instances |
Given a valuation subring `A`, if `A.valuation` is trivial on `k`, `A` is a `k`-algebra.
Co-authored-by: @xgenereux
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[](https://gitpod.io/from-referrer/)
|
t-ring-theory |
24/0 |
Mathlib/RingTheory/Valuation/ValuationSubring.lean |
1 |
1 |
['github-actions'] |
nobody |
12-85806 12 days ago |
13-431 13 days ago |
13-205 13 days |
0 |
| 43309 |
YaelDillies author:YaelDillies |
refactor(Geometry/Convex): make `StdSimplex` extend `Finsupp` |
Among other things, this lets users write `w.support` for `w : StdSimplex _ _` instead of `w.weights.support`. It prints the same, however.
From the Polytopes in Berlin workshop, where participants requested that they could write `w.support` instead of `w.weights.support`.
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|
t-convex-geometry |
6/4 |
Mathlib/Geometry/Convex/ConvexSpace/Barycenter.lean,Mathlib/Geometry/Convex/ConvexSpace/Defs.lean |
2 |
4 |
['YaelDillies', 'b-mehta', 'github-actions'] |
nobody |
12-74286 12 days ago |
18-8007 18 days ago |
18-8595 18 days |
0 |
| 41101 |
YaelDillies author:YaelDillies |
feat(Data/{ENat,ENNReal,EReal}): missing coercion lemmas |
From MeanFourier
---
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|
t-data |
30/0 |
Mathlib/Basic/Real/ENatENNReal.lean,Mathlib/Data/ENat/Basic.lean,Mathlib/Data/EReal/Basic.lean |
3 |
15 |
['YaelDillies', 'eric-wieser', 'github-actions', 'mathlib-merge-conflicts'] |
eric-wieser assignee:eric-wieser |
12-73341 12 days ago |
13-3410 13 days ago |
80-41547 80 days |
0 |
| 37724 |
xgenereux author:xgenereux |
feat(UniqueFactorizationDomain/Multiplicity): `WfDvdMonoid.max_power_factor` for finsupp |
A version of `WfDvdMonoid.max_power_factor` for finsets/finsupp. That is, we take the highest power which divides everything in the finset.
AI disclaimer: I asked Claude Code to simplify the proofs at commit https://github.com/leanprover-community/mathlib4/pull/37724/changes/579eceaad06e32941615830e6838547d464d28b6.
Co-authored-by: María Inés de Frutos Fernández <[mariaines.dff@gmail.com](mailto:mariaines.dff@gmail.com)>
---
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|
t-ring-theory |
68/10 |
Mathlib/RingTheory/UniqueFactorizationDomain/Multiplicity.lean |
1 |
6 |
['chrisflav', 'github-actions', 'mathlib-merge-conflicts', 'xgenereux'] |
alreadydone assignee:alreadydone |
12-63009 12 days ago |
17-56975 17 days ago |
69-9400 69 days |
0 |
| 40368 |
Sanghyeok0 author:Sanghyeok0 |
feat: add confluence predicates for relations |
This PR adds a minimal relation-level API for confluence-style properties:
* `Relation.IsDiamond`
* `Relation.IsConfluent`
* `Relation.IsChurchRosser`
It also adds the basic API connecting these predicates:
* `Relation.ReflTransGen.to_eqvGen`
* `Relation.Join.le_eqvGen`
* `Relation.IsChurchRosser.isConfluent`
* `Relation.IsConfluent.isChurchRosser`
* `Relation.IsChurchRosser.join_reflTransGen_eq_eqvGen`
The main downstream application is the polynomial-reduction development in
#41475. There, polynomial reduction is treated as an ordinary relation on
`MvPolynomial`, and these predicates are used to formulate confluence and the
Church--Rosser property.
A more general rewriting API exists in CSLib. This PR does not attempt to
upstream that API wholesale; its scope is intentionally limited to the
declarations needed by the downstream polynomial application.
The earlier version of this PR also introduced
`Relation.StronglyConfluent` and additional equivalence packaging. Those
declarations have been removed to keep this PR small and application-driven.
Reference: Becker, Weispfenning, and Kredel,
*Gröbner Bases: A Computational Approach to Commutative Algebra*.
AI usage disclosure:
I used OpenAI Codex to generate initial drafts of the definitions, theorem statements, proof scripts, and docstrings. I made the final decisions on the mathematical scope and API design, reviewed the generated code and final changes, and made a few edits to statements and docstrings.
---
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|
t-logic
new-contributor
tech debt
LLM-generated
|
103/25 |
Mathlib/GroupTheory/FreeGroup/Basic.lean,Mathlib/Logic/Relation.lean |
2 |
36 |
['Sanghyeok0', 'SnirBroshi', 'chenson2018', 'github-actions', 'mathlib-merge-conflicts'] |
JovanGerb assignee:JovanGerb |
12-63007 12 days ago |
14-80494 14 days ago |
86-71542 86 days |
1 |
| 41915 |
theebayuser author:theebayuser |
feat(Data/List): infixes, the enumerator of contiguous factors |
Hello, this PR extends `Mathlib/Data/List/Infix.lean` with the missing third enumerator alongside `inits` and `tails`:
* `infixes l` — all contiguous factors (infixes) of `l`, with multiplicity, as every prefix of every suffix, and
* its membership characterization and basic API:
* `mem_infixes` (`@[simp]`) — `s ∈ t.infixes ↔ s <:+: t`, the infix analogue of `mem_inits`/`mem_tails`
* `infixes_nil`, `infixes_cons`, `length_infixes_cons`, `nil_mem_infixes`, `self_mem_infixes`, `infixes_ne_nil`.
This gives `∃ s, s <:+: t ∧ P s` and `∀ s, s <:+: t → P s` executable bounded-search forms (e.g. deciding repetition-freeness of a fixed word by `decide`), which a future follow-up PR that I plan to work on will use.
AI disclosure: This code was mostly generated by Claude Fable 5 and Opus 4.8 as part of my larger project on combinatorics on words, which I then reviewed and revised to contribute to mathlib.
|
t-data
LLM-generated
new-contributor
|
37/2 |
Mathlib/Data/List/Infix.lean |
1 |
4 |
['github-actions', 'mathlib-merge-conflicts', 'theebayuser'] |
TwoFX assignee:TwoFX |
12-63004 12 days ago |
13-83882 13 days ago |
64-51558 64 days |
0 |
| 41918 |
CoolRmal author:CoolRmal |
feat(Topology/Order): separability is hereditary for linearly ordered topological spaces |
In this PR we prove that
1. `isTopologicalBasis_isOpen_ordConnected`: in a linearly ordered topological space, every point of an open set `U` has an open `Set.OrdConnected` neighbourhood contained in `U`.
2. `countable_setOf_isolated_subtype`: in a separable linearly ordered topological space, the points of a subset `s` that are isolated in the subspace `s` form a countable set.
3. A subset of a separable linearly ordered topological space is separable in the subspace topology. This is proved as an instance.
The material was developed for showing the measurability of the pathwise variation of a continuous stochastic process in https://github.com/RemyDegenne/brownian-motion/pull/494. Created with the help of Claude Code, carefully reviewed and golfed by myself.
|
t-topology |
153/0 |
Mathlib.lean,Mathlib/Topology/Closure.lean,Mathlib/Topology/Order/Separable.lean |
3 |
2 |
['CoolRmal', 'felixpernegger', 'github-actions'] |
ocfnash assignee:ocfnash |
12-63003 12 days ago |
53-55415 53 days ago |
64-49657 64 days |
1 |
| 42895 |
cameronfreer author:cameronfreer |
feat(SetTheory/Ordinal): add lift_sSup and lift_iSup |
Add `InitialSeg.map_sSup` and `InitialSeg.map_iSup` for conditionally complete linear orders with bottom. Specializing these to `Ordinal.liftInitialSeg` gives `Ordinal.lift_sSup`, `Ordinal.lift_iSup`, `Ordinal.lift_iSup_le`, and `Ordinal.lift_iSup_le_iff`.
The `sSup` theorem handles the empty set using preservation of bottom and the nonempty case using normality. The `iSup` theorem is derived from it. Both use an explicit boundedness hypothesis; in particular, `lift_iSup` assumes `BddAbove (Set.range f)` rather than requiring the index type to be small.
🤖 This PR was developed with assistance from Claude and GPT models, using [lean4-skills](https://github.com/cameronfreer/lean4-skills) and [lean-lsp-mcp](https://github.com/oOo0oOo/lean-lsp-mcp).
|
t-set-theory
new-contributor
LLM-generated
|
40/0 |
Mathlib/Order/IsNormal.lean,Mathlib/SetTheory/Ordinal/Family.lean |
2 |
11 |
['cameronfreer', 'github-actions', 'plp127', 'vihdzp'] |
alreadydone assignee:alreadydone |
12-63001 12 days ago |
34-20179 34 days ago |
34-20907 34 days |
0 |
| 43401 |
thomaskwaring author:thomaskwaring |
feat(Order): counterparts of `iSupIndep.disjoint_biSup_biSup{'}` for `sSup` |
Transfer `iSupIndep.disjoint_biSup_biSup'` and `iSupIndep.disjoint_biSup_biSup` to `sSupIndep.disjoint_sSup_sSup'` and `sSupIndep.disjoint_sSup_sSup`. Also add the supporting rewrite lemma `biSup_preimage`, roughly dual to `sSup_image`.
---
Used downstream for working with `Partition`, whose fields are stated in terms of `sSupIndep`.
[](https://gitpod.io/from-referrer/)
|
t-order |
22/0 |
Mathlib/Order/CompactlyGenerated/Basic.lean,Mathlib/Order/CompleteLattice/Basic.lean,Mathlib/Order/SupIndep.lean |
3 |
5 |
['SnirBroshi', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
12-38782 12 days ago |
12-41893 12 days ago |
17-46987 17 days |
0 |
| 43599 |
fjvga author:fjvga |
feat(MeasureTheory/Measure/FrostmanMassBound): mass distribution principle |
If a measure ν satisfies ν s ≤ (ediam s)^d for all sets of diameter ≤ ε, and ν A ≠ 0, then d ≤ dimH A. This is the standard mass distribution principle (Frostman, easy direction) appearing in every fractal geometry textbook (Falconer §4.1, Mattila §4.9).
The proof composes two existing Mathlib results:
- Measure.le_hausdorffMeasure
- le_dimH_of_hausdorffMeasure_ne_zero
References:
- K. Falconer, Fractal Geometry, §4.1
- P. Mattila, Geometry of Sets and Measures in Euclidean Spaces, §4.9
---
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|
t-measure-probability
new-contributor
|
68/0 |
Mathlib.lean,Mathlib/MeasureTheory/Measure/FrostmanMassBound.lean |
2 |
4 |
['github-actions', 'metakunt'] |
nobody |
12-38230 12 days ago |
12-49988 12 days ago |
12-50568 12 days |
0 |
| 43583 |
xroblot author:xroblot |
chore(Algebra/QuadraticAlgebra): define all the casts through C |
The casts into `QuadraticAlgebra R a b` were defined in two different ways, some through `C` and some through the anonymous constructor, which made the `Algebra ℤ` instances non-defeq at instance transparency. Using `C` everywhere fixes it, and an example records the defeq.
Prepared with Claude Code 🤖
---
|
t-algebra label:t-algebra$ |
10/4 |
Mathlib/Algebra/QuadraticAlgebra/Basic.lean,Mathlib/Algebra/QuadraticAlgebra/Defs.lean |
2 |
15 |
['github-actions', 'jcommelin', 'leanprover-radar', 'mathlib-bors', 'plp127', 'xroblot'] |
nobody |
12-21846 12 days ago |
13-7488 13 days ago |
13-8318 13 days |
0 |
| 43608 |
SnirBroshi author:SnirBroshi |
chore(Order/RelClasses): remove redundant instances |
Some instances can be synthesized but are necessary to help `to_dual`, so they are kept.
---
Also remove instance names using `to_dual none`.
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|
t-order |
31/70 |
Mathlib/Order/Quotient.lean,Mathlib/Order/RelClasses.lean,Mathlib/RingTheory/Valuation/ValuationSubring.lean,Mathlib/SetTheory/ZFC/Basic.lean |
4 |
3 |
['SnirBroshi', 'github-actions', 'leanprover-radar'] |
nobody |
12-18972 12 days ago |
12-26886 12 days ago |
12-29143 12 days |
0 |
| 41709 |
metakunt author:metakunt |
feat(Data/Multiset): change definition of Multiset.Pairwise |
Currently the definition of Multiset.Pairwise seems not right to me. For my project I need to get a decidable instance for a Finset.Pairwise, but the current definition doesn't seem correct and it can't even give me a decidable instance of Pairwise. |
t-data
large-import
|
71/60 |
Mathlib/Data/Finsupp/BigOperators.lean,Mathlib/Data/Fintype/List.lean,Mathlib/Data/Multiset/Bind.lean,Mathlib/Data/Multiset/Defs.lean,Mathlib/Data/Multiset/Pairwise.lean,Mathlib/Data/Multiset/Replicate.lean,Mathlib/Data/Multiset/ZeroCons.lean,Mathlib/Logic/Relation.lean |
8 |
15 |
['SnirBroshi', 'b-mehta', 'github-actions', 'metakunt'] |
TwoFX assignee:TwoFX |
12-13116 12 days ago |
12-13116 12 days ago |
69-14511 69 days |
0 |
| 43626 |
mathlib-splicebot author:mathlib-splicebot |
chore(Algebra/GroupWithZero/Basic): automated extraction from #43343 |
This PR was automatically created from PR #43343 by @metakunt via a [review comment](https://github.com/leanprover-community/mathlib4/pull/43343#discussion_r3969323130) by @metakunt. |
t-algebra label:t-algebra$ |
21/1 |
Mathlib/Algebra/GroupWithZero/Basic.lean |
1 |
1 |
['github-actions'] |
nobody |
12-12263 12 days ago |
12-15022 12 days ago |
12-14796 12 days |
1 |
| 43346 |
JadAbouHawili author:JadAbouHawili |
feat(Combinatorics/SimpleGraph/Connectivity): change IsEdgeReachable and IsEdgeConnected to accept ENat instead of Nat |
---
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|
new-contributor
t-combinatorics
|
28/6 |
Mathlib/Combinatorics/SimpleGraph/Acyclic.lean,Mathlib/Combinatorics/SimpleGraph/Connectivity/EdgeConnectivity.lean |
2 |
35 |
['JadAbouHawili', 'SnirBroshi', 'github-actions'] |
nobody |
12-10240 12 days ago |
14-30967 14 days ago |
18-58315 18 days |
0 |
| 43625 |
b-mehta author:b-mehta |
feat(NumberTheory/Bernoulli): denominators of Bernoulli numbers are squarefree |
This PR adds some new public theorems for bernoulli numbers. The new results are typically viewed as corollaries of the von Staudt-Clausen theorem, but the implementation in mathlib means it's actually easier to prove them along the way, and we can obtain `rw` versions, or versions with weaker hypotheses than von Staudt-Clausen.
In addition, the API changes have a secondary purpose: to act as a prereq for #42304. In principle these could be separate PRs, but the redefinition of the private abbrev `pIntegral` is mixed tightly with the new public API that it's difficult to make this PR into two.
---
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|
t-number-theory |
148/79 |
Mathlib/NumberTheory/Bernoulli.lean |
1 |
2 |
['github-actions'] |
nobody |
12-9803 12 days ago |
12-15043 12 days ago |
12-14817 12 days |
0 |
| 43587 |
mariainesdff author:mariainesdff |
chore(RingTheory/Valuation/DiscreteValuativeRel): fix two typos in lemma name |
---
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|
t-ring-theory |
7/3 |
Mathlib/NumberTheory/LocalField/Basic.lean,Mathlib/RingTheory/Valuation/DiscreteValuativeRel.lean |
2 |
3 |
['github-actions', 'j-loreaux', 'mariainesdff'] |
nobody |
12-5765 12 days ago |
12-6846 12 days ago |
12-7115 12 days |
0 |
| 43637 |
gasparattila author:gasparattila |
feat(Topology/Sets): `ClosedIciTopology` and `OrderClosedTopology` instances for `Compacts` |
---
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|
t-topology |
41/0 |
Mathlib/Topology/Sets/VietorisTopology.lean |
1 |
1 |
['github-actions'] |
nobody |
12-4941 12 days ago |
12-6301 12 days ago |
12-6075 12 days |
0 |
| 43046 |
teorth author:teorth |
feat(Analysis/Distribution): compactly supported functions are dense in Schwartz space |
This file adds `SchwartzMap.dense_hasCompactSupport`: the compactly supported
Schwartz functions are dense in `𝓢(E, F)` (for `E` a finite-dimensional real
normed space).
The proof goes through smooth truncation, and some API for such truncations is provided.
----
This material will be used in a forthcoming PR on the prime number theorem.
AI was used to generate initial code, which was then heavily golfed and reviewed by the author. |
t-analysis |
191/0 |
Mathlib.lean,Mathlib/Analysis/Distribution/SchwartzSpace/CompactSupport.lean |
2 |
14 |
['github-actions', 'mathlib-splicebot', 'mcdoll', 'ocfnash', 'teorth'] |
nobody |
12-2731 12 days ago |
12-64229 12 days ago |
29-32845 29 days |
2 |
| 43372 |
plp127 author:plp127 |
chore: deprecate monad operations on `MvPolynomial` |
Deprecate some monad operations on `MvPolynomial`, as they are simply special cases of existing `eval` operations and it's not clear from the name what the signatures of these operations are.
---
- [x] depends on: #43371
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|
t-algebra label:t-algebra$ |
375/254 |
Mathlib/Algebra/Module/LinearMap/Polynomial.lean,Mathlib/Algebra/MvPolynomial/Eval.lean,Mathlib/Algebra/MvPolynomial/Expand.lean,Mathlib/Algebra/MvPolynomial/Monad.lean,Mathlib/FieldTheory/SeparableDegree.lean,Mathlib/RingTheory/AlgebraicIndependent/Basic.lean,Mathlib/RingTheory/NoetherNormalization.lean,Mathlib/RingTheory/WittVector/Basic.lean,Mathlib/RingTheory/WittVector/Defs.lean,Mathlib/RingTheory/WittVector/Frobenius.lean,Mathlib/RingTheory/WittVector/InitTail.lean,Mathlib/RingTheory/WittVector/IsPoly.lean,Mathlib/RingTheory/WittVector/MulCoeff.lean,Mathlib/RingTheory/WittVector/MulP.lean,Mathlib/RingTheory/WittVector/StructurePolynomial.lean,Mathlib/RingTheory/WittVector/Verschiebung.lean,Mathlib/RingTheory/WittVector/WittPolynomial.lean |
17 |
2 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
11-68170 11 days ago |
11-69699 11 days ago |
11-73884 11 days |
0 |
| 39553 |
Brian-Nugent author:Brian-Nugent |
feat(Algebra/CategoryTheory/ModuleCat): Locally Free is local |
We define `SheafOfModules.LocalGeneratorsData.bind` just like `SheafOfModules.QuasicoherentData.bind` and use it to show that being locally free is a local condition.
---
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|
t-algebra label:t-algebra$ |
56/4 |
Mathlib/Algebra/Category/ModuleCat/Sheaf/Generators.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/LocallyFree.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/Quasicoherent.lean |
3 |
6 |
['Brian-Nugent', 'dagurtomas', 'github-actions', 'mathlib-dependent-issues'] |
joelriou assignee:joelriou |
11-63011 11 days ago |
39-4759 39 days ago |
104-80841 104 days |
1 |
| 40910 |
riccardobrasca author:riccardobrasca |
feat: add comap_map_eq_of_unramified and related declarations |
From flt-regular.
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|
t-ring-theory |
170/0 |
Mathlib/RingTheory/DedekindDomain/Different.lean |
1 |
1 |
['github-actions'] |
mariainesdff assignee:mariainesdff |
11-63007 11 days ago |
37-37976 37 days ago |
90-74971 90 days |
0 |
| 41066 |
BryceT233 author:BryceT233 |
feat(RingTheory/Jacobson/Ideal): surjective `RingHom` and `IsLocalHom` |
This is a split of #41064 which shows that a surjective `RingHom` is a local homomorphism if and only if its kernel is contained in the jacobson radical of the ring.
---
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|
t-ring-theory |
24/16 |
Mathlib/RingTheory/Henselian.lean,Mathlib/RingTheory/Jacobson/Ideal.lean |
2 |
2 |
['BryceT233', 'github-actions'] |
mariainesdff assignee:mariainesdff |
11-63007 11 days ago |
86-40124 86 days ago |
87-36191 87 days |
1 |
| 41816 |
tb65536 author:tb65536 |
feat(GroupTheory/PGroup): add exponent characterization |
This PR adds the exponent characterization of p-groups, and uses it to golf the existing proof of `isPGroup_iff_card_dvd_pow`.
---
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t-group-theory
large-import
|
41/40 |
Mathlib/GroupTheory/Exponent.lean,Mathlib/GroupTheory/PGroup.lean |
2 |
3 |
['SnirBroshi', 'github-actions', 'tb65536'] |
mattrobball assignee:mattrobball |
11-63005 11 days ago |
47-36533 47 days ago |
47-37490 47 days |
0 |
| 41472 |
BryceT233 author:BryceT233 |
feat(Algebra): total monoid algebra |
This PR introduces `TotalMonoidAlgebra` and `TotalAddMonoidAlgebra`, which is part of the broader plan on [reworking Finsupp, MonoidAlgebra, HahnSeries. PowerSeries](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Reworking.20Finsupp.2C.20MonoidAlgebra.2C.20HahnSeries.2E.20PowerSeries/with/608547586).
We mirror the construction in `MonoidAlgebra/Defs.lean`, but drops the finiteness condition on the support of the elements. In the literature, this construction is called the "large algebra of a monoid" or "total algebra" (see https://en.wikipedia.org/wiki/Total_algebra). When the underlying monoid is finitely supported functions valued in `ℕ`, this construction corresponds to the multivariate formal power series in the large sense, where arbitrary infinite sums of monomials are permitted.
The algebraic hierarchy in this file is completely identical to that of`MonoidAlgebra/Defs.lean`. It builds up the algebraic structure from basic typeclasses like `One` and `SMul`, through `Mul`, `NonUnitalNonAssocSemiring`, and ultimately to `Ring` and `CommRing`. Despite the identical hierarchy, the underlying implementation requires several key departures from `MonoidAlgebra`:
1. Coefficients are represented using standard functions (`M → R`) rather than finitely supported functions (`M →₀ R`). Because of this, this file provides no induction principles or lemmas related to induction principles of `Finsupp`.
2. The construction uses `Pi.single` instead of `Finsupp.single` to represent individual terms. Because of how `Pi.single` is defined, this imposes a `DecidableEq M` requirement on many declarations, particularly whenever the identity element is required.
3. To ensure the convolution product is well-defined (i.e., the coefficient sum is finite), we require the underlying monoid to satisfy the `Finset.HasMulAntidiagonal M` condition. Because of this, proofs concerning multiplication rely heavily on the `Finset.sum`.
4. When the underlying domain `M` is a group, the `HasMulAntidiagonal` condition is essentially equivalent to the group being finite. Furthermore, when `M` is finite, the total monoid algebra is equivalent to the standard `MonoidAlgebra` (#Todo). Because it reduces to the standard finite case, this file omits a dedicated group section entirely.
---
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t-algebra label:t-algebra$ |
881/12 |
Mathlib.lean,Mathlib/Algebra/Group/Prod.lean,Mathlib/Algebra/Notation/Pi/Basic.lean,Mathlib/Algebra/Order/Antidiag/Prod.lean,Mathlib/Algebra/TotalMonoidAlgebra/Defs.lean,Mathlib/Order/Filter/TendstoCofinite.lean |
6 |
6 |
['github-actions', 'mathlib-bors', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
11-58139 11 days ago |
22-59978 22 days ago |
22-82356 22 days |
0 |
| 43604 |
MetinovAdik author:MetinovAdik |
feat(Analysis): Laplacian and gradient under composition with a dilation |
feat(Analysis): Laplacian and gradient under composition with a dilation
Two lemmas describing how the Laplacian and the gradient behave under
pre-composition with `c • ·`, the missing companions of `fderiv_comp_smul`
and `iteratedFDeriv_comp_const_smul`.
* `InnerProductSpace.laplacian_comp_smul` (in `InnerProductSpace/Laplacian.lean`,
next to `laplacian_smul`): for `f : E → F` with `ContDiff ℝ 2 f` and `c : ℝ`,
`Δ (f <| c • ·) x = c ^ 2 • Δ f (c • x)`.
Each of the two derivatives contributes one factor of `c`.
Proof: `laplacian_eq_iteratedFDeriv_stdOrthonormalBasis` and
`iteratedFDeriv_comp_const_smul`, in the style of `laplacian_smul`.
* `gradient_comp_smul` (in `Calculus/Gradient/Basic.lean`): for `f : F → 𝕜`
and `c : 𝕜`, `∇ (f <| c • ·) x = conj c • ∇ f (c • x)`.
The derivative picks up `c` (`fderiv_comp_smul`) and the Riesz isomorphism is
conjugate linear, hence `conj c`. No differentiability hypothesis: for `c = 0`
both sides are `0`, exactly as in `fderiv_comp_smul`.
Motivation: the parabolic scaling `v ↦ λ • v (λ • x) (λ² t)` of the Navier–Stokes
equations, where every term acquires `λ³`. Establishing that in Lean required
these two facts, which were the only missing pieces; the rest was already in
Mathlib.
Names follow `fderiv_comp_smul` rather than `iteratedFDeriv_comp_const_smul`;
happy to switch if the other convention is preferred.
---
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
|
t-analysis
new-contributor
LLM-generated
|
20/0 |
Mathlib/Analysis/Calculus/Gradient/Basic.lean,Mathlib/Analysis/InnerProductSpace/Laplacian.lean |
2 |
3 |
['github-actions'] |
nobody |
11-58079 11 days ago |
12-35081 12 days ago |
12-34855 12 days |
0 |
| 42724 |
kim-em author:kim-em |
feat(RingTheory/Polynomial/Hermite): derivatives and the generating function |
This PR adds the classical derivative identities, three-term recurrence, parity, and exponential generating function for the probabilists' Hermite polynomials. The algebraic results include `derivative_hermite`, `iterate_derivative_hermite`, `hermite_add_two`, and polynomial and evaluated forms of parity; the analytic results prove `∑' n, Hₙ(x) * tⁿ / n! = exp (x * t - t² / 2)` in complex and real `HasSum` forms, with a real `tsum` corollary. The algebraic and analytic developments live in separate files.
This contribution originated in the [Tau Ceti project](https://github.com/TauCetiProject/TauCeti), an AI-written mathematics repository; it was adapted for Mathlib with Claude Code and reviewed with OpenAI Codex, supervised by Kim Morrison.
:robot: Prepared with OpenAI Codex
|
t-ring-theory
LLM-generated
TauCeti
|
259/0 |
Mathlib.lean,Mathlib/RingTheory/Polynomial/Hermite/Derivative.lean,Mathlib/RingTheory/Polynomial/Hermite/GeneratingFunction.lean |
3 |
3 |
['b-mehta', 'github-actions', 'kim-em'] |
nobody |
11-48087 11 days ago |
18-54925 18 days ago |
18-54699 18 days |
0 |
| 43595 |
localecho author:localecho |
feat(NumberTheory/Transcendental/Liouville): irrational reals are LiouvilleWith for 1 < p ≤ 2 |
Closes the gap noted in this file's module doc — the reverse implication for 1 < p ≤ 2 was flagged 'not formalized yet' since 2021. Proved via Dirichlet approximation (Real.infinite_rat_abs_sub_lt_one_div_den_sq_of_irrational) plus a finite-fiber argument on denominators, rather than continued fractions directly.
----
Formalized with Claude's help, verified by a clean lake build.
Posted about this gap in #new-members first: https://leanprover.zulipchat.com/#narrow/channel/113489-new-members/topic/Intro.3A.20Brigham.20Hall.20.3B.20LiouvilleWith.20gap.20for.201.20.3C.20p.20.E2.89.A4.202/near/622672679 |
t-number-theory
new-contributor
LLM-generated
|
76/2 |
Mathlib/NumberTheory/Transcendental/Liouville/LiouvilleWith.lean |
1 |
4 |
['SnirBroshi', 'github-actions', 'metakunt'] |
nobody |
11-43182 11 days ago |
12-69810 12 days ago |
12-69584 12 days |
0 |
| 43285 |
WenrongZou author:WenrongZou |
feat(ValuativeTopology): valuative topology of Z_p |
Let `K` be a field with assumption `[ValuativeRel K] [TopologicalSpace K] [IsValuativeTopology K]`. Let `R` be its ring of integers and the topology of `R` is induced by `K`, then there is a valuative topology over `R` . This can be used to deduce the valuative topology of `Z_p`.
---
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|
t-ring-theory |
59/1 |
Mathlib/NumberTheory/Padics/PadicNumbers.lean,Mathlib/NumberTheory/Padics/ValuativeRel.lean,Mathlib/Topology/Algebra/ValuativeRel/ValuativeTopology.lean |
3 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
11-42902 11 days ago |
19-41687 19 days ago |
20-30990 20 days |
1 |
| 43607 |
Whning0513 author:Whning0513 |
chore(Data/Set/Semiring): add simp attributes |
Mark `up_le_up` and `up_lt_up` with `@[simp]`, as requested by the existing TODO.
--------
Tests:
- `lake env lean Mathlib/Data/Set/Semiring.lean`
- `lake build Mathlib.Data.Set.Semiring`
- `lake exe runLinter Mathlib.Data.Set.Semiring` |
t-data
new-contributor
|
2/1 |
Mathlib/Data/Set/Semiring.lean |
1 |
6 |
['LLaurance', 'Whning0513', 'copilot-pull-request-reviewer', 'github-actions', 'grunweg', 'leanprover-radar'] |
nobody |
11-42534 11 days ago |
12-32703 12 days ago |
12-32477 12 days |
0 |
| 43327 |
JX-Mo author:JX-Mo |
feat(GroupTheory): add `LeftDecomposition` of double coset |
This PR is the first piece of #43286 for adding `Hecke/LeftFiniteDoubleCoset`. The main motivation is to describe the intertwining space `Hom_G(k[G/H₁], k[G/H₂])` as the free module double cosets with finite left-coset decomposition. In this PR we introduce only the left decomposition.
We deliberately design two indexing types for the left-coset decomposition: the intrinsic LeftDecomposition and the computational LeftDecompQuotient. They are equivalent via toLeftDecompositionEquiv. The first is useful for coordinate-free definitions and proofs, which saves us from abusing Quotient.out everywhere (note that we have three quotients in Hecke theory: `G/H₂, H₁/H₁∩gH₂g⁻¹, H₁\G/H₂`) and avoids "choosing representative from decomposition in the def => proving the def does not depend the choice + repeating this kind of argument for comparing different representatives in many downstream proofs" pattern. The second LeftDecompQuotient carries a fixed base point `gH₂` and remains useful for concrete convolution product computation. |
t-algebra label:t-algebra$ |
119/0 |
Mathlib.lean,Mathlib/RepresentationTheory/Hecke/LeftFiniteDoubleCoset.lean |
2 |
1 |
['github-actions'] |
nobody |
11-41387 11 days ago |
11-42096 11 days ago |
19-56248 19 days |
4 |
| 43465 |
TJHeeringa author:TJHeeringa |
feat(Analysis/InnerProductSpace/Reproducing): add bilinearform for Mercer's theorem |
Mercer's theorem provides a spectral representation to kernels satisfying an integrability condition. The proof builds on a Hilbert-Schmidt operator. This PR introduces the bilinear form used to define that operator.
---
PR #42003 introduces the corresponding integral operator.
AI:
Claude and Mistral have helped me get up to speed with how to do the measurability proofs.
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|
t-analysis |
157/0 |
Mathlib.lean,Mathlib/Analysis/InnerProductSpace/Reproducing/Mercer.lean |
2 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
11-40593 11 days ago |
11-41310 11 days ago |
15-13401 15 days |
1 |
| 43305 |
WenrongZou author:WenrongZou |
feat(PowerSeries/Derivative): add some lemmas |
In this PR, I migrated some results from Polynomial/Derivative.lean to PowerSeries/Derivative.lean.
---
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|
t-ring-theory |
59/0 |
Mathlib/RingTheory/PowerSeries/Derivative.lean |
1 |
2 |
['WenrongZou', 'github-actions'] |
nobody |
11-39827 11 days ago |
11-40512 11 days ago |
20-10407 20 days |
0 |
| 43166 |
WenrongZou author:WenrongZou |
feat(MvPowerSeries/pderiv): add `pderiv_map` and `pderiv_rename` |
In this PR, we prove `MvPowerSeries.map` and `MvPowerSeries.rename` commute with taking derivative.
---
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|
large-import
t-ring-theory
|
29/2 |
Mathlib/RingTheory/MvPowerSeries/Derivative.lean |
1 |
1 |
['github-actions'] |
nobody |
11-38708 11 days ago |
13-61888 13 days ago |
25-30434 25 days |
1 |
| 43642 |
b1de0 author:b1de0 |
feat(MeasureTheory/Measure/ResolventTransform): finite moment expansion |
Add a finite moment expansion of `resolventTransform` with an exact integral remainder, assuming integrable moments and a nonzero evaluation point outside the support image.
---
I need this to relate matched moments to errors in kernels of the form `∫ u, (1 + w * u)⁻¹ ∂μ`. The identity is finite and does not require convergence of the corresponding infinite geometric series.
|
t-measure-probability
new-contributor
|
52/0 |
Mathlib/MeasureTheory/Measure/ResolventTransform.lean |
1 |
2 |
['github-actions'] |
nobody |
11-37034 11 days ago |
11-37742 11 days ago |
11-37627 11 days |
0 |
| 43655 |
mariainesdff author:mariainesdff |
feat(RingTheory/Valuation/Discrete/IsDiscreteValuationSubring): equivalent discrete valuations |
If `v` is equivalent to a discrete valuation, then `v` is discrete.
In particular, if a `ValuationSubring F` `A` is a discrete valuation ring, then `A.valuation` is discrete.
Co-authored-by: @xgenereux
---
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|
t-ring-theory |
58/1 |
Mathlib/RingTheory/Valuation/Basic.lean,Mathlib/RingTheory/Valuation/Discrete/Basic.lean,Mathlib/RingTheory/Valuation/Discrete/IsDiscreteValuationRing.lean |
3 |
1 |
['github-actions'] |
nobody |
11-34899 11 days ago |
11-36065 11 days ago |
11-35839 11 days |
0 |
| 41866 |
YaelDillies author:YaelDillies |
feat(GroupTheory): `AddSubgroupClass` implies `SMulMemClass` over `ℤ` |
This is useful to talk about lattices in R^n.
Also delete two instances that are now automatically inferred.
---
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|
t-group-theory |
8/6 |
Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Basic.lean,Mathlib/Analysis/Normed/Ring/Basic.lean,Mathlib/GroupTheory/GroupAction/SubMulAction.lean |
3 |
2 |
['Ruben-VandeVelde', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
11-24983 11 days ago |
36-8789 36 days ago |
57-63846 57 days |
1 |
| 41828 |
archiebrowne author:archiebrowne |
feat(RingTheory/HopfAlgebra/Convolution): add `ofAntipodeOfAdjoin` |
Adds `HopfAlgebra.ofAntipodeOfAdjoin`, which upgrades a bialgebra `A` to a Hopf
algebra given an algebra anti-homomorphism `S : A →ₐ[R] Aᵐᵒᵖ` that satisfies the
two antipode identities *only on a generating set* `X` with `adjoin R X = ⊤`.
Main additions (`Mathlib/RingTheory/HopfAlgebra/Basic.lean`):
* `HopfAlgebra.mul_antipode_rTensor_comul_adjoin_top` /
`HopfAlgebra.mul_antipode_lTensor_comul_adjoin_top`: the antipode axioms hold on
all of `A` when they hold on a generating set.
* `HopfAlgebra.ofAntipodeOfAdjoin`: the resulting `HopfAlgebra R A` structure,
with `antipode := (opLinearEquiv R).symm.toLinearMap ∘ₗ S.toLinearMap`.
Also in (`Mathlib/RingTheory/HopfAlgebra/Convolution.lean`):
* Golf `antipode_mul_id`, `id_mul_antipode`, and `antipode_id_cancel`.
* Add `id_antipode_cancel` (mirror of `antipode_id_cancel`). |
t-ring-theory
new-contributor
|
89/9 |
Mathlib/RingTheory/HopfAlgebra/Convolution.lean |
1 |
2 |
['github-actions'] |
nobody |
11-23526 11 days ago |
66-84830 66 days ago |
66-85646 66 days |
0 |
| 38223 |
Deicyde author:Deicyde |
feat(Geometry/Manifold): add `MfldCat`, the category of `C^n` manifolds |
Defines `MfldCat 𝕜 n`: the category of `C^n` manifolds over a field `𝕜`, in which the model with corners is allowed to vary between objects. An object bundles a model vector space `E`, a model space `H`, a model with corners `I : ModelWithCorners 𝕜 E H` and a term of `ModelWithCorners.MfldCat I n`--see #41109. This includes manifolds with boundary / corners.
For more discussion see this Zulip thread: [#PR reviews > #38223 The Category of C^n Manifolds](https://leanprover.zulipchat.com/#narrow/channel/144837-PR-reviews/topic/.2338223.20The.20Category.20of.20C.5En.20Manifolds/with/587038032)
Also added: `ContMDiffMap.id_apply`, `.coe_id` and `.coe_comp` which are comparable to `ContinuousMap` API.
### Future work
- ✅ Define a Monoidal structure via product manifolds, analogous to `Manifold.Topology.Category.TopCat.Monoidal` #38560
- ✅ Define the tangent functor: `M ↦ TM`, `F ↦ F.tangentMap` from `MfldCat (n+1) 𝕜` to `MfldCat n 𝕜` #38270
- Functor `FGModuleCat 𝕜 ⥤ MfldCat 𝕜 n` sending a finite-dimensional `𝕜`-vector space to the manifold modeled on itself. Left as `TODO`.
- Define `FGModuleCat 𝕜` as an enriched category over `MfldCat n 𝕜`. Then _smooth functors_ can be realized as endofunctors on the enriched category. This is the main motivation for this construction.
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[](https://gitpod.io/from-referrer/)
|
t-differential-geometry
new-contributor
t-category-theory
|
210/0 |
Mathlib.lean,Mathlib/Geometry/Manifold/Category/MfldCat/Basic.lean,Mathlib/Geometry/Manifold/ContMDiffMap.lean |
3 |
63 |
['Deicyde', 'chrisflav', 'dagurtomas', 'github-actions', 'idontgetoutmuch', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'peabrainiac'] |
joelriou assignee:joelriou |
11-23229 11 days ago |
11-24107 11 days ago |
70-64120 70 days |
2 |
| 43666 |
SnirBroshi author:SnirBroshi |
feat(Topology/GDelta/Basic): a set is meagre iff it's a countable union of nowhere dense sets |
We have the same but with "contained in" instead, so this version has a stronger `mp` and a weaker `mpr`.
---
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|
t-topology |
8/0 |
Mathlib/Topology/GDelta/Basic.lean |
1 |
1 |
['github-actions'] |
nobody |
11-19603 11 days ago |
11-21524 11 days ago |
11-21298 11 days |
0 |
| 43665 |
SnirBroshi author:SnirBroshi |
feat(Topology/Baire/Lemmas): a space is Baire iff countable unions of closed nowhere dense sets have empty interior |
---
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[](https://gitpod.io/from-referrer/)
|
t-topology |
41/0 |
Mathlib/Topology/Baire/Lemmas.lean,Mathlib/Topology/Closure.lean,Mathlib/Topology/Defs/Basic.lean,Mathlib/Topology/GDelta/Basic.lean |
4 |
2 |
['github-actions'] |
nobody |
11-18664 11 days ago |
11-21378 11 days ago |
11-21351 11 days |
0 |
| 43668 |
SnirBroshi author:SnirBroshi |
doc(MeasureTheory): `wikidata` tags for some basics |
---
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[](https://gitpod.io/from-referrer/)
|
t-measure-probability |
5/2 |
Mathlib/MeasureTheory/Constructions/BorelSpace/Basic.lean,Mathlib/MeasureTheory/MeasurableSpace/Defs.lean,Mathlib/MeasureTheory/Measure/Dirac/Def.lean |
3 |
1 |
['github-actions'] |
nobody |
11-16728 11 days ago |
11-18265 11 days ago |
11-18039 11 days |
0 |
| 43669 |
SnirBroshi author:SnirBroshi |
doc(Topology): `wikidata` tags for some basics |
---
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[](https://gitpod.io/from-referrer/)
|
t-topology |
18/2 |
Mathlib/Topology/Defs/Basic.lean,Mathlib/Topology/Defs/Induced.lean,Mathlib/Topology/GDelta/Basic.lean,Mathlib/Topology/Homeomorph/Defs.lean,Mathlib/Topology/MetricSpace/Pseudo/Defs.lean |
5 |
1 |
['github-actions'] |
nobody |
11-15946 11 days ago |
11-18035 11 days ago |
11-17809 11 days |
0 |
| 43672 |
javgomzar author:javgomzar |
chore(LinearAlgebra/Matrix): add push tags to transpose lemmas |
---
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|
t-algebra
new-contributor
label:t-algebra$ |
6/5 |
Mathlib/LinearAlgebra/Matrix/Defs.lean |
1 |
3 |
['github-actions'] |
nobody |
11-13633 11 days ago |
11-16167 11 days ago |
11-15941 11 days |
0 |
| 43678 |
mariainesdff author:mariainesdff |
feat(Algebra/Order/Group/Cylic): add OrderMonoidIso.map_genLTOne |
Co-authored-by: @xgenereux
---
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|
t-algebra label:t-algebra$ |
39/0 |
Mathlib/Algebra/Order/Group/Cyclic.lean |
1 |
1 |
['github-actions'] |
nobody |
11-13070 11 days ago |
11-14042 11 days ago |
11-13816 11 days |
0 |
| 43683 |
mariainesdff author:mariainesdff |
feat(RingTheory/Valuation/ValuativeRel/Basic): add IsEquiv lemmas |
Co-authored-by: @xgenereux
---
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|
t-ring-theory |
14/0 |
Mathlib/RingTheory/Valuation/ValuativeRel/Basic.lean |
1 |
1 |
['github-actions'] |
nobody |
11-8536 11 days ago |
11-9412 11 days ago |
11-9186 11 days |
1 |
| 43675 |
mariainesdff author:mariainesdff |
feat(Algebra/GroupWithZero/Range): add lemmas |
Co-authored-by: @xgenereux
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra label:t-algebra$ |
24/0 |
Mathlib/Algebra/GroupWithZero/Range.lean |
1 |
1 |
['github-actions'] |
nobody |
11-5694 11 days ago |
11-14820 11 days ago |
11-14594 11 days |
1 |
| 43676 |
SnirBroshi author:SnirBroshi |
doc(Order): `wikidata` tags for some basics |
---
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[](https://gitpod.io/from-referrer/)
|
t-order |
49/3 |
Mathlib/Order/BoundedOrder/Basic.lean,Mathlib/Order/Bounds/Defs.lean,Mathlib/Order/Closure.lean,Mathlib/Order/CompleteLattice/Defs.lean,Mathlib/Order/CompletePartialOrder.lean,Mathlib/Order/Defs/LinearOrder.lean,Mathlib/Order/Defs/PartialOrder.lean,Mathlib/Order/Defs/Unbundled.lean,Mathlib/Order/Disjoint.lean,Mathlib/Order/GaloisConnection/Defs.lean,Mathlib/Order/Lattice.lean,Mathlib/Order/Max.lean,Mathlib/Order/Monotone/Defs.lean |
13 |
1 |
['github-actions'] |
nobody |
11-4960 11 days ago |
11-14277 11 days ago |
11-14051 11 days |
0 |
| 42856 |
plp127 author:plp127 |
chore(FieldTheory/IntermediateField/Adjoin): fix recursors |
Name the motive `motive` and name the minor premises according to their contents. Also make the motive implicit.
---
The motivation for naming the motive `motive` is to make it consistent across all the recursors, and to give it a more descriptive name, and to make it easier to find recursors by a text search. The motivation for renaming the minor premise arguments is to give them more descriptive names, since they are used as the names of `induction` arms and `cases` arms. The motivation for making the motive implicit is that you usually don't want to fill this in yourself, but rather let `induction` or `cases` or `@[elab_as_elim]` fill it in for you. The motive can still be specified explicitly by writing `(motive := ...)`.
<!-- Your PR title will become the first line of the commit message.
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|
t-algebra label:t-algebra$ |
51/45 |
Mathlib/FieldTheory/IntermediateField/Adjoin/Algebra.lean,Mathlib/FieldTheory/IntermediateField/Adjoin/Defs.lean,Mathlib/FieldTheory/PrimitiveElement.lean,Mathlib/FieldTheory/SeparableDegree.lean |
4 |
4 |
['Vierkantor', 'github-actions', 'plp127'] |
nobody |
11-4470 11 days ago |
35-22914 35 days ago |
35-40857 35 days |
0 |
| 43689 |
j-loreaux author:j-loreaux |
fix: fix `cfc_congr` lemmas |
#43028 introduced a regression in `norm_cast` due to adding an `@[congr]` lemma for `cfc` and `cfcₙ` which did not vary all arguments. This causes the following call to `norm_cast` to fail to close the goal. What happens is that on the LHS, the current `cfc_congr'` lemma causes `norm_cast` to visit the function, but *skip* the argument `((n : A) + m)`, leaving it as `↑n + ↑m`. On the RHS, because nothing needs to happen to the function, it acts on the `((n : A) + m)`, turning it into `↑(n + m)`. Another call to `norm_cast` then closes the goal because it does the same thing to the LHS now.
```lean
module
public import Mathlib.Analysis.CStarAlgebra.ContinuousFunctionalCalculus.Basic
example {A : Type*} [CStarAlgebra A] (n m : ℕ) :
cfc (fun x : ℝ ↦ (x : ℂ).re) ((n : A) + m) = cfc (fun x : ℝ ↦ x) ((n : A) + m) := by
norm_cast
```
The fix is to update the `cfc_congr'` lemma to vary all the arguments, as with, for example, `Finset.sum_congr`:
```lean
@[congr]
lemma cfc_congr' {f g : R → R} {a b : A} (hab : a = b) (hfg : ∀ x ∈ spectrum R b, f x = g x) :
cfc f a = cfc g b := by
subst hab
exact cfc_congr hfg
```
---
This issue is documented on the docstring of the `@[congr]` attribute, but there is no warning when you write a bad `@[congr]` lemma.
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|
bug
t-analysis
|
12/8 |
Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/NonUnital.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Unital.lean |
2 |
1 |
['github-actions'] |
nobody |
11-2927 11 days ago |
11-3989 11 days ago |
11-3763 11 days |
0 |
| 42424 |
lydia-schiff author:lydia-schiff |
feat(Order/Partition/Finpartition): transport a set partition along a type equivalence |
- Adds `Finpartition.congr` to transport a `Finpartition` along a type equivalence.
- We can use `Finpartition.map` if we have an order-iso, and the equivalence induces one via the new `Finset.congrOrderIso` which is based on `Equiv.finsetCongr`.
- Includes parts, card, refl, and round-trip lemmas.
---
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- `Equiv.finsetCongr` already gives us an equivalence of Finsets, so the new `Finset.congrOrderIso` just adds that the power-set lattice structure is also preserved.
- Includes lemmas showing that the parts are e-images of the old ones, card is preserved, and refl + round-trip for the equivalence.
- The cardinality lemma was the original motivation from some work on Stirling numbers, but I thought that `Finpartition.congr` and `Finset.congrOrderIso` seemed reusable and hopefully useful in their own right, and thought it would make a good first contribution.
- Zulip thread about naming and placement [here](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/.60Finpartition.2Econgr.60.20.E2.80.94.20naming.20.26.20placement)
- I used Claude Opus 4.8 to help draft the proofs and explore the API. I have spent several weeks making sure I understand and can justify every line and I've learned a lot which is great.
[](https://gitpod.io/from-referrer/)
|
t-order
LLM-generated
new-contributor
|
61/0 |
Mathlib/Data/Finset/Image.lean,Mathlib/Order/Partition/Finpartition.lean |
2 |
6 |
['github-actions', 'lydia-schiff', 'mathlib-merge-conflicts'] |
nobody |
10-83190 10 days ago |
11-1247 11 days ago |
37-71983 37 days |
0 |
| 43312 |
plp127 author:plp127 |
feat: pushforward of uniform spaces |
We define the pushforward of uniforms spaces and show it is left adjoint to the pullback.
---
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[](https://gitpod.io/from-referrer/)
|
t-topology |
130/2 |
Mathlib/Topology/UniformSpace/Basic.lean,Mathlib/Topology/UniformSpace/Cauchy.lean |
2 |
7 |
['github-actions', 'j-loreaux', 'peakpoint', 'plp127'] |
nobody |
10-77967 10 days ago |
10-79673 10 days ago |
17-81941 17 days |
1 |
| 42630 |
will1491 author:will1491 |
feat(Analysis/Complex): define Wirtinger derivatives |
Define the Wirtinger derivatives `Complex.wirtingerDeriv` and `Complex.wirtingerDerivBar` from `fderiv ℝ`, and prove: the Cauchy-Riemann characterization of complex differentiability (pointwise and on open sets), agreement of `wirtingerDeriv` with `deriv` for holomorphic functions, additivity, Leibniz product rules, conjugation identities, both Wirtinger chain rules, and the Wirtinger decomposition of a real-linear map `ℂ →L[ℝ] ℂ`.
Extracted from https://github.com/will1491/RiemannDynamics, where it underlies the Beltrami-equation and Cauchy/Beurling-transform theory used in the proof of the measurable Riemann mapping theorem.
---
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[](https://gitpod.io/from-referrer/)
|
t-analysis
new-contributor
|
253/0 |
Mathlib.lean,Mathlib/Analysis/Complex/Wirtinger.lean |
2 |
3 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
10-76361 10 days ago |
10-77096 10 days ago |
41-52511 41 days |
0 |
| 40013 |
WilliamCoram author:WilliamCoram |
feat: define bounded sets and power bounded elements |
We define bounded sets, so that we can define power bounded elements in a topological ring. Using this we generalise some notions of topoligcally nilpotent elements and define a residue field.
AI usage: some proofs were initially generated with Claude code before being cleaned and/or rewritten by hand.
---
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[](https://gitpod.io/from-referrer/)
|
t-topology
LLM-generated
large-import
|
431/5 |
Mathlib.lean,Mathlib/Topology/Algebra/Bounded.lean,Mathlib/Topology/Algebra/PowerBounded.lean,Mathlib/Topology/Algebra/TopologicallyNilpotent.lean |
4 |
20 |
['ADedecker', 'CBirkbeck', 'WilliamCoram', 'github-actions', 'j-loreaux', 'mathlib-merge-conflicts', 'sfingali', 'vihdzp', 'wwylele'] |
ocfnash assignee:ocfnash |
10-63012 10 days ago |
91-13154 91 days ago |
106-81455 106 days |
0 |
| 40975 |
bwangpj author:bwangpj |
feat(LinearAlgebra): complex structures on real vector spaces |
Define complex structures,i .e. an `ℝ`-linear endomorphism `J` of a real vector space `V` with `J * J = -1`. |
t-algebra label:t-algebra$ |
93/0 |
Mathlib.lean,Mathlib/LinearAlgebra/Complex/Structure.lean |
2 |
5 |
['bwangpj', 'github-actions', 'grunweg', 'themathqueen', 'wwylele'] |
mattrobball assignee:mattrobball |
10-63011 10 days ago |
89-71979 89 days ago |
89-71753 89 days |
0 |
| 41523 |
Harmenszoon author:Harmenszoon |
feat(Analysis/SpecialFunctions): add the Chase-Lovett diagonal reduction for binEntropy |
This PR adds the two-variable entropy inequality of Chase and Lovett ([arXiv:2211.11689](https://arxiv.org/abs/2211.11689), Lemma 2.2): for `x, y ∈ [0, 1]`,
```
x * binEntropy y + y * binEntropy x ≤ 2 * sqrt (x * y) * binEntropy (sqrt (x * y))
```
in a new leaf file `Mathlib/Analysis/SpecialFunctions/BinaryEntropy/Diagonal.lean`, together with its `negMulLog (1 - ·)` half (`Real.mul_negMulLog_one_sub_add_le`) and a `private` concavity layer for the comparison function `η u = exp u * negMulLog (1 - exp (-u))`. Two entries are added to `docs/references.bib` (Chase–Lovett arXiv:2211.11689, Boppana arXiv:2301.09664).
**Motivation.** This inequality is the reusable reduction step behind the recent entropic lower bounds for Frankl's union-closed sets conjecture (Gilmer; Alweiss–Huang–Sellke; Chase–Lovett; Sawin; Boppana): it reduces two-variable inequalities of Boppana type `K * (x * h y + y * h x) ≤ h (x * y)` to one-variable inequalities `2 * K * t * h t ≤ h (t ^ 2)`. `Mathlib/Analysis/SpecialFunctions/BinaryEntropy.lean` currently contains calculus basics for `binEntropy` only, and no inequality of this family; I checked current master for collisions before opening this. A kernel-checked downstream application — a complete Lean formalization of the union-closed lower bound at the constant `(3 - √5)/2` that uses exactly this reduction — is public at https://github.com/demonstrandum-research/artifacts (the `UCFrankl` development), which I maintain.
**Proof shape** (one page of calculus): substituting `x = exp (-u)`, the inequality becomes midpoint concavity of `η` on `[0, ∞)`; the `negMulLog (x * y)` parts of the two sides cancel exactly, the `negMulLog (1 - ·)` parts transfer to `η` via the identity `x * η (-log x) = negMulLog (1 - x)`, and `η'' ≤ 0` reduces to `log t ≤ t - 1`. Stating `η` through `negMulLog` absorbs the `0 * log 0` boundary behaviour, so no separate edge-case argument is needed at `x = 1`.
**Design notes / open questions for reviewers.**
- Hypotheses are stated as `0 ≤ x`/`x ≤ 1` pairs rather than `x ∈ Set.Icc 0 1`; happy to convert if the membership form is preferred.
- The `η`-machinery is `private`; it could be exposed if judged independently useful.
- File placement: a new `BinaryEntropy/Diagonal.lean` leaf keeps the import footprint of `BinaryEntropy.lean` unchanged (the proof needs `Analysis.Convex.Deriv`); merging into the main file is also possible if preferred.
- Naming: `mul_binEntropy_add_mul_binEntropy_le` / `mul_negMulLog_one_sub_add_le` follow the conclusion-based convention but I am glad to rename.
**AI disclosure** (per the [mathlib AI policy](https://leanprover-community.github.io/contribute/index.html)): the Lean code in this PR was generated by LLM agents (Anthropic's Claude, running in an agent pipeline that I operate under the name Demonstrandum), and was then compile-verified against mathlib and reviewed by me. This PR description was also prepared with AI assistance and reviewed by me. The proof is elementary calculus as summarized above; I understand it and take full responsibility for the contribution. I am adding the `LLM-generated` label as required. The downstream `UCFrankl` development linked above (kernel-checked, axioms `[propext, Classical.choice, Quot.sound]` only) is the evidence that the lemma carries real weight in applications.
---
- [x] depends on: nothing
|
t-analysis
LLM-generated
new-contributor
|
227/0 |
Mathlib.lean,Mathlib/Analysis/SpecialFunctions/BinaryEntropy/Diagonal.lean,docs/references.bib |
3 |
5 |
['Harmenszoon', 'Timeroot', 'github-actions'] |
nobody |
10-62109 10 days ago |
74-50913 74 days ago |
74-50687 74 days |
0 |
| 43699 |
SnirBroshi author:SnirBroshi |
feat(Order/Defs/Unbundled): relate core's `Is*Order` prop classes to their mathlib unbundled counterparts |
---
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|
t-order |
13/0 |
Mathlib/Order/Defs/Unbundled.lean |
1 |
2 |
['github-actions'] |
nobody |
10-60448 10 days ago |
10-65810 10 days ago |
10-65584 10 days |
0 |
| 43667 |
SnirBroshi author:SnirBroshi |
fix(Topology/Baire/Lemmas): the Baire property is not Baire's theorem |
The lemmas whose docstring says "Baire theorem" were first proved for complete metric spaces in leanprover-community/mathlib3#816, so they were Baire's (first) theorem. Then leanprover-community/mathlib3#14547 introduced `BaireSpace`, which made these lemmas reformulations of the Baire property instead of the theorem (which is now called `BaireSpace.of_completelyPseudoMetrizable`).
---
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|
t-topology |
25/22 |
Mathlib/Topology/Baire/CompleteMetrizable.lean,Mathlib/Topology/Baire/Lemmas.lean,Mathlib/Topology/Baire/LocallyCompactRegular.lean,docs/1000.yaml,docs/overview.yaml |
5 |
1 |
['github-actions'] |
nobody |
10-50091 10 days ago |
11-19441 11 days ago |
11-19336 11 days |
0 |
| 43621 |
Whning0513 author:Whning0513 |
feat(Data/List): add basic API for toChunks |
Adds basic API lemmas for `List.toChunks`: flattening recovers the input, chunks are nonempty sublists, and their lengths are bounded by the chunk size.
This addresses the `Data/List/Basic: SP: toChunks` item in #7987.
Tests:
- `lake env lean Mathlib/Data/List/ToChunks.lean`
- `lake build Mathlib.Data.List.ToChunks`
- `lake exe runLinter Mathlib.Data.List.ToChunks`
AI use: OpenAI Codex was used to rebase the branch, run the checks above, and submit this pull request. The code and proofs were written and reviewed by the author. |
t-data
new-contributor
|
119/0 |
Mathlib.lean,Mathlib/Data/List/ToChunks.lean |
2 |
8 |
['copilot-pull-request-reviewer', 'github-actions', 'theebayuser'] |
nobody |
10-47829 10 days ago |
12-17659 12 days ago |
12-17433 12 days |
0 |
| 41505 |
homeowmorphism author:homeowmorphism |
feat(Algebra/Order): define left-orderable monoids and left-orderable groups |
A monoid `M` is *left-orderable* if it admits a linear order invariant under left multiplication
(`a ≤ b → c * a ≤ c * b`), *right-orderable* if it admits one invariant under right multiplication,
and *bi-orderable* if a single order is invariant under both — stronger than being both left- and
right-orderable, since those may need different orders. Moreover, these order becomes strict if the monoid is cancellative. This file defines the `Prop`-valued classes
`IsLeftOrderable`, `IsRightOrderable` and `IsBiOrderable`, and the instances producing them from a
compatible `LinearOrder`. Their richer theory over a *group*, where the two one-sided notions
coincide, is developed in `Mathlib/GroupTheory/Orderable.lean`.
Building on the monoid-level classes `IsLeftOrderable`, `IsRightOrderable` and `IsBiOrderable` (see
`Mathlib/Algebra/Order/Monoid/Orderable.lean`), adds the theory specific to a group `G`,
where inverses make the left- and right-handed notions coincide.
Co-authored by: Yaël Dillies <yael.dillies@gmail.com>
---
Zulip thread: https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Dynamical.20realization.20of.20left-orderable.20groups.20project/
Authored using Claude Fable during the Fermat’s Last Theorem workshop in July 2026.
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|
LLM-generated
t-group-theory
maintainer-merge
|
473/1 |
Mathlib.lean,Mathlib/Algebra/Order/Group/Opposite.lean,Mathlib/Algebra/Order/Group/PiLex.lean,Mathlib/Algebra/Order/Monoid/Orderable/Defs.lean,Mathlib/Algebra/Order/Monoid/Orderable/Pi.lean,Mathlib/Algebra/Order/Monoid/Orderable/Prod.lean,Mathlib/Algebra/Order/Monoid/Prod.lean,Mathlib/Tactic/Translate/ToAdditive.lean |
8 |
105 |
['JovanGerb', 'YaelDillies', 'github-actions', 'homeowmorphism', 'tb65536'] |
nobody |
10-31074 10 days ago |
17-66699 17 days ago |
28-69104 28 days |
0 |
| 40050 |
ReemMelamed author:ReemMelamed |
feat(Algebra/Group/GreensRelations): add definitions for Green's relations |
This PR introduces the foundational definitions for Green's relations (L, R, H, D, and J) on semigroups.
This is the first in a series of PRs aimed at formalizing Green's relations for semigroups.
[Zulip](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Formalization.20of.20Green.27s.20Relations.20for.20semigroups/with/598557876)
---
- [x] depends on: #40843
|
t-algebra
new-contributor
label:t-algebra$ |
505/0 |
Mathlib.lean,Mathlib/Algebra/Group/GreensRelations/Basic.lean |
2 |
33 |
['ReemMelamed', 'YaelDillies', 'YanYablonovskiy', 'github-actions', 'mathlib-bors', 'mathlib-dependent-issues'] |
nobody |
10-26190 10 days ago |
10-26956 10 days ago |
30-17880 30 days |
2 |
| 42795 |
harahu author:harahu |
chore(RepresentationTheory): tidy markdown headers |
Ensure all files in `Mathlib/RepresentationTheory` have an H1 header. Clean up some H2 headers while we're at it.
---
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|
t-algebra label:t-algebra$ |
8/4 |
Mathlib/RepresentationTheory/Action.lean,Mathlib/RepresentationTheory/Continuous/Basic.lean,Mathlib/RepresentationTheory/Equiv.lean,Mathlib/RepresentationTheory/Homological/ContCohomology/LowDegree.lean,Mathlib/RepresentationTheory/Tannaka.lean |
5 |
3 |
['JX-Mo', 'github-actions', 'harahu'] |
nobody |
10-22994 10 days ago |
37-31376 37 days ago |
37-31150 37 days |
0 |
| 31981 |
jsm28 author:jsm28 |
feat(Geometry/Euclidean/Incenter): `tangentSet` and `tangentsFrom` lemmas |
Add lemmas relating the faces of a simplex to `tangentSet` and `tangentsFrom` for an exsphere, in particular for a triangle that any two side lines are the `tangentsFrom` their shared vertex to the insphere or any exsphere.
---
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- [ ] depends on: #31893
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- [x] depends on: #31979
- [x] depends on: #31980
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[](https://gitpod.io/from-referrer/)
|
t-euclidean-geometry |
95/0 |
Mathlib/Geometry/Euclidean/Incenter.lean |
1 |
17 |
['Parcly-Taxel', 'github-actions', 'jsm28', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'pepamontero', 'wwylele'] |
nobody |
10-22743 10 days ago |
22-27668 22 days ago |
24-7487 24 days |
1 |
| 29558 |
Thmoas-Guan author:Thmoas-Guan |
feat(Algebra): definition of global dimension |
In this PR, we define global dimension supremum over `projectiveDimension`
---
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[](https://gitpod.io/from-referrer/)
|
t-ring-theory |
116/0 |
Mathlib.lean,Mathlib/RingTheory/GlobalDimension.lean |
2 |
23 |
['Thmoas-Guan', 'erdOne', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'mathlib4-merge-conflict-bot', 'vlad902'] |
erdOne assignee:erdOne |
10-19746 10 days ago |
19-35588 19 days ago |
47-61548 47 days |
8 |
| 43680 |
Jun2M author:Jun2M |
feat(Topology): add path interiors and connectivity lemmas |
This PR is part of PR chain leading to definition of drawing of graph on topological space. This PR introduces preliminary unit interval/path results needed for the later PRs.
In particular, this PR
* Defines `Path.interior` as the image of the open parameter interval.
* Proves that path ranges and nonempty open subintervals of the unit interval are path-connected
* Adds endpoint lemmas for analyzing path interiors.
Some of the lemmas in the PR chain was initially proven with codex then manually golfed.
---
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|
t-topology |
39/0 |
Mathlib/Analysis/Convex/PathConnected.lean,Mathlib/Topology/Connected/PathConnected.lean,Mathlib/Topology/Path.lean,Mathlib/Topology/UnitInterval.lean |
4 |
3 |
['github-actions', 'mathlib-bors', 'vlad902'] |
nobody |
10-13449 10 days ago |
10-15331 10 days ago |
11-6912 11 days |
2 |
| 43702 |
theebayuser author:theebayuser |
feat(LinearAlgebra/AffineSpace): add Varignon's theorem |
Hello, this PR introduces Varignon's theorem.
Varignon's theorem states that the midpoints of the sides of a quadrilateral form a parallelogram. More precisely, `midpoint_midpoint_midpoint_rotate` states: the two diagonals of the midpoint quadrilateral have the same midpoint.
This PR was written with AI assistance (Claude Code)
|
t-algebra
new-contributor
LLM-generated
label:t-algebra$ |
22/2 |
Mathlib/LinearAlgebra/AffineSpace/Midpoint.lean,docs/1000.yaml |
2 |
7 |
['github-actions', 'theebayuser', 'wwylele'] |
nobody |
10-7207 10 days ago |
10-53279 10 days ago |
10-53053 10 days |
0 |
| 43261 |
YaelDillies author:YaelDillies |
feat(Geometry/Convex): cancellative convex spaces |
Define cancellative convex spaces as those space where non-trivial convex combinations are injective in any of their inputs. Show that modules, affine spaces, products of cancellative convex spaces, subspaces of cancellative convex spaces... are cancellative convex spaces.
Cancellative convex spaces are the correct setting for a large number of convexity concepts. Such a convex space embeds into some (canonical) affine space and therefore satisfies the geometrically intuitive properties of convexity. Non-cancellative convex spaces are pathological from the point of view of polytope theory.
[nLab](https://ncatlab.org/nlab/show/convex+space)
Generated by Claude Opus, reviewed and golfed by myself.
From the Polytopes in Berlin workshop, where participants were confused whether they could generalise their results from affine spaces to convex spaces.
Assisted-by: Claude Opus 5
---
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|
t-convex-geometry
LLM-generated
|
209/15 |
Mathlib/Algebra/Order/GroupWithZero/Basic.lean,Mathlib/Data/Finsupp/Basic.lean,Mathlib/Geometry/Convex/ConvexSpace/AffineSpace.lean,Mathlib/Geometry/Convex/ConvexSpace/Defs.lean,Mathlib/Geometry/Convex/ConvexSpace/Module.lean,Mathlib/Geometry/Convex/ConvexSpace/Prod.lean,Mathlib/Geometry/Convex/Set.lean |
7 |
9 |
['YaelDillies', 'b-mehta', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
10-1660 10 days ago |
10-20171 10 days ago |
18-48195 18 days |
2 |
| 42313 |
deancureton author:deancureton |
feat(RingTheory): embDomain composition and range, Laurent series expansion |
Add to the Hahn series API:
- `embDomain_embDomain` (composition of domain embeddings)
- `mem_range_embDomain_iff` (range of `embDomain` is characterized by support containment)
Add to the Laurent series API:
- the expansion ring endomorphism `LaurentSeries.expand` with its monomial and `orderTop` lemmas
- follows the pattern of `Polynomial.expand`, `MvPolynomial.expand`, `PowerSeries.expand`
- its opposite `LaurentSeries.contract`, with the decomposition of a Laurent series by exponent residues mod `n` (`sum_single_mul_expand_contract`) and its uniqueness (`contract_eq_of_sum_eq`)
- `exists_ofPowerSeries_eq_of_orderTop_nonneg`
This is the first of a series of PRs formalizing Puiseux series and Puiseux's theorem (entry 41 of Freek Wiedijk's 100 theorems list). |
t-ring-theory
new-contributor
LLM-generated
|
116/0 |
Mathlib/RingTheory/HahnSeries/Basic.lean,Mathlib/RingTheory/LaurentSeries.lean |
2 |
16 |
['deancureton', 'github-actions', 'wwylele'] |
nobody |
10-564 10 days ago |
39-66209 39 days ago |
51-69718 51 days |
0 |
| 41241 |
intgrah author:intgrah |
feat(Order/Category): cartesian closed and distributive structure on PartOrd and Preord |
Give `PartOrd` and `Preord` `CartesianMonoidalCategory`, `MonoidalClosed`, and `IsCartesianDistributive` instances.
---
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|
new-contributor
t-order
|
267/0 |
Mathlib.lean,Mathlib/Order/Category/PartOrd/CartesianClosed.lean,Mathlib/Order/Category/PartOrd/Colimits.lean,Mathlib/Order/Category/PartOrd/Reflective.lean,Mathlib/Order/Category/Preord/CartesianClosed.lean,Mathlib/Order/Category/Preord/Colimits.lean,Mathlib/Order/Category/Preord/Reflective.lean,Mathlib/Tactic/Linter/DirectoryDependency.lean |
8 |
7 |
['github-actions', 'intgrah', 'thomaskwaring'] |
nobody |
9-85906 9 days ago |
11-67787 11 days ago |
82-17389 82 days |
0 |
| 42344 |
plp127 author:plp127 |
feat: generalize `Polynomial.irreducible_comp` |
The new statement doesn't require the polynomials be monic. There's also an iff version.
---
- [x] depends on: #42069
- [x] depends on: #42333
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|
t-ring-theory |
62/66 |
Mathlib/FieldTheory/IntermediateField/Adjoin/Basic.lean,Mathlib/FieldTheory/KummerExtension.lean |
2 |
3 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
9-85036 9 days ago |
9-86273 9 days ago |
10-25647 10 days |
1 |
| 42461 |
Ganton23 author:Ganton23 |
feat(Probability/Quantile): the lower quantile function of a real cdf |
This adds `ProbabilityTheory.lowerQuantile`, the lower quantile function
(the generalized inverse of a cdf-like monotone function on ℝ), with the
order core, the Galois connection under right-continuity, the plug-in
identity, left-continuity in the level, uniqueness, equivariance under
order isomorphisms, and the specialization to `cdf μ` where both standing
side conditions become theorems.
---
This adds the LOWER QUANTILE FUNCTION, that is the generalized inverse of a cdf-like
monotone function on `ℝ`, in a new file `Mathlib/Probability/Quantile.lean` beside
`Mathlib/Probability/CDF.lean`.
### What it adds
`ProbabilityTheory.quantileSet F p = {x | p ≤ F x}` and
`ProbabilityTheory.lowerQuantile F p = sInf (quantileSet F p)`, with:
* the order core: monotonicity in the level, and the two `csInf` bounds;
* attainment `p ≤ F (lowerQuantile F p)` under monotonicity and right continuity;
* the Galois connection `lowerQuantile F p ≤ x ↔ p ≤ F x`, and its strict form;
* the plug-in identity `F (lowerQuantile F p) = p` under continuity;
* left continuity of the quantile in the level;
* uniqueness under strict monotonicity, and existence on an interval via the IVT;
* equivariance under an `OrderIso ℝ ℝ`, in both functional and pushforward form;
* the specialization to `cdf μ` for a probability measure at `0 < p < 1`, where both
standing side conditions become theorems.
### Why
`sInf` of an empty or unbounded-below set is Lean's junk value `0`. A quantile lemma
stated without `Set.Nonempty` and `BddBelow` is therefore either false or accidentally
true of the junk value, and a reader cannot tell which. Every general lemma here carries
both by name, and the cdf section discharges both from the limits of the cdf at `atBot`
and `atTop`. That discharge is what makes the general statements non-vacuous.
Three lemmas record that the continuity hypotheses are load bearing, stated as
`¬ ∀ ...` rather than as existentials. An existential says a bad case exists; the negated
universal says the weakened lemma is FALSE, which is what a reader asking "is this
hypothesis decorative" actually wants. The witness is a monotone step function that is
left continuous at its jump: monotone, bounded, well behaved quantile set, and not right
continuous, which alone breaks attainment, the forward half of the adjunction, and the
plug-in identity.
`not_galoisConnection_lowerQuantile_cdf` is included deliberately as a NEGATIVE result.
The bundled `GaloisConnection` packaging quantifies over all levels, and a cdf has an
unbounded quantile set at level `0` and an empty one at level `2`, so the bundled
conclusion is false for every probability measure. Reaching the cdf case would need the
level indexed by the open unit interval as a subtype. I would rather state that boundary
than let a reader discover it.
### What it depends on
`Mathlib.Probability.CDF` for the cdf and its monotonicity and limits;
`Mathlib.Topology.Order.IntermediateValue`; `Mathlib.Topology.Order.MonotoneContinuity`;
`Mathlib.Order.ConditionallyCompleteLattice.Indexed`. No new axioms: every declaration
reports exactly `propext`, `Classical.choice`, `Quot.sound`.
### Prior art, named because a reviewer will find it
`Mathlib/Order/SemiconjSup.lean` defines `IsOrderRightAdjoint f g := ∀ y, IsLUB
{x | f x ≤ y} (g y)`, built by `isOrderRightAdjoint_csSup` as a supremum over a
SUB-level set. That is the order-dual construction, the UPPER generalized inverse; the
two functions are different and neither definition unfolds to the other. Its file is
about circle homeomorphisms, which is why searching for "quantile" does not find it.
`GaloisConnection` is used rather than reinvented.
There is no existing `quantile` in mathlib: zero case-insensitive hits across the tree.
`median` exists but is the median of a simplex in affine geometry, a different word in a
different subject.
### Generality, stated rather than left to review
Everything is at `F : ℝ → ℝ`. Running mathlib's environment linters locally flagged
`[IsProbabilityMeasure μ]` as unused in nine cdf-facing declarations. Five (the two
side-condition dischargers and the three negative results) are generalized: they now
hold for the cdf of any measure, since the cdf's limit lemmas hold unconditionally.
Four convenience wrappers (`lowerQuantile_cdf_le_iff`, `lowerQuantile_cdf_mono`,
`le_cdf_lowerQuantile`, `continuousWithinAt_lowerQuantile_cdf_Iic`) KEEP the instance
under `@[nolint unusedArguments]`, deliberately: for a non-probability measure,
`cdf μ` is a normalizing construction, so the generalized statements would be
accidentally true of the construction rather than of the object the name suggests,
which is the failure mode the Why section above exists to avoid. If reviewers prefer
the fully general forms, I am happy to drop the instances; the proofs do not use
them. Two declarations (`cdf_map_orderIso`, `lowerQuantile_cdf_map`) consume the
instance and keep it.
The ORDER CORE generalizes to a `ConditionallyCompleteLinearOrder` domain with a
`Preorder` codomain with proof terms UNCHANGED, and I have checked that rather than
assumed it. Two caveats found while checking, which is why I would rather do it as a
follow-up than fold it in here:
* `apply_lt_of_lt_lowerQuantile` needs a LINEAR codomain, since it goes from
`¬ (p ≤ F x)` to `F x < p`.
* `exists_apply_lt_of_bddBelow` is FALSE without `NoMinOrder` on the domain. Over `ℝ` it
is proved by exhibiting `b - 1`; on a domain with a least element, a constant `F` at
level `p` has a quantile set that is everything, is bounded below, and has no point
with `F a < p`.
The TOPOLOGICAL layer does not transcribe: `tendsto_lowerQuantile_nhdsLT` takes the
midpoint `(c + q) / 2`, which uses the field structure, and a general version needs
`DenselyOrdered`. Happy to do the generalization in a follow-up, or in this PR if a
reviewer prefers it landed general the first time.
### Open, and not claimed
The UPPER quantile and the lemmas relating the two; the probability integral transform;
`Measure.map` along a general measurable monotone function rather than an order
isomorphism; and a `GaloisConnection` packaging indexed by the open unit interval that
would reach the cdf case.
### AI disclosure
- Lean definitions and proofs generated with the assistance of AI agents (Utilized Anthropic's Claude, operating through Claude Code). Done over numerous working sessions wherein I, Gabriel Anton, directed, reviewed and authorized each session.
- Every declaration is kernel-checked; Zero sorry, and everyone of the 48 submitted declarations reports exactly [Propext, Classical.choice, Quot.sound] under transitive #print axioms; clean lake build against current master.
-Ran aggressive adversarial review process on each agents work with a separate agent; A hostile-reviewer pass, refutation lemmas proving the hypotheses are load bearing, and a certified negative result for the packaging that does not work. The corrections forced by this process are in the file and history.
- Ran Mathlib's environment linters BEFORE submission; their finding (Unused in nine declarations) was adopted, which produced the generalization-versus-nolint split described in the PR body.
- Commit messages are terse factual summaries; PR body was drafted by agents and reviewed and edited by me, this disclosure is also written by me, Gabriel Anton.
- I will apply the LLM-Generated label (by comment) and I will answer review questions myself.
[](https://gitpod.io/from-referrer/)
|
t-measure-probability
LLM-generated
new-contributor
|
603/0 |
Mathlib.lean,Mathlib/Probability/Quantile.lean |
2 |
3 |
['Ganton23', 'github-actions'] |
nobody |
9-84807 9 days ago |
9-85537 9 days ago |
11-74228 11 days |
0 |
| 42844 |
plp127 author:plp127 |
refactor(Logic/Hydra): cleanup file |
Change the definition of `CutExpand` to be more correct. Rename some theorems and add some theorems.
---
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|
t-logic |
101/50 |
Mathlib/Logic/Hydra.lean |
1 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
9-84729 9 days ago |
9-85340 9 days ago |
35-66991 35 days |
0 |
| 42407 |
tb65536 author:tb65536 |
refactor(Algebra/Group/*): redefine `IsAddTorsionFree` and `IsMulTorsionFree` |
This PR redefines torsion-free to be that exponentiation by every non-zero element `n : ℕ` is injective on commuting elements (i.e., `a * b = b * a → a ^ n = b ^ n → a = b`).
For commutative monoids, this is equivalent to `a ^ n = b ^ n → a = b`.
For groups, this is equivalent to `a ^ n = 1 → a = 1`.
Thus, this definition reconciles the notions of torsion-free for groups and commutative semigroups.
This definition was taken from this mathoverflow answer: https://mathoverflow.net/a/377268/95685
Zulip thread: [#mathlib4 > Definition of `IsMulTorsionFree`](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Definition.20of.20.60IsMulTorsionFree.60/with/614317763)
The old definition has been renamed to `HasUniqueRoots` and `HasUniqueDiv` (analogous to `RootableBy` and `DivisibleBy`).
---
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|
t-algebra
t-group-theory
label:t-algebra$ |
169/66 |
Mathlib/Algebra/BigOperators/Group/Multiset/Basic.lean,Mathlib/Algebra/Group/Commute/Defs.lean,Mathlib/Algebra/Group/Hom/Defs.lean,Mathlib/Algebra/Group/Int/Defs.lean,Mathlib/Algebra/Group/Monoid.lean,Mathlib/Algebra/Group/Nat/Defs.lean,Mathlib/Algebra/Group/Opposite.lean,Mathlib/Algebra/Group/Pi/Torsion.lean,Mathlib/Algebra/Group/Prod.lean,Mathlib/Algebra/Group/Subgroup/Basic.lean,Mathlib/Algebra/Group/Torsion.lean,Mathlib/Algebra/Group/TypeTags/Basic.lean,Mathlib/Algebra/GroupWithZero/Torsion.lean,Mathlib/Algebra/Module/Rat.lean,Mathlib/Algebra/Module/Torsion/Free.lean,Mathlib/Algebra/NoZeroSMulDivisors/Defs.lean,Mathlib/Algebra/Order/GroupWithZero/Canonical.lean,Mathlib/Algebra/Order/Monoid/Unbundled/Pow.lean,Mathlib/Algebra/Ring/CharZero.lean,Mathlib/Algebra/Ring/Torsion.lean,Mathlib/Basic/Complex/Basic.lean,Mathlib/GroupTheory/FreeGroup/CyclicallyReduced.lean,Mathlib/GroupTheory/MonoidLocalization/Basic.lean,Mathlib/GroupTheory/OrderOfElement.lean,Mathlib/NumberTheory/Padics/MahlerBasis.lean,Mathlib/RingTheory/Binomial.lean |
26 |
16 |
['SnirBroshi', 'YaelDillies', 'github-actions', 'mathlib-merge-conflicts', 'plp127', 'tb65536'] |
nobody |
9-72721 9 days ago |
20-73969 20 days ago |
42-82083 42 days |
0 |
| 42165 |
bocowgill author:bocowgill |
feat(Probability/HasCondDistrib): characterize independence using conditional distributions |
This PR uses conditional distributions to characterize independence of two random variables.
It adds eight public declarations to `Mathlib/Probability/HasCondDistrib.lean`, which is the only file modified:
- `indepFun_iff_hasCondDistrib_const_of_hasLaw`: characterizes independence using a constant conditional-distribution kernel when the laws are specified.
- `indepFun_iff_hasCondDistrib_const`: specializes this characterization to the marginal laws `P.map X` and `P.map Y`.
- `IndepFun.hasCondDistrib_const`: the forward implication of the preceding equivalence.
- `HasCondDistrib.indepFun_of_const`: the reverse implication.
- `hasCondDistrib_condDistrib`: shows that the regular conditional distribution `condDistrib Y X P` satisfies `HasCondDistrib`.
- `hasCondDistrib_iff_condDistrib_ae_eq`: characterizes finite kernels satisfying `HasCondDistrib` by almost-everywhere equality with `condDistrib`.
- `indepFun_iff_condDistrib_ae_eq_const_of_hasLaw`: characterizes independence by almost-everywhere equality of `condDistrib` with the constant kernel at the specified law.
- `indepFun_iff_condDistrib_ae_eq_const`: specializes this characterization to the marginal laws.
The PR adds no new file and makes no change to the root `Mathlib.lean` imports.
---
### Motivation
These results provide a basic building block for formalizing randomized experiments and causal identification. The main result provides a starting point for later ignorability and conditional-independence results in causal inference.
### LLM disclosure
For theorem planning and Lean implementation, I substantially used Codex by OpenAI. I also used it for suggestions around naming and documentation, for iterating on the proofs, and for validating my commits locally.
I manually searched for the best locations and earlier results to build upon. I personally reviewed both the mathematical statements and Lean code (line-by-line), as well as the suggestions around naming and API choices. I also reviewed and confirmed that I can explain each step of the results (both Mathematics and Lean syntax).
To validate the change, I directly compiled the modified file and ran a targeted build. I also ran the style linter, and completed a full `lake build` and a full `lake test`.
Please note: This is one of my first mathlib contributions. I welcome corrections or suggestions about all aspects of this PR. I'm prepared to revise it as necessary, and to learn from the review.
|
t-measure-probability
LLM-generated
new-contributor
maintainer-merge
|
68/3 |
Mathlib/Probability/HasCondDistrib.lean |
1 |
33 |
['CoolRmal', 'EtienneC30', 'bocowgill', 'github-actions', 'leanprover-radar'] |
nobody |
9-69192 9 days ago |
32-54017 32 days ago |
55-45683 55 days |
0 |
| 30109 |
scholzhannah author:scholzhannah |
feat: the subcomplexes of a (relative classical) CW complex form a completely distributive lattice |
In this PR we prove that the space of subcomplexes `Subcomplex C` of a (relative classical) CW complex `C` is a `CompletelyDistribLattice`.
---
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|
t-topology |
313/0 |
Mathlib/Topology/CWComplex/Classical/Subcomplex.lean |
1 |
32 |
['ADedecker', 'felixpernegger', 'github-actions', 'j-loreaux', 'mathlib-merge-conflicts', 'scholzhannah', 'themathqueen'] |
nobody |
9-62111 9 days ago |
20-8841 20 days ago |
129-10898 129 days |
0 |
| 43476 |
yuanyi-350 author:yuanyi-350 |
feat(Topology/CoveringDimension): define Lebesgue covering dimension |
|
t-topology |
394/0 |
Mathlib.lean,Mathlib/Topology/CoveringDimension/Basic.lean |
2 |
1 |
['github-actions'] |
nobody |
9-57354 9 days ago |
9-58073 9 days ago |
9-58549 9 days |
0 |
| 43690 |
b-mehta author:b-mehta |
refactor(NumberTheory/Bernoulli): define pIntegral via the p-adic valuation subring |
This is useful for #42304, since it will let us use subring lemmas there. In this case the diff is innocuous, but in Finset.sum cases the new version is cleaner to work with
---
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|
t-number-theory |
34/31 |
Mathlib/NumberTheory/Bernoulli.lean |
1 |
1 |
['github-actions'] |
nobody |
9-48128 9 days ago |
11-3161 11 days ago |
11-2935 11 days |
0 |
| 43646 |
LLaurance author:LLaurance |
feat(Geometry/Euclidean): centroid and circumcenter and Monge point coincide in equilateral simplex |
No new definitions.
`Affine.Simplex.circumcenter_mem_perpBisector` seems to belong in either `Affine.Simplex.Circumcenter` or `Affine.Simplex.PerpBisector` but neither has all the necessary imports.
`Affine.Simplex.Equilateral.dist_centroid_eq'` is assisted by Claude.
---
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|
LLM-generated
t-euclidean-geometry
|
126/0 |
Mathlib.lean,Mathlib/Analysis/Normed/Affine/Simplex.lean,Mathlib/Geometry/Euclidean/Equilateral.lean |
3 |
14 |
['LLaurance', 'github-actions', 'theebayuser', 'wwylele'] |
jsm28 assignee:jsm28 |
9-46469 9 days ago |
9-47147 9 days ago |
9-47706 9 days |
0 |
| 42355 |
sankalpsthakur author:sankalpsthakur |
fix(NormNum): error if remaining at locations are unused |
`norm_num at h1 h2 ...` (and other tactics built on `Lean.Elab.Tactic.withNondepPropLocation`) unconditionally processed every hypothesis in the location list, then the target. If an earlier hypothesis closed the goal (e.g. `norm_num` found `h1` to already be `False`), processing continued against an already-closed goal instead of stopping.
Unused `at` locations now error if an earlier location closed the goal.
Closes #28703.
---------
Note. `withNondepPropLocation` currently has no other callers in the Mathlib tree besides its own definition file.
AI coding tools were used to help draft this change and PR description. I reviewed the complete change, understand the reasoning, and verified the build locally before submitting. |
new-contributor
LLM-generated
t-meta
|
32/2 |
Mathlib/Util/AtLocation.lean,MathlibTest/Tactic/NormNum/Basic.lean |
2 |
22 |
['github-actions', 'grunweg', 'mathlib-merge-conflicts', 'sankalpsthakur', 'thorimur'] |
thorimur assignee:thorimur |
9-38172 9 days ago |
9-43362 9 days ago |
29-44412 29 days |
0 |
| 43633 |
Jun2028 author:Jun2028 |
feat(SetTheory/Ordinal): classify exponential principal ordinals |
Complete `` TODO: Prove that the exponential principal ordinals are `0`, `1`, `2`, `ω`, or `ε_ x` `` in [Mathlib/SetTheory/Ordinal/Principal.lean](https://github.com/leanprover-community/mathlib4/compare/master...Jun2028:mathlib4:feat/exponential-principal-classification?expand=1#diff-c700a68af59d576bafeeeac5211181f9ce129bdead444df6c9747344817103bd)
By the way, the original TODO was wrong because `1` is not an exponential principal ordinal (it requires $0^0=1<1$ which is false).
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t-set-theory
new-contributor
|
65/5 |
Mathlib/SetTheory/Ordinal/Principal.lean,Mathlib/SetTheory/Ordinal/Veblen.lean |
2 |
8 |
['github-actions', 'vihdzp'] |
nobody |
9-27324 9 days ago |
12-9723 12 days ago |
12-9497 12 days |
0 |
| 41861 |
stalex444 author:stalex444 |
feat(Algebra/Order/Floor): floor-of-sum dichotomy via fractional parts |
This PR adds four lemmas in Mathlib/Algebra/Order/Floor/Ring.lean, placed in the fractional-part section, complementing the existing one-sided bounds le_floor_add and le_floor_add_floor.
Here are the lemmas:
* floor_add_eq — writes ⌊a + b⌋ exactly as ⌊a⌋ + ⌊b⌋ + ⌊fract a + fract b⌋
* floor_add_eq_add_iff — the floors add exactly ⟺ the fractional parts sum below 1
* floor_add_eq_add_add_one_iff — the +1 case ⟺ the fractional parts sum to at least 1
* floor_add_eq_or — the dichotomy: it's always one or the other
The library has the two inequalities but not the exact case analysis, and this closes that small gap. In addition, these are the lemmas for the mechanical/Beatty-word development proposed here --https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Sturmian.20.28mechanical.29.20words/near/610836902.
Claude helped draft the Lean code; I reviewed the code, built the module locally, and it compiled.
---
I'm flexible on the lemma names should reviewers prefer different forms
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t-algebra
LLM-generated
new-contributor
label:t-algebra$ |
49/0 |
Mathlib/Algebra/Order/Floor/Ring.lean |
1 |
11 |
['BoltonBailey', 'github-actions', 'stalex444', 'themathqueen'] |
nobody |
9-18612 9 days ago |
9-20077 9 days ago |
46-41944 46 days |
0 |
| 43753 |
b-mehta author:b-mehta |
feat(Data/Fintype/EquivFin): infinite types are Dedekind-infinite |
The converses of these are already in mathlib
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|
t-data |
30/0 |
Mathlib/Data/Fintype/EquivFin.lean |
1 |
1 |
['github-actions'] |
nobody |
9-9638 9 days ago |
9-14188 9 days ago |
9-13962 9 days |
0 |
| 39875 |
mkaratarakis author:mkaratarakis |
refactor(NumberField/House): expose Siegel lemma infrastructure |
Add new theorems for house of algebraic integer, expose Siegel's lemma infrastructure and rename the private basis-matrix bound to `basisMatrixInvSupNorm`, make `house` reducible, and adjust `exists_ne_zero_int_vec_house_le`. This changes are required for #39874.
---
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|
47/17 |
Mathlib/NumberTheory/NumberField/House.lean |
1 |
6 |
['github-actions', 'mathlib-merge-conflicts', 'mkaratarakis', 'tb65536'] |
nobody |
9-6303 9 days ago |
11-66484 11 days ago |
75-31635 75 days |
5 |
| 43108 |
tb65536 author:tb65536 |
chore(GroupTheory/Solvable): to_additivize file |
This PR to_additivizes `GroupTheory/Solvable.lean`.
---
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|
t-algebra
t-group-theory
label:t-algebra$ |
84/23 |
Mathlib/GroupTheory/Abelianization/Defs.lean,Mathlib/GroupTheory/IsPerfect.lean,Mathlib/GroupTheory/Solvable.lean |
3 |
4 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
9-3974 9 days ago |
9-6689 9 days ago |
23-18660 23 days |
0 |
| 41871 |
stalex444 author:stalex444 |
feat(RingTheory/IntegralClosure): integer powers of integral elements are integral |
This PR adds IsIntegral.zpow and its subalgebra-membership analogs (zpow_mem, zpow_mem_adjoin, Algebra.IsIntegral.zpow_mem), generalizing the existing inv lemmas from the −1 power to all integer powers.
This Lean code was drafted with the help of AI (Claude Code), I reviewed it and built it locally against the current master.
---
Happy to adjust the placement or the type-variable names.
---
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|
t-ring-theory
LLM-generated
new-contributor
|
20/0 |
Mathlib/RingTheory/IntegralClosure/IsIntegralClosure/Basic.lean |
1 |
11 |
['SnirBroshi', 'github-actions', 'stalex444'] |
nobody |
9-2839 9 days ago |
65-85254 65 days ago |
65-85028 65 days |
0 |
| 41218 |
SnirBroshi author:SnirBroshi |
feat(SimpleGraph/Star): the star graph is the only triangle-free graph with a universal vertex |
- `starGraph r |>.CliqueFree 3`
- `G.IsUniversal v → G.CliqueFree 3 → G = starGraph v`
- `G.IsUniversal v → (G.IsAcyclic ↔ G.CliqueFree 3)`
---
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|
t-combinatorics |
28/5 |
Mathlib/Combinatorics/SimpleGraph/Acyclic.lean,Mathlib/Combinatorics/SimpleGraph/Star.lean |
2 |
7 |
['Parcly-Taxel', 'SnirBroshi', 'github-actions', 'mathlib-merge-conflicts', 'vlad902'] |
nobody |
8-63371 8 days ago |
8-64120 8 days ago |
79-22833 79 days |
0 |
| 40973 |
certik author:certik |
feat: multiplicative automatic continuity on ℝ |
This PR adds the multiplicative companion of the existing additive automatic-continuity theorem `AddMonoidHom.continuous_of_measurable`. See the git commit descriptions for all the details.
Depends on https://github.com/leanprover-community/mathlib4/pull/40976.
AI usage disclosure: I used Claude Opus 4.8 to create the theorems and proofs in my own Lean project, then extracted them into this PR since I think they are general purpose and would be useful for other people. I iterated on the proofs until they are as simple as I could get them. I am new to Lean, so if something should be reworked, please let me know. Lean is amazing, I was able to use it to prove various theorems and check my derivations. This is my little contribution back to the project. |
t-measure-probability
LLM-generated
new-contributor
|
159/0 |
Mathlib.lean,Mathlib/MeasureTheory/Measure/Haar/AutomaticContinuity.lean |
2 |
10 |
['certik', 'github-actions', 'mathlib-merge-conflicts', 'wwylele'] |
urkud assignee:urkud |
8-63011 8 days ago |
86-40538 86 days ago |
88-64009 88 days |
0 |
| 43154 |
SnirBroshi author:SnirBroshi |
chore(Order/Bounded): deprecate all the theorems in this deprecated module |
This was deprecated in #38146, but downstream `import Mathlib` users don't see the warning.
---
This doesn't warn the user, but `Set.bounded_lt_Iio` will be gone soon:
```lean
import Mathlib
theorem foo : Set.Bounded (· < ·) (Set.Iio 0) :=
Set.bounded_lt_Iio 0
```
The warning does appear if we minimize the imports.
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|
t-order |
79/4 |
Mathlib/Order/Bounded.lean |
1 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
8-60253 8 days ago |
8-61004 8 days ago |
20-39232 20 days |
0 |
| 43287 |
SnirBroshi author:SnirBroshi |
chore: avoid `Subrelation` where possible |
Following the trend of avoiding `Subrelation` (e.g. #41450) in favor of `_ ≤ _`, this replaces most of its uses in Mathlib.
---
The only ones remaining are `subrelation_iff_le` (`Subrelation r s ↔ r ≤ s`) / `Acc.anti` / `WellFounded.anti` which make sense, and `Subrelation.antisymm` in `Logic/Relation.lean` because it's too early in the import hierarchy.
We could replace it with a `local instance : Std.Antisymm (α := α → α → Prop) LE.le`, but that seems a bit weird.
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t-order |
33/33 |
Mathlib/Data/DFinsupp/WellFounded.lean,Mathlib/Data/Finset/Card.lean,Mathlib/Data/Finset/Dedup.lean,Mathlib/Data/Finset/Defs.lean,Mathlib/Data/Finsupp/Multiset.lean,Mathlib/Data/Fintype/Card.lean,Mathlib/Data/Multiset/Defs.lean,Mathlib/Order/Monotone/Basic.lean,Mathlib/Order/RelClasses.lean,Mathlib/Order/WellFounded.lean,Mathlib/Order/WellFoundedSet.lean,Mathlib/RingTheory/Artinian/Module.lean,Mathlib/RingTheory/UniqueFactorizationDomain/Basic.lean,Mathlib/RingTheory/Valuation/Archimedean.lean |
14 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
8-53186 8 days ago |
8-58233 8 days ago |
19-7434 19 days |
0 |
| 43766 |
hawkrobe author:hawkrobe |
feat(LinearAlgebra/SymmetricAlgebra): functoriality |
---
Add `SymmetricAlgebra` functoriality (parallel to `TensorAlgebra` and `ExteriorAlgebra`)
[](https://gitpod.io/from-referrer/)
|
t-algebra label:t-algebra$ |
31/0 |
Mathlib/LinearAlgebra/SymmetricAlgebra/Basic.lean |
1 |
1 |
['github-actions'] |
nobody |
8-35047 8 days ago |
8-36564 8 days ago |
8-36338 8 days |
0 |
| 43767 |
hawkrobe author:hawkrobe |
feat(LinearAlgebra/SymmetricAlgebra): symmetric algebra is graded |
---
I also followed `TensorAlgebra` and `ExteriorAlgebra` here.
I used Claude to initialize the proof.
[](https://gitpod.io/from-referrer/)
|
t-algebra label:t-algebra$ |
55/0 |
Mathlib.lean,Mathlib/LinearAlgebra/SymmetricAlgebra/Grading.lean |
2 |
1 |
['github-actions'] |
nobody |
8-33667 8 days ago |
8-34446 8 days ago |
8-34220 8 days |
0 |
| 43747 |
yuanyi-350 author:yuanyi-350 |
feat(Analysis/LocallyConvex): characterize dense submodules by annihilators |
used in https://github.com/LeanMachineLearning/LML/pull/246 |
t-analysis
large-import
|
54/0 |
Mathlib/Analysis/LocallyConvex/Polar.lean,Mathlib/Analysis/LocallyConvex/Separation.lean |
2 |
1 |
['github-actions'] |
nobody |
8-12823 8 days ago |
9-41281 9 days ago |
9-41055 9 days |
0 |
| 35548 |
gasparattila author:gasparattila |
fix(Tactic/FunProp): do not unfold semireducible definitions in the presence of projections |
Currently, `fun_prop` incorrectly unfolds semireducible definitions when a projection or recursor is applied. This PR fixes this by switching to `whnfR` together with `Lean.Meta.withCanUnfoldPred` for the custom unfolding logic.
Unfortunately, there are many proofs which rely on this bug. To avoid breaking proofs, the option `fun_prop.projDefaultTransparency` is added for locally restoring the previous behavior. Removing the uses of this option is left for future PRs.
---
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[](https://gitpod.io/from-referrer/)
|
t-meta
tech debt
|
114/53 |
Mathlib/Analysis/Matrix/Normed.lean,Mathlib/Analysis/Normed/Lp/ProdLp.lean,Mathlib/Condensed/Light/TopCatAdjunction.lean,Mathlib/Condensed/TopCatAdjunction.lean,Mathlib/Geometry/Convex/ConvexSpace/PathConnectedSpaceStdSimplex.lean,Mathlib/NumberTheory/Harmonic/ZetaAsymp.lean,Mathlib/NumberTheory/ModularForms/Bounds.lean,Mathlib/Tactic/FunProp/Core.lean,Mathlib/Tactic/FunProp/FunctionData.lean,Mathlib/Tactic/FunProp/Mor.lean,Mathlib/Tactic/FunProp/Theorems.lean,Mathlib/Tactic/FunProp/Types.lean,Mathlib/Topology/Algebra/AffineSubspace.lean,Mathlib/Topology/Algebra/ConstMulAction.lean,Mathlib/Topology/Algebra/Constructions.lean,Mathlib/Topology/Algebra/ContinuousAffineEquiv.lean,Mathlib/Topology/Algebra/Field.lean,Mathlib/Topology/Algebra/Group/ContinuousDiv.lean,Mathlib/Topology/Algebra/Group/ContinuousInv.lean,Mathlib/Topology/Algebra/Group/Matrix.lean,Mathlib/Topology/Algebra/Group/Torsor.lean,Mathlib/Topology/Algebra/Group/Units.lean,Mathlib/Topology/Algebra/Module/ContinuousLinearMap/Positive.lean,Mathlib/Topology/Algebra/Module/Equiv.lean,Mathlib/Topology/Algebra/Module/IsWeak.lean,Mathlib/Topology/Algebra/Module/Spaces/WeakBilin.lean,Mathlib/Topology/Category/TopCat/Limits/Basic.lean,Mathlib/Topology/Constructions/SumProd.lean,Mathlib/Topology/ContinuousMap/Algebra.lean,Mathlib/Topology/Homeomorph/Lemmas.lean,Mathlib/Topology/Semicontinuity/Michael.lean,MathlibTest/FunPropMinimal.lean |
32 |
12 |
['DavidLedvinka', 'JovanGerb', 'gasparattila', 'github-actions', 'j-loreaux', 'lecopivo', 'mathlib-merge-conflicts'] |
JovanGerb assignee:JovanGerb |
8-11395 8 days ago |
19-75068 19 days ago |
30-54262 30 days |
0 |
| 43744 |
tobias-weiss-ai-xr author:tobias-weiss-ai-xr |
feat(Dynamics): gauss map for continued fractions and its inverse branches |
Adds the Gauss map `T x = 1/x - ⌊1/x⌋` (the fractional part of `1/x`, extended by `0` outside `(0,1]`) together with its inverse branches `Iₙ x = 1/(n+1+x)`.
## Main results
- `gaussMap_in_range`: `T` maps `[0,1]` into `[0,1]`
- `gaussMap_gaussInverseBranch`: `T ∘ Iₙ = id` on the open interval `(0,1)`
- `gaussInverseBranch_Icc_range`: `Iₙ` maps `[0,1]` onto `[1/(n+2), 1/(n+1)]`
- `gaussInverseBranch_partition`: the closed branch images cover `(0,1]`
- `gaussInverseBranch_disjoint`: distinct open branch images are disjoint
## Context
The branch partition is the combinatorial backbone of the transfer-operator approach to the Selberg zeta function (Mayer's model of continued fractions): the inverse branches generate the symbolic dynamics of the regular continued-fraction expansion, and the transfer operator of the Gauss map acts on functions on the unit interval by summing over these branches. |
t-dynamics
new-contributor
LLM-generated
|
203/0 |
Mathlib.lean,Mathlib/Dynamics/GaussMap.lean |
2 |
4 |
['D-Thomine', 'github-actions'] |
nobody |
8-256 8 days ago |
9-61574 9 days ago |
9-61594 9 days |
0 |
| 43104 |
elazarg author:elazarg |
feat(InformationTheory/KullbackLeibler): finite Kullback-Leibler divergence |
Add finite-sum formulas for `InformationTheory.klDiv` on finite measurable spaces, including equal-mass and probability-measure specializations and formulas for sums of weighted Dirac measures. Provide both `ℝ≥0∞`-valued and `toReal` versions.
Supporting API includes a formula for the Radon–Nikodym derivative at points of nonzero reference-measure mass, a finite-sum formula for the integral of the log-likelihood ratio, and singleton-mass and absolute-continuity lemmas for sums of weighted Dirac measures.
---
Continuing #42584, another part of https://github.com/elazarg/kraft.
Following review, this uses the existing `klDiv` instead of introducing `klDivFin`. The `toReal` formulas connect it to real-valued sums in downstream code.
For measures of unequal mass, the formulas retain the correction term `ν.real univ - μ.real univ`.
The KL formulas are in `KullbackLeibler/Basic.lean`; the supporting lemmas are in the corresponding measure-theory modules.
[](https://gitpod.io/from-referrer/)
|
t-measure-probability
new-contributor
LLM-generated
|
100/1 |
Mathlib/InformationTheory/KullbackLeibler/Basic.lean,Mathlib/MeasureTheory/Measure/Decomposition/RadonNikodym.lean,Mathlib/MeasureTheory/Measure/Dirac/Basic.lean,Mathlib/MeasureTheory/Measure/LogLikelihoodRatio.lean |
4 |
9 |
['EtienneC30', 'elazarg', 'github-actions', 'vlad902'] |
EtienneC30 assignee:EtienneC30 |
7-82395 7 days ago |
7-82395 7 days ago |
16-63847 16 days |
0 |
| 43781 |
vlad902 author:vlad902 |
chore(AffineSpace/Independent): remove two `backward.isDefEq.respectTransparency` |
---
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|
t-algebra
tech debt
label:t-algebra$ |
3/7 |
Mathlib/LinearAlgebra/AffineSpace/Independent.lean |
1 |
1 |
['github-actions'] |
nobody |
7-79641 7 days ago |
7-82002 7 days ago |
7-81776 7 days |
0 |
| 42363 |
ghseeli author:ghseeli |
feat(Combinatorics): card_le_card_biUnion_of_card_le_card |
This PR contributes a lemma to combinatorics, `card_le_card_biUnion_of_card_le_card`. this is a set theoretic corollary of a double counting result proved for bipartite graphs (`Finset.sum_card_bipartiteAbove_eq_sum_card_bipartiteBelow`). This result was needed for our Latin Square PR https://github.com/leanprover-community/mathlib4/pull/36698. This result was proved in less general terms in that PR, but is independent of Latin Square considerations and so we have generalized and moved it into this file.
---
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[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
|
38/0 |
Mathlib/Combinatorics/Enumerative/DoubleCounting.lean |
1 |
16 |
['cjrl', 'github-actions', 'vlad902', 'wwylele'] |
nobody |
7-72968 7 days ago |
37-62709 37 days ago |
50-54001 50 days |
1 |
| 42993 |
D-Thomine author:D-Thomine |
feat(UniformIntegrable): definitions of `UnifTail` and `UnifLpTail` |
This PR mainly **adds two definitions** to `MeasureTheory.Function.UniformIntegrable`:
* `UnifTail f μ`: the measure of the set `{ x | M ≤ ‖f i x‖ₑ }` vanishes when `M` goes to infinity, uniformly in `i`.
* `UnifLpTail f p μ`: the `ELpNorm` carried by the set `{ x | M ≤ ‖f i x‖ₑ }` vanishes when `M` goes to infinity, uniformly in `i`.
`UnifLpTail` gives a name to a statement which appears repeatedly in the file:
`∀ ε > 0, ∃ C : ℝ≥0, ∀ i, eLpNorm ({ x | C ≤ ‖f i x‖₊ }.indicator (f i)) p μ ≤ ε`
`UnifTail` is exactly the difference between `UnifLpTail` and `UnifIntegrable`, so having this notion at hand will be extremely helpful to manage the passage from one statement to the other.
In addition, `UniformIntegrable` **becomes a structure**, and the related lemmas such as `UniformIntegrable.unifIntegrable`, which became redundant, are removed.
The boundedness in `UniformIntegrable` is expressed more directly, without coercions. This is the point which required to fix some downstream files (and to deprecate `Submartingale.eLpNorm_stoppedAbove_le'`, whose sole purpose was to manage a coercion which does not exist anymore). Note that the use of `< ∞` instead of `≠ ∞` in hypotheses is a voluntary one: this helps passing arguments from one lemma to another, and these hypotheses are usually proven by working with inequalities anyway.
I have also **added some basic lemmas** about `UnifTail` and `UnifLpTail`. I have slightly changed the structure of the file, so that the basic lemmas for all four objects defined in the file are in the same section.
On a more minor side, I have **removed an hypothesis** in `UnifSpace.add`, and **renamed** `UnifIntegrable.mk_iff` to `unifIntegrable_mk_iff` since the statement did not benefit from the dot notation.
These new notions do not see much use for the remainder of `MeasureTheory.Function.UniformIntegrable` for now. This depends on other PRs, and will be done later so as keep each PR at a manageable level.
---
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|
t-measure-probability |
415/315 |
Mathlib/MeasureTheory/Function/LpSeminorm/Basic.lean,Mathlib/MeasureTheory/Function/UniformIntegrable.lean,Mathlib/Probability/Kernel/Disintegration/Density.lean,Mathlib/Probability/Martingale/BorelCantelli.lean,Mathlib/Probability/Martingale/Convergence.lean,Mathlib/Probability/Process/Filtration.lean |
6 |
3 |
['github-actions', 'mathlib-merge-conflicts'] |
EtienneC30 assignee:EtienneC30 |
7-63941 7 days ago |
7-65138 7 days ago |
26-86174 26 days |
0 |
| 40899 |
mcdoll author:mcdoll |
feat(Data/FunLike): add `abbrev`s for pointwise multiplication |
We add `abbrev`s that provide easy access to instances that involve multiplication as a pointwise operation for `FunLike` classes. This is for example needed for `ZeroAtInftyContinuousMap`
Moreover, we
- move `NatCast` instance for `Pi` to new file `Data/Nat/Cast/Pi`
- rename `IsNatCastApply` to `IsNatCastApplyEqSMul` for the composition variant (same for `IntCast`)
- add `IsNatCast` for pointwise multiplication (same for `IntCast`)
- rename `abbrev` that apply to composition versions to `compSemiring` etc
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra
large-import
label:t-algebra$ |
337/71 |
Mathlib.lean,Mathlib/Algebra/Ring/Pi.lean,Mathlib/Data/FunLike/GroupWithZero.lean,Mathlib/Data/FunLike/IsApply.lean,Mathlib/Data/FunLike/Ring.lean,Mathlib/Data/Nat/Cast/Basic.lean,Mathlib/Data/Nat/Cast/Pi.lean,Mathlib/Topology/Algebra/Module/ContinuousLinearMap/Basic.lean |
8 |
5 |
['eric-wieser', 'github-actions', 'mathlib-merge-conflicts'] |
kim-em assignee:kim-em |
7-63013 7 days ago |
37-25338 37 days ago |
89-54953 89 days |
3 |
| 43551 |
jessealama author:jessealama |
ci(weekly-lints): pass the build status to the Zulip report |
The report script marks a run with a green checkmark only when the caller sets `SUCCESS=true`. This workflow never did: the switch was added to the script in mathlib-ci in March 2026, and the nightly workflows there were updated to set it, but the weekly workflows in Mathlib and CSLib were not. The result is that every weekly report has been posted with a red X, even when the build was clean and had no linter messages.
The solution is to just capture the exit status of `lake build` and pass it through.
|
CI
maintainer-merge
|
7/1 |
.github/workflows/weekly-lints.yml |
1 |
2 |
['github-actions', 'joneugster'] |
joneugster assignee:joneugster |
7-54569 7 days ago |
13-84498 13 days ago |
13-84272 13 days |
0 |
| 36323 |
SproutSeeds author:SproutSeeds |
feat(Inversion): discontinuity and center/global fderiv formulas |
Part of #5939
I removed the `[Nontrivial F]` requirement and the nonzero-radius assumption from both `fderiv` formulas. The center lemma now explicitly covers the zero-radius case and subsingleton spaces, is marked with `@[simp]`, and is reused in the global formula.
The discontinuity lemma still retains its original assumptions, and I updated the center lemma’s docstring to explain when zero is used as the fallback value at a point where the function is not differentiable.
Rebased the inversion follow up onto current master after #36313 merged, removing the duplicated `Basic.lean` history and leaving only the intended `Calculus.lean` changes.
The incremental scope above #36313 is limited to `Mathlib/Geometry/Euclidean/Inversion/Calculus.lean`.
## Verification
- `lake build Mathlib.Geometry.Euclidean.Inversion.Calculus`
- `lake exe lint-style Mathlib.Geometry.Euclidean.Inversion.Calculus`
- `git diff --check`
The revision has been pushed. The local build passes, along with all 11 regression examples and the lint checks, and the hosted CI is green as well.
I used Codex to help with the implementation and verification.
---
Happy to adjust naming, placement, or proof style based on maintainer preference.
|
t-euclidean-geometry
new-contributor
LLM-generated
|
27/0 |
Mathlib/Geometry/Euclidean/Inversion/Calculus.lean |
1 |
8 |
['SproutSeeds', 'github-actions', 'jsm28', 'mathlib-merge-conflicts'] |
nobody |
7-52581 7 days ago |
7-53396 7 days ago |
39-26 39 days |
0 |
| 43773 |
justus-springer author:justus-springer |
feat(Algebra/Group/Pointwise/Set/SelfInv): a few more lemmas about self-inverse sets |
`IsSelfInv` and `IsSelfNeg` got added recently (#42611). This is a follow-up that adds just a few more lemmas, which will get used to refactor a few in #43774.
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra label:t-algebra$ |
58/0 |
Mathlib.lean,Mathlib/Algebra/Group/Pointwise/Finset/SelfInv.lean,Mathlib/Algebra/Group/Pointwise/Set/SelfInv.lean |
3 |
3 |
['eric-wieser', 'github-actions'] |
nobody |
7-38093 7 days ago |
8-18587 8 days ago |
8-18361 8 days |
1 |
| 42487 |
bocowgill author:bocowgill |
feat(Algebra/BigOperators/Group/Finset/Powerset): add nested powersetCard identities |
This PR adds product and sum identities for nested collections of fixed-cardinality subsets. For `r ≤ k`, each `r`-element subset of a finite set `s` is contained in exactly
`Nat.choose (s.card - r) (k - r)`
of the `k`-element subsets of `s`. Thus, a sum over the `r`-element subsets of every `k`-element subset reduces to this multiplicity, times a single sum over `s.powersetCard r`. The product version is the analogous power identity.
The proof exchanges the order of the two big operators using `Finset.prod_comm'`. It then counts each fiber with `Finset.card_filter_powersetCard_subset`. The additive identities are generated with `to_additive`. The PR also provides the useful elementwise specialization `r = 1`.
**Motivation**: These results provide reusable weighted double-counting tools for finite combinatorics. They are useful in arguments about uniform set systems, incidence relations, and sums or products over fixed-cardinality subsets.
---
### LLM disclosure
For theorem planning and Lean implementation, I used OpenAI Codex substantially. I also used Codex to search Mathlib and open PRs for related results, suggest naming and documentation, iterate on the proofs, audit import dependencies, and validate the commits locally.
I personally reviewed the mathematical statements and Lean code line-by-line, including the naming and API choices. I also confirmed that I can explain each step of the proofs.
For the current revision, I ran a targeted build of `Mathlib.Algebra.BigOperators.Group.Finset.Powerset`, the style and environment linters, and `git diff --check`. I also inspected the generated additive declarations and axiom dependencies, and tested an alternative proof using explicit incidence finsets. The complete GitHub CI suite passes.
This is one of my earliest Mathlib contributions. I welcome corrections and suggestions, and I am prepared to revise the PR and learn from the review. |
t-algebra
new-contributor
LLM-generated
label:t-algebra$ |
27/0 |
Mathlib/Algebra/BigOperators/Group/Finset/Powerset.lean |
1 |
17 |
['bocowgill', 'github-actions', 'pepamontero'] |
nobody |
7-33445 7 days ago |
7-55243 7 days ago |
45-83374 45 days |
0 |
| 43792 |
justus-springer author:justus-springer |
chore(Algebra/Group/Pointwise/Set/SelfInv): put into lemmas into Set namespace |
Move all lemmas about self inverse sets into the `Set` namespace. This was suggested by @eric-wieser in #42611. Dot-notation is still accessible using the [DNRO](https://juliahimmel.de/blog/an-underappreciated-lean-feature/) feature.
`to_additive` needs a hint in order to translate into the correct namespace. I also fixed the to_additive of `IsSelfInv.prod` (this used to be translated to `IsSelfInv.sum` instead of `IsSelfNeg.prod`.
---
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|
t-algebra label:t-algebra$ |
8/1 |
Mathlib/Algebra/Group/Pointwise/Set/SelfInv.lean |
1 |
5 |
['eric-wieser', 'github-actions', 'justus-springer', 'tb65536'] |
nobody |
7-26243 7 days ago |
7-34717 7 days ago |
7-34553 7 days |
0 |
| 43067 |
yuanyi-350 author:yuanyi-350 |
feat(Topology/Metrizable): generalize compact separability |
migrate from #42470 |
t-topology |
15/10 |
Mathlib/Topology/EMetricSpace/Basic.lean,Mathlib/Topology/Metrizable/Basic.lean |
2 |
1 |
['github-actions'] |
nobody |
7-20774 7 days ago |
29-13724 29 days ago |
29-13498 29 days |
0 |
| 43211 |
YaelDillies author:YaelDillies |
feat(Geometry/Convex): ordered convex spaces |
Define ordered convex spaces as those convex spaces for which taking convex combinations is monotone in its inputs. Since `sConvexComb : StdSimplex R X → X`, the best way to do so is to equip `StdSimplex R X` with the stochastic dominance order and requiring `sConvexComb` to be monotone under that order.
Generated by Claude Opus following my existing draft, then reviewed and partly rewritten by myself.
From the convexity refactor. Ordered convex spaces will be used to define convex/concave functions.
Assisted-by: Claude Opus 5
---
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|
t-convex-geometry
LLM-generated
|
390/5 |
Mathlib.lean,Mathlib/Algebra/Order/Monoid/Unbundled/Basic.lean,Mathlib/Data/Finsupp/Basic.lean,Mathlib/Geometry/Convex/ConvexSpace/Defs.lean,Mathlib/Geometry/Convex/ConvexSpace/Order.lean,Mathlib/Order/UpperLower/Basic.lean |
6 |
12 |
['YaelDillies', 'eric-wieser', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
7-17486 7 days ago |
10-16985 10 days ago |
19-75110 19 days |
0 |
| 40782 |
tb65536 author:tb65536 |
feat(Combinatorics/SimpleGraph/Coloring/EdgeLabeling): add predicates for monochromatic subsets |
This PR adds predicates for monochromatic subsets, in preparation for Ramsey theory.
Co-authored-by: Bhavik Mehta <bhavikmehta8@gmail.com>
---
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|
t-combinatorics |
143/0 |
Mathlib/Combinatorics/SimpleGraph/Coloring/EdgeLabeling.lean |
1 |
28 |
['SnirBroshi', 'YaelDillies', 'b-mehta', 'github-actions', 'tb65536'] |
nobody |
6-82162 6 days ago |
6-82963 6 days ago |
83-37951 83 days |
0 |
| 43440 |
Raph-DG author:Raph-DG |
feat(AlgebraicGeometry): serre's R_k condition for schemes |
In this PR, we define Serre's R_k condition. We also show that R_1 is equivalent to all local rings in codimension one being DVRs, though we show this under the assumption that the local rings are all domains. This assumption can be dropped once #28683 is merged.
AI disclosure: assisted by claude opus 5
---
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|
t-algebraic-geometry |
104/0 |
Mathlib.lean,Mathlib/AlgebraicGeometry/RegularInCodimension.lean |
2 |
14 |
['Brian-Nugent', 'Raph-DG', 'github-actions', 'justus-springer'] |
dagurtomas assignee:dagurtomas |
6-73325 6 days ago |
6-74089 6 days ago |
16-56670 16 days |
0 |
| 41435 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph/Hamiltonian): a graph with a Hamiltonian path is connected |
and other small Hamiltonian lemmas.
---
The new public import is needed because `Nat.card` was previously only imported privately.
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|
t-combinatorics |
101/24 |
Mathlib/Combinatorics/SimpleGraph/Hamiltonian.lean |
1 |
1 |
['github-actions'] |
nobody |
6-66030 6 days ago |
74-39743 74 days ago |
76-57976 76 days |
2 |
| 41260 |
SnirBroshi author:SnirBroshi |
feat(GroupTheory/Exponent): the order of a group divides a power of its exponent |
For finite groups:
- `(Monoid.exponent G).primeFactors = (Nat.card G).primeFactors`
- `Nat.card G ∣ Monoid.exponent G ^ Nat.card G`
---
This requires importing Cauchy's theorem (`GroupTheory.Perm.Cycle.Type`) in `Exponent.lean` which I'm not sure about, but the alternatives are either moving the theorems to `PGroup.lean`, or creating a new file with a strange name like `ExponentLemmas.lean`.
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|
t-group-theory
large-import
|
27/5 |
Mathlib/GroupTheory/Exponent.lean,Mathlib/GroupTheory/Perm/Cycle/Type.lean |
2 |
13 |
['SnirBroshi', 'github-actions', 'ocfnash', 'tb65536'] |
riccardobrasca assignee:riccardobrasca |
6-63013 6 days ago |
80-84646 80 days ago |
81-31667 81 days |
0 |
| 41539 |
rmhi author:rmhi |
chore(RepresentationTheory/Homological/ContCohomology): refactor functoriality |
Currently, functoriality of continuous cohomology is given by `ContCohomology.map`, which takes
a continuous group homomorphism \phi and an intertwining map f: res \phi X \to Y and returns a map from the
continuous cohomology of X to the continuous cohomology of Y.
The problem with this is that `ContCohomology.map` does not have a natural type such as Functor or NatTrans.
