Would you like to help out at a PR, differently from reviewing? Here are some ideas:
| 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 |
| 10721 |
urkud author:urkud |
feat(Order/FunLike): define `PointwiseLE` |
- introduce a mixin class `DFunLike.PointwiseLE`, use it to define `DFunLike.instPartialOrder`;
- add a generic `DFunLike.orderEmbeddingCoe`
- add `DFunLike.PointwiseLE` instances here and there.
With this refactor and #13022, I'm going to generalize lemmas like `MeasureTheory.ae_mono` to `OuterMeasureClass`.
---
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- [x] depends on: #12983
[](https://gitpod.io/from-referrer/) |
merge-conflict
t-order
t-logic
|
123/50 |
Mathlib.lean,Mathlib/Algebra/Order/Hom/Ring.lean,Mathlib/Data/DFinsupp/Order.lean,Mathlib/Data/Finsupp/Order.lean,Mathlib/Data/FunLike/Basic.lean,Mathlib/Dynamics/Circle/RotationNumber/TranslationNumber.lean,Mathlib/GroupTheory/Congruence.lean,Mathlib/Order/FunLike.lean,Mathlib/Order/Heyting/Hom.lean,Mathlib/Order/Hom/Basic.lean,Mathlib/Order/Hom/Bounded.lean,Mathlib/Order/Hom/CompleteLattice.lean,Mathlib/Topology/Order/Hom/Basic.lean |
13 |
48 |
['YaelDillies', 'dupuisf', 'urkud'] |
nobody |
760-78296 2 years ago |
810-56698 810 days ago |
64-12984 64 days |
| 8788 |
FMLJohn author:FMLJohn |
feat(Algebra/Module/GradeZeroModule): if `A` is a graded semiring and `M` is a graded `A`-module, then each grade of `M` is a module over the 0-th grade of `A`. |
---
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- [ ] depends on: #8187
[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-algebra
label:t-algebra$ |
237/4 |
Mathlib.lean,Mathlib/Algebra/DirectSum/Internal.lean,Mathlib/Algebra/GradedMonoid.lean,Mathlib/Algebra/Module/GradeZeroModule.lean,Mathlib/RingTheory/GradedAlgebra/Basic.lean,Mathlib/RingTheory/GradedAlgebra/Noetherian.lean |
6 |
4 |
['FMLJohn', 'github-actions'] |
nobody |
760-78295 2 years ago |
1000-68191 1000 days ago |
1-57831 1 day |
| 7875 |
astrainfinita author:astrainfinita |
chore: make `SMulCommClass A A B` and `SMulCommClass A B B` higher priority |
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merge-conflict
slow-typeclass-synthesis
t-algebra
label:t-algebra$ |
54/48 |
Mathlib/Algebra/Algebra/Basic.lean,Mathlib/Algebra/Algebra/NonUnitalSubalgebra.lean,Mathlib/Algebra/DirectSum/Algebra.lean,Mathlib/Algebra/Group/Action/Defs.lean,Mathlib/Algebra/Group/Subgroup/Actions.lean,Mathlib/Algebra/Lie/NonUnitalNonAssocAlgebra.lean,Mathlib/Algebra/Module/LinearMap/End.lean,Mathlib/Algebra/MonoidAlgebra/Basic.lean,Mathlib/Algebra/MvPolynomial/Basic.lean,Mathlib/Algebra/Ring/CentroidHom.lean,Mathlib/Algebra/Ring/Subring/Basic.lean,Mathlib/Algebra/Ring/Subsemiring/Basic.lean,Mathlib/Algebra/Star/NonUnitalSubalgebra.lean,Mathlib/Analysis/Complex/UnitDisc/Basic.lean,Mathlib/Analysis/NormedSpace/lpSpace.lean,Mathlib/Data/Matrix/Basic.lean,Mathlib/GroupTheory/GroupAction/Prod.lean,Mathlib/GroupTheory/GroupAction/Ring.lean,Mathlib/GroupTheory/GroupAction/SubMulAction.lean,Mathlib/GroupTheory/MonoidLocalization.lean,Mathlib/GroupTheory/Submonoid/Center.lean,Mathlib/LinearAlgebra/PiTensorProduct.lean,Mathlib/RingTheory/Ideal/Quotient.lean,Mathlib/RingTheory/TensorProduct/Basic.lean,Mathlib/Topology/ContinuousFunction/ContinuousMapZero.lean,Mathlib/Topology/ContinuousFunction/StoneWeierstrass.lean,Mathlib/Topology/ContinuousFunction/ZeroAtInfty.lean |
27 |
15 |
['Parcly-Taxel', 'astrainfinita', 'jcommelin', 'leanprover-bot'] |
nobody |
760-78294 2 years ago |
815-8402 815 days ago |
1-47913 1 day |
| 6491 |
eric-wieser author:eric-wieser |
chore(Mathlib/Algebra/Hom/GroupAction): add `SMulHomClass.comp_smul` |
---
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|
merge-conflict
t-algebra
label:t-algebra$ |
24/10 |
Mathlib/Algebra/Hom/GroupAction.lean |
1 |
0 |
[] |
nobody |
760-78293 2 years ago |
1032-64293 1032 days ago |
83-76369 83 days |
| 13791 |
digama0 author:digama0 |
refactor: Primrec and Partrec |
General cleanup of the `Primrec` and `Partrec` files, to better adjust to lean 4 things. The main user-visible change is that `Primrec₂` is no longer a `def` but an `abbrev`, because it was causing inference issues in lean 4. I also removed all the nonterminal `simp`s in `PartrecCode.lean`.
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-computability
tech debt
|
585/778 |
Mathlib/Computability/Ackermann.lean,Mathlib/Computability/Halting.lean,Mathlib/Computability/Partrec.lean,Mathlib/Computability/PartrecCode.lean,Mathlib/Computability/Primrec.lean |
5 |
2 |
['github-actions', 'grunweg'] |
nobody |
742-34683 2 years ago |
806-24269 806 days ago |
1-84718 1 day |
| 12418 |
rosborn author:rosborn |
style: replace preimage_val with ↓∩ notation |
---
This is a rough draft of what the new `↓∩` notation would look like within mathlib. I believe this is an improvement in clarity and would like to have `↓∩` as a standard notation (along with `''`, `⁻¹'`, `↑`, etc...). As `↓∩` is specialized for `Set`s, I have only changed `preimage_val` when the left-hand side of `↓∩` is a `Set`.
The introduction of the `↓∩` notation to Data.Set.Image is temporary as it isn't possible to import Data.Set.Subset directly. If we want `↓∩` unscoped, where would be the best place to define it? An option is Data.Set.Defs, but the notation cannot be defined without additional imports as the file does not import `notation3`.
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[](https://gitpod.io/from-referrer/)
|
merge-conflict |
56/61 |
Mathlib/Analysis/InnerProductSpace/Projection.lean,Mathlib/Data/Set/Function.lean,Mathlib/Data/Set/Image.lean,Mathlib/Data/Set/Subset.lean,Mathlib/MeasureTheory/Constructions/Polish.lean,Mathlib/MeasureTheory/MeasurableSpace/Basic.lean,Mathlib/MeasureTheory/Measure/Restrict.lean,Mathlib/Order/UpperLower/Basic.lean,Mathlib/Topology/Bases.lean,Mathlib/Topology/Clopen.lean,Mathlib/Topology/Connected/Basic.lean,Mathlib/Topology/Connected/PathConnected.lean,Mathlib/Topology/Constructions.lean,Mathlib/Topology/ContinuousOn.lean,Mathlib/Topology/LocalAtTarget.lean,Mathlib/Topology/LocallyConstant/Basic.lean,Mathlib/Topology/Separation.lean,Mathlib/Topology/Sober.lean |
18 |
3 |
['grunweg', 'rosborn'] |
nobody |
742-34441 2 years ago |
828-44425 828 days ago |
29-50022 29 days |
| 12751 |
Command-Master author:Command-Master |
feat: add lemmas for Nat/Bits, Nat/Bitwise and Nat/Size |
Remove `@[simp]` from `Nat.bit_false` and `Nat.bit_true`, as `bit0` and `bit1` are deprecated, and add some lemmas to `Bits`, `Bitwise` and `Size`.
---
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merge-conflict
t-data
new-contributor
|
66/7 |
Mathlib/Data/Nat/Bits.lean,Mathlib/Data/Nat/Bitwise.lean,Mathlib/Data/Nat/Multiplicity.lean,Mathlib/Data/Nat/Size.lean |
4 |
26 |
['Command-Master', 'Rida-Hamadani', 'Ruben-VandeVelde', 'YaelDillies', 'github-actions', 'jcommelin'] |
nobody |
741-55595 2 years ago |
776-61817 776 days ago |
56-40668 56 days |
| 10350 |
Shamrock-Frost author:Shamrock-Frost |
feat(Data/Setoid): add the operations of taking the equivalence class of an element and of saturating a set wrt an equivalence relation |
I'm open to suggestions about changing the name "saturate", someone on zulip rightly pointed out this is a very overloaded term in math. That said, I think it's unlikely to cause confusion and that there's only one reasonable interpretation in the context of setoids.
---
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- [x] depends on: #10347
- [x] depends on: #10348
[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-data
|
169/3 |
Mathlib/Data/Setoid/Basic.lean,Mathlib/Data/Setoid/Partition.lean,Mathlib/Order/Closure.lean |
3 |
1 |
[] |
nobody |
739-57869 2 years ago |
858-49497 858 days ago |
19-74546 19 days |
| 17127 |
astrainfinita author:astrainfinita |
chore: remove global `Quotient.mk` `⟦·⟧` notation |
---
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Merge this PR when we are ready to migrate to `QuotLike` API (#16421).
[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-data
|
137/2 |
Counterexamples/Pseudoelement.lean,Mathlib/Algebra/Associated/Basic.lean,Mathlib/Algebra/BigOperators/Group/Finset.lean,Mathlib/Algebra/Group/Conj.lean,Mathlib/Algebra/GroupWithZero/NonZeroDivisors.lean,Mathlib/Algebra/Order/CauSeq/Completion.lean,Mathlib/Algebra/Quandle.lean,Mathlib/AlgebraicGeometry/EllipticCurve/Jacobian.lean,Mathlib/AlgebraicGeometry/EllipticCurve/Projective.lean,Mathlib/AlgebraicTopology/FundamentalGroupoid/Basic.lean,Mathlib/AlgebraicTopology/FundamentalGroupoid/FundamentalGroup.lean,Mathlib/AlgebraicTopology/FundamentalGroupoid/InducedMaps.lean,Mathlib/AlgebraicTopology/FundamentalGroupoid/Product.lean,Mathlib/AlgebraicTopology/FundamentalGroupoid/SimplyConnected.lean,Mathlib/CategoryTheory/Abelian/Pseudoelements.lean,Mathlib/CategoryTheory/Limits/Shapes/SingleObj.lean,Mathlib/CategoryTheory/Monoidal/Free/Basic.lean,Mathlib/CategoryTheory/Monoidal/Free/Coherence.lean,Mathlib/CategoryTheory/Skeletal.lean,Mathlib/Data/Finset/Card.lean,Mathlib/Data/Fintype/List.lean,Mathlib/Data/Fintype/Quotient.lean,Mathlib/Data/Multiset/Basic.lean,Mathlib/Data/QPF/Multivariate/Constructions/Fix.lean,Mathlib/Data/QPF/Univariate/Basic.lean,Mathlib/Data/Quot.lean,Mathlib/Data/Real/Basic.lean,Mathlib/Data/Set/Finite.lean,Mathlib/Data/Set/Image.lean,Mathlib/Data/Setoid/Basic.lean,Mathlib/GroupTheory/GroupAction/Basic.lean,Mathlib/GroupTheory/GroupAction/Quotient.lean,Mathlib/LinearAlgebra/Dual.lean,Mathlib/LinearAlgebra/Ray.lean,Mathlib/Logic/Encodable/Basic.lean,Mathlib/Logic/Equiv/Basic.lean,Mathlib/ModelTheory/DirectLimit.lean,Mathlib/ModelTheory/Fraisse.lean,Mathlib/ModelTheory/Quotients.lean,Mathlib/NumberTheory/NumberField/CanonicalEmbedding/FundamentalCone.lean,Mathlib/NumberTheory/NumberField/Embeddings.lean,Mathlib/NumberTheory/NumberField/Units/DirichletTheorem.lean,Mathlib/NumberTheory/Padics/PadicIntegers.lean,Mathlib/NumberTheory/Padics/PadicNumbers.lean,Mathlib/Order/RelIso/Basic.lean,Mathlib/RepresentationTheory/Action/Concrete.lean,Mathlib/SetTheory/Cardinal/Basic.lean,Mathlib/SetTheory/Cardinal/Ordinal.lean,Mathlib/SetTheory/Game/Basic.lean,Mathlib/SetTheory/Game/Birthday.lean,Mathlib/SetTheory/Game/Impartial.lean,Mathlib/SetTheory/Game/Ordinal.lean,Mathlib/SetTheory/Game/State.lean,Mathlib/SetTheory/Lists.lean,Mathlib/SetTheory/Ordinal/Arithmetic.lean,Mathlib/SetTheory/Ordinal/Basic.lean,Mathlib/SetTheory/Surreal/Basic.lean,Mathlib/SetTheory/Surreal/Dyadic.lean,Mathlib/SetTheory/Surreal/Multiplication.lean,Mathlib/SetTheory/ZFC/Basic.lean,Mathlib/SetTheory/ZFC/Rank.lean,Mathlib/Topology/Connected/PathConnected.lean,Mathlib/Topology/Homotopy/HomotopyGroup.lean,Mathlib/Topology/Homotopy/Path.lean,Mathlib/Topology/Homotopy/Product.lean,Mathlib/Topology/MetricSpace/GromovHausdorff.lean,Mathlib/Topology/UniformSpace/Separation.lean,test/interactiveUnfold.lean |
68 |
1 |
['github-actions'] |
nobody |
700-6534 1 year ago |
700-6534 700 days ago |
4-72805 4 days |
| 13156 |
erdOne author:erdOne |
refactor(Algebra/Module/LocalizedModule): Redefine `LocalizedModule` in terms of `OreLocalization`. |
---
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|
merge-conflict
t-algebra
label:t-algebra$ |
519/628 |
Mathlib.lean,Mathlib/Algebra/Module/LocalizedModule.lean,Mathlib/AlgebraicGeometry/Modules/Tilde.lean,Mathlib/RingTheory/DedekindDomain/Different.lean,Mathlib/RingTheory/Localization/BaseChange.lean,Mathlib/RingTheory/OreLocalization/Basic.lean,Mathlib/RingTheory/OreLocalization/Module.lean,Mathlib/RingTheory/OreLocalization/Ring.lean |
8 |
4 |
['github-actions', 'leanprover-bot', 'mattrobball'] |
nobody |
685-58816 1 year ago |
685-58816 685 days ago |
51-84473 51 days |
| 14598 |
Command-Master author:Command-Master |
chore: add typeclasses to unify various `add_top`, `add_eq_top`, etc. |
Add the four typeclasses `IsTopAbsorbing`, `IsBotAbsorbing`, `NoTopSum`, `NoBotSum`, as additive equivalents for `MulZeroClass` and `NoZeroDivisors`. Add instances of these for `ENNReal`, `WithTop α`, `WithBot α`, `PUnit`, `EReal`, `PartENat`, `Measure`, `Interval` and `Filter`.
Also split `Algebra/Order/AddGroupWithTop` to `Algebra/Order/Group/WithTop` and `Algebra/Order/Monoid/WithTop`
---
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Previous usages of lemmas with quantified names like `WithTop.add_top` have to be changed to just `add_top`.
`add_lt_top` is `@[simp]`, in accordance with `ENNReal.add_lt_top` being `@[simp]`. This affects `WithTop.add_lt_top` which previously hadn't been `@[simp]`.
[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-algebra
t-order
new-contributor
label:t-algebra$ |
264/195 |
Archive/Wiedijk100Theorems/BallotProblem.lean,Mathlib.lean,Mathlib/Algebra/Order/Group/WithTop.lean,Mathlib/Algebra/Order/GroupWithZero/Canonical.lean,Mathlib/Algebra/Order/Interval/Basic.lean,Mathlib/Algebra/Order/Monoid/Unbundled/Basic.lean,Mathlib/Algebra/Order/Monoid/Unbundled/Defs.lean,Mathlib/Algebra/Order/Monoid/Unbundled/WithTop.lean,Mathlib/Algebra/Order/Monoid/WithTop.lean,Mathlib/Algebra/PUnitInstances/Order.lean,Mathlib/Algebra/Polynomial/Degree/Definitions.lean,Mathlib/Algebra/Polynomial/Monic.lean,Mathlib/Algebra/Tropical/Basic.lean,Mathlib/Analysis/Analytic/Meromorphic.lean,Mathlib/Analysis/Normed/Lp/ProdLp.lean,Mathlib/Analysis/NormedSpace/ENorm.lean,Mathlib/Analysis/SpecialFunctions/JapaneseBracket.lean,Mathlib/Analysis/SpecialFunctions/Log/ENNRealLog.lean,Mathlib/Data/ENNReal/Operations.lean,Mathlib/Data/ENat/Basic.lean,Mathlib/Data/Nat/PartENat.lean,Mathlib/Data/Nat/WithBot.lean,Mathlib/Data/Real/EReal.lean,Mathlib/LinearAlgebra/Lagrange.lean,Mathlib/MeasureTheory/Covering/Differentiation.lean,Mathlib/MeasureTheory/Decomposition/Lebesgue.lean,Mathlib/MeasureTheory/Function/ConditionalExpectation/CondexpL1.lean,Mathlib/MeasureTheory/Function/Jacobian.lean,Mathlib/MeasureTheory/Function/L1Space.lean,Mathlib/MeasureTheory/Function/L2Space.lean,Mathlib/MeasureTheory/Function/LpSeminorm/Basic.lean,Mathlib/MeasureTheory/Function/LpSeminorm/TriangleInequality.lean,Mathlib/MeasureTheory/Function/LpSpace.lean,Mathlib/MeasureTheory/Function/StronglyMeasurable/Basic.lean,Mathlib/MeasureTheory/Function/UniformIntegrable.lean,Mathlib/MeasureTheory/Integral/Bochner.lean,Mathlib/MeasureTheory/Integral/MeanInequalities.lean,Mathlib/MeasureTheory/Integral/SetIntegral.lean,Mathlib/MeasureTheory/Integral/VitaliCaratheodory.lean,Mathlib/MeasureTheory/Measure/Hausdorff.lean,Mathlib/MeasureTheory/Measure/Lebesgue/Basic.lean,Mathlib/MeasureTheory/Measure/LevyProkhorovMetric.lean,Mathlib/MeasureTheory/Measure/MeasureSpace.lean,Mathlib/MeasureTheory/Measure/MeasureSpaceDef.lean,Mathlib/MeasureTheory/Measure/Regular.lean,Mathlib/MeasureTheory/Measure/Typeclasses.lean,Mathlib/NumberTheory/Padics/PadicNumbers.lean,Mathlib/Order/Filter/Pointwise.lean,Mathlib/Probability/Kernel/Defs.lean,Mathlib/Probability/Martingale/Convergence.lean,Mathlib/RingTheory/Multiplicity.lean,Mathlib/RingTheory/MvPowerSeries/NoZeroDivisors.lean,Mathlib/RingTheory/UniqueFactorizationDomain.lean,Mathlib/Topology/EMetricSpace/Defs.lean,Mathlib/Topology/MetricSpace/Bounded.lean,Mathlib/Topology/MetricSpace/HausdorffDistance.lean,Mathlib/Topology/MetricSpace/Lipschitz.lean |
57 |
30 |
['Command-Master', 'YaelDillies', 'github-actions'] |
nobody |
663-2000 1 year ago |
663-2000 663 days ago |
7-45599 7 days |
| 19212 |
Julian author:Julian |
feat(LinearAlgebra): add a variable_alias for VectorSpace |
Taken directly from the variable_alias docs.
Zulip: https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/why.20.5Bvariable_alias.5D.20attribute.20is.20not.20used.20in.20Mathlib.3F
---
This is the first actual variable alias added to mathlib. I haven't reviewed variable_alias fully, but it seems like there's at least 3 ways they could be distributed in Mathlib:
* alongside whatever subfolder they "belong to" (which is what I've tentatively done here)
* In a file called `Aliases` somewhere near the thing they alias (which seems less discoverable to me)
* In a single file, a la `Mathlib.TrainingWheels` (with some less playful name) which is meant to define a bunch of more "friendly" aliases all in one place.
I kind of like the idea of the third thing as a future module but perhaps it can be synthesized if/when there are more aliases? For now as I say I've done the first one, but please let me know if someone prefers something else.
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merge-conflict
t-algebra
label:t-algebra$ |
25/0 |
Mathlib.lean,Mathlib/LinearAlgebra/VectorSpace.lean,scripts/noshake.json |
3 |
10 |
['Julian', 'PieterCuijpers', 'github-actions', 'urkud'] |
nobody |
642-65155 1 year ago |
642-65155 642 days ago |
7-68101 7 days |
| 19337 |
zeramorphic author:zeramorphic |
feat(Data/Finsupp): generalise `Finsupp` to any "zero" value |
Remove the explicit dependence of `Finsupp` on `[Zero M]`, instead defining `Finsupp'` (better name pending) to be functions that are equal to a fixed value `z : M` cofinitely often.
This PR is intended to do the initial work of replacing the definition of `Finsupp` with an instantiation of the more general definition, without adding any appropriate API. If accepted, the API development will follow in later PRs.
Issues to consider:
- Naming of `Finsupp'.`
- Where should `Finsupp'` lemmas go? Do they need their own file/folder under `Data/`?
Relevant Zulip threads:
- https://leanprover.zulipchat.com/#narrow/channel/217875-Is-there-code-for-X.3F/topic/Finsupp.20generalisations
- https://leanprover.zulipchat.com/#narrow/channel/217875-Is-there-code-for-X.3F/topic/Finsupp-like.20partial.20function
Comments are welcome.
---
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|
merge-conflict
t-data
|
203/83 |
Archive/Wiedijk100Theorems/Partition.lean,Mathlib/Algebra/MvPolynomial/Basic.lean,Mathlib/Algebra/MvPolynomial/Rename.lean,Mathlib/Algebra/MvPolynomial/Variables.lean,Mathlib/Algebra/Polynomial/Basic.lean,Mathlib/Algebra/Polynomial/Laurent.lean,Mathlib/Data/Finsupp/BigOperators.lean,Mathlib/Data/Finsupp/Defs.lean,Mathlib/Data/Finsupp/Order.lean,Mathlib/Data/Nat/Choose/Multinomial.lean,Mathlib/RingTheory/MvPolynomial/Symmetric/Defs.lean,Mathlib/RingTheory/PowerBasis.lean,scripts/nolints_prime_decls.txt |
13 |
5 |
['github-actions', 'vihdzp', 'zeramorphic'] |
nobody |
640-41232 1 year ago |
640-41232 640 days ago |
4-60621 4 days |
| 18756 |
astrainfinita author:astrainfinita |
refactor: deprecate `DistribMulActionSemiHomClass` `MulSemiringActionSemiHomClass` |
---
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|
merge-conflict
t-algebra
label:t-algebra$ |
50/28 |
Mathlib/Algebra/Algebra/NonUnitalHom.lean,Mathlib/Algebra/Module/LinearMap/Defs.lean,Mathlib/GroupTheory/GroupAction/Hom.lean |
3 |
4 |
['astrainfinita', 'github-actions', 'leanprover-bot'] |
nobody |
629-6901 1 year ago |
629-6901 629 days ago |
31-53021 31 days |
| 16120 |
awainverse author:awainverse |
feat(ModelTheory/Algebra/Ring/Basic): Ring homomorphisms are a `StrongHomClass` for the language of rings |
Adds an `IsAlgebraic` instance to the language of rings
Adds a `StrongHomClass` instance to the type of ring homomorphisms between rings with `CompatibleRing` structures
---
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|
merge-conflict
t-algebra
RFC
t-logic
label:t-algebra$ |
34/13 |
Mathlib/ModelTheory/Algebra/Ring/Basic.lean |
1 |
10 |
['ChrisHughes24', 'YaelDillies', 'awainverse', 'github-actions', 'jcommelin'] |
nobody |
601-23075 1 year ago |
601-23075 601 days ago |
135-29017 135 days |
| 20527 |
trivial1711 author:trivial1711 |
refactor(Topology/UniformSpace/Completion): more descriptive names for `α → Completion α` |
- We rename the various maps `α → Completion α` in order to make their names more consistent.
- Let `α` be a uniform space. We rename the uniformly continuous function `α → Completion α` from `UniformSpace.Completion.coe'` to `UniformSpace.Completion.coe`.
- Let `α` be a uniform additive group. We rename the additive group homomorphism `α →+ Completion α` from `UniformSpace.Completion.toCompl` to `UniformSpace.Completion.coeAddHom`.
- Let `α` be a uniform ring. The ring homomorphism `α →+* Completion α` is called `UniformSpace.Completion.coeRingHom`; its name is unchanged.
- Let `α` be a normed space over a field `𝕜`. We rename the linear isometry `α →ₗᵢ[𝕜] Completion α` from `UniformSpace.Completion.toComplₗᵢ` to `UniformSpace.Completion.coeₗᵢ`.
- Let `α` be a normed space over a field `𝕜`. We rename the continuous linear map `α →L[𝕜] Completion α` from `UniformSpace.Completion.toComplL` to `UniformSpace.Completion.coeL`.
- Let `α` be a normed additive group. We rename the norm preserving homomorphism `NormedAddGroupHom α (Completion α)` from `NormedAddCommGroup.toCompl` to `UniformSpace.Completion.coeNormedAddGroupHom`.
- We analogously rename some other theorems.
- We add some trivial theorems (all of which are proved by `rfl`) that state that the functions considered above are equal. We give all of them the `simp` and `norm_cast` attributes.
- We add a new theorem `UniformSpace.Completion.coeAddHom_eq_coe` that states that `UniformSpace.Completion.coeAddHom` and `UniformSpace.Completion.coe` are equal as functions.
- We similarly add a new theorem `UniformSpace.Completion.coeRingHom_eq_coe`.
- We rename the theorem `UniformSpace.Completion.coe_toComplₗᵢ` to `UniformSpace.Completion.coeₗᵢ_eq_coe`.
- We rename the theorem `UniformSpace.Completion.coe_toComplL` to `UniformSpace.Completion.coeL_eq_coe`.
- We similarly add a new theorem `UniformSpace.Completion.coeNormedAddGroupHom_eq_coe`.
- We change all occurrences of the string `((↑) : α → Completion α)` to `(coe : α → Completion α)` or just `coe`.
- We put the statements of some theorems into simp normal form by using the plain function `coe` rather than the homomorphisms that carry more structure.
---
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|
merge-conflict
t-topology
|
130/92 |
Mathlib/Analysis/Analytic/Uniqueness.lean,Mathlib/Analysis/Calculus/FDeriv/Analytic.lean,Mathlib/Analysis/Complex/AbsMax.lean,Mathlib/Analysis/Complex/Liouville.lean,Mathlib/Analysis/InnerProductSpace/Completion.lean,Mathlib/Analysis/Normed/Group/HomCompletion.lean,Mathlib/Analysis/Normed/Module/Completion.lean,Mathlib/Analysis/SpecialFunctions/NonIntegrable.lean,Mathlib/MeasureTheory/Integral/IntegralEqImproper.lean,Mathlib/Topology/Algebra/GroupCompletion.lean,Mathlib/Topology/Algebra/InfiniteSum/GroupCompletion.lean,Mathlib/Topology/Algebra/InfiniteSum/Nonarchimedean.lean,Mathlib/Topology/Algebra/Nonarchimedean/Completion.lean,Mathlib/Topology/Algebra/UniformRing.lean,Mathlib/Topology/Category/UniformSpace.lean,Mathlib/Topology/MetricSpace/Completion.lean,Mathlib/Topology/UniformSpace/Completion.lean |
17 |
4 |
['eric-wieser', 'github-actions', 'trivial1711'] |
nobody |
594-54107 1 year ago |
594-54107 594 days ago |
6-66637 6 days |
| 18474 |
astrainfinita author:astrainfinita |
perf: lower the priority of `*WithOne.to*` instances |
---
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From #7873.
[](https://gitpod.io/from-referrer/)
|
merge-conflict
slow-typeclass-synthesis
t-algebra
t-data
label:t-algebra$ |
9/2 |
Mathlib/Algebra/Polynomial/BigOperators.lean,Mathlib/Data/Int/Cast/Defs.lean,Mathlib/Data/Nat/Cast/Defs.lean |
3 |
7 |
['astrainfinita', 'eric-wieser', 'github-actions', 'leanprover-bot'] |
nobody |
592-41137 1 year ago |
592-41137 592 days ago |
76-66916 76 days |
| 20372 |
jvlmdr author:jvlmdr |
feat(MeasureTheory/Function): Add ContinuousLinearMap.bilinearCompLp(L) |
Introduce ContinuousLinearMap.bilinearCompLp and bilinearCompLpL.
Generalize eLpNorm_le_eLpNorm_mul_eLpNorm theorems to include constant C in bound condition.
---
Expect this may be useful for defining tempered distributions from functions in `L^p`.
The definitions more or less follow `ContinuousLinearMap.compLp...`. Names are loosely analogous to `ContinuousLinearMap.bilinearComp` and `SchwartzMap.bilinLeftCLM`.
Note: I preferred the spelling `hpqr : p⁻¹ + q⁻¹ = r⁻¹` with `f` in `L^p` and `g` in `L^q` to `hpqr : 1 / p = 1 / q + 1 / r`. It's easier to obtain from `ENNReal.IsConjExponent` too.
A few questions:
- [ ] I defined `bilinear{Left,Right}LpL` in addition to `bilinearCompLpL` because `LinearMap.mkContinuous₂` is marked as `noncomputable` and `LinearMap.mkContinuous` is not. Is this worth the extra definitions? (Note: This is not visible in the source due to `noncomputable section`.)
- [ ] Should I use `C : ℝ` instead of `C : NNReal` for `eLpNorm_le_eLpNorm_mul_eLpNorm'_of_norm'`?
- [ ] Is it going to be painful to have `[Fact (1 ≤ p)] [Fact (1 ≤ q)] [Fact (1 ≤ r)]`? I don't think there's a way to avoid it though. Maybe providing specialized versions for `p.IsConjExponent q` with `L^1`?
Naming:
- [ ] Is it satisfactory to add a `'` to the `eLpNorm_le_eLpNorm_mul_eLpNorm ` definitions in `CompareExp.lean` where `≤ ‖f x‖ * ‖g x‖` has been replaced with `≤ C * ‖f x‖ * ‖g x‖`? These could replace the existing theorems, although I don't want to break backwards compatibility. There are 5 instances: `eLpNorm_le_eLpNorm_top_mul_eLpNorm'`, `eLpNorm_le_eLpNorm_mul_eLpNorm_top'`, `eLpNorm'_le_eLpNorm'_mul_eLpNorm''`, `eLpNorm_le_eLpNorm_mul_eLpNorm_of_nnnorm'`, `eLpNorm_le_eLpNorm_mul_eLpNorm'_of_norm'` (I'm not sure why the existing theorem `eLpNorm_le_eLpNorm_mul_eLpNorm'_of_norm` has an internal `'`)
- [ ] Is `bilinearLeftLpL` a suitable name? Other options: `bilinearCompLpLeftL`, `bilinearCompLeftLpL`, `bilinLeftLpL` (analogous to `SchwartzMap.bilinLeftCLM`)
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merge-conflict
t-measure-probability
new-contributor
|
203/40 |
Mathlib/MeasureTheory/Function/LpSeminorm/CompareExp.lean,Mathlib/MeasureTheory/Function/LpSpace.lean |
2 |
1 |
['github-actions'] |
nobody |
579-65394 1 year ago |
579-65394 579 days ago |
27-43617 27 days |
| 21959 |
BGuillemet author:BGuillemet |
feat(Topology/ContinuousMap): Stone-Weierstrass theorem for MvPolynomial |
Add the subalgebra of multivariate polynomials and prove it separates points, on the same model as `ContinuousMap/Polynomial.lean`.
Prove the Stone-Weierstrass theorem and some variations for multivariate polynomials.
---
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merge-conflict
t-topology
new-contributor
|
285/1 |
Mathlib.lean,Mathlib/Topology/ContinuousMap/MvPolynomial.lean,Mathlib/Topology/ContinuousMap/StoneWeierstrass.lean |
3 |
1 |
['github-actions'] |
nobody |
543-51415 1 year ago |
543-51415 543 days ago |
16-76141 16 days |
| 18470 |
astrainfinita author:astrainfinita |
perf: lower the priority of `Normed*.to*` instances |
---
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From #7873.
[](https://gitpod.io/from-referrer/)
|
merge-conflict
slow-typeclass-synthesis
t-algebra
t-analysis
label:t-algebra$ |
28/0 |
Mathlib/Analysis/Normed/Field/Basic.lean,Mathlib/Analysis/Normed/Group/Basic.lean |
2 |
9 |
['astrainfinita', 'github-actions', 'jcommelin', 'leanprover-bot'] |
nobody |
539-22842 1 year ago |
539-22842 539 days ago |
129-16341 129 days |
| 8767 |
eric-wieser author:eric-wieser |
refactor(Cache): tidy lake-manifest parsing in Cache |
This now respects local copies of Mathlib dependencies (though in practice these invalidate the *online* cache because to point to local copies of Mathlib, the hash for `lakefile.lean` and `lake-manifest.json` is first invalidated).
---
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|
merge-conflict
t-meta
|
49/49 |
Cache/Hashing.lean,Cache/IO.lean,lake-manifest.json |
3 |
8 |
['digama0', 'eric-wieser', 'github-actions'] |
nobody |
536-22574 1 year ago |
717-74924 717 days ago |
119-35643 119 days |
| 21488 |
imbrem author:imbrem |
feat(CategoryTheory/Monoidal): premonoidal categories |
Add support for premonoidal categories
---
Still want to add support for:
- Premonoidal braided/symmetric categories
- The monoidal coherence theorem, which I've already ported in my `discretion` library
- The `coherence` tactic, which should work fine for premonoidal categories too
but wanted to get this in front of reviewers ASAP to make sure my general approach was alright
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|
merge-conflict
t-category-theory
new-contributor
|
900/361 |
Mathlib/Algebra/Category/ModuleCat/Presheaf/Monoidal.lean,Mathlib/CategoryTheory/Bicategory/End.lean,Mathlib/CategoryTheory/GradedObject/Monoidal.lean,Mathlib/CategoryTheory/Localization/Monoidal.lean,Mathlib/CategoryTheory/Monoidal/Braided/Basic.lean,Mathlib/CategoryTheory/Monoidal/Category.lean,Mathlib/CategoryTheory/Monoidal/Center.lean,Mathlib/CategoryTheory/Monoidal/CoherenceLemmas.lean,Mathlib/CategoryTheory/Monoidal/Discrete.lean,Mathlib/CategoryTheory/Monoidal/End.lean,Mathlib/CategoryTheory/Monoidal/Free/Basic.lean,Mathlib/CategoryTheory/Monoidal/Functor.lean,Mathlib/CategoryTheory/Monoidal/FunctorCategory.lean,Mathlib/CategoryTheory/Monoidal/Mon_.lean,Mathlib/CategoryTheory/Monoidal/Opposite.lean,Mathlib/CategoryTheory/Monoidal/Transport.lean,Mathlib/Tactic/CategoryTheory/Monoidal/Datatypes.lean,Mathlib/Tactic/CategoryTheory/Monoidal/Normalize.lean,Mathlib/Tactic/CategoryTheory/Monoidal/PureCoherence.lean,Mathlib/Tactic/CategoryTheory/MonoidalComp.lean,MathlibTest/StringDiagram.lean |
21 |
9 |
['YaelDillies', 'github-actions', 'grunweg', 'imbrem', 'kim-em', 'leanprover-community-bot-assistant'] |
nobody |
508-59817 1 year ago |
508-59818 508 days ago |
58-6028 58 days |
| 21525 |
sinhp author:sinhp |
feat(CategoryTheory): Locally Cartesian Closed Categories (Prelim) |
This PR defines the basic preliminaries for defining locally cartesian closed categories (LCCCs). In particular, using the calculus of mates we define certain natural isomorphisms involving `Over.star` and `Over.pullback` which will be crucial in defining the right adjoint to the pullback functor in the development of LCCCs.
---
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|
merge-conflict
t-category-theory
large-import
|
338/24 |
Mathlib/CategoryTheory/Comma/Over/Basic.lean,Mathlib/CategoryTheory/Comma/Over/Pullback.lean,Mathlib/CategoryTheory/Galois/Examples.lean |
3 |
13 |
['b-mehta', 'github-actions', 'joelriou', 'leanprover-community-bot-assistant', 'sinhp'] |
nobody |
508-59815 1 year ago |
508-59817 508 days ago |
36-69400 36 days |
| 16314 |
astrainfinita author:astrainfinita |
chore(Data/Quot): deprecate `ind*'` APIs |
---
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|
merge-conflict
t-data
|
247/287 |
Counterexamples/CliffordAlgebraNotInjective.lean,Mathlib/Algebra/Colimit/Module.lean,Mathlib/Algebra/Lie/Quotient.lean,Mathlib/Algebra/Module/Torsion.lean,Mathlib/Algebra/RingQuot.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Angle.lean,Mathlib/CategoryTheory/ConnectedComponents.lean,Mathlib/CategoryTheory/Subobject/Basic.lean,Mathlib/CategoryTheory/Subobject/FactorThru.lean,Mathlib/CategoryTheory/Subobject/Lattice.lean,Mathlib/Computability/Reduce.lean,Mathlib/Computability/Tape.lean,Mathlib/Data/List/Cycle.lean,Mathlib/Data/Multiset/MapFold.lean,Mathlib/Data/Multiset/ZeroCons.lean,Mathlib/Data/Quot.lean,Mathlib/Data/Setoid/Basic.lean,Mathlib/Data/Setoid/Partition.lean,Mathlib/FieldTheory/Fixed.lean,Mathlib/GroupTheory/Complement.lean,Mathlib/GroupTheory/Congruence/Basic.lean,Mathlib/GroupTheory/Congruence/Defs.lean,Mathlib/GroupTheory/Congruence/Hom.lean,Mathlib/GroupTheory/Coset/Basic.lean,Mathlib/GroupTheory/Coset/Defs.lean,Mathlib/GroupTheory/FreeAbelianGroup.lean,Mathlib/GroupTheory/GroupAction/Basic.lean,Mathlib/GroupTheory/GroupAction/Defs.lean,Mathlib/GroupTheory/GroupAction/Quotient.lean,Mathlib/GroupTheory/Index.lean,Mathlib/GroupTheory/MonoidLocalization/Basic.lean,Mathlib/GroupTheory/PGroup.lean,Mathlib/GroupTheory/Perm/Cycle/Concrete.lean,Mathlib/GroupTheory/PresentedGroup.lean,Mathlib/GroupTheory/QuotientGroup/Basic.lean,Mathlib/GroupTheory/QuotientGroup/Defs.lean,Mathlib/GroupTheory/SchurZassenhaus.lean,Mathlib/GroupTheory/Sylow.lean,Mathlib/LinearAlgebra/Alternating/DomCoprod.lean,Mathlib/LinearAlgebra/Projectivization/Basic.lean,Mathlib/LinearAlgebra/Quotient/Basic.lean,Mathlib/LinearAlgebra/Quotient/Defs.lean,Mathlib/MeasureTheory/Function/AEEqFun.lean,Mathlib/NumberTheory/Padics/PadicNumbers.lean,Mathlib/NumberTheory/RamificationInertia/Basic.lean,Mathlib/Order/Antisymmetrization.lean,Mathlib/Order/Category/PartOrd.lean,Mathlib/Order/Filter/Germ/Basic.lean,Mathlib/RepresentationTheory/GroupCohomology/Hilbert90.lean,Mathlib/RingTheory/AdicCompletion/Algebra.lean,Mathlib/RingTheory/AdicCompletion/Basic.lean,Mathlib/RingTheory/AdicCompletion/Functoriality.lean,Mathlib/RingTheory/AdjoinRoot.lean,Mathlib/RingTheory/Congruence/Basic.lean,Mathlib/RingTheory/Flat/FaithfullyFlat/Basic.lean,Mathlib/RingTheory/GradedAlgebra/HomogeneousLocalization.lean,Mathlib/RingTheory/Ideal/Cotangent.lean,Mathlib/RingTheory/Ideal/Norm/AbsNorm.lean,Mathlib/RingTheory/Ideal/Quotient/Basic.lean,Mathlib/RingTheory/Ideal/Quotient/Defs.lean,Mathlib/RingTheory/Ideal/Quotient/Operations.lean,Mathlib/RingTheory/Valuation/Quotient.lean,Mathlib/Topology/Algebra/Group/TopologicalAbelianization.lean,Mathlib/Topology/Algebra/InfiniteSum/Module.lean,Mathlib/Topology/Separation/Basic.lean |
65 |
4 |
['github-actions', 'leanprover-community-bot-assistant', 'mathlib4-dependent-issues-bot'] |
nobody |
502-84781 1 year ago |
502-84783 502 days ago |
55-52030 55 days |
| 15483 |
astrainfinita author:astrainfinita |
chore(GroupTheory/Coset): reduce defeq abuse |
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-algebra
label:t-algebra$ |
114/60 |
Mathlib/GroupTheory/Commensurable.lean,Mathlib/GroupTheory/Coset.lean,Mathlib/GroupTheory/QuotientGroup.lean,Mathlib/LinearAlgebra/Alternating/DomCoprod.lean,Mathlib/MeasureTheory/Measure/Haar/Quotient.lean,Mathlib/Topology/Algebra/Group/Compact.lean |
6 |
14 |
['astrainfinita', 'eric-wieser', 'github-actions', 'grunweg', 'leanprover-bot', 'mattrobball', 'mergify', 'urkud'] |
nobody |
502-29674 1 year ago |
750-68004 750 days ago |
4-79214 4 days |
| 16594 |
astrainfinita author:astrainfinita |
perf: reorder `extends` and remove some instances in algebra hierarchy |
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
slow-typeclass-synthesis
t-algebra
label:t-algebra$ |
240/92 |
Mathlib.lean,Mathlib/Algebra/Algebra/Hom.lean,Mathlib/Algebra/Associated/Basic.lean,Mathlib/Algebra/BigOperators/Ring/List.lean,Mathlib/Algebra/Field/Defs.lean,Mathlib/Algebra/GCDMonoid/Basic.lean,Mathlib/Algebra/Group/Defs.lean,Mathlib/Algebra/Group/Ext.lean,Mathlib/Algebra/Group/Opposite.lean,Mathlib/Algebra/Group/Prod.lean,Mathlib/Algebra/GroupWithZero/Defs.lean,Mathlib/Algebra/GroupWithZero/Prod.lean,Mathlib/Algebra/Homology/Embedding/Basic.lean,Mathlib/Algebra/Order/AddGroupWithTop.lean,Mathlib/Algebra/Order/Field/Canonical/Defs.lean,Mathlib/Algebra/Order/Field/Defs.lean,Mathlib/Algebra/Order/Group/Unbundled/Abs.lean,Mathlib/Algebra/Order/GroupWithZero/Canonical.lean,Mathlib/Algebra/Order/Ring/Canonical.lean,Mathlib/Algebra/Order/Ring/Defs.lean,Mathlib/Algebra/Polynomial/Roots.lean,Mathlib/Algebra/Quaternion.lean,Mathlib/Algebra/Ring/Defs.lean,Mathlib/Algebra/Ring/Ext.lean,Mathlib/Algebra/Ring/InjSurj.lean,Mathlib/Algebra/Ring/Rat.lean,Mathlib/Algebra/Ring/SumsOfSquares.lean,Mathlib/Algebra/Tropical/Basic.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Order.lean,Mathlib/Analysis/InnerProductSpace/Symmetric.lean,Mathlib/CategoryTheory/Preadditive/FunctorCategory.lean,Mathlib/Data/Finset/NoncommProd.lean,Mathlib/Data/Int/Cast/Defs.lean,Mathlib/FieldTheory/IsAlgClosed/AlgebraicClosure.lean,Mathlib/FieldTheory/SplittingField/Construction.lean,Mathlib/GroupTheory/Congruence/Basic.lean,Mathlib/GroupTheory/MonoidLocalization/MonoidWithZero.lean,Mathlib/GroupTheory/Torsion.lean,Mathlib/LinearAlgebra/LinearPMap.lean,Mathlib/LinearAlgebra/TensorProduct/Basic.lean,Mathlib/Order/Filter/Germ/Basic.lean,Mathlib/Order/Interval/Finset/Box.lean,Mathlib/RingTheory/Bialgebra/Hom.lean,Mathlib/RingTheory/Coalgebra/Hom.lean,Mathlib/RingTheory/Ideal/Quotient.lean,Mathlib/RingTheory/Perfection.lean,Mathlib/RingTheory/TensorProduct/Basic.lean,Mathlib/RingTheory/TensorProduct/MvPolynomial.lean,Mathlib/Util/NoInstances.lean,scripts/noshake.json |
50 |
8 |
['astrainfinita', 'github-actions', 'grunweg', 'leanprover-bot'] |
nobody |
502-29450 1 year ago |
706-68997 706 days ago |
14-58900 14 days |
| 23859 |
urkud author:urkud |
feat(Topology/../Order/Field): generalize to `Semifield` |
.. from a linear ordered field to a linear ordered semifield---
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|
merge-conflict
t-topology
|
245/219 |
Mathlib/Algebra/Order/Group/Pointwise/Interval.lean,Mathlib/Analysis/BoxIntegral/Box/SubboxInduction.lean,Mathlib/Topology/Algebra/Order/Field.lean,Mathlib/Topology/Order/Basic.lean |
4 |
3 |
['github-actions', 'leanprover-community-bot-assistant', 'mathlib4-dependent-issues-bot'] |
nobody |
495-72691 1 year ago |
508-83332 508 days ago |
0-265 4 minutes |
| 23810 |
b-reinke author:b-reinke |
chore(Order/Interval): generalize succ/pred lemmas to partial orders |
Many lemmas in `Mathlib/Order/Interval/Set/SuccPred.lean`and `Mathlib/Order/Interval/Finset/SuccPred.lean` also work for partial orders. They are generalized in this PR by introducing different sections for `PartialOrder` and `LinearOrder` assumptions in the respective files.
---
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|
merge-conflict
t-order
|
231/89 |
Mathlib/Order/Interval/Finset/SuccPred.lean,Mathlib/Order/Interval/Set/SuccPred.lean |
2 |
2 |
['github-actions', 'leanprover-community-bot-assistant'] |
nobody |
493-49466 1 year ago |
493-49468 493 days ago |
16-29623 16 days |
| 23349 |
BGuillemet author:BGuillemet |
feat: add LocallyLipschitzOn.lipschitzOnWith_of_isCompact and two small lemmas about Lipschitz functions |
Main feat (in Mathlib/Topology/EMetricSpace/Basic.lean): if a function `f` from an extended pseudometric space to a pseudometric space is locally Lipschitz on a compact subset `s`, then `f` is Lipschitz on `s`. The theorem is true only when the codomain of `f` is a pseudometric space, so it needs imports from Mathlib/Topology/MetricSpace.
Other small feat (in Mathlib/Analysis/Calculus/ContDiff/RCLike.lean): a function that is continuously differentiable on an open subset is locally Lipschitz on this subset.
---
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|
merge-conflict
t-topology
large-import
new-contributor
|
59/4 |
Mathlib/Analysis/Calculus/ContDiff/RCLike.lean,Mathlib/Topology/EMetricSpace/Lipschitz.lean |
2 |
4 |
['github-actions', 'leanprover-community-bot-assistant', 'mathlib4-dependent-issues-bot'] |
PatrickMassot assignee:PatrickMassot |
460-44913 1 year ago |
460-44915 460 days ago |
35-30364 35 days |
| 25340 |
dupuisf author:dupuisf |
chore(Analysis/Convex): move files pertaining to convex/concave functions to their own folder |
This PR creates a new folder under `Analysis/Convex` called `Analysis/Convex/Function`, which includes files that are mostly or entirely about convex/concave functions (as opposed to convex sets).
---
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merge-conflict
t-convex-geometry
|
4264/4155 |
Mathlib.lean,Mathlib/Analysis/Convex/Continuous.lean,Mathlib/Analysis/Convex/Deriv.lean,Mathlib/Analysis/Convex/Exposed.lean,Mathlib/Analysis/Convex/Extrema.lean,Mathlib/Analysis/Convex/Function.lean,Mathlib/Analysis/Convex/Function/Basic.lean,Mathlib/Analysis/Convex/Function/Continuous.lean,Mathlib/Analysis/Convex/Function/Deriv.lean,Mathlib/Analysis/Convex/Function/Extrema.lean,Mathlib/Analysis/Convex/Function/Integral.lean,Mathlib/Analysis/Convex/Function/Jensen.lean,Mathlib/Analysis/Convex/Function/Mul.lean,Mathlib/Analysis/Convex/Function/Piecewise.lean,Mathlib/Analysis/Convex/Function/Quasiconvex.lean,Mathlib/Analysis/Convex/Function/Slope.lean,Mathlib/Analysis/Convex/Function/Strong.lean,Mathlib/Analysis/Convex/Integral.lean,Mathlib/Analysis/Convex/Jensen.lean,Mathlib/Analysis/Convex/Mul.lean,Mathlib/Analysis/Convex/Piecewise.lean,Mathlib/Analysis/Convex/Quasiconvex.lean,Mathlib/Analysis/Convex/Slope.lean,Mathlib/Analysis/Convex/SpecificFunctions/Basic.lean,Mathlib/Analysis/Convex/SpecificFunctions/Deriv.lean,Mathlib/Analysis/Convex/Strong.lean,Mathlib/Analysis/MeanInequalities.lean,Mathlib/Analysis/MeanInequalitiesPow.lean,Mathlib/Analysis/Normed/Module/Convex.lean,Mathlib/Analysis/Seminorm.lean,Mathlib/Analysis/SpecialFunctions/Log/NegMulLog.lean,Mathlib/Analysis/SpecialFunctions/Pochhammer.lean,Mathlib/MeasureTheory/Measure/Decomposition/IntegralRNDeriv.lean,Mathlib/NumberTheory/Harmonic/GammaDeriv.lean |
34 |
2 |
['github-actions', 'leanprover-community-bot-assistant'] |
nobody |
449-67740 1 year ago |
449-67742 449 days ago |
6-39812 6 days |
| 18441 |
ADedecker author:ADedecker |
refactor(AdicTopology): use new API for algebraic filter bases, and factor some code |
---
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|
merge-conflict
t-topology
t-algebra
label:t-algebra$ |
847/159 |
Mathlib.lean,Mathlib/Topology/Algebra/FilterBasis.lean,Mathlib/Topology/Algebra/FilterBasisNew.lean,Mathlib/Topology/Algebra/Nonarchimedean/AdicTopology.lean,Mathlib/Topology/Algebra/Nonarchimedean/Bases.lean,Mathlib/Topology/Algebra/Nonarchimedean/BasesNew.lean |
6 |
3 |
['ADedecker', 'github-actions', 'mathlib4-dependent-issues-bot'] |
nobody |
437-59481 1 year ago |
669-57380 669 days ago |
0-679 11 minutes |
| 18439 |
ADedecker author:ADedecker |
refactor: use new algebraic filter bases API in `FiniteAdeleRing` |
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|
merge-conflict
t-topology
t-algebra
label:t-algebra$ |
699/21 |
Mathlib.lean,Mathlib/RingTheory/DedekindDomain/FiniteAdeleRing.lean,Mathlib/Topology/Algebra/FilterBasis.lean,Mathlib/Topology/Algebra/FilterBasisNew.lean,Mathlib/Topology/Algebra/Nonarchimedean/Bases.lean,Mathlib/Topology/Algebra/Nonarchimedean/BasesNew.lean |
6 |
2 |
['github-actions', 'mathlib4-dependent-issues-bot'] |
nobody |
437-59479 1 year ago |
669-59023 669 days ago |
0-619 10 minutes |
| 18438 |
ADedecker author:ADedecker |
refactor: adapt `KrullTopology` to the new algebraic filter bases API |
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|
merge-conflict
t-topology
t-algebra
label:t-algebra$ |
771/168 |
Mathlib.lean,Mathlib/FieldTheory/KrullTopology.lean,Mathlib/Topology/Algebra/FilterBasis.lean,Mathlib/Topology/Algebra/FilterBasisNew.lean,Mathlib/Topology/Algebra/Nonarchimedean/Bases.lean,Mathlib/Topology/Algebra/Nonarchimedean/BasesNew.lean |
6 |
5 |
['ADedecker', 'AntoineChambert-Loir', 'github-actions', 'mathlib4-dependent-issues-bot'] |
nobody |
437-59478 1 year ago |
669-59665 669 days ago |
0-638 10 minutes |
| 13964 |
pechersky author:pechersky |
feat(Data/DigitExpansion): begin defining variant of reals without rationals |
Based on a de Bruijn 1976 paper.
This file is just the basic definition of a digit expansion. Will be followed up with further constructions.
---
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|
merge-conflict
t-data
|
518/0 |
Mathlib.lean,Mathlib/Data/DigitExpansion/Defs.lean,docs/references.bib |
3 |
11 |
['eric-wieser', 'github-actions', 'kim-em', 'pechersky'] |
dupuisf assignee:dupuisf |
434-41769 1 year ago |
672-67985 672 days ago |
129-57999 129 days |
| 24823 |
eric-wieser author:eric-wieser |
refactor: add `hom` lemmas for the `MonoidalCategory` structure on `ModuleCat` |
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-algebra
label:t-algebra$ |
148/164 |
Mathlib/Algebra/Category/FGModuleCat/Basic.lean,Mathlib/Algebra/Category/ModuleCat/Adjunctions.lean,Mathlib/Algebra/Category/ModuleCat/Monoidal/Basic.lean,Mathlib/Algebra/Category/ModuleCat/Monoidal/Closed.lean,Mathlib/Algebra/Category/ModuleCat/Monoidal/Symmetric.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/Free.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/Generator.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/Monoidal.lean,Mathlib/CategoryTheory/Monoidal/Internal/Module.lean,Mathlib/RepresentationTheory/Coinvariants.lean,Mathlib/RepresentationTheory/Rep.lean |
11 |
21 |
['101damnations', 'YaelDillies', 'eric-wieser', 'github-actions', 'joelriou', 'kbuzzard', 'leanprover-community-bot-assistant'] |
101damnations assignee:101damnations |
422-6429 1 year ago |
422-6429 422 days ago |
40-60910 40 days |
| 25071 |
erdOne author:erdOne |
feat(EllipticCurve): basic API for singular cubics |
---
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|
merge-conflict
t-algebraic-geometry
|
320/0 |
Mathlib.lean,Mathlib/AlgebraicGeometry/EllipticCurve/Singular/Basic.lean,Mathlib/AlgebraicGeometry/EllipticCurve/VariableChange.lean |
3 |
35 |
['Multramate', 'acmepjz', 'erdOne', 'github-actions', 'leanprover-community-bot-assistant'] |
nobody |
422-6183 1 year ago |
422-6184 422 days ago |
45-4562 45 days |
| 25988 |
Multramate author:Multramate |
refactor(AlgebraicGeometry/EllipticCurve/*): replace Fin 3 with products |
This PR continues the work from #24593.
Original PR: https://github.com/leanprover-community/mathlib4/pull/24593 |
merge-conflict
t-algebraic-geometry
|
1000/1022 |
Mathlib/AlgebraicGeometry/EllipticCurve/Jacobian/Basic.lean,Mathlib/AlgebraicGeometry/EllipticCurve/Jacobian/Formula.lean,Mathlib/AlgebraicGeometry/EllipticCurve/Jacobian/Point.lean,Mathlib/AlgebraicGeometry/EllipticCurve/Projective/Basic.lean,Mathlib/AlgebraicGeometry/EllipticCurve/Projective/Formula.lean,Mathlib/AlgebraicGeometry/EllipticCurve/Projective/Point.lean |
6 |
3 |
['Multramate', 'github-actions', 'leanprover-community-bot-assistant'] |
nobody |
422-5871 1 year ago |
422-5871 422 days ago |
18-21880 18 days |
| 26067 |
mapehe author:mapehe |
feat(Topology/StoneCech): exists_continuous_surjection_from_StoneCech_to_dense_range |
This lemma formalises the following version of the maximality property of the Stone–Čech compactification: If `f : α → β` is a continuous map from a topological space `α` to a Hausdorff space `β` with dense range, then there exists a continuous surjection from `StoneCech α` to `β` extending `f`. In particular, `StoneCech α` is the “largest” compact Hausdorff space into which `α` densely embeds, in the sense that any other such space is a continuous image of it.
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merge-conflict
t-topology
|
18/0 |
Mathlib/Topology/StoneCech.lean |
1 |
2 |
['github-actions', 'leanprover-community-bot-assistant'] |
nobody |
418-73649 1 year ago |
418-73649 418 days ago |
20-8582 20 days |
| 25238 |
Hagb author:Hagb |
feat(Tactic/ComputeDegree): add support for scalar multiplication with different types |
It would be able to deal with `a • (X : R[X])` where `a : S` is in a different type `S` with `[SMulZeroClass S R]`.
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|
merge-conflict
t-meta
new-contributor
|
17/5 |
Mathlib/Tactic/ComputeDegree.lean,MathlibTest/ComputeDegree.lean |
2 |
3 |
['github-actions', 'leanprover-community-bot-assistant', 'mathlib4-dependent-issues-bot'] |
nobody |
391-70911 1 year ago |
422-6180 422 days ago |
38-26044 38 days |
| 18646 |
jxjwan author:jxjwan |
feat(RingTheory): isotypic components |
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-ring-theory
new-contributor
|
308/0 |
Mathlib/Order/CompactlyGenerated/Basic.lean,Mathlib/RingTheory/Isotypic.lean,Mathlib/RingTheory/SimpleModule.lean |
3 |
1 |
['github-actions'] |
nobody |
390-72932 1 year ago |
643-66525 643 days ago |
20-15640 20 days |
| 26200 |
adomani author:adomani |
fix: add label when landrun fails |
Adds the `permission-denied` label on PRs that get blocked by landrun.
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|
merge-conflict
CI
|
68/8 |
.github/build.in.yml,.github/workflows/bors.yml,.github/workflows/build.yml,.github/workflows/build_fork.yml |
4 |
2 |
['github-actions', 'mathlib4-merge-conflict-bot'] |
nobody |
390-21864 1 year ago |
390-21864 390 days ago |
46-52210 46 days |
| 27987 |
kckennylau author:kckennylau |
feat(RingTheory/Valuation): define ball, closed ball, and sphere |
---
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|
merge-conflict
t-ring-theory
large-import
|
73/0 |
Mathlib/RingTheory/Valuation/Basic.lean |
1 |
4 |
['JovanGerb', 'github-actions', 'kckennylau', 'mathlib4-merge-conflict-bot'] |
nobody |
384-53996 1 year ago |
384-53997 384 days ago |
6-6455 6 days |
| 27003 |
eric-wieser author:eric-wieser |
chore: use `Simp.ResultQ` more often |
Also uses `~q` in place of manual `isDefEq` matching.
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- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-meta
|
18/22 |
Mathlib/Tactic/NormNum/Core.lean,Mathlib/Tactic/NormNum/Result.lean,Mathlib/Tactic/ReduceModChar.lean |
3 |
7 |
['JovanGerb', 'eric-wieser', 'github-actions', 'mathlib4-merge-conflict-bot'] |
JovanGerb assignee:JovanGerb |
382-68620 1 year ago |
382-68621 382 days ago |
32-70098 32 days |
| 25401 |
digama0 author:digama0 |
feat(Util): SuppressSorry option |
See also leanprover/lean4#8611 and [#lean4 > Silent sorry @ 💬](https://leanprover.zulipchat.com/#narrow/channel/270676-lean4/topic/Silent.20sorry/near/503537964). This is a stop-gap solution while leanprover/lean4#8611 is underway, but it works about as well as any other built in option. Hooking declaration elaborators turns out to be a very powerful technique.
---
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merge-conflict
t-meta
|
342/0 |
Mathlib.lean,Mathlib/Util/CommandElabHook.lean,Mathlib/Util/SuppressSorry.lean,MathlibTest/suppressSorry.lean |
4 |
15 |
['digama0', 'eric-wieser', 'github-actions', 'mathlib4-merge-conflict-bot'] |
alexjbest assignee:alexjbest |
382-23416 1 year ago |
382-23416 382 days ago |
71-28496 71 days |
| 28622 |
alreadydone author:alreadydone |
chore(Mathlib): replace `=>` by `↦` |
---
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merge-conflict |
51792/51792 |
Mathlib/Algebra/AddTorsor/Basic.lean,Mathlib/Algebra/AddTorsor/Defs.lean,Mathlib/Algebra/Algebra/Basic.lean,Mathlib/Algebra/Algebra/Bilinear.lean,Mathlib/Algebra/Algebra/Defs.lean,Mathlib/Algebra/Algebra/Equiv.lean,Mathlib/Algebra/Algebra/Hom.lean,Mathlib/Algebra/Algebra/Hom/Rat.lean,Mathlib/Algebra/Algebra/NonUnitalHom.lean,Mathlib/Algebra/Algebra/NonUnitalSubalgebra.lean,Mathlib/Algebra/Algebra/Operations.lean,Mathlib/Algebra/Algebra/Opposite.lean,Mathlib/Algebra/Algebra/Prod.lean,Mathlib/Algebra/Algebra/Rat.lean,Mathlib/Algebra/Algebra/Spectrum/Basic.lean,Mathlib/Algebra/Algebra/Spectrum/Pi.lean,Mathlib/Algebra/Algebra/Spectrum/Quasispectrum.lean,Mathlib/Algebra/Algebra/Subalgebra/Basic.lean,Mathlib/Algebra/Algebra/Subalgebra/Centralizer.lean,Mathlib/Algebra/Algebra/Subalgebra/Directed.lean,Mathlib/Algebra/Algebra/Subalgebra/IsSimpleOrder.lean,Mathlib/Algebra/Algebra/Subalgebra/Lattice.lean,Mathlib/Algebra/Algebra/Subalgebra/Matrix.lean,Mathlib/Algebra/Algebra/Subalgebra/Operations.lean,Mathlib/Algebra/Algebra/Subalgebra/Pointwise.lean,Mathlib/Algebra/Algebra/Subalgebra/Prod.lean,Mathlib/Algebra/Algebra/Subalgebra/Unitization.lean,Mathlib/Algebra/Algebra/Tower.lean,Mathlib/Algebra/Algebra/TransferInstance.lean,Mathlib/Algebra/Algebra/Unitization.lean,Mathlib/Algebra/Algebra/ZMod.lean,Mathlib/Algebra/AlgebraicCard.lean,Mathlib/Algebra/BigOperators/Associated.lean,Mathlib/Algebra/BigOperators/Expect.lean,Mathlib/Algebra/BigOperators/Fin.lean,Mathlib/Algebra/BigOperators/Finprod.lean,Mathlib/Algebra/BigOperators/Finsupp/Basic.lean,Mathlib/Algebra/BigOperators/Finsupp/Fin.lean,Mathlib/Algebra/BigOperators/Group/Finset/Basic.lean,Mathlib/Algebra/BigOperators/Group/Finset/Defs.lean,Mathlib/Algebra/BigOperators/Group/Finset/Piecewise.lean,Mathlib/Algebra/BigOperators/Group/Finset/Sigma.lean,Mathlib/Algebra/BigOperators/Group/List/Basic.lean,Mathlib/Algebra/BigOperators/Group/List/Defs.lean,Mathlib/Algebra/BigOperators/Group/List/Lemmas.lean,Mathlib/Algebra/BigOperators/Group/Multiset/Basic.lean,Mathlib/Algebra/BigOperators/Group/Multiset/Defs.lean,Mathlib/Algebra/BigOperators/GroupWithZero/Finset.lean,Mathlib/Algebra/BigOperators/Intervals.lean,Mathlib/Algebra/BigOperators/Option.lean,Mathlib/Algebra/BigOperators/Pi.lean,Mathlib/Algebra/BigOperators/Ring/Finset.lean,Mathlib/Algebra/BigOperators/Ring/Multiset.lean,Mathlib/Algebra/Category/AlgCat/Basic.lean,Mathlib/Algebra/Category/AlgCat/Limits.lean,Mathlib/Algebra/Category/AlgCat/Monoidal.lean,Mathlib/Algebra/Category/BialgCat/Basic.lean,Mathlib/Algebra/Category/BoolRing.lean,Mathlib/Algebra/Category/CoalgCat/Basic.lean,Mathlib/Algebra/Category/CoalgCat/ComonEquivalence.lean,Mathlib/Algebra/Category/FGModuleCat/Limits.lean,Mathlib/Algebra/Category/Grp/AB.lean,Mathlib/Algebra/Category/Grp/Adjunctions.lean,Mathlib/Algebra/Category/Grp/Basic.lean,Mathlib/Algebra/Category/Grp/Biproducts.lean,Mathlib/Algebra/Category/Grp/CartesianMonoidal.lean,Mathlib/Algebra/Category/Grp/Colimits.lean,Mathlib/Algebra/Category/Grp/EpiMono.lean,Mathlib/Algebra/Category/Grp/FilteredColimits.lean,Mathlib/Algebra/Category/Grp/Images.lean,Mathlib/Algebra/Category/Grp/Kernels.lean,Mathlib/Algebra/Category/Grp/LargeColimits.lean,Mathlib/Algebra/Category/Grp/LeftExactFunctor.lean,Mathlib/Algebra/Category/Grp/Limits.lean,Mathlib/Algebra/Category/Grp/Preadditive.lean,Mathlib/Algebra/Category/Grp/ZModuleEquivalence.lean,Mathlib/Algebra/Category/Grp/Zero.lean,Mathlib/Algebra/Category/GrpWithZero.lean,Mathlib/Algebra/Category/HopfAlgCat/Basic.lean,Mathlib/Algebra/Category/ModuleCat/Adjunctions.lean,Mathlib/Algebra/Category/ModuleCat/Basic.lean,Mathlib/Algebra/Category/ModuleCat/Biproducts.lean,Mathlib/Algebra/Category/ModuleCat/ChangeOfRings.lean,Mathlib/Algebra/Category/ModuleCat/Colimits.lean,Mathlib/Algebra/Category/ModuleCat/EpiMono.lean,Mathlib/Algebra/Category/ModuleCat/FilteredColimits.lean,Mathlib/Algebra/Category/ModuleCat/Images.lean,Mathlib/Algebra/Category/ModuleCat/Injective.lean,Mathlib/Algebra/Category/ModuleCat/Kernels.lean,Mathlib/Algebra/Category/ModuleCat/Limits.lean,Mathlib/Algebra/Category/ModuleCat/Monoidal/Basic.lean,Mathlib/Algebra/Category/ModuleCat/Monoidal/Closed.lean,Mathlib/Algebra/Category/ModuleCat/Monoidal/Symmetric.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/Abelian.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/Colimits.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/Limits.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/Pushforward.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/Sheafify.lean,Mathlib/Algebra/Category/ModuleCat/Products.lean |
3838 |
4 |
['github-actions', 'mathlib4-merge-conflict-bot'] |
nobody |
376-26896 1 year ago |
376-26897 376 days ago |
0-66771 18 hours |
| 28626 |
alreadydone author:alreadydone |
chore(Archive, Counterexamples): replace => by ↦ |
---
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|
merge-conflict |
288/288 |
Archive/Arithcc.lean,Archive/Examples/IfNormalization/Result.lean,Archive/Examples/IfNormalization/WithoutAesop.lean,Archive/Examples/PropEncodable.lean,Archive/Imo/Imo1959Q1.lean,Archive/Imo/Imo1960Q1.lean,Archive/Imo/Imo1962Q4.lean,Archive/Imo/Imo1972Q5.lean,Archive/Imo/Imo1977Q6.lean,Archive/Imo/Imo1981Q3.lean,Archive/Imo/Imo1987Q1.lean,Archive/Imo/Imo1988Q6.lean,Archive/Imo/Imo1994Q1.lean,Archive/Imo/Imo1998Q2.lean,Archive/Imo/Imo2001Q2.lean,Archive/Imo/Imo2006Q3.lean,Archive/Imo/Imo2006Q5.lean,Archive/Imo/Imo2008Q2.lean,Archive/Imo/Imo2008Q4.lean,Archive/Imo/Imo2011Q3.lean,Archive/Imo/Imo2013Q1.lean,Archive/Imo/Imo2019Q1.lean,Archive/Imo/Imo2024Q5.lean,Archive/MiuLanguage/Basic.lean,Archive/MiuLanguage/DecisionSuf.lean,Archive/OxfordInvariants/Summer2021/Week3P1.lean,Archive/Sensitivity.lean,Archive/Wiedijk100Theorems/AbelRuffini.lean,Archive/Wiedijk100Theorems/AreaOfACircle.lean,Archive/Wiedijk100Theorems/AscendingDescendingSequences.lean,Archive/Wiedijk100Theorems/BallotProblem.lean,Archive/Wiedijk100Theorems/BirthdayProblem.lean,Archive/Wiedijk100Theorems/BuffonsNeedle.lean,Archive/Wiedijk100Theorems/CubingACube.lean,Archive/Wiedijk100Theorems/FriendshipGraphs.lean,Archive/Wiedijk100Theorems/Konigsberg.lean,Archive/Wiedijk100Theorems/Partition.lean,Archive/Wiedijk100Theorems/SumOfPrimeReciprocalsDiverges.lean,Archive/ZagierTwoSquares.lean,Counterexamples/AharoniKorman.lean,Counterexamples/CanonicallyOrderedCommSemiringTwoMul.lean,Counterexamples/CharPZeroNeCharZero.lean,Counterexamples/CliffordAlgebraNotInjective.lean,Counterexamples/DirectSumIsInternal.lean,Counterexamples/GameMultiplication.lean,Counterexamples/Girard.lean,Counterexamples/HomogeneousPrimeNotPrime.lean,Counterexamples/MapFloor.lean,Counterexamples/MonicNonRegular.lean,Counterexamples/Phillips.lean,Counterexamples/Pseudoelement.lean,Counterexamples/QuadraticForm.lean,Counterexamples/SorgenfreyLine.lean,Counterexamples/ZeroDivisorsInAddMonoidAlgebras.lean |
54 |
2 |
['github-actions', 'mathlib4-merge-conflict-bot'] |
nobody |
374-56022 1 year ago |
374-56023 374 days ago |
2-47570 2 days |
| 27403 |
MoritzBeroRoos author:MoritzBeroRoos |
fix: replace probably erroneous usage of ⬝ (with old \cdot) by · (with \centerdot) |
Discussion at [zulip](https://leanprover.zulipchat.com/#narrow/channel/270676-lean4/topic/.5Ccdot.20!.3D.20.5Ccenterdot).
Currently the abbreviations \cdot and \centerdot resolve to different, with the naked eye nearly undistinguishable symbols (despite the c in cdot surely standing for center..).
This pr replaces instances of ⬝ where · was probably meant.
All of the replacement is in comments, except for the file bench_summary.lean which is used for priting the github benchmark results. Since this file is about scientific notation of numbers, sure · was meant to be used, not a rectangle.
[Related](https://github.com/leanprover-community/mathlib4/pull/27399)
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
new-contributor
|
195/195 |
Mathlib/Algebra/ContinuedFractions/Computation/Approximations.lean,Mathlib/Algebra/DirectSum/Idempotents.lean,Mathlib/Algebra/Lie/Derivation/Basic.lean,Mathlib/Algebra/Module/Equiv/Basic.lean,Mathlib/AlgebraicGeometry/EllipticCurve/DivisionPolynomial/Basic.lean,Mathlib/Analysis/Analytic/Constructions.lean,Mathlib/Analysis/CStarAlgebra/CStarMatrix.lean,Mathlib/Analysis/Calculus/ContDiff/Basic.lean,Mathlib/Analysis/Calculus/ContDiff/Bounds.lean,Mathlib/Analysis/Calculus/FDeriv/Symmetric.lean,Mathlib/Analysis/Fourier/FourierTransformDeriv.lean,Mathlib/Analysis/InnerProductSpace/Dual.lean,Mathlib/Analysis/InnerProductSpace/PiL2.lean,Mathlib/Analysis/Normed/Unbundled/InvariantExtension.lean,Mathlib/Analysis/SpecialFunctions/Complex/CircleAddChar.lean,Mathlib/Combinatorics/Configuration.lean,Mathlib/Combinatorics/SimpleGraph/AdjMatrix.lean,Mathlib/Combinatorics/SimpleGraph/LapMatrix.lean,Mathlib/Data/Matrix/Block.lean,Mathlib/Data/Matrix/ConjTranspose.lean,Mathlib/Data/Matrix/Hadamard.lean,Mathlib/Data/Matrix/Mul.lean,Mathlib/Data/Matrix/Notation.lean,Mathlib/Data/Matrix/Reflection.lean,Mathlib/Data/Matrix/RowCol.lean,Mathlib/Data/Matrix/Vec.lean,Mathlib/FieldTheory/PurelyInseparable/PerfectClosure.lean,Mathlib/Geometry/Manifold/GroupLieAlgebra.lean,Mathlib/GroupTheory/Coxeter/Matrix.lean,Mathlib/LinearAlgebra/CrossProduct.lean,Mathlib/LinearAlgebra/Matrix/BilinearForm.lean,Mathlib/LinearAlgebra/Matrix/DotProduct.lean,Mathlib/LinearAlgebra/Matrix/Nondegenerate.lean,Mathlib/LinearAlgebra/Matrix/Orthogonal.lean,Mathlib/LinearAlgebra/Matrix/PosDef.lean,Mathlib/LinearAlgebra/Matrix/SchurComplement.lean,Mathlib/LinearAlgebra/Matrix/SesquilinearForm.lean,Mathlib/LinearAlgebra/Matrix/Trace.lean,Mathlib/LinearAlgebra/Multilinear/Basic.lean,Mathlib/LinearAlgebra/PerfectPairing/Matrix.lean,Mathlib/LinearAlgebra/Projectivization/Constructions.lean,Mathlib/NumberTheory/NumberField/ProductFormula.lean,Mathlib/NumberTheory/SiegelsLemma.lean,Mathlib/RingTheory/DividedPowers/SubDPIdeal.lean,Mathlib/SetTheory/Ordinal/Veblen.lean,Mathlib/Topology/Algebra/Module/Equiv.lean,Mathlib/Topology/Homeomorph/Lemmas.lean,Mathlib/Topology/Instances/Matrix.lean,scripts/bench_summary.lean |
49 |
5 |
['eric-wieser', 'github-actions', 'grunweg', 'leanprover-community-bot-assistant'] |
nobody |
373-2658 1 year ago |
395-64980 395 days ago |
7-54661 7 days |
| 28042 |
kckennylau author:kckennylau |
feat(Topology/ValuativeRel): a topological basis indexed by pairs of elements |
---
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The pullback PR of #27314 and #27163.
[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-ring-theory
|
140/23 |
Mathlib/RingTheory/Valuation/ValuativeRel.lean,Mathlib/Topology/Algebra/Valued/ValuativeRel.lean |
2 |
3 |
['github-actions', 'grunweg', 'mathlib4-merge-conflict-bot'] |
nobody |
373-2612 1 year ago |
382-54056 382 days ago |
7-4998 7 days |
| 27399 |
MoritzBeroRoos author:MoritzBeroRoos |
chore: replace every usage of ⬝ᵥ (with old \cdot) by ·ᵥ (with \centerdot) |
Discussion at [zulip](https://leanprover.zulipchat.com/#narrow/channel/270676-lean4/topic/.5Ccdot.20!.3D.20.5Ccenterdot).
Currently the abbreviations `\cdot` and `\centerdot` resolve to different, with the naked eye nearly undistinguishable symbols (despite the c in cdot surely standing for `center`..):
- `\cdot` gives ⬝ [U+2B1D](https://www.compart.com/en/unicode/U+2B1D) "Black Very Small Square"
- `\centerdot` gives · [U+00B7](https://www.compart.com/en/unicode/U+00B7) "Middle Dot"
Mathlib mostly uses the `\centerdot` variant, except for the dotProduct notation and some probably unsuspecting people wanting \centerdot but getting \cdot in their comments and 6 uses of a notation using the raw `\cdot` without any subscript at `Mathlib\Topology\Homotopy\Product.lean`.
This PR replaces the dot product `⬝ᵥ` with its `\centerdot` counterpart `·ᵥ`. The related PR [here](https://github.com/leanprover/vscode-lean4/pull/639) can then overwrite the `\cdot` abbreviation, to produce the same symbol as the `centerdot` abbreviation does.
---
[](https://gitpod.io/from-referrer/)
|
merge-conflict
new-contributor
|
133/133 |
Mathlib/Analysis/CStarAlgebra/CStarMatrix.lean,Mathlib/Analysis/InnerProductSpace/PiL2.lean,Mathlib/Combinatorics/Configuration.lean,Mathlib/Combinatorics/SimpleGraph/AdjMatrix.lean,Mathlib/Combinatorics/SimpleGraph/LapMatrix.lean,Mathlib/Data/Matrix/Block.lean,Mathlib/Data/Matrix/ConjTranspose.lean,Mathlib/Data/Matrix/Hadamard.lean,Mathlib/Data/Matrix/Mul.lean,Mathlib/Data/Matrix/Notation.lean,Mathlib/Data/Matrix/Reflection.lean,Mathlib/Data/Matrix/RowCol.lean,Mathlib/Data/Matrix/Vec.lean,Mathlib/LinearAlgebra/CrossProduct.lean,Mathlib/LinearAlgebra/Matrix/BilinearForm.lean,Mathlib/LinearAlgebra/Matrix/DotProduct.lean,Mathlib/LinearAlgebra/Matrix/Nondegenerate.lean,Mathlib/LinearAlgebra/Matrix/Orthogonal.lean,Mathlib/LinearAlgebra/Matrix/PosDef.lean,Mathlib/LinearAlgebra/Matrix/SchurComplement.lean,Mathlib/LinearAlgebra/Matrix/SesquilinearForm.lean,Mathlib/LinearAlgebra/Matrix/Trace.lean,Mathlib/LinearAlgebra/PerfectPairing/Matrix.lean,Mathlib/LinearAlgebra/Projectivization/Constructions.lean,Mathlib/Topology/Instances/Matrix.lean |
25 |
6 |
['MoritzBeroRoos', 'eric-wieser', 'github-actions', 'leanprover-community-bot-assistant'] |
nobody |
372-50890 1 year ago |
395-64981 395 days ago |
7-62439 7 days |
| 28148 |
kckennylau author:kckennylau |
feat(Matrix): Simproc and Rw-proc for Matrix Transpose |
Co-authored by Aaron Liu.
```lean
example : !![1, 2, 3; 4, 5, 6]ᵀ = !![1, 4; 2, 5; 3, 6] := by
rw [transpose_of% 2 3]
example : !![1, 2, 3; 4, 5, 6]ᵀ = !![1, 4; 2, 5; 3, 6] := by
rw [transpose_of]
example : !![1, 2, 3; 4, 5, 6]ᵀ = !![1, 4; 2, 5; 3, 6] := by
simp only [matrix_transpose]
```
---
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- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-meta
|
267/8 |
Mathlib.lean,Mathlib/Data/Matrix/Notation.lean,Mathlib/LinearAlgebra/UnitaryGroup.lean,Mathlib/Tactic.lean,Mathlib/Tactic/Simproc/Matrix.lean,MathlibTest/Simproc/Matrix.lean,MathlibTest/matrix.lean,scripts/noshake.json |
8 |
32 |
['eric-wieser', 'github-actions', 'kckennylau', 'mathlib4-merge-conflict-bot', 'plp127'] |
eric-wieser assignee:eric-wieser |
368-7824 1 year ago |
368-7825 368 days ago |
13-1483 13 days |
| 26908 |
robin-carlier author:robin-carlier |
feat(CategoryTheory/Monoidal/DayConvolution): alternative ext principle for unitors |
Currently, our infrastructure for left/right unitors for Day convolution of functors `C ⥤ V` do not have satisfactory extensionality principle: the current way to characterize morphisms out of `U ⊛ F` is the default extensionality principle for Day convolution, which characterizes first such functors via functors out of `U ⊠ F`. Left unitors are then obtained using the fact `U ⊠ F` is a left Kan extension of a functor from `PUnit × C` (which is equivalent to `C`) but we did not record on its own this principle.
Using the transitivity of left Kan extensions proved in #26899, we directly exhibit `U ⊛ F` as a left Kan extension of `F ⋙ tensorLeft (𝟙_ V)` along `tensorLeft (𝟙_ C)`. The unit of this Kan extension is composed exactly of the morphisms that appear in the [characterization of left unitors](https://leanprover-community.github.io/mathlib4_docs/Mathlib/CategoryTheory/Monoidal/DayConvolution.html#CategoryTheory.MonoidalCategory.DayConvolutionUnit.leftUnitor_hom_unit_app).
We also slightly generalize the instances that express that external products with unitors are left Kan extensions, so that they can be used when taking external products with more complicated functors than currently. This is again useful when chaining extensionality lemmas for morphisms out of terms of the form `(F ⊛ U) ⊛ G`.
We prove a similar thing for right unitors
With this, it should be possible to have a much more satisfactory way of working with Day convolutions: this allows to "elimiinate" units without ending up with terms in an external product.
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|
merge-conflict
t-category-theory
|
307/18 |
Mathlib/CategoryTheory/Functor/KanExtension/Basic.lean,Mathlib/CategoryTheory/Monoidal/DayConvolution.lean |
2 |
4 |
['github-actions', 'leanprover-community-bot-assistant', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
356-54170 11 months ago |
356-54171 356 days ago |
0-1812 30 minutes |
| 27150 |
robin-carlier author:robin-carlier |
feat(CategoryTheory/Monoidal/DayConvolution): constructors for braided and symmetric structure on day convolutions monoidal categories |
Following the pattern in #27119, we give API to construct `BraidedCategory` and `SymmetricCategory` structures on a monoidal
category equipped with a `LawfulDayConvolutionMonoidalCategoryStruct`. To achieve this, we introduce an other type class
`LawfulDayConvolutionBraidedCategoryStruct` that bundles an associator isomorphism that behaves like the one constructed for functors in #27067.
We provide a noncomputable constructor for this typeclass that takes as input fullness of the "realization" functor to a category of functors, and we show that the typeclasses are sufficient to define the desired structures.
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-category-theory
|
826/9 |
Mathlib/CategoryTheory/Monoidal/DayConvolution.lean,Mathlib/CategoryTheory/Monoidal/DayConvolution/Braided.lean |
2 |
5 |
['github-actions', 'leanprover-community-bot-assistant', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
356-49209 11 months ago |
411-78904 411 days ago |
0-1002 16 minutes |
| 27119 |
robin-carlier author:robin-carlier |
feat(CategoryTheory/Monoidal/DayConvolution): constructors for closed monoidal day convolution monoidal structures |
Following the pattern introduced in #26798 and #26820 and using results of #26879, we introduce a typeclass
`LawfulDayConvolutionClosedMonoidalCategoryStruct` that encodes the data needed on a `LawfulDayConvolutionMonoidalCategoryStruct` to define well-behaved internal homs. We give a constructor assuming existence of relevant ends, and prove that this data defines a `MonoidalClosed` instance on the monoidal category structures one can deduce from `LawfulDayConvolutionMonoidalCategoryStruct`.
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-category-theory
|
900/9 |
Mathlib/CategoryTheory/Monoidal/DayConvolution.lean,Mathlib/CategoryTheory/Monoidal/DayConvolution/Closed.lean |
2 |
6 |
['github-actions', 'leanprover-community-bot-assistant', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
355-63060 11 months ago |
412-84372 412 days ago |
0-1 1 second |
| 28623 |
gilesgshaw author:gilesgshaw |
feat(Logic/Basic): minor additions and simplification of proofs |
Add new theorems and simplify proofs.
Specifically, we add the family of related theorems `apply_dite_iff_exists`, `apply_dite_iff_forall`, `apply_ite_iff_and` and `apply_ite_iff_or`.
For each other 'family' of theorems in the file that is analogous to the above, we do the following
- Simplify proofs where possible, e.g. by appealing to the new theorems
- Complete the family, if any of the corresponding four are missing
- Rename to ensure consistency with the above pattern
---
|
merge-conflict
t-logic
new-contributor
|
83/55 |
Archive/Examples/IfNormalization/Result.lean,Archive/Examples/IfNormalization/WithoutAesop.lean,Mathlib/Algebra/ContinuedFractions/Computation/Translations.lean,Mathlib/Algebra/MvPolynomial/Variables.lean,Mathlib/Algebra/Notation/Indicator.lean,Mathlib/LinearAlgebra/Matrix/Rank.lean,Mathlib/Logic/Basic.lean,Mathlib/MeasureTheory/Measure/WithDensity.lean,Mathlib/SetTheory/Ordinal/Notation.lean |
9 |
12 |
['eric-wieser', 'gilesgshaw', 'github-actions', 'mathlib4-merge-conflict-bot', 'plp127'] |
awainverse assignee:awainverse |
355-56921 11 months ago |
355-56922 355 days ago |
10-61840 10 days |
| 26154 |
ADedecker author:ADedecker |
refactor: add refactored APIs for algebraic filter bases |
This PR continues the work from #18437.