In this PR, we split `ContCohomology.map` as a composition of `(continuousCohomologyFunctor _ _ _).map` and a restriction map in continuous cohomology, which is defined as a natural transformation `resNatTrans`.
co-authored-by: Edison Xie @Whysoserioushah
---
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t-algebra label:t-algebra$ |
499/74 |
Mathlib/RepresentationTheory/Continuous/Basic.lean,Mathlib/RepresentationTheory/Continuous/TopRep.lean,Mathlib/RepresentationTheory/Homological/ContCohomology/Functoriality.lean,Mathlib/Topology/CompactOpen.lean |
4 |
13 |
['JX-Mo', 'github-actions', 'riccardobrasca', 'rmhi'] |
mattrobball assignee:mattrobball |
6-63012 6 days ago |
56-6902 56 days ago |
67-81241 67 days |
1 |
| 42186 |
marcelolynch author:marcelolynch |
refactor(Tactic/Linter/MinImports): make the minImports linter stateful |
This PR rewrites the `minImports` linter as a stateful linter (leanprover/lean4#14357). The linter behavior does not change. The existing tests in `MathlibTest/MinImports.lean` pass without changes. The PR adds one test section that sets `Elab.async true` explicitly: it checks that the linter accumulates imports correctly under parallel elaboration, and that `#import_bumps` keeps parallel elaboration on.
The old implementation kept the cumulative imports in a global `IO.Ref`. The ref is not safe under parallel elaboration. For this reason, `#import_bumps` set `Elab.async false` for the rest of the file. The new implementation keeps the same data in the linter state. The elaborator threads the state through the commands of the file, and the data stays correct under parallel elaboration. `#import_bumps` does not disable `Elab.async` anymore.
Implementation notes:
- The `#reset_min_imports` elaborator does nothing. The linter detects the command syntax and clears its own state. The reset works also when the linter option is off, as before.
- The post phase removes `set_option ... in` prefixes with `withSetOptionIn` from core. leanprover/lean4#14581 generalizes the result type of that function, so it accepts the phase of a stateful linter and not only a `CommandElab`. The generalization ships in v4.34.0-rc1.
- The state type `ImportState` and the linter handle are public. A follow-up can pass the computed import set to the `upstreamableDecl` linter, which computes the same data a second time today.
Measurements on synthetic files (Apple Silicon, 18 cores, medians of 3 runs):
- Proof-heavy file (150 commands, about 120 ms each), linter on: 20.0 s before, 8.8 s after. The old version serialized elaboration of the whole file. The new version keeps elaboration parallel and runs the lint chain next to it.
- The old version with `Elab.async true` emits 123 warning lines instead of the correct 11, because parallel lint tasks race on the ref. The new version emits the correct 11 lines.
- Linter off (2000 trivial commands): the added cost is about 45 microseconds per command.
`registerStatefulLinter` shipped in v4.34.0-rc1
🤖 Generated with [Claude Code](https://claude.com/claude-code)
|
t-linter
LLM-generated
|
149/78 |
Mathlib/Tactic/Linter/MinImports.lean,MathlibTest/MinImports.lean |
2 |
1 |
['github-actions'] |
JovanGerb assignee:JovanGerb |
6-63011 6 days ago |
40-74041 40 days ago |
40-73815 40 days |
1 |
| 43504 |
JovanGerb author:JovanGerb |
perf(Tactic/Positivity): run extensions in `reducible` transparency |
This PR makes it so that `positivity` extensions are executed at `reducible` transparency, which should help with proof maintainability, and gives a slight speedup.
- This does not affect the check of whether the goal is a positivity goal. So, `0 i < x` is still considered a positivity goal, even though `0 i` is not defeq to `0` at reducible transparency.
- The positivity extension for subtraction is checking that it has the right instance using `isDefEq`, so this has to be done at the `implicit` transparency. Apparently, this change causes `positivity` to succeed somewhere where it did not before.
---
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|
t-meta |
41/39 |
Counterexamples/NowhereDifferentiable.lean,Mathlib/Algebra/Order/AbsoluteValue/Basic.lean,Mathlib/Algebra/Order/Field/Basic.lean,Mathlib/Algebra/Order/Field/Power.lean,Mathlib/Algebra/Order/Module/Field.lean,Mathlib/Analysis/Analytic/ConvergenceRadius.lean,Mathlib/Analysis/Hofer.lean,Mathlib/Analysis/Normed/Group/SeparationQuotient.lean,Mathlib/Analysis/Polynomial/MahlerMeasure.lean,Mathlib/Analysis/SpecialFunctions/Bernstein.lean,Mathlib/Analysis/SpecialFunctions/Log/Deriv.lean,Mathlib/MeasureTheory/Integral/PeakFunction.lean,Mathlib/MeasureTheory/Measure/Real.lean,Mathlib/Tactic/Positivity/Basic.lean,Mathlib/Tactic/Positivity/Core.lean |
15 |
3 |
['JovanGerb', 'github-actions', 'leanprover-radar'] |
thorimur assignee:thorimur |
6-63010 6 days ago |
14-23984 14 days ago |
14-23861 14 days |
0 |
| 43788 |
wwylele author:wwylele |
feat(Geometry/Euclidean): relate perpBisector and reflection |
---
There weren't any result that relates `perpBisector` and `reflection` (which is surprising given how they are very related intuitively). Because of this, their definition files didn't import each other. I choose to put this in PerpBisector.lean because it is the shorter file.
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|
t-euclidean-geometry
large-import
|
31/0 |
Mathlib/Geometry/Euclidean/PerpBisector.lean |
1 |
1 |
['copilot-pull-request-reviewer', 'github-actions'] |
jsm28 assignee:jsm28 |
6-63009 6 days ago |
7-60577 7 days ago |
7-60414 7 days |
0 |
| 43817 |
marcelolynch author:marcelolynch |
chore: remove superfluous `@[expose]` modifiers from public sections |
A section-level `@[expose]` reaches the bodies of `def` declarations only. In the 70 sections that this PR changes, no declaration benefits from it. These sections hold theorems, instances, abbrevs, structures, inductives, notation, or defs whose bodies Lean keeps out of the public interface anyway. The modifier does nothing in each of them.
The `superfluousExpose` linter from #39387 supplied the candidates. It ran over all 4915 mathlib files that open an `@[expose] public section`, and it reported 73 of them.
A verification step then checks each removal without trusting the linter. It compiles the module twice under its own module name, once with the modifier and once without, and it compares the two results. The `.olean` and the `.olean.private` are byte-identical in all 70 cases, and so is the full compiler output. No importing module can observe these changes, and no new diagnostic appears.
Three further files that the linter reports stay out of this PR. Their sections contain `@[no_expose]` declarations, so the removal makes Lean report each `@[no_expose]` as redundant. These need a paired edit, and one of them carries `@[no_expose, simps! -isSimp app]`, where the attribute still has an effect. A follow-up can handle them.
Two files resist this method: `Mathlib/Lean/Elab/InfoTree.lean` and `Mathlib/Lean/Elab/Tactic/Meta.lean`. `Mathlib.Init` imports both, so neither file can import the linter without importing itself. A direct comparison shows that the removal changes the `.olean` in both, so both keep their modifier.
This is the second round of this cleanup. #39388 was the first.
🤖 Generated with [Claude Code](https://claude.com/claude-code)
|
tech debt
LLM-generated
|
70/70 |
Mathlib/Algebra/Category/ModuleCat/Ext/Baer.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/OfCommRing.lean,Mathlib/Algebra/Field/Rat.lean,Mathlib/Algebra/Group/Defs.lean,Mathlib/Algebra/Group/IsCommutative.lean,Mathlib/Algebra/GroupWithZero/Action/Regular.lean,Mathlib/Algebra/HierarchyDesign.lean,Mathlib/Algebra/Homology/HomotopyCategory/ChainComplex.lean,Mathlib/Algebra/Order/Archimedean/Real/Basic.lean,Mathlib/Algebra/Order/Field/Basic.lean,Mathlib/Algebra/Order/Nonneg/Lattice.lean,Mathlib/Algebra/Order/Ring/Unbundled/Rat.lean,Mathlib/Algebra/QuadraticAlgebra/AlgHom.lean,Mathlib/AlgebraicTopology/Quasicategory/TwoTruncatedQuasicategory.lean,Mathlib/Analysis/Asymptotics/Arith.lean,Mathlib/Analysis/Asymptotics/Basic.lean,Mathlib/Analysis/Asymptotics/Prod.lean,Mathlib/Analysis/Asymptotics/Ring.lean,Mathlib/Analysis/InnerProductSpace/Coalgebra.lean,Mathlib/Analysis/Meromorphic/LogDeriv.lean,Mathlib/Analysis/ODE/ExistUnique.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/Rpow/Measurable.lean,Mathlib/CategoryTheory/Adhesive/PushoutProduct.lean,Mathlib/CategoryTheory/ComposableArrows/Two.lean,Mathlib/CategoryTheory/Galois/FullSubcategory.lean,Mathlib/CategoryTheory/Limits/ConstructLimitMap.lean,Mathlib/CategoryTheory/MorphismProperty/LocalClosure.lean,Mathlib/CategoryTheory/ObjectProperty/FiniteLimits.lean,Mathlib/CategoryTheory/Presentable/Basic.lean,Mathlib/CategoryTheory/Presentable/IsDiscrete.lean,Mathlib/CategoryTheory/Presentable/PreservesCardinalPresentable.lean,Mathlib/CategoryTheory/Presentable/SolutionSetCondition.lean,Mathlib/CategoryTheory/Presentable/Uniformization.lean,Mathlib/Data/ENat/Pow.lean,Mathlib/Data/ENat/SuccOrder.lean,Mathlib/Data/NNRat/Floor.lean,Mathlib/Data/Rat/Floor.lean,Mathlib/Data/Sigma/Order.lean,Mathlib/FieldTheory/TranscendentalSeparable.lean,Mathlib/Geometry/Convex/AffineMap/Defs.lean,Mathlib/GroupTheory/FiniteAbelian/Basic.lean,Mathlib/GroupTheory/SpecificGroups/VirtuallyCyclic.lean,Mathlib/LinearAlgebra/Matrix/Echelon/Pivot.lean,Mathlib/LinearAlgebra/Matrix/Notation.lean,Mathlib/MeasureTheory/Integral/MeanInequalities.lean,Mathlib/MeasureTheory/Integral/SetToL1/ChangeMeasure.lean,Mathlib/MeasureTheory/Integral/SetToL1/DominatedConvergence.lean,Mathlib/MeasureTheory/Measure/Dirac/Basic.lean,Mathlib/NumberTheory/LSeries/PrimesInAP.lean,Mathlib/NumberTheory/LSeries/RiemannZetaLogDeriv.lean,Mathlib/NumberTheory/NumberField/FiniteAdeleRing.lean,Mathlib/Order/CompleteBooleanAlgebra.lean,Mathlib/Order/ConditionallyCompleteLattice/Basic.lean,Mathlib/Order/Heyting/Basic.lean,Mathlib/Order/Lattice/Nat.lean,Mathlib/Order/Notation.lean,Mathlib/RingTheory/Coalgebra/CoassocSimps.lean,Mathlib/RingTheory/LocalRing/ResidueField/Separable.lean,Mathlib/RingTheory/Localization/Saturation.lean,Mathlib/RingTheory/MvPowerSeries/Ideal.lean,Mathlib/RingTheory/QuasiFinite/Basic.lean,Mathlib/RingTheory/QuasiFinite/Weakly.lean,Mathlib/RingTheory/Radical/NatInt.lean,Mathlib/Tactic/Inclusion/Extension/IntervalDyadicReal/Basic.lean,Mathlib/Tactic/Inclusion/Extension/IntervalDyadicReal/Hypotheses.lean,Mathlib/Tactic/Inclusion/Extension/IntervalDyadicReal/Init.lean,Mathlib/Topology/Category/TopCommRingCat.lean,Mathlib/Topology/EMetricSpace/Weak.lean,Mathlib/Topology/List.lean,Mathlib/Topology/MetricSpace/CoveringExponent.lean |
70 |
1 |
['github-actions'] |
nobody |
6-61537 6 days ago |
6-66742 6 days ago |
6-66516 6 days |
0 |
| 43820 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph/Maps): dualize `Embedding.completeGraph` and `Copy.topEmbedding` |
Also `Copy.topEmbedding` doesn't need a `Copy`, it can use a `Hom`, unlike its dual `Copy.botEmbedding`.
---
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|
t-combinatorics |
115/15 |
Mathlib/Combinatorics/SimpleGraph/Clique.lean,Mathlib/Combinatorics/SimpleGraph/Copy.lean,Mathlib/Combinatorics/SimpleGraph/Maps.lean |
3 |
1 |
['github-actions'] |
nobody |
6-60104 6 days ago |
6-62302 6 days ago |
6-62076 6 days |
0 |
| 41336 |
SnirBroshi author:SnirBroshi |
chore(Combinatorics/SimpleGraph/Girth): golf `egirth_top` using `cycleGraph` |
Golf `egirth_top` (#38529) using `cycleGraph_isContained_iff` (#35255)
Co-authored-by: Vlad Tsyrklevich <vlad@tsyrklevi.ch>
---
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|
t-combinatorics |
6/11 |
Mathlib/Combinatorics/SimpleGraph/Girth.lean |
1 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
6-54288 6 days ago |
6-55010 6 days ago |
79-63799 79 days |
0 |
| 41393 |
SnirBroshi author:SnirBroshi |
feat(SimpleGraph/Hamiltonian): a graph is Hamiltonian iff there's a Hamiltonian path with adjacent endpoints |
---
The new public import is needed because `Nat.card` was previously only imported privately.
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|
t-combinatorics |
37/1 |
Mathlib/Combinatorics/SimpleGraph/Hamiltonian.lean |
1 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
6-52958 6 days ago |
6-53692 6 days ago |
77-63900 77 days |
2 |
| 38434 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph/Maps): `map` lemmas about support/top/bot |
---
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[](https://gitpod.io/from-referrer/)
|
t-combinatorics |
16/0 |
Mathlib/Combinatorics/SimpleGraph/Maps.lean |
1 |
3 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
6-52748 6 days ago |
10-85256 10 days ago |
10-85875 10 days |
0 |
| 42960 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph/Trails): an Eulerian walk is chordless |
---
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|
t-combinatorics |
4/0 |
Mathlib/Combinatorics/SimpleGraph/Trails.lean |
1 |
4 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
6-51789 6 days ago |
6-52562 6 days ago |
29-35448 29 days |
0 |
| 41623 |
SnirBroshi author:SnirBroshi |
feat(SimpleGraph/Trails): a walk is Eulerian iff it is a trail of length `G.edgeSet.encard` |
---
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|
t-combinatorics |
38/3 |
Mathlib/Combinatorics/SimpleGraph/Paths.lean,Mathlib/Combinatorics/SimpleGraph/Trails.lean |
2 |
3 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
6-51182 6 days ago |
6-51979 6 days ago |
68-49878 68 days |
0 |
| 41524 |
SnirBroshi author:SnirBroshi |
feat(SimpleGraph/Trails): in a preconnected Eulerian graph there exists an Eulerian circuit from any vertex |
This lets us take a circuit at a specific vertex, much like [`IsHamiltonian.exists_isHamiltonianCycle`](https://leanprover-community.github.io/mathlib4_docs/Mathlib/Combinatorics/SimpleGraph/Hamiltonian.html#SimpleGraph.IsHamiltonian.exists_isHamiltonianCycle) in Hamiltonian graphs.
---
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|
t-combinatorics |
21/0 |
Mathlib/Combinatorics/SimpleGraph/Trails.lean |
1 |
6 |
['SnirBroshi', 'github-actions', 'mathlib-merge-conflicts', 'vlad902'] |
nobody |
6-51099 6 days ago |
6-51812 6 days ago |
71-1958 71 days |
1 |
| 43099 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph): `IsSubwalk` is a partial order and more relation properties |
---
The instances for `Symm` and `Irrefl` let us use `symm`/`irrefl` and any other mathlib theorems that expect these properties as typeclass arguments.
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|
t-combinatorics |
28/3 |
Mathlib/Combinatorics/SimpleGraph/Basic.lean,Mathlib/Combinatorics/SimpleGraph/Connectivity/Connected.lean,Mathlib/Combinatorics/SimpleGraph/Connectivity/EdgeConnectivity.lean,Mathlib/Combinatorics/SimpleGraph/Subgraph.lean,Mathlib/Combinatorics/SimpleGraph/Walk/Subwalks.lean |
5 |
1 |
['github-actions', 'vlad902'] |
nobody |
6-49765 6 days ago |
27-42474 27 days ago |
27-42248 27 days |
1 |
| 38499 |
SnirBroshi author:SnirBroshi |
feat(Order/Hom/Basic): `Relation.Map`/`Function.bicompl` form an order isomorphism between relations |
For injective functions `f` and `g`, `Relation.Map · f g` is an order embedding between relations.
For surjective functions `f` and `g`, `Function.bicompl · f g` is an order embedding between relations.
For bijective functions `f` and `g`, `Relation.Map · f g` and `Function.bicompl · f g` form an order isomorphism between relations.
---
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[](https://gitpod.io/from-referrer/)
|
t-order |
46/0 |
Mathlib/Order/Hom/Basic.lean |
1 |
7 |
['SnirBroshi', 'github-actions', 'mathlib-dependent-issues', 'plp127', 'wwylele'] |
nobody |
6-47783 6 days ago |
10-85260 10 days ago |
15-9638 15 days |
0 |
| 43793 |
justus-springer author:justus-springer |
doc(Algebra/Group/SelfInv): extend module docstring |
Follow-up to #42611. Explains the original motivation for this.
---
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|
t-algebra label:t-algebra$ |
7/0 |
Mathlib/Algebra/Group/SelfInv.lean |
1 |
8 |
['SnirBroshi', 'YaelDillies', 'eric-wieser', 'github-actions', 'justus-springer'] |
nobody |
6-42547 6 days ago |
7-5244 7 days ago |
7-14277 7 days |
0 |
| 42966 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph/Hasse): smaller path graphs are contained in bigger ones |
---
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|
t-combinatorics |
37/1 |
Mathlib/Combinatorics/SimpleGraph/Hasse.lean |
1 |
2 |
['b-mehta', 'github-actions'] |
nobody |
6-34652 6 days ago |
32-12789 32 days ago |
32-13266 32 days |
0 |
| 42878 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph/Star): the nth star graph is contained in a graph iff max degree is at least `n` |
- `starGraph (r : W) ⊑ G ↔ Nat.card W ≤ G.maxDegree + 1`
- `starGraph v ⊑ starGraph w ↔ Nonempty (V ↪ W)`
- `starGraph v ⊴ starGraph w ↔ Nonempty (V ↪ W)`
---
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|
t-combinatorics |
85/1 |
Mathlib/Combinatorics/SimpleGraph/Star.lean |
1 |
6 |
['SnirBroshi', 'b-mehta', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
6-33722 6 days ago |
6-34422 6 days ago |
23-57392 23 days |
0 |
| 39382 |
fpvandoorn author:fpvandoorn |
feat: add some lemmas that closures of some sets are compact |
* Also tag them with `closedness`/`compactness`.
* This can be refactored to use `RelativelyCompact` once we define that notion.
* Note: this is only equivalent to `IsBounded` in `ProperSpace`. It is equivalent to `@IsBounded _ (inCompact X) s` in a T2-space, but the latter thing is cumbersome to write.
---
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[](https://gitpod.io/from-referrer/)
|
t-topology |
67/0 |
Mathlib/Topology/MetricSpace/Bounded.lean,Mathlib/Topology/Order/Compact.lean,Mathlib/Topology/Order/OrderClosed.lean,MathlibTest/Compactness.lean |
4 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
6-33328 6 days ago |
6-35124 6 days ago |
6-61445 6 days |
0 |
| 43723 |
homeowmorphism author:homeowmorphism |
feat(Topology/MetricSpace): define hyperbolic metric spaces |
We define hyperbolic metric spaces using the Gromov product. This will be used to define hyperbolic groups.
Co-authored-by: Katerina Hristova <katherina.hristova@gmail.com>
---
- [x] depends on: #43641
Use of AI: Claude Fable was used to look up things quickly and sketch the API, but this was mostly written by hand.
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|
t-topology |
65/0 |
Mathlib.lean,Mathlib/Topology/Bornology/Basic.lean,Mathlib/Topology/MetricSpace/Hyperbolic.lean |
3 |
2 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
6-27942 6 days ago |
9-59342 9 days ago |
9-59908 9 days |
0 |
| 40604 |
xroblot author:xroblot |
feat(Algebra.GroupWithZero): generalize SMulZeroClass to MonoidWithZero and lift MulDistribMulAction to nonZeroDivisors |
Generalize the instance `SMulZeroClass α β` under `[Group α] [GroupWithZero β] [MulDistribMulAction α β]`to `[Group α] [MonoidWithZero β] [MulDistribMulAction α β]`.
From an action `[Group G] [MonoidWithZero M] [MulDistribMulAction G M]`, use this instance to construct an action on the nonzero divisors of 'M'.
**No diamond**: there is no general instance giving an action on a submonoid as a target (that would need the submonoid to be invariant, which isn't automatic), so defining the action on `nonZeroDivisors` should not clash with anything .
:robot: This PR was extracted from the [SKW project](https://github.com/xroblot/SKW) by Claude. |
t-algebra label:t-algebra$ |
55/6 |
Mathlib/Algebra/GroupWithZero/Action/Defs.lean,Mathlib/Algebra/GroupWithZero/NonZeroDivisors.lean,Mathlib/Algebra/Ring/Action/ConjAct.lean |
3 |
6 |
['github-actions', 'leanprover-radar', 'themathqueen', 'xroblot'] |
mattrobball assignee:mattrobball |
6-23736 6 days ago |
16-45412 16 days ago |
93-35502 93 days |
0 |
| 37878 |
YaelDillies author:YaelDillies |
chore(Combinatorics/SimpleGraph): avoid structure relation predicates |
Relation predicates used to be `def`s over a `forall`, which was optimal for usability in fields of other structures. This changed in #35591 and #35192 as a byproduct of reducing apparent code duplication. Unfortunately, the usability issue was overlooked.
This PR restores usability by dropping the use of those relation classes that are `structure`s, ie `Std.Irrefl` and `Std.Transitive`.
---
- [x] depends on: #38554
I would also be happy to revert #35591 and #35192 since this demonstrates a good use case for the `def` versions of the relation predicates.
[](https://gitpod.io/from-referrer/)
|
t-combinatorics |
111/117 |
Archive/Wiedijk100Theorems/Konigsberg.lean,Mathlib/Combinatorics/Graph/Simple.lean,Mathlib/Combinatorics/SimpleGraph/AdjMatrix.lean,Mathlib/Combinatorics/SimpleGraph/Basic.lean,Mathlib/Combinatorics/SimpleGraph/Bipartite.lean,Mathlib/Combinatorics/SimpleGraph/Clique.lean,Mathlib/Combinatorics/SimpleGraph/CompleteMultipartite.lean,Mathlib/Combinatorics/SimpleGraph/Dart.lean,Mathlib/Combinatorics/SimpleGraph/Density.lean,Mathlib/Combinatorics/SimpleGraph/Extremal/ErdosStoneSimonovits.lean,Mathlib/Combinatorics/SimpleGraph/FiveWheelLike.lean,Mathlib/Combinatorics/SimpleGraph/Hall.lean,Mathlib/Combinatorics/SimpleGraph/LineGraph.lean,Mathlib/Combinatorics/SimpleGraph/Maps.lean,Mathlib/Combinatorics/SimpleGraph/Operations.lean,Mathlib/Combinatorics/SimpleGraph/Paths.lean,Mathlib/Combinatorics/SimpleGraph/Prod.lean,Mathlib/Combinatorics/SimpleGraph/Regularity/Uniform.lean,Mathlib/Combinatorics/SimpleGraph/Subgraph.lean,Mathlib/Combinatorics/SimpleGraph/Sum.lean,Mathlib/Combinatorics/SimpleGraph/Trails.lean,Mathlib/Combinatorics/SimpleGraph/Triangle/Tripartite.lean,Mathlib/ModelTheory/Graph.lean,Mathlib/Order/Cover.lean,Mathlib/Order/RelClasses.lean |
25 |
27 |
['SnirBroshi', 'Vierkantor', 'YaelDillies', 'b-mehta', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
6-17666 6 days ago |
6-22738 6 days ago |
111-28478 111 days |
0 |
| 42977 |
xroblot author:xroblot |
feat(Algebra/QuadraticAlgebra): base change of quadratic algebras |
A base change `R → S` induces an `R`-algebra homomorphism `QuadraticAlgebra R a b →ₐ[R] QuadraticAlgebra S (algebraMap R S a) (algebraMap R S b)` sending `ω` to `ω`, injective when `S` is faithful over `R`, and compatible with the norm, the trace and the discriminant.
Prepared with Claude Code 🤖
|
t-algebra label:t-algebra$ |
185/1 |
Mathlib.lean,Mathlib/Algebra/QuadraticAlgebra/BaseChange.lean,Mathlib/Algebra/QuadraticAlgebra/Basic.lean,Mathlib/Algebra/QuadraticAlgebra/Discriminant.lean |
4 |
9 |
['github-actions', 'jcommelin', 'mathlib-merge-conflicts', 'robin-carlier', 'xroblot'] |
nobody |
6-15311 6 days ago |
6-21352 6 days ago |
26-47887 26 days |
5 |
| 43841 |
tb65536 author:tb65536 |
feat(Analysis/Normed/Ring/WithAbs): more API for `AbsoluteValue.under` |
This PR adds more API for `AbsoluteValue.under`, following the analogous API for `Ideal.under`.
---
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|
t-analysis |
30/0 |
Mathlib/Analysis/Normed/Ring/WithAbs.lean |
1 |
1 |
['github-actions'] |
nobody |
6-15183 6 days ago |
6-15990 6 days ago |
6-15764 6 days |
0 |
| 42272 |
xroblot author:xroblot |
feat(Algebra/QuadraticAlgebra): the degenerate cases over a field |
Complete the classification of `QuadraticAlgebra K a b` over a field by describing the two degenerate case.
---
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|
t-algebra label:t-algebra$ |
41/0 |
Mathlib/Algebra/QuadraticAlgebra/Basic.lean,Mathlib/Algebra/QuadraticAlgebra/Discriminant.lean |
2 |
5 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
6-13273 6 days ago |
6-14176 6 days ago |
6-33745 6 days |
0 |
| 43757 |
mkaratarakis author:mkaratarakis |
feat(Analysis/Complex/Arg): lemmas on real scaling, SameRay and normalize |
A few small lemmas on rays |
t-analysis |
27/1 |
Mathlib/Analysis/Complex/Arg.lean |
1 |
2 |
['github-actions', 'mkaratarakis'] |
nobody |
6-13264 6 days ago |
9-1649 9 days ago |
9-1423 9 days |
0 |
| 42393 |
xroblot author:xroblot |
feat(Algebra/QuadraticAlgebra): classify quadratic algebras over ℚ |
Every `QuadraticAlgebra ℚ a b` with nonzero discriminant is isomorphic to a standard form `QuadraticAlgebra ℚ d 0` for a squarefree integer `d`, and this `d` is a complete invariant. Thus quadratic algebras over `ℚ` are classified by squarefree integers.
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|
t-algebra label:t-algebra$ |
101/0 |
Mathlib.lean,Mathlib/Algebra/QuadraticAlgebra/Rat.lean,Mathlib/Data/Rat/Squarefree.lean |
3 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
riccardobrasca assignee:riccardobrasca |
6-4954 6 days ago |
6-14094 6 days ago |
6-34343 6 days |
0 |
| 43846 |
tb65536 author:tb65536 |
feat(GroupTheory/Finiteness): instances for `IsMulFG (closure s)` |
This PR adds missing instances for `IsMulFG (closure s)` that will replace the existing instances for the old finiteness definitions.
---
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|
t-algebra
t-group-theory
label:t-algebra$ |
21/25 |
Mathlib/GroupTheory/Commutator/Finite.lean,Mathlib/GroupTheory/Finiteness.lean |
2 |
1 |
['github-actions'] |
nobody |
5-79295 5 days ago |
5-79375 5 days ago |
5-79150 5 days |
0 |
| 41304 |
plp127 author:plp127 |
chore(Data/Set/Lattice): `Sort*` polymorphism |
Generalize some theorems from `Type*` to `Sort*`.
---
- [x] depends on: #39857
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|
t-order |
30/25 |
Mathlib/Data/Set/Lattice/Bounded.lean,Mathlib/Data/Set/Lattice/Indexed.lean |
2 |
6 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
5-78470 5 days ago |
5-80583 5 days ago |
6-7895 6 days |
0 |
| 43850 |
tb65536 author:tb65536 |
feat(GroupTheory/Finiteness): `IsMulFG iSup` |
This PR adds missing theorems for `IsMulFG iSup` that will replace the existing theorems for the old finiteness definitions.
---
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|
t-algebra
t-group-theory
label:t-algebra$ |
74/22 |
Mathlib/Algebra/Group/Submonoid/Defs.lean,Mathlib/GroupTheory/Finiteness.lean |
2 |
1 |
['github-actions'] |
nobody |
5-78046 5 days ago |
5-78097 5 days ago |
5-77873 5 days |
0 |
| 41675 |
joelriou author:joelriou |
feat(AlgebraicTopology): pushout diagrams in the filtration of `Δ[p] ⊗ Δ[1]` |
---
- [x] depends on: #41656
- [x] depends on: #41655
- [x] depends on: #41624
- [x] depends on: #41617
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|
t-algebraic-topology |
242/3 |
Mathlib/AlgebraicTopology/SimplicialSet/ProdStdSimplex.lean,Mathlib/AlgebraicTopology/SimplicialSet/ProdStdSimplexOne.lean,Mathlib/AlgebraicTopology/SimplicialSet/StdSimplex.lean,Mathlib/AlgebraicTopology/SimplicialSet/Subcomplex.lean |
4 |
19 |
['github-actions', 'joelriou', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'robin-carlier'] |
robin-carlier assignee:robin-carlier |
5-77073 5 days ago |
10-1919 10 days ago |
13-80955 13 days |
2 |
| 43851 |
ZRTMRH author:ZRTMRH |
feat(Analysis/BoundedVariation): add BoundedVariationOn.intervalIntegrable |
A real-valued function of bounded variation on a compact interval is interval integrable on it with respect to any locally finite measure.
---
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|
t-analysis
new-contributor
|
8/0 |
Mathlib/Analysis/BoundedVariation.lean |
1 |
2 |
['github-actions'] |
nobody |
5-76575 5 days ago |
5-78757 5 days ago |
5-78531 5 days |
0 |
| 43802 |
justus-springer author:justus-springer |
feat(Tactic/Linter): syntax linter for deprecation date format |
A syntax linter checking that deprecation dates in `since := ...` fields have the form `YYYY-MM-DD`.
My motivation for this that I always forget what the correct format is when writing deprecations. There is actually one instance of a malformed date in mathlib in `AlgebraicTopology/SimplicialNerve.lean`, which I fixed.
Generative AI was used to get a working draft, on which I then iterated by hand.
---
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|
LLM-generated
large-import
t-linter
|
153/2 |
Mathlib.lean,Mathlib/AlgebraicTopology/SimplicialNerve.lean,Mathlib/Init.lean,Mathlib/Tactic.lean,Mathlib/Tactic/Linter/DeprecationDate.lean,Mathlib/Tactic/Linter/Lint.lean,MathlibTest/Attribute/ToAdditive/Basic.lean,MathlibTest/Linter/DeprecationDate.lean,MathlibTest/Linter/DupNamespace.lean |
9 |
1 |
['github-actions'] |
nobody |
5-73320 5 days ago |
6-81657 6 days ago |
6-84365 6 days |
0 |
| 41839 |
CoolRmal author:CoolRmal |
feat(Topology/Connected): connected subsets of finite one-dimensional Hausdorff measure |
This PR proves some properties of preconnected subsets of an extended metric space in terms of their Hausdorff measure.
- The extended diameter of a preconnected set is at most its one-dimensional Hausdorff measure
- A preconnected set with finite `d`-dimensional Hausdorff measure for some `d < 1` is a subsingleton, so any set with finite such measure is totally disconnected
- A preconnected set with finite one-dimensional Hausdorff measure is totally bounded.
The main tool is that the distance from a fixed base point is `1`-Lipschitz (we define it by `x => (edist a x).toReal` and `ENNReal.toReal` is necessary because `ℝ≥0∞` is not an EMetric space and blocks me from using `LipschitzOnWith`, this is also the reason why I proved some weird lemmas like `isClopen_setOf_edist_ne_top` and `IsPreconnected.edist_ne_top`), so it does not increase Hausdorff measures, and the image of a preconnected set under it is an interval whose one-dimensional Hausdorff measure is its length. Comparing the two turns distances inside the set into lower bounds for its measure.
Some of these lemmas probably should belong to a different space. Feel free to give me some suggestions on this.
In the future, I would also like to use results in this PR to prove that a preconnected, compact subset with finite one-dimensional Hausdorff measure is path-connected, and this is included in TODO.
Created with the help of Claude Code, carefully reviewed and golfed by myself.
|
t-topology
LLM-generated
|
168/0 |
Mathlib.lean,Mathlib/Topology/Connected/HausdorffMeasure.lean,Mathlib/Topology/EMetricSpace/Defs.lean |
3 |
10 |
['CoolRmal', 'github-actions', 'mathlib-merge-conflicts', 'plp127', 'wwylele'] |
j-loreaux assignee:j-loreaux |
5-63010 5 days ago |
40-72668 40 days ago |
66-63636 66 days |
0 |
| 43214 |
wwylele author:wwylele |
feat(Analysis/Normed/Affine): mapping ball/sphere by homothety |
---
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|
t-analysis
large-import
maintainer-merge
|
48/10 |
Mathlib/Analysis/Normed/Affine/AddTorsor.lean,Mathlib/Analysis/Normed/Group/Pointwise.lean,Mathlib/Analysis/Normed/Module/Convex.lean,Mathlib/Topology/MetricSpace/IsometricSMul.lean |
4 |
12 |
['copilot-pull-request-reviewer', 'github-actions', 'j-loreaux', 'themathqueen', 'wwylele'] |
nobody |
5-62298 5 days ago |
5-63430 5 days ago |
22-54231 22 days |
0 |
| 39941 |
mkaratarakis author:mkaratarakis |
feat(Data/List): add count lemmas for duplicate detection |
## Summary
Add general list count lemmas used in the Perron–Frobenius quiver-path development: Relocated from the PF-specific file per review feedback. Proofs use upstream `List.Duplicate` API and `grind` where appropriate (per @chenson2018).
Part of the Perron–Frobenius formalization (with @or4nge19).
cc @or4nge19 for review |
t-data |
24/0 |
Mathlib/Data/List/Count.lean |
1 |
4 |
['chenson2018', 'eric-wieser', 'github-actions', 'mkaratarakis'] |
nobody |
5-62111 5 days ago |
27-20255 27 days ago |
104-64895 104 days |
0 |
| 42249 |
plp127 author:plp127 |
chore(FreeAbelianGroup): deprecate multiplication |
Deprecate multiplication on `FreeAbelianGroup` in favor of using `MonoidAlgebra`. Supersedes #27759.
---
- [x] depends on: #42245
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|
tech debt |
62/34 |
Mathlib/GroupTheory/FreeAbelianGroup.lean |
1 |
3 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
5-61682 5 days ago |
5-63451 5 days ago |
18-1538 18 days |
0 |
| 42827 |
wwylele author:wwylele |
chore(RingTheory/Pochhammer): fix the type of ascPochhammer_eval_succ |
The existing two theorems have the following signature
```lean4
theorem ascPochhammer_nat_eval_succ (r n : ℕ) :
n * Polynomial.eval (n + 1) (ascPochhammer ℕ r) = (n + r) * Polynomial.eval n (ascPochhammer ℕ r)
theorem ascPochhammer_eval_succ (S : Type*) [Semiring S] (r n : ℕ) :
↑n * Polynomial.eval (↑n + 1) (ascPochhammer S r) = (↑n + ↑r) * Polynomial.eval (↑n) (ascPochhammer S r)
```
However what's more useful in practice is the following
```lean4
theorem ascPochhammer_eval_succ {S : Type*} [Semiring S] (r : ℕ) (n : S) :
n * Polynomial.eval (n + 1) (ascPochhammer S r) = Polynomial.eval n (ascPochhammer S r) * (n + ↑r)
```
which this PR proves. Note that the multiplication order is changed so it doesn't require commutativity on S.
The old `ascPochhammer_nat_eval_succ` is now a specialization of the new `ascPochhammer_eval_succ` with `S = ℕ` & mul_comm, so it is redundant, thus deprecated.
---
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|
t-ring-theory |
12/13 |
Mathlib/RingTheory/Polynomial/Bernstein.lean,Mathlib/RingTheory/Polynomial/Pochhammer.lean |
2 |
3 |
['Ruben-VandeVelde', 'github-actions', 'wwylele'] |
nobody |
5-59443 5 days ago |
31-73004 31 days ago |
36-11358 36 days |
0 |
| 43856 |
BoltonBailey author:BoltonBailey |
chore: rename `ENNReal.toReal_mono'` |
This PR addresses tech debt by renaming `ENNReal.toReal_mono'` to `ENNReal.toReal_mono_of_top_imp_top` (and similarly renaming the related `ENNReal.toReal_le_add'`)
I chose these names myself, but used LLM assistance to scan the library for instances of the lemmas.
---
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[](https://gitpod.io/from-referrer/)
|
t-topology
tech debt
|
16/10 |
Mathlib/Basic/ENNReal/Operations.lean,Mathlib/Basic/ENNReal/Real.lean,Mathlib/Topology/MetricSpace/Bounded.lean,Mathlib/Topology/MetricSpace/HausdorffDistance.lean,Mathlib/Topology/MetricSpace/Thickening.lean,scripts/nolints_prime_decls.txt |
6 |
1 |
['github-actions'] |
nobody |
5-59046 5 days ago |
5-61393 5 days ago |
5-61167 5 days |
0 |
| 43373 |
Parcly-Taxel author:Parcly-Taxel |
feat: `2 ^ n ≤ lcmUpto n` for `7 ≤ n` |
This proof is even more elementary than Nair's proof (_American Mathematical Monthly_ **89** (2), February 1982, 126–129). Inspired by [this Zulip discussion](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Bounds.20of.20Chebyshev.20Functions/with/621120558).
Co-authored-by: Aristotle (Harmonic) <aristotle-harmonic@harmonic.fun>
The original Aristotle run is [here](https://aristotle.harmonic.fun/dashboard/requests/9fd88021-f5b1-4e7f-99fc-450d5edc9590).
We also add a slightly stronger lower bound on the prime-counting function based on the new result as `pi_ge_of_four_le`. |
t-number-theory
LLM-generated
|
78/16 |
Mathlib/Data/Nat/Choose/Central.lean,Mathlib/Data/Nat/Choose/Factorization.lean,Mathlib/NumberTheory/Chebyshev.lean |
3 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
MichaelStollBayreuth assignee:MichaelStollBayreuth |
5-54906 5 days ago |
5-57010 5 days ago |
17-54965 17 days |
0 |
| 43848 |
plp127 author:plp127 |
chore(Data/Nat/Init): fix recursors |
Name the motive `motive` and name the minor premises according to their contents.
---
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[](https://gitpod.io/from-referrer/)
|
t-data
tech debt
|
149/149 |
Archive/Imo/Imo1981Q3.lean,Archive/Imo/Imo2024Q3.lean,Mathlib/Algebra/ContinuedFractions/Euler.lean,Mathlib/Algebra/Polynomial/Sequence.lean,Mathlib/Analysis/Calculus/ContDiff/Bounds.lean,Mathlib/Analysis/Hofer.lean,Mathlib/Combinatorics/Enumerative/Catalan/Tree.lean,Mathlib/Data/Fin/Basic.lean,Mathlib/Data/Nat/Init.lean,Mathlib/FieldTheory/IsRealClosed/Basic.lean,Mathlib/GroupTheory/GroupAction/Jordan.lean,Mathlib/GroupTheory/Nilpotent.lean,Mathlib/LinearAlgebra/Eigenspace/Triangularizable.lean,Mathlib/LinearAlgebra/Finsupp/Pi.lean,Mathlib/LinearAlgebra/Multilinear/Basic.lean,Mathlib/NumberTheory/DiophantineApproximation/Basic.lean,Mathlib/NumberTheory/FLT/Polynomial.lean,Mathlib/NumberTheory/ModularForms/LevelOne/DimensionFormula.lean,Mathlib/NumberTheory/Pell.lean,Mathlib/NumberTheory/Primorial.lean,Mathlib/NumberTheory/RamificationInertia/Basic.lean,Mathlib/Order/KrullDimension.lean,Mathlib/Probability/Kernel/IonescuTulcea/Traj.lean,Mathlib/RingTheory/Adjoin/PowerBasis.lean,Mathlib/RingTheory/AdjoinRoot.lean,Mathlib/RingTheory/Etale/QuasiFinite.lean,Mathlib/RingTheory/Ideal/KrullsHeightTheorem.lean,Mathlib/RingTheory/IntegralClosure/IsIntegral/AlmostIntegral.lean,Mathlib/RingTheory/Polynomial/Eisenstein/IsIntegral.lean,Mathlib/RingTheory/Polynomial/IsIntegral.lean,Mathlib/RingTheory/Polynomial/Resultant/Basic.lean,Mathlib/RingTheory/WittVector/Defs.lean,Mathlib/RingTheory/WittVector/StructurePolynomial.lean,Mathlib/RingTheory/ZariskisMainTheorem.lean,Mathlib/Topology/CWComplex/Classical/Basic.lean,Mathlib/Topology/Metrizable/Uniformity.lean |
36 |
1 |
['Parcly-Taxel', 'github-actions'] |
nobody |
5-49340 5 days ago |
5-54521 5 days ago |
5-72182 5 days |
0 |
| 43163 |
yuanyi-350 author:yuanyi-350 |
feat(Analysis/SpecialFunctions/Exponential): map exponentials under differentiable monoid homs |
|
t-analysis |
37/0 |
Mathlib/Analysis/SpecialFunctions/Exponential.lean |
1 |
4 |
['github-actions', 'wwylele'] |
nobody |
5-44190 5 days ago |
22-64660 22 days ago |
25-39660 25 days |
1 |
| 43858 |
BoltonBailey author:BoltonBailey |
chore(Algebra/GroupWithZero/Units/Basic): rename three lemmas `'` -> `₀` |
This PR comes about as a result of using Claude to look for easy reductions to the docPrime linter. Claude turned up three lemmas about GroupWithZero named with primes which are analogous to unprimed lemmas about groups. This PR renames them to use the usual convention of naming such lemmas with an underscored zero.
- `div_left_inj'`
- `div_div_cancel_left'`
- `div_div_div_cancel_left'`
---
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[](https://gitpod.io/from-referrer/)
|
tech debt
LLM-generated
t-algebra
label:t-algebra$ |
28/25 |
Mathlib/Algebra/Field/ModEq.lean,Mathlib/Algebra/GroupWithZero/Units/Basic.lean,Mathlib/Analysis/BoxIntegral/UnitPartition.lean,Mathlib/Analysis/Complex/UpperHalfPlane/Metric.lean,Mathlib/Analysis/Normed/Algebra/QuaternionExponential.lean,Mathlib/Analysis/SpecialFunctions/Log/Base.lean,Mathlib/Analysis/SpecialFunctions/Stirling.lean,Mathlib/Geometry/Euclidean/Angle/Bisector.lean,Mathlib/Geometry/Euclidean/Angle/Oriented/Affine.lean,Mathlib/NumberTheory/FLT/Basic.lean,Mathlib/NumberTheory/Height/NumberField.lean,Mathlib/NumberTheory/LSeries/HurwitzZetaEven.lean,Mathlib/NumberTheory/LSeries/ZMod.lean,Mathlib/NumberTheory/PythagoreanTriples.lean,Mathlib/Probability/Distributions/Gaussian/CharFun.lean,Mathlib/Probability/Distributions/Gaussian/HasGaussianLaw/Independence.lean,Mathlib/RingTheory/Invariant/Basic.lean,Mathlib/Topology/Instances/AddCircle/Real.lean,scripts/nolints_prime_decls.txt |
19 |
1 |
['github-actions'] |
nobody |
5-41732 5 days ago |
5-57250 5 days ago |
5-57024 5 days |
0 |
| 43815 |
SnirBroshi author:SnirBroshi |
feat(Data/Sym/Sym2): `Sym2.map` lifts equivalences |
`Sym2.map : (α → β) → (Sym2 α → Sym2 β)` preserves injectivity / surjectivity / bijectivity, and can lift `α ≃ β` to `Sym2 α ≃ Sym2 β`.
---
Is this what people might call "functoriality of `Sym2.map`"? Or maybe of `Sym2`? Or does `Sym2.map` itself already demonstrates that `Sym2` is functorial? Not sure
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|
t-data |
45/3 |
Mathlib/Combinatorics/SimpleGraph/Maps.lean,Mathlib/Data/Sym/Sym2.lean |
2 |
1 |
['github-actions'] |
nobody |
5-41495 5 days ago |
6-62045 6 days ago |
6-64239 6 days |
1 |
| 38587 |
dagurtomas author:dagurtomas |
feat(Tactic/CategoryTheory): concrete category boilerplate |
Adds `mk_concrete_category`, a command for generating the initial boilerplate for concrete categories whose morphisms are given by a bundled function type.
The command creates the wrapper `Hom` type, named category and concrete category instances, `ofHom`, `Hom.hom`, and the basic dsimp lemmas.
It handles parameterized categories such as `ModuleCat`, and has a paired additive/multiplicative form for generating both structures at once (e.g. `MonCat`/`AddMonCat`).
Includes test categories checking the generated declarations.
[](https://gitpod.io/from-referrer/)
|
LLM-generated
t-meta
t-category-theory
|
1031/0 |
Mathlib.lean,Mathlib/Tactic.lean,Mathlib/Tactic/CategoryTheory/MkConcreteCategory.lean,MathlibTest/CategoryTheory/MkConcreteCategory.lean |
4 |
15 |
['Vierkantor', 'dagurtomas', 'eric-wieser', 'github-actions', 'mathlib-merge-conflicts'] |
Vierkantor assignee:Vierkantor |
5-40965 5 days ago |
5-41781 5 days ago |
136-61900 136 days |
1 |
| 43859 |
kebekus author:kebekus |
feat: Jensen-Type Inequality for Circle Averages |
In preparation for the upcoming proof of Nevanlinna's "Lemma on Logarithmic Derivatives", establish a Jensen-type inequality for circle averages, where the positive part of the logarithm plays the role of the concave function.
---
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|
t-measure-probability
LLM-generated
|
93/0 |
Mathlib.lean,Mathlib/Analysis/Complex/ValueDistribution/LogDerivLemma.lean,Mathlib/Analysis/Convex/SpecificFunctions/Basic.lean,Mathlib/MeasureTheory/Integral/CircleIntegral.lean |
4 |
1 |
['github-actions'] |
nobody |
5-40920 5 days ago |
5-43440 5 days ago |
5-43214 5 days |
0 |
| 43819 |
SnirBroshi author:SnirBroshi |
feat(Combinatorics/SimpleGraph/DeleteEdges): morphisms between `deleteEdges` graphs |
Accepting two sets and a proof of `Sym2.map f ⁻¹' t ⊆ s` lets us use the morphisms with `Set.preimage` or `Set.image` or anything else that's convenient.
---
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|
t-combinatorics |
74/1 |
Mathlib/Combinatorics/SimpleGraph/Copy.lean,Mathlib/Combinatorics/SimpleGraph/DeleteEdges.lean |
2 |
5 |
['SnirBroshi', 'b-mehta', 'github-actions'] |
nobody |
5-38651 5 days ago |
5-38845 5 days ago |
5-83191 5 days |
2 |
| 43861 |
SnirBroshi author:SnirBroshi |
chore(Algebra/Order/Achimedean/Class): use `inferInstanceAs%` for `LinearOrder MulArchimedeanClass` |
---
The motivation is the `TODO`; I don't know if core's `inferInstanceAs` elaborator would be better here.
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t-algebra label:t-algebra$ |
1/2 |
Mathlib/Algebra/Order/Archimedean/Class.lean |
1 |
1 |
['github-actions'] |
nobody |
5-37214 5 days ago |
5-38024 5 days ago |
5-37798 5 days |
0 |
| 43722 |
tb65536 author:tb65536 |
refactor: replace `padicValNat` with `multiplicity` |
This doesn't fully deprecate `padicValNat`, but gets most of the way there. Full deprecation will be in a follow-up PR.
I directly replaced "padicValNat" with "multiplicity" in the declaration names. A few declarations of the form `padicValNat.foo` were manually renamed to `Nat.multiplicity_foo`.
---
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t-algebra
t-number-theory
label:t-algebra$ |
466/308 |
Archive/Imo/Imo2025Q3.lean,Mathlib/Data/Nat/Factorization/Basic.lean,Mathlib/Data/Nat/Factorization/Defs.lean,Mathlib/Data/Nat/PadicValNat.lean,Mathlib/NumberTheory/Harmonic/Int.lean,Mathlib/NumberTheory/Multiplicity.lean,Mathlib/NumberTheory/Ostrowski.lean,Mathlib/NumberTheory/Padics/MahlerBasis.lean,Mathlib/NumberTheory/Padics/PadicNorm.lean,Mathlib/NumberTheory/Padics/PadicNumbers.lean,Mathlib/NumberTheory/Padics/PadicVal/Basic.lean,Mathlib/NumberTheory/Padics/PadicVal/Defs.lean,Mathlib/NumberTheory/SumTwoSquares.lean,Mathlib/RingTheory/DividedPowers/Padic.lean,Mathlib/RingTheory/Polynomial/Cyclotomic/Eval.lean |
15 |
9 |
['b-mehta', 'github-actions', 'mathlib-merge-conflicts', 'tb65536'] |
nobody |
5-36833 5 days ago |
5-39183 5 days ago |
8-85007 8 days |
0 |
| 39915 |
mkaratarakis author:mkaratarakis |
feat(Analysis/Complex): the equality case of the triangle inequality |
The equality case of the triangle inequality for a finite sum
Part of the Perron–Frobenius formalization (with @or4nge19).
---
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cc @or4nge19 for review |
t-analysis |
167/1 |
Mathlib.lean,Mathlib/Analysis/Convex/TriangleEquality.lean,Mathlib/Analysis/Normed/Module/Normalize.lean,Mathlib/LinearAlgebra/Ray.lean |
4 |
43 |
['github-actions', 'j-loreaux', 'mkaratarakis', 'themathqueen', 'wwylele'] |
nobody |
5-27628 5 days ago |
5-68929 5 days ago |
14-76083 14 days |
4 |
| 39916 |
mkaratarakis author:mkaratarakis |
feat(Combinatorics/Quiver/Path): paths for Perron–Frobenius |
Add `Mathlib/Combinatorics/Quiver/Path/PerronFrobenius.lean`: weighted quiver paths, cycle decomposition, and positivity lemmas for matrix irreducibility.
Part of the Perron–Frobenius formalization (with @or4nge19).
---
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t-combinatorics |
341/0 |
Mathlib.lean,Mathlib/Combinatorics/Quiver/Induced.lean,Mathlib/Combinatorics/Quiver/Path/Cycle.lean,Mathlib/Combinatorics/Quiver/Path/Replicate.lean,Mathlib/Combinatorics/Quiver/Path/Simple.lean |
5 |
12 |
['SnirBroshi', 'github-actions', 'mathlib-merge-conflicts', 'mkaratarakis', 'or4nge19'] |
nobody |
5-27028 5 days ago |
26-29126 26 days ago |
29-34832 29 days |
5 |
| 42297 |
xroblot author:xroblot |
feat(RingTheory/QuadraticAlgebra): trace, norm and discriminant as `Algebra` invariants |
Add a `RingTheory`-level file for `QuadraticAlgebra R a b`, identifying its elementary trace, norm and discriminant with the general `Algebra` ones on the standard basis `{1, ω}`.
Kept in a separate file so those stay free of the heavy `RingTheory.Discriminant` import.
---
- [x] depends on: #42708 |
t-ring-theory |
73/0 |
Mathlib.lean,Mathlib/RingTheory/QuadraticAlgebra.lean |
2 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
riccardobrasca assignee:riccardobrasca |
5-24781 5 days ago |
6-13739 6 days ago |
6-33316 6 days |
3 |
| 43525 |
EtienneC30 author:EtienneC30 |
feat: tag `Function.leftLim` with `to_dual` |
---
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|
t-meta
t-topology
|
130/413 |
Mathlib/Order/Interval/Set/LinearOrder.lean,Mathlib/Tactic/Translate/ToDual.lean,Mathlib/Topology/EMetricSpace/BoundedVariation.lean,Mathlib/Topology/Order/DenselyOrdered.lean,Mathlib/Topology/Order/LeftRightLim.lean,Mathlib/Topology/Order/LeftRightNhds.lean,Mathlib/Topology/Order/Monotone.lean |
7 |
8 |
['EtienneC30', 'JovanGerb', 'github-actions'] |
nobody |
5-21688 5 days ago |
6-40665 6 days ago |
6-40439 6 days |
0 |
| 42790 |
xroblot author:xroblot |
chore(RingTheory/Ideal/Norm): weaken the `Ideal.absNorm` API to rings with finite quotients |
The last results of the `Ideal.absNorm` API that still assumed a `ℤ`-basis are weakened to their honest hypotheses: `absNorm_eq_zero_iff` and its `nonZeroDivisors` corollaries only need `Ring.HasFiniteQuotients` and `Infinite`, while the results whose statement involves `ℤ` (`exists_prime_and_absNorm_eq_pow`, `exists_isMaximal_dvd_of_dvd_absNorm`) need `CharZero` or `FaithfulSMul ℤ` together with `Algebra.IsIntegral ℤ`.
`exists_prime_and_absNorm_eq_pow` is also split, the primed version taking `P ≠ ⊥` as an explicit hypothesis and the unprimed one deducing it.
`exists_isMaximal_dvd_of_dvd_absNorm` now takes `FaithfulSMul ℤ S` explicitly. This is not a new requirement on callers: it was previously implied by the `Module.Free ℤ S` that the statement no longer assumes.
This is the fourth part of a sequence of PRs generalizing `Ideal.absNorm` away from `Module.Free ℤ`, after #42081, #42784 and #42787.
Prepared with Claude Code 🤖
---
- [x] depends on: #42787
|
|
110/66 |
Mathlib/NumberTheory/NumberField/Discriminant/Different.lean,Mathlib/RingTheory/FractionalIdeal/Norm.lean,Mathlib/RingTheory/Ideal/Norm/AbsNorm.lean,Mathlib/RingTheory/Ideal/Norm/RelNorm.lean,Mathlib/RingTheory/Ideal/Quotient/HasFiniteQuotients/Basic.lean |
5 |
13 |
['github-actions', 'jcommelin', 'leanprover-radar', 'mathlib-dependent-issues', 'xroblot'] |
nobody |
5-21091 5 days ago |
6-16163 6 days ago |
18-56279 18 days |
1 |
| 43486 |
lua-vr author:lua-vr |
feat(Measure/AbsolutelyContinuous): add map_of_aemeasurable |
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|
t-measure-probability |
7/1 |
Mathlib/MeasureTheory/Measure/AbsolutelyContinuous.lean |
1 |
1 |
['github-actions'] |
nobody |
5-16568 5 days ago |
15-30835 15 days ago |
15-30609 15 days |
2 |
| 43862 |
Julian-Kuelshammer author:Julian-Kuelshammer |
chore(Data/Fintype/Defs): remove unnecessary variable in instance |
In #43425, it was discovered that an instance contained an unnecessary variable. This is removed in this PR. We also use the opportunity to change some => to \mapsto close by, which according to the style guide is slightly preferred.
---
[](https://gitpod.io/from-referrer/)
|
t-data
new-contributor
|
6/7 |
Mathlib/Data/Fintype/Defs.lean |
1 |
3 |
['JX-Mo', 'github-actions'] |
nobody |
5-16154 5 days ago |
5-37489 5 days ago |
5-37263 5 days |
0 |
| 25981 |
Multramate author:Multramate |
feat(GroupTheory/GroupAction/Basic): define homomorphisms of fixed subgroups induced by homomorphisms of groups |
This PR continues the work from #10126.
Original PR: https://github.com/leanprover-community/mathlib4/pull/10126 |
t-group-theory
large-import
|
68/21 |
Mathlib/Algebra/Ring/Action/Submonoid.lean,Mathlib/GroupTheory/GroupAction/Defs.lean |
2 |
8 |
['copilot-pull-request-reviewer', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
5-15624 5 days ago |
5-19458 5 days ago |
10-11922 10 days |
0 |
| 43418 |
aimmerwahr author:aimmerwahr |
feat(RingTheory): prove `comap_ringConGen_equiv` (`proof_wanted`) |
Prove that `(ringConGen r).comap f = ringConGen (r on f)` for an EquivLike as stated in proof_wanted.
I rearranged the parameter order (and dropped `[FunLike F R' R]`) from the original proof_wanted statement, since EquivLike already gives a FunLike and having repeated FunLike (that are not definitionally equal) makes instance resolution impossible.
This is essentially the same proof as the previous ring equivalence version (pulling back the RingCon by f inverse and then by f), with comap spelled out explicitly.
AI usage: Everything is proved by hand. I then worked with AI to review and simplify the code. |
file-removed
t-ring-theory
new-contributor
|
37/33 |
Mathlib/RingTheory/Congruence/Basic.lean,Wanted.lean,Wanted/RingTheory/Congruence/Basic.lean |
3 |
2 |
['github-actions'] |
nobody |
5-11787 5 days ago |
17-58235 17 days ago |
17-58009 17 days |
0 |
| 40301 |
xroblot author:xroblot |
feat(RingTheory/UniqueFactorizationDomain): add emultiplicity characterizations |
Adds characterizations of primality, vanishing, associatedness and equality in `WfDvdMonoid`/`UniqueFactorizationMonoid` in terms of `emultiplicity`:
- `Prime.emultiplicity_self`, `Prime.emultiplicity_prime`
- `WfDvdMonoid.eq_zero_iff_forall_prime_pow_dvd`, `WfDvdMonoid.ne_zero_iff_finiteMultiplicity`
- `UniqueFactorizationMonoid.associated_iff_emultiplicity_eq(')`, `UniqueFactorizationMonoid.eq_iff_emultiplicity_eq`
:robot: This PR was extracted from the [SKW project](https://github.com/xroblot/SKW) by Claude. |
t-ring-theory |
68/0 |
Mathlib/RingTheory/UniqueFactorizationDomain/Multiplicity.lean |
1 |
1 |
['github-actions'] |
mariainesdff assignee:mariainesdff |
5-11444 5 days ago |
5-12922 5 days ago |
80-25590 80 days |
0 |
| 42298 |
xroblot author:xroblot |
feat(Algebra/QuadraticAlgebra): quadratic algebras over ℤ |
Develop the theory of quadratic algebras over `ℤ`. The discriminant is shown to be a complete invariant: up to isomorphism, every quadratic algebra over `ℤ` is the quadratic ring of a unique integer `D ≡ 0, 1 mod 4`.
---
- [x] depends on: #42708
- [x] depends on: #42296 |
t-algebra label:t-algebra$ |
68/0 |
Mathlib.lean,Mathlib/Algebra/QuadraticAlgebra/Int.lean |
2 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
riccardobrasca assignee:riccardobrasca |
5-11005 5 days ago |
6-13964 6 days ago |
6-32669 6 days |
0 |
| 43301 |
dependabot author:dependabot |
chore(deps): bump the actions-version-updates group across 1 directory with 6 updates |
Bumps the actions-version-updates group with 6 updates in the /.github/workflows directory:
| Package | From | To |
| --- | --- | --- |
| [reviewdog/action-actionlint](https://github.com/reviewdog/action-actionlint) | `1.73.0` | `1.74.0` |
| [leanprover/lean-action](https://github.com/leanprover/lean-action) | `1.5.0` | `1.6.0` |
| [actions/attest-build-provenance](https://github.com/actions/attest-build-provenance) | `4.1.1` | `4.2.2` |
| [corentinmusard/otel-cicd-action](https://github.com/corentinmusard/otel-cicd-action) | `4.1.0` | `4.1.1` |
| [dawidd6/action-download-artifact](https://github.com/dawidd6/action-download-artifact) | `21` | `24` |
| [softprops/action-gh-release](https://github.com/softprops/action-gh-release) | `3.0.2` | `3.0.3` |
Updates `reviewdog/action-actionlint` from 1.73.0 to 1.74.0
<details>
<summary>Release notes</summary>
<p><em>Sourced from <a href="https://github.com/reviewdog/action-actionlint/releases">reviewdog/action-actionlint's releases</a>.</em></p>
<blockquote>
<h2>Release v1.74.0</h2>
<h2>What's Changed</h2>
<ul>
<li>docs: update README to include required permissions for action by <a href="https://github.com/shogo82148"><code>@shogo82148</code></a> in <a href="https://redirect.github.com/reviewdog/action-actionlint/pull/229">reviewdog/action-actionlint#229</a></li>
<li>Improve example in readme by <a href="https://github.com/shogo82148"><code>@shogo82148</code></a> in <a href="https://redirect.github.com/reviewdog/action-actionlint/pull/230">reviewdog/action-actionlint#230</a></li>
<li>chore(deps): update reviewdog to 0.21.1 by <a href="https://github.com/github-actions"><code>@github-actions</code></a>[bot] in <a href="https://redirect.github.com/reviewdog/action-actionlint/pull/231">reviewdog/action-actionlint#231</a></li>
</ul>
<p><strong>Full Changelog</strong>: <a href="https://github.com/reviewdog/action-actionlint/compare/v1.73.4...v1.74.0">https://github.com/reviewdog/action-actionlint/compare/v1.73.4...v1.74.0</a></p>
<h2>Release v1.73.4</h2>
<h2>What's Changed</h2>
<ul>
<li>chore(deps): update docker/setup-qemu-action action to v4.3.0 by <a href="https://github.com/renovate"><code>@renovate</code></a>[bot] in <a href="https://redirect.github.com/reviewdog/action-actionlint/pull/227">reviewdog/action-actionlint#227</a></li>
<li>chore(deps): update python:3.14.7-alpine3.24 docker digest to c6ead21 by <a href="https://github.com/renovate"><code>@renovate</code></a>[bot] in <a href="https://redirect.github.com/reviewdog/action-actionlint/pull/228">reviewdog/action-actionlint#228</a></li>
</ul>
<p><strong>Full Changelog</strong>: <a href="https://github.com/reviewdog/action-actionlint/compare/v1.73.3...v1.73.4">https://github.com/reviewdog/action-actionlint/compare/v1.73.3...v1.73.4</a></p>
<h2>Release v1.73.3</h2>
<h2>What's Changed</h2>
<ul>
<li>chore(deps): update docker/setup-buildx-action action to v4.3.0 by <a href="https://github.com/renovate"><code>@renovate</code></a>[bot] in <a href="https://redirect.github.com/reviewdog/action-actionlint/pull/225">reviewdog/action-actionlint#225</a></li>
<li>chore(deps): update python:3.14.7-alpine3.24 docker digest to 3f818d6 by <a href="https://github.com/renovate"><code>@renovate</code></a>[bot] in <a href="https://redirect.github.com/reviewdog/action-actionlint/pull/226">reviewdog/action-actionlint#226</a></li>
</ul>
<p><strong>Full Changelog</strong>: <a href="https://github.com/reviewdog/action-actionlint/compare/v1.73.2...v1.73.3">https://github.com/reviewdog/action-actionlint/compare/v1.73.2...v1.73.3</a></p>
<h2>Release v1.73.2</h2>
<h2>What's Changed</h2>
<ul>
<li>chore(deps): update shogo82148/actions-create-release action to v1.9.1 by <a href="https://github.com/renovate"><code>@renovate</code></a>[bot] in <a href="https://redirect.github.com/reviewdog/action-actionlint/pull/223">reviewdog/action-actionlint#223</a></li>
<li>chore(deps): update python:3.14.7-alpine3.24 docker digest to 05b2b8b by <a href="https://github.com/renovate"><code>@renovate</code></a>[bot] in <a href="https://redirect.github.com/reviewdog/action-actionlint/pull/224">reviewdog/action-actionlint#224</a></li>
</ul>
<p><strong>Full Changelog</strong>: <a href="https://github.com/reviewdog/action-actionlint/compare/v1.73.1...v1.73.2">https://github.com/reviewdog/action-actionlint/compare/v1.73.1...v1.73.2</a></p>
<h2>Release v1.73.1</h2>
<h2>What's Changed</h2>
<ul>
<li>chore(deps): update python docker tag to v3.14.7 by <a href="https://github.com/renovate"><code>@renovate</code></a>[bot] in <a href="https://redirect.github.com/reviewdog/action-actionlint/pull/222">reviewdog/action-actionlint#222</a></li>
</ul>
<p><strong>Full Changelog</strong>: <a href="https://github.com/reviewdog/action-actionlint/compare/v1.73.0...v1.73.1">https://github.com/reviewdog/action-actionlint/compare/v1.73.0...v1.73.1</a></p>
</blockquote>
</details>
<details>
<summary>Commits</summary>
<ul>
<li><a href="https://github.com/reviewdog/action-actionlint/commit/8b682e1e7e512151d73a6b9449cbff173846226e"><code>8b682e1</code></a> bump v1.74.0</li>
<li><a href="https://github.com/reviewdog/action-actionlint/commit/cd0e577500be650ace28644ca2f53787b8c90593"><code>cd0e577</code></a> Merge branch 'main' into releases/v1</li>
<li><a href="https://github.com/reviewdog/action-actionlint/commit/236af6bfa0bee164884606bb17531744f4179630"><code>236af6b</code></a> Merge pull request <a href="https://redirect.github.com/reviewdog/action-actionlint/issues/231">#231</a> from reviewdog/depup/reviewdog</li>
<li><a href="https://github.com/reviewdog/action-actionlint/commit/983c212c212c993ea31cc95153af7e5a372b2de9"><code>983c212</code></a> chore(deps): update reviewdog to 0.21.1</li>
<li><a href="https://github.com/reviewdog/action-actionlint/commit/cebab72bdf11311b525ebb05c7e4a6625932bceb"><code>cebab72</code></a> Merge pull request <a href="https://redirect.github.com/reviewdog/action-actionlint/issues/230">#230</a> from reviewdog/improve-example-in-readme</li>
<li><a href="https://github.com/reviewdog/action-actionlint/commit/aa24c2cf35b47c23ab3fd454b5efd461c8652dd5"><code>aa24c2c</code></a> docs: update example in README to use ubuntu-slim for actionlint</li>
<li><a href="https://github.com/reviewdog/action-actionlint/commit/e350b445175d5106f0dffb0e0000b78076241df2"><code>e350b44</code></a> bump GitHub Actions versions in README</li>
<li><a href="https://github.com/reviewdog/action-actionlint/commit/1e50da39b71b54202d06d17235ef4a72c4dcc591"><code>1e50da3</code></a> Merge pull request <a href="https://redirect.github.com/reviewdog/action-actionlint/issues/229">#229</a> from reviewdog/add-required-permissions-to-readme</li>
<li><a href="https://github.com/reviewdog/action-actionlint/commit/54693c4b11ae0681befd76064d009310c9470a61"><code>54693c4</code></a> docs: update README to include required permissions for action</li>
<li><a href="https://github.com/reviewdog/action-actionlint/commit/d290e336d5a743810aef4404f757dc862276d2ae"><code>d290e33</code></a> bump v1.73.4</li>
<li>Additional commits viewable in <a href="https://github.com/reviewdog/action-actionlint/compare/50842263c20a7c46bd0065b9e624d3c569db061e...8b682e1e7e512151d73a6b9449cbff173846226e">compare view</a></li>
</ul>
</details>
<br />
Updates `leanprover/lean-action` from 1.5.0 to 1.6.0
<details>
<summary>Release notes</summary>
<p><em>Sourced from <a href="https://github.com/leanprover/lean-action/releases">leanprover/lean-action's releases</a>.</em></p>
<blockquote>
<h2>v1.6.0</h2>
<h3>Added</h3>
<ul>
<li>new <code>leanchecker-args</code> input to pass arguments to <code>lake env leanchecker</code>,
e.g. <code>leanchecker-args: "-v"</code> for verbose output or explicit module prefixes
such as <code>leanchecker-args: "MyPkg.Core"</code> to narrow the set of modules checked</li>
<li>new <code>axiom-audit</code> input to audit the project's axioms with <a href="https://github.com/leanprover-community/axiom-audit">axiom-audit</a>: fail if any declaration depends on an axiom outside the allowlist (catches <code>sorry</code>, <code>native_decide</code>, and home-rolled axioms). Default: false</li>
<li>new <code>axiom-audit-allow</code> input for the allowlist (default: <code>propext,Classical.choice,Quot.sound</code>)</li>
<li>new <code>axiom-audit-root</code> input to set the audited root namespace (default: the lakefile's library name)</li>
<li>new <code>axiom-audit-status</code> output parameter</li>
<li>new <code>lint-args</code> input to specify arguments to pass to <code>lake lint</code></li>
<li>new <code>mk_all-args</code> input to pass arguments to <code>lake exe mk_all --check</code>, e.g. <code>mk_all-args: "--lib Carleson"</code> to restrict the check to a specific library</li>
<li>new <code>release.yml</code> workflow which automates the release process (see <code>RELEASING.md</code>)</li>
</ul>
<h3>Fixed</h3>
<ul>
<li>include <code>lake-package-directory</code> when hashing <code>lean-toolchain</code> and <code>lake-manifest.json</code> for the GitHub cache key, so projects whose Lake package lives in a subdirectory get a version-specific key instead of an empty one (the empty key previously caused stale, cross-version cache restores)</li>
<li>use a more portable shebang, useful for self-hosted runners</li>
</ul>
</blockquote>
</details>
<details>
<summary>Changelog</summary>
<p><em>Sourced from <a href="https://github.com/leanprover/lean-action/blob/main/CHANGELOG.md">leanprover/lean-action's changelog</a>.</em></p>
<blockquote>
<h1>Changelog</h1>
<p>All notable changes to <code>lean-action</code> will be documented in this file.</p>
<p>The format is based on <a href="https://keepachangelog.com/en/1.1.0/">Keep a Changelog</a>,
and this project adheres to <a href="https://semver.org/spec/v2.0.0.html">Semantic Versioning</a>.</p>
<h2>Unreleased</h2>
<h2>v1.6.0 - 2026-08-22</h2>
<h3>Added</h3>
<ul>
<li>new <code>leanchecker-args</code> input to pass arguments to <code>lake env leanchecker</code>,
e.g. <code>leanchecker-args: "-v"</code> for verbose output or explicit module prefixes
such as <code>leanchecker-args: "MyPkg.Core"</code> to narrow the set of modules checked</li>
<li>new <code>axiom-audit</code> input to audit the project's axioms with <a href="https://github.com/leanprover-community/axiom-audit">axiom-audit</a>: fail if any declaration depends on an axiom outside the allowlist (catches <code>sorry</code>, <code>native_decide</code>, and home-rolled axioms). Default: false</li>
<li>new <code>axiom-audit-allow</code> input for the allowlist (default: <code>propext,Classical.choice,Quot.sound</code>)</li>
<li>new <code>axiom-audit-root</code> input to set the audited root namespace (default: the lakefile's library name)</li>
<li>new <code>axiom-audit-status</code> output parameter</li>
<li>new <code>lint-args</code> input to specify arguments to pass to <code>lake lint</code></li>
<li>new <code>mk_all-args</code> input to pass arguments to <code>lake exe mk_all --check</code>, e.g. <code>mk_all-args: "--lib Carleson"</code> to restrict the check to a specific library</li>
<li>new <code>release.yml</code> workflow which automates the release process (see <code>RELEASING.md</code>)</li>
</ul>
<h3>Fixed</h3>
<ul>
<li>include <code>lake-package-directory</code> when hashing <code>lean-toolchain</code> and <code>lake-manifest.json</code> for the GitHub cache key, so projects whose Lake package lives in a subdirectory get a version-specific key instead of an empty one (the empty key previously caused stale, cross-version cache restores)</li>
<li>use a more portable shebang, useful for self-hosted runners</li>
</ul>
<h2>v1.5.0 - 2026-04-21</h2>
<h3>Added</h3>
<ul>
<li>new <code>nanoda</code> input to check environment with <a href="https://github.com/ammkrn/nanoda_lib">nanoda</a> external type checker</li>
<li>new <code>nanoda-allow-sorry</code> input to permit sorryAx axiom when running nanoda (default: true)</li>
<li>new <code>nanoda-status</code> output parameter</li>
<li>new reusable workflow <code>nanoda-daily.yml</code> for scheduled daily verification with notifications</li>
</ul>
<h3>Changed</h3>
<ul>
<li>rename the <code>lean4checker</code> input to <code>leanchecker</code>, while keeping <code>lean4checker</code> as a deprecated alias</li>
<li>use the bundled <code>leanchecker</code> binary on Lean <code>nightly-2026-01-09</code> / <code>v4.28.0-rc1</code> and newer, with fallback to the external <code>lean4checker</code> repository on older toolchains</li>
</ul>
<h3>Fixed</h3>
<ul>
<li>fixed bug where callling <code>.test.sh</code> instead of <code>lake test</code> on lean4checker on Lean <code>v4.27.x</code> would cause a failure</li>
</ul>
<h2>v1.4.0 - 2026-01-15</h2>
<h3>Added</h3>
<!-- raw HTML omitted -->
</blockquote>
<p>... (truncated)</p>
</details>
<details>
<summary>Commits</summary>
<ul>
<li><a href="https://github.com/leanprover/lean-action/commit/50fcf42d2e460296f1a34b402e990d1b24f8b596"><code>50fcf42</code></a> feat: add <code>mk_all-args</code> input (<a href="https://redirect.github.com/leanprover/lean-action/issues/185">#185</a>)</li>
<li><a href="https://github.com/leanprover/lean-action/commit/6835ef47e8423fa9e9eacfcbb8fdf83fae42c820"><code>6835ef4</code></a> feat: automate the release process with a release workflow (<a href="https://redirect.github.com/leanprover/lean-action/issues/183">#183</a>)</li>
<li><a href="https://github.com/leanprover/lean-action/commit/0e73be80ca15302f7b414deda85446d8bb279623"><code>0e73be8</code></a> feat: add <code>leanchecker-args</code> input (<a href="https://redirect.github.com/leanprover/lean-action/issues/162">#162</a>)</li>
<li><a href="https://github.com/leanprover/lean-action/commit/18a062826fdb79a0d5aac97f7fd09d8bfe6696bc"><code>18a0628</code></a> feat: add opt-in axiom-audit check (<a href="https://redirect.github.com/leanprover/lean-action/issues/166">#166</a>)</li>
<li><a href="https://github.com/leanprover/lean-action/commit/6871e54eb1c5827d248c9767f1ea263ac65f6991"><code>6871e54</code></a> fix: pass resolved toolchain to <code>lake-lint-args</code> functional test (<a href="https://redirect.github.com/leanprover/lean-action/issues/182">#182</a>)</li>
<li><a href="https://github.com/leanprover/lean-action/commit/c7d824f443b42759660338f9d4968ebb1bec1398"><code>c7d824f</code></a> docs: document <code>LEAN_NUM_THREADS</code> workaround for <code>leanchecker</code> memory exhaust...</li>
<li><a href="https://github.com/leanprover/lean-action/commit/236e6155a3b84fd07019c3205b899871d2356635"><code>236e615</code></a> feat: add lint-args configuration input (<a href="https://redirect.github.com/leanprover/lean-action/issues/149">#149</a>)</li>
<li><a href="https://github.com/leanprover/lean-action/commit/62e5cb3cc94251736f17cfb2c4149efd7f2f39d6"><code>62e5cb3</code></a> chore(deps): bump actions/checkout from 4 to 7 (<a href="https://redirect.github.com/leanprover/lean-action/issues/174">#174</a>)</li>
<li><a href="https://github.com/leanprover/lean-action/commit/fd79d79bb522bcaa3532aabc22522cde2af0de07"><code>fd79d79</code></a> chore(deps): bump peter-evans/create-pull-request from 7 to 8 (<a href="https://redirect.github.com/leanprover/lean-action/issues/172">#172</a>)</li>
<li><a href="https://github.com/leanprover/lean-action/commit/44bde84f610b8c89a1c5064fdf4e42f446ac78cb"><code>44bde84</code></a> fix: include lake-package-directory in cache key hashes (<a href="https://redirect.github.com/leanprover/lean-action/issues/167">#167</a>)</li>
<li>Additional commits viewable in <a href="https://github.com/leanprover/lean-action/compare/38fbc41a8c28c4cbaec22d7f7de508ec2e7c0dd9...50fcf42d2e460296f1a34b402e990d1b24f8b596">compare view</a></li>
</ul>
</details>
<br />
Updates `actions/attest-build-provenance` from 4.1.1 to 4.2.2
<details>
<summary>Release notes</summary>
<p><em>Sourced from <a href="https://github.com/actions/attest-build-provenance/releases">actions/attest-build-provenance's releases</a>.</em></p>
<blockquote>
<h2>v4.2.2</h2>
<blockquote>
<p>[!NOTE]
As of version 4, <code>actions/attest-build-provenance</code> is simply a wrapper on top of <a href="https://github.com/actions/attest"><code>actions/attest</code></a>.</p>
<p>Existing applications may continue to use the <code>attest-build-provenance</code> action, but new implementations should use <code>actions/attest</code> instead.</p>
</blockquote>
<h2>What's Changed</h2>
<ul>
<li>Bump actions/attest from 4.2.0 to 4.2.1 in the actions-minor group by <a href="https://github.com/dependabot"><code>@dependabot</code></a>[bot] in <a href="https://redirect.github.com/actions/attest-build-provenance/pull/862">actions/attest-build-provenance#862</a></li>
</ul>
<p><strong>Full Changelog</strong>: <a href="https://github.com/actions/attest-build-provenance/compare/v4.1.1...v4.2.2">https://github.com/actions/attest-build-provenance/compare/v4.1.1...v4.2.2</a></p>
</blockquote>
</details>
<details>
<summary>Commits</summary>
<ul>
<li><a href="https://github.com/actions/attest-build-provenance/commit/4d101475d8b20a2381f78447822ac1eab6504dd8"><code>4d10147</code></a> Bump actions/attest from 4.2.0 to 4.2.1 in the actions-minor group (<a href="https://redirect.github.com/actions/attest-build-provenance/issues/862">#862</a>)</li>
<li><a href="https://github.com/actions/attest-build-provenance/commit/e3fe62ef559997059fe8380e7d2b4c909e2d65f4"><code>e3fe62e</code></a> Bump the actions-minor group with 2 updates (<a href="https://redirect.github.com/actions/attest-build-provenance/issues/860">#860</a>)</li>
<li>See full diff in <a href="https://github.com/actions/attest-build-provenance/compare/0f67c3f4856b2e3261c31976d6725780e5e4c373...4d101475d8b20a2381f78447822ac1eab6504dd8">compare view</a></li>
</ul>
</details>
<br />
Updates `corentinmusard/otel-cicd-action` from 4.1.0 to 4.1.1
<details>
<summary>Release notes</summary>
<p><em>Sourced from <a href="https://github.com/corentinmusard/otel-cicd-action/releases">corentinmusard/otel-cicd-action's releases</a>.</em></p>
<blockquote>
<h2>v4.1.1</h2>
<h3>Changed</h3>
<ul>
<li>CICD: skip the sourcemap when diffing dist. Streaming its diff to the job log dominated
the Validate dist step, pushing the build job to nearly ten minutes on a stale-bundle failure.</li>
<li>Build: rebuild dist for undici 6.28.0. Dependabot only updates package-lock.json,
but undici is a runtime dependency that rollup inlines into the committed bundle.</li>
<li>Editorial: Use Dash0 endpoints in README examples.</li>
</ul>
</blockquote>
</details>
<details>
<summary>Changelog</summary>
<p><em>Sourced from <a href="https://github.com/dash0hq/otel-cicd-action/blob/main/CHANGELOG.md">corentinmusard/otel-cicd-action's changelog</a>.</em></p>
<blockquote>
<h1>Changelog</h1>
<p>All notable changes to this project will be documented in this file.</p>
<p>The format is based on <a href="https://keepachangelog.com/en/1.1.0/">Keep a Changelog</a>,
and this project adheres to <a href="https://semver.org/spec/v2.0.0.html">Semantic Versioning</a>.</p>
<h2>[Unreleased]</h2>
<h2>[4.1.1] - 2026-08-14</h2>
<h3>Changed</h3>
<ul>
<li>CICD: skip the sourcemap when diffing dist. Streaming its diff to the job log dominated
the Validate dist step, pushing the build job to nearly ten minutes on a stale-bundle failure.</li>
<li>Build: rebuild dist for undici 6.28.0. Dependabot only updates package-lock.json,
but undici is a runtime dependency that rollup inlines into the committed bundle.</li>
<li>Editorial: Use Dash0 endpoints in README examples.</li>
</ul>
<h2>[4.1.0] - 2026-07-27</h2>
<h3>Added</h3>
<ul>
<li>Added the <code>otlpInsecureSkipVerify</code> input for exporting to trusted internal OTLP endpoints whose
TLS certificates cannot be verified.
Thanks <a href="https://github.com/OneCyrus"><code>@OneCyrus</code></a>!</li>
</ul>
<h3>Changed</h3>
<ul>
<li>
<p>Span status now follows the OpenTelemetry
<a href="https://opentelemetry.io/docs/specs/semconv/general/recording-errors/">recording-errors</a>
conventions: it is set to <code>Error</code> (with the standard <code>error.type</code> attribute) for the
<code>failure</code>, <code>timed_out</code>, and <code>startup_failure</code> conclusions, and left unset otherwise
(previously it was set to <code>Ok</code> on success and <code>Error</code> only for <code>failure</code>).</p>
</li>
<li>
<p><strong>Removed</strong> the non-standard boolean <code>error</code> attribute from workflow, job, and step spans.
Use the span status or the <code>error.type</code> attribute instead.</p>
</li>
<li>
<p>The <code>github.job.labels</code> attribute is now exported as an array of strings instead of a
comma-separated string, consistent with the PR label attributes.</p>
</li>
<li>
<p>The repository was transferred from <code>corentinmusard/otel-cicd-action</code> to
<a href="https://github.com/dash0hq/otel-cicd-action"><code>dash0hq/otel-cicd-action</code></a> and is now maintained
by <a href="https://www.dash0.com">Dash0</a>. Existing <code>uses: corentinmusard/otel-cicd-action@v4</code> references
keep working via GitHub's redirect, but updating to <code>dash0hq/otel-cicd-action@v4</code> is recommended.</p>
</li>
</ul>
<h2>[4.0.1] - 2026-03-18</h2>
<h3>Fixed</h3>
<ul>
<li>Updated dependencies</li>
</ul>
<!-- raw HTML omitted -->
</blockquote>
<p>... (truncated)</p>
</details>
<details>
<summary>Commits</summary>
<ul>
<li><a href="https://github.com/dash0hq/otel-cicd-action/commit/895874bfae14f840e3032f1a14c3f2b45c93f4af"><code>895874b</code></a> chore: prepare release v4.1.1 (<a href="https://redirect.github.com/corentinmusard/otel-cicd-action/issues/90">#90</a>)</li>
<li><a href="https://github.com/dash0hq/otel-cicd-action/commit/f6952e3b6c9f2e03aa1f9d2b161fa6a6a0a96263"><code>f6952e3</code></a> chore: update CHANGELOG with editorial/build/cicd updates. (<a href="https://redirect.github.com/corentinmusard/otel-cicd-action/issues/89">#89</a>)</li>
<li><a href="https://github.com/dash0hq/otel-cicd-action/commit/77885591de01eecfd4c5d7efa78006ce8fd9044f"><code>7788559</code></a> ci: skip the sourcemap when diffing dist</li>
<li><a href="https://github.com/dash0hq/otel-cicd-action/commit/46633641d19b828dc18d037ca6cd53e29dd0e2c5"><code>4663364</code></a> build: rebuild dist for undici 6.28.0</li>
<li><a href="https://github.com/dash0hq/otel-cicd-action/commit/31e4d4b3334b0eb76e7599441ab4475f8931e65b"><code>31e4d4b</code></a> build(deps): bump the npm_and_yarn group across 1 directory with 2 updates</li>
<li><a href="https://github.com/dash0hq/otel-cicd-action/commit/85d7618854e54f909adad504d6233c1dfed19b87"><code>85d7618</code></a> Use Dash0 endpoints in README examples, drop competitor links from website docs</li>
<li><a href="https://github.com/dash0hq/otel-cicd-action/commit/02e43cc25881ba326ebed7bd6b68f737d73c34d3"><code>02e43cc</code></a> chore: drop repository badges from the synced website docs (<a href="https://redirect.github.com/corentinmusard/otel-cicd-action/issues/85">#85</a>)</li>
<li>See full diff in <a href="https://github.com/corentinmusard/otel-cicd-action/compare/6022e68732c1cab4d2c8218b810f69006ee5cc34...895874bfae14f840e3032f1a14c3f2b45c93f4af">compare view</a></li>
</ul>
</details>
<br />
Updates `dawidd6/action-download-artifact` from 21 to 24
<details>
<summary>Release notes</summary>
<p><em>Sourced from <a href="https://github.com/dawidd6/action-download-artifact/releases">dawidd6/action-download-artifact's releases</a>.</em></p>
<blockquote>
<h2>v24</h2>
<h2>What's Changed</h2>
<ul>
<li>fix: preserve workflow run ordering by <a href="https://github.com/dawidd6"><code>@dawidd6</code></a> in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/425">dawidd6/action-download-artifact#425</a></li>
</ul>
<p><strong>Full Changelog</strong>: <a href="https://github.com/dawidd6/action-download-artifact/compare/v23...v24">https://github.com/dawidd6/action-download-artifact/compare/v23...v24</a></p>
<h2>v23</h2>
<h1>Info</h1>
<p>This release is rather big. Not gonna lie to you, I've used LLMs to get there. I can't vouch for all the changes but CI confirms there <em>should</em> be no regressions. Please report any issues you encounter with this release. You can always revert to previous working one.</p>
<h2>What's Changed</h2>
<ul>
<li>joint fixes and improvements by <a href="https://github.com/dawidd6"><code>@dawidd6</code></a> in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/417">dawidd6/action-download-artifact#417</a></li>
<li>build(deps): update brace-expansion by <a href="https://github.com/dawidd6"><code>@dawidd6</code></a> in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/418">dawidd6/action-download-artifact#418</a></li>
<li>Harden upload workflow token scope with explicit <code>GITHUB_TOKEN</code> permissions by <a href="https://github.com/dawidd6"><code>@dawidd6</code></a> with <a href="https://github.com/Copilot"><code>@Copilot</code></a> in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/419">dawidd6/action-download-artifact#419</a></li>
<li>fix: stream GHES artifact downloads by <a href="https://github.com/dawidd6"><code>@dawidd6</code></a> in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/420">dawidd6/action-download-artifact#420</a></li>
<li>chore: simplify action implementation by <a href="https://github.com/dawidd6"><code>@dawidd6</code></a> in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/421">dawidd6/action-download-artifact#421</a></li>
<li>chore: remove redundant action code by <a href="https://github.com/dawidd6"><code>@dawidd6</code></a> in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/422">dawidd6/action-download-artifact#422</a></li>
<li>chore: simplify artifact filtering by <a href="https://github.com/dawidd6"><code>@dawidd6</code></a> in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/423">dawidd6/action-download-artifact#423</a></li>
</ul>
<p><strong>Full Changelog</strong>: <a href="https://github.com/dawidd6/action-download-artifact/compare/v22...v23">https://github.com/dawidd6/action-download-artifact/compare/v22...v23</a></p>
<h2>v22</h2>
<h2>What's Changed</h2>
<ul>
<li>build(deps): bump fast-xml-builder from 1.1.5 to 1.2.0 by <a href="https://github.com/dependabot"><code>@dependabot</code></a>[bot] in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/406">dawidd6/action-download-artifact#406</a></li>
<li>build(deps): bump actions/checkout from 6 to 7 by <a href="https://github.com/dependabot"><code>@dependabot</code></a>[bot] in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/407">dawidd6/action-download-artifact#407</a></li>
<li>build(deps): bump undici from 6.24.0 to 6.27.0 by <a href="https://github.com/dependabot"><code>@dependabot</code></a>[bot] in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/408">dawidd6/action-download-artifact#408</a></li>
<li>build(deps): bump filesize from 11.0.17 to 11.0.18 by <a href="https://github.com/dependabot"><code>@dependabot</code></a>[bot] in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/409">dawidd6/action-download-artifact#409</a></li>
<li>build(deps): bump filesize from 11.0.18 to 11.0.19 by <a href="https://github.com/dependabot"><code>@dependabot</code></a>[bot] in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/410">dawidd6/action-download-artifact#410</a></li>
<li>build(deps): bump adm-zip from 0.5.17 to 0.5.18 by <a href="https://github.com/dependabot"><code>@dependabot</code></a>[bot] in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/411">dawidd6/action-download-artifact#411</a></li>
<li>build(deps): bump filesize from 11.0.19 to 11.0.22 by <a href="https://github.com/dependabot"><code>@dependabot</code></a>[bot] in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/412">dawidd6/action-download-artifact#412</a></li>
<li>build(deps): bump adm-zip from 0.5.18 to 0.6.0 by <a href="https://github.com/dependabot"><code>@dependabot</code></a>[bot] in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/414">dawidd6/action-download-artifact#414</a></li>
<li>build(deps): bump undici from 6.27.0 to 6.28.0 by <a href="https://github.com/dependabot"><code>@dependabot</code></a>[bot] in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/415">dawidd6/action-download-artifact#415</a></li>
<li>node_modules: update by <a href="https://github.com/dawidd6"><code>@dawidd6</code></a> in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/416">dawidd6/action-download-artifact#416</a></li>
<li>Continue downloading after expired artifacts in non-fatal modes by <a href="https://github.com/oiahoon"><code>@oiahoon</code></a> in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/413">dawidd6/action-download-artifact#413</a></li>
</ul>
<h2>New Contributors</h2>
<ul>
<li><a href="https://github.com/oiahoon"><code>@oiahoon</code></a> made their first contribution in <a href="https://redirect.github.com/dawidd6/action-download-artifact/pull/413">dawidd6/action-download-artifact#413</a></li>
</ul>
<p><strong>Full Changelog</strong>: <a href="https://github.com/dawidd6/action-download-artifact/compare/v21...v22">https://github.com/dawidd6/action-download-artifact/compare/v21...v22</a></p>
</blockquote>
</details>
<details>
<summary>Commits</summary>
<ul>
<li><a href="https://github.com/dawidd6/action-download-artifact/commit/d63b86af1b34672e53c440b1b83979861906bad7"><code>d63b86a</code></a> fix: preserve workflow run ordering (<a href="https://redirect.github.com/dawidd6/action-download-artifact/issues/425">#425</a>)</li>
<li><a href="https://github.com/dawidd6/action-download-artifact/commit/57aa996fc1713cc1579039614f4645a7f4841fd4"><code>57aa996</code></a> chore: simplify artifact filtering (<a href="https://redirect.github.com/dawidd6/action-download-artifact/issues/423">#423</a>)</li>
<li><a href="https://github.com/dawidd6/action-download-artifact/commit/7325d4694298cd63b2f5a28900f2e4c8dab127a0"><code>7325d46</code></a> chore: remove redundant action code (<a href="https://redirect.github.com/dawidd6/action-download-artifact/issues/422">#422</a>)</li>
<li><a href="https://github.com/dawidd6/action-download-artifact/commit/fdd98d5df412e1b2e66b544b4db823ae8046b226"><code>fdd98d5</code></a> chore: simplify action implementation (<a href="https://redirect.github.com/dawidd6/action-download-artifact/issues/421">#421</a>)</li>
<li><a href="https://github.com/dawidd6/action-download-artifact/commit/2156211c9c4919f6f7da650308a4fc3b9f44d772"><code>2156211</code></a> fix: stream GHES artifact downloads (<a href="https://redirect.github.com/dawidd6/action-download-artifact/issues/420">#420</a>)</li>
<li><a href="https://github.com/dawidd6/action-download-artifact/commit/a64f37ff0a7db82e37448a821118dd5688dd64ad"><code>a64f37f</code></a> Harden upload workflow token scope with explicit <code>GITHUB_TOKEN</code> permissions (...</li>
<li><a href="https://github.com/dawidd6/action-download-artifact/commit/b3e5a4caa7c334ec55e9d0966e40a0f2e1924853"><code>b3e5a4c</code></a> build(deps): update brace-expansion (<a href="https://redirect.github.com/dawidd6/action-download-artifact/issues/418">#418</a>)</li>
<li><a href="https://github.com/dawidd6/action-download-artifact/commit/01843d918b2bb1cf169ac0fc542e6c3181aa9219"><code>01843d9</code></a> joint fixes and improvements (<a href="https://redirect.github.com/dawidd6/action-download-artifact/issues/417">#417</a>)</li>
<li><a href="https://github.com/dawidd6/action-download-artifact/commit/7f871e041ed7fe12467d2d4196da8a466c5311ff"><code>7f871e0</code></a> fix: continue after expired artifacts (<a href="https://redirect.github.com/dawidd6/action-download-artifact/issues/413">#413</a>)</li>
<li><a href="https://github.com/dawidd6/action-download-artifact/commit/0015e1bd466de77cbc453080b6e744fe360b3c7b"><code>0015e1b</code></a> node_modules: update (<a href="https://redirect.github.com/dawidd6/action-download-artifact/issues/416">#416</a>)</li>
<li>Additional commits viewable in <a href="https://github.com/dawidd6/action-download-artifact/compare/b6e2e70617bc3265edd6dab6c906732b2f1ae151...d63b86af1b34672e53c440b1b83979861906bad7">compare view</a></li>
</ul>
</details>
<br />
Updates `softprops/action-gh-release` from 3.0.2 to 3.0.3
<details>
<summary>Release notes</summary>
<p><em>Sourced from <a href="https://github.com/softprops/action-gh-release/releases">softprops/action-gh-release's releases</a>.</em></p>
<blockquote>
<h2>v3.0.3</h2>
<p><code>3.0.3</code> is a maintenance release with updated dependencies. It also safely
classifies malformed GitHub API errors to avoid secondary failures (<a href="https://redirect.github.com/softprops/action-gh-release/issues/822">#822</a>).</p>
<h2>What's Changed</h2>
<h3>Bug fixes 🐛</h3>
<ul>
<li>fix: safely classify GitHub API errors by <a href="https://github.com/chenrui333"><code>@chenrui333</code></a> in <a href="https://redirect.github.com/softprops/action-gh-release/pull/822">softprops/action-gh-release#822</a></li>
</ul>
<h3>Other Changes 🔄</h3>
<ul>
<li>dependency updates</li>
</ul>
</blockquote>
</details>
<details>
<summary>Changelog</summary>
<p><em>Sourced from <a href="https://github.com/softprops/action-gh-release/blob/master/CHANGELOG.md">softprops/action-gh-release's changelog</a>.</em></p>
<blockquote>
<h2>3.0.3</h2>
<p><code>3.0.3</code> is a maintenance release with updated dependencies. It also safely
classifies malformed GitHub API errors to avoid secondary failures (<a href="https://redirect.github.com/softprops/action-gh-release/issues/822">#822</a>).</p>
<h2>What's Changed</h2>
<h3>Bug fixes 🐛</h3>
<ul>
<li>fix: safely classify GitHub API errors by <a href="https://github.com/chenrui333"><code>@chenrui333</code></a> in <a href="https://redirect.github.com/softprops/action-gh-release/pull/822">softprops/action-gh-release#822</a></li>
</ul>
<h3>Other Changes 🔄</h3>
<ul>
<li>dependency updates</li>
</ul>
<h2>3.0.2</h2>
<p><code>3.0.2</code> is a patch release focused on release reliability and compatibility. It
reuses existing draft releases when publishing prereleases, supports replacing
release assets on Gitea, hardens streamed asset uploads, and provides clearer
release-creation diagnostics. It also includes TypeScript, coverage, and tooling
maintenance merged since <code>3.0.1</code>.</p>
<p>This release fixes <a href="https://redirect.github.com/softprops/action-gh-release/issues/795">#795</a>, <a href="https://redirect.github.com/softprops/action-gh-release/issues/438">#438</a>, and <a href="https://redirect.github.com/softprops/action-gh-release/issues/803">#803</a>. The upload transport hardening covers the
historical failure reported in <a href="https://redirect.github.com/softprops/action-gh-release/issues/790">#790</a>, although current hosted Node 24 runners did
not reproduce it naturally. The diagnostics work is related to <a href="https://redirect.github.com/softprops/action-gh-release/issues/786">#786</a> and does not
claim a reproducible release-creation fix.</p>
<h2>What's Changed</h2>
<h3>Exciting New Features 🎉</h3>
<ul>
<li>feat: improve release error reporting and test coverage by <a href="https://github.com/chenrui333"><code>@chenrui333</code></a> in <a href="https://redirect.github.com/softprops/action-gh-release/pull/813">softprops/action-gh-release#813</a></li>
</ul>
<h3>Bug fixes 🐛</h3>
<ul>
<li>fix: publish existing draft releases as prereleases by <a href="https://github.com/godfengliang"><code>@godfengliang</code></a> in <a href="https://redirect.github.com/softprops/action-gh-release/pull/801">softprops/action-gh-release#801</a></li>
<li>fix: upload small checksum assets reliably by <a href="https://github.com/chenrui333"><code>@chenrui333</code></a> in <a href="https://redirect.github.com/softprops/action-gh-release/pull/815">softprops/action-gh-release#815</a></li>
<li>fix: replace existing release assets on Gitea by <a href="https://github.com/chenrui333"><code>@chenrui333</code></a> in <a href="https://redirect.github.com/softprops/action-gh-release/pull/816">softprops/action-gh-release#816</a></li>
<li>fix: clarify release creation 404 errors by <a href="https://github.com/chenrui333"><code>@chenrui333</code></a> in <a href="https://redirect.github.com/softprops/action-gh-release/pull/817">softprops/action-gh-release#817</a></li>
</ul>
<h3>Other Changes 🔄</h3>
<ul>
<li>chore(deps): upgrade TypeScript to 7 by <a href="https://github.com/chenrui333"><code>@chenrui333</code></a> in <a href="https://redirect.github.com/softprops/action-gh-release/pull/812">softprops/action-gh-release#812</a></li>
<li>chore(deps): remove unused TypeScript tooling by <a href="https://github.com/chenrui333"><code>@chenrui333</code></a> in <a href="https://redirect.github.com/softprops/action-gh-release/pull/814">softprops/action-gh-release#814</a></li>
<li>dependency, Node 24 pin, and CI maintenance merged since <code>3.0.1</code></li>
</ul>
<h2>3.0.1</h2>
<ul>
<li>maintenance release with updated dependencies</li>
</ul>
<!-- raw HTML omitted -->
</blockquote>
<p>... (truncated)</p>
</details>
<details>
<summary>Commits</summary>
<ul>
<li><a href="https://github.com/softprops/action-gh-release/commit/efb35369e0ad2afab669f228072c1b0d510eae64"><code>efb3536</code></a> release 3.0.3 (<a href="https://redirect.github.com/softprops/action-gh-release/issues/840">#840</a>)</li>
<li><a href="https://github.com/softprops/action-gh-release/commit/6441963a7597ab67f36fea0287a7ae58a9bfd8fe"><code>6441963</code></a> chore(deps): bump the npm group with 2 updates (<a href="https://redirect.github.com/softprops/action-gh-release/issues/839">#839</a>)</li>
<li><a href="https://github.com/softprops/action-gh-release/commit/e5ee6bc58a36b838b92fc1217f2e4b414b5abcc8"><code>e5ee6bc</code></a> chore(deps): bump esbuild from 0.28.1 to 0.28.2 in the npm group (<a href="https://redirect.github.com/softprops/action-gh-release/issues/837">#837</a>)</li>
<li><a href="https://github.com/softprops/action-gh-release/commit/d1e66170d32c9ec7bbcb7fae044d3d686ce304d3"><code>d1e6617</code></a> chore(deps): bump undici from 6.27.0 to 6.28.0 (<a href="https://redirect.github.com/softprops/action-gh-release/issues/831">#831</a>)</li>
<li><a href="https://github.com/softprops/action-gh-release/commit/64037519ba20f54c01bc1dc90342c929aac5a2fa"><code>6403751</code></a> chore(deps): bump the npm group with 2 updates (<a href="https://redirect.github.com/softprops/action-gh-release/issues/835">#835</a>)</li>
<li><a href="https://github.com/softprops/action-gh-release/commit/7c7184b6876126a5df15adc5b679dc450a393725"><code>7c7184b</code></a> chore(deps): bump postcss from 8.5.19 to 8.5.25 (<a href="https://redirect.github.com/softprops/action-gh-release/issues/833">#833</a>)</li>
<li><a href="https://github.com/softprops/action-gh-release/commit/0f3f0d2943676d58f9698b3ab590c2056023d77d"><code>0f3f0d2</code></a> chore(deps): bump brace-expansion from 5.0.8 to 5.0.9 (<a href="https://redirect.github.com/softprops/action-gh-release/issues/832">#832</a>)</li>
<li><a href="https://github.com/softprops/action-gh-release/commit/77fb938f2f95e717ce6705d2909af527263360a0"><code>77fb938</code></a> chore(deps): bump prettier from 3.9.5 to 3.9.6 in the npm group (<a href="https://redirect.github.com/softprops/action-gh-release/issues/830">#830</a>)</li>
<li><a href="https://github.com/softprops/action-gh-release/commit/5a6f51711ce2ba103b78f5e9550f810679f11e0e"><code>5a6f517</code></a> chore(deps): bump brace-expansion from 5.0.7 to 5.0.8 (<a href="https://redirect.github.com/softprops/action-gh-release/issues/828">#828</a>)</li>
<li><a href="https://github.com/softprops/action-gh-release/commit/a3c91c98f80000f5b06c7fc0327c54f51c6ab7d8"><code>a3c91c9</code></a> chore(deps): bump the github-actions group with 2 updates (<a href="https://redirect.github.com/softprops/action-gh-release/issues/825">#825</a>)</li>
<li>Additional commits viewable in <a href="https://github.com/softprops/action-gh-release/compare/3d0d9888cb7fd7b750713d6e236d1fcb99157228...efb35369e0ad2afab669f228072c1b0d510eae64">compare view</a></li>
</ul>
</details>
<br />
|
dependencies
github_actions
CI
|
23/23 |
.github/workflows/actionlint.yml,.github/workflows/add_label_from_diff.yaml,.github/workflows/build_template.yml,.github/workflows/cache_test.yml,.github/workflows/check_pr_titles.yaml,.github/workflows/daily.yml,.github/workflows/docker_build.yml,.github/workflows/export_crossrefs.yml,.github/workflows/export_telemetry.yaml,.github/workflows/latest_import.yml,.github/workflows/maintainer_bors_wf_run.yml,.github/workflows/maintainer_merge_wf_run.yml,.github/workflows/nightly_merge_master.yml,.github/workflows/nolints.yml,.github/workflows/release.yml,.github/workflows/remove_deprecated_decls.yml,.github/workflows/rm_set_option.yml,.github/workflows/shake.yaml,.github/workflows/update_dependencies.yml,.github/workflows/weekly-lints.yml |
20 |
1 |
['github-actions'] |
nobody |
5-10364 5 days ago |
20-15536 20 days ago |
20-15310 20 days |
0 |
| 43485 |
lua-vr author:lua-vr |
feat(Measure/Prod): add map_prod_map_of_aemeasurable |
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|
t-measure-probability |
69/17 |
Mathlib/MeasureTheory/Group/Convolution.lean,Mathlib/MeasureTheory/Group/Measure.lean,Mathlib/MeasureTheory/Measure/GiryMonad.lean,Mathlib/MeasureTheory/Measure/Prod.lean |
4 |
2 |
['github-actions', 'mathlib-bors'] |
nobody |
5-7504 5 days ago |
15-18826 15 days ago |
15-19781 15 days |
2 |
| 36086 |
Multramate author:Multramate |
feat(Algebra): add liftEquiv for groups, rings, algebras, and adjoin roots |
---
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|
t-algebra label:t-algebra$ |
49/1 |
Mathlib/Algebra/Polynomial/Bivariate.lean,Mathlib/GroupTheory/QuotientGroup/Defs.lean,Mathlib/RingTheory/AdjoinRoot.lean,Mathlib/RingTheory/Ideal/Quotient/Operations.lean |
4 |
7 |
['CBirkbeck', 'Multramate', 'dagurtomas', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
5-6531 5 days ago |
5-6531 5 days ago |
20-24325 20 days |
1 |
| 41377 |
tb65536 author:tb65536 |
refactor(RingTheory/RamificationInertia/Ramification): generalize `ramificationIdx_pos` |
Positivity of ramification index currently requires `Module.Finite`, but it is also true for Dedekind domains. This PR extracts a common generalization `ramificationIdx_pos_of_mem_minimalPrimes` and deduces these two facts as corollaries. This allows for a few more removals of the old `ramificationIdx'`.
---
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[](https://gitpod.io/from-referrer/)
|
t-ring-theory
t-algebra
large-import
label:t-algebra$ |
76/23 |
Mathlib/NumberTheory/NumberField/Completion/FinitePlace.lean,Mathlib/NumberTheory/RamificationInertia/HilbertTheory.lean,Mathlib/NumberTheory/RamificationInertia/Valuation.lean,Mathlib/RingTheory/DedekindDomain/Basic.lean,Mathlib/RingTheory/RamificationInertia/Ramification.lean |
5 |
3 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
5-706 5 days ago |
5-1792 5 days ago |
18-1846 18 days |
0 |
| 43649 |
JX-Mo author:JX-Mo |
feat(RepresentationTheory): add two simp lemmas |
We add two simp lemmas saying both the composition and precomposition with zero are zero
```
@[simp]
lemma comp_zero (f : IntertwiningMap σ τ) :
comp f (0 : IntertwiningMap ρ σ) = 0 := by ext; simp
@[simp]
lemma zero_comp (g : IntertwiningMap ρ σ) :
comp (0 : IntertwiningMap σ τ) g = 0 := by ext; simp
```
We also fix the names `add_comp` and `comp_add` |
t-algebra label:t-algebra$ |
12/4 |
Mathlib/RepresentationTheory/Intertwining.lean,Mathlib/RepresentationTheory/Rep/Basic.lean |
2 |
1 |
['github-actions', 'plp127'] |
nobody |
4-83717 4 days ago |
11-50383 11 days ago |
11-50189 11 days |
0 |
| 43059 |
vasnesterov author:vasnesterov |
feat(Tactic/Simproc): support `Prop`-valued dependent quantifiers in `existsAndEq` |
Search for equality `a = a'` inside `P : Prop` in `∃ h : P, Q h`. The latter proposition can be seen as a dependent conjunction `(h : P) ∧ Q h` so this is a direct generalization of what the simproc was already doing before.
It was requested in Zulip: https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/potential.20simp_procs/near/617574483
---
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[](https://gitpod.io/from-referrer/)
|
t-meta |
125/8 |
Mathlib/Tactic/Simproc/ExistsAndEq.lean,MathlibTest/Simproc/ExistsAndEq.lean |
2 |
11 |
['Vierkantor', 'github-actions', 'leanprover-radar', 'mathlib-dependent-issues', 'vasnesterov'] |
Vierkantor assignee:Vierkantor |
4-83148 4 days ago |
5-1997 5 days ago |
17-24433 17 days |
0 |
| 43832 |
Raph-DG author:Raph-DG |
feat(Topology): make locallyFinsupp.map an additive monoid homomorphism |
In this PR we slightly refactor locallyFinsupp.map by making it an additive monoid hom, and removing some superfluous assumptions from the type signature
---
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[](https://gitpod.io/from-referrer/)
|
t-topology |
62/30 |
Mathlib/AlgebraicGeometry/AlgebraicCycle/Basic.lean,Mathlib/Topology/LocallyFinsupp/Pushforward.lean |
2 |
1 |
['github-actions'] |
nobody |
4-80689 4 days ago |
4-81411 4 days ago |
4-81236 4 days |
0 |
| 38815 |
dagurtomas author:dagurtomas |
feat(Tactic/CategoryTheory): extend `@[to_app]` to natural transformations |
This extends `@[to_app]` and `to_app_of%` to natural transformations and equations already in `Cat`, while preserving specialization of bicategorical equations. Natural-transformation lemmas retain their universe parameters, and generated component lemmas use Lean’s standard `defeq`/`backward_defeq` inference.
|
t-category-theory
LLM-generated
t-meta
|
387/80 |
Mathlib/Tactic/CategoryTheory/ToApp.lean,Mathlib/Util/AddRelatedDecl.lean,MathlibTest/AddRelatedDecl.lean,MathlibTest/CategoryTheory/ToApp.lean |
4 |
10 |
['Vierkantor', 'dagurtomas', 'github-actions'] |
nobody |
4-80138 4 days ago |
4-81652 4 days ago |
130-73194 130 days |
0 |
| 42453 |
Multramate author:Multramate |
feat(NumberTheory/EllipticDivisibilitySequence): prove that a normalised elliptic divisibility sequence is an elliptic sequence |
This is the updated version of #13155 and contains the proof that a sequence satisfying the even and odd elliptic relations (with mild additional conditions) is an elliptic net and hence an elliptic sequence. This is the main argument in [Section 2 of Junyan's paper](https://arxiv.org/pdf/2604.05280). Previously it was broken down into hundreds of lines of multiple lemmas but I was able to condense it into a single lemma with multiple `wlog`s that are hopefully self-explanatory.
Co-authored-by: Junyan Xu <junyanxu.math@gmail.com>
---
- [x] depends on: #42477
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[](https://gitpod.io/from-referrer/)
|
t-algebra
t-number-theory
large-import
label:t-algebra$ |
154/8 |
Mathlib/Algebra/Polynomial/Coeff.lean,Mathlib/NumberTheory/EllipticDivisibilitySequence.lean |
2 |
49 |
['Multramate', 'YaelDillies', 'alreadydone', 'copilot-pull-request-reviewer', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'tb65536'] |
riccardobrasca and tb65536 assignee:tb65536 assignee:riccardobrasca |
4-76670 4 days ago |
4-79038 4 days ago |
37-70799 37 days |
0 |
| 36428 |
wrenna-robson author:wrenna-robson |
feat(Logic/Equiv/Fin): Streamline equiv definitions using mkDivMod |
This PR uses Fin.mkDivMod to streamline the related equivalence and introduces Nat.mkDivMod to a similar end.
---
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[](https://gitpod.io/from-referrer/)
|
t-data |
64/67 |
Mathlib/Analysis/SpecialFunctions/Complex/Arctan.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Series.lean,Mathlib/Data/Nat/Init.lean,Mathlib/Logic/Equiv/Fin/Basic.lean,Mathlib/NumberTheory/Height/MvPolynomial.lean,Mathlib/Order/Partition/Equipartition.lean |
6 |
6 |
['JovanGerb', 'github-actions', 'mathlib-merge-conflicts', 'wrenna-robson'] |
eric-wieser assignee:eric-wieser |
4-62954 4 days ago |
68-31164 68 days ago |
95-71679 95 days |
0 |
| 40534 |
mcdoll author:mcdoll |
feat(Algebra): introduce notation typeclass for composition of functions |
This PR defines two new typeclasses: `FComp` and `IsCompApply`. The former is just a notation typeclass with notation `(g ∘ᶠ f)` and the second one asserts that `(g ∘ᶠ f) x = g (f x)`.
---
There are two PRs that illustrate the use of these classes: #41169 and #41224
The second one is closer to what we actually implement here, but not sorry-free (because I ran into unrelated defeq abuse pretty far down the line)
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[](https://gitpod.io/from-referrer/)
|
t-algebra label:t-algebra$ |
108/15 |
Mathlib/Algebra/Notation/Defs.lean,Mathlib/Algebra/SkewMonoidAlgebra/Basic.lean,Mathlib/Analysis/Calculus/ContDiff/Bounds.lean,Mathlib/Data/FunLike/IsApply.lean,Mathlib/Geometry/Manifold/GroupLieAlgebra.lean,Mathlib/Geometry/Manifold/VectorField/LieBracket.lean,Mathlib/NumberTheory/Height/Basic.lean,Mathlib/Probability/Distributions/Gaussian/HasGaussianLaw/Independence.lean,Mathlib/RingTheory/Coalgebra/Basic.lean,Mathlib/Topology/VectorBundle/Hom.lean |
10 |
5 |
['eric-wieser', 'github-actions', 'jcommelin', 'mathlib-merge-conflicts'] |
ocfnash assignee:ocfnash |
4-62952 4 days ago |
34-67043 34 days ago |
74-39230 74 days |
0 |
| 41426 |
gmcninch-prof author:gmcninch-prof |
feat: add symmetric multilinear maps |
Define `SymmetricMap R M N ι`, the type of symmetric `R`-multilinear maps
from `ι → M` to `N` (i.e. multilinear maps invariant under permutation of
their arguments).
---
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The code is adapted from Kenny Lau's work
[here](https://github.com/kckennylau/EllipticCurve/blob/master/EllipticCurve/ProjectiveSpace/TensorProduct/SymmetricMap.lean)
-- see [`SymmetricMap`](https://github.com/gmcninch-prof/mathlib4/blob/symmetric-power-lift/Mathlib/LinearAlgebra/TensorProduct/SymmetricMap.lean).
This PR previously also contained the universal property / `lift` for
`SymmetricPower` (relating linear maps out of `Sym[R]^n M` to symmetric
multilinear maps), but per reviewer feedback on Zulip that work has been
split into a separate PR that depends on this one.
Zulip discussion [here](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/SymmetricPower.20universal.20property/near/608532652)
[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
label:t-algebra$ |
397/0 |
Mathlib.lean,Mathlib/LinearAlgebra/TensorProduct/SymmetricMap.lean |
2 |
10 |
['github-actions', 'gmcninch-prof', 'jcommelin'] |
ocfnash assignee:ocfnash |
4-62951 4 days ago |
70-80858 70 days ago |
72-48934 72 days |
1 |
| 42312 |
sfingali author:sfingali |
feat(Topology): huber (f-adic) rings |
### Summary
Defines Huber (f-adic) rings: topological rings admitting an open subring whose
subspace topology is the `I`-adic topology for a finitely generated ideal `I`
(Wedhorn, *Adic Spaces*, arXiv:1910.05934, Prop. and Def. 6.1, p. 46).
* `HuberRing.RingOfDefinition` — the pair of definition `(A₀, I)`: an open subring
`A₀ ⊆ A` with `IsAdic I` for a finitely generated ideal `I` of `A₀` (data).
* `HuberRing.IsHuberRing` — a topological ring admitting a ring of definition
(property).
* `HuberRing.ringOfDefinition_iff_open_adic` — Wedhorn, Lemma 6.2 (a) ↔ (b), p. 46:
a subring is a ring of definition iff it is open and adic.
This is the first step of a planned adic/perfectoid pipeline (Huber rings →
Huber pairs → continuous valuations → Spa → perfectoid fields → tilting), following
the design of the Lean 3 `lean-perfectoid-spaces` project (ring of definition as
data, Huber ring as a property). Follow-ups (depending on #40013's boundedness):
Lemma 6.2 (c) (ring of definition ⟺ open + bounded) and Cor. 6.4(3) (the
power-bounded elements form a subring, the union of all rings of definition).
### References
* T. Wedhorn, *Adic Spaces*, arXiv:1910.05934, Prop. and Def. 6.1, Lemma 6.2,
Cor. 6.4 (pp. 46–47).
|
t-topology
new-contributor
|
84/0 |
Mathlib.lean,Mathlib/Topology/Algebra/Nonarchimedean/HuberRing.lean |
2 |
6 |
['github-actions', 'pepamontero'] |
j-loreaux assignee:j-loreaux |
4-62950 4 days ago |
51-67799 51 days ago |
51-68242 51 days |
0 |
| 41299 |
JovanGerb author:JovanGerb |
chore(DomAct): clean up `DomMulAct`/`DomAddAct` instances |
This PR cleans up the `DomMulAct`/`DomAddAct` instances using `inferInstanceAs`.
Instead having the `MyClass Mᵐᵒᵖ` instance imply the `MyClass Mᵈᵐᵃ` instance, we use `MyClass M` as the hypothesis. For this to work, some instances need to be moved from the group file to the ring file, so that the required instances are available.
Additionally, `@[to_additive]` is now only used in the group instances and not the ring instances.
---
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t-group-theory
large-import
|
21/16 |
Mathlib/Algebra/Module/Hom.lean,Mathlib/Algebra/Module/LinearMap/Basic.lean,Mathlib/Algebra/Ring/Opposite.lean,Mathlib/GroupTheory/GroupAction/DomAct/Basic.lean |
4 |
1 |
['github-actions'] |
nobody |
4-62108 4 days ago |
81-8430 81 days ago |
81-8479 81 days |
0 |
| 40302 |
xroblot author:xroblot |
feat(Data/Nat/Digits): add digitsAppend API lemmas and List.mapIdx_replicate |
Adds some lemmas about `Nat.digitsAppend` and `List.mapIdx_replicate`:
These complete the basic API around `Nat.digitsAppend` (already in Mathlib) that is needed downstream to relate it to `Nat.digits` and to sums indexed via `List.mapIdx`.
:robot: This PR was extracted from the [SKW project](https://github.com/xroblot/SKW) by Claude. |
t-data |
55/0 |
Mathlib/Data/List/Indexes.lean,Mathlib/Data/Nat/Digits/Lemmas.lean |
2 |
10 |
['BoltonBailey', 'github-actions', 'xroblot'] |
eric-wieser assignee:eric-wieser |
4-44812 4 days ago |
5-25985 5 days ago |
104-32036 104 days |
0 |
| 42523 |
joelriou author:joelriou |
feat(AlgebraicTopology/SimplicialSet): the fundamental groupoid |
---
- [x] depends on: #42526
- [x] depends on: #42527
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|
t-algebraic-topology
maintainer-merge
|
359/0 |
Mathlib.lean,Mathlib/AlgebraicTopology/SimplicialObject/Basic.lean,Mathlib/AlgebraicTopology/SimplicialSet/FundamentalGroupoid/Basic.lean,MathlibTest/CategoryTheory/CheckDsimp.lean |
4 |
18 |
['github-actions', 'jcommelin', 'joelriou', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'robin-carlier'] |
robin-carlier assignee:robin-carlier |
4-43363 4 days ago |
4-44732 4 days ago |
37-65751 37 days |
5 |
| 43857 |
vihdzp author:vihdzp |
feat: split `transfiniteIterate` into `sup` and `inf` versions |
We deprecate `transfiniteIterate` and create `supTransfiniteIterate` and `infTransfiniteIterate` in its place. One of them uses suprema to compute the value at limit points, and the other uses infima.
The plan is to then use both of these definitions to deprecate `OrdinalApprox.lfpApprox` and `OrdinalApprox.gfpApprox`, which are simply specializations of these.
---
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|
tech debt
t-order
|
177/139 |
Mathlib/CategoryTheory/Abelian/GrothendieckCategory/EnoughInjectives.lean,Mathlib/CategoryTheory/ObjectProperty/LimitsClosure.lean,Mathlib/CategoryTheory/Presentable/SharplyLT/Basic.lean,Mathlib/Order/TransfiniteIteration.lean |
4 |
1 |
['github-actions'] |
nobody |
4-42718 4 days ago |
5-48751 5 days ago |
5-49416 5 days |
0 |
| 42276 |
yuanyi-350 author:yuanyi-350 |
feat(IMO): archive IMO 2026 Q5 |
|
IMO
maintainer-merge
|
203/0 |
Archive.lean,Archive/Imo/Imo2026Q5.lean |
2 |
16 |
['felixpernegger', 'github-actions', 'joneugster', 'mathlib-merge-conflicts', 'themathqueen', 'yuanyi-350'] |
joneugster assignee:joneugster |
4-31508 4 days ago |
8-11595 8 days ago |
49-28361 49 days |
0 |
| 36814 |
YaelDillies author:YaelDillies |
refactor(Combinatorics/SimpleGraph): no proof obligation in `rotate` |
If the walk doesn't go through the new vertex, return `nil` instead.
---
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|
t-combinatorics |
41/32 |
Mathlib/Combinatorics/SimpleGraph/Acyclic.lean,Mathlib/Combinatorics/SimpleGraph/Connectivity/Connected.lean,Mathlib/Combinatorics/SimpleGraph/Connectivity/Subgraph.lean,Mathlib/Combinatorics/SimpleGraph/Hamiltonian.lean,Mathlib/Combinatorics/SimpleGraph/Matching.lean,Mathlib/Combinatorics/SimpleGraph/Paths.lean,Mathlib/Combinatorics/SimpleGraph/Walk/Decomp.lean |
7 |
18 |
['SnirBroshi', 'YaelDillies', 'b-mehta', 'bryangingechen', 'eric-wieser', 'github-actions', 'jcommelin', 'mathlib-bors', 'mathlib-merge-conflicts'] |
nobody |
4-28485 4 days ago |
4-29898 4 days ago |
166-25904 166 days |
0 |
| 43203 |
SnirBroshi author:SnirBroshi |
fix(Tactic/FastInstance): telescope over instance families |
Fix `fast_instance%` to support for instance families (e.g. `Π i, Group (G i)` and `DecidableEq α`) (regression since #36420), both for the top-level instance and nested instances.
---
The `forallTelescopeReducing` only telescoped the `expectedType` but not `inst`; we have to `mkAppN` and give it the telescope metavariables.
Also moved the `forallTelescopeReducing` call to inside the function to restore support for nested instance families as well.
Added a bunch of tests, and also tweaked the docstring of `inferInstanceAs%` since it was inaccurate after Lean shipped a new `inferInstanceAs` elaborator (which wraps instances in auxiliary semireducible defs).
[#mathlib4 > fast_instance% recursion](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/fast_instance.25.20recursion/with/619696862)
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|
t-meta |
135/7 |
Mathlib/Tactic/FastInstance.lean,MathlibTest/FastInstance.lean |
2 |
17 |
['JovanGerb', 'SnirBroshi', 'Vierkantor', 'github-actions'] |
Vierkantor assignee:Vierkantor |
4-28482 4 days ago |
5-19895 5 days ago |
23-2998 23 days |
1 |
| 41981 |
YaelDillies author:YaelDillies |
refactor(Algebra/Polynomial): make into an `abbrev` of `AddMonoidAlgebra` |
... and deprecate the declarations that are now tautological (`toFinsupp`/`ofFinsupp`, `coeff` and their API). For some of the `Polynomial` declarations that needed changing, it was simplest to replace them with the corresponding `AddMonoidAlgebra` one. Note that this replacement is far from exhaustive (a majority of the `Polynomial` API could be replaced this way).
Note that `algebraMap R R[X]` has changed defeq.
[Zulip](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Reworking.20Finsupp.2C.20MonoidAlgebra.2C.20HahnSeries.2E.20PowerSeries/with/609275708)
Generated through several rounds of manual review with Claude Opus. Heavily edited by hand afterwards.
Assisted-by: Claude Opus 4.8
---
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|
tech debt
t-algebra
LLM-generated
label:t-algebra$ |
544/763 |
Counterexamples/Cyclotomic105.lean,Counterexamples/MapFloor.lean,Counterexamples/MonicNonRegular.lean,Mathlib/Algebra/CubicDiscriminant.lean,Mathlib/Algebra/Lie/Rank.lean,Mathlib/Algebra/Module/LinearMap/Polynomial.lean,Mathlib/Algebra/MonoidAlgebra/MapDomain.lean,Mathlib/Algebra/MonoidAlgebra/Support.lean,Mathlib/Algebra/MvPolynomial/Equiv.lean,Mathlib/Algebra/Polynomial/AlgebraMap.lean,Mathlib/Algebra/Polynomial/Basic.lean,Mathlib/Algebra/Polynomial/Basis.lean,Mathlib/Algebra/Polynomial/BigOperators.lean,Mathlib/Algebra/Polynomial/Cardinal.lean,Mathlib/Algebra/Polynomial/Coeff.lean,Mathlib/Algebra/Polynomial/CoeffMem.lean,Mathlib/Algebra/Polynomial/Degree/Defs.lean,Mathlib/Algebra/Polynomial/Degree/Domain.lean,Mathlib/Algebra/Polynomial/Degree/IsMonicOfDegree.lean,Mathlib/Algebra/Polynomial/Degree/Lemmas.lean,Mathlib/Algebra/Polynomial/Degree/Operations.lean,Mathlib/Algebra/Polynomial/Degree/Support.lean,Mathlib/Algebra/Polynomial/Degree/TrailingDegree.lean,Mathlib/Algebra/Polynomial/Degree/Units.lean,Mathlib/Algebra/Polynomial/Derivative.lean,Mathlib/Algebra/Polynomial/Div.lean,Mathlib/Algebra/Polynomial/EraseLead.lean,Mathlib/Algebra/Polynomial/Eval/Algebra.lean,Mathlib/Algebra/Polynomial/Eval/Coeff.lean,Mathlib/Algebra/Polynomial/Eval/Defs.lean,Mathlib/Algebra/Polynomial/Eval/Degree.lean,Mathlib/Algebra/Polynomial/FieldDivision.lean,Mathlib/Algebra/Polynomial/GroupRingAction.lean,Mathlib/Algebra/Polynomial/HasseDeriv.lean,Mathlib/Algebra/Polynomial/Homogenize.lean,Mathlib/Algebra/Polynomial/Inductions.lean,Mathlib/Algebra/Polynomial/Laurent.lean,Mathlib/Algebra/Polynomial/Lifts.lean,Mathlib/Algebra/Polynomial/Module/Basic.lean,Mathlib/Algebra/Polynomial/Monic.lean,Mathlib/Algebra/Polynomial/Monomial.lean,Mathlib/Algebra/Polynomial/OfFn.lean,Mathlib/Algebra/Polynomial/Reverse.lean,Mathlib/Algebra/Polynomial/Roots.lean,Mathlib/Algebra/Polynomial/RuleOfSigns.lean,Mathlib/Algebra/Polynomial/Sequence.lean,Mathlib/Algebra/Polynomial/Splits.lean,Mathlib/Algebra/Polynomial/UnitTrinomial.lean,Mathlib/Algebra/Ring/Subring/IntPolynomial.lean,Mathlib/AlgebraicGeometry/EllipticCurve/DivisionPolynomial/Degree.lean,Mathlib/Analysis/Polynomial/CauchyBound.lean,Mathlib/Analysis/Polynomial/Fourier.lean,Mathlib/FieldTheory/Finite/Basic.lean,Mathlib/FieldTheory/Minpoly/Field.lean,Mathlib/FieldTheory/Minpoly/MinpolyDiv.lean,Mathlib/FieldTheory/SeparablyGenerated.lean,Mathlib/LinearAlgebra/Finsupp/VectorSpace.lean,Mathlib/LinearAlgebra/Lagrange.lean,Mathlib/LinearAlgebra/Matrix/Charpoly/Coeff.lean,Mathlib/LinearAlgebra/Matrix/Charpoly/Univ.lean,Mathlib/LinearAlgebra/Matrix/GeneralLinearGroup/FinTwo.lean,Mathlib/LinearAlgebra/Matrix/Polynomial.lean,Mathlib/NumberTheory/BernoulliPolynomials.lean,Mathlib/RingTheory/AdjoinRoot.lean,Mathlib/RingTheory/Algebraic/Basic.lean,Mathlib/RingTheory/Algebraic/Integral.lean,Mathlib/RingTheory/Derivation/MapCoeffs.lean,Mathlib/RingTheory/IntegralClosure/IsIntegralClosure/Basic.lean,Mathlib/RingTheory/Invariant/Basic.lean,Mathlib/RingTheory/IsAdjoinRoot.lean,Mathlib/RingTheory/Jacobson/Polynomial.lean,Mathlib/RingTheory/KrullDimension/Polynomial.lean,Mathlib/RingTheory/MatrixPolynomialAlgebra.lean,Mathlib/RingTheory/MvPolynomial/Homogeneous.lean,Mathlib/RingTheory/Norm/Basic.lean,Mathlib/RingTheory/Polynomial/Basic.lean,Mathlib/RingTheory/Polynomial/Cyclotomic/Basic.lean,Mathlib/RingTheory/Polynomial/Hermite/Basic.lean,Mathlib/RingTheory/Polynomial/HilbertPoly.lean,Mathlib/RingTheory/Polynomial/Ideal.lean,Mathlib/RingTheory/Polynomial/IntegralNormalization.lean,Mathlib/RingTheory/Polynomial/IrreducibleRing.lean,Mathlib/RingTheory/Polynomial/Nilpotent.lean,Mathlib/RingTheory/Polynomial/Opposites.lean,Mathlib/RingTheory/Polynomial/ScaleRoots.lean,Mathlib/RingTheory/Polynomial/Subring.lean,Mathlib/RingTheory/PolynomialAlgebra.lean,Mathlib/RingTheory/PowerBasis.lean,Mathlib/RingTheory/PowerSeries/Basic.lean,Mathlib/RingTheory/PowerSeries/Derivative.lean,Mathlib/RingTheory/PowerSeries/Trunc.lean,Mathlib/RingTheory/ReesAlgebra.lean,Mathlib/RingTheory/Spectrum/Prime/ChevalleyComplexity.lean,Mathlib/RingTheory/Spectrum/Prime/IsOpenComapC.lean,Mathlib/RingTheory/Spectrum/Prime/Topology.lean,Mathlib/RingTheory/Trace/Basic.lean,Mathlib/RingTheory/ZariskisMainTheorem.lean,Mathlib/Tactic/ComputeDegree.lean,Mathlib/Tactic/ReduceModChar.lean,MathlibTest/ComputeDegree.lean |
101 |
12 |
['NoahW314', 'YaelDillies', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts', 'tb65536'] |
nobody |
4-27694 4 days ago |
4-31092 4 days ago |
49-85377 49 days |
0 |
| 42110 |
Zeta-Wu author:Zeta-Wu |
feat: add path length for paths in pseudo emetric spaces |
This PR defines the length of a path in a `PseudoEMetricSpace` as its variation on the unit interval.
It proves the basic properties of path length:
- the endpoint distance is bounded by the length;
- the constant path has length zero;
- reversing a path preserves its length;
- concatenating two paths adds their lengths.
Main declarations:
- `Path.length`
- `Path.edist_le_length`
- `Path.length_refl`
- `Path.length_symm`
- `Path.length_trans`
This is intended as a first step toward a broader theory of rectifiable paths, including later results on invariance of length under monotone reparametrization, and shortest paths are line segments up to monotone reparametrization in strict convex spaces.
This PR was discussed on Zulip [here](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/PR.20.2342110.3A.20Path.2Elength.20in.20PseudoEMetricSpace).
AI disclosure: I used an agent called ReasLingo to generate those codes. After the codes are generated I read them line by line and ask the agent to rewrite some proofs when I think it is a bad code. For design decisions, I asked the agent to give me several versions, and I manually picked one of them to make sure it fits human understanding.
---
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|
t-topology
new-contributor
LLM-generated
|
215/0 |
Mathlib.lean,Mathlib/Topology/EMetricSpace/ArcLength.lean,Mathlib/Topology/EMetricSpace/PathLength.lean,Mathlib/Topology/Path.lean,Mathlib/Topology/UnitInterval.lean |
5 |
124 |
['CoolRmal', 'Zeta-Wu', 'felixpernegger', 'github-actions', 'pelicanhere', 'scholzhannah'] |
scholzhannah assignee:scholzhannah |
4-27624 4 days ago |
5-17252 5 days ago |
45-42619 45 days |
0 |
| 43888 |
kebekus author:kebekus |
feat: Liouville theorem for entire functions with polynomial growth |
As a corollary to the classic Liouville theorem, show that entire functions with polynomial growth are themselves polynomials.
This material is used in [Project VD](https://github.com/kebekus/ProjectVD), formalizing Value Distribution Theory for meromorphic functions on the complex plane. Claude Code was used to create this PR.
---
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|
t-analysis
LLM-generated
|
131/13 |
Mathlib/Analysis/Analytic/IsolatedZeros.lean,Mathlib/Analysis/Calculus/DSlope.lean,Mathlib/Analysis/Complex/Liouville.lean,Mathlib/Analysis/Polynomial/Basic.lean |
4 |
3 |
['Vierkantor', 'github-actions', 'kebekus'] |
nobody |
4-27086 4 days ago |
4-45763 4 days ago |
4-45537 4 days |
0 |
| 43408 |
YaelDillies author:YaelDillies |
chore: use `congr()` much more widely |
Replace most uses of `congr_fun`, `congr_arg`, `DFunLike.congr_fun`, `DFunLike.congr_arg`, etc... by uses of the `congr()` elaborator. Some uses were silly and have been replaced by the `congr` or `congr!` tactic?
Generated by Claude Opus, painstakingly reviewed and improved line-by-line by myself.
Assisted-by: Claude Opus 5
---
I know this is a churny PR, but my point is that a new notation (like `congr()`) will never be used (by humans and LLMs alike) if we don't make such big changes adopting it widely.
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|
tech debt
LLM-generated
|
3020/3171 |
Archive/Imo/Imo2013Q5.lean,Archive/Sensitivity.lean,Archive/Wiedijk100Theorems/FriendshipGraphs.lean,Counterexamples/AharoniKorman.lean,Counterexamples/CanonicallyOrderedCommSemiringTwoMul.lean,Counterexamples/CliffordAlgebraNotInjective.lean,Counterexamples/DimensionPolynomial.lean,Counterexamples/DirectSumIsInternal.lean,Counterexamples/GrothendieckPower.lean,Counterexamples/HomogeneousPrimeNotPrime.lean,Counterexamples/Pseudoelement.lean,Counterexamples/QuadraticForm.lean,Mathlib/Algebra/Algebra/Bilinear.lean,Mathlib/Algebra/Algebra/Epi.lean,Mathlib/Algebra/Algebra/Equiv.lean,Mathlib/Algebra/Algebra/Hom.lean,Mathlib/Algebra/Algebra/NonUnitalHom.lean,Mathlib/Algebra/Algebra/NonUnitalSubalgebra.lean,Mathlib/Algebra/Algebra/Operations.lean,Mathlib/Algebra/Algebra/Spectrum/Basic.lean,Mathlib/Algebra/Algebra/Spectrum/Quasispectrum.lean,Mathlib/Algebra/Algebra/Subalgebra/Basic.lean,Mathlib/Algebra/Algebra/Subalgebra/Lattice.lean,Mathlib/Algebra/Algebra/Subalgebra/Pointwise.lean,Mathlib/Algebra/Algebra/Tower.lean,Mathlib/Algebra/BigOperators/Finsupp/Basic.lean,Mathlib/Algebra/BigOperators/Group/Finset/Defs.lean,Mathlib/Algebra/BigOperators/Group/Finset/Piecewise.lean,Mathlib/Algebra/BigOperators/Ring/Nat.lean,Mathlib/Algebra/Category/AlgCat/FilteredColimits.lean,Mathlib/Algebra/Category/BialgCat/Basic.lean,Mathlib/Algebra/Category/CoalgCat/Basic.lean,Mathlib/Algebra/Category/CommAlgCat/FiniteType.lean,Mathlib/Algebra/Category/Grp/Basic.lean,Mathlib/Algebra/Category/Grp/Biproducts.lean,Mathlib/Algebra/Category/Grp/EnoughInjectives.lean,Mathlib/Algebra/Category/Grp/EpiMono.lean,Mathlib/Algebra/Category/Grp/Kernels.lean,Mathlib/Algebra/Category/Grp/LargeColimits.lean,Mathlib/Algebra/Category/Grp/Limits.lean,Mathlib/Algebra/Category/HopfAlgCat/Basic.lean,Mathlib/Algebra/Category/ModuleCat/Basic.lean,Mathlib/Algebra/Category/ModuleCat/Biproducts.lean,Mathlib/Algebra/Category/ModuleCat/ChangeOfRings.lean,Mathlib/Algebra/Category/ModuleCat/Ext/Baer.lean,Mathlib/Algebra/Category/ModuleCat/Limits.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/ChangeOfRings.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/ColimitFunctor.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/EpiMono.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/Generator.lean,Mathlib/Algebra/Category/ModuleCat/Products.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/ChangeOfRings.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/PullbackFree.lean,Mathlib/Algebra/Category/ModuleCat/Tannaka.lean,Mathlib/Algebra/Category/ModuleCat/Topology/Basic.lean,Mathlib/Algebra/Category/ModuleCat/Topology/Homology.lean,Mathlib/Algebra/Category/MonCat/Colimits.lean,Mathlib/Algebra/Category/MonCat/FilteredColimits.lean,Mathlib/Algebra/Category/MonCat/Limits.lean,Mathlib/Algebra/Category/Ring/Colimits.lean,Mathlib/Algebra/Category/Ring/Constructions.lean,Mathlib/Algebra/Category/Ring/FilteredColimits.lean,Mathlib/Algebra/Category/Ring/Topology.lean,Mathlib/Algebra/CharP/Basic.lean,Mathlib/Algebra/CharP/Frobenius.lean,Mathlib/Algebra/CharP/MixedCharZero.lean,Mathlib/Algebra/Colimit/DirectLimit.lean,Mathlib/Algebra/Colimit/Module.lean,Mathlib/Algebra/Colimit/Ring.lean,Mathlib/Algebra/ContinuedFractions/Computation/Translations.lean,Mathlib/Algebra/DirectSum/Algebra.lean,Mathlib/Algebra/DirectSum/Ring.lean,Mathlib/Algebra/DualNumber.lean,Mathlib/Algebra/Exact/Basic.lean,Mathlib/Algebra/Field/IsField.lean,Mathlib/Algebra/FiveLemma.lean,Mathlib/Algebra/FreeMonoid/Basic.lean,Mathlib/Algebra/FreeNonUnitalNonAssocAlgebra.lean,Mathlib/Algebra/GCDMonoid/Basic.lean,Mathlib/Algebra/GradedMonoid.lean,Mathlib/Algebra/Group/Action/Pointwise/Set/Basic.lean,Mathlib/Algebra/Group/End.lean,Mathlib/Algebra/Group/EvenFunction.lean,Mathlib/Algebra/Group/Fin/Tuple.lean,Mathlib/Algebra/Group/Finsupp.lean,Mathlib/Algebra/Group/ForwardDiff.lean,Mathlib/Algebra/Group/Graph.lean,Mathlib/Algebra/Group/Pointwise/Finset/Basic.lean,Mathlib/Algebra/Group/Pointwise/Set/Basic.lean,Mathlib/Algebra/Group/Pointwise/Set/BigOperators.lean,Mathlib/Algebra/Group/Prod.lean,Mathlib/Algebra/Group/Subgroup/Basic.lean,Mathlib/Algebra/Group/Subgroup/Ker.lean,Mathlib/Algebra/Group/Subgroup/Lattice.lean,Mathlib/Algebra/Group/Submonoid/Operations.lean,Mathlib/Algebra/Group/Submonoid/Pointwise.lean,Mathlib/Algebra/Group/Submonoid/Units.lean,Mathlib/Algebra/Group/UniqueProds/Basic.lean |
1312 |
14 |
['SnirBroshi', 'YaelDillies', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts', 'riccardobrasca', 'wwylele'] |
nobody |
4-25391 4 days ago |
4-30808 4 days ago |
10-76120 10 days |
0 |
| 39347 |
Sfgangloff author:Sfgangloff |
feat(SymbolicDynamics): refactor of Pattern and shift-invariance of shape languages for subshifts |
## Summary
This PR refactors Pattern.mulShift in Mathlib/Dynamics/SymbolicDynamics/Basic.lean and uses the cleaner definition to prove shift-invariance of the language of a subshift on a finite shape.
## Changes
Pattern.mulShift now returns a Pattern instead of a configuration (more natural).
- Old type: Pattern.mulShift : Pattern A G → G → (G → A)
- New type: Pattern.mulShift : Pattern A G → G → Pattern A G
- The result carries its support (p.support.image (v * ·)) and the
default-outside-support proof, so callers don't have to re-derive them.
The [IsLeftCancelMul G] hypothesis is moved to the lemmas that actually use it.
- The definition Pattern.mulShift itself no longer needs left-cancellation (it only
chooses a preimage noncomputably).
- The hypothesis is now stated on mulShift_config_apply_mul_left_of_mem and
mulOccursInAt_eq_cylinder directly, instead of being a section-level variable.
Renames following the type change.
- mulShift_apply_mul_left_of_mem → mulShift_config_apply_mul_left_of_mem (because we
now write (p.mulShift v).config instead of p.mulShift v).
New @[simp] and @[ext] lemmas for Pattern.
- Pattern.ext: two patterns are equal iff their supports agree and their
configurations agree on the support.
- Pattern.mulShift_support: the support of p.mulShift v is p.support.image (v * ·).
- Pattern.fromConfig_support: the support of fromConfig x U is U.
- Pattern.fromConfig_config_of_mem: on its support, fromConfig x U agrees with x.
New lemma Pattern.fromConfig_mulShift.
For a left inverse g' * g = 1, shifting the pattern fromConfig x U by g equals
fromConfig (mulShift g' x) (U.image (g * ·)).
New theorem MulSubshift.languageOn_image_mulShift.
For a subshift Y and elements g, g' with g * g' = 1 and g' * g = 1:
(fun p => p.mulShift g) '' Y.languageOn U = Y.languageOn (U.image (g * ·))
i.e. the language on the translated shape is exactly the image of the language on U
under the pattern-shift map. This gives a bijection between Y.languageOn U and
Y.languageOn (U.image (g * ·)), with inverse p ↦ p.mulShift g'. Stated for
left-cancellative monoids with an invertible element.
Updated docstrings for Pattern.mulShift and the renamed lemma to reflect the
bundled-Pattern return type and clarify which results need [IsLeftCancelMul G]. |
t-dynamics
new-contributor
|
144/47 |
Mathlib/Dynamics/SymbolicDynamics/Basic.lean |
1 |
13 |
['Sfgangloff', 'github-actions', 'mathlib-merge-conflicts', 'sgouezel'] |
sgouezel assignee:sgouezel |
4-20136 4 days ago |
4-20136 4 days ago |
37-77901 37 days |
0 |
| 43853 |
wwylele author:wwylele |
feat(Analysis/SpecialFunctions): the recurrence relation of bessel function J |
This proves one of the recurrence formula for J (the other one that involves derivative will be in a separate PR). Usually the LHS is written as `2 * a * J a x / x` in textbooks, but I moved `x` to RHS to avoid junk values on division.
Also added dlmf to `besselJ`.
In the hypergeometric function file, I also added a local notation for `regularizedHGFunCoeff` because otherwise the name is too long. I didn't replace any existing lemma with the notation. That can be in a later non-feature PR.
---
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[](https://gitpod.io/from-referrer/)
|
t-analysis |
103/1 |
Mathlib/Analysis/SpecialFunctions/Bessel.lean,Mathlib/Analysis/SpecialFunctions/RegularizedHypergeometric.lean |
2 |
1 |
['copilot-pull-request-reviewer', 'github-actions'] |
nobody |
4-18175 4 days ago |
5-68875 5 days ago |
5-68649 5 days |
0 |
| 43528 |
joelriou author:joelriou |
feat(Geometry/Convex): the simplicial set of affine simplices of a convex space |
Let `Y` be a `R`-convex space. In this file, we introduce the simplicial set `toSSet R Y` whose `n`-simplices are affine maps from the standard `n`-dimensional simplex to `Y`. (When `R := ℝ` and `Y` has a suitable topology, this identifies to a subcomplex of the singular simplicial set of the topological space `Y`.)
From https://github.com/joelriou/excision
---
- [x] depends on: #43524
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|
t-convex-geometry |
188/0 |
Mathlib.lean,Mathlib/AlgebraicTopology/SimplexCategory/Basic.lean,Mathlib/Geometry/Convex/ConvexSpace/ToSSet.lean |
3 |
2 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
4-13249 4 days ago |
4-20351 4 days ago |
4-21041 4 days |
0 |
| 38855 |
SnirBroshi author:SnirBroshi |
feat(Order/ConditionallyCompleteLattice/Indexed): `≤` version of `ciSup_or'` for `ConditionallyCompleteLattice` |
Unprime `ciSup_or'` because there's no `ciSup_or`, and add a `≤` version (and dual) for `ConditionallyCompleteLattice`.
Only `≤` because equality does not hold when `p ≠ q` without `sSup ∅ = ⊥`.
---
`ciSup_or'` can't have a dual because there's no dual to `ConditionallyCompleteLinearOrderBot`.
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|
t-order
maintainer-merge
|
8/1 |
Mathlib/Order/ConditionallyCompleteLattice/Indexed.lean |
1 |
8 |
['SnirBroshi', 'YaelDillies', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
4-13233 4 days ago |
4-14104 4 days ago |
120-55086 120 days |
0 |
| 41258 |
ungatz author:ungatz |
feat(Analysis/Fourier/FiniteAbelian): add the Donoho-Stark support uncertainty principle |
This adds the Donoho–Stark support uncertainty inequality for the unitary Fourier transform on a finite abelian group, plus the supporting Fourier-inversion machinery indexed by the Pontryagin dual `AddChar G ℂ`.
The headline:
> **Theorem `AddChar.donoho_stark`.** For nonzero `f : G → ℂ`,
> `Fintype.card G ≤ (support f).ncard * (support (fourierTransform f)).ncard`,
> where `fourierTransform f ψ = |G|^(-1/2) * ∑ g, conj (ψ g) * f g` ranges over `ψ : AddChar G ℂ`.
The proof is the elementary (L¹, L∞) duality argument that any harmonic-analysis textbook gives for the classical `ZMod N` case; no Parseval or Cauchy–Schwarz is needed. The finite-abelian generalisation is folklore (stated in Tao–Vu *Additive Combinatorics* and Terras *Fourier Analysis on Finite Groups*); I did not find it formalised in Mathlib or any other major library.
### Why this belongs in Mathlib
Mathlib already has the supporting infrastructure — character theory of finite abelian groups (`Mathlib.Algebra.Group.AddChar`), character orthogonality and Pontryagin duality (`Mathlib.Analysis.Fourier.FiniteAbelian.{Orthogonality, PontryaginDuality}`). The Donoho–Stark inequality is the canonical application of all three, and its absence is a real gap: I needed it for a downstream operator-uncertainty result (a diagonal-operator `rank * Pauli-support` bound on the finite Heisenberg group reduces to it) and ended up proving it from scratch. Beyond that use, it is a standard tool in compressed sensing on finite abelian groups, additive combinatorics, and discrete signal recovery (the 1989 paper has ~3500 citations).
### What's in this PR
A single new file, `Mathlib/Analysis/Fourier/FiniteAbelian/DonohoStark.lean`:
- `AddChar.fourierTransform` — the unitary (symmetric) Fourier transform indexed by `AddChar G ℂ`;
- `AddChar.fourier_inversion` — the inversion formula;
- `AddChar.norm_fourierTransform_le`, `AddChar.norm_le_sum_norm_fourierTransform` — the two `L∞ ≤ |G|^(-1/2) · L¹` triangle bounds;
- `AddChar.donoho_stark` — the support uncertainty inequality.
Design choices I expect questions on, and my defaults:
- **`ℂ` rather than `RCLike`**: matches the cited literature and the cleanest home of `AddChar.norm_apply`; happy to generalise if preferred.
- **`Set.ncard` for support sizes**: avoids needing `DecidableEq ℂ` in the statement.
- **A new sibling file** of `Orthogonality.lean` / `PontryaginDuality.lean` rather than a subsection: orthogonality is the tool, Donoho–Stark is the application; can inline if preferred.
Deliberately *not* included: the diagonal-operator `rank * Pauli-support ≥ 2^n` corollary from my workspace — the Pauli-word machinery has no natural home in `Analysis/Fourier` yet; happy to factor it into a follow-up if there is interest.
### AI usage disclosure
Per the [AI contribution policy](https://leanprover-community.github.io/contribute/index.html): the original Lean proof was generated by **Aristotle** (Harmonic AI's automated proof system) from a dispatch containing the statement and the (L¹, L∞) proof strategy, as part of my PhD research workspace. I audited the delivery line by line against Donoho–Stark 1989 (the dispatch also produced a kernel-checked counterexample to a tempting wrong variant — replacing rank by the count of distinct eigenvalues — which the 2×2 identity falsifies). The file here is my adaptation to Mathlib conventions and to current master (module system, `Set.ncard` statement, robust cast handling in the inversion proof), with final tactic-level repairs done with the assistance of Claude (Anthropic). I understand and can defend every line without AI assistance. Please add the `LLM-generated` label (I cannot set labels myself).
### Test plan
- [x] `lake build Mathlib.Analysis.Fourier.FiniteAbelian.DonohoStark` clean (0 errors, 0 warnings).
- [x] `#print axioms` on all five declarations: `[propext, Classical.choice, Quot.sound]`.
- [x] `lake exe lint-style` clean; all lines ≤ 100 chars.
- [x] `Mathlib.lean` updated in alphabetical position.
- [x] Imports minimal (`PontryaginDuality` + `RCLike.Basic` only).
### Reference
Donoho, D. L. and Stark, P. B. (1989). *Uncertainty principles and signal recovery.* SIAM Journal on Applied Mathematics, **49**(3): 906–931. https://doi.org/10.1137/0149053
---
|
t-analysis
new-contributor
LLM-generated
|
283/0 |
Mathlib.lean,Mathlib/Analysis/Fourier/FiniteAbelian/DonohoStark.lean |
2 |
4 |
['YaelDillies', 'copilot-pull-request-reviewer', 'felixpernegger', 'github-actions'] |
nobody |
4-12833 4 days ago |
81-68690 81 days ago |
81-68464 81 days |
0 |
| 41982 |
scholzhannah author:scholzhannah |
feat: generalize `OpenPartialHomeomorph/IsImage` to `PartialHomeomorph` |
This is a continuation of #41045.
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|
t-topology |
355/11 |
Mathlib.lean,Mathlib/Topology/OpenPartialHomeomorph/IsImage.lean,Mathlib/Topology/PartialHomeomorph/IsImage.lean |
3 |
16 |
['fpvandoorn', 'github-actions', 'j-loreaux', 'scholzhannah'] |
j-loreaux assignee:j-loreaux |
4-11859 4 days ago |
52-30628 52 days ago |
52-35172 52 days |
0 |
| 43824 |
xingzhicn author:xingzhicn |
feat(Order/Submodular): define submodular functions and diminishing returns |
This PR defines submodular, supermodular, and modular functions on general lattices, and proves the diminishing returns property on finite sets.
Main definitions:
- `IsSubmodular f`: `∀ a b, f (a ⊓ b) + f (a ⊔ b) ≤ f a + f b`
- `IsSupermodular f`: `∀ a b, f a + f b ≤ f (a ⊓ b) + f (a ⊔ b)`
- `IsModular f`: `∀ a b, f (a ⊓ b) + f (a ⊔ b) = f a + f b`
Main results:
- `isModular_iff_submodular_and_supermodular`: a function is modular iff it is both submodular and supermodular.
- `IsSubmodular.add_insert_le`: diminishing returns on `Finset`: for `s ⊆ t` and `x ∉ t`, `f s + f (insert x t) ≤ f (insert x s) + f t`.
This lays the foundation for discrete convex analysis, combinatorial optimization, and matroid rank theory.
---
|
t-order
new-contributor
|
120/0 |
Mathlib.lean,Mathlib/Order/Submodular.lean |
2 |
15 |
['JX-Mo', 'github-actions', 'pepamontero', 'vlad902'] |
nobody |
4-11814 4 days ago |
6-53650 6 days ago |
6-53424 6 days |
0 |
| 41531 |
luigi-massacci author:luigi-massacci |
feat: scalar multiplication as a CLM on D^n |
Introduces for `TestFunction` the analogous results from `SchwartzMap`.
---
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|
t-analysis |
93/41 |
Mathlib/Analysis/Distribution/TestFunction.lean |
1 |
6 |
['github-actions', 'luigi-massacci', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
4-10181 4 days ago |
4-11729 4 days ago |
4-11928 4 days |
4 |
| 42510 |
williamjblair author:williamjblair |
feat(NumberTheory/AdditionChain): addition chains and the doubling bound |
This is an addition chain for `n` is a strictly increasing list `1 = a₀ < a₁ < ⋯ < a_r = n` in which every entry after the first is a sum of two earlier entries. `Nat.additionChainLength n` is the least `r` over all such chains, the classical `ℓ(n)`.
`additionChainLength` is an `sInf` over `List ℕ`, so an explicit chain bounds it above (`Nat.additionChainLength_le`), but nothing bounds it below until the search is confined. `List.IsAdditionChain.getLast_le_two_pow` confines it as a step at most doubles, so `r` steps cannot reach past `2 ^ r`. That gives `Nat.lt_additionChainLength_of_two_pow_lt`, and the two bounds together pin down individual values.
`Nat.exists_isAdditionChain` shows every positive `n` ends some chain, so the length is a minimum of a nonempty set rather than `sInf ∅`.
---
Mathlib has nothing on addition chains at present that I could see. This came out of [formal-conjectures](https://github.com/google-deepmind/formal-conjectures), where it underlies the Scholz conjecture. Here is the relevant [PR](https://github.com/google-deepmind/formal-conjectures/pull/4820)
[](https://gitpod.io/from-referrer/)
|
t-number-theory |
161/0 |
Mathlib.lean,Mathlib/NumberTheory/AdditionChain.lean,docs/references.bib |
3 |
10 |
['MichaelStollBayreuth', 'github-actions', 'williamjblair'] |
MichaelStollBayreuth assignee:MichaelStollBayreuth |
4-8304 4 days ago |
4-9464 4 days ago |
26-11819 26 days |
0 |
| 43893 |
b-mehta author:b-mehta |
feat(Order/Preorder/Finite): maximal elements of a Finset insert |
This is particularly useful when doing finset induction!
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|
t-order |
38/0 |
Mathlib/Order/Preorder/Finite.lean |
1 |
1 |
['github-actions'] |
nobody |
4-8209 4 days ago |
4-12642 4 days ago |
4-12416 4 days |
0 |
| 43894 |
JX-Mo author:JX-Mo |
feat(RepresentationTheory): add Burnside's theorem for matrix algebras |
This PR adds Burnside's theorem: If `V` is simple module of a `k`-algebra `A` where `k` is an algebraically closed field `k`, then the algebra map `A → End_k(V)` is surjective. The proof is a combination of Schur's lemma and Jacobson density theorem which are already in Mathlib. |
t-algebra label:t-algebra$ |
13/4 |
Mathlib/RepresentationTheory/AlgebraRepresentation/Basic.lean |
1 |
1 |
['github-actions'] |
nobody |
4-7676 4 days ago |
4-8828 4 days ago |
4-8700 4 days |
0 |
| 41884 |
luigi-massacci author:luigi-massacci |
feat: the delta distribution is induced by the dirac measure |
The title
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[](https://gitpod.io/from-referrer/)
|
t-analysis |
17/12 |
Mathlib/Analysis/Distribution/Distribution.lean |
1 |
4 |
['github-actions', 'luigi-massacci', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
4-6836 4 days ago |
4-8109 4 days ago |
4-9077 4 days |
0 |
| 41607 |
mbkybky author:mbkybky |
chore(RingTheory/DedekindDomain): update definitions |
Update [IsDedekindRing](https://leanprover-community.github.io/mathlib4_docs/Mathlib/RingTheory/DedekindDomain/Basic.html#IsDedekindRing) to extend `IsNoetherianRing A` instead of `IsNoetherian A A`, bringing their definitions closer to the usual mathematical formulations.
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|
t-ring-theory |
1/1 |
Mathlib/RingTheory/DedekindDomain/Basic.lean |
1 |
2 |
['Multramate', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
4-4939 4 days ago |
39-27342 39 days ago |
70-16635 70 days |
0 |
| 43186 |
homeowmorphism author:homeowmorphism |
chore(GroupTheory/Coxeter/Basic): use `_` for the unused induction variable in `wordProd_reverse` |
---
Use of AI: I noticed this while reading the `Coxeter` API, removed the variable and had Claude prepare the PR.
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|
t-group-theory |
1/1 |
Mathlib/GroupTheory/Coxeter/Basic.lean |
1 |
2 |
['Multramate', 'github-actions', 'homeowmorphism'] |
nobody |
4-4911 4 days ago |
24-15686 24 days ago |
24-15460 24 days |
0 |
| 43770 |
vlad902 author:vlad902 |
feat(AffineSpace/FiniteDimensional): generalize typeclasses |
A number of theorems/instances are stated at the top of the file for `DivisionRing`, but the assumption could be weakened to `Ring` with some theorems further requiring
`Nontrivial`/`StrongRankCondition`/`OrzechProperty`. Weakening to `Ring` also requires renaming some `FiniteDimensional` assumptions to `Module.Finite`.
This PR weakens moves around some theorems/instances to fit their new sections assumptions and renames some theorems/instances to match their new conclusions. No theorems are added/removed.
---
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|
t-algebra label:t-algebra$ |
164/106 |
Mathlib/LinearAlgebra/AffineSpace/FiniteDimensional.lean |
1 |
7 |
['github-actions', 'grunweg', 'leanprover-radar', 'mathlib-merge-conflicts', 'vlad902'] |
nobody |
4-4624 4 days ago |
5-37625 5 days ago |
8-11022 8 days |
0 |
| 42766 |
harahu author:harahu |
chore(Order): tidy markdown headers |
This PR:
- Ensures all files in `Mathlib/Order` have an H1 header.
- Aligns some H2 headers with the examples in the documentation style guide.
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|
t-order |
8/5 |
Mathlib/Order/Comparable.lean,Mathlib/Order/CompleteSublattice.lean,Mathlib/Order/Completion.lean,Mathlib/Order/Interval/Set/OrdConnectedLinear.lean,Mathlib/Order/Quotient.lean,Mathlib/Order/Types/Arithmetic.lean |
6 |
1 |
['Multramate', 'github-actions'] |
nobody |
4-4092 4 days ago |
38-20503 38 days ago |
38-20277 38 days |
0 |
| 42670 |
harahu author:harahu |
chore(Combinatorics): tidy markdown headers |
Ensure files in `Mathlib/Combinatorics` have one and only one H1 header, thus enforcing the style guide.
Newly created headers in this PR were authored by Claude Opus 5.
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|
t-combinatorics |
11/5 |
Mathlib/Combinatorics/Enumerative/Catalan/Tree.lean,Mathlib/Combinatorics/Quiver/ConnectedComponent.lean,Mathlib/Combinatorics/Quiver/Subquiver.lean,Mathlib/Combinatorics/Quiver/Symmetric.lean,Mathlib/Combinatorics/SimpleGraph/Cayley.lean,Mathlib/Combinatorics/SimpleGraph/Connectivity/Connected.lean |
6 |
1 |
['Multramate', 'github-actions'] |
nobody |
4-4038 4 days ago |
40-31112 40 days ago |
40-32449 40 days |
0 |
| 43808 |
b-mehta author:b-mehta |
chore(Data/Finset/BooleanAlgebra): tag univ_nonempty/nontrivial/eq_empty_iff with grind |
Some simple grind lemmas relating Finset predicates to properties of the whole type
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|
t-data
easy
|
3/0 |
Mathlib/Data/Finset/BooleanAlgebra.lean |
1 |
4 |
['Multramate', 'b-mehta', 'github-actions', 'leanprover-radar'] |
nobody |
4-3886 4 days ago |
7-2114 7 days ago |
7-1888 7 days |
0 |
| 42748 |
harahu author:harahu |
chore(LinearAlgebra): tidy markdown headers |
Ensure that files in `Mathlib/LinearAlgebra` have one and only one H1 header. Also align some H2 headers with the documentation style guide.
Newly authored headers were authored by Claude Opus 5.
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|
t-algebra label:t-algebra$ |
11/7 |
Mathlib/LinearAlgebra/Matrix/Gershgorin.lean,Mathlib/LinearAlgebra/Prod.lean,Mathlib/LinearAlgebra/Projectivization/PSL/PSL2.lean,Mathlib/LinearAlgebra/Quotient/Card.lean,Mathlib/LinearAlgebra/RootSystem/Finite/Nondegenerate.lean,Mathlib/LinearAlgebra/TensorPower/Symmetric.lean |
6 |
5 |
['Multramate', 'github-actions', 'harahu', 'themathqueen'] |
nobody |
4-3511 4 days ago |
38-69656 38 days ago |
38-69430 38 days |
0 |
| 43806 |
b-mehta author:b-mehta |
chore(Data/Finset/Union): tag biUnion lemmas with grind |
Add some basic grind tags for Finset.biUnion lemmas.
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|
t-data |
3/1 |
Mathlib/Data/Finset/Union.lean |
1 |
3 |
['Multramate', 'github-actions', 'leanprover-radar'] |
nobody |
4-3240 4 days ago |
7-4037 7 days ago |
7-3811 7 days |
0 |
| 43794 |
b-mehta author:b-mehta |
chore(Order/BooleanAlgebra/Basic): tag sdiff disjoint lemmas with grind |
A few useful grind tags in BooleanAlgebra. These are somewhat conservative for now, and we can add more later as we discover them to be useful.
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|
t-order
easy
|
4/0 |
Mathlib/Order/BooleanAlgebra/Basic.lean |
1 |
3 |
['Multramate', 'github-actions', 'leanprover-radar'] |
nobody |
4-2552 4 days ago |
7-21593 7 days ago |
7-21367 7 days |
0 |
| 42924 |
D-Thomine author:D-Thomine |
chore(MeasureTheory): generalize hypotheses to `NullMeasurableSet` |
This PR generalizes many statements in `Mathlib.MeasureTheory` from `MeasurableSet s` to `NullMeasurableSet s μ`.
This is particularly useful for lemmas around uniform integrability. A few technical statements which existed only to work around issues of measurability are deprecated thanks to this: `MemLp.eLpNorm_indicator_le_of_meas`, `UniformIntegrable.spec'`, `MemLp.uniformIntegrable_of_identDistrib_aux`. This PR is a preliminary (and necessary) work before a much more thorough refactor of `MeasureTheory.Function.UniformIntegrable`.
I have chosen to change the hypotheses in place (generalizing the lemmas) instead of adding variants with the new hypothesis, in order to limit quasi-duplicates. There are some limits to this strategy, and a few lemmas have now both `MeasurableSet` and `NullMeasurableSet` versions:
* either if the `MeasurableSet` version was tagged as `simp`;
* or `integrable_indicator_iff₀`, `setLIntegral_congr_fun_ae₀`, `setLIntegral_congr_fun₀`, `setLIntegral_eq_zero₀`, `lintegral_add_compl₀`, `setLIntegral_compl₀`.
The latter 6 lemmas account for the largest potential downstream effects of this PR. If I did not keep the former versions of these 6 lemmas, this PR would have affected five time as many files, including files in e.g. `Geometry` or `NumberTheory`. It seems reasonable that, for quality of life purposes, we keep a few files with `MeasurableSet` hypotheses which are widely used in settings where measurability is essentially a given.
Edit: Implementation note: Some lemmas (e.g. `UniformIntegrable.spec`) were previously proved in two steps. First a version for `Measurable`/`StronglyMeasurable` functions (in this instance, this is lemma `UniformIntegrable.spec'`), then a weakening of the measurability hypotheses. This PR makes it convenient to prove directly the more general version of these lemmas. In these case, I have put the more general lemmas (`UniformIntegrable.spec`) before, deduced the weaker version (`UniformIntegrable.spec'`) from it, and deprecated the latter. This strategy, however, makes the git diff somewhat annoying to read.
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|
t-measure-probability |
424/495 |
Mathlib/MeasureTheory/Function/ConditionalExpectation/AEMeasurable.lean,Mathlib/MeasureTheory/Function/ConditionalExpectation/Indicator.lean,Mathlib/MeasureTheory/Function/ConditionalExpectation/PullOut.lean,Mathlib/MeasureTheory/Function/ConditionalExpectation/Real.lean,Mathlib/MeasureTheory/Function/EssSup.lean,Mathlib/MeasureTheory/Function/LpSeminorm/CompareExp.lean,Mathlib/MeasureTheory/Function/LpSeminorm/Indicator.lean,Mathlib/MeasureTheory/Function/LpSeminorm/Monotonicity.lean,Mathlib/MeasureTheory/Function/LpSpace/Indicator.lean,Mathlib/MeasureTheory/Function/SimpleFuncDenseLp.lean,Mathlib/MeasureTheory/Function/StronglyMeasurable/AEStronglyMeasurable.lean,Mathlib/MeasureTheory/Function/UnifTight.lean,Mathlib/MeasureTheory/Function/UniformIntegrable.lean,Mathlib/MeasureTheory/Integral/Bochner/Set.lean,Mathlib/MeasureTheory/Integral/IntegrableOn.lean,Mathlib/MeasureTheory/Integral/Lebesgue/Basic.lean,Mathlib/MeasureTheory/Integral/PeakFunction.lean,Mathlib/MeasureTheory/Measure/AEMeasurable.lean,Mathlib/MeasureTheory/Measure/Decomposition/Lebesgue.lean,Mathlib/MeasureTheory/Measure/Restrict.lean,Mathlib/MeasureTheory/VectorMeasure/SetIntegral.lean,Mathlib/Probability/IdentDistrib.lean,Mathlib/Probability/Kernel/Condexp.lean,Mathlib/Probability/Process/Stopping.lean |
24 |
9 |
['D-Thomine', 'felixpernegger', 'github-actions', 'mathlib-merge-conflicts', 'sgouezel'] |
sgouezel assignee:sgouezel |
4-1100 4 days ago |
6-69662 6 days ago |
29-58027 29 days |
0 |
| 43898 |
Nicola9Falciola author:Nicola9Falciola |
feat(RingTheory/ZMod/LocalRing): add that `ZMod p ^ r ` is a local ring |
---
Add a new file `Mathlib/RingTheory/ZMod/LocalRing ` proving that `ZMod p ^ r ` is a local ring
and that the canonical map `ZMod n ^ r →+* ZMod n` is a local homorphism.
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|
t-ring-theory |
36/0 |
Mathlib.lean,Mathlib/RingTheory/ZMod/LocalRing.lean |
2 |
2 |
['github-actions'] |
nobody |
4-499 4 days ago |
4-1946 4 days ago |
4-1720 4 days |
2 |
| 40412 |
JovanGerb author:JovanGerb |
feat(Linter/Header): lint against imports from `Init` |
`Init` is always imported by default, so there is no reason to import it explicitly. This PR lints against that.
There is still reason to `import all` something from `Init` to get access to the private scope, so that is allowed by the linter. It is also possible to avoid importing things from `Init` by writing `prelude`, but at that point you cannot also have this linter imported, so this is not a relavant scenario.
This is a follow up to #40401, which removed all imports of `Init`.
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|
t-linter
maintainer-merge
|
8/6 |
Mathlib/Data/Fin/Init.lean,Mathlib/Tactic/Linter/Header.lean |
2 |
16 |
['JovanGerb', 'eric-wieser', 'github-actions', 'grunweg', 'j-loreaux', 'joneugster', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
grunweg assignee:grunweg |
4-72 4 days ago |
18-81666 18 days ago |
18-84264 18 days |
0 |
| 43897 |
vlad902 author:vlad902 |
feat(LinearAlgebra): remove a few `Nontrivial`s |
`StrongRankCondition` already implies `Nontrivial`, but the instance is not global (presumably to avoid slowing down typeclass synthesis.) Add a local insatnce in two places and get rid of some `Nontrivial` instances as a result.
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|
t-algebra label:t-algebra$ |
8/4 |
Mathlib/LinearAlgebra/Dimension/Constructions.lean,Mathlib/LinearAlgebra/Matrix/Rank.lean |
2 |
3 |
['github-actions', 'leanprover-radar', 'vlad902'] |
nobody |
3-82232 3 days ago |
4-3847 4 days ago |
4-3621 4 days |
0 |
| 33369 |
Thmoas-Guan author:Thmoas-Guan |
feat(Homology): `Ext` commute with flat base change |
In this PR, using the linear map `Ext(M,N) => Ext(F(M), F(N))` when `F` is exact functor, we prove that `Ext` commute with flat base change if the ring is noetherian and two modules are finitely generated, stated using `IsBaseChange`.
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|
t-topology |
379/0 |
Mathlib.lean,Mathlib/Algebra/Category/ModuleCat/Ext/BaseChange.lean |
2 |
13 |
['Multramate', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'mathlib4-merge-conflict-bot'] |
j-loreaux assignee:j-loreaux |
3-72997 3 days ago |
19-31752 19 days ago |
48-53606 48 days |
6 |
| 37838 |
Thmoas-Guan author:Thmoas-Guan |
feat(FieldTheory): basic theories about transcendental separable extension |
The formalization of [Stacks 030W] via [Stacks 030U].
---
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|
t-algebra
large-import
label:t-algebra$ |
466/16 |
Mathlib/FieldTheory/SeparablyGenerated.lean,Mathlib/FieldTheory/TranscendentalSeparable.lean |
2 |
6 |
['Multramate', 'github-actions', 'mathlib-bors', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
3-72994 3 days ago |
16-36490 16 days ago |
16-37535 16 days |
5 |
| 27050 |
BoltonBailey author:BoltonBailey |
doc(Control/Monad/Cont): add docstrings |
Split of #25917. This PR adds docstrings to this file.
This documentation was written by a few versions of Claude (Claude 3.5 Sonnet and Fable 5) , with human supervision.
---
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|
t-data
LLM-generated
tech debt
|
64/22 |
Mathlib/Control/Monad/Cont.lean,scripts/nolints.json |
2 |
10 |
['BoltonBailey', 'eric-wieser', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
3-71541 3 days ago |
3-75086 3 days ago |
4-72901 4 days |
0 |
| 43904 |
t4v1 author:t4v1 |
feat(MeasureTheory/Constructions/HaarToSphere): polar coordinates for lintegral |
`Measure.measurePreserving_homeomorphUnitSphereProd` represents an additive Haar measure on a nontrivial finite-dimensional normed space `E` as the product of the sphere measure `μ.toSphere` and Lebesgue measure on `(0, ∞)` with density `r ^ (dim E - 1)`. The file exposes it only through the radial corollaries `integrable_fun_norm_addHaar`, `integrableOn_fun_norm_addHaar` and `integral_fun_norm_addHaar`, all for integrands of the form `f ‖x‖`.
This PR adds the general `lintegral` form, for an arbitrary measurable `f : E → ℝ≥0∞`:
* `lintegral_addHaar_eq_lintegral_toSphere_lintegral_Ioi`:
`∫⁻ x, f x ∂μ = ∫⁻ ω, ∫⁻ r in Ioi 0, ENNReal.ofReal (r ^ (dim E - 1)) * f (r • ω) ∂μ.toSphere`;
* `setLIntegral_ball_eq_lintegral_toSphere_lintegral_Ioo`: the same for `∫⁻ y in ball c R, f y ∂μ`, with the radial integral over `Ioo 0 R` and the rays emanating from `c`.
Both are needed for Morrey's inequality (follow-up PR), whose two analytic steps integrate non-radial functions in polar coordinates; they are stated here on their own because they are independent of it.
The proofs were developed with the help of an LLM (Claude Code) and then checked and edited by the author, who takes responsibility for every line.
|
t-measure-probability
new-contributor
LLM-generated
|
84/0 |
Mathlib/MeasureTheory/Constructions/HaarToSphere.lean |
1 |
3 |
['github-actions', 't4v1'] |
nobody |
3-71202 3 days ago |
3-74032 3 days ago |
3-73806 3 days |
1 |
| 43903 |
plp127 author:plp127 |
feat(Data/Setoid/Basic): map-comap adjunction |
Prove the map-comap adjunction for `Setoid`, and some other miscellaneous lemmas.
---
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|
t-order
t-data
|
49/1 |
Mathlib/Data/Setoid/Basic.lean |
1 |
1 |
['github-actions'] |
nobody |
3-71107 3 days ago |
3-74352 3 days ago |
3-74126 3 days |
0 |
| 43424 |
SnirBroshi author:SnirBroshi |
feat(Data/Set/Card): cardinality of complement and difference |
- `ncard_compl` doesn't need `sᶜ.Finite`
- added `sᶜ.encard` lemma
- added `[e]ncard (t \ s)` lemmas that don't require `s ⊆ t`
- tag them `simp`
---
and generalized nearby similar things.
`ncard_sdiff_singleton_of_mem` and `pred_ncard_le_ncard_sdiff_singleton` were moved down to be able to use the `ncard` diff lemma.
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|
t-data |
80/41 |
Mathlib/Combinatorics/SimpleGraph/Finite.lean,Mathlib/Data/ENat/Basic.lean,Mathlib/Data/Set/Card.lean,Mathlib/Data/Set/Finite/Basic.lean,Mathlib/Data/Set/PowersetCard.lean,Mathlib/GroupTheory/Perm/MaximalSubgroups.lean,Mathlib/LinearAlgebra/PiTensorProduct/Generators.lean |
7 |
4 |
['SnirBroshi', 'b-mehta', 'github-actions', 'leanprover-radar'] |
b-mehta assignee:b-mehta |
3-68226 3 days ago |
3-72924 3 days ago |
8-69245 8 days |
0 |
| 39212 |
emlis42 author:emlis42 |
feat(Algebra/ContinuedFractions): add `partNums!` and `partDens!` |
This PR adds `partNums!` and `partDens!`, which provide infinite stream representations for the sequences of partial numerators and denominators of a generalized continued fraction. |
t-algebra
new-contributor
label:t-algebra$ |
67/35 |
Mathlib/Algebra/ContinuedFractions/Basic.lean,Mathlib/Algebra/ContinuedFractions/ContinuantsRecurrence.lean,Mathlib/Algebra/ContinuedFractions/Determinant.lean,Mathlib/Algebra/ContinuedFractions/Translations.lean |
4 |
6 |
['emlis42', 'eric-wieser', 'github-actions', 'grunweg'] |
alreadydone assignee:alreadydone |
3-63012 3 days ago |
133-4493 133 days ago |
133-4267 133 days |
0 |
| 40599 |
ChiCubed author:ChiCubed |
feat(LinearAlgebra): rank-nullity theorems for Submodule map/comap |
We show forms of the rank-nullity theorem involving `Submodule.map` and `Submodule.comap`. Together with `LinearMap.ker_comp` this provides a formula for the rank of the kernel of a composite (and, in finite dimensions at least, for the rank of the range).
---
I didn't explicitly write the aforementioned formula for rank ker (f ∘ g) since it is just `LinearMap.ker_comp` followed by `LinearMap.lift_rank_comap`, but perhaps it should be added for discoverability?
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|
t-algebra
new-contributor
label:t-algebra$ |
63/15 |
Mathlib/Algebra/Module/Submodule/Ker.lean,Mathlib/Algebra/Module/Submodule/Map.lean,Mathlib/Algebra/Module/Submodule/Range.lean,Mathlib/LinearAlgebra/Dimension/RankNullity.lean |
4 |
41 |
['ADedecker', 'ChiCubed', 'github-actions', 'jcommelin', 'themathqueen', 'wwylele'] |
alreadydone assignee:alreadydone |
3-63009 3 days ago |
11-67941 11 days ago |
89-33919 89 days |
0 |
| 41339 |
mkaratarakis author:mkaratarakis |
feat(ComputablePolynomial): define SparsePoly, a computable univariate polynomial |
`SparsePoly R` is a computable, kernel-reducible representation of univariate polynomials over a commutative ring `R` with `DecidableEq R`: a list of `(exponent, coefficient)` pairs with strictly decreasing exponents and nonzero coefficients, making the representation canonical. This first part defines the structure, the semantics `toPoly : SparsePoly R → Polynomial R`, and addition.
Started by Mario Carneiro at the Hausdorff Institute (June 2024) with design notes and an original Lean prototype by James Davenport (https://github.com/JamesHDavenport/Dagstuhl23401, `verify-irred/VerifyIrred`) and the proofs were done with the help of Claude code.
|
t-meta |
201/0 |
Mathlib.lean,Mathlib/Tactic.lean,Mathlib/Tactic/ComputablePolynomial/Basic.lean |
3 |
2 |
['github-actions'] |
joneugster assignee:joneugster |
3-63008 3 days ago |
79-38680 79 days ago |
79-38989 79 days |
7 |
| 41443 |
alreadydone author:alreadydone |
feat(RingTheory/AdjoinRoot): add AdjoinRoot.isFractionRing |
Co-authored-by: Sriram Chinthalagiri Venkata @sriram3301
Co-authored-by: David Kurniadi Angdinata @Multramate
This contribution was created as part of the Heidelberg Lean workshop "Formalising algebraic geometry" in November 2025.
---
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|
t-algebra
t-ring-theory
label:t-algebra$ |
97/9 |
Mathlib/RingTheory/AdjoinRoot.lean,Mathlib/RingTheory/Algebraic/Integral.lean,Mathlib/RingTheory/IsAdjoinRoot.lean,Mathlib/RingTheory/Localization/Algebra.lean |
4 |
10 |
['Multramate', 'alreadydone', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts', 'tb65536'] |
mattrobball assignee:mattrobball |
3-63007 3 days ago |
29-76960 29 days ago |
65-18460 65 days |
0 |
| 41882 |
theebayuser author:theebayuser |
feat(Data/List): decidability of HasPeriod and periods of repeated lists |
Hello, this PR extends `Mathlib/Data/List/PeriodicityLemma.lean` with:
* a `Decidable (List.HasPeriod w p)` instance (it is a prefix test), and
* two directions that relate periods to repetition:
* `hasPeriod_flatten_replicate` — `(replicate n l).flatten` has period `l.length`
* `eq_flatten_replicate_of_hasPeriod` — a word with period `p` and length `r * p` is the `r`-fold repetition of its length-`p` prefix.
This characterizes `r`-th powers of words by a period plus a length constraint, which a future follow-up PR that I plan to work on will use.
AI disclosure: This code was mostly generated by Claude Fable 5 and Opus 4.8 as part of my larger project on combinatorics on words, which I then reviewed and revised to contribute to mathlib.
|
t-data
LLM-generated
new-contributor
|
59/1 |
Mathlib/Data/List/PeriodicityLemma.lean |
1 |
8 |
['SnirBroshi', 'github-actions', 'theebayuser'] |
eric-wieser assignee:eric-wieser |
3-63006 3 days ago |
65-40272 65 days ago |
65-40046 65 days |
0 |
| 41920 |
junjihashimoto author:junjihashimoto |
feat(Analysis/CliffordAlgebra): the pseudoscalar of Cl(n,0) and its complex structure |
We study the Clifford algebra of Euclidean `n`-space (the quadratic form `x ↦ ⟪x, x⟫_ℝ` on `EuclideanSpace ℝ (Fin n)`). The pseudoscalar `ω = e₀ ⋯ eₙ₋₁` satisfies
* `ω * ω = (-1) ^ (n.choose 2)` (`pseudoscalar_mul_pseudoscalar'`),
* `γᵢ * ω = (-1) ^ (n - 1) • (ω * γᵢ)` (`γ_mul_pseudoscalar`),
so it is central for odd `n`, and a square root of `-1` iff `n ≡ 2, 3 [MOD 4]`. In that case left multiplication by `ω` is a complex structure: we provide a scoped `Module ℂ` instance (via `Complex.liftAux` and `Module.compHom`; no commutation is needed for a module structure, which covers the non-central case `n ≡ 2 [MOD 4]`), and for `n ≡ 3 [MOD 4]` an `Algebra ℂ` structure as a non-instance def.
The sign computations are done by moving a generator through a product of distinct generators (`γ_mul_prod`, `γ_mul_prod_mem`, `prod_sq`), with no case analysis on `n`.
In a follow-up PR this makes the Clifford–Fourier transform (Ebling–Scheuermann) an instance of the ordinary vector-valued Fourier transform, giving Plancherel's theorem and the inversion formula.
- [ ] depends on: (nothing)
|
t-analysis
new-contributor
|
303/0 |
Mathlib.lean,Mathlib/Analysis/CliffordAlgebra/Euclidean.lean |
2 |
5 |
['eric-wieser', 'github-actions', 'j-loreaux'] |
nobody |
3-62103 3 days ago |
64-24064 64 days ago |
64-24338 64 days |
1 |
| 38228 |
kim-em author:kim-em |
ci: block merging PRs that increase technical debt unless reviewed |
This PR adds a merge gate for technical debt increases.
When the existing technical debt metrics script reports an increase, the `build` job adds an `increases-technical-debt` label. A `check-technical-debt` job then adds `blocked-by-increases-technical-debt`, which blocks bors.
A reviewer can add `allow-increases-technical-debt` to unblock after confirming the increase is acceptable.
### Fail-closed detection
The detection greps for the *safe* patterns (`Decrease in tech debt:` / `No changes to technical debt.`) rather than for `Increase`. If `mathlib-ci` changes the script's output wording, the label is added (fail closed) rather than silently skipped (fail open).
### Labels (three-label pattern, same as #38225)
| Label | Managed by | Purpose |
|---|---|---|
| `increases-technical-debt` | `build` job (tech debt script) | Factual: this PR increases debt |
| `blocked-by-increases-technical-debt` | `check-technical-debt` job | Operational: blocks bors |
| `allow-increases-technical-debt` | Reviewer | Override: reviewer approves the increase |
Bors's `block_labels` has no conditional logic, so we need the derived `blocked-by-increases-technical-debt` label to express the conjunction "increases-technical-debt AND NOT allow-increases-technical-debt".
False positives can be reported on the [mathlib4 Zulip](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/increases-technical-debt.20label).
🤖 Prepared with Claude Code
-----------
- [x] depends on: leanprover-community/mathlib-ci#28 |
CI
LLM-generated
maintainer-merge
|
92/2 |
.github/workflows/PR_summary.yml,bors.toml |
2 |
16 |
['felixpernegger', 'github-actions', 'grunweg', 'jcommelin', 'joneugster', 'kim-em', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
3-62102 3 days ago |
25-46861 25 days ago |
74-72265 74 days |
0 |
| 36327 |
themathqueen author:themathqueen |
feat(Analysis/CStarAlgebra/Extreme): a C⋆-algebra is unital iff there exists an extreme point in the closed unit ball |
In a nonunital C⋆-algebra, the extreme points of the closed unit ball is nonempty iff the C⋆-algebra is unital. Our main reference for this is Sakai's "C⋆-algebras and W⋆-algebras" 1.6.1. The proof however is a _franken-proof_ from both Sakai and Pederson's "C⋆-algebras and their automorphism groups".
Co-authored-by: Jon Bannon <59937998+JonBannon@users.noreply.github.com>
Co-authored-by: Jireh Loreaux <loreaujy@gmail.com>
---
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- [ ] depends on: #xyz [optional extra text]
-->
- [x] depends on: #35997
- [x] depends on: #36201
- [x] depends on: #36407
- [x] depends on: #36408
- [x] depends on: #36416
- [x] depends on: #36603
- [x] depends on: #41923
- [x] depends on: #42309
- [x] depends on: #42310
[](https://gitpod.io/from-referrer/)
|
t-analysis |
232/2 |
Mathlib/Analysis/CStarAlgebra/Extreme.lean |
1 |
46 |
['ADedecker', 'eric-wieser', 'github-actions', 'j-loreaux', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'themathqueen'] |
nobody |
3-62099 3 days ago |
24-79725 24 days ago |
38-85373 38 days |
0 |
| 43907 |
SnirBroshi author:SnirBroshi |
doc(Analysis/Complex/Trigonometric): add more DLMF tags to basic trig functions |
---
and `@[pp_nodot]` to `{Complex/Real}.cot`, to match the rest.
A followup to #43256.
[DLMF 4.14](https://dlmf.nist.gov/4.14) - trigonometric functions
[DLMF 4.28](https://dlmf.nist.gov/4.28) - hyperbolic functions
<!-- Your PR title will become the first line of the commit message.
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-->
[](https://gitpod.io/from-referrer/)
|
t-analysis
maintainer-merge
|
6/4 |
Mathlib/Analysis/Complex/Trigonometric.lean |
1 |
3 |
['github-actions', 'mcdoll'] |
nobody |
3-60819 3 days ago |
3-69270 3 days ago |
3-69044 3 days |
0 |
| 43908 |
BryceT233 author:BryceT233 |
feat(Analysis/Normed/Module): real scalars on a complete normed `ℚ`-algebra |
We show that a complete normed `ℚ`-algebra carries a unique `NormedAlgebra ℝ 𝔸` structure.
---
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any "Co-authored-by" lines) using the following format:
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- Vector.* -> List.Vector.*
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- Nat.bit1_add_bit1
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using the following format:
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- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
t-analysis |
65/0 |
Mathlib/Analysis/Normed/Module/Completion.lean |
1 |
1 |
['github-actions'] |
nobody |
3-52107 3 days ago |
3-63915 3 days ago |
3-63689 3 days |
0 |
| 43422 |
vasnesterov author:vasnesterov |
chore(Tactic): deprecate `pnat_to_nat` and `enat_to_nat` in favor of `basify` |
---
<!-- Your PR title will become the first line of the commit message.
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- [x] depends on: #43254
[](https://gitpod.io/from-referrer/)
|
t-meta |
34/18 |
Mathlib/Combinatorics/SimpleGraph/VertexCover.lean,Mathlib/Data/Seq/Basic.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Corecursion.lean,Mathlib/Tactic/ENatToNat.lean,Mathlib/Tactic/PNatToNat.lean,MathlibTest/Tactic/ENatToNat.lean,MathlibTest/Tactic/PNatToNat.lean |
7 |
3 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
3-47470 3 days ago |
3-48506 3 days ago |
3-58511 3 days |
0 |
| 43911 |
kim-em author:kim-em |
ci: audit dependency diffs on the update-dependencies PR |
This PR adds a supply-chain audit step to the hourly `update_dependencies.yml` workflow. After `lake update`, it prepares the full `git diff` of every dependency whose revision changed (comparing `lake-manifest.json` against `master`), plus the `mathlib-ci` pin that the same PR bumps, uploads them as a workflow artifact, and once the PR exists comments on it with a summary table: links to each upstream commit and to GitHub's `old...new` compare view, high-risk files touched, suspicious added lines, and non-fast-forward warnings. The comment also carries the audit prompt, so anyone can run their preferred model over the same material and report back.
The diffs are produced by [paranoid-lake-update](https://github.com/kim-em/paranoid-lake-update), pinned by commit. It uses bare clones and `git` only: nothing from upstream is executed by this step (unlike `lake update` itself, which runs each dependency's `lakefile.lean` at configuration time). No new secrets or permissions are needed; the comment is posted with the existing app token.
If the community would rather host the tool under `leanprover-community`, the clone URL and pin are the only two lines to change.
🤖 Prepared with Claude Code
🤖 Generated with [Claude Code](https://claude.com/claude-code)
https://claude.ai/code/session_01X6RJUXkdBUChpnBeuojWAN
|
CI |
44/0 |
.github/workflows/update_dependencies.yml |
1 |
3 |
['github-actions', 'kim-em'] |
nobody |
3-45217 3 days ago |
3-50816 3 days ago |
3-50590 3 days |
0 |
| 43889 |
Multramate author:Multramate |
chore: fix typos in declarations |
Corrects misspelled words in declaration names across the library, e.g.
`div_nat_le_self_of_nonnneg`, `archimdeanClassMk_coe`, `absicssaOfAbsConv_eq_one`,
`unramfiedLocus`, `contangentEquiv_tmul`, `jacobian_resentation`, `sylveserMap`,
`domCoprod_alternization`, `qoutMapEquivTensorQout` and `MonadCoherehnceHom`.
Every renamed declaration keeps a deprecated alias, including instances and
class-field projections; the two private declarations get private aliases.
Three instances whose only name was a misspelling are left unnamed instead, as
suggested in review. Their misspelled names are deprecated in favour of the
autogenerated ones, so nothing that compiled before this PR breaks.
`IsLocalDiffeomorphAt.contmdiffOn_localInverse` is removed rather than renamed,
since its statement and proof duplicate those of the existing
`IsLocalDiffeomorphAt.localInverse_contMDiffOn`; its name becomes a deprecated
alias for that lemma.
---
<!-- Your PR title will become the first line of the commit message.
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any "Co-authored-by" lines) using the following format:
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- Nat.bit1_add_bit1
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- [ ] depends on: #xyz [optional extra text]
-->
### How this PR was produced
The renames in this PR were generated by Claude. The instructions it was given were:
* Fix typos in declaration names across the library, and change nothing else. Do not
rename anything that is not a misspelling, and in particular do not touch named
instances — whether instances should be named at all is a separate discussion.
* Keep a deprecated alias for every renamed declaration, so that nothing which
compiled before this PR breaks afterwards.
* Merge `master`, then work through the review comments one at a time. Where a
reviewer's point applies to further declarations, apply it to those as well.
Where the result departs from those instructions, it is because a reviewer asked for
it, and the reasoning is in the thread on the relevant line. In particular: three
instances lost their names entirely rather than being renamed, which is why they are
now unnamed with their old names deprecated; `cpolynomialOn_uncurry_of_linear` keeps
its lower-cased `cpolynomial` prefix per the convention for lower-casing a leading
string of capitals; and `lsmul_eq_distribSMulToLinearMap` concatenates the namespace
in `lowerCamelCase` rather than separating it with an underscore.
[](https://gitpod.io/from-referrer/)
|
LLM-generated |
267/111 |
Mathlib/Algebra/Homology/Additive.lean,Mathlib/Algebra/Homology/ShortComplex/Homology.lean,Mathlib/Algebra/Order/Field/Basic.lean,Mathlib/Algebra/Order/Hom/TypeTags.lean,Mathlib/Algebra/Order/Ring/Cast.lean,Mathlib/Algebra/Polynomial/Bivariate.lean,Mathlib/Algebra/Ring/Equiv.lean,Mathlib/Algebra/Ring/Ext.lean,Mathlib/Algebra/Vertex/HVertexOperator.lean,Mathlib/AlgebraicGeometry/Morphisms/Finite.lean,Mathlib/AlgebraicGeometry/OpenImmersion.lean,Mathlib/AlgebraicGeometry/Spec.lean,Mathlib/Analysis/Analytic/CPolynomial.lean,Mathlib/Analysis/Complex/Hadamard.lean,Mathlib/Analysis/Real/Hyperreal.lean,Mathlib/Analysis/SpecialFunctions/BinaryEntropy.lean,Mathlib/CategoryTheory/Monoidal/Action/Basic.lean,Mathlib/CategoryTheory/Monoidal/CommGrp_.lean,Mathlib/CategoryTheory/Monoidal/DayConvolution.lean,Mathlib/CategoryTheory/Monoidal/Limits/Preserves.lean,Mathlib/CategoryTheory/Sites/Descent/DescentData.lean,Mathlib/CategoryTheory/Sites/Hypercover/Saturate.lean,Mathlib/CategoryTheory/Sites/Hypercover/SheafOfTypes.lean,Mathlib/CategoryTheory/Sites/IsSheafFor.lean,Mathlib/CategoryTheory/Sites/LeftExact.lean,Mathlib/Data/Rat/Lemmas.lean,Mathlib/Data/Set/Prod.lean,Mathlib/Geometry/Manifold/LocalDiffeomorph.lean,Mathlib/GroupTheory/Index.lean,Mathlib/LinearAlgebra/Alternating/Basic.lean,Mathlib/LinearAlgebra/Alternating/DomCoprod.lean,Mathlib/LinearAlgebra/BilinearForm/DualLattice.lean,Mathlib/LinearAlgebra/BilinearMap.lean,Mathlib/LinearAlgebra/Dual/Defs.lean,Mathlib/LinearAlgebra/TensorProduct/Quotient.lean,Mathlib/NumberTheory/LSeries/Deriv.lean,Mathlib/NumberTheory/LSeries/Dirichlet.lean,Mathlib/NumberTheory/Modular.lean,Mathlib/NumberTheory/ModularForms/ArithmeticSubgroups.lean,Mathlib/Order/Category/PartOrdEmb.lean,Mathlib/Probability/Martingale/Convergence.lean,Mathlib/RingTheory/Adjoin/Polynomial/Bivariate.lean,Mathlib/RingTheory/AdjoinRoot.lean,Mathlib/RingTheory/Etale/Locus.lean,Mathlib/RingTheory/Extension/Basic.lean,Mathlib/RingTheory/Flat/Equalizer.lean,Mathlib/RingTheory/Flat/FaithfullyFlat/Basic.lean,Mathlib/RingTheory/Localization/AtPrime/Extension.lean,Mathlib/RingTheory/Polynomial/Resultant/Basic.lean,Mathlib/RingTheory/Polynomial/UniversalFactorizationRing.lean,Mathlib/RingTheory/Regular/IsSMulRegular.lean,Mathlib/Tactic/CategoryTheory/Bicategory/Datatypes.lean,Mathlib/Tactic/CategoryTheory/Coherence/Basic.lean,Mathlib/Tactic/CategoryTheory/Coherence/Datatypes.lean,Mathlib/Tactic/CategoryTheory/Coherence/PureCoherence.lean,Mathlib/Tactic/CategoryTheory/Monoidal/Datatypes.lean,Mathlib/Topology/Compactness/Lindelof.lean,Mathlib/Topology/Metrizable/CompletelyMetrizable.lean,scripts/nolints_prime_decls.txt |
59 |
26 |
['JX-Mo', 'JovanGerb', 'Multramate', 'SnirBroshi', 'Vierkantor', 'github-actions', 'sgouezel'] |
nobody |
3-37184 3 days ago |
3-84990 3 days ago |
4-4056 4 days |
0 |
| 38369 |
quantumsnow author:quantumsnow |
feat(AlgebraicTopology): Eilenberg Steenrod axioms |
This introduces the Eilenberg-Steenrod axioms for a homology theory.
---
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Moves:
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- [ ] depends on: #xyz [optional extra text]
-->
- [x] depends on: #36621
- [x] depends on: #39236
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-algebraic-topology
large-import
|
276/7 |
Mathlib/AlgebraicTopology/EilenbergSteenrod.lean,Mathlib/Topology/Category/TopPair.lean |
2 |
90 |
['Multramate', 'chrisflav', 'dagurtomas', 'github-actions', 'joelriou', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'quantumsnow'] |
robin-carlier assignee:robin-carlier |
3-31763 3 days ago |
5-29034 5 days ago |
64-67974 64 days |
0 |
| 28013 |
astrainfinita author:astrainfinita |
feat: Lindemann-Weierstrass Theorem |
This PR continues the work from #6718.
--------
- [x] depends on: #18693
- [x] depends on: #29121
- [x] depends on: #36762
- [x] depends on: #37797
- [x] depends on: #37811
- [x] depends on: #39237
- [x] depends on: #39238
- [x] depends on: #42864
- [x] depends on: #43091
- [x] depends on: #43092
- [x] depends on: #43093
- [x] depends on: #43501
- [x] depends on: #43515 |
t-algebra
t-analysis
label:t-algebra$ |
704/2 |
Mathlib.lean,Mathlib/NumberTheory/Transcendental/Lindemann/AlgebraicPart.lean,Mathlib/NumberTheory/Transcendental/Lindemann/Basic.lean,docs/100.yaml,docs/1000.yaml |
5 |
58 |
['astrainfinita', 'github-actions', 'grunweg', 'j-loreaux', 'jcommelin', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'mathlib-splicebot', 'mathlib4-merge-conflict-bot'] |
nobody |
3-29757 3 days ago |
3-30872 3 days ago |
18-36469 18 days |
0 |
| 43863 |
dagurtomas author:dagurtomas |
chore(CategoryTheory): use the map attribute |
---
<!-- Your PR title will become the first line of the commit message.
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Co-authors in the squash commit are gathered from two sources:
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one way to add co-authors is to include at least one commit authored by
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Second, co-authors can also be listed in lines at the very bottom of
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Co-authored-by: Author Name <author@email.com>
If you are moving or deleting declarations, please include these lines
at the bottom of the commit message (before the `---`, and also before
any "Co-authored-by" lines) using the following format:
Moves:
- Vector.* -> List.Vector.*
- ...
Deletions:
- Nat.bit1_add_bit1
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|
t-category-theory
LLM-generated
maintainer-merge
|
103/112 |
Mathlib/Algebra/Category/ModuleCat/Presheaf.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/Free.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/PullbackFree.lean,Mathlib/Algebra/Homology/DerivedCategory/ShortExact.lean,Mathlib/Algebra/Homology/HomotopyCategory.lean,Mathlib/Algebra/Homology/HomotopyCategory/Pretriangulated.lean,Mathlib/Algebra/Homology/HomotopyCategory/ShortExact.lean,Mathlib/Algebra/Homology/ShortComplex/Basic.lean,Mathlib/CategoryTheory/Equivalence.lean,Mathlib/CategoryTheory/Functor/Category.lean,Mathlib/CategoryTheory/Functor/Trifunctor.lean,Mathlib/CategoryTheory/GradedObject.lean,Mathlib/CategoryTheory/Iso.lean,Mathlib/CategoryTheory/Localization/Monoidal/Functor.lean,Mathlib/CategoryTheory/Localization/SmallHom.lean,Mathlib/CategoryTheory/Monad/Basic.lean,Mathlib/CategoryTheory/Monoidal/DayConvolution.lean,Mathlib/CategoryTheory/Monoidal/DayConvolution/Braided.lean,Mathlib/CategoryTheory/Monoidal/DayConvolution/Closed.lean,Mathlib/CategoryTheory/Monoidal/Functor.lean,Mathlib/CategoryTheory/Monoidal/NaturalTransformation.lean,Mathlib/CategoryTheory/NatIso.lean,Mathlib/CategoryTheory/NatTrans.lean,Mathlib/CategoryTheory/Sites/Descent/DescentData.lean,Mathlib/CategoryTheory/Sites/Descent/DescentDataPrime.lean,Mathlib/CategoryTheory/Triangulated/Basic.lean,Mathlib/CategoryTheory/Triangulated/Functor.lean,Mathlib/Tactic/Widget/StringDiagram.lean |
28 |
2 |
['github-actions', 'robin-carlier'] |
nobody |
3-29426 3 days ago |
4-31849 4 days ago |
4-33594 4 days |
0 |
| 35881 |
astrainfinita author:astrainfinita |
chore: do not use `inf` `sup` in `LinearOrder` lemmas |
`max` and `sup` have been unified into the same function. It is no longer necessary to create lemmas about `sup` for `LinearOrder`.
This PR moves `max` lemmas to an earlier file to ensure that files importing deprecated `sup` lemmas can use them.
---
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- [ ] depends on: #35841
- [ ] depends on: #35880
- [ ] depends on: #42373
[](https://gitpod.io/from-referrer/)
|
t-order |
71/62 |
Mathlib/Algebra/Order/CauSeq/Basic.lean,Mathlib/Algebra/Order/Group/PosPart.lean,Mathlib/Algebra/Order/Group/Unbundled/Abs.lean,Mathlib/AlgebraicGeometry/OrderOfVanishing.lean,Mathlib/Analysis/Analytic/Basic.lean,Mathlib/Analysis/Analytic/ConvergenceRadius.lean,Mathlib/Analysis/CStarAlgebra/Basic.lean,Mathlib/Analysis/Complex/OpenMapping.lean,Mathlib/Analysis/Complex/UpperHalfPlane/ProperAction.lean,Mathlib/Analysis/Normed/Group/Seminorm.lean,Mathlib/Analysis/Normed/Module/Seminorm/Basic.lean,Mathlib/Data/Finset/Lattice/Fold.lean,Mathlib/Data/Nat/Factorization/LCM.lean,Mathlib/MeasureTheory/Measure/PreVariation.lean,Mathlib/MeasureTheory/Measure/Stieltjes.lean,Mathlib/MeasureTheory/PiSystem.lean,Mathlib/NumberTheory/AbelSummation.lean,Mathlib/NumberTheory/LSeries/PrimesInAP.lean,Mathlib/NumberTheory/ModularForms/EisensteinSeries/Summable.lean,Mathlib/NumberTheory/Ostrowski.lean,Mathlib/Order/BoundedOrder/Lattice.lean,Mathlib/Order/BourbakiWitt.lean,Mathlib/Order/Filter/ENNReal.lean,Mathlib/Order/Heyting/Basic.lean,Mathlib/Order/Interval/Set/LinearOrder.lean,Mathlib/Order/Lattice.lean,Mathlib/Probability/Moments/Basic.lean,Mathlib/Probability/Moments/IntegrableExpMul.lean,Mathlib/Probability/Process/LocalProperty.lean,Mathlib/RingTheory/MvPolynomial/MonomialOrder.lean,Mathlib/RingTheory/MvPowerSeries/GaussNorm.lean,Mathlib/RingTheory/Polynomial/HilbertPoly.lean,Mathlib/RingTheory/PowerSeries/WeierstrassPreparation.lean,Mathlib/RingTheory/Valuation/Basic.lean,Mathlib/Topology/MetricSpace/Algebra.lean,Mathlib/Topology/MetricSpace/BundledFun.lean,Mathlib/Topology/MetricSpace/Infsep.lean,Mathlib/Topology/Semicontinuity/Basic.lean,Mathlib/Topology/Sion.lean |
39 |
5 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
3-25639 3 days ago |
3-29332 3 days ago |
3-29923 3 days |
0 |
| 41486 |
TTony2019 author:TTony2019 |
feat(Analysis/Convex/Intrinsic): add open segment intrinsic interior results |
Add open segment intrinsic interior results: `x ∈ intrinsicInterior 𝕜 C` and `y ∈ intrinsicClosure 𝕜 C`, then the open segment
from `x` to `y` stays in `intrinsicInterior 𝕜 C`.
Co-authored-by: Zichen Wang <imathwy@users.noreply.github.com> |
t-topology
new-contributor
t-analysis
|
57/0 |
Mathlib/Analysis/Convex/Intrinsic.lean,Mathlib/Analysis/Convex/Topology.lean,Mathlib/Topology/Algebra/Module/Basic.lean |
3 |
19 |
['TTony2019', 'github-actions', 'j-loreaux', 'themathqueen'] |
j-loreaux assignee:j-loreaux |
3-25474 3 days ago |
3-25474 3 days ago |
67-36257 67 days |
0 |
| 43758 |
joelcanary author:joelcanary |
feat(NumberTheory/ArithmeticFunction): the Redheffer determinant equals the Mertens function |
This PR adds the zeta (divisibility) matrix, the Redheffer matrix and the Mertens function, and proves **Redheffer's theorem** (1977): the determinant of the `(n+1) × (n+1)` Redheffer matrix equals the Mertens function `M(n+1) = ∑_{k ≤ n+1} μ(k)`.
In `Mathlib/NumberTheory/ArithmeticFunction/Moebius.lean`:
- `ArithmeticFunction.sum_divisors_moebius (k) : ∑ d ∈ k.divisors, μ d = if k = 1 then 1 else 0`, the pointwise form of `moebius_mul_coe_zeta`.
New file `Mathlib/NumberTheory/ArithmeticFunction/Redheffer.lean`:
- `ArithmeticFunction.mertens : ArithmeticFunction ℤ`, the summatory function of `μ`, with `mertens_apply : mertens n = ∑ k ∈ Icc 1 n, μ k`, `mertens_one`, `mertens_add_one` and `mertens_eq_sum_fin` (the `0`-based form `∑ i : Fin n, μ (i + 1)` used on the matrix side);
- `Matrix.zetaMatrix R n : Matrix (Fin n) (Fin n) R` for any `R` with `0` and `1` (entry `1` iff `i + 1 ∣ j + 1`), with `zetaMatrix_apply` (simp), `zetaMatrix_isUpperTriangular` and, for `CommRing R`, `det_zetaMatrix : det = 1`;
- `Matrix.redheffer R n` (the zeta matrix with its first column set to ones), with `redheffer_apply` (simp) and `redheffer_eq_updateCol`;
- `Matrix.det_redheffer (n) : (redheffer R (n + 1)).det = mertens (n + 1)` for any `CommRing R` (with `mertens` cast into `R`);
- `Nat.sum_fin_dvd_eq_sum_divisors`, the reindexing `∑ x : Fin n, (if x + 1 ∣ m then f (x + 1) else 0) = ∑ d ∈ m.divisors, f d` for `0 < m ≤ n`, which is what turns the matrix product into a divisor sum.
Proof sketch: by linearity of `det` in the first column, `det (redheffer R (n+1)) = det (zetaMatrix R (n+1)) + det (zetaMatrix with first column (0,1,…,1))`. The first term is `1`; by Cramer's rule (`det_smul_inv_mulVec_eq_cramer`) the second is the first row of the inverse of the zeta matrix dotted with `(0,1,…,1)`, and that row is `(μ 1, …, μ (n+1))` because `μ * ζ = 1` (`moebius_mul_coe_zeta`, via `sum_divisors_moebius`). The remaining sum `μ 2 + ⋯ + μ (n+1)` is `mertens (n+1) - 1`.
The ring `R` is an explicit argument of `zetaMatrix` and `redheffer` since nothing else determines it. Neither the Mertens function nor the Redheffer matrix currently appear in Mathlib. The new file imports only `LinearAlgebra.Matrix.Block` and `NumberTheory.ArithmeticFunction.Moebius`. Reference added to `docs/references.bib` (`redheffer1977`).
AI use: the Lean code and this description were written with an AI agent (Claude) under my direction, from a proof in my own project; I reviewed every declaration, and the branch was checked locally with `lake build`, `lake exe lint-style` and `lake exe runLinter` before each push. |
t-number-theory
new-contributor
LLM-generated
|
244/0 |
Mathlib.lean,Mathlib/NumberTheory/ArithmeticFunction/Moebius.lean,Mathlib/NumberTheory/ArithmeticFunction/Redheffer.lean,docs/references.bib |
4 |
15 |
['Parcly-Taxel', 'github-actions', 'joelcanary', 'wwylele'] |
nobody |
3-24836 3 days ago |
3-26346 3 days ago |
9-127 9 days |
2 |
| 43759 |
joelriou author:joelriou |
chore(CategoryTheory): `End` and `Aut` as `1`-field structures |
The design looks cleaner with `1`-field structures, which also makes defining instances on `Aut/End` less ackward (e.g. for #43539).
---
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|
tech debt
t-category-theory
maintainer-merge
|
679/627 |
Mathlib/Algebra/Category/FGModuleCat/Basic.lean,Mathlib/Algebra/Category/Grp/Basic.lean,Mathlib/Algebra/Category/ModuleCat/Basic.lean,Mathlib/Algebra/Category/ModuleCat/Colimits.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf.lean,Mathlib/Algebra/Category/ModuleCat/Semi.lean,Mathlib/Algebra/Category/ModuleCat/Tannaka.lean,Mathlib/Algebra/Category/ModuleCat/Topology/Basic.lean,Mathlib/AlgebraicGeometry/Modules/Sheaf.lean,Mathlib/AlgebraicTopology/FundamentalGroupoid/FundamentalGroup.lean,Mathlib/AlgebraicTopology/FundamentalGroupoid/SimplyConnected.lean,Mathlib/CategoryTheory/Abelian/GrothendieckCategory/ModuleEmbedding/GabrielPopescu.lean,Mathlib/CategoryTheory/Abelian/Yoneda.lean,Mathlib/CategoryTheory/Action.lean,Mathlib/CategoryTheory/Action/Basic.lean,Mathlib/CategoryTheory/Action/Concrete.lean,Mathlib/CategoryTheory/Action/Continuous.lean,Mathlib/CategoryTheory/Action/Monoidal.lean,Mathlib/CategoryTheory/Center/Basic.lean,Mathlib/CategoryTheory/Center/Linear.lean,Mathlib/CategoryTheory/Center/Localization.lean,Mathlib/CategoryTheory/Center/Preadditive.lean,Mathlib/CategoryTheory/Conj.lean,Mathlib/CategoryTheory/Endomorphism.lean,Mathlib/CategoryTheory/FintypeCat.lean,Mathlib/CategoryTheory/Galois/Action.lean,Mathlib/CategoryTheory/Galois/Basic.lean,Mathlib/CategoryTheory/Galois/ContAction.lean,Mathlib/CategoryTheory/Galois/Decomposition.lean,Mathlib/CategoryTheory/Galois/Equivalence.lean,Mathlib/CategoryTheory/Galois/EssSurj.lean,Mathlib/CategoryTheory/Galois/Examples.lean,Mathlib/CategoryTheory/Galois/GaloisObjects.lean,Mathlib/CategoryTheory/Galois/IsFundamentalgroup.lean,Mathlib/CategoryTheory/Galois/Prorepresentability.lean,Mathlib/CategoryTheory/Galois/Topology.lean,Mathlib/CategoryTheory/Linear/Basic.lean,Mathlib/CategoryTheory/Preadditive/Basic.lean,Mathlib/CategoryTheory/Preadditive/HomOrthogonal.lean,Mathlib/CategoryTheory/Preadditive/Opposite.lean,Mathlib/CategoryTheory/Preadditive/Schur.lean,Mathlib/CategoryTheory/Shift/Twist.lean,Mathlib/CategoryTheory/Simple.lean,Mathlib/CategoryTheory/SingleObj.lean,Mathlib/Control/Fold.lean,Mathlib/GroupTheory/FreeGroup/NielsenSchreier.lean,Mathlib/RepresentationTheory/FDRep.lean,Mathlib/RepresentationTheory/Homological/FiniteCyclic.lean,Mathlib/RepresentationTheory/Homological/GroupCohomology/FiniteCyclic.lean,Mathlib/RepresentationTheory/Homological/GroupCohomology/Hilbert90.lean,Mathlib/RepresentationTheory/Homological/TateCohomology/Basic.lean,Mathlib/RepresentationTheory/Rep/Basic.lean,Mathlib/RepresentationTheory/Tannaka.lean,Mathlib/Topology/Homotopy/HomotopyGroup.lean,Mathlib/Topology/Homotopy/Lifting.lean |
55 |
9 |
['github-actions', 'mathlib-merge-conflicts', 'robin-carlier'] |
nobody |
3-24097 3 days ago |
3-26291 3 days ago |
5-70513 5 days |
0 |
| 43917 |
kim-em author:kim-em |
chore(CI): add lint-exec, a parse-only linter for elaboration-time code execution |
This PR adds `lake exe lint-exec`, a linter for Lean constructs that run code during elaboration (`#eval`, `run_cmd`, `run_meta`, `run_elab`, `run_tac`) or at import time (`initialize`, `@[init]`), that bypass the type checker (`unsafe`, `@[implemented_by]`, `@[extern]`), and, outside `Mathlib/Tactic`, `Mathlib/Util` and `Mathlib/Lean`, that define metaprograms (`elab`, `macro`, simprocs, and attributes such as `@[term_elab]`, `@[app_delab]`, `@[positivity]`). Reviewed uses are recorded as per-file counts in `scripts/nolints-exec.txt`.
The linter parses each file in its own process against its imports' oleans and walks the syntax trees; it never elaborates the file. Only commands that affect how later commands parse (`namespace`, `open`, `variable`, `notation`, `syntax`, …) are elaborated, and `macro`/`elab` only through their `syntax` half. Imports without an olean are replayed from source. Files that do not parse, and unresolved imports, are findings, so nothing from a PR runs to reach a verdict and the check fails closed.
CI runs it in the build job on the Lean files changed relative to the merge-base with master, and on every allowlisted file when the allowlist changes, using the binary built from master in the tools artifact; the branch's own copy is used only when identical to master's. Downstream projects can run `lake exe mathlib/lint-exec --no-allowlist <files>` before building.
🤖 Prepared with Claude Code
|
CI |
1116/7 |
.github/actions/get-tools/action.yml,.github/workflows/build_template.yml,.github/workflows/publish_tools.yml,lakefile.lean,scripts/README.md,scripts/lint-exec.lean,scripts/nolints-exec.txt |
7 |
1 |
['github-actions'] |
nobody |
3-23814 3 days ago |
3-29624 3 days ago |
3-40436 3 days |
0 |
| 38478 |
dagurtomas author:dagurtomas |
feat(Tactic/CategoryTheory): op attribute |
Adding `@[op]` to a lemma named `H` of shape `∀ .., f = g`, where `f` and `g` are morphisms
in some category `C`, creates a new lemma named `H_op` by applying `Quiver.Hom.op` to both sides
and then simplifying with `simp only [op_comp, op_id]`.
This PR also adds `op_of%`, and adjusts `@[map]` so that `@[op (attr := map)]` works for
equalities of morphisms in opposite categories.
---
- [x] depends on: #37183
[](https://gitpod.io/from-referrer/)
|
LLM-generated
t-category-theory
t-meta
|
333/0 |
Mathlib.lean,Mathlib/Tactic.lean,Mathlib/Tactic/CategoryTheory/Op.lean,MathlibTest/CategoryTheory/Op.lean,MathlibTest/CategoryTheory/OpNormalization.lean |
5 |
8 |
['chrisflav', 'dagurtomas', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'robin-carlier'] |
kim-em assignee:kim-em |
3-21968 3 days ago |
5-38648 5 days ago |
5-43019 5 days |
0 |
| 38328 |
astrainfinita author:astrainfinita |
feat: `OrderSupSet` |
This PR introduces `OrderSupSet` and `OrderInfSet`, which are typeclasses expressing that `sSup` (resp., `sInf`) returns the least upper bound (resp., the greatest lower bound) of a set whenever one exists.
This allows us to prove properties about the `sSup` of specific sets (such as `∅`, singletons, finite sets, and `univ`) without any typeclasses asserting the existence of LUBs. For example, `sSup ∅ = ⊥` holds for any type equipped with `OrderBot` `OrderSupSet`, no longer requiring typeclasses like `ConditionallyCompleteLinearOrderBot`.
For a general set `s`, this gives a uniform way to extend results about `IsLUB s a → motive a` to `motive (sSup s)`, `motive (⨆ i, f i)`, `motive (a ⊔ b)`, etc., which allows proof reuse for basic API such as [`csSup_insert`](https://leanprover-community.github.io/mathlib4_docs/Mathlib/Order/ConditionallyCompleteLattice/Basic.html#csSup_insert), [`iSup_insert`](https://leanprover-community.github.io/mathlib4_docs/Mathlib/Order/CompleteLattice/Basic.html#iSup_insert), and [`sSup_insert`](https://leanprover-community.github.io/mathlib4_docs/Mathlib/Order/CompleteLattice/Basic.html#sSup_insert) and downstream code like [`csSup_add`](https://leanprover-community.github.io/mathlib4_docs/Mathlib/Algebra/Order/Group/Pointwise/CompleteLattice.html#csSup_add), [`sSup_add`](https://leanprover-community.github.io/mathlib4_docs/Mathlib/Algebra/Order/Group/Pointwise/CompleteLattice.html#sSup_add), and [`sup_add`](https://leanprover-community.github.io/mathlib4_docs/Mathlib/Algebra/Order/Group/Lattice.html#sup_add).
Furthermore, this allows us to refactor incrementally, reducing the dependency of results about various completeness typeclasses on the specific implementation of `sSup`.
---
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[Zulip](https://leanprover.zulipchat.com/#narrow/channel/113488-general/topic/Any.20infimum.20based.20version.20of.20.60OmegaCompletePartialOrder.60.3F)
[](https://gitpod.io/from-referrer/)
|
t-order |
160/78 |
Mathlib/MeasureTheory/OuterMeasure/Induced.lean,Mathlib/Order/Bounds/Basic.lean,Mathlib/Order/Bounds/Defs.lean,Mathlib/Order/CompleteLattice/Basic.lean,Mathlib/Order/CompleteLattice/Defs.lean,Mathlib/Order/SetNotation.lean,Mathlib/RingTheory/DividedPowers/SubDPIdeal.lean,Mathlib/Topology/UniformSpace/OfCompactT2.lean |
8 |
26 |
['JovanGerb', 'Vierkantor', 'astrainfinita', 'b-mehta', 'github-actions', 'j-loreaux', 'mathlib-merge-conflicts', 'openendings', 'vihdzp'] |
Vierkantor assignee:Vierkantor |
3-19780 3 days ago |
3-23618 3 days ago |
101-75663 101 days |
6 |
| 43041 |
ajirving author:ajirving |
feat(Analysis/Analytic): analytic order of a constant function and multiplying by constants |
---
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Adds analyticOrderAt_const (which matches the meromorphic version) as well as various forms of analyticOrderAt_mul_const and analyticOrderNatAt variants. |
t-analysis |
48/0 |
Mathlib/Analysis/Analytic/Order.lean |
1 |
8 |
['ajirving', 'github-actions', 'j-loreaux'] |
nobody |
3-18139 3 days ago |
5-2387 5 days ago |
29-32488 29 days |
0 |
| 41584 |
kim-em author:kim-em |
chore: complete generalization of oneLePart lemmas to DivInvMonoid |
This PR completes the generalization of `Mathlib/Algebra/Order/Group/PosPart.lean` started by #41247: weaken `leOnePart_one`/`negPart_zero` from `Group` to `DivInvOneMonoid` (the proof needs only `inv_one`), weaken `oneLePart_min` and the five `oneLePart` lemmas in the `LinearOrder` section (`oneLePart_eq_ite`, `oneLePart_eq_ite_lt`, `one_lt_oneLePart_iff`, `oneLePart_of_one_lt_oneLePart`, `oneLePart_lt`) from `Group` to `DivInvMonoid`, and weaken the `Pi` section's `[∀ i, Group (α i)]` to `[∀ i, DivInvMonoid (α i)]`. No statement or proof changes; this makes these lemmas available for `EReal`, the motivating use case of the original PR.
Follow-up to [#41247 (chore: generalize `instPosPart` to `SubNegMonoid`)](https://github.com/leanprover-community/mathlib4/pull/41247).
🤖 Prepared with Claude Code
|
t-algebra
LLM-generated
maintainer-merge
label:t-algebra$ |
17/7 |
Mathlib/Algebra/Order/Group/PosPart.lean |
1 |
9 |
['github-actions', 'leanprover-radar', 'themathqueen'] |
nobody |
3-17925 3 days ago |
26-36849 26 days ago |
26-36623 26 days |
0 |
| 43916 |
qawbecrdtey author:qawbecrdtey |
feat(Data/Finsupp/Weight): add `degree_strictMono` |
---
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```lean
lemma degree_strictMono {R : Type*}
[AddCommMonoid R] [PartialOrder R] [CanonicallyOrderedAdd R] [AddRightStrictMono R] :
StrictMono (Finsupp.degree (σ := σ) (R := R))
``` |
t-data |
12/0 |
Mathlib/Data/Finsupp/Weight.lean |
1 |
1 |
['github-actions'] |
nobody |
3-17850 3 days ago |
3-45698 3 days ago |
3-45472 3 days |
1 |
| 41860 |
tb65536 author:tb65536 |
feat(GroupTheory/Index): formula for index of centralizer of an element |
This PR proves the formula for the index of the centralizer of an element. The also helps reduce the dependence on the type synonym `ConjAct`.
---
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|
t-algebra
t-group-theory
maintainer-merge
label:t-algebra$ |
24/4 |
Mathlib/GroupTheory/GroupAction/Basic.lean,Mathlib/GroupTheory/Index.lean,Mathlib/NumberTheory/RamificationInertia/Galois.lean |
3 |
9 |
['github-actions', 'plp127', 'tb65536', 'themathqueen'] |
mattrobball assignee:mattrobball |
3-16003 3 days ago |
3-35541 3 days ago |
66-12113 66 days |
0 |
| 40983 |
khwilson author:khwilson |
feat: lemmas to support F-space open mapping theorem |
In order to generalize the Banach open mapping theorem to a generic F-space, we need several leamms about balanced and absorbent sets in more arbitrary spaces. In particular, we need some key lemmas such as:
- A closed absorbent set in a Baire space with countably generated cobounded filter has nonempty interior
- A topological vector space has a basis of neighborhoods about 0 consisting of balanced sets
AI Disclosure: Generated by Claude Code with specific prompts from me and edits by me.
---
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|
t-topology
LLM-generated
|
119/11 |
Mathlib.lean,Mathlib/Analysis/LocallyConvex/AbsConvex.lean,Mathlib/Analysis/LocallyConvex/BalancedCoreHull.lean,Mathlib/Analysis/LocallyConvex/Basic.lean,Mathlib/Topology/Algebra/Group/Pointwise.lean,Mathlib/Topology/Baire/Absorbent.lean,Mathlib/Topology/Bornology/Absorbs.lean,Mathlib/Topology/MetricSpace/Bounded.lean |
8 |
20 |
['felixpernegger', 'github-actions', 'j-loreaux', 'khwilson', 'mcdoll', 'scholzhannah'] |
j-loreaux assignee:j-loreaux |
3-15660 3 days ago |
3-73496 3 days ago |
70-66813 70 days |
1 |
| 43224 |
joelriou author:joelriou |
feat(Category/Abelian/Injective): interaction between `InjectiveResolution.extMk` and the connecting morphism |
Given a short exact sequence `0 → X₁ → X₂ → X₃ → 0` and an injective resolution `R` of an object `Y`, we give a concrete computation of the connecting homomorphism $$Ext^n(X_1, Y) \to Ext^{n + 1}(X_3, Y)$$.
---
- [x] depends on: #43492
- [x] depends on: #43086
- [x] depends on: #43089
- [x] depends on: #43103
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|
tech debt
t-category-theory
|
200/30 |
Mathlib/Algebra/Homology/DerivedCategory/Ext/Map.lean,Mathlib/Algebra/Homology/DerivedCategory/SingleTriangle.lean,Mathlib/Algebra/Homology/DerivedCategory/SmallShiftedHom.lean,Mathlib/Algebra/Homology/HomotopyCategory/HomComplex.lean,Mathlib/Algebra/Homology/HomotopyCategory/HomComplexShift.lean,Mathlib/Algebra/Homology/HomotopyCategory/HomComplexSingle.lean,Mathlib/Algebra/Homology/HomotopyCategory/Pretriangulated.lean,Mathlib/Algebra/Homology/ShortComplex/Basic.lean,Mathlib/CategoryTheory/Abelian/Injective/Ext.lean,Mathlib/CategoryTheory/Shift/Basic.lean,Mathlib/CategoryTheory/Shift/ShiftedHom.lean |
11 |
10 |
['Multramate', 'github-actions', 'joelriou', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'robin-carlier'] |
nobody |
3-14998 3 days ago |
13-84442 13 days ago |
13-84228 13 days |
2 |
| 43895 |
joelriou author:joelriou |
feat(CategoryTheory): the external product of two Guitart exact squares is Guitart exact |
---
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|
t-category-theory
tech debt
|
172/139 |
Mathlib.lean,Mathlib/CategoryTheory/Adjunction/Mates.lean,Mathlib/CategoryTheory/Comma/StructuredArrow/Basic.lean,Mathlib/CategoryTheory/Functor/TwoSquare.lean,Mathlib/CategoryTheory/GuitartExact/Basic.lean,Mathlib/CategoryTheory/GuitartExact/HorizontalComposition.lean,Mathlib/CategoryTheory/GuitartExact/KanExtension.lean,Mathlib/CategoryTheory/GuitartExact/Opposite.lean,Mathlib/CategoryTheory/GuitartExact/Over.lean,Mathlib/CategoryTheory/GuitartExact/Prod.lean,Mathlib/CategoryTheory/GuitartExact/VerticalComposition.lean,Mathlib/CategoryTheory/Monoidal/Closed/Functor.lean |
12 |
7 |
['Multramate', 'github-actions', 'joelriou', 'robin-carlier'] |
dagurtomas assignee:dagurtomas |
3-14401 3 days ago |
3-15904 3 days ago |
3-83337 3 days |
1 |
| 43925 |
xroblot author:xroblot |
feat(Algebra/Field/Subfield): the map/comap Galois coinsertion |
The Galois connection between `map` and `comap` on subfields is already in Mathlib, giving that `map` preserves suprema and `comap` infima; since a ring homomorphism out of a field is injective, the pair is in fact `GaloisCoinsertion`, which is what this PR adds, as `Subfield.gciMapComap`.
From it come `comap_surjective`, `map_injective`, `map_le_map_iff`, the compatibility of `comap` with `⊓`, `⊔`, `⨅` and `⨆` of mapped subfields, and the fact that `comap f` preserves the supremum of subfields lying in `f.fieldRange`. The existing `comap_map` is reproved from the coinsertion.
Also add three lemmas on `comap` along `s.subtype`: `comap_subtype_eq_top`, `comap_subtype_self` and `map_comap_subtype`.
The same is done for `IntermediateField` and `AlgHom`, as `IntermediateField.gciMapComap` and the counterparts of the above, the `subtype` ones becoming `comap_val_eq_top`, `comap_val_self` and `map_comap_val`. Its `comap` API was thinner than the one for subfields, so the missing basic lemmas are added alongside: `coe_comap`, `mem_comap`, `comap_comap`, `comap_inf`, `comap_iInf` and `comap_top`.
Prepared with Claude Code 🤖
---
|
t-algebra label:t-algebra$ |
149/2 |
Mathlib/Algebra/Field/Subfield/Basic.lean,Mathlib/FieldTheory/IntermediateField/Adjoin/Defs.lean,Mathlib/FieldTheory/IntermediateField/Basic.lean |
3 |
3 |
['github-actions', 'tb65536', 'xroblot'] |
nobody |
3-11582 3 days ago |
3-14597 3 days ago |
3-30488 3 days |
1 |
| 41652 |
xroblot author:xroblot |
feat(GroupTheory/Nilpotent): maximal subgroups of nilpotent groups have prime index |
Building on the API from #41651, prove some results on the maximal subgroups of nilpotent groups and their `p`-group consequences:
* `Subgroup.isCoatom_iff_index_prime`: in a nilpotent group, the maximal subgroups are exactly the subgroups of prime index.
* `IsPGroup.isCoatom_iff_index_eq_prime`: in a nilpotent `p`-group the maximal subgroups are exactly the subgroups of index `p`.
* `IsPGroup.not_isCyclic_iff_exists_ne_index_eq_prime`: a nilpotent `p`-group in which every proper subgroup lies below a maximal one is non-cyclic iff it has two distinct subgroups of index `p`.
:robot: This PR was extracted from the [SKW project](https://github.com/xroblot/SKW) by Claude.
---
- [x] depends on: #41651
- [x] depends on: #40597
- [x] depends on: #43826
- [x] depends on: #43836
|
t-group-theory
maintainer-merge
|
84/2 |
Mathlib/GroupTheory/Index.lean,Mathlib/GroupTheory/IndexNormal.lean,Mathlib/GroupTheory/Nilpotent.lean,Mathlib/GroupTheory/QuotientGroup/Simple.lean,Mathlib/GroupTheory/SpecificGroups/Cyclic.lean,Mathlib/GroupTheory/Subgroup/Simple.lean |
6 |
35 |
['SnirBroshi', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'tb65536', 'xroblot'] |
nobody |
3-9861 3 days ago |
3-12518 3 days ago |
10-1648 10 days |
0 |
| 39619 |
dagurtomas author:dagurtomas |
feat(CategoryTheory): the bicategory of profunctors |
---
- [x] depends on: #38086 |
t-category-theory
LLM-generated
maintainer-merge
|
157/1 |
Mathlib.lean,Mathlib/CategoryTheory/Profunctor/Bicategory.lean,Mathlib/CategoryTheory/Profunctor/Comp.lean,MathlibTest/CategoryTheory/ProfunctorBicategory.lean |
4 |
7 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'robin-carlier'] |
nobody |
3-8784 3 days ago |
3-37684 3 days ago |
3-37542 3 days |
0 |
| 40636 |
xroblot author:xroblot |
feat(RingTheory/FractionalIdeal): IsMulTorsionFree instance |
- Adds `FractionalIdeal.isMulTorsionFree_of_le_nonZeroDivisors`: if `S ≤ R⁰` and `[IsMulTorsionFree (Ideal R)]`, then `IsMulTorsionFree (FractionalIdeal S P)`.
- Derives `FractionalIdeal.instIsMulTorsionFree` for the fraction field case (`S = R⁰`).
Also adds a discoverability note in `DedekindDomain/Ideal/Basic.lean` pointing to `Mathlib.Algebra.GroupWithZero.Torsion` for the `IsMulTorsionFree (Ideal A)` instance (hence also `IsMulTorsionFree (FractionalIdeal A⁰ K)`).
:robot: This PR was extracted from the [SKW project](https://github.com/xroblot/SKW) by Claude. |
t-ring-theory |
44/0 |
Mathlib/RingTheory/DedekindDomain/Ideal/Basic.lean,Mathlib/RingTheory/FractionalIdeal/Operations.lean |
2 |
1 |
['github-actions'] |
nobody |
3-8637 3 days ago |
72-18698 72 days ago |
72-18516 72 days |
0 |
| 43834 |
sgouezel author:sgouezel |
chore: extend L^p lemmas from normed spaces to enormed setting |
In the refactor of eLpNorm in #42406, I adapted some lemmas in `LpSemiNorm.CompareExp` to the new setting by adding a continuity assumption. It turns out that this assumption is too strong for some applications in Carleson. This PR proves more general versions of the lemmas, suitable for Carleson.
The lemmas are of the form `eLpNorm (fun x => b (f x) (g x)) r μ ≤ c * eLpNorm f p μ * eLpNorm g q μ` when `‖b (f x) (g x)‖ ≤ c * ‖f x‖ * ‖g x‖` (where the norm could also be an nnnorm or an enorm). They were only proved in normed spaces. The PR proves versions in enormed spaces. The main new application is the inequality `eLpNorm (f * g) r μ ≤ eLpNorm f p μ * eLpNorm g q μ` when `f` and `g` take values in ENNReal.
I tried to be coherent, with lemmas named `..._of_pos` when they assume that `r` is positive, with `of_enorm` when the assumption is in terms of enorms, and `of_norm` when it's in terms of norms. Now, the main statements are the enorms ones, and the other statements are deduced from the enorms ones. I have not removed any statement, but I have renamed those that were not following this convention. The PR is maybe hard to review because of this, but the changes are mostly mechanical. I have tried hard to avoid measurability assumptions when they were not necessary.
---
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|
t-measure-probability |
274/124 |
Mathlib/Analysis/Normed/Group/Real.lean,Mathlib/Analysis/Normed/MulAction.lean,Mathlib/MeasureTheory/Function/Holder.lean,Mathlib/MeasureTheory/Function/LpSeminorm/CompareExp.lean,Mathlib/MeasureTheory/Function/LpSeminorm/SMul.lean,Mathlib/MeasureTheory/Function/StronglyMeasurable/AEStronglyMeasurable.lean,Mathlib/Topology/Instances/ENNReal/Lemmas.lean |
7 |
13 |
['D-Thomine', 'github-actions', 'grunweg', 'mathlib-bors', 'sgouezel'] |
grunweg assignee:grunweg |
3-8561 3 days ago |
3-10260 3 days ago |
5-15271 5 days |
0 |
| 42867 |
WilliamCoram author:WilliamCoram |
feat: restricted multivariate power series as its own type and some missing API lemmas |
We add some missing API lemmas for restricted multivariate power series, as well as promoting them to their own type `MvPowerSeries.Restricted`.
---
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t-ring-theory |
234/22 |
Mathlib/RingTheory/MvPowerSeries/Restricted.lean,Mathlib/RingTheory/PowerSeries/Restricted.lean |
2 |
25 |
['Multramate', 'WilliamCoram', 'github-actions', 'riccardobrasca'] |
riccardobrasca assignee:riccardobrasca |
3-7000 3 days ago |
3-25130 3 days ago |
25-19313 25 days |
0 |
| 43273 |
Raph-DG author:Raph-DG |
feat(AlgebraicGeometry): scheme level order of vanishing api |
In this PR, we develop some API for the order of vanishing of rational functions on schemes. We also change the file structure of order of vanishing in algebraic geometry to more closely mirror that of the ring theoretic order of vanishing results.
---
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file-removed
t-algebraic-geometry
|
242/14 |
Mathlib.lean,Mathlib/AlgebraicGeometry/AffineScheme.lean,Mathlib/AlgebraicGeometry/OrderOfVanishing/Basic.lean,Mathlib/AlgebraicGeometry/OrderOfVanishing/DVR.lean |
4 |
2 |
['Brian-Nugent', 'github-actions'] |
alreadydone assignee:alreadydone |
3-4948 3 days ago |
20-35668 20 days ago |
20-35949 20 days |
0 |
| 43298 |
SnirBroshi author:SnirBroshi |
feat(GroupTheory/IndexNormal): the index of the normal core is bounded by the factorial of the index |
---
Also golf `normalCore_eq_ker`.
Two theorems had to be additivized manually because `MulAction.toPermHom` and `AddAction.toPermHom` aren't `to_additive` of each other.
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t-group-theory
maintainer-merge
|
35/11 |
Mathlib/Algebra/Group/Action/End.lean,Mathlib/GroupTheory/GroupAction/Quotient.lean,Mathlib/GroupTheory/IndexNormal.lean |
3 |
16 |
['SnirBroshi', 'github-actions', 'tb65536'] |
nobody |
3-4773 3 days ago |
4-12811 4 days ago |
4-41078 4 days |
0 |
| 42380 |
matt-w-horn author:matt-w-horn |
feat(Algebra/Ring): add sum_range_id_mul_geometric_add |
Over a `CommRing`: `∑ k < m, k * (x ^ k * (1 - x)) + m * x ^ m = ∑ k ∈ Icc 1 m, x ^ k`. Summation by parts for the geometric sum; it computes the mean of a censored geometric distribution, which #42381 adds.
Used in Overload, a library on retry and overload dynamics, where it's stated over `ℝ` with a side condition that turns out to be unnecessary: https://github.com/matt-w-horn/overload/blob/4ecbebf/Overload/Retry/Amplification.lean
Claude Fable wrote the Lean from a spec I gave it. I reviewed and tested it myself, including adversarial tests and the suites in the library above, and did the same for its dependencies.
Assisted-by: Claude Fable 5 |
t-algebra
new-contributor
LLM-generated
label:t-algebra$ |
14/0 |
Mathlib/Algebra/Ring/GeomSum.lean |
1 |
4 |
['github-actions', 'matt-w-horn'] |
nobody |
2-83967 2 days ago |
39-72991 39 days ago |
39-72765 39 days |
0 |
| 27707 |
amellendijk author:amellendijk |
feat(NumberTheory/SelbergSieve): define Selberg's weights and prove basic results |
This PR continues the work from #23635.
Original PR: https://github.com/leanprover-community/mathlib4/pull/23635
- [x] depends on: #27702 |
t-number-theory |
139/2 |
Mathlib/NumberTheory/Divisors.lean,Mathlib/NumberTheory/SelbergSieve.lean |
2 |
36 |
['AlexKontorovich', 'MichaelStollBayreuth', 'ajirving', 'amellendijk', 'github-actions', 'loefflerd', 'mathlib-dependent-issues', 'mathlib4-merge-conflict-bot'] |
nobody |
2-83065 2 days ago |
74-24417 74 days ago |
77-68918 77 days |
1 |
| 41809 |
kebekus author:kebekus |
feat: Truncated Counting Function of Value Distribution Theory |
Introduce (and provide API for) the Truncated Logarithmic Counting Functions. These differ from the Logarithmic Counting Function in that they disregard pole orders and count all poles with multiplicity one. The truncated counting function is the quantity through which the Second Main Theorem of Value Distribution Theory is classically stated.
This material is used in [Project VD](https://github.com/kebekus/ProjectVD), formalizing Value Distribution Theory for meromorphic functions on the complex plane. Claude Code was used to create this PR.
---
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|
t-topology
t-analysis
LLM-generated
|
383/125 |
Mathlib.lean,Mathlib/Algebra/MonoidAlgebra/PointwiseSMul.lean,Mathlib/Algebra/Notation/Indicator.lean,Mathlib/Algebra/Notation/Support.lean,Mathlib/Analysis/Calculus/BumpFunction/Basic.lean,Mathlib/Analysis/Complex/ValueDistribution/Cartan.lean,Mathlib/Analysis/Complex/ValueDistribution/FirstMainTheorem.lean,Mathlib/Analysis/Complex/ValueDistribution/LogCounting/Asymptotic.lean,Mathlib/Analysis/Complex/ValueDistribution/LogCounting/Basic.lean,Mathlib/Analysis/Complex/ValueDistribution/LogCounting/Truncated.lean,Mathlib/Analysis/Complex/ValueDistribution/Proximity/Basic.lean,Mathlib/Analysis/Normed/Lp/lpSpace.lean,Mathlib/Analysis/SpecialFunctions/Log/Basic.lean,Mathlib/Data/Analysis/Topology.lean,Mathlib/Data/Set/Finite/Basic.lean,Mathlib/Data/Set/Pointwise/Support.lean,Mathlib/LinearAlgebra/AffineSpace/Simplex/Basic.lean,Mathlib/MeasureTheory/Function/L1Space/Integrable.lean,Mathlib/Topology/Algebra/Group/DiscontinuousSubgroup.lean,Mathlib/Topology/Algebra/InfiniteSum/Defs.lean,Mathlib/Topology/Algebra/Support.lean,Mathlib/Topology/LocallyFinite.lean,Mathlib/Topology/LocallyFinsupp.lean,Mathlib/Topology/LocallyFinsupp/Pushforward.lean |
24 |
37 |
['github-actions', 'j-loreaux', 'kebekus', 'mathlib-merge-conflicts'] |
j-loreaux assignee:j-loreaux |
2-82075 2 days ago |
3-443 3 days ago |
50-19527 50 days |
0 |
| 43811 |
emlis42 author:emlis42 |
feat(Analysis/SpecialFunctions): add complex Lambert W function |
This PR adds complex Lambert W function, and proves basic bijectivity.
## Main definitions
* `Complex.LambertW.domain k`: the domain of the `k`-th branch in the z-plane.
* `Complex.LambertW.range k`: the range of the `k`-th branch in the w-plane.
* `Complex.LambertW.index hw`: the unique index of the branch containing `w ≠ -1`.
* `Complex.lambertW k`: the `k`-th branch `W_ k` of the Lambert W function.
## Main results
* `Complex.LambertW.existsUnique_mem_range_mul_exp_eq`: every point in the domain of a branch has a
unique preimage in its range.
* `Complex.LambertW.bijOn_mul_exp_range_domain`:
`w ↦ w * cexp w` is a bijection from `range k` to `domain k`.
* `Complex.lambertW_mul_exp_of_mem_range`:
`W_ k (w * cexp w) = w` for `w ∈ range k`.
* `Complex.lambertW_mul_exp_lambertW_of_mem_domain`:
`W_ k z * cexp (W_ k z) = z` for `z ∈ domain k`.
* `Complex.eq_mul_exp_iff_exists_eq_lambertW`: `z = w * cexp w` if and only if `w = W_ k z` for
some branch `k` with `z ∈ domain k`.
* `Complex.eq_index_of_mem_lambertW`: the branch index in the previous statement is
unique whenever `w ≠ -1`.
## Notations
* `W_ k` is `Complex.lambertW k`.
* `W₀` is the principal branch `W_ 0`.
* `W₋₁` is `W_ (-1)`.