Original PR: https://github.com/leanprover-community/mathlib4/pull/18437 |
merge-conflict
t-topology
|
651/0 |
Mathlib.lean,Mathlib/Topology/Algebra/FilterBasis.lean,Mathlib/Topology/Algebra/FilterBasisNew.lean,Mathlib/Topology/Algebra/Nonarchimedean/Bases.lean,Mathlib/Topology/Algebra/Nonarchimedean/BasesNew.lean |
5 |
3 |
['ADedecker', 'github-actions', 'mathlib4-merge-conflict-bot'] |
PatrickMassot assignee:PatrickMassot |
349-69165 11 months ago |
349-69166 349 days ago |
87-79752 87 days |
| 29330 |
plp127 author:plp127 |
chore: define `Fin.cycleIcc` with conditions |
Redefine `Fin.cycleIcc` using conditionals instead of composing existing `Fin` operations together. Its worst-case runtime drops from O(n) to O(1). As a bonus, the definition no longer needs explaining.
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merge-conflict
t-group-theory
|
61/68 |
Mathlib/GroupTheory/Perm/Fin.lean |
1 |
10 |
['JovanGerb', 'eric-wieser', 'github-actions', 'mathlib4-merge-conflict-bot', 'plp127', 'tb65536'] |
nobody |
340-80762 11 months ago |
340-80763 340 days ago |
19-81030 19 days |
| 21950 |
erdOne author:erdOne |
feat(NumberTheory/Padics): the completion of `ℚ` at a finite place is `ℚ_[p]` |
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|
merge-conflict
t-number-theory
|
253/1 |
Mathlib.lean,Mathlib/Algebra/GroupWithZero/WithZero.lean,Mathlib/NumberTheory/Padics/HeightOneSpectrum.lean,Mathlib/NumberTheory/Padics/PadicNumbers.lean,Mathlib/Topology/Algebra/Valued/WithVal.lean,Mathlib/Topology/Algebra/WithZeroMulInt.lean,Mathlib/Topology/Algebra/WithZeroTopology.lean |
7 |
33 |
['Ruben-VandeVelde', 'erdOne', 'faenuccio', 'github-actions', 'leanprover-community-bot-assistant', 'pechersky', 'smmercuri', 'xroblot'] |
nobody |
338-55872 11 months ago |
419-55809 419 days ago |
73-10883 73 days |
| 27214 |
robin-carlier author:robin-carlier |
feat(CategoryTheory/Limits/Shapes/Pullback/Categorical): Categorical pullback squares |
In this PR, we give the definition and first basic properties of categorical pullback squares.
Using our previous work on `CategoricalPullback`, we define a typeclass `CatPullbackSquare T L R B` that asserts that a given `CatCommSq T L R B` is a "pullback square": this is the data of a chosen adjoint equivalence to the canonical functor from the top left corner of the square to the categorical pulback of its leg. Using this equivalence, be derive a universal property for functors from `X`with values in the top left corner of the square: they are equivalent to `CatCommSqOver R B X`, the category of categorical commutative squares over the cospan `R, B` with top left corner `X`.
We prove some coherence result for this equivalence, most notably an isomorphism that, given `S : CatCommSqOver R B X`, bundles the two commutative triangles formed by the induced functor, and the coherence between the squares that these isomorphisms satisfy: this is conveniently bundled in the data of a single isomorphisms of `CatCommSqOver R B X`.
Finally, we provide a `Prop`-class `IsCatPullbackSquare` that merely asserts the existence (via `Nonempty`) of the relevant data: we show that it is tautotogically equivalent to the propopsition that the canonical functor to the categorical pullback is an equivalence.
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|
merge-conflict
t-category-theory
|
786/1 |
Mathlib.lean,Mathlib/CategoryTheory/Limits/Shapes/Pullback/Categorical/Basic.lean,Mathlib/CategoryTheory/Limits/Shapes/Pullback/Categorical/Square.lean |
3 |
3 |
['github-actions', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
335-45954 11 months ago |
335-45955 335 days ago |
0-4413 1 hour |
| 26466 |
robin-carlier author:robin-carlier |
feat(AlgebraicTopology/SimplexCategory/Augmented): the canonical monoid object in the augmented simplex category |
Show that in the augmented simplex category, `⦋0⦌` is an internal monoid object.
Future work will show that this is in fact the universal monoid object: for any monoidal category `C`, evaluation at `⦋0⦌` induces an equivalence of categories between `Mon_ C` and the category of monoidal functors from `AugmentedSimplexCategory` to `C`. The resulting augmented cosimplicial object one gets from this construction is sometimes called the "monoidal bar construction" attached to a monoid.
This PR was split from #25743.
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|
merge-conflict
t-algebraic-topology
t-category-theory
|
571/111 |
Mathlib.lean,Mathlib/AlgebraicTopology/SimplexCategory/Augmented.lean,Mathlib/AlgebraicTopology/SimplexCategory/Augmented/Basic.lean,Mathlib/AlgebraicTopology/SimplexCategory/Augmented/Mon_.lean,Mathlib/AlgebraicTopology/SimplexCategory/Augmented/Monoidal.lean,Mathlib/AlgebraicTopology/SimplexCategory/Basic.lean |
6 |
4 |
['github-actions', 'leanprover-community-bot-assistant', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
334-65356 11 months ago |
429-72640 429 days ago |
0-1708 28 minutes |
| 26578 |
robin-carlier author:robin-carlier |
feat(CategoryTheory/Limits/Pullbacks/Categorical/CatCospanTransform): adjunctions of categorical cospans |
We build upon the bicategory-like structure developed in #26447 and #26412 to define the notion of adjunctions of categorical cospans. This is a structure encoding the data of two `CatCospanTransform`s, along with the usual unit and counit morphisms as part of the data, satisfying the usual left and right triangle identities. We provide basic API for these, such as extracting adjunctions between individual components. We also provide a proof that the notion satisfies a "coherence": with our chosen constructor, the forward direction of the structure `CatCommSq` on the left adjoints correspond to the inverse of the square for the right adjoints through `mateEquiv`.
These adjunctions will be used as a substrate for defining equivalences of categorical cospans in a future PR: such an equivalence will be a structure extending a `CatCospanAdjunction` with isomorphisms data on the unit and co-unit (we will however provide alternative constructors in sync with the constructor for equivalences of categories).
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-category-theory
large-import
|
205/0 |
Mathlib/CategoryTheory/Limits/Shapes/Pullback/Categorical/CatCospanTransform.lean |
1 |
5 |
['github-actions', 'leanprover-community-bot-assistant', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
333-68581 10 months ago |
425-77753 425 days ago |
0-625 10 minutes |
| 23621 |
astrainfinita author:astrainfinita |
chore: deprecate `LinearOrderedComm{Monoid, Group}WithZero` |
---
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[](https://gitpod.io/from-referrer/)
- [x] depends on: #20676
|
merge-conflict
t-algebra
t-order
label:t-algebra$ |
261/205 |
Archive/Imo/Imo1998Q2.lean,Counterexamples/LinearOrderWithPosMulPosEqZero.lean,Mathlib/Algebra/Order/Field/Canonical.lean,Mathlib/Algebra/Order/Field/Rat.lean,Mathlib/Algebra/Order/Floor/Ring.lean,Mathlib/Algebra/Order/GroupWithZero/Canonical.lean,Mathlib/Algebra/Order/GroupWithZero/Finset.lean,Mathlib/Algebra/Order/Hom/Monoid.lean,Mathlib/Algebra/Order/Nonneg/Field.lean,Mathlib/Algebra/Order/Nonneg/Ring.lean,Mathlib/Algebra/Order/Ring/Nat.lean,Mathlib/Combinatorics/Additive/PluenneckeRuzsa.lean,Mathlib/Combinatorics/SimpleGraph/Triangle/Basic.lean,Mathlib/Data/ENNReal/Basic.lean,Mathlib/Data/NNRat/Lemmas.lean,Mathlib/Data/NNReal/Defs.lean,Mathlib/Data/Rat/Cast/Order.lean,Mathlib/FieldTheory/IntermediateField/Adjoin/Defs.lean,Mathlib/FieldTheory/RatFunc/AsPolynomial.lean,Mathlib/GroupTheory/ArchimedeanDensely.lean,Mathlib/NumberTheory/EllipticDivisibilitySequence.lean,Mathlib/NumberTheory/FunctionField.lean,Mathlib/NumberTheory/Ostrowski.lean,Mathlib/RingTheory/Valuation/Archimedean.lean,Mathlib/RingTheory/Valuation/Basic.lean,Mathlib/RingTheory/Valuation/ExtendToLocalization.lean,Mathlib/RingTheory/Valuation/Integers.lean,Mathlib/RingTheory/Valuation/Integral.lean,Mathlib/RingTheory/Valuation/Minpoly.lean,Mathlib/RingTheory/Valuation/Quotient.lean,Mathlib/RingTheory/Valuation/RankOne.lean,Mathlib/RingTheory/Valuation/ValExtension.lean,Mathlib/RingTheory/Valuation/ValuationRing.lean,Mathlib/RingTheory/Valuation/ValuationSubring.lean,Mathlib/SetTheory/Cardinal/Order.lean,Mathlib/Topology/Algebra/Valued/LocallyCompact.lean,Mathlib/Topology/Algebra/Valued/NormedValued.lean,Mathlib/Topology/Algebra/Valued/ValuationTopology.lean,Mathlib/Topology/Algebra/Valued/ValuedField.lean,Mathlib/Topology/Algebra/Valued/WithVal.lean,Mathlib/Topology/Algebra/WithZeroTopology.lean,Mathlib/Topology/UnitInterval.lean,MathlibTest/instance_diamonds.lean,scripts/noshake.json |
44 |
24 |
['YaelDillies', 'astrainfinita', 'github-actions', 'grunweg', 'leanprover-bot', 'leanprover-community-bot-assistant', 'mathlib4-dependent-issues-bot'] |
kbuzzard assignee:kbuzzard |
330-50296 10 months ago |
501-22669 501 days ago |
5-42380 5 days |
| 27990 |
kckennylau author:kckennylau |
feat(Counterexamples): a nontrivial valuation with discrete topology |
This file constructs a valuation on `K[X]` satisfying `IsValuativeTopology K[X] ∧ Nonempty (valuation K[X]).RankOne ∧ IsNontrivial K[X] ∧ DiscreteTopology K[X]`, and proves that `IsValuativeTopology F ∧ IsNontrivial F ∧ DiscreteTopology F` is not possible if `F` is a field.
---
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|
merge-conflict
t-ring-theory
|
172/0 |
Counterexamples.lean,Counterexamples/DiscreteTopologyWithNontrivialValuation.lean |
2 |
14 |
['github-actions', 'grunweg', 'kckennylau', 'mathlib4-merge-conflict-bot', 'pechersky'] |
nobody |
322-52427 10 months ago |
322-52428 322 days ago |
67-79609 67 days |
| 28132 |
dupuisf author:dupuisf |
feat: preliminary `grind` tags for `IsUnit` |
This PR adds preliminary `grind` tags for the `IsUnit` predicate.
---
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|
merge-conflict
t-algebra
label:t-algebra$ |
61/17 |
Mathlib/Algebra/Group/Action/Units.lean,Mathlib/Algebra/Group/Units/Defs.lean,Mathlib/Algebra/GroupWithZero/Units/Basic.lean,Mathlib/Algebra/Ring/Units.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Order.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/Rpow/Basic.lean |
6 |
3 |
['github-actions', 'mathlib4-merge-conflict-bot'] |
kim-em assignee:kim-em |
299-29025 9 months ago |
299-29026 299 days ago |
80-71575 80 days |
| 26827 |
pechersky author:pechersky |
feat(Analysis/Normed/ValuativeRel): helper instance for NormedField |
---
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- [x] depends on: #26713
- [x] depends on: #26826
|
merge-conflict
t-algebra
t-number-theory
t-analysis
label:t-algebra$ |
211/27 |
Mathlib.lean,Mathlib/Analysis/Normed/ValuativeRel.lean,Mathlib/Topology/Algebra/Valued/ValuativeRel.lean |
3 |
34 |
['ADedecker', 'adamtopaz', 'erdOne', 'github-actions', 'kbuzzard', 'kckennylau', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot', 'pechersky'] |
kbuzzard assignee:kbuzzard |
291-57629 9 months ago |
291-57629 291 days ago |
122-66777 122 days |
| 24850 |
pechersky author:pechersky |
feat(Topology/UniformSpace/Ultra): uniform spaces induced by pseudometrics are ultra if system is ultra |
Any uniform space has a natural system of pseudometrics definable on it,
comprised of those pseudometrics constructed from a descending chain of
equivalence relation entourages. In a nonarchimedean uniformity, this pseudometric system
induces the uniformity.
---
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- [x] depends on: #23111 |
merge-conflict
t-topology
|
509/1 |
Mathlib.lean,Mathlib/Topology/MetricSpace/BundledFun.lean,Mathlib/Topology/UniformSpace/Ultra/Pseudometrizable.lean |
3 |
9 |
['ADedecker', 'fpvandoorn', 'github-actions', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot', 'pechersky'] |
urkud assignee:urkud |
284-80116 9 months ago |
284-80117 284 days ago |
177-42975 177 days |
| 26914 |
quangvdao author:quangvdao |
feat(Data/PFunctor/Univariate): more definitions for univariate `PFunctor` |
This PR defines several basic definitions of `PFunctor`, including zero, one, constants, monomials, coproduct (sum), product, sigma, pi, tensor product, universe lifting, and equivalence.
We also add: (1) simple lemmas connecting the basic definitions, (2) an automatically derived ext lemma for `PFunctor` via `@[ext]` attribute
Some things I'm not clear on:
- I define `HAdd` and `HMul` instances for coproduct and product of poly functors having different universe levels. Should I also define `Add` and `Mul` instances for poly functors having the same universe level?
- Is it ok to define notation for tensor product, i.e. `@[inherit_doc] scoped infixr:80 " ⊗ " => tensor`? I'm worried it might clash with other notation.
- Need a double-check on the priority of notation.
Some future definitions to add:
- Various equivalences arising from arithmetic identities, e.g., `P + 0 ≃ₚ P`.
- Definitions of Lenses and Charts (each of them will be a file or even a folder)
- Exponential objects (corresponding to both `prod` and `tensor`)
---
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|
merge-conflict
t-data
|
144/5 |
Mathlib/Data/PFunctor/Univariate/Basic.lean |
1 |
20 |
['alexkeizer', 'eric-wieser', 'github-actions', 'mathlib4-merge-conflict-bot', 'quangvdao'] |
eric-wieser assignee:eric-wieser |
284-79594 9 months ago |
284-79595 284 days ago |
133-24576 133 days |
| 28125 |
nonisomorphiclinearmap author:nonisomorphiclinearmap |
feat(Combinatorics): basic definition of simplicial complexes |
This PR introduces the basic definition of a finite (abstract) simplicial complex, located in Mathlib/Combinatorics/SimplicialComplex/Basic.lean.
---
This is our first contribution to mathlib. This work was done as part of the Fields Institute Summer Undergraduate Program on formalization in topological combinatorics. Eventually, we aim to formalize Lovasz's proof of the Kneser Conjecture and this is a small stepping stone in that direction. Some other commits will shortly depend on this one.
We would like to acknowledge the Fields Institute for Research in Mathematical Sciences for their sponsorship. We would also like to thank our supervisors, Professor Chris Kapulkin and Mr. Daniel Carranza, for their guidance and support throughout this project. We would also like to thank our group members Tom Lindquist and Quang Minh Nguyen for our fruitful discussions. |
merge-conflict
t-combinatorics
new-contributor
|
374/0 |
Mathlib.lean,Mathlib/Combinatorics/SimplicialComplex/Basic.lean,Mathlib/Combinatorics/SimplicialComplex/Category.lean,Mathlib/Combinatorics/SimplicialComplex/FacePoset.lean,Mathlib/Combinatorics/SimplicialComplex/Hom.lean |
5 |
2 |
['github-actions', 'mathlib4-merge-conflict-bot'] |
awainverse assignee:awainverse |
284-79289 9 months ago |
284-79290 284 days ago |
99-62977 99 days |
| 28871 |
JaafarTanoukhi author:JaafarTanoukhi |
feat(Combinatorics/Digraph): Tournaments |
Define orientations and tournaments. Related to #26771.
Co-authored-by: Rida Hamadani <mridahamadani@gmail.com>
---
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|
merge-conflict
t-combinatorics
new-contributor
|
62/0 |
Mathlib.lean,Mathlib/Combinatorics/Digraph/Orientation.lean,Mathlib/Combinatorics/Digraph/Tournament.lean |
3 |
6 |
['JaafarTanoukhi', 'Rida-Hamadani', 'SnirBroshi', 'github-actions', 'mathlib4-merge-conflict-bot'] |
kmill assignee:kmill |
284-79136 9 months ago |
284-79137 284 days ago |
71-37436 71 days |
| 29526 |
llllvvuu author:llllvvuu |
feat: `Multiset.map f` identifies `f` up to permutation |
Motivation: Reason about `Fintype`-indexed families via `Multiset` equality.
Example use case 1:
```lean
theorem Matrix.IsHermitian.cfc_eigenvalues {d : Type*} [Fintype d] [DecidableEq d]
{M : Matrix d d 𝕜} (hM : M.IsHermitian) (f : ℝ → ℝ)
(hcfc : Matrix.IsHermitian (cfc f M) := cfc_predicate f M) :
∃ (e : d ≃ d), hcfc.eigenvalues = f ∘ hM.eigenvalues ∘ e := by
have := hcfc.roots_charpoly_eq_eigenvalues.symm
rw [hM.charpoly_cfc_eq f, Polynomial.roots_prod] at this; swap
· simp [Finset.prod_ne_zero_iff, Polynomial.X_sub_C_ne_zero]
simp_rw [Polynomial.roots_X_sub_C, Multiset.bind_singleton] at this
have he := (Multiset.compTriple_equivOfMapUnivEq this).comp_eq
simp_rw [← Function.comp_def RCLike.ofReal, ← Function.comp_def f, Function.comp_assoc] at he
exact ⟨_, RCLike.ofReal_injective.comp_left he.symm⟩
```
Example use case 2 (on top of https://github.com/leanprover-community/mathlib4/pull/29610):
```lean
theorem LinearMap.Eigenbasis.μ_equiv {ι ι' R G : Type*} [Fintype ι] [Fintype ι']
[CommRing R] [IsDomain R] [AddCommGroup G] [Module R G] [Module.Free R G] [Module.Finite R G]
{f : Module.End R G} (B₁ : f.Eigenbasis ι) (B₂ : f.Eigenbasis ι') :
∃ e : ι ≃ ι', B₁.μ = B₂.μ ∘ e := by
classical
have := congr(Polynomial.roots $(B₁.charpoly_eq.symm.trans B₂.charpoly_eq))
rw [Polynomial.roots_prod, Polynomial.roots_prod] at this; rotate_left
· simp [Finset.prod_ne_zero_iff, Polynomial.X_sub_C_ne_zero]
· simp [Finset.prod_ne_zero_iff, Polynomial.X_sub_C_ne_zero]
simp_rw [Polynomial.roots_X_sub_C, Multiset.bind_singleton] at this
exact ⟨Multiset.equivOfMapUnivEq this, (Multiset.compTriple_equivOfMapUnivEq this).comp_eq.symm⟩
```
Co-authored-by: Aristotle Harmonic <aristotle-harmonic@harmonic.fun>
---
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|
merge-conflict
t-data
|
35/0 |
Mathlib/Data/Multiset/Fintype.lean |
1 |
9 |
['Ruben-VandeVelde', 'github-actions', 'llllvvuu', 'mathlib4-merge-conflict-bot', 'vihdzp', 'wwylele'] |
pechersky assignee:pechersky |
284-79098 9 months ago |
284-79099 284 days ago |
69-23034 69 days |
| 29947 |
JaafarTanoukhi author:JaafarTanoukhi |
feat(Combinatorics/Digraph): Maps |
Ported `SimpleGraph/Maps.lean` to `Digraph/Maps.lean` for future PRs related to issue #[26771](https://github.com/leanprover-community/mathlib4/issues/26771)
---
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merge-conflict
t-combinatorics
new-contributor
|
476/0 |
Mathlib.lean,Mathlib/Combinatorics/Digraph/Maps.lean |
2 |
2 |
['github-actions', 'mathlib4-merge-conflict-bot'] |
awainverse assignee:awainverse |
284-78502 9 months ago |
284-78503 284 days ago |
54-85998 54 days |
| 31356 |
adomani author:adomani |
feat: add inspect-like functions |
Produces a tree-like formatting for `Syntax`, `Expr` and `InfoTree`. Especially for the `InfoTree`s, there are *many* parts of it that do not get printed.
For instance, this is how the `InfoTree`s of `set_option linter.missingDocs true` get printed:
```lean
inspectIT
set_option linter.missingDocs true
/-
commandCtx
|-Info.ofCommandInfo: Lean.Elab.Command.elabSetOption, 'set_option…gDocs true'
| |-Info.ofCompletionInfo.CompletionInfo.option 'set_option…issingDocs'
| |-Info.ofOptionInfo: linter.missingDocs, Linter.linter.missingDocs
-/
```
---
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|
merge-conflict
t-meta
|
720/0 |
Mathlib.lean,Mathlib/Util/Inspect.lean,MathlibTest/Inspect.lean |
3 |
3 |
['github-actions', 'mathlib4-merge-conflict-bot', 'plp127'] |
kim-em assignee:kim-em |
284-73523 9 months ago |
284-73524 284 days ago |
11-62509 11 days |
| 6993 |
jjaassoonn author:jjaassoonn |
feat: lemmas about `AddMonoidAlgebra.{divOf, modOf}` |
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|
merge-conflict
t-algebra
label:t-algebra$ |
147/3 |
Mathlib/Algebra/MonoidAlgebra/Division.lean,Mathlib/Data/Finsupp/Basic.lean,Mathlib/Data/MvPolynomial/Basic.lean,Mathlib/Data/MvPolynomial/CommRing.lean,Mathlib/Data/MvPolynomial/Division.lean |
5 |
42 |
['YaelDillies', 'alreadydone', 'digama0', 'eric-wieser', 'github-actions', 'jjaassoonn'] |
nobody |
284-52447 9 months ago |
954-57200 954 days ago |
103-330 103 days |
| 9339 |
FMLJohn author:FMLJohn |
feat(RingTheory/GradedAlgebra/HomogeneousIdeal): given a finitely generated homogeneous ideal of a graded semiring, construct a finite spanning set for the ideal which only contains homogeneous elements |
---
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- [ ] depends on: #8187
[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-ring-theory
|
402/4 |
Mathlib.lean,Mathlib/Algebra/DirectSum/Internal.lean,Mathlib/Algebra/GradedMonoid.lean,Mathlib/Algebra/Module/GradeZeroModule.lean,Mathlib/RingTheory/Finiteness.lean,Mathlib/RingTheory/GradedAlgebra/Basic.lean,Mathlib/RingTheory/GradedAlgebra/HomogeneousIdeal.lean,Mathlib/RingTheory/GradedAlgebra/Noetherian.lean |
8 |
11 |
['FMLJohn', 'github-actions', 'jjaassoonn'] |
nobody |
284-52400 9 months ago |
968-57378 968 days ago |
6-63597 6 days |
| 10349 |
Shamrock-Frost author:Shamrock-Frost |
refactor(CategoryTheory/MorphismProperty): some clean-ups |
We make explicit some of the galois connections/closure operators in the existing MorphismProperty file, rewrite some proofs to take advantage of these structures, and change map/inverseImage by (1) swapping their argument order, for consistency with Set.range and Set.preimage and (2) making "map" perform the strict, evil map while "essMap" (previously called map) forms the closure of the image under isomorphisms. Finally we add `IsMultiplicative` instances for isos/epis/monos, with an eye towards constructing the wide subcategory on these classes of maps.
---
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- [x] depends on: #10347
- [x] depends on: #10348
[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-category-theory
|
474/318 |
Mathlib/CategoryTheory/Localization/Composition.lean,Mathlib/CategoryTheory/Localization/LocalizerMorphism.lean,Mathlib/CategoryTheory/MorphismProperty.lean,Mathlib/Data/Set/Lattice.lean,Mathlib/Order/Closure.lean,Mathlib/Order/Hom/Basic.lean,Mathlib/Order/Hom/CompleteLattice.lean,Mathlib/Order/RelIso/Basic.lean |
8 |
1 |
[] |
nobody |
284-52358 9 months ago |
935-21102 935 days ago |
0-418 6 minutes |
| 26890 |
robin-carlier author:robin-carlier |
feat(CategoryTheory/Monoidal/DayConvolution): more API for `DayFunctor` |
We provide some lemmas that helps characterizing the monoidal structure on `DayFunctor`, they are special cases of the lemmas for `LawfulDayConvolutionMonoidalCategoryStruct`.
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|
merge-conflict
t-category-theory
|
1372/19 |
Mathlib.lean,Mathlib/CategoryTheory/Functor/KanExtension/Basic.lean,Mathlib/CategoryTheory/Monoidal/DayConvolution.lean,Mathlib/CategoryTheory/Monoidal/DayConvolution/DayFunctor.lean |
4 |
5 |
['github-actions', 'leanprover-community-bot-assistant', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
284-51750 9 months ago |
418-76759 418 days ago |
0-517 8 minutes |
| 24016 |
plp127 author:plp127 |
feat: fine uniformity |
Adds the fine uniformity, and proves some properties.
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-topology
|
283/0 |
Mathlib.lean,Mathlib/Topology/UniformSpace/FineUniformity.lean,Mathlib/Topology/UniformSpace/Uniformizable.lean |
3 |
3 |
['github-actions', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
279-12117 9 months ago |
501-20867 501 days ago |
2-85309 2 days |
| 26912 |
pechersky author:pechersky |
chore(Algebra/Ring/Subring): simp tag `Subring.smul_def` |
s-multiplying by a subtype is easiest to manipulate when both terms are in the ambient type. Many places that had to use the _def lemma for a rewrite, or to include it in a simp set, no longer have to.
Ported from #25308
---
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I found this being not-simp frustrating when talking about submodules over a valuation subring. |
merge-conflict
t-algebra
label:t-algebra$ |
67/66 |
Mathlib/Algebra/Algebra/Subalgebra/Basic.lean,Mathlib/Algebra/Field/Subfield/Basic.lean,Mathlib/Algebra/Group/Subgroup/Actions.lean,Mathlib/Algebra/Group/Submonoid/MulAction.lean,Mathlib/Algebra/Module/LocalizedModule/Basic.lean,Mathlib/Algebra/Module/LocalizedModule/Exact.lean,Mathlib/Algebra/Module/LocalizedModule/IsLocalization.lean,Mathlib/Algebra/Module/LocalizedModule/Submodule.lean,Mathlib/Algebra/Ring/Periodic.lean,Mathlib/Algebra/Ring/Subring/Basic.lean,Mathlib/Algebra/Ring/Subsemiring/Basic.lean,Mathlib/Analysis/CStarAlgebra/Basic.lean,Mathlib/FieldTheory/KummerExtension.lean,Mathlib/GroupTheory/GroupAction/Defs.lean,Mathlib/GroupTheory/GroupAction/MultiplePrimitivity.lean,Mathlib/GroupTheory/GroupAction/MultipleTransitivity.lean,Mathlib/GroupTheory/GroupAction/SubMulAction/OfFixingSubgroup.lean,Mathlib/GroupTheory/GroupAction/SubMulAction/OfStabilizer.lean,Mathlib/LinearAlgebra/RootSystem/Irreducible.lean,Mathlib/LinearAlgebra/RootSystem/WeylGroup.lean,Mathlib/RingTheory/Etale/Kaehler.lean,Mathlib/RingTheory/Ideal/Over.lean,Mathlib/RingTheory/LocalProperties/Projective.lean,Mathlib/RingTheory/Localization/InvSubmonoid.lean,Mathlib/RingTheory/OreLocalization/Basic.lean |
25 |
26 |
['artie2000', 'eric-wieser', 'github-actions', 'j-loreaux', 'kckennylau', 'leanprover-bot', 'leanprover-radar', 'mathlib4-merge-conflict-bot', 'pechersky', 'wrenna-robson'] |
joelriou assignee:joelriou |
258-24901 8 months ago |
279-60850 279 days ago |
60-67125 60 days |
| 30375 |
sinhp author:sinhp |
feat(CategoryTheory): Basics of Locally Cartesian Closed Categories |
Supersedes https://github.com/leanprover-community/mathlib4/pull/22321
This PR defines locally cartesian closed categories in terms of existence of the pushforward functors (right adjoint to the pullback functor) for all morphisms. We develop basic API and prove the following:
1. Existence of the pushforward functors is equivalent to cartesian closed slices.
2. Any locally cartesian closed category with a terminal object is cartesian closed.
3. The slices of a locally cartesian closed category are locally cartesian closed.
---
- [ ] depends on: #31033
- [ ] depends on: #30373
- [ ] depends on: #31332
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|
t-category-theory
merge-conflict
|
703/0 |
Mathlib.lean,Mathlib/CategoryTheory/LocallyCartesianClosed/Basic.lean,Mathlib/CategoryTheory/LocallyCartesianClosed/ChosenPullbacksAlong.lean,Mathlib/CategoryTheory/LocallyCartesianClosed/ExponentiableMorphism.lean,Mathlib/CategoryTheory/LocallyCartesianClosed/Sections.lean |
5 |
9 |
['Jlh18', 'github-actions', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot', 'sinhp'] |
nobody |
237-46302 7 months ago |
325-52598 325 days ago |
0-2073 34 minutes |
| 29587 |
uniwuni author:uniwuni |
feat(GroupTheory/Finiteness): define finitely generated semigroups |
We define finitely generated semigroups and basics similarly to monoids and groups and prove that semigroups and monoids remain finitely generated when a congruence is quotiented out. This will be important when further developing semigroup theory.
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|
merge-conflict
t-group-theory
|
259/14 |
Mathlib/Algebra/Group/Submonoid/Defs.lean,Mathlib/GroupTheory/Finiteness.lean |
2 |
4 |
['github-actions', 'mathlib4-merge-conflict-bot', 'plp127', 'uniwuni'] |
dupuisf assignee:dupuisf |
224-67322 7 months ago |
326-72226 326 days ago |
25-78230 25 days |
| 29014 |
ShreckYe author:ShreckYe |
feat(Data/List/Scan): some theorems that relate `scanl` with `foldl` |
I am not sure which is the best form of `getElem_scanl_eq_foldl_take` here, so I added several alternative forms. Feel free to remove any of them if necessary. |
merge-conflict
t-data
|
35/0 |
Mathlib/Data/List/Scan.lean |
1 |
15 |
['ShreckYe', 'github-actions', 'mathlib4-merge-conflict-bot', 'themathqueen', 'vlad902'] |
pechersky assignee:pechersky |
220-46546 7 months ago |
294-11591 294 days ago |
74-62390 74 days |
| 9820 |
jjaassoonn author:jjaassoonn |
feat(RingTheory/GradedAlgebra/HomogeneousIdeal): generalize to homogeneous submodule |
The definitions, constructions and theorems in `HomogeneousIdeal.lean` are generalized to a homogeneous submodules.
So say $R$ is a ring and $M \cong \bigoplus_{i} M_i$ is an $R$-module. Then a homogeneous $R$-submodule of $M$ is an $R$-submodule $N$ such that for all $i$ and $n \in N$, $n_i \in N$. Note that this notion doesn't actually require $R$ to be graded and $M$ is a graded module. But for more interesting lemmas, we do need that $M$ is graded $R$-module. We bake the fact $R$ is graded into the definition of homogeneous submodule, otherwise, `CompleteLattice HomogeneousSubmodule` cannot find the order of synthesis (the proof depends on that $R$ is graded)
All definitions/constructions/theorems have a copy for ideals as well, this is to make sure dot notation still works.
The motivation of this generalization is graded quotient module
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|
merge-conflict
t-ring-theory
|
516/185 |
Mathlib/Algebra/Module/GradedModule.lean,Mathlib/AlgebraicGeometry/ProjectiveSpectrum/Scheme.lean,Mathlib/AlgebraicGeometry/ProjectiveSpectrum/Topology.lean,Mathlib/RingTheory/GradedAlgebra/Homogeneous/Ideal.lean,Mathlib/RingTheory/GradedAlgebra/Homogeneous/Submodule.lean,Mathlib/RingTheory/GradedAlgebra/Radical.lean,scripts/nolints_prime_decls.txt |
7 |
3 |
['github-actions', 'leanprover-community-bot-assistant'] |
nobody |
202-72975 6 months ago |
422-9816 422 days ago |
52-60628 52 days |
| 34931 |
eric-wieser author:eric-wieser |
perf: make TensorProduct.lift irreducible with a unification hint |
---
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t-algebra
merge-conflict
label:t-algebra$ |
6/2 |
Mathlib/LinearAlgebra/TensorProduct/Basic.lean |
1 |
7 |
['eric-wieser', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts'] |
erdOne assignee:erdOne |
199-40995 6 months ago |
199-40996 199 days ago |
5-66655 5 days |
| 33020 |
FormulaRabbit81 author:FormulaRabbit81 |
chore(Topology): Deprecate file |
---
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|
t-topology
large-import
merge-conflict
|
82/49 |
Mathlib/Topology/Compactness/HilbertCubeEmbedding.lean,Mathlib/Topology/MetricSpace/HausdorffAlexandroff.lean,Mathlib/Topology/MetricSpace/PiNat.lean |
3 |
3 |
['github-actions', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
197-17606 6 months ago |
256-4995 256 days ago |
0-14835 4 hours |
| 33281 |
michelsol author:michelsol |
feat(Analysis/SpecialFunctions/Integrals): integral of 1/sqrt(1-x^2) and its integrability. |
Add the integral of the derivative of arcsin and its integrability.
---
- [ ] depends on: #33280
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|
new-contributor
merge-conflict
t-analysis
|
59/0 |
Mathlib/Analysis/SpecialFunctions/Integrability/Basic.lean,Mathlib/Analysis/SpecialFunctions/Integrals/Basic.lean,Mathlib/MeasureTheory/Integral/IntervalIntegral/FundThmCalculus.lean |
3 |
3 |
['github-actions', 'mathlib-dependent-issues', 'mathlib4-merge-conflict-bot'] |
nobody |
196-72800 6 months ago |
248-40625 248 days ago |
0-2872 47 minutes |
| 34156 |
zcyemi author:zcyemi |
feat(Analysis/Convex/Between): add lemmas on convex combination of mem simplex interior |
---
I add three lemmas of convex combinations preserving membership in the interior of a simplex.
And also open a zulip thread [#mathlib4 > Best place for convex combination and simplex interior](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Best.20place.20for.20convex.20combination.20and.20simplex.20interior/with/568558406)
deps:
- [ ] depends on: #33852 |
t-analysis
merge-conflict
|
170/0 |
Mathlib/Analysis/Convex/Between.lean,Mathlib/LinearAlgebra/AffineSpace/Independent.lean |
2 |
3 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
196-48717 6 months ago |
196-48717 196 days ago |
0-2935 48 minutes |
| 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
merge-conflict
|
218/144 |
Mathlib/Algebra/Group/Subgroup/Basic.lean,Mathlib/Algebra/Group/Subgroup/Ker.lean,Mathlib/Algebra/Group/Submonoid/Operations.lean,Mathlib/Algebra/Ring/Action/Submonoid.lean,Mathlib/GroupTheory/FiniteAbelian/Duality.lean,Mathlib/GroupTheory/GroupAction/Defs.lean,Mathlib/GroupTheory/MonoidLocalization/Basic.lean,Mathlib/GroupTheory/MonoidLocalization/Maps.lean,Mathlib/GroupTheory/MonoidLocalization/MonoidWithZero.lean,Mathlib/GroupTheory/PGroup.lean,Mathlib/GroupTheory/QuotientGroup/Basic.lean,Mathlib/GroupTheory/Transfer.lean,Mathlib/LinearAlgebra/RootSystem/WeylGroup.lean,Mathlib/NumberTheory/NumberField/CMField.lean,Mathlib/NumberTheory/NumberField/Ideal/Basic.lean,Mathlib/RingTheory/Localization/Defs.lean |
16 |
8 |
['copilot-pull-request-reviewer', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
194-22844 6 months ago |
194-22844 194 days ago |
4-79090 4 days |
| 33795 |
alreadydone author:alreadydone |
feat(Topology/Sheaves): LocalPredicate prerequisite for étalé spaces |
---
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[](https://gitpod.io/from-referrer/)
|
t-topology
merge-conflict
|
418/143 |
Mathlib/AlgebraicGeometry/ProjectiveSpectrum/StructureSheaf.lean,Mathlib/Geometry/Manifold/Sheaf/Smooth.lean,Mathlib/Logic/Equiv/Basic.lean,Mathlib/Topology/Sheaves/LocalPredicate.lean,Mathlib/Topology/Sheaves/Sheafify.lean,Mathlib/Topology/Sheaves/Stalks.lean |
6 |
12 |
['adamtopaz', 'alreadydone', 'dagurtomas', 'github-actions', 'mathlib-merge-conflicts'] |
adamtopaz assignee:adamtopaz |
194-478 6 months ago |
194-479 194 days ago |
34-16498 34 days |
| 34674 |
Citronhat author:Citronhat |
feat(Algebra/Order/Ring): replace ENNReal lemmas with WithTop versions |
* Add `WithTop` versions of basic multiplicative order lemmas.
* Use the new `WithTop` lemmas to replace `ENNReal` proofs and address six TODOs.
* Fix a typo in the `pos_of_ne_zero` alias name. |
new-contributor
t-algebra
merge-conflict
label:t-algebra$ |
46/15 |
Mathlib/Algebra/Order/Monoid/Canonical/Defs.lean,Mathlib/Algebra/Order/Ring/WithTop.lean,Mathlib/Data/ENNReal/Operations.lean |
3 |
5 |
['Citronhat', 'Ruben-VandeVelde', 'github-actions', 'mathlib-merge-conflicts'] |
Ruben-VandeVelde assignee:Ruben-VandeVelde |
193-66748 6 months ago |
193-66749 193 days ago |
17-1225 17 days |
| 33746 |
ster-oc author:ster-oc |
feat(Algebra/Module/ZLattice): align `ZSpan.floor` to `Int.floor` API |
This PR adds some of the existent lemmas about `Int.floor`, `Int.ceil` and `Int.fract` to the `ZSpan` namespace.
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
merge-conflict
label:t-algebra$ |
353/145 |
Mathlib/Algebra/Module/ZLattice/Basic.lean,Mathlib/Algebra/Order/Floor/Ring.lean,Mathlib/Topology/Algebra/Order/Floor.lean |
3 |
8 |
['github-actions', 'joelriou', 'mathlib-merge-conflicts', 'ster-oc'] |
joelriou assignee:joelriou |
188-83646 6 months ago |
188-83646 188 days ago |
30-23357 30 days |
| 33791 |
PhoenixIra author:PhoenixIra |
feat: Generalization of FixedPointApproximants to CompletePartialOrder |
---
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This PR provides a generalization of FixedPointApproximants to CompletePartialOrder. Not every theorem can be generalized, as sometimes we require additional conditions (namely `x ≤ f x`) in order to guarantee that the set is directed and thus the supremum is well-defined. This is not necessary in a CompleteLattice.
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-order
merge-conflict
|
223/100 |
Mathlib/Order/CompletePartialOrder.lean,Mathlib/SetTheory/Ordinal/FixedPointApproximants.lean |
2 |
21 |
['PhoenixIra', 'github-actions', 'mathlib-merge-conflicts', 'vihdzp'] |
PhoenixIra and vihdzp assignee:PhoenixIra assignee:vihdzp |
184-33980 6 months ago |
184-33980 184 days ago |
38-12430 38 days |
| 26942 |
pechersky author:pechersky |
feat(RingTheory/Valuation/ValueGroupIso): isomorphism of value groups when compatible |
and also to the ValuativeRel's value group
by request from comment in
https://github.com/leanprover-community/mathlib4/pull/26754#issuecomment-3051770901
- [ ] depends on: #26588
---
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[](https://gitpod.io/from-referrer/)
- [x] depends on: #26939
- [x] depends on: #26940
- [x] depends on: #26941 |
merge-conflict
t-ring-theory
t-order
|
299/3 |
Mathlib.lean,Mathlib/Algebra/GroupWithZero/Range.lean,Mathlib/Algebra/Order/GroupWithZero/Range.lean,Mathlib/Algebra/Order/GroupWithZero/WithZero.lean,Mathlib/Algebra/Order/Monoid/WithTop.lean,Mathlib/RingTheory/Valuation/ValueGroupIso.lean |
6 |
10 |
['faenuccio', 'github-actions', 'mathlib-dependent-issues', 'mathlib4-merge-conflict-bot', 'pechersky'] |
faenuccio assignee:faenuccio |
181-64561 5 months ago |
381-49971 381 days ago |
10-67838 10 days |
| 14712 |
astrainfinita author:astrainfinita |
perf: change instance priority and order about `OfNat` |
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
slow-typeclass-synthesis
t-algebra
label:t-algebra$ |
49/20 |
Mathlib/Algebra/Group/Nat.lean,Mathlib/Algebra/Group/ZeroOne.lean,Mathlib/Algebra/Homology/Embedding/Basic.lean,Mathlib/Algebra/Tropical/Basic.lean,Mathlib/Data/BitVec.lean,Mathlib/Data/Nat/Cast/Defs.lean,Mathlib/Data/Rat/Defs.lean,Mathlib/Data/UInt.lean,Mathlib/NumberTheory/ArithmeticFunction.lean |
9 |
26 |
['MichaelStollBayreuth', 'astrainfinita', 'eric-wieser', 'fpvandoorn', 'github-actions', 'j-loreaux', 'leanprover-bot', 'mathlib-bors'] |
nobody |
177-63666 5 months ago |
752-41836 752 days ago |
20-15089 20 days |
| 17627 |
hrmacbeth author:hrmacbeth |
feat: universal properties of vector bundle constructions |
Characterizations for the smoothness of maps into the total spaces of (1) the direct sum of two vector bundles; (2) the pullback of a vector bundle.
This gap in the library was exposed by #17358.
---
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- [x] depends on: #22804
[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-differential-geometry
|
311/9 |
Mathlib/Data/Bundle.lean,Mathlib/Geometry/Manifold/VectorBundle/Basic.lean,Mathlib/Geometry/Manifold/VectorBundle/Pullback.lean,Mathlib/Topology/FiberBundle/Constructions.lean |
4 |
26 |
['PatrickMassot', 'fpvandoorn', 'github-actions', 'grunweg', 'hrmacbeth', 'j-loreaux', 'leanprover-community-bot-assistant', 'mathlib-bors', 'mathlib4-dependent-issues-bot', 'sgouezel'] |
grunweg assignee:grunweg |
177-63654 5 months ago |
437-63393 437 days ago |
91-68315 91 days |
| 27534 |
PierreQuinton author:PierreQuinton |
feat: a typeclass for `sSup`/`sInf` to be lawful |
Adds lawful infima and suprema type classes.
A preorder with lawful suprema: whenever a set has a least upper bound, `sSup` returns a least upper bound for that set.
A preorder with lawful infima: whenever a set has a greatest lower bound, `sInf` returns a greastest lower bound for that set.
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-order
|
121/8 |
Mathlib.lean,Mathlib/Order/CompleteLattice/Defs.lean,Mathlib/Order/LawfulSupInf.lean |
3 |
26 |
['PierreQuinton', 'YaelDillies', 'github-actions', 'mathlib4-merge-conflict-bot', 'plp127', 'vihdzp'] |
nobody |
169-48357 5 months ago |
284-79432 284 days ago |
114-38193 114 days |
| 35042 |
JovanGerb author:JovanGerb |
chore: remove `meta` form `import Mathlib.Tactic...` |
This PR cleans up some imports of the form `import Mathlib.Tactic...`, by either removing them entirely, or removing the `meta` keyword. It should never be necessary to `meta import` a file from `Mathlib.Tactic`, because the relevant definitions should already have been marked as `meta`.
The motivation is to reduce the amount of files that are `meta` imported when writing e.g. `import Mathlib`, hence reducing the amount of stuff that needs to be loaded. There are more other `meta import`s that need to be removed, but this PR is a good start.
---
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[](https://gitpod.io/from-referrer/)
|
large-import
merge-conflict
|
61/142 |
Mathlib/Algebra/BigOperators/Group/Finset/Defs.lean,Mathlib/Algebra/FreeMonoid/Basic.lean,Mathlib/Algebra/Group/Action/Hom.lean,Mathlib/Algebra/Order/Group/Unbundled/Abs.lean,Mathlib/CategoryTheory/Functor/Basic.lean,Mathlib/Data/List/ChainOfFn.lean,Mathlib/Dynamics/OmegaLimit.lean,Mathlib/GroupTheory/GroupAction/Defs.lean,Mathlib/GroupTheory/GroupAction/DomAct/Basic.lean,Mathlib/Tactic/Algebraize.lean,Mathlib/Tactic/ApplyFun.lean,Mathlib/Tactic/ArithMult.lean,Mathlib/Tactic/Bound.lean,Mathlib/Tactic/CategoryTheory/Bicategory/Datatypes.lean,Mathlib/Tactic/CategoryTheory/Bicategory/Normalize.lean,Mathlib/Tactic/CategoryTheory/Bicategory/PureCoherence.lean,Mathlib/Tactic/CategoryTheory/CheckCompositions.lean,Mathlib/Tactic/CategoryTheory/Coherence/Basic.lean,Mathlib/Tactic/CategoryTheory/Coherence/Normalize.lean,Mathlib/Tactic/CategoryTheory/Coherence/PureCoherence.lean,Mathlib/Tactic/CategoryTheory/Elementwise.lean,Mathlib/Tactic/CategoryTheory/Monoidal/Datatypes.lean,Mathlib/Tactic/CategoryTheory/Monoidal/Normalize.lean,Mathlib/Tactic/CategoryTheory/Monoidal/PureCoherence.lean,Mathlib/Tactic/CategoryTheory/ToApp.lean,Mathlib/Tactic/Choose.lean,Mathlib/Tactic/DeclarationNames.lean,Mathlib/Tactic/DefEqTransformations.lean,Mathlib/Tactic/DeriveCountable.lean,Mathlib/Tactic/DeriveFintype.lean,Mathlib/Tactic/DeriveTraversable.lean,Mathlib/Tactic/ENatToNat.lean,Mathlib/Tactic/Explode.lean,Mathlib/Tactic/Explode/Pretty.lean,Mathlib/Tactic/FinCases.lean,Mathlib/Tactic/FunProp.lean,Mathlib/Tactic/FunProp/Attr.lean,Mathlib/Tactic/FunProp/Core.lean,Mathlib/Tactic/FunProp/FunctionData.lean,Mathlib/Tactic/FunProp/Theorems.lean,Mathlib/Tactic/FunProp/Types.lean,Mathlib/Tactic/GCongr/Core.lean,Mathlib/Tactic/GRewrite/Elab.lean,Mathlib/Tactic/Group.lean,Mathlib/Tactic/IrreducibleDef.lean,Mathlib/Tactic/Lift.lean,Mathlib/Tactic/Linarith.lean,Mathlib/Tactic/Linarith/Lemmas.lean,Mathlib/Tactic/Linarith/Oracle/FourierMotzkin.lean,Mathlib/Tactic/Linarith/Oracle/SimplexAlgorithm.lean,Mathlib/Tactic/Linarith/Oracle/SimplexAlgorithm/Gauss.lean,Mathlib/Tactic/Linarith/Oracle/SimplexAlgorithm/SimplexAlgorithm.lean,Mathlib/Tactic/Linarith/Preprocessing.lean,Mathlib/Tactic/Linarith/Verification.lean,Mathlib/Tactic/LinearCombination/Lemmas.lean,Mathlib/Tactic/Linter/DeprecatedSyntaxLinter.lean,Mathlib/Tactic/Linter/DocPrime.lean,Mathlib/Tactic/Linter/DocString.lean,Mathlib/Tactic/Linter/EmptyLine.lean,Mathlib/Tactic/Linter/FlexibleLinter.lean,Mathlib/Tactic/Linter/GlobalAttributeIn.lean,Mathlib/Tactic/Linter/HashCommandLinter.lean,Mathlib/Tactic/Linter/Multigoal.lean,Mathlib/Tactic/Linter/OldObtain.lean,Mathlib/Tactic/Linter/Style.lean,Mathlib/Tactic/Linter/TextBased.lean,Mathlib/Tactic/Linter/TextBased/UnicodeLinter.lean,Mathlib/Tactic/Linter/UnusedTactic.lean,Mathlib/Tactic/Linter/UnusedTacticExtension.lean,Mathlib/Tactic/MinImports.lean,Mathlib/Tactic/MoveAdd.lean,Mathlib/Tactic/Nontriviality/Core.lean,Mathlib/Tactic/NormNum/DivMod.lean,Mathlib/Tactic/NormNum/Ineq.lean,Mathlib/Tactic/NormNum/Prime.lean,Mathlib/Tactic/Order.lean,Mathlib/Tactic/Order/CollectFacts.lean,Mathlib/Tactic/Order/Graph/Tarjan.lean,Mathlib/Tactic/PNatToNat.lean,Mathlib/Tactic/Peel.lean,Mathlib/Tactic/ProdAssoc.lean,Mathlib/Tactic/ProxyType.lean,Mathlib/Tactic/Push.lean,Mathlib/Tactic/Qify.lean,Mathlib/Tactic/RSuffices.lean,Mathlib/Tactic/Ring/Basic.lean,Mathlib/Tactic/Ring/Common.lean,Mathlib/Tactic/Ring/Compare.lean,Mathlib/Tactic/Ring/PNat.lean,Mathlib/Tactic/Simproc/Divisors.lean,Mathlib/Tactic/Simproc/FinsetInterval.lean,Mathlib/Tactic/Simps/Basic.lean,Mathlib/Tactic/Subsingleton.lean,Mathlib/Tactic/TacticAnalysis/Declarations.lean,Mathlib/Tactic/TautoSet.lean,Mathlib/Tactic/Translate/Core.lean,Mathlib/Tactic/Translate/TagUnfoldBoundary.lean,Mathlib/Tactic/Widget/Calc.lean,Mathlib/Tactic/Widget/CommDiag.lean,Mathlib/Tactic/Widget/CongrM.lean |
107 |
9 |
['JovanGerb', 'dupuisf', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts'] |
robin-carlier assignee:robin-carlier |
167-76902 5 months ago |
167-76903 167 days ago |
26-74403 26 days |
| 32918 |
michelsol author:michelsol |
feat: define `supEdist` and `supDist` |
Create a new file Topology.MetricSpace.SupDistance and define the supremal distance in (extended) metric spaces. The defined `supEdist` and `supDist` will have similar theory to the already existing `infEdist` and `infDist`. The motivation is to be able to define the radius of a minimal bounding sphere as the infimum of the supDist later.
[zulip discussion here](https://leanprover.zulipchat.com/#narrow/channel/116395-maths/topic/Formalizing.20Jung's.20theorem.20and.20minimal.20bounding.20spheres) |
t-topology
new-contributor
merge-conflict
|
75/0 |
Mathlib.lean,Mathlib/Topology/MetricSpace/SupDistance.lean |
2 |
5 |
['github-actions', 'mathlib4-merge-conflict-bot', 'michelsol', 'urkud'] |
nobody |
162-56724 5 months ago |
237-35284 237 days ago |
21-3598 21 days |
| 11964 |
adamtopaz author:adamtopaz |
feat: The functor of points of a scheme |
We construct the functor of points functor, and prove that it's full and faithful.
---
- [x] depends on: #11947
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merge-conflict
t-algebraic-geometry
t-category-theory
|
210/0 |
Mathlib.lean,Mathlib/AlgebraicGeometry/FunctorOfPoints.lean,Mathlib/AlgebraicGeometry/OpenImmersion.lean |
3 |
4 |
['github-actions', 'grunweg'] |
nobody |
149-68097 4 months ago |
870-51483 870 days ago |
0-1223 20 minutes |
| 37530 |
mcdoll author:mcdoll |
fix(Topology/Algebra): fix bad simps and make arguments implicit for `PointwiseConvergenceCLM` |
We delete all `simps` calls in the definitions of operators on `PointwiseConvergenceCLM` and replace them with `apply_apply` lemmas that do not abuse the defeq between `SLₚₜ` and `SL`. This made the linter discover some typeclass duplications, which we remove by restructuring the file.
As a consequence of the new `simp` lemmas, we can remove all `set_option backward.isDefEq.respectTransparency false in` in `Analysis.Distribution.TemperedDistribution`.
Moreover, we make several arguments implicit, which can be inferred in almost all practical situations.
---
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not-ready-to-merge
merge-conflict
|
88/69 |
Mathlib/Analysis/Distribution/TemperedDistribution.lean,Mathlib/Topology/Algebra/Module/Spaces/PointwiseConvergenceCLM.lean |
2 |
5 |
['github-actions', 'jcommelin', 'mathlib-merge-conflicts', 'mcdoll'] |
nobody |
133-83600 4 months ago |
133-83601 133 days ago |
14-59669 14 days |
| 38239 |
vihdzp author:vihdzp |
chore(Order/SuccPred/Limit): reorganize sections |
In an effort to keep the file better organized, we move theorems which use `SuccOrder`/`PredOrder` as an assumption to a new section.
No theorems have been changed.
---
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t-order
merge-conflict
|
95/110 |
Mathlib/Order/SuccPred/Limit.lean |
1 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
131-26777 4 months ago |
131-26778 131 days ago |
2-48556 2 days |
| 37461 |
grunweg author:grunweg |
chore: golf using the field tactic |
---
In the spirit of #31314.
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merge-conflict |
32/43 |
Counterexamples/NowhereDifferentiable.lean,Mathlib/Analysis/Calculus/Monotone.lean,Mathlib/Analysis/Complex/BorelCaratheodory.lean,Mathlib/Analysis/MeanInequalities.lean,Mathlib/Analysis/Normed/Field/Lemmas.lean,Mathlib/Analysis/SpecialFunctions/Complex/LogBounds.lean,Mathlib/Analysis/SpecialFunctions/Elliptic/Weierstrass.lean,Mathlib/Analysis/SpecialFunctions/Integrals/Basic.lean,Mathlib/InformationTheory/KullbackLeibler/Basic.lean,Mathlib/LinearAlgebra/Lagrange.lean,Mathlib/MeasureTheory/Integral/MeanValue.lean,Mathlib/NumberTheory/ModularForms/Discriminant.lean,Mathlib/NumberTheory/ModularForms/EisensteinSeries/E2/Defs.lean,Mathlib/NumberTheory/ModularForms/EisensteinSeries/E2/MDifferentiable.lean,Mathlib/NumberTheory/ModularForms/QExpansion.lean,Mathlib/Probability/CentralLimitTheorem.lean,Mathlib/Probability/Distributions/Gaussian/CharFun.lean,Mathlib/RepresentationTheory/Homological/GroupCohomology/Hilbert90.lean,Mathlib/RingTheory/PowerSeries/Exp.lean,Mathlib/Topology/UnitInterval.lean |
20 |
5 |
['github-actions', 'grunweg', 'j-loreaux', 'mathlib-merge-conflicts'] |
nobody |
129-26481 4 months ago |
129-26482 129 days ago |
22-59925 22 days |
| 37774 |
weisbrja author:weisbrja |
fix: change variables in `bicompl` to `Sort*` and add missing theorem mentioned in `bicompl` docs |
[#mathlib4 > Why does Mathlib use Type* instead of Sort* in some places?](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Why.20does.20Mathlib.20use.20Type.2A.20instead.20of.20Sort.2A.20in.20some.20places.3F/with/583882342)
---
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|
new-contributor
t-logic
merge-conflict
|
6/1 |
Mathlib/Logic/Function/Basic.lean |
1 |
8 |
['github-actions', 'kbuzzard', 'leanprover-radar', 'mathlib-merge-conflicts', 'weisbrja'] |
nobody |
125-40109 4 months ago |
125-40110 125 days ago |
19-76858 19 days |
| 33478 |
anishrajeev author:anishrajeev |
feat(ModelTheory): define a subset of the topology over complete types |
Define a subset of the Stone Space over a language expanded with countably many constants. Define the proposition to indicate if a language is countable. The subset's density and openness is a future goal to prove (have a branch where it is almost finished), in pursuit of formalizing the proof of the Omitting Types Theorem via properties of Baire spaces.
- [ ] depends on: #32215
- [ ] depends on: #32546 |
t-logic
merge-conflict
new-contributor
|
160/1 |
Mathlib.lean,Mathlib/ModelTheory/Topology/Types.lean,Mathlib/ModelTheory/Types.lean,Mathlib/Tactic/Linter/DirectoryDependency.lean |
4 |
8 |
['NoneMore', 'anishrajeev', 'github-actions', 'mathlib-dependent-issues', 'mathlib4-merge-conflict-bot', 'tb65536'] |
nobody |
123-47034 4 months ago |
230-60575 230 days ago |
10-38484 10 days |
| 36740 |
euprunin author:euprunin |
chore: golf using `grind` |
The goal of this PR is to decrease the number of times lemmas are called explicitly. Any decrease in compilation time is a welcome side effect, although it is not a primary objective.
Trace profiling results (differences <30 ms considered measurement noise):
* `AlgebraicGeometry.Scheme.isBasis_affineOpens`: unchanged 🎉
* `SimpleGraph.Walk.takeUntil_eq_take`: 263 ms before, 180 ms after 🎉
* `SimpleGraph.Walk.dropUntil_eq_drop`: 382 ms before, 261 ms after 🎉
* `Int.image_Ico_emod`: unchanged 🎉
* `Equiv.Perm.ofSubtype_swap_eq`: unchanged 🎉
Profiled using `set_option trace.profiler true in`.
---
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merge-conflict |
7/33 |
Mathlib/AlgebraicGeometry/AffineScheme.lean,Mathlib/Combinatorics/SimpleGraph/Walk/Decomp.lean,Mathlib/Data/Int/Interval.lean,Mathlib/GroupTheory/Perm/Support.lean |
4 |
8 |
['artie2000', 'chenson2018', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
123-29572 4 months ago |
123-29573 123 days ago |
43-5868 43 days |
| 38329 |
jcommelin author:jcommelin |
chore: tighten down public/exposed API of AlgebraicClosure |
This PR tightens down the API of AlgebraicClosure,
by making few parts of FieldTheory/IsAlgClosed/AlgebraicClosure.lean
public and/or exposed.
We still need to expose the main definition.
It would be great if we can unexpose it in the future.
---
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t-algebra
merge-conflict
label:t-algebra$ |
73/53 |
Mathlib/Algebra/Lie/TraceForm.lean,Mathlib/FieldTheory/AxGrothendieck.lean,Mathlib/FieldTheory/Differential/Liouville.lean,Mathlib/FieldTheory/IsAlgClosed/AlgebraicClosure.lean,Mathlib/ModelTheory/Algebra/Field/IsAlgClosed.lean,Mathlib/RingTheory/Discriminant.lean,Mathlib/RingTheory/IntegralClosure/IntegralRestrict.lean,Mathlib/RingTheory/Norm/Transitivity.lean,Mathlib/RingTheory/Trace/Basic.lean |
9 |
26 |
['eric-wieser', 'github-actions', 'jcommelin', 'kbuzzard', 'leanprover-radar', 'mathlib-merge-conflicts', 'plp127', 'riccardobrasca'] |
nobody |
123-20945 4 months ago |
123-20946 123 days ago |
7-41851 7 days |
| 36495 |
AlexKontorovich author:AlexKontorovich |
chore(Finset/NatDivisors): refactor `card_divisors_mul` and `sum_divisors_mul` to not rely on `ArithmeticFunction` |
`Nat.Coprime.card_divisors_mul` and `Nat.Coprime.sum_divisors_mul` are moved to not rely on `ArithmeticFunction`. See zulip discussion here: [#mathlib4 > Library design question, e.g.`Nat.Coprime.card_divisors_mul` @ 💬](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Library.20design.20question.2C.20e.2Eg.2E.60Nat.2ECoprime.2Ecard_divisors_mul.60/near/577769899)
Co-authored-by: Ziyan Wei <zw810@scarletmail.rutgers.edu> and Aayush Rajasekaran <arajasek94@gmail.com>
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large-import
t-number-theory
t-algebra
merge-conflict
label:t-algebra$ |
41/14 |
Mathlib/Algebra/GCDMonoid/Basic.lean,Mathlib/Data/Finset/NatDivisors.lean,Mathlib/NumberTheory/ArithmeticFunction/Misc.lean |
3 |
6 |
['AlexKontorovich', 'arajasek', 'github-actions', 'mathlib-merge-conflicts'] |
riccardobrasca assignee:riccardobrasca |
114-33490 3 months ago |
114-33491 114 days ago |
53-21240 53 days |
| 37553 |
grunweg author:grunweg |
chore: golf using .ne and friends |
ne_of_gt -> .ne'
ne_of_lt -> .ne
le_of_lt -> .le
Drive-by golfs using gcongr and positivity and been split into separate PRs.
---
- [x] depends on: #37462
- [x] depends on: #37715
- [x] depends on: #37554
- [x] depends on: #37845
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|
merge-conflict |
302/321 |
Archive/Imo/Imo1981Q3.lean,Archive/Imo/Imo2011Q3.lean,Archive/Imo/Imo2013Q5.lean,Archive/Imo/Imo2019Q4.lean,Archive/Wiedijk100Theorems/CubingACube.lean,Counterexamples/DiscreteTopologyNonDiscreteUniformity.lean,Counterexamples/NowhereDifferentiable.lean,Counterexamples/TopologistsSineCurve.lean,Mathlib/Algebra/BigOperators/Fin.lean,Mathlib/Algebra/BigOperators/Group/List/Lemmas.lean,Mathlib/Algebra/CharP/Defs.lean,Mathlib/Algebra/Group/Fin/Basic.lean,Mathlib/Algebra/Group/Pointwise/Set/Finite.lean,Mathlib/Algebra/Lie/Nilpotent.lean,Mathlib/Algebra/Module/Torsion/Basic.lean,Mathlib/Algebra/Module/ZLattice/Basic.lean,Mathlib/Algebra/Module/ZLattice/Covolume.lean,Mathlib/Algebra/Order/Antidiag/Nat.lean,Mathlib/Algebra/Order/Archimedean/Basic.lean,Mathlib/Algebra/Order/Archimedean/Class.lean,Mathlib/Algebra/Order/BigOperators/Group/Multiset.lean,Mathlib/Algebra/Order/BigOperators/GroupWithZero/Finset.lean,Mathlib/Algebra/Order/CauSeq/Basic.lean,Mathlib/Algebra/Order/CauSeq/BigOperators.lean,Mathlib/Algebra/Order/CompleteField.lean,Mathlib/Algebra/Order/Field/Basic.lean,Mathlib/Algebra/Order/GroupWithZero/Range.lean,Mathlib/Algebra/Order/GroupWithZero/Unbundled/Basic.lean,Mathlib/Algebra/Order/Interval/Set/Instances.lean,Mathlib/Algebra/Order/Module/HahnEmbedding.lean,Mathlib/Algebra/Order/Ring/WithTop.lean,Mathlib/Algebra/Order/Round.lean,Mathlib/Algebra/Order/ToIntervalMod.lean,Mathlib/Algebra/Polynomial/DenomsClearable.lean,Mathlib/Algebra/Polynomial/EraseLead.lean,Mathlib/Algebra/Polynomial/Monic.lean,Mathlib/Algebra/QuadraticDiscriminant.lean,Mathlib/AlgebraicGeometry/ProjectiveSpectrum/Proper.lean,Mathlib/Analysis/Analytic/Composition.lean,Mathlib/Analysis/Analytic/Inverse.lean,Mathlib/Analysis/Analytic/OfScalars.lean,Mathlib/Analysis/Analytic/Uniqueness.lean,Mathlib/Analysis/Asymptotics/ExpGrowth.lean,Mathlib/Analysis/Asymptotics/LinearGrowth.lean,Mathlib/Analysis/Asymptotics/SpecificAsymptotics.lean,Mathlib/Analysis/Asymptotics/TVS.lean,Mathlib/Analysis/BoxIntegral/Basic.lean,Mathlib/Analysis/BoxIntegral/Partition/Tagged.lean,Mathlib/Analysis/Calculus/BumpFunction/FiniteDimension.lean,Mathlib/Analysis/Calculus/ContDiff/Defs.lean,Mathlib/Analysis/Calculus/ContDiff/FTaylorSeries.lean,Mathlib/Analysis/Calculus/DerivativeTest.lean,Mathlib/Analysis/Calculus/FDeriv/Extend.lean,Mathlib/Analysis/Calculus/FDeriv/Measurable.lean,Mathlib/Analysis/Calculus/IteratedDeriv/Defs.lean,Mathlib/Analysis/Calculus/LHopital.lean,Mathlib/Analysis/Complex/Exponential.lean,Mathlib/Analysis/Complex/Hadamard.lean,Mathlib/Analysis/Complex/OpenMapping.lean,Mathlib/Analysis/Complex/Poisson.lean,Mathlib/Analysis/Complex/Trigonometric.lean,Mathlib/Analysis/Convex/Between.lean,Mathlib/Analysis/Convex/Caratheodory.lean,Mathlib/Analysis/Convex/Combination.lean,Mathlib/Analysis/Convex/Gauge.lean,Mathlib/Analysis/Convex/Radon.lean,Mathlib/Analysis/Convex/SpecificFunctions/Deriv.lean,Mathlib/Analysis/Convolution.lean,Mathlib/Analysis/InnerProductSpace/Subspace.lean,Mathlib/Analysis/LocallyConvex/WithSeminorms.lean,Mathlib/Analysis/MeanInequalities.lean,Mathlib/Analysis/MeanInequalitiesPow.lean,Mathlib/Analysis/MellinInversion.lean,Mathlib/Analysis/MellinTransform.lean,Mathlib/Analysis/Normed/Field/Approximation.lean,Mathlib/Analysis/Normed/Module/FiniteDimension.lean,Mathlib/Analysis/Normed/Operator/ContinuousAlgEquiv.lean,Mathlib/Analysis/Normed/Ring/Units.lean,Mathlib/Analysis/Normed/Unbundled/IsPowMulFaithful.lean,Mathlib/Analysis/Normed/Unbundled/SmoothingSeminorm.lean,Mathlib/Analysis/Normed/Unbundled/SpectralNorm.lean,Mathlib/Analysis/Oscillation.lean,Mathlib/Analysis/Real/Hyperreal.lean,Mathlib/Analysis/Real/Pi/Bounds.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/Rpow/IntegralRepresentation.lean,Mathlib/Analysis/SpecialFunctions/Log/Basic.lean,Mathlib/Analysis/SpecialFunctions/PolarCoord.lean,Mathlib/Analysis/SpecialFunctions/Pow/NNReal.lean,Mathlib/Analysis/SpecialFunctions/Pow/Real.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Basic.lean,Mathlib/Data/EReal/Inv.lean,Mathlib/Data/Finset/Image.lean,Mathlib/Data/Int/Interval.lean,Mathlib/Data/Int/ModEq.lean,Mathlib/Data/Nat/Bitwise.lean,Mathlib/Data/Nat/Lattice.lean,Mathlib/Data/Nat/Log.lean,Mathlib/Data/Nat/Multiplicity.lean,Mathlib/Data/Real/ConjExponents.lean,Mathlib/Dynamics/Circle/RotationNumber/TranslationNumber.lean |
114 |
7 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
109-20461 3 months ago |
109-20461 109 days ago |
13-66876 13 days |
| 39229 |
grunweg author:grunweg |
dev: towards `fun_prop` on manifolds |
---
- [ ] depends on: #39226
Rebased version of #31580. Meant to be a prototype that demonstrate how this could possibly work.
Not functional yet; waiting on cache to continue.
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|
t-meta
merge-conflict
|
305/1 |
Mathlib/Geometry/Manifold/Notation.lean,Mathlib/Tactic/FunProp/Core.lean,MathlibTest/DifferentialGeometry/FunPropM.lean,MathlibTest/fun_prop_dev.lean |
4 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
107-1351 3 months ago |
111-14923 111 days ago |
0-12 12 seconds |
| 39329 |
lecopivo author:lecopivo |
feat(fun_prop): eager application of transition theorems for fun_prop |
For properties like Integrable we want to apply transition theorems(like Continuous -> Integrable) eagerly
---
This is a change necessary in preparation for making `fun_prop` work for integrability.
-->
[](https://gitpod.io/from-referrer/)
|
t-meta
merge-conflict
|
93/30 |
Mathlib/Tactic/FunProp/Attr.lean,Mathlib/Tactic/FunProp/Core.lean,Mathlib/Tactic/FunProp/Decl.lean,MathlibTest/FunPropMinimal.lean |
4 |
14 |
['b-mehta', 'github-actions', 'lecopivo', 'mathlib-merge-conflicts'] |
JovanGerb assignee:JovanGerb |
104-48169 3 months ago |
106-62117 106 days ago |
1-47071 1 day |
| 37584 |
kennethgoodman author:kennethgoodman |
feat(Data/Nat/Fib): formalize Lamé's theorem |
## Summary
Formalize [Lamé's theorem](https://en.wikipedia.org/wiki/Lam%C3%A9%27s_theorem) (1844), the founding result of computational complexity theory.
**Lamé's Theorem:** If the Euclidean algorithm on inputs `(a, b)` with `b ≤ a` takes `n + 1` division steps, then `b ≥ fib(n + 1)` and `a ≥ fib(n + 2)`.
### New definitions
- `Nat.euclidSteps`: counts the number of division steps in the Euclidean algorithm on natural number inputs.
### New theorems
- `Nat.fib_le_of_euclidSteps`: the main Lamé bound — Fibonacci lower bound on inputs given a step count.
- `Nat.euclidSteps_le_of_lt_fib`: the contrapositive — step count upper bound given a Fibonacci bound on the smaller input.
- `Nat.add_mod_le`: helper lemma that `b + a % b ≤ a` when `b ≤ a` and `0 < b`.
### Proof strategy
Induction on `n`, tracking both elements of the pair. The key insight is that each Euclidean step replaces `(a, b)` with `(b, a % b)`, and since `a ≥ b + a % b` (because `a / b ≥ 1`), the Fibonacci recurrence `fib(n+3) = fib(n+2) + fib(n+1)` matches the structure of the algorithm.
### References
- Gabriel Lamé, *Note sur la limite du nombre des divisions dans la recherche du plus grand commun diviseur entre deux nombres entiers*, Comptes rendus de l'Académie des sciences, 1844.
---
### AI usage disclosure
Per the [Mathlib AI guidelines](https://leanprover-community.github.io/contribute/index.html#use-of-ai): Claude Code (Claude Opus 4.6) was used to assist with writing the Lean 4 proof code, fixing tactic errors, and drafting this PR description. The mathematical proof (induction on step count, tracking both pair elements through the Fibonacci recurrence) was designed by hand and verified on paper before formalization. I have reviewed and understand every line of the resulting Lean code and can explain all proof steps.
---
- [x] builds cleanly (`lake build Mathlib.Data.Nat.Fib.Lame`)
- [x] no `sorry`
- [x] lines ≤ 100 characters, no trailing whitespace
- [x] `autoImplicit false`
- [x] docstrings on all public declarations |
new-contributor
LLM-generated
t-data
merge-conflict
|
121/0 |
Mathlib.lean,Mathlib/Data/Nat/Basic.lean,Mathlib/Data/Nat/Fib/Basic.lean,Mathlib/Data/Nat/Fib/Lame.lean,docs/1000.yaml |
5 |
25 |
['euprunin', 'github-actions', 'kennethgoodman', 'mathlib-merge-conflicts', 'vihdzp', 'wwylele'] |
TwoFX assignee:TwoFX |
104-36842 3 months ago |
104-36843 104 days ago |
44-66371 44 days |
| 39509 |
mcdoll author:mcdoll |
chore(Topology): add `push/pull_end` tags for CLMs |
Simpsets were introduced in #38359, see also #39508
---
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|
t-topology
merge-conflict
|
2/0 |
Mathlib/Topology/Algebra/Module/LinearMap.lean |
1 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
j-loreaux assignee:j-loreaux |
102-16342 3 months ago |
102-20390 102 days ago |
3-40182 3 days |
| 36774 |
euprunin author:euprunin |
chore: replace long terminal `rw […]`:s (≥4 lemmas) with bare `simp`:s |
The goal of this PR is to decrease the number of times lemmas are called explicitly. Any decrease in compilation time is a welcome side effect, although it is not a primary objective.
Trace profiling results (differences <30 ms considered measurement noise):
* `Finset.lcm_union`: unchanged 🎉
* `Finset.gcd_union`: unchanged 🎉
* `Polynomial.derivative_eval₂_C`: unchanged 🎉
* `Polynomial.expand_pow`: unchanged 🎉
* `Cardinal.mk_real`: unchanged 🎉
* `Real.log_zpow`: unchanged 🎉
* `Matroid.eRank_le_encard_add_eRk_compl`: unchanged 🎉
* `DFinsupp.single_tsub`: unchanged 🎉
* `EReal.inv_neg`: unchanged 🎉
* `Finsupp.toMultiset_map`: unchanged 🎉
* `Finsupp.single_tsub`: unchanged 🎉
* `Multiset.countP_map`: unchanged 🎉
* `Nat.ascFactorial_eq_factorial_mul_choose'`: unchanged 🎉
* `Real.sign_intCast`: unchanged 🎉
* `Real.volume_eball`: unchanged 🎉
* `Real.volume_closedEBall`: unchanged 🎉
* `LFunction_ne_zero_of_not_quadratic_or_ne_one`: 295 ms before, 152 ms after 🎉
* `hasSum_one_div_nat_pow_mul_cos`: unchanged 🎉
* `inv_eq_of_aeval_divX_ne_zero`: unchanged 🎉
* `AlgebraicIndependent.aeval_comp_mvPolynomialOptionEquivPolynomialAdjoin`: unchanged 🎉
* `Ordinal.deriv_mul_eq_opow_omega0_mul`: unchanged 🎉
Profiled using `set_option trace.profiler true in`.
---
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|
merge-conflict |
22/24 |
Mathlib/Algebra/GCDMonoid/Finset.lean,Mathlib/Algebra/Polynomial/Derivative.lean,Mathlib/Algebra/Polynomial/Expand.lean,Mathlib/Analysis/Real/Cardinality.lean,Mathlib/Analysis/SpecialFunctions/Log/Basic.lean,Mathlib/Combinatorics/Matroid/Rank/ENat.lean,Mathlib/Data/DFinsupp/Order.lean,Mathlib/Data/EReal/Inv.lean,Mathlib/Data/Finsupp/Multiset.lean,Mathlib/Data/Finsupp/Order.lean,Mathlib/Data/Multiset/Filter.lean,Mathlib/Data/Nat/Choose/Basic.lean,Mathlib/Data/Real/Sign.lean,Mathlib/MeasureTheory/Measure/Lebesgue/Basic.lean,Mathlib/NumberTheory/LSeries/Nonvanishing.lean,Mathlib/NumberTheory/ZetaValues.lean,Mathlib/RingTheory/Algebraic/Basic.lean,Mathlib/RingTheory/AlgebraicIndependent/Basic.lean,Mathlib/SetTheory/Ordinal/FixedPoint.lean |
19 |
3 |
['artie2000', 'euprunin', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
99-45779 3 months ago |
99-45780 99 days ago |
67-395 67 days |
| 16074 |
Rida-Hamadani author:Rida-Hamadani |
feat: combinatorial maps and planar graphs |
We define combinatorial maps, then we define planar graph using combinatorial maps.
---
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|
merge-conflict
t-combinatorics
|
243/0 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/Planar.lean,Mathlib/Data/CombinatorialMap.lean |
3 |
30 |
['MrBrain295', 'Parcly-Taxel', 'Rida-Hamadani', 'github-actions', 'lambda-fairy', 'leanprover-community-bot-assistant'] |
kmill assignee:kmill |
97-10912 3 months ago |
422-7345 422 days ago |
72-50365 72 days |
| 39489 |
Paul-Lez author:Paul-Lez |
fix: defeq abuse in HasFTaylorSeriesUpToOn.comp |
Removes a `set_option backward.isDefEq.respectTransparency false`. The fix isn't as nice as I would have hoped (I tried to make it smaller but to no avail).
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t-analysis
merge-conflict
|
5/2 |
Mathlib/Analysis/Calculus/ContDiff/FaaDiBruno.lean |
1 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
j-loreaux assignee:j-loreaux |
93-16443 3 months ago |
93-16443 93 days ago |
12-82083 12 days |
| 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.
- [ ] depends on: #38934
- [ ] depends on: #38905
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large-import
merge-conflict
|
989/172 |
Mathlib.lean,Mathlib/Analysis/Convex/MetricSpace.lean,Mathlib/Data/Finsupp/Basic.lean,Mathlib/Geometry/Convex/ConvexSpace/AffineSpace.lean,Mathlib/Geometry/Convex/ConvexSpace/Defs.lean,Mathlib/Geometry/Convex/Hull.lean,Mathlib/Geometry/Convex/README.md,Mathlib/Geometry/Convex/Set.lean |
8 |
6 |
['github-actions', 'martinwintermath', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
87-48835 2 months ago |
unknown |
0-0 0 seconds |
| 38344 |
robo7179 author:robo7179 |
feat(SimpleGraph/Coloring/VertexColoring): Matching is 2 colorable |
---
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t-combinatorics
new-contributor
merge-conflict
|
51/0 |
Mathlib/Combinatorics/SimpleGraph/Coloring/VertexColoring.lean |
1 |
6 |
['SnirBroshi', 'github-actions', 'mathlib-merge-conflicts', 'vlad902'] |
b-mehta assignee:b-mehta |
84-50676 2 months ago |
84-50677 84 days ago |
46-71620 46 days |
| 37707 |
MavenRain author:MavenRain |
feat(Combinatorics/SimpleGraph): add IsMaximalClique/IsMaximalIndepSet, refactor IsMaximum* to MaximalFor |
Addresses #34962
|
new-contributor
t-combinatorics
merge-conflict
|
63/31 |
Mathlib/Combinatorics/SimpleGraph/Clique.lean |
1 |
7 |
['MavenRain', 'SnirBroshi', 'eric-wieser', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
80-31603 2 months ago |
80-31604 80 days ago |
26-52833 26 days |
| 39545 |
Hagb author:Hagb |
feat(Order/OrderIsoNat): some lemmas about `((· < ·) : ℕ → ℕ → Prop) ↪r r` |
This PR contains several lemmas about relation embedding from `<` in `Nat`, well order, and (in)finiteness.
- `RelEmbedding.infinite_iff_nonempty_relEmbedding_of_isWellOrder`: a type with a well order relation is infinite iff there is such a relation embedding.
- `RelEmbedding.finite_iff_empty_relEmbedding_of_isWellOrder`: a finite variant of `infinite_iff_nonempty_relEmbedding_of_isWellOrder`
- `IsWellOrder.finite_of_isWellOrder_of_isWellOrder_swap`: a type with a linear order relation well founded on both directions is finite.
- `instFiniteOfWellFoundedLTOfWellFoundedGT`: an instance variant of `IsWellOrder.finite_of_isWellOrder_of_isWellOrder_swap` on `WellFounded{LT,GT}`.
- `RelEmbedding.infinite_iff_nonempty_relEmbedding_lt_or_nonempty_relEmbedding_gt`: a type with a linear order relation is infinite iff there are both relation embedding between `<` in `Nat` and this relation, and between `>` in `Nat` and this relation.
- `RelEmbedding.finite_iff_isEmpty_relEmbedding_lt_and_isEmpty_relEmbedding_gt`: a finite variant of `infinite_iff_nonempty_relEmbedding_lt_or_nonempty_relEmbedding_gt`.
---
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<details>
<summary> Edit: remove the description on the original motivation since `WellQuasiOrdered` instead of theorems in this PR can be used for that goal. </summary>
`RelEmbedding.finite_iff_empty_relEmbedding_of_isWellOrder` might be used for proof of
```lean
example {α β γ} [LinearOrder α] [LinearOrder β] [WellFoundedLT α] [WellFoundedLT β] [LinearOrder γ]
{f : α × β ≃ γ} (mono : Monotone f) : WellFoundedLT γ := sorry
```
The latter will be used for
```lean
example {α β γ} [Finite α] [LinearOrder β] [WellFoundedLT β] [LinearOrder γ]
{f : (α → β) ≃ γ} (mono : Monotone f) : WellFoundedLT γ := sorry
```
And the finial goal is the well-foundedness of monomial order when the index type `σ` is finite (under the definition in #39214). |
t-order
merge-conflict
|
58/0 |
Mathlib/Order/OrderIsoNat.lean |
1 |
16 |
['Hagb', 'SnirBroshi', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts', 'vihdzp'] |
nobody |
80-28673 2 months ago |
80-28674 80 days ago |
23-50475 23 days |
| 39769 |
chenson2018 author:chenson2018 |
chore(Topology): refactor proofs where `grind?` fails |
These are sources of technical debt as now reported in the [weekly linting report](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Weekly.20linting.20log/with/544658968). The idea is that a successful `grind` proof can fail to report the theorems it used via `grind?`, which means that if these proofs break across toolchains that it becomes significantly harder to repair.
Most of these are fixed by squeezing the call to `grind` and unsetting `linter.tacticAnalysis.verifyGrindOnly` so they no longer appear in the weekly report. Unfortunately, this can't be on by default for performance reasons, but I highly encourage using this linter when adding any `grind` proofs.
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t-topology
tech debt
merge-conflict
|
35/17 |
Mathlib/Topology/Compactness/CountablyCompact.lean,Mathlib/Topology/EMetricSpace/BoundedVariation.lean,Mathlib/Topology/MetricSpace/Pseudo/Defs.lean,Mathlib/Topology/Order/Basic.lean,Mathlib/Topology/Order/IsLUB.lean,Mathlib/Topology/Order/WithTop.lean,Mathlib/Topology/Path.lean,Mathlib/Topology/Sets/VietorisTopology.lean,Mathlib/Topology/Sheaves/Flasque.lean |
9 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
80-28548 2 months ago |
80-28548 80 days ago |
18-36384 18 days |
| 40428 |
eric-wieser author:eric-wieser |
chore: remove a duplicate instance |
We already build this instance in the general case, I don't think we need to build it again.
We keep the shortcut since we already have other shortcuts of this style.
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t-algebra
large-import
merge-conflict
label:t-algebra$ |
2/3 |
Mathlib/Algebra/Field/Subfield/Basic.lean |
1 |
4 |
['eric-wieser', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts'] |
nobody |
79-21966 2 months ago |
79-21967 79 days ago |
3-19832 3 days |
| 38968 |
eric-wieser author:eric-wieser |
fix: improve defeqs of comp actions |
The (deliberately) non-reducible `SMul.comp.smul` definition caused us to end with these failing unification examples at instance reducibility:
```lean
example : (Module.compHom ℕ (RingHom.id ℕ)).toSMul = SMul.comp ℕ (RingHom.id ℕ) := by
with_reducible_and_instances rfl
example : (Module.compHom ℕ (RingHom.id ℕ)).toMulAction = MulAction.compHom ℕ (MonoidHom.id ℕ) := by
with_reducible_and_instances rfl
```
There are two issues this fixes:
* the `compHom` constructors are inconsistent on whether they use `SMul.comp.smul` or reimplement its contents
* we need `SMul.comp.smul` to be instance-reducible, so that when invoked with the identity function it is instance-defeq to the original action.
As a bonus, allowing these to unify means we can have a single `SMul.comp_smul_def` lemma that works for all of the `compHom` definitions.
We could also consider changing `compHom` to take a `HomClass` in order to remove the casts entirely, which would remove the need to add these `SMul.comp` terms. This PR leaves that for possible future work, noting that in the past we have moved away from writing `def`s taking `HomClass`es.
Co-authored-by: Junye Ji <jijunye1@outlook.com>
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Refined from #38777 |
t-algebra
merge-conflict
label:t-algebra$ |
46/26 |
Mathlib/Algebra/Algebra/Defs.lean,Mathlib/Algebra/Group/Action/Defs.lean,Mathlib/Algebra/Group/Action/Hom.lean,Mathlib/Algebra/GroupWithZero/Action/Defs.lean,Mathlib/Algebra/GroupWithZero/Action/End.lean,Mathlib/Algebra/Module/RingHom.lean,Mathlib/Analysis/Complex/UpperHalfPlane/MoebiusAction.lean,Mathlib/Analysis/Complex/UpperHalfPlane/ProperAction.lean,Mathlib/Topology/Algebra/Group/OpenMapping.lean |
9 |
13 |
['JJYYY-JJY', 'Vierkantor', 'eric-wieser', 'github-actions', 'leanprover-radar', 'mathlib-bors', 'mathlib-merge-conflicts'] |
nobody |
69-20918 2 months ago |
69-20919 69 days ago |
13-10860 13 days |
| 26911 |
JovanGerb author:JovanGerb |
chore: fix naming of `mono` and `monotone` |
The naming convention says:
"We use `_mono` for `a ≤ b → f a ≤ f b` and `_anti` for `a ≤ b → f b ≤ f a`, so we also use `_monotone` for `Monotone f`, `_antitone` for `Antitone f`, `_strictMono` for `StrictMono f`, `_strictAnti` for `StrictAnti f`, etc..."