Discussed here: [adding the Complex LambertW function](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/adding.20the.20Complex.20LambertW.20function/with/622137962)
---
I asked LLM some proof details like `im_eq_zero_of_arg_add_im_eq_pi_of_mul_exp_mem` |
t-analysis |
1055/0 |
Mathlib.lean,Mathlib/Analysis/SpecialFunctions/Exp.lean,Mathlib/Analysis/SpecialFunctions/LambertW/Basic.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Basic.lean,docs/references.bib |
5 |
11 |
['Multramate', 'SnirBroshi', 'emlis42', 'github-actions', 'wwylele'] |
nobody |
2-79379 2 days ago |
6-9268 6 days ago |
6-10707 6 days |
1 |
| 39913 |
mkaratarakis author:mkaratarakis |
feat(Combinatorics/Quiver): periodicity and aperiodicity |
cycle lengths, index of imprimitivity, and cyclic partitions for strongly connected quivers.
Part of the Perron–Frobenius formalization (with @or4nge19).
---
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cc @or4nge19 for review |
t-combinatorics |
284/0 |
Mathlib.lean,Mathlib/Combinatorics/Quiver/Cyclic.lean |
2 |
6 |
['YaelDillies', 'github-actions', 'mkaratarakis', 'or4nge19'] |
YaelDillies assignee:YaelDillies |
2-76994 2 days ago |
3-15948 3 days ago |
116-18676 116 days |
1 |
| 43876 |
pechersky author:pechersky |
chore(Data/PNat): untangle definition from requiring later imports and instances |
`PNat` was defined in `Data.PNat.Notation` with only a little bit of theory on it within that file.
More theory was in `Data.PNat.Defs` with a small number of light imports.
And then a lot of functions like dvd, mod, and a whole slew of instances were declared in `Data.PNat.Basic`
Changes:
- have a PNat specific "constructor": `PNat.mk`, which helps with reducibility and elaboration -- added directly into `Data.PNat.Notation`
- all the theory/definitions/API that can be declared at the simplest import burden (as in `Data.PNat.Notation`) is moved into there, mostly from `Defs`
- we already had a `Data.PNat.Order` which was about `SuccOrder`, so move `Data.PNat.Order` -> `Data.PNat.SuccOrder`
- `Data.PNat.Basic` is broken up into various smaller files: `Algebra`, `Dvd`, `DivMod`, and `Order` (see above) -- each of these now has minimal imports for the API it declares
- the heavy `deriving` line that was a catch all in `Data.PNat.Basic` is now distributed into various files, each "import minimized"
All of this allows usage of PNat earlier on in various basic theory, like algebraic structures, without having to have import loops. No new declaration/API is built other than `PNat.mk` and `PNat.val_one`, the Lean diff is just instance naming. Also cleaned away a leftover `backwardsTransparency` option setting.
as discussed in [#mathlib4 > reducible constructors for PNat](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/reducible.20constructors.20for.20PNat/with/606726575)
---
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Will help with #40785.
Files/declarations moved around with GPT 5.6 Luna xhigh, manual reworking of file dependency and cleanup. |
t-data
tech debt
large-import
|
591/460 |
Archive/Imo/Imo1977Q6.lean,Mathlib.lean,Mathlib/Data/Nat/Fib/Basic.lean,Mathlib/Data/Nat/Fib/Zeckendorf.lean,Mathlib/Data/PNat/Algebra.lean,Mathlib/Data/PNat/Algebra/Order.lean,Mathlib/Data/PNat/Basic.lean,Mathlib/Data/PNat/Defs.lean,Mathlib/Data/PNat/DivMod.lean,Mathlib/Data/PNat/Dvd.lean,Mathlib/Data/PNat/Notation.lean,Mathlib/Data/PNat/Order.lean,Mathlib/Data/PNat/SuccOrder.lean,Mathlib/Data/PNat/Xgcd.lean,Mathlib/NumberTheory/TsumDivisorsAntidiagonal.lean |
15 |
5 |
['github-actions', 'leanprover-radar', 'pechersky', 'riccardobrasca'] |
nobody |
2-73961 2 days ago |
3-60472 3 days ago |
4-65375 4 days |
0 |
| 38489 |
Jun2M author:Jun2M |
feat(Topology/Algebra/InfiniteSum): Generalize ENNReal lemmas |
This PR generalizes many theorems in Topology/Algebra/InfiniteSum/ENNReal.lean from `ENNREal` to any type that satisfies a list of order-related instances, mostly
`[CommMonoid α] [CompleteLattice α] [CanonicallyOrderedMul α] [TopologicalSpace α] [SupConvergenceClass α]`
Deprecation of the original `ENNReal` lemmas are done in the next PR: #38193.
Related Zulip thread: [#Is there code for X? > Summing `ENat`s without topology](https://leanprover.zulipchat.com/#narrow/channel/217875-Is-there-code-for-X.3F/topic/Summing.20.60ENat.60s.20without.20topology/with/588756615)
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t-topology |
239/5 |
Mathlib/MeasureTheory/Measure/CompleteLattice.lean,Mathlib/MeasureTheory/OuterMeasure/OfFunction.lean,Mathlib/Probability/ProbabilityMassFunction/Monad.lean,Mathlib/Topology/Algebra/InfiniteSum/Basic.lean,Mathlib/Topology/Algebra/InfiniteSum/ENNReal.lean,Mathlib/Topology/Algebra/InfiniteSum/Order.lean |
6 |
12 |
['Jun2M', 'SnirBroshi', 'github-actions', 'j-loreaux', 'mathlib-merge-conflicts', 'wwylele'] |
nobody |
2-63230 2 days ago |
2-66022 2 days ago |
120-30281 120 days |
1 |
| 35504 |
JoaBjo author:JoaBjo |
feat(Probability/Distributions/Exponential): add MGF, moments, and memoryless property |
Add the main analytic results for the exponential distribution:
- moment-generating function `mgf id (expMeasure r) t = r / (r - t)` for `t < r`
- mean `∫ x, x ∂(expMeasure r) = r⁻¹`
- variance `Var[id; expMeasure r] = r⁻¹ ^ 2`
- `ℒp` membership for all `p`
- tail probability `P(X > x) = exp (-(r * x))`
- memoryless property `P(X > s + t | X > s) = P(X > t)`
The MGF is computed by reducing to the known improper integral `∫ exp(c * x)` on `Ioi`, and integrability is deduced by contradiction from the positive closed-form value. The mean and variance are computed via the Gamma function integral `∫₀^∞ x^(n-1) exp(-r x) dx = Γ(n) / rⁿ`. The memoryless property follows from the exponential identity `exp(-(r(s+t))) = exp(-rt) * exp(-rs)`.
🤖 Claude Code (Fable) was used in this PR to resolve a merge with master. It adapted the branch's code to upstream renames/deprecations. It also restructured a proof that broke in the merge.
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new-contributor
t-measure-probability
large-import
|
199/0 |
Mathlib/Probability/Distributions/Exponential.lean |
1 |
11 |
['EtienneC30', 'JoaBjo', 'Timeroot', 'github-actions', 'mathlib-merge-conflicts'] |
urkud assignee:urkud |
2-63006 2 days ago |
29-21230 29 days ago |
71-31929 71 days |
0 |
| 38482 |
dagurtomas author:dagurtomas |
feat(CategoryTheory/Tactic): specialize_map attribute |
Adds `@[specialize_map F]` to specialize morphism equalities to a chosen functor template, with whiskering and tensor functors as examples. It reuses the `map` proof generator and universe ordering, preserves explicit and instance binders, and supports custom suffixes and additional attributes.
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LLM-generated
t-category-theory
t-meta
|
349/6 |
Mathlib.lean,Mathlib/Tactic.lean,Mathlib/Tactic/CategoryTheory/Map.lean,Mathlib/Tactic/CategoryTheory/SpecializeMap.lean,MathlibTest/CategoryTheory/SpecializeMap.lean |
5 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
kim-em assignee:kim-em |
2-63006 2 days ago |
3-84745 3 days ago |
3-84534 3 days |
1 |
| 41517 |
sadasant author:sadasant |
feat(MeasureTheory): define Hellinger affinity |
Define the Hellinger affinity (Bhattacharyya coefficient) of two measures as an `ENNReal`-valued lintegral against the canonical dominating measure `μ + ν`, making the definition total with no absolute-continuity or integrability side conditions. Provide symmetry, invariance under the choice of sigma-finite dominating measure, the self-affinity of a probability measure, the `rnDeriv` and `withDensity` computation rules, the bound `≤ 1` for probability measures (via Hölder with `p = q = 2`), and the characterization that the affinity vanishes iff the measures are mutually singular. Groundwork for a formalization of Kakutani's dichotomy (1948) for infinite products of probability measures.
---
**Design notes.**
On the value type ("why not `ℝ` / `ℝ≥0` / `EReal`"): the `ℝ≥0∞`-valued lintegral against `μ + ν` makes the affinity total, which is what makes the singular direction of Kakutani's dichotomy (planned follow-up PRs) case-split-free — `hellingerAffinity_eq_zero_iff` already characterizes mutual singularity with no absolute-continuity hypothesis. `InformationTheory.klDiv` sets the precedent of an `ℝ≥0∞`-valued, standalone divergence-like quantity. The invariance lemma `hellingerAffinity_eq_lintegral_rnDeriv_mul_rnDeriv` recovers the textbook `∫ √(dμ/dρ · dν/dρ) dρ` for any σ-finite dominating `ρ`.
**Relation to f-divergences** (CC @RemyDegenne for coordination with the planned `fDiv` upstreaming from TestingLowerBounds): the affinity is the f-integral at `f = √·`, equivalently `1 −` the Hellinger-½ divergence, with `H²(μ,ν)/2 = 1 − affinity`. Rather than block on an unlanded framework, this PR keeps the affinity standalone (the `klDiv` pattern); when `fDiv` lands, a single bridging lemma of the shape `fDiv hellingerFun μ ν = 1 - hellingerAffinity μ ν` reconciles them, and I am happy to contribute it. Also happy to move the file to `Mathlib/InformationTheory/` if reviewers prefer that home over `Mathlib/MeasureTheory/Measure/`.
**Roadmap.** This is PR 1 of a planned sequence building toward Kakutani's dichotomy for `Measure.infinitePi` over an arbitrary index type (stronger than the textbook countable statement): the `lintegral` product Fubini and `Measure.pi_withDensity`, the infinite-product/summability bridges, then the singular and absolutely-continuous directions and the packaged dichotomy. Natural follow-up API for this file, available on request: `hellingerAffinity_pos_iff`, monotonicity in each argument, and the relation to the squared Hellinger distance once a distance exists.
**Attribution and AI disclosure.** This material was developed in the public [riemann-venue](https://github.com/idolum-ai/riemann-venue) repository by Daniel Rodriguez in collaboration with Claude Fable 5 (Anthropic), as part of a machine-checked formalization of Kakutani's dichotomy (1948) for infinite products of probability measures. The definitions, proofs, and the drafting of this description were done with Claude Fable 5 via Claude Code, working from a design and statement plan reviewed by the human author; all proofs are checked by Lean (`#print axioms` on the main results reports only `propext`, `Classical.choice`, `Quot.sound`), and the human author reviewed the final form, takes responsibility for it, and will answer all review comments personally. I am applying the `LLM-generated` label per the contribution guidelines. |
t-measure-probability
LLM-generated
new-contributor
|
214/0 |
Mathlib.lean,Mathlib/MeasureTheory/Measure/Hellinger.lean |
2 |
4 |
['github-actions', 'sadasant'] |
urkud assignee:urkud |
2-63005 2 days ago |
74-72452 74 days ago |
74-72226 74 days |
0 |
| 41781 |
teng10 author:teng10 |
feat(Algebra/Representation): add abstract permutation action in TensorPower |
Hello, I'm a new contributor. I had an introduction here on [zulip](https://leanprover.zulipchat.com/#narrow/channel/113489-new-members/topic/Introduction.3A.20Schur.20Weyl.20Duality/with/607194314)
This PR is a first step in formalizing Shur Weyl duality, which I got feedback that it would be useful to mathlib. The final statement I had in mind has the form
/--
The centralizer of `{g^{⊗k} | g ∈ End(V)}`equals `Span{W_σ | σ ∈ S_k}`, for all dimensions `d` and tensor powers `k`.
---/
This PR tries to define permutation action on TensorPower; define permutation image space.
An initial version of the definition is more specific to the Euclidean space (for reference I list them below)
```
open scoped TensorProduct
variable {d : ℕ} {k : ℕ}
/-- The `k`-fold tensor power of `ℂ^d`, defined as `⨂[ℂ] (i : Fin k), (Fin d → ℂ)`. -/
abbrev PiTensorPower (d k : ℕ) : Type :=
PiTensorProduct ℂ (fun (_ : Fin k) => (Fin d → ℂ))
/-- The permutation operator `W_σ` on the tensor power `V^{⊗k}`.
Given `σ : Equiv.Perm (Fin k)`, this acts by permuting the tensor factors:
`W_σ (v₁ ⊗ ⋯ ⊗ vₖ) = v_{σ⁻¹(1)} ⊗ ⋯ ⊗ v_{σ⁻¹(k)}`. -/
def permAction (d : ℕ) {k : ℕ} (σ : Equiv.Perm (Fin k)) :
PiTensorPower d k ≃ₗ[ℂ] TensV d k :=
PiTensorProduct.reindex ℂ (fun (_ : Fin k) => (Fin d → ℂ)) σ
/-- The set of permutation operators in `End(V^{⊗k})`. -/
def permImage (d k : ℕ) : Set (Module.End ℂ (TensV d k)) :=
Set.range (fun σ : Equiv.Perm (Fin k) => (permAction d σ).toLinearMap)
```
LLM acknowledgement: I have used aristotle to write these definitions. However, I am very motivated to learn how to write proper code. I have looked more into `PiTensorProduct` and `TensorPower` module and came to the abstract version in the PR. I tried to ask aristotle about how it's defining things and whether it's suitable for mathlib.
And I would very much appreciate your thoughts on how appropriate these definitions are. Thanks for your time!
Yanting
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t-algebra
LLM-generated
new-contributor
label:t-algebra$ |
22/0 |
Mathlib/LinearAlgebra/TensorPower/Basic.lean |
1 |
4 |
['github-actions', 'teng10'] |
joelriou assignee:joelriou |
2-63002 2 days ago |
68-9020 68 days ago |
68-8810 68 days |
0 |
| 42261 |
D-Thomine author:D-Thomine |
chore(MeasureTheory): using ENNReal instead of NNReal |
This PR removes coercions in some files in `MeasureTheory` (i.e. working directly with `ENNReal` instead of working with `NNReal` and coercing), focusing on `MeasureTheory.Covering.Differentiation`. The resulting files are a bit shorter and a more legible.
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t-measure-probability |
166/205 |
Mathlib/MeasureTheory/Constructions/BorelSpace/Order.lean,Mathlib/MeasureTheory/Covering/Differentiation.lean,Mathlib/MeasureTheory/Function/AEMeasurableOrder.lean,Mathlib/MeasureTheory/Measure/Typeclasses/Finite.lean |
4 |
5 |
['D-Thomine', 'github-actions', 'grunweg', 'leanprover-radar'] |
sgouezel assignee:sgouezel |
2-63001 2 days ago |
53-7348 53 days ago |
53-7122 53 days |
0 |
| 42786 |
rshlyakh author:rshlyakh |
feat(Data/Finsupp/NatCard): count finsupps of bounded degree |
Adds the formula that the number of finitely-supported functions `α →₀ ℕ` with degree less than or equal to `n` is equal to `Nat.choose (Nat.card α + n) n`. The proof is by establishing an equivalence `Sym (Option α) n ≃ {f : α →₀ ℕ // f.degree ≤ n}` and using the stars-and-bars formula `Sym.equivNatSum.`
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t-data
new-contributor
|
56/0 |
Mathlib.lean,Mathlib/Data/Finsupp/NatCard.lean |
2 |
2 |
['github-actions'] |
joneugster assignee:joneugster |
2-63000 2 days ago |
37-58873 37 days ago |
37-61281 37 days |
0 |
| 42831 |
ray-shang author:ray-shang |
feat(CategoryTheory/Preadditive): category ring of preadditive category |
Given a preadditive category `C`, its category ring `CategoryRing C` is the non-unital ring
whose underlying additive group is the direct sum of all of its morphism groups `X ⟶ Y`, and
whose multiplication is induced by composition: the product of a morphism `f : X ⟶ Y` with a
morphism `g : Z ⟶ W` is `f ≫ g` when `Y = Z`, and `0` otherwise. When `C` is `R`-linear this ring
is a (non-unital) `R`-algebra, and when `C` has finitely many objects it is unital, with
unit `∑ X, 𝟙 X`.
This file formalizes `CategoryRing C` and its structure and universal property
when `C` is preadditive, `R`-linear, finite type, and both finite type and `R`-linear. For example,
when `C` is merely preadditive, the universal property of `CategoryRing C` is: non-unital ring
homomorphisms out of `CategoryRing C` correspond to `LiftData`, the data of a
compatible family of additive maps `(X ⟶ Y) →+ A` for a `NonUnitalNonAssocSemiring A`.
AI Usage: Gemini 3.1 Pro Extended Thinking is in use to generate proof terms for the custom induction principle to unwrap the nested direct sums of the category algebra. Human oversight and work determines the most efficient proof term.
---
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|
t-category-theory
new-contributor
|
706/0 |
Mathlib.lean,Mathlib/CategoryTheory/Preadditive/CategoryRing.lean |
2 |
11 |
['b-reinke', 'github-actions', 'joelriou', 'ray-shang', 'robin-carlier'] |
dagurtomas assignee:dagurtomas |
2-62999 2 days ago |
3-990 3 days ago |
3-33793 3 days |
0 |
| 42909 |
EtienneC30 author:EtienneC30 |
refactor(Probability/Distributions/Uniform): change uniformOfFinset and ofMultiset from PMF to Measure |
Turn [PMF.uniformOfFinset](https://leanprover-community.github.io/mathlib4_docs/Mathlib/Probability/Distributions/Uniform.html#PMF.uniformOfFinset) and [PMF.ofMultiset](https://leanprover-community.github.io/mathlib4_docs/Mathlib/Probability/Distributions/Uniform.html#PMF.ofMultiset) into measures.
This is part of #42821 which deprecates `PMF`.
---
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t-measure-probability |
85/115 |
Mathlib/Probability/Distributions/Uniform.lean |
1 |
1 |
['github-actions'] |
RemyDegenne assignee:RemyDegenne |
2-62998 2 days ago |
34-12550 34 days ago |
34-12324 34 days |
1 |
| 43042 |
grunweg author:grunweg |
feat: `ContMDiff.clm_bundle_of_apply` and friends |
Future PRs will add versions of these allowing for the loss of derivatives:
let's start with these versions as the required modifications are straight-
forward.
We add the analogous lemmas for differentiability also (and comment when this requires further work out of this PR's scope).
From the path towards smoothness of the Levi-Civita connection and Riemannian geometry.
Co-authored-by: Patrick Massot <patrickmassot@free.fr>
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[](https://gitpod.io/from-referrer/)
|
t-differential-geometry |
136/2 |
Mathlib/Geometry/Manifold/VectorBundle/Hom.lean |
1 |
1 |
['github-actions'] |
nobody |
2-62108 2 days ago |
30-22524 30 days ago |
30-22298 30 days |
1 |
| 41678 |
JX-Mo author:JX-Mo |
refactor(RepresentationTheory): record the concrete binary biproduct |
Record the concrete binary biproduct explicitly from the instance `HasBinaryBiproducts` to make its _**proof**_ reusable. This strengthens the exposed mathematical statement from "_the biproduct exists_" to "_the biproduct exists and is isomorphic to_ `prod _ _`".
This has an immediate downstream application: to prove that the property of being smooth is stable under product, we need to reconstruct the "product". The current instance `HasBinaryBiproducts` only tells that the product exists and the information about how the product looks like is not directly available, so now we need to reprove that `prod` is a concrete categorical (bi)product. This PR aims to eliminate such future duplicated proofs. |
t-algebra
new-contributor
label:t-algebra$ |
23/7 |
Mathlib/RepresentationTheory/Rep/Basic.lean |
1 |
9 |
['JX-Mo', 'Whysoserioushah', 'github-actions', 'mathlib-merge-conflicts'] |
joelriou assignee:joelriou |
2-49548 2 days ago |
54-64138 54 days ago |
70-24402 70 days |
0 |
| 42475 |
kebekus author:kebekus |
feat: establish the Poisson-Jensen formula |
Establish the classic Poisson-Jensen formula of complex analysis, which generalizes the Jensen formula.
This material is used in [Project VD](https://github.com/kebekus/ProjectVD), formalizing Value Distribution Theory for meromorphic functions on the complex plane. Claude Code was used to create this PR.
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[](https://gitpod.io/from-referrer/)
|
t-analysis
LLM-generated
|
170/8 |
Mathlib/Analysis/Complex/CanonicalDecomposition.lean,Mathlib/Analysis/Complex/JensenFormula.lean,Mathlib/Analysis/Complex/Poisson.lean,Mathlib/Analysis/SpecialFunctions/Integrability/Log.lean |
4 |
5 |
['github-actions', 'kebekus', 'mathlib-merge-conflicts', 'themathqueen'] |
j-loreaux assignee:j-loreaux |
2-42233 2 days ago |
2-43606 2 days ago |
46-64099 46 days |
0 |
| 42823 |
attilavjda author:attilavjda |
chore: let `to_additive` generate hand-written additive twins |
In eight `to_additive` sites the additive declaration is written out by hand, but `@[to_additive]` on the multiplicative one generates the same statement.
This PR replaces the glue with a tag, deletes the twins, and `(attr := simp)` is used where the additive side must stay a simp lemma.
Aristotle AI found these duplicates, and suggested the solution.
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[](https://gitpod.io/from-referrer/)
|
tech debt
t-group-theory
new-contributor
|
1/1 |
Mathlib/GroupTheory/Nilpotent.lean |
1 |
6 |
['attilavjda', 'github-actions', 'mathlib-merge-conflicts', 'wwylele'] |
nobody |
2-34200 2 days ago |
2-35454 2 days ago |
35-19887 35 days |
0 |
| 43902 |
seewoo5 author:seewoo5 |
feat(Trigonometric): define coth and prove basic properties |
---
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Define `Complex.coth`, `Real.coth` and prove basic theorems (almost same as those of `tanh`). I found that there's `cot` but no `coth` yet.
[](https://gitpod.io/from-referrer/)
|
t-analysis |
37/0 |
Mathlib/Analysis/Complex/Trigonometric.lean |
1 |
8 |
['SnirBroshi', 'github-actions', 'luigi-massacci', 'seewoo5'] |
nobody |
2-33940 2 days ago |
3-40472 3 days ago |
3-78029 3 days |
0 |
| 43703 |
dicipler-pixel author:dicipler-pixel |
feat(GroupTheory/Coxeter): identify rank-two Coxeter groups with dihedral groups |
Identifies the Coxeter group associated to CoxeterMatrix.I m with DihedralGroup (m + 2).
The new file constructs the canonical homomorphism sending the two simple reflections to adjacent reflections, proves surjectivity, establishes a two-coset normal form in the presented Coxeter group, and uses that normal form to prove injectivity. It then exposes the resulting MulEquiv together with simp lemmas for the simple generators.
This makes precise the description already given in CoxeterMatrix.I's documentation that it is the Coxeter matrix for the symmetry group of the regular (m + 2)-gon.
Mathlib.lean was regenerated with lake exe mk_all. |
t-group-theory
new-contributor
|
206/0 |
Mathlib.lean,Mathlib/GroupTheory/Coxeter/Dihedral.lean |
2 |
10 |
['JX-Mo', 'dicipler-pixel', 'github-actions'] |
nobody |
2-32160 2 days ago |
2-32938 2 days ago |
2-35209 2 days |
0 |
| 43708 |
Thmoas-Guan author:Thmoas-Guan |
feat(RingTheory): definition of Koszul complex |
Definition of Koszul cocomplex.
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[](https://gitpod.io/from-referrer/)
|
t-ring-theory |
188/0 |
Mathlib.lean,Mathlib/RingTheory/KoszulComplex/Complex.lean |
2 |
3 |
['Whysoserioushah', 'github-actions'] |
nobody |
2-32020 2 days ago |
10-28012 10 days ago |
10-27786 10 days |
3 |
| 43707 |
Thmoas-Guan author:Thmoas-Guan |
feat(RingTheory): definition of Koszul cocomplex |
Definition of Koszul complex.
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[](https://gitpod.io/from-referrer/)
|
t-ring-theory |
172/0 |
Mathlib.lean,Mathlib/RingTheory/KoszulComplex/Cocomplex.lean |
2 |
1 |
['github-actions'] |
nobody |
2-31919 2 days ago |
10-28015 10 days ago |
10-27789 10 days |
2 |
| 43719 |
Thmoas-Guan author:Thmoas-Guan |
feat(LinearAlgebra): add API for exterior algebra of ring itself |
In this PR, we added some API for handling `ExteriorAlgebra R R`.
AI disclosure: the proof in section "self" is generated by AI after providing the final target definition and characterizing lemma.
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[](https://gitpod.io/from-referrer/)
|
t-algebra label:t-algebra$ |
61/0 |
Mathlib/LinearAlgebra/ExteriorAlgebra/Basic.lean |
1 |
1 |
['github-actions'] |
nobody |
2-30504 2 days ago |
10-14752 10 days ago |
10-14526 10 days |
2 |
| 43958 |
kebekus author:kebekus |
feat: simplify computations in complex analysis by extracting frequently-used lemmas |
Simplify several computations in complex analysis by extracting lemmas that are used more than once. At present, the gain is real but modest. It will become more visible as more computations are added.
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[](https://gitpod.io/from-referrer/)
|
t-analysis
LLM-generated
|
57/56 |
Mathlib/Analysis/Complex/JensenFormula.lean,Mathlib/Analysis/Complex/Trigonometric.lean,Mathlib/Analysis/SpecialFunctions/Complex/CircleMap.lean,Mathlib/Analysis/SpecialFunctions/Integrals/PosLog.lean |
4 |
1 |
['github-actions'] |
nobody |
2-30033 2 days ago |
2-30033 2 days ago |
2-29807 2 days |
0 |
| 43957 |
thomaskwaring author:thomaskwaring |
feat(Order/Hom): congruence of order homs by order isos |
Order isomorphisms between domains and codomains induce equivalences between types of order homomorphisms: `{Sup/Inf/Lattice/SupBot/InfTop/BoundedLattice/sSup/sInf/Frame/CompleteLattice}Hom`.
[](https://gitpod.io/from-referrer/)
|
t-order |
78/0 |
Mathlib/Order/Hom/BoundedLattice.lean,Mathlib/Order/Hom/CompleteLattice.lean,Mathlib/Order/Hom/Lattice.lean |
3 |
1 |
['github-actions'] |
nobody |
2-29970 2 days ago |
2-34654 2 days ago |
2-34455 2 days |
1 |
| 40948 |
Thmoas-Guan author:Thmoas-Guan |
feat(LinearAlgebra): exterior power commute with base change |
In this PR, we added the commute of exterior power and base change.
AI usage: filling in construction of the final equivalence with lemmas decribing it, all the preliminary constructions are refactored by human later.
Co-authored-by: Zichen Wang <zichenwang25@stu.pku.edu.cn>
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[](https://gitpod.io/from-referrer/)
|
t-algebra
LLM-generated
label:t-algebra$ |
229/0 |
Mathlib.lean,Mathlib/LinearAlgebra/ExteriorPower/BaseChange.lean |
2 |
3 |
['github-actions', 'grunweg', 'mathlib-merge-conflicts'] |
ocfnash assignee:ocfnash |
2-29373 2 days ago |
11-13713 11 days ago |
87-21998 87 days |
1 |
| 43158 |
Thmoas-Guan author:Thmoas-Guan |
refactor(Ideal/Cotangent): make `Ideal.Cotangent` implicit reducible |
In this PR we make `Ideal.Cotangent` implicit reducible and remove some `set_option`s.
Authored-by: @Whysoserioushah
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If you are moving or deleting declarations, please include these lines
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[](https://gitpod.io/from-referrer/)
|
tech debt |
14/19 |
Mathlib/RingTheory/Ideal/Cotangent.lean |
1 |
15 |
['Thmoas-Guan', 'github-actions', 'jjdishere', 'leanprover-radar', 'mathlib-merge-conflicts', 'pelicanhere'] |
pelicanhere assignee:pelicanhere |
2-28035 2 days ago |
13-8326 13 days ago |
25-28329 25 days |
0 |
| 43963 |
vihdzp author:vihdzp |
chore(Topology/CantorBendixson): minor cleanup |
`CantorBendixson` is not a type, and the names in this file shouldn't clash with anything else, so we un-namespace the material in this file.
We also rewrap some lines and perform minor golfs.
---
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I haven't added deprecations since the material here is quite new, but I can add them if they're nevertheless wanted.
[](https://gitpod.io/from-referrer/)
|
t-topology |
18/38 |
Mathlib/Topology/CantorBendixson.lean |
1 |
1 |
['github-actions'] |
nobody |
2-22991 2 days ago |
2-24257 2 days ago |
2-24117 2 days |
0 |
| 43871 |
manman4 author:manman4 |
feat(PowerSeries): add Lagrange inversion formula |
## What this PR adds
This PR formalizes the Lagrange inversion formula for formal power series, including:
* PowerSeries.lagrange_burmann_coeff
* PowerSeries.lagrange_inversion_coeff_pow
* PowerSeries.lagrange_burmann_coeff_div
* PowerSeries.lagrange_inversion_coeff
* PowerSeries.eq_zero_of_fixedPoint_of_constantCoeff_eq_zero
## LLM
We (Julian and I) used Aristotle and Codex for code generation and ChatGPT and Claude for cleanup.
|
t-ring-theory
new-contributor
LLM-generated
|
218/0 |
Mathlib.lean,Mathlib/RingTheory/PowerSeries/Basic.lean,Mathlib/RingTheory/PowerSeries/LagrangeInversion.lean,Mathlib/RingTheory/PowerSeries/Substitution.lean,docs/references.bib |
5 |
95 |
['JX-Mo', 'Julian-Kuelshammer', 'github-actions', 'manman4', 'wwylele'] |
nobody |
2-20596 2 days ago |
3-32166 3 days ago |
5-16201 5 days |
0 |
| 42141 |
plp127 author:plp127 |
chore(FieldTheory/Galois/Basic): API for `fixingSubgroupEquiv` and `subgroupEquivAlgEquiv` |
Add lemmas saying what `IntermediateField.fixingSubgroupEquiv` and `IntermediateField.subgroupEquivAlgEquiv` do when applied. Previously there were no lemmas at all mentioning these declarations.
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra
maintainer-merge
label:t-algebra$ |
20/0 |
Mathlib/FieldTheory/Galois/Basic.lean |
1 |
4 |
['github-actions', 'plp127', 'tb65536'] |
nobody |
2-20443 2 days ago |
56-15944 56 days ago |
56-15718 56 days |
1 |
| 42024 |
NoneMore author:NoneMore |
feat(Data/Set/Card): characterize finite lower bounds on encard |
A set has the cardinality at least `n` if and only if it has a sequence of length `n` with distinct elements.
---
<!-- Your PR title will become the first line of the commit message.
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AI disclosure: The proof was structurally simplified following the `/lean4:golf` workflow from Lean 4 Skills.
[](https://gitpod.io/from-referrer/)
|
t-data
maintainer-merge
|
16/0 |
Mathlib/Data/Set/Card.lean |
1 |
10 |
['github-actions', 'jcommelin', 'joneugster', 'mathlib-bors'] |
joneugster assignee:joneugster |
2-16304 2 days ago |
2-29402 2 days ago |
60-17126 60 days |
3 |
| 41983 |
marcelolynch author:marcelolynch |
fix(cache): avoid misleading message on refs not built "on purpose" |
`cache get` on a fork printed a "no cache found for HEAD" note whenever the per-SHA fork marker was absent, even when every file was then served from mathlib's master cache — which is always the case for a tooling-only PR (its CI build stages zero files, so the upload job and the marker are skipped by design). Reported in https://github.com/leanprover-community/mathlib4/pull/41707#discussion_r3602459565.
The note is now printed after the download rounds and only when files are actually missing; `cache query`'s no-result message names both possible causes (CI hasn't built the commits, or its builds had nothing fork-specific to upload) instead of claiming the first.
🤖 Generated with [Claude Code](https://claude.com/claude-code) |
CI
LLM-generated
maintainer-merge
|
203/87 |
Cache/Main.lean,Cache/Query.lean,Cache/Requests.lean,Cache/Test.lean,Cache/Warning.lean |
5 |
6 |
['Vierkantor', 'github-actions', 'joneugster', 'marcelolynch'] |
nobody |
2-16164 2 days ago |
54-84973 54 days ago |
54-84747 54 days |
0 |
| 43947 |
kedlaya author:kedlaya |
feat(FieldTheory): Artin-Schreier extensions of fields |
Implement the Artin-Schreier description of cyclic degree-p extensions of fields of characteristic p. Split off from from #41911. |
new-contributor
t-algebra
label:t-algebra$ |
277/0 |
Mathlib.lean,Mathlib/Algebra/Polynomial/FieldDivision.lean,Mathlib/FieldTheory/ArtinSchreierExtension.lean |
3 |
14 |
['JX-Mo', 'github-actions', 'vihdzp'] |
nobody |
2-15208 2 days ago |
2-84328 2 days ago |
2-85183 2 days |
1 |
| 39387 |
marcelolynch author:marcelolynch |
feat(Tactic/Linter): add superfluousExpose linter |
Dual of `privateModule`: lints against `@[expose] public section`s where no declaration benefits from exposure, and suggests that you remove the `@[expose]` modifier. Downstream code typechecks the same after the removal.
A section-level `@[expose]` exposes exactly the bodies of the `def` declarations of the section. The linter skips generated declarations (`isAutoDecl`) and counts a constant as one that benefits from exposure when all four conditions hold:
- It is a `def` and its body is exposed (`Environment.hasExposedBody`). This rules out theorems, `opaque` and `partial def`s, private declarations, propositional instances, `@[no_expose]` and `meta` defs, and the parser descriptors of `notation` and `syntax`.
- The declaring command is not an `abbrev`. Lean exposes the body of an `abbrev` by its keyword, not by its reducibility, so a `@[reducible] def` does not qualify.
- It is not an instance (`isInstanceCore`) that an `instance`, `deriving instance`, `inductive`, `class inductive`, or `structure` command declared. An `@[instance] def` therefore keeps the rules of a `def`.
- It is not a structure projection.
Lean exposes the bodies in the last three cases in every public section, with or without the modifier. The linter reads the command kind through `set_option … in` and `open … in` wrappers; a `mutual` block or a macro gets no exemption. Every other exposed `def` counts as one that benefits, so the linter stays silent when in doubt and a reported section is safe to change.
The linter is a stateful linter (leanprover/lean4#14357). It tracks the regions where the scope is public and carries `expose`, and it classifies the constants of each command while the scopes of that command are active. Each expose section gets its own verdict, `scoped` and `local` instances classify correctly, and the warning points at the section header.
The known limitations are false negatives only, and the module docstring lists them. The main case is a hand-written meta-code def, such as a `def` of type `Simproc`, which counts as an ordinary def.
Includes test files covering positive and negative cases, one file per case. The first cleanup sweep, #39388, applied an earlier version of these suggestions to 136 files.
Relevant Zulip thread: https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Removing.20unnecessary.20.60.40.5Bexpose.5D.60/with/595180230
|
t-linter
LLM-generated
|
906/0 |
Mathlib.lean,Mathlib/Tactic.lean,Mathlib/Tactic/Linter/SuperfluousExpose.lean,MathlibTest/Linter/SuperfluousExpose.lean,MathlibTest/Linter/SuperfluousExpose/Negative_DerivingDecidableEq.lean,MathlibTest/Linter/SuperfluousExpose/Negative_ExposeOnNonPublicSection.lean,MathlibTest/Linter/SuperfluousExpose/Negative_InstanceAttrDef.lean,MathlibTest/Linter/SuperfluousExpose/Negative_IrreducibleDef.lean,MathlibTest/Linter/SuperfluousExpose/Negative_NoExposeSection.lean,MathlibTest/Linter/SuperfluousExpose/Negative_PlainDef.lean,MathlibTest/Linter/SuperfluousExpose/Negative_ReducibleDef.lean,MathlibTest/Linter/SuperfluousExpose/Negative_ToAdditive.lean,MathlibTest/Linter/SuperfluousExpose/Negative_UnsafeDef.lean,MathlibTest/Linter/SuperfluousExpose/Positive_AbbrevOnly.lean,MathlibTest/Linter/SuperfluousExpose/Positive_ClassOnly.lean,MathlibTest/Linter/SuperfluousExpose/Positive_FileEndClose.lean,MathlibTest/Linter/SuperfluousExpose/Positive_Inductive.lean,MathlibTest/Linter/SuperfluousExpose/Positive_MultiSection.lean,MathlibTest/Linter/SuperfluousExpose/Positive_NestedExposeSection.lean,MathlibTest/Linter/SuperfluousExpose/Positive_NoExposeDef.lean,MathlibTest/Linter/SuperfluousExpose/Positive_Notation.lean,MathlibTest/Linter/SuperfluousExpose/Positive_PartialDef.lean,MathlibTest/Linter/SuperfluousExpose/Positive_ScopedLocalInstance.lean,MathlibTest/Linter/SuperfluousExpose/Positive_Structure.lean,MathlibTest/Linter/SuperfluousExpose/Positive_TheoremOnly.lean |
25 |
6 |
['eric-wieser', 'github-actions', 'joneugster', 'marcelolynch', 'ocfnash'] |
nobody |
2-15196 2 days ago |
7-9803 7 days ago |
40-14459 40 days |
0 |
| 42833 |
YaelDillies author:YaelDillies |
feat(Combinatorics/SimpleGraph/Connectivity): efficient decidability instances |
Currently, the `DecidableRel G.Reachable` instance provided by mathlib works by enumerating *all* walks from `u` to `v` of length less than `Fintype.card V`, which takes time exponential in the number of vertices. Currently also, the `Decidable G.Preconnected` and `Decidable G.Connected` instances build on the `DecidableRel G.Reachable` one and suffer from the same exponential slowdown.
This PR reworks those instances to use breadth-first search, which is polynomial in the number of vertices. Since the BFS doesn't depend on the starting vertex, we wrap it in `Trunc` to cut down an unnecessary factor of `Fintype.card V` (this makes a difference only if the graph is NOT preconnected).
This showed up in FormalConjectures because a contributor used `decide +native` to prove that some concrete graph on 11 vertices was connected. Their proof timed out while I was bumping the repo to v4.30.
Also make `G` implicit in a bunch of non-rewriting lemmas.
From FormalConjectures
Generated by Claude Opus following my idea, largely rewritten manually afterwards.
Assisted-by: Claude Opus 4.8
---
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[](https://gitpod.io/from-referrer/)
|
t-combinatorics
LLM-generated
|
343/31 |
Mathlib/Combinatorics/SimpleGraph/Connectivity/Finite.lean,Mathlib/Combinatorics/SimpleGraph/Tutte.lean,Mathlib/Data/Fintype/Basic.lean,Mathlib/Data/List/Nodup.lean,MathlibTest/SimpleGraph.lean |
5 |
9 |
['SnirBroshi', 'YaelDillies', 'b-mehta', 'github-actions'] |
nobody |
2-14604 2 days ago |
2-19488 2 days ago |
4-36147 4 days |
0 |
| 40165 |
SnirBroshi author:SnirBroshi |
feat(Algebra): `iSup` of substructures equals the set-union of all finite `iSup`s |
`(⨆ i, S i).carrier = ⋃ s : Finset ι, ⨆ i ∈ s, S i` for the 14 substructures that have `coe_iSup_of_directed`:
- `Subsemigroup`
- `Submonoid`
- `Subgroup`
- `Subsemiring`
- `Subring`
- `Subfield`
- `Submodule`
- `Subalgebra`
- `NonUnitalStarSubalgebra`
- `NonUnitalSubalgebra`
- `NonUnitalSubring`
- `NonUnitalSubsemiring`
- `StarSubalgebra`
- `IntermediateField`
Co-authored-by: Albert Smith <10266947+ChiCubed@users.noreply.github.com>
---
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- Nat.bit1_add_bit1
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[](https://gitpod.io/from-referrer/)
|
t-algebra
large-import
maintainer-merge
label:t-algebra$ |
110/0 |
Mathlib.lean,Mathlib/Algebra/Algebra/NonUnitalSubalgebra.lean,Mathlib/Algebra/Algebra/Subalgebra/Directed.lean,Mathlib/Algebra/Field/Subfield/Basic.lean,Mathlib/Algebra/Group/Subgroup/Pointwise.lean,Mathlib/Algebra/Group/Submonoid/Pointwise.lean,Mathlib/Algebra/Group/Subsemigroup/Lemmas.lean,Mathlib/Algebra/Ring/Subring/Pointwise.lean,Mathlib/Algebra/Ring/Subsemiring/Pointwise.lean,Mathlib/Algebra/Star/NonUnitalSubalgebra.lean,Mathlib/Algebra/Star/Subalgebra.lean,Mathlib/FieldTheory/IntermediateField/Adjoin/Basic.lean,Mathlib/LinearAlgebra/Span/Basic.lean,Mathlib/RingTheory/NonUnitalSubring/Basic.lean,Mathlib/RingTheory/NonUnitalSubsemiring/Basic.lean |
15 |
10 |
['SnirBroshi', 'github-actions', 'plp127', 'themathqueen'] |
themathqueen assignee:themathqueen |
2-9605 2 days ago |
2-13639 2 days ago |
55-16566 55 days |
0 |
| 43966 |
xroblot author:xroblot |
feat(NumberTheory/NumberField/Ideal/KummerDedekind): start from a prime rather than from a factor |
The two Kummer-Dedekind lemmas giving the ramification index and the residual degree are stated for the ideal attached to a factor of the minimal polynomial. Starting instead from a prime above `p`, as one usually does, means going through the equivalence and back. This adds the two statements in that direction, and uses them to shorten the two proofs in `Cyclotomic/Ideal.lean` that were doing the round trip by hand.
It also adds a few lemmas unfolding what it means to belong to `monicFactorsMod`.
Prepared with Claude Code 🤖
---
|
t-number-theory |
60/20 |
Mathlib/NumberTheory/NumberField/Cyclotomic/Ideal.lean,Mathlib/NumberTheory/NumberField/Ideal/KummerDedekind.lean |
2 |
1 |
['github-actions'] |
nobody |
2-8050 2 days ago |
2-11263 2 days ago |
2-11037 2 days |
0 |
| 43901 |
vlad902 author:vlad902 |
feat(AffineSpace): characterize affine subspaces of dimension 0 and 1 |
---
<!-- Your PR title will become the first line of the commit message.
In this box, the text above the `---` (if not empty) will be appended
to the commit message, and can be used to give additional context or
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Co-authors in the squash commit are gathered from two sources:
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git commit --author="Author Name <author@email.com>" --allow-empty -m "add Author Name as coauthor"
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at the bottom of the commit message (before the `---`, and also before
any "Co-authored-by" lines) using the following format:
Moves:
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[](https://gitpod.io/from-referrer/)
|
t-convex-geometry |
94/10 |
Mathlib/Algebra/Order/Monoid/Unbundled/WithTop.lean,Mathlib/LinearAlgebra/AffineSpace/Dimension.lean,Mathlib/Order/WithBot.lean |
3 |
2 |
['github-actions', 'vlad902'] |
nobody |
2-5545 2 days ago |
3-48956 3 days ago |
3-54041 3 days |
0 |
| 43910 |
vlad902 author:vlad902 |
feat(AffineSpace): exists affinely independent set of a cardinality dim + 1 |
Currently, `exists_affineIndependent` establishes for any set `s` that there exists a subset with equal affine span that is affinely indepedent. Further refine that statement to show that for finite dimensional spaces that this set always has cardinality equal to the affine dimension + 1.
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|
t-algebra label:t-algebra$ |
38/0 |
Mathlib/LinearAlgebra/AffineSpace/FiniteDimensional.lean,Mathlib/LinearAlgebra/AffineSpace/Independent.lean |
2 |
1 |
['github-actions'] |
nobody |
2-5269 2 days ago |
3-51826 3 days ago |
3-51600 3 days |
0 |
| 41052 |
hawkrobe author:hawkrobe |
refactor(RingTheory/HopfAlgebra): relocate `ofSurjective` |
---
I wasn't happy with the `HopfAlgebra.ofSurjective` proof in #39790. This PR attempts to refactor by extracting some of the pieces it relies on in more reusable form (e.g. bifunctoriality) and moving it out of `Quotient.lean`.
Also, `convOne` only uses the counit so i moved it up to the `[CoalgebraStruct R C]` section to match `convMul` (so `convOne_comp_coalgHom` could be the same generality as `convMul_comp_coalgHom_distrib`.)
[](https://gitpod.io/from-referrer/)
|
t-ring-theory
new-contributor
maintainer-merge
|
112/61 |
Mathlib/RingTheory/Bialgebra/Convolution.lean,Mathlib/RingTheory/Coalgebra/Convolution.lean,Mathlib/RingTheory/HopfAlgebra/Convolution.lean,Mathlib/RingTheory/HopfAlgebra/Quotient.lean |
4 |
23 |
['eric-wieser', 'github-actions', 'hawkrobe', 'jjdishere', 'mathlib-merge-conflicts', 'themathqueen'] |
jjdishere assignee:jjdishere |
2-3245 2 days ago |
2-5140 2 days ago |
86-55690 86 days |
1 |
| 40901 |
vihdzp author:vihdzp |
feat: zero-dimensional spaces |
We introduce an abbreviation `ZeroDimensionalSpace X = HasSmallInductiveDimensionLT 1`. We prove, in various forms, the characterization of these spaces as those that have a basis of clopen sets. We then use this to restate or generalize various results throughout the library, which were formerly writing down the `IsTopologicalBasis {X | IsClopen X}` condition in full.
---
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- [x] depends on: #42271
Moved from #37444.
This diff is somewhat large, but a large portion of it is trival typeclass generalization in theorems from the `Profinite` file, and moving them elsewhere,
[](https://gitpod.io/from-referrer/)
|
t-topology
large-import
tech debt
maintainer-merge
|
353/292 |
Mathlib/Topology/Algebra/ClopenNhdofOne.lean,Mathlib/Topology/Category/Profinite/Basic.lean,Mathlib/Topology/ClopenBox.lean,Mathlib/Topology/Connected/TotallyDisconnected.lean,Mathlib/Topology/Metrizable/Basic.lean,Mathlib/Topology/Separation/CompletelyRegular.lean,Mathlib/Topology/Separation/DisjointCover.lean,Mathlib/Topology/Separation/Lemmas.lean,Mathlib/Topology/Separation/Profinite.lean,Mathlib/Topology/Separation/Regular.lean,Mathlib/Topology/SmallInductiveDimension.lean |
11 |
41 |
['felixpernegger', 'github-actions', 'jjdishere', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'plp127', 'vihdzp'] |
jjdishere assignee:jjdishere |
2-2789 2 days ago |
2-6388 2 days ago |
34-14497 34 days |
1 |
| 43972 |
SnirBroshi author:SnirBroshi |
chore(Data/Nat/Factorization/Defs): rename `prod_pow_factorization_eq_self` to `factorization_prod_pow_eq_self` |
#36792 added 2 rename TODOs, #36842 did the first rename, and now the deprecation expired so we can solve the 2nd rename TODO.
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|
t-data |
9/10 |
Mathlib/Data/Nat/Factorization/Basic.lean,Mathlib/Data/Nat/Factorization/Defs.lean,Mathlib/Data/Nat/Factorization/Root.lean |
3 |
1 |
['github-actions'] |
nobody |
2-600 2 days ago |
2-3287 2 days ago |
2-3061 2 days |
0 |
| 42880 |
plp127 author:plp127 |
chore(Data/EReal): don't expose `EReal.recENNReal` |
Unexpose `EReal.recENNReal` because it uses an if-then-else block on a classical decidability instance, which will not reduce. Also golf the proofs of the theorems `EReal.recENNReal_coe_ennreal` and `EReal.recENNReal_neg_coe_ennreal`.
---
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|
t-data |
9/13 |
Mathlib/Data/EReal/Operations.lean |
1 |
2 |
['FrankieNC', 'github-actions'] |
nobody |
1-86257 1 day ago |
34-82914 34 days ago |
34-82688 34 days |
0 |
| 43451 |
lakesare author:lakesare |
feat(MeasureTheory/Integral/Bochner/Basic): add enorm_integral_norm_eq_lintegral_enorm |
From the Carleson project.
-------
**Upstreaming from Carleson: [/Carleson/ToMathlib/MeasureTheory/Integral/Bochner/ContinuousLinearMap.lean](https://github.com/fpvandoorn/carleson/blob/0072b6e47ec58ac13be0a9f3b7c17e9f3bb1be2e/Carleson/ToMathlib/MeasureTheory/Integral/Bochner/ContinuousLinearMap.lean)**
### In this PR
#### enorm_integral_norm_eq_lintegral_enorm
- renamed (`integral` -> `lintegral`) to match neighbouring lemmas
- generalized the statement (`{𝕜 : Type u_2} [RCLike 𝕜]` -> `{P : Type u_7} [NormedAddCommGroup P]`) to match neighbouring lemmas
- refactored the proof body
```lean
-- CARLESON
enorm_integral_norm_eq_integral_enorm.{u_1, u_2} {α : Type u_1} {μ : Measure α} (hf : Integrable f μ)
[MeasurableSpace α]
{𝕜 : Type u_2} [RCLike 𝕜] {f : α → 𝕜}
: ‖∫ (x : α), ‖f x‖ ∂μ‖ₑ = ∫⁻ (x : α), ‖f x‖ₑ ∂μ
-- MATHLIB
MeasureTheory.enorm_integral_norm_eq_lintegral_enorm.{u_1, u_7} {α : Type u_1} {μ : Measure α} (hf : Integrable f μ)
{m : MeasurableSpace α}
{P : Type u_7} [NormedAddCommGroup P] {f : α → P}
: ‖∫ (x : α), ‖f x‖ ∂μ‖ₑ = ∫⁻ (x : α), ‖f x‖ₑ ∂μ
``` |
carleson
easy
t-measure-probability
maintainer-merge
|
6/0 |
Mathlib/MeasureTheory/Integral/Bochner/Basic.lean |
1 |
8 |
['github-actions', 'jjdishere', 'lakesare'] |
nobody |
1-85907 1 day ago |
1-86117 1 day ago |
16-39410 16 days |
0 |
| 41611 |
SnirBroshi author:SnirBroshi |
chore(Data/Seq/Computation): golf using `grind` |
---
- `LiftRel.refl`: ? to 12ms
- `LiftRel.symm`: 10ms to 16ms
- `LiftRel.trans`: 13ms to 23ms
- `LiftRel.imp`: 11ms to 19ms
- `terminates_of_liftRel`: 14ms to 14ms
- `rel_of_liftRel`: 11ms to 15ms
- `liftRel_of_mem`: ? to 22ms
- `liftRel_def`: 20ms to 60ms
- `liftRel_bind`: 40ms to 55ms
- `liftRel_pure_left`: 15ms to 33ms
- `liftRel_think_left`: ? to 40ms
- `liftRel_congr`: ? to 35ms
- `LiftRelAux.ret_left`: 18ms to 18ms
(the question marks mean that `trace.profiler` doesn't output anything, maybe they're below 1ms?)
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|
t-data
maintainer-merge
|
25/82 |
Mathlib/Data/Seq/Computation.lean |
1 |
21 |
['SnirBroshi', 'github-actions', 'grunweg', 'joneugster', 'leanprover-radar', 'themathqueen'] |
joneugster assignee:joneugster |
1-85478 1 day ago |
2-2402 2 days ago |
45-81679 45 days |
0 |
| 39847 |
vihdzp author:vihdzp |
chore: redefine `Ordinal.preOmega` using `Order.enum` |
The plan is to deprecate `Ordinal.enumOrd` in favor of `Order.enum`.
---
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[](https://gitpod.io/from-referrer/)
|
t-set-theory
maintainer-merge
|
24/23 |
Counterexamples/Omega1Space.lean,Mathlib/Order/Cofinal.lean,Mathlib/SetTheory/Cardinal/Aleph.lean |
3 |
5 |
['YaelDillies', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
1-81997 1 day ago |
1-84928 1 day ago |
59-47938 59 days |
0 |
| 43038 |
plp127 author:plp127 |
feat: `Dyadic` is an ordered ring |
Prove `Dyadic` is a linearly ordered ring, providing instances for `LinearOrder`, `CommRing`, and `IsStrictOrderedRing`.
---
[From CGT](https://github.com/vihdzp/combinatorial-games/blob/99a469a2e02fd9fab9a717efe27f7fc84b880bbb/CombinatorialGames/Mathlib/Dyadic.lean).
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[](https://gitpod.io/from-referrer/)
|
t-data
tech debt
|
188/89 |
Mathlib.lean,Mathlib/Data/Dyadic.lean,Mathlib/Data/Dyadic/OrderedRing.lean,Mathlib/Data/Dyadic/ToReal.lean,Mathlib/Tactic/Inclusion/Extension/IntervalDyadicReal/Init.lean |
5 |
18 |
['ADedecker', 'eric-wieser', 'github-actions', 'mathlib-merge-conflicts', 'plp127', 'vihdzp'] |
nobody |
1-78153 1 day ago |
13-58009 13 days ago |
29-67260 29 days |
1 |
| 43013 |
grunweg author:grunweg |
feat: diffeomorphisms are smooth embeddings |
This is a direct corollary of a previous PR, so let's include it.
This PR assumes matching models with corners (as the general case is not obviously true).
Using the inverse function theorem instead allows any models, but requires Banach manifolds and conditions on boundary behaviour. This will be added in the future, once the relevant version of the inverse function theorem is merged to mathlib.
---
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|
t-differential-geometry |
32/3 |
Mathlib/Geometry/Manifold/Immersion.lean,Mathlib/Geometry/Manifold/SmoothEmbedding.lean |
2 |
3 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
1-77913 1 day ago |
1-79197 1 day ago |
3-1413 3 days |
0 |
| 43977 |
joelriou author:joelriou |
feat(CategoryTheory/Limits): commutation of limits and colimits |
This PR adds some API about the commutation of limits and colimits. For example, if `C` has colimits of shape `K'` and limits of shape `K`, we show that the limit functor `lim : (K ⥤ C) ⥤ C` commutes with colimits of shape `K'` iff the colimit functor `colim : (K' ⥤ C) ⥤ C` commutes with limits of shape `K`.
We use this in order to prove that if `C` has exact colimits of shape `K'` then the full subcategory of `J ⥤ C` consisting of functors which commutes with colimits of shape `K'` is closed under finite limits and finite colimits.
---
I do not think it would make sense to split the file `Mathlib/CategoryTheory/ObjectProperty/FunctorCategory/PreservesLimits.lean` to reduce imports.
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|
t-category-theory
tech debt
large-import
|
191/4 |
Mathlib/CategoryTheory/Limits/ColimitLimit.lean,Mathlib/CategoryTheory/ObjectProperty/ColimitsOfShape.lean,Mathlib/CategoryTheory/ObjectProperty/FunctorCategory/PreservesLimits.lean,Mathlib/CategoryTheory/ObjectProperty/LimitsOfShape.lean |
4 |
1 |
['github-actions'] |
nobody |
1-75592 1 day ago |
1-77435 1 day ago |
1-77212 1 day |
4 |
| 33466 |
Shreyas4991 author:Shreyas4991 |
refactor(Combinatorics/Digraph): add vertex sets |
---
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|
t-combinatorics
large-import
|
208/58 |
Mathlib/Combinatorics/Digraph/Basic.lean,Mathlib/Combinatorics/Digraph/Orientation.lean |
2 |
224 |
['IvanRenison', 'Shreyas4991', 'SnirBroshi', 'YaelDillies', 'copilot-pull-request-reviewer', 'github-actions', 'mathlib-merge-conflicts', 'mathlib4-merge-conflict-bot', 'vihdzp', 'vlad902'] |
SnirBroshi assignee:SnirBroshi |
1-69387 1 day ago |
17-66167 17 days ago |
50-59509 50 days |
0 |
| 43979 |
wwylele author:wwylele |
feat(Analysis/Normed): norm and Multiset.prod commute |
Similar to Finset.prod lemmas above, provides convenient rewriting lemma.
---
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|
t-analysis
easy
|
10/0 |
Mathlib/Analysis/Normed/Ring/Basic.lean |
1 |
2 |
['github-actions', 'wwylele'] |
nobody |
1-67715 1 day ago |
1-75342 1 day ago |
1-75116 1 day |
1 |
| 42125 |
NoneMore author:NoneMore |
feat(SetTheory/Cardinal): add cardinality bounds for direct limits |
Add an equivalence between a direct limit and its component at an upper-bound index. Use it to prove upper and lower cardinality bounds and criteria for computing the cardinality of direct limits.
---
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|
LLM-generated
t-set-theory
|
109/0 |
Mathlib.lean,Mathlib/Order/DirectedInverseSystem.lean,Mathlib/SetTheory/Cardinal/DirectLimit.lean |
3 |
2 |
['felixpernegger', 'github-actions'] |
nobody |
1-65019 1 day ago |
56-44515 56 days ago |
56-44289 56 days |
2 |
| 41957 |
YijunYuan author:YijunYuan |
feat(NumberTheory/Padics/Complex): add densely normed field and separable space instances |
Equip the field `ℂ_[p]` of `p`-adic complex numbers and its dense subfield
`PadicAlgCl p` (the algebraic closure of `ℚ_[p]`) with two further standard
typeclass instances.
Main additions:
* `DenselyNormedField (PadicAlgCl p)`: the norm takes values dense in the
positive reals. The witness between two given bounds `a < b` is built from an
`n`-th root `z` of `p` (which exists since `PadicAlgCl p` is algebraically
closed): choosing `n` so that `(a / b) ^ n < ‖p‖` gives `a / b < ‖z‖ < 1`, and
some integer power `z ^ m` then has norm strictly between `a` and `b`.
* `SeparableSpace (PadicAlgCl p)`: the elements algebraic over `ℚ` form a
countable dense subset. Density follows from continuity of roots — `α` is a
root of its minimal polynomial `f` over `ℚ_[p]`, and approximating the
coefficients of `f` by a polynomial `g` over the dense subfield `ℚ` yields a
root `β` of `g` (hence algebraic over `ℚ`) arbitrarily close to `α`.
* The corresponding instances `DenselyNormedField ℂ_[p]` and
`SeparableSpace ℂ_[p]` are then inferred, `ℂ_[p]` being the completion of
`PadicAlgCl p`.
Supporting general instance:
* `DenselyNormedField (UniformSpace.Completion A)` for a densely normed field
`A` with `CompletableTopField A`, since the norm on the completion extends the
norm on `A`.
The existing `NontriviallyNormedField` instances on `PadicAlgCl p` and `ℂ_[p]`
are simplified to `inferInstance`, as they now follow from the new
`DenselyNormedField` instances. |
new-contributor
t-number-theory
t-algebra
label:t-algebra$ |
123/19 |
Mathlib/Analysis/Normed/Field/Dense.lean,Mathlib/Analysis/Normed/Module/Completion.lean,Mathlib/NumberTheory/Padics/Complex.lean |
3 |
10 |
['YijunYuan', 'github-actions', 'pechersky', 'riccardobrasca'] |
riccardobrasca assignee:riccardobrasca |
1-64995 1 day ago |
20-21901 20 days ago |
58-3353 58 days |
0 |
| 41847 |
stalex444 author:stalex444 |
feat(Analysis/Matrix): tightness of the Tsirelson bound |
This file constructs the explicit real-Pauli CHSH tuple in 4×4 real matrices — X⊗1, Z⊗1, and (√2)⁻¹·(1⊗(X±Z)) — and proves it's a CHSH tuple. It also shows its CHSH operator sends the Bell vector ![1,0,0,1] to √2^3 times itself.
The PR also goes further than the request: √2^3 is the least constant bounding that operator in the Loewner order (via the scoped MatrixOrder instances + the existing tsirelson_inequality), so the constant in tsirelson_inequality cannot be improved.
Small honest caveat worth stating: the "over every algebra" corollary quantifies over Type (universe-0), since hypotheses can't quantify universes; the concrete least-constant statement is universe-free.
This Lean code was drafted with the help of AI (Claude Code). I reviewed the file; built it locally against current Mathlib master and confirmed that it compiled.
---
Questions for reviewers:
- happy to make B₀' and B₁' private if preferred
- happy to provide a ℂ-matrix version if that's more useful
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|
new-contributor
LLM-generated
t-analysis
|
228/6 |
Mathlib.lean,Mathlib/Algebra/Star/CHSH.lean,Mathlib/Analysis/Matrix/CHSH.lean |
3 |
9 |
['github-actions', 'stalex444', 'vihdzp'] |
nobody |
1-64985 1 day ago |
9-18013 9 days ago |
66-62962 66 days |
0 |
| 40479 |
thefundamentaltheor3m author:thefundamentaltheor3m |
feat(LinearAlgebra/AffineSpace/Simplex/Standard): Define the standard $n$-simplex as an `Affine.Simplex` |
In this PR, we define a basis-dependent construction of an affine simplex, using which we define the standard $n$-simplex in `Fin n → k` in terms of `Pi.basisFun`.
The main constructions are `Affine.Simplex.mkOfAffineBasis` and `Affine.Simplex.mkOfBasis`. The former constructs a simplex from any affine basis of an affine space and the latter constructs an affine simplex in a vector space viewed as an affine space. We then relate the construction to `stdSimplex`, defined in `Analysis.Convex.StdSimplex`.
---
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|
LLM-generated
new-contributor
t-algebra
label:t-algebra$ |
174/0 |
Mathlib.lean,Mathlib/LinearAlgebra/AffineSpace/Basis.lean,Mathlib/LinearAlgebra/AffineSpace/Simplex/Standard.lean,Mathlib/Tactic/Linter/DirectoryDependency.lean |
4 |
12 |
['github-actions', 'thefundamentaltheor3m', 'wwylele'] |
nobody |
1-64973 1 day ago |
42-42823 42 days ago |
71-15773 71 days |
0 |
| 40953 |
ymonbru author:ymonbru |
feat: the definition of a KSheaf on a T2 Space |
This files adds the definition of a KSheaf on a T2 space with value in an arbitrary category.
One may expect this notion to come from sheaves on a site of compact subset of a topological space but there is no coresponding Grothendieck topology on compact subsets. In particular, this is because one of the axioms is in the form of a colimit and can't be expressed as a limit condition (hence a sheaf condition).
It also adds API that allow to use the axioms in a convenient way.
---
- [ ] depends on: #40737
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|
new-contributor
t-topology
|
134/0 |
Mathlib.lean,Mathlib/Topology/Sheaves/KSheaf.lean |
2 |
14 |
['Multramate', 'github-actions', 'joelriou', 'mathlib-dependent-issues', 'ymonbru'] |
nobody |
1-64955 1 day ago |
4-19989 4 days ago |
78-32958 78 days |
1 |
| 40472 |
karlesmarin author:karlesmarin |
feat(Combinatorics/SimpleGraph): oriented incidence matrix and the La… |
# feat(Combinatorics/SimpleGraph): oriented incidence matrix and the Laplacian factorization
## Summary
Adds the **oriented incidence matrix** of a simple graph and the standard **Gram factorization
of the graph Laplacian**:
- **`SimpleGraph.orientedIncMatrix R : Matrix α (Sym2 α) R`** — in the column of an edge
`e = s(u, w)` with `u < w`: `+1` at row `w` (the larger endpoint), `-1` at row `u`, `0`
elsewhere; columns of non-edges are zero. Orientation induced by a `LinearOrder` on the
vertex type.
- **`SimpleGraph.orientedIncMatrix_mul_transpose`** — `N * Nᵀ = G.lapMatrix R` (= `D − A`).
- Supporting API mirroring `incMatrix`: `orientedIncMatrix_apply`,
`orientedIncMatrix_of_notMem_incidenceSet`, `orientedIncMatrix_mul_self`
(the square of an entry is the unoriented `incMatrix` entry), and the two sign lemmas
`orientedIncMatrix_apply_mul_apply_of_adj` (product of the two endpoint entries = `-1`),
`orientedIncMatrix_apply_add_apply_of_adj` (their sum = `0`), plus
`orientedIncMatrix_apply_mul_apply_of_ne` (vanishing away from the common edge).
## Why
Mathlib has the unoriented `G.incMatrix`, whose Gram matrix is the **signless** Laplacian
`D + A` (`incMatrix_mul_transpose_diag` ff.), and it has `G.lapMatrix = D − A` with its kernel
theory — but no object connecting the two. The oriented incidence matrix is that object, and
`N Nᵀ = D − A` is the factorization behind: positive semidefiniteness of the Laplacian as a
Gram fact, Kirchhoff/matrix-tree determinant arguments (via Cauchy–Binet on the reduced
factorization), and total unimodularity of incidence matrices.
## Design notes
- The fixed smaller→larger orientation is harmless: any orientation gives the same Gram matrix
(each edge contributes `(±1)²` on the diagonal and `(+1)(−1)` off it). This is stated in the
module docstring; no orientation-genericity machinery is introduced.
- The headline proof is entrywise: the diagonal reduces to `sum_incMatrix_apply` (= degree)
through `orientedIncMatrix_mul_self`; an off-diagonal `(u, w)` entry is supported on the
single column `s(u, w)`, handled by `Finset.sum_eq_single` and the sign lemmas.
- `[Ring R]` for the API section (signs need negation); the definition itself only needs
`[Zero R] [One R] [Neg R]`.
## Files / placement
- `Mathlib/Combinatorics/SimpleGraph/OrientedIncMatrix.lean` (new)
- `Mathlib.lean` (+1 import line)
## Verification
- `lake env lean` on the file: clean, zero warnings.
- `#print axioms SimpleGraph.orientedIncMatrix_mul_transpose` → 3 standard axioms.
- The factorization and the downstream matrix-tree chain were validated numerically in exact
arithmetic (SageMath) before formalization.
Downstream context: DOI [10.5281/zenodo.20629746](https://doi.org/10.5281/zenodo.20629746).
|
new-contributor
LLM-generated
t-combinatorics
|
157/0 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/OrientedIncMatrix.lean |
2 |
1 |
['github-actions'] |
nobody |
1-64939 1 day ago |
103-6127 103 days ago |
103-5994 103 days |
0 |
| 42316 |
JovanGerb author:JovanGerb |
feat: use `max`/`min` for `union`/`intersection` in `Set`, `Finset`, `ZFSet`, `Class` |
This lets us write `∪`/`∩` for sets while the underlying constant is `max`/`min`. This is a follow-up to #32983, which made the same change for `⊆`, `⊂`, `⊇` and `⊃`. The implementation for `∪`/`∩` is analogous.
The first commit contains the implementation change, and all other commits are just adaptations.
Note that there are now two different special delaborators for `max`/`min`, because we already had the delaborator that chooses between `max`/`min` and `⊔`/`⊓`. It is important that the one for `∪`/`∩` is tried first. There is no priority mechanism for delaborators: they are always executed newest to oldest. So, this PR adds a (redundant) import to ensure that this order is respected.
- I modified the delaborator for `⊔`/`⊓` so that it doesn't fire if `LinearOrder` isn't imported. Due to the extra redundant import, that is now a more common situation and I think in that situation it's better to print `max a b` instead of `a ⊔ b`.
- It is now not anymore possible to write `simp [(· ∪ ·)]` due to elaboration issues. The same also already applied to `simp [(· ⊆ ·)]`.
- Many `simp` calls had to be fixed because the `simp` set for `max`/`min` contains more lemmas than what we had for `union`/`inter`. For example, `compl_inf` and `inf_of_le_left`/`inf_of_le_right` now also apply to intersections.
- In particular `inf_of_le_left`/`inf_of_le_right` are quite slow simp lemmas, which means that this PR gives a bit of slowdown.
- A `grind` call had to be fixed because it timed out. Originally, that `grind` call was already doing too much stuff, but it didn't quite reach its limits.
- Many `@[simp]` and some `@[gcongr]` tags could be removed because they are now subsumed by more general tags.
- I removed `@[mfld_simp]` from `inter_subset_left`, as it seemed a bit weird to have it there and not on its dual or its mirror lemma.
---
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|
tech debt
large-import
t-data
|
331/415 |
Archive/Examples/Kuratowski.lean,Mathlib/Algebra/BigOperators/Finprod.lean,Mathlib/Algebra/BigOperators/Group/Finset/Basic.lean,Mathlib/Algebra/Lie/Basis/Prod.lean,Mathlib/Algebra/Module/SpanRank.lean,Mathlib/Algebra/MvPolynomial/Basic.lean,Mathlib/Algebra/Polynomial/Splits.lean,Mathlib/AlgebraicGeometry/Morphisms/UniversallyClosed.lean,Mathlib/AlgebraicGeometry/Scheme.lean,Mathlib/AlgebraicGeometry/ZariskisMainTheorem.lean,Mathlib/AlgebraicTopology/SimplicialSet/AnodyneExtensions/RelativeCellComplex.lean,Mathlib/AlgebraicTopology/SimplicialSet/Degenerate.lean,Mathlib/Analysis/Convex/Combination.lean,Mathlib/Analysis/InnerProductSpace/Projection/FiniteDimensional.lean,Mathlib/Analysis/Normed/Module/Seminorm/Basic.lean,Mathlib/Analysis/SpecialFunctions/Log/NegMulLog.lean,Mathlib/CategoryTheory/Limits/Types/Pushouts.lean,Mathlib/Combinatorics/Additive/Dissociation.lean,Mathlib/Combinatorics/Matroid/Basic.lean,Mathlib/Combinatorics/Matroid/Minor/Contract.lean,Mathlib/Combinatorics/Matroid/Minor/Order.lean,Mathlib/Combinatorics/SetFamily/Compression/UV.lean,Mathlib/Combinatorics/SetFamily/FourFunctions.lean,Mathlib/Combinatorics/SimpleGraph/AdjMatrix.lean,Mathlib/Combinatorics/SimpleGraph/LineGraph.lean,Mathlib/Combinatorics/SimpleGraph/Tutte.lean,Mathlib/Combinatorics/SimpleGraph/UniversalVerts.lean,Mathlib/Computability/TuringMachine/ToPartrec.lean,Mathlib/Data/Finmap.lean,Mathlib/Data/Finset/Basic.lean,Mathlib/Data/Finset/BooleanAlgebra.lean,Mathlib/Data/Finset/Lattice/Basic.lean,Mathlib/Data/Finset/Lattice/Lemmas.lean,Mathlib/Data/Finset/SDiff.lean,Mathlib/Data/Finset/Sups.lean,Mathlib/Data/Finset/SymmDiff.lean,Mathlib/Data/Finsupp/BigOperators.lean,Mathlib/Data/Multiset/UnionInter.lean,Mathlib/Data/Set/Basic.lean,Mathlib/Data/Set/Defs.lean,Mathlib/Data/Set/Disjoint.lean,Mathlib/Data/Set/Function.lean,Mathlib/Data/Set/Image.lean,Mathlib/Data/Set/Insert.lean,Mathlib/Data/Set/Subset.lean,Mathlib/Geometry/Manifold/IsManifold/ExtChartAt.lean,Mathlib/Geometry/Manifold/MFDeriv/Defs.lean,Mathlib/GroupTheory/CosetCover.lean,Mathlib/GroupTheory/Perm/Finite.lean,Mathlib/GroupTheory/Perm/Support.lean,Mathlib/LinearAlgebra/Basis/Exact.lean,Mathlib/LinearAlgebra/LinearIndependent/Lemmas.lean,Mathlib/Logic/Equiv/Set.lean,Mathlib/MeasureTheory/Covering/LiminfLimsup.lean,Mathlib/MeasureTheory/MeasurableSpace/CountablyGenerated.lean,Mathlib/MeasureTheory/Measure/Basic.lean,Mathlib/MeasureTheory/Measure/Decomposition/Hahn.lean,Mathlib/MeasureTheory/Measure/Haar/Unique.lean,Mathlib/MeasureTheory/Measure/Typeclasses/ZeroOne.lean,Mathlib/MeasureTheory/OuterMeasure/AE.lean,Mathlib/MeasureTheory/PiSystem.lean,Mathlib/MeasureTheory/SetSemiring.lean,Mathlib/MeasureTheory/VectorMeasure/Variation/Semivariation.lean,Mathlib/NumberTheory/LSeries/ZetaZeros.lean,Mathlib/NumberTheory/WellApproximable.lean,Mathlib/Order/Birkhoff.lean,Mathlib/Order/BooleanAlgebra/Set.lean,Mathlib/Order/Bounds/Basic.lean,Mathlib/Order/Defs/LinearOrder.lean,Mathlib/Order/Filter/Bases/Basic.lean,Mathlib/Order/Filter/Basic.lean,Mathlib/Order/Filter/Defs.lean,Mathlib/Order/Lattice.lean,Mathlib/Order/Lattice/Congruence.lean,Mathlib/Order/Notation.lean,Mathlib/Order/SupIndep.lean,Mathlib/RingTheory/PolynomialLaw/Basic.lean,Mathlib/RingTheory/RegularLocalRing/Polynomial.lean,Mathlib/SetTheory/ZFC/Basic.lean,Mathlib/SetTheory/ZFC/Class.lean,Mathlib/Tactic/SetNotationForOrder.lean,Mathlib/Topology/CWComplex/Classical/Basic.lean,Mathlib/Topology/Closure.lean,Mathlib/Topology/Compactification/StoneCech.lean,Mathlib/Topology/Connected/Clopen.lean,Mathlib/Topology/Constructible.lean,Mathlib/Topology/DiscreteSubset.lean,Mathlib/Topology/NhdsWithin.lean,Mathlib/Topology/OpenPartialHomeomorph/IsImage.lean,Mathlib/Topology/Sets/Compacts.lean,Mathlib/Topology/Sets/Opens.lean,Mathlib/Topology/UrysohnsLemma.lean,MathlibTest/Attribute/ToDual.lean,MathlibTest/Delab/SupInf.lean,MathlibTest/SetNotationForOrder.lean,MathlibTest/Simps.lean,MathlibTest/Tactic/GRewrite.lean,MathlibTest/Tactic/Order.lean |
98 |
27 |
['JovanGerb', 'Multramate', 'github-actions', 'jcommelin', 'leanprover-radar', 'mathlib-merge-conflicts'] |
nobody |
1-64854 1 day ago |
6-86016 6 days ago |
35-4266 35 days |
0 |
| 42646 |
mo271 author:mo271 |
feat(Algebra/Group/Action/Pointwise/Set/Basic): `mul_mem_smul_set` |
Ported from the ForMathlib dir of Formal Conjectures.
Original PR
https://github.com/google-deepmind/formal-conjectures/pull/1439
Co-authored-by: Yaël Dillies <yael.dillies@gmail.com>
---
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|
t-algebra label:t-algebra$ |
9/9 |
Mathlib/Algebra/Group/Action/Pointwise/Set/Basic.lean,Mathlib/ModelTheory/Arithmetic/Presburger/Semilinear/Defs.lean |
2 |
3 |
['github-actions', 'mo271'] |
nobody |
1-64835 1 day ago |
38-38777 38 days ago |
39-16383 39 days |
0 |
| 42164 |
CoolRmal author:CoolRmal |
feat(MeasureTheory): one-sided continuous functions are measurable |
The following lemmas are proved in this PR:
- the image of a set of a second-countable linear order under a right-continuous function is a
separable space.
- a right continuous function is measurable.
- a right continuous function is strongly measurable.
The corresponding statements for left continuous functions are also included.
Note: the statement that a right continuous function is strongly measurable is actually true even in the case that the codomain is not assumed to be strongly measurable, and this can be proved through an explicit construction of an approximating sequence of simple functions. However, this proof is definitely more lengthy, and I believe in practice we only care about strongly measurable functions in the case of integrating banach space valued functions. This is why I decide to assume pseudometrizability so that a simpler proof is available through the use of [stronglyMeasurable_iff_measurable_separable](https://leanprover-community.github.io/mathlib4_docs/Mathlib/MeasureTheory/Function/StronglyMeasurable/Basic.html#stronglyMeasurable_iff_measurable_separable).
---
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
|
t-measure-probability |
68/0 |
Mathlib/MeasureTheory/Constructions/BorelSpace/Order.lean,Mathlib/MeasureTheory/Function/StronglyMeasurable/Basic.lean,Mathlib/Topology/Order/LeftRightNhds.lean |
3 |
1 |
['github-actions'] |
nobody |
1-64806 1 day ago |
54-7427 54 days ago |
54-7201 54 days |
0 |
| 42188 |
arcaputo3 author:arcaputo3 |
feat(Combinatorics/SimpleGraph): the line graph signature identity |
For a finite simple graph `G` with `n` vertices and `m` edges, we prove the classical identity
`s(A(L(G))) = n - m + p - q`
where `s` is the signature of the (real) adjacency matrix of the line graph `L(G)`, and `(p, q)` are the numbers of positive/negative eigenvalues of `Q(G) - 2•1`, with `Q(G) = D(G) + A(G)` the signless Laplacian, all counted with multiplicity.
The proof is the Gram-pairing argument: the `V × E(G)` incidence matrix `B` satisfies `Bᵀ * B = A(L(G)) + 2•1` and `B * Bᵀ = Q(G)`, and the two products have equal nonzero spectra by `Matrix.charpoly_mul_comm'`. Eigenvalue counts are transported along the resulting root-multiset identity.
New declarations:
- `Mathlib/Analysis/Matrix/Inertia.lean`: the inertia indices `Matrix.IsHermitian.posInertia` / `negInertia` / `signature` of a real symmetric matrix, and `Matrix.IsHermitian.charpoly_add_smul_one` / `roots_charpoly_add_smul_one` (the characteristic polynomial of `A + c • 1` splits over the shifted eigenvalues).
- `Mathlib/Combinatorics/SimpleGraph/LineGraphSignature.lean`: `SimpleGraph.signlessLapMatrix`, `SimpleGraph.edgeIncMatrix` (the `V × E(G)`-indexed incidence matrix) together with the two Gram identities above (stated over an arbitrary (non-assoc) semiring), a `DecidableRel` instance for `lineGraph.Adj`, and the main theorem `SimpleGraph.signature_adjMatrix_lineGraph`.
---
**AI disclosure** (per the mathlib policy on AI-assisted contributions): this PR was formalized end-to-end with Claude Code (Anthropic model Claude Fable 5). The choice of statement and the decision to contribute are mine; the Lean proofs were authored by the tool and verified by compilation. `#print axioms SimpleGraph.signature_adjMatrix_lineGraph` reports `[propext, Classical.choice, Quot.sound]`.
Notes for reviewers:
- `signlessLapMatrix` could alternatively live in `Mathlib/Combinatorics/SimpleGraph/LapMatrix.lean`, and the `DecidableRel G.lineGraph.Adj` instance in `LineGraph.lean`; happy to move them.
- The inertia API is deliberately minimal (what the main theorem needs); extensions (e.g. rank/inertia relations, congruence invariance / Sylvester's law) would be natural follow-ups.
- I do not yet have push access to non-master mathlib branches, so this PR comes from a fork; happy to move the branch onto the main repository once access is granted.
🤖 Generated with [Claude Code](https://claude.com/claude-code)
|
new-contributor
LLM-generated
t-combinatorics
|
326/0 |
Mathlib.lean,Mathlib/Analysis/Matrix/Inertia.lean,Mathlib/Combinatorics/SimpleGraph/LineGraphSignature.lean |
3 |
2 |
['github-actions'] |
nobody |
1-64800 1 day ago |
55-14415 55 days ago |
55-14189 55 days |
0 |
| 34911 |
smmercuri author:smmercuri |
feat: idelic product formula |
---
- [x] depends on: #34915
- [x] depends on: #34918
- [x] depends on: #36184
- [x] depends on: #36204
- [x] depends on: #36275
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|
t-number-theory
t-algebra
label:t-algebra$ |
61/1 |
Mathlib/NumberTheory/NumberField/AdeleRing.lean,Mathlib/NumberTheory/NumberField/FiniteAdeleRing.lean |
2 |
11 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
1-64771 1 day ago |
16-78544 16 days ago |
16-79919 16 days |
0 |
| 41555 |
BryceT233 author:BryceT233 |
feat(Algebra/Order/Antidiagonal): connect `Finset.HasAntidiagonal` with `Filter.TendstoCofinite` |
This PR connects `Finset.HasAntidiagonal` with `Filter.TendstoCofinite` and cleans up `TendstoCofinite.lean`.
---
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- [x] depends on: #41521
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|
tech debt
t-algebra
label:t-algebra$ |
33/12 |
Mathlib/Algebra/Order/Antidiag/Prod.lean,Mathlib/Order/Filter/TendstoCofinite.lean |
2 |
13 |
['BryceT233', 'github-actions', 'jcommelin', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'plp127'] |
nobody |
1-64757 1 day ago |
13-49002 13 days ago |
18-19745 18 days |
0 |
| 43216 |
JadAbouHawili author:JadAbouHawili |
feat(Combinatorics/SimpleGraph/Clique): independence number is zero iff the graph has no vertices |
---
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|
new-contributor
t-combinatorics
|
46/3 |
Mathlib/Combinatorics/SimpleGraph/Clique.lean |
1 |
45 |
['JadAbouHawili', 'SnirBroshi', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
1-64740 1 day ago |
16-3877 16 days ago |
19-66241 19 days |
0 |
| 43081 |
joelriou author:joelriou |
feat(LinearAlgebra/ExteriorPower): generators of the exterior powers |
---
This PR continues the work from #18662.
Original PR: https://github.com/leanprover-community/mathlib4/pull/18662
- [x] depends on: #18534
- [x] depends on: #18590
- [x] depends on: #26464
|
t-algebra label:t-algebra$ |
114/0 |
Mathlib.lean,Mathlib/Data/Finset/Sort.lean,Mathlib/LinearAlgebra/ExteriorPower/Generators.lean |
3 |
3 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
1-64733 1 day ago |
3-76525 3 days ago |
27-24289 27 days |
1 |
| 42825 |
wwylele author:wwylele |
feat(Analysis/SpecialFunctions): derivative of Bessel function of the first kind |
---
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[](https://gitpod.io/from-referrer/)
|
t-analysis |
213/3 |
Mathlib/Analysis/Calculus/FDeriv/Analytic.lean,Mathlib/Analysis/SpecialFunctions/Bessel.lean,Mathlib/Analysis/SpecialFunctions/RegularizedHypergeometric.lean |
3 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
1-64655 1 day ago |
2-16910 2 days ago |
2-16684 2 days |
1 |
| 43795 |
harahu author:harahu |
feat(Logic/Function/Basic): add `Injective.existsUnique_iff_exists` |
We add `Injective.existsUnique_iff_exists` and use it to golf existing proofs.
This PR was created with assistance from Codex.
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|
t-logic |
18/43 |
Mathlib/Algebra/Field/IsField.lean,Mathlib/AlgebraicTopology/SimplicialSet/NonDegenerateSimplices.lean,Mathlib/Basic/Rel.lean,Mathlib/CategoryTheory/Limits/Types/Equalizers.lean,Mathlib/Data/Set/Image.lean,Mathlib/GroupTheory/ArchimedeanDensely.lean,Mathlib/Logic/Function/Basic.lean,Mathlib/RingTheory/Polynomial/Cyclotomic/Basic.lean |
8 |
3 |
['github-actions', 'harahu', 'leanprover-radar'] |
nobody |
1-64598 1 day ago |
6-83500 6 days ago |
6-83274 6 days |
0 |
| 43419 |
JovanGerb author:JovanGerb |
feat: tag `Metric.closedBall_subset_ball` with `@[gcongr strict]` |
This PR uses `@[gcongr strict]` on `Metric.closedBall_subset_ball` so that it can be used by `gcongr` and `grw`. This means that we will be able to rewrite with a strict inequality to turn a closed ball into an open ball or vice versa.
I golfed away some uses of `Metric.closedBall_subset_ball` using `grw`. To aid this, I also added some more `@[gcongr]` attributes.
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|
t-analysis |
50/45 |
Mathlib/Analysis/BoxIntegral/Basic.lean,Mathlib/Analysis/CStarAlgebra/SpecialFunctions/PosPart.lean,Mathlib/Analysis/Calculus/FDeriv/Basic.lean,Mathlib/Analysis/Complex/Harmonic/MeanValue.lean,Mathlib/Analysis/Complex/Harmonic/Poisson.lean,Mathlib/Analysis/Complex/Schwarz.lean,Mathlib/Analysis/Complex/TaylorSeries.lean,Mathlib/Analysis/Convex/Gauge.lean,Mathlib/Analysis/InnerProductSpace/Harmonic/Basic.lean,Mathlib/Analysis/InnerProductSpace/Harmonic/HarmonicContOnCl.lean,Mathlib/Analysis/ODE/PicardLindelof.lean,Mathlib/MeasureTheory/Covering/Besicovitch.lean,Mathlib/MeasureTheory/Group/AddCircle.lean,Mathlib/MeasureTheory/Measure/Doubling.lean,Mathlib/MeasureTheory/Measure/Lebesgue/EqHaar.lean,Mathlib/MeasureTheory/Measure/Prokhorov.lean,Mathlib/Topology/Algebra/Valued/LocallyCompact.lean,Mathlib/Topology/EMetricSpace/Lipschitz.lean,Mathlib/Topology/MetricSpace/Bounded.lean,Mathlib/Topology/MetricSpace/HausdorffDistance.lean,Mathlib/Topology/MetricSpace/ProperSpace/Lemmas.lean,Mathlib/Topology/MetricSpace/Pseudo/Defs.lean |
22 |
1 |
['github-actions'] |
nobody |
1-64570 1 day ago |
7-77090 7 days ago |
7-79036 7 days |
0 |
| 43578 |
WilliamCoram author:WilliamCoram |
feat: identifying WithZero (Multiplicative M) and WithTop M |
We identify `Mᵐ⁰ = WithZero (Multiplicative M)` with `WithTop M` in the form of the order-and-additive isomorphism.
In future work this will allow us to define additive valuations from valuations with a usable target (specifically attaching to a rank one discrete valuation an additive valuation into WithTop Z).
AI usage:
The need of attaching additive valuations to valuations came up in my Newton polygon work - after some discussion with people and Claude this was the approach I felt worked best for me. The file was drafted and written by Claude with my input and cleaning.
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|
LLM-generated
t-algebra
label:t-algebra$ |
142/0 |
Mathlib.lean,Mathlib/Algebra/Order/GroupWithZero/NegLog.lean |
2 |
1 |
['github-actions'] |
nobody |
1-64486 1 day ago |
13-14435 13 days ago |
13-14448 13 days |
1 |
| 43868 |
JovanGerb author:JovanGerb |
feat(ClickSuggestions): suggest normalizing tactics |
This PR extends `#click_suggestions` with a new feature: suggestions for normalization tactics like `simp` and `ring_nf`.
We dedicate a single thread for this, and leave the other threads to do the rest of the `#click_suggestions` computations. The results are shown as soon as they are ready, so if one tactic takes a long time to evaluate, the ones that were evaluated before that are already shown.
In order to keep `#click_suggestions` low in the import hierarchy, I implemented an extensible mechanism, and use that to register more import-heavy tactics like `ring_nf`.
When a subexpression is selected, `conv` is used to zoom in to that expression, so that the normalization is localized. Some tactics do not currently have a `conv` variant. In that case we don't use `conv`, which I think is perfectly fine.
This PR also comes with some improvements to the frontend:
- Instead of every button containing the text `[apply]`, it will now show the name of the tactic: this can be `[apply]`, `[rw]` or `[grw]`, and similarly for normalization tactics, e.g. `[simp]` or `[ring_nf]`.
- The title of each section now doesn't anymore say the name of the tactic, but instead it says "Pattern" followed by the pattern that that section matches with. It already used to be like this in `rw??`, and I think this makes it clearer that this expression is a pattern. All the section titles are now capitalized. See also #43842 which makes a related change.
- If a suggestion solves the goal, then the button is prefixed with the :tada: emoji.
Some notes about the supported tactics:
- `push +distrib Not` is only suggested if it acts differently from `push Not`
- `dsimp` is only suggested if it acts differently from `dsimp only`, and similarly `simp` for `dsimp`.
- `abel_nf` and `noncomm_ring` are not suggested for commutative rings, because then `ring_nf` is better
- `module_nf` is not suggested when the inferred base ring is `Nat` or `Int`, because then `abel_nf` suffices.
- I made the unnatural choice to suggest `norm_num1` instead of `norm_num`. This is because `norm_num` also runs `simp`, and it would be weird to suggest `norm_num` in places where `simp` does the same.
This PR also improves the implementation of `isExplicitEq`. Previously, it would not recurse into binders, and hence declare some expression as not equal when they should be considered equal by it. Previously, this wasn't really an issue, but now it is more relevant because e.g. `norm_cast` can make changes in implicit arguments that are under some binder - I've added a test for this case.
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|
t-meta
large-import
|
565/77 |
Mathlib.lean,Mathlib/Tactic.lean,Mathlib/Tactic/Abel.lean,Mathlib/Tactic/ClickSuggestions.lean,Mathlib/Tactic/ClickSuggestions/Apply.lean,Mathlib/Tactic/ClickSuggestions/ApplyAt.lean,Mathlib/Tactic/ClickSuggestions/GRewrite.lean,Mathlib/Tactic/ClickSuggestions/Normalize.lean,Mathlib/Tactic/ClickSuggestions/Rewrite.lean,Mathlib/Tactic/ClickSuggestions/SectionState.lean,Mathlib/Tactic/ClickSuggestions/TryPremises.lean,Mathlib/Tactic/ClickSuggestions/Unfold.lean,Mathlib/Tactic/ClickSuggestions/Util.lean,Mathlib/Tactic/FieldSimp.lean,Mathlib/Tactic/Group.lean,Mathlib/Tactic/ModuleNF.lean,Mathlib/Tactic/NoncommRing.lean,Mathlib/Tactic/NormNum/Core.lean,Mathlib/Tactic/Ring/RingNF.lean,MathlibTest/ClickSuggestions/Normalize.lean,MathlibTest/ClickSuggestions/Test.lean |
21 |
3 |
['JovanGerb', 'github-actions'] |
nobody |
1-63889 1 day ago |
3-28654 3 days ago |
3-48334 3 days |
0 |
| 40448 |
ChiCubed author:ChiCubed |
feat(LinearAlgebra/Dimension): tower law for algebraic extensions |
We generalise the tower law for `Module.rank` to the situation of a module over an algebraic extension of domains.
---
See [the Zulip thread](https://leanprover.zulipchat.com/#narrow/channel/217875-Is-there-code-for-X.3F/topic/Tower.20law.20for.20.60Module.2Erank.60/) for some associated discussion.
I am not sure about in which file these results should live, or what their names should be. For the file I have gone with `LinearAlgebra/Dimension/Algebraic.lean` for now, because these feel more like dimension theorems than `Algebra.IsAlgebraic` theorems, and IMO do not logically fit into the other existing files in `LinearAlgebra/Dimension`.
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|
t-algebra
new-contributor
label:t-algebra$ |
309/11 |
Mathlib.lean,Mathlib/Algebra/Group/Action/Faithful.lean,Mathlib/LinearAlgebra/Dimension/Domain.lean,Mathlib/LinearAlgebra/Dimension/Free.lean,Mathlib/RingTheory/Algebraic/Integral.lean,Mathlib/RingTheory/Localization/FractionRing.lean |
6 |
27 |
['ChiCubed', 'eric-wieser', 'github-actions', 'mathlib-merge-conflicts', 'tb65536', 'themathqueen'] |
kim-em assignee:kim-em |
1-63736 1 day ago |
1-68411 1 day ago |
98-47151 98 days |
0 |
| 34031 |
lua-vr author:lua-vr |
feat(Dynamics/BirkhoffSum): add the maximal ergodic theorem |
We prove the maximal ergodic theorem for a measure-preserving map `f` and an integrable function `g`. This is used in the proof of the pointwise ergodic theorem.
---
- [ ] depends on: #42447
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|
t-dynamics
large-import
|
340/2 |
Mathlib.lean,Mathlib/Dynamics/BirkhoffSum/Average.lean,Mathlib/Dynamics/BirkhoffSum/Basic.lean,Mathlib/Dynamics/BirkhoffSum/Integrable.lean,Mathlib/Dynamics/BirkhoffSum/Maximal.lean,Mathlib/MeasureTheory/Function/L1Space/Integrable.lean |
6 |
36 |
['github-actions', 'lua-vr', 'mathlib-bors', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'mcdoll'] |
sgouezel assignee:sgouezel |
1-63012 1 day ago |
24-28937 24 days ago |
96-69829 96 days |
1 |
| 38472 |
Raph-DG author:Raph-DG |
feat(AlgebraicGeometry): The Weil divisor associated to an element of the function field on a locally Noetherian integral scheme |
In this PR we define and provide some basic API for principal Weil divisors, i.e. the Weil divisor associated to an element of the function field of a locally noetherian, integral scheme.
- [x] depends on: #29774
- [x] depends on: #37985
- [x] depends on: #37901
- [x] depends on: #38002
- [x] depends on: #41317
---
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|
t-algebraic-geometry |
233/3 |
Mathlib.lean,Mathlib/AlgebraicGeometry/AlgebraicCycle/Basic.lean,Mathlib/AlgebraicGeometry/AlgebraicCycle/Principal.lean,Mathlib/AlgebraicGeometry/Noetherian.lean,Mathlib/AlgebraicGeometry/OrderOfVanishing.lean,Mathlib/AlgebraicGeometry/Restrict.lean,Mathlib/Topology/LocallyFinsupp.lean |
7 |
6 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
dagurtomas assignee:dagurtomas |
1-63011 1 day ago |
17-18820 17 days ago |
18-16653 18 days |
1 |
| 38606 |
dennj author:dennj |
feat: preparation for Vanishing Sum of Roots of Unity |
Adds the Mathlib API extensions needed for an upcoming formalization of the Lam-style classification theorem for vanishing sums of roots of unity.
* Mathlib/LinearAlgebra/LinearIndependent/Lemmas.lean
+ `exists_eq_const_of_sum_smul_eq_zero_of_sum_eq_zero_of_linearIndependent`: if `∑ vᵢ = 0` and the first `n-1` of `n` vectors are linearly independent, every linear relation has constant coefficients.
* Mathlib/RingTheory/Radical/NatInt.lean
+ `Nat.totient_eq_div_radical_mul_totient_radical`: Euler's totient splits as `φ(n) = (n / rad n) * φ(rad n)`.
* Mathlib/RingTheory/RootsOfUnity/PrimitiveRoots.lean
+ `IsPrimitiveRoot.sum_range_pow_mul_div_eq_zero_of_dvd`: the `d` evenly-spaced powers of a primitive `k`-th root sum to zero, for `d ∣ k` and `1 < d`.
* Mathlib/NumberTheory/Cyclotomic/LinearDisjoint.lean (new)
+ `IsPrimitiveRoot.linearDisjoint_adjoin_pow_of_coprime`: cyclotomic subfields of coprime orders are linearly disjoint over `ℚ`.
* Mathlib/NumberTheory/Cyclotomic/LinearRelations.lean (new)
+ `IsPrimitiveRoot.coeffs_eq_of_sum_pow_eq_zero_prime_coprime`: in the cyclotomic field of order `p * m` with `p` prime coprime to `m`, any `ℚ⟮ζ^p⟯`-linear relation among powers of `ζ^m` has all coefficients equal.
---
I need these as preparation to start formalizing the theorem:
Let k be a positive integer. If a finite family of complex k-th roots of unity sums to zero, then the size of the family is a non-negative integer combination of the prime divisors of k.
---
Human-made PR with AI used for golfing and documentation |
new-contributor
t-algebra
label:t-algebra$ |
219/0 |
Mathlib.lean,Mathlib/LinearAlgebra/LinearIndependent/Lemmas.lean,Mathlib/NumberTheory/Cyclotomic/LinearDisjoint.lean,Mathlib/NumberTheory/Cyclotomic/LinearRelations.lean,Mathlib/RingTheory/Radical/Totient.lean,Mathlib/RingTheory/RootsOfUnity/PrimitiveRoots.lean |
6 |
4 |
['github-actions', 'mathlib-merge-conflicts'] |
alreadydone assignee:alreadydone |
1-63010 1 day ago |
95-63515 95 days ago |
104-8537 104 days |
0 |
| 41137 |
plp127 author:plp127 |
fix: include `[NPow F]` in `FunLike.monoidWithZero` |
Include a `NPow` assumption in `FunLike.monoidWithZero` and `FunLike.semiring` and `FunLike.ring` instead of using `npowRec`. See https://github.com/leanprover-community/mathlib4/pull/37779#discussion_r3399574849.
---
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|
t-data |
18/8 |
Mathlib/Data/FunLike/Ring.lean,Mathlib/Topology/Algebra/Module/ContinuousLinearMap/Basic.lean |
2 |
1 |
['github-actions'] |
joneugster assignee:joneugster |
1-63007 1 day ago |
84-56279 84 days ago |
84-56134 84 days |
2 |
| 41946 |
Hilbert-beinghappy author:Hilbert-beinghappy |
feat(SetTheory/Descriptive/Tree): add infinite branches and bodies |
Motivation
The existing `tree A` API models trees as prefix-closed sets of finite
lists, together with some basic node operations (`take`, `subAt`,
`pullSub`). It had no notion of an infinite branch through such a
tree. Infinite branches and their collection, the body of a tree, are
basic vocabulary in descriptive set theory (e.g. to state that a tree
is well-founded iff its body is empty, or to talk about closed subsets
of Baire space as bodies of trees), so this is a natural extension of
the file.
Changes
* `initialSegment x n` is the list of the first `n` values of an
infinite sequence `x : ℕ → A`, with lemmas relating its length and
its behaviour when passing from `n` to `n + 1`.
* `IsBranch T x` says that `x : ℕ → A` is an infinite branch of `T`:
every finite initial segment of `x` lies in `T`.
* `body T` is the set of infinite branches of `T`, defined via
`IsBranch`.
* The auxiliary lemmas `nil_mem_of_isBranch` (a branch forces the root
`[]` to lie in `T`) and `body_mono` (`body` is monotone in the tree,
tagged `@[gcongr]`) round out the basic API.
Scope
This PR intentionally does not add closedness of `body T` (which
would require `A` to carry the discrete topology, so that `body T` is
closed in the product topology on `ℕ → A`), well-foundedness of trees
(which needs well-founded relations and descending chains), or rank
(which needs ordinal-valued rank API). These are left for follow-up
PRs, since each pulls in its own dependencies and deserves separate
review.
Verification
* `lake build Mathlib.SetTheory.Descriptive.Tree`
* `lake exe lint-style Mathlib.SetTheory.Descriptive.Tree`
* `lake build Mathlib`
AI use
I used Codex to help select this item from the
backlog, adapt the definitions to the existing `tree A` API and to the
`Descriptive.Tree` namespace and current module system (e.g. adding
the `public import` for `Mathlib.Data.List.OfFn`), draft the
implementation, and run the three verification commands above. I
checked every definition and lemma statement against its intended
mathematical meaning, and went through each proof term individually,
unfolding `initialSegment`, `IsBranch`, and `body` to confirm the
`simp`/`simpa` calls actually close the resulting goals rather than
just trusting that they compiled. |
t-set-theory |
42/1 |
Mathlib/SetTheory/Descriptive/Tree.lean |
1 |
1 |
['github-actions'] |
jjdishere assignee:jjdishere |
1-63006 1 day ago |
63-59263 63 days ago |
63-59037 63 days |
0 |
| 42040 |
fqlx author:fqlx |
feat(NumberTheory): formalize Størmer's theorem on consecutive smooth numbers |
This PR formalizes the Størmer theorem on consecutive smooth numbers.
The new `Mathlib.NumberTheory.Stormer` module:
- develops the Pell/Lucas coefficient needed to study powers of Pell solutions;
- proves that a positive Pell solution whose `y`-coordinate has no prime factors outside the Pell parameter is fundamental;
- encodes consecutive `s`-factored numbers by three-valued prime-exponent data; and
- proves that the set of consecutive `s`-factored pairs is finite, establishes the refined global bound `3 ^ s.card - 2 ^ s.card`, and retains a stronger reusable bound for arbitrary finite subcollections.
The main public conclusions are:
- `card_consecutive_factoredNumbers_le_sub`: the reusable finite-set injection bound;
- `finite_consecutiveFactoredNumbers`: the traditional qualitative Størmer theorem; and
- `ncard_consecutiveFactoredNumbers_le_sub`: the strongest clean public conclusion for the complete set.
The implementation reuses the existing Pell and smooth-number APIs, keeps the core prime-index argument explicit, and includes the corresponding bibliography entry and umbrella import.
--------
AI tools, including OpenAI Codex and ChatGPT, were used extensively in preparing this contribution. They generated and revised substantial portions of the Lean implementation, assisted with proof decomposition and mathlib API discovery, helped iterate on compiler errors and refactoring, and helped draft the PR text.
I selected the theorem and scope, directed the iterations, reviewed the theorem statements and overall proof structure, and ran the listed Lean validation commands. I did not independently author or manually verify every low-level Lean proof step. On the linked self-assessment scale, I would classify this contribution as approximately Level 6: bots coded, human understands mostly.
|
t-number-theory
new-contributor
LLM-generated
|
861/0 |
Mathlib.lean,Mathlib/NumberTheory/Stormer.lean,docs/references.bib |
3 |
6 |
['fqlx', 'github-actions', 'grunweg'] |
jjdishere assignee:jjdishere |
1-63005 1 day ago |
56-34719 56 days ago |
56-79926 56 days |
0 |
| 42336 |
kim-em author:kim-em |
feat(Tactic): add sum-of-squares tactic |
This PR adds the `leanprover/sos` tactic to Mathlib. See `MathlibTest/Tactic/SOS/Showcase.lean` for example applications.
---
## Review order
The history is deliberately six buildable commits, in this order:
1. `feat(Cache): fetch prebuilt native dependencies` — the Lake/cache boundary, tests, workflow hook, security documentation, and stable engine pin.
2. `feat(Tactic/SOS): add exact certificate verifier` — the small proof-facing polynomial and certificate layer.
3. `feat(Tactic/SOS): add sum-of-squares tactic` — reification, lifting, tactic elaboration, and public imports.
4. `test(Tactic/SOS): cover published examples and trust boundary` — the announcement showcase, Harrison examples, Blekherman–Bodirsky–Raghavendra follow-up examples, division/modulus coverage, issue #50, and axiom audit.
5. `chore(Tactic/SOS): use Lean 4.34 native releases` — the final SOS/CSDP release pins and simplified provider-release fetch.
6. `refactor(Tactic/SOS): share certificate quotation` — moves reusable certificate decompilation, quotation, and formatting into SOS v0.2.4, and removes obsolete commentary and repeated end-to-end examples. This layer reduces the Mathlib diff by 405 lines without removing distinct tactic paths or active negative tests.
## Trust and cache boundary
CSDP is a search oracle, not part of the logical trusted base. The tactic converts its answer to exact rational data and closes the goal through the checked verifier and Lean kernel.
Mathlib's cache command fetches `@CSDP:release` before unpacking the ordinary Lean cache. CSDP v0.1.2 supplies its complete platform build, so a cold checkout retains the normal invariant without compiling CSDP components:
```bash
lake exe cache get
lake build --no-build
```
The checked-in manifest pins the provider source, and the cache helper executes only its explicit allowlist. CSDP does not use Lake's implicit preferred-release job, so an ordinary offline or sandboxed build can still fall back to its bundled portable sources.
The Mathlib requirement points to the immutable, Mathlib-free SOS v0.2.4 release. Its Hex dependencies are likewise pinned to stable releases.
## Required landing order
1. Merge this Mathlib PR while it points to the stable SOS release tag.
2. Update SOS `main` to the staged Mathlib-free engine branch.
3. Make a one-line Mathlib follow-up changing the SOS requirement from the release tag back to `main`.
|
t-meta |
3999/2 |
Cache/IO.lean,Cache/Main.lean,Cache/Native.lean,Cache/README.md,Cache/SECURITY.md,Cache/Test.lean,Mathlib.lean,Mathlib/Tactic.lean,Mathlib/Tactic/SOS.lean,Mathlib/Tactic/SOS/Certificate.lean,Mathlib/Tactic/SOS/Lift.lean,Mathlib/Tactic/SOS/Polynomial.lean,Mathlib/Tactic/SOS/Raw.lean,Mathlib/Tactic/SOS/Reify.lean,Mathlib/Tactic/SOS/Tactic.lean,Mathlib/Tactic/SOS/Verifier.lean,MathlibTest/Tactic/SOS/Axioms.lean,MathlibTest/Tactic/SOS/BBR.lean,MathlibTest/Tactic/SOS/DivMod.lean,MathlibTest/Tactic/SOS/Examples.lean,MathlibTest/Tactic/SOS/Harrison.lean,MathlibTest/Tactic/SOS/Issue50.lean,MathlibTest/Tactic/SOS/Showcase.lean,docs/workflows.md,lake-manifest.json,lakefile.lean |
26 |
3 |
['github-actions', 'mathlib-merge-conflicts'] |
thorimur assignee:thorimur |
1-63004 1 day ago |
5-37266 5 days ago |
11-40239 11 days |
0 |
| 42588 |
sharky564 author:sharky564 |
fix(Tactic/Linarith): attribute `linarith?` suggestions to the correct hypotheses |
`runLinarith` returned indices into the post-preprocessing fact list, but `linarithUsedHyps` applies them to the pre-preprocessing hypothesis list, so `linarith?` could suggest the wrong hypotheses or fail outright. Fixed this by tagging each fact with the indices of the original hypotheses it was derived from (`TaggedProof`), threaded through all preprocessors.
---
This addresses and closes the issue raised in #41471.
This was broken because the old code passed indices of a list around, without updating when the list was modified by preprocessor dropped, split or synthesised facts. No index-fix could recover this, besides just carrying through the index. Keeping the `Origin` a set rather than a single index is necessary since preprocessors can combine hypotheses. However this does mean the preprocessors no longer act on `Expr`s but rather `TaggedProof`s - I'm not the greatest fan of this, but I couldn't come up with an easy solution that preserved this behaviour. I've also provided additional tests which highlight the issues that would've previously arisen.
AI disclosure:
I did have AI assistance (Claude Opus/Fable) with this, but this was for me to learn more Lean syntax not typically seen in writing proofs. The diagnosis and idea for the solution was mine, and debugging and documentation was with AI assistance.
[](https://gitpod.io/from-referrer/)
|
t-meta |
309/147 |
Mathlib/Tactic/Linarith/Datatypes.lean,Mathlib/Tactic/Linarith/Frontend.lean,Mathlib/Tactic/Linarith/NNRealPreprocessor.lean,Mathlib/Tactic/Linarith/Preprocessing.lean,MathlibTest/Tactic/Linarith/Basic.lean,MathlibTest/Tactic/Linarith/NNReal.lean |
6 |
10 |
['github-actions', 'kbuzzard', 'leanprover-radar', 'sharky564'] |
joneugster assignee:joneugster |
1-63003 1 day ago |
43-47043 43 days ago |
43-46817 43 days |
0 |
| 42667 |
gasparattila author:gasparattila |
chore: make `Set.inclusion` semireducible |
It is currently an abbrev, which confuses `fun_prop` due to dependent types in lemmas like `Topology.IsEmbedding.inclusion`. After this change, `fun_prop` will be able to prove goals like `IsEmbedding f → IsEmbedding (Set.inclusion h ∘ f)`.
---
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|
t-data |
18/15 |
Mathlib/Algebra/Algebra/Subalgebra/Directed.lean,Mathlib/Combinatorics/Compactness.lean,Mathlib/Data/Set/Inclusion.lean,Mathlib/Data/Set/UnionLift.lean,Mathlib/Logic/Equiv/Set.lean,Mathlib/ModelTheory/Fraisse.lean,Mathlib/ModelTheory/PartialEquiv.lean,Mathlib/ModelTheory/Substructures.lean,Mathlib/Order/CountableDenseLinearOrder.lean,Mathlib/Topology/Category/TopCat/Opens.lean,Mathlib/Topology/Covering/Basic.lean,Mathlib/Topology/UniformSpace/UniformEmbedding.lean |
12 |
4 |
['gasparattila', 'github-actions', 'plp127'] |
TwoFX assignee:TwoFX |
1-63002 1 day ago |
39-73009 39 days ago |
40-24300 40 days |
0 |
| 42759 |
mckoen author:mckoen |
feat(CategoryTheory/Subobject): extend image subobject API |
Extends some API for image subobjects. This PR exists to split up #41769.
---
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[](https://gitpod.io/from-referrer/)
|
t-category-theory |
66/0 |
Mathlib/CategoryTheory/Subobject/Lattice.lean,Mathlib/CategoryTheory/Subobject/Limits.lean |
2 |
13 |
['github-actions', 'mathlib-dependent-issues', 'robin-carlier'] |
joelriou assignee:joelriou |
1-63001 1 day ago |
1-80202 1 day ago |
12-84698 12 days |
2 |
| 43396 |
yuanyi-350 author:yuanyi-350 |
feat(AlgebraicTopology/FundamentalGroupoid): prove the generation part of van Kampen's theorem |
- [ ] depends on #43400 |
t-algebraic-topology |
220/0 |
Mathlib.lean,Mathlib/AlgebraicTopology/FundamentalGroupoid/VanKampen.lean |
2 |
1 |
['github-actions'] |
dagurtomas assignee:dagurtomas |
1-62999 1 day ago |
18-20909 18 days ago |
18-20683 18 days |
0 |
| 42346 |
mortarsanjaya author:mortarsanjaya |
feat(Algebra/CharP/Two): weaken theorem hypothesis |
This PR weakens the hypothesis of several theorems about rings of characteristic 2. Some of these lemmas do not require the (semi)ring to be associative, some of them do not require subtraction (and thus `Ring` can be weakened to `Semiring`), and those about integer cast do not even require multiplication.
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra label:t-algebra$ |
77/45 |
Mathlib/Algebra/CharP/Two.lean |
1 |
4 |
['github-actions', 'mathlib-merge-conflicts', 'mortarsanjaya', 'vihdzp'] |
nobody |
1-62480 1 day ago |
1-65535 1 day ago |
48-47323 48 days |
0 |
| 41830 |
Jun2M author:Jun2M |
feat(Data/PFun): add lemmas for ran, restrict, map, image and preimage |
Add missing simp / API lemmas for partial functions, and strengthen `preimage_inter`
from a subset inclusion to an equality. Also tag a few `Part` uniqueness lemmas
for `grind`.
- `Part`: `grind` attributes on `get_mem`, `mem_unique`, `mem_right_unique`
- `ran`: `ran_coe`, `ran_eq_empty_iff_dom_eq_empty`
- `restrict`: `dom_restrict`, `restrict_restrict`, `ran_restrict`, `preimage_restrict`
- `map`: `dom_map`, `mem_map`, `ran_map`, `image_map`, `preimage_map`
- `image` / `preimage`: `image_subset_ran`, `preimage_empty`,
`disjoint_preimage_of_disjoint`, plus `simp`/`gcongr` attributes
---
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[](https://gitpod.io/from-referrer/)
|
t-data
maintainer-merge
|
86/3 |
Mathlib/Data/PFun.lean,Mathlib/Data/Part.lean |
2 |
3 |
['github-actions', 'joneugster'] |
nobody |
1-62111 1 day ago |
66-83348 66 days ago |
66-83122 66 days |
0 |
| 41289 |
D-Thomine author:D-Thomine |
feat(Dynamics): recurrents set and refactoring of conservative maps |
This PR deals mostly with `Dynamics.Conservative`. The notion of *recurrent set* is introduced: a set `s` is recurrent if almost every point in `s` returns to `s`. Most properties of conservative maps actually apply to recurrent sets.
The definition of conservative map is changed to align with this notion of recurrent set (a map is conservative if every measurable set is recurrent). Theorem `MeasureTheory.conservative_iff_exists_mem_iterate_mem` expresses the equivalence of the new definition with the older one.
---
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[](https://gitpod.io/from-referrer/)
|
t-dynamics |
329/114 |
Mathlib/Dynamics/Ergodic/Conservative.lean,Mathlib/Dynamics/Ergodic/MeasurePreserving.lean,Mathlib/MeasureTheory/Measure/QuasiMeasurePreserving.lean,Mathlib/Order/Filter/Basic.lean,Mathlib/Order/Filter/CountableInter.lean,Mathlib/Order/Interval/Finset/Basic.lean |
6 |
28 |
['D-Thomine', 'github-actions', 'mathlib-merge-conflicts', 'mcdoll'] |
nobody |
1-62110 1 day ago |
23-32689 23 days ago |
67-32095 67 days |
0 |
| 43037 |
kim-em author:kim-em |
feat(Tactic/NormNum): add `norm_num_simproc` and use it for `Nat.fib` |
This PR adds a `norm_num_simproc` command that declares a `norm_num` extension and registers it as a simproc in the given simproc sets from a single declaration. We then try this out for `Nat.fib`, converting the existing `norm_num` extension.
```lean
norm_num_simproc [simp, seval] evalNatFib (Nat.fib _) where
eval {_ _} e := ...
```
declares `evalNatFib : NormNumExt` tagged `@[norm_num Nat.fib _]`, plus `evalNatFib.simproc` registered under `[simp, seval]`. Registering in `seval` makes the procedure reachable from `grind`, which previously could not evaluate `Nat.fib` at all. (`simp` couldn't either.)
`NormNum.derive` walks the extension `DiscrTree` and performs no traversal of its own, so an extension is responsible for normalising its own operands via a recursive `derive`. Consumers that call `derive` directly rather than through `simp` (in particular `ring`, `positivity`, `field_simp`'s discharger, `interval_cases`, and `reduce_mod_char`) depend on that. A simproc only rewrites the expression it is handed, so generating the extension from a simproc instead would silently fail for those consumers as soon as the operands are not already literals. `MathlibTest/Tactic/NormNum/NatFib.lean` verifies that we still get this right with `positivity` on `0 < Nat.fib (Nat.sqrt 144)`.
`Nat.fib` is a deliberately conservative first case. `proveNatFib` is fast doubling, so evaluation is O(log n) big-number multiplications: `Nat.fib 50000` takes 126µs and the only thing that grows is the resulting literal, which is the answer the caller asked for. Around 30 further extensions are candidates for the same treatment, but several of them (e.g. `Nat.factorial`, `Nat.Prime`, the Jacobi and Legendre symbols) are not bounded that way, and a globally registered `[simp]` simproc runs on every `simp` call in the library. Those want per-extension `[simp]` versus `[seval]` decisions and their own benchmarks.
🤖 Prepared with Claude Code
|
t-meta
LLM-generated
|
120/9 |
Mathlib/Tactic/NormNum/Core.lean,Mathlib/Tactic/NormNum/NatFib.lean,MathlibTest/Tactic/NormNum/NatFib.lean,MathlibTest/Tactic/NormNum/SimprocMacro.lean |
4 |
7 |
['JovanGerb', 'github-actions', 'kim-em'] |
nobody |
1-62107 1 day ago |
30-48358 30 days ago |
30-50484 30 days |
0 |
| 43801 |
JovanGerb author:JovanGerb |
feat(Translate): better `relevant_arg` heuristic |
This PR improves the heuristic around `relevant_arg` that `to_dual` and `to_additive` use. Currently, the we eagerly set `(relevant_arg := 1)` whenever we cannot find any relevant argument. This is problematic in a setting where there really should be no relevant argument, such as for `ComplexShape`.
After this PR, we only default to `(relevant_arg := 1)` for types (i.e. anything whose type is `Sort _`). For terms that aren't types, we instead purely rely on the algorithm that determines the relevant argument (which was added in #35318). In order for this algorithm to work in all cases, `relevant_arg` needs to be set on all relevant types. This includes some types that are dual to themselves, like `LE` and `LinearOrder`, and hence do not have a `to_dual` attribute (and hence also don't have a `relevant_arg`). To fix this, I added the following trick: when we add a translation for a class projection or class constructor, and if that class has no translation, then we first add a translation from that class to itself.
As a result, classes like `LE` and `LinearOrder` are now part of the translation dictionary, and are being translated into themselves.
---
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|
t-meta |
86/40 |
Mathlib/Tactic/Translate/Core.lean,MathlibTest/Attribute/ToAdditive/Basic.lean,MathlibTest/Attribute/ToDual.lean |
3 |
5 |
['JovanGerb', 'Vierkantor', 'github-actions', 'leanprover-radar'] |
Vierkantor assignee:Vierkantor |
1-62012 1 day ago |
1-67325 1 day ago |
3-55149 3 days |
0 |
| 42315 |
sfingali author:sfingali |
feat(Topology): the adic spectrum Spa(A, A+) as a topological space |
### Summary
Defines the adic spectrum `Spa(A, A⁺)` as a set and topological space for a
topological ring `A` and a subring `A⁺` (Wedhorn, *Adic Spaces*,
arXiv:1910.05934, Def. 7.23 and Def. 7.29, pp. 62–63).
* `SpaPoint A A⁺` — a point of the adic spectrum: a continuous valuation
`v : A → Γ₀` with `v(f) ≤ 1` for all `f ∈ A⁺`.
* `SpaPoint.rationalSubset s T` — the rational subset `R(T/s)`.
* `SpaPoint.spaTopologicalSpace` — the topology generated by the rational
subsets with `T · A` open in `A`; `isOpen_rationalSubset` shows every such
rational subset is open.
* `SpaPoint.mem_rationalSubset_one` — Wedhorn, Rem. 7.30(4): `R(f/1)` is the
set `{x | |f(x)| ≤ 1}`.
Third step of an adic/perfectoid pipeline (Huber rings #42312 → continuous
valuations #42314 → Spa → Huber pairs → perfectoid → tilting). This PR works
with the element-level notion (a bundled continuous valuation with a fixed
value group); Wedhorn defines `Spa(A, A⁺)` as a subspace of the valuation
spectrum `Spv(A)` — the comparison is added once the spectrum PR lands.
### References
* T. Wedhorn, *Adic Spaces*, arXiv:1910.05934, Def. 7.23, Def. 7.29,
Rem. 7.30 (pp. 62–63).
|
new-contributor
t-topology
|
411/0 |
Mathlib.lean,Mathlib/RingTheory/Valuation/ContinuousValuation.lean,Mathlib/Topology/Algebra/Nonarchimedean/Spa.lean |
3 |
3 |
['github-actions', 'tb65536'] |
nobody |
1-52022 1 day ago |
50-5079 50 days ago |
50-8847 50 days |
0 |
| 40727 |
pepamontero author:pepamontero |
feat(Geometry/Manifold/Instances/Quotient): quotients of manifolds by smooth free properly discontinuous group actions are manifolds |
Add smooth manifold structure on orbit space `orbitRel.Quotient G M`.
This PR is a follow-up to #35653, which equipped `orbitRel.Quotient G M` with a `ChartedSpace` structure. Here we promote that to an `IsManifold I n` instance, assuming M itself is an `IsManifold I n` and `G` acts by
`ContMDiffConstSMul`.
This PR:
* Changes the charted space instance to use `IsLocalHomeomorph.chartedSpaceOfRightInverse` applied to `Quotient.out_eq`, so the charts come from an explicit local section `orbitRel.Quotient.localInverseAt x` of the quotient map at `x.out`.
* Adds some API on `localInverseAt` that is only relevant when we have an action (`localInverseAt_apply_mk_eq_smul`, `localInverseAt_symm_trans_eqOn_smul`, `exists_smul_mem_localInverseAt_target`)
* Defines the `transitionMap` between the charts of the quotient, and adds `transitionMap_locally_smul` which shows each transition map agrees near any point with `φ x⁻¹ ≫ (g • ·) ≫ φ y` for a single `g : G`.
* Uses the above to prove `isManifold_quotient_of_contMDiffSMul`.