This PR swaps `mono`/`anti` and `monotone`/`antitone` where required so that `monotone` refers to `Monotone`, while `mono` refers to a lemma that might be tagged with `@[gcongr]`
This PR does not address
- `monotone_right`/`mono_right` vs `right_monotone`/`right_mono`
- `monotone_arcsin` vs `arcsin_monotone`
edit: TODO: `ideal_mono` and friends
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|
merge-conflict |
235/169 |
Archive/Imo/Imo1962Q1.lean,Archive/Wiedijk100Theorems/AbelRuffini.lean,Archive/Wiedijk100Theorems/SumOfPrimeReciprocalsDiverges.lean,Counterexamples/DiscreteTopologyNonDiscreteUniformity.lean,Mathlib/Algebra/Group/Pointwise/Finset/Basic.lean,Mathlib/Algebra/Group/Pointwise/Set/Basic.lean,Mathlib/Algebra/Order/AddGroupWithTop.lean,Mathlib/Algebra/Order/Field/Basic.lean,Mathlib/Algebra/Order/Group/Basic.lean,Mathlib/Algebra/Order/Group/Finset.lean,Mathlib/Algebra/Order/Group/PosPart.lean,Mathlib/Algebra/Order/GroupWithZero/Unbundled/Basic.lean,Mathlib/Algebra/Order/Monoid/Unbundled/Basic.lean,Mathlib/Algebra/Order/Monoid/Unbundled/Pow.lean,Mathlib/Algebra/Order/ToIntervalMod.lean,Mathlib/Algebra/Polynomial/Degree/CardPowDegree.lean,Mathlib/AlgebraicGeometry/IdealSheaf/Basic.lean,Mathlib/Analysis/Analytic/Composition.lean,Mathlib/Analysis/Convex/Deriv.lean,Mathlib/Analysis/Normed/Order/UpperLower.lean,Mathlib/Analysis/Normed/Unbundled/SeminormFromConst.lean,Mathlib/Analysis/PSeries.lean,Mathlib/Analysis/Real/Pi/Bounds.lean,Mathlib/Analysis/SpecialFunctions/Pow/Continuity.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Basic.lean,Mathlib/Analysis/SpecificLimits/Basic.lean,Mathlib/Analysis/SpecificLimits/FloorPow.lean,Mathlib/Combinatorics/SetFamily/Kleitman.lean,Mathlib/Combinatorics/SimpleGraph/Girth.lean,Mathlib/Combinatorics/SimpleGraph/Regularity/Lemma.lean,Mathlib/Data/ENNReal/Inv.lean,Mathlib/Data/ENNReal/Operations.lean,Mathlib/Data/ENat/Pow.lean,Mathlib/Data/Nat/Choose/Factorization.lean,Mathlib/Dynamics/Circle/RotationNumber/TranslationNumber.lean,Mathlib/LinearAlgebra/AffineSpace/AffineMap.lean,Mathlib/MeasureTheory/Constructions/BorelSpace/Basic.lean,Mathlib/MeasureTheory/Constructions/Polish/Basic.lean,Mathlib/MeasureTheory/MeasurableSpace/MeasurablyGenerated.lean,Mathlib/MeasureTheory/OuterMeasure/Operations.lean,Mathlib/NumberTheory/Bertrand.lean,Mathlib/NumberTheory/FermatPsp.lean,Mathlib/NumberTheory/Height/Basic.lean,Mathlib/NumberTheory/ModularForms/Bounds.lean,Mathlib/NumberTheory/Padics/Hensel.lean,Mathlib/NumberTheory/Padics/WithVal.lean,Mathlib/Order/Concept.lean,Mathlib/Order/Filter/AtTopBot/Archimedean.lean,Mathlib/Order/Filter/AtTopBot/Defs.lean,Mathlib/Order/Fin/Basic.lean,Mathlib/Order/Heyting/Basic.lean,Mathlib/Order/Heyting/Boundary.lean,Mathlib/Order/Heyting/Regular.lean,Mathlib/Order/Hom/Set.lean,Mathlib/Order/Interval/Set/Fin.lean,Mathlib/Order/KrullDimension.lean,Mathlib/Order/UpperLower/Closure.lean,Mathlib/Probability/StrongLaw.lean,Mathlib/RingTheory/DedekindDomain/Ideal/Basic.lean,Mathlib/RingTheory/FractionalIdeal/Basic.lean,Mathlib/RingTheory/WittVector/Basic.lean,Mathlib/Topology/EMetricSpace/Lipschitz.lean,Mathlib/Topology/MetricSpace/Antilipschitz.lean |
63 |
15 |
['JovanGerb', 'bryangingechen', 'github-actions', 'leanprover-community-bot-assistant', 'mathlib-bors', 'mathlib-merge-conflicts', 'wrenna-robson'] |
bryangingechen assignee:bryangingechen |
68-3412 2 months ago |
415-56055 415 days ago |
2-53782 2 days |
| 34932 |
erdOne author:erdOne |
feat(AlgebraicGeometry): formally etale morphisms |
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t-algebraic-geometry
merge-conflict
|
163/12 |
Mathlib.lean,Mathlib/AlgebraicGeometry/Morphisms/Etale.lean,Mathlib/AlgebraicGeometry/Morphisms/FormallyEtale.lean,Mathlib/AlgebraicGeometry/Morphisms/RingHomProperties.lean,Mathlib/RingTheory/RingHom/Etale.lean |
5 |
21 |
['chrisflav', 'erdOne', 'github-actions', 'joneugster', 'mathlib-bors', 'mathlib-merge-conflicts', 'ocfnash'] |
nobody |
68-3411 2 months ago |
187-24898 187 days ago |
11-35673 11 days |
| 27180 |
ADedecker author:ADedecker |
feat: quotient of a monoid with zero by a multiplicative congruence |
---
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My motivation is getting a more conceptual construction of [ValuativeRel.ValueGroupWithZero](https://leanprover-community.github.io/mathlib4_docs/Mathlib/RingTheory/Valuation/ValuativeRel.html#ValuativeRel.ValueGroupWithZero), but I think this is of independent interest.
[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-algebra
label:t-algebra$ |
141/26 |
Mathlib.lean,Mathlib/Data/Quot.lean,Mathlib/Data/Setoid/Basic.lean,Mathlib/GroupTheory/Congruence/Defs.lean,Mathlib/GroupTheory/Congruence/GroupWithZero.lean |
5 |
38 |
['ADedecker', 'eric-wieser', 'github-actions', 'mathlib-bors', 'mathlib4-merge-conflict-bot', 'ocfnash'] |
ocfnash assignee:ocfnash |
68-3408 2 months ago |
382-74708 382 days ago |
28-12053 28 days |
| 31607 |
grunweg author:grunweg |
chore: rename `continuous{,On,At,Within}_const` to `ContinuousFoo.const` |
Zulip discussion: [#mathlib4 > Naming convention @ 💬](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Naming.20convention/near/447491526)
---
- [x] depends on: #34441
- [x] depends on: #34688
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merge-conflict |
412/378 |
Archive/Hairer.lean,Mathlib/Analysis/Analytic/Basic.lean,Mathlib/Analysis/Analytic/Inverse.lean,Mathlib/Analysis/Asymptotics/Lemmas.lean,Mathlib/Analysis/BoxIntegral/Box/Basic.lean,Mathlib/Analysis/BoxIntegral/UnitPartition.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Continuity.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Unital.lean,Mathlib/Analysis/Calculus/BumpFunction/FiniteDimension.lean,Mathlib/Analysis/Calculus/BumpFunction/InnerProduct.lean,Mathlib/Analysis/Calculus/DSlope.lean,Mathlib/Analysis/Calculus/Deriv/MeanValue.lean,Mathlib/Analysis/Calculus/DiffContOnCl.lean,Mathlib/Analysis/Calculus/FDeriv/Analytic.lean,Mathlib/Analysis/Calculus/FDeriv/Symmetric.lean,Mathlib/Analysis/Calculus/MeanValue.lean,Mathlib/Analysis/Calculus/Rademacher.lean,Mathlib/Analysis/Calculus/Taylor.lean,Mathlib/Analysis/Complex/AbelLimit.lean,Mathlib/Analysis/Complex/AbsMax.lean,Mathlib/Analysis/Complex/Basic.lean,Mathlib/Analysis/Complex/CauchyIntegral.lean,Mathlib/Analysis/Complex/HalfPlane.lean,Mathlib/Analysis/Complex/LocallyUniformLimit.lean,Mathlib/Analysis/Complex/PhragmenLindelof.lean,Mathlib/Analysis/Complex/RemovableSingularity.lean,Mathlib/Analysis/Complex/UpperHalfPlane/Basic.lean,Mathlib/Analysis/Complex/UpperHalfPlane/Measure.lean,Mathlib/Analysis/Complex/UpperHalfPlane/Metric.lean,Mathlib/Analysis/Complex/UpperHalfPlane/Topology.lean,Mathlib/Analysis/Convex/Cone/InnerDual.lean,Mathlib/Analysis/Convex/Exposed.lean,Mathlib/Analysis/Convex/Gauge.lean,Mathlib/Analysis/Convex/PartitionOfUnity.lean,Mathlib/Analysis/Convex/Side.lean,Mathlib/Analysis/Convex/StdSimplex.lean,Mathlib/Analysis/Convolution.lean,Mathlib/Analysis/InnerProductSpace/Continuous.lean,Mathlib/Analysis/InnerProductSpace/Harmonic/HarmonicContOnCl.lean,Mathlib/Analysis/InnerProductSpace/LinearPMap.lean,Mathlib/Analysis/InnerProductSpace/MeanErgodic.lean,Mathlib/Analysis/InnerProductSpace/OfNorm.lean,Mathlib/Analysis/LocallyConvex/Separation.lean,Mathlib/Analysis/Meromorphic/Order.lean,Mathlib/Analysis/Meromorphic/TrailingCoefficient.lean,Mathlib/Analysis/Normed/Affine/AddTorsor.lean,Mathlib/Analysis/Normed/Group/Continuity.lean,Mathlib/Analysis/Normed/Group/Lemmas.lean,Mathlib/Analysis/Normed/Module/Ball/Homeomorph.lean,Mathlib/Analysis/Normed/Module/Connected.lean,Mathlib/Analysis/Normed/Module/FiniteDimension.lean,Mathlib/Analysis/Normed/Module/Multilinear/Basic.lean,Mathlib/Analysis/Normed/Operator/Completeness.lean,Mathlib/Analysis/ODE/Gronwall.lean,Mathlib/Analysis/ODE/PicardLindelof.lean,Mathlib/Analysis/RCLike/Basic.lean,Mathlib/Analysis/Seminorm.lean,Mathlib/Analysis/SpecialFunctions/Complex/Arg.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/Rpow/Isometric.lean,Mathlib/Analysis/SpecialFunctions/Elliptic/Weierstrass.lean,Mathlib/Analysis/SpecialFunctions/Gamma/Basic.lean,Mathlib/Analysis/SpecialFunctions/Gamma/Deligne.lean,Mathlib/Analysis/SpecialFunctions/Gaussian/GaussianIntegral.lean,Mathlib/Analysis/SpecialFunctions/Gaussian/PoissonSummation.lean,Mathlib/Analysis/SpecialFunctions/Integrability/Basic.lean,Mathlib/Analysis/SpecialFunctions/Integrals/Basic.lean,Mathlib/Analysis/SpecialFunctions/MulExpNegMulSq.lean,Mathlib/Analysis/SpecialFunctions/PolarCoord.lean,Mathlib/Analysis/SpecialFunctions/Pow/Continuity.lean,Mathlib/Analysis/SpecialFunctions/Pow/Deriv.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Basic.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Inverse.lean,Mathlib/Computability/AkraBazzi/SumTransform.lean,Mathlib/Condensed/Light/TopCatAdjunction.lean,Mathlib/Condensed/TopCatAdjunction.lean,Mathlib/Dynamics/OmegaLimit.lean,Mathlib/Geometry/Euclidean/Angle/Oriented/Basic.lean,Mathlib/Geometry/Manifold/Bordism.lean,Mathlib/Geometry/Manifold/Complex.lean,Mathlib/Geometry/Manifold/Instances/Icc.lean,Mathlib/Geometry/Manifold/Instances/Real.lean,Mathlib/Geometry/Manifold/SmoothApprox.lean,Mathlib/MeasureTheory/Function/SpecialFunctions/Basic.lean,Mathlib/MeasureTheory/Integral/Bochner/Basic.lean,Mathlib/MeasureTheory/Integral/CircleIntegral.lean,Mathlib/MeasureTheory/Integral/CircleTransform.lean,Mathlib/MeasureTheory/Integral/DominatedConvergence.lean,Mathlib/MeasureTheory/Integral/IntervalIntegral/Basic.lean,Mathlib/MeasureTheory/Integral/IntervalIntegral/FundThmCalculus.lean,Mathlib/MeasureTheory/Integral/RieszMarkovKakutani/Real.lean,Mathlib/MeasureTheory/Measure/LevyProkhorovMetric.lean,Mathlib/MeasureTheory/Measure/Stieltjes.lean,Mathlib/NumberTheory/Cyclotomic/CyclotomicCharacter.lean,Mathlib/NumberTheory/Harmonic/ZetaAsymp.lean,Mathlib/NumberTheory/LSeries/AbstractFuncEq.lean,Mathlib/NumberTheory/LSeries/Deriv.lean,Mathlib/NumberTheory/LSeries/Dirichlet.lean,Mathlib/NumberTheory/LSeries/DirichletContinuation.lean,Mathlib/NumberTheory/LSeries/HurwitzZetaOdd.lean,Mathlib/NumberTheory/LSeries/PrimesInAP.lean |
185 |
19 |
['github-actions', 'j-loreaux', 'mathlib-bors', 'mathlib-merge-conflicts', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
68-3406 2 months ago |
290-26540 290 days ago |
0-1 1 second |
| 37819 |
YellPika author:YellPika |
feat(Order/OmegaCompletePartialOrder): add `OmegaCompletePartialOrder` instance for `WithBot` with basic `ωScottContinuous` lemmas |
This is a modification of #34093. See #34093 for details.
---
- [x] depends on: #33941
- [x] depends on: #37258
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new-contributor
t-order
merge-conflict
|
337/10 |
Mathlib/Algebra/Order/Ring/WithTop.lean,Mathlib/Analysis/BoxIntegral/Box/Basic.lean,Mathlib/Order/Monotone/Basic.lean,Mathlib/Order/OmegaCompletePartialOrder.lean,Mathlib/Order/TypeTags.lean,Mathlib/Order/WithBot.lean |
6 |
6 |
['Komyyy', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
63-63683 2 months ago |
122-4170 122 days ago |
22-11204 22 days |
| 40369 |
plp127 author:plp127 |
refactor: make `IsAtom` not depend on `OrderBot` |
We choose for `IsAtom a` to mean `∃ b, b ⋖ a ∧ ∀ c, c < a → b ≤ c`, which is equivalent to the current definition in the case of a `PartialOrder` with `OrderBot`. See [Zulip](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/.60IsAtom.60.20is.20wrong.20for.20preorders/near/601014129).
---
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|
t-order
merge-conflict
|
370/300 |
Mathlib/Algebra/Group/Subgroup/Order.lean,Mathlib/Algebra/Lie/InvariantForm.lean,Mathlib/Algebra/Lie/Killing.lean,Mathlib/Algebra/Lie/Semisimple/Basic.lean,Mathlib/Data/Finset/Grade.lean,Mathlib/GroupTheory/GroupAction/Jordan.lean,Mathlib/GroupTheory/Perm/MaximalSubgroups.lean,Mathlib/GroupTheory/SpecificGroups/Alternating/MaximalSubgroups.lean,Mathlib/GroupTheory/Sylow.lean,Mathlib/LinearAlgebra/Basis/VectorSpace.lean,Mathlib/LinearAlgebra/FiniteDimensional/Basic.lean,Mathlib/LinearAlgebra/Span/Basic.lean,Mathlib/Order/Atoms.lean,Mathlib/Order/BooleanGenerators.lean,Mathlib/Order/CompactlyGenerated/Basic.lean,Mathlib/Order/Filter/Ultrafilter/Defs.lean,Mathlib/Order/Ideal.lean,Mathlib/Order/Partition/Finpartition.lean,Mathlib/Order/Radical.lean,Mathlib/Order/SuccPred/Tree.lean,Mathlib/Order/ZornAtoms.lean,Mathlib/RingTheory/ChainOfDivisors.lean,Mathlib/RingTheory/DedekindDomain/Dvr.lean,Mathlib/RingTheory/DedekindDomain/Ideal/Basic.lean,Mathlib/RingTheory/DualNumber.lean,Mathlib/RingTheory/Ideal/Basic.lean,Mathlib/RingTheory/Ideal/GoingUp.lean,Mathlib/RingTheory/Ideal/Maps.lean,Mathlib/RingTheory/Ideal/Maximal.lean,Mathlib/RingTheory/Ideal/Quotient/Basic.lean,Mathlib/RingTheory/Jacobson/Ideal.lean,Mathlib/RingTheory/Jacobson/Radical.lean,Mathlib/RingTheory/Jacobson/Ring.lean,Mathlib/RingTheory/KrullDimension/Zero.lean,Mathlib/RingTheory/LocalRing/Basic.lean,Mathlib/RingTheory/LocalRing/MaximalIdeal/Basic.lean,Mathlib/RingTheory/PrincipalIdealDomain.lean,Mathlib/RingTheory/SimpleModule/Isotypic.lean,Mathlib/RingTheory/Spectrum/Prime/Basic.lean,Mathlib/Topology/Sets/Closeds.lean |
40 |
3 |
['github-actions', 'mathlib-merge-conflicts', 'plp127'] |
nobody |
60-26124 1 month ago |
60-26125 60 days ago |
22-11352 22 days |
| 40626 |
chenson2018 author:chenson2018 |
feat(Logic/Relation): some `EqvGen` API |
This is adapted from #40606 and existing lemmas in CSLib. I move two theorems (`Equivalence.eqvGen_iff` and `Equivalence.eqvGen_eq`) earlier for a better proof of `EqvGen.lift'` that matches what is done for other closures.
Co-authored-by: Dagur Asgeirsson <dagurtomas@gmail.com>
---
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|
t-logic
merge-conflict
|
77/14 |
Mathlib/Logic/Relation.lean |
1 |
6 |
['chenson2018', 'github-actions', 'mathlib-merge-conflicts', 'plp127'] |
nobody |
55-34704 1 month ago |
55-34705 55 days ago |
19-39562 19 days |
| 40435 |
bryangingechen author:bryangingechen |
ci: duplicate declarations report |
This adds a workflow that runs `lintDuplicateDeclarations` weekly and posts a summary to Zulip (with the full report in a workflow artifact).
Prepared with Claude code.
---
- [ ] depends on: #33640
|
merge-conflict |
350/0 |
.github/workflows/duplicate_decls_report.yml,Mathlib.lean,Mathlib/Tactic.lean,Mathlib/Tactic/DuplicateDecls.lean,MathlibTest/Tactic/DuplicateDecls.lean,MathlibTest/Tactic/DuplicateDeclsAux.lean,docs/workflows.md,scripts/README.md,scripts/dup_decls_report.lean |
9 |
9 |
['bryangingechen', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'mathlib-splicebot'] |
nobody |
53-36167 1 month ago |
82-35245 82 days ago |
0-126 2 minutes |
| 33402 |
AntoineChambert-Loir author:AntoineChambert-Loir |
feat(LinearAlgebra/Transvection/Generation): prove exceptional case in Dieudonné's theorem |
Establish the fourth part of Dieudonné's theorem: is a linear equivalence is exceptional, it
is the product of `finrank K (V ⧸ e.fixedSubmodule)` transvections and one dilatransvection.
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- [ ] depends on: #33347
- [ ] depends on: #33387
- [ ] depends on: #33282
- [ ] depends on: #33392
[](https://gitpod.io/from-referrer/)
|
t-algebra
merge-conflict
label:t-algebra$ |
713/0 |
Mathlib.lean,Mathlib/LinearAlgebra/Center.lean,Mathlib/LinearAlgebra/LinearIndependent/Lemmas.lean,Mathlib/LinearAlgebra/Transvection/Basic.lean,Mathlib/LinearAlgebra/Transvection/Generation.lean |
5 |
13 |
['AntoineChambert-Loir', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'mathlib4-merge-conflict-bot'] |
nobody |
47-4992 1 month ago |
47-4992 47 days ago |
0-13493 3 hours |
| 40964 |
grunweg author:grunweg |
chore: explicitly specify free universes in `TopCat` and friends |
Avoid free universe variables, as discussed on Zulip: https://leanprover.zulipchat.com/#narrow/channel/144837-PR-reviews/topic/.2338223.20The.20Category.20of.20C.5En.20Manifolds/near/587824522
Perhaps, we should have a linter for this, such as by
- extending the `pp_universes` attribute (TODO fix name) to take a list of universes, and only pretty-print those
- the linter checks for any universes which are annotated with this attribute: if a declaration has a universe metavariable corresponding to such a universe, we warn
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t-algebra
merge-conflict
label:t-algebra$ |
117/114 |
Mathlib/Algebra/Category/ModuleCat/Topology/Basic.lean,Mathlib/Algebra/Category/ModuleCat/Topology/Homology.lean,Mathlib/AlgebraicGeometry/Scheme.lean,Mathlib/AlgebraicGeometry/Spec.lean,Mathlib/RepresentationTheory/Continuous/TopRep.lean,Mathlib/Topology/Specialization.lean,MathlibTest/CategoryTheory/ConcreteCategory/TopModuleCat.lean |
7 |
11 |
['felixpernegger', 'github-actions', 'grunweg', 'leanprover-radar', 'mathlib-merge-conflicts'] |
nobody |
45-15038 1 month ago |
45-15039 45 days ago |
17-81069 17 days |
| 38190 |
AntoineChambert-Loir author:AntoineChambert-Loir |
refactor(Topology/Sion): use a dense and continuous completion to generalize the statements |
Use the existence of a dense and continuous completion to simplify the final part of the proof of Sion's theorem.
As a matter of fact, only an early lemma needs to be modified and the rest holds in weaker assumptions,
leading to a serious simplification.
Since the PR proving Sion is very recent and unused, we didn't add deprecation lemmas.
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|
merge-conflict |
51/125 |
Mathlib/Order/Completion.lean,Mathlib/Topology/Sion.lean |
2 |
12 |
['AntoineChambert-Loir', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'vihdzp'] |
nobody |
44-47735 1 month ago |
44-47736 44 days ago |
39-245 39 days |
| 41300 |
alreadydone author:alreadydone |
feat(EllipticCurve): the universal elliptic curve |
+ Define the universal Weierstrass curve (`Universal.curve`) over the polynomial ring `ℤ[A₁,A₂,A₃,A₄,A₆]`, and the universal pointed elliptic curve (`Universal.pointedCurve`) over the field of fractions (`Universal.Field`) of the universal ring `ℤ[A₁,A₂,A₃,A₄,A₆,X,Y]/⟨P⟩ = Universal.Poly/⟨P⟩` (`Universal.Ring`, where `P` is the Weierstrass polynomial) with distinguished point `(X,Y)`.
+ Given a Weierstrass curve `W` over a commutative ring `R`, we define the specialization homomorphism `W.specialize : ℤ[A₁,A₂,A₃,A₄,A₆] →+* R`. If `(x,y)` is a point on the affine plane, we define `W.polyEval x y : Universal.Poly →+* R`, which factors through `W.ringEval x y : Universal.Ring →+* R` if `(x,y)` is on `W`.
migrated from #13847
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t-algebraic-geometry
t-algebra
merge-conflict
label:t-algebra$ |
213/0 |
Mathlib.lean,Mathlib/Algebra/Group/Action/Faithful.lean,Mathlib/AlgebraicGeometry/EllipticCurve/Affine/Point.lean,Mathlib/AlgebraicGeometry/EllipticCurve/Universal.lean |
4 |
10 |
['Multramate', 'alreadydone', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
39-22085 1 month ago |
39-22086 39 days ago |
20-26699 20 days |
| 37716 |
slavanaprienko author:slavanaprienko |
feat(LinearAlgebra/Matrix/Determinant): Desnanot-Jacobi identity |
This PR adds the Desnanot-Jacobi identity (also known as the Lewis Carroll identity or Dodgson condensation): for any (n+2)×(n+2) matrix M over a commutative ring,
$$\det(M) \cdot \det(M_{1,n}^{1,n}) = \det(M_1^1) \cdot \det(M_n^n) - \det(M_1^n) \cdot \det(M_n^1)$$
The proof follows Bressoud's *Proofs and Confirmations* (Cambridge University Press, 1999): multiply M by an auxiliary matrix built from columns of the adjugate, then compare determinants. This yields the identity premultiplied by det(M). To cancel, we pass to a universal polynomial ring (an integral domain with nonzero determinant), then specialize back to arbitrary commutative rings.
It seems there's some interest in adding this:
https://leanprover.zulipchat.com/#narrow/channel/217875-Is-there-code-for-X.3F/topic/Determinantal.20identity.20and.20the.20Cauchy.20matrix.20determinant/with/582946873
--- |
t-algebra
new-contributor
merge-conflict
label:t-algebra$ |
217/0 |
Mathlib.lean,Mathlib/LinearAlgebra/Matrix/Determinant/DesnanotJacobi.lean |
2 |
14 |
['SnirBroshi', 'github-actions', 'grunweg', 'kim-em', 'mathlib-merge-conflicts', 'slavanaprienko'] |
nobody |
33-61440 1 month ago |
59-24175 59 days ago |
53-49476 53 days |
| 26394 |
winstonyin author:winstonyin |
feat: existence of local flows on manifolds |
This PR continues the work from #21777.
Original PR: https://github.com/leanprover-community/mathlib4/pull/21777
Transfer the existence theorem of local flows on vector spaces to manifolds. The precise statement is:
> If a vector field `v` on a manifold `M` is continuously differentiable at an interior point `x₀`, then for a given `t₀` there exists a neighbourhood `u` of `x₀`, a positive `ε`, and `γ : M → ℝ → M` such that `γ x` is an integral curve of `v` on `(t₀ - ε, t₀ + ε)` for all `x ∈ u`.
This is powerful because all curves `γ x` (each with initial condition `x ∈ u`) share the same existence time interval `(t₀ - ε, t₀ + ε)`, rather than each curve having its own `ε`. This will allow us to show that $C^1$ vector fields on compact manifolds always have global integral curves / global flows.
Any suggestions to shorten the proof or split out useful lemmas are welcome!
- [x] depends on: #26392
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|
t-differential-geometry
merge-conflict
|
138/61 |
Mathlib/Analysis/ODE/PicardLindelof.lean,Mathlib/Geometry/Manifold/IntegralCurve/ExistUnique.lean,Mathlib/Order/Filter/Prod.lean |
3 |
13 |
['github-actions', 'grunweg', 'leanprover-community-bot-assistant', 'mathlib-merge-conflicts', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot', 'ocfnash', 'winstonyin'] |
nobody |
33-61410 1 month ago |
92-25302 92 days ago |
23-5862 23 days |
| 38649 |
chrisflav author:chrisflav |
chore(RingTheory): equality of linear map with values in finite module spreads out |
We add some corollaries of `Module.Finite.exists_smul_of_comp_eq_of_isLocalizedModule`.
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|
t-ring-theory
large-import
merge-conflict
|
75/1 |
Mathlib/Algebra/Module/FinitePresentation.lean,Mathlib/RingTheory/Localization/BaseChange.lean,Mathlib/RingTheory/Localization/Module.lean |
3 |
3 |
['github-actions', 'mathlib-merge-conflicts'] |
mariainesdff assignee:mariainesdff |
33-24225 1 month ago |
33-24226 33 days ago |
91-31582 91 days |
| 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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|
t-topology
merge-conflict
|
163/11 |
Mathlib/Topology/Basic.lean,Mathlib/Topology/Closure.lean,Mathlib/Topology/Compactness/Compact.lean,Mathlib/Topology/MetricSpace/Bounded.lean,Mathlib/Topology/MetricSpace/ProperSpace.lean,Mathlib/Topology/Order/Compact.lean,Mathlib/Topology/Order/OrderClosed.lean,Mathlib/Topology/Separation/Basic.lean,Mathlib/Topology/Separation/Hausdorff.lean,MathlibTest/Compactness.lean |
10 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
33-24097 1 month ago |
33-24098 33 days ago |
0-26547 7 hours |
| 41565 |
grunweg author:grunweg |
chore: specify doc-strings of auto-generated additive declarations di… |
…rectly
There's no need for add_decl_doc any more.
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merge-conflict |
64/107 |
Mathlib/Algebra/Category/Grp/Basic.lean,Mathlib/Algebra/Group/Action/Basic.lean,Mathlib/Algebra/Group/Action/Defs.lean,Mathlib/Algebra/Group/Action/Hom.lean,Mathlib/Algebra/Group/Hom/Basic.lean,Mathlib/Algebra/Group/Subsemigroup/Basic.lean,Mathlib/Algebra/Notation/Defs.lean,Mathlib/Algebra/Order/BigOperators/Group/Finset.lean,Mathlib/GroupTheory/Finiteness.lean,Mathlib/MeasureTheory/Group/Action.lean,Mathlib/MeasureTheory/Measure/MeasureSpaceDef.lean,Mathlib/Topology/Algebra/ConstMulAction.lean |
12 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
31-20835 1 month ago |
31-20835 31 days ago |
20-39997 20 days |
| 40695 |
khwilson author:khwilson |
feat(Topology/Semicontinuity/Hemicontinuity): intersections with compact absolutely convex sets |
Constructing lower hemicontinuous functions from other lower hemicontinuous functions is an important part of working with them. This PR shows that the intersection of a lower hemicontinuous function whose values are star convex w/r/t 0 with a compact, absolutely convex neighborhood of zero is also lower hemicontinuous.
This construction is used, for example, in combination with Michael's selection theorem to refine the open mapping theorem to say that if `f : V -> W` is a continuous, linear, bounded surjection of Banach spaces and K is a compact, absolutely convex neighborhood of zero, then there is a continuous section `g : f(K) -> K` of the restriction `f|_K : K -> W`. (This refinement is a follow up PR.)
Note this PR also contains some cleanup of the names in `Gauge.lean` along with the theorems we add for this PR.
- [ ] depends on: #40377
AI Disclosure: Claude models used for translating proof outline into first draft which was then refactored and revised
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t-topology
large-import
merge-conflict
|
338/24 |
Mathlib/Analysis/Convex/Gauge.lean,Mathlib/Analysis/LocallyConvex/AbsConvex.lean,Mathlib/Analysis/LocallyConvex/AbsConvexOpen.lean,Mathlib/Topology/Semicontinuity/Hemicontinuity.lean |
4 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
27-52795 27 days ago |
75-5819 75 days ago |
0-32 32 seconds |
| 34855 |
staroperator author:staroperator |
feat(Order): use `to_dual` for `PFilter` |
This PR redefines `PFilter` to get rid of `OrderDual` and uses `to_dual` to translate theorems. The whole file of `PFilter` is now deprecated.
Some changes:
- To align with `Filter`, the order on `PFilter` is changed to the reversed set inclusion. Ultrafilters, the dual notion of maximal ideals, become minimal in this order.
- `to_dual` does not work on `sequenceOfCofinals`. I left `Order.Cofinal` and the Rasiowa–Sikorski lemma not `to_dual`-ized, and we should move them to a separate file later.
- `IsLEChain` is added to tag `to_dual`.
- `IsCoatom.isProper`/`IsCoatom.isMaximal` is deprecated by `Order.Ideal.isProper_of_isCoatom`/`Order.Ideal.isMaximal_of_isProper`, since this result is special to ideals while `IsCoatom` namespace should be for orders in general.
---
- [x] depends on: #34820
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t-order
merge-conflict
|
292/242 |
Mathlib/Order/Atoms.lean,Mathlib/Order/BooleanAlgebra/Basic.lean,Mathlib/Order/BooleanAlgebra/Defs.lean,Mathlib/Order/CompleteLattice/Defs.lean,Mathlib/Order/Ideal.lean,Mathlib/Order/PFilter.lean,Mathlib/Order/Preorder/Chain.lean,Mathlib/Order/PrimeIdeal.lean,Mathlib/Order/PrimeSeparator.lean,Mathlib/Order/ZornAtoms.lean,Mathlib/RingTheory/IdealFilter/Basic.lean,Mathlib/RingTheory/IdealFilter/Topology.lean,Mathlib/Tactic/Translate/ToDual.lean |
13 |
7 |
['JovanGerb', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'staroperator'] |
nobody |
25-13534 25 days ago |
83-26016 83 days ago |
38-31545 38 days |
| 35812 |
khwilson author:khwilson |
feat(MeasureTheory/Group/GeometryOfNumbers): successive minima and existence of a directional basis |
Define the successive minima of a discrete subgroup of a real vector space with respect to a convex set. These invariants show up throughout the geometry of numbers and are the focus of Minkowski's Second Theorem (whose statement is left here with a `proof_wanted`).
Note: The key lemma is that the "gauge set" of the convex set is closed. I took the approach of showing that it is sequentially closed. There's an alternative approach via showing it's the union of a finite number of closed sets. I personally thought this approach was more intuitive, but the union approach may result in a slightly shorter proof.
Co-authored-by: Yaël Dillies <yael.dillies@gmail.com>
---
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|
new-contributor
t-measure-probability
merge-conflict
|
350/36 |
Mathlib/Algebra/Module/ZLattice/Basic.lean,Mathlib/Analysis/Convex/Basic.lean,Mathlib/Analysis/Convex/Body.lean,Mathlib/Analysis/Convex/Gauge.lean,Mathlib/LinearAlgebra/FiniteDimensional/Basic.lean,Mathlib/MeasureTheory/Group/GeometryOfNumbers.lean,Mathlib/NumberTheory/NumberField/Units/Regulator.lean |
7 |
99 |
['Vierkantor', 'YaelDillies', 'github-actions', 'joneugster', 'khwilson', 'mathlib-merge-conflicts', 'ocfnash', 'sgouezel'] |
nobody |
24-83441 24 days ago |
24-83441 24 days ago |
90-31998 90 days |
| 41622 |
benjub author:benjub |
feat(Order): add subset_Icc_iff and Set.OrdConnected.eq_Icc |
Add two lemmas relating to closed bounded intervals in a preorder:
- `subset_Icc_iff : s ⊆ Icc a b ↔ a ∈ lowerBounds s ∧ b ∈ upperBounds s` in `Mathlib/Order/Bounds/Basic.lean` characterizes containment in a closed bounded interval. This is the version "with witnesses" of `bddBelow_bddAbove_iff_subset_Icc`, and we prove the latter as a corollary.
- `OrdConnected.eq_Icc (s : Set α) (hs : OrdConnected s) (ha : IsLeast s a) (hb : IsGreatest s b) : s = Icc a b` in `Mathlib/Order/Interval/Set/OrdConnected.lean` gives a sufficient condition to be a closed bounded interval. It uses the previous lemma in its proof.
---
**Motivation:** I plan to use `OrdConnected.eq_Icc` to show that a set is closed when it is ordconnected and contains its infimum and supremum. This will allow to use the existing "continuous induction principle" `IsClosed.mem_of_ge_of_forall_exists_gt` to shorten the (compiling) proof in the draft PR #41552. |
t-order
new-contributor
merge-conflict
|
9/3 |
Mathlib/Order/Bounds/Basic.lean,Mathlib/Order/Interval/Set/OrdConnected.lean |
2 |
6 |
['benjub', 'github-actions', 'grunweg', 'mathlib-merge-conflicts'] |
nobody |
24-22236 24 days ago |
24-22237 24 days ago |
25-30706 25 days |
| 40336 |
Bergschaf author:Bergschaf |
feat(Order/Sublocales): definition of open sublocales |
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t-order
merge-conflict
|
49/7 |
Mathlib/Order/Sublocale.lean |
1 |
4 |
['Bergschaf', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
20-62401 20 days ago |
20-62401 20 days ago |
62-83224 62 days |
| 39935 |
FordUniver author:FordUniver |
feat(Combinatorics/SimpleGraph/Finite): LocallyFiniteOrder |
Adds an order-theoretic `LocallyFiniteOrder (SimpleGraph V)` instance (closed intervals are finite), distinct from the existing graph-theoretic `LocallyFinite` (vertex degrees) already in this file. The instance takes `DecidableLE` as an explicit hypothesis rather than routing through `Classical`, because per-graph `DecidableRel G.Adj` is value-dependent and cannot be a free global instance.
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
merge-conflict
|
20/0 |
Mathlib/Combinatorics/SimpleGraph/Finite.lean |
1 |
4 |
['SnirBroshi', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
20-43698 20 days ago |
20-62403 20 days ago |
74-76314 74 days |
| 42070 |
felixpernegger author:felixpernegger |
chore: order imports of leaf files |
This PR orders imports of (almost) all leaf files to the standard
public import A
public import C
import B
import D
format. Excludes 18 files where `import all` or `public meta import` appears since we dont have a fixed convention for these imports yet.
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merge-conflict |
492/492 |
Mathlib/Algebra/Algebra/Subalgebra/Matrix.lean,Mathlib/Algebra/Azumaya/Basic.lean,Mathlib/Algebra/Category/ModuleCat/Differentials/Presheaf.lean,Mathlib/Algebra/Category/ModuleCat/ExteriorPower.lean,Mathlib/Algebra/Category/ModuleCat/Pseudofunctor.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/PullbackFree.lean,Mathlib/Algebra/Category/MonCat/Adjunctions.lean,Mathlib/Algebra/Category/MonCat/Colimits.lean,Mathlib/Algebra/Category/Ring/Topology.lean,Mathlib/Algebra/Category/Ring/Under/Property.lean,Mathlib/Algebra/DirectSum/Idempotents.lean,Mathlib/Algebra/FreeMonoid/FreeSemigroup.lean,Mathlib/Algebra/Group/Action/Equidecomp.lean,Mathlib/Algebra/Group/Pointwise/Finset/Density.lean,Mathlib/Algebra/Group/Pointwise/Finset/Interval.lean,Mathlib/Algebra/GroupWithZero/Action/Pointwise/Finset.lean,Mathlib/Algebra/GroupWithZero/Submonoid/CancelMulZero.lean,Mathlib/Algebra/HierarchyDesign.lean,Mathlib/Algebra/Homology/GrothendieckAbelian.lean,Mathlib/Algebra/Lie/Classical.lean,Mathlib/Algebra/Lie/DirectSum.lean,Mathlib/Algebra/Module/GradedModule.lean,Mathlib/Algebra/Module/PointwisePi.lean,Mathlib/Algebra/Module/Presentation/Differentials.lean,Mathlib/Algebra/Module/Presentation/Finite.lean,Mathlib/Algebra/Module/Presentation/RestrictScalars.lean,Mathlib/Algebra/Module/Torsion/PrimaryComponent.lean,Mathlib/Algebra/MvPolynomial/SchwartzZippel.lean,Mathlib/Algebra/NoZeroSMulDivisors/Pi.lean,Mathlib/Algebra/Order/Group/Bounds.lean,Mathlib/Algebra/Order/GroupWithZero/Lex.lean,Mathlib/Algebra/Order/Interval/Basic.lean,Mathlib/Algebra/Order/SuccPred/TypeTags.lean,Mathlib/Algebra/Polynomial/SpecificDegree.lean,Mathlib/Algebra/Ring/Ext.lean,Mathlib/Algebra/Ring/Pointwise/Finset.lean,Mathlib/Algebra/Ring/Subgroup.lean,Mathlib/Algebra/SkewMonoidAlgebra/Lift.lean,Mathlib/Algebra/Star/CentroidHom.lean,Mathlib/Algebra/Star/Free.lean,Mathlib/Algebra/Tropical/BigOperators.lean,Mathlib/AlgebraicGeometry/AffineTransitionLimit.lean,Mathlib/AlgebraicGeometry/AlgebraicCycle/Basic.lean,Mathlib/AlgebraicGeometry/Group/Smooth.lean,Mathlib/AlgebraicGeometry/Morphisms/FlatRank.lean,Mathlib/AlgebraicGeometry/Sites/Representability.lean,Mathlib/AlgebraicTopology/ModelCategory/JoyalTrick.lean,Mathlib/AlgebraicTopology/ModelCategory/Over.lean,Mathlib/AlgebraicTopology/Quasicategory/StrictBicategory.lean,Mathlib/AlgebraicTopology/SimplicialSet/Homology/Nondegenerate.lean,Mathlib/AlgebraicTopology/SimplicialSet/NonsingularColimit.lean,Mathlib/Analysis/Asymptotics/Completion.lean,Mathlib/Analysis/CStarAlgebra/CompletelyPositiveMap.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Note.lean,Mathlib/Analysis/CStarAlgebra/Multiplier.lean,Mathlib/Analysis/Calculus/DerivativeTest.lean,Mathlib/Analysis/Calculus/Gradient/Basic.lean,Mathlib/Analysis/Calculus/ImplicitFunction/Bivariate.lean,Mathlib/Analysis/Calculus/LineDeriv/QuadraticMap.lean,Mathlib/Analysis/Calculus/LocalExtr/LineDeriv.lean,Mathlib/Analysis/Calculus/LocalExtr/Polynomial.lean,Mathlib/Analysis/Calculus/Rademacher.lean,Mathlib/Analysis/Calculus/TangentCone/ProperSpace.lean,Mathlib/Analysis/Calculus/TangentCone/Seq.lean,Mathlib/Analysis/Calculus/TaylorIntegral.lean,Mathlib/Analysis/Complex/Hadamard.lean,Mathlib/Analysis/Complex/Harmonic/Liouville.lean,Mathlib/Analysis/Complex/Tietze.lean,Mathlib/Analysis/Complex/UpperHalfPlane/FixedPoints.lean,Mathlib/Analysis/Complex/UpperHalfPlane/Measure.lean,Mathlib/Analysis/ConstantSpeed.lean,Mathlib/Analysis/Convex/AmpleSet.lean,Mathlib/Analysis/Convex/Birkhoff.lean,Mathlib/Analysis/Convex/Extrema.lean,Mathlib/Analysis/Convex/SimplicialComplex/AffineIndependentUnion.lean,Mathlib/Analysis/Distribution/Support.lean,Mathlib/Analysis/InnerProductSpace/JointEigenspace.lean,Mathlib/Analysis/InnerProductSpace/OfNorm.lean,Mathlib/Analysis/InnerProductSpace/StarOrder.lean,Mathlib/Analysis/LocallyConvex/Montel.lean,Mathlib/Analysis/LocallyConvex/PointwiseConvergence.lean,Mathlib/Analysis/Normed/Affine/ContinuousAffineMap.lean,Mathlib/Analysis/Normed/Affine/MazurUlam.lean,Mathlib/Analysis/Normed/Algebra/MatrixExponential.lean,Mathlib/Analysis/Normed/Algebra/QuaternionExponential.lean,Mathlib/Analysis/Normed/Group/SemiNormedGrp/Completion.lean,Mathlib/Analysis/Normed/Group/SemiNormedGrp/Kernels.lean,Mathlib/Analysis/Normed/Module/ContinuousInverse.lean,Mathlib/Analysis/Normed/Operator/Perturbation/StrictByFinite.lean,Mathlib/Analysis/ODE/Transform.lean,Mathlib/Analysis/Real/Pi/Irrational.lean,Mathlib/Analysis/SpecialFunctions/ArithmeticGeometricMean.lean,Mathlib/Analysis/SpecialFunctions/BinaryEntropy.lean,Mathlib/Analysis/SpecialFunctions/CompareExp.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/ExpLog/Order.lean,Mathlib/Analysis/SpecialFunctions/Log/Monotone.lean,Mathlib/Analysis/SpecialFunctions/Pochhammer.lean,Mathlib/Analysis/SpecialFunctions/Pow/Integral.lean,Mathlib/Analysis/SpecialFunctions/Pow/NthRootLemmas.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Chebyshev/ChebyshevGauss.lean |
368 |
7 |
['felixpernegger', 'github-actions', 'leanprover-radar', 'mathlib-bors', 'mathlib-merge-conflicts'] |
nobody |
20-23893 20 days ago |
20-23894 20 days ago |
17-8925 17 days |
| 40768 |
AlexeyMilovanov author:AlexeyMilovanov |
Add a reachability characterization for PFun.fix |
Add a `ReflTransGen` characterization of `PFun.fix` and use it to simplify one Turing machine proof. |
new-contributor
merge-conflict
|
27/13 |
Mathlib/Computability/TuringMachine/Config.lean,Mathlib/Data/PFun.lean |
2 |
3 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
20-4119 20 days ago |
20-4120 20 days ago |
40-57718 40 days |
| 31595 |
astrainfinita author:astrainfinita |
chore: redefine `Ideal.IsPrime` |
Redefine `Ideal.IsPrime` to make it correct for non-commutative cases
---
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t-algebra
merge-conflict
label:t-algebra$ |
383/111 |
Mathlib/Algebra/Order/Ring/Ordering/Defs.lean,Mathlib/RingTheory/DedekindDomain/Ideal/Lemmas.lean,Mathlib/RingTheory/GradedAlgebra/Homogeneous/Maps.lean,Mathlib/RingTheory/GradedAlgebra/Radical.lean,Mathlib/RingTheory/Ideal/AssociatedPrime/Basic.lean,Mathlib/RingTheory/Ideal/Maps.lean,Mathlib/RingTheory/Ideal/Maximal.lean,Mathlib/RingTheory/Ideal/MinimalPrime/Noetherian.lean,Mathlib/RingTheory/Ideal/Oka.lean,Mathlib/RingTheory/Ideal/Operations.lean,Mathlib/RingTheory/Ideal/Over.lean,Mathlib/RingTheory/Ideal/Pointwise.lean,Mathlib/RingTheory/Ideal/Prime.lean,Mathlib/RingTheory/Ideal/Prod.lean,Mathlib/RingTheory/Ideal/Quotient/Basic.lean,Mathlib/RingTheory/Ideal/Quotient/Operations.lean,Mathlib/RingTheory/IsPrimary.lean,Mathlib/RingTheory/Localization/AtPrime/Basic.lean,Mathlib/RingTheory/Localization/Ideal.lean,Mathlib/RingTheory/Polynomial/Basic.lean,Mathlib/RingTheory/PrincipalIdealDomain.lean,Mathlib/RingTheory/Spectrum/Prime/Topology.lean,Mathlib/RingTheory/Valuation/Basic.lean,Mathlib/RingTheory/Valuation/ValuativeRel/Basic.lean |
24 |
35 |
['alreadydone', 'artie2000', 'astrainfinita', 'erdOne', 'github-actions', 'leanprover-bot', 'leanprover-radar', 'mathlib-merge-conflicts', 'mathlib4-merge-conflict-bot'] |
kim-em assignee:kim-em |
19-40130 19 days ago |
19-40131 19 days ago |
74-55869 74 days |
| 39807 |
vihdzp author:vihdzp |
feat: universe-heterogeneous cardinal equality |
We introduce a predicate `LiftEq a b`, with notation `a =ₗ b`, which states that two cardinals (in different universes) are equal. This serves as a single canonical spelling for `lift.{v} a = lift.{u} b` and similar incantations.
Future PRs will introduce the analogous predicates for `<` and `≤`, and a notation typeclass so the notation can be reused for `Ordinal` and `OrderType`.
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t-set-theory
tech debt
merge-conflict
|
316/149 |
Mathlib/CategoryTheory/Abelian/GrothendieckCategory/EnoughInjectives.lean,Mathlib/FieldTheory/IsAlgClosed/Classification.lean,Mathlib/LinearAlgebra/Dimension/Basic.lean,Mathlib/LinearAlgebra/Dimension/Constructions.lean,Mathlib/LinearAlgebra/Dimension/Free.lean,Mathlib/LinearAlgebra/Dimension/FreeAndStrongRankCondition.lean,Mathlib/LinearAlgebra/Dimension/LinearMap.lean,Mathlib/LinearAlgebra/Dimension/StrongRankCondition.lean,Mathlib/ModelTheory/Basic.lean,Mathlib/ModelTheory/Satisfiability.lean,Mathlib/RingTheory/AlgebraicIndependent/Basic.lean,Mathlib/RingTheory/AlgebraicIndependent/RankAndCardinality.lean,Mathlib/RingTheory/AlgebraicIndependent/TranscendenceBasis.lean,Mathlib/RingTheory/LinearDisjoint.lean,Mathlib/RingTheory/Localization/Cardinality.lean,Mathlib/SetTheory/Cardinal/Aleph.lean,Mathlib/SetTheory/Cardinal/Arithmetic.lean,Mathlib/SetTheory/Cardinal/Basic.lean,Mathlib/SetTheory/Cardinal/Defs.lean,Mathlib/SetTheory/Cardinal/ENat.lean,Mathlib/SetTheory/Cardinal/Order.lean,Mathlib/SetTheory/Cardinal/ToNat.lean,Mathlib/SetTheory/Ordinal/Univ.lean,Mathlib/SetTheory/ZFC/Cardinal.lean |
24 |
4 |
['acmepjz', 'github-actions', 'mathlib-merge-conflicts'] |
alreadydone assignee:alreadydone |
19-37515 19 days ago |
19-37516 19 days ago |
57-57311 57 days |
| 39663 |
Raph-DG author:Raph-DG |
feat(Topology): A spectral map between quasi-separated, prespectral sober spaces has compact fibers |
In this PR, we develop some API around the constructible topology, culminating in the fact that a spectral map between quasi-separated, prespectral sober spaces has compact fibers. To see why this might be of interest, note that the analogous theorem in algebraic geometry (that a quasiseparated map between schemes has quasicompact fibers) does not require any global separatedness assumptions, and the proof of this is very algebraic. So we have the somewhat mysterious situation that it seems as though there are nontrvial topological restrictions on the kinds of spectral maps which can be the underlying maps of morphisms of schemes.
This PR was originally part of #26304, a PR on pushforwards of algebraic cycles. This is where the notion of compactness of fibers becomes relevant, as this guarantees each coefficient of the pushforward of a cycle is computed by a finite sum.
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t-topology
large-import
merge-conflict
|
178/6 |
Mathlib/Topology/Compactness/Compact.lean,Mathlib/Topology/Constructible.lean,Mathlib/Topology/Defs/Induced.lean,Mathlib/Topology/Maps/Proper/Basic.lean,Mathlib/Topology/Spectral/ConstructibleTopology.lean,Mathlib/Topology/WithTopology.lean |
6 |
6 |
['Raph-DG', 'chrisflav', 'github-actions', 'j-loreaux', 'mathlib-merge-conflicts'] |
urkud assignee:urkud |
16-27210 16 days ago |
16-27211 16 days ago |
69-16360 69 days |
| 41759 |
JovanGerb author:JovanGerb |
chore: deprecate `haveI'` and `letI'` |
It seems that the uses of `haveI'` can simply be replaced by `have`. If this doesn't cause performance regressions, then I think that this is desired.
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merge-conflict |
139/138 |
Mathlib/Algebra/Order/Field/Power.lean,Mathlib/NumberTheory/LucasLehmer.lean,Mathlib/Tactic/HaveI.lean,Mathlib/Tactic/ModCases.lean,Mathlib/Tactic/NormNum/Basic.lean,Mathlib/Tactic/NormNum/BigOperators.lean,Mathlib/Tactic/NormNum/DivMod.lean,Mathlib/Tactic/NormNum/Eq.lean,Mathlib/Tactic/NormNum/GCD.lean,Mathlib/Tactic/NormNum/Ineq.lean,Mathlib/Tactic/NormNum/Inv.lean,Mathlib/Tactic/NormNum/LegendreSymbol.lean,Mathlib/Tactic/NormNum/OfScientific.lean,Mathlib/Tactic/NormNum/Ordinal.lean,Mathlib/Tactic/NormNum/Pow.lean,Mathlib/Tactic/NormNum/Prime.lean,Mathlib/Tactic/Positivity/Basic.lean,Mathlib/Tactic/Positivity/Core.lean,Mathlib/Tactic/ReduceModChar.lean |
19 |
11 |
['JovanGerb', 'eric-wieser', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts', 'thorimur'] |
nobody |
16-26162 16 days ago |
16-26162 16 days ago |
30-79839 30 days |
| 42063 |
felixpernegger author:felixpernegger |
chore: add newline between public and private imports |
It is (or at least seems to be) convention to make a new line between public imports and private import (and public imports should come first). This PR adds those missing newlines.
Sometimes public imports were (mistakenly?) added *after* private imports. This PR fixes this as well and orders the imports of affected lines alphabetically.
As a standalone PR, this is pretty unimportant, but ought to make the diffs (and thus reviewing) of later PRs sorting imports etc prettier
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merge-conflict |
206/60 |
Mathlib/Algebra/AddConstMap/Basic.lean,Mathlib/Algebra/AffineMonoid/Embedding.lean,Mathlib/Algebra/CharP/MixedCharZero.lean,Mathlib/Algebra/Group/ModEq.lean,Mathlib/Algebra/Order/Antidiag/FinsuppEquiv.lean,Mathlib/Algebra/Order/Archimedean/Real/Hom.lean,Mathlib/Algebra/Order/GroupWithZero/Basic.lean,Mathlib/Algebra/Order/Ring/Interval.lean,Mathlib/Algebra/Order/ToIntervalMod.lean,Mathlib/Algebra/Polynomial/RingDivision.lean,Mathlib/AlgebraicTopology/SimplicialSet/ProdStdSimplex.lean,Mathlib/AlgebraicTopology/SimplicialSet/StdSimplex.lean,Mathlib/Analysis/Asymptotics/AsymptoticEquivalent.lean,Mathlib/Analysis/Asymptotics/TVS.lean,Mathlib/Analysis/CStarAlgebra/ApproximateUnit.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Projection.lean,Mathlib/Analysis/CStarAlgebra/Fuglede.lean,Mathlib/Analysis/CStarAlgebra/Module/Constructions.lean,Mathlib/Analysis/CStarAlgebra/Module/Defs.lean,Mathlib/Analysis/Calculus/ContDiff/Operations.lean,Mathlib/Analysis/Calculus/Deriv/Inverse.lean,Mathlib/Analysis/Calculus/FDeriv/Basic.lean,Mathlib/Analysis/Calculus/FDeriv/OfCompLeft.lean,Mathlib/Analysis/Calculus/InverseFunctionTheorem/FDeriv.lean,Mathlib/Analysis/Calculus/TangentCone/DimOne.lean,Mathlib/Analysis/Calculus/TangentCone/Pi.lean,Mathlib/Analysis/Calculus/TangentCone/Prod.lean,Mathlib/Analysis/Calculus/TangentCone/Seq.lean,Mathlib/Analysis/Complex/BranchLogRoot.lean,Mathlib/Analysis/Complex/Isometry.lean,Mathlib/Analysis/Complex/Trigonometric.lean,Mathlib/Analysis/Complex/UpperHalfPlane/FixedPoints.lean,Mathlib/Analysis/Complex/UpperHalfPlane/Manifold.lean,Mathlib/Analysis/Convex/FunctionTopology.lean,Mathlib/Analysis/Fourier/FiniteAbelian/PontryaginDuality.lean,Mathlib/Analysis/InnerProductSpace/GramMatrix.lean,Mathlib/Analysis/InnerProductSpace/TensorProduct.lean,Mathlib/Analysis/Matrix/Hermitian.lean,Mathlib/Analysis/Normed/Algebra/GelfandFormula.lean,Mathlib/Analysis/Normed/Field/Lemmas.lean,Mathlib/Analysis/Normed/Module/PiTensorProduct/InjectiveSeminorm.lean,Mathlib/Analysis/RCLike/ContinuousMap.lean,Mathlib/Analysis/RCLike/Sqrt.lean,Mathlib/Analysis/SpecialFunctions/Choose.lean,Mathlib/Analysis/SpecialFunctions/Complex/Arctan.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/Abs.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/ExpLog/Basic.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/ExpLog/Order.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/Rpow/IntegralRepresentation.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/Rpow/Isometric.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/Rpow/Order.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/Rpow/RingInverseOrder.lean,Mathlib/Analysis/SpecialFunctions/Exp.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Angle.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Arctan.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Chebyshev/ChebyshevGauss.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Chebyshev/Orthogonality.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Chebyshev/RootsExtrema.lean,Mathlib/Combinatorics/Additive/SubsetSum.lean,Mathlib/Combinatorics/Compactness.lean,Mathlib/Combinatorics/SetFamily/AhlswedeZhang.lean,Mathlib/Computability/AkraBazzi/AkraBazzi.lean,Mathlib/Computability/AkraBazzi/GrowsPolynomially.lean,Mathlib/Computability/AkraBazzi/SumTransform.lean,Mathlib/Computability/StateTransition.lean,Mathlib/Data/Int/Bitwise.lean,Mathlib/Data/Int/ModEq.lean,Mathlib/Data/List/OffDiag.lean,Mathlib/Data/Nat/Bitwise.lean,Mathlib/Data/Nat/Digits/Defs.lean,Mathlib/Data/Nat/MaxPowDiv.lean,Mathlib/Data/Nat/ModEq.lean,Mathlib/Data/Num/Lemmas.lean,Mathlib/Data/String/Basic.lean,Mathlib/Data/Tree/Basic.lean,Mathlib/FieldTheory/RatFunc/AsPolynomial.lean,Mathlib/Geometry/Euclidean/NinePointCircle.lean,Mathlib/Geometry/Euclidean/Similarity.lean,Mathlib/Geometry/Euclidean/Volume/Measure.lean,Mathlib/Geometry/Manifold/Algebra/LieGroup.lean,Mathlib/Geometry/Manifold/Algebra/Monoid.lean,Mathlib/Geometry/Manifold/Complex.lean,Mathlib/Geometry/Manifold/ContMDiff/Atlas.lean,Mathlib/Geometry/Manifold/Instances/Icc.lean,Mathlib/Geometry/Manifold/IntegralCurve/ExistUnique.lean,Mathlib/Geometry/Manifold/MFDeriv/Basic.lean,Mathlib/Geometry/Manifold/MFDeriv/UniqueDifferential.lean,Mathlib/Geometry/Manifold/VectorBundle/MDifferentiable.lean,Mathlib/Geometry/Manifold/VectorBundle/Tangent.lean,Mathlib/Geometry/Manifold/VectorBundle/Tensoriality.lean,Mathlib/Geometry/Manifold/VectorField/LieBracket.lean,Mathlib/GroupTheory/Archimedean.lean,Mathlib/GroupTheory/Congruence/Defs.lean,Mathlib/InformationTheory/Coding/KraftMcMillan.lean,Mathlib/Lean/Elab/InfoTree.lean,Mathlib/Lean/Expr/ExtraRecognizers.lean,Mathlib/Lean/MessageData/ForExprs.lean,Mathlib/Lean/MessageData/Trace.lean,Mathlib/LinearAlgebra/Complex/Module.lean,Mathlib/LinearAlgebra/Eigenspace/Charpoly.lean |
151 |
10 |
['felixpernegger', 'github-actions', 'leanprover-radar', 'mathlib-bors', 'mathlib-merge-conflicts', 'themathqueen'] |
nobody |
16-25901 16 days ago |
16-25902 16 days ago |
15-36210 15 days |
| 42273 |
astrainfinita author:astrainfinita |
chore: remove `CovariantClass` and `ContravariantClass` |
This PR continues the work from #13124.
Original PR: https://github.com/leanprover-community/mathlib4/pull/13124 |
t-algebra
t-order
tech debt
merge-conflict
label:t-algebra$ |
526/322 |
Mathlib/Algebra/AddConstMap/Basic.lean,Mathlib/Algebra/Algebra/Operations.lean,Mathlib/Algebra/Algebra/Subalgebra/Pointwise.lean,Mathlib/Algebra/Group/Subgroup/Pointwise.lean,Mathlib/Algebra/Group/Submonoid/Pointwise.lean,Mathlib/Algebra/Module/Submodule/Pointwise.lean,Mathlib/Algebra/Order/AddTorsor.lean,Mathlib/Algebra/Order/Group/Action.lean,Mathlib/Algebra/Order/GroupWithZero/Basic.lean,Mathlib/Algebra/Order/GroupWithZero/Defs.lean,Mathlib/Algebra/Order/Monoid/Defs.lean,Mathlib/Algebra/Order/Monoid/Unbundled/Basic.lean,Mathlib/Algebra/Order/Monoid/Unbundled/Defs.lean,Mathlib/Algebra/Order/Monoid/Unbundled/OrderDual.lean,Mathlib/Algebra/Order/Monoid/Unbundled/WithTop.lean,Mathlib/Algebra/Order/Quantale.lean,Mathlib/Algebra/Order/Ring/Canonical.lean,Mathlib/Algebra/Order/Ring/WithTop.lean,Mathlib/Algebra/Ring/Subring/Pointwise.lean,Mathlib/Algebra/Ring/Subsemiring/Pointwise.lean,Mathlib/Analysis/RCLike/Basic.lean,Mathlib/Analysis/SumOverResidueClass.lean,Mathlib/Data/ENNReal/Action.lean,Mathlib/Data/EReal/Inv.lean,Mathlib/GroupTheory/OrderOfElement.lean,Mathlib/MeasureTheory/Measure/MeasureSpace.lean,Mathlib/Order/Filter/Pointwise.lean,Mathlib/RingTheory/DedekindDomain/Ideal/Basic.lean,Mathlib/RingTheory/Ideal/Pointwise.lean,Mathlib/RingTheory/Valuation/ValuationSubring.lean |
30 |
8 |
['astrainfinita', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts', 'vihdzp'] |
nobody |
16-25765 16 days ago |
16-25766 16 days ago |
13-33787 13 days |
| 42426 |
mcdoll author:mcdoll |
chore(LinearAlgebra/LinearPMap): use `grind` and other golfs |
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t-algebra
merge-conflict
label:t-algebra$ |
63/106 |
Mathlib/LinearAlgebra/LinearPMap.lean |
1 |
8 |
['chenson2018', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts', 'mcdoll', 'yuanyi-350'] |
nobody |
14-4937 14 days ago |
14-4938 14 days ago |
11-34462 11 days |
| 41625 |
felixpernegger author:felixpernegger |
chore: remove unused `haveI` and `letI` |
This PR removes all `haveI/letI` in proofs of theorems when they are actually redundant/unused. (like 11% of total) Excludes MathlibTest.
Note this PR does not touch any abbrevs/defs/instances yet (even Prop valued fields of those), to make it a bit safer we arent accidentally changing something.
Note: Most of these are now `have/let` and no longer `haveI/letI` which is due to #41708. But all removals here are disjoint from #41749.
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merge-conflict |
5/345 |
Mathlib/Algebra/Algebra/Subalgebra/Rank.lean,Mathlib/Algebra/BigOperators/Group/Finset/Basic.lean,Mathlib/Algebra/Category/ModuleCat/Monoidal/Adjunction.lean,Mathlib/Algebra/CharP/LocalRing.lean,Mathlib/Algebra/EuclideanDomain/Basic.lean,Mathlib/Algebra/EuclideanDomain/Defs.lean,Mathlib/Algebra/Homology/HomotopyCofiber.lean,Mathlib/Algebra/Order/GroupWithZero/Bounds.lean,Mathlib/Algebra/Squarefree/Basic.lean,Mathlib/AlgebraicGeometry/EllipticCurve/IsomOfJ.lean,Mathlib/AlgebraicGeometry/Normalization.lean,Mathlib/AlgebraicGeometry/Properties.lean,Mathlib/AlgebraicGeometry/SpreadingOut.lean,Mathlib/AlgebraicGeometry/StructureSheaf.lean,Mathlib/AlgebraicGeometry/ValuativeCriterion.lean,Mathlib/Analysis/Calculus/SmoothSeries.lean,Mathlib/Analysis/Convex/StdSimplex.lean,Mathlib/Analysis/Hofer.lean,Mathlib/Analysis/InnerProductSpace/Projection/FiniteDimensional.lean,Mathlib/Analysis/InnerProductSpace/l2Space.lean,Mathlib/Analysis/Normed/Module/FiniteDimension.lean,Mathlib/Analysis/Normed/Operator/Banach.lean,Mathlib/Analysis/Normed/Order/UpperLower.lean,Mathlib/Analysis/Normed/Unbundled/FiniteExtension.lean,Mathlib/Analysis/Seminorm.lean,Mathlib/CategoryTheory/Abelian/Basic.lean,Mathlib/CategoryTheory/Abelian/GrothendieckAxioms/Basic.lean,Mathlib/CategoryTheory/Abelian/Transfer.lean,Mathlib/CategoryTheory/Adjunction/Reflective.lean,Mathlib/CategoryTheory/Comma/Final.lean,Mathlib/CategoryTheory/Functor/Flat.lean,Mathlib/CategoryTheory/Galois/EssSurj.lean,Mathlib/CategoryTheory/Galois/Examples.lean,Mathlib/CategoryTheory/Galois/Topology.lean,Mathlib/CategoryTheory/Groupoid/Basic.lean,Mathlib/CategoryTheory/Limits/ConeCategory.lean,Mathlib/CategoryTheory/Limits/Constructions/WeaklyInitial.lean,Mathlib/CategoryTheory/Limits/FunctorCategory/Basic.lean,Mathlib/CategoryTheory/Limits/HasLimits.lean,Mathlib/CategoryTheory/Limits/Preserves/Finite.lean,Mathlib/CategoryTheory/Limits/Shapes/Images.lean,Mathlib/CategoryTheory/Limits/Shapes/StrictInitial.lean,Mathlib/CategoryTheory/Limits/VanKampen.lean,Mathlib/CategoryTheory/Localization/Adjunction.lean,Mathlib/CategoryTheory/Localization/CalculusOfFractions.lean,Mathlib/CategoryTheory/Localization/SmallHom.lean,Mathlib/CategoryTheory/Sites/Sheaf.lean,Mathlib/Combinatorics/Additive/ErdosGinzburgZiv.lean,Mathlib/Data/Multiset/ZeroCons.lean,Mathlib/Data/Nat/Totient.lean,Mathlib/FieldTheory/AxGrothendieck.lean,Mathlib/FieldTheory/ChevalleyWarning.lean,Mathlib/FieldTheory/Differential/Basic.lean,Mathlib/FieldTheory/Extension.lean,Mathlib/FieldTheory/Galois/Abelian.lean,Mathlib/FieldTheory/IntermediateField/Adjoin/Algebra.lean,Mathlib/FieldTheory/IntermediateField/Algebraic.lean,Mathlib/FieldTheory/KummerExtension.lean,Mathlib/FieldTheory/LinearDisjoint.lean,Mathlib/FieldTheory/PolynomialGaloisGroup.lean,Mathlib/FieldTheory/PurelyInseparable/Basic.lean,Mathlib/FieldTheory/PurelyInseparable/PerfectClosure.lean,Mathlib/FieldTheory/PurelyInseparable/Tower.lean,Mathlib/FieldTheory/SeparableDegree.lean,Mathlib/Geometry/Manifold/IsManifold/ExtChartAt.lean,Mathlib/Geometry/Manifold/WhitneyEmbedding.lean,Mathlib/GroupTheory/Schreier.lean,Mathlib/GroupTheory/SpecificGroups/Quaternion.lean,Mathlib/LinearAlgebra/AffineSpace/FiniteDimensional.lean,Mathlib/LinearAlgebra/Basis/VectorSpace.lean,Mathlib/LinearAlgebra/BilinearForm/DualLattice.lean,Mathlib/LinearAlgebra/DFinsupp.lean,Mathlib/LinearAlgebra/Dimension/Finite.lean,Mathlib/LinearAlgebra/Dimension/RankNullity.lean,Mathlib/LinearAlgebra/Dimension/StrongRankCondition.lean,Mathlib/LinearAlgebra/Dual/Lemmas.lean,Mathlib/LinearAlgebra/FiniteDimensional/Basic.lean,Mathlib/LinearAlgebra/FiniteDimensional/Lemmas.lean,Mathlib/LinearAlgebra/Finsupp/LinearCombination.lean,Mathlib/LinearAlgebra/Finsupp/Supported.lean,Mathlib/LinearAlgebra/FreeModule/Determinant.lean,Mathlib/LinearAlgebra/FreeModule/PID.lean,Mathlib/LinearAlgebra/LinearDisjoint.lean,Mathlib/LinearAlgebra/LinearIndependent/Basic.lean,Mathlib/LinearAlgebra/LinearIndependent/Lemmas.lean,Mathlib/LinearAlgebra/Matrix/Basis.lean,Mathlib/LinearAlgebra/Matrix/Block.lean,Mathlib/LinearAlgebra/Matrix/GeneralLinearGroup/Defs.lean,Mathlib/LinearAlgebra/Matrix/Irreducible/Defs.lean,Mathlib/LinearAlgebra/Matrix/NonsingularInverse.lean,Mathlib/LinearAlgebra/Matrix/ToLin.lean,Mathlib/LinearAlgebra/Multilinear/FiniteDimensional.lean,Mathlib/LinearAlgebra/QuadraticForm/Basic.lean,Mathlib/LinearAlgebra/RootSystem/GeckConstruction/Lemmas.lean,Mathlib/Logic/Nontrivial/Basic.lean,Mathlib/MeasureTheory/Constructions/BorelSpace/Order.lean,Mathlib/MeasureTheory/Covering/Differentiation.lean,Mathlib/MeasureTheory/Function/AEEqOfIntegral.lean,Mathlib/MeasureTheory/Function/ConditionalExpectation/Indicator.lean,Mathlib/MeasureTheory/Function/StronglyMeasurable/AEStronglyMeasurable.lean |
171 |
27 |
['felixpernegger', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts', 'plp127'] |
nobody |
13-47357 13 days ago |
13-47357 13 days ago |
9-20536 9 days |
| 41815 |
felixpernegger author:felixpernegger |
chore: remove redundant brackets |
Remove redundant `()` brackets. This is pretty minor, but still a strict style improvement, so I PR it
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merge-conflict |
1019/1019 |
Archive/Imo/Imo1982Q1.lean,Archive/Imo/Imo2024Q5.lean,Archive/Imo/Imo2025Q3.lean,Counterexamples/DiscreteTopologyNonDiscreteUniformity.lean,Counterexamples/NowhereDifferentiable.lean,Counterexamples/TopologistsSineCurve.lean,Mathlib/Algebra/Algebra/Subalgebra/Basic.lean,Mathlib/Algebra/Algebra/Subalgebra/MulOpposite.lean,Mathlib/Algebra/BigOperators/Group/List/Defs.lean,Mathlib/Algebra/Category/BoolRing.lean,Mathlib/Algebra/Category/Grp/Adjunctions.lean,Mathlib/Algebra/Category/Grp/Preadditive.lean,Mathlib/Algebra/Category/ModuleCat/Basic.lean,Mathlib/Algebra/Category/ModuleCat/Free.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/Submodule.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/Abelian.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/Limits.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/LocallyFree.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/Quasicoherent.lean,Mathlib/Algebra/Category/Ring/Basic.lean,Mathlib/Algebra/CharZero/Defs.lean,Mathlib/Algebra/Field/Subfield/Defs.lean,Mathlib/Algebra/FreeMonoid/Count.lean,Mathlib/Algebra/Group/Center.lean,Mathlib/Algebra/Group/End.lean,Mathlib/Algebra/Group/Even.lean,Mathlib/Algebra/Group/Subgroup/Order.lean,Mathlib/Algebra/Group/Submonoid/Operations.lean,Mathlib/Algebra/Group/Submonoid/Units.lean,Mathlib/Algebra/Group/TypeTags/Basic.lean,Mathlib/Algebra/Group/Units/Hom.lean,Mathlib/Algebra/Homology/DerivedCategory/Ext/ExactSequences.lean,Mathlib/Algebra/Homology/DerivedCategory/ShortExact.lean,Mathlib/Algebra/Homology/Embedding/AreComplementary.lean,Mathlib/Algebra/Homology/Embedding/Basic.lean,Mathlib/Algebra/Homology/Embedding/CochainComplex.lean,Mathlib/Algebra/Homology/HomotopyCategory/Plus.lean,Mathlib/Algebra/Homology/HomotopyFiber.lean,Mathlib/Algebra/Homology/ShortComplex/Abelian.lean,Mathlib/Algebra/Homology/ShortComplex/Basic.lean,Mathlib/Algebra/Homology/ShortComplex/ConcreteCategory.lean,Mathlib/Algebra/Homology/ShortComplex/Exact.lean,Mathlib/Algebra/Homology/ShortComplex/ExactFunctor.lean,Mathlib/Algebra/Homology/ShortComplex/Homology.lean,Mathlib/Algebra/Homology/ShortComplex/RightHomology.lean,Mathlib/Algebra/Lie/Ideal.lean,Mathlib/Algebra/Lie/LieTheorem.lean,Mathlib/Algebra/Lie/SemiDirect.lean,Mathlib/Algebra/Module/Equiv/Defs.lean,Mathlib/Algebra/Module/Presentation/Basic.lean,Mathlib/Algebra/Module/Presentation/Differentials.lean,Mathlib/Algebra/Module/SpanRank.lean,Mathlib/Algebra/Module/Submodule/Invariant.lean,Mathlib/Algebra/Module/Torsion/Basic.lean,Mathlib/Algebra/MvPolynomial/Basic.lean,Mathlib/Algebra/Order/Antidiag/Finsupp.lean,Mathlib/Algebra/Order/Antidiag/Nat.lean,Mathlib/Algebra/Order/Antidiag/Pi.lean,Mathlib/Algebra/Order/GroupWithZero/Lex.lean,Mathlib/Algebra/Order/GroupWithZero/Range.lean,Mathlib/Algebra/Order/Module/HahnEmbedding.lean,Mathlib/Algebra/Order/Monoid/Lex.lean,Mathlib/Algebra/Order/Positive/Ring.lean,Mathlib/Algebra/Polynomial/Basic.lean,Mathlib/Algebra/Polynomial/Degree/Lemmas.lean,Mathlib/Algebra/QuadraticAlgebra/Basic.lean,Mathlib/Algebra/Quandle.lean,Mathlib/Algebra/Quaternion.lean,Mathlib/Algebra/Ring/Ext.lean,Mathlib/Algebra/Ring/Subring/Basic.lean,Mathlib/Algebra/Ring/Subring/MulOpposite.lean,Mathlib/Algebra/Ring/Subsemiring/Basic.lean,Mathlib/Algebra/Ring/Subsemiring/MulOpposite.lean,Mathlib/Algebra/Ring/ULift.lean,Mathlib/Algebra/SkewMonoidAlgebra/Basic.lean,Mathlib/Algebra/SkewPolynomial/Basic.lean,Mathlib/Algebra/Star/CentroidHom.lean,Mathlib/Algebra/Torsor/Basic.lean,Mathlib/Algebra/TrivSqZeroExt/Basic.lean,Mathlib/AlgebraicGeometry/AffineScheme.lean,Mathlib/AlgebraicGeometry/AffineTransitionLimit.lean,Mathlib/AlgebraicGeometry/Birational/RationalMap.lean,Mathlib/AlgebraicGeometry/EffectiveEpi.lean,Mathlib/AlgebraicGeometry/FunctionField.lean,Mathlib/AlgebraicGeometry/GammaSpecAdjunction.lean,Mathlib/AlgebraicGeometry/Gluing.lean,Mathlib/AlgebraicGeometry/IdealSheaf/Basic.lean,Mathlib/AlgebraicGeometry/IdealSheaf/Functorial.lean,Mathlib/AlgebraicGeometry/Limits.lean,Mathlib/AlgebraicGeometry/Modules/Tilde.lean,Mathlib/AlgebraicGeometry/Morphisms/Affine.lean,Mathlib/AlgebraicGeometry/Morphisms/AffineAnd.lean,Mathlib/AlgebraicGeometry/Morphisms/ClosedImmersion.lean,Mathlib/AlgebraicGeometry/Morphisms/Finite.lean,Mathlib/AlgebraicGeometry/Morphisms/Flat.lean,Mathlib/AlgebraicGeometry/Morphisms/Immersion.lean,Mathlib/AlgebraicGeometry/Morphisms/IsIso.lean,Mathlib/AlgebraicGeometry/Morphisms/QuasiCompact.lean,Mathlib/AlgebraicGeometry/Morphisms/QuasiFinite.lean,Mathlib/AlgebraicGeometry/Morphisms/RingHomProperties.lean |
657 |
9 |
['SnirBroshi', 'felixpernegger', 'github-actions', 'leanprover-radar', 'mathlib-bors', 'mathlib-merge-conflicts'] |
nobody |
13-47231 13 days ago |
13-47232 13 days ago |
4-58649 4 days |
| 42741 |
felixpernegger author:felixpernegger |
feat(Topology): generalise Isometry to `WeakPseudoEMetricSpace` and friends |
After doing the first few per hand, this was now done by GPT 5.6 Sol. I reviewed however and it looks good
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[](https://gitpod.io/from-referrer/)
|
t-topology
LLM-generated
merge-conflict
|
249/209 |
Mathlib/MeasureTheory/Function/ConditionalExpectation/AEMeasurable.lean,Mathlib/Topology/EMetricSpace/Lipschitz.lean,Mathlib/Topology/MetricSpace/Antilipschitz.lean,Mathlib/Topology/MetricSpace/Isometry.lean |
4 |
4 |
['felixpernegger', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
13-26024 13 days ago |
13-26025 13 days ago |
4-18122 4 days |
| 35402 |
samueloettl author:samueloettl |
feat(Dynamics/BirkhoffSum): birkhoffAverage const |
---
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I think this is useful and one of these should be a simp lemma.
I'm not really sure if I got the naming of the theorems correct.
When generalizing to the assumption (n : R) ≠ 0 instead of the special case CharZero R with n ≠ 0 I had to use "open Classical in". I'm a bit unfamiliar with that part so please check if this makes sense. See also https://github.com/leanprover-community/mathlib4/pull/35307#discussion_r2823586252
[](https://gitpod.io/from-referrer/)
|
t-dynamics
new-contributor
merge-conflict
|
14/0 |
Mathlib/Dynamics/BirkhoffSum/Average.lean |
1 |
41 |
['Maldooor', 'github-actions', 'lua-vr', 'mathlib-merge-conflicts', 'mcdoll', 'plp127', 'samueloettl'] |
nobody |
11-43921 11 days ago |
11-48722 11 days ago |
178-7372 178 days |
| 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
merge-conflict
|
239/5 |
Mathlib/MeasureTheory/Measure/MeasureSpace.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 |
10-54413 10 days ago |
10-54414 10 days ago |
117-50885 117 days |
| 40166 |
felixpernegger author:felixpernegger |
chore: remove all terminal `refine`'s with `exact` |
Found with scripts. This was a pretty exhaustive search and should be almost all of them.
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merge-conflict |
333/347 |
Archive/Imo/Imo1961Q3.lean,Mathlib/Algebra/Algebra/Subalgebra/Lattice.lean,Mathlib/Algebra/Category/Ring/Limits.lean,Mathlib/Algebra/Category/Ring/Small.lean,Mathlib/Algebra/DualNumber.lean,Mathlib/Algebra/Exact/Basic.lean,Mathlib/Algebra/Group/Pointwise/Finset/Basic.lean,Mathlib/Algebra/GroupWithZero/Range.lean,Mathlib/Algebra/Homology/HomologySequence.lean,Mathlib/Algebra/Lie/Abelian.lean,Mathlib/Algebra/Lie/BaseChange.lean,Mathlib/Algebra/Lie/Prod.lean,Mathlib/Algebra/Module/FinitePresentation.lean,Mathlib/Algebra/Module/Injective.lean,Mathlib/Algebra/Module/LinearMap/FiniteRange.lean,Mathlib/Algebra/Module/LocalizedModule/Basic.lean,Mathlib/Algebra/Module/LocalizedModule/Submodule.lean,Mathlib/Algebra/Module/Submodule/Lattice.lean,Mathlib/Algebra/Module/ZLattice/Basic.lean,Mathlib/Algebra/MvPolynomial/Division.lean,Mathlib/Algebra/MvPolynomial/Polynomial.lean,Mathlib/Algebra/Order/Archimedean/Basic.lean,Mathlib/Algebra/Polynomial/Roots.lean,Mathlib/Algebra/Polynomial/UnitTrinomial.lean,Mathlib/Algebra/QuadraticAlgebra/Basic.lean,Mathlib/AlgebraicGeometry/AffineTransitionLimit.lean,Mathlib/AlgebraicGeometry/Cover/Sigma.lean,Mathlib/AlgebraicGeometry/Fiber.lean,Mathlib/AlgebraicGeometry/Geometrically/Integral.lean,Mathlib/AlgebraicGeometry/Gluing.lean,Mathlib/AlgebraicGeometry/IdealSheaf/Subscheme.lean,Mathlib/AlgebraicGeometry/Modules/Tilde.lean,Mathlib/AlgebraicGeometry/Morphisms/ClosedImmersion.lean,Mathlib/AlgebraicGeometry/Morphisms/Finite.lean,Mathlib/AlgebraicGeometry/Morphisms/FlatRank.lean,Mathlib/AlgebraicGeometry/Morphisms/Integral.lean,Mathlib/AlgebraicGeometry/Morphisms/RingHomProperties.lean,Mathlib/AlgebraicGeometry/Morphisms/SurjectiveOnStalks.lean,Mathlib/AlgebraicGeometry/OpenImmersion.lean,Mathlib/AlgebraicGeometry/ProjectiveSpectrum/Scheme.lean,Mathlib/AlgebraicGeometry/Restrict.lean,Mathlib/AlgebraicGeometry/Sites/Small.lean,Mathlib/AlgebraicGeometry/Sites/SmallAffineZariski.lean,Mathlib/AlgebraicGeometry/StructureSheaf.lean,Mathlib/AlgebraicGeometry/ZariskisMainTheorem.lean,Mathlib/AlgebraicTopology/SimplicialSet/NonDegenerateSimplices.lean,Mathlib/Analysis/Analytic/Basic.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Basic.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Isometric.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Restrict.lean,Mathlib/Analysis/Calculus/ContDiff/FTaylorSeries.lean,Mathlib/Analysis/Calculus/FDeriv/Analytic.lean,Mathlib/Analysis/Calculus/FDeriv/Pow.lean,Mathlib/Analysis/Calculus/FDeriv/Symmetric.lean,Mathlib/Analysis/Calculus/UniformLimitsDeriv.lean,Mathlib/Analysis/Complex/Periodic.lean,Mathlib/Analysis/Convex/Segment.lean,Mathlib/Analysis/LocallyConvex/WeakOperatorTopology.lean,Mathlib/Analysis/LocallyConvex/WeakSpace.lean,Mathlib/Analysis/LocallyConvex/WithSeminorms.lean,Mathlib/Analysis/Normed/Affine/AddTorsorBases.lean,Mathlib/Analysis/Normed/Lp/PiLp.lean,Mathlib/Analysis/Normed/Lp/lpSpace.lean,Mathlib/Analysis/Normed/Module/MStructure.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/Rpow/IntegralRepresentation.lean,Mathlib/Analysis/SpecialFunctions/Elliptic/Weierstrass.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Angle.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Chebyshev/RootsExtrema.lean,Mathlib/CategoryTheory/Abelian/SerreClass/Localization.lean,Mathlib/CategoryTheory/Adhesive/Basic.lean,Mathlib/CategoryTheory/Category/PartialFun.lean,Mathlib/CategoryTheory/EquivalenceRelation.lean,Mathlib/CategoryTheory/Extensive.lean,Mathlib/CategoryTheory/FiberedCategory/Fibered.lean,Mathlib/CategoryTheory/Generator/StrongGenerator.lean,Mathlib/CategoryTheory/Limits/Indization/FilteredColimits.lean,Mathlib/CategoryTheory/Limits/IsLimit.lean,Mathlib/CategoryTheory/Limits/Preserves/Shapes/Products.lean,Mathlib/CategoryTheory/Limits/Shapes/CombinedProducts.lean,Mathlib/CategoryTheory/Limits/VanKampen.lean,Mathlib/CategoryTheory/Monoidal/Closed/Ideal.lean,Mathlib/CategoryTheory/ObjectProperty/LimitsClosure.lean,Mathlib/CategoryTheory/ObjectProperty/Retract.lean,Mathlib/CategoryTheory/ObjectProperty/Shift.lean,Mathlib/CategoryTheory/ObjectProperty/Small.lean,Mathlib/CategoryTheory/PathCategory/MorphismProperty.lean,Mathlib/CategoryTheory/Presentable/Directed.lean,Mathlib/CategoryTheory/Presentable/Type.lean,Mathlib/CategoryTheory/Products/Basic.lean,Mathlib/CategoryTheory/Sites/CompatiblePlus.lean,Mathlib/CategoryTheory/Sites/CoverLifting.lean,Mathlib/CategoryTheory/Sites/Coverage.lean,Mathlib/CategoryTheory/Sites/Hypercover/Saturate.lean,Mathlib/CategoryTheory/Sites/Hypercover/ZeroFamily.lean,Mathlib/CategoryTheory/Sites/Point/Conservative.lean,Mathlib/CategoryTheory/Triangulated/Pretriangulated.lean,Mathlib/Combinatorics/Additive/FreimanHom.lean,Mathlib/Combinatorics/Matroid/Closure.lean,Mathlib/Combinatorics/Matroid/Constructions.lean,Mathlib/Combinatorics/Matroid/IndepAxioms.lean |
254 |
38 |
['dagurtomas', 'felixpernegger', 'github-actions', 'leanprover-radar', 'mathlib-bors', 'mathlib-merge-conflicts', 'plp127'] |
nobody |
10-45602 10 days ago |
10-45602 10 days ago |
40-22017 40 days |
| 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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merge-conflict |
37/6 |
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 |
10-44635 10 days ago |
10-44636 10 days ago |
37-61270 37 days |
| 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
merge-conflict
|
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/AffineSpace/AffineSubspace/Defs.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/Decomposition/Hahn.lean,Mathlib/MeasureTheory/Measure/Haar/Unique.lean,Mathlib/MeasureTheory/Measure/MeasureSpace.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 |
99 |
14 |
['JovanGerb', 'github-actions', 'jcommelin', 'leanprover-radar', 'mathlib-merge-conflicts'] |
nobody |
10-43869 10 days ago |
10-43869 10 days ago |
16-7946 16 days |
| 40961 |
JovanGerb author:JovanGerb |
chore: remove imports added by `shake` |
This PR removes some imports that were added by `shake` in the past.