**Questions for reviewers**:
1. Should the acting group be `Γ` rather than `G`? Here `G` has no topology, and in other files `Γ` is used in this case.
2. Should `localInverseAt` be a `def` instead of an `abbrev`? It is an `abbrev` because there is already API for `IsLocalHomeomorph.localInverseAt` that I need.
3. Is changing the `ChartedSpace` instance to `Quotient.out` the right decision?
4. Should I write a definition for `(chartAt H x.out).symm ≫ₕ (g • ·) ≫ₕ chartAt H y.out` , similar to `transitionMap`?
This started as an ItaLean2025 project; here is the [Zulip thread](https://leanprover.zulipchat.com/#narrow/channel/541885-ItaLean-2025/topic/Projects.3A.20Quotient.20Manifolds/with/575121158) dedicated to it.
Co-authored by: Enrique Díaz Blanco <qdiazblanco@gmail.com>
Co-authored by: Archie Browne <ajb421@ic.ac.uk>
--------
- [x] depends on: #41832
- [x] depends on: #41835
- [x] depends on: #42436
- [x] depends on: #42502
- [x] depends on: #41534
- [x] depends on: #43717 |
new-contributor
large-import
t-differential-geometry
|
138/5 |
Mathlib/Geometry/Manifold/Instances/Quotient.lean |
1 |
50 |
['Deicyde', 'github-actions', 'grunweg', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'pepamontero', 'scholzhannah'] |
grunweg assignee:grunweg |
1-52006 1 day ago |
5-73011 5 days ago |
33-83514 33 days |
0 |
| 41728 |
vaca22 author:vaca22 |
feat(GroupTheory): prove uniqueness of ℤᵐ⁰ automorphisms |
Prove that every order-preserving multiplicative automorphism of ℤᵐ⁰ is the identity. This also gives a Unique instance for its automorphism type and a Subsingleton instance for order-preserving multiplicative normalizations from G to ℤᵐ⁰.
The proof transports an automorphism through WithZero.exp and WithZero.log to an additive automorphism of ℤ, then excludes negation by monotonicity.
------------
**AI disclosure**: this PR is primarily LLM-generated (Claude Code).
|
t-group-theory
new-contributor
LLM-generated
|
58/0 |
Mathlib/GroupTheory/ArchimedeanDensely.lean |
1 |
15 |
['github-actions', 'grunweg', 'tb65536', 'vaca22', 'wwylele'] |
nobody |
1-43686 1 day ago |
16-11005 16 days ago |
30-55321 30 days |
0 |
| 41696 |
vaca22 author:vaca22 |
feat(RingTheory): generalize relNorm_eq_pow_of_isMaximal to separable fraction field extensions |
This PR relaxes the hypothesis of Ideal.relNorm_eq_pow_of_isMaximal and its supporting Ring.NormalClosure instances.
Originally the theorem required the fraction ring of base Dedekind domain R to be a perfect field. Now we only require the fraction field extension to be separable.
The perfect field condition excludes function fields with imperfect constant fields, which is an important case we want to support. The core mathematical insight is that the normal closure of a separable field extension stays separable, so we can construct the Galois structure without a perfect base.
This change is fully backwards compatible: any existing code relying on the old perfect field assumption still compiles, since perfect fields automatically give separable extensions. Only two files are modified: NormalClosure.lean and RelNorm.lean, with small diff and no extra imports.
AI disclosure: I used AI tools to assist with initial code drafting and full CI validation. All mathematical reasoning and proof logic I worked through independently, and I can explain every adjustment in review. My original PR text relied too heavily on AI output, I’ve fully rewritten this description manually. |
new-contributor
t-ring-theory
LLM-generated
|
22/3 |
Mathlib/FieldTheory/Galois/Basic.lean,Mathlib/FieldTheory/SeparableClosure.lean,Mathlib/RingTheory/Ideal/Norm/RelNorm.lean,Mathlib/RingTheory/NormalClosure.lean |
4 |
22 |
['felixpernegger', 'github-actions', 'leanprover-radar', 'vaca22', 'xroblot'] |
nobody |
1-42333 1 day ago |
1-43413 1 day ago |
62-84718 62 days |
0 |
| 42971 |
ashebson author:ashebson |
fix(ProfiniteGrp): simplify explicit limit projections |
The naturality proof for `ProfiniteCompletion.lift` previously needed a brittle pointwise `change`. The underlying problem was that simplification crossed several semireducible diagram/forgetful-functor boundaries at once, producing terms that are definitionally equal but no longer type-correct at implicit transparency.
This PR:
- makes the two finite-quotient diagram composites reducible abbreviations;
- states `quotientMap` using the diagram object types and maps it through the existing `FiniteGrp ⥤ ProfiniteGrp` forgetful functor;
- adds a pointwise rewrite lemma for an explicit limit projection followed by a mapped finite-group morphism (with its additive counterpart); and
- rewrites `ProfiniteCompletion.lift` naturality through that API while keeping the limit point bundled, removing the problematic pointwise `change`.
--------
## AI disclosure
AI (OpenAI Codex) was used extensively for this PR. It was used to:
- investigate the original TODO and reproduce why `dsimp` failed;
- explore and discard several possible fixes;
- identify the semireducible diagram/forgetful-functor boundaries involved;
- design and implement the final `ProfiniteGrp` API simplification and `ProfiniteCompletion.lift` proof changes;
- run the relevant Lean builds and direct compilation checks; and
- draft the commit message and PR description.
The final changes were reviewed through the resulting diff and verified locally.
|
t-topology
new-contributor
LLM-generated
|
29/12 |
Mathlib/Topology/Algebra/Category/ProfiniteGrp/Basic.lean,Mathlib/Topology/Algebra/Category/ProfiniteGrp/Completion.lean,Mathlib/Topology/Algebra/Category/ProfiniteGrp/Limits.lean |
3 |
9 |
['ashebson', 'github-actions', 'grunweg', 'mathlib-bors', 'mathlib-merge-conflicts'] |
nobody |
1-38700 1 day ago |
1-39922 1 day ago |
14-84883 14 days |
0 |
| 43985 |
kebekus author:kebekus |
feat: API for working with canonical factors |
To prepare for upcoming work in Value Distribution Theory, add three elementary lemmas on canonical factors and their derivatives.
This material is used in [Project VD](https://github.com/kebekus/ProjectVD), formalizing Value Distribution Theory for meromorphic functions on the complex plane. Claude Code was used to create this PR.
---
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[](https://gitpod.io/from-referrer/)
|
t-analysis
LLM-generated
|
86/0 |
Mathlib/Analysis/Complex/CanonicalDecomposition.lean |
1 |
1 |
['github-actions'] |
nobody |
1-32167 1 day ago |
1-32167 1 day ago |
1-31941 1 day |
0 |
| 43965 |
YaelDillies author:YaelDillies |
feat(NumberTheory): `decide`, `#eval` and `norm_num` for Carmichael numbers |
Provide both an efficient decidability instance and a `norm_num` extension to decide whether a given literal is a Carmichael number.
This lets us prove that 561 is the smallest Carmichael number "in a computationally efficient manner". Deprecate the version of Korselt's criterion that was supposed to be used for this (but was less efficient than these new instance/extension).
Generated by Claude Opus in several rounds of review to optimise various parts of the algorithms and make sure that the decidability instance works for both `#eval` and `decide`. I haven't made much of an effort to clean the proofs (existing proofs internal to `norm_num` read like garbage to me anyway).
From FormalConjectures
Assisted-by: Claude Opus 5.1
---
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|
t-number-theory
LLM-generated
t-meta
|
311/10 |
Mathlib/NumberTheory/CarmichaelNumber.lean,MathlibTest/NumberTheory/CarmichaelNumber.lean |
2 |
10 |
['SnirBroshi', 'YaelDillies', 'github-actions', 'leanprover-radar', 'wwylele'] |
nobody |
1-30458 1 day ago |
2-21060 2 days ago |
2-20834 2 days |
0 |
| 28686 |
mitchell-horner author:mitchell-horner |
feat(Combinatorics/SimpleGraph): prove the Erdős-Stone theorem |
Proves the Erdős-Stone theorem:
If `G` has at least `(1 - 1 / r + o(1)) * n ^ 2 / 2` many edges, then `G` contains a copy of a `completeEquipartiteGraph (r + 1) t`.
---
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[](https://gitpod.io/from-referrer/)
|
t-combinatorics
large-import
|
206/1 |
Mathlib/Combinatorics/SimpleGraph/Extremal/ErdosStoneSimonovits.lean |
1 |
8 |
['barni120400', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'mathlib4-merge-conflict-bot', 'mitchell-horner'] |
nobody |
1-30411 1 day ago |
23-25401 23 days ago |
80-23540 80 days |
2 |
| 41988 |
vlad902 author:vlad902 |
feat(FreeGroup): characterize commutative/cyclic free groups |
Characterize cyclic/commutative free groups as being those on ≤ 1 generators. I generalize and move around some instances along the way to avoid new imports.
---
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|
t-group-theory |
64/23 |
Mathlib/Algebra/Group/Basic.lean,Mathlib/Algebra/Group/Defs.lean,Mathlib/Basic/Unique.lean,Mathlib/FieldTheory/Galois/Basic.lean,Mathlib/GroupTheory/FreeGroup/Basic.lean,Mathlib/GroupTheory/FreeGroup/Reduce.lean,Mathlib/GroupTheory/SpecificGroups/Cyclic/Basic.lean |
7 |
6 |
['github-actions', 'mathlib-merge-conflicts', 'tb65536', 'vlad902'] |
nobody |
1-30410 1 day ago |
7-14066 7 days ago |
44-73669 44 days |
1 |
| 42138 |
mitchell-horner author:mitchell-horner |
feat(Combinatorics/SimpleGraph): copies into `⊤` and containment in the complete graph |
Add copy constructors mirroring the existing `Copy.bot` API.
---
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|
t-combinatorics |
38/19 |
Mathlib/Combinatorics/SimpleGraph/Copy.lean |
1 |
10 |
['Ruben-VandeVelde', 'SnirBroshi', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'mitchell-horner', 'vlad902'] |
nobody |
1-30147 1 day ago |
19-21513 19 days ago |
39-21115 39 days |
0 |
| 43986 |
grunweg author:grunweg |
chore: golf mvfderiv(Within)_zero |
We can reuse a previous lemma, and remove a superfluous hypothesis at the same time.
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|
easy
t-differential-geometry
|
2/12 |
Mathlib/Geometry/Manifold/MFDeriv/NormedSpace.lean |
1 |
1 |
['github-actions'] |
nobody |
1-30133 1 day ago |
1-31496 1 day ago |
1-31270 1 day |
2 |
| 42136 |
mitchell-horner author:mitchell-horner |
feat(Combinatorics/SimpleGraph): API for `labelledCopyCount` |
Add API for `SimpleGraph.labelledCopyCount`.
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|
t-combinatorics |
63/1 |
Mathlib/Combinatorics/SimpleGraph/Copy.lean |
1 |
1 |
['github-actions'] |
nobody |
1-30047 1 day ago |
56-21078 56 days ago |
56-20852 56 days |
1 |
| 42137 |
mitchell-horner author:mitchell-horner |
feat(Combinatorics/SimpleGraph): bounds for `extremalNumber` and `turanDensity` |
Add bounds for `extremalNumber` and `turanDensity`.
---
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|
t-combinatorics |
35/0 |
Mathlib/Combinatorics/SimpleGraph/Extremal/Basic.lean,Mathlib/Combinatorics/SimpleGraph/Extremal/TuranDensity.lean |
2 |
7 |
['SnirBroshi', 'b-mehta', 'github-actions', 'mitchell-horner'] |
nobody |
1-29450 1 day ago |
23-25912 23 days ago |
56-19881 56 days |
1 |
| 43467 |
YaelDillies author:YaelDillies |
refactor(SetTheory/ZFC): make `Class` an `abbrev` for `Set ZFSet` |
Also take the opportunity to perform a few more changes:
* Rename `Class` to `ZFClass`
* Rename the coercion from `ZFSet` to `ZFClass` to `ofSet` in lemma names, following the naming convention.
Some `simp`/`norm_cast` lemmas are becoming duplicates of lemmas about `Set ZFSet` in `ZFC.Basic`. We might want to drop the `abbrev` or move it earlier so as to deduplicate these lemmas, but this is out of scope for this PR.
Generated by Claude Sonnet/reviewed by myself in several prompts.
Assisted-by: Claude Sonnet 5
---
Deprecations incoming
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|
t-set-theory
tech debt
LLM-generated
|
247/59 |
Mathlib/SetTheory/ZFC/Class.lean,Mathlib/SetTheory/ZFC/VonNeumann.lean |
2 |
20 |
['JovanGerb', 'YaelDillies', 'github-actions', 'mathlib-merge-conflicts', 'vihdzp'] |
vihdzp assignee:vihdzp |
1-27358 1 day ago |
2-18386 2 days ago |
2-19438 2 days |
1 |
| 25841 |
mitchell-horner author:mitchell-horner |
feat(Combinatorics/SimpleGraph): prove the Kővári–Sós–Turán theorem |
Prove the Kővári–Sós–Turán theorem (an upper bound on the Zarankiewicz function)
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---
*This PR continues the work from #20240.*
*Original PR: https://github.com/leanprover-community/mathlib4/pull/20240* |
t-combinatorics |
226/0 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/Extremal/KovariSosTuran.lean,docs/1000.yaml |
3 |
28 |
['SnirBroshi', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'mathlib4-merge-conflict-bot', 'mitchell-horner'] |
nobody |
1-27356 1 day ago |
1-28426 1 day ago |
101-74575 101 days |
0 |
| 33077 |
YaelDillies author:YaelDillies |
feat(Basic/Rel): balls |
Define `SetRel.ball` and use it in place of `UniformSpace.ball`.
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|
t-data
maintainer-merge
|
392/299 |
Mathlib/Basic/Rel.lean,Mathlib/Basic/Rel/Cover.lean,Mathlib/Dynamics/TopologicalEntropy/CoverEntropy.lean,Mathlib/Dynamics/TopologicalEntropy/DynamicalEntourage.lean,Mathlib/Dynamics/TopologicalEntropy/NetEntropy.lean,Mathlib/Dynamics/TopologicalEntropy/Semiconj.lean,Mathlib/Dynamics/TopologicalEntropy/Subset.lean,Mathlib/MeasureTheory/Measure/LevyProkhorovMetric.lean,Mathlib/MeasureTheory/Measure/RegularityCompacts.lean,Mathlib/RingTheory/LaurentSeries.lean,Mathlib/Topology/Algebra/Module/LocallyConvex.lean,Mathlib/Topology/EMetricSpace/Basic.lean,Mathlib/Topology/MetricSpace/Pseudo/Defs.lean,Mathlib/Topology/MetricSpace/Pseudo/Lemmas.lean,Mathlib/Topology/Metrizable/Basic.lean,Mathlib/Topology/Semicontinuity/Hemicontinuity.lean,Mathlib/Topology/Sequences.lean,Mathlib/Topology/UniformSpace/Basic.lean,Mathlib/Topology/UniformSpace/Cauchy.lean,Mathlib/Topology/UniformSpace/Closeds.lean,Mathlib/Topology/UniformSpace/Compact.lean,Mathlib/Topology/UniformSpace/CompactConvergence.lean,Mathlib/Topology/UniformSpace/Defs.lean,Mathlib/Topology/UniformSpace/Equicontinuity.lean,Mathlib/Topology/UniformSpace/HeineCantor.lean,Mathlib/Topology/UniformSpace/Separation.lean,Mathlib/Topology/UniformSpace/Ultra/Basic.lean,Mathlib/Topology/UniformSpace/UniformConvergenceTopology.lean,Mathlib/Topology/UniformSpace/UniformEmbedding.lean,Mathlib/Topology/UniformSpace/Uniformizable.lean |
30 |
7 |
['SnirBroshi', 'YaelDillies', 'github-actions', 'joneugster', 'mathlib-merge-conflicts'] |
nobody |
1-26125 1 day ago |
7-22058 7 days ago |
14-47118 14 days |
0 |
| 43253 |
YaelDillies author:YaelDillies |
chore(Basic): move `FunLike` from Data |
and an assorted set of about 50 files to Algebra and Order too.
Generated by Claude Sonnet following the various README files, reviewed by myself.
**To `Basic/`**
- `{Data → Basic}/FunLike/Basic`
- `{Data → Basic}/FunLike/Embedding`
- `{Data → Basic}/FunLike/Equiv`
- `{Data → Basic}/SetLike/Basic`
- `{Data → Basic}/SProd`
- `{Data → Basic}/Opposite`
**To `Algebra/`**
- `{Data/FunLike → Algebra/Group}/IsApply`
- `Data/FunLike/Group → Algebra/Group/FunLike`
- `Data/FunLike/Module → Algebra/Module/FunLike`
- `Data/FunLike/Ring → Algebra/Ring/FunLike`
- `Data/FunLike/Graded → Algebra/GradedFunLike`
- `{Data → Algebra/Notation}/Bracket`
- `Data/Int/AbsoluteValue → Algebra/Order/AbsoluteValue/Int`
- `Data/Int/Star → Algebra/Order/Star/Int`
- `Data/Rat/Star → Algebra/Order/Star/Rat`
- `Data/Multiset/OrderedMonoid → Algebra/Order/Monoid/Multiset`
**To `Order/`**
- `Data/Set/Order → Order/Monotone/Set/Basic`
- `Data/Set/Monotone → Order/Monotone/Set/Congr`
- `Data/Set/Pairwise/Chain → Order/Preorder/PairwiseChain`
- `{Data → Order}/Setoid/Basic`
- `{Data → Order}/Setoid/Partition`
- `{Data → Order}/Setoid/Partition/Card`
- `{Data → Order}/Sigma/Lex`
- `{Data → Order}/Sigma/Order`
- `{Data → Order}/PSigma/Order`
- `Data/Prod/Lex → Order/Prod/Lex/Basic`
- `{Data → Order}/Sum/Order`
- `{Data → Order}/Sum/Lattice`
- `Data/Sym/Sym2/Order → Order/Sym2`
- `Data/Fin/SuccPredOrder → Order/SuccPred/Fin`
- `Data/Nat/SuccPred → Order/SuccPred/Nat`
- `Data/Int/SuccPred → Order/SuccPred/Int`
- `Data/PNat/Order → Order/SuccPred/PNat`
- `Data/ENat/SuccOrder → Order/SuccPred/ENat`
- `{Data → Order}/Int/LeastGreatest`
- `{Data → Order}/Int/ConditionallyCompleteOrder`
**To `Logic/`**
- `{Data → Logic}/PEquiv`
Assisted-by: Claude Sonnet 5
---
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|
file-removed
t-data
LLM-generated
|
270/270 |
Counterexamples/AharoniKorman.lean,Mathlib.lean,Mathlib/Algebra/BigOperators/Pi.lean,Mathlib/Algebra/BigOperators/Sym.lean,Mathlib/Algebra/CharP/Basic.lean,Mathlib/Algebra/GradedFunLike.lean,Mathlib/Algebra/GradedMonoid.lean,Mathlib/Algebra/Group/Commutator.lean,Mathlib/Algebra/Group/FunLike.lean,Mathlib/Algebra/Group/Hom/Defs.lean,Mathlib/Algebra/Group/IsApply.lean,Mathlib/Algebra/Group/Subsemigroup/Defs.lean,Mathlib/Algebra/Group/TypeTags/Basic.lean,Mathlib/Algebra/Lie/Basic.lean,Mathlib/Algebra/Module/FunLike.lean,Mathlib/Algebra/Module/ULift.lean,Mathlib/Algebra/Notation/Bracket.lean,Mathlib/Algebra/Order/AbsoluteValue/Int.lean,Mathlib/Algebra/Order/Archimedean/Basic.lean,Mathlib/Algebra/Order/Archimedean/Real/Basic.lean,Mathlib/Algebra/Order/BigOperators/Group/Finset.lean,Mathlib/Algebra/Order/BigOperators/Group/LocallyFinite.lean,Mathlib/Algebra/Order/BigOperators/GroupWithZero/List.lean,Mathlib/Algebra/Order/CauSeq/Basic.lean,Mathlib/Algebra/Order/Disjointed.lean,Mathlib/Algebra/Order/Floor/Defs.lean,Mathlib/Algebra/Order/Group/End.lean,Mathlib/Algebra/Order/GroupWithZero/Lex.lean,Mathlib/Algebra/Order/Module/PositiveLinearMap.lean,Mathlib/Algebra/Order/Monoid/Lex.lean,Mathlib/Algebra/Order/Monoid/Multiset.lean,Mathlib/Algebra/Order/Monoid/Prod.lean,Mathlib/Algebra/Order/Rearrangement.lean,Mathlib/Algebra/Order/Star/Int.lean,Mathlib/Algebra/Order/Star/Rat.lean,Mathlib/Algebra/Order/ToIntervalMod.lean,Mathlib/Algebra/Polynomial/Degree/Defs.lean,Mathlib/Algebra/Polynomial/Degree/Monomial.lean,Mathlib/Algebra/Ring/Commute.lean,Mathlib/Algebra/Ring/FunLike.lean,Mathlib/Algebra/Star/Basic.lean,Mathlib/Analysis/Normed/Group/Seminorm.lean,Mathlib/Basic/Finite/Prod.lean,Mathlib/Basic/FunLike/Basic.lean,Mathlib/Basic/FunLike/Embedding.lean,Mathlib/Basic/FunLike/Equiv.lean,Mathlib/Basic/Opposite.lean,Mathlib/Basic/PEquiv.lean,Mathlib/Basic/SProd.lean,Mathlib/Basic/SetLike/Basic.lean,Mathlib/CategoryTheory/Category/Preorder.lean,Mathlib/CategoryTheory/Category/ULift.lean,Mathlib/CategoryTheory/CodiscreteCategory.lean,Mathlib/CategoryTheory/Limits/Shapes/Preorder/TransfiniteCompositionOfShape.lean,Mathlib/CategoryTheory/Limits/Shapes/Preorder/WellOrderContinuous.lean,Mathlib/CategoryTheory/Limits/Shapes/SingleObj.lean,Mathlib/Combinatorics/Colex.lean,Mathlib/Combinatorics/Enumerative/Pentagonal/Basic.lean,Mathlib/Combinatorics/Quiver/Basic.lean,Mathlib/Combinatorics/SimpleGraph/Coloring/Vertex.lean,Mathlib/Combinatorics/SimpleGraph/Hasse.lean,Mathlib/Combinatorics/Young/YoungDiagram.lean,Mathlib/Data/ENat/Lattice.lean,Mathlib/Data/ENat/Pow.lean,Mathlib/Data/Fin/Tuple/Sort.lean,Mathlib/Data/Finset/Defs.lean,Mathlib/Data/FunLike/Fintype.lean,Mathlib/Data/List/Basic.lean,Mathlib/Data/List/Defs.lean,Mathlib/Data/List/Lex.lean,Mathlib/Data/List/Rotate.lean,Mathlib/Data/Matrix/PEquiv.lean,Mathlib/Data/Multiset/DershowitzManna.lean,Mathlib/Data/Nat/Nth.lean,Mathlib/Data/PNat/Factors.lean,Mathlib/Data/Seq/Defs.lean,Mathlib/Data/Set/Operations.lean,Mathlib/Data/Set/Opposite.lean,Mathlib/Data/Set/Prod.lean,Mathlib/Data/SetLike/Fintype.lean,Mathlib/Data/Sigma/Interval.lean,Mathlib/Data/Sum/Interval.lean,Mathlib/Data/Sym/Basic.lean,Mathlib/Data/Sym/Sym2.lean,Mathlib/Geometry/Convex/AffineMap/Module.lean,Mathlib/Geometry/Group/Growth/LinearLowerBound.lean,Mathlib/GroupTheory/Congruence/Basic.lean,Mathlib/GroupTheory/Congruence/Defs.lean,Mathlib/GroupTheory/Coset/Basic.lean,Mathlib/GroupTheory/GroupAction/Basic.lean,Mathlib/GroupTheory/GroupAction/Blocks.lean,Mathlib/GroupTheory/GroupAction/Primitive.lean,Mathlib/GroupTheory/GroupAction/SubMulAction.lean,Mathlib/LinearAlgebra/Matrix/AbsoluteValue.lean,Mathlib/LinearAlgebra/Multilinear/Basic.lean,Mathlib/LinearAlgebra/PiTensorProduct/Generators.lean,Mathlib/LinearAlgebra/RootSystem/CartanMatrix.lean,Mathlib/Logic/Equiv/Defs.lean,Mathlib/Logic/Equiv/Pairwise.lean,Mathlib/Logic/Function/Const.lean |
173 |
14 |
['YaelDillies', 'github-actions', 'j-loreaux', 'mathlib-merge-conflicts'] |
nobody |
1-24345 1 day ago |
1-29843 1 day ago |
8-67012 8 days |
0 |
| 43991 |
KevorkianPhilippe author:KevorkianPhilippe |
feat(Algebra/Lie/Cochain): 2-coboundaries and second cohomology of a Lie algebra |
Adds 2-coboundaries and the second cohomology of a Lie algebra with coefficients in a module, completing the `coboundaries, cohomology` item of the TODO list of `Mathlib/Algebra/Lie/Cochain.lean`.
- `twoCoboundary`: the image of `d₁₂` inside the 2-cochains, with membership criteria in general and for a trivial module.
- `twoCoboundary_le_twoCocycle`: coboundaries are cocycles, from the existing `d₂₃_comp_d₁₂`.
- `twoCoboundaryIn`: the coboundaries seen inside the cocycles, and `secondCohomology` (`H²(L, M)`) as the quotient.
- `secondCohomology_mk_eq_zero_iff` and its trivial-module form: a cocycle vanishes in `H²` exactly when it is a coboundary, stated on the explicit formulas, which is what one uses when computing `H²` of a concrete Lie algebra.
- `subsingleton_secondCohomology_of_le`: `H²` vanishes when every cocycle is a coboundary.
The remaining TODO items (comparison with the Chevalley-Eilenberg complex, construction and classification of central extensions) are untouched.
Note: the `## Main definitions` block of this file prefixes the names with `LieAlgebra.` although the namespace is `LieModule.Cohomology`. I followed the existing convention rather than change it here; happy to fix it in this PR if preferred.
Use of AI: this contribution was written with AI assistance (Claude), iterated against the Lean compiler; the module builds, `lint-style` and `lake exe runLinter Mathlib.Algebra.Lie.Cochain` are clean, and `#print axioms` on the new declarations gives only `propext, Classical.choice, Quot.sound`. The mathematical content is the standard low-degree Chevalley-Eilenberg picture, and I am happy to justify any of the design choices.
|
t-algebra
LLM-generated
new-contributor
label:t-algebra$ |
71/1 |
Mathlib/Algebra/Lie/Cochain.lean |
1 |
3 |
['KevorkianPhilippe', 'github-actions'] |
nobody |
1-23663 1 day ago |
1-24995 1 day ago |
1-24769 1 day |
0 |
| 42034 |
grunweg author:grunweg |
chore(Geometry/Manifold): remove "easy" cases of defeq abuse |
Remove a dozen uses of the `backward.isDefeq.respectTransparency` option in differential geometry.
- very few options are superfluous after the recent `mfderiv` change
- make `chartAt_self_eq` simp; this fixes a few more cases automatically
- using `NormedSpace.fromTangentSpace` and `mvfderiv` allows fixing a few options in `VectorBundle/Riemannian`
- a few proofs simply needed to be slightly more careful, and then also worked without the defeq abuse
---
- [x] depends on: #42031
- [x] depends on: #42038
Best reviewed commit by commit: the individual commit messages contain slightly more detail.
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|
t-differential-geometry
tech debt
|
16/28 |
Mathlib/Geometry/Manifold/Algebra/Structures.lean,Mathlib/Geometry/Manifold/ChartedSpace.lean,Mathlib/Geometry/Manifold/ContMDiff/Atlas.lean,Mathlib/Geometry/Manifold/ContMDiff/Basic.lean,Mathlib/Geometry/Manifold/HasGroupoid.lean,Mathlib/Geometry/Manifold/IsManifold/ExtChartAt.lean,Mathlib/Geometry/Manifold/MFDeriv/FDeriv.lean,Mathlib/Geometry/Manifold/MFDeriv/NormedSpace.lean,Mathlib/Geometry/Manifold/Riemannian/Basic.lean |
9 |
5 |
['github-actions', 'grunweg', 'mathlib-dependent-issues', 'sgouezel'] |
sgouezel assignee:sgouezel |
1-23494 1 day ago |
1-26790 1 day ago |
55-72620 55 days |
1 |
| 43993 |
grunweg author:grunweg |
fix(lint-style.py): make the code compile again |
Most of these checks will be obsolete by the new auto-formatter: arguably, this entire script could be removed in the mean-time, if this places a too large maintainance burden.
---
<!-- Your PR title will become the first line of the commit message.
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|
t-linter |
1/2 |
scripts/lint-style.py |
1 |
3 |
['github-actions', 'grunweg'] |
nobody |
1-23402 1 day ago |
1-24672 1 day ago |
1-24446 1 day |
0 |
| 40728 |
Formalistic03 author:Formalistic03 |
feat(Combinatorics/SimpleGraph/Hasse): more properties of Hasse graphs of linear orders |
- two forms of an intermediate value theorem for linear orders
- the Hasse graph of a linear order is acyclic
- a path graph is locally finite
---
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|
new-contributor
t-combinatorics
large-import
|
99/24 |
Mathlib/Combinatorics/SimpleGraph/Acyclic.lean,Mathlib/Combinatorics/SimpleGraph/CycleGraph.lean,Mathlib/Combinatorics/SimpleGraph/Hasse.lean,Mathlib/Data/Fintype/Defs.lean |
4 |
28 |
['Formalistic03', 'Multramate', 'SnirBroshi', 'b-mehta', 'github-actions', 'mathlib-merge-conflicts'] |
b-mehta assignee:b-mehta |
1-22155 1 day ago |
1-27219 1 day ago |
90-20235 90 days |
0 |
| 43996 |
mathlib-splicebot author:mathlib-splicebot |
style(Algebra/Polynomial/Eval/Defs): make two lemmas follow the 'hypothesis left of colon' rule |
|
t-algebra label:t-algebra$ |
4/4 |
Mathlib/Algebra/Polynomial/Eval/Defs.lean |
1 |
1 |
['github-actions'] |
nobody |
1-21534 1 day ago |
1-23526 1 day ago |
1-23300 1 day |
0 |
| 37964 |
mortarsanjaya author:mortarsanjaya |
feat(Algebra/Order/Floor): weaken assumptions on theorems about `FloorRing` |
This PR weakens as much assumptions as possible on theorems about `FloorSemiring` and `FloorRing`. Mainly, `IsOrderedRing` and `IsStrictOrderedRing` are weakened to just `IsOrderedAddMonoid` or removed completely from the assumptions on the theorems.
Most theorems can be generalized as is or only requires a minor modification of replacing lemmas about casting naturals/integers preserving order (the likes of `Nat.cast_le`, `Int.cast_lt`, etc.) with the corresponding version for `FloorRing`. Some other lemmas require modification in the proofs, but these changes shorten the proofs. The new proof of the theorem `Int.mul_cast_floor_div_cancel_of_pos` requires an extra import.
The assumption `IsOrderedAddMonoid` is required on lemmas that involve comparison + addition, and `IsOrderedRing` is required only on lemmas that involve comparison + multiplication of two non-integer elements.
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
label:t-algebra$ |
325/329 |
Mathlib/Algebra/ContinuedFractions/Computation/Translations.lean,Mathlib/Algebra/Order/Floor/Defs.lean,Mathlib/Algebra/Order/Floor/Ring.lean,Mathlib/Algebra/Order/Floor/Semifield.lean,Mathlib/Algebra/Order/Floor/Semiring.lean,Mathlib/Algebra/Order/Round.lean,Mathlib/Analysis/SpecificLimits/Basic.lean,Mathlib/Data/Int/Log.lean,Mathlib/Data/NNRat/Floor.lean,Mathlib/Data/Rat/Floor.lean,Mathlib/MeasureTheory/Function/Floor.lean,Mathlib/Order/Interval/Finset/Floor.lean,Mathlib/Topology/Algebra/Order/Floor.lean |
13 |
23 |
['github-actions', 'jjdishere', 'leanprover-radar', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'mortarsanjaya', 'themathqueen'] |
jjdishere assignee:jjdishere |
1-20447 1 day ago |
1-20447 1 day ago |
87-43069 87 days |
0 |
| 43845 |
Nicola9Falciola author:Nicola9Falciola |
feat(GroupTheory/Index): add Lagrange's theorem for monoid homomorphisms |
---
Add the Lagrange's theorem for monoid hom and its specialization to surjective hom.
With this I have simplify the proof of `card_dvd_of_surjective`.
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|
t-group-theory
maintainer-merge
|
17/11 |
Mathlib/GroupTheory/Index.lean,Mathlib/GroupTheory/Schreier.lean |
2 |
31 |
['JX-Mo', 'Nicola9Falciola', 'SnirBroshi', 'github-actions', 'tb65536'] |
nobody |
1-20339 1 day ago |
4-3305 4 days ago |
6-3036 6 days |
2 |
| 41950 |
grunweg author:grunweg |
feat: use requireModuleSystem in mathlib |
This option causes a warning in any project depending on a version of mathlib containing this PR that does not use the module system. The warning can be turned off using the `allowNonModules` option in the downstream project. (We do so for `MathlibTest`, because some tests intentionally use non-modules.)
For clarity, this does not immediately cause any breakage: it is giving advance notice of potential changes in the future, and provides further encouragement to use the module system.
The module system in Lean has been available for over 6 months. Adopting it brings significant benefits (on e.g. the amount of required RAM, or more fine-grained rebuilding), so encouraging it seems useful. At also signals an intent for mathlib to require the use of the module system: future versions of Mathlib might drop support for certain features that require non-module-system libraries.
For example, the simpNF linter currently does not assume the module system is enabled, in the future it might assume that and stop working in libraries that do not use the module system.
This PR has been [announced on Zulip](https://leanprover.zulipchat.com/#narrow/channel/113486-General-announcements/topic/Mathlib.20requiring.20the.20use.20of.20the.20module.20system/with/623623560) before.
------
- [x] depends on: #42010
- [x] depends on: #42242
---
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|
CI
t-meta
|
2/0 |
lakefile.lean |
1 |
2 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
1-19883 1 day ago |
1-19896 1 day ago |
1-19670 1 day |
0 |
| 43997 |
KevorkianPhilippe author:KevorkianPhilippe |
feat(Algebra/Lie/Extension): central extensions and equivalences of extensions |
Fills the two TODO items of `Mathlib/Algebra/Lie/Extension.lean`, `IsCentral` and `Equiv`.
- `Extension.IsCentral`: an extension is central when the image of the inclusion lies in the centre of the middle algebra, with the two `simp` lemmas `lie_incl` and `incl_lie`.
- `isLieAbelian_of_isCentral`: the kernel of a central extension is abelian.
- `isTrivial_ringModuleOf`: the `L`-module structure that a central extension induces on its kernel is trivial. This is the converse direction of the construction below, and is what makes central extensions the ones classified by cohomology with trivial coefficients.
- `isCentral_ofTwoCocycle`: the extension built from a 2-cocycle with coefficients in a trivial module is central.
- `Extension.Equiv`: an equivalence of two extensions of `L` by `M`, namely an equivalence of the middle Lie algebras commuting with the inclusions and the projections, with `refl`, `symm` and `trans`.
- `Equiv.ofCoboundary`: cohomologous 2-cocycles give equivalent extensions, built on the existing `LieAlgebra.LieEquiv.ofCoboundary`.
The TODO list of the file is updated accordingly: what remains is the classification itself, that is, the bijection between the second cohomology and the equivalence classes of central extensions. The second cohomology group needed to state it is added in #43991.
Use of AI: this contribution was written with AI assistance (Claude), iterated against the Lean compiler. The module builds with no warnings, `lint-style` and `lake exe runLinter Mathlib.Algebra.Lie.Extension` are clean, and `#print axioms` on the new declarations gives only `propext, Classical.choice, Quot.sound`.
|
t-algebra
LLM-generated
new-contributor
label:t-algebra$ |
109/2 |
Mathlib/Algebra/Lie/Extension.lean |
1 |
3 |
['KevorkianPhilippe', 'github-actions'] |
nobody |
1-19871 1 day ago |
1-21083 1 day ago |
1-20857 1 day |
0 |
| 43886 |
gabriel-turinici author:gabriel-turinici |
feat(Analysis/Asymptotics): add Filter.Tendsto.weighted_cesaro_smul |
Adds `Filter.Tendsto.weighted_cesaro_smul`, a weighted (Toeplitz-type) generalization of `Filter.Tendsto.cesaro_smul`: if `S k → L` and `w k ≥ 0` has divergent partial sums, the weighted running average of `S` w.r.t. `w` also tends to `L`. Recovers `cesaro_smul` as the `w ≡ 1` case. Also adds `weighted_cesaro`, the real-valued convenience wrapper mirroring `cesaro`.
This is a small building block toward a planned follow-up PR formalizing Kronecker's lemma, at its turn needed in some stochastic analysis setting.
---
**AI disclosure**: this proof was developed using formatting assistance, library search and code corrections from Claude Code (Claude Sonnet 5) and a personal LLM automation. Alternative, shorter, proofs can be obtained with `IsLittleO`-style but that style seems too recent for me now.
[](https://gitpod.io/from-referrer/) |
t-analysis
new-contributor
LLM-generated
|
81/0 |
Mathlib/Analysis/Asymptotics/SpecificAsymptotics.lean |
1 |
2 |
['github-actions'] |
nobody |
1-18009 1 day ago |
4-73388 4 days ago |
4-73162 4 days |
0 |
| 41306 |
vlad902 author:vlad902 |
feat(SimpleGraph): reduce CycleGraph imports |
Reduce the imports for CycleGraph.lean and re-prove and move a few lemmas around as a result.
---
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[](https://gitpod.io/from-referrer/)
|
t-combinatorics |
47/28 |
Mathlib/Combinatorics/SimpleGraph/Connectivity/Connected.lean,Mathlib/Combinatorics/SimpleGraph/CycleGraph.lean,Mathlib/Combinatorics/SimpleGraph/Hasse.lean |
3 |
27 |
['SnirBroshi', 'github-actions', 'vlad902'] |
SnirBroshi assignee:SnirBroshi |
1-17284 1 day ago |
2-43006 2 days ago |
79-72867 79 days |
0 |
| 43745 |
theebayuser author:theebayuser |
feat(Geometry/Euclidean): add Euler's quadrilateral theorem |
Adds Euler's quadrilateral theorem to Mathlib/Geometry/Euclidean/, and records it in docs/1000.yaml (Q18630480). It states: for any four points, the sum of the squares of the four sides of the quadrilateral a b c d equals the sum of the squares of the two diagonals, plus four times the square of the distance between the midpoints of the diagonals.
This PR was written with AI assistance (Claude Code).
|
t-euclidean-geometry
new-contributor
LLM-generated
|
88/0 |
Mathlib.lean,Mathlib/Analysis/InnerProductSpace/Basic.lean,Mathlib/Geometry/Euclidean/EulerQuadrilateral.lean,docs/1000.yaml |
4 |
10 |
['github-actions', 'theebayuser', 'wwylele'] |
jsm28 assignee:jsm28 |
1-16911 1 day ago |
9-51595 9 days ago |
9-51369 9 days |
0 |
| 43981 |
plp127 author:plp127 |
fix: setting `pp.mdata` to true breaks `@[pp_with_univ]` |
This PR fixes an issue where turning on `pp.mdata` causes constants tagged with `@[pp_with_univ]` to print as
```
[mdata pp.universes:true]
[mdata pp.universes:true]
[mdata pp.universes:true]
[mdata pp.universes:true]
[mdata pp.universes:true]
[mdata pp.universes:true] [mdata pp.universes:true] [mdata pp.universes:true] [mdata pp.universes:true] ⋯
```
When `pp.mdata` is set to true, expressions with mdata are printed by first printing the mdata and the printing the bare expression underneath. This breaks `@[pp_with_univ]` which works by applying mdata setting `pp.universes` to true onto the constant name, and then redelaborating the new expression containing mdata. This causes an infinite loop the the delaborator since `@[pp_with_univ]` applies the mdata, and then since `pp.mdata` is true the mdata is removed before delaborating the constant, which then has mdata applied again, and so on. We fix the issue by instead having the implementation of `@[pp_with_univ]` directly set the `pp.universes` option, instead of delegating it to `delabMData` with a metadata.
---
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[](https://gitpod.io/from-referrer/)
|
t-meta |
57/6 |
Mathlib/Tactic/PPWithUniv.lean,MathlibTest/Delab/PPWithUniv.lean |
2 |
3 |
['JovanGerb', 'github-actions', 'plp127'] |
nobody |
1-14871 1 day ago |
1-63963 1 day ago |
1-63737 1 day |
0 |
| 43983 |
JX-Mo author:JX-Mo |
chore(RepresentationTheory/Rep/Res): remove a layer on `Rep.res` |
Define directly `abbrev res (f : H →* G) (A : Rep k G) := of (A.ρ.comp f)` and golf. |
t-algebra
easy
label:t-algebra$ |
14/17 |
Mathlib/RepresentationTheory/Coinduced.lean,Mathlib/RepresentationTheory/Homological/GroupCohomology/Functoriality.lean,Mathlib/RepresentationTheory/Homological/GroupHomology/Functoriality.lean,Mathlib/RepresentationTheory/Rep/Res.lean |
4 |
6 |
['JX-Mo', 'github-actions', 'leanprover-radar'] |
nobody |
1-14437 1 day ago |
1-21926 1 day ago |
1-41636 1 day |
0 |
| 43588 |
plp127 author:plp127 |
feat(SetTheory/Ordinal): definition of addition and multiplication |
We prove theorems `Ordinal.type_lt_sum_lex` and `Ordinal.type_lt_prod_lex`, which characterize addition and multiplication on ordinals.
---
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[](https://gitpod.io/from-referrer/)
|
t-set-theory
t-order
maintainer-merge
|
40/0 |
Mathlib/Data/Sum/Order.lean,Mathlib/SetTheory/Ordinal/Arithmetic.lean,Mathlib/SetTheory/Ordinal/Basic.lean |
3 |
6 |
['YaelDillies', 'github-actions', 'plp127', 'vihdzp'] |
nobody |
1-10435 1 day ago |
1-14190 1 day ago |
13-1851 13 days |
1 |
| 41120 |
teorth author:teorth |
feat(Analysis/SpecialFunctions/Gamma/Deriv,NumberTheory/Harmonic/GammaDeriv): formulae for the derivative of Gamma / eulerMascheroni |
Some integral representations of the derivative of the Gamma function, or the Euler-Mascheroni constant, focusing on the real form of the Gamma function rather than the complex one (as formulae for the latter are already present).
---
The initial code was human generated; an AI agent was used to help proofread and refactor the code subsequently.
- [x] depends on: #41119
-->
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-analysis
maintainer-merge
|
91/7 |
Mathlib/Analysis/SpecialFunctions/Gamma/Deriv.lean,Mathlib/Analysis/SpecialFunctions/Pow/Real.lean,Mathlib/NumberTheory/Harmonic/GammaDeriv.lean |
3 |
37 |
['felixpernegger', 'github-actions', 'loefflerd', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'teorth'] |
nobody |
1-10104 1 day ago |
2-8892 2 days ago |
66-73166 66 days |
1 |
| 43718 |
yuanyi-350 author:yuanyi-350 |
feat(Analysis/Calculus/Gradient): add arithmetic rules for gradients |
This PR revives #9352, which appears to have stalled after review. It incorporates the reviewers’ suggestions and updates the code to current mathlib.
I would like to use these basic gradient calculus lemmas as infrastructure for follow-up work in mathlib. |
t-analysis |
402/0 |
Mathlib.lean,Mathlib/Analysis/Calculus/Gradient/Lemmas.lean |
2 |
1 |
['github-actions'] |
nobody |
1-9966 1 day ago |
10-17289 10 days ago |
10-17063 10 days |
0 |
| 43065 |
yuanyi-350 author:yuanyi-350 |
feat(LinearAlgebra/Matrix): add Sylvester's rank inequality |
|
t-algebra
large-import
label:t-algebra$ |
27/5 |
Mathlib/LinearAlgebra/FiniteDimensional/Lemmas.lean,Mathlib/LinearAlgebra/Matrix/Rank.lean |
2 |
2 |
['github-actions', 'tb65536'] |
nobody |
1-9945 1 day ago |
29-14210 29 days ago |
29-13984 29 days |
0 |
| 43878 |
SnirBroshi author:SnirBroshi |
chore(Tactic/DeprecateTo): rename `deprecate to` into `#deprecate to` |
To conform to leanprover-community/leanprover-community.github.io#914
---
~~The underscore could also be a space; what do we prefer?
And should we add an `in` suffix?~~
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[](https://gitpod.io/from-referrer/)
|
t-meta
maintainer-merge
|
14/6 |
Mathlib/Tactic/DeprecateTo.lean,MathlibTest/DeprecateTo.lean |
2 |
25 |
['JovanGerb', 'SnirBroshi', 'github-actions', 'joneugster', 'thorimur', 'vlad902'] |
nobody |
1-9724 1 day ago |
1-64600 1 day ago |
4-67427 4 days |
0 |
| 34078 |
joneugster author:joneugster |
feat(scripts/autolabel): add more label dependencies |
Add more label dependencies.
---
- [x] depends on: #34948
- [x] depends on: #34949
- [x] depends on: #34066
- [x] depends on: #34079
- [x] depends on: #34677
- [x] depends on: #34678
- [x] depends on: #34952
- [x] depends on: #36242
[](https://gitpod.io/from-referrer/)
|
CI |
31/11 |
scripts/autolabel.lean |
1 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
1-9594 1 day ago |
33-70808 33 days ago |
33-70867 33 days |
0 |
| 44005 |
seewoo5 author:seewoo5 |
feat(MonotoneConvergence): strict versions of `ge_of_tendsto` |
---
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Strict versions of `Monotone.ge_of_tendsto` and similar theorems: `StrictMono.gt_of_tendsto`, `StrictMono.lt_of_tendsto`, `StrictAnti.lt_of_tendsto`, `StrictAnti.gt_of_tendsto`. These require extra hypothesis such as `NoMaxOrder β` or `NoMinOrder β`. Claude is used to find the hypothesis and write initial proofs.
Context: In Sphere packing project, there is an inequality of the form $f(t) < L$ for a strictly decreasing function $f$ on $(0, \infty)$ with $\lim_{t \to 0^+} f(t) = L$. Currently, this is proved by $f(t) < f(t/2) \le L$, where the last step uses `ge_of_tendsto`. With new theorems in this PR, we don't need to consider $f(t/2)$ anymore (by using `StrictAnti.gt_of_tendsto`).
[](https://gitpod.io/from-referrer/)
|
t-topology
LLM-generated
sphere-packing
|
28/0 |
Mathlib/Topology/Order/MonotoneConvergence.lean |
1 |
1 |
['github-actions'] |
nobody |
1-9004 1 day ago |
1-11646 1 day ago |
1-11420 1 day |
0 |
| 43990 |
KevorkianPhilippe author:KevorkianPhilippe |
feat(Probability/BinomialRandomGraph): the edge count of a binomial random graph is binomially distributed |
Adds `binomialRandom_map_ncard_edgeSet`: for a finite vertex type, the pushforward of `G(V, p)` under the edge count is `Bin((Nat.card V).choose 2, p)`. This is the distribution-level statement that the (since removed) `proof_wanted binomialRandom_map_ncard_edgeSet_singleton` anticipated at the level of a single point mass.
It rests on one new lemma in `Mathlib/Probability/Distributions/Binomial.lean`, `map_ncard_setBernoulli_eq_binomial`, the distribution-level form of the existing `map_ncard_setBernoulli_singleton`: the cardinality pushforward of a set-Bernoulli measure on a finite set `u` is `binomial u.ncard p`.
Proof sketch: `binomialRandom_eq_map` writes `G(V, p)` as the pushforward of `setBer(Sym2.diagSetᶜ, p)` along `fromEdgeSet`. Almost every sampled set is contained in `Sym2.diagSetᶜ` (`setBernoulli_ae_subset`), and on such a set `(fromEdgeSet s).edgeSet = s`, so `Measure.map_congr` turns the edge count into the cardinality pushforward of the set-Bernoulli measure; `Sym2.ncard_diagSet_compl` then identifies the number of trials with `(Nat.card V).choose 2`.
Use of AI: this contribution was written with AI assistance (Claude), iterated against the Lean compiler until it compiled with no `sorry`, and reviewed by me before submission. I am happy to explain and defend any design decision here; the statement was chosen to match the existing API (`map_ncard_setBernoulli_singleton`, `binomial_singleton`) rather than to restate it pointwise.
|
t-measure-probability
LLM-generated
new-contributor
|
24/1 |
Mathlib/Probability/Combinatorics/BinomialRandomGraph/Defs.lean,Mathlib/Probability/Distributions/Binomial.lean |
2 |
16 |
['KevorkianPhilippe', 'SnirBroshi', 'github-actions'] |
nobody |
1-8161 1 day ago |
1-26350 1 day ago |
1-26124 1 day |
0 |
| 44006 |
vihdzp author:vihdzp |
chore: extract lemma from `Cardinal.mul_self` |
We extract the main lemma from the proof of `Cardinal.mul_self`: if `α` can be embedded in a well-order such that any initial segment has cardinal less than `c`, then `α` has cardinal at most `c`. Besides shortening the proof, this avoids the use of unbundled relations; the long-term goal is to move away from them in the `Ordinal` API entirely.
---
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- Nat.bit1_add_bit1
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-->
I removed the comments from the proof since I think it's now short enough that it can be understood without them.
[](https://gitpod.io/from-referrer/)
|
t-set-theory |
26/16 |
Mathlib/SetTheory/Cardinal/Arithmetic.lean,Mathlib/SetTheory/Ordinal/Basic.lean |
2 |
1 |
['github-actions'] |
nobody |
1-7159 1 day ago |
1-10112 1 day ago |
1-9886 1 day |
1 |
| 44002 |
gasparattila author:gasparattila |
chore(Order): move the definition of lattices to a new file |
This PR adds a file `Mathlib/Order/Defs/Lattice.lean` for the definitions and basic properties of `Semilattice{Inf,Sup}`, `Lattice` and `DistribLattice`. This file has minimal imports, in particular, it does not import `LinearOrder`, so this will make it possible to have `LinearOrder` extend `Lattice` in the future.
The proof in `DistribLattice.ofInfSupLe` (which is used by `to_dual` for dualizing `DistribLattice.mk`) had to be replaced with a manual proof because `OrderDual` is not imported in this file.
---
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[](https://gitpod.io/from-referrer/)
|
t-order |
361/300 |
Mathlib.lean,Mathlib/Order/Basic.lean,Mathlib/Order/Defs/Lattice.lean,Mathlib/Order/Defs/PartialOrder.lean,Mathlib/Order/Lattice.lean |
5 |
1 |
['github-actions'] |
nobody |
1-5359 1 day ago |
1-9378 1 day ago |
1-11850 1 day |
0 |
| 43471 |
teorth author:teorth |
feat(Analysis/SpecialFunctions/Log): bounds on partial sums of the logarithm |
Adds `Mathlib/Analysis/SpecialFunctions/Log/Sum.lean`, collecting elementary bounds on the
partial sum of the logarithm:
- `sum_log_eq_log_factorial`: `∑ n ∈ Finset.Ioc 0 N, Real.log n = Real.log N !`.
- `sum_log_le` / `sum_log_le'` and `le_sum_log` / `le_sum_log'`: crude upper and lower bounds
on `∑ n ∈ Ioc 0 ⌊x⌋₊, log n` of the shape `x * log x - x + O(log x)`, obtained by comparing
the sum with `∫ t in 1..x, log t`.
- `le_sum_log_nat`: the sharper natural-number lower bound `N * log N - N ≤ ∑ n ∈ Ioc 0 N, log n`,
via `Stirling.le_log_factorial_stirling`.
---
These crude bounds are convenient in analytic number theory — for instance in the proof of
Mertens' theorems (#41394), from which they are spun off.
For more precise estimates, one should use the sharper bounds in `Mathlib.Analysis.SpecialFunctions.Stirling`.
This code was initially generated by the PNT+ project, and golfed both by myself and by AI tools.
[](https://gitpod.io/from-referrer/)
|
t-analysis
maintainer-merge
|
101/0 |
Mathlib.lean,Mathlib/Analysis/SpecialFunctions/Log/Sum.lean |
2 |
12 |
['github-actions', 'j-loreaux', 'loefflerd', 'teorth', 'wwylele'] |
nobody |
1-4762 1 day ago |
1-6703 1 day ago |
16-1579 16 days |
1 |
| 42072 |
joneugster author:joneugster |
feat(scripts/autolabel): use PR-title to find labels |
If present, use the paths specified in the PR title to determine labels. If this fails, fall back to the existing `git diff` logic.
- further: cleanup to use `githubAnnotation` consistently throughout the script. (the helper itself could be refactored to make some arguments optional, I'd prefer doing that in a follow-up)
---
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[](https://gitpod.io/from-referrer/)
|
CI |
49/13 |
.github/workflows/add_label_from_diff.yaml,scripts/autolabel.lean |
2 |
4 |
['SnirBroshi', 'github-actions', 'joneugster'] |
nobody |
1-4726 1 day ago |
1-6085 1 day ago |
10-54649 10 days |
0 |
| 44003 |
grunweg author:grunweg |
chore: rename AffineIsometry{Equiv}.{anti}lipschitz |
Part of #42869.
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[](https://gitpod.io/from-referrer/)
|
t-analysis
maintainer-merge
|
10/4 |
Mathlib/Analysis/Normed/Affine/Isometry.lean |
1 |
2 |
['github-actions', 'themathqueen'] |
nobody |
1-3491 1 day ago |
1-15165 1 day ago |
1-14939 1 day |
0 |
| 29744 |
espottesmith author:espottesmith |
feat(Combinatorics): define directed hypergraphs |
This PR defines directed hypergraphs:
```
@[ext]
structure DiHypergraph (α : Type*) where
/-- The vertex set -/
vertexSet : Set α
/-- The edge set -/
edgeSet : Set ((Set α) × (Set α))
/-- Each edge is a pair (s, d), where s ⊆ vertexSet and d ⊆ vertexSet -/
edge_src_dst_isSubset_vertexSet' : ∀ ⦃e⦄, e ∈ edgeSet → e.1 ⊆ vertexSet ∧ e.2 ⊆ vertexSet
```
Additional definitions:
- tail/head stars and negative/positive stars
- some special cases (B-Graph, F-Graph, BF-Graph, and what I'm calling a "non-endless" dihypergraph, where neither the source/tail nor the destination/head are empty)
- Vertex and (hyper)edge adjacency
- isolated vertices
- empty and nonempty dihypergraphs
The design employed here is based off of #28613, but this PR does not depend on that one.
---
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[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
|
290/0 |
Mathlib.lean,Mathlib/Combinatorics/DiHypergraph/Basic.lean |
2 |
12 |
['SnirBroshi', 'b-mehta', 'espottesmith', 'github-actions', 'mathlib4-merge-conflict-bot', 'pimotte'] |
nobody |
1-2927 1 day ago |
92-11149 92 days ago |
229-14671 229 days |
1 |
| 44001 |
joneugster author:joneugster |
feat(scripts): synchronise WIP label with draft status |
Add script `sync_wip_label.yml` which ensures that the "WIP" label is present if and only if the PR is a draft.
This triggers on both events, label changes and draft status changes and updates the other one accordingly.
- further: some cleanup in `labels_from_comment.yml`. I first thought I had to add a snippet there to update the draft status whenever the "WIP" label was changed through a comment. This is not necessary anymore, but I did leave the cleanup changes in this PR.
---
Things to note:
- if the script applies a change, it immediately retriggers itself, but this time its a no-op
- `gh` vs. `curl`: it seems overall we have been using `curl` more often. However, it is not possible to change the draft status over `curl` using the REST endpoint, thus this PR uses `gh`.
- AI-usage: an interactive chat model has been used to get an initial draft of the YAML file, to explore github API docs, and to do a review of what I've written.
### Documentation
- [pull_request_target](https://docs.github.com/en/actions/reference/workflows-and-actions/workflow-syntax#onpull_requestpull_request_targetbranchesbranches-ignore)
- [actions triggering workflows](https://docs.github.com/en/actions/reference/workflows-and-actions/events-that-trigger-workflows#pull_request_target)
### Testing (does not apply anymore after the first review)
Here is the local testing setup to verify the bash code. PR ##44004 can be used for this.
<details>
Locally with `gh` installed, this can be triggered manually:
Initially, set up the following variables:
```bash
export PR_NUMBER=44004
export REPO=leanprover-community/mathlib4
export CHANGED_LABEL="WIP"
```
`IS_DRAFT` can be updated manually. You might need to do this after each test:
```bash
export IS_DRAFT=$(gh pr view "$PR_NUMBER" --repo "$REPO" --json isDraft --jq '.isDraft')
```
Then choose an action:
```bash
export ACTION=converted_to_draft. # will add WIP
export ACTION=ready_for_review. # will remove WIP
export ACTION=labeled # convert to draft
export ACTION=unlabeled # mark ready for reviewing
```
after that, you can copy the `case` block from this PR into your bash and observe the changes made to #44004
</details>
[](https://gitpod.io/from-referrer/)
|
CI |
48/4 |
.github/workflows/labels_from_comment.yml,.github/workflows/sync_wip_label.yml,docs/workflows.md |
3 |
21 |
['SnirBroshi', 'bryangingechen', 'github-actions', 'joneugster'] |
nobody |
1-2107 1 day ago |
1-12630 1 day ago |
1-12404 1 day |
0 |
| 34799 |
vlad902 author:vlad902 |
feat(SimpleGraph): the cycle graph and complete graph are Hamiltonian |
---
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- [ ] depends on: #34797
- [ ] depends on: #35255
- [ ] depends on: #37930
[](https://gitpod.io/from-referrer/) |
t-combinatorics
large-import
|
38/0 |
Mathlib/Combinatorics/SimpleGraph/Hamiltonian.lean |
1 |
17 |
['SnirBroshi', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'vlad902'] |
SnirBroshi assignee:SnirBroshi |
0-85114 23 hours ago |
2-42629 2 days ago |
81-35302 81 days |
2 |
| 43780 |
SashaIr author:SashaIr |
feat: q-analogs |
An implementation of q-analogs, q-binomials, and counting results.
---
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[](https://gitpod.io/from-referrer/)
|
new-contributor
t-combinatorics
|
965/0 |
Mathlib.lean,Mathlib/Combinatorics/QAnalog/Basic.lean,Mathlib/Combinatorics/QAnalog/Binomial.lean,Mathlib/Combinatorics/QAnalog/Counting.lean,Mathlib/Combinatorics/QAnalog/Subspace.lean |
5 |
7 |
['SashaIr', 'SnirBroshi', 'b-mehta', 'github-actions'] |
nobody |
0-80070 22 hours ago |
7-78040 7 days ago |
7-78170 7 days |
0 |
| 43999 |
grunweg author:grunweg |
chore: prefer contrapose over contrapose!, when possible |
In ~50 cases in mathlib, the additional push Not step was not necessary at all. Found by the linter in #37907.
---
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[](https://gitpod.io/from-referrer/)
|
|
52/52 |
Archive/RiemannStieltjes.lean,Mathlib/Algebra/FiniteSupport/Basic.lean,Mathlib/Algebra/Lie/Basis/Base.lean,Mathlib/Algebra/MvPolynomial/Variables.lean,Mathlib/AlgebraicGeometry/EllipticCurve/Affine/AddSubMap.lean,Mathlib/AlgebraicGeometry/EllipticCurve/Affine/Formula.lean,Mathlib/Analysis/Complex/CanonicalDecomposition.lean,Mathlib/Analysis/SpecialFunctions/Complex/Circle.lean,Mathlib/Combinatorics/SimpleGraph/Basic.lean,Mathlib/Combinatorics/SimpleGraph/Coloring/Vertex.lean,Mathlib/Combinatorics/SimpleGraph/Extremal/Zarankiewicz.lean,Mathlib/Combinatorics/SimpleGraph/Walk/Basic.lean,Mathlib/Data/Finsupp/Basic.lean,Mathlib/Dynamics/SymbolicDynamics/Basic.lean,Mathlib/Geometry/Convex/ConvexSpace/Prod.lean,Mathlib/GroupTheory/GroupAction/SubMulAction/Combination.lean,Mathlib/GroupTheory/SpecificGroups/Alternating/Simple.lean,Mathlib/LinearAlgebra/Matrix/Cartan/Realisation.lean,Mathlib/MeasureTheory/Function/LpSeminorm/Basic.lean,Mathlib/MeasureTheory/Function/LpSeminorm/CompareExp.lean,Mathlib/MeasureTheory/Function/LpSeminorm/Defs.lean,Mathlib/MeasureTheory/Function/LpSpace/CompleteOfCompleteLp.lean,Mathlib/MeasureTheory/Function/LpSpace/InfiniteSum.lean,Mathlib/MeasureTheory/Measure/ResolventTransform.lean,Mathlib/MeasureTheory/VectorMeasure/SetIntegral.lean,Mathlib/NumberTheory/Bernoulli.lean,Mathlib/NumberTheory/EulerProduct/DirichletLSeries.lean,Mathlib/Order/SuccPred/CompleteLinearOrder.lean,Mathlib/RingTheory/Artinian/Module.lean,Mathlib/RingTheory/Finiteness/Finsupp.lean,Mathlib/RingTheory/Ideal/GoingUp.lean,Mathlib/RingTheory/LocalRing/Length.lean,Mathlib/RingTheory/MvPolynomial/MonomialOrder.lean,Mathlib/RingTheory/RamificationInertia/Ramification.lean,Mathlib/SetTheory/Cardinal/Aleph.lean,MathlibTest/InstanceDiamonds.lean,MathlibTest/Tactic/Grind/Grobner.lean |
37 |
1 |
['github-actions'] |
nobody |
0-78557 21 hours ago |
1-20731 1 day ago |
1-20505 1 day |
1 |
| 43643 |
Sanghyeok0 author:Sanghyeok0 |
refactor(Logic/Relation): move inclusion lemmas out of EqvGen |
I moved the four relation-inclusion lemmas introduced in #40792 from `Relation.EqvGen` to `Relation`, retaining the existing names as deprecated aliases.
This refactor was split out from #40368 following the review discussion there.
Changes:
* `Relation.EqvGen.reflGen_le_eqvGen` → `Relation.reflGen_le_eqvGen`
* `Relation.EqvGen.symmGen_le_eqvGen` → `Relation.symmGen_le_eqvGen`
* `Relation.EqvGen.transGen_le_eqvGen` → `Relation.transGen_le_eqvGen`
* `Relation.EqvGen.reflTransGen_le_eqvGen` → `Relation.reflTransGen_le_eqvGen`
---
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|
t-logic
new-contributor
|
24/0 |
Mathlib/Logic/Relation.lean |
1 |
9 |
['Sanghyeok0', 'github-actions', 'themathqueen'] |
nobody |
0-73129 20 hours ago |
4-20570 4 days ago |
10-23675 10 days |
0 |
| 44013 |
vihdzp author:vihdzp |
chore(SetTheory/Cardinal/Divisibility): golf file |
We also move a few theorems about divisibility to an earlier file, and perform some renames.
---
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|
t-set-theory |
47/64 |
Mathlib/SetTheory/Cardinal/Arithmetic.lean,Mathlib/SetTheory/Cardinal/Basic.lean,Mathlib/SetTheory/Cardinal/Defs.lean,Mathlib/SetTheory/Cardinal/Divisibility.lean |
4 |
1 |
['github-actions'] |
nobody |
0-69677 19 hours ago |
0-73488 20 hours ago |
0-73696 20 hours |
0 |
| 42665 |
SnirBroshi author:SnirBroshi |
chore(SimpleGraph/Coloring/Constructions): some golfs |
Also remove the `2 ≤ n` hypothesis from `cycleGraph.tricoloring`, and spell `two_colorable_iff_forall_loop_even` using `IsBipartite`.
---
- `cycleGraph.tricoloring`: 165ms to 110ms
- `chromaticNumber_cycleGraph_of_odd`: 25ms to 55ms
- `two_colorable_iff_forall_loop_even`: 50ms to 40ms
- `IsTree.coloringTwoOfVert`: 45ms to 75ms
- `IsAcyclic.coloringTwoOfVerts`: 50ms to 50ms
The issues in `tricoloring` kinda remind me of #41338; maybe there's a good lemma that'll help them both, not sure.
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|
t-combinatorics |
38/65 |
Mathlib/Algebra/Ring/Parity.lean,Mathlib/Combinatorics/SimpleGraph/Acyclic.lean,Mathlib/Combinatorics/SimpleGraph/Coloring/Constructions.lean |
3 |
7 |
['SnirBroshi', 'b-mehta', 'github-actions'] |
nobody |
0-67315 18 hours ago |
40-78059 40 days ago |
40-77833 40 days |
0 |
| 42704 |
gasparattila author:gasparattila |
refactor(Data/FunLike): make the arguments of `Is*Apply` implicit |
Since `IsAddApply F α β` and similar classes have `[FunLike F α β]` as an assumption, `α` and `β` can always be inferred from `F`, so they can be made implicit.
---
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|
t-data |
219/219 |
Mathlib/Algebra/BigOperators/Pi.lean,Mathlib/Algebra/Lie/Basic.lean,Mathlib/Algebra/Lie/Weights/Basic.lean,Mathlib/Algebra/Order/Group/End.lean,Mathlib/Algebra/Order/Module/PositiveLinearMap.lean,Mathlib/Analysis/BoxIntegral/Partition/Additive.lean,Mathlib/Analysis/Distribution/ContDiffMapSupportedIn.lean,Mathlib/Analysis/Distribution/SchwartzSpace/Basic.lean,Mathlib/Analysis/Distribution/TestFunction.lean,Mathlib/Analysis/Normed/Group/Seminorm.lean,Mathlib/Analysis/Normed/Module/Seminorm/Basic.lean,Mathlib/Data/FunLike/Group.lean,Mathlib/Data/FunLike/IsApply.lean,Mathlib/Data/FunLike/Module.lean,Mathlib/Data/FunLike/Ring.lean,Mathlib/Geometry/Convex/AffineMap/Module.lean,Mathlib/LinearAlgebra/Multilinear/Basic.lean,Mathlib/LinearAlgebra/QuadraticForm/Basic.lean,Mathlib/MeasureTheory/OuterMeasure/Operations.lean,Mathlib/MeasureTheory/VectorMeasure/Basic.lean,Mathlib/NumberTheory/ModularForms/Basic.lean,Mathlib/NumberTheory/ModularForms/SlashInvariantForms.lean,Mathlib/NumberTheory/Padics/Measure/Basic.lean,Mathlib/Probability/Kernel/Defs.lean,Mathlib/RingTheory/Derivation/Basic.lean,Mathlib/Topology/Algebra/InfiniteSum/ContinuousEval.lean,Mathlib/Topology/Algebra/Module/ContinuousLinearMap/Basic.lean,Mathlib/Topology/Algebra/Module/ContinuousLinearMap/Positive.lean,Mathlib/Topology/Algebra/Module/Multilinear/Basic.lean,Mathlib/Topology/Algebra/Module/Spaces/UniformConvergenceCLM.lean |
30 |
4 |
['gasparattila', 'github-actions', 'mathlib-merge-conflicts'] |
joneugster assignee:joneugster |
0-63013 17 hours ago |
0-74580 20 hours ago |
36-34919 36 days |
0 |
| 43006 |
dagurtomas author:dagurtomas |
feat(CategoryTheory): add API for quadrifunctors |
Adds currying and uncurrying for functors in four variables, together with simultaneous precomposition, postcomposition, and the composition functors needed to build quadrifunctors. The API follows the existing bifunctor and trifunctor conventions.
---
- [x] depends on: #43867
|
LLM-generated
t-category-theory
|
327/3 |
Mathlib.lean,Mathlib/CategoryTheory/Functor/CurryingFour.lean,Mathlib/CategoryTheory/Functor/Quadrifunctor.lean,Mathlib/CategoryTheory/Whiskering.lean,MathlibTest/CategoryTheory/CheckDsimp.lean |
5 |
9 |
['dagurtomas', 'github-actions', 'joelriou', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'robin-carlier'] |
robin-carlier assignee:robin-carlier |
0-63010 17 hours ago |
4-81728 4 days ago |
4-82565 4 days |
3 |
| 43245 |
SnirBroshi author:SnirBroshi |
chore(GroupTheory/Archimedean): spell cyclic results using `IsCyclic` |
Replaces `∃ a, H = closure {a}` with `IsCyclic H`, and some `closure {a}` with `zpowers a`.
---
Renamed decls to follow the naming convention.
To avoid large imports, `cyclic_of_isolated_one` was moved from `GroupTheory/Archimedean` to `GroupTheory/ArchimedeanDensely`, and `dense_or_cyclic`/`dense_xor_cyclic`/`dense_iff_ne_zpowers` were moved from `Topology/Algebra/Order/Archimedean` to `Topology/Algebra/Order/ArchimedeanDiscrete`.
`Int.subgroup_cyclic` follows trivially from `AddSubgroup.isAddCyclic` (as the module docstring mentions) so it was moved next to it and deprecated.
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|
t-algebra label:t-algebra$ |
135/124 |
Mathlib/GroupTheory/Archimedean.lean,Mathlib/GroupTheory/ArchimedeanDensely.lean,Mathlib/GroupTheory/SpecificGroups/Cyclic.lean,Mathlib/NumberTheory/ModularForms/Cusps.lean,Mathlib/Topology/Algebra/Order/Archimedean.lean,Mathlib/Topology/Algebra/Order/ArchimedeanDiscrete.lean,Mathlib/Topology/Instances/AddCircle/DenseSubgroup.lean,docs/undergrad.yaml |
8 |
1 |
['github-actions'] |
mattrobball assignee:mattrobball |
0-63009 17 hours ago |
20-53454 20 days ago |
20-55786 20 days |
0 |
| 43692 |
j-loreaux author:j-loreaux |
feat: a syntax linter for the `@[congr]` attribute |
The documentation for the `@[congr]` attribute states:
```
A `simp` congruence lemma should prove the equality of two applications of the same function from
the equality of the individual arguments. They are used by `simp` to visit subexpressions of an
application where the default congruence algorithm fails. This is particularly important for
functions where some parameters depend on previous parameters.
Congruence lemmas should have an equality for every parameter, possibly bounded by foralls, with
the right hand side being an application of a parameter on the right-hand side. When applying
congruence theorems, `simp` will first infer parameters from the right-hand side, then try to
simplify each left-hand side of the parameter equalities and finally infer the right-hand side
parameters from the result.
```
However, no check is performed to verify that all the arguments to the function vary. This PR adds a syntax linter to check this and turns it on by default across Mathlib. We explicitly silence the linter where it currently triggers.
This linter addresses a real problem, as I was bitten by the lack of this check in #43028 and fixed in #43689.
---
AI disclosure: this was generated by Claude (Opus 5) with my prompting. I rewrote some bits here and there to something I found more suitable, especially in the documentation portions. I understand all the meta code written herein, but I'm not sure if it follows best practices everywhere or not.
After some initial review, I had some better ideas of what could be changed, and made edits myself, without Claude.
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|
t-linter
LLM-generated
large-import
|
227/0 |
Mathlib.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/NonUnital.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Unital.lean,Mathlib/Data/Finset/Filter.lean,Mathlib/Data/Finset/Fold.lean,Mathlib/Data/Finsupp/Basic.lean,Mathlib/Data/List/Basic.lean,Mathlib/Data/List/Find.lean,Mathlib/Data/List/Zip.lean,Mathlib/Data/Multiset/Bind.lean,Mathlib/Data/Multiset/Filter.lean,Mathlib/Data/Multiset/Find.lean,Mathlib/Data/Set/Image.lean,Mathlib/Data/Set/NAry.lean,Mathlib/Data/Sym/Basic.lean,Mathlib/Data/Sym/Sym2.lean,Mathlib/Geometry/Convex/ConvexSpace/Defs.lean,Mathlib/Init.lean,Mathlib/Tactic.lean,Mathlib/Tactic/Linter/CongrFixedArgs.lean,MathlibTest/Linter/CongrFixedArgs.lean |
21 |
11 |
['github-actions', 'grunweg', 'j-loreaux'] |
thorimur assignee:thorimur |
0-63008 17 hours ago |
10-85507 10 days ago |
10-85281 10 days |
0 |
| 38334 |
8e7 author:8e7 |
feat(Combinatorics/SimpleGraph/TreeDecomp): define tree decompositions |
Add definition for tree decompositions on simple graphs. Define the tree width of a simple graph and prove basic statements and conversions.
```lean
structure TreeDecomp (G : SimpleGraph V) (W : Type) where
/-- The set of vertices in each bag. -/
bag : W → Finset V
/-- The graph adjacency relation of bags. -/
tree : SimpleGraph W
/-- T must be a tree. -/
isTree : IsTree tree
/-- All vertices in G must appear in some bag. -/
vertexCover : ∀ v : V, ∃ w : W, v ∈ bag w
/-- For any edge (u, v) in G, there is a bag containing both u and v. -/
edgeCover ⦃u v : V⦄ : G.Adj u v → ∃ w : W, u ∈ bag w ∧ v ∈ bag w
/-- For any vertex v in G, the set of bags that contain v is preconnected. -/
connectedBags : ∀ v : V, (tree.induce ({w | v ∈ bag w})).Preconnected
```
AI Usage: Some proofs are written with the help of Claude Code, and everything has been manually reviewed.
---
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[](https://gitpod.io/from-referrer/)
|
new-contributor
t-combinatorics
LLM-generated
|
395/0 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/TreeDecomp.lean |
2 |
42 |
['8e7', 'SnirBroshi', 'YaelDillies', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
0-62111 17 hours ago |
57-50149 57 days ago |
81-33258 81 days |
1 |
| 42042 |
ijtejeda author:ijtejeda |
feat(MeasureTheory/OuterMeasure) more API for Caratheodory |
Add more basic facts about outer measures. This includes Caratheodory measurability of measure-zero sets, a property that we use repeatedly in our formalization of Mastrand's theorem.
---
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|
LLM-generated
new-contributor
t-measure-probability
maintainer-merge
|
8/0 |
Mathlib/MeasureTheory/OuterMeasure/Caratheodory.lean |
1 |
15 |
['CoolRmal', 'github-actions', 'ijtejeda', 'tdwag123'] |
nobody |
0-62108 17 hours ago |
21-85481 21 days ago |
47-68826 47 days |
0 |
| 43954 |
tomaz1502 author:tomaz1502 |
feat(Algebra/Polynomial/Sturm): sturm sequences |
This PR defines `Polynomial.sturmSeq p q`, the Sturm sequence (signed remainder sequence) of two
polynomials over a field: the list `[p, q, -(p % q), …]` of successive negated remainders, ending at
the last nonzero one. It also proves its basic API:
* `sturmSeq_cons`, `sturmSeq_zero`, `sturmSeq_zero_right`, `sturmSeq_eq_nil_iff`: unfolding and
degenerate cases;
* `mem_sturmSeq_self`, `head?_sturmSeq`, `zero_notMem_sturmSeq`: membership facts;
* `dvd_of_mem_sturmSeq`: every common divisor of `p` and `q` divides every entry;
* `sturmSeq_mul_left`: `sturmSeq (r * p) (r * q) = (sturmSeq p q).map (r * ·)` for `r ≠ 0`.
It also adds `Polynomial.neg_mod` and `Polynomial.mul_mod_mul_left` to `FieldDivision.lean`, used
in the proof of `sturmSeq_mul_left`.
This is the second PR of a series formalizing the Sturm–Tarski theorem, following #43783
(`List.signVariations`). The development is a port of Wenda Li's Isabelle/AFP entry. The remaining
parts (local sign of a polynomial to the right of a point, the Cauchy index, and the theorem
itself) will follow in separate PRs. See also #43512.
The definition and the original proofs were written by hand. Claude Code (Fable 5.1) was used to
simplify part of the proofs and to review the code.
Co-authored-by: Pedro Saccomani <psaccomani15@gmail.com>
Co-authored-by: Sarah Azevedo Pereira <sarahcomh@proton.me> |
t-algebra
new-contributor
label:t-algebra$ |
191/0 |
Mathlib.lean,Mathlib/Algebra/Polynomial/FieldDivision.lean,Mathlib/Algebra/Polynomial/Sturm/Sequence.lean,docs/references.bib |
4 |
10 |
['github-actions', 'kim-em'] |
nobody |
0-59807 16 hours ago |
2-74185 2 days ago |
2-74090 2 days |
0 |
| 37603 |
Parcly-Taxel author:Parcly-Taxel |
refactor: review of `SetSemiring` |
* Rename `Set.up` and `SetSemiring.down` to `SetSemiring.ofSet` and `SetSemiring.toSet` respectively. Unprotect both and make them equivalences, following `FreeMonoid`.
* Derive `CompleteAtomicBooleanAlgebra` for `SetSemiring` immediately.
* Add `imageHom_id` and `imageHom_comp`. The three existing lemmas about `imageHom` are coalesced into `imageHom_apply`.
Ultimately inspired by https://github.com/leanprover-community/mathlib4/pull/36934#issuecomment-4183475568. |
t-data |
119/164 |
Mathlib/Algebra/Algebra/Operations.lean,Mathlib/Data/Set/Semiring.lean |
2 |
45 |
['Parcly-Taxel', 'YaelDillies', 'eric-wieser', 'github-actions', 'mathlib-merge-conflicts', 'ocfnash', 'sgouezel'] |
nobody |
0-51533 14 hours ago |
68-65130 68 days ago |
104-75688 104 days |
1 |
| 44019 |
bally65 author:bally65 |
feat(Computability/Primrec): primality is primitive recursive |
Primrec.nat_prime : PrimrecPred Nat.Prime, via Nat.prime_def_lt' and the bounded quantifier PrimrecRel.forall_lt. Mathlib had no computability statement about Nat.Prime.
---
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|
t-computability
new-contributor
|
43/0 |
Mathlib.lean,Mathlib/Computability/Primrec/Prime.lean |
2 |
2 |
['github-actions'] |
nobody |
0-50965 14 hours ago |
0-52059 14 hours ago |
0-51833 14 hours |
0 |
| 43035 |
kim-em author:kim-em |
chore: use simp instead of norm_num where simp suffices |
This PR replaces `norm_num` with `simp` at 226 call sites where `simp` already closes the goal on its own.
Most of these are `(by norm_num)` discharging a trivial side condition, for example `pow_le_pow_of_le_one (by norm_num) (by norm_num)`, `pow_pos (by norm_num) _`, or `logb_le_logb (b := 2) (by norm_num) _`. `norm_num` runs the full default simp set and then dispatches its extensions on every subterm it visits, so where `simp` suffices the extension dispatch is pure overhead.
The motivation is readability rather than speed. `!bench` on the first revision reported no significant results overall, so this should be taken as a consistency cleanup, not a performance improvement.
Every site was found mechanically and verified individually: each `norm_num` token was replaced in isolation and the containing file recompiled, and a site was kept only when the file compiled with no errors and no warnings, so linter complaints about now-unused simp arguments count against a site rather than for it. Sites in the four files that do not compile standalone were excluded. The 369 sites where `simp` does not suffice are untouched; those are doing real rational arithmetic such as `(3 / 2 : ℝ) < 2` or `(↑10 ^ 2) = 100`.
`Mathlib/Analysis/Calculus/FDeriv/Measurable.lean` was included in the first revision and has been reverted: `!bench` flagged it at +790.0M (+1.23%) instructions, the only regression in the change.
This is independent of https://github.com/leanprover-community/mathlib4/pull/43003; the same sites are replaceable with or without it, confirmed by running the sweep against both trees.
🤖 Prepared with Claude Code
|
|
215/215 |
Mathlib/Algebra/Homology/AlternatingConst.lean,Mathlib/Algebra/Order/Round.lean,Mathlib/Algebra/Quaternion.lean,Mathlib/AlgebraicTopology/FundamentalGroupoid/Basic.lean,Mathlib/Analysis/Analytic/Binomial.lean,Mathlib/Analysis/Asymptotics/SpecificAsymptotics.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Order.lean,Mathlib/Analysis/Calculus/ContDiff/Defs.lean,Mathlib/Analysis/Complex/Exponential.lean,Mathlib/Analysis/Complex/ExponentialBounds.lean,Mathlib/Analysis/Complex/Poisson.lean,Mathlib/Analysis/Complex/SqrtDeriv.lean,Mathlib/Analysis/Complex/Tietze.lean,Mathlib/Analysis/Convex/Basic.lean,Mathlib/Analysis/Convex/Cone/Extension.lean,Mathlib/Analysis/Distribution/Sobolev.lean,Mathlib/Analysis/Fourier/AddCircle.lean,Mathlib/Analysis/InnerProductSpace/Defs.lean,Mathlib/Analysis/InnerProductSpace/Symmetric.lean,Mathlib/Analysis/InnerProductSpace/l2Space.lean,Mathlib/Analysis/Normed/Algebra/TrivSqZeroExt.lean,Mathlib/Analysis/Normed/Group/Seminorm.lean,Mathlib/Analysis/Polynomial/Norm.lean,Mathlib/Analysis/Real/Pi/Bounds.lean,Mathlib/Analysis/Real/Pi/Wallis.lean,Mathlib/Analysis/SpecialFunctions/ArithmeticGeometricMean.lean,Mathlib/Analysis/SpecialFunctions/BinaryEntropy.lean,Mathlib/Analysis/SpecialFunctions/Complex/Circle.lean,Mathlib/Analysis/SpecialFunctions/Complex/Log.lean,Mathlib/Analysis/SpecialFunctions/Complex/LogBounds.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/Rpow/Order.lean,Mathlib/Analysis/SpecialFunctions/Elliptic/Weierstrass.lean,Mathlib/Analysis/SpecialFunctions/Integrability/Basic.lean,Mathlib/Analysis/SpecialFunctions/Log/Monotone.lean,Mathlib/Analysis/SpecialFunctions/Sigmoid.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Basic.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Bounds.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Chebyshev/ChebyshevGauss.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Chebyshev/Extremal.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Chebyshev/Orthogonality.lean,Mathlib/Analysis/SpecificLimits/Basic.lean,Mathlib/Analysis/SpecificLimits/Normed.lean,Mathlib/Basic/Real/Basic.lean,Mathlib/Combinatorics/Enumerative/Catalan/Basic.lean,Mathlib/Combinatorics/Enumerative/Partition/Glaisher.lean,Mathlib/Combinatorics/SimpleGraph/Regularity/Chunk.lean,Mathlib/Combinatorics/SimpleGraph/Regularity/Lemma.lean,Mathlib/Computability/AkraBazzi/AkraBazzi.lean,Mathlib/Computability/AkraBazzi/GrowsPolynomially.lean,Mathlib/Computability/AkraBazzi/SumTransform.lean,Mathlib/Data/EReal/Basic.lean,Mathlib/Data/Nat/Choose/Central.lean,Mathlib/Data/Nat/Totient.lean,Mathlib/Geometry/Euclidean/Angle/Bisector.lean,Mathlib/Geometry/Euclidean/Angle/Oriented/Affine.lean,Mathlib/Geometry/Euclidean/NinePointCircle.lean,Mathlib/Geometry/Euclidean/Similarity.lean,Mathlib/Geometry/Euclidean/Sphere/OrthRadius.lean,Mathlib/Geometry/Manifold/Instances/Real.lean,Mathlib/GroupTheory/CommutingProbability.lean,Mathlib/GroupTheory/Descent.lean,Mathlib/GroupTheory/Exponent.lean,Mathlib/GroupTheory/GroupAction/Jordan.lean,Mathlib/GroupTheory/GroupAction/MultipleTransitivity.lean,Mathlib/GroupTheory/GroupAction/SubMulAction/Combination.lean,Mathlib/GroupTheory/Perm/Cycle/Concrete.lean,Mathlib/GroupTheory/Perm/Sign.lean,Mathlib/GroupTheory/SpecificGroups/Alternating/Simple.lean,Mathlib/LinearAlgebra/Matrix/FixedDetMatrices.lean,Mathlib/LinearAlgebra/Matrix/SpecialLinearGroup.lean,Mathlib/LinearAlgebra/Projectivization/Collinear.lean,Mathlib/LinearAlgebra/RootSystem/Finite/G2.lean,Mathlib/MeasureTheory/Function/BorelGrowth.lean,Mathlib/MeasureTheory/Integral/IntervalIntegral/AbsolutelyContinuousFun.lean,Mathlib/MeasureTheory/Measure/Lebesgue/VolumeOfBalls.lean,Mathlib/NumberTheory/Bernoulli.lean,Mathlib/NumberTheory/Chebyshev.lean,Mathlib/NumberTheory/Harmonic/ZetaAsymp.lean,Mathlib/NumberTheory/LSeries/HurwitzZetaOdd.lean,Mathlib/NumberTheory/LucasLehmer.lean,Mathlib/NumberTheory/Modular.lean,Mathlib/NumberTheory/ModularForms/Basic.lean,Mathlib/NumberTheory/ModularForms/Discriminant.lean,Mathlib/NumberTheory/ModularForms/EisensteinSeries/Basic.lean,Mathlib/NumberTheory/ModularForms/EisensteinSeries/E2/Transform.lean,Mathlib/NumberTheory/ModularForms/EisensteinSeries/QExpansion.lean,Mathlib/NumberTheory/ModularForms/LevelOne/DimensionFormula.lean,Mathlib/NumberTheory/NumberField/CanonicalEmbedding/ConvexBody.lean,Mathlib/NumberTheory/NumberField/CanonicalEmbedding/FundamentalCone.lean,Mathlib/NumberTheory/NumberField/Cyclotomic/Basic.lean,Mathlib/NumberTheory/NumberField/Discriminant/Basic.lean,Mathlib/NumberTheory/NumberField/InfinitePlace/Basic.lean,Mathlib/NumberTheory/Padics/Hensel.lean,Mathlib/NumberTheory/Padics/PadicNumbers.lean,Mathlib/NumberTheory/Pell.lean,Mathlib/NumberTheory/PythagoreanTriples.lean,Mathlib/NumberTheory/Real/GoldenRatio.lean,Mathlib/NumberTheory/Wilson.lean,Mathlib/Probability/Distributions/Beta.lean,Mathlib/Probability/Distributions/Exponential.lean |
124 |
9 |
['Multramate', 'github-actions', 'kim-em', 'leanprover-radar', 'mathlib-merge-conflicts'] |
nobody |
0-49147 13 hours ago |
0-52579 14 hours ago |
14-39021 14 days |
0 |
| 42983 |
sgouezel author:sgouezel |
feat: introduce an IsNormableSpace class |
This is relevant to be able to use functions like `ContinuousLinearMap.flip` on tangent spaces, which are normable but not normed. See Zulip discussion at [#Is there code for X? > Pulling back continuous inner product @ 💬](https://leanprover.zulipchat.com/#narrow/channel/217875-Is-there-code-for-X.3F/topic/Pulling.20back.20continuous.20inner.20product/near/614796625)
This PR introduces a new typeclass `IsNormableSpace 𝕜 E` modelled on `PolynormableSpace 𝕜 E` and establishes basic API. It extends basic bilinear functions (like `ContinuousLinearMap.flip` or `ContinuousLInearMap.bilinearComp`) to normable spaces. It also shows that finite-dimensional spaces are normable, as well as spaces of continuous linear maps between normable spaces.
---
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|
t-analysis
large-import
maintainer-merge
|
305/113 |
Mathlib/Analysis/LocallyConvex/WithSeminorms.lean,Mathlib/Analysis/Normed/Module/Dual.lean,Mathlib/Analysis/Normed/Operator/Basic.lean,Mathlib/Analysis/Normed/Operator/Bilinear.lean,Mathlib/Analysis/Normed/Operator/CompleteCodomain.lean,Mathlib/Analysis/Normed/Operator/NormedSpace.lean,Mathlib/Geometry/Manifold/IsManifold/Basic.lean,Mathlib/Topology/Algebra/Module/FiniteDimension.lean,Mathlib/Topology/Algebra/Module/FiniteDimensionBilinear.lean |
9 |
36 |
['felixpernegger', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts', 'mcdoll', 'plp127', 'sgouezel'] |
nobody |
0-44200 12 hours ago |
3-18056 3 days ago |
27-69397 27 days |
0 |
| 44027 |
kim-em author:kim-em |
chore(RingTheory/Unramified/LocalRing): explain the backward.inferInstanceAs.wrap.data option |
This PR adds a comment explaining why `FormallyUnramified.isField_quotient_map_maximalIdeal` needs `set_option backward.inferInstanceAs.wrap.data false`, and that the option can be removed once https://github.com/leanprover/lean4/issues/13408 (Kernel error for `inferInstanceAs` with let declarations) is fixed. A fix is proposed in https://github.com/leanprover/lean4/pull/15245.
🤖 Prepared with Claude Code |
t-ring-theory |
3/0 |
Mathlib/RingTheory/Unramified/LocalRing.lean |
1 |
1 |
['github-actions'] |
nobody |
0-43558 12 hours ago |
0-44925 12 hours ago |
0-44699 12 hours |
0 |
| 42846 |
mcdoll author:mcdoll |
feat(Analysis/Convex): `egauge` of a seminorm balls |
Prove relations between the seminorm and the `egauge` of the (closed) ball.
This is a step to calculate derivatives of functions with codomain in locally convex spaces.
Co-authored-by: Anatole Dedecker <anatolededecker@gmail.com>
---
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|
t-analysis |
74/30 |
Mathlib/Analysis/Asymptotics/TVS.lean,Mathlib/Analysis/Convex/EGauge.lean |
2 |
3 |
['github-actions', 'mcdoll', 'themathqueen'] |
nobody |
0-42544 11 hours ago |
0-44469 12 hours ago |
35-60109 35 days |
1 |
| 44008 |
joelriou author:joelriou |
feat(CategoryTheory): accessibly embedded full subcategories |
In this PR, we introduce a typeclass `P.IsClosedUnderCardinalFilteredColimits κ` saying that a property of objects is closed under `κ`-filtered colimits.
---
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|
t-category-theory |
111/13 |
Mathlib.lean,Mathlib/CategoryTheory/ObjectProperty/IsClosedUnderCardinalFilteredColimits.lean,Mathlib/CategoryTheory/Presentable/OrthogonalReflection.lean |
3 |
1 |
['github-actions'] |
dagurtomas assignee:dagurtomas |
0-42151 11 hours ago |
1-6142 1 day ago |
1-5989 1 day |
0 |
| 42963 |
teal-sea author:teal-sea |
feat(NumberTheory/LSeries): define Hardy's Z function |
Add Hardy's Z function as a real-valued function on `ℝ`, with the two
conjugation lemmas its construction needs.
---
`Z` is the standard real-valued function on the critical line: it has the same
modulus as `ζ (1/2 + i t)`, so its sign changes locate zeros of `ζ` on the line.
It is a standard object for formulating and proving results about zeros on the
critical line, and Mathlib currently has no way to talk about such a zero
directly.
The `Critical line theorem` entry in `docs/1000.yaml` carries no `decl:`, so
this is an area the library has recorded as wanted. This PR is not that theorem;
it is foundational infrastructure toward it, and the dependency chain is what
gives the three commits their shape: a critical line theorem is naturally
formulated using `Z`, `Z` needs conjugation symmetry for the completed zeta
function, and that needs conjugation symmetry for the Deligne archimedean
factors. Hence, in order:
1. `Complex.Gammaℝ_conj`, `Complex.Gammaℂ_conj` in `Gamma/Deligne.lean`, which
currently has no conjugation lemma for either Deligne factor.
2. `completedRiemannZeta_conj` in `ZetaAsymp.lean`, next to `riemannZeta_conj`.
For `0 < re s` it follows from `riemannZeta_conj` and `Gammaℝ_conj`; the
other half-plane follows from `completedRiemannZeta_one_sub` applied to
`1 - s`, which also covers the junk values at `0` and `1`.
3. `Mathlib/NumberTheory/LSeries/HardyZ.lean`, the definition and its API:
`abs_hardyZ`, `hardyZ_neg`, `hardyZ_eq_zero_iff`, `continuous_hardyZ`,
`ofReal_hardyZ`.
**On the choice of definition.** The textbook definition is
`Z t = exp (I * ϑ t) * ζ (1/2 + i t)`, with `ϑ` the Riemann–Siegel theta
function. That needs a continuous branch of `log Γ` along the critical line,
which Mathlib does not have, and the branch bookkeeping is most of the work.
Dividing `Λ` by the modulus of its archimedean factor gives the same function
without mentioning a branch: `Λ (1/2 + i t)` is real by `completedRiemannZeta_conj`
and `completedRiemannZeta_one_sub`, and `‖Γ_ℝ (1/2 + i t)‖` is a positive real.
Since `Γ_ℝ (1/2 + it) = π ^ (-1/4) * π ^ (-it/2) * Γ (1/4 + it/2)`, where the
first factor is a positive real and the second has modulus `1`, the quotient is
exactly `exp (I * ϑ t) * ζ (1/2 + i t)`; the module docstring spells this out.
`ϑ` itself can follow later.
I chose `ℝ → ℝ` because it is what the literature means by `Z` and it makes the
intermediate value theorem directly applicable. I raised this signature question
on Zulip in `#mathlib4` on 6 August and would still welcome opinions on it.
## Use of AI
I used Claude (Anthropic), via Claude Code. The mathematical route, defining
`Z` from `Λ` rather than from `exp (I ϑ) ζ`, to avoid the logarithm branch, is
one I worked out in my own research repository before this Lean was written, and that earlier Lean was also AI-assisted. Claude wrote most of the
proofs from that plan for this PR and found that the divisor is exactly `‖Γ_ℝ (1/2 + i t)‖`
rather than the expanded `π ^ (-1/4) * ‖Γ (1/4 + i t / 2)‖`, split the two
general lemmas out into their proper files, and adapted everything to house
style. I set the goal and the design, chose the file layout and the names, and
reviewed the result.
Builds against master with no errors or warnings; `lake exe lint-style` is clean
and `#lint` reports no errors. |
LLM-generated
new-contributor
t-number-theory
|
209/0 |
Mathlib.lean,Mathlib/Analysis/SpecialFunctions/Gamma/Deligne.lean,Mathlib/NumberTheory/Harmonic/ZetaAsymp.lean,Mathlib/NumberTheory/LSeries/HardyZ.lean |
4 |
10 |
['github-actions', 'loefflerd', 'teal-sea', 'wwylele'] |
loefflerd assignee:loefflerd |
0-41892 11 hours ago |
32-67672 32 days ago |
32-67446 32 days |
0 |
| 42563 |
thorimur author:thorimur |
feat: `private` elaborator for proofs |
This PR adds the `private <term>` term elaborator which wraps term-mode proofs in a public auxiliary declaration so that they can use private constants in public positions. For example, a term-mode proof appearing in a public declaration's type will error if it uses a private declaration.
Currently, `by exact` will wrap the proof in a private declaration as `private` does, but sprinkling code with `by exact`s hurts readability, since it's difficult to tell at a glance what motivated its presence. Also, `private` reports when it's unnecessary, unlike `by exact`.
Disclosure: I had Claude review this before PRing, seeing if I could get rid of elaborating `by`. It found a good reason to do so, and made some changes, which I then reviewed and iterated on myself. I've preserved the (only) LLM-generated changes via the authorship of the commit history.
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[](https://gitpod.io/from-referrer/)
|
t-meta |
285/0 |
Mathlib.lean,Mathlib/Init.lean,Mathlib/Util/PrivateProof.lean,MathlibTest/Util/PrivateProof.lean |
4 |
8 |
['JovanGerb', 'github-actions', 'kim-em', 'thorimur'] |
joneugster assignee:joneugster |
0-37844 10 hours ago |
38-46169 38 days ago |
44-45872 44 days |
1 |
| 43539 |
abhijitaj1997 author:abhijitaj1997 |
feat(CategoryTheory/Monoidal/Cartesian/Endomorphism): add ring and semiring structures |
Given two monoidal object in a nice enough category, this show that the monoidal morphisms between then forms an additive group. This additive group is part of a larger semiring structure.
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[](https://gitpod.io/from-referrer/)
|
new-contributor
t-category-theory
large-import
|
204/0 |
Mathlib.lean,Mathlib/CategoryTheory/Monoidal/Cartesian/Endomorphism.lean,Mathlib/CategoryTheory/Monoidal/Cartesian/Mon.lean,Mathlib/CategoryTheory/Monoidal/Mon.lean |
4 |
35 |
['Multramate', 'abhijitaj1997', 'alreadydone', 'github-actions', 'joelriou', 'robin-carlier'] |
robin-carlier assignee:robin-carlier |
0-37809 10 hours ago |
10-10148 10 days ago |
12-55817 12 days |
0 |
| 44029 |
seewoo5 author:seewoo5 |
feat(ModularForms): derivative of discriminant form |
---
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$\Delta' = E_2 \Delta$ and $\partial_{12} \Delta = 0$. From Sphere packing project, initially written by Claude.
(c.f. I thought that this would follow from Ramanujan formula and $\Delta = (E_4^3 - E_6^2)/1728$, until I (re-)realize that $E_2$ is defined as logarithmic derivative of Dedekind eta function and we have much shorter proof.)
[](https://gitpod.io/from-referrer/)
|
t-number-theory
LLM-generated
sphere-packing
|
23/1 |
Mathlib/NumberTheory/ModularForms/Discriminant.lean |
1 |
1 |
['github-actions'] |
nobody |
0-37499 10 hours ago |
0-38804 10 hours ago |
0-38578 10 hours |
0 |
| 43923 |
mcdoll author:mcdoll |
chore: add `prodComm_trans_prodComm` for various cases |
---
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[](https://gitpod.io/from-referrer/)
|
|
51/5 |
Mathlib/Algebra/Group/Prod.lean,Mathlib/Algebra/Ring/Prod.lean,Mathlib/Analysis/Normed/Operator/LinearIsometry.lean,Mathlib/LinearAlgebra/AffineSpace/AffineEquiv.lean,Mathlib/LinearAlgebra/Prod.lean,Mathlib/Logic/Equiv/Prod.lean,Mathlib/Order/Hom/Basic.lean,Mathlib/Topology/Algebra/ContinuousAffineEquiv.lean,Mathlib/Topology/Algebra/Module/Equiv.lean,Mathlib/Topology/Constructions/SumProd.lean,Mathlib/Topology/UniformSpace/Equiv.lean |
11 |
5 |
['YaelDillies', 'gasparattila', 'github-actions'] |
YaelDillies assignee:YaelDillies |
0-36576 10 hours ago |
0-50917 14 hours ago |
0-54781 15 hours |
1 |
| 43523 |
EtienneC30 author:EtienneC30 |
feat: generalize `iIndepFun.indepFun_finset` to arbitrary index sets |
Generalize [ProbabilityTheory.iIndepFun.indepFun_finset](https://leanprover-community.github.io/mathlib4_docs/Mathlib/Probability/Independence/Basic.html#ProbabilityTheory.iIndepFun.indepFun_finset) to arbitrary index sets and not only finsets.
---
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[](https://gitpod.io/from-referrer/)
|
t-measure-probability |
92/39 |
Mathlib/Probability/Independence/Basic.lean,Mathlib/Probability/Independence/Conditional.lean,Mathlib/Probability/Independence/Kernel/IndepFun.lean,Mathlib/Probability/Independence/Process/Basic.lean |
4 |
1 |
['github-actions'] |
nobody |
0-34261 9 hours ago |
0-34927 9 hours ago |
0-39228 10 hours |
0 |
| 44033 |
kim-em author:kim-em |
chore(ci): explain and link the weekly linting report, with message locations |
This PR makes the weekly linting report posted to Zulip explain itself: the message now says it is `lake build` with the `linter.weeklyLintSet` linters enabled, and links to the linter set, this workflow and the reporting script at the commit that was built. Messages occurring at most twice list their locations, linked to the source, tables are capped at 20 rows so the message stays under Zulip's limit (this week's post was truncated), a full report with every location goes to the GitHub job summary, and the header reports the real `lake build` status instead of always saying "failed".
The locations, cap and full report need https://github.com/leanprover-community/mathlib-ci/pull/77 and the automatic bump of the pinned mathlib-ci ref; until then the extra variables are ignored and only the status fix takes effect.
🤖 Prepared with Claude Code |
CI |
11/5 |
.github/workflows/weekly-lints.yml |
1 |
1 |
['github-actions'] |
nobody |
0-32593 9 hours ago |
0-35413 9 hours ago |
0-35187 9 hours |
0 |
| 44026 |
kim-em author:kim-em |
chore: remove backward.privateInPublic in category theory, topology and analysis |
This PR removes the `backward.privateInPublic` option in 6 files across category theory, topology and analysis. In each case a private definition appeared in the statement of a public declaration, so it was already part of the public interface in all but name. The fix is to drop `private` from those definitions (and from the auxiliary definitions their bodies depend on in exposed sections), adding docstrings where they were missing. In `Analysis/InnerProductSpace/OfNorm` the auxiliary inner product `inner_` moves into the `InnerProductSpaceable` namespace rather than becoming a root-level name; the public lemmas `inner_.norm_sq`, `inner_.conj_symm` and `Continuous.inner_` already carried its name. In `Topology/Category/Compactum` the helper `cl` gets a mathematical docstring, and the two lemmas about it that are only used in proofs stay private.
Files where a private *lemma* appeared in a public statement, and the files with file-wide `public section` restructuring, are handled in #44032. Names are otherwise kept as they were; suggestions for better names are welcome but are not needed for this PR.
🤖 Prepared with Claude Code |
tech debt |
19/63 |
Mathlib/Analysis/InnerProductSpace/OfNorm.lean,Mathlib/CategoryTheory/Monoidal/Internal/FunctorCategory.lean,Mathlib/FieldTheory/Galois/Profinite.lean,Mathlib/Topology/Category/Compactum.lean,Mathlib/Topology/Category/TopCat/Limits/Konig.lean,Mathlib/Topology/MetricSpace/GromovHausdorff.lean |
6 |
1 |
['github-actions'] |
nobody |
0-31502 8 hours ago |
0-46234 12 hours ago |
0-46008 12 hours |
0 |
| 44024 |
kim-em author:kim-em |
chore: remove backward.privateInPublic in algebra, combinatorics and number theory |
This PR removes the `backward.privateInPublic` option in 9 files across algebra, combinatorics, number theory, order theory and set theory. In each case a private definition appeared in the statement of a public declaration, so it was already part of the public interface in all but name. The fix is to drop `private` from those definitions, adding docstrings where they were missing. In `Algebra/EuclideanDomain/Basic` the opposite direction is cleaner: the only consumer `xgcdAux_P` becomes private as well, matching the existing setup in `Data/Int/GCD`. In `Combinatorics/SetFamily/FourFunctions` the definition becomes `Finset.collapse` rather than a root-level name. In `Combinatorics/SetFamily/KruskalKatona` the predicate is marked `@[expose]`, since the file's `public section` is not exposed and the `DecidableRel` instance needs to unfold it.
Files where a private *lemma* appeared in a public statement are handled by wrapping the use site instead, in #44032. Names are kept as they were (for example `Pell.d`); suggestions for better names are welcome but are not needed for this PR.
🤖 Prepared with Claude Code |
tech debt |
14/107 |
Mathlib/Algebra/EuclideanDomain/Basic.lean,Mathlib/Algebra/FreeAlgebra.lean,Mathlib/Combinatorics/SetFamily/FourFunctions.lean,Mathlib/Combinatorics/SetFamily/KruskalKatona.lean,Mathlib/Combinatorics/SimpleGraph/Regularity/Increment.lean,Mathlib/GroupTheory/FreeGroup/NielsenSchreier.lean,Mathlib/NumberTheory/PellMatiyasevic.lean,Mathlib/RingTheory/GradedAlgebra/HomogeneousLocalization.lean,Mathlib/SetTheory/Ordinal/Notation.lean |
9 |
2 |
['github-actions', 'grunweg'] |
nobody |
0-29840 8 hours ago |
0-29888 8 hours ago |
0-34571 9 hours |
0 |
| 44031 |
kim-em author:kim-em |
chore: apply mergeWithGrind suggestions from the weekly linting report |
This PR applies the `linter.tacticAnalysis.mergeWithGrind` suggestions from the weekly linting report of 2026-09-21 (https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Weekly.20linting.20log/near/625644995): in each flagged proof the tactic preceding a terminal `grind` call is redundant and is removed. In `Combinatorics/SimpleGraph/Acyclic.lean` this also restores the original proof recorded in an adaptation note, which now works again.
Three of the 22 suggestions were false positives and are not applied: under `all_goals tac; grind` the linter only tests the first goal, and the other goals still need `tac` (`Combinatorics/SimpleGraph/Extremal/Turan.lean` and two lemmas in `Analysis/SpecialFunctions/Log/Basic.lean`).
🤖 Prepared with Claude Code |
tech debt |
10/46 |
Mathlib/Algebra/QuadraticAlgebra/Discriminant.lean,Mathlib/Algebra/Star/NonUnitalSubalgebra.lean,Mathlib/AlgebraicTopology/SimplexCategory/ToMkOne.lean,Mathlib/AlgebraicTopology/SimplicialObject/ChainHomotopy.lean,Mathlib/Analysis/Calculus/Taylor.lean,Mathlib/Analysis/SpecialFunctions/Integrability/Basic.lean,Mathlib/Combinatorics/SimpleGraph/Acyclic.lean,Mathlib/Combinatorics/SimpleGraph/Maps.lean,Mathlib/Combinatorics/SimpleGraph/Tutte.lean,Mathlib/Data/List/Nodup.lean,Mathlib/Data/Multiset/Find.lean,Mathlib/MeasureTheory/VectorMeasure/IntegrationByParts.lean,Mathlib/NumberTheory/FundamentalDiscriminant.lean,Mathlib/NumberTheory/Height/EllipticCurve.lean,Mathlib/NumberTheory/LucasLehmer.lean,Mathlib/Topology/Instances/AddCircle/Defs.lean |
16 |
3 |
['github-actions', 'grunweg', 'leanprover-radar'] |
nobody |
0-28298 7 hours ago |
0-31787 8 hours ago |
0-31861 8 hours |
0 |
| 44038 |
kim-em author:kim-em |
chore: remove the Gitpod configuration and buttons |
This PR deletes `.gitpod.yml` and the "Open in Gitpod" badge and buttons in the README and the PR template, since Gitpod's classic product no longer exists and the Gitpod GitHub app is being uninstalled. The `gitpod` Docker images built by `docker_build.yml` are left alone for now.
🤖 Prepared with Claude Code |
file-removed
CI
|
1/17 |
.github/PULL_REQUEST_TEMPLATE.md,.gitpod.yml,README.md |
3 |
1 |
['github-actions'] |
nobody |
0-27982 7 hours ago |
0-29178 8 hours ago |
0-28952 8 hours |
0 |
| 44034 |
kim-em author:kim-em |
fix(Linter/DocString): report Verso parse errors at their position in the file |
This PR fixes the positions reported by the `linter.style.docStringVerso` linter. The linter parses the doc-string text in a fresh input context, so the parse errors carry positions relative to the doc-string, and logging them at the resulting syntax produced line numbers relative to the doc-string rather than the file (this week's weekly linting report has warnings at `Mathlib/Algebra/Field/GeomSum.lean:3`, the copyright header). The linter now offsets each error by the position of the doc-string text in the file and reports the range from the start of the construct Verso was parsing to the point of failure. To make the offsets exact, the replacements of autolinks and `$$` blocks that precede parsing now preserve the byte length of the text instead of substituting `URL` and `LaTeX`.
🤖 Prepared with Claude Code |
t-linter |
34/9 |
Mathlib/Tactic/Linter/DocString.lean |
1 |
1 |
['github-actions'] |
nobody |
0-27977 7 hours ago |
0-31858 8 hours ago |
0-34943 9 hours |
0 |
| 44041 |
pepamontero author:pepamontero |
feat(Geometry/Manifold): lemmas relating writtenInExtChartAt and extChartAt |
This PR adds three lemmas relating `writtenInExtChartAt` and `extChartAt` to `ExtChartAt.lean`:
* `writtenInExtChartAt_apply_extChartAt`,
* `extChartAt_symm_writtenInExtChartAt` and
* `extChartAt_symm_writtenInExtChartAt_extChartAt`.
The first two are used to golf some proofs; some of them did the same reasoning in `writtenInExtChartAt_apply_extChartAt` using a `have`. The others previously unfolded `writtenInExtChartAt` by hand and relied on `simp only [*]`.
The third one is not used here, but it could make a proof nicer in #34005.
AI disclosure: AI was used to scan places where these lemmas could be reused, as they were originally only written to use in #34005.
---
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any "Co-authored-by" lines) using the following format:
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- Vector.* -> List.Vector.*
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Deletions:
- Nat.bit1_add_bit1
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- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
t-differential-geometry |
23/11 |
Mathlib/Geometry/Manifold/ContMDiff/Basic.lean,Mathlib/Geometry/Manifold/IsManifold/ExtChartAt.lean,Mathlib/Geometry/Manifold/MFDeriv/Basic.lean |
3 |
1 |
['github-actions'] |
nobody |
0-25452 7 hours ago |
0-26897 7 hours ago |
0-26671 7 hours |
0 |
| 41856 |
Ruizsolveall author:Ruizsolveall |
feat(Topology/Covering): fundamental group of the circle is ℤ |
This is the promised follow-up to #40947 (see [Zulip](https://leanprover.zulipchat.com/#narrow/channel/217875-Is-there-code-for-X.3F/topic/How.20to.20wisely.20state.20Homotopy.20lifting.20lemma)); most of the file is the computation that the loop `t ↦ n • t` is sent to `n : ℤ`.
---
I used Claude to navigate the quotient covering map API and for an initial frame of the proofs, which I then reworked; I understand and can vouch for all of it.
|
t-topology
new-contributor
LLM-generated
|
184/0 |
Mathlib.lean,Mathlib/Algebra/Group/Subgroup/ZPowers/Lemmas.lean,Mathlib/Algebra/Group/TypeTags/Basic.lean,Mathlib/Data/Int/Cast/Lemmas.lean,Mathlib/Topology/Covering/FundamentalGroupCircle.lean,Mathlib/Topology/Homotopy/Lifting.lean |
6 |
10 |
['Ruizsolveall', 'alreadydone', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
0-24778 6 hours ago |
18-6220 18 days ago |
60-50251 60 days |
0 |
| 44032 |
kim-em author:kim-em |
chore: remove backward.privateInPublic by wrapping proofs with private_decl% |
This PR removes 171 uses of `backward.privateInPublic` across 37 files. Wherever a public declaration used a private lemma in a proof position, the proof is wrapped with core's `private_decl%` elaborator, or with the `field := private proof` structure-instance syntax where the proof fills a structure field. Both elaborate the proof in a private context and hide it behind an auxiliary declaration, which is harmless by proof irrelevance. No declaration changes visibility and no statement changes, except that in `Combinatorics/SetFamily/AhlswedeZhang` the `Finset → Set` coercion in `lowerClosure s` is now written explicitly, since `private_decl%` elaborates eagerly and otherwise sees the coercion's pending metavariable.
This follows the plan of #42755 by @thorimur and takes its non-elaborator changes verbatim: moving `variable` commands out of `public section` in four files where almost every declaration is private (Galois/Decomposition, ChevalleyComplexity, GromovHausdorffRealized, NumberField/House; see https://github.com/leanprover/lean4/issues/14708 and https://github.com/leanprover/lean4/issues/14718), making the two lemmas used by the `sz_positivity` macro public under internal names, and separating data from proof in `binomExpansion` and `archimedeanClassOrderIso`. The difference is that this PR uses the elaborator that already exists in core rather than the `private` term elaborator proposed in #42563, so that it can land now. Once #42563 is in, every `private_decl% (…)` here can be replaced mechanically by `private …`. The 13 files that only need the field syntax are in #44023 and are not touched here.
🤖 Prepared with Claude Code |
tech debt |
136/278 |
Mathlib/Algebra/Group/End.lean,Mathlib/Algebra/Lie/BaseChange.lean,Mathlib/Algebra/Lie/Weights/RootSystem.lean,Mathlib/Algebra/Module/Injective.lean,Mathlib/Algebra/Polynomial/Identities.lean,Mathlib/AlgebraicTopology/FundamentalGroupoid/InducedMaps.lean,Mathlib/AlgebraicTopology/SimplicialSet/HomotopyCat.lean,Mathlib/Analysis/InnerProductSpace/TensorProduct.lean,Mathlib/Analysis/Normed/Lp/PiLp.lean,Mathlib/Analysis/Normed/Lp/ProdLp.lean,Mathlib/Analysis/Normed/Operator/Basic.lean,Mathlib/CategoryTheory/Galois/Decomposition.lean,Mathlib/CategoryTheory/Monoidal/Closed/FunctorCategory/Complete.lean,Mathlib/CategoryTheory/Preadditive/CommGrp_.lean,Mathlib/Combinatorics/SetFamily/AhlswedeZhang.lean,Mathlib/Combinatorics/SimpleGraph/Copy.lean,Mathlib/Combinatorics/SimpleGraph/Regularity/Bound.lean,Mathlib/Computability/Primrec/List.lean,Mathlib/Data/Finset/Union.lean,Mathlib/FieldTheory/PerfectClosure.lean,Mathlib/GroupTheory/DivisibleHull.lean,Mathlib/LinearAlgebra/LinearPMap.lean,Mathlib/LinearAlgebra/RootSystem/Basic.lean,Mathlib/ModelTheory/Algebra/Ring/FreeCommRing.lean,Mathlib/NumberTheory/NumberField/House.lean,Mathlib/NumberTheory/Padics/PadicNumbers.lean,Mathlib/Order/BooleanAlgebra/Basic.lean,Mathlib/Order/Lattice/Congruence.lean,Mathlib/RingTheory/Coalgebra/TensorProduct.lean,Mathlib/RingTheory/DividedPowers/Padic.lean,Mathlib/RingTheory/DividedPowers/SubDPIdeal.lean,Mathlib/RingTheory/PicardGroup.lean,Mathlib/RingTheory/Spectrum/Prime/ChevalleyComplexity.lean,Mathlib/Topology/ExtremallyDisconnected.lean,Mathlib/Topology/MetricSpace/GromovHausdorffRealized.lean,Mathlib/Topology/MetricSpace/Pseudo/Defs.lean,Mathlib/Topology/UnitInterval.lean |
37 |
3 |
['JovanGerb', 'github-actions', 'kim-em'] |
nobody |
0-24271 6 hours ago |
0-36813 10 hours ago |
0-36587 10 hours |
0 |
| 43982 |
Parcly-Taxel author:Parcly-Taxel |
chore: deprecate `sub_lt_zero` |
It is a strictly longer alias of `sub_neg` and therefore wholly redundant. |
easy |
7/7 |
Archive/Wiedijk100Theorems/CubingACube.lean,Mathlib/Algebra/Order/Field/Basic.lean,Mathlib/Algebra/Order/Group/Unbundled/Basic.lean,Mathlib/Analysis/Calculus/Darboux.lean,Mathlib/Analysis/Calculus/Deriv/MeanValue.lean,Mathlib/Data/ZMod/ValMinAbs.lean,Mathlib/NumberTheory/Harmonic/ZetaAsymp.lean |
7 |
4 |
['Parcly-Taxel', 'github-actions', 'themathqueen'] |
nobody |
0-24197 6 hours ago |
0-55917 15 hours ago |
1-33259 1 day |
0 |
| 43964 |
benpigchu author:benpigchu |
feat(Geometry/Euclidean): theorems to prove line parallel from relation between oangles |
We have `EuclideanGeometry.two_zsmul_oangle_of_parallel` to derive relationship of oangles from parallel lines, but we do not have theorems to prove parallel of lines from relationship of oangles. This PR add theorems for that, and their iff version.
---
[](https://gitpod.io/from-referrer/) |
t-euclidean-geometry
new-contributor
|
110/0 |
Mathlib/Geometry/Euclidean/Angle/Oriented/Affine.lean,Mathlib/Geometry/Euclidean/Angle/Oriented/Basic.lean |
2 |
2 |
['github-actions'] |
jsm28 assignee:jsm28 |
0-23835 6 hours ago |
2-22490 2 days ago |
2-22264 2 days |
0 |
| 43899 |
plp127 author:plp127 |
refactor(RepresentationTheory/Character): assume `FiniteDimensional k ρ.asModule` instead |
Change the assumptions of some theorems to `FiniteDimensional k ρ.asModule` instead of `FiniteDimensional k V`, so that typeclass inference may use `ρ` as an argument to typeclass search. Prove that irreducible representations of finite groups are finite dimensional, and use it to remove some `FiniteDimensional` assumptions.
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|
t-algebra label:t-algebra$ |
34/13 |
Mathlib/RepresentationTheory/Basic.lean,Mathlib/RepresentationTheory/Character.lean,Mathlib/RepresentationTheory/Coinvariants.lean,Mathlib/RepresentationTheory/Irreducible.lean |
4 |
7 |
['JX-Mo', 'github-actions', 'plp127'] |
nobody |
0-22837 6 hours ago |
4-201 3 days ago |
3-86375 3 days |
0 |
| 43885 |
plp127 author:plp127 |
refactor: reduce defeq abuse in `Representation.asModule` |
Reduce defeq abuse around `Representation.asModule` by adding explicitly uses of `Representation.asModuleEquiv` to convert between `V` and `ρ.asModule`. Also reorganize some `@[simp]` lemmas and fix some naming issues.
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|
t-algebra
tech debt
label:t-algebra$ |
70/88 |
Mathlib/RepresentationTheory/Basic.lean,Mathlib/RepresentationTheory/Intertwining.lean,Mathlib/RepresentationTheory/Rep/Iso.lean,Mathlib/RepresentationTheory/Submodule.lean,Mathlib/RepresentationTheory/Subrepresentation.lean |
5 |
19 |
['JX-Mo', 'github-actions', 'plp127'] |
nobody |
0-22154 6 hours ago |
0-84621 23 hours ago |
4-80250 4 days |
0 |
| 41925 |
mbkybky author:mbkybky |
feat(CategoryTheory/ObjectProperty/HasFiniteResolution): relation with projective dimension |
`X` has a projective resolution of length `n` if and only if `X` has projective dimension `≤ n`.
- [x] depends on: #41880
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|
t-category-theory |
44/0 |
Mathlib.lean,Mathlib/CategoryTheory/ObjectProperty/HasFiniteResolution/Projective.lean |
2 |
6 |
['github-actions', 'joelriou', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
0-21573 5 hours ago |
0-22340 6 hours ago |
0-41738 11 hours |
0 |
| 40848 |
fbarroero author:fbarroero |
feat(RingTheory/DedekindDomain/SInteger): the ring of S-integers is a localization and a Dedekind Domain |
We prove
```
instance IsDedekindDomain.IsLocalizationSInteger. (R : Type *) [CommRing R] [IsDedekindDomain R]
(S : Set (HeightOneSpectrum R)) (K : Type *) [Field K] [Algebra R K] [IsFractionRing R K]
[Fact (Monoid.IsTorsion (ClassGroup R))] : IsLocalization S.Submonoid (S.integer K)
```
and
```
instance IsDedekindDomain.isDedekindDomainSInteger (R : Type *) [CommRing R] [IsDedekindDomain R]
(S : Set (HeightOneSpectrum R)) (K : Type *) [Field K] [Algebra R K] [IsFractionRing R K]
[Fact (Monoid.IsTorsion (ClassGroup R))] : IsDedekindDomain (S.integer K)
```
This is joint work with @larskuehne.