For some of these it's not clear to me why `shake` added them. In particular, I noticed some occurrences of `public import Mathlib.Tactic.NormNum.Pow`/`Inv`, where `norm_num` is not used in the file at all, which I found suspicious.
For `CompileInductive`, it is expected that `shake` keeps the import, because of `shake: keep-downstream`, so these imports need to be minimzed manually, which this PR does.
For good measure, I also fixed an issue in `Mathlib.Tactic.NormNum.Pow` that some non-meta things were marked as `meta`.
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merge-conflict |
21/37 |
Mathlib/Algebra/ContinuedFractions/ConvergentsEquiv.lean,Mathlib/Algebra/Free.lean,Mathlib/Algebra/FreeMonoid/Basic.lean,Mathlib/Algebra/GroupWithZero/WithZero.lean,Mathlib/Algebra/Module/Submodule/Union.lean,Mathlib/Algebra/Opposites.lean,Mathlib/Algebra/Order/GroupWithZero/Basic.lean,Mathlib/Combinatorics/Enumerative/Stirling.lean,Mathlib/Combinatorics/Quiver/Path.lean,Mathlib/Combinatorics/SetFamily/AhlswedeZhang.lean,Mathlib/Data/FunLike/Basic.lean,Mathlib/Data/List/Basic.lean,Mathlib/Data/List/ChainOfFn.lean,Mathlib/Data/List/Defs.lean,Mathlib/Data/List/Induction.lean,Mathlib/Data/List/InsertIdx.lean,Mathlib/Data/Multiset/Defs.lean,Mathlib/Data/Nat/Hyperoperation.lean,Mathlib/Data/Num/Prime.lean,Mathlib/Data/Option/Basic.lean,Mathlib/Data/Ordmap/Ordnode.lean,Mathlib/Data/Seq/Computation.lean,Mathlib/Data/WSeq/Basic.lean,Mathlib/Logic/Equiv/Prod.lean,Mathlib/RingTheory/Ideal/Lattice.lean,Mathlib/SetTheory/Lists.lean,Mathlib/Tactic/NormNum/Pow.lean |
27 |
5 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
10-24234 10 days ago |
10-24235 10 days ago |
50-18670 50 days |
| 41907 |
Rob23oba author:Rob23oba |
feat: make `NegZeroClass` and `InvOneClass` mixins |
Most of the changes just add `[Zero α] [Neg α]` or `[One α] [Inv α]`, except:
- The change itself to `InvOneClass` / `NegZeroClass`
- Generalizing `neg_eq_zero` (and related theorems) to `InvolutiveNeg` + `NegZeroClass` and deprecating `EReal.neg_eq_zero_iff` / `ENNReal.inv_eq_zero_iff` / `SignType.neg_eq_zero_iff` which are no longer necessary
- Replacing occurrences of `@inv_one ty _` with `inv_one (G := ty)`
- Removing `one` and `inv` in some instance declarations of the form `:= { one, inv with inv_one := ... }`
- `mabs_sup_div_sup_le_mabs`, `mabs_inf_div_inf_le_mabs` and `tendsto_zpow_nhdsNE_zero_cobounded` needed adaptations; not sure why, something to do with unification?
- handling `InvOneClass` specially in `DomMulAct`
- replacing `neg_apply` in ``
- being more specific (i.e. `inv_one (G := F)` instead of `inv_one`) in the proof of `RatFunc.single_zpow`
- adding an `rw` in `differentIdeal_ne_bot` due to leanprover/lean4#14447
- replacing `ArithmeticFunction.neg_apply` with an `IsNegApply` instance
- adapting meta code by adding more implicit arguments (in the form of `none` arguments to `mkAppOptM`)
Zulip discussion at [#mathlib4 > Having both `NegZeroClass` and `InvolutiveNeg`](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Having.20both.20.60NegZeroClass.60.20and.20.60InvolutiveNeg.60/with/611441611)
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merge-conflict |
100/71 |
Mathlib/Algebra/Group/Basic.lean,Mathlib/Algebra/Group/Defs.lean,Mathlib/Algebra/Group/EvenFunction.lean,Mathlib/Algebra/Group/Finsupp.lean,Mathlib/Algebra/Group/Hom/Basic.lean,Mathlib/Algebra/Group/InjSurj.lean,Mathlib/Algebra/Group/Pi/Basic.lean,Mathlib/Algebra/Group/WithOne/Defs.lean,Mathlib/Algebra/GroupWithZero/WithZero.lean,Mathlib/Algebra/Order/Group/Unbundled/Abs.lean,Mathlib/Algebra/QuadraticAlgebra/Defs.lean,Mathlib/Algebra/Ring/Periodic.lean,Mathlib/Algebra/TrivSqZeroExt/Basic.lean,Mathlib/Analysis/Normed/Field/Lemmas.lean,Mathlib/Data/ENNReal/Holder.lean,Mathlib/Data/ENNReal/Inv.lean,Mathlib/Data/EReal/Operations.lean,Mathlib/Data/FunLike/Group.lean,Mathlib/Data/Matrix/Basis.lean,Mathlib/Data/Matrix/Diagonal.lean,Mathlib/Data/Sign/Defs.lean,Mathlib/Geometry/Euclidean/Triangle.lean,Mathlib/GroupTheory/GroupAction/DomAct/Basic.lean,Mathlib/LinearAlgebra/Matrix/Block.lean,Mathlib/LinearAlgebra/Matrix/NonsingularInverse.lean,Mathlib/MeasureTheory/VectorMeasure/Basic.lean,Mathlib/NumberTheory/ArithmeticFunction/Defs.lean,Mathlib/Order/Filter/Germ/Basic.lean,Mathlib/RingTheory/DedekindDomain/Different.lean,Mathlib/RingTheory/HahnSeries/Addition.lean,Mathlib/RingTheory/HahnSeries/Cardinal.lean,Mathlib/RingTheory/LaurentSeries.lean,Mathlib/Tactic/Abel.lean,Mathlib/Tactic/Linarith/Verification.lean,Mathlib/Topology/Algebra/SeparationQuotient/Basic.lean,Mathlib/Topology/ContinuousMap/ContinuousMapZero.lean |
36 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
10-23433 10 days ago |
10-23434 10 days ago |
32-19879 32 days |
| 38848 |
jcreinhold author:jcreinhold |
feat(AlgebraicTopology/SimplicialSet): exists_isPushout_of_ne_top |
Every proper subcomplex of a simplicial set extends by attaching a single cell along its boundary, exhibited as a pushout of `∂Δ[n] ↪ Δ[n]`. This is the per-cell input for cell-by-cell filtrations of monomorphisms in `SSet`.
Adapted from @joelriou 's [proof](https://github.com/joelriou/topcat-model-category/blob/813338a8c88cfe0096deed7e3ba7daf92d4a1c71/TopCatModelCategory/SSet/Boundary.lean#L187). I also added the supporting lemma `Types.isPullback_of_eq_setPreimage` (set-preimage square is a pullback in `Type u`).
AI use: Claude helped locate `subtype_val_mono` and the `backward.isDefEq.respectTransparency` option.
|
t-algebraic-topology
new-contributor
merge-conflict
|
117/3 |
Mathlib/AlgebraicTopology/SimplicialSet/Boundary.lean,Mathlib/CategoryTheory/Limits/Types/Pullbacks.lean |
2 |
38 |
['dagurtomas', 'github-actions', 'jcreinhold', 'joelriou', 'mathlib-merge-conflicts', 'mckoen'] |
nobody |
9-29537 9 days ago |
9-29538 9 days ago |
109-72670 109 days |
| 40651 |
Scarlett-le author:Scarlett-le |
feat: signed power of a point and dimension-free power-of-a-point converses |
This PR reworks the converse direction of the power of a point in `Mathlib/Geometry/Euclidean/Sphere/Power.lean` to be dimension-free, and adds the converse of the intersecting secants theorem.
Main additions:
* `Sphere.inner_vsub_vsub_eq_power`: the signed power `⟪a -ᵥ p, b -ᵥ p⟫` of a point
`p` on a secant line through `a, b ∈ s` is exactly `s.power p`; this unifies the
chord and secant cases without splitting on the sign.
* `Sphere.mem_of_inner_vsub_vsub_eq_power_of_mem_line`: a one-secant converse.
* `cospherical_of_inner_vsub_eq_inner_vsub`: a dimension-free converse to the power
of a point, stated with the signed invariant.
* `cospherical_of_mul_dist_eq_mul_dist_of_angle_eq_zero`: the converse of the
intersecting secants theorem (new).
Main change:
* `cospherical_of_mul_dist_eq_mul_dist_of_angle_eq_pi` (converse of the intersecting
chords theorem) is reproved via `cospherical_of_inner_vsub_eq_inner_vsub`, going
through the circumsphere of the triangle `{p₁, p₂, p₃}`. It no longer reduces to
the 2D case, so the `[Fact (finrank ℝ V = 2)]` / `[Module.Oriented ℝ V (Fin 2)]`
machinery, the private auxiliary lemma, and the `AffineIsometry` embedding into the
affine span are all removed. The statement is unchanged.
Imports `Mathlib.Geometry.Euclidean.Angle.Sphere` and
`Mathlib.Geometry.Euclidean.Similarity` are dropped; `Mathlib.Geometry.Euclidean.Circumcenter`
is added. |
t-euclidean-geometry
tech debt
merge-conflict
|
140/89 |
Mathlib/Geometry/Euclidean/Angle/Unoriented/Affine.lean,Mathlib/Geometry/Euclidean/Sphere/Power.lean |
2 |
5 |
['github-actions', 'mathlib-merge-conflicts'] |
JovanGerb assignee:JovanGerb |
9-28881 9 days ago |
9-28882 9 days ago |
21-81349 21 days |
| 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
merge-conflict
|
32/3 |
Mathlib/Geometry/Manifold/Immersion.lean,Mathlib/Geometry/Manifold/SmoothEmbedding.lean |
2 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
8-53862 8 days ago |
8-53863 8 days ago |
1-7583 1 day |
| 40223 |
felixpernegger author:felixpernegger |
chore: replace `by exact` occurences |
Basically: Replace `by exact abc` with `abc` whenever it works.
---
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|
merge-conflict |
315/377 |
Archive/Imo/Imo1982Q1.lean,Archive/Imo/Imo2024Q5.lean,Archive/Wiedijk100Theorems/BuffonsNeedle.lean,Archive/Wiedijk100Theorems/SumOfPrimeReciprocalsDiverges.lean,Mathlib/Algebra/BigOperators/Associated.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/ColimitFunctor.lean,Mathlib/Algebra/DirectSum/Module.lean,Mathlib/Algebra/Group/Opposite.lean,Mathlib/Algebra/Homology/Localization.lean,Mathlib/Algebra/Homology/SpectralObject/EpiMono.lean,Mathlib/Algebra/Lie/Submodule.lean,Mathlib/Algebra/Module/LocalizedModule/Submodule.lean,Mathlib/Algebra/Module/PID.lean,Mathlib/Algebra/Module/Presentation/Free.lean,Mathlib/Algebra/Module/SpanRankOperations.lean,Mathlib/Algebra/Module/Submodule/Range.lean,Mathlib/Algebra/Order/Archimedean/Real/Basic.lean,Mathlib/Algebra/Order/Module/HahnEmbedding.lean,Mathlib/Algebra/Polynomial/Eval/Algebra.lean,Mathlib/Algebra/Ring/Subsemiring/Defs.lean,Mathlib/Algebra/SkewMonoidAlgebra/Basic.lean,Mathlib/AlgebraicGeometry/IdealSheaf/Subscheme.lean,Mathlib/AlgebraicGeometry/OpenImmersion.lean,Mathlib/AlgebraicGeometry/Sites/SmallAffineZariski.lean,Mathlib/AlgebraicTopology/ExtraDegeneracy.lean,Mathlib/AlgebraicTopology/SimplicialSet/Coskeletal.lean,Mathlib/AlgebraicTopology/SimplicialSet/StdSimplex.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Instances.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Integral.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/NonUnital.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Unital.lean,Mathlib/Analysis/Calculus/ContDiff/Bounds.lean,Mathlib/Analysis/Calculus/ContDiff/FaaDiBruno.lean,Mathlib/Analysis/Calculus/Implicit.lean,Mathlib/Analysis/Calculus/SmoothSeries.lean,Mathlib/Analysis/Complex/SqrtDeriv.lean,Mathlib/Analysis/Distribution/ContDiffMapSupportedIn.lean,Mathlib/Analysis/Distribution/TestFunction.lean,Mathlib/Analysis/Fourier/AddCircle.lean,Mathlib/Analysis/Hofer.lean,Mathlib/Analysis/InnerProductSpace/Projection/Minimal.lean,Mathlib/Analysis/InnerProductSpace/StandardSubspace.lean,Mathlib/Analysis/MellinTransform.lean,Mathlib/Analysis/Meromorphic/Basic.lean,Mathlib/Analysis/Meromorphic/Order.lean,Mathlib/Analysis/Normed/Algebra/GelfandMazur.lean,Mathlib/Analysis/Normed/Group/InfiniteSum.lean,Mathlib/Analysis/SpecialFunctions/ExpDeriv.lean,Mathlib/Analysis/SpecialFunctions/NonIntegrable.lean,Mathlib/Analysis/SpecialFunctions/Pochhammer.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Bounds.lean,Mathlib/CategoryTheory/Abelian/GrothendieckCategory/ColimCoyoneda.lean,Mathlib/CategoryTheory/Bicategory/FunctorBicategory/Oplax.lean,Mathlib/CategoryTheory/Center/NegOnePow.lean,Mathlib/CategoryTheory/EffectiveEpi/Extensive.lean,Mathlib/CategoryTheory/Limits/Final.lean,Mathlib/CategoryTheory/Localization/Pi.lean,Mathlib/CategoryTheory/Monoidal/Cartesian/Basic.lean,Mathlib/CategoryTheory/Monoidal/Cartesian/Mon.lean,Mathlib/CategoryTheory/Pi/Basic.lean,Mathlib/CategoryTheory/Shift/InducedShiftSequence.lean,Mathlib/CategoryTheory/Sites/DenseSubsite/Basic.lean,Mathlib/CategoryTheory/Sites/Descent/Precoverage.lean,Mathlib/CategoryTheory/Sites/GlobalSections.lean,Mathlib/CategoryTheory/Sites/SheafOfTypes.lean,Mathlib/CategoryTheory/Sites/Sieves.lean,Mathlib/CategoryTheory/Triangulated/TStructure/TruncLTGE.lean,Mathlib/Combinatorics/SimpleGraph/Clique.lean,Mathlib/Combinatorics/SimpleGraph/Connectivity/Subgraph.lean,Mathlib/Combinatorics/SimpleGraph/Prod.lean,Mathlib/Combinatorics/SimpleGraph/Regularity/Energy.lean,Mathlib/Combinatorics/SimpleGraph/Subgraph.lean,Mathlib/Combinatorics/SimpleGraph/Walk/Decomp.lean,Mathlib/Computability/AkraBazzi/AkraBazzi.lean,Mathlib/Computability/AkraBazzi/GrowsPolynomially.lean,Mathlib/Data/DFinsupp/Sigma.lean,Mathlib/Data/ENNReal/Real.lean,Mathlib/Data/Nat/Digits/Lemmas.lean,Mathlib/Data/Nat/Squarefree.lean,Mathlib/Data/PNat/Factors.lean,Mathlib/Data/Rat/Floor.lean,Mathlib/Data/Real/Embedding.lean,Mathlib/Data/Seq/Basic.lean,Mathlib/Data/Sym/Sym2.lean,Mathlib/Data/WSeq/Relation.lean,Mathlib/FieldTheory/CardinalEmb.lean,Mathlib/FieldTheory/Galois/Profinite.lean,Mathlib/FieldTheory/IntermediateField/Adjoin/Defs.lean,Mathlib/Geometry/Convex/Cone/TensorProduct.lean,Mathlib/Geometry/Euclidean/Angle/Sphere.lean,Mathlib/Geometry/Euclidean/Triangle.lean,Mathlib/Geometry/Manifold/Algebra/LieGroup.lean,Mathlib/Geometry/Manifold/Instances/Real.lean,Mathlib/GroupTheory/FreeGroup/Basic.lean,Mathlib/GroupTheory/Perm/Sign.lean,Mathlib/LinearAlgebra/CliffordAlgebra/Basic.lean,Mathlib/LinearAlgebra/Eigenspace/Pi.lean,Mathlib/LinearAlgebra/FreeModule/PID.lean,Mathlib/LinearAlgebra/Matrix/GeneralLinearGroup/Card.lean,Mathlib/LinearAlgebra/Orientation.lean |
187 |
68 |
['JovanGerb', 'b-mehta', 'felixpernegger', 'github-actions', 'leanprover-radar', 'mathlib-bors', 'mathlib-merge-conflicts'] |
nobody |
7-49898 7 days ago |
7-49899 7 days ago |
30-42908 30 days |
| 40381 |
felixpernegger author:felixpernegger |
chore: replace `:= by rfl` with `:= rfl` |
Continuation of #40371.
This PR replace `:= by rfl` with `:= rfl` whenever possible (also if the `rfl` is on the next line). This ought to make `dsimp` a little bit better as well.
---
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merge-conflict |
248/448 |
Archive/Imo/Imo2010Q5.lean,Mathlib/Algebra/Algebra/NonUnitalHom.lean,Mathlib/Algebra/Category/Grp/Basic.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/Monoidal.lean,Mathlib/Algebra/Category/MonCat/Basic.lean,Mathlib/Algebra/Category/Ring/Constructions.lean,Mathlib/Algebra/Colimit/DirectLimit.lean,Mathlib/Algebra/DirectSum/Finsupp.lean,Mathlib/Algebra/DirectSum/Module.lean,Mathlib/Algebra/DirectSum/Ring.lean,Mathlib/Algebra/Group/AddChar.lean,Mathlib/Algebra/Group/Subgroup/Defs.lean,Mathlib/Algebra/GroupWithZero/ProdHom.lean,Mathlib/Algebra/Homology/HomotopyCategory/HomComplex.lean,Mathlib/Algebra/Homology/ShortComplex/LeftHomology.lean,Mathlib/Algebra/Homology/Single.lean,Mathlib/Algebra/Lie/Basic.lean,Mathlib/Algebra/Lie/Cochain.lean,Mathlib/Algebra/Lie/Extension.lean,Mathlib/Algebra/Lie/OfAssociative.lean,Mathlib/Algebra/Lie/Submodule.lean,Mathlib/Algebra/Lie/Weights/Basic.lean,Mathlib/Algebra/Order/Hom/MonoidWithZero.lean,Mathlib/Algebra/Order/Hom/Ring.lean,Mathlib/Algebra/Order/Module/PositiveLinearMap.lean,Mathlib/Algebra/Polynomial/AlgebraMap.lean,Mathlib/Algebra/Polynomial/Coeff.lean,Mathlib/Algebra/Polynomial/Derivation.lean,Mathlib/Algebra/Polynomial/Module/Basic.lean,Mathlib/Algebra/Polynomial/Sequence.lean,Mathlib/Algebra/Ring/Hom/Defs.lean,Mathlib/Algebra/Star/NonUnitalSubalgebra.lean,Mathlib/Algebra/Vertex/HVertexOperator.lean,Mathlib/Algebra/Vertex/VertexOperator.lean,Mathlib/AlgebraicGeometry/EllipticCurve/Affine/Point.lean,Mathlib/AlgebraicGeometry/Modules/Sheaf.lean,Mathlib/AlgebraicTopology/SimplicialSet/StdSimplex.lean,Mathlib/Analysis/Analytic/Composition.lean,Mathlib/Analysis/Asymptotics/ExpGrowth.lean,Mathlib/Analysis/CStarAlgebra/GelfandDuality.lean,Mathlib/Analysis/Complex/JensenFormula.lean,Mathlib/Analysis/Distribution/ContDiffMapSupportedIn.lean,Mathlib/Analysis/Distribution/Distribution.lean,Mathlib/Analysis/Distribution/FourierMultiplier.lean,Mathlib/Analysis/Distribution/SchwartzSpace/Basic.lean,Mathlib/Analysis/Distribution/SchwartzSpace/Fourier.lean,Mathlib/Analysis/Distribution/TemperedDistribution.lean,Mathlib/Analysis/Fourier/Convolution.lean,Mathlib/Analysis/Normed/Affine/Isometry.lean,Mathlib/Analysis/Normed/Group/Seminorm.lean,Mathlib/Analysis/Normed/Module/Span.lean,Mathlib/Analysis/SpecialFunctions/Complex/CircleAddChar.lean,Mathlib/Analysis/SpecialFunctions/Stirling.lean,Mathlib/CategoryTheory/Distributive/Monoidal.lean,Mathlib/CategoryTheory/Limits/Presheaf.lean,Mathlib/CategoryTheory/Limits/Shapes/Pullback/Cospan.lean,Mathlib/CategoryTheory/Limits/Types/Equalizers.lean,Mathlib/CategoryTheory/Limits/Types/Products.lean,Mathlib/CategoryTheory/Monoidal/Braided/Multifunctor.lean,Mathlib/CategoryTheory/Monoidal/Closed/Basic.lean,Mathlib/CategoryTheory/Monoidal/Comon_.lean,Mathlib/CategoryTheory/Monoidal/Mod.lean,Mathlib/CategoryTheory/MorphismProperty/OfObjectProperty.lean,Mathlib/CategoryTheory/Shift/CommShift.lean,Mathlib/CategoryTheory/Shift/ShiftedHomOpposite.lean,Mathlib/CategoryTheory/Sites/IsSheafFor.lean,Mathlib/CategoryTheory/Subfunctor/SubmonoidFunctor.lean,Mathlib/CategoryTheory/Yoneda.lean,Mathlib/Combinatorics/Enumerative/Stirling.lean,Mathlib/Combinatorics/SimpleGraph/Maps.lean,Mathlib/Combinatorics/SimpleGraph/Subgraph.lean,Mathlib/Combinatorics/SimpleGraph/Walk/Basic.lean,Mathlib/Computability/AkraBazzi/AkraBazzi.lean,Mathlib/Computability/AkraBazzi/SumTransform.lean,Mathlib/Data/Fin/VecNotation.lean,Mathlib/Data/Matrix/Basic.lean,Mathlib/Data/Nat/Factorization/PrimePow.lean,Mathlib/Data/PFunctor/Multivariate/Basic.lean,Mathlib/Data/Real/Embedding.lean,Mathlib/Data/Rel.lean,Mathlib/Data/Seq/Basic.lean,Mathlib/Data/Set/FiniteExhaustion.lean,Mathlib/Data/Set/Lattice.lean,Mathlib/Data/Set/Pairwise/Lattice.lean,Mathlib/Data/Subtype.lean,Mathlib/Geometry/Euclidean/Volume/Measure.lean,Mathlib/Geometry/Manifold/Bordism.lean,Mathlib/Geometry/Manifold/IsManifold/ExtChartAt.lean,Mathlib/Geometry/Polygon/Basic.lean,Mathlib/GroupTheory/Coxeter/Basic.lean,Mathlib/GroupTheory/FiniteIndexNormalSubgroup.lean,Mathlib/GroupTheory/FreeGroup/Orbit.lean,Mathlib/GroupTheory/GroupAction/ConjAct.lean,Mathlib/GroupTheory/GroupAction/Hom.lean,Mathlib/GroupTheory/SpecificGroups/Alternating.lean,Mathlib/GroupTheory/SpecificGroups/Quaternion.lean,Mathlib/LinearAlgebra/AffineSpace/Simplex/Basic.lean,Mathlib/LinearAlgebra/AffineSpace/Simplex/Centroid.lean,Mathlib/LinearAlgebra/Basis/Defs.lean |
167 |
22 |
['dagurtomas', 'felixpernegger', 'github-actions', 'leanprover-radar', 'mathlib-bors', 'mathlib-merge-conflicts', 'tb65536'] |
dagurtomas assignee:dagurtomas |
6-39287 6 days ago |
6-39288 6 days ago |
38-80141 38 days |
| 41549 |
gaetanserre author:gaetanserre |
feat: integral of EReal-valued functions |
Duplicate of #41239 for better editing.
Co-authored-by: Rémy Degenne <remy.degenne@inria.fr>
---
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|
t-measure-probability
merge-conflict
|
1456/15 |
Mathlib.lean,Mathlib/Algebra/Order/Group/PosPart.lean,Mathlib/Data/EReal/Basic.lean,Mathlib/MeasureTheory/Integral/EReal/AuxLemmas.lean,Mathlib/MeasureTheory/Integral/EReal/Bochner.lean,Mathlib/MeasureTheory/Integral/EReal/EIntegrable.lean,Mathlib/MeasureTheory/Integral/EReal/EIntegral.lean,Mathlib/MeasureTheory/Integral/EReal/Kernel.lean,Mathlib/MeasureTheory/Integral/EReal/Prod.lean,Mathlib/MeasureTheory/Order/Group/Lattice.lean |
10 |
3 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
6-38905 6 days ago |
6-38906 6 days ago |
0-13712 3 hours |
| 41933 |
felixpernegger author:felixpernegger |
chore: prefer `beta_reduce` over `(d)simp only` |
Insired by discussion at #38989.
This PR replaces `(d)simp only` (with no arguments) with the slightly cheaper `beta_reduce` whenever that works and doesnt change the goal. This also increases code readability a bit
More could be replaced if we allow the goal to be changed. Additonally, some of the `simp only` could be removed entirely (I dont think doing either one of those is good though).
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|
merge-conflict |
192/192 |
Mathlib/Algebra/Category/Grp/EpiMono.lean,Mathlib/Algebra/Category/ModuleCat/ChangeOfRings.lean,Mathlib/Algebra/DirectSum/Idempotents.lean,Mathlib/Algebra/DirectSum/Internal.lean,Mathlib/Algebra/GroupWithZero/WithZero.lean,Mathlib/Algebra/MonoidAlgebra/NoZeroDivisors.lean,Mathlib/Algebra/MvPolynomial/Derivation.lean,Mathlib/Algebra/Order/CauSeq/BigOperators.lean,Mathlib/Algebra/Order/Module/HahnEmbedding.lean,Mathlib/Algebra/Polynomial/Monic.lean,Mathlib/AlgebraicGeometry/IdealSheaf/Basic.lean,Mathlib/AlgebraicGeometry/Morphisms/AffineAnd.lean,Mathlib/AlgebraicGeometry/Morphisms/SurjectiveOnStalks.lean,Mathlib/Analysis/Asymptotics/TVS.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Continuity.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Order.lean,Mathlib/Analysis/CStarAlgebra/Unitary/Connected.lean,Mathlib/Analysis/CStarAlgebra/Unitization.lean,Mathlib/Analysis/Calculus/ContDiff/FaaDiBruno.lean,Mathlib/Analysis/Calculus/FDeriv/Analytic.lean,Mathlib/Analysis/Calculus/LHopital.lean,Mathlib/Analysis/Calculus/ParametricIntegral.lean,Mathlib/Analysis/Complex/ValueDistribution/Cartan.lean,Mathlib/Analysis/Convex/Gauge.lean,Mathlib/Analysis/Fourier/AddCircle.lean,Mathlib/Analysis/Fourier/AddCircleMulti.lean,Mathlib/Analysis/InnerProductSpace/Projection/FiniteDimensional.lean,Mathlib/Analysis/MellinTransform.lean,Mathlib/Analysis/Normed/Algebra/Exponential.lean,Mathlib/Analysis/Normed/Lp/lpSpace.lean,Mathlib/Analysis/Normed/Unbundled/SpectralNorm.lean,Mathlib/Analysis/SpecialFunctions/CompareExp.lean,Mathlib/Analysis/SpecialFunctions/Gamma/Basic.lean,Mathlib/Analysis/SpecialFunctions/Gaussian/GaussianIntegral.lean,Mathlib/Analysis/SpecialFunctions/ImproperIntegrals.lean,Mathlib/Analysis/SpecialFunctions/Integrability/Basic.lean,Mathlib/Analysis/SpecialFunctions/Log/Monotone.lean,Mathlib/Analysis/SpecialFunctions/Pow/Continuity.lean,Mathlib/Analysis/SpecialFunctions/Pow/Integral.lean,Mathlib/CategoryTheory/Bicategory/End.lean,Mathlib/Combinatorics/Hall/Basic.lean,Mathlib/Combinatorics/Hall/Finite.lean,Mathlib/Computability/PartrecCode.lean,Mathlib/Computability/RE.lean,Mathlib/Computability/TuringMachine/Config.lean,Mathlib/Computability/TuringMachine/ToPartrec.lean,Mathlib/Data/DFinsupp/Defs.lean,Mathlib/Data/ENat/Pow.lean,Mathlib/Data/EReal/Inv.lean,Mathlib/Data/List/NodupEquivFin.lean,Mathlib/Data/Nat/Factorization/Basic.lean,Mathlib/Data/Nat/Factorization/LCM.lean,Mathlib/Data/Setoid/Partition.lean,Mathlib/FieldTheory/CardinalEmb.lean,Mathlib/Geometry/Euclidean/Incenter.lean,Mathlib/Geometry/Euclidean/Triangle.lean,Mathlib/Geometry/Manifold/Riemannian/PathELength.lean,Mathlib/GroupTheory/CoprodI.lean,Mathlib/GroupTheory/Coxeter/Basic.lean,Mathlib/GroupTheory/Divisible.lean,Mathlib/GroupTheory/GroupAction/Basic.lean,Mathlib/GroupTheory/GroupAction/MultiplePrimitivity.lean,Mathlib/GroupTheory/GroupAction/Quotient.lean,Mathlib/GroupTheory/HNNExtension.lean,Mathlib/GroupTheory/Nilpotent.lean,Mathlib/GroupTheory/OrderOfElement.lean,Mathlib/GroupTheory/QuotientGroup/Defs.lean,Mathlib/GroupTheory/SpecificGroups/Cyclic/Basic.lean,Mathlib/GroupTheory/Sylow.lean,Mathlib/LinearAlgebra/AffineSpace/Independent.lean,Mathlib/LinearAlgebra/Lagrange.lean,Mathlib/LinearAlgebra/Matrix/Adjugate.lean,Mathlib/LinearAlgebra/Matrix/Determinant/Basic.lean,Mathlib/LinearAlgebra/Matrix/Rank.lean,Mathlib/LinearAlgebra/Matrix/SpecialLinearGroup.lean,Mathlib/LinearAlgebra/Matrix/ZPow.lean,Mathlib/LinearAlgebra/PiTensorProduct/Basic.lean,Mathlib/LinearAlgebra/RootSystem/Finite/Nondegenerate.lean,Mathlib/LinearAlgebra/RootSystem/OfBilinear.lean,Mathlib/LinearAlgebra/SpecialLinearGroup.lean,Mathlib/MeasureTheory/Constructions/BorelSpace/Real.lean,Mathlib/MeasureTheory/Function/AbsolutelyContinuous.lean,Mathlib/MeasureTheory/Function/ConditionalExpectation/CondexpL2.lean,Mathlib/MeasureTheory/Function/L2Space.lean,Mathlib/MeasureTheory/Function/LpSpace/Complete.lean,Mathlib/MeasureTheory/Function/LpSpace/Indicator.lean,Mathlib/MeasureTheory/Integral/Bochner/Basic.lean,Mathlib/MeasureTheory/Integral/Lebesgue/Basic.lean,Mathlib/MeasureTheory/Integral/RieszMarkovKakutani/Basic.lean,Mathlib/MeasureTheory/Integral/SetToL1.lean,Mathlib/MeasureTheory/MeasurableSpace/Prod.lean,Mathlib/NumberTheory/Harmonic/ZetaAsymp.lean,Mathlib/NumberTheory/JacobiSum/Basic.lean,Mathlib/NumberTheory/MulChar/Basic.lean,Mathlib/NumberTheory/NumberField/CMField.lean,Mathlib/NumberTheory/RamificationInertia/HilbertTheory.lean,Mathlib/Order/Category/NonemptyFinLinOrd.lean,Mathlib/Order/CountableSupClosed.lean,Mathlib/Order/Filter/Finite.lean,Mathlib/Order/PiLex.lean |
131 |
6 |
['felixpernegger', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts'] |
nobody |
6-37824 6 days ago |
6-37824 6 days ago |
29-86049 29 days |
| 42247 |
marcelolynch author:marcelolynch |
chore(Analysis/Asymptotics/Defs): scope and rename variable `E'''` |
The variable block at the top of the file declares `E'''` and `[SeminormedAddGroup E''']`. Only `isBigO_iff'` and `isBigO_iff''` use them. The instance binder is a candidate in every typeclass search in the file.
This PR moves the type and the instance into a section around the two theorems. The section calls the type `F`.
The two statements do not change. A dump of all constant types in the module shows that every other declaration keeps its exact type. The two theorems keep the same hypotheses, and neither one has explicit arguments. Only the name and the position of the implicit type change.
Standalone elaboration of the file does not change measurably: 3.700 s here against 3.696 s on master, as medians of 6 interleaved runs.
Same mechanism as #42214 and #42238.
🤖 Generated with [Claude Code](https://claude.com/claude-code)
|
t-analysis
merge-conflict
|
9/4 |
Mathlib/Analysis/Asymptotics/Defs.lean |
1 |
8 |
['github-actions', 'grunweg', 'marcelolynch', 'mathlib-merge-conflicts'] |
nobody |
6-37695 6 days ago |
6-37696 6 days ago |
9-39428 9 days |
| 42351 |
vihdzp author:vihdzp |
refactor: replace `IsWellFounded` with `WellFounded` |
This PR is an attempt to deprecate IsWellFounded. The reason it that it is entirely equivalent to WellFounded, with the only difference being that IsWellFounded is a class. This PR instead marks WellFounded as a class.
This PR has been re-opened from #35602, with permission.
---
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A lot of this diff is either find+replace changes, or changes in indentation.
- [x] depends on: #42359
- [x] depends on: #42361
- [x] depends on: #42368
- [x] depends on: #42422
[](https://gitpod.io/from-referrer/)
|
t-order
tech debt
merge-conflict
|
438/473 |
Mathlib/Algebra/EuclideanDomain/Defs.lean,Mathlib/Algebra/Group/UniqueProds/Basic.lean,Mathlib/Algebra/Lie/Engel.lean,Mathlib/Algebra/Lie/Subalgebra.lean,Mathlib/Algebra/Lie/Submodule.lean,Mathlib/AlgebraicTopology/SimplicialSet/AnodyneExtensions/Pairing.lean,Mathlib/CategoryTheory/CofilteredSystem.lean,Mathlib/CategoryTheory/Subobject/ArtinianObject.lean,Mathlib/CategoryTheory/Subobject/NoetherianObject.lean,Mathlib/Data/DFinsupp/WellFounded.lean,Mathlib/Data/Fin/Tuple/BubbleSortInduction.lean,Mathlib/Data/Finset/Dedup.lean,Mathlib/Data/Finset/Defs.lean,Mathlib/Data/Finsupp/MonomialOrder/DegLex.lean,Mathlib/Data/Finsupp/WellFounded.lean,Mathlib/Data/Fintype/Card.lean,Mathlib/Data/List/Chain.lean,Mathlib/Data/List/Cycle.lean,Mathlib/Data/Multiset/Defs.lean,Mathlib/Data/Nat/Cast/WithTop.lean,Mathlib/Data/Nat/WithBot.lean,Mathlib/Data/Prod/Lex.lean,Mathlib/Data/Rel.lean,Mathlib/Data/Set/Finite/Lemmas.lean,Mathlib/Data/Sum/Order.lean,Mathlib/GroupTheory/ArchimedeanDensely.lean,Mathlib/Logic/Hydra.lean,Mathlib/Order/Antisymmetrization.lean,Mathlib/Order/Atoms.lean,Mathlib/Order/Cofinal.lean,Mathlib/Order/ConditionallyCompleteLattice/Defs.lean,Mathlib/Order/Cover.lean,Mathlib/Order/Extension/Well.lean,Mathlib/Order/Hom/Basic.lean,Mathlib/Order/InitialSeg.lean,Mathlib/Order/Minimal.lean,Mathlib/Order/OrderIsoNat.lean,Mathlib/Order/PiLex.lean,Mathlib/Order/RelClasses.lean,Mathlib/Order/RelIso/Basic.lean,Mathlib/Order/RelIso/Set.lean,Mathlib/Order/RelSeries.lean,Mathlib/Order/Shrink.lean,Mathlib/Order/SuccPred/Archimedean.lean,Mathlib/Order/WellFounded.lean,Mathlib/Order/WellFoundedSet.lean,Mathlib/Order/WellQuasiOrder.lean,Mathlib/Order/WithBot.lean,Mathlib/RingTheory/Artinian/Defs.lean,Mathlib/RingTheory/Artinian/Module.lean,Mathlib/RingTheory/Bezout.lean,Mathlib/RingTheory/DedekindDomain/Ideal/Basic.lean,Mathlib/RingTheory/FiniteLength.lean,Mathlib/RingTheory/Flat/FaithfullyFlat/Basic.lean,Mathlib/RingTheory/Length.lean,Mathlib/RingTheory/MvPolynomial/Groebner.lean,Mathlib/RingTheory/Noetherian/Basic.lean,Mathlib/RingTheory/Noetherian/Defs.lean,Mathlib/RingTheory/Polynomial/UniqueFactorization.lean,Mathlib/RingTheory/PrincipalIdealDomain.lean,Mathlib/RingTheory/SimpleModule/Basic.lean,Mathlib/RingTheory/UniqueFactorizationDomain/Basic.lean,Mathlib/RingTheory/UniqueFactorizationDomain/Defs.lean,Mathlib/RingTheory/UniqueFactorizationDomain/Ideal.lean,Mathlib/RingTheory/UniqueFactorizationDomain/Nat.lean,Mathlib/RingTheory/Valuation/Archimedean.lean,Mathlib/SetTheory/Cardinal/Cofinality/Ordinal.lean,Mathlib/SetTheory/Cardinal/Order.lean,Mathlib/SetTheory/Ordinal/Basic.lean,Mathlib/SetTheory/Ordinal/Notation.lean,Mathlib/SetTheory/Ordinal/Rank.lean,Mathlib/SetTheory/ZFC/Basic.lean,Mathlib/SetTheory/ZFC/Class.lean,Mathlib/SetTheory/ZFC/PSet.lean,Mathlib/SetTheory/ZFC/Rank.lean,Mathlib/Topology/Category/Profinite/Nobeling/Basic.lean,Mathlib/Topology/NoetherianSpace.lean |
77 |
20 |
['SnirBroshi', 'YaelDillies', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'vihdzp'] |
YaelDillies assignee:YaelDillies |
6-37571 6 days ago |
6-37572 6 days ago |
8-15695 8 days |
| 40292 |
felixpernegger author:felixpernegger |
chore: replace `by calc` by `calc` whenever possible |
Avoids unnecessarily going into tactic mode, similar to #40223.
---
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merge-conflict |
212/212 |
Archive/Imo/Imo1981Q3.lean,Archive/Imo/Imo1982Q1.lean,Archive/Imo/Imo1982Q3.lean,Archive/Imo/Imo2005Q3.lean,Archive/Imo/Imo2024Q3.lean,Archive/Imo/Imo2025Q3.lean,Mathlib/Algebra/BigOperators/Group/Finset/Basic.lean,Mathlib/Algebra/BigOperators/Group/Finset/Indicator.lean,Mathlib/Algebra/Group/Basic.lean,Mathlib/Algebra/Module/ZLattice/Basic.lean,Mathlib/Algebra/MvPolynomial/SchwartzZippel.lean,Mathlib/Algebra/Order/Floor/Ring.lean,Mathlib/Algebra/Order/Floor/Semifield.lean,Mathlib/Algebra/Order/Ring/Unbundled/Basic.lean,Mathlib/Algebra/Order/Sub/Defs.lean,Mathlib/Algebra/Polynomial/Coeff.lean,Mathlib/Algebra/Ring/Invertible.lean,Mathlib/Analysis/CStarAlgebra/Module/Defs.lean,Mathlib/Analysis/Calculus/BumpFunction/Normed.lean,Mathlib/Analysis/Calculus/ContDiff/Bounds.lean,Mathlib/Analysis/Complex/AbelLimit.lean,Mathlib/Analysis/Complex/Basic.lean,Mathlib/Analysis/Complex/ValueDistribution/FirstMainTheorem.lean,Mathlib/Analysis/Complex/ValueDistribution/Proximity/Basic.lean,Mathlib/Analysis/Convex/Caratheodory.lean,Mathlib/Analysis/Convex/Continuous.lean,Mathlib/Analysis/Convex/Visible.lean,Mathlib/Analysis/Hofer.lean,Mathlib/Analysis/InnerProductSpace/Defs.lean,Mathlib/Analysis/InnerProductSpace/PiL2.lean,Mathlib/Analysis/Matrix/Normed.lean,Mathlib/Analysis/Meromorphic/Divisor.lean,Mathlib/Analysis/Normed/Field/Approximation.lean,Mathlib/Analysis/ODE/DiscreteGronwall.lean,Mathlib/Analysis/SpecialFunctions/BinaryEntropy.lean,Mathlib/Analysis/SpecialFunctions/Integrals/LogTrigonometric.lean,Mathlib/Analysis/SpecialFunctions/Integrals/PosLogEqCircleAverage.lean,Mathlib/Analysis/SpecialFunctions/JapaneseBracket.lean,Mathlib/Analysis/SpecialFunctions/Log/Base.lean,Mathlib/Analysis/SpecialFunctions/Log/Deriv.lean,Mathlib/Analysis/SpecialFunctions/Pow/Deriv.lean,Mathlib/Analysis/SpecialFunctions/Stirling.lean,Mathlib/CategoryTheory/Bicategory/Adjunction/Basic.lean,Mathlib/CategoryTheory/Bicategory/Adjunction/Mate.lean,Mathlib/CategoryTheory/Bicategory/NaturalTransformation/Lax.lean,Mathlib/CategoryTheory/Bicategory/NaturalTransformation/Oplax.lean,Mathlib/CategoryTheory/Equivalence.lean,Mathlib/CategoryTheory/Limits/Types/Products.lean,Mathlib/CategoryTheory/Localization/Composition.lean,Mathlib/CategoryTheory/MarkovCategory/Positive.lean,Mathlib/CategoryTheory/Monoidal/DayConvolution.lean,Mathlib/CategoryTheory/Monoidal/Rigid/Basic.lean,Mathlib/Combinatorics/Additive/AP/Three/Behrend.lean,Mathlib/Combinatorics/Additive/Energy.lean,Mathlib/Combinatorics/Additive/ErdosGinzburgZiv.lean,Mathlib/Combinatorics/Additive/SubsetSum.lean,Mathlib/Combinatorics/Additive/VerySmallDoubling.lean,Mathlib/Combinatorics/SetFamily/LYM.lean,Mathlib/Combinatorics/SimpleGraph/Regularity/Uniform.lean,Mathlib/Combinatorics/SimpleGraph/Triangle/Removal.lean,Mathlib/Computability/AkraBazzi/AkraBazzi.lean,Mathlib/Computability/AkraBazzi/GrowsPolynomially.lean,Mathlib/Computability/AkraBazzi/SumTransform.lean,Mathlib/Data/Fintype/BigOperators.lean,Mathlib/Data/List/PeriodicityLemma.lean,Mathlib/Data/Nat/Choose/Vandermonde.lean,Mathlib/Data/Nat/Factorial/Basic.lean,Mathlib/Data/Rat/Floor.lean,Mathlib/FieldTheory/Finite/Basic.lean,Mathlib/FieldTheory/Minpoly/IsConjRoot.lean,Mathlib/Geometry/Manifold/Instances/Real.lean,Mathlib/Geometry/Manifold/VectorBundle/CovariantDerivative/Basic.lean,Mathlib/Geometry/Manifold/VectorBundle/Tensoriality.lean,Mathlib/GroupTheory/SpecificGroups/Quaternion.lean,Mathlib/InformationTheory/KullbackLeibler/Basic.lean,Mathlib/LinearAlgebra/AffineSpace/Matrix.lean,Mathlib/LinearAlgebra/Eigenspace/Basic.lean,Mathlib/LinearAlgebra/Matrix/Determinant/Basic.lean,Mathlib/LinearAlgebra/Matrix/Invertible.lean,Mathlib/LinearAlgebra/RootSystem/RootPositive.lean,Mathlib/MeasureTheory/Constructions/HaarToSphere.lean,Mathlib/MeasureTheory/Covering/Vitali.lean,Mathlib/MeasureTheory/Function/ConditionalExpectation/Basic.lean,Mathlib/MeasureTheory/Function/LpSeminorm/CompareExp.lean,Mathlib/MeasureTheory/Function/LpSeminorm/Count.lean,Mathlib/MeasureTheory/Integral/Bochner/ContinuousLinearMap.lean,Mathlib/MeasureTheory/Integral/BoundedContinuousFunction.lean,Mathlib/MeasureTheory/Integral/CircleAverage.lean,Mathlib/MeasureTheory/Integral/Gamma.lean,Mathlib/MeasureTheory/Integral/Lebesgue/Basic.lean,Mathlib/MeasureTheory/Integral/MeanInequalities.lean,Mathlib/MeasureTheory/Integral/MeanValue.lean,Mathlib/MeasureTheory/Measure/AddContent.lean,Mathlib/MeasureTheory/Measure/Count.lean,Mathlib/MeasureTheory/Measure/FiniteMeasure.lean,Mathlib/MeasureTheory/Measure/LevyConvergence.lean,Mathlib/MeasureTheory/Measure/LogLikelihoodRatio.lean,Mathlib/MeasureTheory/Measure/PreVariation.lean,Mathlib/NumberTheory/Chebyshev.lean,Mathlib/NumberTheory/FLT/MasonStothers.lean |
140 |
7 |
['github-actions', 'madvorak', 'mathlib-merge-conflicts'] |
nobody |
5-37805 5 days ago |
5-37806 5 days ago |
46-12410 46 days |
| 41644 |
adomani author:adomani |
chore: add missing `to_additive` docstrings in Algebra (BigOperators, Order, ...) |
Adds the missing additive doc-strings (multiplicative side has a hand-written doc-string, additive side did not) across 16 file(s) in **Algebra (BigOperators, Order, ...)**.
The additive doc-strings are simple-minded translations of the multiplicative ones, with referenced lemma names replaced by their `to_additive` counterparts. These gaps were found by an environment linter that pairs each declaration with its `to_additive` counterpart and checks that both or neither is documented.
🤖 Generated with [Claude Code](https://claude.com/claude-code) |
LLM-generated
merge-conflict
|
68/40 |
Mathlib/Algebra/BigOperators/Group/Finset/Basic.lean,Mathlib/Algebra/BigOperators/Group/Finset/Defs.lean,Mathlib/Algebra/BigOperators/Group/Finset/Piecewise.lean,Mathlib/Algebra/BigOperators/Group/Finset/Sigma.lean,Mathlib/Algebra/FreeMonoid/Basic.lean,Mathlib/Algebra/Module/PUnit.lean,Mathlib/Algebra/MonoidAlgebra/Module.lean,Mathlib/Algebra/Order/Antidiag/Prod.lean,Mathlib/Algebra/Order/Group/Finset.lean,Mathlib/Algebra/Order/Group/Unbundled/Basic.lean,Mathlib/Algebra/Order/Hom/Monoid.lean,Mathlib/Algebra/Order/Monoid/Unbundled/Basic.lean,Mathlib/Algebra/Order/Monoid/Unbundled/Pow.lean,Mathlib/Algebra/Regular/Basic.lean,Mathlib/Algebra/Torsor/Basic.lean,Mathlib/Order/Filter/AtTopBot/Monoid.lean |
16 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
5-36854 5 days ago |
5-36854 5 days ago |
43-30235 43 days |
| 42517 |
khwilson author:khwilson |
refactor(Analysis/LocallyConvex): state hulls via ClosureOperator |
Restate `balancedHull` and the neighborhood bases of the origin in terms of the `ClosureOperator` API, and add the general lemmas that make this possible:
* `ClosureOperator.closure_binop_le`: a closure operator is sub-`f` for any monotone binary operation `f` whose closed elements are stable under `f`; `balancedHull_add_subset` and `absConvexHull_add_subset` are instances.
* `Filter.HasBasis.and_isClosed`: combine a basis of `p`-sets with a basis of `c`-closed sets when `c` preserves `p`.
* `Topology.closureOperator`: topological closure, bundled.
* `Balanced.sUnion`, and `Balanced.closure` generalized to `SeminormedRing`.
`balancedCore` keeps its definition as a union of balanced subsets, but its API is now derived from the hull side; `balancedCoreAux` is removed in favour of lemmas stated directly about `⋂ (r : 𝕜) (_ : 1 ≤ ‖r‖), r • s`. The new `nhds_basis_open_balanced` joins `nhds_basis_closed_balanced`, `nhds_hasBasis_absConvex_open` and `nhds_hasBasis_absConvex_closed`, all four proved through `and_isClosed`.
AI Disclosure: Much of the refactoring work across files was performed by Claude Opus 5 after being given examples I wrote.
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|
t-topology
merge-conflict
|
170/126 |
Mathlib/Analysis/LocallyConvex/AbsConvex.lean,Mathlib/Analysis/LocallyConvex/BalancedCoreHull.lean,Mathlib/Analysis/LocallyConvex/Basic.lean,Mathlib/Order/Closure.lean,Mathlib/Order/Filter/Bases/Basic.lean,Mathlib/Topology/Closure.lean |
6 |
3 |
['github-actions', 'khwilson', 'mathlib-merge-conflicts'] |
nobody |
5-36354 5 days ago |
5-36355 5 days ago |
18-50451 18 days |
| 41767 |
luigi-massacci author:luigi-massacci |
feat: the line derivative of a distribution induced by a differentiable function |
`ofFun` commutes with taking line derivatives.
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[](https://gitpod.io/from-referrer/)
|
t-analysis
large-import
merge-conflict
|
155/1 |
Mathlib/Analysis/Distribution/Distribution.lean,Mathlib/Analysis/Distribution/TestFunction.lean,docs/references.bib |
3 |
4 |
['github-actions', 'luigi-massacci', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
5-4297 5 days ago |
5-4298 5 days ago |
0-25292 7 hours |
| 41857 |
luigi-massacci author:luigi-massacci |
feat: add Coe instance for distributions induced by an L1Loc function |
The title. I copied the `MeasureSpace`approach from `TemperedDistribution`, assuming this is the standard solution to the problem of synthesizing the measure.
Note: given how mechanical this is, I asked Claude to write all the lemmas. I did however obviously check before PR-ing.
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[](https://gitpod.io/from-referrer/)
|
t-analysis
large-import
merge-conflict
|
162/1 |
Mathlib/Analysis/Distribution/Distribution.lean,Mathlib/Analysis/Distribution/TestFunction.lean,docs/references.bib |
3 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
5-4296 5 days ago |
5-4297 5 days ago |
0-25711 7 hours |
| 41085 |
chrisflav author:chrisflav |
feat(CategoryTheory): stalks of a presheaf on an indiscrete topological space |
---
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[](https://gitpod.io/from-referrer/)
|
t-category-theory
merge-conflict
|
84/0 |
Mathlib/CategoryTheory/Limits/Shapes/Terminal.lean,Mathlib/Topology/Category/TopCat/OpenNhds.lean,Mathlib/Topology/Sheaves/Stalks.lean |
3 |
10 |
['chrisflav', 'dagurtomas', 'github-actions', 'jcommelin', 'mathlib-bors', 'mathlib-merge-conflicts', 'plp127'] |
joelriou assignee:joelriou |
4-64821 4 days ago |
18-65320 18 days ago |
46-56584 46 days |
| 41749 |
felixpernegger author:felixpernegger |
chore: remove redudant `have`'s |
This PR removes most unused `have` statements in mathlib.
Some edge cases (Prop valued fields, have statements with arguments, etc) are not yet included (but this already took my computer 7 hours, so I will push that for later).
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict |
5/358 |
Archive/Imo/Imo1998Q2.lean,Counterexamples/NowhereDifferentiable.lean,Mathlib/Algebra/Category/ModuleCat/Sheaf/Quasicoherent.lean,Mathlib/Algebra/ContinuedFractions/Computation/TerminatesIffRat.lean,Mathlib/Algebra/Homology/Factorizations/CM5a.lean,Mathlib/Algebra/Homology/SpectralObject/Basic.lean,Mathlib/Algebra/Homology/SpectralObject/HasSpectralSequence.lean,Mathlib/Algebra/Module/ZLattice/Basic.lean,Mathlib/Algebra/Module/ZLattice/Covolume.lean,Mathlib/Algebra/Order/BigOperators/Group/Finset.lean,Mathlib/Algebra/Order/CauSeq/BigOperators.lean,Mathlib/Algebra/Order/Floor/Ring.lean,Mathlib/Algebra/Order/Ring/WithTop.lean,Mathlib/Algebra/Polynomial/RuleOfSigns.lean,Mathlib/Algebra/Ring/Ext.lean,Mathlib/AlgebraicGeometry/FunctionField.lean,Mathlib/AlgebraicGeometry/Geometrically/Reduced.lean,Mathlib/AlgebraicGeometry/Group/Abelian.lean,Mathlib/AlgebraicGeometry/Modules/Tilde.lean,Mathlib/AlgebraicGeometry/Morphisms/QuasiFinite.lean,Mathlib/AlgebraicGeometry/OrderOfVanishing.lean,Mathlib/AlgebraicGeometry/QuasiAffine.lean,Mathlib/AlgebraicGeometry/StructureSheaf.lean,Mathlib/AlgebraicTopology/ModelCategory/BifibrantObjectHomotopy.lean,Mathlib/AlgebraicTopology/SimplicialSet/AnodyneExtensions/Inner/Basic.lean,Mathlib/AlgebraicTopology/SingularHomology/Basic.lean,Mathlib/Analysis/Calculus/FDeriv/Mul.lean,Mathlib/Analysis/Calculus/FDeriv/WithLp.lean,Mathlib/Analysis/InnerProductSpace/NormDet.lean,Mathlib/Analysis/InnerProductSpace/PiL2.lean,Mathlib/Analysis/Normed/Field/Krasner.lean,Mathlib/Analysis/Normed/Module/RCLike/Basic.lean,Mathlib/Analysis/Normed/Unbundled/SpectralNorm.lean,Mathlib/Analysis/Real/Pi/Irrational.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/Rpow/ConjSqrt.lean,Mathlib/Analysis/SpecialFunctions/ContinuousFunctionalCalculus/Rpow/RingInverseOrder.lean,Mathlib/Analysis/SpecialFunctions/Elliptic/Weierstrass.lean,Mathlib/Analysis/SpecialFunctions/Gamma/Beta.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Angle.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/EulerSineProd.lean,Mathlib/CategoryTheory/Abelian/SerreClass/Localization.lean,Mathlib/CategoryTheory/ConcreteCategory/EpiMono.lean,Mathlib/CategoryTheory/EffectiveEpi/Comp.lean,Mathlib/CategoryTheory/Galois/Examples.lean,Mathlib/CategoryTheory/Generator/StrongGenerator.lean,Mathlib/CategoryTheory/Limits/Elements.lean,Mathlib/CategoryTheory/Limits/HasLimits.lean,Mathlib/CategoryTheory/Limits/Types/Pushouts.lean,Mathlib/CategoryTheory/LocallyCartesianClosed/ChosenPullbacksAlong.lean,Mathlib/CategoryTheory/Monoidal/Braided/Reflection.lean,Mathlib/CategoryTheory/MorphismProperty/CommaSites.lean,Mathlib/CategoryTheory/MorphismProperty/Limits.lean,Mathlib/CategoryTheory/Preadditive/Projective/Basic.lean,Mathlib/CategoryTheory/Presentable/CardinalFilteredPresentation.lean,Mathlib/CategoryTheory/Presentable/Retracts.lean,Mathlib/CategoryTheory/Sites/Coherent/LocallySurjective.lean,Mathlib/CategoryTheory/Sites/Continuous.lean,Mathlib/CategoryTheory/Sites/CoverPreserving.lean,Mathlib/CategoryTheory/Subobject/Limits.lean,Mathlib/CategoryTheory/Triangulated/Functor.lean,Mathlib/Combinatorics/Additive/VerySmallDoubling.lean,Mathlib/Combinatorics/SetFamily/AhlswedeZhang.lean,Mathlib/Combinatorics/SimpleGraph/Matching.lean,Mathlib/Condensed/Discrete/Characterization.lean,Mathlib/Condensed/Discrete/Colimit.lean,Mathlib/Data/Finset/Card.lean,Mathlib/Data/List/MinMax.lean,Mathlib/Data/List/PeriodicityLemma.lean,Mathlib/Data/Nat/Prime/Defs.lean,Mathlib/Data/Seq/Basic.lean,Mathlib/FieldTheory/Galois/IsGaloisGroup.lean,Mathlib/FieldTheory/NormalizedTrace.lean,Mathlib/FieldTheory/PurelyInseparable/Basic.lean,Mathlib/FieldTheory/PurelyInseparable/Tower.lean,Mathlib/FieldTheory/SeparablyGenerated.lean,Mathlib/Geometry/Euclidean/Angle/Bisector.lean,Mathlib/Geometry/Euclidean/Inversion/Basic.lean,Mathlib/Geometry/Manifold/VectorBundle/CovariantDerivative/Basic.lean,Mathlib/Geometry/Manifold/VectorBundle/LocalFrame.lean,Mathlib/GroupTheory/GroupAction/Jordan.lean,Mathlib/GroupTheory/GroupAction/SubMulAction/Combination.lean,Mathlib/GroupTheory/IndexNSmul.lean,Mathlib/GroupTheory/Perm/MaximalSubgroups.lean,Mathlib/LinearAlgebra/Charpoly/BaseChange.lean,Mathlib/LinearAlgebra/Determinant.lean,Mathlib/LinearAlgebra/Dimension/Constructions.lean,Mathlib/LinearAlgebra/PiTensorProduct/DirectSum.lean,Mathlib/LinearAlgebra/Trace.lean,Mathlib/LinearAlgebra/Transvection/Basic.lean,Mathlib/MeasureTheory/Function/ConditionalExpectation/CondJensen.lean,Mathlib/MeasureTheory/Integral/IntervalIntegral/AbsolutelyContinuousFun.lean,Mathlib/MeasureTheory/Measure/Stieltjes.lean,Mathlib/MeasureTheory/Measure/Typeclasses/ZeroOne.lean,Mathlib/MeasureTheory/VectorMeasure/Integral.lean,Mathlib/NumberTheory/Bernoulli.lean,Mathlib/NumberTheory/Cyclotomic/Basic.lean,Mathlib/NumberTheory/Cyclotomic/PrimitiveRoots.lean,Mathlib/NumberTheory/DirichletCharacter/Basic.lean,Mathlib/NumberTheory/Divisors.lean,Mathlib/NumberTheory/FLT/Three.lean |
186 |
14 |
['SnirBroshi', 'felixpernegger', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts'] |
nobody |
4-58891 4 days ago |
4-58892 4 days ago |
19-84736 19 days |
| 28291 |
vasnesterov author:vasnesterov |
feat(Tactic): tactic for computing asymptotics of real functions |
It's an auxiliary PR that implements the entire `compute_asymptotics` tactic. I am spliting it into multiple small PRs.
---
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Tactic description: https://vasnesterov.github.io/compute_asymptotics
Zulip announcement: [#announce > New tactic: `compute_asymptotics`](https://leanprover.zulipchat.com/#narrow/channel/113486-announce/topic/New.20tactic.3A.20.60compute_asymptotics.60/with/538639418)
In this PR I implement the `compute_asymptotics` tactic. Its purpose is to compute asymptotics of functions from `ℝ` to `ℝ`. So far it is able to compute the limit of any function constructed using arithmetic operations (`+`, `-`, `*`, `/`, inversion), powers, logarithms, and exponents.
```lean
import Mathlib.Tactic.ComputeAsymptotics
open Real Filter Topology Asymptotics
example : Tendsto (fun (x : ℝ) ↦ (1 + 6 * x⁻¹) ^ (7 * x)) atTop (𝓝 (exp 42)) := by
compute_asymptotics
example : (fun x ↦ x - 1 - log x) ~[𝓝[≠] 1] (fun x ↦ (x - 1) ^ 2 / 2) := by
compute_asymptotics
example (a b : ℝ) (h : a < b) :
(fun x ↦ (x + x * log x) ^ a) =O[atTop] (fun x ↦ (x / log x) ^ b) := by
compute_asymptotics
example :
(fun x ↦ log x) =o[𝓝[>] 0] (fun x ↦ Real.pi / (exp (Real.log 2 * x) - 1)) := by
compute_asymptotics
```
For more examples see `compute_asymptotics.lean` in tests.
### TODO
* Different domains in `compute_limit` as well.
* Trigonometric functions and Gamma-function.
### References
I am basically implementing [this article](https://www21.in.tum.de/~eberlm/pdfs/real_asymp.pdf) about computing asymptotics in Isabelle by Manuel Eberl.
### Small PRs
Here's a few smaller PRs coming from this one, ordered by importance:
- [ ] depends on: #42939
- [ ] depends on: #42938
- [x] depends on: #40249
- [x] depends on: #40014
- [x] depends on: #40017
- [x] depends on: #37415
- [x] depends on: #37342
- [x] depends on: #37418
- [x] depends on: #37411
- [x] depends on: #37414
- [x] depends on: #37419
- [x] depends on: #35072
- [x] depends on: #34922
- [x] depends on: #34356
- [x] depends on: #34422
- [x] depends on: #34403
- [x] depends on: #34311
[](https://gitpod.io/from-referrer/)
|
t-analysis
t-meta
large-import
merge-conflict
|
10237/107 |
Mathlib.lean,Mathlib/Tactic.lean,Mathlib/Tactic/ComputeAsymptotics.lean,Mathlib/Tactic/ComputeAsymptotics/Lemmas.lean,Mathlib/Tactic/ComputeAsymptotics/Meta/BasisM.lean,Mathlib/Tactic/ComputeAsymptotics/Meta/CompareMS.lean,Mathlib/Tactic/ComputeAsymptotics/Meta/CompareReal.lean,Mathlib/Tactic/ComputeAsymptotics/Meta/ConstSimp.lean,Mathlib/Tactic/ComputeAsymptotics/Meta/ConstSimpAttribute.lean,Mathlib/Tactic/ComputeAsymptotics/Meta/ConvertDomain.lean,Mathlib/Tactic/ComputeAsymptotics/Meta/Exp.lean,Mathlib/Tactic/ComputeAsymptotics/Meta/LeadingMonomial.lean,Mathlib/Tactic/ComputeAsymptotics/Meta/Log.lean,Mathlib/Tactic/ComputeAsymptotics/Meta/MS.lean,Mathlib/Tactic/ComputeAsymptotics/Meta/Misc.lean,Mathlib/Tactic/ComputeAsymptotics/Meta/Normalization.lean,Mathlib/Tactic/ComputeAsymptotics/Meta/Trimming.lean,Mathlib/Tactic/ComputeAsymptotics/Meta/ZeroOracle.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Basic.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Basis.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Corecursion.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Defs.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/LogBasis.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Majorized.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Monomial/Basic.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Monomial/LeadingMonomial.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Monomial/Predicates.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Operations.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Operations/Add.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Operations/Basic.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Operations/Exp.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Operations/Inv.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Operations/Log.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Operations/Mul.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Operations/Pow.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Operations/Powser.lean,Mathlib/Tactic/ComputeAsymptotics/Multiseries/Trimming.lean,MathlibTest/compute_asymptotics.lean |
39 |
77 |
['github-actions', 'grunweg', 'joneugster', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'ocfnash', 'vasnesterov'] |
j-loreaux and joneugster assignee:j-loreaux assignee:joneugster |
2-63987 2 days ago |
383-60008 383 days ago |
0-54 54 seconds |
| 41938 |
rosborn author:rosborn |
chore(Linter/DirectoryDependency): move forbidden directories into a JSON file |
Co-authored-by: Michael Rothgang <rothgang@math.uni-bonn.de>
---
This PR adopts the work from #26088 and #26406.
The JSON file was generated programmatically from the previous hard-coded array and verified to produce an identical relation, with one deliberate exception: the entry ``(`MathlibTest.Header, `Mathlib.Deprecated)`` was dropped.
If this looks good, I can continue work on `allowedImportDirs` and `overrideAllowedImportDirs`.
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t-linter
maintainer-merge
merge-conflict
|
408/318 |
Mathlib/Tactic/Linter/DirectoryDependency.lean,scripts/README.md,scripts/forbiddenDirs.json |
3 |
18 |
['github-actions', 'grunweg', 'jcommelin', 'joneugster', 'mathlib-bors', 'mathlib-merge-conflicts', 'rosborn'] |
grunweg assignee:grunweg |
2-63672 2 days ago |
2-69353 2 days ago |
33-83850 33 days |
| 41525 |
JX-Mo author:JX-Mo |
feat(RepresentationTheory): add Smooth.Basic for smooth representations |
This PR introduces basic setup for smooth representations of a topological group. Hopefully it will serve as preliminary content for those who are interested in formalizing representation theory for p-adic reductive groups in the future. We introduce the following in the file:
1. Define smoothness for representations of a topological group. It is a property for a representation to be smooth: the stabilizer of any vector is open.
2. Prove basic closure properties: subrepresentations, quotient representations, tensor products, direct sums of smooth representations are smooth.
3. Construct smoothHom and contragredient: they are obtained by cutting out smooth vectors from the naive hom and dual.
- [ ] depends on #40941
- [ ] depends on #41081 |
new-contributor
t-algebra
merge-conflict
label:t-algebra$ |
345/0 |
Mathlib.lean,Mathlib/RepresentationTheory/Smooth/Basic.lean,Mathlib/RepresentationTheory/Stabilizer.lean,Mathlib/RepresentationTheory/Subrepresentation.lean,Mathlib/Tactic/Linter/DirectoryDependency.lean |
5 |
5 |
['JX-Mo', 'felixpernegger', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
2-23963 2 days ago |
2-23964 2 days ago |
50-49263 50 days |
| 41541 |
felixpernegger author:felixpernegger |
chore: prefer `classical` over `open scoped Classical` in proofs |
In #41423 it came up that it is preferable to use `classical` in proofs instead of `open (scoped) Classical`, as its slightly easier to maintain. This PR replaces all such occurences where it can be reasonably done.
This is likely my last PR about this topic.
(I used Claude to fix some git issue, which is why it shows up in the commit)
---
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|
merge-conflict |
111/58 |
Mathlib/Logic/Basic.lean,Mathlib/Logic/Function/Basic.lean,Mathlib/Order/Basic.lean,Mathlib/Order/Defs/PartialOrder.lean |
4 |
5 |
['felixpernegger', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts'] |
nobody |
2-23961 2 days ago |
2-23963 2 days ago |
45-51257 45 days |
| 41705 |
kbuzzard author:kbuzzard |
perf: speed up kernel typechecking of some of mathlib's slowest declarations |
This PR changes some of the proofs in mathlib which were slowest to typecheck in the kernel. Typically there is some kind of defeq abuse going on in master, which the elaborator is quick to accept but which the kernel doesn't like, typically resulting in the unfolding of a large amount of stuff. Hopefully all the changes are uncontroversial. The problematic declarations were located with an LLM and changes were also initially written by an LLM but some fixes were complex, and I removed most of these from his PR because they were fiddling with parts of the codebase I didn't know well. I have now gone through everything manually, tidied up, and tested that indeed this is making mathlib quicker in every case.
The added declaration `strictMono_valueGroupEquiv` in `Mathlib/RingTheory/DedekindDomain/AdicValuation.lean` is to tidy up one of the slow proofs. |
LLM-generated
merge-conflict
|
21/11 |
Mathlib/Algebra/Category/ModuleCat/Sheaf/PushforwardContinuous.lean,Mathlib/Analysis/InnerProductSpace/Adjoint.lean,Mathlib/RingTheory/DedekindDomain/AdicValuation.lean,Mathlib/RingTheory/Etale/Field.lean |
4 |
10 |
['github-actions', 'kbuzzard', 'leanprover-radar', 'mathlib-merge-conflicts', 'metakunt'] |
nobody |
2-23836 2 days ago |
2-23837 2 days ago |
31-33237 31 days |
| 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
merge-conflict
|
102/0 |
Mathlib.lean,Mathlib/Topology/Covering/FundamentalGroupCircle.lean |
2 |
3 |
['github-actions', 'mathlib-merge-conflicts'] |
ADedecker assignee:ADedecker |
2-23818 2 days ago |
2-23819 2 days ago |
42-44257 42 days |
| 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
merge-conflict
|
64/23 |
Mathlib/Algebra/Group/Basic.lean,Mathlib/Algebra/Group/Defs.lean,Mathlib/FieldTheory/Galois/Basic.lean,Mathlib/GroupTheory/FreeGroup/Basic.lean,Mathlib/GroupTheory/FreeGroup/Reduce.lean,Mathlib/GroupTheory/SpecificGroups/Cyclic/Basic.lean,Mathlib/Logic/Unique.lean |
7 |
4 |
['github-actions', 'mathlib-merge-conflicts', 'vlad902'] |
nobody |
2-23817 2 days ago |
2-23818 2 days ago |
37-59829 37 days |
| 42195 |
Jun2M author:Jun2M |
refactor(Order/Partition): remove the support index from `Partition` |
Redefine `Partition α` as an independent collection of pairwise disjoint, nonempty sets, with its support available as `P.supp`.
Previously, `Partition s` carried its support as a type index. This made partitions of different sets inhabit different types and forced otherwise natural operations to transport partitions across support equalities.
BREAKING CHANGE: Replace the indexed type `Partition s` with `Partition α`, and obtain the former index from `P.supp`. When constructing a partition, omit the proof that the parts cover a prescribed set. `Partition.copy` and `Partition.partscopyEquiv` are no longer needed. Import the relevant `Mathlib.Order.Partition` submodule when using APIs moved out of `Basic`.
Deletions:
- Partition.copy
- Partition.mem_copy_iff
- Partition.partscopyEquiv
It also introduces some new definitions: `induce` & `bind`. These are added in this PR as they are needed to keep `SemiLattice` instance on `Partition`.
A new file `Set.lean` now houses defs and theorems of `Partition (Set _)`, including `IsRepFun` previously in `Basic` file.
This PR is partially generated by AI: Partition API written by myself in [Matroid repo](https://github.com/apnelson1/Matroid) has be adapted using codex and final checked by myself.
Co-authored-by: OpenAI Codex <codex@openai.com>
---
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|
t-order
merge-conflict
|
611/406 |
Mathlib.lean,Mathlib/Order/Partition/Basic.lean,Mathlib/Order/Partition/Set.lean,Mathlib/Order/SupIndep.lean |
4 |
3 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
2-23690 2 days ago |
2-23690 2 days ago |
14-57527 14 days |
| 42276 |
yuanyi-350 author:yuanyi-350 |
feat(IMO): archive IMO 2026 Q5 |
|
IMO
merge-conflict
|
196/0 |
Archive.lean,Archive/Imo/Imo2026Q5.lean |
2 |
9 |
['felixpernegger', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
2-23689 2 days ago |
2-23689 2 days ago |
29-58686 29 days |
| 43193 |
Brian-Nugent author:Brian-Nugent |
feat(Algebra/Category/ModuleCat): refactor Monoidal.lean to use `PresheafOfModulesOfCommRing` |
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|
t-algebra
tech debt
large-import
t-category-theory
merge-conflict
label:t-algebra$ |
163/44 |
Mathlib.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/Monoidal.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/OfCommRing.lean |
3 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
1-34234 1 day ago |
1-34235 1 day ago |
0-19944 5 hours |
| 43195 |
Brian-Nugent author:Brian-Nugent |
feat(Algebra/Category/ModuleCat/Differentials): refactor the presheaf of differentials to use `PresheafOfModulesOfCommRing` |
---
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|
t-algebra
t-category-theory
large-import
tech debt
merge-conflict
label:t-algebra$ |
144/25 |
Mathlib.lean,Mathlib/Algebra/Category/ModuleCat/Differentials/Presheaf.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/OfCommRing.lean |
3 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
1-34232 1 day ago |
1-34233 1 day ago |
0-19431 5 hours |
| 41829 |
felixpernegger author:felixpernegger |
perf: explicitly specify free universes in `ModuleCat` |
Like #40964, but for `ModuleCat`
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t-algebra
merge-conflict
label:t-algebra$ |
197/193 |
Mathlib/Algebra/Category/AlgCat/Symmetric.lean,Mathlib/Algebra/Category/CoalgCat/Basic.lean,Mathlib/Algebra/Category/CoalgCat/ComonEquivalence.lean,Mathlib/Algebra/Category/CoalgCat/Monoidal.lean,Mathlib/Algebra/Category/FGModuleCat/Basic.lean,Mathlib/Algebra/Category/Grp/ZModuleEquivalence.lean,Mathlib/Algebra/Category/ModuleCat/Adjunctions.lean,Mathlib/Algebra/Category/ModuleCat/Basic.lean,Mathlib/Algebra/Category/ModuleCat/Differentials/Basic.lean,Mathlib/Algebra/Category/ModuleCat/FilteredColimits.lean,Mathlib/Algebra/Category/ModuleCat/Images.lean,Mathlib/Algebra/Category/ModuleCat/Kernels.lean,Mathlib/Algebra/Category/ModuleCat/Limits.lean,Mathlib/Algebra/Category/ModuleCat/Localization.lean,Mathlib/Algebra/Category/ModuleCat/Monoidal/Adjunction.lean,Mathlib/Algebra/Category/ModuleCat/Monoidal/Basic.lean,Mathlib/Algebra/Category/ModuleCat/Monoidal/Closed.lean,Mathlib/Algebra/Category/ModuleCat/Monoidal/Symmetric.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/ColimitFunctor.lean,Mathlib/Algebra/Category/ModuleCat/Presheaf/Monoidal.lean,Mathlib/Algebra/Category/ModuleCat/Subobject.lean,Mathlib/Algebra/Homology/ShortComplex/ModuleCat.lean,Mathlib/AlgebraicGeometry/Modules/Tilde.lean,Mathlib/AlgebraicGeometry/StructureSheaf.lean,Mathlib/CategoryTheory/Abelian/Ext.lean,Mathlib/CategoryTheory/Abelian/GrothendieckCategory/ModuleEmbedding/GabrielPopescu.lean,Mathlib/CategoryTheory/Limits/ConcreteCategory/WithAlgebraicStructures.lean,Mathlib/CategoryTheory/Linear/Yoneda.lean,Mathlib/Condensed/Discrete/Module.lean,Mathlib/Condensed/Light/Explicit.lean,Mathlib/Condensed/Light/Small.lean,Mathlib/LinearAlgebra/QuadraticForm/QuadraticModuleCat.lean,Mathlib/LinearAlgebra/QuadraticForm/QuadraticModuleCat/Monoidal.lean,Mathlib/LinearAlgebra/QuadraticForm/QuadraticModuleCat/Symmetric.lean,Mathlib/RepresentationTheory/Coinvariants.lean,Mathlib/RepresentationTheory/Homological/GroupCohomology/Basic.lean,Mathlib/RepresentationTheory/Homological/GroupCohomology/Functoriality.lean,Mathlib/RepresentationTheory/Homological/GroupCohomology/LongExactSequence.lean,Mathlib/RepresentationTheory/Homological/GroupHomology/Basic.lean,Mathlib/RepresentationTheory/Homological/GroupHomology/Functoriality.lean,Mathlib/RepresentationTheory/Homological/GroupHomology/LongExactSequence.lean,Mathlib/RepresentationTheory/Homological/GroupHomology/LowDegree.lean,Mathlib/RepresentationTheory/Homological/Resolution.lean,Mathlib/RepresentationTheory/Homological/TateCohomology/Basic.lean,Mathlib/RepresentationTheory/Invariants.lean,Mathlib/RepresentationTheory/Rep/Basic.lean,Mathlib/RepresentationTheory/Rep/Iso.lean,Mathlib/RingTheory/Depth/Rees.lean,Mathlib/RingTheory/Flat/CategoryTheory.lean,Mathlib/RingTheory/Regular/Category.lean |
51 |
11 |
['felixpernegger', 'github-actions', 'leanprover-radar', 'mathlib-bors', 'mathlib-merge-conflicts'] |
nobody |
0-59799 16 hours ago |
0-59800 16 hours ago |
44-60607 44 days |
| 42861 |
JovanGerb author:JovanGerb |
feat(Translate): try all translation pairings until one succeeds |
This PR allows `to_dual` to add translations between two sets of constants by trying all possible pairings, instead of only going for the respective pairing. This is possible thanks to #40365, which made `to_dual` validate all translations. This is useful for
- `to_dual (attr := simps)` on e.g. an `Iso` or `Comma`, since the projections `hom`/`inv` and `left`/`right` are dual to eachother.
- `to_dual` on structures where the fields are reordered, such as `Comma`.
I think the tiny slowdown is worth the convenience.
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tech debt
t-meta
maintainer-merge
merge-conflict
|
75/175 |
Mathlib/CategoryTheory/Adjunction/Basic.lean,Mathlib/CategoryTheory/CommSq.lean,Mathlib/CategoryTheory/Comma/Basic.lean,Mathlib/CategoryTheory/LiftingProperties/Basic.lean,Mathlib/CategoryTheory/Limits/Cones.lean,Mathlib/CategoryTheory/Limits/IsLimit.lean,Mathlib/CategoryTheory/Limits/Shapes/IsTerminal.lean,Mathlib/CategoryTheory/Limits/Shapes/Terminal.lean,Mathlib/CategoryTheory/NatIso.lean,Mathlib/CategoryTheory/Retract.lean,Mathlib/Order/Heyting/Basic.lean,Mathlib/Tactic/Translate/Core.lean,MathlibTest/Attribute/ToAdditive/Basic.lean,MathlibTest/Attribute/ToDual.lean |
14 |
8 |
['JovanGerb', 'github-actions', 'joneugster', 'leanprover-radar', 'mathlib-merge-conflicts'] |
joneugster assignee:joneugster |
0-59193 16 hours ago |
0-59194 16 hours ago |
13-2372 13 days |
| 37954 |
jdhart81 author:jdhart81 |
feat(Data/ENNReal/Inv): add ENNReal.div_mul_div_cancel |
Proves a / b * (b / c) = a / c for b ≠ 0, b ≠ ∞ in ENNReal. Proof via mul_div_assoc and existing div_mul_cancel.
AI Disclosure: This PR was developed with assistance from an LLM (Claude, Anthropic) for proof exploration and text drafting. The proof was compiled and verified locally by the contributor, who understands the mathematical content. This lemma is extracted from a larger formalization of information-theoretic bounds (Zenodo DOI: 10.5281/zenodo.19317983).
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t-data
new-contributor
merge-conflict
|
8/0 |
Mathlib/Data/ENNReal/Inv.lean,Mathlib/Data/EReal/Inv.lean |
2 |
13 |
['felixpernegger', 'github-actions', 'jdhart81', 'mathlib-merge-conflicts'] |
nobody |
0-9241 2 hours ago |
0-9242 2 hours ago |
34-26841 34 days |
| 38198 |
JovanGerb author:JovanGerb |
chore(Data/Real/Basic): `no_expose` the private operations |
This PR puts `no_expose` on all of the operations on `Real` that are defined in terms of quotients. This is a step in the direction of not exposing the definiton of `Real`.
Note that I leave the `irreducible_def`s as is. This is because the `simpNF` linter does not participate in the module system, and it would time out otherwise. Additionally, downstream users may not be using the module system.
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t-data
merge-conflict
|
11/31 |
Mathlib/Data/Real/Basic.lean,Mathlib/Topology/Algebra/Valued/NormedValued.lean |
2 |
19 |
['JovanGerb', 'Vierkantor', 'eric-wieser', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts'] |
nobody |
0-9239 2 hours ago |
0-9240 2 hours ago |
134-7110 134 days |
| 40309 |
jjdishere author:jjdishere |
feat(IsValuativeTopology/Normed): `Normed` to `IsValuativeTopology` |
### Main description
The goal of this PR is to prepare APIs for creating `ValuativeRel`, `IsValuativeTopology`, ... instances when a `NormedField` is given, similar to `NormedField.toValued`.
### Entry point for reviewing
In file `Mathlib.Topology.Algebra.ValuativeRel.Normed`, we define `NormedField.toValuativeRel`, `NormedField.isValuativeTopology` and `IsValuativeTopology.toNormedField`.
Co-authored-by: Edison Xie <yx3021@ic.ac.uk>
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t-ring-theory
t-topology
LLM-generated
merge-conflict
|
321/30 |
Mathlib.lean,Mathlib/Data/NNReal/Defs.lean,Mathlib/Topology/Algebra/ValuativeRel/Normed.lean,Mathlib/Topology/Algebra/Valued/NormedValued.lean |
4 |
6 |
['faenuccio', 'github-actions', 'jjdishere', 'mathlib-merge-conflicts', 'riccardobrasca'] |
nobody |
0-8120 2 hours ago |
0-8120 2 hours ago |
7-51240 7 days |
| 41101 |
YaelDillies author:YaelDillies |
feat(Data/{ENat,ENNReal,EReal}): missing coercion lemmas |
From MeanFourier
---
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t-data
merge-conflict
|
30/0 |
Mathlib/Data/ENat/Monoid.lean,Mathlib/Data/EReal/Basic.lean,Mathlib/Data/Real/ENatENNReal.lean |
3 |
11 |
['YaelDillies', 'eric-wieser', 'github-actions', 'mathlib-merge-conflicts'] |
TwoFX assignee:TwoFX |
0-7871 2 hours ago |
0-7872 2 hours ago |
60-795 60 days |
| 41134 |
martinwintermath author:martinwintermath |
feat(Algebra/Order/Nonneg): add `Nonneg` for nonnegative subtype |
Currently the nonnegative subtype is denoted `{x : R // 0 ≤ x}` which has a tendency to be used inconsistently and does not print well. This PR introduces
```lean4
/- The subtype of nonnegative elements. -/
abbrev Nonneg (α : Type*) [Zero α] [LE α] := { x : α // 0 ≤ x }
```
and replaces `{x : R // 0 ≤ x}` by `Nonneg R` throughout mathlib.
In the longer term, `Nonneg` could be converted to a one-field or two-field structure, as discussed on Zulip: [#general > backward.isDefEq.respectTransparency @ 💬](https://leanprover.zulipchat.com/#narrow/channel/113488-general/topic/backward.2EisDefEq.2ErespectTransparency/near/585745328). This PR is the first step in this direction, by introducing the name `Nonneg` throughout mathlib.
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maintainer-merge
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|
116/108 |
Mathlib/Algebra/Order/Archimedean/Basic.lean,Mathlib/Algebra/Order/Module/Defs.lean,Mathlib/Algebra/Order/Nonneg/Basic.lean,Mathlib/Algebra/Order/Nonneg/Field.lean,Mathlib/Algebra/Order/Nonneg/Floor.lean,Mathlib/Algebra/Order/Nonneg/Module.lean,Mathlib/Algebra/Order/Nonneg/Ring.lean,Mathlib/Analysis/Convex/Cone/Basic.lean,Mathlib/Analysis/Convex/Segment.lean,Mathlib/Data/NNReal/Defs.lean,Mathlib/Geometry/Convex/Cone/Dual.lean,Mathlib/Geometry/Convex/Cone/Pointed.lean,Mathlib/MeasureTheory/Function/SimpleFuncDenseLp.lean,Mathlib/RingTheory/Finiteness/Basic.lean,Mathlib/Topology/Algebra/Field.lean,Mathlib/Topology/Algebra/Order/Module.lean |
16 |
8 |
['SnirBroshi', 'github-actions', 'grunweg', 'martinwintermath', 'mathlib-merge-conflicts'] |
nobody |
0-7870 2 hours ago |
0-7871 2 hours ago |
63-16213 63 days |
| 41259 |
felixpernegger author:felixpernegger |
chore: remove redudant `nonrec`'s |
Remove all `nonrec` which are just not needed, about 9% of all `nonrec` occurences (tech debt)
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merge-conflict |
62/62 |
Mathlib/Algebra/Colimit/DirectLimit.lean,Mathlib/Algebra/GroupWithZero/WithZero.lean,Mathlib/AlgebraicGeometry/Cover/MorphismProperty.lean,Mathlib/AlgebraicGeometry/Morphisms/ClosedImmersion.lean,Mathlib/AlgebraicGeometry/Morphisms/Descent.lean,Mathlib/AlgebraicGeometry/Morphisms/QuasiFinite.lean,Mathlib/AlgebraicGeometry/Sites/SheafQuasiCompact.lean,Mathlib/Analysis/Calculus/Deriv/Comp.lean,Mathlib/Analysis/Calculus/Deriv/Star.lean,Mathlib/Analysis/Calculus/FDeriv/Basic.lean,Mathlib/Analysis/Calculus/FDeriv/WithLp.lean,Mathlib/Analysis/Complex/PhragmenLindelof.lean,Mathlib/Analysis/Complex/Trigonometric.lean,Mathlib/Analysis/Normed/Group/Quotient.lean,Mathlib/Analysis/SpecialFunctions/Pow/Deriv.lean,Mathlib/Computability/RecursiveIn.lean,Mathlib/Data/List/Basic.lean,Mathlib/Data/List/Cycle.lean,Mathlib/Data/NNReal/Defs.lean,Mathlib/Data/Rel/Cover.lean,Mathlib/Data/Rel/Separated.lean,Mathlib/Geometry/Euclidean/Inversion/Calculus.lean,Mathlib/Geometry/Manifold/ContMDiff/Constructions.lean,Mathlib/Geometry/Manifold/ContMDiff/NormedSpace.lean,Mathlib/LinearAlgebra/Multilinear/Basic.lean,Mathlib/MeasureTheory/Group/Arithmetic.lean,Mathlib/MeasureTheory/Integral/IntervalIntegral/Basic.lean,Mathlib/MeasureTheory/Measure/Decomposition/Lebesgue.lean,Mathlib/MeasureTheory/Measure/Lebesgue/Basic.lean,Mathlib/ModelTheory/Ultraproducts.lean,Mathlib/NumberTheory/BernoulliPolynomials.lean,Mathlib/Probability/Density.lean,Mathlib/Probability/Moments/Variance.lean,Mathlib/RingTheory/Flat/Basic.lean,Mathlib/RingTheory/Ideal/KrullsHeightTheorem.lean,Mathlib/RingTheory/Polynomial/Resultant/Basic.lean,Mathlib/Topology/Connected/PathConnected.lean,Mathlib/Topology/FiberBundle/Basic.lean,Mathlib/Topology/Filter.lean,Mathlib/Topology/Homotopy/Basic.lean,Mathlib/Topology/Instances/ENat.lean,Mathlib/Topology/MetricSpace/MetricSeparated.lean,Mathlib/Topology/MetricSpace/Pseudo/Basic.lean,Mathlib/Topology/Order/LocalExtr.lean |
44 |
5 |
['felixpernegger', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts'] |
nobody |
0-7869 2 hours ago |
0-7870 2 hours ago |
41-52142 41 days |
| 41310 |
SnirBroshi author:SnirBroshi |
feat(Algebra/Group/Subgroup/ZPowers/Lemmas): generalize from pairs to `Finset`s |
Generalize `closure_eq_zmultiples`/`zmultiples_sup`/`zmultiples_inf` from pairs to `Finset`s. For `s : Finset ℤ`:
- `closure (s : Set ℤ) = zmultiples (s.gcd id)`
- `s.sup zmultiples = zmultiples (s.gcd id)`
- `s.inf zmultiples = zmultiples (s.lcm id)`
---
If the large imports aren't okay we could have a new `ZPowers/Finset.lean` or `ZPowers/FinsetLemmas.lean`.