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|
t-ring-theory
large-import
|
162/4 |
Mathlib/RingTheory/DedekindDomain/SInteger.lean,Mathlib/RingTheory/Ideal/Prime.lean |
2 |
31 |
['copilot-pull-request-reviewer', 'faenuccio', 'fbarroero', 'github-actions', 'xroblot'] |
faenuccio assignee:faenuccio |
0-21482 5 hours ago |
11-5465 11 days ago |
43-41218 43 days |
1 |
| 43976 |
Shreyas4991 author:Shreyas4991 |
refactor: change pset to a structure |
I was fiddling with ZFSets when I found that replacing PSets inductive definition with a structure simplified the file. Some proofs were using the wrong API lemmas. The new definition is as follows:
```lean
structure PSet : Type (u + 1) where
«Type» : Type u
Func : «Type» → PSet
```
Zulip thread : https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/PSets.20as.20structures.3F/near/625458978
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|
t-set-theory |
14/19 |
Mathlib/SetTheory/ZFC/Basic.lean,Mathlib/SetTheory/ZFC/Ordinal.lean,Mathlib/SetTheory/ZFC/PSet.lean |
3 |
9 |
['Shreyas4991', 'eric-wieser', 'github-actions', 'leanprover-radar', 'vihdzp'] |
nobody |
0-21230 5 hours ago |
1-78189 1 day ago |
1-79257 1 day |
0 |
| 39067 |
mbkybky author:mbkybky |
feat(Algebra/Module): define modules admitting finite free resolutions |
We say that an `R`-module `M` has a finite free resolution if there exists an exact sequence `0 ⟶ Eₙ ⟶ ⋯ ⟶ E₀ ⟶ M ⟶ 0` such that `Eᵢ` are finite free `R`-modules.
- [x] depends on: #41880
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|
t-algebra label:t-algebra$ |
168/0 |
Mathlib.lean,Mathlib/Algebra/Module/FiniteFreeResolution/Basic.lean |
2 |
4 |
['github-actions', 'joelriou', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
joelriou assignee:joelriou |
0-21055 5 hours ago |
0-22251 6 hours ago |
39-60563 39 days |
2 |
| 43953 |
hasjack author:hasjack |
feat(Combinatorics/SimpleGraph/LapMatrix): bound Laplacian eigenvalues by `|V|` |
Prove that every Laplacian eigenvalue of a finite simple graph is at most
the number of vertices, via comparison of the Rayleigh quotient with the
complete graph. Also record the underlying quadratic-form bound
`xᵀ L x ≤ |V| · ‖x‖²`.
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Adds `dotProduct_mulVec_lapMatrix_le_card` and `eigenvalues_lapMatrix_le_card`
in `LapMatrix.lean` only. The claim is the uniform bound `λ ≤ |V|` for every
indexed eigenvalue; it does not assert `|V| ∈ spectrum` for every graph.
Searched existing LapMatrix API (PSD, `zero_mem_spectrum_lapMatrix`,
`lapMatrix_top`) and did not find a card upper bound under another name.
Happy to rename if a preferred lemma already exists. |
new-contributor
t-combinatorics
LLM-generated
|
37/1 |
Mathlib/Combinatorics/SimpleGraph/LapMatrix.lean,Mathlib/Data/Matrix/Mul.lean |
2 |
61 |
['Parcly-Taxel', 'SnirBroshi', 'github-actions', 'hasjack'] |
nobody |
0-20023 5 hours ago |
0-67042 18 hours ago |
2-60952 2 days |
0 |
| 44030 |
JX-Mo author:JX-Mo |
feat(GroupTheory/Coset): add `mk_mul_eq_iff` and a left cancel lemma |
Add a simp lemma saying "`abH = acH` iff `bH = cH`" for left cosets
`MulAction.Quotient.smul_mk, smul_eq_mul` are simp lemmas and they will turn `a • bH` into `abH` |
t-group-theory
easy
|
10/0 |
Mathlib/GroupTheory/Coset/Defs.lean |
1 |
2 |
['JX-Mo', 'github-actions'] |
nobody |
0-19315 5 hours ago |
0-38731 10 hours ago |
0-38505 10 hours |
0 |
| 38331 |
Thmoas-Guan author:Thmoas-Guan |
feat(RingTheory/AdicCompletion): AdicCompletion of Noetherian ring is Noetherian |
For `I` an ideal of `R`, if `R/I` is Noetherian and `I` is finitely generated, the the completion of `R` wrt `I` is Noetherian.
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|
t-ring-theory
large-import
|
214/3 |
Mathlib/RingTheory/AdicCompletion/Noetherian.lean |
1 |
18 |
['Thmoas-Guan', 'erdOne', 'faenuccio', 'github-actions', 'mathlib-dependent-issues'] |
faenuccio assignee:faenuccio |
0-18928 5 hours ago |
0-25293 6 hours ago |
39-29474 39 days |
5 |
| 43434 |
Parcly-Taxel author:Parcly-Taxel |
refactor: remove `set_option` in `ZagierTwoSquares` |
I refactor one of my very first non-porting contributions to mathlib by changing `zagierSet` to a structure `Zagier.Triple` and rewriting the whole proof to avoid `set_option`s. This required changing the type of `card_fixedPoints_modEq` to accept just `α → α` rather than `Function.End α`.
No deprecations are added since this a leaf file in Archive. |
t-number-theory
tech debt
t-group-theory
|
112/169 |
Archive/ZagierTwoSquares.lean,Mathlib/GroupTheory/Perm/Cycle/Type.lean |
2 |
3 |
['Parcly-Taxel', 'github-actions', 'jcommelin'] |
nobody |
0-18673 5 hours ago |
13-41888 13 days ago |
17-19111 17 days |
0 |
| 44042 |
ooovi author:ooovi |
feat(LinearAlgebra/AffineSubspace): define the range of an `AffineMap` |
This PR adds the range of affine maps and provides some API, following `LinearMap.range`.
AI disclosure: I used LLMs for library search and code review.
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|
t-algebra
t-convex-geometry
label:t-algebra$ |
91/0 |
Mathlib.lean,Mathlib/LinearAlgebra/AffineSpace/AffineSubspace/Range.lean |
2 |
1 |
['github-actions'] |
nobody |
0-17875 4 hours ago |
0-20327 5 hours ago |
0-20268 5 hours |
0 |
| 26214 |
Thmoas-Guan author:Thmoas-Guan |
feat(Algebra): definition of depth |
In this PR, we defined the depth of two modules as the minimal order of nonvanishing `Ext` and the `I-depth` for ideal `I` and some basic properties. Including the equivalence of the two in the condition of rees theorem.
---
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|
t-algebra label:t-algebra$ |
404/0 |
Mathlib.lean,Mathlib/RingTheory/Depth/Basic.lean |
2 |
48 |
['Thmoas-Guan', 'github-actions', 'jjdishere', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'mathlib4-merge-conflict-bot'] |
ocfnash assignee:ocfnash |
0-17718 4 hours ago |
1-43836 1 day ago |
77-72516 77 days |
20 |
| 43750 |
JovanGerb author:JovanGerb |
feat(Translate): command for adding a translation |
This PR introduced `to_dual_for`, a command that adds a translation for a given constant. It gives two benefits:
- When a translation has to be added just to make `to_dual` work, it is much more convenient to do so with `to_dual_for`
- When you want to translate a definition to another definition but this is not possible because a proof argument does not match up, you can now use `to_dual_for` to do the translation, which was previously not possible. This is because `to_dual_for` lets you translate to an arbitrary expression, rather than to a constant.
This is in particular useful for `Cone.ext`/`Cocone.ext`
I am not sure what the command should be called. I considered the potential names `to_dual_exising` or just plain `to_dual`, but I thought those might cause confusion with the attribute syntax we already have.
This PR removes some declarations without deprecations. I claim that this is acceptable because all of the removed declarations were added just to make `to_dual` work and haven't been used for anything else.
By the way, maybe it's becoming time to split the file Mathlib.Tactic.Translate.Core?
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|
t-meta |
165/212 |
Mathlib/Algebra/Tropical/Basic.lean,Mathlib/CategoryTheory/Category/Basic.lean,Mathlib/CategoryTheory/CommSq.lean,Mathlib/CategoryTheory/Comma/Arrow.lean,Mathlib/CategoryTheory/Comma/Basic.lean,Mathlib/CategoryTheory/Discrete/Basic.lean,Mathlib/CategoryTheory/EqToHom.lean,Mathlib/CategoryTheory/Equivalence.lean,Mathlib/CategoryTheory/Functor/Category.lean,Mathlib/CategoryTheory/Iso.lean,Mathlib/CategoryTheory/Limits/Cones.lean,Mathlib/CategoryTheory/Limits/Shapes/Products.lean,Mathlib/CategoryTheory/NatTrans.lean,Mathlib/CategoryTheory/Preadditive/Injective/Basic.lean,Mathlib/Data/Prod/Lex.lean,Mathlib/Order/Basic.lean,Mathlib/Order/Interval/Finset/Defs.lean,Mathlib/Order/Lattice.lean,Mathlib/Tactic/Translate/Core.lean,Mathlib/Tactic/Translate/ToDual.lean,MathlibTest/Attribute/ToAdditive/Basic.lean,MathlibTest/Attribute/ToDual.lean |
22 |
14 |
['JovanGerb', 'SnirBroshi', 'github-actions', 'hawkrobe'] |
nobody |
0-17059 4 hours ago |
6-20028 6 days ago |
7-79098 7 days |
2 |
| 42067 |
themathqueen author:themathqueen |
feat(RingTheory): define Frobenius algebras |
A `FrobeniusAlgebra` is an algebra that is equipped with a `dual : Module.Dual R A` such that the bilinear form `(LinearMap.mul R A).compr₂ dual` is bijective.
A straightforward example: a matrix over a field with the trace as its dual is a Frobenius algebra. (Not an instance because there can be other choices of the dual.)
A `FrobeniusAlgebra` induces a coalgebra such that it satisfies the Frobenius equations (`Coalgebra.IsFrobenius`).
Note that this is not an instance since you can have a different coalgebra that is not equal to this one (for example, if you have a `Bialgebra R A` where `A` is not isomorphic to `R` then the coalgebra cannot satisfy the Frobenius equations, so this is not equal to the coalgebra coming from a `FrobeniusAlgebra R A`).
A coalgebra that satisfies the Frobenius equations (`Coalgebra.IsFrobenius`) naturally induces a Frobenius algebra (`FrobeniusAlgebra`).
---
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|
t-ring-theory |
287/3 |
Mathlib.lean,Mathlib/RingTheory/Coalgebra/IsFrobenius.lean,Mathlib/RingTheory/FrobeniusAlgebra/Basic.lean,Mathlib/RingTheory/FrobeniusAlgebra/IsFrobenius.lean |
4 |
5 |
['JX-Mo', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
0-15514 4 hours ago |
0-17038 4 hours ago |
0-16973 4 hours |
0 |
| 44037 |
mathlib-update-dependencies author:mathlib-update-dependencies |
chore: update Mathlib dependencies 2026-09-21 |
This PR updates the Mathlib dependencies.
It is not merged automatically: a maintainer should look at what the new
dependency revisions bring in before sending it to bors.
---
[workflow run for this PR](https://github.com/leanprover-community/mathlib4/actions/runs/35603112365) |
dependency-bump |
2/2 |
.github/actions/get-mathlib-ci/action.yml,lake-manifest.json |
2 |
1 |
['github-actions'] |
nobody |
0-14264 3 hours ago |
0-29421 8 hours ago |
0-29195 8 hours |
0 |
| 43852 |
ZRTMRH author:ZRTMRH |
feat(Combinatorics/Quiver/Schreier): add Schreier Cayley basics |
Defined Cayley graph as a coset Schreier graph. Proved connectivity and vertex-transitivity on Cayley graphs, as promised in #38310.
Follow-up to #38310, this is the 3rd split pr from #35467.
This PR was written with AI assistance (Claude). The code has been reviewed by the author.
P.S. cayley_subsingleton_weaklyConnectedComponent's proof is generic and I can extract it to Quiver/ConnectedComponent.lean as a weak-connectivity lemma, if it is wanted.
---
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|
new-contributor
t-combinatorics
large-import
LLM-generated
|
287/7 |
Mathlib/Combinatorics/Quiver/Schreier.lean |
1 |
9 |
['SnirBroshi', 'ZRTMRH', 'github-actions', 'vlad902'] |
nobody |
0-13270 3 hours ago |
5-72284 5 days ago |
5-72058 5 days |
0 |
| 41591 |
xroblot author:xroblot |
refactor(NumberTheory/RamificationInertia): ring-level decomposition and inertia predicates |
Refactor of the decomposition/inertia infrastructure in Hilbert Theory to the level of rings with two new predicates `Ideal.IsDecompositionRing G P C` and `Ideal.IsInertiaRing G P C`: for a group `G` acting on a commutative ring `B` with prime `P`, they state that `B` is Galois over the ring `C` with Galois group the decomposition group, resp. the inertia group of P.
The old field-level classes and their whole API are deprecated in favor of the ring versions.
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|
t-number-theory |
392/52 |
Mathlib/Algebra/Group/Subgroup/Basic.lean,Mathlib/NumberTheory/RamificationInertia/HilbertTheory.lean,Mathlib/RingTheory/Ideal/Maps.lean,Mathlib/RingTheory/Ideal/Pointwise.lean,Mathlib/RingTheory/RamificationInertia/Inertia.lean,Mathlib/RingTheory/RamificationInertia/Ramification.lean |
6 |
65 |
['github-actions', 'jcommelin', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'tb65536', 'xroblot'] |
tb65536 assignee:tb65536 |
0-13264 3 hours ago |
0-22582 6 hours ago |
19-32776 19 days |
6 |
| 42142 |
philipp-svinger author:philipp-svinger |
feat(Analysis/ODE): peano existence theorem, Tonelli approximation 1 |
Add Tonelli approximation method for ODEs.
Implement the structure IsPeano similar to IsPicardLindelof. Construct a sequence of approximations using Tonelli technique.
First step towards Peano existence
Co-authored-by: Florian Grube <fgrube@math.uni-bielefeld.de>
Co-authored-by: Paul Niessner <pniessner@math.uni-bielefeld.de>
Co-authored-by: Julian Rolfes <jrolfes@math.uni-bielefeld.de>
Co-authored-by: Luke Schleef <lschleef@math.uni-bielefeld.de>
Co-authored-by: Philipp Svinger <psvinger@math.uni-bielefeld.de>
---
We want to add the proof of the Peano existence theorem for ODEs, using Tonelli approximations.
This will be a series of PRs working towards this goal. In this first PR, we
implement the structure IsPeano similar to IsPicardLindelof and construct a sequence of approximations using Tonelli technique. See our further PRs for more information, last: #42148
---
The statements, definitions and proofs were written without AI.
AI was used afterwards to help us to adapt our code to the style and naming conventions.
We also used it in the process of writing a documentation.
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|
t-analysis
new-contributor
|
193/0 |
Mathlib.lean,Mathlib/Analysis/ODE/Peano.lean |
2 |
21 |
['github-actions', 'mcdoll', 'philipp-svinger', 'sgouezel'] |
sgouezel assignee:sgouezel |
0-12607 3 hours ago |
1-20602 1 day ago |
52-82222 52 days |
5 |
| 43955 |
bryangingechen author:bryangingechen |
ci(build_fork.yml): supersede fork CI runs by PR head sha instead of arrival order |
This PR addresses a race condition reported at [#mathlib4 > [pre-commit.ci lite] cancelling CI](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/.5Bpre-commit.2Eci.20lite.5D.20cancelling.20CI/with/623673003). We replace `build_fork.yml`'s `concurrency` block with a `guard` job that picks the surviving fork run by comparing against the PR's live head sha, rather than by the order GitHub created the runs in.
<details><summary>Details of the race</summary>
When two pushes to a PR occur in quick succession, sometimes the CI for the HEAD commit is triggered before CI for the previous commit starts, causing `cancel-in-progress` to cancel CI for the HEAD commit, causing the CI to get stuck until a manual re-trigger or another push. Example: on #43646, the run for commit `d046ac32` (committed 22:42:59) was created at 22:43:03 and [cancelled](https://github.com/leanprover-community/mathlib4/actions/runs/34538806707) one second later by the run for `a201b6db` (committed 22:41:49), which then [reported the PR's status](https://github.com/leanprover-community/mathlib4/actions/runs/34538807811) for a 70-second-stale commit.
</details>
The new guard job skips the build when its sha is no longer the PR head, and otherwise cancels the branch's other in-flight runs. The guard fails open: an API error or a failure of `guard` itself builds anyway so a mistake costs a duplicate build rather than a PR with no CI. Never dispatching stale builds saves roughly what superseded runs now cost by living ~30s longer, so this should be roughly neutral with respect to runner usage.
Two companion changes:
- A run skipped by the guard still concludes `success`, and `decls-diff.yml` read `success` as "there is an `import-graph` artifact to diff", so it now checks for the artifact instead.
- `build_fork.yml` stops passing `concurrency_group` to `build_template.yml`, which would otherwise log a group that no longer exists; the input in `build_template.yml` also becomes optional.
🤖 Generated with [Claude Code](https://claude.com/claude-code) |
CI
LLM-generated
|
119/11 |
.github/workflows/build_fork.yml,.github/workflows/build_template.yml,.github/workflows/decls-diff.yml |
3 |
6 |
['github-actions', 'marcelolynch'] |
nobody |
0-12588 3 hours ago |
2-56645 2 days ago |
2-56419 2 days |
0 |
| 41484 |
FernandoChu author:FernandoChu |
feat(CategoryTheory): kan extensions from isos |
This PR constructs lifts out of isomorphisms of 1-cells, and shows that being (abs) Kan is preserved by this. This is done for all four notions of left/right lifts/extensions.
This is needed for the oo-cosmos project.
----
**AI disclosure**. Claude was used in defining the API for the left extension case. After manually fixing its bad proofs/definitions/docstrings, Claude was later asked to replicate this for the other three cases, which I again finetuned. |
t-category-theory
LLM-generated
large-import
maintainer-merge
tech debt
|
413/79 |
Mathlib/CategoryTheory/Bicategory/Extension.lean,Mathlib/CategoryTheory/Bicategory/Kan/IsKan.lean |
2 |
24 |
['FernandoChu', 'github-actions', 'grunweg', 'robin-carlier'] |
robin-carlier assignee:robin-carlier |
0-12422 3 hours ago |
21-19905 21 days ago |
73-25963 73 days |
1 |
| 37688 |
grunweg author:grunweg |
feat: try using grind as gcongr discharger |
Let's see what benchmarks say!
Also, this exposes some underlying bug in the gcongr discharger handling (which I have worked around in the handful of places hitting it).
---
- [x] depends on: #37591
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t-meta
RFC
|
69/112 |
Archive/Imo/Imo1988Q6.lean,Archive/Imo/Imo2010Q5.lean,Archive/Imo/Imo2019Q4.lean,Archive/Imo/Imo2020Q2.lean,Mathlib/Algebra/Order/BigOperators/GroupWithZero/Finset.lean,Mathlib/Algebra/Order/BigOperators/Ring/Finset.lean,Mathlib/Algebra/Order/BigOperators/Ring/Multiset.lean,Mathlib/Algebra/Order/Field/Basic.lean,Mathlib/Algebra/Order/GroupWithZero/Basic.lean,Mathlib/Algebra/Order/Interval/Set/Instances.lean,Mathlib/Algebra/Order/Ring/Abs.lean,Mathlib/Algebra/Order/Ring/GeomSum.lean,Mathlib/Algebra/Order/Ring/Int.lean,Mathlib/Algebra/Order/Ring/Unbundled/Basic.lean,Mathlib/Analysis/Analytic/Basic.lean,Mathlib/Analysis/Calculus/FDeriv/Measurable.lean,Mathlib/Analysis/Calculus/TangentCone/Seq.lean,Mathlib/Analysis/Complex/ValueDistribution/SecondMainTheorem.lean,Mathlib/Analysis/Convex/MetricSpace.lean,Mathlib/Analysis/Convolution.lean,Mathlib/Analysis/ODE/DiscreteGronwall.lean,Mathlib/Analysis/PSeries.lean,Mathlib/Analysis/Polynomial/MahlerMeasure.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/ExpLog/Order.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Chebyshev/Extremal.lean,Mathlib/Basic/Real/Basic.lean,Mathlib/Combinatorics/Additive/AP/Three/Behrend.lean,Mathlib/Combinatorics/Additive/VerySmallDoubling.lean,Mathlib/Combinatorics/SimpleGraph/Extremal/Turan.lean,Mathlib/Computability/AkraBazzi/GrowsPolynomially.lean,Mathlib/GroupTheory/Archimedean.lean,Mathlib/MeasureTheory/Integral/FinMeasAdditive.lean,Mathlib/MeasureTheory/Integral/PeakFunction.lean,Mathlib/NumberTheory/Bertrand.lean,Mathlib/NumberTheory/Harmonic/ZetaAsymp.lean,Mathlib/NumberTheory/LSeries/SumCoeff.lean,Mathlib/NumberTheory/LucasLehmer.lean,Mathlib/NumberTheory/NumberField/Discriminant/Basic.lean,Mathlib/NumberTheory/PellMatiyasevic.lean,Mathlib/NumberTheory/Transcendental/Liouville/Basic.lean,Mathlib/Order/Monotone/Extension.lean,Mathlib/Probability/Distributions/Fernique.lean,Mathlib/Probability/Martingale/Basic.lean,Mathlib/Probability/Process/HittingTime.lean,Mathlib/RingTheory/Spectrum/Prime/ChevalleyComplexity.lean,Mathlib/Tactic/GCongr.lean,Mathlib/Tactic/Positivity/Core.lean,Mathlib/Topology/Algebra/Polynomial.lean,Mathlib/Topology/Instances/ENNReal/Lemmas.lean,MathlibTest/Tactic/GCongr/Inequalities.lean |
50 |
15 |
['JovanGerb', 'github-actions', 'grunweg', 'leanprover-radar', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
0-12274 3 hours ago |
0-65393 18 hours ago |
0-65174 18 hours |
0 |
| 42802 |
Zeta-Wu author:Zeta-Wu |
feat(CategoryTheory): relate equivalences and skeletons |
This PR supersedes the previously closed PR #42789.
It adds several related characterizations of equivalences of categories, together with an API showing that an equivalence induces an isomorphism between the corresponding skeletons.
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|
t-category-theory
new-contributor
|
66/8 |
Mathlib/CategoryTheory/EssentiallySmall.lean,Mathlib/CategoryTheory/Skeletal.lean |
2 |
28 |
['Zeta-Wu', 'github-actions', 'joelriou', 'robin-carlier'] |
joelriou assignee:joelriou |
0-12233 3 hours ago |
0-12258 3 hours ago |
33-36993 33 days |
0 |
| 43339 |
gasparattila author:gasparattila |
feat(Topology/Algebra): continuity of composing by a `ContinuousAffineMap` |
This allows upgrading `signedDist` to a `ContinuousAffineMap`.
---
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|
t-topology |
88/5 |
Mathlib/Geometry/Euclidean/SignedDist.lean,Mathlib/Topology/Algebra/ContinuousAffineMap/Topology.lean |
2 |
5 |
['gasparattila', 'github-actions', 'themathqueen'] |
nobody |
0-11796 3 hours ago |
1-81924 1 day ago |
19-11007 19 days |
1 |
| 44044 |
joelriou author:joelriou |
feat(CategoryTheory): pure morphisms are filtered colimits of split monomorphisms |
This holds in a locally presentable category (or an accessible category with pushouts).
---
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[](https://gitpod.io/from-referrer/)
|
t-category-theory
tech debt
large-import
|
152/9 |
Mathlib/CategoryTheory/Comma/Arrow.lean,Mathlib/CategoryTheory/EpiMono.lean,Mathlib/CategoryTheory/Limits/Connected.lean,Mathlib/CategoryTheory/Limits/Shapes/Pullback/IsPullback/Basic.lean,Mathlib/CategoryTheory/Presentable/CardinalPure.lean,Mathlib/CategoryTheory/Presentable/Comma.lean |
6 |
1 |
['github-actions'] |
nobody |
0-11667 3 hours ago |
0-14705 4 hours ago |
0-14721 4 hours |
0 |
| 42421 |
SnirBroshi author:SnirBroshi |
feat(Order/CompactlyGenerated/Basic): the supremum of compact elements is compact and other basics |
- `⊥` is compact
- `⊔` of compacts is compact
- `WellFoundedGT` implies that every element is compact
- Generalize `IsCompactlyGenerated` to use `IsLUB`, like `IsCompactElement` & `IsAtomistic`
---
<!-- Your PR title will become the first line of the commit message.
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[](https://gitpod.io/from-referrer/)
|
t-order
maintainer-merge
|
97/36 |
Mathlib/Algebra/Lie/Submodule.lean,Mathlib/FieldTheory/IntermediateField/Adjoin/Basic.lean,Mathlib/LinearAlgebra/Span/Basic.lean,Mathlib/Order/CompactlyGenerated/Basic.lean,Mathlib/Order/CompactlyGenerated/Intervals.lean |
5 |
17 |
['SnirBroshi', 'YaelDillies', 'github-actions'] |
nobody |
0-10379 2 hours ago |
0-84493 23 hours ago |
36-54564 36 days |
0 |
| 42735 |
FrankieNC author:FrankieNC |
chore(Probability/ProbabilityMassFunction): remove defeq option in Monad |
Remove the `set_option backward.isDefEq.respectTransparency` false in `Mathlib/Probability/ProbabilityMassFunction/Monad.lean`, on `bindOnSupport_bindOnSupport`.
---
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|
tech debt
t-measure-probability
|
17/6 |
Mathlib/Probability/ProbabilityMassFunction/Monad.lean |
1 |
1 |
['github-actions'] |
nobody |
0-9402 2 hours ago |
39-12082 39 days ago |
39-11856 39 days |
0 |
| 41947 |
hawkrobe author:hawkrobe |
feat(Order/Antisymmetrization): comparable minimal elements are equivalent |
a minimal element is antisymmetrically equivalent to every comparable element satisfying the predicate, so two comparable minimal elements are equivalent in a preorder and equal in a partial order (Mathlib has the partial-order form `Minimal.eq_of_ge` but not the preorder form.)
---
[](https://gitpod.io/from-referrer/) |
new-contributor
t-order
|
25/4 |
Mathlib/Logic/Relation.lean,Mathlib/Order/Antisymmetrization.lean,Mathlib/Order/Bounds/Basic.lean |
3 |
3 |
['github-actions', 'hawkrobe'] |
nobody |
0-9286 2 hours ago |
63-53334 63 days ago |
63-53108 63 days |
0 |
| 41273 |
SnirBroshi author:SnirBroshi |
feat(Order/ConditionallyCompleteLattice): antitone versions of `sSup (f '' s)` lemmas |
`f (sInf s) = sSup (f '' s)` and `f (sSup s) = sInf (f '' s)` for an antitone function and a finite nonempty set.
Matches the existing monotone lemmas.
---
Followup to #35822
I think the `Basic.lean` lemmas don't hold for `{Mono/Anti}toneOn f s`, but the `Finset.lean` lemmas should, though I haven't done that yet.
<!-- Your PR title will become the first line of the commit message.
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|
t-order
maintainer-merge
|
50/17 |
Mathlib/Order/ConditionallyCompleteLattice/Basic.lean,Mathlib/Order/ConditionallyCompleteLattice/Finset.lean |
2 |
7 |
['github-actions', 'mathlib-merge-conflicts', 'themathqueen'] |
nobody |
0-8736 2 hours ago |
4-5176 4 days ago |
39-57217 39 days |
0 |
| 43749 |
joelcanary author:joelcanary |
feat(NumberTheory/ArithmeticFunction): prodPrimeFactors_one_sub for every n |
`IsMultiplicative.prodPrimeFactors_one_sub_of_squarefree` gives
```
∏ p ∈ n.primeFactors, (1 - f p) = ∑ d ∈ n.divisors, μ d * f d
```
only for squarefree `n`. The hypothesis is not needed: the summands with `d` not squarefree vanish (`μ d = 0`), and the squarefree divisors of `n` are exactly the divisors of `∏ p ∈ n.primeFactors, p`, which is squarefree with the same prime factors. So the general statement reduces to the squarefree one.
This PR
- adds `IsMultiplicative.prodPrimeFactors_one_sub`, the identity for every `n ≠ 0`, with the same orientation and naming as the existing lemma;
- deprecates `IsMultiplicative.prodPrimeFactors_one_sub_of_squarefree` in favour of it (as requested in review), and inlines its proof.
No new imports and no new auxiliary lemmas: the fact that a squarefree divisor of `n` divides `∏ p ∈ n.primeFactors, p` is `Nat.prod_primeFactors_dvd_iff` + `Nat.primeFactors_prod_primeFactors` + `Nat.primeFactors_mono`, used in place. The file builds and `lake exe lint-style` is clean on current master.
**AI use disclosure.** I used an AI tool (an agent running on my machine) to write the Lean code and this description. I set the goal (drop the squarefree hypothesis), reviewed every declaration, and checked the branch locally with `lake build` and `lake exe lint-style` before each push. I will answer review questions myself.
|
t-number-theory
new-contributor
LLM-generated
|
39/9 |
Mathlib/NumberTheory/ArithmeticFunction/Moebius.lean,Mathlib/NumberTheory/SelbergSieve.lean |
2 |
6 |
['github-actions', 'joelcanary', 'wwylele'] |
nobody |
0-8292 2 hours ago |
9-21176 9 days ago |
9-20950 9 days |
0 |
| 43849 |
joelriou author:joelriou |
feat(CategoryTheory): composition of right derived functors |
This is only the natural transformation $$R(F \ggg G) \to RF \ggg RG$$ between the derived functor of a composition and the composition of the derived functors. When we have suitable assumptions about shifts, we show that this natural transformation also commutes with shifts.
---
- [x] depends on: #43809
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|
t-category-theory |
155/0 |
Mathlib.lean,Mathlib/CategoryTheory/Functor/Derived/RightDerivedComposition.lean,Mathlib/CategoryTheory/Functor/Derived/RightDerivedCompositionCommShift.lean |
3 |
2 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
0-7110 1 hour ago |
0-9613 2 hours ago |
0-11594 3 hours |
0 |
| 44050 |
Multramate author:Multramate |
chore: fix camelCase capitalisation in declaration names |
Split out of #43889 (see #44049 for the misspelling half).
Every name here is already spelled with the right letters in the right order — old and new are identical letter-for-letter once case is ignored — so this is a naming-convention judgement, not a spelling one.
- Lost hump inside a compound: `mapAlghom` → `mapAlgHom`, `toNonUnitalNonAssocring_injective` → `toNonUnitalNonAssocRing_injective`, `lsmul_eq_distribSMultoLinearMap` → `lsmul_eq_distribSMulToLinearMap`, `tensoreqLocusEquiv` → `tensorEqLocusEquiv`
- Over-capitalised against the declaration it names: `preservesCoLimit_curriedTensor` → `preservesColimit_curriedTensor`
- Flattened camelCase: `eventuallyle` → `eventuallyLE`, `relindex_adjoinNegOne_eq_two` → `relIndex_adjoinNegOne_eq_two`
Each keeps a `@[deprecated] alias`.
Note: `toNonUnitalNonAssocring_injective` occurs twice in `Mathlib/Algebra/Ring/Ext.lean` — once in the `NonUnitalRing` namespace and once in `NonAssocRing` — so one rename produces two hunks and two aliases. It is not a duplicated diff. |
LLM-generated
easy
|
34/11 |
Mathlib/Algebra/Ring/Ext.lean,Mathlib/Analysis/Complex/Hadamard.lean,Mathlib/CategoryTheory/Monoidal/Limits/Preserves.lean,Mathlib/LinearAlgebra/BilinearMap.lean,Mathlib/NumberTheory/ModularForms/ArithmeticSubgroups.lean,Mathlib/RingTheory/AdjoinRoot.lean,Mathlib/RingTheory/Flat/Equalizer.lean,Mathlib/RingTheory/Regular/IsSMulRegular.lean |
8 |
2 |
['github-actions', 'grunweg'] |
grunweg assignee:grunweg |
0-6923 1 hour ago |
0-6967 1 hour ago |
0-7565 2 hours |
0 |
| 38966 |
smmercuri author:smmercuri |
chore(Algebra): `coe_ringHom` -> `coe_toRingHom` |
---
- [x] depends on: #38950
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|
t-algebra label:t-algebra$ |
110/67 |
Mathlib/Algebra/Algebra/Equiv.lean,Mathlib/Algebra/Algebra/Hom.lean,Mathlib/Algebra/MvPolynomial/Basic.lean,Mathlib/Algebra/MvPolynomial/Eval.lean,Mathlib/Algebra/Order/Hom/Ring.lean,Mathlib/Algebra/Polynomial/AlgebraMap.lean,Mathlib/Algebra/Ring/Equiv.lean,Mathlib/AlgebraicGeometry/Group/Affine.lean,Mathlib/AlgebraicGeometry/Morphisms/UniversallyInjective.lean,Mathlib/AlgebraicGeometry/Spec.lean,Mathlib/Data/ZMod/Basic.lean,Mathlib/FieldTheory/Extension.lean,Mathlib/FieldTheory/IsAlgClosed/Basic.lean,Mathlib/FieldTheory/PurelyInseparable/Basic.lean,Mathlib/FieldTheory/SplittingField/IsSplittingField.lean,Mathlib/NumberTheory/Cyclotomic/CyclotomicCharacter.lean,Mathlib/NumberTheory/NumberField/CMField.lean,Mathlib/NumberTheory/NumberField/Ideal/KummerDedekind.lean,Mathlib/NumberTheory/NumberField/InfinitePlace/Ramification.lean,Mathlib/RingTheory/AdjoinRoot.lean,Mathlib/RingTheory/DedekindDomain/Different.lean,Mathlib/RingTheory/DedekindDomain/Instances.lean,Mathlib/RingTheory/FinitePresentation.lean,Mathlib/RingTheory/FractionalIdeal/Operations.lean,Mathlib/RingTheory/GradedAlgebra/AlgHom.lean,Mathlib/RingTheory/GradedAlgebra/RingHom.lean,Mathlib/RingTheory/IntegralClosure/IntegralRestrict.lean,Mathlib/RingTheory/Jacobson/Ring.lean,Mathlib/RingTheory/LocalRing/ResidueField/Ideal.lean,Mathlib/RingTheory/LocalRing/ResidueField/Polynomial.lean,Mathlib/RingTheory/Localization/Basic.lean,Mathlib/RingTheory/Localization/FractionRing.lean,Mathlib/RingTheory/RingHom/StandardSmooth.lean,Mathlib/RingTheory/RingInvo.lean,Mathlib/RingTheory/Smooth/Basic.lean,Mathlib/RingTheory/Unramified/Basic.lean |
36 |
33 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'smmercuri', 'themathqueen'] |
nobody |
0-6880 1 hour ago |
0-11201 3 hours ago |
32-83984 32 days |
0 |
| 37279 |
imalinowskip author:imalinowskip |
feat(Probability): multivariate CLT |
---
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|
new-contributor
t-measure-probability
|
150/11 |
Mathlib/MeasureTheory/Function/ConvergenceInDistribution.lean,Mathlib/MeasureTheory/Measure/LevyConvergence.lean,Mathlib/Probability/CentralLimitTheorem.lean,Mathlib/Probability/CramerWold.lean,Mathlib/Probability/Distributions/Gaussian/Multivariate.lean |
5 |
29 |
['EtienneC30', 'RemyDegenne', 'github-actions', 'imalinowskip', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
EtienneC30 assignee:EtienneC30 |
0-6741 1 hour ago |
0-6741 1 hour ago |
20-58000 20 days |
0 |
| 44049 |
Multramate author:Multramate |
chore: fix misspellings in declaration names |
Split out of #43889, which mixed four different kinds of rename and was slow to review as one diff.
Every name here contains a genuine letter-level error — a dropped, doubled, inserted or transposed letter — and the new name is the same tokens, in the same order, with the same capitalisation. So the whole diff is one decision repeated: is the new spelling the right word? Each rename keeps a `@[deprecated] alias`.
Two exceptions worth knowing before reading:
- `isIso_SpecMap_stakMap_localization` is the one name whose capitalisation also changes (`SpecMap` → `specMap`, matching how `Spec.map` is spelled).
- `MonadCoherehnceHom` is a class rather than a lemma, spans five tactic files, and carries this PR's only import addition, needed so its alias elaborates.
`sylveserMap_comp_adjSylvester` and `adjSylvester_comp_sylveserMap` reflow their signatures onto an extra line to stay under 100 columns; no semantic change.
---
The other three parts of #43889: camelCase capitalisation, names that do not match their statements, and the instance/`to_additive` aliases. |
LLM-generated
easy
|
180/77 |
Mathlib/Algebra/Homology/ShortComplex/Homology.lean,Mathlib/Algebra/Order/Field/Basic.lean,Mathlib/Algebra/Polynomial/Bivariate.lean,Mathlib/Algebra/Ring/Equiv.lean,Mathlib/AlgebraicGeometry/Morphisms/Finite.lean,Mathlib/AlgebraicGeometry/OpenImmersion.lean,Mathlib/AlgebraicGeometry/Spec.lean,Mathlib/Analysis/Analytic/CPolynomial.lean,Mathlib/Analysis/Real/Hyperreal.lean,Mathlib/Analysis/SpecialFunctions/BinaryEntropy.lean,Mathlib/CategoryTheory/Monoidal/Action/Basic.lean,Mathlib/CategoryTheory/Monoidal/CommGrp_.lean,Mathlib/CategoryTheory/Monoidal/DayConvolution.lean,Mathlib/CategoryTheory/Sites/Descent/DescentData.lean,Mathlib/CategoryTheory/Sites/Hypercover/Saturate.lean,Mathlib/CategoryTheory/Sites/Hypercover/SheafOfTypes.lean,Mathlib/CategoryTheory/Sites/IsSheafFor.lean,Mathlib/Data/Set/Prod.lean,Mathlib/LinearAlgebra/Alternating/Basic.lean,Mathlib/LinearAlgebra/Alternating/DomCoprod.lean,Mathlib/LinearAlgebra/BilinearForm/DualLattice.lean,Mathlib/LinearAlgebra/TensorProduct/Quotient.lean,Mathlib/NumberTheory/LSeries/Deriv.lean,Mathlib/NumberTheory/LSeries/Dirichlet.lean,Mathlib/Order/Category/PartOrdEmb.lean,Mathlib/RingTheory/Adjoin/Polynomial/Bivariate.lean,Mathlib/RingTheory/Etale/Locus.lean,Mathlib/RingTheory/Extension/Basic.lean,Mathlib/RingTheory/Flat/FaithfullyFlat/Basic.lean,Mathlib/RingTheory/Localization/AtPrime/Extension.lean,Mathlib/RingTheory/Polynomial/Resultant/Basic.lean,Mathlib/RingTheory/Polynomial/UniversalFactorizationRing.lean,Mathlib/Tactic/CategoryTheory/Bicategory/Datatypes.lean,Mathlib/Tactic/CategoryTheory/Coherence/Basic.lean,Mathlib/Tactic/CategoryTheory/Coherence/Datatypes.lean,Mathlib/Tactic/CategoryTheory/Coherence/PureCoherence.lean,Mathlib/Tactic/CategoryTheory/Monoidal/Datatypes.lean,Mathlib/Topology/Compactness/Lindelof.lean,Mathlib/Topology/Metrizable/CompletelyMetrizable.lean,scripts/nolints_prime_decls.txt |
40 |
1 |
['github-actions'] |
nobody |
0-6248 1 hour ago |
0-10001 2 hours ago |
0-9775 2 hours |
0 |
| 44047 |
pepamontero author:pepamontero |
feat(Geometry/Manifold/VectorField/LieBracket): add `mlieBracket_eq_zero_of_eq_zero` |
This PR adds `mlieBracket_eq_zero_of_eq_zero`, the equivalent version of `mlieBracketWithin_eq_zero_of_eq_zero` for `mlieBracket`.
This pair is the equivalent of `lieBracketWithin_eq_zero_of_eq_zero` - `lieBracket_eq_zero_of_eq_zero` in `Analysis/Calculus/VectorField.lean`. I believe this is the only case where the manifold version does not have the two lemmas when the vector spaces version does.
---
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|
t-differential-geometry
easy
|
5/0 |
Mathlib/Geometry/Manifold/VectorField/LieBracket.lean |
1 |
2 |
['github-actions', 'pepamontero'] |
nobody |
0-6060 1 hour ago |
0-7518 2 hours ago |
0-7652 2 hours |
0 |
| 43782 |
mathlib-nolints author:mathlib-nolints |
chore: lake shake --add-public --keep-implied --keep-prefix --fix |
I am happy to shake some imports for you!
**91 files changed** · +85 imports added · -70 imports removed
---
[workflow run for this PR](https://github.com/leanprover-community/mathlib4/actions/runs/35615058041)
[explain.txt](https://github.com/leanprover-community/mathlib4/actions/runs/35615058041/artifacts/10645818162) |
|
85/70 |
Mathlib/Algebra/Category/ModuleCat/Topology/Basic.lean,Mathlib/Algebra/CharP/Basic.lean,Mathlib/Algebra/Group/Equiv/TypeTags.lean,Mathlib/Algebra/Module/ULift.lean,Mathlib/Algebra/Regular/Pi.lean,Mathlib/Algebra/Regular/SMul.lean,Mathlib/Analysis/Asymptotics/TVS.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Unitary.lean,Mathlib/Analysis/Complex/AbelLimit.lean,Mathlib/Analysis/InnerProductSpace/GramMatrix.lean,Mathlib/Analysis/Normed/Group/Basic.lean,Mathlib/Analysis/Normed/Group/Defs.lean,Mathlib/Analysis/SpecialFunctions/Integrability/Log.lean,Mathlib/Analysis/SpecialFunctions/Integrability/PosLog.lean,Mathlib/Analysis/SpecialFunctions/Integrals/PosLog.lean,Mathlib/Analysis/SpecialFunctions/Pow/NNReal.lean,Mathlib/Basic/ENNReal/Basic.lean,Mathlib/Basic/ENNReal/Inv.lean,Mathlib/Basic/ENNReal/Operations.lean,Mathlib/Basic/NNReal/Defs.lean,Mathlib/CategoryTheory/Category/Preorder.lean,Mathlib/CategoryTheory/Category/ULift.lean,Mathlib/CategoryTheory/Triangulated/TStructure/TExact.lean,Mathlib/Control/Monad/Basic.lean,Mathlib/Control/Monad/Cont.lean,Mathlib/Data/ENat/Basic.lean,Mathlib/Data/ENat/Monoid.lean,Mathlib/Data/Int/Basic.lean,Mathlib/Data/List/Basic.lean,Mathlib/Data/List/SignVariations.lean,Mathlib/Data/Matrix/Cartan.lean,Mathlib/Data/Nat/Basic.lean,Mathlib/Data/Nat/MaxPowDiv.lean,Mathlib/Data/Nat/Sqrt.lean,Mathlib/Data/PNat/Basic.lean,Mathlib/Data/PNat/Defs.lean,Mathlib/Dynamics/Ergodic/EmpiricalMeasure.lean,Mathlib/FieldTheory/IntermediateField/Adjoin/Basic.lean,Mathlib/FieldTheory/KummerPolynomial.lean,Mathlib/FieldTheory/RatFunc/Basic.lean,Mathlib/FieldTheory/Separable.lean,Mathlib/FieldTheory/SplittingField/Construction.lean,Mathlib/GroupTheory/CommutingProbability.lean,Mathlib/GroupTheory/Exponent.lean,Mathlib/Lean/Expr/Basic.lean,Mathlib/LinearAlgebra/Eigenspace/Basic.lean,Mathlib/MeasureTheory/Function/LpSeminorm/Count.lean,Mathlib/MeasureTheory/Integral/MeanInequalities.lean,Mathlib/NumberTheory/Niven.lean,Mathlib/NumberTheory/Padics/Measure/Monoid.lean,Mathlib/NumberTheory/Padics/PadicNumbers.lean,Mathlib/Probability/Independence/Kernel/Indep.lean,Mathlib/RepresentationTheory/Homological/ContCohomology/Sha.lean,Mathlib/RingTheory/Adjoin/Polynomial/Transcendental.lean,Mathlib/RingTheory/Algebraic/Basic.lean,Mathlib/RingTheory/DedekindDomain/Ideal/Lemmas.lean,Mathlib/RingTheory/Polynomial/IsIntegral.lean,Mathlib/Tactic/Basify.lean,Mathlib/Tactic/Basify/Attr.lean,Mathlib/Tactic/GCongr/Core.lean,Mathlib/Tactic/GCongr/CoreAttrs.lean,Mathlib/Tactic/GRewrite/Core.lean,Mathlib/Tactic/Inclusion/Core/Core.lean,Mathlib/Tactic/Inclusion/Core/DiscrTreeExt.lean,Mathlib/Tactic/Inclusion/Core/Elab.lean,Mathlib/Tactic/Inclusion/Core/Expr.lean,Mathlib/Tactic/Inclusion/Core/Extensions.lean,Mathlib/Tactic/Inclusion/Core/Inclusion.lean,Mathlib/Tactic/Inclusion/Extension/Core/Core.lean,Mathlib/Tactic/Inclusion/Extension/Core/Init.lean,Mathlib/Tactic/Inclusion/Extension/IntervalDyadicReal/BinarySplit.lean,Mathlib/Tactic/Inclusion/Extension/IntervalDyadicReal/Hypotheses.lean,Mathlib/Tactic/Inclusion/Extension/IntervalDyadicReal/Init.lean,Mathlib/Tactic/Inclusion/Extension/IntervalDyadicReal/Tactic.lean,Mathlib/Tactic/Inclusion/ExtensionAPI/Attr.lean,Mathlib/Tactic/Inclusion/ExtensionAPI/Basic.lean,Mathlib/Tactic/Linter/DirectoryDependency.lean,Mathlib/Tactic/Module.lean,Mathlib/Testing/Plausible/Sampleable.lean,Mathlib/Topology/Algebra/Module/FiniteDimension.lean,Mathlib/Topology/CantorBendixson.lean,Mathlib/Topology/Compactness/NhdsKer.lean,Mathlib/Topology/DerivedSet.lean,Mathlib/Topology/LocallyFinsupp.lean,Mathlib/Topology/MetricSpace/Pseudo/Defs.lean,Mathlib/Topology/Order/Cadlag.lean,Mathlib/Topology/Order/UpperLowerSetTopology.lean,Mathlib/Topology/UniformSpace/Cauchy.lean,Mathlib/Topology/UniformSpace/LocallyUniformConvergence.lean,Mathlib/Topology/UniformSpace/UniformConvergence.lean,Mathlib/Util/PrintSorries.lean |
91 |
3 |
['bryangingechen', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
0-5372 1 hour ago |
0-11685 3 hours ago |
0-74831 20 hours |
0 |
| 43187 |
gaetanserre author:gaetanserre |
chore: tag some measurability lemmas with `fun_prop` |
Tag some measurability lemma with `fun_prop`. These lemmas were not tagged most likely because one of the subgoals was of the form `MeasurableSet ...`. However, tagging them and using `fun_prop (disch := measurability)` can close goals that require these lemmas.
---
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|
|
3/0 |
Mathlib/MeasureTheory/MeasurableSpace/Basic.lean,Mathlib/MeasureTheory/MeasurableSpace/Constructions.lean,Mathlib/Probability/Kernel/Defs.lean |
3 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
0-5288 1 hour ago |
0-7338 1 hour ago |
23-84337 23 days |
0 |
| 43582 |
vlad902 author:vlad902 |
feat(AffineSpace): `toAffineSubspace` lemmas |
---
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t-algebra label:t-algebra$ |
49/4 |
Mathlib/LinearAlgebra/AffineSpace/AffineSubspace/Defs.lean,Mathlib/LinearAlgebra/AffineSpace/Dimension.lean |
2 |
8 |
['github-actions', 'martinwintermath', 'vlad902', 'wwylele'] |
nobody |
0-3828 1 hour ago |
0-28769 7 hours ago |
13-2270 13 days |
0 |
| 44014 |
plp127 author:plp127 |
fix(Tactic/DeprecateTo): preserve whitespace |
Make `deprecate to` use the same whitespace from the original theorem, instead of using pretty-printing to invent new whitespace. Falls back to pretty-printing if reprinting the original whitespace fails.
---
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|
t-meta |
104/23 |
Mathlib/Tactic/DeprecateTo.lean,MathlibTest/DeprecateTo.lean |
2 |
1 |
['github-actions'] |
nobody |
0-3598 59 minutes ago |
0-70362 19 hours ago |
0-70163 19 hours |
0 |
| 43673 |
raoxiaojia author:raoxiaojia |
feat(Tactic/Matrix): list-based implementation of matrix, multiplication expansion, and the associated simproc |
This PR adds a list-based implementation of (dense) matrix which can be used to state reflection proofs and certificates. In addition, this adds a multiplication on the representation, and a more efficient expansion construction path than letting kernel directly perform reduction. Also adds a simproc for matrix multiplication which is 3-4x faster than `simp`, the latter of which reduces a matrix multiplication today as well by `@[simp]` lemmas.
---
Note that `ListMatrix.mul` is already kernel reducible, but is susceptible to efficiency issues and eager evaluation of arithmetic expressions, which can be undesirable. The point of MulExpand.lean is to provide a manual construction of the expanded literal and an associated proof term via controlled unfold of the dot product, which is faster to construct (no discovery required by `simp`) and cheaper to check.
The bridge between the list representation and mathlib's `Matrix` is placed in a separate file. As a result the list representation itself requires only minimal mathlib import.
Currently Matrix/Reflection.lean (unused within mathlib) also provides a reflection target, but is defined on the `vecCons` construction, which is not very efficient. This work should eventually unify with Matrix/Reflection.lean if the elaboration of `!![]` is changed in the future to lists.
This is separated from #43438 as part of enabling the echelon certificate to be parametric over a custom entry certifier.
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|
file-removed
t-meta
new-contributor
|
470/18 |
Mathlib.lean,Mathlib/Tactic.lean,Mathlib/Tactic/Matrix/ListMatrix.lean,Mathlib/Tactic/Matrix/MulExpand.lean,Mathlib/Tactic/Matrix/OfLists.lean,Mathlib/Tactic/Matrix/Parsing.lean,Mathlib/Tactic/NormMatMul.lean,Mathlib/Tactic/NormRank.lean,Mathlib/Util/Qq.lean,MathlibTest/NormMatMul.lean |
10 |
40 |
['JovanGerb', 'Vierkantor', 'github-actions', 'kim-em', 'raoxiaojia'] |
Vierkantor assignee:Vierkantor |
0-3482 58 minutes ago |
0-3699 57 minutes ago |
7-4741 7 days |
1 |
| 39437 |
ooovi author:ooovi |
feat(Geometry/Convex/ConvexSpace): show that an `AffineMap` `IsAffineMap` |
Show that `Convexity.IsAffineMap` generalises `AffineMap`s between affine spaces.
---
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|
t-convex-geometry |
19/1 |
Mathlib/Geometry/Convex/ConvexSpace/AffineSpace.lean,Mathlib/Geometry/Convex/ConvexSpace/Defs.lean |
2 |
10 |
['Paul-Lez', 'YaelDillies', 'github-actions', 'mathlib-merge-conflicts', 'ooovi'] |
YaelDillies assignee:YaelDillies |
0-3128 52 minutes ago |
0-5240 1 hour ago |
39-18159 39 days |
0 |
| 44051 |
Multramate author:Multramate |
chore: rename declarations whose names do not match their statements |
Split out of #43889 (see #44049, #44050 and #44052 for the other parts).
Unlike the other parts of the split, these old names are well-formed and pronounceable — there is no misspelling to spot. They simply say the wrong thing, so each one needs its statement read.
- `coeff_isPWOsupport` → `isPWO_support_coeff` — the conclusion really is `IsPWO (support (coeff ..))`
- `preserveFiniteLimits_plusFunctor` → `preservesFiniteLimits_plusFunctor` — the verb tracks the head symbol `PreservesFiniteLimits`
- `tendsto_of_uncrossing_lt_top` → `tendsto_of_upcrossings_lt_top` — wrong word and wrong number, checked against the hypothesis `upcrossings a b f w`
- `substr_num_den'` → `sub_num_den'`
- `nneg_mul_add_sq_of_abs_le_one` → `nonneg_mul_add_sq_of_abs_le_one`
### `IsLocalDiffeomorphAt.localInverse` lemmas
`contmdiffOn_localInverse` → `contMDiffOn_localInverse`, and for consistency the two lemmas below it take the same order: `localInverse_contMDiffAt` → `contMDiffAt_localInverse` and `localInverse_mdifferentiableAt` → `mdifferentiableAt_localInverse`. All three old names are deprecated and their use sites updated.
`localInverse_contMDiffOn` already existed further down the file with a byte-identical statement and proof. The duplicate is dropped and the lemma moved above its first use, so that name is deprecated to `contMDiffOn_localInverse` too.
The review suggested `mdifferentiableAt_contMDiffAt` for the third of these. Its statement is `MDiffAt hf.localInverse (f x)` — about the local inverse, not about `contMDiffAt` — so `mdifferentiableAt_localInverse` is used instead, matching the other two. Happy to change it if the original was meant literally.
### Notes on the review
`preserveFiniteLimits_plusFunctor` gets no deprecated alias: it is an instance, so it is found by typeclass resolution rather than by name, and nothing in Mathlib refers to it by name.
`sub_num_den'` is left as proposed. The statement is `(q - r).num * q.den * r.den = (q.num * r.den - r.num * q.den) * (q - r).den`, which is genuinely subtraction; it sits directly below `add_num_den'` and `mul_num_den'` and its proof goes via `add_num_den'` and `sub_eq_add_neg`; and no `sub_num_den` or `sub_num_den'` exists anywhere else in Mathlib or the toolchain, so there is no collision. |
LLM-generated
easy
|
40/22 |
Mathlib/Algebra/Order/Ring/Cast.lean,Mathlib/Algebra/Vertex/HVertexOperator.lean,Mathlib/CategoryTheory/Sites/LeftExact.lean,Mathlib/Data/Rat/Lemmas.lean,Mathlib/Geometry/Manifold/IsManifold/InteriorBoundary.lean,Mathlib/Geometry/Manifold/LocalDiffeomorph.lean,Mathlib/NumberTheory/Modular.lean,Mathlib/Probability/Martingale/Convergence.lean,scripts/nolints_prime_decls.txt |
9 |
8 |
['Multramate', 'github-actions', 'grunweg'] |
nobody |
0-2945 49 minutes ago |
0-3009 46 minutes ago |
0-6980 1 hour |
0 |
| 44053 |
DavidLedvinka author:DavidLedvinka |
feat(Tactic/Inclusion): add pow support to the inclusion/dyadic_interval tactic |
|
large-import |
81/2 |
Mathlib/Algebra/Order/Ring/Basic.lean,Mathlib/Tactic/Inclusion/Extension/Interval.lean,Mathlib/Tactic/Inclusion/Extension/IntervalDyadicReal/Basic.lean,MathlibTest/Tactic/Inclusion/Basic.lean |
4 |
1 |
['github-actions'] |
nobody |
0-2901 48 minutes ago |
0-2970 45 minutes ago |
0-2744 45 minutes |
0 |
| 43742 |
loefflerd author:loefflerd |
feat(NumberTheory/ModularForms): arithmetic subgroup improvements |
Some modest additions to the theory of subgroups of `GL(2, ℝ)`, and other general linear groups:
- generalize `adjoinNeg` to arbitrary base rings & show it is functorial under suitable maps;
- show intersection of an arithmetic subgroup with `SL(2, ℝ)` is also arithmetic;
- show any two arithmetic subgroups are commensurable.
These are used in the proof of finite-dimensionality of modular forms spaces.
---
**AI use:** Based on code originally written by ChatGPT 5.6 Sol and 6.0 Astra, but carefully checked and cleaned up by me.
Spun off from PR #43644
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|
t-number-theory |
102/18 |
Mathlib/NumberTheory/ModularForms/ArithmeticSubgroups.lean |
1 |
1 |
['github-actions'] |
nobody |
0-1493 24 minutes ago |
9-75073 9 days ago |
9-74847 9 days |
1 |
| 44054 |
themathqueen author:themathqueen |
chore(LinearAlgebra/Matrix/NonsingularInverse): generalize some lemmas from `Field` to `IsArtinianRing` |
... also fix their names.
---
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|
t-algebra
large-import
label:t-algebra$ |
26/13 |
Mathlib/LinearAlgebra/Matrix/NonsingularInverse.lean |
1 |
1 |
['github-actions'] |
nobody |
0-743 12 minutes ago |
0-2828 43 minutes ago |
0-2602 43 minutes |
0 |
| 42836 |
loefflerd author:loefflerd |
feat(NumberTheory/Padics): the Amice transform is a ring isomorphism |
---
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|
t-number-theory |
117/1 |
Mathlib/NumberTheory/Padics/Measure/AmiceTransform.lean,Mathlib/Topology/Constructions.lean |
2 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
0-454 7 minutes ago |
0-2898 44 minutes ago |
0-9046 2 hours |
0 |
| 39205 |
ooovi author:ooovi |
feat(Geometry/Convex): Bundled convex set |
Add a bundled version of `IsConvexSet`.
---
Once the dependencies are merged, this PR only changes `Mathlib.Geometry.Convex.Set` and `Mathlib.Geometry.Convex.Hull`, at the bottom of the file, adding `ConvexSet` and everything in the corresponding namespace.
- [x] depends on: #38934
- [x] depends on: #38905
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|
t-convex-geometry |
75/0 |
Mathlib/Geometry/Convex/Set.lean |
1 |
6 |
['github-actions', 'martinwintermath', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
0-382 6 minutes ago |
0-2831 43 minutes ago |
0-2704 45 minutes |
0 |
| 43945 |
Nicola9Falciola author:Nicola9Falciola |
feat(LinearAlgebra/Matrix/GeneralLinearGroup/Defs): add the induced monoid equivalence from a ring hom. on `GL` and the equivalence between ` GL n (Π i, R i) ≃* Π i, GL n (R i)` |
---
Following the API in Data/Matrix/Basic I add :
- the `MulEquiv` : `GL n R ≃* GL n S`induced by a `RingEquiv`
- the `MulEquiv` : `GL n (Π i, R i) ≃* Π i, GL n (R i)`
I had to add the import `athlib.Algebra.Group.Pi.Units`as otherwise we do not have ` MulEquiv.piUnits`.
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|
t-algebra label:t-algebra$ |
17/0 |
Mathlib/LinearAlgebra/Matrix/GeneralLinearGroup/Defs.lean |
1 |
7 |
['Nicola9Falciola', 'github-actions', 'themathqueen'] |
nobody |
0-378 6 minutes ago |
0-378 2 minutes ago |
3-16844 3 days |
2 |
| 44052 |
Multramate author:Multramate |
chore: fix instance and to_additive declaration names |
Split out of #43889 (see #44049, #44050 and #44051 for the rest). Both halves here need the *alias* reviewed rather than the name, which is why they are together and separate from the spelling fixes.
**`relIindex` → `relIndex`** in `Mathlib/GroupTheory/Index.lean` is a doubled letter, but both theorems are `@[to_additive]`, so the deprecation takes two steps: an explicit alias for the additive name first, then `@[to_additive existing, deprecated]` for the multiplicative one. Without `existing`, `to_additive` generates a second additive declaration instead of reusing it. Two theorems, one file.
**Three misspelled instance names** (`instIsReflecive`, `map_homogical_complex_additive`, `instUniqueOrderdMonoidIso`) were named explicitly. Rather than fix the spelling, the explicit name is dropped so each instance takes its auto-generated one, with the old name deprecated. These cannot be checked by reading — if an asserted name is wrong the alias simply fails to elaborate.
Worth a second opinion on one of them: `Multiplicative.instUniqueOrderdMonoidIso` becomes the generated `instUniqueOrderMonoidIsoMultiplicativeOfOrderAddMonoidIso`, while its sibling directly above in the same file, `Additive.instUniqueOrderAddMonoidIso`, keeps its explicit name. Fixing the typo in place as `Multiplicative.instUniqueOrderMonoidIso` may be better than going anonymous; happy to change it. |
LLM-generated
t-group-theory
easy
|
26/8 |
Mathlib/Algebra/Homology/Additive.lean,Mathlib/Algebra/Order/Hom/TypeTags.lean,Mathlib/GroupTheory/Index.lean,Mathlib/LinearAlgebra/Dual/Defs.lean |
4 |
2 |
['github-actions', 'tb65536'] |
nobody |
0-334 5 minutes ago |
0-9962 2 hours ago |
0-9736 2 hours |
0 |
| 44055 |
vlad902 author:vlad902 |
feat(ModuleCat/ChangeOfRingsExact): generalize `CommRing` -> `Ring` |
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|
t-algebra
LLM-generated
label:t-algebra$ |
1/1 |
Mathlib/Algebra/Category/ModuleCat/ChangeOfRingsExact.lean |
1 |
1 |
['github-actions'] |
nobody |
0-324 5 minutes ago |
0-600 6 minutes ago |
0-374 6 minutes |
0 |
| Number |
Author |
Title |
Description |
Labels |
+/- |
Modified files (first 100) |
📝 |
💬 |
All users who commented or reviewed |
Assignee(s) |
Updated |
Last status change |
total time in review |
unblocks |
| 35069 |
A-M-Berns author:A-M-Berns |
feat(Geometry/Polygon): simple polygons and boundary map |
This PR introduces Simple polygons with the predicate `IsSimple`, which captures the idea of a non-self-intersecting boundary, in the file Simple.lean. In the file Boundary.lean, a boundary map from `AddCircle n` is defined. I prove that the range of this map is the boundary and that this map is injective if and only if the polygon is simple. I kept Boundary.lean and Simple.lean separate because future results will include stuff just about the boundary map independent of simplicity (e.g. that it is continuous in the appropriate setting) and stuff just about simple polygons independent of the boundary map (e.g. that for n = 3, IsSimple iff HasNondegenerateVertices.) I used Claude Code to help generate some of the proof material, but I golfed and edited all AI contribution.
- [x] depends on: #34598
---
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new-contributor
t-euclidean-geometry
LLM-generated
|
360/0 |
Mathlib.lean,Mathlib/Geometry/Polygon/Boundary.lean,Mathlib/Geometry/Polygon/Simple.lean,Mathlib/Logic/Equiv/Fin/Rotate.lean |
4 |
30 |
['A-M-Berns', 'eric-wieser', 'github-actions', 'joneugster', 'jsm28', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'vihdzp', 'wwylele'] |
nobody |
121-62110 3 months ago |
208-1565 208 days ago |
210-35625 210 days |
0 |
| 40967 |
Formalistic03 author:Formalistic03 |
feat(Combinatorics/SimpleGraph/Paths): some lemmas about inducing walks |
Could also be done via `SimpleGraph.Walk.map_induce`, but I thought that doing it directly is not much worse.
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|
new-contributor
t-combinatorics
|
48/0 |
Mathlib/Combinatorics/SimpleGraph/Paths.lean,Mathlib/Combinatorics/SimpleGraph/Walk/Maps.lean,Mathlib/Data/List/Nodup.lean |
3 |
2 |
['github-actions'] |
nobody |
86-47280 2 months ago |
89-83506 89 days ago |
89-83365 89 days |
0 |
| 41217 |
Probablism author:Probablism |
feat(SimpleGraph/Matching): add graph-level IsMatching |
Closes #11911.
This adds a graph-level `SimpleGraph.IsMatching` predicate. It is support-based, so isolated
vertices are allowed: every vertex in the graph support is incident to exactly one edge.
The existing `Subgraph.IsMatching` predicate is unchanged. I added compatibility lemmas relating it
to `M.spanningCoe`, including an iff characterizing the subgraph predicate as graph-level matching
plus `M.support = M.verts`.
Validation:
- `lake env lean Mathlib/Combinatorics/SimpleGraph/Matching.lean`
- `lake build Mathlib.Combinatorics.SimpleGraph.Matching`
- `lake build Mathlib.Combinatorics.SimpleGraph.Hall Mathlib.Combinatorics.SimpleGraph.Tutte Mathlib.Combinatorics.SimpleGraph.UniversalVerts`
- `lake exe lint-style Mathlib/Combinatorics/SimpleGraph/Matching.lean`
- `lake build Mathlib`
- `lake test`
AI assistance: OpenAI Codex assisted with testing and validation.
|
t-combinatorics
new-contributor
|
41/3 |
Mathlib/Combinatorics/SimpleGraph/Matching.lean |
1 |
4 |
['Probablism', 'SnirBroshi', 'github-actions'] |
nobody |
82-64641 2 months ago |
82-65830 82 days ago |
82-65604 82 days |
0 |
| 41337 |
gotrevor author:gotrevor |
doc(1000-yaml): add Goodstein's theorem and the Kirby–Paris theorem |
Claims two listed-but-unclaimed entries in the 1000+ theorems scoreboard by adding external-formalization pointers (no mathlib declaration; same pattern as Löb's theorem [`Q204884`](https://github.com/leanprover-community/mathlib4/blob/master/docs/1000.yaml#L201), the flypitch continuum-hypothesis independence [`Q208416`](https://github.com/leanprover-community/mathlib4/blob/master/docs/1000.yaml#L216), and Arrow's impossibility theorem [`Q33481`](https://github.com/leanprover-community/mathlib4/blob/master/docs/1000.yaml#L30)).
## Entries
| Wikidata | Theorem | Formalization |
|----------|---------|---------------|
| `Q1149185` | **Goodstein's theorem** — every Goodstein sequence terminates | [`lean-gallery`](https://github.com/gotrevor/lean-gallery/blob/main/LeanGallery/Logic/Goodstein/Statement.lean) (ordinal-descent proof) |
| `Q1149185X` | **Kirby–Paris theorem** — PA does not prove that every Goodstein sequence terminates | [`goodstein-independence`](https://github.com/gotrevor/goodstein-independence/blob/main/src/GoodsteinPA/Statement.lean) |
## Notes
- **`Q1149185X` (Kirby–Paris, 1982)** is built on the [`FormalizedFormalLogic/Foundation`](https://github.com/FormalizedFormalLogic/Foundation) library (the same library that backs the existing Löb's-theorem entry [`Q204884`](https://github.com/leanprover-community/mathlib4/blob/master/docs/1000.yaml#L201)), via the Wainer growth-rate route (`Goodstein` outgrows every PA-provably-total function). The headline `peano_not_proves_goodstein` is sorry-free and `#print axioms`-clean — it rests on exactly `[propext, Classical.choice, Quot.sound]`.
- **`Q1149185`** is Goodstein's theorem proper (the termination statement, provable in ZFC / Lean); mathlib does not currently contain it.
- Both formalizations are by Trevor Morris, developed with AI assistance: Claude Code (Fable 5, Opus), Codex, and Harmonic's Aristotle.
🤖 Generated with [Claude Code](https://claude.com/claude-code) |
new-contributor
LLM-generated
|
6/0 |
docs/1000.yaml |
1 |
4 |
['felixpernegger', 'github-actions'] |
nobody |
79-60328 2 months ago |
79-62583 79 days ago |
79-62357 79 days |
0 |
| 41358 |
erdkocak author:erdkocak |
doc(ModelTheory): fix partial equivalence theorem reference |
Fix a stale module doc reference in `ModelTheory.PartialEquiv`: the theorem is `equiv_between_cg`, and the conclusion is an isomorphism `M ≃[L] N`.
---
This documentation-only PR was split out from #41111 following review feedback.
Please note that ChatGPT Codex was used to help prepare this documentation-only PR. |
t-logic
new-contributor
|
3/3 |
Mathlib/ModelTheory/PartialEquiv.lean |
1 |
2 |
['github-actions'] |
nobody |
79-31896 2 months ago |
79-32485 79 days ago |
79-32259 79 days |
5 |
| 37683 |
SabrinaJewson author:SabrinaJewson |
feat(Order/OrdContinuous): every map between complete lattices that preserves sSup is a left adjoint of some Galois connection |
It is already proven that the left side of a Galois connection is left-continuous; this provides the converse.
---
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|
new-contributor
t-order
|
14/0 |
Mathlib/Order/OrdContinuous.lean |
1 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
76-77074 2 months ago |
76-78741 76 days ago |
76-79962 76 days |
0 |
| 36813 |
AlexeyMilovanov author:AlexeyMilovanov |
feat(Computability.Encoding): add self-delimiting unary and pair encodings |
Adds self-delimiting boolean encodings to `Mathlib.Computability.Encoding`.
**Key changes:**
* **`unaryPrefixEncodingNat`**: A self-delimiting unary `Encoding ℕ Bool`, using the code $1^n0$.
* **`encodingProdBool`**: Builds an `Encoding (α × β) Bool` from boolean encodings of `α` and `β`, by prefixing the length of the first encoded component.
* **`encodingListBool`**: Builds an `Encoding (List α) Bool` from a boolean encoding of `α`, using self-delimiting element encodings.
* **`UnaryPrefix` helpers**: Internal-style helper API for the underlying length-prefixed boolean-list encoding and decoding. |
t-computability
new-contributor
|
98/0 |
Mathlib/Computability/Encoding.lean |
1 |
6 |
['AlexeyMilovanov', 'Komyyy', 'github-actions', 'mathlib-bors', 'mathlib-merge-conflicts'] |
nobody |
75-8532 2 months ago |
75-8532 75 days ago |
91-50583 91 days |
0 |
| 41537 |
Mathias-Stout author:Mathias-Stout |
feat(RingTheory/TwoSidedIdeal/Lattice): add lemmas on two-sided ideals |
We add three lemmas on two-sided ideals.
These are analogues of existing lemmas of `Submodule` with the same names.
This prepares a follow-up PR proving that quaternions are central simple.
Co-authored-by: Justus Springer [justusspringer@gmx.de](mailto:justusspringer@gmx.de)
---
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t-ring-theory
new-contributor
|
13/0 |
Mathlib/RingTheory/TwoSidedIdeal/Lattice.lean |
1 |
5 |
['Whysoserioushah', 'github-actions', 'kbuzzard'] |
nobody |
74-2863 2 months ago |
74-5306 74 days ago |
74-12857 74 days |
1 |
| 36719 |
NoneMore author:NoneMore |
feat(ModelTheory): add `PartialType` for first-order theories |
This PR adds the definitions of partial types over theories and over parameter sets, and proves several equivalent characterizations.
---
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t-logic
new-contributor
|
432/17 |
Mathlib.lean,Mathlib/ModelTheory/PartialTypes.lean,Mathlib/ModelTheory/Semantics.lean |
3 |
7 |
['NoneMore', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'vihdzp'] |
nobody |
67-59831 2 months ago |
67-60352 67 days ago |
75-43087 75 days |
0 |
| 41934 |
NickKobs author:NickKobs |
feat(Order/Nucleus): a nucleus on a Boolean algebra is closed |
Adds `Mathlib/Order/Nucleus/Boolean.lean` — the Boolean specialization of the nucleus API:
```lean
theorem Nucleus.apply_eq_sup_apply_bot [BooleanAlgebra X] (n : Nucleus X) (a : X) :
n a = a ⊔ n ⊥
theorem Nucleus.isClosed_of_booleanAlgebra [BooleanAlgebra X] (n : Nucleus X) :
⇑n = fun a => a ⊔ n ⊥
theorem Nucleus.eq_of_apply_bot_eq [BooleanAlgebra X] {m n : Nucleus X} (h : m ⊥ = n ⊥) :
m = n
```
**Why.** `Mathlib.Order.Nucleus` provides the frame / Heyting-algebra structure of `Nucleus X`, the closure-operator view (`toClosureOperator`), and the pointwise `le_apply` / `idempotent` / `map_inf` API, but no Boolean specialization. On a Boolean algebra every nucleus is *closed* — completely determined by its value at `⊥` — which is the pointwise algebraic core of the classical fact that the assembly `N(L)` is Boolean iff `L` is (Beazer–Macnab; Simmons; Johnstone, *Stone Spaces*, II.2). It is the natural companion to the existing frame structure and a common building block in point-free topology.
**Proof.** `n a = n a ⊓ (a ⊔ aᶜ) = (n a ⊓ a) ⊔ (n a ⊓ aᶜ)`; the left join-and is `a` (inflationarity), the right is `≤ n a ⊓ n aᶜ = n (a ⊓ aᶜ) = n ⊥` (inflationarity of `aᶜ` + `map_inf`). The reverse inequality is inflationarity plus monotonicity applied to `⊥ ≤ a`. No completeness is needed — the statement is pointwise, so `[BooleanAlgebra X]` (not a complete Boolean algebra) suffices.
**References.**
* R. Beazer, D. S. Macnab, *Modal extensions of Heyting algebras*.
* H. Simmons, *A framework for topology*, Logic Colloquium '77.
* P. T. Johnstone, *Stone Spaces*, CUP (1982), II.2.
**Provenance.** The theorem was first mechanized (Mathlib-free, over a finite Boolean frame) in the BETTI/Araksha refusal-algebra work; this PR is the generalization to an arbitrary `BooleanAlgebra` against Mathlib's own `Nucleus` API. The result is classical open mathematics, cited above. An earlier revision of the file was compiled clean against master `c81c5cbb` (Lean `v4.33.0-rc1`); this revision adapts the header to the module system (`module` / `public import` / `@[expose] public section`).
|
t-order
new-contributor
LLM-generated
|
71/0 |
Mathlib.lean,Mathlib/Order/Nucleus/Boolean.lean |
2 |
5 |
['felixpernegger', 'github-actions'] |
nobody |
63-62867 2 months ago |
63-76610 63 days ago |
63-76384 63 days |
0 |
| 30637 |
strihanje01 author:strihanje01 |
feat(Combinatorics/SetFamily/Lindstrom): Lindstrom's theorem for subfamilies with equal unions |
add Lindstrom's theorem and its strengthening for equal intersections
---
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[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
|
211/0 |
Mathlib.lean,Mathlib/Combinatorics/SetFamily/Lindstrom.lean |
2 |
2 |
['github-actions', 'mathlib4-merge-conflict-bot'] |
nobody |
60-62111 1 month ago |
82-29175 82 days ago |
113-78445 113 days |
0 |
| 42046 |
LegaSage author:LegaSage |
feat(Polynomial): add Wronskian linear dependence lemmas |
This extends the polynomial Wronskian API of Baek and Lee from the existing coprime case to arbitrary polynomials over a characteristic-zero field.
It adds:
* an explicit nontrivial scalar relation for any pair with zero Wronskian, including zero-polynomial edge cases;
* scalar-multiple corollaries when either polynomial is nonzero;
* the weighted derivative corollary that solutions of `a * f' - n * a' * f = 0` are scalar multiples of `a ^ n` when `a ≠ 0`.
The proof factors out the polynomial gcd and applies the existing `IsCoprime.wronskian_eq_zero_iff` theorem. This PR makes no novelty claim; it packages standard consequences of the existing Baek–Lee coprime Wronskian API.
-------
The implementation was prepared with assistance from OpenAI Codex and reviewed and submitted by LegaSage.
|
t-ring-theory
new-contributor
large-import
LLM-generated
|
96/1 |
Mathlib/RingTheory/Polynomial/Wronskian.lean |
1 |
2 |
['github-actions'] |
nobody |
59-22826 1 month ago |
59-60796 59 days ago |
59-60570 59 days |
0 |
| 42047 |
LegaSage author:LegaSage |
feat(RingTheory): add locally nilpotent derivations |
This introduces `Derivation.IsLocallyNilpotent` and basic iteration lemmas for locally nilpotent derivations. The main result is the method-style theorem `Derivation.IsLocallyNilpotent.apply_eq_zero_of_dvd`: over a characteristic-zero domain, if `f ∣ D f` for a locally nilpotent derivation `D`, then `D f = 0`.
The proof uses the iterated Leibniz rule and the top nonvanishing iterates of the two factors.
-----
The implementation and PR text were prepared with assistance from OpenAI Codex. |
t-ring-theory
new-contributor
LLM-generated
|
167/0 |
Mathlib.lean,Mathlib/RingTheory/Derivation/LocallyNilpotent.lean |
2 |
2 |
['github-actions'] |
nobody |
59-22807 1 month ago |
59-60796 59 days ago |
59-60570 59 days |
0 |
| 42082 |
attilavjda author:attilavjda |
feat(FieldTheory): reduce Frobenius powers modulo the extension degree |
Adds ring-hom and pointwise lemmas reducing powers of Frobenius modulo the extension degree of a finite field.
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
label:t-algebra$ |
12/0 |
Mathlib/FieldTheory/Finite/Basic.lean |
1 |
5 |
['attilavjda', 'felixpernegger', 'github-actions'] |
nobody |
58-12621 1 month ago |
58-13405 58 days ago |
58-21650 58 days |
0 |
| 42079 |
JX-Mo author:JX-Mo |
refactor(RepresentationTheory): weaken condition of Schur's lemma |
Replace the condition `[FiniteDimensional k V]` of Schur's lemma by `[FiniteDimensional k (IntertwiningMap ρ ρ)]`. Note that the former will automatically give the latter by typeclass inference.
This has an immediate downstream application: irreducible admissible smooth representations (of e.g. GL2(Qp)) are usually not finite dimensional but the weaker condition`[FiniteDimensional k (IntertwiningMap ρ ρ)]` can be easily deduced from the definition of being "irreducible admissible smooth". |
new-contributor
t-algebra
label:t-algebra$ |
16/14 |
Mathlib/RepresentationTheory/AlgebraRepresentation/Basic.lean,Mathlib/RepresentationTheory/Irreducible.lean |
2 |
6 |
['JX-Mo', 'Whysoserioushah', 'github-actions', 'pepamontero'] |
nobody |
55-12787 1 month ago |
58-50824 58 days ago |
58-50598 58 days |
0 |
| 42226 |
espottesmith author:espottesmith |
feat(Combinatorics/Hypergraph): add restriction `x ≠ y` to hypergraph vertex and edge adjacency |
---
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In this box, the text above the `---` (if not empty) will be appended
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at the bottom of the commit message (before the `---`, and also before
any "Co-authored-by" lines) using the following format:
Moves:
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- Nat.bit1_add_bit1
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This introduces a small change to the definitions of adjacency and edge-adjacency for undirected hypergraphs, based on a conversation with @Jun2M and @b-mehta in [#28613](https://github.com/leanprover-community/mathlib4/pull/28613).
Previously, any two vertices (edges) `x` and `y` could be adjacent, provided that there was an edge in the edge set containing both of them (there was a vertex contained in both of them). Now, we add the restriction that `x` is not equal to `y`.
This should allow `SimpleGraph` to be a clean specialization of `Hypergraph` and to ease the eventual implementation of walks.
This PR has no dependencies, but see also [42164](https://github.com/leanprover-community/mathlib4/pull/42162), @Jun2M's implementation of `HyperGraphLike` and formalization that `Hypergraph`s are `HyperGraphLike`, which includes this restriction on `Adj`.
[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
|
4/4 |
Mathlib/Combinatorics/Hypergraph/Basic.lean |
1 |
3 |
['github-actions'] |
nobody |
54-35256 1 month ago |
54-35822 54 days ago |
54-35596 54 days |
0 |
| 42223 |
cameronfreer author:cameronfreer |
feat(Computability/Reduce): the halting problem is many-one complete |
`Mathlib/Computability/Halting.lean` proves that the halting problem is recursively enumerable (`ComputablePred.halting_problem_re`) and not computable (`ComputablePred.halting_problem`), but not that it is complete: there is no `REPred R → R ≤₀ K`, and neither `Halting.lean` nor `RE.lean` mentions `≤₀`.
This PR adds three results:
```lean
theorem REPred.manyOneReducible_halting_problem {R : ℕ → Prop} (h : REPred R) (n : ℕ) :
R ≤₀ fun c : Code => (Code.eval c n).Dom
theorem halting_problem_manyOneEquiv_halting_problem₂ (n : ℕ) :
ManyOneEquiv (fun c : Code => (Code.eval c n).Dom)
(fun p : Code × ℕ => (Code.eval p.1 p.2).Dom)
theorem REPred.manyOneReducible_halting_problem₂ {R : ℕ → Prop} (h : REPred R) :
R ≤₀ fun p : Code × ℕ => (Code.eval p.1 p.2).Dom
```
(I've stated the results in `Reduce.lean` rather than alongside the other halting-problem results because `≤₀` is defined here, and `Reduce` imports `Halting` rather than the other way around.)
🤖 These proofs were written with the assistance of Claude Opus 5 high and reviewed by GPT Sol 5.6 xhigh.
|
t-computability
new-contributor
LLM-generated
|
41/0 |
Mathlib/Computability/Reduce.lean |
1 |
3 |
['cameronfreer', 'github-actions'] |
nobody |
53-11945 1 month ago |
54-39753 54 days ago |
54-39527 54 days |
0 |
| 42189 |
cameronfreer author:cameronfreer |
feat(ModelTheory/Basic): add characterization of languages with countably many symbols |
`Language.Countable.countable_functions` currently projects `Countable L.Symbols` onto the function symbols, but there is no counterpart for relations. This PR adds the missing instance; in doing so it relates the two ways that Mathlib already expresses "countable language": the bundled `Language.card ≤ ℵ₀` and the unbundled `Countable (Σ l, L.Functions l)` / `Countable (Σ l, L.Relations l)` hypotheses that model-theoretic statements tend to carry separately.
* `Countable.countable_relations`, `countable_symbols_iff`, and `card_le_aleph0_iff_countable` connect the bundled and unbundled formulations of symbol countability.
* `Countable.countable_sum`, `Countable.countable_constantsOn`, and `Countable.countable_withConstants` centralize countability instances for language constructors and remove the corresponding local instances from `Encoding.lean`.
## Motivation
Following review feedback from @NoneMore, this PR now also simplifies existing Mathlib code: generic countability instances for `Language.sum`, `constantsOn`, and `withConstants` live beside those constructors, so `Encoding.lean` no longer needs its own cardinal-arithmetic proofs for them.
The broader motivation comes from projects in infinitary model theory that build on Mathlib, in which one typically needs to carry around a hypothesis about countability of the set of symbols.
Specifically, in [cameronfreer/infinitary-logic](https://github.com/cameronfreer/infinitary-logic) the two sorts are carried unbundled and independently throughout; there are roughly 180 occurrences of the relation-symbol hypothesis and 24 of the function-symbol one. Here are a few examples:
* [`Methods/Henkin/ModelExistence.lean#L60`](https://github.com/cameronfreer/infinitary-logic/blob/1a478e80794080a536931c029281bb65266b3171/InfinitaryLogic/Methods/Henkin/ModelExistence.lean#L60): model existence, carrying both hypotheses side by side;
* [`Admissible/Compactness.lean#L90`](https://github.com/cameronfreer/infinitary-logic/blob/1a478e80794080a536931c029281bb65266b3171/InfinitaryLogic/Admissible/Compactness.lean#L90): Barwise completeness, likewise;
* [`Descriptive/Polish.lean#L46`](https://github.com/cameronfreer/infinitary-logic/blob/1a478e80794080a536931c029281bb65266b3171/InfinitaryLogic/Descriptive/Polish.lean#L46): a section variable assuming only the relation symbols are countable, which is where one notices the missing companion instance;
* [`Methods/LopezEscobar/CodeClass.lean#L29`](https://github.com/cameronfreer/infinitary-logic/blob/1a478e80794080a536931c029281bb65266b3171/InfinitaryLogic/Methods/LopezEscobar/CodeClass.lean#L29): a custom `Countable (Σ n, L.Functions n)` instance for relational languages, which is an example of the bookkeeping that arises from the two sorts not being related by a single lemma.
(Note that the `countable_functions` and `countable_relations` instances only project *out of* `Countable L.Symbols` into a summand; the converse direction is stated as a theorem rather than an instance, so there is no risk of an instance cycle.)
🤖 These proofs were written with the assistance of Claude Opus 5 high and reviewed by GPT Sol 5.6 xhigh.
|
t-logic
new-contributor
LLM-generated
|
33/12 |
Mathlib/ModelTheory/Basic.lean,Mathlib/ModelTheory/Encoding.lean,Mathlib/ModelTheory/LanguageMap.lean |
3 |
5 |
['NoneMore', 'cameronfreer', 'github-actions'] |
nobody |
53-11919 1 month ago |
54-38691 54 days ago |
54-41673 54 days |
0 |
| 42203 |
cameronfreer author:cameronfreer |
feat(Algebra/MvPolynomial): compact only the right summand of a sum of variables |
Currently `exists_fin_rename` reindexes the entire variable type along an injection `Fin n → σ`. At `σ ⊕ τ` this renumbers the left-hand variables together with the right-hand ones, so it cannot be used when the left summand carries meaning that has to be preserved.
This PR adds two variants that leave the left summand alone, mirroring the existing `exists_finset_rename` / `exists_fin_rename` pair:
```lean
theorem exists_finset_right_rename (p : MvPolynomial (σ ⊕ τ) R) :
∃ (t : Finset τ) (q : MvPolynomial (σ ⊕ { x // x ∈ t }) R),
p = rename (Sum.map id (↑)) q
theorem exists_fin_right_rename (p : MvPolynomial (σ ⊕ τ) R) :
∃ (n : ℕ) (f : Fin n → τ) (_hf : Injective f) (q : MvPolynomial (σ ⊕ Fin n) R),
p = rename (Sum.map id f) q
```
The first of these factors `exists_finset_rename` through `Finset.toRight`: rename along the map that fixes the left-hand variables and sends each right-hand variable of the finset into `s.toRight`.
The second one then enumerates that right-hand finset with `Fintype.equivFin`, the same way that `exists_fin_rename` does.
Motivation: a Diophantine relation is presented as a polynomial in input variables along with existentially quantified witness variables, and the normal form wants inputs indexed by `Fin n` and witnesses compacted to `Fin m`. Only the witnesses may be reindexed; renumbering the inputs changes the relation being represented. This comes up in work I've been exploring towards Hilbert's tenth problem (the TODO in `Mathlib.NumberTheory.Dioph`), though the statement is independent of that.
🤖 These proofs were written with the assistance of Claude Opus 5 high and reviewed by GPT Sol 5.6 xhigh.
|
t-algebra
new-contributor
LLM-generated
label:t-algebra$ |
41/0 |
Mathlib/Algebra/MvPolynomial/Rename.lean |
1 |
3 |
['cameronfreer', 'github-actions'] |
nobody |
53-11919 1 month ago |
54-75722 54 days ago |
54-76320 54 days |
0 |
| 42178 |
cameronfreer author:cameronfreer |
feat(Computability/Primrec/List): add theorems showing that List.all, List.any and List.sum are primitive recursive |
Add the parameterized `list_all`, `list_any` and natural-number `list_sum`, in the style of the existing `list_map`, `list_foldr` and `list_findIdx`.
Mathlib already has a parameterized core, but no direct lemmas for these standard list operations, so downstream developments tend to reconstruct them from `list_foldr` at each use site. In the course of writing [cameronfreer/computable-analysis](https://github.com/cameronfreer/computable-analysis) I ended up needing this in three places, all of which can now make use of the results here instead (see [a6898b5](https://github.com/cameronfreer/computable-analysis/commit/a6898b5), in particular `Weihrauch/Principles/Limit.lean:117`, `TypeTwo/PrefixTable.lean:334,351,369`, and `Measure/DisintegrateLower.lean:877,902`).
:robot: These proofs were written with the assistance of Claude Opus 5 high and reviewed by GPT Sol 5.6 xhigh. |
t-computability
new-contributor
LLM-generated
|
21/1 |
Mathlib/Computability/Primrec/List.lean |
1 |
4 |
['cameronfreer', 'github-actions'] |
nobody |
53-11912 1 month ago |
55-31837 55 days ago |
55-31611 55 days |
0 |
| 42113 |
LAC1213 author:LAC1213 |
feat(RingTheory/Noetherian): injective modules over a Noetherian ring… |
… surject onto localizations by powers of an element. [Hartshorne III.3.3]
Disclaimer: I used Claude to help me find the names of useful lemmas and definitions and explain lean errors to me.
---
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For details on the "pull request lifecycle" in mathlib, please see:
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In particular, note that most reviewers will only notice your PR
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Please ask for help on https://leanprover.zulipchat.com if needed.
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Co-authors in the squash commit are gathered from two sources:
First, all authors of commits to this PR branch are included. Thus,
one way to add co-authors is to include at least one commit authored by
each co-author among the commits in the pull request. If necessary, you
may create empty commits to indicate co-authorship, using commands like so:
git commit --author="Author Name <author@email.com>" --allow-empty -m "add Author Name as coauthor"
Second, co-authors can also be listed in lines at the very bottom of
the commit message (that is, directly before the `---`) using the following format:
Co-authored-by: Author Name <author@email.com>
If you are moving or deleting declarations, please include these lines
at the bottom of the commit message (before the `---`, and also before
any "Co-authored-by" lines) using the following format:
Moves:
- Vector.* -> List.Vector.*
- ...
Deletions:
- Nat.bit1_add_bit1
- ...
Any other comments you want to keep out of the PR commit should go
below the `---`, and placed outside this HTML comment, or else they
will be invisible to reviewers.
If this PR depends on other PRs, please list them below this comment,
using the following format:
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[](https://gitpod.io/from-referrer/)
|
t-ring-theory
new-contributor
LLM-generated
|
114/0 |
Mathlib.lean,Mathlib/Algebra/Module/Torsion/Basic.lean,Mathlib/RingTheory/Noetherian/InjectiveModule.lean |
3 |
42 |
['LAC1213', 'NoahW314', 'github-actions', 'robin-carlier'] |
nobody |
50-67983 1 month ago |
56-16172 56 days ago |
56-40674 56 days |
0 |
| 42225 |
matt-w-horn author:matt-w-horn |
feat(Order): Knaster–Tarski fixed points on an interval |
`lfpIcc f a b` and `gfpIcc f a b`: least and greatest fixed points of `f` on `Set.Icc a b` in a conditionally complete lattice, for `f` monotone on the interval and mapping it into itself. Also interval membership, endpoint-iterate bounds, and monotonicity in `f`.
`OrderHom.lfp` gives this through the complete-lattice instance on the subtype, but wants a `Fact (a ≤ b)` and returns subtype elements. These take `MonotoneOn` and `MapsTo` directly and stay in `α`. Bridge lemmas between the two are a follow-up.
Used on intervals of ℝ in Overload, a sorry-free Lean library on retry and overload dynamics: https://github.com/matt-w-horn/overload/tree/main/Overload
Claude Fable wrote the Lean from a spec I gave it. I reviewed and tested it myself, including adversarial tests and the suites in the library above, and did the same for its dependencies.
Assisted-by: Claude Fable 5 |
t-order
new-contributor
LLM-generated
|
168/0 |
Mathlib.lean,Mathlib/Order/FixedPointsIcc.lean |
2 |
7 |
['github-actions', 'matt-w-horn', 'wwylele'] |
nobody |
48-52379 1 month ago |
49-61965 49 days ago |
49-61739 49 days |
0 |
| 42314 |
sfingali author:sfingali |
feat(RingTheory): continuous valuations |
### Summary
Defines continuous valuations on topological rings: a valuation `v : A → Γ₀`
whose underlying function is continuous for the order topology on `Γ₀`
(Wedhorn, *Adic Spaces*, arXiv:1910.05934, Def. 7.7 and Rem. 7.8(1), p. 58).
* `ContinuousValuationClass` — the class of continuous valuations: a
`ValuationClass` whose functions are continuous.
* `ContinuousValuation` — a bundled continuous valuation.
* `ContinuousValuation.isOpen_lt` — the primary definition of Wedhorn,
Def. 7.7: `{a | v a < γ}` is open for every `γ`.
This is the second step of an adic/perfectoid pipeline (Huber rings → Huber
pairs → continuous valuations → Spa → perfectoid → tilting); #42312 defines
Huber rings. The subspace `Cont(A) ⊆ Spv(A)` of continuous valuations
(Wedhorn, p. 58) will build on `ValuationSpectrum` once #38009 lands — this
PR provides the element-level notion, which is independent of the spectrum
topology.
### References
* T. Wedhorn, *Adic Spaces*, arXiv:1910.05934, Def. 7.7, Rem. 7.8 (p. 58).
|
t-ring-theory
new-contributor
|
99/0 |
Mathlib.lean,Mathlib/RingTheory/Valuation/ContinuousValuation.lean |
2 |
7 |
['github-actions', 'sfingali', 'wwylele'] |
nobody |
43-76873 1 month ago |
51-67694 51 days ago |
51-68014 51 days |
0 |
| 40741 |
AntoineduFresne author:AntoineduFresne |
feat(order): dilworth's and mirsky's theorems for finite orders |
I add Dilworth's theorem and its order dual, Mirsky's theorem, for finite subsets of a partial order, together with the order-theoretic lemmas they rest on.
A prior external formalization by Vlad Tsyrklevich is linked from `1000.yaml`; this is an independent `Finset`-based development using Galvin's proof, and I agreed the `1000.yaml` update with him.
I split the min-max content, as for Hall's marriage theorem, into a weak-duality inequality and a strong-duality existence of a matching pair, so I never define an extremal quantity over families of sets (no `Finset.min'` / `Finset.max'`):
- `dilworth` / `mirsky` — an antichain and a chain cover (resp. a chain and an antichain cover) of equal size;
- `antichain_le_chain_cover` / `chain_le_antichain_cover` — the weak-duality inequalities, for an arbitrary relation;
- `dilworth_partition` / `mirsky_partition` — the same with a pairwise-disjoint partition.
For Dilworth I use Galvin's induction (gluing step `chainCover_glue`); I avoid the König /
bipartite-matching route since König isn't in Mathlib yet (at least last time I checked). I prove Mirsky directly (peeling off minimal elements) rather than via `OrderDual`, since the direct induction seems simpler to me and the two proofs already share their foundations (the closure lemmas and the injective weak dualities).
Internally I work with an injection `f : α → Finset α` on the antichain rather than with the
`Finset (Finset α)` cover directly, so distinctness of the chains comes from the antichain property instead of a separate bookkeeping.
## Questions I'd like input on
1. Explicit min-max? I give weak duality plus a matching pair, from which "largest antichain = smallest chain cover" follows; I do not state that equality as a single theorem (doing so would, I think, mean defining the extremal quantities I wanted to avoid). Would you also like an explicit min-max statement?
2. Two layers of weak duality. I expose it twice: an injective form (`IsAntichain.exists_injOn_mem_chains`, over an arbitrary relation and an arbitrary index type, no finiteness) and a `Finset` cardinality form (`antichain_le_chain_cover`), the latter a one-line specialization of the former. I'm not sure whether exposing both is right, or whether one of them should be canonical. And is there appetite to push the general core to an `ℕ∞` / infinite version, or is the finite form the right scope here?
3. `[DecidableEq α]` on the main theorems. It comes only from writing the cover as
`s = 𝒞.biUnion id` (`Finset.biUnion` needs it); a membership-form coverage condition such as `∀ x, x ∈ s ↔ ∃ C ∈ 𝒞, x ∈ C` would drop the assumption, though it seems to me a bit less readable. Which do you prefer? (I think the injective-form weak dualities assume neither order, finiteness, nor `DecidableEq`.)
4. Naming. I use `C` / `A` for a chain / antichain and `𝒞` / `𝒜` for a chain / antichain cover (for hopefully obvious reason). Happy to change these if you would prefer something else.
## Open questions
- File placement (`Mathlib/Order/Dilworth.lean`?), and whether the general lemmas (the injective transversal and the weak dualities) should live in `Mathlib/Order/Antichain.lean` rather than in a new file.
The maximal-antichain closure lemma that was originally here has been split out into #42590.
Zulip: https://leanprover.zulipchat.com/#narrow/channel/113489-new-members/topic/Antoine.20du.20Fresne.20von.20Hohenesche/with/604112426
AI use: I worked out all proofs on paper first and most of the design structure of the file. I then used Claude Code (Claude Opus) to transcribe my paper proofs into Lean, weaken hypotheses, reduce redundancy, and fix comment typos.
|
t-order
new-contributor
LLM-generated
|
568/3 |
Mathlib.lean,Mathlib/Order/Dilworth.lean,docs/1000.yaml |
3 |
18 |
['AntoineduFresne', 'SnirBroshi', 'github-actions', 'tdwag123'] |
nobody |
43-31826 1 month ago |
43-32458 43 days ago |
95-40697 95 days |
0 |
| 42265 |
cameronfreer author:cameronfreer |
chore(RingTheory/PowerSeries): simplify coeff_inv_aux |
This replaces the hand-written `Finset.sum_nbij'` in `coeff_inv_aux` with `simp_rw` + `simp`, via `Finsupp.antidiagonal_single`, the same rewrite that `PowerSeries.coeff_mul` already uses.
:robot: Golfing target found by GPT Pro 5.6 Sol, initial version of code written by Opus 5 high, refined by GPT 5.6 Sol xhigh, then again by Opus 5 high following @felixpernegger's review suggestion. |
t-ring-theory
new-contributor
LLM-generated
|
2/19 |
Mathlib/RingTheory/PowerSeries/Inverse.lean |
1 |
8 |
['cameronfreer', 'felixpernegger', 'github-actions', 'mathlib-bors', 'mathlib-merge-conflicts'] |
nobody |
41-3780 1 month ago |
41-4480 41 days ago |
53-31664 53 days |
0 |
| 42720 |
justinhalford author:justinhalford |
feat(Order/KrullDimension): level sets of height are antichains |
Adds one lemma to `Mathlib/Order/KrullDimension.lean`, directly after `height_strictMono`:
```lean
lemma isAntichain_lt_height_preimage {n : ℕ∞} (hn : n ≠ ⊤) :
IsAntichain (· < ·) {x : α | height x = n}
```
Elements sharing a common *finite* height are pairwise incomparable — the level sets of `height` are antichains.
### Why
This is the combinatorial content of **Mirsky's theorem**, which partitions a finite-dimensional order into `krullDim + 1` antichains (and is the easy dual of Dilworth's theorem). Neither Mirsky nor Dilworth currently appears in Mathlib — both are on the tracked list in `docs/1000.yaml` without a `decl`, and searching for `Mirsky` and `Dilworth` returns nothing.
Rather than introduce the partition machinery up front, this contributes the underlying fact, which is what any route to Mirsky needs and is independently useful for reasoning about graded and finite-dimensional orders.
### Design
Stated with `(· < ·)` rather than `(· ≤ ·)` so that it lives in the existing `[Preorder α]` section and needs no antisymmetry; in a partial order the two coincide for distinct elements. The hypothesis is `n ≠ ⊤` rather than a finiteness typeclass, which keeps it usable without extra assumptions — `height_strictMono` needs exactly that much.
### Proof
Three lines on `height_strictMono`, immediately above it in the same file.
### Verification
Compiles against `master` with no errors or warnings. `#print axioms` reports only `[propext, Classical.choice, Quot.sound]`. No new imports or definitions — `+11 -0` in one file.
### Disclosure
Written with AI assistance (Claude Opus 5) and checked against the Lean kernel; I have read the statement and proof before submitting. Happy to rename, or to restate as `IsAntichain (· ≤ ·)` in a `PartialOrder` section if that is preferred.
|
t-order
new-contributor
|
11/0 |
Mathlib/Order/KrullDimension.lean |
1 |
2 |
['github-actions'] |
nobody |
39-27286 1 month ago |
39-29047 39 days ago |
39-28821 39 days |
0 |
| 42718 |
justinhalford author:justinhalford |
feat(Combinatorics/SetFamily): the linear algebra method and the Oddtown theorem |
Adds the basic form of the **linear algebra method** for set families (Babai–Frankl) together with its standard first application, the **Oddtown theorem** (Berlekamp, 1969).
### What's here
- `linearIndependent_of_dotProduct_eq_ite` — a family of vectors whose pairwise dot products form the identity matrix is linearly independent. Stated over an arbitrary field, so it does not rely on positivity; this is the engine of the method.
- `Finset.charVec` — the characteristic vector of a finset, valued in a semiring, with `charVec_apply`.
- `Finset.charVec_dotProduct_charVec` — the dot product of two characteristic vectors is the cardinality of the intersection.
- `Finset.card_le_card_of_odd_card_of_even_card_inter` — **Oddtown**: a family of finsets of odd cardinality, any two of which meet in an even number of elements, has at most `Fintype.card α` members.
### Why
I could not find the linear algebra method anywhere in Mathlib. Searching for `Oddtown`, `Eventown`, Fisher's inequality, `RayChaudhuri` and `FranklWilson` returns nothing, and exactly one file under `Mathlib/Combinatorics/` uses `finrank`/`LinearIndependent` (`SimpleGraph/LapMatrix.lean`, for spectral graph theory). Since the technique underlies a large family of extremal results, the general lemma is stated separately from Oddtown so that Eventown, Fisher's inequality and Ray-Chaudhuri–Wilson can be added on top later.
If this does already exist under a formulation I did not think to search for, I would be glad to be pointed at it.
### Verification
Compiles against `master` (Lean 4.34.0-rc1) with no errors or warnings. `#print axioms` on each of the three results reports only `[propext, Classical.choice, Quot.sound]`. No `sorry`, no new axioms, no `set_option` overrides.
### Disclosure
This file was written with AI assistance (Claude Opus 5) and then checked against the Lean kernel; that is noted in the module docstring as well. Every statement, proof and docstring has been read through by me before submission. Happy to adjust naming, generality or placement to whatever the maintainers prefer.
### Process note
I am a first-time contributor and I am aware the usual convention is to raise a new file on Zulip before opening a PR. Apologies for going in the other order — I am glad to move the discussion to `#mathlib4` if that is preferred, or to close this if the material is not wanted.
---
[](https://gitpod.io/#https://github.com/leanprover-community/mathlib4)
|
t-combinatorics
new-contributor
|
144/0 |
Mathlib.lean,Mathlib/Combinatorics/SetFamily/Oddtown.lean |
2 |
3 |
['D-Thomine', 'github-actions'] |
nobody |
39-25777 1 month ago |
39-30261 39 days ago |
39-30035 39 days |
0 |
| 42737 |
Jack1320 author:Jack1320 |
feat(Algebra/Order/Kleene): add Kleene algebra instances for MulOppos… |
Add IdemSemiring, IdemCommSemiring, and KleeneAlgebra instances for MulOpposite, AddOpposite, and ULift, partially addressing #7987.
In accordance to the AI disclosure guidelines - Claude was used as a learning aid, but all code is personally written and reasoned through.
The remaining instances (Subsemiring, Subring, Subalgebra) are deferred to a follow-up PR.
|
t-algebra
new-contributor
label:t-algebra$ |
100/2 |
Mathlib/Algebra/Order/Kleene.lean |
1 |
2 |
['github-actions'] |
nobody |
39-6258 1 month ago |
39-8277 39 days ago |
39-9399 39 days |
0 |
| 42343 |
brianrabern author:brianrabern |
feat(Combinatorics/SimpleGraph): extend a coloring to one more vertex |
Add `Colorable.of_induce_compl_singleton`: if deleting a vertex `v` leaves an `n`-colourable graph and `deg(v) < n`, then `G` itself is `n`-colourable.
This is a local colouring-extension / induction step (colour `G - v`, then assign `v` a free colour). It is useful for inductive arguments such as Brooks' theorem. The global greedy bound `χ ≤ Δ + 1` is developed separately in #38357.
AI assistance: LLM was used to smooth it out and put things in the expected style
---
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t-combinatorics
new-contributor
LLM-generated
|
35/0 |
Mathlib/Combinatorics/SimpleGraph/Coloring/Vertex.lean |
1 |
11 |
['Parcly-Taxel', 'SnirBroshi', 'bocowgill', 'brianrabern', 'github-actions'] |
nobody |
38-74139 1 month ago |
48-9172 48 days ago |
50-50466 50 days |
0 |
| 42788 |
andreylukin author:andreylukin |
feat(Combinatorics/Sperner): define facet incidence data |
## Summary
Adds a small finite facet-ridge incidence interface intended as a prerequisite for the general Sperner lemma (#25231).
- defines finite facets, ridges, and their incidence relation;
- assumes every ridge has one or two cofacets;
- defines boundary and interior ridges and proves that they are disjoint and partition the ridges.
This deliberately does not claim the geometric Sperner theorem. A future development must connect finite triangulations of the standard simplex to this incidence interface and establish the required coface-count property.
## Validation
- `lake build Mathlib.Combinatorics.Sperner.Basic`
- `lake env lean -DwarningAsError=false Mathlib.lean`
Towards #25231
|
t-combinatorics
new-contributor
|
117/0 |
Mathlib.lean,Mathlib/Combinatorics/Sperner/Basic.lean |
2 |
2 |
['github-actions'] |
nobody |
37-7243 1 month ago |
37-9938 37 days ago |
37-9832 37 days |
0 |
| 42758 |
cameronfreer author:cameronfreer |
feat(ModelTheory): add syntax and semantics for infinitary logic |
Add basic syntax and semantics for infinitary model theory of L∞ω (and Lω₁ω).
The new `BoundedFormulaInf L ι α n` uses index type `ι` for all of a formula's infinitary conjunctions and disjunctions, and the definitional
```lean
abbrev BoundedFormulaω (α : Type u') (n : ℕ) := L.BoundedFormulaInf ℕ α n
```
lands in exactly the universe of the finitary `BoundedFormula`, as suggested by @plp127 in [#mathlib4 > ModelTheory: API for infinitary formulas of L_{∞,ω} @ 💬](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/ModelTheory.3A.20API.20for.20infinitary.20formulas.20of.20L_.7B.E2.88.9E.2C.CF.89.7D/near/613390601).
This PR contains `iSup`/`iInf` constructors, derived connectives together with `alls`/`exs`, `Realize` with `simp` lemmas for every constructor and derived connective, and the embedding `BoundedFormula.toInf` with `realize_toInf`.
I developed this with extensive assistance from several Claude and GPT models along with [lean4-skills](https://github.com/cameronfreer/lean4-skills) and [lean-lsp-mcp](https://github.com/oOo0oOo/lean-lsp-mcp) as part of the ongoing project [cameronfreer/infinitary-logic](https://github.com/cameronfreer/infinitary-logic/). |
t-logic
LLM-generated
new-contributor
|
446/0 |
Mathlib.lean,Mathlib/ModelTheory/Infinitary/Semantics.lean,Mathlib/ModelTheory/Infinitary/Syntax.lean,MathlibTest/InfinitarySyntax.lean |
4 |
4 |
['cameronfreer', 'github-actions'] |
nobody |
36-78281 1 month ago |
38-61182 38 days ago |
38-60956 38 days |
0 |
| 42820 |
tolgadgrmnc27 author:tolgadgrmnc27 |
feat(Data/Nat/Choose): elementary Chernoff bound for tail sums of binomial coefficients |
Adds an elementary, purely combinatorial Chernoff-type bound on tail sums of
binomial coefficients:
```lean
theorem Nat.sum_Ico_choose_le_div (n m : ℕ) {x : α} (hx : 1 ≤ x) :
∑ j ∈ Ico m (n + 1), (n.choose j : α) ≤ (1 + x) ^ n / x ^ m
```
together with the specialization at `x = 2`:
```lean
theorem Nat.sum_Ico_choose_le_three_pow_div (n m : ℕ) :
∑ j ∈ Ico m (n + 1), (n.choose j : α) ≤ 3 ^ n / 2 ^ m
```
The proof is the classical exponential moment trick done combinatorially: for
`m ≤ j` and `1 ≤ x` we have `x ^ m ≤ x ^ j`, so the tail sum is bounded by
`x ^ (-m) * ∑ j, n.choose j * x ^ j = x ^ (-m) * (1 + x) ^ n` by the binomial
theorem. A helper `Nat.sum_range_choose_mul_pow` states the binomial theorem in
the convenient form `∑ j ≤ n, n.choose j * x ^ j = (1 + x) ^ n`.
### Why this is not already in Mathlib
* `Nat.sum_range_choose` gives the *total* sum `∑ j ≤ n, n.choose j = 2 ^ n`.
* `Mathlib/Data/Nat/Choose/Bounds.lean` bounds a *single* coefficient
(`choose_le_pow`, `choose_le_two_pow`, `choose_le_pow_div`, …).
* `Mathlib/Probability/Moments/SubGaussian.lean` has Chernoff/Hoeffding, but
measure-theoretically: using it for a counting argument requires setting up a
probability space with independent Bernoulli variables and translating back
to cardinalities.
I could not find a statement bounding a *partial* sum of binomial
coefficients. The version here needs no probability space and applies directly
to counting arguments (its original use was bounding the number of `n < 2 ^ k`
whose first `k` binary digits contain at least `m` ones).
### Notes
* Stated over a general `[Semifield α] [LinearOrder α] [IsStrictOrderedRing α]`,
matching the typeclass style of `Mathlib/Data/Nat/Choose/Bounds.lean`.
* `Ico m (n + 1)` rather than a `filter (m ≤ ·)` form, as is idiomatic in
Mathlib; the two are equal by `Finset.filter_le_eq_Ico`-style reasoning.
* Names are of course open to bikeshedding.
---
- [x] depends on: nothing
|
t-data
new-contributor
|
84/0 |
Mathlib.lean,Mathlib/Data/Nat/Choose/Tail.lean |
2 |
3 |
['github-actions'] |
nobody |
36-11220 1 month ago |
36-23986 36 days ago |
36-23760 36 days |
0 |
| 42808 |
rshlyakh author:rshlyakh |
feat(Algebra/MonoidAlgebra/Grading): add decomposition lemma |
Adds a `simp` lemma about the decomposition of the `AddMonoidAlgebra R M` grading.
---
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In particular, note that most reviewers will only notice your PR
if it passes the continuous integration checks.
Please ask for help on https://leanprover.zulipchat.com if needed.
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Co-authors in the squash commit are gathered from two sources:
First, all authors of commits to this PR branch are included. Thus,
one way to add co-authors is to include at least one commit authored by
each co-author among the commits in the pull request. If necessary, you
may create empty commits to indicate co-authorship, using commands like so:
git commit --author="Author Name <author@email.com>" --allow-empty -m "add Author Name as coauthor"
Second, co-authors can also be listed in lines at the very bottom of
the commit message (that is, directly before the `---`) using the following format:
Co-authored-by: Author Name <author@email.com>
If you are moving or deleting declarations, please include these lines
at the bottom of the commit message (before the `---`, and also before
any "Co-authored-by" lines) using the following format:
Moves:
- Vector.* -> List.Vector.*
- ...
Deletions:
- Nat.bit1_add_bit1
- ...
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below the `---`, and placed outside this HTML comment, or else they
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- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
label:t-algebra$ |
10/0 |
Mathlib/Algebra/MonoidAlgebra/Grading.lean |
1 |
4 |
['github-actions', 'wwylele'] |
nobody |
36-6619 1 month ago |
36-68887 36 days ago |
36-69272 36 days |
0 |
| 42783 |
barni120400 author:barni120400 |
feat(Algebra/MvPolynomial): partial derivatives commute |
Add `MvPolynomial.pderiv_comm`: partial derivatives of a multivariate polynomial commute.
🤖 Prepared with Claude Code
|
t-algebra
new-contributor
LLM-generated
label:t-algebra$ |
10/0 |
Mathlib/Algebra/MvPolynomial/PDeriv.lean |
1 |
2 |
['github-actions', 'wwylele'] |
nobody |
35-33094 1 month ago |
37-72770 37 days ago |
37-72595 37 days |
0 |
| 42540 |
shaikidris author:shaikidris |
feat(Combinatorics): asymptotic / natural density and linear-growth bridge |
Redefines asymptotic / natural density around a shared finite relative-density profile, instead of density along `SummationFilter`s.
* `Set.partialDensity S A b` — proportion of `A ∩ Iio b` in `S`
* `Set.lowerDensity` / `Set.upperDensity` — liminf / limsup of that profile
* `Set.HasDensity` — convergence of the profile; `Set.HasNaturalDensity` — `ℕ` case with `A = univ`
* Basic API: `[0,1]` bounds, empty/univ, finite sets have density `0`, `Finset.range` characterizations
* Drops the filter-parametric layer and the junk-valued `naturalDensity`
* Opt-in `Mathlib.Combinatorics.AsymptoticDensity.LinearGrowth`: exact lower/upper density equalities for the counting function `n ↦ #{x ∈ Finset.range n | x ∈ S}`, with no `LinearGrowth` dependency on the core density module
* Retargets the Schnirelmann TODO to this module; Schnirelmann-density comparison proofs are left for follow-up (the linear-growth bridge is proved here)
AI disclosure: this PR is primarily LLM-generated (OpenAI Codex). I reviewed the design (with review comments feedback), public APIs and edge-cases.
I primarily used these as part of my other project on quantitative descent and I think there is a merit in reusability.
---
---
<!-- Your PR title will become the first line of the commit message.
In this box, the text above the `---` (if not empty) will be appended
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will format the text above it as a title.
For details on the "pull request lifecycle" in mathlib, please see:
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In particular, note that most reviewers will only notice your PR
if it passes the continuous integration checks.
Please ask for help on https://leanprover.zulipchat.com if needed.
When merging, all the commits will be squashed into a single commit
listing all co-authors.
Co-authors in the squash commit are gathered from two sources:
First, all authors of commits to this PR branch are included. Thus,
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each co-author among the commits in the pull request. If necessary, you
may create empty commits to indicate co-authorship, using commands like so:
git commit --author="Author Name <author@email.com>" --allow-empty -m "add Author Name as coauthor"
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the commit message (that is, directly before the `---`) using the following format:
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at the bottom of the commit message (before the `---`, and also before
any "Co-authored-by" lines) using the following format:
Moves:
- Vector.* -> List.Vector.*
- ...
Deletions:
- Nat.bit1_add_bit1
- ...
Any other comments you want to keep out of the PR commit should go
below the `---`, and placed outside this HTML comment, or else they
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[](https://gitpod.io/from-referrer/)
|
new-contributor
t-combinatorics
LLM-generated
|
358/2 |
Mathlib.lean,Mathlib/Combinatorics/AsymptoticDensity.lean,Mathlib/Combinatorics/AsymptoticDensity/LinearGrowth.lean,Mathlib/Combinatorics/Schnirelmann.lean |
4 |
16 |
['D-Thomine', 'b-mehta', 'github-actions', 'jcommelin', 'mathlib-bors', 'shaikidris', 'wwylele'] |
nobody |
35-29639 1 month ago |
41-33349 41 days ago |
44-51315 44 days |
0 |
| 42881 |
forxhunter author:forxhunter |
feat(Analysis/SpecialFunctions/Gamma): Mittag-Leffler expansion of the Beta function |
For `0 < re u` and `0 < re v`, the Beta function admits the classical absolutely
convergent partial-fraction (Mittag-Leffler) expansion over its poles in the first
variable:
`Β(u, v) = ∑' n : ℕ, Ring.choose (n - v) n / (n + u)` (`Complex.hasSum_betaIntegral`),
where `Ring.choose (n - v) n = (1 - v)⁽ⁿ⁾ / n!` is the `n`-th binomial-series
coefficient of `x ↦ (1 - x) ^ (v - 1)`. The proof expands the Euler integral
`Complex.betaIntegral` by the binomial series
(`Complex.one_div_one_sub_cpow_hasFPowerSeriesOnBall_zero`) and integrates term by
term via `MeasureTheory.hasSum_integral_of_summable_integral_norm`.
Main new results, in `Mathlib/Analysis/SpecialFunctions/Gamma/BetaMittagLeffler.lean`:
* `Ring.choose_add_natCast_eq_prod_range`:
`Ring.choose (t + n) n = ∏ k < n, (t + k + 1) / (k + 1)` in a characteristic-zero
field (the rising-factorial form `(t + 1)⁽ⁿ⁾ / n!` with the factorial distributed
into the product).
* `Complex.norm_ringChoose_add_natCast_le`: the Stirling-free growth bound
`‖Ring.choose (t + n) n‖ ≤ Real.exp (normSq t) * (n + 1) ^ t.re` for `t.re ≤ 0`.
Mathlib has no complex Stirling formula and no `Γ`-ratio asymptotics, so the
textbook route via `Ring.choose (t + n) n ∼ n ^ t / Γ (t + 1)` is unavailable; the
proof instead applies `Real.log (1 + u) ≤ u` to each factor of the product above and
sums against `Real.log (n + 1) ≤ harmonic n` and the telescoping bound
`∑ k < n, 1 / (k + 1) ^ 2 ≤ 2 - 2 / (n + 1)`. This bound is what makes the pole
series absolutely convergent (`Complex.summable_norm_ringChoose_div`) for
`t.re < 0`, a restriction that is sharp: at `t = 0` the series is harmonic.
* `Complex.hasSum_ringChoose_mul_pow`: the binomial series
`(1 - x) ^ (-t - 1) = ∑' n, Ring.choose (t + n) n * x ^ n` on the open unit disc,
in `HasSum` form.
* `integral_Ioo_cpow` / `integral_Ioo_rpow`: `∫ x in Ioo 0 1, x ^ w = 1 / (w + 1)`,
`Ioo`-restricted versions of `integral_cpow` / `integral_rpow`.
Motivation: this arises from an ongoing Lean formalization of dispersion relations
and positivity bounds in effective field theory, where the Beta function (the
tree-level Veneziano amplitude at fixed momentum transfer) serves as the witness for
a dispersive spectral representation; the expansion above is exactly its pole/residue
form. The material here is the physics-free analytic core, stated purely in terms of
`Complex.betaIntegral` and `Ring.choose`.
**AI disclosure**: this PR was substantially generated with Claude Code (Anthropic) —
proof scripts, the Stirling-free bounding strategy, and the port to current master.
It is opened as a **draft** while the human author reviews the content; it will be
marked ready only after that review, per the policy that contributors must understand
and be able to defend AI-assisted contributions. The `LLM-generated` label applies
and should be added by a maintainer.
awaiting-author items (will be resolved before marking ready):
- [x] Author review of the full file per the AI-contribution policy: done.
- [x] The `Authors:` line is finalized as `Tianyu (forxhunter)`
- [ ] If reviewers prefer, `Ring.choose_add_natCast_eq_prod_range` can move to
`Mathlib/RingTheory/Binomial.lean` and `integral_Ioo_cpow` / `integral_Ioo_rpow`
to `Mathlib/Analysis/SpecialFunctions/Integrals/Basic.lean`; they are kept in the
new file for now to keep the PR single-file.
---
Possible follow-ups (not in this PR): positivity of `Ring.choose (t + n) n` for real
`t > -1` (and its sharpness at `t < -1`), and the residue identification of
`u ↦ Β(u, v)` at `u = -n` as a `Tendsto`/`meromorphicAt` statement.
|
new-contributor
t-analysis
|
425/0 |
Mathlib.lean,Mathlib/Analysis/SpecialFunctions/Gamma/BetaMittagLeffler.lean |
2 |
2 |
['github-actions'] |
nobody |
34-77304 1 month ago |
34-77898 34 days ago |
34-77862 34 days |
0 |
| 42365 |
hawkrobe author:hawkrobe |
feat(LinearAlgebra/TensorProduct): tensor product of graded modules is graded |
---
Split from #39849, also a first step toward the TODO in `LinearAlgebra/TensorProduct/Graded/Internal.lean` (the tensor product of graded algebras is graded.) I tried to model it after [AddMonoidAlgebra.gradeBy](https://leanprover-community.github.io/mathlib4_docs/Mathlib/Algebra/MonoidAlgebra/Grading.html#AddMonoidAlgebra.gradeBy).