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t-algebra
large-import
maintainer-merge
merge-conflict
label:t-algebra$ |
28/3 |
Mathlib/Algebra/Group/Subgroup/ZPowers/Lemmas.lean |
1 |
11 |
['Ruben-VandeVelde', 'github-actions', 'j-loreaux', 'kbuzzard', 'leanprover-radar', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'mattrobball'] |
nobody |
0-7868 2 hours ago |
0-7869 2 hours ago |
53-83973 53 days |
| 41536 |
Mathias-Stout author:Mathias-Stout |
chore(Algebra): make quaternion directory |
We create separate directory for quaternions and move the two existing files into it.
This prepares a follow-up PR proving that quaternions are central simple.
Co-authored-by: Justus Springer <justusspringer@gmx.de>
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file-removed
new-contributor
merge-conflict
|
7/7 |
Mathlib.lean,Mathlib/Algebra/DualQuaternion.lean,Mathlib/Algebra/Quaternion/Basic.lean,Mathlib/Algebra/Quaternion/Basis.lean,Mathlib/Analysis/Quaternion.lean,Mathlib/LinearAlgebra/CliffordAlgebra/Equivs.lean,MathlibTest/Quaternion.lean |
7 |
5 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
0-7742 2 hours ago |
0-7743 2 hours ago |
37-21022 37 days |
| 41762 |
felixpernegger author:felixpernegger |
chore: replace terminal `convert` with `exact` |
Replaces terminal `convert(!)` with `exact` whenever possible.
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merge-conflict |
193/190 |
Mathlib/Algebra/BigOperators/Group/List/Basic.lean,Mathlib/Algebra/Category/ModuleCat/EpiMono.lean,Mathlib/Algebra/CharP/MixedCharZero.lean,Mathlib/Algebra/DirectSum/Module.lean,Mathlib/Algebra/Group/Action/Basic.lean,Mathlib/Algebra/Group/Fin/Tuple.lean,Mathlib/Algebra/Group/Pointwise/Set/Finite.lean,Mathlib/Algebra/Module/LocalizedModule/Basic.lean,Mathlib/Algebra/Module/NatInt.lean,Mathlib/Algebra/Module/ZLattice/Basic.lean,Mathlib/Algebra/Polynomial/AlgebraMap.lean,Mathlib/Algebra/Polynomial/Div.lean,Mathlib/Algebra/Ring/GeomSum.lean,Mathlib/AlgebraicGeometry/EllipticCurve/Jacobian/Point.lean,Mathlib/AlgebraicGeometry/EllipticCurve/Projective/Point.lean,Mathlib/AlgebraicGeometry/Noetherian.lean,Mathlib/AlgebraicGeometry/Properties.lean,Mathlib/AlgebraicGeometry/Spec.lean,Mathlib/Analysis/BoxIntegral/Partition/Basic.lean,Mathlib/Analysis/Calculus/ContDiff/Basic.lean,Mathlib/Analysis/Calculus/ContDiff/Convolution.lean,Mathlib/Analysis/Calculus/ContDiff/Defs.lean,Mathlib/Analysis/Calculus/FDeriv/ContinuousAlternatingMap.lean,Mathlib/Analysis/Calculus/FDeriv/ContinuousMultilinearMap.lean,Mathlib/Analysis/Complex/Basic.lean,Mathlib/Analysis/Convex/Caratheodory.lean,Mathlib/Analysis/Convex/Side.lean,Mathlib/Analysis/Convex/SpecificFunctions/Deriv.lean,Mathlib/Analysis/Fourier/AddCircle.lean,Mathlib/Analysis/FunctionalSpaces/SobolevInequality.lean,Mathlib/Analysis/Normed/Field/UnitBall.lean,Mathlib/Analysis/Normed/Lp/ProdLp.lean,Mathlib/Analysis/Normed/Lp/lpSpace.lean,Mathlib/Analysis/SpecialFunctions/Pow/Deriv.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Chebyshev/Orthogonality.lean,Mathlib/CategoryTheory/Abelian/Pseudoelements.lean,Mathlib/CategoryTheory/Adhesive/Basic.lean,Mathlib/CategoryTheory/Category/Basic.lean,Mathlib/CategoryTheory/Limits/Shapes/Pullback/IsPullback/BicartesianSq.lean,Mathlib/CategoryTheory/Limits/Types/Coequalizers.lean,Mathlib/CategoryTheory/Localization/Opposite.lean,Mathlib/CategoryTheory/Monoidal/Internal/Module.lean,Mathlib/CategoryTheory/Monoidal/Internal/Types/Basic.lean,Mathlib/CategoryTheory/Monoidal/Internal/Types/CommGrp_.lean,Mathlib/CategoryTheory/PUnit.lean,Mathlib/CategoryTheory/PathCategory/Basic.lean,Mathlib/CategoryTheory/Sites/Types.lean,Mathlib/CategoryTheory/Subobject/Classifier/Defs.lean,Mathlib/Combinatorics/Configuration.lean,Mathlib/Combinatorics/Hindman.lean,Mathlib/Combinatorics/Nullstellensatz.lean,Mathlib/Combinatorics/SetFamily/KruskalKatona.lean,Mathlib/Combinatorics/SimpleGraph/Dart.lean,Mathlib/Combinatorics/SimpleGraph/Regularity/Chunk.lean,Mathlib/Computability/TuringMachine/ToPartrec.lean,Mathlib/Data/DFinsupp/Interval.lean,Mathlib/Data/ENNReal/Operations.lean,Mathlib/Data/Fin/Tuple/Basic.lean,Mathlib/Data/Finset/Image.lean,Mathlib/Data/List/Basic.lean,Mathlib/Data/List/Intervals.lean,Mathlib/Data/Nat/Digits/Defs.lean,Mathlib/Data/QPF/Univariate/Basic.lean,Mathlib/Data/Sym/Basic.lean,Mathlib/FieldTheory/PrimitiveElement.lean,Mathlib/Geometry/Convex/Cone/Pointed.lean,Mathlib/Geometry/Convex/ConvexSpace/Defs.lean,Mathlib/Geometry/Euclidean/Projection.lean,Mathlib/Geometry/Manifold/ChartedSpace.lean,Mathlib/Geometry/Manifold/ContMDiff/Constructions.lean,Mathlib/Geometry/Manifold/MFDeriv/SpecificFunctions.lean,Mathlib/Geometry/Manifold/Sheaf/Basic.lean,Mathlib/Geometry/RingedSpace/LocallyRingedSpace/HasColimits.lean,Mathlib/Geometry/RingedSpace/OpenImmersion.lean,Mathlib/Geometry/RingedSpace/PresheafedSpace/Gluing.lean,Mathlib/GroupTheory/Finiteness.lean,Mathlib/GroupTheory/GroupAction/Quotient.lean,Mathlib/GroupTheory/Perm/Closure.lean,Mathlib/GroupTheory/Perm/Cycle/Basic.lean,Mathlib/GroupTheory/Perm/Support.lean,Mathlib/GroupTheory/Submonoid/Inverses.lean,Mathlib/LinearAlgebra/AffineSpace/AffineMap.lean,Mathlib/LinearAlgebra/AffineSpace/Centroid.lean,Mathlib/LinearAlgebra/AffineSpace/Independent.lean,Mathlib/LinearAlgebra/Dimension/LinearMap.lean,Mathlib/LinearAlgebra/Finsupp/Supported.lean,Mathlib/LinearAlgebra/Matrix/Block.lean,Mathlib/LinearAlgebra/Matrix/ToLin.lean,Mathlib/LinearAlgebra/Pi.lean,Mathlib/LinearAlgebra/PiTensorProduct/Basic.lean,Mathlib/LinearAlgebra/StdBasis.lean,Mathlib/LinearAlgebra/TensorAlgebra/Basic.lean,Mathlib/Logic/Equiv/Fin/Basic.lean,Mathlib/Logic/Equiv/Fintype.lean,Mathlib/MeasureTheory/Function/ConvergenceInDistribution.lean,Mathlib/MeasureTheory/Function/Jacobian.lean,Mathlib/MeasureTheory/Function/StronglyMeasurable/Basic.lean,Mathlib/MeasureTheory/Group/Measure.lean,Mathlib/MeasureTheory/Integral/FinMeasAdditive.lean,Mathlib/MeasureTheory/Measure/Content.lean |
150 |
17 |
['Parcly-Taxel', 'adomani', 'chenson2018', 'felixpernegger', 'github-actions', 'grunweg', 'leanprover-radar', 'mathlib-bors', 'mathlib-merge-conflicts'] |
nobody |
0-7618 2 hours ago |
0-7619 2 hours ago |
42-2367 42 days |
| 42357 |
SynBurz author:SynBurz |
feat: the Krull dimension of the product of finitely many rings is equal to the maximum of Krull dimensions of the factors |
Add `ringKrullDim_pi_eq_iSup_ringKrullDim`. Also add useful defs: `LTSeries.sigmaEquiv`, `PrimeSpectrum.sigmaToPiOrderIso`, and lemmas `PrimeSpectrum.sigmaToPiOrderIso_apply`, Pi.not_comap_evalRingHom_le_comap_of_neq`, `LTSeries.sigma_fst_eq_fst`.
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new-contributor
merge-conflict
|
93/0 |
Mathlib/Order/RelSeries.lean,Mathlib/RingTheory/Ideal/Maps.lean,Mathlib/RingTheory/Spectrum/Prime/Topology.lean |
3 |
6 |
['SynBurz', 'github-actions', 'mathlib-merge-conflicts', 'wwylele'] |
nobody |
0-7334 2 hours ago |
0-7335 1 hour ago |
29-10815 29 days |
| 42405 |
FrankieNC author:FrankieNC |
perf(Data/Rel): use `grind` instead of `aesop` |
Most of the elaboration time of `Mathlib/Data/Rel.lean` goes into its 55 `aesop` calls. Replacing most of them with a single `grind` call and the relevant `mem_*` lemma keeps every proof to one automation call and cuts the elaboration time of the file by about half (on my PC).
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t-data
merge-conflict
|
71/56 |
Mathlib/Data/Rel.lean |
1 |
21 |
['FrankieNC', 'chenson2018', 'github-actions', 'grunweg', 'leanprover-radar', 'mathlib-merge-conflicts'] |
nobody |
0-7333 2 hours ago |
0-7333 1 hour ago |
27-17572 27 days |
| 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
merge-conflict
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/Data/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 |
14 |
['SnirBroshi', 'github-actions', 'mathlib-merge-conflicts', 'plp127', 'tb65536'] |
nobody |
0-7331 2 hours ago |
0-7332 1 hour ago |
22-5293 22 days |
| 42499 |
attilavjda author:attilavjda |
doc(Data/ENat,ENNReal): fix swapped docstring on mul_iInf_of_ne |
Fixed left from right multiplication and "see-also" to point at mul_iInf
[Aristotle helped](https://github.com/attilavjda/formal-contributions/blob/main/mul_iInf_of_ne/PR3.lean) with finding the error, generating and verifying a solution by tests, and made a guide to the solution.
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t-data
new-contributor
merge-conflict
|
5/5 |
Mathlib/Data/ENNReal/Inv.lean,Mathlib/Data/ENat/Lattice.lean |
2 |
4 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
0-7330 2 hours ago |
0-7331 1 hour ago |
24-48655 24 days |
| 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
|
merge-conflict |
216/216 |
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/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/Data/Real/Basic.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 |
7 |
['github-actions', 'kim-em', 'leanprover-radar', 'mathlib-merge-conflicts'] |
nobody |
0-5775 1 hour ago |
0-5775 1 hour ago |
8-59618 8 days |
| 43181 |
harahu author:harahu |
chore(Data): fix typos |
Fix some typos in `Mathlib/Data` that were spotted by Claude Opus 5.
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|
t-data
easy
merge-conflict
|
36/35 |
Mathlib/Data/Analysis/Filter.lean,Mathlib/Data/Bool/Count.lean,Mathlib/Data/DFinsupp/BigOperators.lean,Mathlib/Data/DFinsupp/Defs.lean,Mathlib/Data/DFinsupp/WellFounded.lean,Mathlib/Data/Fin/Embedding.lean,Mathlib/Data/Finite/Defs.lean,Mathlib/Data/Finsupp/Fin.lean,Mathlib/Data/Finsupp/MonomialOrder.lean,Mathlib/Data/Finsupp/ToDFinsupp.lean,Mathlib/Data/Fintype/Order.lean,Mathlib/Data/Int/Basic.lean,Mathlib/Data/List/Infix.lean,Mathlib/Data/List/Pairwise.lean,Mathlib/Data/List/Sort.lean,Mathlib/Data/Multiset/DershowitzManna.lean,Mathlib/Data/Nat/Bitwise.lean,Mathlib/Data/Nat/Choose/Multinomial.lean,Mathlib/Data/Nat/Digits/Lemmas.lean,Mathlib/Data/QPF/Multivariate/Basic.lean,Mathlib/Data/Rat/Cast/Lemmas.lean,Mathlib/Data/Set/Finite/Basic.lean,Mathlib/Data/Set/Function.lean,Mathlib/Data/Sigma/Lex.lean,Mathlib/Data/TypeVec.lean,Mathlib/Data/UInt.lean,Mathlib/Data/Vector/MapLemmas.lean,Mathlib/Data/ZMod/IntUnitsPower.lean |
28 |
3 |
['github-actions', 'harahu', 'mathlib-merge-conflicts'] |
nobody |
0-5650 1 hour ago |
0-5651 1 hour ago |
2-68999 2 days |
| 43228 |
joelriou author:joelriou |
refactor(CategoryTheory): cleaning up `Functor.Elements` |
The objects and morphisms of `Functor.Elements` are redefined using structures. The definition which were in the `CategoryOfElements` namespace are moved to `Functor.Elements`.
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|
t-category-theory
tech debt
merge-conflict
|
462/447 |
Mathlib/AlgebraicGeometry/Sites/EtalePoint.lean,Mathlib/AlgebraicTopology/SimplicialSet/Simplices.lean,Mathlib/AlgebraicTopology/SimplicialSet/StdSimplex.lean,Mathlib/CategoryTheory/Action.lean,Mathlib/CategoryTheory/Elements.lean,Mathlib/CategoryTheory/Functor/Flat.lean,Mathlib/CategoryTheory/Functor/TypeValuedFlat.lean,Mathlib/CategoryTheory/Grothendieck.lean,Mathlib/CategoryTheory/Limits/Elements.lean,Mathlib/CategoryTheory/Limits/Preserves/Presheaf.lean,Mathlib/CategoryTheory/Limits/Presheaf.lean,Mathlib/CategoryTheory/Limits/Weighted/HasWeightedLimit.lean,Mathlib/CategoryTheory/Sites/Point/Basic.lean,Mathlib/CategoryTheory/Sites/Point/Map.lean,Mathlib/CategoryTheory/Sites/Point/OfIsCofiltered.lean,Mathlib/CategoryTheory/Sites/Point/Skyscraper.lean,Mathlib/CategoryTheory/Sites/Subsheaf.lean,Mathlib/CategoryTheory/Subfunctor/Basic.lean,Mathlib/GroupTheory/FreeGroup/NielsenSchreier.lean,Mathlib/Topology/Sheaves/Flasque.lean,Mathlib/Topology/Sheaves/Points.lean |
21 |
2 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
0-5648 1 hour ago |
0-5649 1 hour ago |
0-41596 11 hours |
| 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 |
| 14563 |
awueth author:awueth |
feat: if-then-else of exclusive or statement |
---
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If `¬(P ∧ Q)` then `ite (P ∨ Q) a 1 = (ite P a 1) * (ite Q a 1)`
[](https://gitpod.io/from-referrer/)
|
awaiting-author
t-algebra
new-contributor
label:t-algebra$ |
5/0 |
Mathlib/Algebra/Group/Basic.lean |
1 |
3 |
['eric-wieser', 'github-actions', 'kim-em'] |
nobody |
745-70686 2 years ago |
776-31268 776 days ago |
6-38745 6 days |
| 12751 |
Command-Master author:Command-Master |
feat: add lemmas for Nat/Bits, Nat/Bitwise and Nat/Size |
Remove `@[simp]` from `Nat.bit_false` and `Nat.bit_true`, as `bit0` and `bit1` are deprecated, and add some lemmas to `Bits`, `Bitwise` and `Size`.
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|
merge-conflict
t-data
new-contributor
|
66/7 |
Mathlib/Data/Nat/Bits.lean,Mathlib/Data/Nat/Bitwise.lean,Mathlib/Data/Nat/Multiplicity.lean,Mathlib/Data/Nat/Size.lean |
4 |
26 |
['Command-Master', 'Rida-Hamadani', 'Ruben-VandeVelde', 'YaelDillies', 'github-actions', 'jcommelin'] |
nobody |
741-55595 2 years ago |
776-61817 776 days ago |
56-40668 56 days |
| 15121 |
Eloitor author:Eloitor |
feat: iff theorems for IsSplitEpi and IsSplitMono in opposite category |
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|
awaiting-author
t-category-theory
new-contributor
|
40/0 |
Mathlib/CategoryTheory/EpiMono.lean |
1 |
3 |
['github-actions', 'joelriou', 'mattrobball'] |
nobody |
728-30430 1 year ago |
759-76089 759 days ago |
7-3203 7 days |
| 14242 |
js2357 author:js2357 |
feat: Prove equivalence of `isDedekindDomain` and `isDedekindDomainDvr` |
Prove that `isDedekindDomainDvr` is equivalent to both `isDedekindDomain` and `isDedekindDomainInv`.
Specifically, prove `isDedekindDomainDvr A → isDedekindDomainInv A`, because `isDedekindDomain A → isDedekindDomainDvr A` and `IsDedekindDomain A ↔ IsDedekindDomainInv A` are already in Mathlib.
- [x] depends on: #14099
- [x] depends on: #14216
- [ ] depends on: #14237
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|
merge-conflict
t-algebra
blocked-by-other-PR
new-contributor
label:t-algebra$ |
269/1 |
Mathlib.lean,Mathlib/RingTheory/DedekindDomain/Dvr.lean,Mathlib/RingTheory/FractionalIdeal/LocalizedAtPrime.lean,Mathlib/RingTheory/Localization/Basic.lean |
4 |
2 |
['github-actions'] |
nobody |
705-41489 1 year ago |
793-30436 793 days ago |
0-273 4 minutes |
| 16887 |
metinersin author:metinersin |
feat(ModelTheory/Complexity): define conjunctive and disjunctive formulas |
Defines `FirstOrder.Language.BoundedFormula.IsConjunctive` and `FirstOrder.Language.BoundedFormula.IsDisjunctive`.
---
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|
merge-conflict
blocked-by-other-PR
new-contributor
t-logic
|
300/7 |
Mathlib/ModelTheory/Complexity.lean,Mathlib/ModelTheory/Equivalence.lean,Mathlib/ModelTheory/Syntax.lean |
3 |
2 |
['github-actions', 'mathlib4-dependent-issues-bot'] |
nobody |
697-37467 1 year ago |
712-65541 712 days ago |
0-1299 21 minutes |
| 16888 |
metinersin author:metinersin |
feat(ModelTheory/Complexity): Define conjunctive and disjunctive normal forms |
Define `FirstOrder.Language.BoundedFormula.IsDNF` and `FirstOrder.Language.BoundedFormula.IsCNF`.
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|
merge-conflict
blocked-by-other-PR
new-contributor
t-logic
|
415/7 |
Mathlib/ModelTheory/Complexity.lean,Mathlib/ModelTheory/Equivalence.lean,Mathlib/ModelTheory/Syntax.lean |
3 |
2 |
['github-actions', 'mathlib4-dependent-issues-bot'] |
nobody |
697-37467 1 year ago |
712-65542 712 days ago |
0-1045 17 minutes |
| 16889 |
metinersin author:metinersin |
feat(ModelTheory/Complexity): Normal forms |
Defines `FirstOrder.Language.BoundedFormula.toDNF` and `FirstOrder.Language.BoundedFormula.toCNF` - given a quantifier-free formula, these construct a semantically equivalent formula in disjunctive normal form and conjunctive normal form, respectively.
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|
merge-conflict
blocked-by-other-PR
new-contributor
t-logic
|
525/7 |
Mathlib/ModelTheory/Complexity.lean,Mathlib/ModelTheory/Equivalence.lean,Mathlib/ModelTheory/Syntax.lean |
3 |
2 |
['github-actions', 'mathlib4-dependent-issues-bot'] |
nobody |
697-37466 1 year ago |
712-61292 712 days ago |
0-613 10 minutes |
| 12750 |
Command-Master author:Command-Master |
feat: define Gray code |
---
Define binary reflected gray code, both as a permutation of `Nat` and as a permutation of `BitVec n`, and prove some theorems about them. Additionally, remove `@[simp]` from `Nat.bit_false` and `Nat.bit_true`, as `bit0` and `bit1` are deprecated, and add some lemmas to `Bits`, `Bitwise` and `Size`.
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- [ ] depends on: #12751
[](https://gitpod.io/from-referrer/)
|
blocked-by-other-PR
t-data
new-contributor
merge-conflict
awaiting-author
|
226/0 |
Mathlib.lean,Mathlib/Data/Nat/Bits.lean,Mathlib/Data/Nat/Bitwise.lean,Mathlib/Data/Nat/GrayCode.lean,Mathlib/Data/Nat/Size.lean |
5 |
5 |
['Rida-Hamadani', 'alreadydone', 'github-actions', 'grunweg'] |
nobody |
679-60124 1 year ago |
828-42222 828 days ago |
16-49744 16 days |
| 14598 |
Command-Master author:Command-Master |
chore: add typeclasses to unify various `add_top`, `add_eq_top`, etc. |
Add the four typeclasses `IsTopAbsorbing`, `IsBotAbsorbing`, `NoTopSum`, `NoBotSum`, as additive equivalents for `MulZeroClass` and `NoZeroDivisors`. Add instances of these for `ENNReal`, `WithTop α`, `WithBot α`, `PUnit`, `EReal`, `PartENat`, `Measure`, `Interval` and `Filter`.
Also split `Algebra/Order/AddGroupWithTop` to `Algebra/Order/Group/WithTop` and `Algebra/Order/Monoid/WithTop`
---
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Previous usages of lemmas with quantified names like `WithTop.add_top` have to be changed to just `add_top`.
`add_lt_top` is `@[simp]`, in accordance with `ENNReal.add_lt_top` being `@[simp]`. This affects `WithTop.add_lt_top` which previously hadn't been `@[simp]`.
[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-algebra
t-order
new-contributor
label:t-algebra$ |
264/195 |
Archive/Wiedijk100Theorems/BallotProblem.lean,Mathlib.lean,Mathlib/Algebra/Order/Group/WithTop.lean,Mathlib/Algebra/Order/GroupWithZero/Canonical.lean,Mathlib/Algebra/Order/Interval/Basic.lean,Mathlib/Algebra/Order/Monoid/Unbundled/Basic.lean,Mathlib/Algebra/Order/Monoid/Unbundled/Defs.lean,Mathlib/Algebra/Order/Monoid/Unbundled/WithTop.lean,Mathlib/Algebra/Order/Monoid/WithTop.lean,Mathlib/Algebra/PUnitInstances/Order.lean,Mathlib/Algebra/Polynomial/Degree/Definitions.lean,Mathlib/Algebra/Polynomial/Monic.lean,Mathlib/Algebra/Tropical/Basic.lean,Mathlib/Analysis/Analytic/Meromorphic.lean,Mathlib/Analysis/Normed/Lp/ProdLp.lean,Mathlib/Analysis/NormedSpace/ENorm.lean,Mathlib/Analysis/SpecialFunctions/JapaneseBracket.lean,Mathlib/Analysis/SpecialFunctions/Log/ENNRealLog.lean,Mathlib/Data/ENNReal/Operations.lean,Mathlib/Data/ENat/Basic.lean,Mathlib/Data/Nat/PartENat.lean,Mathlib/Data/Nat/WithBot.lean,Mathlib/Data/Real/EReal.lean,Mathlib/LinearAlgebra/Lagrange.lean,Mathlib/MeasureTheory/Covering/Differentiation.lean,Mathlib/MeasureTheory/Decomposition/Lebesgue.lean,Mathlib/MeasureTheory/Function/ConditionalExpectation/CondexpL1.lean,Mathlib/MeasureTheory/Function/Jacobian.lean,Mathlib/MeasureTheory/Function/L1Space.lean,Mathlib/MeasureTheory/Function/L2Space.lean,Mathlib/MeasureTheory/Function/LpSeminorm/Basic.lean,Mathlib/MeasureTheory/Function/LpSeminorm/TriangleInequality.lean,Mathlib/MeasureTheory/Function/LpSpace.lean,Mathlib/MeasureTheory/Function/StronglyMeasurable/Basic.lean,Mathlib/MeasureTheory/Function/UniformIntegrable.lean,Mathlib/MeasureTheory/Integral/Bochner.lean,Mathlib/MeasureTheory/Integral/MeanInequalities.lean,Mathlib/MeasureTheory/Integral/SetIntegral.lean,Mathlib/MeasureTheory/Integral/VitaliCaratheodory.lean,Mathlib/MeasureTheory/Measure/Hausdorff.lean,Mathlib/MeasureTheory/Measure/Lebesgue/Basic.lean,Mathlib/MeasureTheory/Measure/LevyProkhorovMetric.lean,Mathlib/MeasureTheory/Measure/MeasureSpace.lean,Mathlib/MeasureTheory/Measure/MeasureSpaceDef.lean,Mathlib/MeasureTheory/Measure/Regular.lean,Mathlib/MeasureTheory/Measure/Typeclasses.lean,Mathlib/NumberTheory/Padics/PadicNumbers.lean,Mathlib/Order/Filter/Pointwise.lean,Mathlib/Probability/Kernel/Defs.lean,Mathlib/Probability/Martingale/Convergence.lean,Mathlib/RingTheory/Multiplicity.lean,Mathlib/RingTheory/MvPowerSeries/NoZeroDivisors.lean,Mathlib/RingTheory/UniqueFactorizationDomain.lean,Mathlib/Topology/EMetricSpace/Defs.lean,Mathlib/Topology/MetricSpace/Bounded.lean,Mathlib/Topology/MetricSpace/HausdorffDistance.lean,Mathlib/Topology/MetricSpace/Lipschitz.lean |
57 |
30 |
['Command-Master', 'YaelDillies', 'github-actions'] |
nobody |
663-2000 1 year ago |
663-2000 663 days ago |
7-45599 7 days |
| 16885 |
metinersin author:metinersin |
feat(ModelTheory/Complexity): define literals |
Defines `FirstOrder.Language.BoundedFormula.IsLiteral` and `FirstOrder.Language.BoundedFormula.simpleNot` - an auxiliary operation that takes the negation of a formula and does some simplification.
---
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- [x] depends on: #16800
[](https://gitpod.io/from-referrer/)
|
merge-conflict
awaiting-author
new-contributor
t-logic
|
148/5 |
Mathlib/ModelTheory/Complexity.lean,Mathlib/ModelTheory/Equivalence.lean,Mathlib/ModelTheory/Semantics.lean,Mathlib/ModelTheory/Syntax.lean |
4 |
20 |
['YaelDillies', 'awainverse', 'github-actions', 'mathlib4-dependent-issues-bot', 'metinersin'] |
nobody |
660-44521 1 year ago |
696-33833 696 days ago |
0-19926 5 hours |
| 13248 |
hcWang942 author:hcWang942 |
feat: basic concepts of auction theory |
## Description
Formalise some core concepts and results in auction theory: this includes definitions for first-price and second-price auctions, as well as several fundamental results and helping lemmas.
This is the very first PR of the project formalizing core concepts and results in auction theory.
Our group is working on more contributions on the formalization of game theory prefix.
Co-authored-by: Ma Jiajun <hoxide@gmail.com>
## Reference
Roughgarden, Tim. ***Twenty Lectures on Algorithmic Game Theory***. Cambridge University Press, 2020. [Link](https://www.cambridge.org/core/books/twenty-lectures-on-algorithmic-game-theory/A9D9427C8F43E7DAEF8C702755B6D72B)
---
- [x] Will depend on #14163 once that PR is merged. The Fintype lemmas introduced by this PR have been added in that PR and will be removed from here once that PR gets merged
## Current plan for formalization of Game Theory
The current plan for the formalizing of Game Theory include:
#### 1. Auction Theory. 🎉 _(200+ lines, this PR)_
- Essential definitions of Sealed-bid auction, First-price auction and Second-price auction.
- First-price auction has no dominant strategy.
- Second-price auction has dominant strategy. (Second-price auction is DSIC)
#### 2. Mechanism design & Myerson's Lemma. 🎉 (400+ lines, pending for modification to Mathlib Standard)
- Mechanism design
An allocation rule is implementable if there exists
- Dominant Strategy Incentive Compatible (DSIC) payment rule
- An allocation rule is monotone if for every bidder’s gain is nondecreasing w.r.t. her/his bid
- Myerson's Lemma
Implementable ⇔ Monotone
In the above case, the DSIC payment rule is unique.
#### 3. von Neumann‘s Minimax Theorem. 🎉 (800+ lines, pending for modification to Mathlib Standard)
- Equilibrium in zero sum game
- Formalization strategy: via Loomis’s theorem.
#### 4. Nash Equilibrium. 🎉 (pending for modification to Mathlib Standard)
#### 5. Brouwer fixed-point theorem. (Work in Progress)
#### 6. More Mechanism design. (Planning)
|
merge-conflict
awaiting-author
new-contributor
t-logic
|
204/0 |
Mathlib.lean,Mathlib/GameTheory/Auction/Basic.lean,docs/references.bib |
3 |
148 |
['Shreyas4991', 'YaelDillies', 'eric-wieser', 'faenuccio', 'github-actions', 'grunweg', 'hcWang942', 'tb65536', 'urkud', 'vihdzp'] |
hcWang942 assignee:hcWang942 |
655-83353 1 year ago |
669-69541 669 days ago |
109-82807 109 days |
| 19125 |
yhtq author:yhtq |
feat: add theorems to transfer `IsGalois` between pairs of fraction rings |
feat: add theorems to transfer `IsGalois` between pairs of fraction rings.
- [x] depends on: #18404
- [x] depends on: #19124
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-algebra
new-contributor
label:t-algebra$ |
121/0 |
Mathlib.lean,Mathlib/FieldTheory/Galois/IsFractionRing.lean,Mathlib/RingTheory/Localization/FractionRing.lean |
3 |
3 |
['github-actions', 'mathlib4-dependent-issues-bot', 'tb65536'] |
nobody |
626-19370 1 year ago |
652-67152 652 days ago |
0-1980 33 minutes |
| 17739 |
Aaron1011 author:Aaron1011 |
feat(Topology/Order/DenselyOrdered): prove Not (IsOpen) for intervals |
Prove that Iic/Ici/Ioc/Ico/Icc intervals are not open in densely ordered topologies with no min/max element
---
[](https://gitpod.io/from-referrer/)
|
merge-conflict
awaiting-author
t-topology
new-contributor
|
27/0 |
Mathlib/Topology/Order/DenselyOrdered.lean |
1 |
8 |
['github-actions', 'vihdzp'] |
nobody |
592-41382 1 year ago |
685-32952 685 days ago |
0-4704 1 hour |
| 15711 |
znssong author:znssong |
feat(Combinatorics/SimpleGraph): Some lemmas about walk, cycle and Hamiltonian cycle |
---
These lemmas are separated from the `meow-sister/BondyChvatal` branch and will be needed for the proof of the Bondy-Chvátal theorem.
- [x] depends on: #15536
- [x] depends on: #16294 |
merge-conflict
awaiting-author
t-combinatorics
new-contributor
|
407/3 |
Mathlib/Combinatorics/SimpleGraph/Finite.lean,Mathlib/Combinatorics/SimpleGraph/Hamiltonian.lean,Mathlib/Combinatorics/SimpleGraph/Path.lean,Mathlib/Combinatorics/SimpleGraph/Walk.lean |
4 |
22 |
['Rida-Hamadani', 'YaelDillies', 'github-actions', 'mathlib4-dependent-issues-bot', 'znssong'] |
nobody |
591-60468 1 year ago |
712-71629 712 days ago |
9-13962 9 days |
| 18629 |
tomaz1502 author:tomaz1502 |
feat(Computability.Timed): Formalization of runtime complexity of List.merge |
This PR adds the formalization of the runtime complexity of the merge function, defined in `Data/List/Sort`.
Requires: https://github.com/leanprover-community/mathlib4/pull/15450
References:
- Previous PR on mathlib3: https://github.com/leanprover-community/mathlib3/pull/14494/
- First discussion on Zulip: https://leanprover.zulipchat.com/#narrow/stream/113488-general/topic/BSc.20Final.20Project/near/220647062
- Second disussion on Zulip: https://leanprover.zulipchat.com/#narrow/stream/113488-general/topic/Formalization.20of.20Runtime.20Complexity.20of.20Sorting.20Algorithms/near/284184450
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-computability
awaiting-author
new-contributor
|
186/0 |
Mathlib.lean,Mathlib/Computability/Timed/InsertionSort.lean,Mathlib/Computability/Timed/Merge.lean |
3 |
2 |
['github-actions', 'trivial1711'] |
nobody |
591-26387 1 year ago |
631-26000 631 days ago |
33-11262 33 days |
| 19291 |
PieterCuijpers author:PieterCuijpers |
feat(Algebra/Order/Hom): add quantale homomorphism |
Definition of quantale homomorphisms as functions that are both semigroup homomorphisms and complete lattice homomorphisms.
---
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- [x] depends on: #19810
- [x] depends on: #19811
[](https://gitpod.io/from-referrer/)
|
merge-conflict
awaiting-author
t-algebra
new-contributor
label:t-algebra$ |
209/0 |
Mathlib.lean,Mathlib/Algebra/Order/Hom/Quantale.lean,scripts/noshake.json |
3 |
29 |
['PieterCuijpers', 'YaelDillies', 'github-actions', 'kim-em', 'mathlib4-dependent-issues-bot'] |
nobody |
586-48046 1 year ago |
592-15447 592 days ago |
29-51480 29 days |
| 20372 |
jvlmdr author:jvlmdr |
feat(MeasureTheory/Function): Add ContinuousLinearMap.bilinearCompLp(L) |
Introduce ContinuousLinearMap.bilinearCompLp and bilinearCompLpL.
Generalize eLpNorm_le_eLpNorm_mul_eLpNorm theorems to include constant C in bound condition.
---
Expect this may be useful for defining tempered distributions from functions in `L^p`.
The definitions more or less follow `ContinuousLinearMap.compLp...`. Names are loosely analogous to `ContinuousLinearMap.bilinearComp` and `SchwartzMap.bilinLeftCLM`.
Note: I preferred the spelling `hpqr : p⁻¹ + q⁻¹ = r⁻¹` with `f` in `L^p` and `g` in `L^q` to `hpqr : 1 / p = 1 / q + 1 / r`. It's easier to obtain from `ENNReal.IsConjExponent` too.
A few questions:
- [ ] I defined `bilinear{Left,Right}LpL` in addition to `bilinearCompLpL` because `LinearMap.mkContinuous₂` is marked as `noncomputable` and `LinearMap.mkContinuous` is not. Is this worth the extra definitions? (Note: This is not visible in the source due to `noncomputable section`.)
- [ ] Should I use `C : ℝ` instead of `C : NNReal` for `eLpNorm_le_eLpNorm_mul_eLpNorm'_of_norm'`?
- [ ] Is it going to be painful to have `[Fact (1 ≤ p)] [Fact (1 ≤ q)] [Fact (1 ≤ r)]`? I don't think there's a way to avoid it though. Maybe providing specialized versions for `p.IsConjExponent q` with `L^1`?
Naming:
- [ ] Is it satisfactory to add a `'` to the `eLpNorm_le_eLpNorm_mul_eLpNorm ` definitions in `CompareExp.lean` where `≤ ‖f x‖ * ‖g x‖` has been replaced with `≤ C * ‖f x‖ * ‖g x‖`? These could replace the existing theorems, although I don't want to break backwards compatibility. There are 5 instances: `eLpNorm_le_eLpNorm_top_mul_eLpNorm'`, `eLpNorm_le_eLpNorm_mul_eLpNorm_top'`, `eLpNorm'_le_eLpNorm'_mul_eLpNorm''`, `eLpNorm_le_eLpNorm_mul_eLpNorm_of_nnnorm'`, `eLpNorm_le_eLpNorm_mul_eLpNorm'_of_norm'` (I'm not sure why the existing theorem `eLpNorm_le_eLpNorm_mul_eLpNorm'_of_norm` has an internal `'`)
- [ ] Is `bilinearLeftLpL` a suitable name? Other options: `bilinearCompLpLeftL`, `bilinearCompLeftLpL`, `bilinLeftLpL` (analogous to `SchwartzMap.bilinLeftCLM`)
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-measure-probability
new-contributor
|
203/40 |
Mathlib/MeasureTheory/Function/LpSeminorm/CompareExp.lean,Mathlib/MeasureTheory/Function/LpSpace.lean |
2 |
1 |
['github-actions'] |
nobody |
579-65394 1 year ago |
579-65394 579 days ago |
27-43617 27 days |
| 20248 |
peabrainiac author:peabrainiac |
feat(Topology/Compactness): first-countable locally path-connected spaces are delta-generated |
Shows that all first-countable locally path-connected spaces are delta-generated (so in particular all normed spaces and convex subsets thereof are), and that delta-generated spaces are equivalently generated by the unit interval or standard simplices.
---
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- [ ] depends on: #21616
In principle, this should be close to all that's required to show that all simplicial complexes and CW-complexes are delta-generated; I just haven't done it yet because I'm not sure which file to best do it in.
[](https://gitpod.io/from-referrer/)
|
blocked-by-other-PR
large-import
new-contributor
merge-conflict
awaiting-author
t-topology
|
1189/813 |
Mathlib.lean,Mathlib/Geometry/Manifold/ChartedSpace.lean,Mathlib/Topology/Algebra/Module/LocallyConvex.lean,Mathlib/Topology/Compactness/DeltaGeneratedSpace.lean,Mathlib/Topology/Connected/LocPathConnected.lean,Mathlib/Topology/Connected/PathConnected.lean,Mathlib/Topology/ContinuousOn.lean,Mathlib/Topology/Homotopy/HSpaces.lean,Mathlib/Topology/Path.lean |
9 |
22 |
['YaelDillies', 'github-actions', 'kbuzzard', 'mathlib4-dependent-issues-bot', 'peabrainiac'] |
nobody |
567-22704 1 year ago |
573-73621 573 days ago |
39-21495 39 days |
| 19943 |
AlexLoitzl author:AlexLoitzl |
feat(Computability): Add Chomsky Normal Form Grammar and translation |
- Define Chomsky normal form grammars
- Add language-preserving translation between context-free grammars and Chomsky normal form grammars
Co-authored-by: Martin Dvorak martin.dvorak@matfyz.cz
---
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|
merge-conflict
t-computability
awaiting-author
new-contributor
|
3151/0 |
Mathlib.lean,Mathlib/Computability/ChomskyNormalForm/Basic.lean,Mathlib/Computability/ChomskyNormalForm/EmptyElimination.lean,Mathlib/Computability/ChomskyNormalForm/LengthRestriction.lean,Mathlib/Computability/ChomskyNormalForm/TerminalRestriction.lean,Mathlib/Computability/ChomskyNormalForm/Translation.lean,Mathlib/Computability/ChomskyNormalForm/UnitElimination.lean,Mathlib/Computability/ContextFreeGrammar.lean |
8 |
59 |
['AlexLoitzl', 'YaelDillies', 'github-actions', 'kim-em', 'madvorak'] |
nobody |
562-56803 1 year ago |
569-68425 569 days ago |
37-29014 37 days |
| 21501 |
sksgurdldi author:sksgurdldi |
feat(List): add sum_zipWith_eq_finset_sum |
### **Description:**
This PR adds the lemma `List.sum_zipWith_eq_finset_sum` to `Mathlib.Algebra.BigOperators.Group.Finset.Basic`.
#### **Statement:**
The sum of the `zipWith` operation on two lists equals the sum of applying the operation to corresponding elements of the two lists, indexed over the minimum of their lengths.
#### **Formal Statement:**
```lean
lemma sum_zipWith_eq_finset_sum [Inhabited α] [Inhabited β] [AddCommMonoid γ]
{op : α → β → γ}
(l : List α) (m : List β) :
(List.zipWith op l m).sum =
∑ x ∈ (Finset.range (Nat.min l.length m.length)), op (l[x]!) (m[x]!)
```
#### **Remarks:**
- This lemma provides a useful equivalence between `List.zipWith` and summation over a `Finset.range` indexed by `Nat.min l.length m.length`.
- It can be helpful in algebraic manipulations involving list-based summations.
#### **Dependencies:**
No additional dependencies.
---
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[](https://gitpod.io/from-referrer/)
|
awaiting-author
t-algebra
new-contributor
label:t-algebra$ |
43/0 |
Mathlib/Algebra/BigOperators/Group/Finset/Basic.lean |
1 |
1 |
['github-actions', 'j-loreaux'] |
nobody |
557-25574 1 year ago |
557-25574 557 days ago |
13-33168 13 days |
| 21959 |
BGuillemet author:BGuillemet |
feat(Topology/ContinuousMap): Stone-Weierstrass theorem for MvPolynomial |
Add the subalgebra of multivariate polynomials and prove it separates points, on the same model as `ContinuousMap/Polynomial.lean`.
Prove the Stone-Weierstrass theorem and some variations for multivariate polynomials.
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-topology
new-contributor
|
285/1 |
Mathlib.lean,Mathlib/Topology/ContinuousMap/MvPolynomial.lean,Mathlib/Topology/ContinuousMap/StoneWeierstrass.lean |
3 |
1 |
['github-actions'] |
nobody |
543-51415 1 year ago |
543-51415 543 days ago |
16-76141 16 days |
| 15578 |
znssong author:znssong |
feat(Function): Fixed points of function `f` with `f(x) >= x` |
We added some lemmas of fixed points of function `f` with `f(x) >= x`, where `f : α → α` is a function on a finite type `α`. This will be needed in proof of Bondy-Chvátal theorem.
---
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See also branch `meow-sister/BondyChvatal`.
[](https://gitpod.io/from-referrer/) |
merge-conflict
awaiting-author
t-analysis
new-contributor
|
82/0 |
Mathlib.lean,Mathlib/Dynamics/FixedPoints/Basic.lean,Mathlib/Dynamics/FixedPoints/Increasing.lean |
3 |
32 |
['Ruben-VandeVelde', 'YaelDillies', 'github-actions', 'urkud', 'vihdzp', 'znssong'] |
nobody |
535-47241 1 year ago |
718-50470 718 days ago |
29-48368 29 days |
| 21018 |
markimunro author:markimunro |
feat(Data/Matrix): add file with key definitions and theorems about elementary row operations |
Prove that each elementary row operation is equivalent to a multiplication by an elementary matrix, has another row operation which inverts it, and that each elementary matrix has a left inverse.
This is a very large PR and I understand it will take time. This is my first one and will likely have issues but I will be ready to answer questions/fix them as soon as possible.
Co-authored-by: Christopher Lynch <clynch@clarkson.edu>
---
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[](https://gitpod.io/from-referrer/)
|
t-data
enhancement
new-contributor
merge-conflict
awaiting-author
|
1230/0 |
Mathlib.lean,Mathlib/Data/Matrix/ElementaryRowOperations.lean,Mathlib/Data/Matrix/GaussianElimination.lean,Mathlib/Data/Matrix/GaussianEliminationOld,Mathlib/Data/Matrix/oldnames,et --hard 18533caba32,lean-toolchain |
7 |
17 |
['chrisflav', 'eric-wieser', 'github-actions', 'j-loreaux', 'markimunro'] |
nobody |
516-82640 1 year ago |
542-25196 542 days ago |
23-22681 23 days |
| 15212 |
victorliu5296 author:victorliu5296 |
feat: Add fundamental theorem of calculus-2 for Banach spaces |
add the Mean Value Theorem for Banach spaces to the library and include reference for the theorem statement
This theorem states that if `f : X → Y` is differentiable along the line segment from `a` to `b`, then the change in `f` equals the integral of its derivative along this path. This extends the mean value theorem to Banach spaces. This can be used for the eventual proof of the Newton-Kantorovich theorem with 1 constant contained inside the added reference.
Here is the discussion on Zulipchat: https://leanprover.zulipchat.com/#narrow/stream/287929-mathlib4/topic/Contributing.20FTC-2.20for.20Banach.20spaces |
t-measure-probability
new-contributor
merge-conflict
awaiting-author
t-analysis
|
60/1 |
Mathlib/MeasureTheory/Integral/FundThmCalculus.lean |
1 |
3 |
['github-actions', 'hrmacbeth', 'victorliu5296'] |
nobody |
511-77629 1 year ago |
705-55000 705 days ago |
51-85104 51 days |
| 21488 |
imbrem author:imbrem |
feat(CategoryTheory/Monoidal): premonoidal categories |
Add support for premonoidal categories
---
Still want to add support for:
- Premonoidal braided/symmetric categories
- The monoidal coherence theorem, which I've already ported in my `discretion` library
- The `coherence` tactic, which should work fine for premonoidal categories too
but wanted to get this in front of reviewers ASAP to make sure my general approach was alright
<!-- The text above the `---` will become the commit message when your
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-category-theory
new-contributor
|
900/361 |
Mathlib/Algebra/Category/ModuleCat/Presheaf/Monoidal.lean,Mathlib/CategoryTheory/Bicategory/End.lean,Mathlib/CategoryTheory/GradedObject/Monoidal.lean,Mathlib/CategoryTheory/Localization/Monoidal.lean,Mathlib/CategoryTheory/Monoidal/Braided/Basic.lean,Mathlib/CategoryTheory/Monoidal/Category.lean,Mathlib/CategoryTheory/Monoidal/Center.lean,Mathlib/CategoryTheory/Monoidal/CoherenceLemmas.lean,Mathlib/CategoryTheory/Monoidal/Discrete.lean,Mathlib/CategoryTheory/Monoidal/End.lean,Mathlib/CategoryTheory/Monoidal/Free/Basic.lean,Mathlib/CategoryTheory/Monoidal/Functor.lean,Mathlib/CategoryTheory/Monoidal/FunctorCategory.lean,Mathlib/CategoryTheory/Monoidal/Mon_.lean,Mathlib/CategoryTheory/Monoidal/Opposite.lean,Mathlib/CategoryTheory/Monoidal/Transport.lean,Mathlib/Tactic/CategoryTheory/Monoidal/Datatypes.lean,Mathlib/Tactic/CategoryTheory/Monoidal/Normalize.lean,Mathlib/Tactic/CategoryTheory/Monoidal/PureCoherence.lean,Mathlib/Tactic/CategoryTheory/MonoidalComp.lean,MathlibTest/StringDiagram.lean |
21 |
9 |
['YaelDillies', 'github-actions', 'grunweg', 'imbrem', 'kim-em', 'leanprover-community-bot-assistant'] |
nobody |
508-59817 1 year ago |
508-59818 508 days ago |
58-6028 58 days |
| 20873 |
vbeffara author:vbeffara |
feat(Topology/Covering): path lifting and homotopy lifting |
This proves the existence and uniqueness of path and homotopy lifts through covering maps.
---
I tried to separate as much of the proof as possible into separate PRs (which are already in Mathlib now), but the proof here relies on a monolithic construction of an explicit lift along a well-chosen subdivision, in `partial_lift`, with associated definitions. Only one standalone lean file added.
An older WIP PR #10084 by Junyan Xu @alreadydone proves similar results using a very similar construction for path lifting, with a different argument to obtain continuity for homotopy lifting.
<!-- The text above the `---` will become the commit message when your
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
awaiting-author
t-topology
new-contributor
|
281/1 |
Mathlib.lean,Mathlib/Topology/Covering/Basic.lean,Mathlib/Topology/Covering/Lift.lean |
3 |
9 |
['alreadydone', 'github-actions', 'grunweg', 'vbeffara'] |
nobody |
507-62545 1 year ago |
582-55340 582 days ago |
5-5613 5 days |
| 20313 |
thefundamentaltheor3m author:thefundamentaltheor3m |
feat(Data/Complex/Exponential): prove some useful results about the complex exponential. |
This PR proves two basic results about the complex exponential:
* `abs_exp_mul_I (x : ℂ) : abs (Complex.exp (I * x)) = Real.exp (-x.im)`
* `one_sub_rexp_re_le_abs_one_sub_cexp (x : ℂ) : 1 - Real.exp x.re ≤ Complex.abs (1 - Complex.exp x)`
Both results were proved as part of the sphere packing project. There's a chance they're too specific for mathlib, but I thought they were worth PRing anyway. Would it also be a good idea to tag `abs_exp_mul_I` with `simp`? Feedback/suggestions welcome.
Note: `one_sub_rexp_re_le_abs_one_sub_cexp` was proved by Bhavik Mehta @b-mehta
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-analysis
new-contributor
|
167/141 |
Mathlib.lean,Mathlib/Analysis/Complex/Basic.lean,Mathlib/Analysis/SpecialFunctions/Log/ERealExp.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Chebyshev.lean,Mathlib/Data/Complex/Exponential/Defs.lean,Mathlib/Data/Complex/Exponential/Lemmas.lean,Mathlib/Data/Complex/ExponentialBounds.lean,Mathlib/Tactic/FunProp.lean,MathlibTest/Recall.lean,MathlibTest/positivity.lean |
10 |
12 |
['b-mehta', 'github-actions', 'kim-em', 'thefundamentaltheor3m', 'trivial1711'] |
nobody |
500-33743 1 year ago |
583-45001 583 days ago |
8-42240 8 days |
| 20730 |
kuotsanhsu author:kuotsanhsu |
feat(LinearAlgebra/Matrix/SchurTriangulation): prove Schur decomposition/triangulation |
`Matrix.schur_triangulation` shows that a matrix over an algebraically closed field is unitarily similar to an upper triangular matrix
---
<!-- The text above the `---` will become the commit message when your
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
awaiting-author
t-algebra
new-contributor
label:t-algebra$ |
317/2 |
Mathlib.lean,Mathlib/LinearAlgebra/Matrix/Block.lean,Mathlib/LinearAlgebra/Matrix/SchurTriangulation.lean,Mathlib/Logic/Equiv/Basic.lean |
4 |
14 |
['eric-wieser', 'github-actions', 'kim-em', 'kuotsanhsu'] |
nobody |
500-29875 1 year ago |
580-20848 580 days ago |
13-56244 13 days |
| 22809 |
b-reinke author:b-reinke |
feat: Category algebras and path algebras |
This PR defines the category algebra of a linear category and path algebras of quivers.
---
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[](https://gitpod.io/from-referrer/)
|
WIP
t-algebra
t-category-theory
new-contributor
label:t-algebra$ |
218/0 |
Mathlib/Algebra/Ring/Assoc.lean,Mathlib/CategoryTheory/Linear/CategoryAlgebra.lean,Mathlib/Combinatorics/Quiver/PathAlgebra.lean,Mathlib/Data/DFinsupp/BigOperators.lean |
4 |
2 |
['b-reinke', 'github-actions'] |
nobody |
484-80714 1 year ago |
unknown |
0-0 0 seconds |
| 15654 |
TpmKranz author:TpmKranz |
feat(Computability): language-preserving maps between NFA and RE |
Map REs to NFAs via Thompson's construction and NFAs to REs using GNFAs
Last chunk of #12648
---
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- [ ] depends on: #15651
- [ ] depends on: #15649
[](https://gitpod.io/from-referrer/)
|
blocked-by-other-PR
new-contributor
t-computability
merge-conflict
awaiting-zulip
|
985/2 |
Mathlib.lean,Mathlib/Computability/GNFA.lean,Mathlib/Computability/Language.lean,Mathlib/Computability/NFA.lean,Mathlib/Computability/RegularExpressions.lean,Mathlib/Data/FinEnum/Option.lean,docs/references.bib |
7 |
3 |
['github-actions', 'meithecatte'] |
nobody |
482-26993 1 year ago |
751-50178 751 days ago |
0-179 2 minutes |
| 24008 |
meithecatte author:meithecatte |
chore(EpsilonNFA): replace manual lemmas with @[simps] |
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|
t-computability
awaiting-author
new-contributor
|
2/24 |
Mathlib/Computability/EpsilonNFA.lean |
1 |
2 |
['YaelDillies', 'github-actions', 'urkud'] |
nobody |
476-72572 1 year ago |
476-72572 476 days ago |
27-52316 27 days |
| 23349 |
BGuillemet author:BGuillemet |
feat: add LocallyLipschitzOn.lipschitzOnWith_of_isCompact and two small lemmas about Lipschitz functions |
Main feat (in Mathlib/Topology/EMetricSpace/Basic.lean): if a function `f` from an extended pseudometric space to a pseudometric space is locally Lipschitz on a compact subset `s`, then `f` is Lipschitz on `s`. The theorem is true only when the codomain of `f` is a pseudometric space, so it needs imports from Mathlib/Topology/MetricSpace.
Other small feat (in Mathlib/Analysis/Calculus/ContDiff/RCLike.lean): a function that is continuously differentiable on an open subset is locally Lipschitz on this subset.
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- [ ] depends on: #22890
[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-topology
large-import
new-contributor
|
59/4 |
Mathlib/Analysis/Calculus/ContDiff/RCLike.lean,Mathlib/Topology/EMetricSpace/Lipschitz.lean |
2 |
4 |
['github-actions', 'leanprover-community-bot-assistant', 'mathlib4-dependent-issues-bot'] |
PatrickMassot assignee:PatrickMassot |
460-44913 1 year ago |
460-44915 460 days ago |
35-30364 35 days |
| 12799 |
jstoobysmith author:jstoobysmith |
feat(LinearAlgebra/UnitaryGroup): Add properties of Special Unitary Group |
Add properties of the special unitary group, mirroring the properties of found in Algebra/Star/Unitary.lean. In particular, I add an instance of `specialUnitaryGroup` as a `Group`, `Star`, `InvolutiveStar`, and `StarMul`.
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[](https://gitpod.io/from-referrer/)
|
please-adopt
t-algebra
new-contributor
merge-conflict
awaiting-author
label:t-algebra$ |
78/0 |
Mathlib/LinearAlgebra/UnitaryGroup.lean |
1 |
8 |
['chrisflav', 'jcommelin', 'leanprover-community-bot-assistant'] |
nobody |
450-16866 1 year ago |
833-44519 833 days ago |
9-22045 9 days |
| 20334 |
miguelmarco author:miguelmarco |
feat: allow polyrith to use a local Singular/Sage install |
Try to call a local install of Singular (either standalone or inside Sage) to find the witness for polyrith before trying to call the online sage cell server.
---
[](https://gitpod.io/from-referrer/)
|
merge-conflict
awaiting-author
new-contributor
t-meta
|
171/48 |
Mathlib/Tactic/Polyrith.lean,scripts/polyrith_sage.py |
2 |
16 |
['eric-wieser', 'github-actions', 'hanwenzhu', 'kim-em', 'miguelmarco', 'mkoeppe'] |
nobody |
443-9419 1 year ago |
581-47400 581 days ago |
27-61515 27 days |
| 25218 |
kckennylau author:kckennylau |
feat(AlgebraicGeometry): Tate normal form of elliptic curves |
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|
merge-conflict
t-algebraic-geometry
awaiting-zulip
new-contributor
|
291/26 |
Mathlib.lean,Mathlib/AlgebraicGeometry/EllipticCurve/IsomOfJ.lean,Mathlib/AlgebraicGeometry/EllipticCurve/Modular/TateNormalForm.lean,Mathlib/AlgebraicGeometry/EllipticCurve/NormalForms.lean,Mathlib/AlgebraicGeometry/EllipticCurve/VariableChange.lean |
5 |
31 |
['MichaelStollBayreuth', 'Multramate', 'acmepjz', 'github-actions', 'grunweg', 'kckennylau', 'leanprover-community-bot-assistant'] |
nobody |
422-6180 1 year ago |
454-67697 454 days ago |
6-44783 6 days |
| 10190 |
jstoobysmith author:jstoobysmith |
feat(AlgebraicTopology): add Augmented Simplex Category |
- Added the definition of the category FinLinOrd of finite linear ordered sets.
- Added the definition of the augmented simplex category `AugmentedSimplexCategory`, and showed it is the Skeleton of FinLinOrd.
- Showed that the category of augmented simplicial objects defined as a comma category is equivalent to the category of functors from `AugmentedSimplexCategory^\op`
---
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[](https://gitpod.io/from-referrer/)
|
t-algebraic-topology
WIP
t-category-theory
new-contributor
merge-conflict
|
720/0 |
Mathlib.lean,Mathlib/AlgebraicTopology/AugmentedSimplexCategory.lean,Mathlib/AlgebraicTopology/SimplicialObject.lean,Mathlib/Order/Category/FinLinOrd.lean |
4 |
5 |
['TwoFX', 'YaelDillies', 'joelriou', 'jstoobysmith'] |
nobody |
395-64720 1 year ago |
932-57646 932 days ago |
7-63253 7 days |
| 25238 |
Hagb author:Hagb |
feat(Tactic/ComputeDegree): add support for scalar multiplication with different types |
It would be able to deal with `a • (X : R[X])` where `a : S` is in a different type `S` with `[SMulZeroClass S R]`.
---
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- [x] depends on: #25237
[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-meta
new-contributor
|
17/5 |
Mathlib/Tactic/ComputeDegree.lean,MathlibTest/ComputeDegree.lean |
2 |
3 |
['github-actions', 'leanprover-community-bot-assistant', 'mathlib4-dependent-issues-bot'] |
nobody |
391-70911 1 year ago |
422-6180 422 days ago |
38-26044 38 days |
| 18646 |
jxjwan author:jxjwan |
feat(RingTheory): isotypic components |
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-ring-theory
new-contributor
|
308/0 |
Mathlib/Order/CompactlyGenerated/Basic.lean,Mathlib/RingTheory/Isotypic.lean,Mathlib/RingTheory/SimpleModule.lean |
3 |
1 |
['github-actions'] |
nobody |
390-72932 1 year ago |
643-66525 643 days ago |
20-15640 20 days |
| 28502 |
gilesgshaw author:gilesgshaw |
feat(Logic/Basic): avoid unnecessary uses of choice |
Certain proofs are modified to remove a dependence on the axoim of choice
---
- [ ] depends on: #28623
|
blocked-by-other-PR
new-contributor
merge-conflict
awaiting-author
t-logic
|
83/74 |
Mathlib/Logic/Basic.lean |
1 |
7 |
['Ruben-VandeVelde', 'eric-wieser', 'gilesgshaw', 'github-actions', 'kim-em', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
377-1569 1 year ago |
379-73498 379 days ago |
0-35689 9 hours |
| 19582 |
yu-yama author:yu-yama |
feat(GroupExtension/Abelian): define `OfMulDistribMulAction.equivH2` |
Mainly defines:
- `structure GroupExtension.OfMulDistribMulAction N G [MulDistribMulAction G N]`: group extensions of `G` by `N` where the multiplicative action of `G` on `N` is the conjugation
- `structure GroupExtension.OfMulDistribMulActionWithSection N G [MulDistribMulAction G N]`: group extensions with specific choices of sections
- `def GroupExtension.OfMulDistribMulAction.equivH2`: a bijection between the equivalence classes of group extensions and $H^2 (G, N)$
---
- [x] depends on: #20802 (split PR: contains changes to the `Defs` file)
- [x] depends on: #20998 (split PR: mainly adds the `Basic` file)
- [ ] depends on: #26670 (split PR: adds the first part of the `Abelian` file)
Here is a relevant TODO in Mathlib:
https://github.com/leanprover-community/mathlib4/blob/4e9fa40d7c480937e09cd6e47a591bd6f3b8be42/Mathlib/RepresentationTheory/GroupCohomology/LowDegree.lean#L46-L48
I would appreciate your comments.
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|
merge-conflict
t-algebra
blocked-by-other-PR
new-contributor
label:t-algebra$ |
750/14 |
Mathlib.lean,Mathlib/GroupTheory/GroupExtension/Abelian.lean,Mathlib/GroupTheory/GroupExtension/Defs.lean,docs/references.bib |
4 |
5 |
['YaelDillies', 'erdOne', 'github-actions', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
374-38077 1 year ago |
597-8636 597 days ago |
43-22586 43 days |
| 27403 |
MoritzBeroRoos author:MoritzBeroRoos |
fix: replace probably erroneous usage of ⬝ (with old \cdot) by · (with \centerdot) |
Discussion at [zulip](https://leanprover.zulipchat.com/#narrow/channel/270676-lean4/topic/.5Ccdot.20!.3D.20.5Ccenterdot).
Currently the abbreviations \cdot and \centerdot resolve to different, with the naked eye nearly undistinguishable symbols (despite the c in cdot surely standing for center..).
This pr replaces instances of ⬝ where · was probably meant.
All of the replacement is in comments, except for the file bench_summary.lean which is used for priting the github benchmark results. Since this file is about scientific notation of numbers, sure · was meant to be used, not a rectangle.
[Related](https://github.com/leanprover-community/mathlib4/pull/27399)
---
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merge-conflict
new-contributor
|
195/195 |
Mathlib/Algebra/ContinuedFractions/Computation/Approximations.lean,Mathlib/Algebra/DirectSum/Idempotents.lean,Mathlib/Algebra/Lie/Derivation/Basic.lean,Mathlib/Algebra/Module/Equiv/Basic.lean,Mathlib/AlgebraicGeometry/EllipticCurve/DivisionPolynomial/Basic.lean,Mathlib/Analysis/Analytic/Constructions.lean,Mathlib/Analysis/CStarAlgebra/CStarMatrix.lean,Mathlib/Analysis/Calculus/ContDiff/Basic.lean,Mathlib/Analysis/Calculus/ContDiff/Bounds.lean,Mathlib/Analysis/Calculus/FDeriv/Symmetric.lean,Mathlib/Analysis/Fourier/FourierTransformDeriv.lean,Mathlib/Analysis/InnerProductSpace/Dual.lean,Mathlib/Analysis/InnerProductSpace/PiL2.lean,Mathlib/Analysis/Normed/Unbundled/InvariantExtension.lean,Mathlib/Analysis/SpecialFunctions/Complex/CircleAddChar.lean,Mathlib/Combinatorics/Configuration.lean,Mathlib/Combinatorics/SimpleGraph/AdjMatrix.lean,Mathlib/Combinatorics/SimpleGraph/LapMatrix.lean,Mathlib/Data/Matrix/Block.lean,Mathlib/Data/Matrix/ConjTranspose.lean,Mathlib/Data/Matrix/Hadamard.lean,Mathlib/Data/Matrix/Mul.lean,Mathlib/Data/Matrix/Notation.lean,Mathlib/Data/Matrix/Reflection.lean,Mathlib/Data/Matrix/RowCol.lean,Mathlib/Data/Matrix/Vec.lean,Mathlib/FieldTheory/PurelyInseparable/PerfectClosure.lean,Mathlib/Geometry/Manifold/GroupLieAlgebra.lean,Mathlib/GroupTheory/Coxeter/Matrix.lean,Mathlib/LinearAlgebra/CrossProduct.lean,Mathlib/LinearAlgebra/Matrix/BilinearForm.lean,Mathlib/LinearAlgebra/Matrix/DotProduct.lean,Mathlib/LinearAlgebra/Matrix/Nondegenerate.lean,Mathlib/LinearAlgebra/Matrix/Orthogonal.lean,Mathlib/LinearAlgebra/Matrix/PosDef.lean,Mathlib/LinearAlgebra/Matrix/SchurComplement.lean,Mathlib/LinearAlgebra/Matrix/SesquilinearForm.lean,Mathlib/LinearAlgebra/Matrix/Trace.lean,Mathlib/LinearAlgebra/Multilinear/Basic.lean,Mathlib/LinearAlgebra/PerfectPairing/Matrix.lean,Mathlib/LinearAlgebra/Projectivization/Constructions.lean,Mathlib/NumberTheory/NumberField/ProductFormula.lean,Mathlib/NumberTheory/SiegelsLemma.lean,Mathlib/RingTheory/DividedPowers/SubDPIdeal.lean,Mathlib/SetTheory/Ordinal/Veblen.lean,Mathlib/Topology/Algebra/Module/Equiv.lean,Mathlib/Topology/Homeomorph/Lemmas.lean,Mathlib/Topology/Instances/Matrix.lean,scripts/bench_summary.lean |
49 |
5 |
['eric-wieser', 'github-actions', 'grunweg', 'leanprover-community-bot-assistant'] |
nobody |
373-2658 1 year ago |
395-64980 395 days ago |
7-54661 7 days |
| 27399 |
MoritzBeroRoos author:MoritzBeroRoos |
chore: replace every usage of ⬝ᵥ (with old \cdot) by ·ᵥ (with \centerdot) |
Discussion at [zulip](https://leanprover.zulipchat.com/#narrow/channel/270676-lean4/topic/.5Ccdot.20!.3D.20.5Ccenterdot).
Currently the abbreviations `\cdot` and `\centerdot` resolve to different, with the naked eye nearly undistinguishable symbols (despite the c in cdot surely standing for `center`..):
- `\cdot` gives ⬝ [U+2B1D](https://www.compart.com/en/unicode/U+2B1D) "Black Very Small Square"
- `\centerdot` gives · [U+00B7](https://www.compart.com/en/unicode/U+00B7) "Middle Dot"
Mathlib mostly uses the `\centerdot` variant, except for the dotProduct notation and some probably unsuspecting people wanting \centerdot but getting \cdot in their comments and 6 uses of a notation using the raw `\cdot` without any subscript at `Mathlib\Topology\Homotopy\Product.lean`.
This PR replaces the dot product `⬝ᵥ` with its `\centerdot` counterpart `·ᵥ`. The related PR [here](https://github.com/leanprover/vscode-lean4/pull/639) can then overwrite the `\cdot` abbreviation, to produce the same symbol as the `centerdot` abbreviation does.
---
[](https://gitpod.io/from-referrer/)
|
merge-conflict
new-contributor
|
133/133 |
Mathlib/Analysis/CStarAlgebra/CStarMatrix.lean,Mathlib/Analysis/InnerProductSpace/PiL2.lean,Mathlib/Combinatorics/Configuration.lean,Mathlib/Combinatorics/SimpleGraph/AdjMatrix.lean,Mathlib/Combinatorics/SimpleGraph/LapMatrix.lean,Mathlib/Data/Matrix/Block.lean,Mathlib/Data/Matrix/ConjTranspose.lean,Mathlib/Data/Matrix/Hadamard.lean,Mathlib/Data/Matrix/Mul.lean,Mathlib/Data/Matrix/Notation.lean,Mathlib/Data/Matrix/Reflection.lean,Mathlib/Data/Matrix/RowCol.lean,Mathlib/Data/Matrix/Vec.lean,Mathlib/LinearAlgebra/CrossProduct.lean,Mathlib/LinearAlgebra/Matrix/BilinearForm.lean,Mathlib/LinearAlgebra/Matrix/DotProduct.lean,Mathlib/LinearAlgebra/Matrix/Nondegenerate.lean,Mathlib/LinearAlgebra/Matrix/Orthogonal.lean,Mathlib/LinearAlgebra/Matrix/PosDef.lean,Mathlib/LinearAlgebra/Matrix/SchurComplement.lean,Mathlib/LinearAlgebra/Matrix/SesquilinearForm.lean,Mathlib/LinearAlgebra/Matrix/Trace.lean,Mathlib/LinearAlgebra/PerfectPairing/Matrix.lean,Mathlib/LinearAlgebra/Projectivization/Constructions.lean,Mathlib/Topology/Instances/Matrix.lean |
25 |
6 |
['MoritzBeroRoos', 'eric-wieser', 'github-actions', 'leanprover-community-bot-assistant'] |
nobody |
372-50890 1 year ago |
395-64981 395 days ago |
7-62439 7 days |
| 27479 |
iu-isgood author:iu-isgood |
feat: Abel's Binomial Theorem |
We have formalized Abel's Binomial Theorem as part of an REU project. There are a few remaining sorrys, but we will finish them soon. I will edit this PR message later according to community rules.
---
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|
awaiting-author
t-data
new-contributor
|
326/0 |
Mathlib/Data/Nat/Choose/AbelBinomial.lean |
1 |
28 |
['ElifUskuplu', 'FrankieNC', 'github-actions', 'iu-isgood'] |
nobody |
372-50651 1 year ago |
401-48348 401 days ago |
0-237 3 minutes |
| 26462 |
PSchwahn author:PSchwahn |
feat(LinearAlgebra/Projection): add results about inverse of `Submodule.prodEquivOfIsCompl` |
Add two theorems `Submodule.prodEquivOfIsCompl_symm_apply` and `Submodule.prodEquivOfIsCompl_symm_add`, which are API for `Submodule.prodEquivOfIsCompl`.
We believe these theorems are useful; for example, we have used their statements in a [classification formalization project](https://github.com/LieLean/LowDimSolvClassification).
Co-authored by:
- [Viviana del Barco](https://github.com/vdelbarc)
- [Gustavo Infanti](https://github.com/GuQOliveira)
- [Exequiel Rivas](https://github.com/erivas)
---
I am not sure whether the `prodEquivOfIsCompl_symm_apply` theorem should be tagged with `@[simp]`; this might lead to confluence issues. Opinions are welcome!
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|
awaiting-author
t-algebra
new-contributor
label:t-algebra$ |
10/0 |
Mathlib/LinearAlgebra/Projection.lean |
1 |
7 |
['PSchwahn', 'github-actions', 'joelriou', 'kckennylau'] |
joelriou assignee:joelriou |
356-22019 11 months ago |
356-53122 356 days ago |
73-43082 73 days |
| 28623 |
gilesgshaw author:gilesgshaw |
feat(Logic/Basic): minor additions and simplification of proofs |
Add new theorems and simplify proofs.
Specifically, we add the family of related theorems `apply_dite_iff_exists`, `apply_dite_iff_forall`, `apply_ite_iff_and` and `apply_ite_iff_or`.
For each other 'family' of theorems in the file that is analogous to the above, we do the following
- Simplify proofs where possible, e.g. by appealing to the new theorems
- Complete the family, if any of the corresponding four are missing
- Rename to ensure consistency with the above pattern
---
|
merge-conflict
t-logic
new-contributor
|
83/55 |
Archive/Examples/IfNormalization/Result.lean,Archive/Examples/IfNormalization/WithoutAesop.lean,Mathlib/Algebra/ContinuedFractions/Computation/Translations.lean,Mathlib/Algebra/MvPolynomial/Variables.lean,Mathlib/Algebra/Notation/Indicator.lean,Mathlib/LinearAlgebra/Matrix/Rank.lean,Mathlib/Logic/Basic.lean,Mathlib/MeasureTheory/Measure/WithDensity.lean,Mathlib/SetTheory/Ordinal/Notation.lean |
9 |
12 |
['eric-wieser', 'gilesgshaw', 'github-actions', 'mathlib4-merge-conflict-bot', 'plp127'] |
awainverse assignee:awainverse |
355-56921 11 months ago |
355-56922 355 days ago |
10-61840 10 days |
| 29588 |
Periecle author:Periecle |
feat(Analysis/Complex/Residue): Implement residue theory for complex functions at isolated singularities |
# Add basic residue theory for complex functions
This PR introduces the residue theory implementation in mathlib.
## Main additions
- **`HasIsolatedSingularityAt f c`**: Predicate for functions with isolated singularities at point `c`
- **`residue f c hf`**: The residue of `f` at isolated singularity `c`, defined via circle integrals
- **Radius independence**: `residue_eq_two_pi_I_inv_smul_circleIntegral` - residue equals normalized circle integral for any valid radius
- **Holomorphic residues**: `residue_of_holomorphic` - functions holomorphic in a neighborhood have zero residue
- **Simple pole formula**: `residue_simple_pole` - for `f(z) = (z-c)⁻¹ * g(z)`, residue equals `g(c)`
## Implementation notes
- Builds on existing circle integral infrastructure in `CauchyIntegral.lean`
- Uses `Classical.choose` to extract witness radius from isolated singularity condition
- Comprehensive documentation with mathematical context and examples
- Establishes foundation for residue theorem, argument principle, and other applications
## Examples included
- `residue(1/z, 0) = 1` (canonical simple pole)
- Radius independence demonstration
- Zero residues for holomorphic functions
This provides the essential building blocks for complex analysis and first step to formalize residue theory. |
awaiting-author
t-analysis
new-contributor
|
383/0 |
Mathlib/Analysis/Complex/Residue/Basic.lean |
1 |
17 |
['Periecle', 'github-actions', 'hrmacbeth', 'llllvvuu', 'loefflerd'] |
nobody |
340-56121 11 months ago |
352-60484 352 days ago |
0-1498 24 minutes |
| 26178 |
ppls-nd-prs author:ppls-nd-prs |
feat(CategoryTheory/Limits): Fubini for products |
We show that the product of products is a product indexed by the sigma type.
---
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|
merge-conflict
awaiting-author
t-category-theory
new-contributor
|
17/0 |
Mathlib/CategoryTheory/Limits/Shapes/Products.lean |
1 |
6 |
['chrisflav', 'github-actions', 'leanprover-community-bot-assistant', 'ppls-nd-prs', 'robin-carlier'] |
nobody |
335-71165 11 months ago |
436-80565 436 days ago |
0-47289 13 hours |
| 16773 |
arulandu author:arulandu |
feat(Probability/Distributions): formalize Beta distribution |
Formalize Beta distribution, using Gamma distribution as a reference. Added real-valued beta wrapper, in the manner of gamma. Thanks to @EtienneC30 for help with casting real <-> complex.
---
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|
merge-conflict
awaiting-author
new-contributor
t-measure-probability
|
286/1 |
Mathlib.lean,Mathlib/Analysis/SpecialFunctions/Gamma/Beta.lean,Mathlib/Probability/Distributions/Beta.lean |
3 |
50 |
['EtienneC30', 'arulandu', 'github-actions', 'mathlib4-merge-conflict-bot', 'vihdzp'] |
arulandu assignee:arulandu |
324-46216 10 months ago |
714-73765 714 days ago |
0-22021 6 hours |
| 30460 |
janithamalith author:janithamalith |
feat(Nat): add lemma nat_card_orbit_mul_card_stabilizer_eq_card_group |
Added a lemma `nat_card_orbit_mul_card_stabilizer_eq_card_group` which is the Nat.card version of MulAction.card_orbit_mul_card_stabilizer_eq_card_group
---
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|
awaiting-author
t-group-theory
new-contributor
|
6/0 |
Mathlib/GroupTheory/GroupAction/CardCommute.lean |
1 |
17 |
['github-actions', 'kckennylau', 'plp127', 'tb65536'] |
tb65536 assignee:tb65536 |
314-56466 10 months ago |
314-56466 314 days ago |
8-8414 8 days |
| 25225 |
xcloudyunx author:xcloudyunx |
feat(Combinatorics/SimpleGraph): Eulerian walk in connected graph contains all vertices |
---
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|
awaiting-author
t-combinatorics
new-contributor
|
16/0 |
Mathlib/Combinatorics/SimpleGraph/Trails.lean |
1 |
6 |
['IvanRenison', 'github-actions', 'vlad902'] |
kmill assignee:kmill |
313-19998 10 months ago |
313-19998 313 days ago |
148-3338 148 days |
| 30828 |
DeVilhena-Paulo author:DeVilhena-Paulo |
feat: implementation of `Finmap.merge` |
The main contribution of this pull request is the implementation of a `merge` function for finite maps (`Finmap`). The construction relies on the definition of a `merge` function for association lists (`AList`).
There is also a side (unrelated) contribution on `Mathlib/Data/List/Permutation.lean`: the addition of a theorem about the permutation of a list with a head element (that is, a list of the form `a :: l`).
---
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|
t-data
new-contributor
|
449/3 |
Mathlib/Data/Finmap.lean,Mathlib/Data/List/AList.lean,Mathlib/Data/List/Permutation.lean,Mathlib/Data/List/Sigma.lean |
4 |
1 |
['github-actions'] |
nobody |
311-43430 10 months ago |
311-43498 311 days ago |
0-83 1 minute |
| 28676 |
sun123zxy author:sun123zxy |
feat(NumberTheory/ArithmeticFunction): wrap `Nat.totient` as an `ArithmeticFunction` |
This wraps the Euler's totient function `Nat.totient` into a new `ArithmeticFunction` `ϕ`, with some basic identities such as `ϕ * ζ = id` and `μ * id = ϕ.`
---
We use the notation `ϕ` to distinguish from `Nat.totient`'s notation `φ`, however this might be controversial. Suggestions are welcome!
[](https://gitpod.io/from-referrer/)
|
t-number-theory
new-contributor
large-import
merge-conflict
awaiting-author
|
45/5 |
Mathlib/NumberTheory/ArithmeticFunction.lean |
1 |
19 |
['MichaelStollBayreuth', 'SnirBroshi', 'b-mehta', 'eric-wieser', 'github-actions', 'mathlib4-merge-conflict-bot', 'riccardobrasca', 'sun123zxy'] |
MichaelStollBayreuth assignee:MichaelStollBayreuth |
306-75869 10 months ago |
322-50545 322 days ago |
47-58551 47 days |
| 30158 |
nicolaviolette author:nicolaviolette |
feat: combinatorics simplegraph basic |
---
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|
awaiting-author
t-combinatorics
new-contributor
|
9/4 |
Mathlib/Combinatorics/SimpleGraph/Basic.lean |
1 |
3 |
['b-mehta', 'github-actions'] |
b-mehta assignee:b-mehta |
300-250 9 months ago |
300-250 300 days ago |
31-69826 31 days |
| 26901 |
5hv5hvnk author:5hv5hvnk |
feat: a simproc version of `compute_degree` |
Wrap `compute_degree` in a simproc for use by simp.
Closes #22219.
--- |
awaiting-CI
new-contributor
merge-conflict
awaiting-author
t-meta
|
198/0 |
Mathlib.lean,Mathlib/Tactic/Simproc/PolynomialDegree.lean,MathlibTest/polynomial_degree_simproc.lean |
3 |
19 |
['5hv5hvnk', 'YaelDillies', 'adomani', 'github-actions', 'mathlib4-merge-conflict-bot'] |
nobody |
297-46918 9 months ago |
418-48288 418 days ago |
0-267 4 minutes |
| 30150 |
imbrem author:imbrem |
feat(CategoryTheory/Monoidal): to_additive for MonoidalCategory |
Add `AddMonoidalCategory`, the additive version of `MonoidalCategory`.
To get this to work, I needed to _remove_ the `to_additive` attributes in `Discrete.lean`, since existing code relies on the `AddMonoid M → MonoidalCategory M` instance. For now, we simply implement the additive variants by hand instead.
---
As discussed in #28718; I added an `AddMonoidalCategory` struct and tagged `MonoidalCategory` with `to_additive`, along with the lemmas in `Category.lean`.
I think this is the right approach, since under this framework the "correct" additive version of `Discrete.lean` would be mapping an `AddMonoid` to an `AddMonoidalCategory`.
Next steps would be to:
- Make `monoidal_coherence` and `coherence` support `AddMonoidalCategory`
- Add `CocartesianMonoidalCategory` extending `AddMonoidalCategory`
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|
t-category-theory
large-import
new-contributor
merge-conflict
awaiting-zulip
t-meta
|
444/125 |
Mathlib/CategoryTheory/Monoidal/Category.lean,Mathlib/CategoryTheory/Monoidal/Discrete.lean,Mathlib/Tactic/ToAdditive/GuessName.lean |
3 |
22 |
['JovanGerb', 'YaelDillies', 'github-actions', 'imbrem', 'mathlib4-merge-conflict-bot'] |
nobody |
291-9909 9 months ago |
330-74975 330 days ago |
1-160 1 day |
| 15651 |
TpmKranz author:TpmKranz |
feat(Computability/NFA): operations for Thompson's construction |
Lays the groundwork for a proof of equivalence of RE and NFA, w.r.t. described language. Actual connection to REs comes later, after the groundwork for the opposite direction has been laid.
Third chunk of #12648
---
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|
new-contributor
t-computability
merge-conflict
awaiting-author
awaiting-zulip
|
307/5 |
Mathlib/Computability/NFA.lean |
1 |
27 |
['TpmKranz', 'YaelDillies', 'dupuisf', 'github-actions', 'leanprover-community-bot-assistant', 'meithecatte', 'rudynicolop'] |
nobody |
286-27041 9 months ago |
705-54429 705 days ago |
45-84611 45 days |
| 15649 |
TpmKranz author:TpmKranz |
feat(Computability): introduce Generalised NFA as bridge to Regular Expression |
Lays the groundwork for a proof of equivalence of NFA and RE, w.r.t. described language. Actual connection to NFA comes later, after the groundwork for the opposite direction has been laid.
Second chunk of #12648
---
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-->
- [x] depends on: #15647 [Data.FinEnum.Option unchanged since then]
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-computability
merge-conflict
awaiting-author
awaiting-zulip
|
298/0 |
Mathlib.lean,Mathlib/Computability/GNFA.lean,Mathlib/Computability/Language.lean,Mathlib/Computability/RegularExpressions.lean,docs/references.bib |
5 |
7 |
['github-actions', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot', 'meithecatte', 'trivial1711'] |
nobody |
285-43282 9 months ago |
631-6812 631 days ago |
23-54870 23 days |
| 5919 |
MithicSpirit author:MithicSpirit |
feat: implement orthogonality for AffineSubspace |
Define `AffineSubspace.orthogonal` and `AffineSubspace.IsOrtho`, as well as develop an API emulating that of `Submodule.orthogonal` and `Submodule.IsOrtho`, respectively. Additionally, provide some relevant lemmas exclusive to affine subspaces, which are mostly to do with the relationship between orthogonality and `AffineSubspace.Parallel`.
Closes #5539
---
Still WIP as I need to add more docstrings as well as notations for the new definitions.
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|
WIP
new-contributor
merge-conflict
help-wanted
t-analysis
|
287/0 |
Mathlib.lean,Mathlib/Analysis/InnerProductSpace/AffineSubspace.lean |
2 |
7 |
['MithicSpirit', 'eric-wieser', 'github-actions', 'leanprover-community-bot-assistant', 'mathlib4-merge-conflict-bot'] |
MithicSpirit assignee:MithicSpirit |
284-81139 9 months ago |
968-19634 968 days ago |
0-433 7 minutes |
| 13442 |
dignissimus author:dignissimus |
feat: mabel tactic for multiplicative abelian groups |
Mabel tactic for multiplicative abelian groups (#10361)
---
[](https://gitpod.io/from-referrer/)
|
new-contributor
merge-conflict
modifies-tactic-syntax
awaiting-author
help-wanted
t-meta
|
439/0 |
Mathlib.lean,Mathlib/Tactic.lean,Mathlib/Tactic/MAbel.lean,MathlibTest/mabel.lean |
4 |
11 |
['BoltonBailey', 'dignissimus', 'github-actions', 'joneugster', 'kbuzzard', 'mathlib4-merge-conflict-bot'] |
joneugster assignee:joneugster |
284-80875 9 months ago |
734-72961 734 days ago |
0-16 16 seconds |
| 15224 |
AnthonyBordg author:AnthonyBordg |
feat(CategoryTheory/Sites): covering families and their associated Grothendieck topology |
Define covering families on a category and their associated Grothendieck topology by using the API for `Coverage`.
Give an explicit characterization of the covering sieves of the said topology.