[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
label:t-algebra$ |
158/0 |
Mathlib/Data/DFinsupp/Defs.lean,Mathlib/LinearAlgebra/TensorProduct/Decomposition.lean,Mathlib/LinearAlgebra/TensorProduct/Map.lean |
3 |
2 |
['github-actions'] |
nobody |
34-72978 1 month ago |
34-82467 34 days ago |
49-75848 49 days |
2 |
| 42775 |
hawkrobe author:hawkrobe |
feat(RingTheory/HopfAlgebra): construct Hopf algebras from generators |
Upgrade a bialgebra to a Hopf algebra from antipode data on an algebra-generating set (`HopfAlgebra.ofGenerators`), plus the primitive-element form `HopfAlgebra.ofPrimitives`. Split out of #39841.
This looks more elegant using Sweedler notation (this proof was taken from a comment in #31898) but mathlib doesn't have the notation available as far as I know.
- [x] depends on: #39841 |
t-ring-theory
new-contributor
|
153/6 |
Mathlib.lean,Mathlib/RingTheory/HopfAlgebra/Generators.lean,Mathlib/RingTheory/HopfAlgebra/Primitive.lean |
3 |
3 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
34-31462 1 month ago |
35-44450 35 days ago |
35-59100 35 days |
1 |
| 42451 |
FawadHa1der author:FawadHa1der |
perf(Analysis/Distribution/SchwartzSpace): split denseRange_toLpCLM off Basic to shorten the longest pole |
Shortening the "longest pole" in the mathlib build. LLM help was used.
Per [lake prof report](https://speed.lean-lang.org/mathlib4-out/c8830a1d9ceaffabd7c8c7493d9a9be3ead6ea74/) SchwartzSpace/Basic.lean sits on the longest pole. With this change SchwartzSpace/Basic no longer imports SmoothApprox( which imported the whole manifold chain) hence shortening the longest pole by **23s** of ~502 s
denseRange_toLpCLM is moved to a new file SchwartzSpace/DenseLp.lean. |
t-analysis
new-contributor
longest-pole
|
58/16 |
Mathlib.lean,Mathlib/Analysis/Distribution/SchwartzSpace/Basic.lean,Mathlib/Analysis/Distribution/SchwartzSpace/DenseLp.lean,Mathlib/Analysis/Fourier/LpSpace.lean |
4 |
8 |
['FawadHa1der', 'github-actions', 'luigi-massacci', 'mathlib-merge-conflicts'] |
nobody |
34-10042 1 month ago |
34-11574 34 days ago |
41-26125 41 days |
0 |
| 42965 |
arihallak author:arihallak |
feat(Analysis/Normed/Group/Pointwise): diameter of pointwise inversion, multiplication, and division |
This PR adds API lemmas for extended and real diameters (`EMetric.ediam` and `Metric.diam`) of pointwise inversion, multiplication, and division of sets in a `SeminormedCommGroup` (and automatically generates the additive counterparts via `@[to_additive]`).
### New declarations
- `ediam_inv` (additive: `ediam_neg`): `ediam s⁻¹ = ediam s`
- `ediam_div_le` (additive: `ediam_sub_le`): `ediam (s / t) ≤ ediam s + ediam t`
- `diam_inv` (additive: `diam_neg`): `diam s⁻¹ = diam s`
- `diam_mul_le` (additive: `diam_add_le`): `diam (s * t) ≤ diam s + diam t` (for bounded sets)
- `diam_div_le` (additive: `diam_sub_le`): `diam (s / t) ≤ diam s + diam t` (for bounded sets)
Tested with all 14 `#lint` linters. |
t-analysis
new-contributor
|
26/0 |
Mathlib/Analysis/Normed/Group/Pointwise.lean |
1 |
6 |
['github-actions', 'wwylele'] |
nobody |
31-63871 1 month ago |
32-61007 32 days ago |
32-60781 32 days |
0 |
| 42995 |
jacob-greenfield author:jacob-greenfield |
feat: add `List.Pairwise.orderedInsert'`, `List.sortedLE_orderedInsert_LT`, and `List.sortedGE_orderedInsert_GT` |
Introduce a generalized `Pairwise.orderedInsert'` lemma to prove that `Pairwise r l` is maintained after performing an `orderedInsert` using a relation stronger than `r` under certain conditions. Prove `sortedLE_orderedInsert_LT`, showing that `l.orderedInsert (· < ·) a` preserves `SortedLE` for decidable total preorders (analogously for `sortedGE_orderedInsert_GT`). This is useful for inserting an element into a sorted list *behind* any other elements which compare equal.
---
<!-- Your PR title will become the first line of the commit message.
In this box, the text above the `---` (if not empty) will be appended
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details. Please leave a blank newline before the `---`, otherwise GitHub
will format the text above it as a title.
For details on the "pull request lifecycle" in mathlib, please see:
https://leanprover-community.github.io/contribute/index.html
In particular, note that most reviewers will only notice your PR
if it passes the continuous integration checks.
Please ask for help on https://leanprover.zulipchat.com if needed.
When merging, all the commits will be squashed into a single commit
listing all co-authors.
Co-authors in the squash commit are gathered from two sources:
First, all authors of commits to this PR branch are included. Thus,
one way to add co-authors is to include at least one commit authored by
each co-author among the commits in the pull request. If necessary, you
may create empty commits to indicate co-authorship, using commands like so:
git commit --author="Author Name <author@email.com>" --allow-empty -m "add Author Name as coauthor"
Second, co-authors can also be listed in lines at the very bottom of
the commit message (that is, directly before the `---`) using the following format:
Co-authored-by: Author Name <author@email.com>
If you are moving or deleting declarations, please include these lines
at the bottom of the commit message (before the `---`, and also before
any "Co-authored-by" lines) using the following format:
Moves:
- Vector.* -> List.Vector.*
- ...
Deletions:
- Nat.bit1_add_bit1
- ...
Any other comments you want to keep out of the PR commit should go
below the `---`, and placed outside this HTML comment, or else they
will be invisible to reviewers.
If this PR depends on other PRs, please list them below this comment,
using the following format:
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- [ ] depends on: #xyz [optional extra text]
-->
I was hoping to avoid `omit`, but that would require moving all of `Pairwise.orderedInsert'`, `Pairwise.orderedInsert`, `pairwise_insertionSort`, `sublist_insertionSort'`, `pair_sublist_insertionSort'`, and `mergeSort_eq_insertionSort` after `end sort` on line 365 and reintroducing all the section variables. I also considered moving `Pairwise.orderedInsert'` somewhere _before_ `variable {α β : Type*} (r : α → α → Prop) (s : β → β → Prop)` on line 30, but that would place it before `orderedInsert` is defined. "Omit" seemed like the least invasive approach.
[](https://gitpod.io/from-referrer/)
|
t-data
new-contributor
|
31/11 |
Mathlib/Data/List/Sort.lean |
1 |
2 |
['github-actions'] |
nobody |
30-79544 30 days ago |
31-53373 31 days ago |
31-53147 31 days |
0 |
| 43040 |
Qinghev author:Qinghev |
feat(Analysis/Convex): add center mass residual identity |
This adds `Finset.sum_smul_sub_centerMass_eq_zero`, stating that the weighted sum of displacements from a finite center of mass is zero whenever the total weight is nonzero.
---
Codex assisted with drafting and verification. |
t-analysis
new-contributor
|
5/0 |
Mathlib/Analysis/Convex/Combination.lean |
1 |
2 |
['github-actions'] |
nobody |
30-37963 30 days ago |
30-39120 30 days ago |
30-38894 30 days |
0 |
| 42815 |
korbonits author:korbonits |
feat(Analysis/Calculus/VectorField): the Lie bracket acts as a derivation on functions |
Add `VectorField.lieBracket_apply_fun`: for a function `f` with derivative `f'` and vector fields `V`, `W`,
D(f' W) V - D(f' V) W = f' [V, W]
i.e. the familiar `[V, W] f = V (W f) - W (V f)`. The two second-derivative terms cancel by symmetry of the second derivative, leaving exactly the bracket.
Placed beside the existing `lieBracket_smul_*` product rules. Needs no new import: `FDeriv.Symmetric` is already imported for `second_derivative_symmetric`, which supplies the symmetry and is the source of the `IsRCLikeNormedField` hypothesis.
---
AI disclosure
- level: Level 5 / Level 6 in [the link shared](https://www.visidata.org/blog/2026/ai/#self-assessed-ai-level-for-contributions) I feel confident about the math but I am still learning Lean itself
- code: most of the Lean in this PR was drafted by Claude Code (statements, proofs, docstrings).
- direction and review: I chose the contribution, made the decisions, reviewed every line, and wrote all GitHub/Zulip comments. |
t-analysis
new-contributor
LLM-generated
|
29/0 |
Mathlib/Analysis/Calculus/VectorField.lean |
1 |
4 |
['github-actions', 'korbonits'] |
nobody |
26-44958 26 days ago |
36-48032 36 days ago |
36-47806 36 days |
0 |
| 40496 |
thefundamentaltheor3m author:thefundamentaltheor3m |
feat(LinearAlgebra/AffineSpace/Simplex): the surface of a simplex |
I wrote the definition myself, and got Claude to generate some of the boilerplate code (which I then reviewed and had it clean up).
---
<!-- Your PR title will become the first line of the commit message.
In this box, the text above the `---` (if not empty) will be appended
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For details on the "pull request lifecycle" in mathlib, please see:
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In particular, note that most reviewers will only notice your PR
if it passes the continuous integration checks.
Please ask for help on https://leanprover.zulipchat.com if needed.
When merging, all the commits will be squashed into a single commit
listing all co-authors.
Co-authors in the squash commit are gathered from two sources:
First, all authors of commits to this PR branch are included. Thus,
one way to add co-authors is to include at least one commit authored by
each co-author among the commits in the pull request. If necessary, you
may create empty commits to indicate co-authorship, using commands like so:
git commit --author="Author Name <author@email.com>" --allow-empty -m "add Author Name as coauthor"
Second, co-authors can also be listed in lines at the very bottom of
the commit message (that is, directly before the `---`) using the following format:
Co-authored-by: Author Name <author@email.com>
If you are moving or deleting declarations, please include these lines
at the bottom of the commit message (before the `---`, and also before
any "Co-authored-by" lines) using the following format:
Moves:
- Vector.* -> List.Vector.*
- ...
Deletions:
- Nat.bit1_add_bit1
- ...
Any other comments you want to keep out of the PR commit should go
below the `---`, and placed outside this HTML comment, or else they
will be invisible to reviewers.
If this PR depends on other PRs, please list them below this comment,
using the following format:
- [ ] depends on: #abc [optional extra text]
- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
t-algebra
LLM-generated
new-contributor
label:t-algebra$ |
97/5 |
Mathlib/LinearAlgebra/AffineSpace/Simplex/Basic.lean |
1 |
8 |
['github-actions', 'grunweg', 'mathlib-bors', 'mathlib-merge-conflicts', 'thefundamentaltheor3m', 'wwylele'] |
nobody |
25-84788 25 days ago |
46-23500 46 days ago |
59-52694 59 days |
0 |
| 43144 |
gotrevor author:gotrevor |
doc(100-yaml): claim #53 (Pi is Transcendental) via an external Lean 4 formalization |
Adds `authors` + `links.result` to `docs/100.yaml` entry **53, "Pi is Transcendental"**, which
currently has a title and nothing else.
The formalization lives outside mathlib, in Lean 4:
[`PiTranscendental.lean`](https://github.com/gotrevor/lean-formalizations/blob/main/src/LeanFormalizations/NumberTheory/Transcendence/PiTranscendental.lean)
— `transcendental_pi_axiomClean : Transcendental ℚ Real.pi`, with
`#print axioms` = `[propext, Classical.choice, Quot.sound]` (re-verified 2026-08-25 against
mathlib v4.31.0). It builds the full Lindemann assembly on mathlib's own
`exp_polynomial_approx`: the analytic engine generalised to an arbitrary conjugate polynomial,
plus the algebraic half (symmetric functions over the Galois conjugates of `iπ`, via the
fundamental theorem of symmetric polynomials). `e_transcendental` is proved in the same chain.
No `decl` field, since that is for in-mathlib declarations and is existence-checked. `title` is
untouched. This follows the existing external-formalization entries: 8 (Compass), 24
(flypitch/CH), 31 (Ramsey), 36 (Brouwer), and 67 ("e is Transcendental").
`scripts/yaml_check.py docs/{100,1000,overview,undergrad}.yaml` exits 0.
### On #28013
[#28013](https://github.com/leanprover-community/mathlib4/pull/28013) (Lindemann–Weierstrass,
@astrainfinita) is open and active, and when it lands entry 53 should get a proper in-mathlib
`decl` — at which point this pointer has done its job and should be replaced or dropped. I am
not proposing this as an alternative to that work, and I would rather it landed than mine be
listed. This is only meant to record that a checkable Lean 4 proof exists in the meantime, which
is what `links.result` is for on the other five entries. Happy to close this if maintainers would
rather the entry stay empty until #28013 merges.
### Use of AI
The Lean development this points at was largely written by Claude working in long autonomous
sessions against a `lake build` + `#print axioms` gate, and two symmetric-function lemmas came
from Harmonic's Aristotle and were re-verified in the repository's own kernel; the repo's README
and commit history say so. This PR's four-line YAML diff was likewise drafted with Claude. I have
checked the axiom footprint myself and the linked file is machine-checked end to end.
|
LLM-generated
new-contributor
|
4/0 |
docs/100.yaml |
1 |
3 |
['github-actions', 'gotrevor'] |
nobody |
25-70189 25 days ago |
25-70771 25 days ago |
25-70545 25 days |
0 |
| 42353 |
sankalpsthakur author:sankalpsthakur |
feat(RingTheory): add nilpotence lemmas for zero sums |
In a commutative semiring, adds:
- `sq_eq_sq_of_add_eq_zero`: if `x + y = 0` then `x^2 = y^2`
- `IsNilpotent.of_add_eq_zero_left`: if `x + y = 0` and `y` is nilpotent, so is `x`
- `isNilpotent_iff_of_add_eq_zero`: under `x + y = 0`, `x` is nilpotent iff `y` is
Motivated by #10539.
### Validation
Built locally: `lake build Mathlib.RingTheory.Nilpotent.Basic` — succeeds.
Closes #10539
### AI/LLM disclosure
AI coding tools were used to help draft this change and PR description. I reviewed the complete change, understand the reasoning, and verified the build locally before submitting. |
t-ring-theory
new-contributor
LLM-generated
|
49/0 |
Mathlib/RingTheory/Nilpotent/Basic.lean |
1 |
27 |
['github-actions', 'sankalpsthakur', 'tb65536'] |
nobody |
25-24550 25 days ago |
26-40096 26 days ago |
32-47658 32 days |
0 |
| 42377 |
norbsvr author:norbsvr |
doc(1000.yaml): add Brauer's theorem on induced characters |
Claims a proof of [Q4958218:](https://www.wikidata.org/wiki/Q4958218) Brauer's theorem on induced characters.
The formalization is in an <a href="https://github.com/norbsvr/BrauerInduction/">external Lean 4 repository</a>. Please see file `README.md` for further information.
---
<!-- Your PR title will become the first line of the commit message.
In this box, the text above the `---` (if not empty) will be appended
to the commit message, and can be used to give additional context or
details. Please leave a blank newline before the `---`, otherwise GitHub
will format the text above it as a title.
For details on the "pull request lifecycle" in mathlib, please see:
https://leanprover-community.github.io/contribute/index.html
In particular, note that most reviewers will only notice your PR
if it passes the continuous integration checks.
Please ask for help on https://leanprover.zulipchat.com if needed.
When merging, all the commits will be squashed into a single commit
listing all co-authors.
Co-authors in the squash commit are gathered from two sources:
First, all authors of commits to this PR branch are included. Thus,
one way to add co-authors is to include at least one commit authored by
each co-author among the commits in the pull request. If necessary, you
may create empty commits to indicate co-authorship, using commands like so:
git commit --author="Author Name <author@email.com>" --allow-empty -m "add Author Name as coauthor"
Second, co-authors can also be listed in lines at the very bottom of
the commit message (that is, directly before the `---`) using the following format:
Co-authored-by: Author Name <author@email.com>
If you are moving or deleting declarations, please include these lines
at the bottom of the commit message (before the `---`, and also before
any "Co-authored-by" lines) using the following format:
Moves:
- Vector.* -> List.Vector.*
- ...
Deletions:
- Nat.bit1_add_bit1
- ...
Any other comments you want to keep out of the PR commit should go
below the `---`, and placed outside this HTML comment, or else they
will be invisible to reviewers.
If this PR depends on other PRs, please list them below this comment,
using the following format:
- [ ] depends on: #abc [optional extra text]
- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
new-contributor |
3/0 |
docs/1000.yaml |
1 |
3 |
['github-actions'] |
nobody |
22-76056 22 days ago |
49-82874 49 days ago |
49-82648 49 days |
0 |
| 42931 |
yui9696 author:yui9696 |
feat(Analysis/Matrix): simultaneous diagonalization of two Hermitian forms and generalized eigenvalues |
Adds the simultaneous diagonalization theorem for two real quadratic forms, one of which is positive definite:
if `A : Matrix n n ℝ` is positive definite and `B : Matrix n n ℝ` is symmetric, then there is an invertible `P` with `Pᵀ * A * P = 1` and `Pᵀ * B * P` diagonal.
This is the entry "simultaneous diagonalization of two real quadratic forms" from the [missing undergraduate mathematics list](https://leanprover-community.github.io/undergrad_todo.html) (Bilinear and quadratic forms).
### Contents
* `Matrix.PosDef.exists_simultaneous_diagonalization` — the matrix statement above.
* `Matrix.PosDef.exists_simultaneous_diagonalization_quadratic` — the same fact read off on the quadratic forms themselves: one invertible change of variables takes the form of `A` to `∑ xᵢ ^ 2` and the form of `B` to `∑ dᵢ * xᵢ ^ 2`. This is the phrasing the undergraduate list actually asks for, so it seemed worth stating explicitly rather than leaving to the reader.
* `Matrix.PosDef.exists_simultaneous_diagonalization_of_posDef` — when `B` is positive definite as well, the diagonal entries are positive.
### Implementation
Conjugating by the inverse of `CFC.sqrt A` turns `A` into the identity; the congruence of `B` is then symmetric, so `Matrix.IsHermitian.spectral_theorem` diagonalizes it and the two changes of basis compose.
A note on the history of this branch, in case a reviewer reads the commits: the first version went through the LDL decomposition, because I had convinced myself Mathlib no longer had a square root for positive semidefinite matrices. That was simply wrong — `CFC.sqrt` applies to matrices, as `Mathlib/Analysis/Matrix/Order.lean` already uses. Redoing it that way removed the `LinearOrder`, `WellFoundedLT` and `LocallyFiniteOrderBot` hypotheses that LDL imposed on the index type, so the statement is now proved for an arbitrary `Fintype` with decidable equality.
This is my first Mathlib contribution, so I would be glad to hear if the placement or naming should be different. Two specific questions:
* Would a `QuadraticForm` / `LinearMap.BilinForm` statement be preferred to the `dotProduct` phrasing used in the `_quadratic` version?
* Is `∃ d, _ = diagonal d` the right conclusion, or would `Matrix.IsDiag` be more idiomatic here?
### Use of AI
Per the [contribution guidelines](https://leanprover-community.github.io/contribute/index.html), I am disclosing my use of AI on this PR.
**Tool:** Claude (Anthropic), used through Claude Code.
**How I used it:** I used it to draft and iterate on the Lean proofs in this file, to search Mathlib for the relevant existing lemmas, and to carry out the rewrite from the first LDL-based version to the `CFC.sqrt` version described above. I have read and checked every declaration in the file myself, and I can justify the statements, the proof design and the placement without AI assistance.
A substantial part of the code was AI-drafted, so I am adding the `LLM-generated` label.
---
[](https://gitpod.io/#https://github.com/leanprover-community/mathlib4)
|
t-analysis
new-contributor
LLM-generated
|
246/0 |
Mathlib.lean,Mathlib/Analysis/Matrix/SimultaneousDiagonalization.lean |
2 |
8 |
['github-actions', 'themathqueen', 'vlad902', 'yui9696'] |
nobody |
22-40178 22 days ago |
28-51534 28 days ago |
28-68546 28 days |
0 |
| 43231 |
E-M-Bailey author:E-M-Bailey |
feat(Analysis/Analytic): expand and update `AnalyticAt.comp_sub`-type theorems |
Adds `.comp_add` and biconditional versions of the `AnalyticAt.comp_sub`-type theorems. Also shortens the `.comp_sub` statements and simplifies a few of their proofs.
---
The purpose of this minor change, and in particular the biconditional versions, is to make it more convenient to shift power series. For example, I am currently working on a proof with a hypothesis of type `∀ᶠ w in 𝓝 z, ∀ i, AnalyticAt ℂ (f <| update w i ·) (w i)`, and I wanted to simplify the proof by assuming `z = 0`. This makes the `wlog` step shorter.
---
<!-- Your PR title will become the first line of the commit message.
In this box, the text above the `---` (if not empty) will be appended
to the commit message, and can be used to give additional context or
details. Please leave a blank newline before the `---`, otherwise GitHub
will format the text above it as a title.
For details on the "pull request lifecycle" in mathlib, please see:
https://leanprover-community.github.io/contribute/index.html
In particular, note that most reviewers will only notice your PR
if it passes the continuous integration checks.
Please ask for help on https://leanprover.zulipchat.com if needed.
When merging, all the commits will be squashed into a single commit
listing all co-authors.
Co-authors in the squash commit are gathered from two sources:
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|
t-analysis
new-contributor
|
202/32 |
Mathlib/Analysis/Analytic/Basic.lean |
1 |
3 |
['github-actions'] |
nobody |
22-6970 22 days ago |
22-8386 22 days ago |
22-8243 22 days |
0 |
| 42494 |
JadAbouHawili author:JadAbouHawili |
feat(Combinatorics/SimpleGraph/Connectivity): add edge reachability and connectivity numbers |
Define edge reachability and connectivity numbers with some basic API
Partially solves #34961
---
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|
new-contributor
t-combinatorics
|
59/0 |
Mathlib/Combinatorics/SimpleGraph/Connectivity/EdgeConnectivity.lean |
1 |
91 |
['JadAbouHawili', 'SnirBroshi', 'github-actions', 'grunweg'] |
nobody |
21-35082 21 days ago |
34-4733 34 days ago |
41-60008 41 days |
0 |
| 43196 |
danderson70-UNL author:danderson70-UNL |
doc: add Jacobi Four-Square proof to the list of 1000 theorems |
|
new-contributor |
3/0 |
docs/1000.yaml |
1 |
3 |
['github-actions'] |
nobody |
21-5853 21 days ago |
23-71800 23 days ago |
23-71574 23 days |
0 |
| 42669 |
kris-gaudel author:kris-gaudel |
feat(Analysis/Convex): add `ShapleyFolkman` lemma |
Closes https://github.com/leanprover-community/mathlib4/issues/14427
Formalizes the Shapley-Folkman Lemma, uses the proof outlined [here](https://en.wikipedia.org/wiki/Shapley%E2%80%93Folkman_lemma#Proofs) (Via reduction from Carathéodory's theorem) |
t-analysis
new-contributor
|
346/0 |
Mathlib.lean,Mathlib/Analysis/Convex/ShapleyFolkman.lean |
2 |
3 |
['github-actions'] |
nobody |
21-3647 21 days ago |
40-74814 40 days ago |
40-74588 40 days |
0 |
| 41308 |
sergantche author:sergantche |
feat: add `List.insertIdx_eraseIdx_getElem_perm` |
Adds `List.insertIdx_eraseIdx_getElem_perm`, showing that erasing an element by index and inserting it at any valid position gives a permutation of the original list.
This packages the existing lemmas `List.perm_insertIdx` and `List.getElem_cons_eraseIdx_perm` into a direct API lemma.
AI assistance was used in preparing this PR; I reviewed the statement and proof.
[](https://gitpod.io/from-referrer/) |
t-data
new-contributor
LLM-generated
|
5/0 |
Mathlib/Data/List/Perm/Basic.lean |
1 |
5 |
['github-actions', 'sergantche', 'vlad902'] |
TwoFX assignee:TwoFX |
20-63008 20 days ago |
70-72885 70 days ago |
74-76054 74 days |
0 |
| 41904 |
rshlyakh author:rshlyakh |
feat(RingTheory/KrullDimension): add Krull dimension preservation under injective integral extensions |
This proves that an injective integral homomorphism of commutative rings
preserves Krull dimension, based on the `Algebra.HasGoingUp` infrastructure from #40911. It includes:
- `RingHom.IsIntegral.ringKrullDim_eq_of_injective`: injective integral homomorphisms of
commutative rings preserve Krull dimension.
- `RingHom.IsIntegral.ringKrullDim_quotient_ker_eq`: for an integral extension `f : A →+* B`,
the Krull dimension of `B` is equal to the Krull dimension of `A ⧸ RingHom.ker f`.
- [x] depends on: #40911
- [x] depends on: #41058
---
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|
t-ring-theory
new-contributor
|
77/12 |
Mathlib.lean,Mathlib/RingTheory/Ideal/HasGoingUp.lean,Mathlib/RingTheory/KrullDimension/Integral.lean |
3 |
14 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'rshlyakh', 'vlad902'] |
nobody |
20-56240 20 days ago |
37-69918 37 days ago |
64-43185 64 days |
1 |
| 43280 |
idontgetoutmuch author:idontgetoutmuch |
feat(Topology/VectorBundle): coordinate lemmas for the bundle of bilinear forms |
Two coordinate-level identities for the bundle of scalar-valued bilinear forms
`fun x ↦ E x →L[ℝ] E x →L[ℝ] ℝ` over a real vector bundle:
* `inCoordinates_apply_eq₂_bilin`: the `inCoordinates` expression evaluated on
coordinate inputs equals the intrinsic form on the transported inputs;
* `trivializationAt_symm_apply_bilin`: the inverse trivialization of the bilinear-forms
bundle, applied to fibre vectors, equals the model form on their images under
`continuousLinearMapAt`.
These are used when transporting a fibrewise bilinear form (such as a Riemannian metric)
through a trivialization, and are the first piece split out of #33714 (existence of a
Riemannian metric on a manifold), which will be rebased on top of this PR.
---
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|
t-topology
new-contributor
|
83/0 |
Mathlib.lean,Mathlib/Topology/VectorBundle/HomBilinear.lean |
2 |
2 |
['github-actions'] |
nobody |
20-37790 20 days ago |
20-37790 20 days ago |
20-37564 20 days |
0 |
| 42590 |
AntoineduFresne author:AntoineduFresne |
feat(Order/UpperLower/Closure): the upper and lower closures of a maximal antichain cover the order |
I add `IsMaxAntichain.upperClosure_union_lowerClosure`. It says that the upper and lower closures of a maximal antichain cover the whole order.
I put it right after `ordConnected_iff_upperClosure_inter_lowerClosure`, next to `upperClosure_inter_lowerClosure`, which seems the right spot.
The lemma is about antichains, so `Mathlib/Order/Antichain.lean` would have looked like the natural file to modify, but `upperClosure` is defined in `Mathlib/Order/UpperLower/Closure.lean`, which imports `Mathlib.Order.Interval.Set.OrdConnected`, which imports `Mathlib.Order.Antichain`. So to avoid an import loop I put it in `Closure.lean`.
I split this out of #40741, where a reviewer suggested it. Nothing in that PR uses the lemma.
|
t-order
new-contributor
|
13/0 |
Mathlib/Order/Antichain.lean,Mathlib/Order/UpperLower/Closure.lean |
2 |
12 |
['AntoineduFresne', 'Ruben-VandeVelde', 'SnirBroshi', 'github-actions', 'tdwag123'] |
nobody |
20-35478 20 days ago |
20-73938 20 days ago |
36-30747 36 days |
0 |
| 43128 |
dannyhe652 author:dannyhe652 |
feat(SimpleGraph/Coloring): add edge colorings and missing colors |
## Summary
This PR starts the edge-coloring API needed for Vizing's theorem.
It defines edge colorings as vertex colorings of the line graph, introduces edge
colorability and the chromatic index, and adds the basic local color-set API around a
vertex.
Main additions:
- `vizing.edgeColoring`
- `vizing.edgeColorable`
- `vizing.chromaticIndex`
- `vizing.incidentEdges`
- `vizing.incidentColors`
- `vizing.missingColors`
It also proves the basic cardinality estimates relating incident colors to vertex degree,
including that with more available colors than the degree, some color is missing at the
vertex.
This is the first PR in a stacked development toward Vizing's theorem.
## Co-authors
Co-authored-by: Daniel Raggi <dr495@cam.ac.uk>
Co-authored-by: Aristotle (Harmonic) <aristotle-harmonic@harmonic.fun>
Co-authored-by: Claude Opus 4.5 & 4.6 <noreply@anthropic.com>
---
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|
t-combinatorics
new-contributor
LLM-generated
|
271/0 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/Coloring/EdgeColoring.lean,Mathlib/Combinatorics/SimpleGraph/Coloring/KempeChain.lean,Mathlib/Combinatorics/SimpleGraph/Coloring/KempeChain/Basic.lean |
4 |
6 |
['SnirBroshi', 'dannyhe652', 'github-actions'] |
nobody |
20-18573 20 days ago |
26-29075 26 days ago |
26-28945 26 days |
4 |
| 42468 |
Cobord author:Cobord |
feat: added lambda rings |
Description:
This does lambda rings. It is mostly over rationals so we can concern ourselves only with the psi^n operations and not the more complicated lambda^n operations. Doing the more general case could be another PR. This also includes the Getzler type formulation as the map involving Lambda_R the ring of symmetric functions in countably many variables (which again because R is assumed as [Algebra Q R] is described with it's power sum generators). That is to say the Plethystic action. Homomorphisms of such lambda rings are also covered. In particular, those of inclusions of subrings closed under those psi^n operations. In addition, one of the primary motivating examples of K(GL(n)/P) otimes_Z Q is described as such an instance to provide an example that is not Lambda_R.
This was done with Claude Code for generating initial versions but I had not given a good full prompt about prefering psi^n over lambda^n or using a structure instead of a prop in AdamsHom so I ended up rewriting most of those parts by hand anyway. The exception is the PrimeExtend file which is about only giving the psi^p instead of all of the psi^n, but abstracted away from those particular details per clarifying instructions after an initial version.
Because PrimeExtend is so much, this has a tag of
LLM-generated
In addition even though it is in RingTheory it is highly relevant to
t-combinatorics
in the sense of algebraic combinatorics due to use of ring of symmetric functions in countably many variables. |
t-ring-theory
new-contributor
t-combinatorics
LLM-generated
|
898/0 |
Mathlib.lean,Mathlib/RingTheory/LambdaRing/AdamsHom.lean,Mathlib/RingTheory/LambdaRing/AdamsOperations.lean,Mathlib/RingTheory/LambdaRing/KFlagExample.lean,Mathlib/RingTheory/LambdaRing/PrimeExtend.lean,Mathlib/RingTheory/LambdaRing/SymmetricFunctions.lean |
6 |
4 |
['Cobord', 'github-actions'] |
nobody |
19-67170 19 days ago |
42-6361 42 days ago |
42-6906 42 days |
0 |
| 43281 |
keyframe41 author:keyframe41 |
feat(NumberTheory/DiophantineApproximation): prove Hurwitz's approximation theorem |
Prove **Hurwitz's approximation theorem**: for irrational `ξ`, the set of rationals `q` with `|ξ - q| < 1 / (√5 * q.den ^ 2)` is infinite.
This strengthens `Real.infinite_rat_abs_sub_lt_one_div_den_sq_of_irrational` from`Mathlib/NumberTheory/DiophantineApproximation/Basic.lean`, which gives the same statement with constant `1` instead of `√5`. The constant `√5` is optimal, though the sharpness (using the golden ratio) is not included here.
The proof avoids continued fractions and opts for Farey brackets (quadruples `p/q < ξ < r/s` with `q * r - p * s = 1`) packaged as `Real.Hurwitz.IsFarey`. It uses the fact that at least one of `p/q`, `r/s`, and the mediant `(p + r)/(q + s)` satisfies the bound, as if not, we can contradict the irrationality of `√5`. By creating brackets of arbitrarily small width, infinitude follows by the same argument as in `Basic.lean`.
Some design choices:
* No `GenContFract` to avoid continued fractions/recursive sequences. This also follows the spirit of `Basic.lean`, which defines its own `Real.convergent` rather than building Legendre's theorem on `GenContFract.convs`.
* `Real.Hurwitz` namespace. Mirrors `Real.ContfracLegendre` in `Basic.lean` by putting the main result in `Real` and the technical material in a secondary namespace.
* `IsGoodApprox` is stated without division ** as `|y * ξ - x| * y * √5 < 1` for easier manipulation and linked to the quotient form in the actual theorem using `Real.Hurwitz.isGoodApprox_div_bound`.
---
I used Claude (Anthropic) which suggested the overall proof strategy/lemmas and reviewed naming and documentation against the mathlib conventions. All proofs are my own. As a first-time contributor, AI was also used to help in learning Lean.
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|
t-number-theory
new-contributor
|
390/0 |
Mathlib.lean,Mathlib/NumberTheory/DiophantineApproximation/Hurwitz.lean |
2 |
11 |
['SnirBroshi', 'github-actions'] |
MichaelStollBayreuth assignee:MichaelStollBayreuth |
19-62999 19 days ago |
20-40425 20 days ago |
20-41398 20 days |
0 |
| 43321 |
owenpkent author:owenpkent |
feat(RingTheory/Polynomial/RationalRoot): rational root theorem with multiplicity |
This PR adds the rational root theorem with multiplicity to
`Mathlib/RingTheory/Polynomial/RationalRoot.lean`:
- `den_pow_rootMultiplicity_dvd_leadingCoeff`: if `r : K` is a root of `p : A[X]` (`A` a UFD, `K`
its fraction field) with multiplicity `m = rootMultiplicity r (p.map (algebraMap A K))`, then
`(den A r) ^ m ∣ p.leadingCoeff`;
- `prod_den_pow_rootMultiplicity_dvd_leadingCoeff`: the multi-point version, `∏ r ∈ s, (den A r) ^
rootMultiplicity r ∣ p.leadingCoeff` over any finite set `s : Finset K` (the denominators need
**not** be pairwise coprime in `A`; the recombination happens on the polynomial side, where the
root factors at distinct points are pairwise coprime over `K`);
- `den_mul_X_sub_C_num_pow_rootMultiplicity_dvd`: the `A`-level form both corollaries come from,
`(C (den A r) * X - C (num A r)) ^ m ∣ p` in `A[X]`.
These generalize the existing multiplicity-one statement `den_dvd_of_is_root`: at `m = 1` the new
theorem recovers it exactly (a guard `example` confirmed this against the branch). Two supporting
lemmas travel with them, placed in `Content.lean`, whose existing content they extend:
- `Polynomial.IsPrimitive.pow` and `Polynomial.isPrimitive_prod`: powers and finite
products of primitive polynomials stay primitive.
**Proof route.** The reduced linear factor `C (den A r) * X - C (num A r)` is primitive (a constant
divisor of both coefficients divides the reduced numerator/denominator pair, hence is a unit) and,
over `K`, a unit multiple of `X - C r`. Its `rootMultiplicity`-power therefore divides `p.map
(algebraMap A K)` (`pow_rootMultiplicity_dvd`), and one-sided Gauss descent (the existing
`IsPrimitive.dvd_of_fraction_map_dvd_fraction_map`) brings the divisibility back down to `A`;
multiplicativity of the leading coefficient finishes. The multi-point case recombines the same
argument over a product of linear factors that are pairwise coprime over `K`
(`isCoprime_X_sub_C_of_isUnit_sub`, `Finset.prod_dvd_of_coprime`).
**A hypothesis note.** `Polynomial.IsPrimitive.pow` / `Polynomial.isPrimitive_prod` are stated
under `[NormalizedGCDMonoid R]`, matching the hypothesis level of their host section in
`Content.lean` (neither proof needs anything UFD-specific). The six `RationalRoot.lean`
declarations (three public, and three `private` helpers about the reduced linear factor:
`isPrimitive_den_mul_X_sub_C_num`, `map_den_mul_X_sub_C_num`,
`leadingCoeff_den_mul_X_sub_C_num`) need only the file's existing
`UniqueFactorizationMonoid A` context: where a
`NormalizedGCDMonoid A` instance is required to invoke the `Content.lean` lemmas, the proofs
materialize one locally via `let : NormalizedGCDMonoid A := Nonempty.some inferInstance` (the
`Nonempty` instance comes from `UniqueFactorizationMonoid A` through `IsGCDMonoid A`, in scope via
the file's existing `RingTheory.Localization.NumDen` import), the same idiom `GaussLemma.lean`
already uses. The statements are instance-independent.
All eight new declarations (two in `Content.lean`, six in `RationalRoot.lean`) build green and
`#print axioms` clean (`[propext, Classical.choice, Quot.sound]`; no `sorryAx`, no
`native_decide`) on master commit `8acb872c31` (toolchain v4.34.0-rc2), with `lake exe lint-style`
and the batteries env linter (`runLinter`) passing on both touched modules, and all direct
downstream importers rebuilt green. Three `public import`s are added to `RationalRoot.lean`
(`RingTheory.Polynomial.GaussLemma`, `Algebra.Polynomial.BigOperators`,
`RingTheory.Coprime.Lemmas`); each is used directly by the new proofs (`shake` no longer exists as
a lake executable on current master, so no automated minimization pass was run).
**Import-graph cost: zero downstream.** The three added imports grow `RationalRoot.lean`'s own
transitive closure by 30 modules (1614 -> 1644), mostly the `FieldTheory.SplittingField` /
`IntermediateField` / `Minpoly` cone that `GaussLemma.lean` pulls in. That growth does not
propagate: `RationalRoot.lean` has exactly three importers in Mathlib
(`RingTheory/Polynomial/IsIntegral.lean`, `RingTheory/DedekindDomain/Basic.lean`,
`NumberTheory/Niven.lean`), and all three already import `GaussLemma` and
`SplittingField.Construction` transitively today, so no file in Mathlib gains an import from this
PR. If a maintainer would still rather keep `RationalRoot.lean` light, the six declarations move to
a new `RingTheory/Polynomial/RationalRootMultiplicity.lean` without any proof change; I am happy to
do that on request.
---
**AI use disclosure** (per Mathlib's contribution guidelines): this generalization was developed in
a personal research project with the help of an AI coding agent (Claude Code). The agent developed
the multiplicity generalization and its proof (building on the existing single-multiplicity
`den_dvd_of_is_root`), then ported it directly onto Mathlib's own source files: placing the two
primitivity lemmas in `Content.lean`'s existing `NormalizedGCDMonoid` section (a weaker hypothesis
than the UFD one the standalone draft used; neither proof needs anything UFD-specific), adapting
the imports to the module system, and rebasing onto current master. During the rebase the agent
found that Mathlib had independently generalized
`IsPrimitive.dvd_of_fraction_map_dvd_fraction_map` to the one-sided form an earlier draft of this
PR supplied as a new lemma, so that lemma was dropped and the proofs call the existing one. Build
green, `#print axioms` clean, and linters passing were confirmed directly against Mathlib's source
tree. The underlying result is a natural generalization of an existing Mathlib theorem, and every
proof step uses only existing Mathlib API. I have reviewed and understand the proofs, take
responsibility for the content, and will respond to review in my own words.
|
t-ring-theory
new-contributor
LLM-generated
|
129/1 |
Mathlib/RingTheory/Polynomial/Content.lean,Mathlib/RingTheory/Polynomial/RationalRoot.lean |
2 |
2 |
['github-actions'] |
nobody |
19-44506 19 days ago |
19-74062 19 days ago |
19-73836 19 days |
0 |
| 43349 |
Nicola9Falciola author:Nicola9Falciola |
feat(Algebra/FreeAbelianGroup/Finsupp): add api for the coeff of a single element |
---
Add two API lemmas computing the coefficent of the form `of x` for `x : X` in the FreeAbelianGroup.
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|
new-contributor
t-algebra
label:t-algebra$ |
8/0 |
Mathlib/Algebra/FreeAbelianGroup/Finsupp.lean |
1 |
2 |
['github-actions'] |
nobody |
19-8669 19 days ago |
19-12665 19 days ago |
19-12439 19 days |
0 |
| 42912 |
justin-palumbo author:justin-palumbo |
feat(Topology/GDelta): a completely metrizable subspace of a T6 space is Gδ |
Adds TopologicalSpace.IsCompletelyMetrizableSpace.isGδ: a completely metrizable subspace of a T6 space is Gδ
This is one direction of a foundational fact in descriptive set theory --- the Polish subspaces of a Polish space are exactly the Gδ subsets.
The proof here is modeled on the exposition in Anush Tserunyan's descriptive set theory notes https://www.math.mcgill.ca/atserunyan/Teaching_notes/dst_lectures.pdf, with one adjustment; to make the formalization easier and avoid having multiple distance metrics instantiated at the same time, instead of directly defining open `U_n` with `s = ⋂ n, U` define them such that `s = closure s ∩ ⋂ n, U n` and then appeal to the fact closed sets are Gδ in a perfectly normal space.
---
- [x] depends on: #42896 [which fixes buggy naming present in Topology/Metrizable/CompletelyMetrizable]
This can be viewed as a companion to #42693, which - under the stronger assumption of the ambient space being Polish - establishes the other direction --- a Gδ subspace of a Polish space is itself Polish.
Together, these give Alexandrov's theorem, characterizing the Polish subspaces of an ambient Polish space as exactly the Gδ ones, and (via `Metric.PiNatEmbed.exists_embedding_to_hilbert_cube`) Polish spaces as exactly the Gδ subsets of the Hilbert cube. If and when both these PRs are committed, I anticipate adding these consequences to Topology/MetricSpace/Polish.lean
LLM usage: I wrote the initial version myself, while using Google's free "AI mode" to help me find relevant lemma names in the codebase, and afterward used helped Claude Opus to review, which led to simplifying some of the arguments. I take full responsibility for the code here
|
t-topology
new-contributor
|
91/0 |
Mathlib.lean,Mathlib/Topology/GDelta/CompletelyMetrizable.lean |
2 |
8 |
['github-actions', 'justin-palumbo', 'mathlib-dependent-issues', 'plp127'] |
nobody |
18-82096 18 days ago |
33-19794 33 days ago |
33-19865 33 days |
0 |
| 42693 |
justin-palumbo author:justin-palumbo |
feat(Topology/MetricSpace): a Gδ subset of a Polish space is Polish |
Adds `IsGδ.polishSpace`: a Gδ subset of a Polish space is Polish, which strengthens the existing IsOpen.polishSpace.
The proof follows the outline in Anush Tserunyan's descriptive set theory notes, https://www.math.mcgill.ca/atserunyan/Teaching_notes/dst_lectures.pdf where it is attributed to A. Bernshteyn. The "usual" approach (as in Kechris's Classical Descriptive Set Theory) constructs a complete compatible metric (the "Alexandrov metric"). The approach taken here is snappier to formalize - the idea is to give a closed embeddding from the G\delta set into another Polish space, and appeal to the fact closed subsets of Polish spaces are Polish. [Note the Alexandrov metric is recoverable from the embedding via the induced complete metrics on the product topology.]
---
Question: `IsOpen.polishSpace` could now be proven directly from`isGδ.polishSpace`, and `CompleteCopy` completely retired. That feels cleaner to me, given `CompleteCopy` has had no users since it was ported along with everything else in 2023: #3357. The main argument for keeping is that leveraging `CompleteCopy` is slightly more explicit in proving that open subsets are Polish. Happy to remove in a follow-up, in this PR, or not at all :)
LLM usage disclaimer: I wrote an original local version of this PR myself, and then used Claude Opus to double-check / simplify / help me pull out names of relevant theorems from mathlib. The primary non-trivial contribution from LLM was idea of leveraging isClosed_eq (ie proving closure of range by framing the range of the embedding as a countable intersection of pairs satisfying closed equations). I take full responsibility for the code here |
new-contributor
t-topology
|
117/2 |
Mathlib/Topology/MetricSpace/Polish.lean |
1 |
9 |
['felixpernegger', 'github-actions', 'justin-palumbo'] |
nobody |
18-82036 18 days ago |
40-1832 40 days ago |
40-1606 40 days |
0 |
| 42914 |
lman310 author:lman310 |
feat(Algebra): add zpow_right_injective |
Add `zpow_right_injective`, stating that for a nontrivial element `a` of a
multiplicatively torsion free group, the map `n : ℤ ↦ a ^ n` is injective,
as well as the corresponding additive theorem `zsmul_left_injective` using
`to_additive`
Use the new additive theorem in `CharZero.of_isAddTorsionFree`, replacing its
dependency on the general `smul_left_injective`. This allows
`CharZero.of_isAddTorsionFree` to move from
`Mathlib.Algebra.Module.Torsion.Free` to the earlier
`Mathlib.Algebra.Module.NatInt`, resolving the existing TODO
---
Codex was used to find the appropriate file `Mathlib.Algebra.Module.NatInt` for moving `CharZero.of_isAddTorsionFree`
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
label:t-algebra$ |
25/14 |
Mathlib/Algebra/Group/Torsion.lean,Mathlib/Algebra/Module/NatInt.lean,Mathlib/Algebra/Module/Torsion/Free.lean |
3 |
14 |
['felixpernegger', 'github-actions', 'lman310', 'mathlib-merge-conflicts', 'themathqueen'] |
nobody |
18-76015 18 days ago |
18-79228 18 days ago |
30-15852 30 days |
0 |
| 42482 |
SauersML author:SauersML |
feat(Probability/Decision): add data processing inequalities for minimax risk |
This PR adds the minimax analogs of the three data processing inequalities for the Bayes risk in Mathlib.Probability.Decision.Risk.Basic.
It is similar to the compositions section in PR #29143, but with minimax.
-----------
Claude Fable 5 wrote the code and GPT 5.6 Sol reviewed the code. This was written for a different project, and I identified this as a candidate for upstreaming into Mathlib.
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[](https://gitpod.io/from-referrer/)
|
t-measure-probability
LLM-generated
new-contributor
|
31/0 |
Mathlib/Probability/Decision/Risk/Basic.lean |
1 |
3 |
['SauersML', 'github-actions'] |
RemyDegenne assignee:RemyDegenne |
17-62995 17 days ago |
46-59831 46 days ago |
46-59605 46 days |
0 |
| 42955 |
mpacholski author:mpacholski |
feat(diffgeo): add Hom-bundle support and fix pullback base points in T% elaborator |
# Changes
## `Mathlib/Geometry/Manifold/Notation.lean`
* **Add support for pullback bundles:** Replaced the hardcoded bound variable `x` with the dynamically extracted argument `arg`, which allows for using elaborator `T%` with pullback bundles, where the base point lies in a different manifold, e.g. `v : Π (m : M), E₁ (b m)`, where `b : M → B`.
* **Add support for Hom-bundles:** The elaborator now supports sections of Hom-bundles (`ContinuousLinearMap` between two fiber bundles, e.g. `ϕ : ∀ x, (E₁ x →L[𝕜] E₂ x`). It also supports the case where the base point lies in a different manifold (e.g. `ϕ : ∀ x, (E₁ (b x) →L[𝕜] E₂ (b x))`)
* **Support nested `TangentSpace`:** Modified `findModelFiber?` to natively intercept `TangentSpace` applications and extract the model fiber at index 2. This prevents typeclass synthesis failures when `TangentSpace` is used inside a Hom-bundle.
## `MathlibTest/DifferentialGeometry/Notation/Basic.lean`
* **Added tests for all the new usecases** this includes pullback bundles, Hom-bundles, pullback Hom-bundles, and Hom-bundles where one of the fibers is a `TangentSpace`.
## `Mathlib/Geometry/Manifold/VectorBundle/Hom.lean`
* **Refactor `Hom.lean`:** Replaced verbose `TotalSpace.mk'` boilerplate in with the newly supported `T%` syntax (e.g. `MDiffAt[s] T% ϕ x` instead of `MDiffAt[s] (fun m ↦ TotalSpace.mk' (F₁ →L[𝕜] F₂) (E := fun (x : B) ↦ (E₁ x →L[𝕜] E₂ x)) (b m) (ϕ m)) x)`
# Use of AI
The help of AI was used in writing the code in `Mathlib/Geometry/Manifold/Notation.lean`. It was hence manually edited to simplify the code as much as possible. While the author is not yet an expert in metaprogramming in Lean, he is willing to learn and receive feedback, and put all the effort to understand the presented code. The code was carefully tested with different parts of it changed and removed to make sure that every line serves a purpose to provide the expected functionality.
---
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[](https://gitpod.io/from-referrer/)
|
t-differential-geometry
new-contributor
LLM-generated
|
127/36 |
Mathlib/Geometry/Manifold/Notation.lean,Mathlib/Geometry/Manifold/VectorBundle/Hom.lean,MathlibTest/DifferentialGeometry/Notation/Basic.lean |
3 |
5 |
['github-actions', 'grunweg', 'mpacholski'] |
ocfnash assignee:ocfnash |
17-62994 17 days ago |
32-11320 32 days ago |
32-11094 32 days |
3 |
| 43087 |
JX-Mo author:JX-Mo |
feat(RepresentationTheory): add Hecke/Basic.lean |
This file defines `HeckeModule` of a representation `ρ` as `Hom_G(k[G ⧸ H], ρ)` and identifies it
with the space of `H`-invariants. |
new-contributor
t-algebra
label:t-algebra$ |
87/0 |
Mathlib.lean,Mathlib/RepresentationTheory/Hecke/Basic.lean |
2 |
8 |
['JX-Mo', 'Whysoserioushah', 'github-actions'] |
nobody |
17-38625 17 days ago |
28-15568 28 days ago |
28-15444 28 days |
0 |
| 43183 |
BorisTheBrave author:BorisTheBrave |
fix(Tactic/Linarith): carry `!` and the configuration into `linarith?… |
`linarith?` uses the same configuration as `linarith`,
but previously printed a bare `linarith only [...]` suggestion regardless
of the configuration.
Now all config options except `minimize` are carried into the suggestion.
---
Note: #42588 has a [test](https://github.com/leanprover-community/mathlib4/pull/42588/files#diff-3657543f804f0a57e384f6a9338cc53803a50bebdfb16c1ecd0b514f3fda332fR863) that
unintentionally highlights the problem:
```lean
/--
info: Try this:
[apply] linarith only [hne, hle]
-/
#guard_msgs in
example (a b : ℚ) (hne : a ≠ b) (hle : a ≥ b) (junk : (0:ℚ) < 1) : b < a := by
linarith? +splitNe
```
This suggestion doesn't actually close the proof.
It should suggest `linarith +splitNE only [hne, hle]`.
Should we be using `says` syntax for these tests? I'm unclear on the rule here.
Note: `simp?` has very similar code, `filterSuggestionsAndLocalsFromSimpConfig`, that this PR was modelled after.
AI disclosure:
Claude Code (Fable) first flagged this problem to me, and wrote the first draft. I
made some tweaks to better fit mathlib's style, and wrote all the prose.
[](https://gitpod.io/from-referrer/) |
t-meta
new-contributor
|
70/6 |
Mathlib/Tactic/Linarith/Frontend.lean,MathlibTest/Tactic/Linarith/Basic.lean |
2 |
12 |
['BorisTheBrave', 'JovanGerb', 'github-actions', 'sharky564'] |
JovanGerb assignee:JovanGerb |
17-10320 17 days ago |
17-30178 17 days ago |
24-28172 24 days |
0 |
| 40582 |
dennj author:dennj |
feat(Analysis): the one-sided Laplace transform |
Introducing Laplace transform `ℒ(f)(s) = ∫ t in Ioi 0, exp (-s * t) • f t`
It is needed in physlib
I modelled the file following Mellin transform.
## Main definitions
* `LaplaceConvergent f s`: the Laplace integral is well-defined at `s`.
* `laplace f s`: the Laplace transform, a total function
* `HasLaplace f s m`: convergence together with the value `m`.
## Main results
* Linearity: `laplace_add`/`sub`/`const_smul`/`neg`/`zero`/`div_const`, at the `laplace`, `LaplaceConvergent`, and `HasLaplace` levels.
* `laplaceConvergent_iff_norm`, `norm_laplace_le_integral_norm`: reduction of convergence and norm bounds to the real exponential weight.
* `laplaceConvergent_of_isBigO_exp`: existence for functions of exponential order, on the appropriate right half-plane.
* `LaplaceConvergent.of_re_le`/`of_re_lt`: monotonicity of convergence in `s.re` (the half-plane structure).
* `laplace_cexp_smul`: the frequency-shift rule.
* `laplace_indicator_comp_sub`: the time-shift rule.
* `laplace_comp_mul_left`/`right`: behaviour under positive dilation.
* `hasLaplace_const`/`hasLaplace_one`/`hasLaplace_cexp`: basic transform values.
Human made PR |
t-measure-probability
new-contributor
|
653/0 |
Mathlib.lean,Mathlib/Analysis/LaplaceTransform.lean |
2 |
34 |
['AlyciaBHZ', 'EtienneC30', 'dennj', 'github-actions', 'mathlib-splicebot'] |
urkud assignee:urkud |
16-63008 16 days ago |
46-11693 46 days ago |
98-56514 98 days |
0 |
| 41111 |
erdkocak author:erdkocak |
feat(ModelTheory): add cardinal-generated substructure API |
This is the first PR in a sequence splitting #40561.
It adds a `CardinalLTGenerated` predicate for substructures, basic closure and map lemmas, and the finitely generated specialization.
Co-authored-by: Yağız Kaan Aydoğdu <y.kaan.aydogdu@gmail.com>
Co-authored-by: Yusuf Demir <yusufdemir12610@gmail.com>
Advised-by: Ayhan Günaydın <ayhan.gunaydin@bogazici.edu.tr>
Advised-by: Metin Ersin Arıcan <metin.arican@bogazici.edu.tr>
Please note that we utilized agentic AI tools (Claude Opus, ChatGPT Codex) during the development of this PR. Most of the proofs of the major theorems are direct translations from human-language source material (see the diff in `references.bib`) into Lean proofs using the mentioned AI tools. However, all design and formalization decisions were made by us. |
t-logic
new-contributor
LLM-generated
|
51/0 |
Mathlib/ModelTheory/FinitelyGenerated.lean,Mathlib/ModelTheory/Substructures.lean |
2 |
9 |
['NoahW314', 'erdkocak', 'felixpernegger', 'github-actions'] |
fpvandoorn assignee:fpvandoorn |
16-63006 16 days ago |
79-31847 79 days ago |
85-29206 85 days |
5 |
| 43229 |
yui9696 author:yui9696 |
feat(Probability/Moments): probability generating function |
Define the probability generating function `pgf X μ t = μ[t ^ X]` of an `ℕ`-valued random variable, mirroring the `mgf` API in `Mathlib/Probability/Moments/Basic.lean`.
API:
- values at `0` and `1`, nonnegativity, monotonicity and boundedness on `[0, 1]`;
- `integrable_pow_pgf`: the defining integrand is integrable on `[-1, 1]` for any finite measure;
- congruence lemmas (`pgf_congr`, `pgf_id_map`, `pgf_congr_identDistrib`);
- `pgf_eq_tsum`: the power-series form `pgf X μ t = ∑' n, μ.real (X ⁻¹' {n}) * t ^ n`;
- `pgf_exp_eq_mgf`: the bridge to the moment-generating function;
- `IndepFun.pgf_add` / `iIndepFun.pgf_sum`: the product formula for sums of independent variables.
Main result: `map_eq_map_of_pgf_eq` — **the generating function determines the law**. The point masses are read off as the coefficients of a power series of radius at least 1 (via `FormalMultilinearSeries.ofScalars`), and the uniqueness of power-series coefficients recovers them from the function.
Everything is stated for a general (finite) measure where possible, with `IsProbabilityMeasure` only where it is genuinely needed.
🤖 Generated with [Claude Code](https://claude.com/claude-code) |
t-measure-probability
LLM-generated
new-contributor
|
234/0 |
Mathlib.lean,Mathlib/Probability/Moments/PGF.lean |
2 |
3 |
['github-actions', 'yui9696'] |
EtienneC30 assignee:EtienneC30 |
16-63003 16 days ago |
22-13553 22 days ago |
22-13327 22 days |
0 |
| 41729 |
vaca22 author:vaca22 |
feat(RingTheory/DedekindDomain): add divisor group core |
Add the divisor group of a Dedekind domain as a formal-sum model, together with the additive equivalence to the multiplicative group of nonzero fractional ideals.
**Relation to what Mathlib already has.** As pointed out on Zulip, Mathlib already knows that fractional ideals factor: `FractionalIdeal.count` gives the exponent of a height-one prime, and `ClassGroup` is built from fractional ideals directly. This PR does not re-prove any of that — it reuses `count` and `finite_factors` verbatim. What it adds is the *additive* packaging:
* `IsDedekindDomain.Divisor R := HeightOneSpectrum R →₀ ℤ`, so a divisor is a finitely supported integer-valued function and one can write `D₁ + D₂`, `-D`, `D v`, and use the whole `Finsupp` API (`support`, `sum`, induction on the support);
* `FractionalIdeal.divisorEquiv`, an `AddEquiv` from `(FractionalIdeal R⁰ K)ˣ` to `Divisor R`, turning ideal multiplication into divisor addition.
The multiplicative view is the right one for the class group; the additive one is what divisor-theoretic arguments are written in, where one constantly forms `D - D'`, compares coefficients prime by prime, and does induction over `D.support`. Having both, related by a single `AddEquiv`, means neither side has to be re-derived.
**Downstream use.** This is the bottom layer of a formalization of Riemann–Roch for algebraic function fields (announced in `#AI authored projects > Riemann–Roch for function fields`): `L(D)`, `deg D`, and the statement `ℓ(D) = deg D + 1 - g + ℓ(W - D)` are all phrased in terms of additive divisors, and the degree map is defined by summing coefficients over `D.support`.
Happy to reshape the API — in particular whether `Divisor` should be an `abbrev` or a structure, and whether this belongs next to `Factorization` rather than in its own file.
AI usage: LLM-generated, disclosed per the AI policy.
|
t-ring-theory
new-contributor
LLM-generated
|
100/0 |
Mathlib.lean,Mathlib/RingTheory/DedekindDomain/Divisor.lean |
2 |
4 |
['github-actions', 'grunweg', 'vaca22'] |
nobody |
16-11675 16 days ago |
66-72979 66 days ago |
68-69956 68 days |
0 |
| 41732 |
vaca22 author:vaca22 |
feat(RingTheory/ClassGroup): add mulEquiv_mk0 |
Add `ClassGroup.mulEquiv_mk0`: the class-group isomorphism induced by a ring equivalence `e : R ≃+* S` sends `ClassGroup.mk0 I` to `ClassGroup.mk0 (I.map e)`.
`ClassGroup.mulEquiv` is currently only characterized through the `FractionRing` comparison equivalences, so any concrete computation has to unfold `ClassGroup.equiv` and chase fractional ideals through `IsFractionRing.semilinearEquivOfRingEquiv` by hand. This lemma states the expected behaviour on generators — classes of nonzero ideals — and is marked `@[simp 1100]` so that transporting class-group facts along a ring equivalence becomes a `simp` step.
**Downstream use.** This came out of a formalization of Riemann–Roch for algebraic function fields (announced in `#AI authored projects > Riemann–Roch for function fields`). There the group law on a Weierstrass elliptic curve is compared with the degree-zero class group, and the comparison is set up along a ring equivalence between two coordinate presentations; without this lemma the transport is several lines of manual fractional-ideal chasing at each use site.
The proof is by injectivity of `ClassGroup.equiv (FractionRing S)`, reducing to the statement that the semilinear equivalence maps `coeSubmodule` of `I` onto `coeSubmodule` of `I.map e`.
AI usage: LLM-generated, disclosed per the AI policy.
|
t-ring-theory
new-contributor
LLM-generated
|
43/0 |
Mathlib/RingTheory/ClassGroup/Basic.lean |
1 |
3 |
['github-actions', 'vaca22'] |
nobody |
16-11644 16 days ago |
69-18406 69 days ago |
69-18180 69 days |
0 |
| 42839 |
JadAbouHawili author:JadAbouHawili |
feat(Combinatorics/SimpleGraph/Connectivity): simple graph is 2-edge-connected iff it has no bridge |
This PR proves the equivalence of a graph being 2-edge-connected iff it has no bridge resolving the relevant TODO.
---
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-->
[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
|
16/3 |
Mathlib/Combinatorics/SimpleGraph/Connectivity/EdgeConnectivity.lean |
1 |
39 |
['JadAbouHawili', 'SnirBroshi', 'github-actions'] |
nobody |
15-7911 15 days ago |
15-82301 15 days ago |
34-76959 34 days |
0 |
| 43503 |
carlok author:carlok |
chore: weaken unused typeclass assumptions on section variables |
This PR has been described at
https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/unused.20hypotheses.3A.20431.20in.20a.2029k.20sample.2C.20and.2033.20one-line.20PRs/near/622113682
it is a list of mechanically found [1] one-liners relaxing theorems whose setting is stronger than their proof needs. Each change compiled alone against an unmodified file (whole library building locally at 633b366493).
More information on the project https://github.com/carlok/unused-assumptions
In the zulip thread, @SnirBroshi spotted that the refactored Topology/EMetricSpace/Pi.lean takes [EDist α] in place of two binders.
PS: A single PR because I noticed #42214 (813 files, merged, same kind of change).
Thank you for your work.
[1] LLM + Lean4 itself |
new-contributor |
32/32 |
Mathlib/Algebra/Algebra/Tower.lean,Mathlib/Algebra/Category/ModuleCat/ChangeOfRingsExact.lean,Mathlib/Algebra/CharP/Algebra.lean,Mathlib/Algebra/Group/Submonoid/Pointwise.lean,Mathlib/Algebra/Order/Archimedean/Defs.lean,Mathlib/Algebra/Order/CauSeq/Basic.lean,Mathlib/Algebra/Order/Group/Indicator.lean,Mathlib/Algebra/Order/Sub/Unbundled/Hom.lean,Mathlib/Algebra/Order/WithTop/Untop0.lean,Mathlib/Algebra/Regular/SMul.lean,Mathlib/Algebra/Star/SelfAdjoint.lean,Mathlib/Analysis/Convex/Cone/TensorProduct.lean,Mathlib/Analysis/Convex/Gauge.lean,Mathlib/Analysis/Normed/Group/CocompactMap.lean,Mathlib/Analysis/Normed/Group/Seminorm.lean,Mathlib/Data/Finset/Pairwise.lean,Mathlib/GroupTheory/Torsion.lean,Mathlib/LinearAlgebra/BilinearMap.lean,Mathlib/LinearAlgebra/LinearIndependent/Defs.lean,Mathlib/Order/Antichain.lean,Mathlib/Order/Monotone/Extension.lean,Mathlib/RingTheory/AlgebraTower.lean,Mathlib/RingTheory/DedekindDomain/Ideal/Basic.lean,Mathlib/RingTheory/Ideal/Quotient/Over.lean,Mathlib/RingTheory/Localization/Basic.lean,Mathlib/RingTheory/Localization/Module.lean,Mathlib/RingTheory/Valuation/ValuationRing.lean,Mathlib/Topology/EMetricSpace/Pi.lean,Mathlib/Topology/Instances/Sign.lean |
29 |
5 |
['github-actions', 'leanprover-radar', 'themathqueen'] |
nobody |
14-60230 14 days ago |
14-75147 14 days ago |
14-74921 14 days |
0 |
| 38534 |
AlexeyMilovanov author:AlexeyMilovanov |
refactor(Computability): make `PFun` a one-field structure |
This PR refactors `PFun` from `def PFun α β := α → Part β` to a structure with a `FunLike` instance.
[Discussion](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Fix.20for.20fun_prop.20on.20PFun.20.28context.3A.20Computability.20Theory.29)
### Main changes
- Redefine `PFun` as a structure with one field, `toFun : α → Part β`.
- Add the `FunLike (α →. β) α (Part β)` instance and configure `simps` projections.
- Add the projection and application simp lemmas required by the structure wrapper.
- Add `fun x ↦. ...` notation for partial-function literals.
- Adapt downstream equality proofs to use `PFun.ext` or `DFunLike.ext` where
`funext` no longer applies directly.
- Remove 33 local `backward.isDefEq.respectTransparency false` workarounds that
are no longer needed after the refactor.
### Downstream impact
The refactor mainly impacts Computability Theory and Category Theory (`Category/PartialFun.lean`). Since `PFun` is no longer definitionally equal to `α → Part β`, tactics such as `rfl`, `simp`, and `funext` can no longer always see through the old raw-function representation.
### Note on LLM usage
The core `PFun` change caused numerous downstream errors. I initially used an LLM to help draft fixes for these files. Afterwards, I spent a significant amount of time manually correcting and modifying all of the generated changes. |
new-contributor
t-computability
tech debt
LLM-generated
maintainer-merge
|
599/544 |
Mathlib/CategoryTheory/Category/PartialFun.lean,Mathlib/Computability/Ackermann.lean,Mathlib/Computability/Partrec.lean,Mathlib/Computability/PartrecBasis.lean,Mathlib/Computability/PartrecCode.lean,Mathlib/Computability/RE.lean,Mathlib/Computability/RecursiveIn.lean,Mathlib/Computability/StateTransition.lean,Mathlib/Computability/TuringDegree.lean,Mathlib/Computability/TuringMachine/Config.lean,Mathlib/Data/Finset/PImage.lean,Mathlib/Data/PFun.lean,Mathlib/NumberTheory/Dioph.lean |
13 |
78 |
['AlexeyMilovanov', 'JovanGerb', 'YaelDillies', 'dagurtomas', 'github-actions', 'j-loreaux', 'jcommelin', 'leanprover-radar', 'mathlib-bors', 'mathlib-merge-conflicts'] |
nobody |
13-77298 13 days ago |
14-29047 14 days ago |
117-50346 117 days |
0 |
| 40266 |
WangJiabai author:WangJiabai |
feat(RingTheory/MvPolynomial): define generic determinantal ideals |
This PR adds a foundational API for determinantal ideals of the generic matrix.
It defines `Matrix.MinorIndex`, the corresponding minors of the existing generic
matrix `Matrix.mvPolynomialX`, the finite set of all `t × t` generic minors, and
the ideal generated by these minors in `MvPolynomial (Fin m × Fin n) R`.
It also proves basic membership, evaluation, coefficient-map/base-change, and
finite-generation lemmas.
This PR intentionally does not include the Sturmfels/KRS/straightening/Groebner
part of the development.
---
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Additional context:
This is extracted and refactored from a standalone project on determinantal
ideals and the Gröbner-basis theorem for generic determinantal ideals:
https://github.com/WangJiabai/Determinantal-Ideals-Formalization
The current PR is intentionally limited to the small foundational API for
generic minors and generic determinantal ideals.
AI use:
ChatGPT was used for planning/refactoring discussion, and Codex was used to
draft some proof scripts. I reviewed the statements and proofs and am
responsible for the submitted code.
[](https://gitpod.io/from-referrer/)
|
t-ring-theory
new-contributor
LLM-generated
|
180/0 |
Mathlib.lean,Mathlib/RingTheory/MvPolynomial/DeterminantalIdeal.lean |
2 |
17 |
['WangJiabai', 'github-actions', 'tb65536'] |
riccardobrasca assignee:riccardobrasca |
13-73063 13 days ago |
17-31365 17 days ago |
107-73666 107 days |
0 |
| 37456 |
Robertboy18 author:Robertboy18 |
feat(LinearAlgebra/AffineSpace): add parallel form of Desargues's theorem |
This PR adds an affine parallel form of the Desargues theorem, following the related Rocq/Coq affine-geometry statement.
**Main changes**
- New file `Mathlib/LinearAlgebra/AffineSpace/Desargues.lean` with `parallel_third_side_of_perspective`.
- Add the corresponding `public import` to `Mathlib.lean`.
**Proof idea**
The proof compares side vectors using `exists_eq_smul_of_parallel` for the two given pairs of parallel sides. The shared comparison along `SA` forces the same scalar, which gives parallelism of the third pair of sides.
Tests: `lake build Mathlib.LinearAlgebra.AffineSpace.Desargues`
AI disclosure: GPT-5.2 Pro was used for assistance with web search/background details about the theorem and for finding useful existing Mathlib lemmas. The theorem statement and Lean formalization were written and checked by hand.
---
[](https://gitpod.io/from-referrer/) |
t-algebra
new-contributor
LLM-generated
label:t-algebra$ |
133/0 |
Mathlib.lean,Mathlib/LinearAlgebra/AffineSpace/Desargues.lean |
2 |
22 |
['Robertboy18', 'SnirBroshi', 'copilot-pull-request-reviewer', 'eric-wieser', 'github-actions', 'mathlib-merge-conflicts', 'wwylele'] |
eric-wieser assignee:eric-wieser |
13-32894 13 days ago |
16-6763 16 days ago |
41-28453 41 days |
0 |
| 43577 |
javgomzar author:javgomzar |
chore(Order/BooleanAlgebra): Add push tags |
Add push tags to some lemmas in Mathlib/Order/BooleanAlgebra/Set.lean
---
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Co-authors in the squash commit are gathered from two sources:
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may create empty commits to indicate co-authorship, using commands like so:
git commit --author="Author Name <author@email.com>" --allow-empty -m "add Author Name as coauthor"
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the commit message (that is, directly before the `---`) using the following format:
Co-authored-by: Author Name <author@email.com>
If you are moving or deleting declarations, please include these lines
at the bottom of the commit message (before the `---`, and also before
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Moves:
- Vector.* -> List.Vector.*
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- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
t-order
new-contributor
|
19/4 |
Mathlib/Order/BooleanAlgebra/Set.lean |
1 |
3 |
['github-actions'] |
nobody |
13-8277 13 days ago |
13-13311 13 days ago |
13-16948 13 days |
0 |
| 40368 |
Sanghyeok0 author:Sanghyeok0 |
feat: add confluence predicates for relations |
This PR adds a minimal relation-level API for confluence-style properties:
* `Relation.IsDiamond`
* `Relation.IsConfluent`
* `Relation.IsChurchRosser`
It also adds the basic API connecting these predicates:
* `Relation.ReflTransGen.to_eqvGen`
* `Relation.Join.le_eqvGen`
* `Relation.IsChurchRosser.isConfluent`
* `Relation.IsConfluent.isChurchRosser`
* `Relation.IsChurchRosser.join_reflTransGen_eq_eqvGen`
The main downstream application is the polynomial-reduction development in
#41475. There, polynomial reduction is treated as an ordinary relation on
`MvPolynomial`, and these predicates are used to formulate confluence and the
Church--Rosser property.
A more general rewriting API exists in CSLib. This PR does not attempt to
upstream that API wholesale; its scope is intentionally limited to the
declarations needed by the downstream polynomial application.
The earlier version of this PR also introduced
`Relation.StronglyConfluent` and additional equivalence packaging. Those
declarations have been removed to keep this PR small and application-driven.
Reference: Becker, Weispfenning, and Kredel,
*Gröbner Bases: A Computational Approach to Commutative Algebra*.
AI usage disclosure:
I used OpenAI Codex to generate initial drafts of the definitions, theorem statements, proof scripts, and docstrings. I made the final decisions on the mathematical scope and API design, reviewed the generated code and final changes, and made a few edits to statements and docstrings.
---
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Please ask for help on https://leanprover.zulipchat.com if needed.
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Co-authors in the squash commit are gathered from two sources:
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each co-author among the commits in the pull request. If necessary, you
may create empty commits to indicate co-authorship, using commands like so:
git commit --author="Author Name <author@email.com>" --allow-empty -m "add Author Name as coauthor"
Second, co-authors can also be listed in lines at the very bottom of
the commit message (that is, directly before the `---`) using the following format:
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Moves:
- Vector.* -> List.Vector.*
- ...
Deletions:
- Nat.bit1_add_bit1
- ...
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-->
[](https://gitpod.io/from-referrer/)
|
t-logic
new-contributor
tech debt
LLM-generated
|
103/25 |
Mathlib/GroupTheory/FreeGroup/Basic.lean,Mathlib/Logic/Relation.lean |
2 |
36 |
['Sanghyeok0', 'SnirBroshi', 'chenson2018', 'github-actions', 'mathlib-merge-conflicts'] |
JovanGerb assignee:JovanGerb |
12-63007 12 days ago |
14-80494 14 days ago |
86-71542 86 days |
1 |
| 41915 |
theebayuser author:theebayuser |
feat(Data/List): infixes, the enumerator of contiguous factors |
Hello, this PR extends `Mathlib/Data/List/Infix.lean` with the missing third enumerator alongside `inits` and `tails`:
* `infixes l` — all contiguous factors (infixes) of `l`, with multiplicity, as every prefix of every suffix, and
* its membership characterization and basic API:
* `mem_infixes` (`@[simp]`) — `s ∈ t.infixes ↔ s <:+: t`, the infix analogue of `mem_inits`/`mem_tails`
* `infixes_nil`, `infixes_cons`, `length_infixes_cons`, `nil_mem_infixes`, `self_mem_infixes`, `infixes_ne_nil`.
This gives `∃ s, s <:+: t ∧ P s` and `∀ s, s <:+: t → P s` executable bounded-search forms (e.g. deciding repetition-freeness of a fixed word by `decide`), which a future follow-up PR that I plan to work on will use.
AI disclosure: This code was mostly generated by Claude Fable 5 and Opus 4.8 as part of my larger project on combinatorics on words, which I then reviewed and revised to contribute to mathlib.
|
t-data
LLM-generated
new-contributor
|
37/2 |
Mathlib/Data/List/Infix.lean |
1 |
4 |
['github-actions', 'mathlib-merge-conflicts', 'theebayuser'] |
TwoFX assignee:TwoFX |
12-63004 12 days ago |
13-83882 13 days ago |
64-51558 64 days |
0 |
| 42895 |
cameronfreer author:cameronfreer |
feat(SetTheory/Ordinal): add lift_sSup and lift_iSup |
Add `InitialSeg.map_sSup` and `InitialSeg.map_iSup` for conditionally complete linear orders with bottom. Specializing these to `Ordinal.liftInitialSeg` gives `Ordinal.lift_sSup`, `Ordinal.lift_iSup`, `Ordinal.lift_iSup_le`, and `Ordinal.lift_iSup_le_iff`.
The `sSup` theorem handles the empty set using preservation of bottom and the nonempty case using normality. The `iSup` theorem is derived from it. Both use an explicit boundedness hypothesis; in particular, `lift_iSup` assumes `BddAbove (Set.range f)` rather than requiring the index type to be small.
🤖 This PR was developed with assistance from Claude and GPT models, using [lean4-skills](https://github.com/cameronfreer/lean4-skills) and [lean-lsp-mcp](https://github.com/oOo0oOo/lean-lsp-mcp).
|
t-set-theory
new-contributor
LLM-generated
|
40/0 |
Mathlib/Order/IsNormal.lean,Mathlib/SetTheory/Ordinal/Family.lean |
2 |
11 |
['cameronfreer', 'github-actions', 'plp127', 'vihdzp'] |
alreadydone assignee:alreadydone |
12-63001 12 days ago |
34-20179 34 days ago |
34-20907 34 days |
0 |
| 43599 |
fjvga author:fjvga |
feat(MeasureTheory/Measure/FrostmanMassBound): mass distribution principle |
If a measure ν satisfies ν s ≤ (ediam s)^d for all sets of diameter ≤ ε, and ν A ≠ 0, then d ≤ dimH A. This is the standard mass distribution principle (Frostman, easy direction) appearing in every fractal geometry textbook (Falconer §4.1, Mattila §4.9).
The proof composes two existing Mathlib results:
- Measure.le_hausdorffMeasure
- le_dimH_of_hausdorffMeasure_ne_zero
References:
- K. Falconer, Fractal Geometry, §4.1
- P. Mattila, Geometry of Sets and Measures in Euclidean Spaces, §4.9
---
<!-- Your PR title will become the first line of the commit message.
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For details on the "pull request lifecycle" in mathlib, please see:
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In particular, note that most reviewers will only notice your PR
if it passes the continuous integration checks.
Please ask for help on https://leanprover.zulipchat.com if needed.
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[](https://gitpod.io/from-referrer/)
|
t-measure-probability
new-contributor
|
68/0 |
Mathlib.lean,Mathlib/MeasureTheory/Measure/FrostmanMassBound.lean |
2 |
4 |
['github-actions', 'metakunt'] |
nobody |
12-38230 12 days ago |
12-49988 12 days ago |
12-50568 12 days |
0 |
| 43346 |
JadAbouHawili author:JadAbouHawili |
feat(Combinatorics/SimpleGraph/Connectivity): change IsEdgeReachable and IsEdgeConnected to accept ENat instead of Nat |
---
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|
new-contributor
t-combinatorics
|
28/6 |
Mathlib/Combinatorics/SimpleGraph/Acyclic.lean,Mathlib/Combinatorics/SimpleGraph/Connectivity/EdgeConnectivity.lean |
2 |
35 |
['JadAbouHawili', 'SnirBroshi', 'github-actions'] |
nobody |
12-10240 12 days ago |
14-30967 14 days ago |
18-58315 18 days |
0 |
| 43604 |
MetinovAdik author:MetinovAdik |
feat(Analysis): Laplacian and gradient under composition with a dilation |
feat(Analysis): Laplacian and gradient under composition with a dilation
Two lemmas describing how the Laplacian and the gradient behave under
pre-composition with `c • ·`, the missing companions of `fderiv_comp_smul`
and `iteratedFDeriv_comp_const_smul`.
* `InnerProductSpace.laplacian_comp_smul` (in `InnerProductSpace/Laplacian.lean`,
next to `laplacian_smul`): for `f : E → F` with `ContDiff ℝ 2 f` and `c : ℝ`,
`Δ (f <| c • ·) x = c ^ 2 • Δ f (c • x)`.
Each of the two derivatives contributes one factor of `c`.
Proof: `laplacian_eq_iteratedFDeriv_stdOrthonormalBasis` and
`iteratedFDeriv_comp_const_smul`, in the style of `laplacian_smul`.
* `gradient_comp_smul` (in `Calculus/Gradient/Basic.lean`): for `f : F → 𝕜`
and `c : 𝕜`, `∇ (f <| c • ·) x = conj c • ∇ f (c • x)`.
The derivative picks up `c` (`fderiv_comp_smul`) and the Riesz isomorphism is
conjugate linear, hence `conj c`. No differentiability hypothesis: for `c = 0`
both sides are `0`, exactly as in `fderiv_comp_smul`.
Motivation: the parabolic scaling `v ↦ λ • v (λ • x) (λ² t)` of the Navier–Stokes
equations, where every term acquires `λ³`. Establishing that in Lean required
these two facts, which were the only missing pieces; the rest was already in
Mathlib.
Names follow `fderiv_comp_smul` rather than `iteratedFDeriv_comp_const_smul`;
happy to switch if the other convention is preferred.
---
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
|
t-analysis
new-contributor
LLM-generated
|
20/0 |
Mathlib/Analysis/Calculus/Gradient/Basic.lean,Mathlib/Analysis/InnerProductSpace/Laplacian.lean |
2 |
3 |
['github-actions'] |
nobody |
11-58079 11 days ago |
12-35081 12 days ago |
12-34855 12 days |
0 |
| 43595 |
localecho author:localecho |
feat(NumberTheory/Transcendental/Liouville): irrational reals are LiouvilleWith for 1 < p ≤ 2 |
Closes the gap noted in this file's module doc — the reverse implication for 1 < p ≤ 2 was flagged 'not formalized yet' since 2021. Proved via Dirichlet approximation (Real.infinite_rat_abs_sub_lt_one_div_den_sq_of_irrational) plus a finite-fiber argument on denominators, rather than continued fractions directly.
----
Formalized with Claude's help, verified by a clean lake build.
Posted about this gap in #new-members first: https://leanprover.zulipchat.com/#narrow/channel/113489-new-members/topic/Intro.3A.20Brigham.20Hall.20.3B.20LiouvilleWith.20gap.20for.201.20.3C.20p.20.E2.89.A4.202/near/622672679 |
t-number-theory
new-contributor
LLM-generated
|
76/2 |
Mathlib/NumberTheory/Transcendental/Liouville/LiouvilleWith.lean |
1 |
4 |
['SnirBroshi', 'github-actions', 'metakunt'] |
nobody |
11-43182 11 days ago |
12-69810 12 days ago |
12-69584 12 days |
0 |
| 43607 |
Whning0513 author:Whning0513 |
chore(Data/Set/Semiring): add simp attributes |
Mark `up_le_up` and `up_lt_up` with `@[simp]`, as requested by the existing TODO.
--------
Tests:
- `lake env lean Mathlib/Data/Set/Semiring.lean`
- `lake build Mathlib.Data.Set.Semiring`
- `lake exe runLinter Mathlib.Data.Set.Semiring` |
t-data
new-contributor
|
2/1 |
Mathlib/Data/Set/Semiring.lean |
1 |
6 |
['LLaurance', 'Whning0513', 'copilot-pull-request-reviewer', 'github-actions', 'grunweg', 'leanprover-radar'] |
nobody |
11-42534 11 days ago |
12-32703 12 days ago |
12-32477 12 days |
0 |
| 43642 |
b1de0 author:b1de0 |
feat(MeasureTheory/Measure/ResolventTransform): finite moment expansion |
Add a finite moment expansion of `resolventTransform` with an exact integral remainder, assuming integrable moments and a nonzero evaluation point outside the support image.
---
I need this to relate matched moments to errors in kernels of the form `∫ u, (1 + w * u)⁻¹ ∂μ`. The identity is finite and does not require convergence of the corresponding infinite geometric series.
|
t-measure-probability
new-contributor
|
52/0 |
Mathlib/MeasureTheory/Measure/ResolventTransform.lean |
1 |
2 |
['github-actions'] |
nobody |
11-37034 11 days ago |
11-37742 11 days ago |
11-37627 11 days |
0 |
| 41828 |
archiebrowne author:archiebrowne |
feat(RingTheory/HopfAlgebra/Convolution): add `ofAntipodeOfAdjoin` |
Adds `HopfAlgebra.ofAntipodeOfAdjoin`, which upgrades a bialgebra `A` to a Hopf
algebra given an algebra anti-homomorphism `S : A →ₐ[R] Aᵐᵒᵖ` that satisfies the
two antipode identities *only on a generating set* `X` with `adjoin R X = ⊤`.
Main additions (`Mathlib/RingTheory/HopfAlgebra/Basic.lean`):
* `HopfAlgebra.mul_antipode_rTensor_comul_adjoin_top` /
`HopfAlgebra.mul_antipode_lTensor_comul_adjoin_top`: the antipode axioms hold on
all of `A` when they hold on a generating set.
* `HopfAlgebra.ofAntipodeOfAdjoin`: the resulting `HopfAlgebra R A` structure,
with `antipode := (opLinearEquiv R).symm.toLinearMap ∘ₗ S.toLinearMap`.
Also in (`Mathlib/RingTheory/HopfAlgebra/Convolution.lean`):
* Golf `antipode_mul_id`, `id_mul_antipode`, and `antipode_id_cancel`.
* Add `id_antipode_cancel` (mirror of `antipode_id_cancel`). |
t-ring-theory
new-contributor
|
89/9 |
Mathlib/RingTheory/HopfAlgebra/Convolution.lean |
1 |
2 |
['github-actions'] |
nobody |
11-23526 11 days ago |
66-84830 66 days ago |
66-85646 66 days |
0 |
| 38223 |
Deicyde author:Deicyde |
feat(Geometry/Manifold): add `MfldCat`, the category of `C^n` manifolds |
Defines `MfldCat 𝕜 n`: the category of `C^n` manifolds over a field `𝕜`, in which the model with corners is allowed to vary between objects. An object bundles a model vector space `E`, a model space `H`, a model with corners `I : ModelWithCorners 𝕜 E H` and a term of `ModelWithCorners.MfldCat I n`--see #41109. This includes manifolds with boundary / corners.
For more discussion see this Zulip thread: [#PR reviews > #38223 The Category of C^n Manifolds](https://leanprover.zulipchat.com/#narrow/channel/144837-PR-reviews/topic/.2338223.20The.20Category.20of.20C.5En.20Manifolds/with/587038032)
Also added: `ContMDiffMap.id_apply`, `.coe_id` and `.coe_comp` which are comparable to `ContinuousMap` API.
### Future work
- ✅ Define a Monoidal structure via product manifolds, analogous to `Manifold.Topology.Category.TopCat.Monoidal` #38560
- ✅ Define the tangent functor: `M ↦ TM`, `F ↦ F.tangentMap` from `MfldCat (n+1) 𝕜` to `MfldCat n 𝕜` #38270
- Functor `FGModuleCat 𝕜 ⥤ MfldCat 𝕜 n` sending a finite-dimensional `𝕜`-vector space to the manifold modeled on itself. Left as `TODO`.
- Define `FGModuleCat 𝕜` as an enriched category over `MfldCat n 𝕜`. Then _smooth functors_ can be realized as endofunctors on the enriched category. This is the main motivation for this construction.
---
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[](https://gitpod.io/from-referrer/)
|
t-differential-geometry
new-contributor
t-category-theory
|
210/0 |
Mathlib.lean,Mathlib/Geometry/Manifold/Category/MfldCat/Basic.lean,Mathlib/Geometry/Manifold/ContMDiffMap.lean |
3 |
63 |
['Deicyde', 'chrisflav', 'dagurtomas', 'github-actions', 'idontgetoutmuch', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'peabrainiac'] |
joelriou assignee:joelriou |
11-23229 11 days ago |
11-24107 11 days ago |
70-64120 70 days |
2 |
| 43672 |
javgomzar author:javgomzar |
chore(LinearAlgebra/Matrix): add push tags to transpose lemmas |
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
label:t-algebra$ |
6/5 |
Mathlib/LinearAlgebra/Matrix/Defs.lean |
1 |
3 |
['github-actions'] |
nobody |
11-13633 11 days ago |
11-16167 11 days ago |
11-15941 11 days |
0 |
| 42424 |
lydia-schiff author:lydia-schiff |
feat(Order/Partition/Finpartition): transport a set partition along a type equivalence |
- Adds `Finpartition.congr` to transport a `Finpartition` along a type equivalence.
- We can use `Finpartition.map` if we have an order-iso, and the equivalence induces one via the new `Finset.congrOrderIso` which is based on `Equiv.finsetCongr`.
- Includes parts, card, refl, and round-trip lemmas.
---
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- `Equiv.finsetCongr` already gives us an equivalence of Finsets, so the new `Finset.congrOrderIso` just adds that the power-set lattice structure is also preserved.
- Includes lemmas showing that the parts are e-images of the old ones, card is preserved, and refl + round-trip for the equivalence.
- The cardinality lemma was the original motivation from some work on Stirling numbers, but I thought that `Finpartition.congr` and `Finset.congrOrderIso` seemed reusable and hopefully useful in their own right, and thought it would make a good first contribution.
- Zulip thread about naming and placement [here](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/.60Finpartition.2Econgr.60.20.E2.80.94.20naming.20.26.20placement)
- I used Claude Opus 4.8 to help draft the proofs and explore the API. I have spent several weeks making sure I understand and can justify every line and I've learned a lot which is great.
[](https://gitpod.io/from-referrer/)
|
t-order
LLM-generated
new-contributor
|
61/0 |
Mathlib/Data/Finset/Image.lean,Mathlib/Order/Partition/Finpartition.lean |
2 |
6 |
['github-actions', 'lydia-schiff', 'mathlib-merge-conflicts'] |
nobody |
10-83190 10 days ago |
11-1247 11 days ago |
37-71983 37 days |
0 |
| 42630 |
will1491 author:will1491 |
feat(Analysis/Complex): define Wirtinger derivatives |
Define the Wirtinger derivatives `Complex.wirtingerDeriv` and `Complex.wirtingerDerivBar` from `fderiv ℝ`, and prove: the Cauchy-Riemann characterization of complex differentiability (pointwise and on open sets), agreement of `wirtingerDeriv` with `deriv` for holomorphic functions, additivity, Leibniz product rules, conjugation identities, both Wirtinger chain rules, and the Wirtinger decomposition of a real-linear map `ℂ →L[ℝ] ℂ`.
Extracted from https://github.com/will1491/RiemannDynamics, where it underlies the Beltrami-equation and Cauchy/Beurling-transform theory used in the proof of the measurable Riemann mapping theorem.
---
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-->
[](https://gitpod.io/from-referrer/)
|
t-analysis
new-contributor
|
253/0 |
Mathlib.lean,Mathlib/Analysis/Complex/Wirtinger.lean |
2 |
3 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
10-76361 10 days ago |
10-77096 10 days ago |
41-52511 41 days |
0 |
| 41523 |
Harmenszoon author:Harmenszoon |
feat(Analysis/SpecialFunctions): add the Chase-Lovett diagonal reduction for binEntropy |
This PR adds the two-variable entropy inequality of Chase and Lovett ([arXiv:2211.11689](https://arxiv.org/abs/2211.11689), Lemma 2.2): for `x, y ∈ [0, 1]`,
```
x * binEntropy y + y * binEntropy x ≤ 2 * sqrt (x * y) * binEntropy (sqrt (x * y))
```
in a new leaf file `Mathlib/Analysis/SpecialFunctions/BinaryEntropy/Diagonal.lean`, together with its `negMulLog (1 - ·)` half (`Real.mul_negMulLog_one_sub_add_le`) and a `private` concavity layer for the comparison function `η u = exp u * negMulLog (1 - exp (-u))`. Two entries are added to `docs/references.bib` (Chase–Lovett arXiv:2211.11689, Boppana arXiv:2301.09664).
**Motivation.** This inequality is the reusable reduction step behind the recent entropic lower bounds for Frankl's union-closed sets conjecture (Gilmer; Alweiss–Huang–Sellke; Chase–Lovett; Sawin; Boppana): it reduces two-variable inequalities of Boppana type `K * (x * h y + y * h x) ≤ h (x * y)` to one-variable inequalities `2 * K * t * h t ≤ h (t ^ 2)`. `Mathlib/Analysis/SpecialFunctions/BinaryEntropy.lean` currently contains calculus basics for `binEntropy` only, and no inequality of this family; I checked current master for collisions before opening this. A kernel-checked downstream application — a complete Lean formalization of the union-closed lower bound at the constant `(3 - √5)/2` that uses exactly this reduction — is public at https://github.com/demonstrandum-research/artifacts (the `UCFrankl` development), which I maintain.
**Proof shape** (one page of calculus): substituting `x = exp (-u)`, the inequality becomes midpoint concavity of `η` on `[0, ∞)`; the `negMulLog (x * y)` parts of the two sides cancel exactly, the `negMulLog (1 - ·)` parts transfer to `η` via the identity `x * η (-log x) = negMulLog (1 - x)`, and `η'' ≤ 0` reduces to `log t ≤ t - 1`. Stating `η` through `negMulLog` absorbs the `0 * log 0` boundary behaviour, so no separate edge-case argument is needed at `x = 1`.
**Design notes / open questions for reviewers.**
- Hypotheses are stated as `0 ≤ x`/`x ≤ 1` pairs rather than `x ∈ Set.Icc 0 1`; happy to convert if the membership form is preferred.
- The `η`-machinery is `private`; it could be exposed if judged independently useful.
- File placement: a new `BinaryEntropy/Diagonal.lean` leaf keeps the import footprint of `BinaryEntropy.lean` unchanged (the proof needs `Analysis.Convex.Deriv`); merging into the main file is also possible if preferred.
- Naming: `mul_binEntropy_add_mul_binEntropy_le` / `mul_negMulLog_one_sub_add_le` follow the conclusion-based convention but I am glad to rename.
**AI disclosure** (per the [mathlib AI policy](https://leanprover-community.github.io/contribute/index.html)): the Lean code in this PR was generated by LLM agents (Anthropic's Claude, running in an agent pipeline that I operate under the name Demonstrandum), and was then compile-verified against mathlib and reviewed by me. This PR description was also prepared with AI assistance and reviewed by me. The proof is elementary calculus as summarized above; I understand it and take full responsibility for the contribution. I am adding the `LLM-generated` label as required. The downstream `UCFrankl` development linked above (kernel-checked, axioms `[propext, Classical.choice, Quot.sound]` only) is the evidence that the lemma carries real weight in applications.
---
- [x] depends on: nothing
|
t-analysis
LLM-generated
new-contributor
|
227/0 |
Mathlib.lean,Mathlib/Analysis/SpecialFunctions/BinaryEntropy/Diagonal.lean,docs/references.bib |
3 |
5 |
['Harmenszoon', 'Timeroot', 'github-actions'] |
nobody |
10-62109 10 days ago |
74-50913 74 days ago |
74-50687 74 days |
0 |
| 43621 |
Whning0513 author:Whning0513 |
feat(Data/List): add basic API for toChunks |
Adds basic API lemmas for `List.toChunks`: flattening recovers the input, chunks are nonempty sublists, and their lengths are bounded by the chunk size.
This addresses the `Data/List/Basic: SP: toChunks` item in #7987.
Tests:
- `lake env lean Mathlib/Data/List/ToChunks.lean`
- `lake build Mathlib.Data.List.ToChunks`
- `lake exe runLinter Mathlib.Data.List.ToChunks`
AI use: OpenAI Codex was used to rebase the branch, run the checks above, and submit this pull request. The code and proofs were written and reviewed by the author. |
t-data
new-contributor
|
119/0 |
Mathlib.lean,Mathlib/Data/List/ToChunks.lean |
2 |
8 |
['copilot-pull-request-reviewer', 'github-actions', 'theebayuser'] |
nobody |
10-47829 10 days ago |
12-17659 12 days ago |
12-17433 12 days |
0 |
| 40050 |
ReemMelamed author:ReemMelamed |
feat(Algebra/Group/GreensRelations): add definitions for Green's relations |
This PR introduces the foundational definitions for Green's relations (L, R, H, D, and J) on semigroups.
This is the first in a series of PRs aimed at formalizing Green's relations for semigroups.
[Zulip](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Formalization.20of.20Green.27s.20Relations.20for.20semigroups/with/598557876)
---
- [x] depends on: #40843
|
t-algebra
new-contributor
label:t-algebra$ |
505/0 |
Mathlib.lean,Mathlib/Algebra/Group/GreensRelations/Basic.lean |
2 |
33 |
['ReemMelamed', 'YaelDillies', 'YanYablonovskiy', 'github-actions', 'mathlib-bors', 'mathlib-dependent-issues'] |
nobody |
10-26190 10 days ago |
10-26956 10 days ago |
30-17880 30 days |
2 |
| 43702 |
theebayuser author:theebayuser |
feat(LinearAlgebra/AffineSpace): add Varignon's theorem |
Hello, this PR introduces Varignon's theorem.
Varignon's theorem states that the midpoints of the sides of a quadrilateral form a parallelogram. More precisely, `midpoint_midpoint_midpoint_rotate` states: the two diagonals of the midpoint quadrilateral have the same midpoint.
This PR was written with AI assistance (Claude Code)
|
t-algebra
new-contributor
LLM-generated
label:t-algebra$ |
22/2 |
Mathlib/LinearAlgebra/AffineSpace/Midpoint.lean,docs/1000.yaml |
2 |
7 |
['github-actions', 'theebayuser', 'wwylele'] |
nobody |
10-7207 10 days ago |
10-53279 10 days ago |
10-53053 10 days |
0 |
| 42313 |
deancureton author:deancureton |
feat(RingTheory): embDomain composition and range, Laurent series expansion |
Add to the Hahn series API:
- `embDomain_embDomain` (composition of domain embeddings)
- `mem_range_embDomain_iff` (range of `embDomain` is characterized by support containment)
Add to the Laurent series API:
- the expansion ring endomorphism `LaurentSeries.expand` with its monomial and `orderTop` lemmas
- follows the pattern of `Polynomial.expand`, `MvPolynomial.expand`, `PowerSeries.expand`
- its opposite `LaurentSeries.contract`, with the decomposition of a Laurent series by exponent residues mod `n` (`sum_single_mul_expand_contract`) and its uniqueness (`contract_eq_of_sum_eq`)
- `exists_ofPowerSeries_eq_of_orderTop_nonneg`
This is the first of a series of PRs formalizing Puiseux series and Puiseux's theorem (entry 41 of Freek Wiedijk's 100 theorems list). |
t-ring-theory
new-contributor
LLM-generated
|
116/0 |
Mathlib/RingTheory/HahnSeries/Basic.lean,Mathlib/RingTheory/LaurentSeries.lean |
2 |
16 |
['deancureton', 'github-actions', 'wwylele'] |
nobody |
10-564 10 days ago |
39-66209 39 days ago |
51-69718 51 days |
0 |
| 41241 |
intgrah author:intgrah |
feat(Order/Category): cartesian closed and distributive structure on PartOrd and Preord |
Give `PartOrd` and `Preord` `CartesianMonoidalCategory`, `MonoidalClosed`, and `IsCartesianDistributive` instances.
---
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-->
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-order
|
267/0 |
Mathlib.lean,Mathlib/Order/Category/PartOrd/CartesianClosed.lean,Mathlib/Order/Category/PartOrd/Colimits.lean,Mathlib/Order/Category/PartOrd/Reflective.lean,Mathlib/Order/Category/Preord/CartesianClosed.lean,Mathlib/Order/Category/Preord/Colimits.lean,Mathlib/Order/Category/Preord/Reflective.lean,Mathlib/Tactic/Linter/DirectoryDependency.lean |
8 |
7 |
['github-actions', 'intgrah', 'thomaskwaring'] |
nobody |
9-85906 9 days ago |
11-67787 11 days ago |
82-17389 82 days |
0 |
| 42461 |
Ganton23 author:Ganton23 |
feat(Probability/Quantile): the lower quantile function of a real cdf |
This adds `ProbabilityTheory.lowerQuantile`, the lower quantile function
(the generalized inverse of a cdf-like monotone function on ℝ), with the
order core, the Galois connection under right-continuity, the plug-in
identity, left-continuity in the level, uniqueness, equivariance under
order isomorphisms, and the specialization to `cdf μ` where both standing
side conditions become theorems.
---
This adds the LOWER QUANTILE FUNCTION, that is the generalized inverse of a cdf-like
monotone function on `ℝ`, in a new file `Mathlib/Probability/Quantile.lean` beside
`Mathlib/Probability/CDF.lean`.
### What it adds
`ProbabilityTheory.quantileSet F p = {x | p ≤ F x}` and
`ProbabilityTheory.lowerQuantile F p = sInf (quantileSet F p)`, with:
* the order core: monotonicity in the level, and the two `csInf` bounds;
* attainment `p ≤ F (lowerQuantile F p)` under monotonicity and right continuity;
* the Galois connection `lowerQuantile F p ≤ x ↔ p ≤ F x`, and its strict form;
* the plug-in identity `F (lowerQuantile F p) = p` under continuity;
* left continuity of the quantile in the level;
* uniqueness under strict monotonicity, and existence on an interval via the IVT;
* equivariance under an `OrderIso ℝ ℝ`, in both functional and pushforward form;
* the specialization to `cdf μ` for a probability measure at `0 < p < 1`, where both
standing side conditions become theorems.
### Why
`sInf` of an empty or unbounded-below set is Lean's junk value `0`. A quantile lemma
stated without `Set.Nonempty` and `BddBelow` is therefore either false or accidentally
true of the junk value, and a reader cannot tell which. Every general lemma here carries
both by name, and the cdf section discharges both from the limits of the cdf at `atBot`
and `atTop`. That discharge is what makes the general statements non-vacuous.
Three lemmas record that the continuity hypotheses are load bearing, stated as
`¬ ∀ ...` rather than as existentials. An existential says a bad case exists; the negated
universal says the weakened lemma is FALSE, which is what a reader asking "is this
hypothesis decorative" actually wants. The witness is a monotone step function that is
left continuous at its jump: monotone, bounded, well behaved quantile set, and not right
continuous, which alone breaks attainment, the forward half of the adjunction, and the
plug-in identity.
`not_galoisConnection_lowerQuantile_cdf` is included deliberately as a NEGATIVE result.
The bundled `GaloisConnection` packaging quantifies over all levels, and a cdf has an
unbounded quantile set at level `0` and an empty one at level `2`, so the bundled
conclusion is false for every probability measure. Reaching the cdf case would need the
level indexed by the open unit interval as a subtype. I would rather state that boundary
than let a reader discover it.
### What it depends on
`Mathlib.Probability.CDF` for the cdf and its monotonicity and limits;
`Mathlib.Topology.Order.IntermediateValue`; `Mathlib.Topology.Order.MonotoneContinuity`;
`Mathlib.Order.ConditionallyCompleteLattice.Indexed`. No new axioms: every declaration
reports exactly `propext`, `Classical.choice`, `Quot.sound`.
### Prior art, named because a reviewer will find it
`Mathlib/Order/SemiconjSup.lean` defines `IsOrderRightAdjoint f g := ∀ y, IsLUB
{x | f x ≤ y} (g y)`, built by `isOrderRightAdjoint_csSup` as a supremum over a
SUB-level set. That is the order-dual construction, the UPPER generalized inverse; the
two functions are different and neither definition unfolds to the other. Its file is
about circle homeomorphisms, which is why searching for "quantile" does not find it.
`GaloisConnection` is used rather than reinvented.
There is no existing `quantile` in mathlib: zero case-insensitive hits across the tree.
`median` exists but is the median of a simplex in affine geometry, a different word in a
different subject.
### Generality, stated rather than left to review
Everything is at `F : ℝ → ℝ`. Running mathlib's environment linters locally flagged
`[IsProbabilityMeasure μ]` as unused in nine cdf-facing declarations. Five (the two
side-condition dischargers and the three negative results) are generalized: they now
hold for the cdf of any measure, since the cdf's limit lemmas hold unconditionally.
Four convenience wrappers (`lowerQuantile_cdf_le_iff`, `lowerQuantile_cdf_mono`,
`le_cdf_lowerQuantile`, `continuousWithinAt_lowerQuantile_cdf_Iic`) KEEP the instance
under `@[nolint unusedArguments]`, deliberately: for a non-probability measure,
`cdf μ` is a normalizing construction, so the generalized statements would be
accidentally true of the construction rather than of the object the name suggests,
which is the failure mode the Why section above exists to avoid. If reviewers prefer
the fully general forms, I am happy to drop the instances; the proofs do not use
them. Two declarations (`cdf_map_orderIso`, `lowerQuantile_cdf_map`) consume the
instance and keep it.
The ORDER CORE generalizes to a `ConditionallyCompleteLinearOrder` domain with a
`Preorder` codomain with proof terms UNCHANGED, and I have checked that rather than
assumed it. Two caveats found while checking, which is why I would rather do it as a
follow-up than fold it in here:
* `apply_lt_of_lt_lowerQuantile` needs a LINEAR codomain, since it goes from
`¬ (p ≤ F x)` to `F x < p`.
* `exists_apply_lt_of_bddBelow` is FALSE without `NoMinOrder` on the domain. Over `ℝ` it
is proved by exhibiting `b - 1`; on a domain with a least element, a constant `F` at
level `p` has a quantile set that is everything, is bounded below, and has no point
with `F a < p`.
The TOPOLOGICAL layer does not transcribe: `tendsto_lowerQuantile_nhdsLT` takes the
midpoint `(c + q) / 2`, which uses the field structure, and a general version needs
`DenselyOrdered`. Happy to do the generalization in a follow-up, or in this PR if a
reviewer prefers it landed general the first time.
### Open, and not claimed
The UPPER quantile and the lemmas relating the two; the probability integral transform;
`Measure.map` along a general measurable monotone function rather than an order
isomorphism; and a `GaloisConnection` packaging indexed by the open unit interval that
would reach the cdf case.
### AI disclosure
- Lean definitions and proofs generated with the assistance of AI agents (Utilized Anthropic's Claude, operating through Claude Code). Done over numerous working sessions wherein I, Gabriel Anton, directed, reviewed and authorized each session.
- Every declaration is kernel-checked; Zero sorry, and everyone of the 48 submitted declarations reports exactly [Propext, Classical.choice, Quot.sound] under transitive #print axioms; clean lake build against current master.
-Ran aggressive adversarial review process on each agents work with a separate agent; A hostile-reviewer pass, refutation lemmas proving the hypotheses are load bearing, and a certified negative result for the packaging that does not work. The corrections forced by this process are in the file and history.
- Ran Mathlib's environment linters BEFORE submission; their finding (Unused in nine declarations) was adopted, which produced the generalization-versus-nolint split described in the PR body.
- Commit messages are terse factual summaries; PR body was drafted by agents and reviewed and edited by me, this disclosure is also written by me, Gabriel Anton.
- I will apply the LLM-Generated label (by comment) and I will answer review questions myself.
[](https://gitpod.io/from-referrer/)
|
t-measure-probability
LLM-generated
new-contributor
|
603/0 |
Mathlib.lean,Mathlib/Probability/Quantile.lean |
2 |
3 |
['Ganton23', 'github-actions'] |
nobody |
9-84807 9 days ago |
9-85537 9 days ago |
11-74228 11 days |
0 |
| 42165 |
bocowgill author:bocowgill |
feat(Probability/HasCondDistrib): characterize independence using conditional distributions |
This PR uses conditional distributions to characterize independence of two random variables.
It adds eight public declarations to `Mathlib/Probability/HasCondDistrib.lean`, which is the only file modified:
- `indepFun_iff_hasCondDistrib_const_of_hasLaw`: characterizes independence using a constant conditional-distribution kernel when the laws are specified.
- `indepFun_iff_hasCondDistrib_const`: specializes this characterization to the marginal laws `P.map X` and `P.map Y`.
- `IndepFun.hasCondDistrib_const`: the forward implication of the preceding equivalence.
- `HasCondDistrib.indepFun_of_const`: the reverse implication.
- `hasCondDistrib_condDistrib`: shows that the regular conditional distribution `condDistrib Y X P` satisfies `HasCondDistrib`.
- `hasCondDistrib_iff_condDistrib_ae_eq`: characterizes finite kernels satisfying `HasCondDistrib` by almost-everywhere equality with `condDistrib`.
- `indepFun_iff_condDistrib_ae_eq_const_of_hasLaw`: characterizes independence by almost-everywhere equality of `condDistrib` with the constant kernel at the specified law.
- `indepFun_iff_condDistrib_ae_eq_const`: specializes this characterization to the marginal laws.
The PR adds no new file and makes no change to the root `Mathlib.lean` imports.
---
### Motivation
These results provide a basic building block for formalizing randomized experiments and causal identification. The main result provides a starting point for later ignorability and conditional-independence results in causal inference.
### LLM disclosure
For theorem planning and Lean implementation, I substantially used Codex by OpenAI. I also used it for suggestions around naming and documentation, for iterating on the proofs, and for validating my commits locally.
I manually searched for the best locations and earlier results to build upon. I personally reviewed both the mathematical statements and Lean code (line-by-line), as well as the suggestions around naming and API choices. I also reviewed and confirmed that I can explain each step of the results (both Mathematics and Lean syntax).
To validate the change, I directly compiled the modified file and ran a targeted build. I also ran the style linter, and completed a full `lake build` and a full `lake test`.
Please note: This is one of my first mathlib contributions. I welcome corrections or suggestions about all aspects of this PR. I'm prepared to revise it as necessary, and to learn from the review.
|
t-measure-probability
LLM-generated
new-contributor
maintainer-merge
|
68/3 |
Mathlib/Probability/HasCondDistrib.lean |
1 |
33 |
['CoolRmal', 'EtienneC30', 'bocowgill', 'github-actions', 'leanprover-radar'] |
nobody |
9-69192 9 days ago |
32-54017 32 days ago |
55-45683 55 days |
0 |
| 42355 |
sankalpsthakur author:sankalpsthakur |
fix(NormNum): error if remaining at locations are unused |
`norm_num at h1 h2 ...` (and other tactics built on `Lean.Elab.Tactic.withNondepPropLocation`) unconditionally processed every hypothesis in the location list, then the target. If an earlier hypothesis closed the goal (e.g. `norm_num` found `h1` to already be `False`), processing continued against an already-closed goal instead of stopping.
Unused `at` locations now error if an earlier location closed the goal.
Closes #28703.
---------
Note. `withNondepPropLocation` currently has no other callers in the Mathlib tree besides its own definition file.
AI coding tools were used to help draft this change and PR description. I reviewed the complete change, understand the reasoning, and verified the build locally before submitting. |
new-contributor
LLM-generated
t-meta
|
32/2 |
Mathlib/Util/AtLocation.lean,MathlibTest/Tactic/NormNum/Basic.lean |
2 |
22 |
['github-actions', 'grunweg', 'mathlib-merge-conflicts', 'sankalpsthakur', 'thorimur'] |
thorimur assignee:thorimur |
9-38172 9 days ago |
9-43362 9 days ago |
29-44412 29 days |
0 |
| 43633 |
Jun2028 author:Jun2028 |
feat(SetTheory/Ordinal): classify exponential principal ordinals |
Complete `` TODO: Prove that the exponential principal ordinals are `0`, `1`, `2`, `ω`, or `ε_ x` `` in [Mathlib/SetTheory/Ordinal/Principal.lean](https://github.com/leanprover-community/mathlib4/compare/master...Jun2028:mathlib4:feat/exponential-principal-classification?expand=1#diff-c700a68af59d576bafeeeac5211181f9ce129bdead444df6c9747344817103bd)
By the way, the original TODO was wrong because `1` is not an exponential principal ordinal (it requires $0^0=1<1$ which is false).
---
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Co-authored-by: Author Name <author@email.com>
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at the bottom of the commit message (before the `---`, and also before
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Moves:
- Vector.* -> List.Vector.*
- ...
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[](https://gitpod.io/from-referrer/)
|
t-set-theory
new-contributor
|
65/5 |
Mathlib/SetTheory/Ordinal/Principal.lean,Mathlib/SetTheory/Ordinal/Veblen.lean |
2 |
8 |
['github-actions', 'vihdzp'] |
nobody |
9-27324 9 days ago |
12-9723 12 days ago |
12-9497 12 days |
0 |
| 41861 |
stalex444 author:stalex444 |
feat(Algebra/Order/Floor): floor-of-sum dichotomy via fractional parts |
This PR adds four lemmas in Mathlib/Algebra/Order/Floor/Ring.lean, placed in the fractional-part section, complementing the existing one-sided bounds le_floor_add and le_floor_add_floor.
Here are the lemmas:
* floor_add_eq — writes ⌊a + b⌋ exactly as ⌊a⌋ + ⌊b⌋ + ⌊fract a + fract b⌋
* floor_add_eq_add_iff — the floors add exactly ⟺ the fractional parts sum below 1
* floor_add_eq_add_add_one_iff — the +1 case ⟺ the fractional parts sum to at least 1
* floor_add_eq_or — the dichotomy: it's always one or the other
The library has the two inequalities but not the exact case analysis, and this closes that small gap. In addition, these are the lemmas for the mechanical/Beatty-word development proposed here --https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Sturmian.20.28mechanical.29.20words/near/610836902.
Claude helped draft the Lean code; I reviewed the code, built the module locally, and it compiled.
---
I'm flexible on the lemma names should reviewers prefer different forms
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Deletions:
- Nat.bit1_add_bit1
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|
t-algebra
LLM-generated
new-contributor
label:t-algebra$ |
49/0 |
Mathlib/Algebra/Order/Floor/Ring.lean |
1 |
11 |
['BoltonBailey', 'github-actions', 'stalex444', 'themathqueen'] |
nobody |
9-18612 9 days ago |
9-20077 9 days ago |
46-41944 46 days |
0 |
| 41871 |
stalex444 author:stalex444 |
feat(RingTheory/IntegralClosure): integer powers of integral elements are integral |
This PR adds IsIntegral.zpow and its subalgebra-membership analogs (zpow_mem, zpow_mem_adjoin, Algebra.IsIntegral.zpow_mem), generalizing the existing inv lemmas from the −1 power to all integer powers.
This Lean code was drafted with the help of AI (Claude Code), I reviewed it and built it locally against the current master.
---
Happy to adjust the placement or the type-variable names.
---
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Please ask for help on https://leanprover.zulipchat.com if needed.
When merging, all the commits will be squashed into a single commit
listing all co-authors.
Co-authors in the squash commit are gathered from two sources:
First, all authors of commits to this PR branch are included. Thus,
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-->
[](https://gitpod.io/from-referrer/)
|
t-ring-theory
LLM-generated
new-contributor
|
20/0 |
Mathlib/RingTheory/IntegralClosure/IsIntegralClosure/Basic.lean |
1 |
11 |
['SnirBroshi', 'github-actions', 'stalex444'] |
nobody |
9-2839 9 days ago |
65-85254 65 days ago |
65-85028 65 days |
0 |
| 40973 |
certik author:certik |
feat: multiplicative automatic continuity on ℝ |
This PR adds the multiplicative companion of the existing additive automatic-continuity theorem `AddMonoidHom.continuous_of_measurable`. See the git commit descriptions for all the details.
Depends on https://github.com/leanprover-community/mathlib4/pull/40976.
AI usage disclosure: I used Claude Opus 4.8 to create the theorems and proofs in my own Lean project, then extracted them into this PR since I think they are general purpose and would be useful for other people. I iterated on the proofs until they are as simple as I could get them. I am new to Lean, so if something should be reworked, please let me know. Lean is amazing, I was able to use it to prove various theorems and check my derivations. This is my little contribution back to the project. |
t-measure-probability
LLM-generated
new-contributor
|
159/0 |
Mathlib.lean,Mathlib/MeasureTheory/Measure/Haar/AutomaticContinuity.lean |
2 |
10 |
['certik', 'github-actions', 'mathlib-merge-conflicts', 'wwylele'] |
urkud assignee:urkud |
8-63011 8 days ago |
86-40538 86 days ago |
88-64009 88 days |
0 |
| 43744 |
tobias-weiss-ai-xr author:tobias-weiss-ai-xr |
feat(Dynamics): gauss map for continued fractions and its inverse branches |
Adds the Gauss map `T x = 1/x - ⌊1/x⌋` (the fractional part of `1/x`, extended by `0` outside `(0,1]`) together with its inverse branches `Iₙ x = 1/(n+1+x)`.
## Main results
- `gaussMap_in_range`: `T` maps `[0,1]` into `[0,1]`
- `gaussMap_gaussInverseBranch`: `T ∘ Iₙ = id` on the open interval `(0,1)`
- `gaussInverseBranch_Icc_range`: `Iₙ` maps `[0,1]` onto `[1/(n+2), 1/(n+1)]`
- `gaussInverseBranch_partition`: the closed branch images cover `(0,1]`
- `gaussInverseBranch_disjoint`: distinct open branch images are disjoint
## Context
The branch partition is the combinatorial backbone of the transfer-operator approach to the Selberg zeta function (Mayer's model of continued fractions): the inverse branches generate the symbolic dynamics of the regular continued-fraction expansion, and the transfer operator of the Gauss map acts on functions on the unit interval by summing over these branches. |
t-dynamics
new-contributor
LLM-generated
|
203/0 |
Mathlib.lean,Mathlib/Dynamics/GaussMap.lean |
2 |
4 |
['D-Thomine', 'github-actions'] |
nobody |
8-256 8 days ago |
9-61574 9 days ago |
9-61594 9 days |
0 |
| 43104 |
elazarg author:elazarg |
feat(InformationTheory/KullbackLeibler): finite Kullback-Leibler divergence |
Add finite-sum formulas for `InformationTheory.klDiv` on finite measurable spaces, including equal-mass and probability-measure specializations and formulas for sums of weighted Dirac measures. Provide both `ℝ≥0∞`-valued and `toReal` versions.
Supporting API includes a formula for the Radon–Nikodym derivative at points of nonzero reference-measure mass, a finite-sum formula for the integral of the log-likelihood ratio, and singleton-mass and absolute-continuity lemmas for sums of weighted Dirac measures.
---
Continuing #42584, another part of https://github.com/elazarg/kraft.
Following review, this uses the existing `klDiv` instead of introducing `klDivFin`. The `toReal` formulas connect it to real-valued sums in downstream code.
For measures of unequal mass, the formulas retain the correction term `ν.real univ - μ.real univ`.
The KL formulas are in `KullbackLeibler/Basic.lean`; the supporting lemmas are in the corresponding measure-theory modules.
[](https://gitpod.io/from-referrer/)
|
t-measure-probability
new-contributor
LLM-generated
|
100/1 |
Mathlib/InformationTheory/KullbackLeibler/Basic.lean,Mathlib/MeasureTheory/Measure/Decomposition/RadonNikodym.lean,Mathlib/MeasureTheory/Measure/Dirac/Basic.lean,Mathlib/MeasureTheory/Measure/LogLikelihoodRatio.lean |
4 |
9 |
['EtienneC30', 'elazarg', 'github-actions', 'vlad902'] |
EtienneC30 assignee:EtienneC30 |
7-82395 7 days ago |
7-82395 7 days ago |
16-63847 16 days |
0 |
| 42363 |
ghseeli author:ghseeli |
feat(Combinatorics): card_le_card_biUnion_of_card_le_card |
This PR contributes a lemma to combinatorics, `card_le_card_biUnion_of_card_le_card`. this is a set theoretic corollary of a double counting result proved for bipartite graphs (`Finset.sum_card_bipartiteAbove_eq_sum_card_bipartiteBelow`). This result was needed for our Latin Square PR https://github.com/leanprover-community/mathlib4/pull/36698. This result was proved in less general terms in that PR, but is independent of Latin Square considerations and so we have generalized and moved it into this file.
---
<!-- Your PR title will become the first line of the commit message.
In this box, the text above the `---` (if not empty) will be appended
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Co-authors in the squash commit are gathered from two sources:
First, all authors of commits to this PR branch are included. Thus,
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-->
[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
|
38/0 |
Mathlib/Combinatorics/Enumerative/DoubleCounting.lean |
1 |
16 |
['cjrl', 'github-actions', 'vlad902', 'wwylele'] |
nobody |
7-72968 7 days ago |
37-62709 37 days ago |
50-54001 50 days |
1 |
| 36323 |
SproutSeeds author:SproutSeeds |
feat(Inversion): discontinuity and center/global fderiv formulas |
Part of #5939
I removed the `[Nontrivial F]` requirement and the nonzero-radius assumption from both `fderiv` formulas. The center lemma now explicitly covers the zero-radius case and subsingleton spaces, is marked with `@[simp]`, and is reused in the global formula.
The discontinuity lemma still retains its original assumptions, and I updated the center lemma’s docstring to explain when zero is used as the fallback value at a point where the function is not differentiable.
Rebased the inversion follow up onto current master after #36313 merged, removing the duplicated `Basic.lean` history and leaving only the intended `Calculus.lean` changes.
The incremental scope above #36313 is limited to `Mathlib/Geometry/Euclidean/Inversion/Calculus.lean`.
## Verification
- `lake build Mathlib.Geometry.Euclidean.Inversion.Calculus`
- `lake exe lint-style Mathlib.Geometry.Euclidean.Inversion.Calculus`
- `git diff --check`
The revision has been pushed. The local build passes, along with all 11 regression examples and the lint checks, and the hosted CI is green as well.
I used Codex to help with the implementation and verification.
---
Happy to adjust naming, placement, or proof style based on maintainer preference.
|
t-euclidean-geometry
new-contributor
LLM-generated
|
27/0 |
Mathlib/Geometry/Euclidean/Inversion/Calculus.lean |
1 |
8 |
['SproutSeeds', 'github-actions', 'jsm28', 'mathlib-merge-conflicts'] |
nobody |
7-52581 7 days ago |
7-53396 7 days ago |
39-26 39 days |
0 |
| 42487 |
bocowgill author:bocowgill |
feat(Algebra/BigOperators/Group/Finset/Powerset): add nested powersetCard identities |
This PR adds product and sum identities for nested collections of fixed-cardinality subsets. For `r ≤ k`, each `r`-element subset of a finite set `s` is contained in exactly
`Nat.choose (s.card - r) (k - r)`
of the `k`-element subsets of `s`. Thus, a sum over the `r`-element subsets of every `k`-element subset reduces to this multiplicity, times a single sum over `s.powersetCard r`. The product version is the analogous power identity.