---
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PR is merged. Please leave a blank newline before the `---`, otherwise
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
awaiting-author
t-category-theory
new-contributor
|
112/0 |
Mathlib.lean,Mathlib/CategoryTheory/Sites/CoveringFamilies.lean |
2 |
21 |
['AnthonyBordg', 'adamtopaz', 'dagurtomas', 'github-actions', 'joelriou', 'mathlib4-merge-conflict-bot'] |
nobody |
284-80744 9 months ago |
760-46975 760 days ago |
1-48443 1 day |
| 20648 |
anthonyde author:anthonyde |
feat: formalize regular expression -> εNFA |
The file `Computability/RegularExpressionsToEpsilonNFA.lean` contains a formal definition of Thompson's method for constructing an `εNFA` from a `RegularExpression` and a proof of its correctness.
---
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- [x] depends on: #20644
- [x] depends on: #20645
[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-computability
awaiting-zulip
new-contributor
|
490/0 |
Mathlib.lean,Mathlib/Computability/RegularExpressionsToEpsilonNFA.lean,docs/references.bib |
3 |
7 |
['anthonyde', 'github-actions', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot', 'meithecatte', 'qawbecrdtey'] |
nobody |
284-80450 9 months ago |
482-26979 482 days ago |
75-77754 75 days |
| 21903 |
yhtq author:yhtq |
feat: add from/toList between `FreeSemigroup` and `List` with relative theorems |
Add from/toList between `FreeSemigroup` and `List` with relative theorems, as well as an incidental definition of lexicographic order on `FreeSemigroup`.
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
awaiting-CI
large-import
merge-conflict
label:t-algebra$ |
169/0 |
Mathlib/Algebra/Free.lean |
1 |
12 |
['YaelDillies', 'github-actions', 'mathlib4-merge-conflict-bot'] |
nobody |
284-80310 9 months ago |
511-64265 511 days ago |
50-9299 50 days |
| 22159 |
shetzl author:shetzl |
feat: add definition of pushdown automata |
Add the definition of pushdown automata and their two acceptance conditions: acceptance based on empty stack and acceptance based on final state.
Co-authored-by: Tobias Leichtfried <tobias.leichtfried@tuwien.ac.at>
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-computability
awaiting-author
new-contributor
|
70/0 |
Mathlib.lean,Mathlib/Computability/PDA.lean |
2 |
35 |
['YaelDillies', 'github-actions', 'madvorak', 'mathlib4-merge-conflict-bot', 'shetzl'] |
nobody |
284-80304 9 months ago |
531-74317 531 days ago |
20-81248 20 days |
| 22302 |
658060 author:658060 |
feat: add `CategoryTheory.Topos.Power` |
This is a continuation of #21281 with the end goal of defining topoi in Mathlib. It introduces the notion of a power object in a category with a subobject classifier, which is a special case of an internal hom.
The definition `HasPowerObjects C` contained in this PR is all that remains before `IsTopos C` can be defined.
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
awaiting-author
t-category-theory
new-contributor
|
312/0 |
Mathlib.lean,Mathlib/CategoryTheory/Topos/Power.lean |
2 |
3 |
['github-actions', 'joelriou', 'mathlib4-merge-conflict-bot'] |
b-mehta assignee:b-mehta |
284-80295 9 months ago |
551-27897 551 days ago |
0-1528 25 minutes |
| 22790 |
mhk119 author:mhk119 |
feat: Extend `taylor_mean_remainder_lagrange` to `x < x_0` |
The `taylor_mean_remainder_lagrange` theorem has the assumption that $x_0 < x$. In many applications, we need $x < x_0$ and one cannot use the current version to obtain this (see [zulip](https://leanprover.zulipchat.com/#narrow/channel/116395-maths/topic/Taylor's.20theorem)). This PR introduces a set of theorems that push negations through Taylor expansions so that one can extend `taylor_mean_remainder_lagrange` to the case when $x < x_0$. These theorems should also be useful elsewhere since they are quite general. |
merge-conflict
awaiting-author
t-analysis
new-contributor
|
111/1 |
Mathlib/Analysis/Calculus/Deriv/Basic.lean,Mathlib/Analysis/Calculus/IteratedDeriv/Lemmas.lean,Mathlib/Analysis/Calculus/Taylor.lean |
3 |
13 |
['Paul-Lez', 'github-actions', 'grunweg', 'mathlib4-merge-conflict-bot', 'mhk119'] |
nobody |
284-80282 9 months ago |
513-8999 513 days ago |
23-14843 23 days |
| 25739 |
literandltx author:literandltx |
feat(NumberTheory/LegendreSymbol): Add sqrt‐of‐residue theorems for p=4k+3 and p=8k+5 |
Add a new file `QuadraticResidueRoots.lean` under `Mathlib/NumberTheory/LegendreSymbol/` that proves two explicit “square-root of quadratic residue” theorems for primes of the specific form.
- **`exists_sqrt_of_residue_mod4_eq3`** for primes `p = 4*k + 3`
- **`exists_sqrt_of_residue_mod8_eq5`** for primes `p = 8*k + 5`
It also introduces the helper lemmas `euler_criterion_traditional` and `legendreSym.at_two_mod8_eq_5`. Import lines in `Mathlib.lean` and `Mathlib/NumberTheory/LegendreSymbol/Basic.lean` have been updated accordingly.
|
merge-conflict
awaiting-author
t-number-theory
new-contributor
|
217/0 |
Mathlib.lean,Mathlib/NumberTheory/LegendreSymbol/Basic.lean,Mathlib/NumberTheory/LegendreSymbol/QuadraticReciprocity.lean,Mathlib/NumberTheory/LegendreSymbol/QuadraticResidueRoots.lean |
4 |
3 |
['github-actions', 'kckennylau', 'mathlib4-merge-conflict-bot'] |
literandltx assignee:literandltx |
284-79980 9 months ago |
427-17143 427 days ago |
17-63153 17 days |
| 26594 |
metakunt author:metakunt |
feat(Algebra/Polynomial/ZMod): Add Polynomial.equiv_of_nat_of_polynomial_zmod |
This adds an explicit bijection between the naturals and $$\mathbb{Z}/n\mathbb{Z}[X]$$ in a canonical way.
---
I feel that some API is missing to make the theorem shorter, I have no idea what lemmas to extract though.
Also I don't know when to use spaces and when not, so I did it best effort.
|
merge-conflict
awaiting-author
t-algebra
new-contributor
label:t-algebra$ |
465/0 |
Mathlib.lean,Mathlib/Algebra/Polynomial/ZMod.lean |
2 |
3 |
['Ruben-VandeVelde', 'github-actions', 'mathlib4-merge-conflict-bot'] |
nobody |
284-79620 9 months ago |
400-36978 400 days ago |
25-5689 25 days |
| 26757 |
fweth author:fweth |
feat(CategoryTheory/Topos): define elementary topos |
This commit begins the formalization of the notion of an *elementary topos*, following the definition in \[Mac Lane & Moerdijk, *Sheaves in Geometry and Logic* (1992), Ch. IV, Section 1]. It introduces the file `Mathlib/CategoryTheory/Topos/Basic.lean`, which currently includes:
* The definition of an elementary topos.
* Proof that the power object map is a functor
* Theorem about pullbacks of characterstic maps
Subobject classifiers, which are used in the definition, have already been defined in `CategoryTheory/Topos/Classifier.lean`
Work in progress: further formalization of the section is planned.
Questions:
* Should the definition of power objects be separated into its own file/module, perhaps under `CategoryTheory/Topos/PowerObject.lean`?
* Is the notation `P` / `P_morph` / `P_functor` for the power object functor on objects / morphisms / total acceptable?
* Should the comments and docstrings rather use the notation from the book, where `g ∘ f` denotes arrow composition from righ to left, or the Lean variant `f ≫ g`?
Klaus Gy klausgy@gmail.com
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
awaiting-author
t-category-theory
new-contributor
|
401/66 |
Mathlib.lean,Mathlib/CategoryTheory/Closed/PowerObjects.lean,Mathlib/CategoryTheory/Limits/Shapes/BinaryProducts.lean,Mathlib/CategoryTheory/Limits/Shapes/Equalizers.lean,Mathlib/CategoryTheory/Limits/Shapes/Pullback/CommSq.lean,Mathlib/CategoryTheory/Limits/Shapes/Pullback/Equalizer.lean,Mathlib/CategoryTheory/Monoidal/Cartesian/Basic.lean,Mathlib/CategoryTheory/Subobject/Basic.lean,Mathlib/CategoryTheory/Topos/Classifier.lean |
9 |
17 |
['fweth', 'github-actions', 'joelriou', 'leanprover-community-bot-assistant', 'mathlib4-merge-conflict-bot'] |
joelriou assignee:joelriou |
284-79615 9 months ago |
313-68425 313 days ago |
62-9859 62 days |
| 27155 |
Pjotr5 author:Pjotr5 |
feat: Shearer's bound on the independence number of triangle free graphs |
I added the file IndependenceNumber.lean to the Mathlib.Combinatorics.SimpleGraph.Triangle folder. It contains a proof of a theorem by Shearer on the independence number of triangle-free graphs . I was told this might be useful to add to Mathlib a Zullip thread linked [here](https://leanprover.zulipchat.com/#narrow/channel/217875-Is-there-code-for-X.3F/topic/Convexity.20of.20a.20specific.20function/with/510469526).
I tried to comply as much as I could with the Mathlib style guide, but I realise that there is probably still a significant amount of editing to be done. For one thing: there are probably some lemmas and theorems in there that might be better suited in other files, but since this is my first PR I though I would all put it in one file before starting to edit a bunch of files.
I was also advised to split up the file into multiple smaller PRs, but since everything is basically serving this one proof I could not really find a natural way to do that.
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
awaiting-author
t-combinatorics
new-contributor
|
1266/0 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/Triangle/IndependenceNumber.lean |
2 |
10 |
['Pjotr5', 'github-actions', 'grunweg', 'mathlib4-merge-conflict-bot'] |
nobody |
284-79578 9 months ago |
411-67187 411 days ago |
0-287 4 minutes |
| 27753 |
YunkaiZhang233 author:YunkaiZhang233 |
feat(CategoryTheory): implemented proofs for factorisation categories being equivalent to iterated comma categories in two ways |
---
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Completed one of the tasks in TODOs, shown and implemented the details for (X/C)/f ≌ Factorisation f ≌ f/(C/Y).
This is migrated from my previous PR #22390
[](https://gitpod.io/from-referrer/)
|
merge-conflict
awaiting-author
t-category-theory
new-contributor
|
70/1 |
Mathlib/CategoryTheory/Category/Factorisation.lean |
1 |
13 |
['YunkaiZhang233', 'b-mehta', 'github-actions', 'mathlib4-merge-conflict-bot', 'robin-carlier'] |
nobody |
284-79423 9 months ago |
395-50586 395 days ago |
0-3448 57 minutes |
| 27850 |
fyqing author:fyqing |
feat: 0-dimensional manifolds are discrete and countable |
This is the converse direction of the classification of 0-dimensional manifolds. The other direction was shown in #22105.
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
awaiting-author
t-differential-geometry
new-contributor
|
80/0 |
Mathlib.lean,Mathlib/Geometry/Manifold/ZeroDim.lean |
2 |
14 |
['fyqing', 'github-actions', 'grunweg', 'mathlib4-merge-conflict-bot', 'tb65536'] |
grunweg assignee:grunweg |
284-79421 9 months ago |
394-25248 394 days ago |
0-5814 1 hour |
| 28125 |
nonisomorphiclinearmap author:nonisomorphiclinearmap |
feat(Combinatorics): basic definition of simplicial complexes |
This PR introduces the basic definition of a finite (abstract) simplicial complex, located in Mathlib/Combinatorics/SimplicialComplex/Basic.lean.
---
This is our first contribution to mathlib. This work was done as part of the Fields Institute Summer Undergraduate Program on formalization in topological combinatorics. Eventually, we aim to formalize Lovasz's proof of the Kneser Conjecture and this is a small stepping stone in that direction. Some other commits will shortly depend on this one.
We would like to acknowledge the Fields Institute for Research in Mathematical Sciences for their sponsorship. We would also like to thank our supervisors, Professor Chris Kapulkin and Mr. Daniel Carranza, for their guidance and support throughout this project. We would also like to thank our group members Tom Lindquist and Quang Minh Nguyen for our fruitful discussions. |
merge-conflict
t-combinatorics
new-contributor
|
374/0 |
Mathlib.lean,Mathlib/Combinatorics/SimplicialComplex/Basic.lean,Mathlib/Combinatorics/SimplicialComplex/Category.lean,Mathlib/Combinatorics/SimplicialComplex/FacePoset.lean,Mathlib/Combinatorics/SimplicialComplex/Hom.lean |
5 |
2 |
['github-actions', 'mathlib4-merge-conflict-bot'] |
awainverse assignee:awainverse |
284-79289 9 months ago |
284-79290 284 days ago |
99-62977 99 days |
| 28530 |
nonisomorphiclinearmap author:nonisomorphiclinearmap |
feat(Combinatorics/SimplicialComplex/Topology): add standard simplices and geometric realisation (colimit + functoriality) |
Introduce the standard simplex on a finite vertex set and build the geometric realisation |X| of a simplicial complex. Prove that |X| is the colimit of the face diagram δ_X : X.faces ⥤ TopCat, and define the induced map on realisations |φ| : |X| ⟶ |Y| for a simplicial map φ. Show that the abstract map from colimit functoriality agrees with the concrete push-forward of barycentric coordinates. Package these into a functor SimplicialComplexCat ⥤ TopCat.
---
This is our first contribution to mathlib. This work was done as part of the Fields Institute Summer Undergraduate Program on formalization in topological combinatorics. Eventually, we aim to formalize Lovasz's proof of the Kneser Conjecture and this lays the groundwork to do this.
We would like to acknowledge the Fields Institute for Research in Mathematical Sciences for their sponsorship. We would also like to thank our supervisors, Professor Chris Kapulkin and Mr. Daniel Carranza, for their guidance and support throughout this project. I would also like to thank our group members Sebastian Kumar, Tom Lindquist and Quang Minh Nguyen for our fruitful discussions.
- [ ] depends on: #28125 |
merge-conflict
blocked-by-other-PR
t-combinatorics
new-contributor
|
1826/0 |
Mathlib.lean,Mathlib/Combinatorics/SimplicialComplex/Basic.lean,Mathlib/Combinatorics/SimplicialComplex/Category.lean,Mathlib/Combinatorics/SimplicialComplex/FacePoset.lean,Mathlib/Combinatorics/SimplicialComplex/Hom.lean,Mathlib/Combinatorics/SimplicialComplex/Topology/GeomReal/Basic.lean,Mathlib/Combinatorics/SimplicialComplex/Topology/GeomReal/Colimit.lean,Mathlib/Combinatorics/SimplicialComplex/Topology/GeomReal/Diagram.lean,Mathlib/Combinatorics/SimplicialComplex/Topology/GeomReal/Functor.lean,Mathlib/Combinatorics/SimplicialComplex/Topology/GeomReal/Map.lean,Mathlib/Combinatorics/SimplicialComplex/Topology/Simplex.lean,Mathlib/Combinatorics/SimplicialComplex/Topology/SimplexMap.lean |
12 |
3 |
['github-actions', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
284-79275 9 months ago |
379-33103 379 days ago |
0-591 9 minutes |
| 28871 |
JaafarTanoukhi author:JaafarTanoukhi |
feat(Combinatorics/Digraph): Tournaments |
Define orientations and tournaments. Related to #26771.
Co-authored-by: Rida Hamadani <mridahamadani@gmail.com>
---
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|
merge-conflict
t-combinatorics
new-contributor
|
62/0 |
Mathlib.lean,Mathlib/Combinatorics/Digraph/Orientation.lean,Mathlib/Combinatorics/Digraph/Tournament.lean |
3 |
6 |
['JaafarTanoukhi', 'Rida-Hamadani', 'SnirBroshi', 'github-actions', 'mathlib4-merge-conflict-bot'] |
kmill assignee:kmill |
284-79136 9 months ago |
284-79137 284 days ago |
71-37436 71 days |
| 29947 |
JaafarTanoukhi author:JaafarTanoukhi |
feat(Combinatorics/Digraph): Maps |
Ported `SimpleGraph/Maps.lean` to `Digraph/Maps.lean` for future PRs related to issue #[26771](https://github.com/leanprover-community/mathlib4/issues/26771)
---
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|
merge-conflict
t-combinatorics
new-contributor
|
476/0 |
Mathlib.lean,Mathlib/Combinatorics/Digraph/Maps.lean |
2 |
2 |
['github-actions', 'mathlib4-merge-conflict-bot'] |
awainverse assignee:awainverse |
284-78502 9 months ago |
284-78503 284 days ago |
54-85998 54 days |
| 11021 |
jstoobysmith author:jstoobysmith |
feat(AlgebraicTopology): add join of augmented SSets |
This pull-request adds the definition of the join of augmented SSets defined as contravariant functors from `WithInitial SimplexCategory` to `Type u`. In addition it shows that the join of two standard augmented SSets is again an augmented SSets.
From this the definition of the join of simplicial sets should follow easily.
To aid the above theory, an api for `WithInitial SimplexCategory` has been created, with the notion of the `join` and `split` (forming a sort of inverse to join) of objects in this category are defined.
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
WIP
t-algebraic-topology
new-contributor
|
2137/1 |
.gitignore,Mathlib.lean,Mathlib/AlgebraicTopology/Join.lean,Mathlib/AlgebraicTopology/SimplexCategory.lean,Mathlib/AlgebraicTopology/SimplexCategoryWithInitial.lean,Mathlib/AlgebraicTopology/SimplicialSet.lean |
6 |
47 |
['github-actions', 'jcommelin'] |
nobody |
284-52350 9 months ago |
914-19795 914 days ago |
1-20227 1 day |
| 18626 |
hannahfechtner author:hannahfechtner |
feat: define Artin braid groups |
Define the Artin braid group on infinitely many strands. Includes a toGroup function which defines a function out of the braid group to any other group (given a function which satisfies the braid relations)
(more to come in this file; next up: Artin braid groups on finitely many strands)
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
awaiting-author
t-algebra
new-contributor
label:t-algebra$ |
91/0 |
Mathlib.lean,Mathlib/GroupTheory/SpecificGroups/BraidGroup/Basic.lean |
2 |
22 |
['github-actions', 'hannahfechtner', 'jcommelin', 'joelriou'] |
nobody |
284-52197 9 months ago |
647-59076 647 days ago |
15-38343 15 days |
| 20029 |
FrederickPu author:FrederickPu |
feat(Tactic/simps): allow for Config attributes to be set directly |
Allow for Config attributes to be set directly when using initialize_simp_projection as per issue #19895
Basically modified initialize_simp_projection so that the user has the option of specifying a tuple of config option values.
Ex:
```
initialize_simp_projection MulEquiv (toFun → apply, invFun → symm_apply) (fullyApplied := false)
```
These config options are then converted into projections.
---
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|
merge-conflict
WIP
new-contributor
t-meta
|
34/4 |
Mathlib/Tactic/Simps/Basic.lean |
1 |
11 |
['FrederickPu', 'YaelDillies', 'fpvandoorn', 'github-actions', 'leanprover-community-bot-assistant'] |
nobody |
284-52134 9 months ago |
620-69383 620 days ago |
0-34081 9 hours |
| 21269 |
658060 author:658060 |
feat(CategoryTheory/Topos): basic definitions and results in topos theory |
This code contains basic definitions and results in topos theory, including the definition of a subobject classifier, power objects, and topoi. It is proved that every topos has exponential objects, i.e. "internal homs". The mathematical content follows chapter IV sections 1-2 of Mac Lane and Moerdijk's text "Sheaves in Geometry and Logic".
---
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- [x] depends on: #21281
[](https://gitpod.io/from-referrer/)
|
WIP
t-category-theory
new-contributor
merge-conflict
awaiting-author
|
1269/0 |
Mathlib.lean,Mathlib/CategoryTheory/Topos/Basic.lean,Mathlib/CategoryTheory/Topos/Classifier.lean,Mathlib/CategoryTheory/Topos/Exponentials.lean,Mathlib/CategoryTheory/Topos/Power.lean |
5 |
10 |
['658060', 'gio256', 'github-actions', 'joelriou', 'mathlib4-dependent-issues-bot'] |
nobody |
284-52107 9 months ago |
577-30921 577 days ago |
0-13879 3 hours |
| 23990 |
robertmaxton42 author:robertmaxton42 |
feat(Types.Colimits): Quot is functorial and colimitEquivQuot is natural |
Add `Functor.quotFunctor` to parallel `Functor.sectionsFunctor`, witnessing that `Quot` is functorial; add `colimNatIsoQuotFunctor` to parallel `limNatIsoSectionsFunctor`, witnessing that `colimitEquivQuot` is natural in the diagram $F$.
---
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|
merge-conflict
awaiting-author
t-category-theory
new-contributor
|
33/0 |
Mathlib/CategoryTheory/Limits/Types/Colimits.lean |
1 |
5 |
['github-actions', 'joelriou', 'leanprover-community-bot-assistant', 'robertmaxton42'] |
nobody |
284-51990 9 months ago |
496-50925 496 days ago |
8-27116 8 days |
| 27991 |
sinianluoye author:sinianluoye |
feat(Rat): add Rat.den_eq_of_add_den_eq_one and its dependent lemmas |
```lean4
example {q r : ℚ} (h : (q + r).den = 1) : q.den = r.den := by
```
It is so simple, but I couldn't find it in current mathlib repo.
---
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|
awaiting-author
t-data
new-contributor
|
22/0 |
Mathlib/Data/Rat/Lemmas.lean |
1 |
33 |
['github-actions', 'kim-em', 'mathlib-bors', 'pechersky', 'sinianluoye', 'themathqueen'] |
pechersky assignee:pechersky |
284-51673 9 months ago |
313-38808 313 days ago |
74-62001 74 days |
| 28215 |
5hv5hvnk author:5hv5hvnk |
feat: strong and Weak connectivity for Digraphs |
strong and weak connectivity in Digraphs
---
Should resolve a part of issue #26771
Main additions in the PR:
1. Walks in Digraphs (Walk.lean)
- Basic walk structure with start and end vertices
- Support for walk operations: append, reverse, length
- Support functions: getVert, copy, support
2. Walk Decompositions (WalkDecomp.lean)
- takeUntil and dropUntil functions to split walks
- rotate operation for loop walks
- Theorems relating to walk decomposition properties
3. Subgraphs (subgraph.lean)
- Subgraph structure for digraphs
- Induced and spanning subgraph predicates
- Lattice structure (sup, inf, top, bot)
- Coercion to standalone digraphs
4. Paths (Paths.lean)
- Trail, Path, Circuit, Cycle definitions
- Path structure with no repeating vertices
- Theorems relating different path types
- Basic connectivity definitions (reachable, weakly/strongly connected)
5. Connectivity (Connected.lean)
- Reachability relations and properties
- Strong and weak connectivity definitions
- Connected component types:
- StronglyConnectedComponent
- WeaklyConnectedComponent
- ConnectedComponent
- Component properties and equivalence relations
-->
[](https://gitpod.io/from-referrer/)
|
WIP
new-contributor
merge-conflict
awaiting-author
t-combinatorics
|
1266/0 |
Mathlib.lean,Mathlib/Combinatorics/Digraph/Connected.lean,Mathlib/Combinatorics/Digraph/Paths.lean,Mathlib/Combinatorics/Digraph/Subgraph.lean,Mathlib/Combinatorics/Digraph/Walk.lean,Mathlib/Combinatorics/Digraph/WalkDecomp.lean |
6 |
4 |
['github-actions', 'grunweg', 'mathlib4-merge-conflict-bot'] |
nobody |
284-51652 9 months ago |
385-4319 385 days ago |
0-454 7 minutes |
| 29574 |
JarodAlper author:JarodAlper |
feat: regular local rings are domains |
We have added three new files in Mathlib/RingTheory/LocalRing
* EmbeddingDimension.lean
* LocalRingDimension.lean
* RegularLocalRings.lean
We have added two lemmas and an instance in Mathlib/RingTheory/LocalRing/RingHom/Basic.lean
This work was done by Jarod Alper and Brian Nugent.
---
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|
merge-conflict
t-ring-theory
new-contributor
|
910/3 |
Mathlib.lean,Mathlib/RingTheory/LocalRing/EmbeddingDimension.lean,Mathlib/RingTheory/LocalRing/LocalRingDimension.lean,Mathlib/RingTheory/LocalRing/RegularLocalRings.lean,Mathlib/RingTheory/LocalRing/RingHom/Basic.lean,lake-manifest.json |
6 |
2 |
['github-actions', 'mathlib4-merge-conflict-bot'] |
nobody |
284-51541 9 months ago |
351-52611 351 days ago |
0-1063 17 minutes |
| 28718 |
imbrem author:imbrem |
feat: class for chosen finite coproducts |
Added basic `ChosenFiniteCoproducts` class, and started porting some of the lemmas about `ChosenFiniteProducts` suitably translated
---
This, combined with #20182 modified to use chosen finite coproducts and premonoidal categories (#21488), should be enough for me to formalize strong Elgot categories, and hence a lot of categorical iteration theory for my PhD thesis.
Re-done from #21603 to deal with changes in #24399 and #24390
Eventually, if we really want to harmonize approaches, we could introduce an `AddMonoidalCategory` struct and do the analogous to #24399 and #24390 for additive monoidal structure, but that seems like a massive overcomplication for now. It would allow formalizing fun things like rig categories, though.
- [ ] depends on: #30150 |
blocked-by-other-PR
t-category-theory
new-contributor
merge-conflict
awaiting-author
|
290/0 |
Mathlib.lean,Mathlib/CategoryTheory/ChosenFiniteCoproducts.lean |
2 |
9 |
['YaelDillies', 'github-actions', 'imbrem', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot', 'robin-carlier'] |
nobody |
284-51453 9 months ago |
375-25956 375 days ago |
0-581 9 minutes |
| 26765 |
KiringYJ author:KiringYJ |
feat(MeasureTheory/PiSystem): add π-λ theorem and SetLike instance |
Add two small features to `MeasureTheory/PiSystem`:
1. SetLike instance
`instance : SetLike (DynkinSystem α) (Set α)`
This lets us write `s ⊆ d` and `t ∈ d` for a DynkinSystem `d`, matching usual mathlib style.
2. `DynkinSystem.pi_lambda` lemma
Classical π‑λ theorem: if a π‑system `s` is contained in a Dynkin system `d`, every set measurable for `σ(s)` is also in `d`.
Currently, mathlib exposes this result only indirectly (e.g. via `generateFrom_eq`). Although logically equivalent, it is not obvious at first glance that those lemmas are the π‑λ theorem. The new lemma states the result in its familiar textbook form, so users can recognise and cite it immediately.
Both pieces are under 10 lines, term‑mode only, and do not modify existing APIs.
No breaking changes.
No dependencies.
|
awaiting-author
t-measure-probability
new-contributor
|
13/0 |
Mathlib/MeasureTheory/PiSystem.lean |
1 |
14 |
['EtienneC30', 'KiringYJ', 'dagurtomas', 'github-actions', 'ocfnash'] |
RemyDegenne assignee:RemyDegenne |
284-37849 9 months ago |
284-37849 284 days ago |
138-3922 138 days |
| 32169 |
saodimao20 author:saodimao20 |
feat: add convolution_comp_add_right |
This PR adds a lemma `convolution_comp_translation_right` showing that convolution commutes with translation on the right operand. Specifically, it proves that for an additive commutative group $G$, the convolution of a function $f$ with a translated function $x \mapsto g(a + x)$ is equal to the convolution of $f$ and $g$ evaluated at $x + a$.
---
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PR is merged. Please leave a blank newline before the `---`, otherwise
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|
t-analysis
new-contributor
awaiting-author
|
14/0 |
Mathlib/Analysis/Convolution.lean |
1 |
3 |
['github-actions', 'urkud'] |
nobody |
275-80420 9 months ago |
275-80420 275 days ago |
0-82278 22 hours |
| 30525 |
ZihuiBai author:ZihuiBai |
feat(Mathlib/Combinatorics/Enumerative/Polya): Add Polya Counting |
This PR introduces basic definitions and results about colorings under permutation group actions.
A coloring is defined as a function X → Y, and the permutation group Equiv.Perm X acts on colorings by precomposition:
(g • c) x = c (g⁻¹ • x)
This formalizes the natural action of relabeling the elements of X.
Main definitions
MulAction (Equiv.Perm X) (X → Y):
The action of the permutation group on colorings via precomposition.
coloringEquiv (c₁ c₂ : X → Y) : Prop:
Two colorings are equivalent if they lie in the same orbit under this action, i.e.
∃ f : Equiv.Perm X, f • c₁ = c₂.
Main results
smul_eq_iff_mem_stabilizer:
Characterizes when two group actions on the same coloring are equal, showing that
g • c = f • c ↔ f⁻¹ * g ∈ stabilizer c.
coloringEquiv_equivalence:
Proves that coloringEquiv defines an equivalence relation on X → Y.
orbit_size_eq_index:
Reformulates the orbit–stabilizer theorem in the context of colorings:
|orbit c| = |Perm X| / |stabilizer c|
Motivation
These results provide foundational infrastructure for studying Burnside’s lemma and Pólya’s enumeration theorem in Mathlib, where the enumeration of distinct colorings up to symmetry plays a central role. |
t-combinatorics
new-contributor
awaiting-author
merge-conflict
|
113/0 |
Mathlib.lean,Mathlib/Combinatorics/Enumerative/Polya.lean |
2 |
8 |
['IvanRenison', 'alreadydone', 'github-actions', 'mathlib4-merge-conflict-bot'] |
awainverse assignee:awainverse |
268-39159 8 months ago |
276-82702 276 days ago |
39-49182 39 days |
| 31113 |
ZihuiBai author:ZihuiBai |
feat(Mathlib/Combinatorics/Enumerative/Polya.lean): Add additional theorem in `Polya.lean` |
---
- [ ] depends on: #30525
---
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[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
blocked-by-other-PR
merge-conflict
|
302/0 |
Mathlib.lean,Mathlib/Combinatorics/Enumerative/Polya.lean |
2 |
4 |
['github-actions', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
b-mehta assignee:b-mehta |
268-39035 8 months ago |
277-61461 277 days ago |
16-82714 16 days |
| 24441 |
MrSumato author:MrSumato |
feat(Data/List): add Lyndon-Schutzenberger theorem on list commutativity |
Add Lyndon-Schutzenberger theorem on list commutativity. Included definition for List.repeatSelf that returns list repeated n times.
---
This is my first mathlib PR, so any comments are highly appreciated.
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-->
[](https://gitpod.io/from-referrer/)
|
merge-conflict
awaiting-author
t-data
new-contributor
|
129/1 |
Mathlib.lean,Mathlib/Data/List/Commutativity.lean,Mathlib/Data/List/Defs.lean,Mathlib/Data/List/Lemmas.lean |
4 |
38 |
['MrSumato', 'github-actions', 'grunweg', 'madvorak', 'mathlib4-merge-conflict-bot', 'plp127'] |
grunweg assignee:grunweg |
268-34637 8 months ago |
450-60981 450 days ago |
29-59355 29 days |
| 31147 |
daefigueroa author:daefigueroa |
feat(Dynamics): point transitive monoid actions and transitive points |
We define point transitivity for a monoid action on a topological space and define the set of transitive points. We add some basic lemmas and implications between topological transitivity and point transitivity.
---
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PR is merged. Please leave a blank newline before the `---`, otherwise
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- [x] depends on: #28001
[](https://gitpod.io/from-referrer/) |
t-dynamics
new-contributor
awaiting-author
|
114/6 |
Mathlib/Dynamics/Transitive.lean |
1 |
6 |
['github-actions', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot', 'sgouezel'] |
sgouezel assignee:sgouezel |
265-59870 8 months ago |
265-59870 265 days ago |
18-38983 18 days |
| 31987 |
saodimao20 author:saodimao20 |
feat: add monotonicity and relation lemmas for mgf and cgf |
Add two lemmas about moment-generating and cumulant-generating functions:
- `mgf_mono_in_t_of_nonneg`: For nonnegative random variables, the mgf is monotone in the parameter `t`
- `cgf_zero_of_mgf_one`: The cgf equals zero iff the mgf equals one
These lemmas are useful for studying properties of mgf and cgf in probability theory.
Contributed by sequential-intelligence-lab(SIL), University of Virginia
---
<!-- 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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[](https://gitpod.io/from-referrer/)
|
t-measure-probability
new-contributor
awaiting-author
|
21/0 |
Mathlib/Probability/Moments/Basic.lean |
1 |
5 |
['DavidLedvinka', 'github-actions'] |
RemyDegenne assignee:RemyDegenne |
259-51976 8 months ago |
259-51976 259 days ago |
21-31799 21 days |
| 32938 |
0xTerencePrime author:0xTerencePrime |
feat(Order/LocallyFinite): prove DenselyOrdered and LocallyFiniteOrder are incompatible |
## Summary
This PR proves that a nontrivial densely ordered linear order cannot be locally finite.
## Main results
* `not_locallyFiniteOrder`: A densely ordered locally finite linear order must be subsingleton.
* `not_locallyFiniteOrder_of_nontrivial`: The main theorem - incompatibility of the two properties.
Note: This implementation imports `Mathlib.Order.Interval.Set.Infinite` to reuse the existing `Set.Icc_infinite` theorem, ensuring standard library consistency.
## Mathematical content
The key insight is that in a densely ordered type, we can always find a new element between any two distinct elements. This means any nontrivial interval contains infinitely many elements. However, `LocallyFiniteOrder` requires intervals to be finite. This contradiction implies that such a type cannot exist (unless it is trivial).
## Motivation
This resolves a TODO mentioned in #7987 (Data/Finset/LocallyFinite entry).
## Verification
- [x] `lake build Mathlib.Order.LocallyFinite.Basic` passes
- [x] `lake exe runLinter Mathlib.Order.LocallyFinite.Basic` passes
|
t-order
new-contributor
awaiting-author
|
28/0 |
Mathlib/Order/Interval/Finset/Basic.lean |
1 |
10 |
['0xTerencePrime', 'CoolRmal', 'github-actions', 'jcommelin', 'plp127'] |
nobody |
254-75378 8 months ago |
254-75418 254 days ago |
3-22290 3 days |
| 32698 |
farruhx author:farruhx |
feat(List): add aesop / simp annotations to selected lemmas for improved automation |
This PR adds `@[aesop safe]` and `@[simp]` annotations to a set
of List lemmas whose proofs are routine and benefit from standardized
automation. No statements or definitions are changed; only proof annotations
are added.
The lemmas updated in this PR are:
* `or_exists_of_exists_mem_cons`
* `append_subset_of_subset_of_subset`
* `map_subset_iff`
* `append_eq_has_append`
* `append_right_injective`
* `append_left_injective`
* `reverse_surjective`
* `reverse_bijective`
* `mem_getLast?_append_of_mem_getLast?`
* `mem_dropLast_of_mem_of_ne_getLast`
* `idxOf_eq_length_iff`
* `idxOf_append_of_mem`
* `length_eraseP_add_one`
The goal is to make these commonly used lemmas easier for `aesop`-based
automation to resolve, while avoiding any interference with simp-normal-form
lemmas or canonical rewrite rules.
There are no API changes and no new theorems—only improved automation behavior. |
t-data
new-contributor
awaiting-author
|
18/1 |
Mathlib/Data/List/Basic.lean |
1 |
8 |
['artie2000', 'euprunin', 'farruhx', 'github-actions'] |
pechersky assignee:pechersky |
254-23747 8 months ago |
254-23747 254 days ago |
7-31364 7 days |
| 27817 |
zhuyizheng author:zhuyizheng |
feat: add IMO2025P1 |
Add a solution to IMO2025P1, the original problem statement from https://github.com/jsm28/IMOLean
---
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PR is merged. Please leave a blank newline before the `---`, otherwise
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[](https://gitpod.io/from-referrer/)
|
IMO
awaiting-author
new-contributor
merge-conflict
|
1310/0 |
Archive.lean,Archive/Imo/Imo2025Q1.lean |
2 |
9 |
['github-actions', 'kim-em', 'mathlib4-merge-conflict-bot', 'zhuyizheng'] |
dwrensha assignee:dwrensha |
253-55944 8 months ago |
313-20512 313 days ago |
54-75088 54 days |
| 33218 |
Blackfeather007 author:Blackfeather007 |
feat(Algebra): Define the associated graded ring to filtered ring |
Define the associated graded ring to a filtered ring.
---
- [ ] depends on: #33217
migrated from https://github.com/leanprover-community/mathlib4/pull/26858 |
t-ring-theory
new-contributor
blocked-by-other-PR
|
450/0 |
Mathlib.lean,Mathlib/RingTheory/FilteredAlgebra/AssociatedGraded.lean |
2 |
2 |
['github-actions', 'mathlib4-dependent-issues-bot'] |
nobody |
251-2209 8 months ago |
251-7494 251 days ago |
0-132 2 minutes |
| 33219 |
Blackfeather007 author:Blackfeather007 |
feat(Algebra): Define associated graded algebra |
Define the associated graded algebra of a filtered algebra, constructed from a special case of associated graded ring.
---
- [ ] depends on: #33218
migrated from #26859
|
t-ring-theory
new-contributor
blocked-by-other-PR
|
563/0 |
Mathlib.lean,Mathlib/RingTheory/FilteredAlgebra/AssociatedGraded.lean |
2 |
2 |
['github-actions', 'mathlib4-dependent-issues-bot'] |
nobody |
251-2101 8 months ago |
251-7268 251 days ago |
0-133 2 minutes |
| 33220 |
Blackfeather007 author:Blackfeather007 |
feat(Algebra): Define associated graded module |
Define the associated graded module to a filtered module.
---
- [ ] depends on: #33218
migrated from #26860
|
t-ring-theory
new-contributor
blocked-by-other-PR
|
669/0 |
Mathlib.lean,Mathlib/RingTheory/FilteredAlgebra/AssociatedGraded.lean |
2 |
2 |
['github-actions', 'mathlib4-dependent-issues-bot'] |
nobody |
251-2017 8 months ago |
251-7080 251 days ago |
0-137 2 minutes |
| 33227 |
Blackfeather007 author:Blackfeather007 |
feat(Algebra): exact of associated graded exact |
We proved that a chain complex is exact if its associated graded complex is exact.
Co-authored-by: Huanyu Zheng @Yu-Misaka [suzuka@misaka-yu.com](mailto:suzuka@misaka-yu.com)
Co-authored-by: Yi Yuan @yuanyi-350 [kysyy1@126.com](mailto:kysyy1@126.com)
Co-authored-by: Weichen Jiao @AlbertJ-314 [albertjiao314@gmail.com](mailto:albertjiao314@gmail.com)
---
- [ ] depends on: #33226
migrated from #26869 |
t-ring-theory
new-contributor
blocked-by-other-PR
|
728/0 |
Mathlib.lean,Mathlib/RingTheory/FilteredAlgebra/AssociatedGraded.lean,Mathlib/RingTheory/FilteredAlgebra/Exactness.lean,Mathlib/RingTheory/FilteredAlgebra/FilteredHom.lean |
4 |
2 |
['github-actions', 'mathlib4-dependent-issues-bot'] |
nobody |
250-86089 8 months ago |
250-86090 250 days ago |
0-1208 20 minutes |
| 33226 |
Blackfeather007 author:Blackfeather007 |
feat(Algebra): associated graded exact of exact and strict |
In this file, we define the concept of exhaustive filtrations.
We also prove a AssociatedGradedRingHom sequence is exact iff each GradedPieceHom is exact.
And when a sequence is strict exact, the corresponding AssociatedGradedRingHom sequence is also exact.
Co-authored-by: Huanyu Zheng @Yu-Misaka [suzuka@misaka-yu.com](mailto:suzuka@misaka-yu.com)
Co-authored-by: Yi Yuan @yuanyi-350 [kysyy1@126.com](mailto:kysyy1@126.com)
Co-authored-by: Weichen Jiao @AlbertJ-314 [albertjiao314@gmail.com](mailto:albertjiao314@gmail.com)
---
- [ ] depends on: #33222
migrated from #26868 |
t-ring-theory
new-contributor
blocked-by-other-PR
|
529/0 |
Mathlib.lean,Mathlib/RingTheory/FilteredAlgebra/AssociatedGraded.lean,Mathlib/RingTheory/FilteredAlgebra/Exactness.lean,Mathlib/RingTheory/FilteredAlgebra/FilteredHom.lean |
4 |
2 |
['github-actions', 'mathlib4-dependent-issues-bot'] |
nobody |
250-86087 8 months ago |
250-86088 250 days ago |
0-1431 23 minutes |
| 33225 |
Blackfeather007 author:Blackfeather007 |
feat(Algebra): filtered module hom |
In this PR we defined the filtered semi-linear map for filtered module and the associated graded module hom.
---
- [ ] depends on: #33220
- [ ] depends on: #33223
migrated from #26867 |
t-ring-theory
new-contributor
blocked-by-other-PR
|
1205/0 |
Mathlib.lean,Mathlib/RingTheory/FilteredAlgebra/AssociatedGraded.lean,Mathlib/RingTheory/FilteredAlgebra/FilteredHom.lean |
3 |
2 |
['github-actions', 'mathlib4-dependent-issues-bot'] |
nobody |
250-86086 8 months ago |
250-86087 250 days ago |
0-1805 30 minutes |
| 33224 |
Blackfeather007 author:Blackfeather007 |
feat(Algebra): define filtered alghom |
In this PR, we define the filtered algebra homomorphisms on algebras and prove some basic properties of
them.
---
- [ ] depends on: #33219
- [ ] depends on: #33223
migrated from #26863 |
t-ring-theory
new-contributor
blocked-by-other-PR
|
1055/0 |
Mathlib.lean,Mathlib/RingTheory/FilteredAlgebra/AssociatedGraded.lean,Mathlib/RingTheory/FilteredAlgebra/FilteredHom.lean |
3 |
2 |
['github-actions', 'mathlib4-dependent-issues-bot'] |
nobody |
250-86084 8 months ago |
250-86085 250 days ago |
0-2046 34 minutes |
| 33223 |
Blackfeather007 author:Blackfeather007 |
feat(Algebra): define filtered ring homomorphism |
In this PR, we define the filtered ring morphisms on rings and prove some basic properties of
them.
Co-authored-by: Huanyu Zheng @Yu-Misaka [suzuka@misaka-yu.com](mailto:suzuka@misaka-yu.com)
Co-authored-by: Yi Yuan @yuanyi-350 [kysyy1@126.com](mailto:kysyy1@126.com)
Co-authored-by: Weichen Jiao @AlbertJ-314 [albertjiao314@gmail.com](mailto:albertjiao314@gmail.com)
---
- [ ] depends on: #33218
- [ ] depends on: #33222
migrated from #26862 |
t-ring-theory
new-contributor
blocked-by-other-PR
|
824/0 |
Mathlib.lean,Mathlib/RingTheory/FilteredAlgebra/AssociatedGraded.lean,Mathlib/RingTheory/FilteredAlgebra/FilteredHom.lean |
3 |
2 |
['github-actions', 'mathlib4-dependent-issues-bot'] |
nobody |
250-86081 8 months ago |
250-86084 250 days ago |
0-2257 37 minutes |
| 33222 |
Blackfeather007 author:Blackfeather007 |
feat(Algebra): define filtered add group hom |
In this file we define filtered hom and the corresponding associated graded hom for abelian groups.
Co-authored-by: Huanyu Zheng @Yu-Misaka [suzuka@misaka-yu.com](mailto:suzuka@misaka-yu.com)
Co-authored-by: Yi Yuan @yuanyi-350 [kysyy1@126.com](mailto:kysyy1@126.com)
Co-authored-by: Weichen Jiao @AlbertJ-314 [albertjiao314@gmail.com](mailto:albertjiao314@gmail.com)
---
- [ ] depends on: #33217
migrated from #26861
|
new-contributor
t-ring-theory
blocked-by-other-PR
|
368/0 |
Mathlib.lean,Mathlib/RingTheory/FilteredAlgebra/AssociatedGraded.lean,Mathlib/RingTheory/FilteredAlgebra/FilteredHom.lean |
3 |
2 |
['github-actions', 'mathlib4-dependent-issues-bot'] |
nobody |
250-86080 8 months ago |
250-86081 250 days ago |
0-2387 39 minutes |
| 33502 |
MrQubo author:MrQubo |
fix(Tactic/ProxyType): Pass params explicitly in proxy_equiv% implementation |
Fix [#mathlib4 > `deriving Fintype` with Prop](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/.60deriving.20Fintype.60.20with.20Prop/with/566118621)
---
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|
new-contributor
t-meta
WIP
|
12/2 |
Mathlib/Tactic/ProxyType.lean,MathlibTest/DeriveFintype.lean |
2 |
7 |
['MrQubo', 'github-actions', 'kmill'] |
kmill assignee:kmill |
239-32883 7 months ago |
239-32884 239 days ago |
0-60133 16 hours |
| 33299 |
kingiler author:kingiler |
feat: Add decidable membership for Interval |
Implemented membership and corresponding decidable instance for `Interval`.
Related [#mathlib4 > Proposal: Add decidable membership for Interval](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Proposal.3A.20Add.20decidable.20membership.20for.20Interval/with/565438009).
---
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|
awaiting-author
new-contributor
t-order
|
16/1 |
Mathlib/Order/Interval/Basic.lean |
1 |
5 |
['Vierkantor', 'eric-wieser', 'github-actions', 'kingiler'] |
Vierkantor assignee:Vierkantor |
234-46187 7 months ago |
234-46187 234 days ago |
13-42146 13 days |
| 33948 |
anivegesana author:anivegesana |
feat(Analysis/Normed/Algebra): matrix exponential of nilpotent matrix |
Where the matrix exponential and nilpotent elements are defined, both the matrix exponential and the nilpotent element exponential. I had to add a different theorem for normed space exponential and the matrix exponential since the right instances wouldn't be synthesized. Help with golfing would be appreciated.
---
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|
new-contributor
t-analysis
|
34/0 |
Mathlib/Analysis/Normed/Algebra/Exponential.lean,Mathlib/Analysis/Normed/Algebra/MatrixExponential.lean |
2 |
1 |
['github-actions'] |
nobody |
229-3540 7 months ago |
229-168 229 days ago |
0-3444 57 minutes |
| 30391 |
rudynicolop author:rudynicolop |
feat(Data/List): list splitting definitions and lemmas |
This PR continues the work from #24395.
Original PR: https://github.com/leanprover-community/mathlib4/pull/24395 |
t-data
new-contributor
awaiting-author
|
108/2 |
Mathlib/Data/List/Perm/Lattice.lean,Mathlib/Data/List/TakeDrop.lean |
2 |
50 |
['BoltonBailey', 'IlPreteRosso', 'TwoFX', 'Vierkantor', 'github-actions', 'kckennylau', 'mathlib4-merge-conflict-bot', 'rudynicolop'] |
TwoFX assignee:TwoFX |
226-57286 7 months ago |
226-65808 226 days ago |
93-10641 93 days |
| 29282 |
Jlh18 author:Jlh18 |
feat(CategoryTheory): HasColimits instance on Grpd |
Show that the category of groupoids has all small colimits, as a coreflective subcategory of `Cat`, which has all small colimits. The right adjoint of the forgetful functor is the core functor `CategoryTheory.Core.functor`.
- [ ] depends on: #29283 [Core of a category as a functor]
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|
merge-conflict
blocked-by-other-PR
new-contributor
t-category-theory
|
140/4 |
Mathlib.lean,Mathlib/AlgebraicTopology/FundamentalGroupoid/InducedMaps.lean,Mathlib/CategoryTheory/Category/Grpd.lean,Mathlib/CategoryTheory/Core.lean,Mathlib/CategoryTheory/Groupoid/Grpd/Colimit.lean,Mathlib/CategoryTheory/Groupoid/Grpd/Core.lean |
6 |
3 |
['github-actions', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
224-67366 7 months ago |
362-12750 362 days ago |
0-396 6 minutes |
| 34141 |
gululu996-ui author:gululu996-ui |
feat(Combinatorics/SimpleGraph/Acyclic): finite trees have at least two degree-one vertices |
Add a lemma showing that a finite tree with at least two vertices has at least two vertices of degree 1.
- Introduce a helper lemma `SimpleGraph.Connected.one_le_degree` for connected graphs on a nontrivial finite type.
- Prove the leaf-count lower bound via the degree-sum identity and a counting argument.
---
|
awaiting-author
new-contributor
t-combinatorics
|
72/2 |
Mathlib/Combinatorics/SimpleGraph/Acyclic.lean |
1 |
9 |
['IvanRenison', 'SnirBroshi', 'github-actions', 'vlad902'] |
nobody |
220-50509 7 months ago |
222-31945 222 days ago |
1-23617 1 day |
| 31377 |
CoolRmal author:CoolRmal |
feat: a series of smooth functions that converges (locally) uniformly is smooth |
The main theorem is the proof that an infinite sum of $C^n$ functions on a one-dimensional domain which converges locally uniformly is $C^n$ and related results.
This should be compared with [contDiff_tsum](https://leanprover-community.github.io/mathlib4_docs/Mathlib/Analysis/Calculus/SmoothSeries.html#contDiff_tsum) where the same result is proved for functions on an arbitrary domain but with a slightly stronger convergence assumption.
The main motivation for this PR is the [#mathlib4 > Tychonov's Counterexample for the Heat Equation](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Tychonov's.20Counterexample.20for.20the.20Heat.20Equation/with/547367912).
---
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|
t-topology
new-contributor
awaiting-author
merge-conflict
|
110/18 |
Mathlib/Analysis/Calculus/SmoothSeries.lean,Mathlib/Analysis/SpecialFunctions/Trigonometric/Cotangent.lean,Mathlib/NumberTheory/ModularForms/EisensteinSeries/QExpansion.lean,Mathlib/Topology/Algebra/InfiniteSum/TsumUniformlyOn.lean,Mathlib/Topology/Algebra/InfiniteSum/UniformOn.lean |
5 |
20 |
['CoolRmal', 'github-actions', 'mathlib4-merge-conflict-bot', 'ocfnash', 'sgouezel'] |
ocfnash assignee:ocfnash |
214-32607 7 months ago |
275-49572 275 days ago |
8-15343 8 days |
| 34130 |
FlAmmmmING author:FlAmmmmING |
feat(Combinatorics/SimpleGraph/Acyclic): Add new theorem `isTree_iff_uniqueShortest_path` |
---
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|
awaiting-author
t-combinatorics
new-contributor
|
28/1 |
Mathlib/Combinatorics/SimpleGraph/Acyclic.lean |
1 |
9 |
['IvanRenison', 'github-actions', 'metakunt', 'vlad902'] |
nobody |
212-78535 7 months ago |
221-62550 221 days ago |
2-6824 2 days |
| 32609 |
PrParadoxy author:PrParadoxy |
feat(LinearAlgebra/PiTensorProduct): Relation between nested tensor products and tensor products indexed by dependent sums |
Product tensors in `⨂ j : (Σ i, β i), s j.fst j.snd` can be mapped to
product tensors in `⨂ i, ⨂ b : β i, s i b`. If the outer index type is
finite, the two types are equivalent.
This allows the definition of endomorphisms on PiTensorProducts by
specifying them on disjoint subsets of the index set. Such constructions
are common e.g. in quantum circuits, quantum cellular automata, and
renormalization procedures.
---
WIP.
This PR contains two "requests for comments". Essentially:
* Is a single complex-to-define linear equivalence preferable over
several less complex ones, which might however be of limited interest
by themselves?
* Which trade-offs are appropriate to make things computable?
- [ ] depends on: #32608
- [x] depends on: #32600
- [x] depends on: #32598
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new-contributor
blocked-by-other-PR
merge-conflict
t-algebra
label:t-algebra$ |
683/0 |
Mathlib.lean,Mathlib/Data/Sigma/Basic.lean,Mathlib/LinearAlgebra/Multilinear/Basic.lean,Mathlib/LinearAlgebra/PiTensorProduct/Nested.lean,Mathlib/LinearAlgebra/PiTensorProduct/Set.lean |
5 |
5 |
['github-actions', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
211-29940 6 months ago |
265-30378 265 days ago |
0-2004 33 minutes |
| 30260 |
imbrem author:imbrem |
feat(CategoryTheory/Monoidal): added CocartesianMonoidalCategory |
As discussed in #21603 and #28718; this implements chosen finite coproducts on top of `AddMonoidalCategory` as defined in #30150
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- [ ] depends on: #30150
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|
merge-conflict
blocked-by-other-PR
large-import
new-contributor
t-category-theory
|
839/125 |
Mathlib.lean,Mathlib/CategoryTheory/Monoidal/Category.lean,Mathlib/CategoryTheory/Monoidal/Cocartesian/Basic.lean,Mathlib/CategoryTheory/Monoidal/Discrete.lean,Mathlib/Tactic/ToAdditive/GuessName.lean |
5 |
4 |
['github-actions', 'imbrem', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
210-68771 6 months ago |
329-20368 329 days ago |
0-206 3 minutes |
| 30258 |
imbrem author:imbrem |
feat(CategoryTheory/Monoidal): to_additive for proofs using `monoidal` |
Building on #30150, this allows us to use `@[to_additive]` on proofs containing `monoidal`, by tagging the lemmas `monoidal` outputs with `@[to_additive]` as appropriate.
Testing on my branch [`additive-monoidal-coherence`](https://github.com/imbrem/mathlib4/tree/additive-monoidal-coherence) shows that this works.
It is still future work to have either the `monoidal` tactic or a new `add_monoidal` tactic work for `AddMonoidalCategory` instances directly.
---
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- [ ] depends on: #xyz [optional extra text]
-->
- [ ] depends on: #30150
[](https://gitpod.io/from-referrer/)
|
merge-conflict
blocked-by-other-PR
large-import
new-contributor
t-category-theory
|
524/140 |
Mathlib/CategoryTheory/Monoidal/Category.lean,Mathlib/CategoryTheory/Monoidal/Discrete.lean,Mathlib/Tactic/CategoryTheory/Monoidal/Normalize.lean,Mathlib/Tactic/CategoryTheory/Monoidal/PureCoherence.lean,Mathlib/Tactic/CategoryTheory/MonoidalComp.lean,Mathlib/Tactic/ToAdditive/GuessName.lean |
6 |
3 |
['github-actions', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
210-68764 6 months ago |
329-24993 329 days ago |
0-241 4 minutes |
| 31102 |
JOSHCLUNE author:JOSHCLUNE |
feat: require LeanHammer |
Experimenting with adding LeanHammer as a mathlib dependency
---
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PR is merged. Please leave a blank newline before the `---`, otherwise
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
new-contributor
t-meta
|
61/4 |
Mathlib/Tactic/Common.lean,Mathlib/Tactic/Linter/DirectoryDependency.lean,MathlibTest/Hammer.lean,lake-manifest.json,lakefile.lean |
5 |
2 |
['github-actions', 'mathlib4-merge-conflict-bot'] |
nobody |
210-59246 6 months ago |
286-16049 286 days ago |
0-150 2 minutes |
| 34053 |
christian-oudard author:christian-oudard |
feat: Add error function (erf) and complementary error function (erfc) |
## Summary
I was doing some finance math and needed the Error Function, so I thought I'd contribute it.
### Main definitions
* `Real.erf`: The error function, defined as `(2/√π) ∫₀ˣ e^(-t²) dt`
* `Real.erfc`: The complementary error function, defined as `1 - erf x`
### Main results
* `Real.erf_zero`: `erf 0 = 0`
* `Real.erf_neg`: `erf` is an odd function: `erf (-x) = -erf x`
* `Real.erf_tendsto_one`: `erf x → 1` as `x → ∞`
* `Real.erf_tendsto_neg_one`: `erf x → -1` as `x → -∞`
* `Real.erf_le_one`: `erf x ≤ 1` for all `x`
* `Real.neg_one_le_erf`: `-1 ≤ erf x` for all `x`
* `Real.deriv_erf`: `deriv erf x = (2/√π) * exp(-x²)`
* `Real.differentiable_erf`: `erf` is differentiable
* `Real.continuous_erf`: `erf` is continuous
* `Real.strictMono_erf`: `erf` is strictly monotone
Also adds `erf` to `docs/overview.yaml` under Special Functions.
---
- [x] Builds successfully
- [x] `lake exe runLinter` passes
- [x] `lake exe mk_all --check` passes |
t-analysis
new-contributor
awaiting-author
|
333/0 |
Mathlib.lean,Mathlib/Analysis/SpecialFunctions/Erf.lean,docs/overview.yaml |
3 |
18 |
['SnirBroshi', 'christian-oudard', 'github-actions', 'j-loreaux', 'plp127'] |
j-loreaux assignee:j-loreaux |
208-10275 6 months ago |
208-47128 208 days ago |
14-69133 14 days |
| 33601 |
nielstron author:nielstron |
feat(Computability/ContextFreeGrammar): Concatenation of CFGs is CFG |
---
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- [ ] depends on: #33599
- [ ] depends on: #33592
[](https://gitpod.io/from-referrer/)
|
t-computability
new-contributor
blocked-by-other-PR
|
941/0 |
Mathlib/Computability/ContextFreeGrammar.lean |
1 |
2 |
['github-actions', 'mathlib4-dependent-issues-bot'] |
nobody |
207-74388 6 months ago |
237-58251 237 days ago |
0-412 6 minutes |
| 34394 |
Citronhat author:Citronhat |
feat(Algebra/Order/Ring): add constructors for linear ordered rings |
Add constructors for ordered rings from `mul_nonneg` / `mul_pos` that derive `ZeroLEOneClass` from a linear order. |
new-contributor
t-algebra
awaiting-author
label:t-algebra$ |
31/14 |
Mathlib/Algebra/Order/Ring/Defs.lean,Mathlib/RingTheory/HahnSeries/Lex.lean |
2 |
6 |
['Citronhat', 'Vierkantor', 'github-actions', 'leanprover-radar'] |
Vierkantor assignee:Vierkantor |
205-66750 6 months ago |
205-66750 205 days ago |
12-25418 12 days |
| 33493 |
michelsol author:michelsol |
feat(RingTheory/Polynomial): An explicit formula for the Chebyshev polynomials of the first kind |
Adds the following explicit formula on the Chebyshev polynomial of the first kind of order n.
${ T_{n}(x)\ =\ \sum \limits _{k=0}^{\lfloor {\frac {n}{2}}\rfloor } {\binom {n}{2k}} \left(\ X^{2}-1\ \right)^{k}\ X^{n-2k}}$
This explicit formula can be found [here](https://en.wikipedia.org/wiki/Chebyshev_polynomials#Explicit_expressions). There is a proof using complex numbers but it only works if the ring R = ℂ.
The proof here is by induction and works in a commutative ring R.
Mathlib seems to extend the definition of Chebyshev polynomials for $n \in \mathbb{Z}$ but this would make the formula more cumbersome with `n.natAbs` in place of `n`'s, so I expressed it on `n : ℕ` directly.
---
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[](https://gitpod.io/from-referrer/)
|
t-ring-theory
new-contributor
awaiting-author
|
51/1 |
Mathlib/RingTheory/Polynomial/Chebyshev.lean |
1 |
8 |
['YuvalFilmus', 'erdOne', 'github-actions', 'metakunt', 'michelsol'] |
chrisflav assignee:chrisflav |
204-16589 6 months ago |
204-16589 204 days ago |
35-16104 35 days |
| 26986 |
WangYiran01 author:WangYiran01 |
feat(Partition): add bijection for partitions with max part ≤ r |
This PR adds a new theorem `partition_max_equals_bound` to `Mathlib.Combinatorics.Enumerative.Partition`.
It constructs a bijection between:
- The set of partitions of `n` in which `r ∈ π.parts` and all parts are `≤ r`, and
- The set of partitions of `n - r` whose largest part is at most `r`.
This provides a constructive proof via removing/adding `r` from/to the partition multiset, in line with classical enumerative combinatorics.
Contributed by Yiran Wang.
|
awaiting-author
t-combinatorics
new-contributor
merge-conflict
|
92/0 |
Mathlib/Combinatorics/Enumerative/Partition/Basic.lean,Mathlib/Data/Multiset/Lattice.lean |
2 |
20 |
['WangYiran01', 'github-actions', 'jcommelin', 'kckennylau', 'kim-em', 'mathlib-merge-conflicts', 'mathlib4-merge-conflict-bot'] |
b-mehta assignee:b-mehta |
201-51463 6 months ago |
234-74331 234 days ago |
120-67067 120 days |
| 33969 |
goliath-klein author:goliath-klein |
refactor(PiTensorProduct/{InjectiveNorm, ProjectiveNorm}): Currently, injectiveSeminorm = projectiveSeminorm |
**WIP / RFC!**
Arguably, `injectiveSeminorm` should be re-defined in Mathlib. See #34137 and [Zulip](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/injectiveSeminorm/with/568798261) for context.
In this file, we collect some results about the current definition and a possible alternative.
Contents:
* A theorem `injectiveSeminorm_eq_projectiveSeminorm` formalizing the equality of the current definitions. However, I think it is unlikely that keeping the alternative characterization would be worth the effort. The interesting direction `(L2') ≤ (L1)` follows from `norm_eval_le_projectiveSeminorm` which is still present. The converse direction is [somewhat tautological](https://github.com/leanprover-community/mathlib4/pull/34137). A proof of `(L2) = (L1)` (probably requiring Hahn-Banach) might be more interesting.
* A preliminary implementation of the injective seminorm as commonly understood.
* Sufficient conditions for the multiplicativity property `‖⨂ m i‖_∧ = ∏ ‖m i‖` to hold. This implements a TBD item.
---
Co-authored-by: Davood H. H. Tehrani
[](https://gitpod.io/from-referrer/)
|
WIP
t-analysis
new-contributor
large-import
merge-conflict
|
774/387 |
Mathlib.lean,Mathlib/Analysis/Normed/Module/Dual.lean,Mathlib/Analysis/Normed/Module/HahnBanach.lean,Mathlib/Analysis/Normed/Module/PiTensorProduct/InjectiveSeminorm.lean,Mathlib/Analysis/Normed/Module/PiTensorProduct/LeastReasonable.lean,Mathlib/Analysis/Normed/Module/PiTensorProduct/ProjectiveSeminorm.lean,Mathlib/Analysis/Normed/Operator/Basic.lean,Mathlib/LinearAlgebra/PiTensorProduct.lean |
8 |
3 |
['github-actions', 'goliath-klein', 'mathlib-merge-conflicts'] |
nobody |
200-34813 6 months ago |
228-49917 228 days ago |
0-23 23 seconds |
| 34159 |
wangying11123 author:wangying11123 |
feat(Geometry/Euclidean/Similarity): Add Triangle similarity on oangle |
Add theorems about triangles similarity on oangle |
t-euclidean-geometry
new-contributor
awaiting-author
|
154/1 |
Mathlib/Geometry/Euclidean/Similarity.lean |
1 |
8 |
['LLaurance', 'github-actions', 'jsm28', 'wangying11123'] |
jsm28 assignee:jsm28 |
198-62113 6 months ago |
199-22942 199 days ago |
7-49555 7 days |
| 33281 |
michelsol author:michelsol |
feat(Analysis/SpecialFunctions/Integrals): integral of 1/sqrt(1-x^2) and its integrability. |
Add the integral of the derivative of arcsin and its integrability.
---
- [ ] depends on: #33280
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[](https://gitpod.io/from-referrer/)
|
new-contributor
merge-conflict
t-analysis
|
59/0 |
Mathlib/Analysis/SpecialFunctions/Integrability/Basic.lean,Mathlib/Analysis/SpecialFunctions/Integrals/Basic.lean,Mathlib/MeasureTheory/Integral/IntervalIntegral/FundThmCalculus.lean |
3 |
3 |
['github-actions', 'mathlib-dependent-issues', 'mathlib4-merge-conflict-bot'] |
nobody |
196-72800 6 months ago |
248-40625 248 days ago |
0-2872 47 minutes |
| 33712 |
wangying11123 author:wangying11123 |
feat(Geometry/Euclidean/Angle/Unoriented/Projection): Add sameray_orthogonalProjection_vsub_of_angle_lt |
Add sameray_orthogonalProjection_vsub_of_angle_lt
`sameray_orthogonalProjection_vsub_of_angle_lt`
When an angle is acute, the vector to the orthogonal projection lies in the same ray as the given direction vector. |
new-contributor
t-euclidean-geometry
awaiting-author
|
20/0 |
Mathlib/Geometry/Euclidean/Angle/Unoriented/Projection.lean |
1 |
4 |
['JovanGerb', 'github-actions', 'j-loreaux'] |
JovanGerb assignee:JovanGerb |
194-52730 6 months ago |
194-52830 194 days ago |
39-79348 39 days |
| 30667 |
FrederickPu author:FrederickPu |
feat(Mathlib/Algebra/Group/Subgroup/Pointwise): subgroup mul |
Title:
feat: pointwise products for subgroups
Description:
showed the point-wise product of disjoint subgroups is equivalent to their Cartesian product. Based on https://leanprover.zulipchat.com/#narrow/channel/113488-general/topic/useful.20group.20theory.20lemmas/with/546738566.
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
label:t-algebra$ |
28/0 |
Mathlib/Algebra/Group/Subgroup/Pointwise.lean |
1 |
23 |
['FrederickPu', 'eric-wieser', 'github-actions', 'plp127', 'tb65536'] |
nobody |
194-51239 6 months ago |
194-52437 194 days ago |
1-24662 1 day |
| 33793 |
LTolDe author:LTolDe |
feat(MeasureTheory/Constructions/Polish/Basic): add lemma AnalyticSet.inter_nonempty_of_nowhereMeagre |
add lemma AnalyticSet.inter_nonempty_of_nowhereMeagre, the main ingredient for the proof of the **Effros' Theorem**, see [#mathlib4 > Effros Theorem](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Effros.20Theorem/with/566543328)
introduce definition of a nowhere meagre set
---
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[](https://gitpod.io/from-referrer/)
|
t-measure-probability
new-contributor
awaiting-author
|
37/0 |
Mathlib/MeasureTheory/Constructions/Polish/Basic.lean,Mathlib/Order/Filter/Basic.lean,Mathlib/Topology/GDelta/Basic.lean |
3 |
8 |
['MichaelStollBayreuth', 'erdOne', 'github-actions', 'j-loreaux'] |
kex-y assignee:kex-y |
194-46996 6 months ago |
194-47202 194 days ago |
39-9588 39 days |
| 33276 |
NicolaBernini author:NicolaBernini |
feat: Rename List.reverse_perm to List.reverse_perm_self and List.reverse_perm' to List.reverse_perm_iff |
---
<!-- Your PR title will become the first line of the commit message.
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-->
[](https://gitpod.io/from-referrer/)
|
new-contributor
awaiting-author
t-data
merge-conflict
|
17/15 |
Mathlib/Algebra/BigOperators/Group/List/Basic.lean,Mathlib/Data/Finset/Dedup.lean,Mathlib/Data/List/Basic.lean,Mathlib/Data/List/Defs.lean,Mathlib/Data/List/Perm/Lattice.lean,Mathlib/Data/List/Permutation.lean,Mathlib/Data/Multiset/Defs.lean,Mathlib/NumberTheory/Divisors.lean |
8 |
5 |
['Ruben-VandeVelde', 'github-actions', 'mathlib-merge-conflicts'] |
kim-em assignee:kim-em |
194-614 6 months ago |
244-65287 244 days ago |
4-4467 4 days |
| 34674 |
Citronhat author:Citronhat |
feat(Algebra/Order/Ring): replace ENNReal lemmas with WithTop versions |
* Add `WithTop` versions of basic multiplicative order lemmas.
* Use the new `WithTop` lemmas to replace `ENNReal` proofs and address six TODOs.
* Fix a typo in the `pos_of_ne_zero` alias name. |
new-contributor
t-algebra
merge-conflict
label:t-algebra$ |
46/15 |
Mathlib/Algebra/Order/Monoid/Canonical/Defs.lean,Mathlib/Algebra/Order/Ring/WithTop.lean,Mathlib/Data/ENNReal/Operations.lean |
3 |
5 |
['Citronhat', 'Ruben-VandeVelde', 'github-actions', 'mathlib-merge-conflicts'] |
Ruben-VandeVelde assignee:Ruben-VandeVelde |
193-66748 6 months ago |
193-66749 193 days ago |
17-1225 17 days |
| 33746 |
ster-oc author:ster-oc |
feat(Algebra/Module/ZLattice): align `ZSpan.floor` to `Int.floor` API |
This PR adds some of the existent lemmas about `Int.floor`, `Int.ceil` and `Int.fract` to the `ZSpan` namespace.
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
merge-conflict
label:t-algebra$ |
353/145 |
Mathlib/Algebra/Module/ZLattice/Basic.lean,Mathlib/Algebra/Order/Floor/Ring.lean,Mathlib/Topology/Algebra/Order/Floor.lean |
3 |
8 |
['github-actions', 'joelriou', 'mathlib-merge-conflicts', 'ster-oc'] |
joelriou assignee:joelriou |
188-83646 6 months ago |
188-83646 188 days ago |
30-23357 30 days |
| 20238 |
maemre author:maemre |
feat(Computability/DFA): Closure of regular languages under some set operations |
This shows that regular languages are closed under complement and intersection by constructing DFAs for them.
---
Closure under all other operations will be proved when someone adds the proof for DFA<->regular expression equivalence, so they are not part of this PR.
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[](https://gitpod.io/from-referrer/)
|
new-contributor
t-computability
merge-conflict
awaiting-author
awaiting-zulip
|
159/0 |
Mathlib/Computability/DFA.lean,Mathlib/Computability/Language.lean |
2 |
60 |
['EtienneC30', 'YaelDillies', 'github-actions', 'maemre', 'mathlib4-merge-conflict-bot', 'meithecatte', 'urkud'] |
nobody |
185-73684 6 months ago |
531-51623 531 days ago |
48-67492 48 days |
| 22361 |
rudynicolop author:rudynicolop |
feat(Computability/NFA): nfa closure properties |
Add the closure properties union, intersection and reversal for NFA.
---
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[](https://gitpod.io/from-referrer/)
|
new-contributor
t-computability
merge-conflict
awaiting-author
awaiting-zulip
|
218/2 |
Mathlib/Computability/Language.lean,Mathlib/Computability/NFA.lean |
2 |
91 |
['EtienneC30', 'b-mehta', 'ctchou', 'github-actions', 'leanprover-community-bot-assistant', 'meithecatte', 'rudynicolop'] |
nobody |
185-73668 6 months ago |
482-55562 482 days ago |
39-60738 39 days |
| 23929 |
meithecatte author:meithecatte |
feat(Computability/NFA): improve bound on pumping lemma |
---
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- [x] depends on: #25321
[](https://gitpod.io/from-referrer/)
|
t-computability
awaiting-zulip
new-contributor
awaiting-author
|
101/10 |
Mathlib/Computability/EpsilonNFA.lean,Mathlib/Computability/NFA.lean |
2 |
42 |
['YaelDillies', 'dagurtomas', 'github-actions', 'leanprover-community-bot-assistant', 'mathlib4-dependent-issues-bot', 'meithecatte'] |
nobody |
185-7297 6 months ago |
449-36596 449 days ago |
34-10092 34 days |
| 8102 |
miguelmarco author:miguelmarco |
feat(Tactic): add `unify_denoms` and `collect_signs` tactics |
This PR adds four new tactics:
- `unify_denoms` tries to put expressions with several divisions in a form with only one division. In the case of fields, it works similarly to `field_simp`, but if the hypothesis about denominators being nonzero are not present, it assumes them, and leaves them as new goals to prove. In that sense, it is an "unsafe" tactic (but can be useful nevertheless, for example when you can't find which exact hypothesis is missing). It also works with expressions of naturals and Euclidean domains, assuming the corresponding hypothesis about the denominators dividing the numerators.
- `unify_denoms!` extends `unify_denoms` to work with (in)equalities, assuming also that the denominators, once in normal form, are positive.
- `collect_signs` works similarly with expressions using sums and substractions: it tries to put them in a form of one sum minus other sum. In the case of working with naturals, it assumes that we never substract a bigger number from a smaller one.
Both are implemented essentially as a macro that combines several rewriting rules. Some new lemmas with the corresponding rules are added.
--- |
please-adopt
new-contributor
merge-conflict
modifies-tactic-syntax
good first issue
t-meta
|
407/0 |
Mathlib.lean,Mathlib/Algebra/EuclideanDomain/Basic.lean,Mathlib/Tactic.lean,Mathlib/Tactic/CollectSigns.lean,Mathlib/Tactic/UnifyDenoms.lean,MathlibTest/unify_denoms.lean,scripts/noshake.json |
7 |
55 |
['Paul-Lez', 'YaelDillies', 'github-actions', 'joneugster', 'kbuzzard', 'mathlib4-merge-conflict-bot', 'miguelmarco'] |
nobody |
184-57995 6 months ago |
473-40467 473 days ago |
17-14109 17 days |
| 35603 |
2500223210-max author:2500223210-max |
feat(GroupTheory/Frattini): add more theorems |
Add some contents about frattini subgroup into Mathlib GroupTheory Frattini.lean,including
* (convenient lemma)A subgroup contained in all maximal subgroup is contained in
the FRattini subgroup
* A subgroup (say H) has a proper complement (meaning for some proper subgroup K,
K and H generate the whole group)if and only if it is not contained
in the Frattini subgroup.
* A group is cyclic iff its Frattini factor(the quotient group wrt Frattini subgroup)
is cyclic.
* The Frattini factor of a finite p-group is elementary abelian(that is,an abelian
group G with Gᵖ={1})
* A finite p-group has trivial Frattini subgroup iff the group is elementary abelian.
* Burnside theorem of Frattini factor of finite p-group.
---
|
new-contributor
t-group-theory
large-import
awaiting-author
|
764/1 |
Mathlib/GroupTheory/Frattini.lean |
1 |
3 |
['github-actions', 'tb65536'] |
nobody |
184-55676 6 months ago |
190-43049 190 days ago |
0-103 1 minute |
| 33791 |
PhoenixIra author:PhoenixIra |
feat: Generalization of FixedPointApproximants to CompletePartialOrder |
---
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This PR provides a generalization of FixedPointApproximants to CompletePartialOrder. Not every theorem can be generalized, as sometimes we require additional conditions (namely `x ≤ f x`) in order to guarantee that the set is directed and thus the supremum is well-defined. This is not necessary in a CompleteLattice.
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-order
merge-conflict
|
223/100 |
Mathlib/Order/CompletePartialOrder.lean,Mathlib/SetTheory/Ordinal/FixedPointApproximants.lean |
2 |
21 |
['PhoenixIra', 'github-actions', 'mathlib-merge-conflicts', 'vihdzp'] |
PhoenixIra and vihdzp assignee:PhoenixIra assignee:vihdzp |
184-33980 6 months ago |
184-33980 184 days ago |
38-12430 38 days |
| 26013 |
tsuki8 author:tsuki8 |
feat(Data/Finset/Card,Data/Set/Finite/Basic): TODO needs a better title |
add `card_bijOn` and `finset_subset_preimage_of_finite_image`
Add `card_bijOn`: proves that for a bijection between finsets, their cardinalities are equal
Add `finset_subset_preimage_of_finite_image`: constructs a finset subset preserving image cardinality
Co-authored-by: Junyu Guo <hagb@hagb.name>
---
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[](https://gitpod.io/from-referrer/)
|
awaiting-author
t-data
new-contributor
|
15/0 |
Mathlib/Data/Finset/Card.lean,Mathlib/Data/Set/Finite/Basic.lean |
2 |
6 |
['Ruben-VandeVelde', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
182-8991 5 months ago |
425-75124 425 days ago |
13-85893 13 days |
| 14313 |
grhkm21 author:grhkm21 |
feat(RepresentationTheory/FdRep): FdRep is a full subcategory of Rep |
```
/-- Equivalence between `FDRep` and the full subcategory of finite dimensional `Rep`. -/
def equivFiniteDimensional :
FDRep k G ≌ FullSubcategory (fun V : Rep k G ↦ FiniteDimensional k V)
``` |
merge-conflict
t-algebra
t-category-theory
new-contributor
label:t-algebra$ |
47/8 |
Mathlib/RepresentationTheory/FDRep.lean |
1 |
21 |
['fpvandoorn', 'github-actions', 'grhkm21', 'joelriou', 'kim-em', 'mathlib-bors'] |
nobody |
177-63685 5 months ago |
770-29709 770 days ago |
4-83177 4 days |
| 33592 |
nielstron author:nielstron |
feat(Computability/ContextFreeGrammar): mapping between two types of nonterminal symbols |
This PR picks up https://github.com/leanprover-community/mathlib4/pull/15895 and resolves the failing lemma by redefining Good symbols.
---
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I checked that https://github.com/leanprover-community/mathlib4/pull/13514 builds correctly when based on this build. PR for that is #33599
This is my first contribution please let me know of any changes I should outline.
[](https://gitpod.io/from-referrer/)
|
awaiting-author
t-computability
new-contributor
|
160/0 |
Mathlib/Computability/ContextFreeGrammar.lean |
1 |
34 |
['YaelDillies', 'github-actions', 'madvorak', 'nielstron'] |
nobody |
177-52653 5 months ago |
226-81180 226 days ago |
10-68503 10 days |
| 35144 |
daniel-carranza author:daniel-carranza |
feat(CategoryTheory/Enriched): tensor product of enriched categories |
For a braided monoidal category `V`, defines the tensor product of `V`-categories `C` and `D`, and shows that the type of `V`-functors out of the tensor product `C \times D` is equivalent to the type of "enriched bifunctors" `EnrichedBifunctor V C D`.
---
This work originates from infinity-cosmos project, where it is used to formalize the notion of cotensors in an enriched category. There are some additional coherence lemmas in a braided monoidal category which have been added.
Currently, line 209 violates the style guideline that terminal simp calls should not be squeezed. When I tried to replace this with a single `simp`, I get an error message: `maximum recursion depth has been reached`. Any suggestions (either with this or anything else) are greatly appreciated - thank you!
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[](https://gitpod.io/from-referrer/)
|
new-contributor
t-category-theory
infinity-cosmos
awaiting-author
|
333/0 |
Mathlib.lean,Mathlib/CategoryTheory/Enriched/TensorProductCategory.lean,Mathlib/CategoryTheory/Monoidal/Braided/Basic.lean |
3 |
12 |
['daniel-carranza', 'emilyriehl', 'github-actions', 'joelriou', 'robin-carlier'] |
nobody |
177-48360 5 months ago |
200-35554 200 days ago |
0-1418 23 minutes |
| 27226 |
xcloudyunx author:xcloudyunx |
feat(Combinatorics/SimpleGraph): Add Subgraph.inclusion_edge_apply_coe and inclusion_edgeSet_apply_coe |
This PR continues the work from #25248.
Original PR: https://github.com/leanprover-community/mathlib4/pull/25248 |
awaiting-author
t-combinatorics
new-contributor
merge-conflict
|
14/0 |
Mathlib/Combinatorics/SimpleGraph/Subgraph.lean |
1 |
4 |
['b-mehta', 'github-actions', 'mathlib-merge-conflicts', 'xcloudyunx'] |
b-mehta assignee:b-mehta |
177-39753 5 months ago |
384-19899 384 days ago |
25-83942 25 days |
| 33688 |
Citronhat author:Citronhat |
feat(PMF): add expectation lemmas for Poisson PMF |
This PR adds some basic results about the Poisson distribution, its `PMF`, and its expectation.
**New lemmas:**
* `poissonPMF_apply` — an unfolding lemma for `poissonPMF`.
* `poissonPMFReal_mul_eq_succ_mul` — the standard recursion identity for the Poisson mass function.
* `poissonPMFReal_hasSum_nmul` — shows that `fun n ↦ poissonPMFReal r n * n` has sum `r`.
* `poissonPMF_tsum_nmul` — the corresponding identity at the level of the `PMF`.
* `poissonPMF_coe_tsum_nmul` — the same result after coercion to `ℝ`.
Both `ℝ`-valued and `ℝ≥0∞`-valued formulations are included so that these results can be used conveniently in both Lebesgue and Bochner integration contexts. |
new-contributor
t-measure-probability
awaiting-author
merge-conflict
|
21/0 |
Mathlib/Probability/Distributions/Poisson.lean |
1 |
11 |
['Citronhat', 'DavidLedvinka', 'github-actions', 'mathlib-merge-conflicts', 'urkud'] |
urkud assignee:urkud |
177-21733 5 months ago |
188-36382 188 days ago |
47-76964 47 days |
| 34830 |
parabamoghv author:parabamoghv |
feat(CategoryTheory/Monoidal): add definition of categorical groups |
This PR defines of categorical groups, also known as coherent 2-groups, in mathlib.
Motivation:
Categorical groups are well-studied structures in monoidal category theory, but are not currently available in mathlib. The definitions in this PR follow the existing design patterns used for Category, MonoidalCategory, and BraidedCategory.
This PR focuses on setting up the core structure and notation. Basic lemmas and further developments will be provided in a subsequent PR.
---
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[](https://gitpod.io/from-referrer/)
|
t-category-theory
new-contributor
WIP
merge-conflict
|
163/0 |
Mathlib.lean,Mathlib/CategoryTheory/Monoidal/CategoricalGroups/Basic.lean |
2 |
27 |
['dagurtomas', 'github-actions', 'mathlib-merge-conflicts', 'parabamoghv', 'robin-carlier'] |
robin-carlier assignee:robin-carlier |
177-10208 5 months ago |
191-78648 191 days ago |
5-13145 5 days |
| 35684 |
spitters author:spitters |
feat(CategoryTheory/MarkovCategory): Kleisli PMF is a Markov category |
Add `Mathlib/CategoryTheory/MarkovCategory/KleisliPMF.lean` showing that `KleisliCat PMF` is a `MarkovCategory`.
Uses `Prod` as tensor and `PUnit` as unit; reuses Mathlib's existing `KleisliCat`, `LawfulMonad PMF`, and `MarkovCategory` infrastructure.
Builds the full instance stack:
MonoidalCategory → BraidedCategory → SymmetricCategory →
CopyDiscardCategory → MarkovCategory
---
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[](https://gitpod.io/from-referrer/)
|
t-category-theory
new-contributor
awaiting-author
merge-conflict
|
323/1 |
Mathlib.lean,Mathlib/CategoryTheory/MarkovCategory/KleisliPMF.lean,Mathlib/Tactic/Linter/DirectoryDependency.lean |
3 |
6 |
['dagurtomas', 'github-actions', 'mathlib-merge-conflicts', 'spitters'] |
nobody |
172-85889 5 months ago |
185-31734 185 days ago |
2-47211 2 days |
| 36503 |
Mrigna01 author:Mrigna01 |
Add false theorem test file |
---
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[](https://gitpod.io/from-referrer/)
|
new-contributor |
135/0 |
Mathlib/FalseBench/FalseTheorems.lean |
1 |
3 |
['github-actions'] |
nobody |
172-22771 5 months ago |
172-22497 172 days ago |
0-364 6 minutes |
| 14603 |
awueth author:awueth |
feat: degree is invariant under graph isomorphism |
---
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Mathlib has the definition `SimpleGraph.Iso.mapNeighborSet` which is an equivalence between neighbor sets induced by an isomorphism. Would it be beneficial to add the same equivalence for `neighborFinset`?
[](https://gitpod.io/from-referrer/)
|
WIP
t-combinatorics
new-contributor
|
24/0 |
Mathlib/Combinatorics/SimpleGraph/Map/Finite.lean |
1 |
12 |
['SnirBroshi', 'awueth', 'github-actions', 'jcommelin', 'kim-em', 'urkud'] |
nobody |
172-4169 5 months ago |
748-51008 748 days ago |
31-44440 31 days |
| 33599 |
nielstron author:nielstron |
feat(Computability/ContextFreeGrammar): closure under union |
---
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This PR picks up https://github.com/leanprover-community/mathlib4/pull/13514 and resolves the outstanding errors.
- [ ] depends on: #33592
[](https://gitpod.io/from-referrer/)
|
blocked-by-other-PR
t-computability
new-contributor
|
498/0 |
Mathlib/Computability/ContextFreeGrammar.lean |
1 |
2 |
['github-actions', 'mathlib4-dependent-issues-bot'] |
nobody |
171-74006 5 months ago |
226-82865 226 days ago |
10-65787 10 days |
| 9605 |
davikrehalt author:davikrehalt |
feat(Data/Finset & List): Add Lemmas for Sorting and Filtering |
This PR includes several useful lemmas to the Data/Finset and Data/List modules in Lean's mathlib:
1. `toFinset_filter` (List): Shows that filtering commutes with toFinset.
2. `toFinset_is_singleton_implies_replicate` (List): Shows a list with a singleton toFinset is a List.replicate.
3. `filter_sort_commute` (Finset): Sorting and filtering can be interchanged in Finsets.
4. `Sorted.filter` (List): A sorted list stays sorted after filtering.
5. `Sorted.append_largest` (List): Appending the largest element keeps a list sorted.
6. `sort_monotone_map` (Finset): Relates sorting of a Finset after mapping to sorting of a list.
7. `sort_insert_largest` (Finset): Sorting a Finset with an inserted largest element.
8. `sort_range` (Finset): Sorting a range in a Finset equals the corresponding range list.
9. ~~`filter_eval_true` (List): Filtering a list with a predicate always true keeps the list unchanged.~~
10. ~~`filter_eval_false` (List): Filtering with an always-false predicate gives an empty list.~~
11. ~~`pairwise_concat` (List): Iff condition for Pairwise relation in concatenated lists (similar to pairwise_join).~~
12. `list_map_toFinset` (Finset): toFinset commutes with map under injection
---
- [x] depends on: #15952
This is my first PR to mathlib, so I'm not too familiar with etiquette's and more specifically there are two proofs in the PR which uses aesop, and I am not sure if it's frowned upon. I kept the aesop in there for now as I couldn't construct very short proofs otherwise. The sort_range function proof was suggested in https://leanprover.zulipchat.com/#narrow/stream/113489-new-members/topic/Computing.20Finset.20sort.20of.20Finset.20range/near/410346731 by Ruben Van de Velde. Thanks for your time for improving this PR. |
please-adopt
t-data
new-contributor
merge-conflict
awaiting-author
|
71/0 |
Mathlib/Data/Finset/Basic.lean,Mathlib/Data/Finset/Image.lean,Mathlib/Data/Finset/Sort.lean,Mathlib/Data/List/Sort.lean |
4 |
30 |
['YaelDillies', 'davikrehalt', 'eric-wieser', 'github-actions', 'jcommelin', 'urkud', 'vihdzp'] |
nobody |
171-73462 5 months ago |
951-44950 951 days ago |
12-48883 12 days |
| 15720 |
znssong author:znssong |
feat(SimpleGraph): The Bondy-Chvátal theorem |
The proof of the Bondy-Chvátal theorem, with Dirac's theorem and Ore's theorem as its corollary.
- [x] depends on: #15536
- [ ] depends on: #15711
- [ ] depends on: #15578 |
merge-conflict
blocked-by-other-PR
t-combinatorics
new-contributor
|
903/3 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/BondyChvatal.lean,Mathlib/Combinatorics/SimpleGraph/Finite.lean,Mathlib/Combinatorics/SimpleGraph/Hamiltonian.lean,Mathlib/Combinatorics/SimpleGraph/Path.lean,Mathlib/Combinatorics/SimpleGraph/Walk.lean,Mathlib/Dynamics/FixedPoints/Basic.lean,Mathlib/Dynamics/FixedPoints/Increasing.lean |
8 |
3 |
['github-actions', 'grunweg'] |
nobody |
169-48448 5 months ago |
748-77822 748 days ago |
0-1791 29 minutes |
| 22314 |
shetzl author:shetzl |
feat: add leftmost derivations for context-free grammars |
Leftmost derivations are often easier to reason about than arbitrary derivations. This PR adds leftmost variants of Rewrites, Produces and Derives to the existing definition of context-free grammars and proves that a string of terminals can be derived iff it can be leftmost derived.
Co-authored-by: Tobias Leichtfried <tobias.leichtfried@tuwien.ac.at>
---
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
t-computability
awaiting-author
new-contributor
|
383/0 |
Mathlib.lean,Mathlib/Computability/LeftmostDerivation.lean |
2 |
55 |
['YaelDillies', 'github-actions', 'madvorak', 'mathlib4-merge-conflict-bot', 'shetzl'] |
nobody |
169-48412 5 months ago |
478-71708 478 days ago |
72-2963 72 days |
| 30872 |
rudynicolop author:rudynicolop |
feat(Computability/NFA): NFA closure under concatenation |
This PR proves that regular languages are closed under concatenation via a direct construction on `NFA`s without `εNFA` nor ε-transitions. The main new definitions and results include:
- `M1.concat M2`, the concatenation of `NFA`s `M1` and `M2`, a direct construction without ε-transitions.
- Theorem `accepts_concat : (M1.concat M2).accepts = M1.accepts * M2.accepts`, showing the correctness of the construction.
- Theorem `IsRegular.mul`, showing that regular languages are closed under concatenation.
---
- [x] depends on: #31038
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[](https://gitpod.io/from-referrer/)
|
t-computability
new-contributor
awaiting-author
|
104/7 |
Mathlib/Computability/NFA.lean |
1 |
67 |
['YaelDillies', 'ctchou', 'eric-wieser', 'github-actions', 'lambda-fairy', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot', 'rudynicolop'] |
nobody |
169-48291 5 months ago |
213-36532 213 days ago |
59-63981 59 days |
| 36587 |
yhx-12243 author:yhx-12243 |
feat(Algebra/GCDMonoid): Distributive lattice structure for Associates in GCDMonoid |
Add a distributive lattice structure for `Associates α` in `GCDMonoid`.
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
label:t-algebra$ |
61/3 |
Mathlib.lean,Mathlib/Algebra/GCDMonoid/Basic.lean,Mathlib/Algebra/GCDMonoid/DistribLattice.lean |
3 |
2 |
['github-actions'] |
nobody |
167-54068 5 months ago |
167-52858 167 days ago |
0-2836 47 minutes |
| 35058 |
GrigorenkoPV author:GrigorenkoPV |
chore: move tendsto_{floor,ceil}_at{Top,Bot} |
Moves:
- Topology.Algebra.Order.Floor.tendsto_floor_atTop -> Order.Filter.AtTopBot.Floor.tendsto_floor_atTop
- Topology.Algebra.Order.Floor.tendsto_floor_atBot -> Order.Filter.AtTopBot.Floor.tendsto_floor_atBot
- Topology.Algebra.Order.Floor.tendsto_ceil_atTop -> Order.Filter.AtTopBot.Floor.tendsto_ceil_atTop
- Topology.Algebra.Order.Floor.tendsto_ceil_atBot -> Order.Filter.AtTopBot.Floor.tendsto_ceil_atBot
---
Tracked in #7987
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[](https://gitpod.io/from-referrer/)
|
new-contributor
large-import
awaiting-author
|
22/25 |
Mathlib/Order/Filter/AtTopBot/Floor.lean,Mathlib/Topology/Algebra/Order/Floor.lean |
2 |
3 |
['GrigorenkoPV', 'github-actions', 'j-loreaux'] |
nobody |
166-52717 5 months ago |
173-26491 173 days ago |
27-45743 27 days |
| 32745 |
LTolDe author:LTolDe |
feat(Topology/Algebra): add MulActionConst.lean |
add Topology/Algebra/MulActionConst.lean
introduce class `ContinuousSMulConst` for a scalar multiplication that is continuous in the first argument, in analogy to `ContinuousConstSMul`
define `MulAction.ball x U` as the set `U • {x}` given `[SMul G X] (x : X) (U : Set G)`
The lemmas shown here will be useful to prove the **Effros Theorem**, see [zulip](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Effros.20Theorem/with/558712441).
---
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|
awaiting-author
new-contributor
t-topology
|
117/0 |
Mathlib.lean,Mathlib/Topology/Algebra/MulActionConst.lean |
2 |
8 |
['LTolDe', 'github-actions', 'urkud'] |
nobody |
165-46418 5 months ago |
230-32762 230 days ago |
16-55121 16 days |
| 34028 |
floor-licker author:floor-licker |
feat(SimpleGraph): add max-flow/min-cut weak duality |
This PR introduces a basic s–t flow setup for undirected SimpleGraphs and proves the standard weak-duality
inequality: for any feasible flow f and any s–t cut S, value f ≤ cutCapacity S.
This is a small, self-contained lemma I extracted while working on larger graph-theoretic formalizations, in particular, results that will ultimately rely on a full max-flow/min-cut theorem. The full MFMC equality/existence statement is not included here. This is the weak-duality direction (∀ f S, value f ≤ cutCapacity S).
|
t-combinatorics
new-contributor
|
169/0 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/Connectivity/MaxFlowMinCut.lean |
2 |
14 |
['SnirBroshi', 'floor-licker', 'github-actions', 'mathlib-merge-conflicts'] |
kmill assignee:kmill |
163-41405 5 months ago |
163-41358 163 days ago |
60-20351 60 days |
| 36825 |
danlyng author:danlyng |
feat(MeasureTheory/Integral/IntegralEqImproper): add Iic variants of nonneg/nonpos derivative integrability and FTC-2 |
Add the `Iic` counterparts of the existing `Ioi` results for automatic integrability of derivatives on semi-infinite intervals and the corresponding corollaries computing the integral value. Additionally, apply minor fixes to existing docstrings.
New declarations:
- `integrableOn_Iic_deriv_of_nonneg` / `integrableOn_Iic_deriv_of_nonneg'`
- `integrableOn_Iic_deriv_of_nonpos` / `integrableOn_Iic_deriv_of_nonpos'`
- `integral_Iic_of_hasDerivAt_of_nonneg` / `integral_Iic_of_hasDerivAt_of_nonneg'`
- `integral_Iic_of_hasDerivAt_of_nonpos` / `integral_Iic_of_hasDerivAt_of_nonpos'`
These mirror `integrableOn_Ioi_deriv_of_nonneg`, `integrableOn_Ioi_deriv_of_nonpos`, `integral_Ioi_of_hasDerivAt_of_nonneg`, `integral_Ioi_of_hasDerivAt_of_nonpos` and their primed variants. |
t-measure-probability
new-contributor
awaiting-author
|
107/9 |
Mathlib/MeasureTheory/Integral/IntegralEqImproper.lean |
1 |
7 |
['EtienneC30', 'github-actions'] |
EtienneC30 assignee:EtienneC30 |
162-58712 5 months ago |
162-58712 162 days ago |
2-67942 2 days |
| 32918 |
michelsol author:michelsol |
feat: define `supEdist` and `supDist` |
Create a new file Topology.MetricSpace.SupDistance and define the supremal distance in (extended) metric spaces. The defined `supEdist` and `supDist` will have similar theory to the already existing `infEdist` and `infDist`. The motivation is to be able to define the radius of a minimal bounding sphere as the infimum of the supDist later.
[zulip discussion here](https://leanprover.zulipchat.com/#narrow/channel/116395-maths/topic/Formalizing.20Jung's.20theorem.20and.20minimal.20bounding.20spheres) |
t-topology
new-contributor
merge-conflict
|
75/0 |
Mathlib.lean,Mathlib/Topology/MetricSpace/SupDistance.lean |
2 |
5 |
['github-actions', 'mathlib4-merge-conflict-bot', 'michelsol', 'urkud'] |
nobody |
162-56724 5 months ago |
237-35284 237 days ago |
21-3598 21 days |
| 33668 |
Citronhat author:Citronhat |
feat(PMF): add lintegral formulas for PMF |
This PR introduces two lemmas describing the `lintegral` of a function with respect to the measure induced by a probability mass function:
- `PMF.lintegral_eq_tsum`
- `PMF.lintegral_eq_sum`
These are the `ℝ≥0∞` analogues of the existing Bochner `integral` formulas `integral_eq_tsum` and `integral_eq_sum`. They could be useful for reasoning about expectations and integrability.
In addition, the proof of `integral_eq_sum` is simplified by deriving it directly from `integral_eq_tsum` using `tsum_fintype`. |
t-measure-probability
new-contributor
awaiting-author
merge-conflict
|
14/5 |
Mathlib/Probability/ProbabilityMassFunction/Integrals.lean |
1 |
3 |
['DavidLedvinka', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
162-17911 5 months ago |
180-69406 180 days ago |
55-73479 55 days |
| 35805 |
adrianmartir author:adrianmartir |
feat(NumberTheory/Divisors): Add `infinite_setOf_divisors_iff` |
This proves that the set of divisors `{ m | m | n }` of a natural number `n` is infinite if and only if `n` is zero. The first proof draft was by @Aristotle-Harmonic.
---
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[](https://gitpod.io/from-referrer/)
|
t-number-theory
new-contributor
awaiting-author
|
10/0 |
Mathlib/NumberTheory/Divisors.lean |
1 |
6 |
['adrianmartir', 'alexjbest', 'github-actions', 'tb65536'] |
tb65536 assignee:tb65536 |
158-52056 5 months ago |
158-52057 158 days ago |
27-18698 27 days |
| 31590 |
SuccessMoses author:SuccessMoses |
chore: tag `commutatorElement_def` with `simp` |
---
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|
awaiting-author
t-algebra
new-contributor
merge-conflict
label:t-algebra$ |
1/0 |
Mathlib/Algebra/Group/Commutator.lean |
1 |
3 |
['github-actions', 'grunweg', 'mathlib-merge-conflicts'] |
nobody |
158-40725 5 months ago |
290-59660 290 days ago |
0-1762 29 minutes |
| 35857 |
AlexeyMilovanov author:AlexeyMilovanov |
feat(Logic.Equiv.BijectiveBase2): add bijective base-2 numeration |
This PR introduces a formalization of the bijective base-2 numeration system.
Unlike standard binary representation, bijective base-2 avoids the "leading zeros" problem, providing a strict mathematical bijection between natural numbers (`ℕ`) and lists of booleans (`List Bool`).
**Main additions:**
* `Equiv.BijectiveBase2.toBits`: Encodes `ℕ` to `List Bool`.
* `Equiv.BijectiveBase2.ofBits`: Decodes `List Bool` to `ℕ`.
* `equivBijectiveBase2`: The formal `ℕ ≃ List Bool` equivalence.
---
Zulip: [#PR reviews > PR #35857: Bijective Base-2 Numeration](https://leanprover.zulipchat.com/#narrow/channel/144837-PR-reviews/topic/PR.20.2335857.3A.20Bijective.20Base-2.20Numeration/with/576336540)
Zulip: [#batteries > Upstreaming Nat.Bits](https://leanprover.zulipchat.com/#narrow/channel/348111-batteries/topic/Upstreaming.20Nat.2EBits/with/580736051)
*(Note: This replaces my previously closed PR to avoid the terminology clash between "Dyadic" and dyadic rationals. The namespace and definitions have been updated accordingly).*
*(Note: Used AI to assist with standardizing proof structures).* |
t-logic
new-contributor
LLM-generated
blocked-by-batt-PR
|
95/0 |
Mathlib.lean,Mathlib/Logic/Equiv/ListNatBijective.lean |
2 |
6 |
['AlexeyMilovanov', 'SnirBroshi', 'github-actions', 'joneugster'] |
nobody |
156-66224 5 months ago |
156-66274 156 days ago |
27-59706 27 days |
| 36463 |
AlexeyMilovanov author:AlexeyMilovanov |
feat(Data.Nat.Bits): add Nat.ofBits and prove bits_injective |
This PR introduces `Nat.ofBitsList` for `List Bool` and provides the missing proofs that the standard binary representation `Nat.bits` is injective (`Nat.bits_injective`) and possesses a right inverse for normalized lists (`Nat.bits_ofBitsList`).
`ofBitsList` is implemented as an `abbrev` using `foldr` (keeping it transparent to tactics like `simp`). It serves as the exact left inverse to `bits`. Furthermore, `bits_ofBitsList` establishes that `bits` and `ofBitsList` form a bijection between `ℕ` and the set of lists with no trailing `false` values.
This avoids the name collision with `Nat.ofBits` from `Batteries` and aligns with previous Zulip discussions (see [here](https://leanprover.zulipchat.com/#narrow/channel/144837-PR-reviews/topic/PR.20.2335857.3A.20Bijective.20Base-2.20Numeration)) regarding the utility of having a complete list-based API for `Nat.bits` in the library.
CC: @linesthatinterlace
- Adds `Nat.ofBitsList` (as an `abbrev`)
- Adds `Nat.ofBitsList_bits` (left inverse property)
- Adds `Nat.bits_injective`
- Adds `Nat.ofBitsList_eq_zero_iff` (helper lemma for lists without trailing zeros)
- Adds `Nat.bits_ofBitsList` (right inverse property)
---
Zulip: [#PR reviews > PR #35857: Bijective Base-2 Numeration](https://leanprover.zulipchat.com/#narrow/channel/144837-PR-reviews/topic/PR.20.2335857.3A.20Bijective.20Base-2.20Numeration/with/576336540)
Zulip: [#batteries > Upstreaming Nat.Bits](https://leanprover.zulipchat.com/#narrow/channel/348111-batteries/topic/Upstreaming.20Nat.2EBits/with/580736051) |
t-data
new-contributor
awaiting-author
blocked-by-batt-PR
|
68/1 |
Mathlib/Data/Nat/Bits.lean |
1 |
5 |
['github-actions', 'joneugster', 'wrenna-robson'] |
nobody |
156-66217 5 months ago |
163-47929 163 days ago |
9-58085 9 days |
| 34419 |
ster-oc author:ster-oc |
feat(RCLike): add `Continuous.re` and similar |
This PR adds dot notation for `re`, `im`, `conj` and `ofReal` for `Continuous`, `LipschitzWith` and `Memℓp`.
Given `hf : Continuous f` it allows to use `hf.re` to express `Continuous (fun x ↦ (f x).re)`, similarly to the usual `hf.add hg`.
I also can add the same features for `Summable` but I am not sure where to place them, suggestions are appreciated!
---
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|
t-analysis
new-contributor
awaiting-author
merge-conflict
|
186/41 |
Mathlib/Analysis/Normed/Group/Uniform.lean,Mathlib/Analysis/Normed/Lp/lpSpace.lean,Mathlib/Analysis/RCLike/Basic.lean |
3 |
15 |
['github-actions', 'j-loreaux', 'mathlib-merge-conflicts', 'ster-oc'] |
j-loreaux assignee:j-loreaux |
153-27286 5 months ago |
187-41041 187 days ago |
8-27645 8 days |
| 30142 |
shalliso author:shalliso |
feat(Topology/Baire): define IsNonMeagre |
non-meagre sets (also known as "of the second category") are worthy of their own definition and API. This was useful to me for formalizing a result of "automatic continuity", that is, a Baire-measurable homomorphism between Polish groups must be continuous. Simply working with the negation of IsMeagre quickly became cumbersome, and non-meagre sets have an important role in the study of Polish (e.g. locally compact) groups.
From https://github.com/shalliso/automatic_continuity
---
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|
t-topology
new-contributor
merge-conflict
awaiting-author
|
83/1 |
Mathlib/Topology/Baire/NonMeagre.lean,Mathlib/Topology/GDelta/Basic.lean |
2 |
6 |
['github-actions', 'grunweg', 'mathlib4-merge-conflict-bot'] |
nobody |
152-54548 4 months ago |
332-27298 332 days ago |
0-1020 17 minutes |
| 36937 |
Yaohua-Leo author:Yaohua-Leo |
feat(Algebra/Jordan): add first linearization lemmas for IsCommJordan |
[](https://gitpod.io/from-referrer/)
AI assistance disclosure: I used AI assistance for CI/debugging and module-structure fixes in this PR. The mathematical content and main lemmas were written by me, with help from @pelicanhere.
This PR adds a new file `Mathlib/Algebra/Jordan/Linearization.lean` containing linearization lemmas for the commutative Jordan identity.
Main declarations:
* `IsCommJordan.four_nsmul_associator_mul_add`
* `IsCommJordan.associator_mul_add`
These lemmas formalize a first linearization of the commutative Jordan identity using `associator`, following McCrimmon, Proposition 1.8.5.
---
I put these lemmas in a separate file because I expect follow-up linearization lemmas to belong naturally in the same place.
I am also happy to rename declarations or move the file if reviewers would prefer. |
t-algebra
new-contributor
awaiting-author
label:t-algebra$ |
60/0 |
Mathlib.lean,Mathlib/Algebra/Jordan/Linearization.lean |
2 |
6 |
['Yaohua-Leo', 'github-actions', 'grunweg', 'ocfnash'] |
ocfnash assignee:ocfnash |
149-67683 4 months ago |
149-67683 149 days ago |
13-10710 13 days |
| 37695 |
Morten-Ness author:Morten-Ness |
refactor(GroupTheory/Complement): simplify complement proofs |
Simplifies the proofs of:
- `Subgroup.IsComplement'.symm`
- `Subgroup.isComplement_singleton_left`
- `Subgroup.isComplement_singleton_right`
No API changes.
AI assistance: I used Codex/LLM suggestions as a starting point, then manually checked the proofs, and verified the final version locally.
---
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|
t-group-theory
new-contributor
awaiting-author
|
15/17 |
Mathlib/GroupTheory/Complement.lean |
1 |
4 |
['github-actions', 'tb65536'] |
tb65536 assignee:tb65536 |
145-75857 4 months ago |
145-75857 145 days ago |
0-68801 19 hours |
| 37489 |
michael-novak-math author:michael-novak-math |
feat: add the fundamental theorem of plane curves |
We add to the PlaneCurves file created in PR #36731 a classical result in the subject of differential geometry of plane curves: the fundamental theorem of plane curves.
---------
- [ ] depends on: #36731 |
new-contributor
t-differential-geometry
t-analysis
blocked-by-other-PR
|
651/0 |
Mathlib.lean,Mathlib/Analysis/InnerProductSpace/Calculus.lean,Mathlib/Geometry/PlaneCurves.lean,Mathlib/MeasureTheory/Integral/IntervalIntegral/FundThmCalculus.lean,docs/references.bib |
5 |
5 |
['github-actions', 'mathlib-dependent-issues', 'michael-novak-math'] |
nobody |
145-66437 4 months ago |
151-51293 151 days ago |
0-13581 3 hours |
| 37111 |
tannerduve author:tannerduve |
feat(Computability): add Nat.PrimrecIn and PrimrecIn |
- Add `Nat.PrimrecIn`: primitive recursive functions relative to a set of oracles
- Add `PrimrecIn`: lifts `Nat.PrimrecIn` to `Primcodable` types
A `PrimrecIn` version of `RecursiveIn.iff_nat` (i.e., `PrimrecIn O (f : ℕ → ℕ) ↔ Nat.PrimrecIn O f`) is left as future work as it requires proving `Nat.PrimrecIn O Nat.pred`, which needs additional API for `Nat.PrimrecIn`.
---
Split out from #34937 as requested in review.
- [x] depends on: #37061 |
t-computability
new-contributor
awaiting-author
|
24/0 |
Mathlib/Computability/RecursiveIn.lean |
1 |
14 |
['Komyyy', 'bryangingechen', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'tannerduve'] |
nobody |
142-33561 4 months ago |
143-46420 143 days ago |
1-79421 1 day |
| 35662 |
FrankieeW author:FrankieeW |
feat(NumberTheory/Zsqrtd): add Archimedean instance via le_arch |
This PR follows a suggestion made in #35606 , #35481
- add `Zsqrtd.le_arch_smul` in `Mathlib/NumberTheory/Zsqrtd/Basic.lean`
- use it to provide `instance : Archimedean (ℤ√d)` in the `Nonsquare` section
- refactor the proof using symmetry to reduce duplication while keeping checks clean
---
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-->
[](https://gitpod.io/from-referrer/)
|
t-number-theory
new-contributor
awaiting-author
merge-conflict
LLM-generated
|
46/4 |
Mathlib/NumberTheory/PellMatiyasevic.lean,Mathlib/NumberTheory/Zsqrtd/Basic.lean |
2 |
13 |
['FrankieeW', 'MichaelStollBayreuth', 'euprunin', 'github-actions', 'mathlib-merge-conflicts', 'tb65536'] |
MichaelStollBayreuth assignee:MichaelStollBayreuth |
139-47152 4 months ago |
173-60135 173 days ago |
15-50831 15 days |
| 33032 |
ksenono author:ksenono |
feat(Combinatorics/SimpleGraph): Konig’s theorem on bipartite graphs |
---
<!-- Your PR title will become the first line of the commit message.
Three additions:
* Combinatorics/SimpleGraph/Konig/Auxillary.lean
* Combinatorics/SimpleGraph/Konig/KonigFin.lean
* Combinatorics/SimpleGraph/Konig/Konig.lean
(all other changes are rebased from the PRs below)
- [ ] depends on: #30129
- [ ] depends on: #32552
- [ ] depends on: #32555
- [ ] depends on: #32570
-->
[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
blocked-by-other-PR
merge-conflict
|
832/251 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/Bipartite.lean,Mathlib/Combinatorics/SimpleGraph/Clique.lean,Mathlib/Combinatorics/SimpleGraph/DegreeSum.lean,Mathlib/Combinatorics/SimpleGraph/Konig/Auxillary.lean,Mathlib/Combinatorics/SimpleGraph/Konig/Konig.lean,Mathlib/Combinatorics/SimpleGraph/Konig/KonigFin.lean,Mathlib/Combinatorics/SimpleGraph/Matching.lean,Mathlib/Combinatorics/SimpleGraph/Subgraph.lean,Mathlib/Combinatorics/SimpleGraph/VertexCover.lean,Mathlib/SetTheory/Cardinal/Arithmetic.lean,Mathlib/SetTheory/Cardinal/Basic.lean |
12 |
9 |
['SnirBroshi', 'github-actions', 'ksenono', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot', 'vlad902'] |
nobody |
139-21714 4 months ago |
255-81002 255 days ago |
0-136 2 minutes |
| 33330 |
michael-novak-math author:michael-novak-math |
feat: add arc-length reparametrization of parametrized curves |
add new definitions of arc-length reparametrization and its corresponding parameter transformation and a theorem establishing the desired properties. |
t-analysis
new-contributor
awaiting-author
|
308/0 |
Mathlib.lean,Mathlib/Analysis/Calculus/ArcLengthReparametrization.lean,Mathlib/MeasureTheory/Integral/IntervalIntegral/FundThmCalculus.lean,docs/references.bib |
4 |
57 |
['SnirBroshi', 'github-actions', 'grunweg', 'j-loreaux', 'mathlib-merge-conflicts', 'mathlib4-merge-conflict-bot', 'michael-novak-math'] |
j-loreaux assignee:j-loreaux |
136-63196 4 months ago |
159-77963 159 days ago |
6-70192 6 days |
| 33217 |
Blackfeather007 author:Blackfeather007 |
feat(Algebra): define associated graded structure for abelian group |
In this PR we define the associated graded structure for abelian group when given a filtration and only give some basic lemmas about it.
---
migrated from https://github.com/leanprover-community/mathlib4/pull/26857
|
new-contributor
t-ring-theory
awaiting-author
|
144/0 |
Mathlib.lean,Mathlib/RingTheory/FilteredAlgebra/AssociatedGraded.lean |
2 |
13 |
['Blackfeather007', 'chrisflav', 'erdOne', 'eric-wieser', 'github-actions', 'urkud'] |
erdOne assignee:erdOne |
136-52691 4 months ago |
246-32109 246 days ago |
4-57005 4 days |
| 37938 |
SamuelSchlesinger author:SamuelSchlesinger |
feat(Probability/Posterior): Posterior PMFs and Various Lemmas |
Upstreaming the probability lemmas needed in https://github.com/leanprover/cslib/pull/464. |
t-measure-probability
new-contributor
awaiting-author
|
130/0 |
Mathlib.lean,Mathlib/Probability/ProbabilityMassFunction/Posterior.lean |
2 |
6 |
['EtienneC30', 'SamuelSchlesinger', 'github-actions'] |
RemyDegenne assignee:RemyDegenne |
136-26790 4 months ago |
137-60234 137 days ago |
0-4089 1 hour |
| 38139 |
sidbedi author:sidbedi |
chore(Algebra/MvPolynomial/Variables): golf MvPolynomial.vars_0 to rfl |
---
The classical qualifier and explicit rewrite chain are unnecessary — the result holds definitionally.
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-algebra
awaiting-author
label:t-algebra$ |
1/2 |
Mathlib/Algebra/MvPolynomial/Variables.lean |
1 |
3 |
['github-actions', 'grunweg'] |
nobody |
135-71250 4 months ago |
135-71250 135 days ago |
0-34567 9 hours |
| 38140 |
sidbedi author:sidbedi |
chore(Data/Analysis/Filter): golf CFilter.ofEquiv_val to rfl |
---
cases F is unnecessary, the result holds definitionally.
[](https://gitpod.io/from-referrer/)
|
t-data
new-contributor
awaiting-author
|
1/2 |
Mathlib/Data/Analysis/Filter.lean |
1 |
3 |
['github-actions', 'grunweg'] |
nobody |
135-71206 4 months ago |
135-71206 135 days ago |
0-34488 9 hours |
| 38053 |
ntapiam author:ntapiam |
feat(Analysis/Controls): add Control functions |
Add Control functions
----
This PR adds Control functions in the sense of rough paths theory (see e.g. [Friz-Victoir, Section 1.2.1](https://page.math.tu-berlin.de/~friz/master4_May6th.pdf)).
They are related to p-variation norms which are the goal of #38055.
I've shown most results in the above reference though those relating to 1-variation are still a work in progress.
I had to add a few statements about convex functions in order to work over NNReal instead or Real, but I am not sure this is the best way to do it. The reason is that I've defined controls as taking values in NNReal (as they should).
In particular there is
```lean4
theorem nnreal_of_real {f : ℝ≥0 → ℝ≥0}
(hf : ConvexOn ℝ (Set.Ici 0) fun x : ℝ => (f x.toNNReal : ℝ)) : ConvexOn ℝ≥0 ⊤ f
```
which I didn't know where to put. It probably holds in more generality but I didn't check.
I have also included two versions of Controls, one global and one restricted to a set. I tried to follow Mathlib conventions as best as I could but perhaps that could be improved as well.
<!-- Your PR title will become the first line of the commit message.
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[](https://gitpod.io/from-referrer/)
|
WIP
t-analysis
new-contributor
|
571/1 |
Mathlib.lean,Mathlib/Analysis/Controls/BoundedVariation.lean,Mathlib/Analysis/Controls/ControlOn.lean,Mathlib/Analysis/Controls/Defs.lean,Mathlib/Analysis/Convex/Function.lean,docs/references.bib |
6 |
4 |
['github-actions', 'ntapiam'] |
nobody |
132-65703 4 months ago |
138-30886 138 days ago |
0-52 52 seconds |
| 36853 |
matthunz author:matthunz |
feat(CategoryTheory/Monoidal/Braded/Traced): add `TracedCategory` class |
Adds a `TracedCategory` class following [A. Joyal and R. Street and D. R. Verity, *Traced monoidal categories*](https://www.cambridge.org/core/journals/mathematical-proceedings-of-the-cambridge-philosophical-society/article/abs/traced-monoidal-categories/2BE85628D269D9FABAB41B6364E117C8#article):
```lean
/-- A traced symmetric monoidal category. -/
class TracedCategory
(C : Type u)
[Category.{v} C]
[MonoidalCategory.{v} C]
[SymmetricCategory.{v} C] where
/-- The trace operator. -/
trace : ∀ {A B : C} (W : C), (A ⊗ W ⟶ B ⊗ W) → (A ⟶ B)
/-- Left tightening: sliding a morphism past the trace on the left. -/
trace_naturality_left : ∀ {A A' B : C} (W : C) (f : A' ⟶ A) (g : A ⊗ W ⟶ B ⊗ W),
trace W (f ▷ W ≫ g) = f ≫ trace W g := by cat_disch
/-- Right tightening: sliding a morphism past the trace on the right. -/
trace_naturality_right : ∀ {A B B' : C} (W : C) (f : A ⊗ W ⟶ B ⊗ W) (g : B ⟶ B'),
trace W (f ≫ g ▷ W) = trace W f ≫ g := by cat_disch
/-- Sliding: an endomorphism on the feedback wire slides past the trace. -/
trace_dinaturality : ∀ {A B W : C} (f : A ⊗ W ⟶ B ⊗ W) (h : W ⟶ W),
trace W (f ≫ B ◁ h) = trace W (A ◁ h ≫ f) := by cat_disch
/-- Superposing: trace commutes with left tensoring by a bystander object. -/
trace_superposing : ∀ {A B : C} (C' W : C) (f : A ⊗ W ⟶ B ⊗ W),
C' ◁ trace W f = trace W ((α_ C' A W).hom ≫ C' ◁ f ≫ (α_ C' B W).inv) := by cat_disch
/-- Vanishing I: trace over the tensor unit is the morphism itself (up to unitors). -/
trace_vanishing_one : ∀ {A B : C} (f : A ⊗ 𝟙_ C ⟶ B ⊗ 𝟙_ C),
trace (𝟙_ C) f = (ρ_ A).inv ≫ f ≫ (ρ_ B).hom := by cat_disch
/-- Vanishing II: trace over a tensor product equals iterated trace. -/
trace_vanishing_two : ∀ {A B X Y : C} (f : A ⊗ (X ⊗ Y) ⟶ B ⊗ (X ⊗ Y)),
trace (X ⊗ Y) f = trace X (trace Y ((α_ A X Y).hom ≫ f ≫ (α_ B X Y).inv)) := by cat_disch
/-- Yanking: the trace of the braiding is the identity. -/
trace_yanking : ∀ (W : C), trace W (β_ W W).hom = 𝟙 W := by cat_disch
```
## Motivation
`TracedCategory` can be used for denoting things like electric circuits, which require a traced symmetric monoidal category for the wire graph network.
## Future work
- `instance [CompactClosedCategory C] : TracedCategory C`
- possible notation such as `Tr_[W] f`
---
<!-- Your PR title will become the first line of the commit message.
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Moves:
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Deletions:
- Nat.bit1_add_bit1
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below the `---`, and placed outside this HTML comment, or else they
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using the following format:
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- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
t-category-theory
new-contributor
awaiting-author
merge-conflict
|
237/0 |
Mathlib.lean,Mathlib/CategoryTheory/Monoidal/Braided/Traced.lean,Mathlib/CategoryTheory/Monoidal/Rigid/Traced.lean,docs/references.bib |
4 |
5 |
['dagurtomas', 'github-actions', 'mathlib-merge-conflicts', 'matthunz'] |
nobody |
128-45704 4 months ago |
164-35267 164 days ago |
0-25956 7 hours |
| 36850 |
whocares-abt author:whocares-abt |
feat(Combinatorics/SimpleGraph/Acyclic): deleting leaves from a tree gives a tree |
Added theorem stating Deleting a leaf from a tree produces a tree. |
t-combinatorics
new-contributor
awaiting-author
|
5/0 |
Mathlib/Combinatorics/SimpleGraph/Acyclic.lean |
1 |
9 |
['YaelDillies', 'github-actions', 'vlad902'] |
YaelDillies assignee:YaelDillies |
125-76982 4 months ago |
125-77092 125 days ago |
38-73648 38 days |
| 26300 |
igorkhavkine author:igorkhavkine |
feat(Analysis/Calculus/FDeriv): continuous differentiability from continuous partial derivatives on an open domain in a product space |
If a function `f : E × F → G` is continuously differentiable, then its partial derivatives along `E` and `F` are also continuous. The non-trivial converse implication holds when the partial derivatives are continuous on an open domain, and they can be added together to give the total derivative of `f`. See this [#mathlib4 > Partial derivatives @ 💬](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Partial.20derivatives/near/520995477) and the containing thread for some discussion. The PR creates a new import (`Mathlib.Analysis.Calculus.FDeriv.Partial`), where other results about partial derivatives could go in the future.
---
*this is the migration of #25304 to the PR-from-fork workflow*
- [x] depends on: #25564
- [x] depends on: #26273
[](https://gitpod.io/from-referrer/)
|
WIP
new-contributor
awaiting-author
t-analysis
|
347/4 |
Mathlib/Analysis/Calculus/FDeriv/Partial.lean |
1 |
23 |
['YaelDillies', 'agjftucker', 'github-actions', 'igorkhavkine', 'mathlib-merge-conflicts', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot', 'sgouezel'] |
sgouezel assignee:sgouezel |
125-73306 4 months ago |
381-41758 381 days ago |
44-77030 44 days |
| 37774 |
weisbrja author:weisbrja |
fix: change variables in `bicompl` to `Sort*` and add missing theorem mentioned in `bicompl` docs |
[#mathlib4 > Why does Mathlib use Type* instead of Sort* in some places?](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Why.20does.20Mathlib.20use.20Type.2A.20instead.20of.20Sort.2A.20in.20some.20places.3F/with/583882342)
---
<!-- Your PR title will become the first line of the commit message.
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-->
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-logic
merge-conflict
|
6/1 |
Mathlib/Logic/Function/Basic.lean |
1 |
8 |
['github-actions', 'kbuzzard', 'leanprover-radar', 'mathlib-merge-conflicts', 'weisbrja'] |
nobody |
125-40109 4 months ago |
125-40110 125 days ago |
19-76858 19 days |
| 31670 |
edwin1729 author:edwin1729 |
feat(Topology/Order): Scott Topology is Sober over Algebraic DCPO |
---
[Zulip discussion](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/.3E.20Algebraic.20complete.20partial.20order.20and.20domain.20theory/with/536359313) here
(2/2) PR to prove result in Stone Duality. Here we prove that Scott Topologies over Algebraic DCPOs are sober.
- [ ] depends on: #31662
<!-- The text above the `---` will become the commit message when your
PR is merged. Please leave a blank newline before the `---`, otherwise
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Moves:
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- ...
Deletions:
- Nat.bit1_add_bit1
- ...
Any other comments you want to keep out of the PR commit should go
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-->
[](https://gitpod.io/from-referrer/)
|
t-topology
blocked-by-other-PR
new-contributor
merge-conflict
|
456/1 |
Mathlib.lean,Mathlib/Topology/Order/ScottTopology.lean,Mathlib/Topology/Order/ScottTopologyDCPO.lean,docs/references.bib |
4 |
5 |
['github-actions', 'mathlib-merge-conflicts', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
125-26498 4 months ago |
unknown |
0-0 0 seconds |
| 37445 |
edwin1729 author:edwin1729 |
feat(Topology/Order): set of compact elements, generating basic opens contained in a `Locale.PT`, is directed |
This is (2/4) PRs culminating in a proof that "Scott Topologies over Algebraic DCPOs are Sober". In this PR we prove properties of a certain set of compact elements, w.r.t a `Locale.PT`.
A `Locale.PT` can be thought of as a set of `Opens`. Precisely it is a Frame homomorphism from `Opens _` to `Prop` so we are essentially choosing certain `Opens` to form our set and this set has additional properties. Namely it is a completely prime filter: if the supremum of some Opens is contained than atleast one of the Opens must be contained.
Take some `Locale.PT`, `x`. In this PR, we prove that the set of compact elements generating basic opens (compact elements generate topological basis see #31662) contained in `x` is directed.
This set of compact elements defined above is important in subsequent parts of the proof since it fully determines `x`.
- [ ] depends on: #31662
---
<!-- 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:
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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-topology
blocked-by-other-PR
new-contributor
merge-conflict
|
296/1 |
Mathlib.lean,Mathlib/Topology/Order/ScottTopology.lean,Mathlib/Topology/Order/ScottTopologyDCPO.lean,docs/references.bib |
4 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
125-23031 4 months ago |
152-47509 152 days ago |
0-463 7 minutes |
| 37556 |
edwin1729 author:edwin1729 |
feat(Topology/Order): Locale.localePointOfSpacePoint if we have a Scott Topology from an Algebraic DCPO |
(3/4) in a series of PRs proving that "Scott Topologies over Algebraic DCPOs are Sober"
We prove here that the unit of the adjunction from `TopCat` to `Locale` defined in `Topology/Order/Category/FrameAdjunction.lean` is a surjective mapping, under the following condition:
The underlying TopologicalSpace must be a Scott Topology generated with an underlying Algebraic DCPO structure.
- [ ] depends on: #37445
---
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|
t-topology
new-contributor
blocked-by-other-PR
merge-conflict
|
393/1 |
Mathlib.lean,Mathlib/Topology/Order/ScottTopology.lean,Mathlib/Topology/Order/ScottTopologyDCPO.lean,docs/references.bib |
4 |
5 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
125-23030 4 months ago |
150-47530 150 days ago |
0-1300 21 minutes |
| 37814 |
sglasman author:sglasman |
feat: Equivalence between HopfAlgCat R and Hopf (ModuleCat R) |
This PR resolves a TODO by demonstrating an equivalence of categories between two models of the category of Hopf algebras over a commutative ring R, that of Hopf objects in the module category of R and that of types with a `HopfAlgebra R` instance.
---
AI declaration: I consulted with Claude on proof strategies. The proofs were ultimately written by me.
|
new-contributor
large-import
t-category-theory
WIP
|
214/4 |
Mathlib/CategoryTheory/Monoidal/Hopf_.lean,Mathlib/RingTheory/HopfAlgebra/Basic.lean |
2 |
5 |
['dagurtomas', 'github-actions', 'robin-carlier', 'sglasman'] |
kim-em assignee:kim-em |
124-794 4 months ago |
129-49657 129 days ago |
14-69757 14 days |
| 33478 |
anishrajeev author:anishrajeev |
feat(ModelTheory): define a subset of the topology over complete types |
Define a subset of the Stone Space over a language expanded with countably many constants. Define the proposition to indicate if a language is countable. The subset's density and openness is a future goal to prove (have a branch where it is almost finished), in pursuit of formalizing the proof of the Omitting Types Theorem via properties of Baire spaces.
- [ ] depends on: #32215
- [ ] depends on: #32546 |
t-logic
merge-conflict
new-contributor
|
160/1 |
Mathlib.lean,Mathlib/ModelTheory/Topology/Types.lean,Mathlib/ModelTheory/Types.lean,Mathlib/Tactic/Linter/DirectoryDependency.lean |
4 |
8 |
['NoneMore', 'anishrajeev', 'github-actions', 'mathlib-dependent-issues', 'mathlib4-merge-conflict-bot', 'tb65536'] |
nobody |
123-47034 4 months ago |
230-60575 230 days ago |
10-38484 10 days |
| 33431 |
gululu996-ui author:gululu996-ui |
feat(Combinatorics/SimpleGraph/Bipartite): characterize bipartite simple graphs by even cycles |
Add the classical characterization of bipartite simple graphs: a simple graph is bipartite if and only if every cycle has even length.
Previously, mathlib has the definition of `IsBipartite` for `SimpleGraph` and various lemmas about bipartite graphs, but it does not provide this equivalence in a single theorem, so users have to reprove or reassemble it from existing results.
Prove the forward direction by showing a 2-coloring alternates along any walk, so every cycle must have even length. Prove the converse by showing that if an odd cycle exists then no bipartition is possible, hence if all cycles are even the graph admits a bipartition.
|
new-contributor
t-combinatorics
awaiting-author
merge-conflict
|
186/1 |
Mathlib/Combinatorics/SimpleGraph/Bipartite.lean |
1 |
6 |
['NickAdfor', 'github-actions', 'jcommelin', 'mathlib-merge-conflicts'] |
kmill assignee:kmill |
123-31232 4 months ago |
212-59875 212 days ago |
26-1427 26 days |
| 34940 |
michaellee94 author:michaellee94 |
feat: the graph of a continuous function on a $C^n$ manifold is a $C^n$ manifold |
---
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|
t-differential-geometry
new-contributor
awaiting-author
merge-conflict
|
536/0 |
Mathlib.lean,Mathlib/Geometry/Manifold/ChartedSpace.lean,Mathlib/Geometry/Manifold/Instances/Graph.lean,Mathlib/Geometry/Manifold/IsManifold/Basic.lean,Mathlib/Topology/Constructions/Graph.lean |
5 |
80 |
['botbaki-review', 'github-actions', 'grunweg', 'mathlib-merge-conflicts', 'michaellee94', 'ocfnash'] |
ocfnash assignee:ocfnash |
123-29950 4 months ago |
180-31032 180 days ago |
15-3231 15 days |
| 35193 |
Brian-Nugent author:Brian-Nugent |
feat(Topology/Closeds): implement category of closed sets in topological spaces |
I copied over the nice API for working with `TopologicalSpace.Opens` as a category over for `TopologicalSpace.Closeds`. The only thing that did not immediately transfer was `Topology.IsInducing.functorObj` so I omitted it.
Based on work of @kim-em
---
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|
t-topology
new-contributor
please-adopt
merge-conflict
|
352/6 |
Mathlib.lean,Mathlib/Topology/Category/TopCat/Closeds.lean,Mathlib/Topology/Category/TopCat/Opens.lean |
3 |
24 |
['Brian-Nugent', 'dagurtomas', 'github-actions', 'mathlib-merge-conflicts'] |
dagurtomas assignee:dagurtomas |
123-29825 4 months ago |
163-50338 163 days ago |
17-63465 17 days |
| 36387 |
FrankieeW author:FrankieeW |
feat(NumberTheory/QuadraticField): parameter uniqueness for quadratic fields |
## Summary
Prove that every quadratic field `ℚ(√d)` can be normalized to have a squarefree integer parameter, and that this parameter is unique.
## Main Results
- `Qsqrtd.rescale`: rescaling isomorphism `ℚ(√d) ≃ₐ[ℚ] ℚ(√(a²d))` for `a ≠ 0`
- `Qsqrtd_iso_int_param`: every `ℚ(√d)` is isomorphic to one with an integer parameter
- `Qsqrtd_iso_squarefree_int_param`: every `ℚ(√d)` is isomorphic to one with a squarefree integer parameter
- `Qsqrtd.param_unique`: if `ℚ(√d₁) ≃ₐ[ℚ] ℚ(√d₂)` with both `d₁, d₂` squarefree and `≠ 1`, then `d₁ = d₂`
## Helper Lemmas
- `squarefree_eq_of_rat_sq_mul`: if `d₁ = d₂ · r²` with both squarefree, then `d₁ = d₂`
- `int_dvd_of_ratio_square`: if `d₁/d₂` is a rational square and `d₂` is squarefree, then `d₂ ∣ d₁`
- `not_isSquare_neg_one_rat`: `-1` is not a square in `ℚ`
---
- [ ] depends on: #36347 |
WIP
t-number-theory
blocked-by-other-PR
new-contributor
large-import
LLM-generated
|
400/0 |
Mathlib.lean,Mathlib/Algebra/QuadraticAlgebra/Defs.lean,Mathlib/Algebra/Squarefree/Basic.lean,Mathlib/NumberTheory/QuadraticField/Basic.lean |
4 |
4 |
['FrankieeW', 'github-actions', 'mathlib-dependent-issues'] |
nobody |
121-47688 3 months ago |
175-5540 175 days ago |
0-2 2 seconds |
| 35755 |
Vilin97 author:Vilin97 |
feat(Analysis/ODE): forward Euler method convergence |
WIP
Prove the convergence of the Forward Euler Method. This is the first theorem in most textbooks on numerical analysis for ODEs.
---
The initial proof was produced by [Aristotle](https://aristotle.harmonic.fun). The code was then iteratively refined (factoring out lemmas, golfing, simplifying proofs) using Claude Code (Claude Opus 4.6).
* [ ] depends on: #35753 |
new-contributor
WIP
LLM-generated
merge-conflict
|
404/0 |
Mathlib.lean,Mathlib/Analysis/ODE/EulerMethod.lean,Mathlib/Topology/Algebra/Order/PiecewiseLinear.lean |
3 |
7 |
['Vilin97', 'eric-wieser', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
121-31949 3 months ago |
186-77960 186 days ago |
0-674 11 minutes |
| 36347 |
FrankieeW author:FrankieeW |
feat(NumberTheory/QuadraticField): define quadratic number fields as QuadraticAlgebra ℚ d 0 |
Define `Qsqrtd d` as `QuadraticAlgebra ℚ d 0`, representing the quadratic number field `ℚ(√d)`. Prove trace and norm results, show `Qsqrtd d` is a number field and a quadratic extension when `d` is not a perfect square, and prove that `ℚ(√0)` and `ℚ(√1)` are not fields. Include `IsQuadraticField` as a predicate for quadratic extensions of `ℚ`, and bridge lemmas connecting squarefree integer parameters to the non-square condition.
This PR is part of a series upstreaming the [QuadraticNumberFields](https://github.com/FrankieeW/QuadraticNumberFields) project.
[Zulip discussion](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/quadratic.20number.20fields)
---
### PRs
- #36347 (this PR)
- #36387
---
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t-number-theory
new-contributor
large-import
awaiting-author
LLM-generated
|
191/0 |
Mathlib.lean,Mathlib/Algebra/QuadraticAlgebra/Defs.lean,Mathlib/Algebra/Squarefree/Basic.lean,Mathlib/NumberTheory/QuadraticField/Basic.lean |
4 |
29 |
['FrankieeW', 'eric-wieser', 'github-actions', 'riccardobrasca', 'tb65536', 'wwylele'] |
tb65536 assignee:tb65536 |
121-27269 3 months ago |
167-54308 167 days ago |
7-10039 7 days |
| 32880 |
0xTerencePrime author:0xTerencePrime |
feat(Analysis/Asymptotics): define subpolynomial growth |
## Main definitions
* `Asymptotics.IsSubpolynomial l f g`: A function `f` has subpolynomial growth with respect to `g` along filter `l` if `f = O(1 + ‖g‖^k)` for some natural `k`.
## Main results
* `IsSubpolynomial.const`: Constant functions have subpolynomial growth
* `IsSubpolynomial.id`: Identity has subpolynomial growth
* `IsSubpolynomial.add`: Closure under addition
* `IsSubpolynomial.neg`: Closure under negation
* `IsSubpolynomial.sub`: Closure under subtraction
* `IsSubpolynomial.mul`: Closure under multiplication
* `IsSubpolynomial.pow`: Closure under powers
* `isSubpolynomial_iff_one_add`: Equivalence with `(1 + ‖g‖)^k` formulation
* `IsSubpolynomial.uniform`: Uniform bounds for finite families
## Implementation notes
The definition uses `1 + ‖g‖^k` rather than `(1 + ‖g‖)^k` as the primary form, with the equivalence established in `isSubpolynomial_iff_one_add`. Four private auxiliary lemmas handle the key inequalities needed for closure proofs.
Closes #32658
|
awaiting-author
t-analysis
new-contributor
|
184/0 |
Mathlib.lean,Mathlib/Analysis/Asymptotics/Subpolynomial.lean |
2 |
29 |
['0xTerencePrime', 'ADedecker', 'github-actions', 'j-loreaux'] |
ADedecker assignee:ADedecker |
119-73605 3 months ago |
230-39176 230 days ago |
22-22665 22 days |
| 38750 |
openendings author:openendings |
feat(Data/Nat): add padicValNat_add_eq_min |
Add lemmas for `padicValNat` mirroring the [e]multiplicity API, including
- padicValNat_eq_of_dvd_of_not_dvd
- padicValNat_add_of_gt
- padicValNat_add_eq_min
---
[](https://gitpod.io/from-referrer/)
|
t-data
new-contributor
awaiting-author
|
36/0 |
Mathlib/Data/Nat/MaxPowDiv.lean |
1 |
7 |
['Ruben-VandeVelde', 'github-actions', 'openendings'] |
nobody |
118-80047 3 months ago |
119-19143 119 days ago |
3-62762 3 days |
| 38170 |
maddycrim author:maddycrim |
feat(Algebra/Module/FinitePresentation): Finitely Presented Module Lemma |
From FLT Project
Main Definitions:
`Module.FinitePresentation.exists_fin_exact` : A finitely presented module M admits an exact sequence F' -> F -> M -> 0 where F' and F are finite free modules.
---
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|
t-algebra
new-contributor
awaiting-author
label:t-algebra$ |
9/0 |
Mathlib/Algebra/Module/FinitePresentation.lean |
1 |
17 |
['chrisflav', 'github-actions', 'maddycrim', 'themathqueen', 'vlad902'] |
nobody |
117-78378 3 months ago |
117-78378 117 days ago |
17-43852 17 days |
| 36896 |
PieterCuijpers author:PieterCuijpers |
feat (Algebra/Order/Quantale): isMulLeftsided, isMulRightsided, isMulTwosided and strict versions |
* Adding definitions of quantale elements being leftsided, rightsided, and twosided, and strict versions
Should we include these definitions in the main Algebra/Order/Quantale.lean file, or start a separate file for them?
I have a few basic theorems I would like to include on these notions, but invite suggestions.
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
awaiting-author
label:t-algebra$ |
81/1 |
Mathlib/Algebra/Order/Quantale.lean |
1 |
5 |
['NoahW314', 'PieterCuijpers', 'chrisflav', 'github-actions'] |
mariainesdff assignee:mariainesdff |
117-59523 3 months ago |
124-51778 124 days ago |
39-18222 39 days |
| 38960 |
ajhendel author:ajhendel |
chore: remove ℕ+ interval_cases workaround in ADEInequality |
`interval_cases` now supports `ℕ+`, so the manual `Finset.mem_Iio`/`Finset.mem_Ico` + `conv` + `fin_cases` workaround (marked with a porting note) is no longer needed.
Replaces three 3-4 line workaround blocks with `interval_cases p`/`q`/`r`. |
t-number-theory
new-contributor
awaiting-CI
|
3/10 |
Mathlib/NumberTheory/ADEInequality.lean |
1 |
2 |
['github-actions'] |
nobody |
116-62074 3 months ago |
117-63006 117 days ago |
0-105 1 minute |
| 32742 |
LTolDe author:LTolDe |
feat(MeasureTheory/Constructions/Polish/Basic): add class SuslinSpace |
add new class `SuslinSpace` for a topological space that is an analytic set in itself
This will be useful to prove the **Effros Theorem**, see [zulip thread](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Effros.20Theorem/with/558712441).
---
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[](https://gitpod.io/from-referrer/)
|
new-contributor
awaiting-zulip
t-measure-probability
awaiting-author
|
4/0 |
Mathlib/MeasureTheory/Constructions/Polish/Basic.lean |
1 |
10 |
['ADedecker', 'LTolDe', 'dagurtomas', 'dupuisf', 'github-actions', 'jcommelin'] |
PatrickMassot assignee:PatrickMassot |
115-33269 3 months ago |
236-52670 236 days ago |
11-7507 11 days |
| 39108 |
idontgetoutmuch author:idontgetoutmuch |
feat(Geometry/Manifold/GroupLieAlgebra): Add mfderiv_mul_left_mul and left-translate for integral curves |
Add the following:
`mfderiv_mul_left_mul`: the derivative of left-multiplication satisfies a chain rule:
$$d(L_{g \cdot h})_x = d(L_g)_{h \cdot x} \circ d(L_h)_x$$
`mulInvariantVectorField_mul`: the vector field at the translated point is the push forward of the vector field:
$$V(g \cdot h) = d(L_g)_h(V(h))$$
`IsMIntegralCurve.left_translate`: using these, if $\gamma$ is an integral curve of $V$, then so is $t \mapsto g \bullet \gamma(t)$ for any $g \in G$, since:
$$\frac{d}{dt}(g \bullet \gamma(t)) = d(L_g)_{\gamma(t)}\left(\frac{d\gamma}{dt}(t)\right) = d(L_g)_{\gamma(t)}(V(\gamma(t))) = V(g \bullet \gamma(t))$$
I argue (*) all the time with LLMs so this PR will certainly have had some input from them. Is that enough of a disclosure?
(*) Like Lewis Carroll:
In my youth said the sage I took to the law and argued each case with wife
And the muscular strength that it gave to my jaw has lasted the rest of my life
|
t-differential-geometry
new-contributor
awaiting-author
LLM-generated
|
73/0 |
Mathlib/Geometry/Manifold/GroupLieAlgebra.lean |
1 |
8 |
['github-actions', 'grunweg'] |
nobody |
113-43245 3 months ago |
113-43310 113 days ago |
0-37992 10 hours |
| 39151 |
anovickis author:anovickis |
feat(Analysis/CStarAlgebra/Matrix): IsTopologicalGroup for specialUnitaryGroup |
Adds `ContinuousInv` and `IsTopologicalGroup` instances for `Matrix.specialUnitaryGroup n 𝕜`.
The unitary group `Matrix.unitaryGroup n α` already inherits these via the `unitaryGroup ≡ unitary R` abbrev + existing instances on `unitary R` (in `Mathlib/Topology/Algebra/Star/Unitary.lean`). However, `specialUnitaryGroup` is the sub-Submonoid `unitaryGroup ⊓ MonoidHom.mker detMonoidHom` — it does not auto-inherit those instances since it is not literally an alias of `unitary R`.
### New declarations
- `instance Matrix.specialUnitaryGroup.instContinuousInv` — proven via `Matrix.star_eq_inv` + `continuous_star`
- `instance Matrix.specialUnitaryGroup.instIsTopologicalGroup` — combining `ContinuousMul` (from Submonoid structure) + `ContinuousInv`
Both placed inside the existing `EntrywiseSupNorm` section in `Mathlib/Analysis/CStarAlgebra/Matrix.lean` (the natural neighborhood for matrix-specific topological structure on (special) unitary groups).
### Motivation
These instances enable using `specialUnitaryGroup` as a topological group in homogeneous-space constructions (e.g., `SU(3) ⧸ T = F₂` flag manifolds). They complement #39146 (CompactSpace instances for the same groups) — together giving the standard 'compact topological group' typeclass set on `specialUnitaryGroup`.
### Verification
\`\`\`lean
example : ContinuousInv (Matrix.specialUnitaryGroup (Fin 3) ℂ) := inferInstance -- now works
example : IsTopologicalGroup (Matrix.specialUnitaryGroup (Fin 3) ℂ) := inferInstance -- now works
\`\`\`
Both fail on master without this PR; both succeed after. |
t-analysis
new-contributor
awaiting-author
|
30/0 |
Mathlib/Analysis/CStarAlgebra/Matrix.lean |
1 |
3 |
['github-actions', 'j-loreaux', 'wwylele'] |
nobody |
112-32369 3 months ago |
112-32369 112 days ago |
0-3921 1 hour |
| 39191 |
m13683320924-hue author:m13683320924-hue |
feat: define Asymptotics.IsSubpolynomial |
This PR defines `Asymptotics.IsSubpolynomial l f g`, meaning that `f` is asymptotically bounded by `1 + ‖g‖ ^ k` for some `k : ℕ`.
It also adds basic closure lemmas for constants, addition, multiplication, and natural powers.
Towards #32658.
The formalization was developed with the help of Doubao-Seed-2.0-code and manually checked in Lean.
---
<!-- 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:
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If you are moving or deleting declarations, please include these lines
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-->
[](https://gitpod.io/from-referrer/) |
t-analysis
new-contributor
|
259/0 |
Mathlib.lean,Mathlib/Analysis/Asymptotics/Subpolynomial.lean |
2 |
3 |
['github-actions'] |
nobody |
111-58327 3 months ago |
111-69288 111 days ago |
0-344 5 minutes |
| 39213 |
m13683320924-hue author:m13683320924-hue |
feat: define maximal cliques and independent sets |
This PR adds explicit predicates for maximal cliques and maximal independent sets:
- `SimpleGraph.IsMaximalClique`
- `SimpleGraph.IsMaximalIndepSet`
It also adds conversion lemmas to and from the existing `Maximal G.IsClique` and `Maximal G.IsIndepSet` formulations, plus basic complement and maximum-to-maximal lemmas.
Towards #34962.
The formalization was developed with the help of Doubao-Seed-2.0-code and manually checked in Lean.
---
<!-- 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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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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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:
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-->
[](https://gitpod.io/from-referrer/) |
t-combinatorics
new-contributor
LLM-generated
|
60/22 |
Mathlib/Combinatorics/SimpleGraph/Clique.lean |
1 |
3 |
['SnirBroshi', 'github-actions'] |
nobody |
111-37734 3 months ago |
111-45563 111 days ago |
0-389 6 minutes |
| 39165 |
allenhaozhu author:allenhaozhu |
feat(Probability/Moments): add IsSubExponential class |
Add `ProbabilityTheory.IsSubExponential X μ ν b`, the sub-exponential random variable class: `mgf X μ s ≤ exp (s²ν/2)` for `|s| < 1/b`. Mirror the structure of the existing `Mathlib/Probability/Moments/SubGaussian.lean`. Include constructor lemmas (`IsSubExponential.const`, `mono_b`, `mono_nu`) and a tail bound derived through Mathlib's `measure_ge_le_exp_mul_mgf`.
---
## AI-assistance disclosure
Per the Mathlib [AI-use policy](https://leanprover-community.github.io/contribute/index.html#use-of-ai):
- **Tool.** Claude Code (Anthropic) with the Claude Sonnet 4.6 model.
- **Use.** I specified the target lemma statements and the proof strategy; the assistant drafted Lean 4 tactic combinations against current Mathlib. I iterated on the proofs, verified each lemma builds under `lake build` from a clean checkout, and read the final code.
- **Vouching.** I have read every declaration in this file and can defend the proofs without further AI assistance. I welcome reviewer feedback on naming, namespace placement, and stylistic alignment with the surrounding Mathlib modules. |
t-measure-probability
new-contributor
LLM-generated
awaiting-author
|
257/0 |
Mathlib.lean,Mathlib/Probability/Moments/SubExponential.lean |
2 |
4 |
['allenhaozhu', 'github-actions', 'grunweg'] |
nobody |
110-64211 3 months ago |
111-73854 111 days ago |
0-2698 44 minutes |
| 39168 |
allenhaozhu author:allenhaozhu |
feat(Analysis/Convex/Subgradient): add subgradient characterization for |·| and ℓ¹ |
Add `Convex.IsAbsSubgradient x g`, the predicate that `g` is a subgradient of `|·|` at `x`. Prove the standard characterization: the only subgradient at `x > 0` is `1`; at `x < 0` it is `-1`; at `x = 0` the subgradients are exactly `[-1, 1]`. Add `IsL1Subgradient`, the componentwise lift to `Fin n → ℝ` used by ℓ¹-regularized estimation (Lasso KKT).
---
## AI-assistance disclosure
Per the Mathlib [AI-use policy](https://leanprover-community.github.io/contribute/index.html#use-of-ai):
- **Tool.** Claude Code (Anthropic) with the Claude Sonnet 4.6 model.
- **Use.** I specified the target lemma statements and the proof strategy; the assistant drafted Lean 4 tactic combinations against current Mathlib. I iterated on the proofs, verified each lemma builds under `lake build` from a clean checkout, and read the final code.
- **Vouching.** I have read every declaration in this file and can defend the proofs without further AI assistance. I welcome reviewer feedback on naming, namespace placement, and stylistic alignment with the surrounding Mathlib modules. |
t-analysis
new-contributor
LLM-generated
awaiting-author
|
231/0 |
Mathlib.lean,Mathlib/Analysis/Convex/Subgradient/Abs.lean |
2 |
4 |
['allenhaozhu', 'github-actions', 'grunweg'] |
nobody |
110-64209 3 months ago |
111-73939 111 days ago |
0-2608 43 minutes |
| 31662 |
edwin1729 author:edwin1729 |
feat(Topology/Order): topological basis of scott topology on Complete… |
…PartialOrder
---
[Zulip discussion](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/.3E.20Algebraic.20complete.20partial.20order.20and.20domain.20theory/with/536359313) for this PR.
(2/5) PRs in domain theory, proving that scott topologies over Algebraic DCPOs (`CompletePartialOrder`) are sober.
The main reference is [Renata, Duality in Domain Theory](https://alyata.github.io/documents/duality_domain_theory.pdf). But the statements can also be found in the canonical text [Abramsky and Jung](https://www.cs.ox.ac.uk/people/samson.abramsky/handbook.pdf)
This first PR proves two prerequisites, namely:
- the specialization order induced by the scott topology corresponds to the existing order of the DCPO. Prop 3.1.5 in [Duality in Domain Theory](https://alyata.github.io/documents/duality_domain_theory.pdf) and Prop 2.3.2(1) in [Abramsky and Jung](https://www.cs.ox.ac.uk/people/samson.abramsky/handbook.pdf)
- the upward closures of compact elements of the DCPO form a topological basis for the Scott Topology. Prop 3.5.2 in [Duality in Domain Theory](https://alyata.github.io/documents/duality_domain_theory.pdf) and Prop 2.3.6(2) in [Abramsky and Jung](https://www.cs.ox.ac.uk/people/samson.abramsky/handbook.pdf)
- [x] depends on: #33061
**The next PR is here:** #31670
<!-- 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.
For details on the "pull request lifecycle" in mathlib, please see:
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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
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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,
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- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
t-topology
new-contributor
awaiting-author
|
165/1 |
Mathlib.lean,Mathlib/Order/CompactlyGenerated/Basic.lean,Mathlib/Topology/Order/ScottTopology.lean,Mathlib/Topology/Order/ScottTopologyDCPO.lean,docs/references.bib |
5 |
99 |
['b-mehta', 'edwin1729', 'github-actions', 'mathlib-merge-conflicts', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot', 'plp127'] |
b-mehta assignee:b-mehta |
109-40561 3 months ago |
117-41997 117 days ago |
64-31147 64 days |
| 39393 |
jayscambler author:jayscambler |
feat(GameTheory): von Neumann minimax theorem for finite matrix games |
Adds `Mathlib/GameTheory/MatrixGame.lean`. Resolves the TODO at
`Mathlib/Topology/Sion.lean:48` ("spell out the particular case of
von Neumann theorem") by specialising
`Sion.exists_isSaddlePointOn` to the bilinear payoff
`∑ i j, x i * M i j * y j` on the pair of standard simplices.
Two theorems:
- `Matrix.exists_saddle_point`: existence of a saddle point in
mathlib's `IsSaddlePointOn` convention (`a` minimiser-in-`X`,
`b` maximiser-in-`Y`).
- `Matrix.exists_mixedNash`: existence of a mixed Nash equilibrium
in the textbook matrix-game orientation (row player maximises,
column player minimises). Proved by applying Sion to `-payoff M`.
Both forms are useful: the first matches mathlib's existing
saddle-point machinery, and the second is the statement most
game-theory texts use directly.
Supporting lemmas: continuity of the payoff in each argument
(linear in each), and quasi-convexity / quasi-concavity from
`LinearMap.convexOn` / `LinearMap.concaveOn`. The simplex
hypotheses for Sion (`Convex`, `IsCompact`, `Nonempty`) come from
existing mathlib lemmas (`convex_stdSimplex`,
`isCompact_stdSimplex`, `single_mem_stdSimplex`).
Creates a new top-level `Mathlib/GameTheory/` directory; mathlib
currently has none. A natural follow-up would be a
`Mathlib/GameTheory/NormalForm.lean` for general n-player
normal-form games and pure Nash equilibrium.
**AI disclosure**: this PR was a collaboration between myself, Grey
Haven's autocontext and Claude Opus 4.7 (Anthropic). I read each
line and built locally on current master. (strawberry has three r's) |
t-topology
new-contributor
LLM-generated
|
216/2 |
Mathlib.lean,Mathlib/GameTheory/MatrixGame.lean,Mathlib/Topology/Sion.lean |
3 |
3 |
['github-actions', 'vihdzp'] |
nobody |
107-82279 3 months ago |
108-29809 108 days ago |
0-355 5 minutes |
| 22925 |
ggranberry author:ggranberry |
feat(Mathlib/PlaceHolder/ToeplitzHausdorff): Toeplitz-Hausdorff |
---
<!-- 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.
For details on the "pull request lifecycle" in mathlib, please see:
https://leanprover-community.github.io/contribute/index.html
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Please ask for help on https://leanprover.zulipchat.com if needed.
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Co-authored-by: Author Name <author@email.com>
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(that is, before the `---`) using the following format:
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- [ ] depends on: #xyz [optional extra text]
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[](https://gitpod.io/from-referrer/)
|
WIP
new-contributor
will-close-soon
awaiting-author
help-wanted
t-analysis
|
411/0 |
Mathlib/PlaceHolder/ToeplitzHausdorff.lean,Mathlib/PlaceHolder/ToeplitzHausdorff_v2.lean |
2 |
16 |
['AntoineChambert-Loir', 'faenuccio', 'ggranberry', 'github-actions', 'vihdzp'] |
faenuccio assignee:faenuccio |
107-60806 3 months ago |
531-52315 531 days ago |
3-8649 3 days |
| 36832 |
KryptosAI author:KryptosAI |
chore(Data/Finset/Card): rename `pred_card_le_card_erase` to `sub_one_card_le_card_erase` |
## Summary
The name `pred_card_le_card_erase` suggests `Nat.pred` but the statement uses `- 1` (i.e., `Nat.sub 1`). Rename to `sub_one_card_le_card_erase` to match the actual statement.
A deprecated alias is added for backwards compatibility.
### Files changed
- `Mathlib/Data/Finset/Card.lean` — definition renamed + deprecated alias
- `Mathlib/Data/Finset/Powerset.lean` — reference updated
- `Mathlib/Combinatorics/Additive/SubsetSum.lean` — reference updated
- `Mathlib/Algebra/Polynomial/EraseLead.lean` — reference updated
Addresses the `Finset.pred_card_le_card_erase` item in #21584.
## AI disclosure
I used Claude Code to explore the codebase (finding all references to rename) and to draft the PR description. I reviewed and understand all changes — these are straightforward renames with a deprecated alias. |
new-contributor
awaiting-author
|
22/15 |
Mathlib/Algebra/Polynomial/EraseLead.lean,Mathlib/Combinatorics/Additive/SubsetSum.lean,Mathlib/Combinatorics/SetFamily/AhlswedeZhang.lean,Mathlib/Combinatorics/SetFamily/Shadow.lean,Mathlib/Data/Finset/Card.lean,Mathlib/Data/Finset/Powerset.lean,Mathlib/Data/Set/Card.lean,Mathlib/GroupTheory/Perm/Support.lean,Mathlib/RingTheory/Ideal/Operations.lean |
9 |
8 |
['KryptosAI', 'Multramate', 'dagurtomas', 'github-actions', 'mattrobball', 'ooovi'] |
nobody |
104-62748 3 months ago |
104-62748 104 days ago |
59-48094 59 days |
| 32555 |
ksenono author:ksenono |
feat(Combinatorics/SimpleGraph/Matching): maximum and maximal matchings for Konig's theorem |
---
<!-- Your PR title will become the first line of the commit message.
definitions and existence of maximum/maximal matchings in simple graphs.
-->
[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
awaiting-author
|
112/0 |
Mathlib/Combinatorics/SimpleGraph/DegreeSum.lean,Mathlib/Combinatorics/SimpleGraph/Matching.lean |
2 |
46 |
['SnirBroshi', 'SproutSeeds', 'YaelDillies', 'b-mehta', 'github-actions', 'jcommelin', 'ksenono'] |
YaelDillies assignee:YaelDillies |
104-49970 3 months ago |
104-64129 104 days ago |
130-57925 130 days |
| 37584 |
kennethgoodman author:kennethgoodman |
feat(Data/Nat/Fib): formalize Lamé's theorem |
## Summary
Formalize [Lamé's theorem](https://en.wikipedia.org/wiki/Lam%C3%A9%27s_theorem) (1844), the founding result of computational complexity theory.
**Lamé's Theorem:** If the Euclidean algorithm on inputs `(a, b)` with `b ≤ a` takes `n + 1` division steps, then `b ≥ fib(n + 1)` and `a ≥ fib(n + 2)`.
### New definitions
- `Nat.euclidSteps`: counts the number of division steps in the Euclidean algorithm on natural number inputs.
### New theorems
- `Nat.fib_le_of_euclidSteps`: the main Lamé bound — Fibonacci lower bound on inputs given a step count.
- `Nat.euclidSteps_le_of_lt_fib`: the contrapositive — step count upper bound given a Fibonacci bound on the smaller input.
- `Nat.add_mod_le`: helper lemma that `b + a % b ≤ a` when `b ≤ a` and `0 < b`.
### Proof strategy
Induction on `n`, tracking both elements of the pair. The key insight is that each Euclidean step replaces `(a, b)` with `(b, a % b)`, and since `a ≥ b + a % b` (because `a / b ≥ 1`), the Fibonacci recurrence `fib(n+3) = fib(n+2) + fib(n+1)` matches the structure of the algorithm.
### References
- Gabriel Lamé, *Note sur la limite du nombre des divisions dans la recherche du plus grand commun diviseur entre deux nombres entiers*, Comptes rendus de l'Académie des sciences, 1844.
---
### AI usage disclosure
Per the [Mathlib AI guidelines](https://leanprover-community.github.io/contribute/index.html#use-of-ai): Claude Code (Claude Opus 4.6) was used to assist with writing the Lean 4 proof code, fixing tactic errors, and drafting this PR description. The mathematical proof (induction on step count, tracking both pair elements through the Fibonacci recurrence) was designed by hand and verified on paper before formalization. I have reviewed and understand every line of the resulting Lean code and can explain all proof steps.
---
- [x] builds cleanly (`lake build Mathlib.Data.Nat.Fib.Lame`)
- [x] no `sorry`
- [x] lines ≤ 100 characters, no trailing whitespace
- [x] `autoImplicit false`
- [x] docstrings on all public declarations |
new-contributor
LLM-generated
t-data
merge-conflict
|
121/0 |
Mathlib.lean,Mathlib/Data/Nat/Basic.lean,Mathlib/Data/Nat/Fib/Basic.lean,Mathlib/Data/Nat/Fib/Lame.lean,docs/1000.yaml |
5 |
25 |
['euprunin', 'github-actions', 'kennethgoodman', 'mathlib-merge-conflicts', 'vihdzp', 'wwylele'] |
TwoFX assignee:TwoFX |
104-36842 3 months ago |
104-36843 104 days ago |
44-66371 44 days |
| 36274 |
JTylM author:JTylM |
feat(Combinatorics/SimpleGraph/Matching): implemented the matchingNumber of a graph |
---
- [ ] depends on: #36406
- [ ] depends on: #32555
I implemented the matchingNumber as described in the issue and proved some statements including
showing that there exists a matching achieving the matchingNumber.
matchingNumber is increasing under injective maps
matchingNumber is equal under isomorphisms
matchingNumber of a matching is the cardinality of the matching
This is my first PR and i had some trouble with some of the proofs, especially with the proof for matchingNumber.isAttained. So any suggestions on how to make the proofs shorter would be welcome. Also i was not sure about the naming of some of the theorems so i would apprechiate feedback here as well.
|
new-contributor
t-combinatorics
blocked-by-other-PR
merge-conflict
|
292/2 |
Mathlib/Combinatorics/SimpleGraph/Matching.lean |
1 |
40 |
['JTylM', 'SnirBroshi', 'SproutSeeds', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'vlad902'] |
nobody |
104-16692 3 months ago |
164-56759 164 days ago |
9-69432 9 days |
| 39569 |
AlexBrodbelt author:AlexBrodbelt |
feat(Mathlib/Data/Finite/Units): Units are (in)finite if type is (in)finite |
Shows
- [ ] depends on: #39568
- [ ] depends on: #39567
---
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[](https://gitpod.io/from-referrer/)
|
blocked-by-other-PR
t-data
new-contributor
|
75/0 |
Mathlib.lean,Mathlib/Data/Finite/Option.lean,Mathlib/Data/Finite/Subtype.lean,Mathlib/Data/Finite/Units.lean |
4 |
3 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
103-64252 3 months ago |
103-70137 103 days ago |
0-121 2 minutes |
| 39568 |
AlexBrodbelt author:AlexBrodbelt |
feat(Mathlib/Data/Finite/Subtype): Subtype of elements not equal to a term is finite iff type is finite |
Subtype of terms not equal to a term is finite iff type is finite.
This is an intermediate result to prove that if a `GroupWithZero` is (in)finite then the `Units` are (in)finite.
- [ ] depends on: #39567 [shows option type is finite iff type is finite]
---
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|
t-data
new-contributor
blocked-by-other-PR
|
45/0 |
Mathlib.lean,Mathlib/Data/Finite/Option.lean,Mathlib/Data/Finite/Subtype.lean |
3 |
5 |
['AlexBrodbelt', 'github-actions', 'mathlib-dependent-issues', 'themathqueen'] |
nobody |
103-53888 3 months ago |
103-69478 103 days ago |
0-2171 36 minutes |
| 33786 |
hdmkindom author:hdmkindom |
feat(Analysis/Matrix): add Jacobian matrix for matrix-valued functions |
This PR introduces the Jacobian matrix for matrix-valued functions `F : Matrix m n 𝕜 → Matrix p q 𝕜`.
The Jacobian matrix `jacobianMatrix F X` at point `X` is indexed by `(p × q) × (m × n)`, where each entry represents the partial derivative with respect to a basis element. To handle instance-mismatch issues with matrix norms, we use local Frobenius norm instances.
This PR adds the new file:
'Analysis/Matrix/Jacobian.lean'
## Main definitions
- `jacobianMatrix F X`: The Jacobian matrix at point `X`, defined by `jacobianMatrix F X (i, k) (j, l) = (fderiv ℝ F X (Matrix.single j l 1)) i k`
## Main theorems
- `fderiv_eq_jacobian_mul`: Express the Fréchet derivative as a contraction with the Jacobian
- `jacobianMatrix_comp`: Chain rule for Jacobian matrices
- `jacobianMatrix_linear`, `jacobianMatrix_id`, `jacobianMatrix_const`: Basic properties
- `jacobianMatrix_add`, `jacobianMatrix_smul`: Linearity properties
|
t-analysis
new-contributor
awaiting-author
|
174/0 |
Mathlib.lean,Mathlib/Analysis/Matrix/Jacobian.lean |
2 |
21 |
['erdOne', 'github-actions', 'hdmkindom', 'jcommelin'] |
sgouezel assignee:sgouezel |
103-46690 3 months ago |
194-53132 194 days ago |
39-35999 39 days |
| 39673 |
drocta author:drocta |
feat: add instances of MetricSpace, NormedAddGroup, and NormedAddCommGroup for DirectLimit |
add files `Topology/MetricSpace/DirectLimit.lean` (with an instance of `MetricSpace` for a `DirectLimit` of a directed system of `MetricSpace`s with `IsometryClass` map types between them) and `Analysis/Normed/Group/DirectLimit.lean` (with instances of `NormedAddGroup` and `NormedAddCommGroup` on `DirectLimit`)
also lemmas `dist_def` and `norm_def` for these.
---
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This PR is part of a project of adding support for direct limits of $C^*$-algebras (as I described [on Zulip](https://leanprover.zulipchat.com/#narrow/channel/113489-new-members/topic/Early.20feedback.20on.20approach.20towards.20formalizing.20UHF.20algebras.3F) ).
This PR uses `IsometryClass` to implement the requirement that the directed systems preserve the `Norm` on the `NormedAddGroup`s, following the advice I got [this Zulip thread](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Representing.20norm-preservation.20for.20directed.20systems.3F/with/595941824) .
Use of AI:
I again used ChatGPT a bit for some advice when writing this (for example, for ideas for simplifying parts of proofs that I suspected could be simpler/shorter, and for advice on which of a couple options would be more idiomatic).
I can personally vouch for all of these contributions, and that I understand this code.
|
t-topology
new-contributor
awaiting-author
|
258/0 |
Mathlib.lean,Mathlib/Analysis/Normed/Group/DirectLimit.lean,Mathlib/Analysis/Normed/Ring/DirectLimit.lean,Mathlib/Topology/MetricSpace/DirectLimit.lean |
4 |
23 |
['drocta', 'eric-wieser', 'github-actions', 'j-loreaux'] |
nobody |
101-761 3 months ago |
101-14231 101 days ago |
0-14741 4 hours |
| 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 |
100-17932 3 months ago |
186-43787 186 days ago |
188-77910 188 days |
| 31796 |
dobronx1325 author:dobronx1325 |
feat(Data/Real/EReal): add mul_lt_mul_of_pos_left theorem |
This PR adds the theorem `EReal.mul_lt_mul_of_pos_left`, which states that for a positive real number `a` and extended reals `b < c`, left multiplication by `a` preserves the strict order: `(a : EReal) * b < (a : EReal) * c`.
The theorem complements existing order-preserving properties for addition in `EReal` and extends the algebraic structure for multiplication. The proof uses basic properties of extended reals and order relations.
---
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[](https://gitpod.io/from-referrer/)
|
t-data
new-contributor
merge-conflict
|
23/0 |
Mathlib/Data/EReal/Operations.lean |
1 |
5 |
['JovanGerb', 'LLaurance', 'dobronx1325', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
99-65824 3 months ago |
278-63052 278 days ago |
6-25774 6 days |
| 35834 |
homeowmorphism author:homeowmorphism |
feat(Mathlib/GroupTheory/PresentedGroup): every group has a presentation |
We show that every group has a presentation defined by taking the free group with all of the group elements as the generators, and defining the relations as the kernel of the induced subjective homomorphism from that free group to the group itself.
Use of AI: This has been vibe-coded with GPT-Codex-5.3, was updated through review, and was double-checked by the author.
---
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[](https://gitpod.io/from-referrer/)
|
new-contributor
t-group-theory
large-import
awaiting-author
LLM-generated
merge-conflict
|
29/1 |
Mathlib/GroupTheory/PresentedGroup.lean |
1 |
16 |
['copilot-pull-request-reviewer', 'euprunin', 'github-actions', 'homeowmorphism', 'mathlib-bors', 'mathlib-merge-conflicts', 'plp127', 'tb65536'] |
tb65536 assignee:tb65536 |
99-45907 3 months ago |
178-30440 178 days ago |
4-30999 4 days |
| 39146 |
anovickis author:anovickis |
feat(Analysis/CStarAlgebra/Matrix): CompactSpace instances for unitaryGroup and specialUnitaryGroup |
Adds `CompactSpace` instances (and supporting `IsClosed` / `IsCompact` lemmas) for the matrix unitary and special unitary groups.
The compactness follows from Heine-Borel applied to the entrywise sup norm: every unitary matrix has all entries bounded by `1` (via the existing `entry_norm_bound_of_unitary` lemma), and `Matrix n n 𝕜` is finite-dimensional, so `closed + bounded ⇒ compact`.
### New declarations
- `isClosed_unitaryGroup`, `isCompact_unitaryGroup`
- `instance Matrix.unitaryGroup.instCompactSpace`
- `isClosed_specialUnitaryGroup`, `isCompact_specialUnitaryGroup`
- `instance Matrix.specialUnitaryGroup.instCompactSpace`
All placed inside the existing `EntrywiseSupNorm` section in `Mathlib/Analysis/CStarAlgebra/Matrix.lean`, so the `Matrix.Norms.Elementwise` scope used for the bound is already in scope.
### Motivation
These instances enable downstream constructions of compact matrix Lie groups such as flag manifolds (e.g. SU(3)/T = F₂), where the quotient inherits compactness for free via `Quotient.compactSpace`. They also fill an obvious gap in the matrix-group API: `unitary R` is known to be closed, but compactness for `Matrix.unitaryGroup` was not previously available as an instance.
Claude Code / Anthropic was used for generating the code, Verification was done with lake build, each lemma reviewed. Proofs came out of F2 mass gap lean library - so compile verified |
t-analysis
new-contributor
awaiting-author
|
52/0 |
Mathlib/Analysis/CStarAlgebra/Matrix.lean |
1 |
12 |
['anovickis', 'github-actions', 'j-loreaux', 'wwylele'] |
nobody |
98-40992 3 months ago |
112-33000 112 days ago |
0-7559 2 hours |
| 31898 |
ntapiam author:ntapiam |
feat(LinearAlgebra/TensorAlgebra): implement HopfAlgebra for TensorAlgebra |
implementation of the natural Hopf algebra structure on the TensorAlgebra |
new-contributor
t-ring-theory
awaiting-author
merge-conflict
|
253/0 |
Mathlib.lean,Mathlib/Algebra/FreeAlgebra.lean,Mathlib/LinearAlgebra/TensorAlgebra/Basic.lean,Mathlib/RingTheory/Bialgebra/FreeAlgebra.lean,Mathlib/RingTheory/Bialgebra/TensorAlgebra.lean,Mathlib/RingTheory/HopfAlgebra/TensorAlgebra.lean |
6 |
66 |
['YaelDillies', 'github-actions', 'hawkrobe', 'kckennylau', 'mathlib-merge-conflicts', 'ntapiam'] |
nobody |
97-33450 3 months ago |
281-19210 281 days ago |
0-34649 9 hours |
| 39871 |
daiduo2 author:daiduo2 |
feat(Analysis/ODE): Uniform Gronwall inequality |
## Summary
Adds the integral-form **Uniform Gronwall inequality**, a variant of Gronwall's inequality essential in PDE theory. Unlike the standard Gronwall bound which depends on an initial value, the uniform version provides a bound on `y(t)` that depends only on the **time-averages** of `g`, `h`, and `y` over sliding windows of length `r`.
## Mathematical Statement
Let `y, g, h : ℝ → ℝ` satisfy `y'(t) ≤ g(t) * y(t) + h(t)` on `[0, T)`. If for some `r > 0`:
- `∫_t^{t+r} g(s) ds ≤ a₁`
- `∫_t^{t+r} h(s) ds ≤ a₂`
- `∫_t^{t+r} y(s) ds ≤ a₃`
for all `t ∈ [0, T-r]`, then `y(t) ≤ (a₃/r + a₂) * exp(a₁)` for all `t ∈ [r, T]`.
## Changes
- **New file**: `Mathlib/Analysis/ODE/UniformGronwall.lean` (~590 lines)
- `uniformGronwallBound` — the explicit bound
- `uniformGronwallBound_of_a₂0_a₃0`, `uniformGronwallBound_nonneg` — simp lemmas
- `le_uniformGronwallBound_of_deriv_le` — main theorem
- **Updated**: `Mathlib.lean` — added import
## Design Decisions
- Real-valued functions `ℝ → ℝ` (generalization to normed spaces left for future work)
- Right derivatives (`HasDerivWithinAt` with `Ici`), matching `Gronwall.lean` style
- Assumes non-negativity (`g, h, y ≥ 0`), standard in PDE applications
## References
- R. Temam, *Infinite-Dimensional Dynamical Systems in Mechanics and Physics*, Appendix A |
t-analysis
new-contributor
awaiting-author
LLM-generated
|
601/0 |
Mathlib.lean,Mathlib/Analysis/ODE/UniformGronwall.lean |
2 |
4 |
['daiduo2', 'github-actions', 'grunweg'] |
nobody |
95-33811 3 months ago |
96-44719 96 days ago |
0-13098 3 hours |
| 33817 |
FlAmmmmING author:FlAmmmmING |
fix(Combinatorics/Enumerative/Schroder): fix the definition of `smallSchroder` |
In the previous definition, the small Schröder numbers were defined as
```LaTeX
s_0 = 1, s_1 = 1, s_2 = 1, s_3 = 3...
```
, which does not match the sequence listed in OEIS A006318. Moreover, this definition makes it difficult to correctly write the generating function for the small Schröder numbers. This PR fixes this issue.
---
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Please ask for help on https://leanprover.zulipchat.com if needed.