The proof exchanges the order of the two big operators using `Finset.prod_comm'`. It then counts each fiber with `Finset.card_filter_powersetCard_subset`. The additive identities are generated with `to_additive`. The PR also provides the useful elementwise specialization `r = 1`.
**Motivation**: These results provide reusable weighted double-counting tools for finite combinatorics. They are useful in arguments about uniform set systems, incidence relations, and sums or products over fixed-cardinality subsets.
---
### LLM disclosure
For theorem planning and Lean implementation, I used OpenAI Codex substantially. I also used Codex to search Mathlib and open PRs for related results, suggest naming and documentation, iterate on the proofs, audit import dependencies, and validate the commits locally.
I personally reviewed the mathematical statements and Lean code line-by-line, including the naming and API choices. I also confirmed that I can explain each step of the proofs.
For the current revision, I ran a targeted build of `Mathlib.Algebra.BigOperators.Group.Finset.Powerset`, the style and environment linters, and `git diff --check`. I also inspected the generated additive declarations and axiom dependencies, and tested an alternative proof using explicit incidence finsets. The complete GitHub CI suite passes.
This is one of my earliest Mathlib contributions. I welcome corrections and suggestions, and I am prepared to revise the PR and learn from the review. |
t-algebra
new-contributor
LLM-generated
label:t-algebra$ |
27/0 |
Mathlib/Algebra/BigOperators/Group/Finset/Powerset.lean |
1 |
17 |
['bocowgill', 'github-actions', 'pepamontero'] |
nobody |
7-33445 7 days ago |
7-55243 7 days ago |
45-83374 45 days |
0 |
| 43851 |
ZRTMRH author:ZRTMRH |
feat(Analysis/BoundedVariation): add BoundedVariationOn.intervalIntegrable |
A real-valued function of bounded variation on a compact interval is interval integrable on it with respect to any locally finite measure.
---
<!-- Your PR title will become the first line of the commit message.
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Please ask for help on https://leanprover.zulipchat.com if needed.
When merging, all the commits will be squashed into a single commit
listing all co-authors.
Co-authors in the squash commit are gathered from two sources:
First, all authors of commits to this PR branch are included. Thus,
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any "Co-authored-by" lines) using the following format:
Moves:
- Vector.* -> List.Vector.*
- ...
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- Nat.bit1_add_bit1
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-->
[](https://gitpod.io/from-referrer/)
|
t-analysis
new-contributor
|
8/0 |
Mathlib/Analysis/BoundedVariation.lean |
1 |
2 |
['github-actions'] |
nobody |
5-76575 5 days ago |
5-78757 5 days ago |
5-78531 5 days |
0 |
| 43862 |
Julian-Kuelshammer author:Julian-Kuelshammer |
chore(Data/Fintype/Defs): remove unnecessary variable in instance |
In #43425, it was discovered that an instance contained an unnecessary variable. This is removed in this PR. We also use the opportunity to change some => to \mapsto close by, which according to the style guide is slightly preferred.
---
[](https://gitpod.io/from-referrer/)
|
t-data
new-contributor
|
6/7 |
Mathlib/Data/Fintype/Defs.lean |
1 |
3 |
['JX-Mo', 'github-actions'] |
nobody |
5-16154 5 days ago |
5-37489 5 days ago |
5-37263 5 days |
0 |
| 43418 |
aimmerwahr author:aimmerwahr |
feat(RingTheory): prove `comap_ringConGen_equiv` (`proof_wanted`) |
Prove that `(ringConGen r).comap f = ringConGen (r on f)` for an EquivLike as stated in proof_wanted.
I rearranged the parameter order (and dropped `[FunLike F R' R]`) from the original proof_wanted statement, since EquivLike already gives a FunLike and having repeated FunLike (that are not definitionally equal) makes instance resolution impossible.
This is essentially the same proof as the previous ring equivalence version (pulling back the RingCon by f inverse and then by f), with comap spelled out explicitly.
AI usage: Everything is proved by hand. I then worked with AI to review and simplify the code. |
file-removed
t-ring-theory
new-contributor
|
37/33 |
Mathlib/RingTheory/Congruence/Basic.lean,Wanted.lean,Wanted/RingTheory/Congruence/Basic.lean |
3 |
2 |
['github-actions'] |
nobody |
5-11787 5 days ago |
17-58235 17 days ago |
17-58009 17 days |
0 |
| 41426 |
gmcninch-prof author:gmcninch-prof |
feat: add symmetric multilinear maps |
Define `SymmetricMap R M N ι`, the type of symmetric `R`-multilinear maps
from `ι → M` to `N` (i.e. multilinear maps invariant under permutation of
their arguments).
---
<!-- Your PR title will become the first line of the commit message.
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will format the text above it as a title.
For details on the "pull request lifecycle" in mathlib, please see:
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In particular, note that most reviewers will only notice your PR
if it passes the continuous integration checks.
Please ask for help on https://leanprover.zulipchat.com if needed.
When merging, all the commits will be squashed into a single commit
listing all co-authors.
Co-authors in the squash commit are gathered from two sources:
First, all authors of commits to this PR branch are included. Thus,
one way to add co-authors is to include at least one commit authored by
each co-author among the commits in the pull request. If necessary, you
may create empty commits to indicate co-authorship, using commands like so:
git commit --author="Author Name <author@email.com>" --allow-empty -m "add Author Name as coauthor"
Second, co-authors can also be listed in lines at the very bottom of
the commit message (that is, directly before the `---`) using the following format:
Co-authored-by: Author Name <author@email.com>
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at the bottom of the commit message (before the `---`, and also before
any "Co-authored-by" lines) using the following format:
Moves:
- Vector.* -> List.Vector.*
- ...
Deletions:
- Nat.bit1_add_bit1
- ...
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below the `---`, and placed outside this HTML comment, or else they
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- [ ] depends on: #xyz [optional extra text]
-->
The code is adapted from Kenny Lau's work
[here](https://github.com/kckennylau/EllipticCurve/blob/master/EllipticCurve/ProjectiveSpace/TensorProduct/SymmetricMap.lean)
-- see [`SymmetricMap`](https://github.com/gmcninch-prof/mathlib4/blob/symmetric-power-lift/Mathlib/LinearAlgebra/TensorProduct/SymmetricMap.lean).
This PR previously also contained the universal property / `lift` for
`SymmetricPower` (relating linear maps out of `Sym[R]^n M` to symmetric
multilinear maps), but per reviewer feedback on Zulip that work has been
split into a separate PR that depends on this one.
Zulip discussion [here](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/SymmetricPower.20universal.20property/near/608532652)
[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
label:t-algebra$ |
397/0 |
Mathlib.lean,Mathlib/LinearAlgebra/TensorProduct/SymmetricMap.lean |
2 |
10 |
['github-actions', 'gmcninch-prof', 'jcommelin'] |
ocfnash assignee:ocfnash |
4-62951 4 days ago |
70-80858 70 days ago |
72-48934 72 days |
1 |
| 42312 |
sfingali author:sfingali |
feat(Topology): huber (f-adic) rings |
### Summary
Defines Huber (f-adic) rings: topological rings admitting an open subring whose
subspace topology is the `I`-adic topology for a finitely generated ideal `I`
(Wedhorn, *Adic Spaces*, arXiv:1910.05934, Prop. and Def. 6.1, p. 46).
* `HuberRing.RingOfDefinition` — the pair of definition `(A₀, I)`: an open subring
`A₀ ⊆ A` with `IsAdic I` for a finitely generated ideal `I` of `A₀` (data).
* `HuberRing.IsHuberRing` — a topological ring admitting a ring of definition
(property).
* `HuberRing.ringOfDefinition_iff_open_adic` — Wedhorn, Lemma 6.2 (a) ↔ (b), p. 46:
a subring is a ring of definition iff it is open and adic.
This is the first step of a planned adic/perfectoid pipeline (Huber rings →
Huber pairs → continuous valuations → Spa → perfectoid fields → tilting), following
the design of the Lean 3 `lean-perfectoid-spaces` project (ring of definition as
data, Huber ring as a property). Follow-ups (depending on #40013's boundedness):
Lemma 6.2 (c) (ring of definition ⟺ open + bounded) and Cor. 6.4(3) (the
power-bounded elements form a subring, the union of all rings of definition).
### References
* T. Wedhorn, *Adic Spaces*, arXiv:1910.05934, Prop. and Def. 6.1, Lemma 6.2,
Cor. 6.4 (pp. 46–47).
|
t-topology
new-contributor
|
84/0 |
Mathlib.lean,Mathlib/Topology/Algebra/Nonarchimedean/HuberRing.lean |
2 |
6 |
['github-actions', 'pepamontero'] |
j-loreaux assignee:j-loreaux |
4-62950 4 days ago |
51-67799 51 days ago |
51-68242 51 days |
0 |
| 42110 |
Zeta-Wu author:Zeta-Wu |
feat: add path length for paths in pseudo emetric spaces |
This PR defines the length of a path in a `PseudoEMetricSpace` as its variation on the unit interval.
It proves the basic properties of path length:
- the endpoint distance is bounded by the length;
- the constant path has length zero;
- reversing a path preserves its length;
- concatenating two paths adds their lengths.
Main declarations:
- `Path.length`
- `Path.edist_le_length`
- `Path.length_refl`
- `Path.length_symm`
- `Path.length_trans`
This is intended as a first step toward a broader theory of rectifiable paths, including later results on invariance of length under monotone reparametrization, and shortest paths are line segments up to monotone reparametrization in strict convex spaces.
This PR was discussed on Zulip [here](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/PR.20.2342110.3A.20Path.2Elength.20in.20PseudoEMetricSpace).
AI disclosure: I used an agent called ReasLingo to generate those codes. After the codes are generated I read them line by line and ask the agent to rewrite some proofs when I think it is a bad code. For design decisions, I asked the agent to give me several versions, and I manually picked one of them to make sure it fits human understanding.
---
<!-- Your PR title will become the first line of the commit message.
In this box, the text above the `---` (if not empty) will be appended
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Co-authors in the squash commit are gathered from two sources:
First, all authors of commits to this PR branch are included. Thus,
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each co-author among the commits in the pull request. If necessary, you
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git commit --author="Author Name <author@email.com>" --allow-empty -m "add Author Name as coauthor"
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the commit message (that is, directly before the `---`) using the following format:
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at the bottom of the commit message (before the `---`, and also before
any "Co-authored-by" lines) using the following format:
Moves:
- Vector.* -> List.Vector.*
- ...
Deletions:
- Nat.bit1_add_bit1
- ...
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below the `---`, and placed outside this HTML comment, or else they
will be invisible to reviewers.
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- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
t-topology
new-contributor
LLM-generated
|
215/0 |
Mathlib.lean,Mathlib/Topology/EMetricSpace/ArcLength.lean,Mathlib/Topology/EMetricSpace/PathLength.lean,Mathlib/Topology/Path.lean,Mathlib/Topology/UnitInterval.lean |
5 |
124 |
['CoolRmal', 'Zeta-Wu', 'felixpernegger', 'github-actions', 'pelicanhere', 'scholzhannah'] |
scholzhannah assignee:scholzhannah |
4-27624 4 days ago |
5-17252 5 days ago |
45-42619 45 days |
0 |
| 39347 |
Sfgangloff author:Sfgangloff |
feat(SymbolicDynamics): refactor of Pattern and shift-invariance of shape languages for subshifts |
## Summary
This PR refactors Pattern.mulShift in Mathlib/Dynamics/SymbolicDynamics/Basic.lean and uses the cleaner definition to prove shift-invariance of the language of a subshift on a finite shape.
## Changes
Pattern.mulShift now returns a Pattern instead of a configuration (more natural).
- Old type: Pattern.mulShift : Pattern A G → G → (G → A)
- New type: Pattern.mulShift : Pattern A G → G → Pattern A G
- The result carries its support (p.support.image (v * ·)) and the
default-outside-support proof, so callers don't have to re-derive them.
The [IsLeftCancelMul G] hypothesis is moved to the lemmas that actually use it.
- The definition Pattern.mulShift itself no longer needs left-cancellation (it only
chooses a preimage noncomputably).
- The hypothesis is now stated on mulShift_config_apply_mul_left_of_mem and
mulOccursInAt_eq_cylinder directly, instead of being a section-level variable.
Renames following the type change.
- mulShift_apply_mul_left_of_mem → mulShift_config_apply_mul_left_of_mem (because we
now write (p.mulShift v).config instead of p.mulShift v).
New @[simp] and @[ext] lemmas for Pattern.
- Pattern.ext: two patterns are equal iff their supports agree and their
configurations agree on the support.
- Pattern.mulShift_support: the support of p.mulShift v is p.support.image (v * ·).
- Pattern.fromConfig_support: the support of fromConfig x U is U.
- Pattern.fromConfig_config_of_mem: on its support, fromConfig x U agrees with x.
New lemma Pattern.fromConfig_mulShift.
For a left inverse g' * g = 1, shifting the pattern fromConfig x U by g equals
fromConfig (mulShift g' x) (U.image (g * ·)).
New theorem MulSubshift.languageOn_image_mulShift.
For a subshift Y and elements g, g' with g * g' = 1 and g' * g = 1:
(fun p => p.mulShift g) '' Y.languageOn U = Y.languageOn (U.image (g * ·))
i.e. the language on the translated shape is exactly the image of the language on U
under the pattern-shift map. This gives a bijection between Y.languageOn U and
Y.languageOn (U.image (g * ·)), with inverse p ↦ p.mulShift g'. Stated for
left-cancellative monoids with an invertible element.
Updated docstrings for Pattern.mulShift and the renamed lemma to reflect the
bundled-Pattern return type and clarify which results need [IsLeftCancelMul G]. |
t-dynamics
new-contributor
|
144/47 |
Mathlib/Dynamics/SymbolicDynamics/Basic.lean |
1 |
13 |
['Sfgangloff', 'github-actions', 'mathlib-merge-conflicts', 'sgouezel'] |
sgouezel assignee:sgouezel |
4-20136 4 days ago |
4-20136 4 days ago |
37-77901 37 days |
0 |
| 41258 |
ungatz author:ungatz |
feat(Analysis/Fourier/FiniteAbelian): add the Donoho-Stark support uncertainty principle |
This adds the Donoho–Stark support uncertainty inequality for the unitary Fourier transform on a finite abelian group, plus the supporting Fourier-inversion machinery indexed by the Pontryagin dual `AddChar G ℂ`.
The headline:
> **Theorem `AddChar.donoho_stark`.** For nonzero `f : G → ℂ`,
> `Fintype.card G ≤ (support f).ncard * (support (fourierTransform f)).ncard`,
> where `fourierTransform f ψ = |G|^(-1/2) * ∑ g, conj (ψ g) * f g` ranges over `ψ : AddChar G ℂ`.
The proof is the elementary (L¹, L∞) duality argument that any harmonic-analysis textbook gives for the classical `ZMod N` case; no Parseval or Cauchy–Schwarz is needed. The finite-abelian generalisation is folklore (stated in Tao–Vu *Additive Combinatorics* and Terras *Fourier Analysis on Finite Groups*); I did not find it formalised in Mathlib or any other major library.
### Why this belongs in Mathlib
Mathlib already has the supporting infrastructure — character theory of finite abelian groups (`Mathlib.Algebra.Group.AddChar`), character orthogonality and Pontryagin duality (`Mathlib.Analysis.Fourier.FiniteAbelian.{Orthogonality, PontryaginDuality}`). The Donoho–Stark inequality is the canonical application of all three, and its absence is a real gap: I needed it for a downstream operator-uncertainty result (a diagonal-operator `rank * Pauli-support` bound on the finite Heisenberg group reduces to it) and ended up proving it from scratch. Beyond that use, it is a standard tool in compressed sensing on finite abelian groups, additive combinatorics, and discrete signal recovery (the 1989 paper has ~3500 citations).
### What's in this PR
A single new file, `Mathlib/Analysis/Fourier/FiniteAbelian/DonohoStark.lean`:
- `AddChar.fourierTransform` — the unitary (symmetric) Fourier transform indexed by `AddChar G ℂ`;
- `AddChar.fourier_inversion` — the inversion formula;
- `AddChar.norm_fourierTransform_le`, `AddChar.norm_le_sum_norm_fourierTransform` — the two `L∞ ≤ |G|^(-1/2) · L¹` triangle bounds;
- `AddChar.donoho_stark` — the support uncertainty inequality.
Design choices I expect questions on, and my defaults:
- **`ℂ` rather than `RCLike`**: matches the cited literature and the cleanest home of `AddChar.norm_apply`; happy to generalise if preferred.
- **`Set.ncard` for support sizes**: avoids needing `DecidableEq ℂ` in the statement.
- **A new sibling file** of `Orthogonality.lean` / `PontryaginDuality.lean` rather than a subsection: orthogonality is the tool, Donoho–Stark is the application; can inline if preferred.
Deliberately *not* included: the diagonal-operator `rank * Pauli-support ≥ 2^n` corollary from my workspace — the Pauli-word machinery has no natural home in `Analysis/Fourier` yet; happy to factor it into a follow-up if there is interest.
### AI usage disclosure
Per the [AI contribution policy](https://leanprover-community.github.io/contribute/index.html): the original Lean proof was generated by **Aristotle** (Harmonic AI's automated proof system) from a dispatch containing the statement and the (L¹, L∞) proof strategy, as part of my PhD research workspace. I audited the delivery line by line against Donoho–Stark 1989 (the dispatch also produced a kernel-checked counterexample to a tempting wrong variant — replacing rank by the count of distinct eigenvalues — which the 2×2 identity falsifies). The file here is my adaptation to Mathlib conventions and to current master (module system, `Set.ncard` statement, robust cast handling in the inversion proof), with final tactic-level repairs done with the assistance of Claude (Anthropic). I understand and can defend every line without AI assistance. Please add the `LLM-generated` label (I cannot set labels myself).
### Test plan
- [x] `lake build Mathlib.Analysis.Fourier.FiniteAbelian.DonohoStark` clean (0 errors, 0 warnings).
- [x] `#print axioms` on all five declarations: `[propext, Classical.choice, Quot.sound]`.
- [x] `lake exe lint-style` clean; all lines ≤ 100 chars.
- [x] `Mathlib.lean` updated in alphabetical position.
- [x] Imports minimal (`PontryaginDuality` + `RCLike.Basic` only).
### Reference
Donoho, D. L. and Stark, P. B. (1989). *Uncertainty principles and signal recovery.* SIAM Journal on Applied Mathematics, **49**(3): 906–931. https://doi.org/10.1137/0149053
---
|
t-analysis
new-contributor
LLM-generated
|
283/0 |
Mathlib.lean,Mathlib/Analysis/Fourier/FiniteAbelian/DonohoStark.lean |
2 |
4 |
['YaelDillies', 'copilot-pull-request-reviewer', 'felixpernegger', 'github-actions'] |
nobody |
4-12833 4 days ago |
81-68690 81 days ago |
81-68464 81 days |
0 |
| 43824 |
xingzhicn author:xingzhicn |
feat(Order/Submodular): define submodular functions and diminishing returns |
This PR defines submodular, supermodular, and modular functions on general lattices, and proves the diminishing returns property on finite sets.
Main definitions:
- `IsSubmodular f`: `∀ a b, f (a ⊓ b) + f (a ⊔ b) ≤ f a + f b`
- `IsSupermodular f`: `∀ a b, f a + f b ≤ f (a ⊓ b) + f (a ⊔ b)`
- `IsModular f`: `∀ a b, f (a ⊓ b) + f (a ⊔ b) = f a + f b`
Main results:
- `isModular_iff_submodular_and_supermodular`: a function is modular iff it is both submodular and supermodular.
- `IsSubmodular.add_insert_le`: diminishing returns on `Finset`: for `s ⊆ t` and `x ∉ t`, `f s + f (insert x t) ≤ f (insert x s) + f t`.
This lays the foundation for discrete convex analysis, combinatorial optimization, and matroid rank theory.
---
|
t-order
new-contributor
|
120/0 |
Mathlib.lean,Mathlib/Order/Submodular.lean |
2 |
15 |
['JX-Mo', 'github-actions', 'pepamontero', 'vlad902'] |
nobody |
4-11814 4 days ago |
6-53650 6 days ago |
6-53424 6 days |
0 |
| 43904 |
t4v1 author:t4v1 |
feat(MeasureTheory/Constructions/HaarToSphere): polar coordinates for lintegral |
`Measure.measurePreserving_homeomorphUnitSphereProd` represents an additive Haar measure on a nontrivial finite-dimensional normed space `E` as the product of the sphere measure `μ.toSphere` and Lebesgue measure on `(0, ∞)` with density `r ^ (dim E - 1)`. The file exposes it only through the radial corollaries `integrable_fun_norm_addHaar`, `integrableOn_fun_norm_addHaar` and `integral_fun_norm_addHaar`, all for integrands of the form `f ‖x‖`.
This PR adds the general `lintegral` form, for an arbitrary measurable `f : E → ℝ≥0∞`:
* `lintegral_addHaar_eq_lintegral_toSphere_lintegral_Ioi`:
`∫⁻ x, f x ∂μ = ∫⁻ ω, ∫⁻ r in Ioi 0, ENNReal.ofReal (r ^ (dim E - 1)) * f (r • ω) ∂μ.toSphere`;
* `setLIntegral_ball_eq_lintegral_toSphere_lintegral_Ioo`: the same for `∫⁻ y in ball c R, f y ∂μ`, with the radial integral over `Ioo 0 R` and the rays emanating from `c`.
Both are needed for Morrey's inequality (follow-up PR), whose two analytic steps integrate non-radial functions in polar coordinates; they are stated here on their own because they are independent of it.
The proofs were developed with the help of an LLM (Claude Code) and then checked and edited by the author, who takes responsibility for every line.
|
t-measure-probability
new-contributor
LLM-generated
|
84/0 |
Mathlib/MeasureTheory/Constructions/HaarToSphere.lean |
1 |
3 |
['github-actions', 't4v1'] |
nobody |
3-71202 3 days ago |
3-74032 3 days ago |
3-73806 3 days |
1 |
| 39212 |
emlis42 author:emlis42 |
feat(Algebra/ContinuedFractions): add `partNums!` and `partDens!` |
This PR adds `partNums!` and `partDens!`, which provide infinite stream representations for the sequences of partial numerators and denominators of a generalized continued fraction. |
t-algebra
new-contributor
label:t-algebra$ |
67/35 |
Mathlib/Algebra/ContinuedFractions/Basic.lean,Mathlib/Algebra/ContinuedFractions/ContinuantsRecurrence.lean,Mathlib/Algebra/ContinuedFractions/Determinant.lean,Mathlib/Algebra/ContinuedFractions/Translations.lean |
4 |
6 |
['emlis42', 'eric-wieser', 'github-actions', 'grunweg'] |
alreadydone assignee:alreadydone |
3-63012 3 days ago |
133-4493 133 days ago |
133-4267 133 days |
0 |
| 40599 |
ChiCubed author:ChiCubed |
feat(LinearAlgebra): rank-nullity theorems for Submodule map/comap |
We show forms of the rank-nullity theorem involving `Submodule.map` and `Submodule.comap`. Together with `LinearMap.ker_comp` this provides a formula for the rank of the kernel of a composite (and, in finite dimensions at least, for the rank of the range).
---
I didn't explicitly write the aforementioned formula for rank ker (f ∘ g) since it is just `LinearMap.ker_comp` followed by `LinearMap.lift_rank_comap`, but perhaps it should be added for discoverability?
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Moves:
- Vector.* -> List.Vector.*
- ...
Deletions:
- Nat.bit1_add_bit1
- ...
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below the `---`, and placed outside this HTML comment, or else they
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[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
label:t-algebra$ |
63/15 |
Mathlib/Algebra/Module/Submodule/Ker.lean,Mathlib/Algebra/Module/Submodule/Map.lean,Mathlib/Algebra/Module/Submodule/Range.lean,Mathlib/LinearAlgebra/Dimension/RankNullity.lean |
4 |
41 |
['ADedecker', 'ChiCubed', 'github-actions', 'jcommelin', 'themathqueen', 'wwylele'] |
alreadydone assignee:alreadydone |
3-63009 3 days ago |
11-67941 11 days ago |
89-33919 89 days |
0 |
| 41882 |
theebayuser author:theebayuser |
feat(Data/List): decidability of HasPeriod and periods of repeated lists |
Hello, this PR extends `Mathlib/Data/List/PeriodicityLemma.lean` with:
* a `Decidable (List.HasPeriod w p)` instance (it is a prefix test), and
* two directions that relate periods to repetition:
* `hasPeriod_flatten_replicate` — `(replicate n l).flatten` has period `l.length`
* `eq_flatten_replicate_of_hasPeriod` — a word with period `p` and length `r * p` is the `r`-fold repetition of its length-`p` prefix.
This characterizes `r`-th powers of words by a period plus a length constraint, which a future follow-up PR that I plan to work on will use.
AI disclosure: This code was mostly generated by Claude Fable 5 and Opus 4.8 as part of my larger project on combinatorics on words, which I then reviewed and revised to contribute to mathlib.
|
t-data
LLM-generated
new-contributor
|
59/1 |
Mathlib/Data/List/PeriodicityLemma.lean |
1 |
8 |
['SnirBroshi', 'github-actions', 'theebayuser'] |
eric-wieser assignee:eric-wieser |
3-63006 3 days ago |
65-40272 65 days ago |
65-40046 65 days |
0 |
| 41920 |
junjihashimoto author:junjihashimoto |
feat(Analysis/CliffordAlgebra): the pseudoscalar of Cl(n,0) and its complex structure |
We study the Clifford algebra of Euclidean `n`-space (the quadratic form `x ↦ ⟪x, x⟫_ℝ` on `EuclideanSpace ℝ (Fin n)`). The pseudoscalar `ω = e₀ ⋯ eₙ₋₁` satisfies
* `ω * ω = (-1) ^ (n.choose 2)` (`pseudoscalar_mul_pseudoscalar'`),
* `γᵢ * ω = (-1) ^ (n - 1) • (ω * γᵢ)` (`γ_mul_pseudoscalar`),
so it is central for odd `n`, and a square root of `-1` iff `n ≡ 2, 3 [MOD 4]`. In that case left multiplication by `ω` is a complex structure: we provide a scoped `Module ℂ` instance (via `Complex.liftAux` and `Module.compHom`; no commutation is needed for a module structure, which covers the non-central case `n ≡ 2 [MOD 4]`), and for `n ≡ 3 [MOD 4]` an `Algebra ℂ` structure as a non-instance def.
The sign computations are done by moving a generator through a product of distinct generators (`γ_mul_prod`, `γ_mul_prod_mem`, `prod_sq`), with no case analysis on `n`.
In a follow-up PR this makes the Clifford–Fourier transform (Ebling–Scheuermann) an instance of the ordinary vector-valued Fourier transform, giving Plancherel's theorem and the inversion formula.
- [ ] depends on: (nothing)
|
t-analysis
new-contributor
|
303/0 |
Mathlib.lean,Mathlib/Analysis/CliffordAlgebra/Euclidean.lean |
2 |
5 |
['eric-wieser', 'github-actions', 'j-loreaux'] |
nobody |
3-62103 3 days ago |
64-24064 64 days ago |
64-24338 64 days |
1 |
| 38369 |
quantumsnow author:quantumsnow |
feat(AlgebraicTopology): Eilenberg Steenrod axioms |
This introduces the Eilenberg-Steenrod axioms for a homology theory.
---
<!-- Your PR title will become the first line of the commit message.
In this box, the text above the `---` (if not empty) will be appended
to the commit message, and can be used to give additional context or
details. Please leave a blank newline before the `---`, otherwise GitHub
will format the text above it as a title.
For details on the "pull request lifecycle" in mathlib, please see:
https://leanprover-community.github.io/contribute/index.html
In particular, note that most reviewers will only notice your PR
if it passes the continuous integration checks.
Please ask for help on https://leanprover.zulipchat.com if needed.
When merging, all the commits will be squashed into a single commit
listing all co-authors.
Co-authors in the squash commit are gathered from two sources:
First, all authors of commits to this PR branch are included. Thus,
one way to add co-authors is to include at least one commit authored by
each co-author among the commits in the pull request. If necessary, you
may create empty commits to indicate co-authorship, using commands like so:
git commit --author="Author Name <author@email.com>" --allow-empty -m "add Author Name as coauthor"
Second, co-authors can also be listed in lines at the very bottom of
the commit message (that is, directly before the `---`) using the following format:
Co-authored-by: Author Name <author@email.com>
If you are moving or deleting declarations, please include these lines
at the bottom of the commit message (before the `---`, and also before
any "Co-authored-by" lines) using the following format:
Moves:
- Vector.* -> List.Vector.*
- ...
Deletions:
- Nat.bit1_add_bit1
- ...
Any other comments you want to keep out of the PR commit should go
below the `---`, and placed outside this HTML comment, or else they
will be invisible to reviewers.
If this PR depends on other PRs, please list them below this comment,
using the following format:
- [ ] depends on: #abc [optional extra text]
- [ ] depends on: #xyz [optional extra text]
-->
- [x] depends on: #36621
- [x] depends on: #39236
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-algebraic-topology
large-import
|
276/7 |
Mathlib/AlgebraicTopology/EilenbergSteenrod.lean,Mathlib/Topology/Category/TopPair.lean |
2 |
90 |
['Multramate', 'chrisflav', 'dagurtomas', 'github-actions', 'joelriou', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'quantumsnow'] |
robin-carlier assignee:robin-carlier |
3-31763 3 days ago |
5-29034 5 days ago |
64-67974 64 days |
0 |
| 41486 |
TTony2019 author:TTony2019 |
feat(Analysis/Convex/Intrinsic): add open segment intrinsic interior results |
Add open segment intrinsic interior results: `x ∈ intrinsicInterior 𝕜 C` and `y ∈ intrinsicClosure 𝕜 C`, then the open segment
from `x` to `y` stays in `intrinsicInterior 𝕜 C`.
Co-authored-by: Zichen Wang <imathwy@users.noreply.github.com> |
t-topology
new-contributor
t-analysis
|
57/0 |
Mathlib/Analysis/Convex/Intrinsic.lean,Mathlib/Analysis/Convex/Topology.lean,Mathlib/Topology/Algebra/Module/Basic.lean |
3 |
19 |
['TTony2019', 'github-actions', 'j-loreaux', 'themathqueen'] |
j-loreaux assignee:j-loreaux |
3-25474 3 days ago |
3-25474 3 days ago |
67-36257 67 days |
0 |
| 43758 |
joelcanary author:joelcanary |
feat(NumberTheory/ArithmeticFunction): the Redheffer determinant equals the Mertens function |
This PR adds the zeta (divisibility) matrix, the Redheffer matrix and the Mertens function, and proves **Redheffer's theorem** (1977): the determinant of the `(n+1) × (n+1)` Redheffer matrix equals the Mertens function `M(n+1) = ∑_{k ≤ n+1} μ(k)`.
In `Mathlib/NumberTheory/ArithmeticFunction/Moebius.lean`:
- `ArithmeticFunction.sum_divisors_moebius (k) : ∑ d ∈ k.divisors, μ d = if k = 1 then 1 else 0`, the pointwise form of `moebius_mul_coe_zeta`.
New file `Mathlib/NumberTheory/ArithmeticFunction/Redheffer.lean`:
- `ArithmeticFunction.mertens : ArithmeticFunction ℤ`, the summatory function of `μ`, with `mertens_apply : mertens n = ∑ k ∈ Icc 1 n, μ k`, `mertens_one`, `mertens_add_one` and `mertens_eq_sum_fin` (the `0`-based form `∑ i : Fin n, μ (i + 1)` used on the matrix side);
- `Matrix.zetaMatrix R n : Matrix (Fin n) (Fin n) R` for any `R` with `0` and `1` (entry `1` iff `i + 1 ∣ j + 1`), with `zetaMatrix_apply` (simp), `zetaMatrix_isUpperTriangular` and, for `CommRing R`, `det_zetaMatrix : det = 1`;
- `Matrix.redheffer R n` (the zeta matrix with its first column set to ones), with `redheffer_apply` (simp) and `redheffer_eq_updateCol`;
- `Matrix.det_redheffer (n) : (redheffer R (n + 1)).det = mertens (n + 1)` for any `CommRing R` (with `mertens` cast into `R`);
- `Nat.sum_fin_dvd_eq_sum_divisors`, the reindexing `∑ x : Fin n, (if x + 1 ∣ m then f (x + 1) else 0) = ∑ d ∈ m.divisors, f d` for `0 < m ≤ n`, which is what turns the matrix product into a divisor sum.
Proof sketch: by linearity of `det` in the first column, `det (redheffer R (n+1)) = det (zetaMatrix R (n+1)) + det (zetaMatrix with first column (0,1,…,1))`. The first term is `1`; by Cramer's rule (`det_smul_inv_mulVec_eq_cramer`) the second is the first row of the inverse of the zeta matrix dotted with `(0,1,…,1)`, and that row is `(μ 1, …, μ (n+1))` because `μ * ζ = 1` (`moebius_mul_coe_zeta`, via `sum_divisors_moebius`). The remaining sum `μ 2 + ⋯ + μ (n+1)` is `mertens (n+1) - 1`.
The ring `R` is an explicit argument of `zetaMatrix` and `redheffer` since nothing else determines it. Neither the Mertens function nor the Redheffer matrix currently appear in Mathlib. The new file imports only `LinearAlgebra.Matrix.Block` and `NumberTheory.ArithmeticFunction.Moebius`. Reference added to `docs/references.bib` (`redheffer1977`).
AI use: the Lean code and this description were written with an AI agent (Claude) under my direction, from a proof in my own project; I reviewed every declaration, and the branch was checked locally with `lake build`, `lake exe lint-style` and `lake exe runLinter` before each push. |
t-number-theory
new-contributor
LLM-generated
|
244/0 |
Mathlib.lean,Mathlib/NumberTheory/ArithmeticFunction/Moebius.lean,Mathlib/NumberTheory/ArithmeticFunction/Redheffer.lean,docs/references.bib |
4 |
15 |
['Parcly-Taxel', 'github-actions', 'joelcanary', 'wwylele'] |
nobody |
3-24836 3 days ago |
3-26346 3 days ago |
9-127 9 days |
2 |
| 42380 |
matt-w-horn author:matt-w-horn |
feat(Algebra/Ring): add sum_range_id_mul_geometric_add |
Over a `CommRing`: `∑ k < m, k * (x ^ k * (1 - x)) + m * x ^ m = ∑ k ∈ Icc 1 m, x ^ k`. Summation by parts for the geometric sum; it computes the mean of a censored geometric distribution, which #42381 adds.
Used in Overload, a library on retry and overload dynamics, where it's stated over `ℝ` with a side condition that turns out to be unnecessary: https://github.com/matt-w-horn/overload/blob/4ecbebf/Overload/Retry/Amplification.lean
Claude Fable wrote the Lean from a spec I gave it. I reviewed and tested it myself, including adversarial tests and the suites in the library above, and did the same for its dependencies.
Assisted-by: Claude Fable 5 |
t-algebra
new-contributor
LLM-generated
label:t-algebra$ |
14/0 |
Mathlib/Algebra/Ring/GeomSum.lean |
1 |
4 |
['github-actions', 'matt-w-horn'] |
nobody |
2-83967 2 days ago |
39-72991 39 days ago |
39-72765 39 days |
0 |
| 35504 |
JoaBjo author:JoaBjo |
feat(Probability/Distributions/Exponential): add MGF, moments, and memoryless property |
Add the main analytic results for the exponential distribution:
- moment-generating function `mgf id (expMeasure r) t = r / (r - t)` for `t < r`
- mean `∫ x, x ∂(expMeasure r) = r⁻¹`
- variance `Var[id; expMeasure r] = r⁻¹ ^ 2`
- `ℒp` membership for all `p`
- tail probability `P(X > x) = exp (-(r * x))`
- memoryless property `P(X > s + t | X > s) = P(X > t)`
The MGF is computed by reducing to the known improper integral `∫ exp(c * x)` on `Ioi`, and integrability is deduced by contradiction from the positive closed-form value. The mean and variance are computed via the Gamma function integral `∫₀^∞ x^(n-1) exp(-r x) dx = Γ(n) / rⁿ`. The memoryless property follows from the exponential identity `exp(-(r(s+t))) = exp(-rt) * exp(-rs)`.
🤖 Claude Code (Fable) was used in this PR to resolve a merge with master. It adapted the branch's code to upstream renames/deprecations. It also restructured a proof that broke in the merge.
---
<!-- Your PR title will become the first line of the commit message.
In this box, the text above the `---` (if not empty) will be appended
to the commit message, and can be used to give additional context or
details. Please leave a blank newline before the `---`, otherwise GitHub
will format the text above it as a title.
For details on the "pull request lifecycle" in mathlib, please see:
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In particular, note that most reviewers will only notice your PR
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Please ask for help on https://leanprover.zulipchat.com if needed.
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|
new-contributor
t-measure-probability
large-import
|
199/0 |
Mathlib/Probability/Distributions/Exponential.lean |
1 |
11 |
['EtienneC30', 'JoaBjo', 'Timeroot', 'github-actions', 'mathlib-merge-conflicts'] |
urkud assignee:urkud |
2-63006 2 days ago |
29-21230 29 days ago |
71-31929 71 days |
0 |
| 41517 |
sadasant author:sadasant |
feat(MeasureTheory): define Hellinger affinity |
Define the Hellinger affinity (Bhattacharyya coefficient) of two measures as an `ENNReal`-valued lintegral against the canonical dominating measure `μ + ν`, making the definition total with no absolute-continuity or integrability side conditions. Provide symmetry, invariance under the choice of sigma-finite dominating measure, the self-affinity of a probability measure, the `rnDeriv` and `withDensity` computation rules, the bound `≤ 1` for probability measures (via Hölder with `p = q = 2`), and the characterization that the affinity vanishes iff the measures are mutually singular. Groundwork for a formalization of Kakutani's dichotomy (1948) for infinite products of probability measures.
---
**Design notes.**
On the value type ("why not `ℝ` / `ℝ≥0` / `EReal`"): the `ℝ≥0∞`-valued lintegral against `μ + ν` makes the affinity total, which is what makes the singular direction of Kakutani's dichotomy (planned follow-up PRs) case-split-free — `hellingerAffinity_eq_zero_iff` already characterizes mutual singularity with no absolute-continuity hypothesis. `InformationTheory.klDiv` sets the precedent of an `ℝ≥0∞`-valued, standalone divergence-like quantity. The invariance lemma `hellingerAffinity_eq_lintegral_rnDeriv_mul_rnDeriv` recovers the textbook `∫ √(dμ/dρ · dν/dρ) dρ` for any σ-finite dominating `ρ`.
**Relation to f-divergences** (CC @RemyDegenne for coordination with the planned `fDiv` upstreaming from TestingLowerBounds): the affinity is the f-integral at `f = √·`, equivalently `1 −` the Hellinger-½ divergence, with `H²(μ,ν)/2 = 1 − affinity`. Rather than block on an unlanded framework, this PR keeps the affinity standalone (the `klDiv` pattern); when `fDiv` lands, a single bridging lemma of the shape `fDiv hellingerFun μ ν = 1 - hellingerAffinity μ ν` reconciles them, and I am happy to contribute it. Also happy to move the file to `Mathlib/InformationTheory/` if reviewers prefer that home over `Mathlib/MeasureTheory/Measure/`.
**Roadmap.** This is PR 1 of a planned sequence building toward Kakutani's dichotomy for `Measure.infinitePi` over an arbitrary index type (stronger than the textbook countable statement): the `lintegral` product Fubini and `Measure.pi_withDensity`, the infinite-product/summability bridges, then the singular and absolutely-continuous directions and the packaged dichotomy. Natural follow-up API for this file, available on request: `hellingerAffinity_pos_iff`, monotonicity in each argument, and the relation to the squared Hellinger distance once a distance exists.
**Attribution and AI disclosure.** This material was developed in the public [riemann-venue](https://github.com/idolum-ai/riemann-venue) repository by Daniel Rodriguez in collaboration with Claude Fable 5 (Anthropic), as part of a machine-checked formalization of Kakutani's dichotomy (1948) for infinite products of probability measures. The definitions, proofs, and the drafting of this description were done with Claude Fable 5 via Claude Code, working from a design and statement plan reviewed by the human author; all proofs are checked by Lean (`#print axioms` on the main results reports only `propext`, `Classical.choice`, `Quot.sound`), and the human author reviewed the final form, takes responsibility for it, and will answer all review comments personally. I am applying the `LLM-generated` label per the contribution guidelines. |
t-measure-probability
LLM-generated
new-contributor
|
214/0 |
Mathlib.lean,Mathlib/MeasureTheory/Measure/Hellinger.lean |
2 |
4 |
['github-actions', 'sadasant'] |
urkud assignee:urkud |
2-63005 2 days ago |
74-72452 74 days ago |
74-72226 74 days |
0 |
| 41781 |
teng10 author:teng10 |
feat(Algebra/Representation): add abstract permutation action in TensorPower |
Hello, I'm a new contributor. I had an introduction here on [zulip](https://leanprover.zulipchat.com/#narrow/channel/113489-new-members/topic/Introduction.3A.20Schur.20Weyl.20Duality/with/607194314)
This PR is a first step in formalizing Shur Weyl duality, which I got feedback that it would be useful to mathlib. The final statement I had in mind has the form
/--
The centralizer of `{g^{⊗k} | g ∈ End(V)}`equals `Span{W_σ | σ ∈ S_k}`, for all dimensions `d` and tensor powers `k`.
---/
This PR tries to define permutation action on TensorPower; define permutation image space.
An initial version of the definition is more specific to the Euclidean space (for reference I list them below)
```
open scoped TensorProduct
variable {d : ℕ} {k : ℕ}
/-- The `k`-fold tensor power of `ℂ^d`, defined as `⨂[ℂ] (i : Fin k), (Fin d → ℂ)`. -/
abbrev PiTensorPower (d k : ℕ) : Type :=
PiTensorProduct ℂ (fun (_ : Fin k) => (Fin d → ℂ))
/-- The permutation operator `W_σ` on the tensor power `V^{⊗k}`.
Given `σ : Equiv.Perm (Fin k)`, this acts by permuting the tensor factors:
`W_σ (v₁ ⊗ ⋯ ⊗ vₖ) = v_{σ⁻¹(1)} ⊗ ⋯ ⊗ v_{σ⁻¹(k)}`. -/
def permAction (d : ℕ) {k : ℕ} (σ : Equiv.Perm (Fin k)) :
PiTensorPower d k ≃ₗ[ℂ] TensV d k :=
PiTensorProduct.reindex ℂ (fun (_ : Fin k) => (Fin d → ℂ)) σ
/-- The set of permutation operators in `End(V^{⊗k})`. -/
def permImage (d k : ℕ) : Set (Module.End ℂ (TensV d k)) :=
Set.range (fun σ : Equiv.Perm (Fin k) => (permAction d σ).toLinearMap)
```
LLM acknowledgement: I have used aristotle to write these definitions. However, I am very motivated to learn how to write proper code. I have looked more into `PiTensorProduct` and `TensorPower` module and came to the abstract version in the PR. I tried to ask aristotle about how it's defining things and whether it's suitable for mathlib.
And I would very much appreciate your thoughts on how appropriate these definitions are. Thanks for your time!
Yanting
---
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|
t-algebra
LLM-generated
new-contributor
label:t-algebra$ |
22/0 |
Mathlib/LinearAlgebra/TensorPower/Basic.lean |
1 |
4 |
['github-actions', 'teng10'] |
joelriou assignee:joelriou |
2-63002 2 days ago |
68-9020 68 days ago |
68-8810 68 days |
0 |
| 42786 |
rshlyakh author:rshlyakh |
feat(Data/Finsupp/NatCard): count finsupps of bounded degree |
Adds the formula that the number of finitely-supported functions `α →₀ ℕ` with degree less than or equal to `n` is equal to `Nat.choose (Nat.card α + n) n`. The proof is by establishing an equivalence `Sym (Option α) n ≃ {f : α →₀ ℕ // f.degree ≤ n}` and using the stars-and-bars formula `Sym.equivNatSum.`
---
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[](https://gitpod.io/from-referrer/)
|
t-data
new-contributor
|
56/0 |
Mathlib.lean,Mathlib/Data/Finsupp/NatCard.lean |
2 |
2 |
['github-actions'] |
joneugster assignee:joneugster |
2-63000 2 days ago |
37-58873 37 days ago |
37-61281 37 days |
0 |
| 42831 |
ray-shang author:ray-shang |
feat(CategoryTheory/Preadditive): category ring of preadditive category |
Given a preadditive category `C`, its category ring `CategoryRing C` is the non-unital ring
whose underlying additive group is the direct sum of all of its morphism groups `X ⟶ Y`, and
whose multiplication is induced by composition: the product of a morphism `f : X ⟶ Y` with a
morphism `g : Z ⟶ W` is `f ≫ g` when `Y = Z`, and `0` otherwise. When `C` is `R`-linear this ring
is a (non-unital) `R`-algebra, and when `C` has finitely many objects it is unital, with
unit `∑ X, 𝟙 X`.
This file formalizes `CategoryRing C` and its structure and universal property
when `C` is preadditive, `R`-linear, finite type, and both finite type and `R`-linear. For example,
when `C` is merely preadditive, the universal property of `CategoryRing C` is: non-unital ring
homomorphisms out of `CategoryRing C` correspond to `LiftData`, the data of a
compatible family of additive maps `(X ⟶ Y) →+ A` for a `NonUnitalNonAssocSemiring A`.
AI Usage: Gemini 3.1 Pro Extended Thinking is in use to generate proof terms for the custom induction principle to unwrap the nested direct sums of the category algebra. Human oversight and work determines the most efficient proof term.
---
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[](https://gitpod.io/from-referrer/)
|
t-category-theory
new-contributor
|
706/0 |
Mathlib.lean,Mathlib/CategoryTheory/Preadditive/CategoryRing.lean |
2 |
11 |
['b-reinke', 'github-actions', 'joelriou', 'ray-shang', 'robin-carlier'] |
dagurtomas assignee:dagurtomas |
2-62999 2 days ago |
3-990 3 days ago |
3-33793 3 days |
0 |
| 41678 |
JX-Mo author:JX-Mo |
refactor(RepresentationTheory): record the concrete binary biproduct |
Record the concrete binary biproduct explicitly from the instance `HasBinaryBiproducts` to make its _**proof**_ reusable. This strengthens the exposed mathematical statement from "_the biproduct exists_" to "_the biproduct exists and is isomorphic to_ `prod _ _`".
This has an immediate downstream application: to prove that the property of being smooth is stable under product, we need to reconstruct the "product". The current instance `HasBinaryBiproducts` only tells that the product exists and the information about how the product looks like is not directly available, so now we need to reprove that `prod` is a concrete categorical (bi)product. This PR aims to eliminate such future duplicated proofs. |
t-algebra
new-contributor
label:t-algebra$ |
23/7 |
Mathlib/RepresentationTheory/Rep/Basic.lean |
1 |
9 |
['JX-Mo', 'Whysoserioushah', 'github-actions', 'mathlib-merge-conflicts'] |
joelriou assignee:joelriou |
2-49548 2 days ago |
54-64138 54 days ago |
70-24402 70 days |
0 |
| 42823 |
attilavjda author:attilavjda |
chore: let `to_additive` generate hand-written additive twins |
In eight `to_additive` sites the additive declaration is written out by hand, but `@[to_additive]` on the multiplicative one generates the same statement.
This PR replaces the glue with a tag, deletes the twins, and `(attr := simp)` is used where the additive side must stay a simp lemma.
Aristotle AI found these duplicates, and suggested the solution.
---
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- Nat.bit1_add_bit1
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[](https://gitpod.io/from-referrer/)
|
tech debt
t-group-theory
new-contributor
|
1/1 |
Mathlib/GroupTheory/Nilpotent.lean |
1 |
6 |
['attilavjda', 'github-actions', 'mathlib-merge-conflicts', 'wwylele'] |
nobody |
2-34200 2 days ago |
2-35454 2 days ago |
35-19887 35 days |
0 |
| 43703 |
dicipler-pixel author:dicipler-pixel |
feat(GroupTheory/Coxeter): identify rank-two Coxeter groups with dihedral groups |
Identifies the Coxeter group associated to CoxeterMatrix.I m with DihedralGroup (m + 2).
The new file constructs the canonical homomorphism sending the two simple reflections to adjacent reflections, proves surjectivity, establishes a two-coset normal form in the presented Coxeter group, and uses that normal form to prove injectivity. It then exposes the resulting MulEquiv together with simp lemmas for the simple generators.
This makes precise the description already given in CoxeterMatrix.I's documentation that it is the Coxeter matrix for the symmetry group of the regular (m + 2)-gon.
Mathlib.lean was regenerated with lake exe mk_all. |
t-group-theory
new-contributor
|
206/0 |
Mathlib.lean,Mathlib/GroupTheory/Coxeter/Dihedral.lean |
2 |
10 |
['JX-Mo', 'dicipler-pixel', 'github-actions'] |
nobody |
2-32160 2 days ago |
2-32938 2 days ago |
2-35209 2 days |
0 |
| 43871 |
manman4 author:manman4 |
feat(PowerSeries): add Lagrange inversion formula |
## What this PR adds
This PR formalizes the Lagrange inversion formula for formal power series, including:
* PowerSeries.lagrange_burmann_coeff
* PowerSeries.lagrange_inversion_coeff_pow
* PowerSeries.lagrange_burmann_coeff_div
* PowerSeries.lagrange_inversion_coeff
* PowerSeries.eq_zero_of_fixedPoint_of_constantCoeff_eq_zero
## LLM
We (Julian and I) used Aristotle and Codex for code generation and ChatGPT and Claude for cleanup.
|
t-ring-theory
new-contributor
LLM-generated
|
218/0 |
Mathlib.lean,Mathlib/RingTheory/PowerSeries/Basic.lean,Mathlib/RingTheory/PowerSeries/LagrangeInversion.lean,Mathlib/RingTheory/PowerSeries/Substitution.lean,docs/references.bib |
5 |
95 |
['JX-Mo', 'Julian-Kuelshammer', 'github-actions', 'manman4', 'wwylele'] |
nobody |
2-20596 2 days ago |
3-32166 3 days ago |
5-16201 5 days |
0 |
| 43947 |
kedlaya author:kedlaya |
feat(FieldTheory): Artin-Schreier extensions of fields |
Implement the Artin-Schreier description of cyclic degree-p extensions of fields of characteristic p. Split off from from #41911. |
new-contributor
t-algebra
label:t-algebra$ |
277/0 |
Mathlib.lean,Mathlib/Algebra/Polynomial/FieldDivision.lean,Mathlib/FieldTheory/ArtinSchreierExtension.lean |
3 |
14 |
['JX-Mo', 'github-actions', 'vihdzp'] |
nobody |
2-15208 2 days ago |
2-84328 2 days ago |
2-85183 2 days |
1 |
| 41052 |
hawkrobe author:hawkrobe |
refactor(RingTheory/HopfAlgebra): relocate `ofSurjective` |
---
I wasn't happy with the `HopfAlgebra.ofSurjective` proof in #39790. This PR attempts to refactor by extracting some of the pieces it relies on in more reusable form (e.g. bifunctoriality) and moving it out of `Quotient.lean`.
Also, `convOne` only uses the counit so i moved it up to the `[CoalgebraStruct R C]` section to match `convMul` (so `convOne_comp_coalgHom` could be the same generality as `convMul_comp_coalgHom_distrib`.)
[](https://gitpod.io/from-referrer/)
|
t-ring-theory
new-contributor
maintainer-merge
|
112/61 |
Mathlib/RingTheory/Bialgebra/Convolution.lean,Mathlib/RingTheory/Coalgebra/Convolution.lean,Mathlib/RingTheory/HopfAlgebra/Convolution.lean,Mathlib/RingTheory/HopfAlgebra/Quotient.lean |
4 |
23 |
['eric-wieser', 'github-actions', 'hawkrobe', 'jjdishere', 'mathlib-merge-conflicts', 'themathqueen'] |
jjdishere assignee:jjdishere |
2-3245 2 days ago |
2-5140 2 days ago |
86-55690 86 days |
1 |
| 41957 |
YijunYuan author:YijunYuan |
feat(NumberTheory/Padics/Complex): add densely normed field and separable space instances |
Equip the field `ℂ_[p]` of `p`-adic complex numbers and its dense subfield
`PadicAlgCl p` (the algebraic closure of `ℚ_[p]`) with two further standard
typeclass instances.
Main additions:
* `DenselyNormedField (PadicAlgCl p)`: the norm takes values dense in the
positive reals. The witness between two given bounds `a < b` is built from an
`n`-th root `z` of `p` (which exists since `PadicAlgCl p` is algebraically
closed): choosing `n` so that `(a / b) ^ n < ‖p‖` gives `a / b < ‖z‖ < 1`, and
some integer power `z ^ m` then has norm strictly between `a` and `b`.
* `SeparableSpace (PadicAlgCl p)`: the elements algebraic over `ℚ` form a
countable dense subset. Density follows from continuity of roots — `α` is a
root of its minimal polynomial `f` over `ℚ_[p]`, and approximating the
coefficients of `f` by a polynomial `g` over the dense subfield `ℚ` yields a
root `β` of `g` (hence algebraic over `ℚ`) arbitrarily close to `α`.
* The corresponding instances `DenselyNormedField ℂ_[p]` and
`SeparableSpace ℂ_[p]` are then inferred, `ℂ_[p]` being the completion of
`PadicAlgCl p`.
Supporting general instance:
* `DenselyNormedField (UniformSpace.Completion A)` for a densely normed field
`A` with `CompletableTopField A`, since the norm on the completion extends the
norm on `A`.
The existing `NontriviallyNormedField` instances on `PadicAlgCl p` and `ℂ_[p]`
are simplified to `inferInstance`, as they now follow from the new
`DenselyNormedField` instances. |
new-contributor
t-number-theory
t-algebra
label:t-algebra$ |
123/19 |
Mathlib/Analysis/Normed/Field/Dense.lean,Mathlib/Analysis/Normed/Module/Completion.lean,Mathlib/NumberTheory/Padics/Complex.lean |
3 |
10 |
['YijunYuan', 'github-actions', 'pechersky', 'riccardobrasca'] |
riccardobrasca assignee:riccardobrasca |
1-64995 1 day ago |
20-21901 20 days ago |
58-3353 58 days |
0 |
| 41847 |
stalex444 author:stalex444 |
feat(Analysis/Matrix): tightness of the Tsirelson bound |
This file constructs the explicit real-Pauli CHSH tuple in 4×4 real matrices — X⊗1, Z⊗1, and (√2)⁻¹·(1⊗(X±Z)) — and proves it's a CHSH tuple. It also shows its CHSH operator sends the Bell vector ![1,0,0,1] to √2^3 times itself.
The PR also goes further than the request: √2^3 is the least constant bounding that operator in the Loewner order (via the scoped MatrixOrder instances + the existing tsirelson_inequality), so the constant in tsirelson_inequality cannot be improved.
Small honest caveat worth stating: the "over every algebra" corollary quantifies over Type (universe-0), since hypotheses can't quantify universes; the concrete least-constant statement is universe-free.
This Lean code was drafted with the help of AI (Claude Code). I reviewed the file; built it locally against current Mathlib master and confirmed that it compiled.
---
Questions for reviewers:
- happy to make B₀' and B₁' private if preferred
- happy to provide a ℂ-matrix version if that's more useful
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|
new-contributor
LLM-generated
t-analysis
|
228/6 |
Mathlib.lean,Mathlib/Algebra/Star/CHSH.lean,Mathlib/Analysis/Matrix/CHSH.lean |
3 |
9 |
['github-actions', 'stalex444', 'vihdzp'] |
nobody |
1-64985 1 day ago |
9-18013 9 days ago |
66-62962 66 days |
0 |
| 40479 |
thefundamentaltheor3m author:thefundamentaltheor3m |
feat(LinearAlgebra/AffineSpace/Simplex/Standard): Define the standard $n$-simplex as an `Affine.Simplex` |
In this PR, we define a basis-dependent construction of an affine simplex, using which we define the standard $n$-simplex in `Fin n → k` in terms of `Pi.basisFun`.
The main constructions are `Affine.Simplex.mkOfAffineBasis` and `Affine.Simplex.mkOfBasis`. The former constructs a simplex from any affine basis of an affine space and the latter constructs an affine simplex in a vector space viewed as an affine space. We then relate the construction to `stdSimplex`, defined in `Analysis.Convex.StdSimplex`.
---
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[](https://gitpod.io/from-referrer/)
|
LLM-generated
new-contributor
t-algebra
label:t-algebra$ |
174/0 |
Mathlib.lean,Mathlib/LinearAlgebra/AffineSpace/Basis.lean,Mathlib/LinearAlgebra/AffineSpace/Simplex/Standard.lean,Mathlib/Tactic/Linter/DirectoryDependency.lean |
4 |
12 |
['github-actions', 'thefundamentaltheor3m', 'wwylele'] |
nobody |
1-64973 1 day ago |
42-42823 42 days ago |
71-15773 71 days |
0 |
| 40953 |
ymonbru author:ymonbru |
feat: the definition of a KSheaf on a T2 Space |
This files adds the definition of a KSheaf on a T2 space with value in an arbitrary category.
One may expect this notion to come from sheaves on a site of compact subset of a topological space but there is no coresponding Grothendieck topology on compact subsets. In particular, this is because one of the axioms is in the form of a colimit and can't be expressed as a limit condition (hence a sheaf condition).
It also adds API that allow to use the axioms in a convenient way.
---
- [ ] depends on: #40737
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|
new-contributor
t-topology
|
134/0 |
Mathlib.lean,Mathlib/Topology/Sheaves/KSheaf.lean |
2 |
14 |
['Multramate', 'github-actions', 'joelriou', 'mathlib-dependent-issues', 'ymonbru'] |
nobody |
1-64955 1 day ago |
4-19989 4 days ago |
78-32958 78 days |
1 |
| 40472 |
karlesmarin author:karlesmarin |
feat(Combinatorics/SimpleGraph): oriented incidence matrix and the La… |
# feat(Combinatorics/SimpleGraph): oriented incidence matrix and the Laplacian factorization
## Summary
Adds the **oriented incidence matrix** of a simple graph and the standard **Gram factorization
of the graph Laplacian**:
- **`SimpleGraph.orientedIncMatrix R : Matrix α (Sym2 α) R`** — in the column of an edge
`e = s(u, w)` with `u < w`: `+1` at row `w` (the larger endpoint), `-1` at row `u`, `0`
elsewhere; columns of non-edges are zero. Orientation induced by a `LinearOrder` on the
vertex type.
- **`SimpleGraph.orientedIncMatrix_mul_transpose`** — `N * Nᵀ = G.lapMatrix R` (= `D − A`).
- Supporting API mirroring `incMatrix`: `orientedIncMatrix_apply`,
`orientedIncMatrix_of_notMem_incidenceSet`, `orientedIncMatrix_mul_self`
(the square of an entry is the unoriented `incMatrix` entry), and the two sign lemmas
`orientedIncMatrix_apply_mul_apply_of_adj` (product of the two endpoint entries = `-1`),
`orientedIncMatrix_apply_add_apply_of_adj` (their sum = `0`), plus
`orientedIncMatrix_apply_mul_apply_of_ne` (vanishing away from the common edge).
## Why
Mathlib has the unoriented `G.incMatrix`, whose Gram matrix is the **signless** Laplacian
`D + A` (`incMatrix_mul_transpose_diag` ff.), and it has `G.lapMatrix = D − A` with its kernel
theory — but no object connecting the two. The oriented incidence matrix is that object, and
`N Nᵀ = D − A` is the factorization behind: positive semidefiniteness of the Laplacian as a
Gram fact, Kirchhoff/matrix-tree determinant arguments (via Cauchy–Binet on the reduced
factorization), and total unimodularity of incidence matrices.
## Design notes
- The fixed smaller→larger orientation is harmless: any orientation gives the same Gram matrix
(each edge contributes `(±1)²` on the diagonal and `(+1)(−1)` off it). This is stated in the
module docstring; no orientation-genericity machinery is introduced.
- The headline proof is entrywise: the diagonal reduces to `sum_incMatrix_apply` (= degree)
through `orientedIncMatrix_mul_self`; an off-diagonal `(u, w)` entry is supported on the
single column `s(u, w)`, handled by `Finset.sum_eq_single` and the sign lemmas.
- `[Ring R]` for the API section (signs need negation); the definition itself only needs
`[Zero R] [One R] [Neg R]`.
## Files / placement
- `Mathlib/Combinatorics/SimpleGraph/OrientedIncMatrix.lean` (new)
- `Mathlib.lean` (+1 import line)
## Verification
- `lake env lean` on the file: clean, zero warnings.
- `#print axioms SimpleGraph.orientedIncMatrix_mul_transpose` → 3 standard axioms.
- The factorization and the downstream matrix-tree chain were validated numerically in exact
arithmetic (SageMath) before formalization.
Downstream context: DOI [10.5281/zenodo.20629746](https://doi.org/10.5281/zenodo.20629746).
|
new-contributor
LLM-generated
t-combinatorics
|
157/0 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/OrientedIncMatrix.lean |
2 |
1 |
['github-actions'] |
nobody |
1-64939 1 day ago |
103-6127 103 days ago |
103-5994 103 days |
0 |
| 42188 |
arcaputo3 author:arcaputo3 |
feat(Combinatorics/SimpleGraph): the line graph signature identity |
For a finite simple graph `G` with `n` vertices and `m` edges, we prove the classical identity
`s(A(L(G))) = n - m + p - q`
where `s` is the signature of the (real) adjacency matrix of the line graph `L(G)`, and `(p, q)` are the numbers of positive/negative eigenvalues of `Q(G) - 2•1`, with `Q(G) = D(G) + A(G)` the signless Laplacian, all counted with multiplicity.
The proof is the Gram-pairing argument: the `V × E(G)` incidence matrix `B` satisfies `Bᵀ * B = A(L(G)) + 2•1` and `B * Bᵀ = Q(G)`, and the two products have equal nonzero spectra by `Matrix.charpoly_mul_comm'`. Eigenvalue counts are transported along the resulting root-multiset identity.
New declarations:
- `Mathlib/Analysis/Matrix/Inertia.lean`: the inertia indices `Matrix.IsHermitian.posInertia` / `negInertia` / `signature` of a real symmetric matrix, and `Matrix.IsHermitian.charpoly_add_smul_one` / `roots_charpoly_add_smul_one` (the characteristic polynomial of `A + c • 1` splits over the shifted eigenvalues).
- `Mathlib/Combinatorics/SimpleGraph/LineGraphSignature.lean`: `SimpleGraph.signlessLapMatrix`, `SimpleGraph.edgeIncMatrix` (the `V × E(G)`-indexed incidence matrix) together with the two Gram identities above (stated over an arbitrary (non-assoc) semiring), a `DecidableRel` instance for `lineGraph.Adj`, and the main theorem `SimpleGraph.signature_adjMatrix_lineGraph`.
---
**AI disclosure** (per the mathlib policy on AI-assisted contributions): this PR was formalized end-to-end with Claude Code (Anthropic model Claude Fable 5). The choice of statement and the decision to contribute are mine; the Lean proofs were authored by the tool and verified by compilation. `#print axioms SimpleGraph.signature_adjMatrix_lineGraph` reports `[propext, Classical.choice, Quot.sound]`.
Notes for reviewers:
- `signlessLapMatrix` could alternatively live in `Mathlib/Combinatorics/SimpleGraph/LapMatrix.lean`, and the `DecidableRel G.lineGraph.Adj` instance in `LineGraph.lean`; happy to move them.
- The inertia API is deliberately minimal (what the main theorem needs); extensions (e.g. rank/inertia relations, congruence invariance / Sylvester's law) would be natural follow-ups.
- I do not yet have push access to non-master mathlib branches, so this PR comes from a fork; happy to move the branch onto the main repository once access is granted.
🤖 Generated with [Claude Code](https://claude.com/claude-code)
|
new-contributor
LLM-generated
t-combinatorics
|
326/0 |
Mathlib.lean,Mathlib/Analysis/Matrix/Inertia.lean,Mathlib/Combinatorics/SimpleGraph/LineGraphSignature.lean |
3 |
2 |
['github-actions'] |
nobody |
1-64800 1 day ago |
55-14415 55 days ago |
55-14189 55 days |
0 |
| 43216 |
JadAbouHawili author:JadAbouHawili |
feat(Combinatorics/SimpleGraph/Clique): independence number is zero iff the graph has no vertices |
---
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|
new-contributor
t-combinatorics
|
46/3 |
Mathlib/Combinatorics/SimpleGraph/Clique.lean |
1 |
45 |
['JadAbouHawili', 'SnirBroshi', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
1-64740 1 day ago |
16-3877 16 days ago |
19-66241 19 days |
0 |
| 40448 |
ChiCubed author:ChiCubed |
feat(LinearAlgebra/Dimension): tower law for algebraic extensions |
We generalise the tower law for `Module.rank` to the situation of a module over an algebraic extension of domains.
---
See [the Zulip thread](https://leanprover.zulipchat.com/#narrow/channel/217875-Is-there-code-for-X.3F/topic/Tower.20law.20for.20.60Module.2Erank.60/) for some associated discussion.
I am not sure about in which file these results should live, or what their names should be. For the file I have gone with `LinearAlgebra/Dimension/Algebraic.lean` for now, because these feel more like dimension theorems than `Algebra.IsAlgebraic` theorems, and IMO do not logically fit into the other existing files in `LinearAlgebra/Dimension`.
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[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
label:t-algebra$ |
309/11 |
Mathlib.lean,Mathlib/Algebra/Group/Action/Faithful.lean,Mathlib/LinearAlgebra/Dimension/Domain.lean,Mathlib/LinearAlgebra/Dimension/Free.lean,Mathlib/RingTheory/Algebraic/Integral.lean,Mathlib/RingTheory/Localization/FractionRing.lean |
6 |
27 |
['ChiCubed', 'eric-wieser', 'github-actions', 'mathlib-merge-conflicts', 'tb65536', 'themathqueen'] |
kim-em assignee:kim-em |
1-63736 1 day ago |
1-68411 1 day ago |
98-47151 98 days |
0 |
| 38606 |
dennj author:dennj |
feat: preparation for Vanishing Sum of Roots of Unity |
Adds the Mathlib API extensions needed for an upcoming formalization of the Lam-style classification theorem for vanishing sums of roots of unity.
* Mathlib/LinearAlgebra/LinearIndependent/Lemmas.lean
+ `exists_eq_const_of_sum_smul_eq_zero_of_sum_eq_zero_of_linearIndependent`: if `∑ vᵢ = 0` and the first `n-1` of `n` vectors are linearly independent, every linear relation has constant coefficients.
* Mathlib/RingTheory/Radical/NatInt.lean
+ `Nat.totient_eq_div_radical_mul_totient_radical`: Euler's totient splits as `φ(n) = (n / rad n) * φ(rad n)`.
* Mathlib/RingTheory/RootsOfUnity/PrimitiveRoots.lean
+ `IsPrimitiveRoot.sum_range_pow_mul_div_eq_zero_of_dvd`: the `d` evenly-spaced powers of a primitive `k`-th root sum to zero, for `d ∣ k` and `1 < d`.
* Mathlib/NumberTheory/Cyclotomic/LinearDisjoint.lean (new)
+ `IsPrimitiveRoot.linearDisjoint_adjoin_pow_of_coprime`: cyclotomic subfields of coprime orders are linearly disjoint over `ℚ`.
* Mathlib/NumberTheory/Cyclotomic/LinearRelations.lean (new)
+ `IsPrimitiveRoot.coeffs_eq_of_sum_pow_eq_zero_prime_coprime`: in the cyclotomic field of order `p * m` with `p` prime coprime to `m`, any `ℚ⟮ζ^p⟯`-linear relation among powers of `ζ^m` has all coefficients equal.
---
I need these as preparation to start formalizing the theorem:
Let k be a positive integer. If a finite family of complex k-th roots of unity sums to zero, then the size of the family is a non-negative integer combination of the prime divisors of k.
---
Human-made PR with AI used for golfing and documentation |
new-contributor
t-algebra
label:t-algebra$ |
219/0 |
Mathlib.lean,Mathlib/LinearAlgebra/LinearIndependent/Lemmas.lean,Mathlib/NumberTheory/Cyclotomic/LinearDisjoint.lean,Mathlib/NumberTheory/Cyclotomic/LinearRelations.lean,Mathlib/RingTheory/Radical/Totient.lean,Mathlib/RingTheory/RootsOfUnity/PrimitiveRoots.lean |
6 |
4 |
['github-actions', 'mathlib-merge-conflicts'] |
alreadydone assignee:alreadydone |
1-63010 1 day ago |
95-63515 95 days ago |
104-8537 104 days |
0 |
| 42040 |
fqlx author:fqlx |
feat(NumberTheory): formalize Størmer's theorem on consecutive smooth numbers |
This PR formalizes the Størmer theorem on consecutive smooth numbers.
The new `Mathlib.NumberTheory.Stormer` module:
- develops the Pell/Lucas coefficient needed to study powers of Pell solutions;
- proves that a positive Pell solution whose `y`-coordinate has no prime factors outside the Pell parameter is fundamental;
- encodes consecutive `s`-factored numbers by three-valued prime-exponent data; and
- proves that the set of consecutive `s`-factored pairs is finite, establishes the refined global bound `3 ^ s.card - 2 ^ s.card`, and retains a stronger reusable bound for arbitrary finite subcollections.
The main public conclusions are:
- `card_consecutive_factoredNumbers_le_sub`: the reusable finite-set injection bound;
- `finite_consecutiveFactoredNumbers`: the traditional qualitative Størmer theorem; and
- `ncard_consecutiveFactoredNumbers_le_sub`: the strongest clean public conclusion for the complete set.
The implementation reuses the existing Pell and smooth-number APIs, keeps the core prime-index argument explicit, and includes the corresponding bibliography entry and umbrella import.
--------
AI tools, including OpenAI Codex and ChatGPT, were used extensively in preparing this contribution. They generated and revised substantial portions of the Lean implementation, assisted with proof decomposition and mathlib API discovery, helped iterate on compiler errors and refactoring, and helped draft the PR text.
I selected the theorem and scope, directed the iterations, reviewed the theorem statements and overall proof structure, and ran the listed Lean validation commands. I did not independently author or manually verify every low-level Lean proof step. On the linked self-assessment scale, I would classify this contribution as approximately Level 6: bots coded, human understands mostly.
|
t-number-theory
new-contributor
LLM-generated
|
861/0 |
Mathlib.lean,Mathlib/NumberTheory/Stormer.lean,docs/references.bib |
3 |
6 |
['fqlx', 'github-actions', 'grunweg'] |
jjdishere assignee:jjdishere |
1-63005 1 day ago |
56-34719 56 days ago |
56-79926 56 days |
0 |
| 42315 |
sfingali author:sfingali |
feat(Topology): the adic spectrum Spa(A, A+) as a topological space |
### Summary
Defines the adic spectrum `Spa(A, A⁺)` as a set and topological space for a
topological ring `A` and a subring `A⁺` (Wedhorn, *Adic Spaces*,
arXiv:1910.05934, Def. 7.23 and Def. 7.29, pp. 62–63).
* `SpaPoint A A⁺` — a point of the adic spectrum: a continuous valuation
`v : A → Γ₀` with `v(f) ≤ 1` for all `f ∈ A⁺`.
* `SpaPoint.rationalSubset s T` — the rational subset `R(T/s)`.
* `SpaPoint.spaTopologicalSpace` — the topology generated by the rational
subsets with `T · A` open in `A`; `isOpen_rationalSubset` shows every such
rational subset is open.
* `SpaPoint.mem_rationalSubset_one` — Wedhorn, Rem. 7.30(4): `R(f/1)` is the
set `{x | |f(x)| ≤ 1}`.
Third step of an adic/perfectoid pipeline (Huber rings #42312 → continuous
valuations #42314 → Spa → Huber pairs → perfectoid → tilting). This PR works
with the element-level notion (a bundled continuous valuation with a fixed
value group); Wedhorn defines `Spa(A, A⁺)` as a subspace of the valuation
spectrum `Spv(A)` — the comparison is added once the spectrum PR lands.
### References
* T. Wedhorn, *Adic Spaces*, arXiv:1910.05934, Def. 7.23, Def. 7.29,
Rem. 7.30 (pp. 62–63).
|
new-contributor
t-topology
|
411/0 |
Mathlib.lean,Mathlib/RingTheory/Valuation/ContinuousValuation.lean,Mathlib/Topology/Algebra/Nonarchimedean/Spa.lean |
3 |
3 |
['github-actions', 'tb65536'] |
nobody |
1-52022 1 day ago |
50-5079 50 days ago |
50-8847 50 days |
0 |
| 40727 |
pepamontero author:pepamontero |
feat(Geometry/Manifold/Instances/Quotient): quotients of manifolds by smooth free properly discontinuous group actions are manifolds |
Add smooth manifold structure on orbit space `orbitRel.Quotient G M`.
This PR is a follow-up to #35653, which equipped `orbitRel.Quotient G M` with a `ChartedSpace` structure. Here we promote that to an `IsManifold I n` instance, assuming M itself is an `IsManifold I n` and `G` acts by
`ContMDiffConstSMul`.
This PR:
* Changes the charted space instance to use `IsLocalHomeomorph.chartedSpaceOfRightInverse` applied to `Quotient.out_eq`, so the charts come from an explicit local section `orbitRel.Quotient.localInverseAt x` of the quotient map at `x.out`.
* Adds some API on `localInverseAt` that is only relevant when we have an action (`localInverseAt_apply_mk_eq_smul`, `localInverseAt_symm_trans_eqOn_smul`, `exists_smul_mem_localInverseAt_target`)
* Defines the `transitionMap` between the charts of the quotient, and adds `transitionMap_locally_smul` which shows each transition map agrees near any point with `φ x⁻¹ ≫ (g • ·) ≫ φ y` for a single `g : G`.
* Uses the above to prove `isManifold_quotient_of_contMDiffSMul`.
**Questions for reviewers**:
1. Should the acting group be `Γ` rather than `G`? Here `G` has no topology, and in other files `Γ` is used in this case.
2. Should `localInverseAt` be a `def` instead of an `abbrev`? It is an `abbrev` because there is already API for `IsLocalHomeomorph.localInverseAt` that I need.
3. Is changing the `ChartedSpace` instance to `Quotient.out` the right decision?
4. Should I write a definition for `(chartAt H x.out).symm ≫ₕ (g • ·) ≫ₕ chartAt H y.out` , similar to `transitionMap`?
This started as an ItaLean2025 project; here is the [Zulip thread](https://leanprover.zulipchat.com/#narrow/channel/541885-ItaLean-2025/topic/Projects.3A.20Quotient.20Manifolds/with/575121158) dedicated to it.
Co-authored by: Enrique Díaz Blanco <qdiazblanco@gmail.com>
Co-authored by: Archie Browne <ajb421@ic.ac.uk>
--------
- [x] depends on: #41832
- [x] depends on: #41835
- [x] depends on: #42436
- [x] depends on: #42502
- [x] depends on: #41534
- [x] depends on: #43717 |
new-contributor
large-import
t-differential-geometry
|
138/5 |
Mathlib/Geometry/Manifold/Instances/Quotient.lean |
1 |
50 |
['Deicyde', 'github-actions', 'grunweg', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'pepamontero', 'scholzhannah'] |
grunweg assignee:grunweg |
1-52006 1 day ago |
5-73011 5 days ago |
33-83514 33 days |
0 |
| 41728 |
vaca22 author:vaca22 |
feat(GroupTheory): prove uniqueness of ℤᵐ⁰ automorphisms |
Prove that every order-preserving multiplicative automorphism of ℤᵐ⁰ is the identity. This also gives a Unique instance for its automorphism type and a Subsingleton instance for order-preserving multiplicative normalizations from G to ℤᵐ⁰.
The proof transports an automorphism through WithZero.exp and WithZero.log to an additive automorphism of ℤ, then excludes negation by monotonicity.
------------
**AI disclosure**: this PR is primarily LLM-generated (Claude Code).
|
t-group-theory
new-contributor
LLM-generated
|
58/0 |
Mathlib/GroupTheory/ArchimedeanDensely.lean |
1 |
15 |
['github-actions', 'grunweg', 'tb65536', 'vaca22', 'wwylele'] |
nobody |
1-43686 1 day ago |
16-11005 16 days ago |
30-55321 30 days |
0 |
| 41696 |
vaca22 author:vaca22 |
feat(RingTheory): generalize relNorm_eq_pow_of_isMaximal to separable fraction field extensions |
This PR relaxes the hypothesis of Ideal.relNorm_eq_pow_of_isMaximal and its supporting Ring.NormalClosure instances.
Originally the theorem required the fraction ring of base Dedekind domain R to be a perfect field. Now we only require the fraction field extension to be separable.
The perfect field condition excludes function fields with imperfect constant fields, which is an important case we want to support. The core mathematical insight is that the normal closure of a separable field extension stays separable, so we can construct the Galois structure without a perfect base.
This change is fully backwards compatible: any existing code relying on the old perfect field assumption still compiles, since perfect fields automatically give separable extensions. Only two files are modified: NormalClosure.lean and RelNorm.lean, with small diff and no extra imports.
AI disclosure: I used AI tools to assist with initial code drafting and full CI validation. All mathematical reasoning and proof logic I worked through independently, and I can explain every adjustment in review. My original PR text relied too heavily on AI output, I’ve fully rewritten this description manually. |
new-contributor
t-ring-theory
LLM-generated
|
22/3 |
Mathlib/FieldTheory/Galois/Basic.lean,Mathlib/FieldTheory/SeparableClosure.lean,Mathlib/RingTheory/Ideal/Norm/RelNorm.lean,Mathlib/RingTheory/NormalClosure.lean |
4 |
22 |
['felixpernegger', 'github-actions', 'leanprover-radar', 'vaca22', 'xroblot'] |
nobody |
1-42333 1 day ago |
1-43413 1 day ago |
62-84718 62 days |
0 |
| 42971 |
ashebson author:ashebson |
fix(ProfiniteGrp): simplify explicit limit projections |
The naturality proof for `ProfiniteCompletion.lift` previously needed a brittle pointwise `change`. The underlying problem was that simplification crossed several semireducible diagram/forgetful-functor boundaries at once, producing terms that are definitionally equal but no longer type-correct at implicit transparency.
This PR:
- makes the two finite-quotient diagram composites reducible abbreviations;
- states `quotientMap` using the diagram object types and maps it through the existing `FiniteGrp ⥤ ProfiniteGrp` forgetful functor;
- adds a pointwise rewrite lemma for an explicit limit projection followed by a mapped finite-group morphism (with its additive counterpart); and
- rewrites `ProfiniteCompletion.lift` naturality through that API while keeping the limit point bundled, removing the problematic pointwise `change`.
--------
## AI disclosure
AI (OpenAI Codex) was used extensively for this PR. It was used to:
- investigate the original TODO and reproduce why `dsimp` failed;
- explore and discard several possible fixes;
- identify the semireducible diagram/forgetful-functor boundaries involved;
- design and implement the final `ProfiniteGrp` API simplification and `ProfiniteCompletion.lift` proof changes;
- run the relevant Lean builds and direct compilation checks; and
- draft the commit message and PR description.
The final changes were reviewed through the resulting diff and verified locally.
|
t-topology
new-contributor
LLM-generated
|
29/12 |
Mathlib/Topology/Algebra/Category/ProfiniteGrp/Basic.lean,Mathlib/Topology/Algebra/Category/ProfiniteGrp/Completion.lean,Mathlib/Topology/Algebra/Category/ProfiniteGrp/Limits.lean |
3 |
9 |
['ashebson', 'github-actions', 'grunweg', 'mathlib-bors', 'mathlib-merge-conflicts'] |
nobody |
1-38700 1 day ago |
1-39922 1 day ago |
14-84883 14 days |
0 |
| 43991 |
KevorkianPhilippe author:KevorkianPhilippe |
feat(Algebra/Lie/Cochain): 2-coboundaries and second cohomology of a Lie algebra |
Adds 2-coboundaries and the second cohomology of a Lie algebra with coefficients in a module, completing the `coboundaries, cohomology` item of the TODO list of `Mathlib/Algebra/Lie/Cochain.lean`.
- `twoCoboundary`: the image of `d₁₂` inside the 2-cochains, with membership criteria in general and for a trivial module.
- `twoCoboundary_le_twoCocycle`: coboundaries are cocycles, from the existing `d₂₃_comp_d₁₂`.
- `twoCoboundaryIn`: the coboundaries seen inside the cocycles, and `secondCohomology` (`H²(L, M)`) as the quotient.
- `secondCohomology_mk_eq_zero_iff` and its trivial-module form: a cocycle vanishes in `H²` exactly when it is a coboundary, stated on the explicit formulas, which is what one uses when computing `H²` of a concrete Lie algebra.
- `subsingleton_secondCohomology_of_le`: `H²` vanishes when every cocycle is a coboundary.
The remaining TODO items (comparison with the Chevalley-Eilenberg complex, construction and classification of central extensions) are untouched.
Note: the `## Main definitions` block of this file prefixes the names with `LieAlgebra.` although the namespace is `LieModule.Cohomology`. I followed the existing convention rather than change it here; happy to fix it in this PR if preferred.
Use of AI: this contribution was written with AI assistance (Claude), iterated against the Lean compiler; the module builds, `lint-style` and `lake exe runLinter Mathlib.Algebra.Lie.Cochain` are clean, and `#print axioms` on the new declarations gives only `propext, Classical.choice, Quot.sound`. The mathematical content is the standard low-degree Chevalley-Eilenberg picture, and I am happy to justify any of the design choices.
|
t-algebra
LLM-generated
new-contributor
label:t-algebra$ |
71/1 |
Mathlib/Algebra/Lie/Cochain.lean |
1 |
3 |
['KevorkianPhilippe', 'github-actions'] |
nobody |
1-23663 1 day ago |
1-24995 1 day ago |
1-24769 1 day |
0 |
| 40728 |
Formalistic03 author:Formalistic03 |
feat(Combinatorics/SimpleGraph/Hasse): more properties of Hasse graphs of linear orders |
- two forms of an intermediate value theorem for linear orders
- the Hasse graph of a linear order is acyclic
- a path graph is locally finite
---
<!-- Your PR title will become the first line of the commit message.
In this box, the text above the `---` (if not empty) will be appended
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Moves:
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Deletions:
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-->
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-combinatorics
large-import
|
99/24 |
Mathlib/Combinatorics/SimpleGraph/Acyclic.lean,Mathlib/Combinatorics/SimpleGraph/CycleGraph.lean,Mathlib/Combinatorics/SimpleGraph/Hasse.lean,Mathlib/Data/Fintype/Defs.lean |
4 |
28 |
['Formalistic03', 'Multramate', 'SnirBroshi', 'b-mehta', 'github-actions', 'mathlib-merge-conflicts'] |
b-mehta assignee:b-mehta |
1-22155 1 day ago |
1-27219 1 day ago |
90-20235 90 days |
0 |
| 37964 |
mortarsanjaya author:mortarsanjaya |
feat(Algebra/Order/Floor): weaken assumptions on theorems about `FloorRing` |
This PR weakens as much assumptions as possible on theorems about `FloorSemiring` and `FloorRing`. Mainly, `IsOrderedRing` and `IsStrictOrderedRing` are weakened to just `IsOrderedAddMonoid` or removed completely from the assumptions on the theorems.
Most theorems can be generalized as is or only requires a minor modification of replacing lemmas about casting naturals/integers preserving order (the likes of `Nat.cast_le`, `Int.cast_lt`, etc.) with the corresponding version for `FloorRing`. Some other lemmas require modification in the proofs, but these changes shorten the proofs. The new proof of the theorem `Int.mul_cast_floor_div_cancel_of_pos` requires an extra import.
The assumption `IsOrderedAddMonoid` is required on lemmas that involve comparison + addition, and `IsOrderedRing` is required only on lemmas that involve comparison + multiplication of two non-integer elements.
---
<!-- Your PR title will become the first line of the commit message.
In this box, the text above the `---` (if not empty) will be appended
to the commit message, and can be used to give additional context or
details. Please leave a blank newline before the `---`, otherwise GitHub
will format the text above it as a title.
For details on the "pull request lifecycle" in mathlib, please see:
https://leanprover-community.github.io/contribute/index.html
In particular, note that most reviewers will only notice your PR
if it passes the continuous integration checks.
Please ask for help on https://leanprover.zulipchat.com if needed.
When merging, all the commits will be squashed into a single commit
listing all co-authors.
Co-authors in the squash commit are gathered from two sources:
First, all authors of commits to this PR branch are included. Thus,
one way to add co-authors is to include at least one commit authored by
each co-author among the commits in the pull request. If necessary, you
may create empty commits to indicate co-authorship, using commands like so:
git commit --author="Author Name <author@email.com>" --allow-empty -m "add Author Name as coauthor"
Second, co-authors can also be listed in lines at the very bottom of
the commit message (that is, directly before the `---`) using the following format:
Co-authored-by: Author Name <author@email.com>
If you are moving or deleting declarations, please include these lines
at the bottom of the commit message (before the `---`, and also before
any "Co-authored-by" lines) using the following format:
Moves:
- Vector.* -> List.Vector.*
- ...
Deletions:
- Nat.bit1_add_bit1
- ...
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-->
- [x] depends on: #37714
[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
label:t-algebra$ |
325/329 |
Mathlib/Algebra/ContinuedFractions/Computation/Translations.lean,Mathlib/Algebra/Order/Floor/Defs.lean,Mathlib/Algebra/Order/Floor/Ring.lean,Mathlib/Algebra/Order/Floor/Semifield.lean,Mathlib/Algebra/Order/Floor/Semiring.lean,Mathlib/Algebra/Order/Round.lean,Mathlib/Analysis/SpecificLimits/Basic.lean,Mathlib/Data/Int/Log.lean,Mathlib/Data/NNRat/Floor.lean,Mathlib/Data/Rat/Floor.lean,Mathlib/MeasureTheory/Function/Floor.lean,Mathlib/Order/Interval/Finset/Floor.lean,Mathlib/Topology/Algebra/Order/Floor.lean |
13 |
23 |
['github-actions', 'jjdishere', 'leanprover-radar', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'mortarsanjaya', 'themathqueen'] |
jjdishere assignee:jjdishere |
1-20447 1 day ago |
1-20447 1 day ago |
87-43069 87 days |
0 |
| 43997 |
KevorkianPhilippe author:KevorkianPhilippe |
feat(Algebra/Lie/Extension): central extensions and equivalences of extensions |
Fills the two TODO items of `Mathlib/Algebra/Lie/Extension.lean`, `IsCentral` and `Equiv`.
- `Extension.IsCentral`: an extension is central when the image of the inclusion lies in the centre of the middle algebra, with the two `simp` lemmas `lie_incl` and `incl_lie`.
- `isLieAbelian_of_isCentral`: the kernel of a central extension is abelian.
- `isTrivial_ringModuleOf`: the `L`-module structure that a central extension induces on its kernel is trivial. This is the converse direction of the construction below, and is what makes central extensions the ones classified by cohomology with trivial coefficients.
- `isCentral_ofTwoCocycle`: the extension built from a 2-cocycle with coefficients in a trivial module is central.
- `Extension.Equiv`: an equivalence of two extensions of `L` by `M`, namely an equivalence of the middle Lie algebras commuting with the inclusions and the projections, with `refl`, `symm` and `trans`.
- `Equiv.ofCoboundary`: cohomologous 2-cocycles give equivalent extensions, built on the existing `LieAlgebra.LieEquiv.ofCoboundary`.
The TODO list of the file is updated accordingly: what remains is the classification itself, that is, the bijection between the second cohomology and the equivalence classes of central extensions. The second cohomology group needed to state it is added in #43991.
Use of AI: this contribution was written with AI assistance (Claude), iterated against the Lean compiler. The module builds with no warnings, `lint-style` and `lake exe runLinter Mathlib.Algebra.Lie.Extension` are clean, and `#print axioms` on the new declarations gives only `propext, Classical.choice, Quot.sound`.
|
t-algebra
LLM-generated
new-contributor
label:t-algebra$ |
109/2 |
Mathlib/Algebra/Lie/Extension.lean |
1 |
3 |
['KevorkianPhilippe', 'github-actions'] |
nobody |
1-19871 1 day ago |
1-21083 1 day ago |
1-20857 1 day |
0 |
| 43886 |
gabriel-turinici author:gabriel-turinici |
feat(Analysis/Asymptotics): add Filter.Tendsto.weighted_cesaro_smul |
Adds `Filter.Tendsto.weighted_cesaro_smul`, a weighted (Toeplitz-type) generalization of `Filter.Tendsto.cesaro_smul`: if `S k → L` and `w k ≥ 0` has divergent partial sums, the weighted running average of `S` w.r.t. `w` also tends to `L`. Recovers `cesaro_smul` as the `w ≡ 1` case. Also adds `weighted_cesaro`, the real-valued convenience wrapper mirroring `cesaro`.
This is a small building block toward a planned follow-up PR formalizing Kronecker's lemma, at its turn needed in some stochastic analysis setting.
---
**AI disclosure**: this proof was developed using formatting assistance, library search and code corrections from Claude Code (Claude Sonnet 5) and a personal LLM automation. Alternative, shorter, proofs can be obtained with `IsLittleO`-style but that style seems too recent for me now.
[](https://gitpod.io/from-referrer/) |
t-analysis
new-contributor
LLM-generated
|
81/0 |
Mathlib/Analysis/Asymptotics/SpecificAsymptotics.lean |
1 |
2 |
['github-actions'] |
nobody |
1-18009 1 day ago |
4-73388 4 days ago |
4-73162 4 days |
0 |
| 43745 |
theebayuser author:theebayuser |
feat(Geometry/Euclidean): add Euler's quadrilateral theorem |
Adds Euler's quadrilateral theorem to Mathlib/Geometry/Euclidean/, and records it in docs/1000.yaml (Q18630480). It states: for any four points, the sum of the squares of the four sides of the quadrilateral a b c d equals the sum of the squares of the two diagonals, plus four times the square of the distance between the midpoints of the diagonals.
This PR was written with AI assistance (Claude Code).
|
t-euclidean-geometry
new-contributor
LLM-generated
|
88/0 |
Mathlib.lean,Mathlib/Analysis/InnerProductSpace/Basic.lean,Mathlib/Geometry/Euclidean/EulerQuadrilateral.lean,docs/1000.yaml |
4 |
10 |
['github-actions', 'theebayuser', 'wwylele'] |
jsm28 assignee:jsm28 |
1-16911 1 day ago |
9-51595 9 days ago |
9-51369 9 days |
0 |
| 41120 |
teorth author:teorth |
feat(Analysis/SpecialFunctions/Gamma/Deriv,NumberTheory/Harmonic/GammaDeriv): formulae for the derivative of Gamma / eulerMascheroni |
Some integral representations of the derivative of the Gamma function, or the Euler-Mascheroni constant, focusing on the real form of the Gamma function rather than the complex one (as formulae for the latter are already present).
---
The initial code was human generated; an AI agent was used to help proofread and refactor the code subsequently.
- [x] depends on: #41119
-->
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-analysis
maintainer-merge
|
91/7 |
Mathlib/Analysis/SpecialFunctions/Gamma/Deriv.lean,Mathlib/Analysis/SpecialFunctions/Pow/Real.lean,Mathlib/NumberTheory/Harmonic/GammaDeriv.lean |
3 |
37 |
['felixpernegger', 'github-actions', 'loefflerd', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'teorth'] |
nobody |
1-10104 1 day ago |
2-8892 2 days ago |
66-73166 66 days |
1 |
| 43990 |
KevorkianPhilippe author:KevorkianPhilippe |
feat(Probability/BinomialRandomGraph): the edge count of a binomial random graph is binomially distributed |
Adds `binomialRandom_map_ncard_edgeSet`: for a finite vertex type, the pushforward of `G(V, p)` under the edge count is `Bin((Nat.card V).choose 2, p)`. This is the distribution-level statement that the (since removed) `proof_wanted binomialRandom_map_ncard_edgeSet_singleton` anticipated at the level of a single point mass.
It rests on one new lemma in `Mathlib/Probability/Distributions/Binomial.lean`, `map_ncard_setBernoulli_eq_binomial`, the distribution-level form of the existing `map_ncard_setBernoulli_singleton`: the cardinality pushforward of a set-Bernoulli measure on a finite set `u` is `binomial u.ncard p`.
Proof sketch: `binomialRandom_eq_map` writes `G(V, p)` as the pushforward of `setBer(Sym2.diagSetᶜ, p)` along `fromEdgeSet`. Almost every sampled set is contained in `Sym2.diagSetᶜ` (`setBernoulli_ae_subset`), and on such a set `(fromEdgeSet s).edgeSet = s`, so `Measure.map_congr` turns the edge count into the cardinality pushforward of the set-Bernoulli measure; `Sym2.ncard_diagSet_compl` then identifies the number of trials with `(Nat.card V).choose 2`.
Use of AI: this contribution was written with AI assistance (Claude), iterated against the Lean compiler until it compiled with no `sorry`, and reviewed by me before submission. I am happy to explain and defend any design decision here; the statement was chosen to match the existing API (`map_ncard_setBernoulli_singleton`, `binomial_singleton`) rather than to restate it pointwise.
|
t-measure-probability
LLM-generated
new-contributor
|
24/1 |
Mathlib/Probability/Combinatorics/BinomialRandomGraph/Defs.lean,Mathlib/Probability/Distributions/Binomial.lean |
2 |
16 |
['KevorkianPhilippe', 'SnirBroshi', 'github-actions'] |
nobody |
1-8161 1 day ago |
1-26350 1 day ago |
1-26124 1 day |
0 |
| 29744 |
espottesmith author:espottesmith |
feat(Combinatorics): define directed hypergraphs |
This PR defines directed hypergraphs:
```
@[ext]
structure DiHypergraph (α : Type*) where
/-- The vertex set -/
vertexSet : Set α
/-- The edge set -/
edgeSet : Set ((Set α) × (Set α))
/-- Each edge is a pair (s, d), where s ⊆ vertexSet and d ⊆ vertexSet -/
edge_src_dst_isSubset_vertexSet' : ∀ ⦃e⦄, e ∈ edgeSet → e.1 ⊆ vertexSet ∧ e.2 ⊆ vertexSet
```
Additional definitions:
- tail/head stars and negative/positive stars
- some special cases (B-Graph, F-Graph, BF-Graph, and what I'm calling a "non-endless" dihypergraph, where neither the source/tail nor the destination/head are empty)
- Vertex and (hyper)edge adjacency
- isolated vertices
- empty and nonempty dihypergraphs
The design employed here is based off of #28613, but this PR does not depend on that one.
---
<!-- The text above the `---` will become the commit message when your
PR is merged. Please leave a blank newline before the `---`, otherwise
GitHub will format the text above it as a title.
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Please ask for help on https://leanprover.zulipchat.com if needed.
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If you are moving or deleting declarations, please include these lines at the bottom of the commit message
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Moves:
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- ...
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- [ ] depends on: #abc [optional extra text]
- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
|
290/0 |
Mathlib.lean,Mathlib/Combinatorics/DiHypergraph/Basic.lean |
2 |
12 |
['SnirBroshi', 'b-mehta', 'espottesmith', 'github-actions', 'mathlib4-merge-conflict-bot', 'pimotte'] |
nobody |
1-2927 1 day ago |
92-11149 92 days ago |
229-14671 229 days |
1 |
| 43780 |
SashaIr author:SashaIr |
feat: q-analogs |
An implementation of q-analogs, q-binomials, and counting results.
---
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new-contributor
t-combinatorics
|
965/0 |
Mathlib.lean,Mathlib/Combinatorics/QAnalog/Basic.lean,Mathlib/Combinatorics/QAnalog/Binomial.lean,Mathlib/Combinatorics/QAnalog/Counting.lean,Mathlib/Combinatorics/QAnalog/Subspace.lean |
5 |
7 |
['SashaIr', 'SnirBroshi', 'b-mehta', 'github-actions'] |
nobody |
0-80070 22 hours ago |
7-78040 7 days ago |
7-78170 7 days |
0 |
| 43643 |
Sanghyeok0 author:Sanghyeok0 |
refactor(Logic/Relation): move inclusion lemmas out of EqvGen |
I moved the four relation-inclusion lemmas introduced in #40792 from `Relation.EqvGen` to `Relation`, retaining the existing names as deprecated aliases.
This refactor was split out from #40368 following the review discussion there.
Changes:
* `Relation.EqvGen.reflGen_le_eqvGen` → `Relation.reflGen_le_eqvGen`
* `Relation.EqvGen.symmGen_le_eqvGen` → `Relation.symmGen_le_eqvGen`
* `Relation.EqvGen.transGen_le_eqvGen` → `Relation.transGen_le_eqvGen`
* `Relation.EqvGen.reflTransGen_le_eqvGen` → `Relation.reflTransGen_le_eqvGen`
---
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|
t-logic
new-contributor
|
24/0 |
Mathlib/Logic/Relation.lean |
1 |
9 |
['Sanghyeok0', 'github-actions', 'themathqueen'] |
nobody |
0-73129 20 hours ago |
4-20570 4 days ago |
10-23675 10 days |
0 |
| 38334 |
8e7 author:8e7 |
feat(Combinatorics/SimpleGraph/TreeDecomp): define tree decompositions |
Add definition for tree decompositions on simple graphs. Define the tree width of a simple graph and prove basic statements and conversions.
```lean
structure TreeDecomp (G : SimpleGraph V) (W : Type) where
/-- The set of vertices in each bag. -/
bag : W → Finset V
/-- The graph adjacency relation of bags. -/
tree : SimpleGraph W
/-- T must be a tree. -/
isTree : IsTree tree
/-- All vertices in G must appear in some bag. -/
vertexCover : ∀ v : V, ∃ w : W, v ∈ bag w
/-- For any edge (u, v) in G, there is a bag containing both u and v. -/
edgeCover ⦃u v : V⦄ : G.Adj u v → ∃ w : W, u ∈ bag w ∧ v ∈ bag w
/-- For any vertex v in G, the set of bags that contain v is preconnected. -/
connectedBags : ∀ v : V, (tree.induce ({w | v ∈ bag w})).Preconnected
```
AI Usage: Some proofs are written with the help of Claude Code, and everything has been manually reviewed.
---
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[](https://gitpod.io/from-referrer/)
|
new-contributor
t-combinatorics
LLM-generated
|
395/0 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/TreeDecomp.lean |
2 |
42 |
['8e7', 'SnirBroshi', 'YaelDillies', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
0-62111 17 hours ago |
57-50149 57 days ago |
81-33258 81 days |
1 |
| 42042 |
ijtejeda author:ijtejeda |
feat(MeasureTheory/OuterMeasure) more API for Caratheodory |
Add more basic facts about outer measures. This includes Caratheodory measurability of measure-zero sets, a property that we use repeatedly in our formalization of Mastrand's theorem.
---
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[](https://gitpod.io/from-referrer/)
|
LLM-generated
new-contributor
t-measure-probability
maintainer-merge
|
8/0 |
Mathlib/MeasureTheory/OuterMeasure/Caratheodory.lean |
1 |
15 |
['CoolRmal', 'github-actions', 'ijtejeda', 'tdwag123'] |
nobody |
0-62108 17 hours ago |
21-85481 21 days ago |
47-68826 47 days |
0 |
| 43954 |
tomaz1502 author:tomaz1502 |
feat(Algebra/Polynomial/Sturm): sturm sequences |
This PR defines `Polynomial.sturmSeq p q`, the Sturm sequence (signed remainder sequence) of two
polynomials over a field: the list `[p, q, -(p % q), …]` of successive negated remainders, ending at
the last nonzero one. It also proves its basic API:
* `sturmSeq_cons`, `sturmSeq_zero`, `sturmSeq_zero_right`, `sturmSeq_eq_nil_iff`: unfolding and
degenerate cases;
* `mem_sturmSeq_self`, `head?_sturmSeq`, `zero_notMem_sturmSeq`: membership facts;
* `dvd_of_mem_sturmSeq`: every common divisor of `p` and `q` divides every entry;
* `sturmSeq_mul_left`: `sturmSeq (r * p) (r * q) = (sturmSeq p q).map (r * ·)` for `r ≠ 0`.
It also adds `Polynomial.neg_mod` and `Polynomial.mul_mod_mul_left` to `FieldDivision.lean`, used
in the proof of `sturmSeq_mul_left`.
This is the second PR of a series formalizing the Sturm–Tarski theorem, following #43783
(`List.signVariations`). The development is a port of Wenda Li's Isabelle/AFP entry. The remaining
parts (local sign of a polynomial to the right of a point, the Cauchy index, and the theorem
itself) will follow in separate PRs. See also #43512.
The definition and the original proofs were written by hand. Claude Code (Fable 5.1) was used to
simplify part of the proofs and to review the code.
Co-authored-by: Pedro Saccomani <psaccomani15@gmail.com>
Co-authored-by: Sarah Azevedo Pereira <sarahcomh@proton.me> |
t-algebra
new-contributor
label:t-algebra$ |
191/0 |
Mathlib.lean,Mathlib/Algebra/Polynomial/FieldDivision.lean,Mathlib/Algebra/Polynomial/Sturm/Sequence.lean,docs/references.bib |
4 |
10 |
['github-actions', 'kim-em'] |
nobody |
0-59807 16 hours ago |
2-74185 2 days ago |
2-74090 2 days |
0 |
| 44019 |
bally65 author:bally65 |
feat(Computability/Primrec): primality is primitive recursive |
Primrec.nat_prime : PrimrecPred Nat.Prime, via Nat.prime_def_lt' and the bounded quantifier PrimrecRel.forall_lt. Mathlib had no computability statement about Nat.Prime.
---
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[](https://gitpod.io/from-referrer/)
|
t-computability
new-contributor
|
43/0 |
Mathlib.lean,Mathlib/Computability/Primrec/Prime.lean |
2 |
2 |
['github-actions'] |
nobody |
0-50965 14 hours ago |
0-52059 14 hours ago |
0-51833 14 hours |
0 |
| 42963 |
teal-sea author:teal-sea |
feat(NumberTheory/LSeries): define Hardy's Z function |
Add Hardy's Z function as a real-valued function on `ℝ`, with the two
conjugation lemmas its construction needs.
---
`Z` is the standard real-valued function on the critical line: it has the same
modulus as `ζ (1/2 + i t)`, so its sign changes locate zeros of `ζ` on the line.
It is a standard object for formulating and proving results about zeros on the
critical line, and Mathlib currently has no way to talk about such a zero
directly.
The `Critical line theorem` entry in `docs/1000.yaml` carries no `decl:`, so
this is an area the library has recorded as wanted. This PR is not that theorem;
it is foundational infrastructure toward it, and the dependency chain is what
gives the three commits their shape: a critical line theorem is naturally
formulated using `Z`, `Z` needs conjugation symmetry for the completed zeta
function, and that needs conjugation symmetry for the Deligne archimedean
factors. Hence, in order:
1. `Complex.Gammaℝ_conj`, `Complex.Gammaℂ_conj` in `Gamma/Deligne.lean`, which
currently has no conjugation lemma for either Deligne factor.
2. `completedRiemannZeta_conj` in `ZetaAsymp.lean`, next to `riemannZeta_conj`.
For `0 < re s` it follows from `riemannZeta_conj` and `Gammaℝ_conj`; the
other half-plane follows from `completedRiemannZeta_one_sub` applied to
`1 - s`, which also covers the junk values at `0` and `1`.
3. `Mathlib/NumberTheory/LSeries/HardyZ.lean`, the definition and its API:
`abs_hardyZ`, `hardyZ_neg`, `hardyZ_eq_zero_iff`, `continuous_hardyZ`,
`ofReal_hardyZ`.
**On the choice of definition.** The textbook definition is
`Z t = exp (I * ϑ t) * ζ (1/2 + i t)`, with `ϑ` the Riemann–Siegel theta
function. That needs a continuous branch of `log Γ` along the critical line,
which Mathlib does not have, and the branch bookkeeping is most of the work.
Dividing `Λ` by the modulus of its archimedean factor gives the same function
without mentioning a branch: `Λ (1/2 + i t)` is real by `completedRiemannZeta_conj`
and `completedRiemannZeta_one_sub`, and `‖Γ_ℝ (1/2 + i t)‖` is a positive real.
Since `Γ_ℝ (1/2 + it) = π ^ (-1/4) * π ^ (-it/2) * Γ (1/4 + it/2)`, where the
first factor is a positive real and the second has modulus `1`, the quotient is
exactly `exp (I * ϑ t) * ζ (1/2 + i t)`; the module docstring spells this out.
`ϑ` itself can follow later.
I chose `ℝ → ℝ` because it is what the literature means by `Z` and it makes the
intermediate value theorem directly applicable. I raised this signature question
on Zulip in `#mathlib4` on 6 August and would still welcome opinions on it.
## Use of AI
I used Claude (Anthropic), via Claude Code. The mathematical route, defining
`Z` from `Λ` rather than from `exp (I ϑ) ζ`, to avoid the logarithm branch, is
one I worked out in my own research repository before this Lean was written, and that earlier Lean was also AI-assisted. Claude wrote most of the
proofs from that plan for this PR and found that the divisor is exactly `‖Γ_ℝ (1/2 + i t)‖`
rather than the expanded `π ^ (-1/4) * ‖Γ (1/4 + i t / 2)‖`, split the two
general lemmas out into their proper files, and adapted everything to house
style. I set the goal and the design, chose the file layout and the names, and
reviewed the result.
Builds against master with no errors or warnings; `lake exe lint-style` is clean
and `#lint` reports no errors. |
LLM-generated
new-contributor
t-number-theory
|
209/0 |
Mathlib.lean,Mathlib/Analysis/SpecialFunctions/Gamma/Deligne.lean,Mathlib/NumberTheory/Harmonic/ZetaAsymp.lean,Mathlib/NumberTheory/LSeries/HardyZ.lean |
4 |
10 |
['github-actions', 'loefflerd', 'teal-sea', 'wwylele'] |
loefflerd assignee:loefflerd |
0-41892 11 hours ago |
32-67672 32 days ago |
32-67446 32 days |
0 |
| 43539 |
abhijitaj1997 author:abhijitaj1997 |
feat(CategoryTheory/Monoidal/Cartesian/Endomorphism): add ring and semiring structures |
Given two monoidal object in a nice enough category, this show that the monoidal morphisms between then forms an additive group. This additive group is part of a larger semiring structure.
---
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[](https://gitpod.io/from-referrer/)
|
new-contributor
t-category-theory
large-import
|
204/0 |
Mathlib.lean,Mathlib/CategoryTheory/Monoidal/Cartesian/Endomorphism.lean,Mathlib/CategoryTheory/Monoidal/Cartesian/Mon.lean,Mathlib/CategoryTheory/Monoidal/Mon.lean |
4 |
35 |
['Multramate', 'abhijitaj1997', 'alreadydone', 'github-actions', 'joelriou', 'robin-carlier'] |
robin-carlier assignee:robin-carlier |
0-37809 10 hours ago |
10-10148 10 days ago |
12-55817 12 days |
0 |
| 41856 |
Ruizsolveall author:Ruizsolveall |
feat(Topology/Covering): fundamental group of the circle is ℤ |
This is the promised follow-up to #40947 (see [Zulip](https://leanprover.zulipchat.com/#narrow/channel/217875-Is-there-code-for-X.3F/topic/How.20to.20wisely.20state.20Homotopy.20lifting.20lemma)); most of the file is the computation that the loop `t ↦ n • t` is sent to `n : ℤ`.
---
I used Claude to navigate the quotient covering map API and for an initial frame of the proofs, which I then reworked; I understand and can vouch for all of it.
|
t-topology
new-contributor
LLM-generated
|
184/0 |
Mathlib.lean,Mathlib/Algebra/Group/Subgroup/ZPowers/Lemmas.lean,Mathlib/Algebra/Group/TypeTags/Basic.lean,Mathlib/Data/Int/Cast/Lemmas.lean,Mathlib/Topology/Covering/FundamentalGroupCircle.lean,Mathlib/Topology/Homotopy/Lifting.lean |
6 |
10 |
['Ruizsolveall', 'alreadydone', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
0-24778 6 hours ago |
18-6220 18 days ago |
60-50251 60 days |
0 |
| 43964 |
benpigchu author:benpigchu |
feat(Geometry/Euclidean): theorems to prove line parallel from relation between oangles |
We have `EuclideanGeometry.two_zsmul_oangle_of_parallel` to derive relationship of oangles from parallel lines, but we do not have theorems to prove parallel of lines from relationship of oangles. This PR add theorems for that, and their iff version.
---
[](https://gitpod.io/from-referrer/) |
t-euclidean-geometry
new-contributor
|
110/0 |
Mathlib/Geometry/Euclidean/Angle/Oriented/Affine.lean,Mathlib/Geometry/Euclidean/Angle/Oriented/Basic.lean |
2 |
2 |
['github-actions'] |
jsm28 assignee:jsm28 |
0-23835 6 hours ago |
2-22490 2 days ago |
2-22264 2 days |
0 |
| 43953 |
hasjack author:hasjack |
feat(Combinatorics/SimpleGraph/LapMatrix): bound Laplacian eigenvalues by `|V|` |
Prove that every Laplacian eigenvalue of a finite simple graph is at most
the number of vertices, via comparison of the Rayleigh quotient with the
complete graph. Also record the underlying quadratic-form bound
`xᵀ L x ≤ |V| · ‖x‖²`.
---
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[](https://gitpod.io/from-referrer/)
Adds `dotProduct_mulVec_lapMatrix_le_card` and `eigenvalues_lapMatrix_le_card`
in `LapMatrix.lean` only. The claim is the uniform bound `λ ≤ |V|` for every
indexed eigenvalue; it does not assert `|V| ∈ spectrum` for every graph.
Searched existing LapMatrix API (PSD, `zero_mem_spectrum_lapMatrix`,
`lapMatrix_top`) and did not find a card upper bound under another name.
Happy to rename if a preferred lemma already exists. |
new-contributor
t-combinatorics
LLM-generated
|
37/1 |
Mathlib/Combinatorics/SimpleGraph/LapMatrix.lean,Mathlib/Data/Matrix/Mul.lean |
2 |
61 |
['Parcly-Taxel', 'SnirBroshi', 'github-actions', 'hasjack'] |
nobody |
0-20023 5 hours ago |
0-67042 18 hours ago |
2-60952 2 days |
0 |
| 43852 |
ZRTMRH author:ZRTMRH |
feat(Combinatorics/Quiver/Schreier): add Schreier Cayley basics |
Defined Cayley graph as a coset Schreier graph. Proved connectivity and vertex-transitivity on Cayley graphs, as promised in #38310.
Follow-up to #38310, this is the 3rd split pr from #35467.
This PR was written with AI assistance (Claude). The code has been reviewed by the author.
P.S. cayley_subsingleton_weaklyConnectedComponent's proof is generic and I can extract it to Quiver/ConnectedComponent.lean as a weak-connectivity lemma, if it is wanted.
---
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|
new-contributor
t-combinatorics
large-import
LLM-generated
|
287/7 |
Mathlib/Combinatorics/Quiver/Schreier.lean |
1 |
9 |
['SnirBroshi', 'ZRTMRH', 'github-actions', 'vlad902'] |
nobody |
0-13270 3 hours ago |
5-72284 5 days ago |
5-72058 5 days |
0 |
| 42142 |
philipp-svinger author:philipp-svinger |
feat(Analysis/ODE): peano existence theorem, Tonelli approximation 1 |
Add Tonelli approximation method for ODEs.
Implement the structure IsPeano similar to IsPicardLindelof. Construct a sequence of approximations using Tonelli technique.
First step towards Peano existence
Co-authored-by: Florian Grube <fgrube@math.uni-bielefeld.de>
Co-authored-by: Paul Niessner <pniessner@math.uni-bielefeld.de>
Co-authored-by: Julian Rolfes <jrolfes@math.uni-bielefeld.de>
Co-authored-by: Luke Schleef <lschleef@math.uni-bielefeld.de>
Co-authored-by: Philipp Svinger <psvinger@math.uni-bielefeld.de>
---
We want to add the proof of the Peano existence theorem for ODEs, using Tonelli approximations.
This will be a series of PRs working towards this goal. In this first PR, we
implement the structure IsPeano similar to IsPicardLindelof and construct a sequence of approximations using Tonelli technique. See our further PRs for more information, last: #42148
---
The statements, definitions and proofs were written without AI.
AI was used afterwards to help us to adapt our code to the style and naming conventions.
We also used it in the process of writing a documentation.
<!-- Your PR title will become the first line of the commit message.
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[](https://gitpod.io/from-referrer/)
|
t-analysis
new-contributor
|
193/0 |
Mathlib.lean,Mathlib/Analysis/ODE/Peano.lean |
2 |
21 |
['github-actions', 'mcdoll', 'philipp-svinger', 'sgouezel'] |
sgouezel assignee:sgouezel |
0-12607 3 hours ago |
1-20602 1 day ago |
52-82222 52 days |
5 |
| 42802 |
Zeta-Wu author:Zeta-Wu |
feat(CategoryTheory): relate equivalences and skeletons |
This PR supersedes the previously closed PR #42789.
It adds several related characterizations of equivalences of categories, together with an API showing that an equivalence induces an isomorphism between the corresponding skeletons.
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[](https://gitpod.io/from-referrer/)
|
t-category-theory
new-contributor
|
66/8 |
Mathlib/CategoryTheory/EssentiallySmall.lean,Mathlib/CategoryTheory/Skeletal.lean |
2 |
28 |
['Zeta-Wu', 'github-actions', 'joelriou', 'robin-carlier'] |
joelriou assignee:joelriou |
0-12233 3 hours ago |
0-12258 3 hours ago |
33-36993 33 days |
0 |
| 41947 |
hawkrobe author:hawkrobe |
feat(Order/Antisymmetrization): comparable minimal elements are equivalent |
a minimal element is antisymmetrically equivalent to every comparable element satisfying the predicate, so two comparable minimal elements are equivalent in a preorder and equal in a partial order (Mathlib has the partial-order form `Minimal.eq_of_ge` but not the preorder form.)
---
[](https://gitpod.io/from-referrer/) |
new-contributor
t-order
|
25/4 |
Mathlib/Logic/Relation.lean,Mathlib/Order/Antisymmetrization.lean,Mathlib/Order/Bounds/Basic.lean |
3 |
3 |
['github-actions', 'hawkrobe'] |
nobody |
0-9286 2 hours ago |
63-53334 63 days ago |
63-53108 63 days |
0 |
| 43749 |
joelcanary author:joelcanary |
feat(NumberTheory/ArithmeticFunction): prodPrimeFactors_one_sub for every n |
`IsMultiplicative.prodPrimeFactors_one_sub_of_squarefree` gives
```
∏ p ∈ n.primeFactors, (1 - f p) = ∑ d ∈ n.divisors, μ d * f d
```
only for squarefree `n`. The hypothesis is not needed: the summands with `d` not squarefree vanish (`μ d = 0`), and the squarefree divisors of `n` are exactly the divisors of `∏ p ∈ n.primeFactors, p`, which is squarefree with the same prime factors. So the general statement reduces to the squarefree one.
This PR
- adds `IsMultiplicative.prodPrimeFactors_one_sub`, the identity for every `n ≠ 0`, with the same orientation and naming as the existing lemma;
- deprecates `IsMultiplicative.prodPrimeFactors_one_sub_of_squarefree` in favour of it (as requested in review), and inlines its proof.
No new imports and no new auxiliary lemmas: the fact that a squarefree divisor of `n` divides `∏ p ∈ n.primeFactors, p` is `Nat.prod_primeFactors_dvd_iff` + `Nat.primeFactors_prod_primeFactors` + `Nat.primeFactors_mono`, used in place. The file builds and `lake exe lint-style` is clean on current master.
**AI use disclosure.** I used an AI tool (an agent running on my machine) to write the Lean code and this description. I set the goal (drop the squarefree hypothesis), reviewed every declaration, and checked the branch locally with `lake build` and `lake exe lint-style` before each push. I will answer review questions myself.
|
t-number-theory
new-contributor
LLM-generated
|
39/9 |
Mathlib/NumberTheory/ArithmeticFunction/Moebius.lean,Mathlib/NumberTheory/SelbergSieve.lean |
2 |
6 |
['github-actions', 'joelcanary', 'wwylele'] |
nobody |
0-8292 2 hours ago |
9-21176 9 days ago |
9-20950 9 days |
0 |
| 37279 |
imalinowskip author:imalinowskip |
feat(Probability): multivariate CLT |
---
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<!-- [ ] depends on: #40345 -->
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-measure-probability
|
150/11 |
Mathlib/MeasureTheory/Function/ConvergenceInDistribution.lean,Mathlib/MeasureTheory/Measure/LevyConvergence.lean,Mathlib/Probability/CentralLimitTheorem.lean,Mathlib/Probability/CramerWold.lean,Mathlib/Probability/Distributions/Gaussian/Multivariate.lean |
5 |
29 |
['EtienneC30', 'RemyDegenne', 'github-actions', 'imalinowskip', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
EtienneC30 assignee:EtienneC30 |
0-6741 1 hour ago |
0-6741 1 hour ago |
20-58000 20 days |
0 |
| 43673 |
raoxiaojia author:raoxiaojia |
feat(Tactic/Matrix): list-based implementation of matrix, multiplication expansion, and the associated simproc |
This PR adds a list-based implementation of (dense) matrix which can be used to state reflection proofs and certificates. In addition, this adds a multiplication on the representation, and a more efficient expansion construction path than letting kernel directly perform reduction. Also adds a simproc for matrix multiplication which is 3-4x faster than `simp`, the latter of which reduces a matrix multiplication today as well by `@[simp]` lemmas.
---
Note that `ListMatrix.mul` is already kernel reducible, but is susceptible to efficiency issues and eager evaluation of arithmetic expressions, which can be undesirable. The point of MulExpand.lean is to provide a manual construction of the expanded literal and an associated proof term via controlled unfold of the dot product, which is faster to construct (no discovery required by `simp`) and cheaper to check.
The bridge between the list representation and mathlib's `Matrix` is placed in a separate file. As a result the list representation itself requires only minimal mathlib import.
Currently Matrix/Reflection.lean (unused within mathlib) also provides a reflection target, but is defined on the `vecCons` construction, which is not very efficient. This work should eventually unify with Matrix/Reflection.lean if the elaboration of `!![]` is changed in the future to lists.
This is separated from #43438 as part of enabling the echelon certificate to be parametric over a custom entry certifier.
<!-- Your PR title will become the first line of the commit message.
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- Nat.bit1_add_bit1
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[](https://gitpod.io/from-referrer/)
|
file-removed
t-meta
new-contributor
|
470/18 |
Mathlib.lean,Mathlib/Tactic.lean,Mathlib/Tactic/Matrix/ListMatrix.lean,Mathlib/Tactic/Matrix/MulExpand.lean,Mathlib/Tactic/Matrix/OfLists.lean,Mathlib/Tactic/Matrix/Parsing.lean,Mathlib/Tactic/NormMatMul.lean,Mathlib/Tactic/NormRank.lean,Mathlib/Util/Qq.lean,MathlibTest/NormMatMul.lean |
10 |
40 |
['JovanGerb', 'Vierkantor', 'github-actions', 'kim-em', 'raoxiaojia'] |
Vierkantor assignee:Vierkantor |
0-3482 58 minutes ago |
0-3699 57 minutes ago |
7-4741 7 days |
1 |
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