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git commit --author="Author Name <author@email.com>" --allow-empty -m "add Author Name as coauthor"
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- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-combinatorics
large-import
awaiting-author
merge-conflict
|
61/39 |
Mathlib/Combinatorics/Enumerative/Schroder.lean |
1 |
21 |
['FlAmmmmING', 'YaelDillies', 'github-actions', 'mathlib-merge-conflicts', 'vihdzp'] |
YaelDillies assignee:YaelDillies |
93-22437 3 months ago |
158-443 158 days ago |
74-58112 74 days |
| 35951 |
parabamoghv author:parabamoghv |
feat(CategoryTheory/Monoidal): evaluation coevaluation isomorphisms |
This PR adds four features to rigid categories:
1. `coevaluation_evaluation` and `evaluation_coevaluation` as isomorphism equalities: Using `IsIso` instances for the `evaluation` and `coevaluation` morphisms, we promote the morphism equalities to isomorphism equalities.
2. `ExactPairing Y X` from `ExactPairing X Y`: Using an exact pairing and `IsIso` instances for both `evaluation` and `coevaluation`, we swap the exact pairing by inverting the evaluation and coevaluation morphisms. Any suggestions for the definition name are welcome. Right now it is `ExactPairing.Symm`. The second choice was `ExactPairing.Swap`.
3. `HasLeftDual X` from `HasRightDual X`: Using a `HasRightDual X` instance and relevant `IsIso` instances, we construct a left dual. Similar construction for the other way.
4. `LeftDual` isomorphic to `RightDual`: Using relevant `IsIso` instances, we provide the isomorphism from the left dual of an object to the right dual. This can be achieved in two ways: either by using `leftDualIso` or using `rightDualIso`. We will prove in a subsequent PR that both these isomorphisms are equal.
Motivation: This is part of an effort to formalize CategoricalGroups, which can be defined as right rigid groupoids. The approach is motivated by the discussion in [#34830](https://github.com/leanprover-community/mathlib4/pull/34830).
Any comments or suggestions are welcome, especially about the naming.
---
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-->
[](https://gitpod.io/from-referrer/)
|
t-category-theory
new-contributor
awaiting-author
merge-conflict
|
64/2 |
Mathlib/CategoryTheory/Monoidal/Rigid/Basic.lean |
1 |
19 |
['dagurtomas', 'github-actions', 'joelriou', 'mathlib-merge-conflicts', 'parabamoghv', 'robin-carlier'] |
robin-carlier assignee:robin-carlier |
93-20779 3 months ago |
164-43575 164 days ago |
7-83579 7 days |
| 38595 |
openendings author:openendings |
chore(CategoryTheory): remove defeq abuse in Monad/Kleisli.lean |
Currently most of Kleisli.lean uses defeq abuse to perform deep rewrites equivalent to `Kleisli.of_mk`, `Kleisli.mk_of`, etc.
This PR removes all backward.isDefEq.respectTransparency from the file. Additionally:
- Add `theorem Kleisli.comp`, encoding `Kleisli.category.map_comp` in the base category.
- Add `theorem Cokleisli.comp`, encoding `category.map_comp` in the base category.
- Make `C` implicit in `Monad.unit_naturality` and `Monad.mu_naturality`.
- Make `C` implicit in `Comonad.counit_naturality` and `Comonad.delta_naturality`.
---
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-->
- ~~I would greatly appreciate advice ([e.g. via Zulip](https://leanprover.zulipchat.com/#user/1060393)) on tackling the remainder of this file: the defeqs mostly appear in morally `simp`/`calc` proofs that look horrid in `refine` style.
I can supply more rfl theorems like `of_mk` and `mk_of` (and hope to do so in subsequent PRs), but don't know how to use them for a deep type rewrite.~~
[](https://gitpod.io/from-referrer/) |
t-category-theory
new-contributor
awaiting-author
WIP
merge-conflict
|
95/28 |
Mathlib/CategoryTheory/Monad/Basic.lean,Mathlib/CategoryTheory/Monad/Kleisli.lean,MathlibTest/CategoryTheory/Monad.lean |
3 |
23 |
['dagurtomas', 'github-actions', 'joelriou', 'mathlib-merge-conflicts', 'openendings'] |
nobody |
93-16970 3 months ago |
125-9788 125 days ago |
0-4425 1 hour |
| 39164 |
allenhaozhu author:allenhaozhu |
feat(Probability/Distance): add total variation distance `tvDist` |
Add `MeasureTheory.tvDist : Measure α → Measure α → ℝ≥0∞`, the total variation distance between two measures, defined via the truncated subtraction `μ - ν` already in `Mathlib.MeasureTheory.Measure.Sub`. Add four basic lemmas (`tvDist_self`, `tvDist_comm`, `tvDist_nonneg`, `tvDist_le_one`) and a bridge lemma `tvDist_eq_signedMeasure_totalVariation` connecting `tvDist` to the existing `MeasureTheory.SignedMeasure.totalVariation` for finite measures.
---
## AI-assistance disclosure
Per the Mathlib [AI-use policy](https://leanprover-community.github.io/contribute/index.html#use-of-ai):
- **Tool.** Claude Code (Anthropic) with the Claude Sonnet 4.6 model.
- **Use.** I specified the target lemma statements and the proof strategy; the assistant drafted Lean 4 tactic combinations against current Mathlib. I iterated on the proofs, verified each lemma builds under `lake build` from a clean checkout, and read the final code.
- **Vouching.** I have read every declaration in this file and can defend the proofs without further AI assistance. I welcome reviewer feedback on naming, namespace placement, and stylistic alignment with the surrounding Mathlib modules. |
t-measure-probability
new-contributor
LLM-generated
awaiting-author
merge-conflict
|
187/0 |
Mathlib.lean,Mathlib/Probability/Distance/TotalVariation.lean |
2 |
5 |
['allenhaozhu', 'github-actions', 'grunweg', 'mathlib-merge-conflicts'] |
nobody |
93-16707 3 months ago |
111-73846 111 days ago |
0-2707 45 minutes |
| 34875 |
banrovegrie author:banrovegrie |
feat(LinearAlgebra/Matrix): add Sherman-Morrison formula |
Mathlib has the matrix determinant lemma (`det_add_replicateCol_mul_replicateRow` in SchurComplement.lean) but lacked the corresponding inverse formula. This PR fills that gap.
- Add `Matrix.inv_add_vecMulVec`: Sherman-Morrison formula for `(A + uv^T)^{-1}`
- Add `Matrix.inv_sub_vecMulVec`: subtraction variant
- Add `Matrix.isUnit_det_add_vecMulVec`: invertibility under the formula's hypotheses
## Test plan
- [x] `lake build` passes
- [x] Lines within 100 char limit
- [x] All declarations have docstrings
**Any specific AI usage?**: Used Copilot for review purposes. |
t-algebra
new-contributor
awaiting-author
label:t-algebra$ |
135/0 |
Mathlib.lean,Mathlib/LinearAlgebra/Matrix/ShermanMorrison.lean |
2 |
15 |
['Xxxjdjdid', 'banrovegrie', 'chrisflav', 'copilot-pull-request-reviewer', 'eric-wieser', 'github-actions', 'wwylele'] |
chrisflav assignee:chrisflav |
91-44826 2 months ago |
137-45903 137 days ago |
69-6728 69 days |
| 38887 |
Rosario-Leonardi-CT author:Rosario-Leonardi-CT |
feat(Analysis/Fourier/ZMod): add dft_star_comp |
Adds `ZMod.dft_star_comp`, expressing that `𝓕 (star ∘ Φ) k = star (𝓕 Φ (-k))`, the discrete analogue of the Fourier transform's interaction with complex conjugation, complementing the existing `dft_comp_neg`.
---
AI disclosure: lemma statement and proof drafted with assistance from Claude Code; verified by the Lean compiler with no `sorry` and standard axioms only (`propext`, `Classical.choice`, `Quot.sound`). |
t-analysis
new-contributor
awaiting-author
|
9/0 |
Mathlib/Analysis/Fourier/ZMod.lean |
1 |
9 |
['Rosario-Leonardi-CT', 'github-actions', 'wwylele'] |
j-loreaux assignee:j-loreaux |
91-44089 2 months ago |
114-43025 114 days ago |
5-6447 5 days |
| 39986 |
CRudrum author:CRudrum |
feat: add HasKernels instance for Pointed |
---
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Moves:
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- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-category-theory
large-import
awaiting-author
|
28/2 |
Mathlib/CategoryTheory/Category/Pointed.lean |
1 |
11 |
['CRudrum', 'Whysoserioushah', 'dagurtomas', 'github-actions'] |
nobody |
87-47556 2 months ago |
94-33637 94 days ago |
0-5451 1 hour |
| 40225 |
localparty author:localparty |
feat(RingTheory/LaurentSeries): leibniz product rule for derivative |
This PR adds the Leibniz product rule (`(f * g)' = f' * g + f * g'`) for the
first formal derivative on `LaurentSeries R` (R a commutative ring).
The first derivative is already packaged in
`Mathlib/RingTheory/LaurentSeries.lean` as
```lean
def derivative (R : Type*) {V : Type*} [AddCommGroup V] [Semiring R] [Module R V] :
LaurentSeries V →ₗ[R] LaurentSeries V :=
hasseDeriv R 1
```
with a `derivative_*` family of theorems (`derivative_apply`,
`derivative_iterate`, `derivative_iterate_coeff`). The Leibniz product rule
was missing. This PR fills that gap, adding `derivative_mul` alongside the
existing `derivative_*` family.
The proof is direct on coefficients via `HahnSeries.coeff_mul` and an
`addAntidiagonal` shift-bijection (matching the style of the existing
`hasseDeriv_*` lemmas). Five private helper lemmas factor the
coefficient-side calculation:
- `derivative_coeff` — clean coefficient formula at k = 1
- `support_derivative_subset` — `(derivative R f).support ⊆ (· - 1) '' f.support`
- `isPWO_shifted_support` — PWO preserved by the shift-by-(-1)
- `sum_bij_left` / `sum_bij_right` — `Finset.sum_nbij'` shift-reindexings
Total addition: ~85 LOC (5 private helpers + the public `derivative_mul`).
## Related future work
Full `Derivation` packaging for `LaurentSeries.hasseDeriv` (matching
`PowerSeries.derivative`-as-`Derivation` at
`Mathlib/RingTheory/PowerSeries/Derivative.lean:102`) is a natural follow-up,
since this Leibniz rule would discharge the `leibniz'` field. Out of scope
for this PR; can be a separate follow-up "LaurentSeries algebra-of-derivations
API" PR.
## Provenance
This lemma surfaced during work on a Lean 4 formalization of equisingular
flat connections (Connes–Marcolli 2008, Ch IV §6.4), where `LaurentSeries ℂ`
serves as the base ring for the ℂ((t))-module connection-matrix substrate.
The Leibniz rule is needed for the category-of-connection-preserving-maps
intertwining condition.
|
t-ring-theory
new-contributor
awaiting-author
LLM-generated
|
104/0 |
Mathlib/RingTheory/LaurentSeries.lean |
1 |
5 |
['github-actions', 'grunweg', 'localparty'] |
nobody |
87-39163 2 months ago |
87-46361 87 days ago |
0-8124 2 hours |
| 38348 |
mirajcs author:mirajcs |
feat(Geometry/Curve): add Frenet–Serret framework |
---
This PR introduces a basic formalization of smooth parametrized curves in `ℝ³`
(`EuclideanSpace ℝ (Fin 3)`) together with the Frenet frame and partial proofs
of the Frenet–Serret formulas.
Main contributions:
* Define `ParametrizedDifferentiableCurve` as a smooth map on an open interval.
* Define arc length and arc-length parametrization.
* Define geometric quantities:
- curvature `κ(t) = ‖α''(t)‖`
- tangent, normal, and binormal vector fields
- torsion via `‖B'(t)‖`
* Introduce the `FrenetFrame` structure.
* Prove key Frenet–Serret formulas:
- `T' = κ • N`
- `B' = -τ • N`
- `N' = -κ • T + τ • B`
The implementation relies on existing analysis and inner product space
infrastructure, as well as properties of the cross product in `ℝ³`.
Some intermediate lemmas about orthogonality and cross-product identities
are included.
At present, some results assume nonvanishing curvature/torsion and include
auxiliary hypotheses about derivatives. These can be streamlined in future work.
This development is intended as a foundation for further formalization of
classical differential geometry (curves and surfaces).
---
|
new-contributor
t-differential-geometry
awaiting-author
|
525/0 |
Mathlib.lean,Mathlib/Geometry/Curves/Basic.lean,Mathlib/Geometry/Curves/FrenetFrame.lean |
3 |
19 |
['bryangingechen', 'github-actions', 'mathlib-merge-conflicts', 'mirajcs', 'ocfnash', 'vihdzp', 'wwylele'] |
nobody |
87-13301 2 months ago |
124-47408 124 days ago |
6-55291 6 days |
| 39939 |
8e7 author:8e7 |
feat(Combinatorics/SimpleGraph/TreeDecomp): clique lemma for tree decompositions |
This PR proves the treewidth of a complete graph is `#V - 1` for finite V, and consequently, `G.cliqueNum - 1 <= G.treeWidth`. This PR follows #38334, and is a direct application of #39864.
AI Usage: The proofs were developed with the help of Claude Code. I vouch for all the code written and understand the content fully.
---
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Moves:
- Vector.* -> List.Vector.*
- ...
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- Nat.bit1_add_bit1
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Any other comments you want to keep out of the PR commit should go
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- [ ] depends on: #xyz [optional extra text]
-->
- [ ] depends on: #38334
- [ ] depends on: #39864
[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
LLM-generated
blocked-by-other-PR
|
588/0 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/Acyclic.lean,Mathlib/Combinatorics/SimpleGraph/Connectivity/Subgraph.lean,Mathlib/Combinatorics/SimpleGraph/TreeDecomp.lean |
4 |
5 |
['8e7', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
87-11432 2 months ago |
95-45418 95 days ago |
0-3952 1 hour |
| 32960 |
dleijnse author:dleijnse |
feat(FieldTheory): adjoin pth roots |
For a field `k` of exponential characteristic `p` and a subset `S` of `k`, we define the extension of `k` obtained by adjoining all `p`-th roots of elements of `S`. We prove that this is a purely inseparable extension, and provide some basic API.
---
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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"
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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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]
-->
[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
awaiting-author
merge-conflict
label:t-algebra$ |
131/0 |
Mathlib.lean,Mathlib/FieldTheory/PurelyInseparable/AdjoinPthRoots.lean |
2 |
14 |
['artie2000', 'chrisflav', 'dleijnse', 'erdOne', 'github-actions', 'leanprover-radar', 'mathlib-merge-conflicts'] |
erdOne assignee:erdOne |
86-31768 2 months ago |
246-44818 246 days ago |
10-12739 10 days |
| 37281 |
AltSoKoly author:AltSoKoly |
Update EdgeConnectivity.lean |
---
<!-- 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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if it passes the continuous integration checks.
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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"
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|
t-combinatorics
new-contributor
awaiting-author
merge-conflict
|
123/0 |
Mathlib/Combinatorics/SimpleGraph/Connectivity/EdgeConnectivity.lean,Mathlib/Data/Int/GCD.lean |
2 |
6 |
['github-actions', 'grunweg', 'mathlib-merge-conflicts', 'themathqueen'] |
nobody |
86-29300 2 months ago |
156-45811 156 days ago |
0-432 7 minutes |
| 40329 |
no-j author:no-j |
feat(Computability): matching εNFA.Path definition with NFA.Path |
Added εNFA.Path definition that is based on `Type` instead of `Prop` to match NFA's path definition
Added εNFA.Path.supp (same definition as NFA.Path.supp)
---
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|
t-computability
new-contributor
|
60/23 |
Mathlib/Computability/EpsilonNFA.lean |
1 |
3 |
['github-actions'] |
nobody |
84-70317 2 months ago |
84-71150 84 days ago |
84-71359 84 days |
| 38344 |
robo7179 author:robo7179 |
feat(SimpleGraph/Coloring/VertexColoring): Matching is 2 colorable |
---
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[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
merge-conflict
|
51/0 |
Mathlib/Combinatorics/SimpleGraph/Coloring/VertexColoring.lean |
1 |
6 |
['SnirBroshi', 'github-actions', 'mathlib-merge-conflicts', 'vlad902'] |
b-mehta assignee:b-mehta |
84-50676 2 months ago |
84-50677 84 days ago |
46-71620 46 days |
| 36210 |
vbeffara author:vbeffara |
feat(Combinatorics/SimpleGraph): definitions of graph contraction and graph minor |
A contraction is the image of a graph through a surjective function with connected fibers, and a minor is a contraction of a subgraph.
This PR shows that being a contraction is transitive, but does not show the same for minors because the proof is more involved, it will be in a subsequent PR. The definitions are in `Prop` and do not contain data, but I'm not sure if that was the right choice.
---
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[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
awaiting-author
merge-conflict
|
151/0 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/Contraction.lean,Mathlib/Combinatorics/SimpleGraph/Minor.lean |
3 |
9 |
['YaelDillies', 'github-actions', 'mathlib-merge-conflicts', 'robin-carlier', 'vbeffara'] |
b-mehta assignee:b-mehta |
84-29445 2 months ago |
124-51459 124 days ago |
53-32590 53 days |
| 39697 |
sorrachai author:sorrachai |
feat(Data/Tree/Basic): add Membership instance, new notation, rename Tree |
Summary:
1. [Rename]([#CSLib > Splay tree PR: BinaryTree vs Tree @ 💬](https://leanprover.zulipchat.com/#narrow/channel/513188-CSLib/topic/Splay.20tree.20PR.3A.20BinaryTree.20vs.20Tree/near/596482765)) from Tree to BinaryTree, which propagates the changes to other files that use it.
2. Add membership instance, prove decidability of membership.
3. Add toListInOrder, toListPreOrder, toListPostOrder
Suggestion based on the discussion in the cslib [thread](https://leanprover.zulipchat.com/#narrow/channel/513188-CSLib/topic/Splay.20tree.20PR/near/596568391)[#CSLib > Splay tree PR @ 💬](https://leanprover.zulipchat.com/#narrow/channel/513188-CSLib/topic/Splay.20tree.20PR/near/596568391).
---
* depends on: #39707 |
new-contributor
awaiting-author
|
117/8 |
Mathlib/Data/Tree/Basic.lean |
1 |
8 |
['eric-wieser', 'github-actions', 'sorrachai'] |
nobody |
83-30552 2 months ago |
83-36882 83 days ago |
17-22788 17 days |
| 37071 |
ericluap author:ericluap |
feat: Dedekind completion of rationals is isomorphic to EReal |
|
t-order
new-contributor
awaiting-author
merge-conflict
|
128/4 |
Mathlib.lean,Mathlib/Data/EReal/Basic.lean,Mathlib/Data/EReal/DedekindCut.lean,Mathlib/Order/Completion.lean |
4 |
60 |
['ericluap', 'github-actions', 'mathlib-merge-conflicts', 'plp127', 'vihdzp', 'wwylele'] |
YaelDillies, bryangingechen, vihdzp assignee:bryangingechen assignee:YaelDillies assignee:vihdzp |
83-24229 2 months ago |
87-78947 87 days ago |
46-52403 46 days |
| 39192 |
jayscambler author:jayscambler |
feat(InnerProductSpace/PiL2): det of a linear isometry has unit norm |
Adds `LinearIsometryEquiv.norm_det` and the real corollary `LinearIsometryEquiv.abs_det`. The proof uses the unitary matrix of a linear isometry in orthonormal bases, via `LinearIsometryEquiv.toMatrix_mem_unitaryGroup` and `Matrix.det_of_mem_unitary`. The supporting matrix lemma is moved from `Adjoint.lean` to `PiL2.lean`, where it no longer depends on adjoints. |
t-analysis
new-contributor
LLM-generated
awaiting-author
|
22/0 |
Mathlib/Analysis/InnerProductSpace/PiL2.lean |
1 |
8 |
['github-actions', 'grunweg', 'jayscambler', 'sgouezel', 'themathqueen', 'wwylele'] |
sgouezel assignee:sgouezel |
80-67364 2 months ago |
101-55663 101 days ago |
10-9654 10 days |
| 37707 |
MavenRain author:MavenRain |
feat(Combinatorics/SimpleGraph): add IsMaximalClique/IsMaximalIndepSet, refactor IsMaximum* to MaximalFor |
Addresses #34962
|
new-contributor
t-combinatorics
merge-conflict
|
63/31 |
Mathlib/Combinatorics/SimpleGraph/Clique.lean |
1 |
7 |
['MavenRain', 'SnirBroshi', 'eric-wieser', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
80-31603 2 months ago |
80-31604 80 days ago |
26-52833 26 days |
| 40520 |
Julian-Kuelshammer author:Julian-Kuelshammer |
feat(CategoryTheory/Linear): linear Yoneda and coYoneda are linear |
Mathlib/CategoryTheory/Linear/Basic.lean:
Adds an instance that the opposite category of a linear category is linear.
Mathlib/CategoryTheory/Linear/Yoneda.lean:
Adds instances that the linearYoneda and linearcoYoneda are linear functors, which was a TODO before.
---
[](https://gitpod.io/from-referrer/)
|
new-contributor
large-import
|
27/2 |
Mathlib/CategoryTheory/Linear/Basic.lean,Mathlib/CategoryTheory/Linear/Yoneda.lean |
2 |
3 |
['github-actions'] |
nobody |
80-27245 2 months ago |
80-28681 80 days ago |
80-29051 80 days |
| 40543 |
SnkXyx author:SnkXyx |
feat(Algebra/MvPolynomial/CharacteristicSet): add triangular set |
This PR defines the structure of a **Triangular Set** of multivariate polynomials. A Triangular Set is a finite ordered sequence of non-zero polynomials `[P₁, P₂, ..., Pₘ]` such that their main (max) variables are strictly increasing:
`mainVar(P₁) < mainVar(P₂) < ... < mainVar(Pₘ)`.
The definition was originally developed in PR #36103 as part of the formalization of the Characteristic Set Method (Wu-Ritt Method). The Characteristic Set project aims to formalize the algorithmic method for solving systems of multivariate polynomial equations in Lean 4, providing foundational infrastructure for algebraic geometry based on triangular decomposition.
Triangular sets provide a structured representation of polynomial systems that facilitates variable elimination. Since the main variables are strictly increasing, variables can be eliminated successively, starting from the last polynomial and proceeding backwards through the sequence. This makes triangular sets a fundamental object in Wu-Ritt Method.
---
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|
WIP
t-algebra
new-contributor
label:t-algebra$ |
589/0 |
Mathlib.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/TriangularSet.lean |
2 |
3 |
['SnkXyx', 'github-actions'] |
nobody |
79-61091 2 months ago |
79-61925 79 days ago |
0-16 16 seconds |
| 38364 |
openendings author:openendings |
feat(Order): directed complete partial orders |
Define DirectedCompletePartialOrder and its interaction with iSup and sSup.
A directed complete partial order is equivalently:
- a partial order with LUBs of nonempty directed sets;
- what happens when you remove ⊥ from a CompletePartialOrder; or
- a ConditionallyCompletePartialOrder in which every directed set is BddAbove.
Like CPOs, DCPOs are commonly studied in denotational semantics.
---
Potential applications:
- [#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/590070848) -- defining infinite sums in an DCPO-enriched `AddCommMonoidWithTop` such as `ENat` or `ENNReal`.
- [#Is there code for X? > Scott Induction](https://leanprover.zulipchat.com/#narrow/channel/217875-Is-there-code-for-X.3F/topic/Scott.20Induction/with/590112858) -- fixpoint theorems similar to `OmegaCompletePartialOrder`, generalised to arbitrary cardinalities.
[](https://gitpod.io/from-referrer/)
|
t-order
new-contributor
awaiting-author
|
123/0 |
Mathlib.lean,Mathlib/Order/DirectedCompletePartialOrder/Defs.lean,docs/references.bib |
3 |
5 |
['SnirBroshi', 'YaelDillies', 'github-actions', 'openendings'] |
YaelDillies assignee:YaelDillies |
78-85759 2 months ago |
78-85759 78 days ago |
51-77810 51 days |
| 36731 |
michael-novak-math author:michael-novak-math |
feat: Frénet moving frame and Frénet equation for plane curves |
We define the curvature function, normal vector function and the Frénet moving frame for plane curve.
We also prove the Frénet equations for plane curves.
A separate PR (#37489) will prove the fundamental theorem of plane curves. |
new-contributor
t-differential-geometry
t-analysis
awaiting-author
|
327/0 |
Mathlib.lean,Mathlib/Analysis/InnerProductSpace/Calculus.lean,Mathlib/Geometry/PlaneCurves.lean,Mathlib/MeasureTheory/Integral/IntervalIntegral/FundThmCalculus.lean,docs/references.bib |
5 |
117 |
['Ruben-VandeVelde', 'eric-wieser', 'github-actions', 'grunweg', 'michael-novak-math', 'scholzhannah'] |
nobody |
78-70641 2 months ago |
148-42810 148 days ago |
12-40134 12 days |
| 36326 |
Arnav-panjla author:Arnav-panjla |
Feat/gaussian schwartz map |
feat(Analysis/SpecialFunctions/Gaussian): define the Gaussian as a Schwartz function in 1D
Define the Gaussian function `x ↦ exp (-x^2)` as a `SchwartzMap` in the one-dimensional case.
The proof establishes the Schwartz decay conditions by showing that polynomially
weighted expressions of the form `(1 + x^2)^m * exp (-x^2)` are bounded. This
allows the Gaussian to be packaged using the `SchwartzMap` API.
During the implementation a few adjustments were required to match the current
Mathlib API. In particular:
* replace the non-existent `IsBigO.mul_right` with `IsBigO.of_bound` applied to the
full product `(1 + x^2)^m * exp (-x^2)`
* fix `mem_cocompact` usage by replacing `(hh_tendsto.eventually ...).mem_cocompact`
with `mem_cocompact.mp (hh_tendsto ...)`
* adjust the `hb_bound` step using `gcongr` with exact bounds so that both goals close
* remove the unused declaration `hf_nonpos`
* register the required import in `Mathlib.lean`
This implements the one-dimensional case mentioned in the issue. The generalization
to Gaussians associated with arbitrary positive-definite bilinear forms can be
added in a follow-up PR.
Closes #33072 |
t-analysis
new-contributor
|
235/0 |
Mathlib.lean,Mathlib/Analysis/SpecialFunctions/Gaussian/SchwartzMap.lean |
2 |
5 |
['CoolRmal', 'LLaurance', 'github-actions'] |
nobody |
78-33920 2 months ago |
176-44176 176 days ago |
0-96 1 minute |
| 39791 |
zixiaowang17 author:zixiaowang17 |
feat(Probability/HypothesisTesting): add Neyman-Pearson lemma |
This PR adds `Probability/HypothesisTesting/NeymanPearson.lean`, formalizing the classical Neyman-Pearson lemma with reference
Ingster, Y. and Suslina, I.A., 2012. Nonparametric goodness-of-fit testing under Gaussian models (Vol. 169). Springer Science & Business Media.
-/
The main definitions are:
* `ProbabilityTheory.NeymanPearson.npLikelihoodRatio`
* `ProbabilityTheory.NeymanPearson.npTest`
* `ProbabilityTheory.NeymanPearson.npSumError`
The main theorem is:
* `ProbabilityTheory.NeymanPearson.neyman_pearson`
We state the theorem in the weighted form `∫ T dP + t * ∫ (1 - T) dQ`, over measurable tests T : Ω → ℝ with values in [0, 1], using P + Q as the canonical dominating measure; rather than starting with the constrained formulation that fixes the Type I error and minimizes the Type II error. The reasons are two fold.
First, it can be thought as the Lagrangian form of the classical constrained Neyman-Pearson problem.
Second, this weighted form is often arises in applications, such as, in minimax lower-bound arguments for functional estimation, where one typically reduces estimation lower bounds to testing inequalities involving weighted sums of error probabilities.
Worflow with AI: we first manually wrote a blueprint in latex with every definition and lemma we need [NL_Blueprint_NP_Lemma.pdf](https://github.com/user-attachments/files/28199645/NL_Blueprint_NP_Lemma.pdf). then we checked the Mathlib API with claude code, chatgpt and LeanSearch, We manually wrote the outline, in the outline version we deleted the discussion on gamma in the blueprint - since we have used the version of the NP lemma that uses the likelihood ratio to construct the test, rather than writing in terms of comparisons of Radon-Nikodym derivatives with a common dominating measure, and hence have used gamma to arbitrarily define likelihood-ratio sets of measure zero under the null hypothesis. This choice is motivated by the downstream derivation of errors of NP tests. since we are unfamiliar with mathlib naming style, we used claude code skill for proof golfing and some syntax correction, eg whether should use unfold or simp only [];
Co-authored-by: Rajarshi Mukherjee <ram521@mail.harvard.edu>
--- |
t-measure-probability
new-contributor
LLM-generated
merge-conflict
|
179/0 |
Mathlib.lean,Mathlib/Probability/Decision/HypothesisTesting/NeymanPearson.lean |
2 |
4 |
['github-actions', 'grunweg', 'mathlib-merge-conflicts'] |
nobody |
78-32892 2 months ago |
98-32216 98 days ago |
0-289 4 minutes |
| 35017 |
robo7179 author:robo7179 |
feat(Combinatorics/SimpleGraph/Acyclic): every nontrivial tree has at least two leaves |
Add two theorems to prove that every non trivial tree has at least two leaves (one in Finite the other in Acyclic).
---
- [x] depends on: #37399
- [x] depends on: #37400
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- Vector.* -> List.Vector.*
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- Nat.bit1_add_bit1
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-->
[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
awaiting-author
merge-conflict
|
24/0 |
Mathlib/Combinatorics/SimpleGraph/Acyclic.lean,Mathlib/Combinatorics/SimpleGraph/Finite.lean |
2 |
46 |
['IvanRenison', 'SnirBroshi', 'YaelDillies', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'robo7179'] |
YaelDillies assignee:YaelDillies |
77-25760 2 months ago |
166-47874 166 days ago |
35-3753 35 days |
| 40615 |
SnkXyx author:SnkXyx |
feat(Algebra/MvPolynomial/CharacteristicSet): add pseudo division for TriangularSet |
This PR defines the **pseudo division** for a triangular set:
* `MvPolynomial.serPseudo g S`: Pseudo-division of a multivariate polynomial `g` by a triangular set `S`, which pseudo-divides `g` successively by elements of `S`.
* `MvPolynomial.IsSetRemainder r g S`: A remainder `r` of `g` by `S` is a polynomial which is reduced with respect to `S` and
suffices `(∏ i, (S i).initial ^ es[i]) * g = (∑ i, qs[i] * S i) + r` for some `es : List ℕ` and `qs : List (MvPolynomial σ R)`.
The definition and supporting results on `pseudo` used in this development were introduced in PR #40614 .
The definition was originally developed in PR #36103 as part of the formalization of the Characteristic Set Method (Wu-Ritt Method). The Characteristic Set project aims to formalize the algorithmic method for solving systems of multivariate polynomial equations in Lean 4, providing foundational infrastructure for algebraic geometry based on triangular decomposition.
---
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- [ ] depends on: #40538
- [ ] depends on: #40542
- [ ] depends on: #40543
- [ ] depends on: #40614
[](https://gitpod.io/from-referrer/)
|
WIP
t-algebra
new-contributor
blocked-by-other-PR
label:t-algebra$ |
1849/0 |
Mathlib.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/PseudoDivision.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/Reduced.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/TriangularSet.lean,Mathlib/Algebra/MvPolynomial/Initial.lean,Mathlib/Algebra/MvPolynomial/Variables.lean |
6 |
4 |
['SnkXyx', 'github-actions', 'mathlib-dependent-issues'] |
nobody |
77-734 2 months ago |
77-5569 77 days ago |
0-15 15 seconds |
| 40614 |
SnkXyx author:SnkXyx |
feat(Algebra/MvPolynomial/CharacteristicSet): add pseudo division for MvPolynomial |
This PR defines the **pseudo division** for a multivariate polynomial:
* `MvPolynomial.pseudoOf i g f`: Pseudo-division of `g` by `f` with respect to a variable `i`, computes `q` and `r` such that `f.initialOf i ^ s * g = q * f + r`, where `r.degreeOf i < f.degreeOf i`
* `MvPolynomial.pseudo g f`: pseudo-division of `g` by `f`. If `f` is non-constant, it performs pseudo-division with respect to `f.vars.max`.
The definition was originally developed in PR #36103 as part of the formalization of the Characteristic Set Method (Wu-Ritt Method). The Characteristic Set project aims to formalize the algorithmic method for solving systems of multivariate polynomial equations in Lean 4, providing foundational infrastructure for algebraic geometry based on triangular decomposition.
---
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- [ ] depends on: #40538
- [ ] depends on: #40542
[](https://gitpod.io/from-referrer/)
|
WIP
t-algebra
new-contributor
blocked-by-other-PR
label:t-algebra$ |
935/0 |
Mathlib.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/PseudoDivision.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/Reduced.lean,Mathlib/Algebra/MvPolynomial/Initial.lean |
4 |
4 |
['SnkXyx', 'github-actions', 'mathlib-dependent-issues'] |
nobody |
77-733 2 months ago |
77-6148 77 days ago |
0-29 29 seconds |
| 40619 |
SnkXyx author:SnkXyx |
feat(Algebra/MvPolynomial/CharacteristicSet): add ascending set and basic set |
This PR defines a class `AscendingSetTheory`, the abstract theory of **ascending sets** and **basic sets**.
An ascending set is a triangular set with additional reduction properties.
A basic set is the "smallest" ascending set contained in a given set of polynomials.
The class requires three paramaters, the last one is a predicate `TriangularSet σ R → Prop`, indicating whether an triangular set is an ascending set.
Different instances can implement Ritt's ascending sets or Wu's ascending sets.
The definition was originally developed in PR #36103 as part of the formalization of the Characteristic Set Method (Wu-Ritt Method). The Characteristic Set project aims to formalize the algorithmic method for solving systems of multivariate polynomial equations in Lean 4, providing foundational infrastructure for algebraic geometry based on triangular decomposition.
---
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-->
- [ ] depends on: #40537
- [ ] depends on: #40542
- [ ] depends on: #40543
- [ ] depends on: #40544
[](https://gitpod.io/from-referrer/)
|
WIP
t-algebra
new-contributor
blocked-by-other-PR
label:t-algebra$ |
2589/0 |
Mathlib.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/AscendingSet.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/Rank.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/Reduced.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/TriangularSet.lean,Mathlib/Algebra/MvPolynomial/Initial.lean,Mathlib/Algebra/MvPolynomial/Variables.lean |
7 |
4 |
['SnkXyx', 'github-actions', 'mathlib-dependent-issues'] |
nobody |
76-79409 2 months ago |
76-83958 76 days ago |
0-35 35 seconds |
| 40617 |
SnkXyx author:SnkXyx |
feat(Algebra/MvPolynomial/CharacteristicSet): define rank for TriangularSet |
This PR defines the **rank** of a triangular set:
* `TriangularSet.rank`: The rank of a triangular set is a lexicographic sequence of ranks of its polynomials.
A more intuitive definition is `rank_lt_iff`, `S < T` if one of the following two occurs:
1. There exists some `k < S.length` such that
`S₀ ≈ T₀`, `S₁ ≈ T₁`, ..., `Sₖ₋₁ ≈ Tₖ₋₁` and `Sₖ < Tₖ`.
2. `S.length > T.length` and `∀ i < T.length, Sᵢ ≈ Tᵢ`
The rank induces a natural preorder on triangular sets. The definition and supporting results on `TriangularSet` and rank of `MvPolynomial` used in this development were respectively introduced in PR #40543 and PR #40544 .
This definition was originally developed in PR #36103 as part of the formalization of the Characteristic Set Method (Wu-Ritt Method). The Characteristic Set project aims to formalize the algorithmic method for solving systems of multivariate polynomial equations in Lean 4, providing foundational infrastructure for algebraic geometry based on triangular decomposition.
---
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-->
- [ ] depends on: #40537
- [ ] depends on: #40543
- [ ] depends on: #40544
[](https://gitpod.io/from-referrer/)
|
WIP
t-algebra
new-contributor
blocked-by-other-PR
label:t-algebra$ |
1652/0 |
Mathlib.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/Rank.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/TriangularSet.lean,Mathlib/Algebra/MvPolynomial/Initial.lean,Mathlib/Algebra/MvPolynomial/Variables.lean |
5 |
4 |
['SnkXyx', 'github-actions', 'mathlib-dependent-issues'] |
nobody |
76-79407 2 months ago |
76-85728 76 days ago |
0-39 39 seconds |
| 36103 |
SnkXyx author:SnkXyx |
feat(Algebra/MvPolynomial/CharacteristicSet): add Characteristic Set |
This PR adds some definitions and theorems of Characteristic Set Method (also known as Wu's Method).
This pr aims to formalize the algorithmic method for solving systems of multivariate polynomial equations in Lean 4, providing foundational infrastructure for algebraic geometry based on triangular decomposition.
Main Result:
* `MvPolynomial.List.vanishingSet_eq_zeroDecomposition_union`: The zero set of a polynomial system $PS$ can be decomposed into a finite union of "quasi-varieties" defined by triangular sets:
$Zero(PS) = \bigcup_{CS \in \mathcal{ZD}} Zero(CS / \text{InitialProd}(CS))$
The PR is upstreamized from [github.com/WuProver/lean_characteristic_set](https://github.com/WuProver/lean_characteristic_set)
---
<!-- Your PR title will become the first line of the commit message.
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Moves:
- Vector.* -> List.Vector.*
- ...
Deletions:
- Nat.bit1_add_bit1
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- [ ] depends on: #xyz [optional extra text]
-->
- [x] depends on: #36386
- [x] depends on: #37791
- [ ] depends on: #40537
- [ ] depends on: #40538
- [ ] depends on: #40542
- [ ] depends on: #40543
- [ ] depends on: #40544
- [ ] depends on: #40614
- [ ] depends on: #40615
- [ ] depends on: #40617
- [ ] depends on: #40619
[](https://gitpod.io/from-referrer/) |
t-algebra
new-contributor
WIP
blocked-by-other-PR
label:t-algebra$ |
3627/0 |
Mathlib.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/AscendingSet.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/CharacteristicSet.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/PseudoDivision.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/Rank.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/Reduced.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/TriangularSet.lean,Mathlib/Algebra/MvPolynomial/Degrees.lean,Mathlib/Algebra/MvPolynomial/Initial.lean,Mathlib/Algebra/MvPolynomial/Variables.lean,docs/references.bib |
11 |
26 |
['Hagb', 'SnkXyx', 'faenuccio', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
76-66831 2 months ago |
82-79408 82 days ago |
36-65702 36 days |
| 39162 |
anovickis author:anovickis |
feat(Topology/PartitionOfUnity): add pointwise_decomposition_finsum + companions |
Add three short lemmas to `Mathlib/Topology/PartitionOfUnity.lean` extending the existing `PartitionOfUnity` API:
- `pointwise_decomposition_finsum` — for `f : X → ℝ` and `x ∈ s`, `f x = ∑ᶠ i, ρ i x · f x`. This is the pointwise step that lifts to integral linearity in measure-theoretic PoU integration: `∫_s f dμ = ∑ᶠ i, ∫_s (ρ i · f) dμ`.
- `one_minus_sum_nonneg` — `0 ≤ 1 - ∑ᶠ i, ρ i x`. Direct rearrangement of the existing `sum_le_one` field; useful as a complement-mass remainder bound in chart-by-chart estimates.
- `abs_le_one` — `|ρ i x| ≤ 1`. Combines the existing `nonneg` and `le_one`; convenience for absolute-value bounds.
All three are short proofs using existing structure fields (`sum_eq_one`, `sum_le_one`, `nonneg`, `le_one`).
These came up while writing chart-by-chart Stokes-on-manifold estimates where one wants to decompose `∫_M f` into chart-supported pieces using a partition of unity. The pointwise identity is the obvious first step; the other two are complementary algebraic bounds that show up in remainder estimates.
---
🤖 Generated with [Claude Code](https://claude.com/claude-code) |
t-topology
new-contributor
LLM-generated
awaiting-author
|
27/0 |
Mathlib/Topology/PartitionOfUnity.lean |
1 |
6 |
['github-actions', 'j-loreaux'] |
j-loreaux assignee:j-loreaux |
75-38391 2 months ago |
75-38391 75 days ago |
36-60965 36 days |
| 26413 |
michaellee94 author:michaellee94 |
feat: existence of maximal solutions for ODEs meeting Picard-Lindelöf conditions |
Add existence proof for maximal solution of ODE using Picard-Lindelöf and a uniqueness theorem using Grönwall's lemma.
---
- [x] depends on: #26382
- [x] depends on: #29186
- [x] depends on: #35043
- [ ] depends on: #40687
[](https://gitpod.io/from-referrer/) |
new-contributor
t-analysis
blocked-by-other-PR
|
662/1 |
Mathlib.lean,Mathlib/Analysis/ODE/ExistUnique.lean,Mathlib/Analysis/ODE/MaximalSolution.lean,docs/undergrad.yaml |
4 |
114 |
['botbaki-review', 'github-actions', 'grunweg', 'leanprover-community-bot-assistant', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'michaellee94', 'winstonyin'] |
nobody |
74-60668 2 months ago |
75-31394 75 days ago |
0-7993 2 hours |
| 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 |
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'] |
nobody |
74-17287 2 months ago |
74-19337 74 days ago |
82-50822 82 days |
| 39518 |
abeldonate author:abeldonate |
feat(RingTheory/LocalProperties/Projective): Projective Module theorem |
Theorem: R Noetherian, M finitely generated R-Mod. Then:
M projective iff M_m free for all m maximal
|
t-ring-theory
new-contributor
large-import
awaiting-author
|
21/0 |
Mathlib/RingTheory/LocalProperties/Projective.lean |
1 |
11 |
['abeldonate', 'github-actions', 'jjdishere', 'mbkybky', 'vlad902'] |
jjdishere assignee:jjdishere |
74-9599 2 months ago |
74-9619 74 days ago |
30-2702 30 days |
| 40538 |
SnkXyx author:SnkXyx |
feat(Algebra/MvPolynomial): define initial for MvPolynomial |
This PR defines the **initialOf** and **initial** of a multivariate polynomial:
* `MvPolynomial.initialOf`: The initial of `p` with respect to a specific variable `i` is the coefficient of `X i ^ degᵢ(p)` (a polynomial).
* `MvPolynomial.initial`: The initial of `p` with respect to its max variable.
The definition was originally developed in PR #36103 as part of the formalization of the Characteristic Set Method (Wu-Ritt Method). The Characteristic Set project aims to formalize the algorithmic method for solving systems of multivariate polynomial equations in Lean 4, providing foundational infrastructure for algebraic geometry based on triangular decomposition.
---
<!-- 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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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
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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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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.
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using the following format:
- [ ] depends on: #abc [optional extra text]
- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
WIP
t-algebra
new-contributor
label:t-algebra$ |
484/0 |
Mathlib.lean,Mathlib/Algebra/MvPolynomial/Initial.lean |
2 |
2 |
['github-actions'] |
nobody |
74-7156 2 months ago |
79-74320 79 days ago |
0-77 1 minute |
| 40542 |
SnkXyx author:SnkXyx |
feat(Algebra/MvPolynomial/CharacteristicSet): define reduction relation for MvPolynomial |
This PR defines the **reducedTo** for a multivariate polynomial:
* `MvPolynomial.reducedTo`: A polynomial `q` is reduced with respect to `p` if either `q = 0` or the degree of `q` in `p`'s main variable is strictly less than the degree of `p`.
* `MvPolynomial.reducedToSet`: `q` is reduced with respect to a set if it is reduced with respect to all elements of the set.
The definition was originally developed in PR #36103 as part of the formalization of the Characteristic Set Method (Wu-Ritt Method). The Characteristic Set project aims to formalize the algorithmic method for solving systems of multivariate polynomial equations in Lean 4, providing foundational infrastructure for algebraic geometry based on triangular decomposition.
---
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[](https://gitpod.io/from-referrer/)
|
WIP
t-algebra
new-contributor
label:t-algebra$ |
100/0 |
Mathlib.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/Reduced.lean |
2 |
3 |
['SnkXyx', 'github-actions'] |
nobody |
73-76745 2 months ago |
79-63023 79 days ago |
0-15 15 seconds |
| 40544 |
SnkXyx author:SnkXyx |
feat(Algebra/MvPolynomial/CharacteristicSet): define rank for MvPolynomial |
This PR defines the **rank** of a multivariate polynomial:
* `MvPolynomial.rank`: the rank of a polynomial `p` is the pair `(maxVar p, mainDegree p)` ordered lexicographically.
The rank induces a natural preorder on multivariate polynomials by comparing first their main variables and then their main degrees. The definition and supporting results on `mainDegree` used in this development were introduced in PR #40537.
This definition was originally developed in PR #36103 as part of the formalization of the Characteristic Set Method (Wu-Ritt Method). The Characteristic Set project aims to formalize the algorithmic method for solving systems of multivariate polynomial equations in Lean 4, providing foundational infrastructure for algebraic geometry based on triangular decomposition.
---
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- [ ] depends on: #40537
[](https://gitpod.io/from-referrer/)
|
WIP
t-algebra
new-contributor
blocked-by-other-PR
label:t-algebra$ |
232/0 |
Mathlib.lean,Mathlib/Algebra/MvPolynomial/CharacteristicSet/Rank.lean,Mathlib/Algebra/MvPolynomial/Degrees.lean,Mathlib/Algebra/MvPolynomial/Variables.lean |
4 |
8 |
['SnkXyx', 'faenuccio', 'github-actions', 'leanprover-radar', 'mathlib-dependent-issues'] |
nobody |
73-66668 2 months ago |
79-60862 79 days ago |
0-61 1 minute |
| 39981 |
MarAndrey77 author:MarAndrey77 |
feat(Analysis/Convex): prove Shapley-Folkman lemma |
## Summary
This PR adds a formal proof of the Shapley-Folkman lemma for finite sums of sets in finite-dimensional real vector spaces.
The main theorem states that if a point belongs to a finite sum of convex hulls, then it can be represented as a sum where all but at most `finrank ℝ E` terms belong to the original sets.
## Main declarations
* `shapley_folkman`
* `shapley_folkman_exists_choice`
* `ShapleyFolkmanRep.nonsingleton_card_le_finrank_of_minimal`
## Implementation notes
The proof uses a minimal-complexity representation and a perturbation argument to bound the number of nonsingleton convex combinations by `Module.finrank ℝ E`.
## AI usage
AI assistance was used during this project. In particular, it was used to help identify existing Mathlib theorems that could be useful for the proof, and to analyze Lean error messages while debugging the formalization.
## Checks
* `lake exe mk_all`
* `lake build Mathlib.Analysis.Convex.ShapleyFolkman`
* no `sorry`
* no linter warnings |
awaiting-author
t-analysis
new-contributor
|
1297/0 |
Mathlib.lean,Mathlib/Analysis/Convex/ShapleyFolkman.lean |
2 |
10 |
['MarAndrey77', 'github-actions', 'grunweg', 'wwylele'] |
nobody |
72-52784 2 months ago |
94-46721 94 days ago |
0-123 2 minutes |
| 36757 |
alok author:alok |
feat(Order/Filter): add Filter.IsFree and Filter.IsNonprincipal |
## Summary
Adds two filter predicates and their basic API:
- **`Filter.IsFree`**: no point belongs to every set (`f.ker = ∅`), equivalently `f ≤ cofinite`
- **`Filter.IsNonprincipal`**: not equal to `𝓟 s` for any set `s`
Every free `NeBot` filter is non-principal (`IsFree.isNonprincipal`), but the converse fails for general filters (e.g. `𝓝 x` in a non-discrete T₁ space is non-principal but not free). For ultrafilters the two notions coincide (`Ultrafilter.isNonprincipal_iff_isFree`).
On finite types, no `NeBot` filter is free (`not_isFree_of_neBot`).
## Test plan
- [x] `lake build Mathlib.Order.Filter.Cofinite` passes
- [x] `lake build Mathlib.Order.Filter.Ultrafilter.Basic` passes
🤖 Generated with [Claude Code](https://claude.com/claude-code) |
t-order
new-contributor
LLM-generated
|
98/1 |
Mathlib/Order/Filter/Cofinite.lean,Mathlib/Order/Filter/Ultrafilter/Basic.lean |
2 |
3 |
['felixpernegger', 'github-actions'] |
nobody |
72-36850 2 months ago |
167-7182 167 days ago |
0-3928 1 hour |
| 32608 |
PrParadoxy author:PrParadoxy |
feat(LinearAlgebra/PiTensorProduct): API for PiTensorProducts indexed by sets |
This PR addresses a TODO item in LinearAlgebra/PiTensorProduct.lean:
* API for the various ways ι can be split into subsets; connect this
with the binary tensor product
-- specifically by describing tensors of type ⨂ (i : S), M i, for S : Set ι.
Our primary motivation is to formalise the notion of "restricted tensor
products". This will be the content of a follow-up PR.
Beyond that, the Set API is natural in contexts where the index type has
an independent interpretation. An example is quantum physics, where ι
ranges over distinguishable degrees of freedom, and where its is common
practice to annotate objects by the set of indices they are defined on.
---
Stub file with preliminary definition of the restricted tensor product as a direct limit of tensors indexed by finite subsets of an index type:
https://github.com/PrParadoxy/mathlib4/blob/restricted-stub/Mathlib/LinearAlgebra/PiTensorProduct/Restricted.lean
---
- [x] depends on: #32598
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-->
[](https://gitpod.io/from-referrer/)
|
new-contributor
awaiting-zulip
t-algebra
WIP
merge-conflict
label:t-algebra$ |
300/2 |
Mathlib.lean,Mathlib/LinearAlgebra/PiTensorProduct.lean,Mathlib/LinearAlgebra/PiTensorProduct/Set.lean |
3 |
32 |
['PrParadoxy', 'dagurtomas', 'eric-wieser', 'github-actions', 'goliath-klein', 'leanprover-radar', 'mathlib-merge-conflicts', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
72-29927 2 months ago |
251-45635 251 days ago |
10-66980 10 days |
| 40677 |
nrs-status author:nrs-status |
chore: update `Data.PFunctor.Univariate.M` docstring with example usage |
It is not clear how to make use of the `PFunctor.M` API, an example is added.
Following https://leanprover.zulipchat.com/#narrow/channel/113489-new-members/topic/Possibly.20infinite.20trees/near/592161797 |
t-data
new-contributor
|
37/0 |
Mathlib/Data/PFunctor/Univariate/M.lean |
1 |
11 |
['eric-wieser', 'github-actions', 'nrs-status'] |
nobody |
71-68055 2 months ago |
71-67857 71 days ago |
0-4260 1 hour |
| 40539 |
edwardfalk author:edwardfalk |
feat(NumberTheory/LSeries): trivial and nontrivial zeros of riemannZeta |
This PR adds the sets of trivial and nontrivial zeros of the Riemann zeta function to
`Mathlib/NumberTheory/LSeries/ZetaZeros.lean`:
- `riemannZetaTrivialZeros` : the set `{-2, -4, -6, …}`, with a membership lemma and
the inclusion into `riemannZetaZeros` (via `riemannZeta_neg_two_mul_nat_add_one`);
- `riemannZetaNontrivialZeros` : zeros that are neither trivial nor the point `s = 1`,
with a membership lemma and the inclusion into `riemannZetaZeros`;
- `riemannHypothesis_iff_nontrivialZeros` : `RiemannHypothesis` is equivalent to the
statement that every nontrivial zero has real part `1/2`.
Motivation: the set-based formulation is the natural interface for follow-up work on
the Riemann xi function (follow-up PR adds `riemannXi` with the unconditional zero
characterization `riemannXi s = 0 ↔ s ∈ riemannZetaNontrivialZeros`) and, further out,
for Li's criterion, whose coefficient sums range over the nontrivial zero set.
Disclosure: this code was written with substantial assistance from Claude (Anthropic),
as part of a long-running formalization project; I have reviewed it, it is sorry-free,
and it builds and lints clean at master. Please apply the `LLM-generated` label.
🤖 Generated with [Claude Code](https://claude.com/claude-code)
|
t-number-theory
new-contributor
LLM-generated
awaiting-author
|
51/0 |
Mathlib/NumberTheory/LSeries/ZetaZeros.lean |
1 |
4 |
['felixpernegger', 'github-actions', 'loefflerd'] |
loefflerd assignee:loefflerd |
71-47878 2 months ago |
71-47878 71 days ago |
8-26005 8 days |
| 40464 |
roos-j author:roos-j |
feat(Analysis/Complex): add `conj_exp_ofReal_mul_I` |
---
This is maybe natural enough to not need justification, but is also useful in https://github.com/roos-j/lean-oscillatory
|
t-analysis
new-contributor
WIP
|
3/0 |
Mathlib/Analysis/Complex/Trigonometric.lean |
1 |
4 |
['github-actions', 'roos-j', 'themathqueen'] |
nobody |
70-64830 2 months ago |
72-28879 72 days ago |
3-52083 3 days |
| 40707 |
fraware author:fraware |
CategoryTheory: add naturality and whiskering reference examples |
## Summary
- Add a naturality square example in `NatTrans.lean` closing via `rw [← NatTrans.naturality]`.
- Add whiskering component and naturality square examples in `Whiskering.lean` (`whiskerRight_app`, `whiskerLeft_app`, and `rw [← NatTrans.naturality]`).
- Add functoriality reference examples in `Functor/Basic.lean` (`map_id`, `map_comp`, composed-functor `map_id`).
- Add a Yoneda composite-map usage example in `Yoneda.lean`.
These are reference examples from a category-theory proof friction survey; no new lemmas or imports.
## Test plan
- [x] `lake build Mathlib.CategoryTheory.Functor.Basic`
- [x] `lake build Mathlib.CategoryTheory.NatTrans`
- [x] `lake build Mathlib.CategoryTheory.Whiskering`
- [x] `lake build Mathlib.CategoryTheory.Yoneda`
- [ ] No new `import` lines; examples use lemmas already in scope |
t-category-theory
new-contributor
awaiting-author
will-close-soon
|
36/0 |
Mathlib/CategoryTheory/Functor/Basic.lean,Mathlib/CategoryTheory/NatTrans.lean,Mathlib/CategoryTheory/Whiskering.lean,Mathlib/CategoryTheory/Yoneda.lean |
4 |
4 |
['github-actions', 'joelriou'] |
nobody |
70-1745 2 months ago |
74-66616 74 days ago |
0-23 23 seconds |
| 40280 |
mrdouglasny author:mrdouglasny |
feat(Analysis/Calculus/ParametricIntegral): one-sided differentiation under the integral |
Adds `hasDerivWithinAt_Ici_integral_of_dominated_loc_of_deriv_le`, the within-`Ici x₀` (right) analogue of `hasDerivAt_integral_of_dominated_loc_of_deriv_le`: differentiation under the integral sign where the derivative bound is required only on a **right**-neighborhood `s ∈ 𝓝[≥] x₀`, concluding `HasDerivWithinAt (fun x ↦ ∫ a, F x a ∂μ) (∫ a, F' x₀ a ∂μ) (Ici x₀) x₀`.
### Motivation
The existing two-sided theorem needs the domination on a full neighborhood of `x₀`. That fails for parametric integrals dominated only on one side — e.g. Gibbs / partition-function families `g ↦ ∫ A e ^ (-g • V)` where `V` is bounded below but not above, so the weight is integrable only for `g ≥ 0` (the Dyson-instability situation in constructive QFT). One still wants the one-sided derivative at the boundary.
### Proof
Rather than re-running the dominated-convergence argument, `F` is extended across `x₀` by its affine first-order part below `x₀`,
`G x a = if x₀ ≤ x then F x a else F x₀ a + (x - x₀) • F' x₀ a`,
which is two-sided dominated (the affine part has constant derivative `F' x₀ a`, bounded by `bound a`). The existing two-sided theorem applies to `G`, and since `G = F` on `Ici x₀`, the conclusion restricts to the desired `HasDerivWithinAt`.
I'm happy to adjust naming, or to generalize to an arbitrary set `t` (`𝓝[t] x₀`) if reviewers prefer — that would need the direct dominated-convergence proof rather than the extension trick.
|
t-analysis
new-contributor
awaiting-author
|
105/0 |
Mathlib/Analysis/Calculus/ParametricIntegral.lean |
1 |
3 |
['ADedecker', 'github-actions'] |
ADedecker assignee:ADedecker |
69-50891 2 months ago |
69-50891 69 days ago |
16-54932 16 days |
| 38476 |
agusakov author:agusakov |
refactor(Combinatorics/Digraph): add vertex sets |
---
Adopting #33466
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[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
awaiting-author
|
381/50 |
Mathlib/Combinatorics/Digraph/Basic.lean,Mathlib/Combinatorics/Digraph/Orientation.lean |
2 |
20 |
['Shreyas4991', 'YaelDillies', 'agusakov', 'github-actions'] |
nobody |
69-44026 2 months ago |
123-82730 123 days ago |
3-33232 3 days |
| 33985 |
YellPika author:YellPika |
feat(Order/OmegaCompletePartialOrder): `OmegaCompletePartialOrder` instance for `Sum` with basic `ωScottContinuous` lemmas |
This PR adds an `OmegaCompletePartialOrder` instance for `Sum`, along with `ωScottContinuous` lemmas for basic operations (`inl`, `inr`, `elim`). Appropriate lemmas are marked with `@[fun_prop]` so that the `fun_prop` tactic can automatically deduce `ωScottContinuous` proofs for functions involving `Sum`s (e.g. see the proof of `Sum.ωScottContinuous_map`).
---
- [x] depends on: #33941
- [x] depends on: #37258
<!-- 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/)
|
new-contributor
large-import
t-order
awaiting-author
merge-conflict
|
205/3 |
Mathlib/Data/Sum/Basic.lean,Mathlib/Data/Sum/Order.lean,Mathlib/Order/OmegaCompletePartialOrder.lean,Mathlib/Order/ScottContinuity.lean,Mathlib/Topology/Constructions/SumProd.lean |
5 |
59 |
['Komyyy', 'Vierkantor', 'YaelDillies', 'YellPika', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'vihdzp'] |
YaelDillies and pechersky assignee:pechersky assignee:YaelDillies |
69-25116 2 months ago |
149-54865 149 days ago |
52-59724 52 days |
| 40576 |
zhangmai19 author:zhangmai19 |
feat(Analysis/Convex): add Shapley-Folkman lemma |
The Shapley-Folkman lemma is a convex analysis result well-known in economics but rarely stated in math. Roughly: a sum of non-convex sets is "almost convex" — any point in the convex hull of the sum can be written as a sum of points from the individual convex hulls, and at most d of them actually need the convex hull (the rest are already in the original sets).
Closes #14427 |
t-analysis
new-contributor
awaiting-author
|
1022/0 |
Mathlib.lean,Mathlib/Analysis/Convex/ShapleyFolkman.lean,docs/references.bib |
3 |
12 |
['felixpernegger', 'github-actions', 'grunweg', 'zhangmai19'] |
YaelDillies assignee:YaelDillies |
68-1414 2 months ago |
77-84815 77 days ago |
0-424 7 minutes |
| 40200 |
AlecsFerra author:AlecsFerra |
feat(FinitelyPresentedGroup): add definitional equivalence with generating set given by S : Set G |
cc @homeowmorphism
- [x] depends on: #40726
---
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|
new-contributor
t-group-theory
large-import
awaiting-author
|
26/6 |
Mathlib/GroupTheory/FinitelyPresentedGroup.lean |
1 |
12 |
['AlecsFerra', 'github-actions', 'javgomzar', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'tb65536'] |
tb65536 assignee:tb65536 |
67-48407 2 months ago |
80-64793 80 days ago |
7-56895 7 days |
| 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 |
65-3102 2 months ago |
68-39328 68 days ago |
68-39250 68 days |
| 39820 |
samuelchassot author:samuelchassot |
feat(Combinatorics/SimpleGraph): an eulerian walk exists iff exactly 0 or 2 vertices have odd degree |
As per the TODO open in `Trails.lean`.
---
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|
t-combinatorics
new-contributor
awaiting-author
|
671/3 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/Eulerian.lean,Mathlib/Combinatorics/SimpleGraph/Trails.lean |
3 |
9 |
['SnirBroshi', 'YaelDillies', 'copilot-pull-request-reviewer', 'github-actions'] |
YaelDillies assignee:YaelDillies |
64-65484 2 months ago |
96-62895 96 days ago |
0-86024 23 hours |
| 38897 |
0xTerencePrime author:0xTerencePrime |
feat(Combinatorics/SetFamily): formalize 1D Sperner's Lemma parity |
Formalizes the 1-dimensional Sperner's Lemma (parity version): given a coloring of
the `n + 1` vertices of a subdivided line segment with two colors (`ZMod 2`), if the
two endpoints have different colors, then the number of color-changing edges is odd.
This is **distinct** from `IsAntichain.sperner` in `SetFamily.LYM`, which concerns
antichains in a power set. This file formalizes the topological/combinatorial parity
statement used as the base case in higher-dimensional Sperner arguments.
## Key declarations
- `SpernerColoring`: type-safe coloring via `Fin (n + 1) → ZMod 2`
- `edgeDiff`: color difference on adjacent vertices, computed in `ZMod 2`
- `totalDiff`: telescoping sum of all edge differences
- `diffEdges`: the `Finset` of bichromatic (color-changing) edges
- `sperner_1d`: main theorem — `Odd (diffEdges c).card`
## Design notes
- Using `Fin (n + 1) → ZMod 2` instead of `ℕ → ZMod 2` makes boundary conditions
unrepresentable at the type level, eliminating out-of-bounds cases entirely.
- The proof reduces to a telescoping sum in `ZMod 2`, using `CharTwo.add_self_eq_zero`
to cancel all interior vertices, avoiding parity case splits.
This is intended as the 1D base case, the approach generalizes to higher-dimensional
Sperner's Lemma in future work.
---
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|
t-combinatorics
new-contributor
awaiting-author
|
133/0 |
Mathlib.lean,Mathlib/Combinatorics/SetFamily/Sperner1D.lean |
2 |
4 |
['YaelDillies', 'github-actions', 'grunweg'] |
YaelDillies assignee:YaelDillies |
64-53375 2 months ago |
64-53375 64 days ago |
54-39797 54 days |
| 38113 |
robo7179 author:robo7179 |
feat(SimpleGraph/PerfectGraph): add lemma graph is perfect iff all su… |
Perfect graph theorem , discussion on zulip thread: [#graph theory > Second Order Monadic Logic](https://leanprover.zulipchat.com/#narrow/channel/252551-graph-theory/topic/Second.20Order.20Monadic.20Logic.20for.20Graph/with/583013775)
- [ ] depends on: #37680
- [ ] depends on: #37598 |
t-combinatorics
new-contributor
blocked-by-other-PR
|
54/0 |
Mathlib/Combinatorics/SimpleGraph/PerfectGraph.lean |
1 |
3 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
64-38749 2 months ago |
136-66806 136 days ago |
0-69 1 minute |
| 40561 |
iosephusferrum author:iosephusferrum |
feat(ModelTheory): quantifier elimination for first-order theories |
This PR introduces `HasQuantifierElimination` for first-order languages, along with some standard criteria to establish it for any language that satisfies them and prerequisite formalization `mathlib4` required on elementary extension pairs (`IsElementaryExtensionPair`) and < κ-generated substructures (`CardinalLTGenerated`). It also states and proves that the first-order theory DLO (dense linear order without endpoints) has quantifier elimination (`dlo_hasQuantifierElimination`), using the newly formalized quantifier elimination criteria.
Co-authored-by: Yağız Kaan Aydoğdu <y.kaan.aydogdu@gmail.com>
Co-authored-by: Salih Erdem Koçak <saliherdemkd@gmail.com>
Advised-by: Ayhan Günaydın <ayhan.gunaydin@bogazici.edu.tr>
Advised-by: Metin Ersin Arıcan <metin.arican@bogazici.edu.tr>
---
[](https://gitpod.io/from-referrer/)
Please note that we have utilized agentic AI tools (Claude Opus, ChatGPT Codex) during the development of this PR. Most of the proofs of the major theorems are directly "translated" from human-language source material (check the diff in `references.bib`) to Lean proofs using mentioned AI tools. However, all design/formalization decisions are made by us. |
new-contributor
LLM-generated
|
976/7 |
Mathlib.lean,Mathlib/ModelTheory/Complexity.lean,Mathlib/ModelTheory/ElementaryExtensionPair.lean,Mathlib/ModelTheory/FinitelyGenerated.lean,Mathlib/ModelTheory/Order.lean,Mathlib/ModelTheory/PartialEquiv.lean,Mathlib/ModelTheory/QuantifierElimination.lean,Mathlib/ModelTheory/Semantics.lean,Mathlib/ModelTheory/Substructures.lean,Mathlib/Tactic/Linter/TextBased/UnicodeLinter.lean,docs/references.bib |
11 |
6 |
['erdkocak', 'felixpernegger', 'github-actions'] |
nobody |
64-27230 2 months ago |
79-29840 79 days ago |
79-29963 79 days |
| 37819 |
YellPika author:YellPika |
feat(Order/OmegaCompletePartialOrder): add `OmegaCompletePartialOrder` instance for `WithBot` with basic `ωScottContinuous` lemmas |
This is a modification of #34093. See #34093 for details.
---
- [x] depends on: #33941
- [x] depends on: #37258
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|
new-contributor
t-order
merge-conflict
|
337/10 |
Mathlib/Algebra/Order/Ring/WithTop.lean,Mathlib/Analysis/BoxIntegral/Box/Basic.lean,Mathlib/Order/Monotone/Basic.lean,Mathlib/Order/OmegaCompletePartialOrder.lean,Mathlib/Order/TypeTags.lean,Mathlib/Order/WithBot.lean |
6 |
6 |
['Komyyy', 'github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
63-63683 2 months ago |
122-4170 122 days ago |
22-11204 22 days |
| 40979 |
thefundamentaltheor3m author:thefundamentaltheor3m |
feat(NumberTheory/ArithmeticFunction/Asymptotics) |
---
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|
t-number-theory
new-contributor
sphere-packing
awaiting-author
|
37/0 |
Mathlib.lean,Mathlib/NumberTheory/ArithmeticFunction/Asymptotics.lean |
2 |
13 |
['b-mehta', 'github-actions', 'loefflerd', 'thefundamentaltheor3m'] |
loefflerd assignee:loefflerd |
62-75990 2 months ago |
62-76014 62 days ago |
5-27115 5 days |
| 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 |
61-20463 1 month ago |
61-21652 61 days ago |
61-21489 61 days |
| 36770 |
Xmask19 author:Xmask19 |
feat: invariance of domain via Brouwer's fixed point theorem |
Continuous and injective maps from Rn to Rn are open mappings. This is shown given Brouwer's fixed point theorem. The specific version of Brouwer's theorem assumed is that a continuous map from the closed unit ball to itself has a fixed point. It is used to show a lemma in this proof. Then assuming that invariance of domain isn't true gives a contradiction with this lemma.
---
My supervisor has code for studying topological manifolds which relies on invariance of domain that can be found here: https://github.com/stevensivek/TopologicalManifolds and is planned to be submitted to Mathlib.
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|
t-topology
new-contributor
large-import
merge-conflict
|
1587/5 |
Mathlib.lean,Mathlib/Algebra/Polynomial/Roots.lean,Mathlib/AlgebraicTopology/InvarianceOfDomain.lean,Mathlib/Analysis/Convex/GaugeRescale.lean,Mathlib/Topology/Closure.lean,Mathlib/Topology/Order.lean |
6 |
3 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
61-16368 1 month ago |
67-33021 67 days ago |
0-7022 1 hour |
| 37299 |
XC0R author:XC0R |
feat(NumberTheory): Chebyshev's lower bound on primorial |
## Summary
Prove `primorial(n) ≥ 2^(n/2)` for all `n ≥ 2` (Chebyshev's 1852 lower bound). This is the lower bound complement to `primorial_le_four_pow`. Addresses the TODO at `Chebyshev.lean` line 50: "Prove Chebyshev's lower bound."
### New file: `Mathlib/NumberTheory/PrimorialLowerBound.lean`
**Main theorems:**
- `two_pow_le_primorial`: `2 ^ n ≤ primorial (2 * n)` for `n ≥ 29`
- `two_pow_div_two_le_primorial`: `2 ^ (n / 2) ≤ primorial n` for `n ≥ 2`
**Key intermediates:**
- `centralBinom_le_pow_mul_primorial`: `C(2n,n) ≤ (2n)^{π(√(2n)+1)} * primorial(2n)`
- `eight_mul_sq_add_le_two_pow`: `8u² + 16u + 8 ≤ 2^u` for `u ≥ 10`
### Proof technique
Central binomial decomposition: from `four_pow_lt_mul_centralBinom` and `factorization_choose_le_log`, bound `C(2n,n)` above by `(2n)^{π(√(2n)+1)} * primorial(2n)`. Rearranging gives `primorial(2n) ≥ 2^n` for `n ≥ 29`. Base cases by `norm_num` + `decide`, large `n` analytically via `√n` factoring.
### AI disclosure
Claude (Anthropic) was used as a coding assistant for Lean tactic exploration, file structuring, and CI debugging. All proof strategy, mathematical content, and final code have been reviewed and are understood by the author. |
t-number-theory
new-contributor
awaiting-author
merge-conflict
|
226/2 |
Mathlib/NumberTheory/Chebyshev.lean,Mathlib/NumberTheory/Primorial.lean |
2 |
54 |
['MichaelStollBayreuth', 'Parcly-Taxel', 'XC0R', 'github-actions', 'mathlib-merge-conflicts', 'wwylele'] |
MichaelStollBayreuth assignee:MichaelStollBayreuth |
61-16243 1 month ago |
142-39021 142 days ago |
13-62238 13 days |
| 40835 |
Gracie-z author:Gracie-z |
feat(Probability): add Paley-Zygmund inequality |
Add the Paley-Zygmund inequality: for a nonneg random variable Z with finite variance and 0 ≤ θ ≤ 1,
(1-θ)² E[Z]² ≤ E[Z²] · P(Z > θ E[Z]).
The proof uses Jensen's inequality applied to x² on the set {Z > θ E[Z]}.
AI disclosure: I used Claude Code as a learning aid while writing this proof. It helped me find the right Mathlib lemma names and understand tactic syntax, but I wrote every line of code myself.
---
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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:
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[](https://gitpod.io/from-referrer/)
|
t-measure-probability
new-contributor
awaiting-author
|
85/0 |
Mathlib.lean,Mathlib/Probability/PaleyZygmund.lean |
2 |
20 |
['CoolRmal', 'Gracie-z', 'SnirBroshi', 'github-actions'] |
EtienneC30 assignee:EtienneC30 |
59-82496 1 month ago |
59-82496 59 days ago |
12-8119 12 days |
| 40224 |
AlexBrodbelt author:AlexBrodbelt |
feat(Tactic/Group): strengthen the group tactic and add tests |
Following the suggestion from Floris Van Doorn, this PR keeps the group tactic as an invocation of a suitable simp-set.
The group tactic is improved to:
Once simplification on the exponents is done, apply left and right cancellation. That is, to normalise expressions like `a * b = a * c` to `b * c`. In particular, an elaborator for traversing the syntax tree to efficiently simplify expressions like:
- `a * b^(-3) = c * b^(-3)` to `a = c` - apply right cancellation
- `a^3 * b = a^2 * c` to `a * b = c` - apply left cancellation and reduce exponent
- `a^7 * b = a^(-3) * c` to `a^10 * b = c` - apply right and increase exponent to being positive
- `a * b^5 = c * b` to `a * b^4 = c` - apply right cancellation and reduce exponent
Apply a post-processing where expression of the form ( · )^(-1) are normalised to use the inversion notation ( · )⁻¹. This allows immediately using lemmas involving inversion which is how most lemmas are stated.
*Limitations*
- It cannot deal with cycling to simplify the expression
`b ^ 17 * c⁻¹ * d * b ^ 3 = 1` to `b^20 * c⁻¹ * d`
and cannot not close
- `(a * b *c)^m * a * b * (c * a * b)^n * c = (a * b * c)^(n + m +1)`
---
<!-- 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/)
|
t-meta
new-contributor
WIP
|
190/10 |
Mathlib/Tactic/Group.lean,MathlibTest/Tactic/Group.lean |
2 |
4 |
['github-actions', 'grunweg'] |
nobody |
59-62492 1 month ago |
87-56042 87 days ago |
0-601 10 minutes |
| 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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the commit message (that is, directly before the `---`) using the following format:
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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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-->
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-order
|
272/0 |
Mathlib.lean,Mathlib/Order/Category/PartOrd/CartesianClosed.lean,Mathlib/Order/Category/PartOrd/Distributive.lean,Mathlib/Order/Category/Preord/CartesianClosed.lean,Mathlib/Order/Category/Preord/Distributive.lean |
5 |
5 |
['github-actions', 'intgrah'] |
nobody |
59-35261 1 month ago |
60-59839 60 days ago |
60-59676 60 days |
| 29871 |
zach1502 author:zach1502 |
feat(Matrix/Transvection): Gauss pivot determinant identity and pivot preservation |
This PR adds two lemmas formalizing standard Gaussian pivot identities:
* `Matrix.Transvection.listTransvecCol_mul_mul_listTransvecRow_pivot`:
After applying the canonical left/right transvection products that clear the last column and row,
the pivot (bottom-right) entry of a matrix is unchanged.
Marked `@[simp]`.
* `Matrix.Transvection.det_eq_detTopLeft_mul_pivot`:
If the pivot entry is nonzero, then the determinant of the matrix factors as
the determinant of the top-left block times the pivot entry, after performing
the canonical transvections.
This is the usual Gauss–pivot determinant identity.
* Added simple usage tests in `MathlibTest/matrix.lean` to check that the new lemmas
are usable by `simp`/`simpa`.
---
---
<!-- The text above the `---` will become the commit message when your
PR is merged. Please leave a blank newline before the `---`, otherwise
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-->
[](https://gitpod.io/from-referrer/)
|
awaiting-author
t-algebra
new-contributor
merge-conflict
label:t-algebra$ |
94/0 |
Mathlib/LinearAlgebra/Matrix/Transvection.lean,MathlibTest/matrix.lean |
2 |
4 |
['github-actions', 'mathlib-merge-conflicts', 'riccardobrasca', 'zach1502'] |
nobody |
59-26248 1 month ago |
300-67120 300 days ago |
41-53612 41 days |
| 37350 |
aditya-ramabadran author:aditya-ramabadran |
feat(Analysis/Distribution): define the map from test functions to Schwartz functions |
Defines the canonical continuous linear map from test functions to Schwartz functions.
---
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This PR originally also included the induced map from tempered distributions to distributions,
`𝓢'(E, F) →ₗ[ℂ] 𝓓'(Ω, F)`, via a real-to-complex bridge
`𝓓(Ω, ℝ) →L[ℝ] 𝓢(E, ℂ)`. After feedback from @mcdoll , I removed that second part from this PR so that the `𝓓 → 𝓢` map can be merged separately / later in a follow up PR after we figure out the best way to do it.
**Old description:**
Put in a separate file since Distribution.lean only imports TestFunction right now and I thought it was cleaner to do in a new bridge file with both the maps. Open to changing this though.
* Made use of #36445 (proved first map locally on fixed support spaces first by local seminorm estimates, then used limitCLM)
* Needed a real to complex bridge `TestFunction.ToComplexSchwartzMap` since distributions are defined on real-valued test functions but tempered distributions in mathlib are defined on complex-valued Schwartz functions
* Induced map $\mathcal S'(E,F) \to \mathcal D'(Ω,F)$ is $\mathbb C$-linear
The main important defs are `ContDiffMapSupportedIn.toSchwartzMapCLM` which is the local fixed-support part, then `TestFunction.toSchwartzMapCLM` (where the continuity uses limitCLM to glue the local continuous linear maps on each $\mathcal D_K$), and `TemperedDistribution.toDistributionLM` which is the linear map from tempered distributions to ordinary distributions.
Tested with `lake env lean Mathlib/Analysis/Distribution/TestFunctionSchwartz.lean`
[](https://gitpod.io/from-referrer/)
|
t-analysis
new-contributor
awaiting-author
|
143/0 |
Mathlib.lean,Mathlib/Analysis/Distribution/TestFunctionSchwartz.lean |
2 |
27 |
['aditya-ramabadran', 'github-actions', 'j-loreaux', 'luigi-massacci', 'mcdoll'] |
mcdoll assignee:mcdoll |
58-79992 1 month ago |
58-79992 58 days ago |
80-32218 80 days |
| 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 |
58-16150 1 month ago |
58-18405 58 days ago |
58-18242 58 days |
| 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
<!-- 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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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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- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
new-contributor |
133/0 |
Mathlib.lean,Mathlib/Topology/Sheaves/KSheaf.lean |
2 |
9 |
['github-actions', 'joelriou', 'mathlib-dependent-issues', 'ymonbru'] |
nobody |
57-79049 1 month ago |
57-79049 57 days ago |
58-3221 58 days |
| 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 |
57-74118 1 month ago |
57-74707 57 days ago |
57-74544 57 days |
| 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'] |
nobody |
57-73263 1 month ago |
57-74070 57 days ago |
63-71596 63 days |
| 41112 |
erdkocak author:erdkocak |
feat(ModelTheory): add elementary extension pairs |
- [ ] depends on: #41111
- [ ] depends on: #41358
The second dependency is a small documentation-only cleanup split out from the original stack, so that the downstream PRs do not carry that unrelated diff.
This is the second PR in a sequence splitting #40561.
It adds elementary extension-pair predicates and the partial-equivalence API used by the quantifier-elimination criterion.
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. |
new-contributor
LLM-generated
blocked-by-other-PR
|
221/4 |
Mathlib.lean,Mathlib/ModelTheory/ElementaryExtensionPair.lean,Mathlib/ModelTheory/FinitelyGenerated.lean,Mathlib/ModelTheory/PartialEquiv.lean,Mathlib/ModelTheory/Substructures.lean,Mathlib/Tactic/Linter/TextBased/UnicodeLinter.lean |
6 |
4 |
['felixpernegger', 'github-actions', 'mathlib-dependent-issues'] |
nobody |
57-73115 1 month ago |
63-61116 63 days ago |
0-10614 2 hours |
| 41113 |
erdkocak author:erdkocak |
feat(ModelTheory): define quantifier elimination |
- [ ] depends on: #41112
This is the third PR in a sequence splitting #40561.
It defines quantifier-free equivalence over a theory and quantifier elimination, together with basic reduction lemmas.
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. |
new-contributor
LLM-generated
blocked-by-other-PR
|
400/4 |
Mathlib.lean,Mathlib/ModelTheory/Complexity.lean,Mathlib/ModelTheory/ElementaryExtensionPair.lean,Mathlib/ModelTheory/FinitelyGenerated.lean,Mathlib/ModelTheory/PartialEquiv.lean,Mathlib/ModelTheory/QuantifierElimination.lean,Mathlib/ModelTheory/Substructures.lean,Mathlib/Tactic/Linter/TextBased/UnicodeLinter.lean,docs/references.bib |
9 |
4 |
['felixpernegger', 'github-actions', 'mathlib-dependent-issues'] |
nobody |
57-72876 1 month ago |
63-61118 63 days ago |
0-10570 2 hours |
| 41114 |
erdkocak author:erdkocak |
feat(ModelTheory): add embedding criteria for quantifier elimination |
- [ ] depends on: #41113
This is the fourth PR in a sequence splitting #40561.
It adds embedding and realization criteria for quantifier elimination, including the Marker-style criterion.
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. |
new-contributor
LLM-generated
blocked-by-other-PR
|
771/4 |
Mathlib.lean,Mathlib/ModelTheory/Complexity.lean,Mathlib/ModelTheory/ElementaryExtensionPair.lean,Mathlib/ModelTheory/FinitelyGenerated.lean,Mathlib/ModelTheory/PartialEquiv.lean,Mathlib/ModelTheory/QuantifierElimination.lean,Mathlib/ModelTheory/Semantics.lean,Mathlib/ModelTheory/Substructures.lean,Mathlib/Tactic/Linter/TextBased/UnicodeLinter.lean,docs/references.bib |
10 |
4 |
['felixpernegger', 'github-actions', 'mathlib-dependent-issues'] |
nobody |
57-72805 1 month ago |
63-61119 63 days ago |
0-10598 2 hours |
| 41115 |
erdkocak author:erdkocak |
feat(ModelTheory): derive quantifier elimination from extension pairs |
- [ ] depends on: #41114
This is the fifth PR in a sequence splitting #40561.
It proves quantifier elimination from elementary extension-pair hypotheses, including finitely generated and cardinal-generated variants.
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. |
new-contributor
LLM-generated
blocked-by-other-PR
|
955/4 |
Mathlib.lean,Mathlib/ModelTheory/Complexity.lean,Mathlib/ModelTheory/ElementaryExtensionPair.lean,Mathlib/ModelTheory/FinitelyGenerated.lean,Mathlib/ModelTheory/PartialEquiv.lean,Mathlib/ModelTheory/QuantifierElimination.lean,Mathlib/ModelTheory/Semantics.lean,Mathlib/ModelTheory/Substructures.lean,Mathlib/Tactic/Linter/TextBased/UnicodeLinter.lean,docs/references.bib |
10 |
4 |
['felixpernegger', 'github-actions', 'mathlib-dependent-issues'] |
nobody |
57-72629 1 month ago |
63-61120 63 days ago |
0-10557 2 hours |
| 41116 |
erdkocak author:erdkocak |
feat(ModelTheory): prove quantifier elimination for dense linear orders |
- [ ] depends on: #41115
This is the final PR in a sequence splitting #40561.
It applies the extension-pair criterion to prove that dense linear orders have quantifier elimination.
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. |
new-contributor
LLM-generated
blocked-by-other-PR
|
972/5 |
Mathlib.lean,Mathlib/ModelTheory/Complexity.lean,Mathlib/ModelTheory/ElementaryExtensionPair.lean,Mathlib/ModelTheory/FinitelyGenerated.lean,Mathlib/ModelTheory/Order.lean,Mathlib/ModelTheory/PartialEquiv.lean,Mathlib/ModelTheory/QuantifierElimination.lean,Mathlib/ModelTheory/Semantics.lean,Mathlib/ModelTheory/Substructures.lean,Mathlib/Tactic/Linter/TextBased/UnicodeLinter.lean,docs/references.bib |
11 |
5 |
['felixpernegger', 'github-actions', 'mathlib-dependent-issues'] |
nobody |
57-72551 1 month ago |
63-61121 63 days ago |
0-10546 2 hours |
| 39864 |
8e7 author:8e7 |
feat(Combinatorics/SimpleGraph/Acyclic): helly property on subtrees |
This PR adds several lemmas regarding connected subsets of vertices in trees (subtrees). The main result is the Helly property for subtrees: For a finite set of subtrees, if any pair of subtrees intersect, then there is a common vertex in all subtrees.
This lemma is part of an effort to formalize tree decompositions (see #38334), and will be used in a future PR to prove `G.cliqueNum - 1 <= G.treeWidth`.
AI Usage: The proofs were developed with the help of Claude Code. I vouch for all the code written and understand the content fully.
---
<!-- 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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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.*
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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-combinatorics
new-contributor
LLM-generated
|
114/0 |
Mathlib/Combinatorics/SimpleGraph/Acyclic.lean,Mathlib/Combinatorics/SimpleGraph/Connectivity/Subgraph.lean |
2 |
3 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
57-7884 1 month ago |
57-8439 57 days ago |
75-22449 75 days |
| 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.
---
<!-- 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.
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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:
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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
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Moves:
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- [ ] depends on: #37682
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-order
|
14/0 |
Mathlib/Order/OrdContinuous.lean |
1 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
55-32896 1 month ago |
55-34563 55 days ago |
55-35847 55 days |
| 40984 |
jujumumu author:jujumumu |
feat(Algebra/Homology): add A-infinity grading data |
This is the first PR in a series of PRs that are aimed at defining AInfinityCategories in Lean.
This initial PR defines the necessary grading definitions and RLinearGradedQuiver, which is the first step to defining what an AInfinityCategory is.
We have a general roadmap that looks like Graded Quivers -> AinfinityCategoryStruct -> AInfinityCategory just like how Mathlib has Quiver -> CategoryStruct -> Category.
I've been chatting with a few people on [zulip](https://leanprover.zulipchat.com/#narrow/channel/113489-new-members/topic/A-Infinity.20Categories) regarding this project.
More information can be found at this website: https://marcodavid.net/ainfinity/. We have done a lot of work on defining AInfinityCategories and functors and some basic properties of them. The most recent code can be found [here](https://github.com/marco-david/ainfinity-lean/tree/AInfinityCategories).
AI Usage: GPT 5.5 was used in the overall development of this project. But all of the lean code in this first commit was written by humans. We intend for all PRs to be written by humans.
|
t-algebra
new-contributor
t-category-theory
awaiting-author
label:t-algebra$ |
81/0 |
Mathlib.lean,Mathlib/Algebra/Homology/AInfinity/Grading.lean |
2 |
4 |
['github-actions', 'joelriou'] |
nobody |
54-77471 1 month ago |
54-77471 54 days ago |
13-19575 13 days |
| 41444 |
gmcninch-prof author:gmcninch-prof |
Prove the universal property of SymmetricPower (lift) |
Provide the universal property / `lift` for `SymmetricPower`, namely that
linear maps from `Sym[R]^n M` to `N` correspond to symmetric multilinear
maps `M ^ n` to `N`.
---
<!-- 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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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"
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:
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Deletions:
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-->
- [ ] depends on: #41426
The main result is [`lift`](https://github.com/gmcninch-prof/mathlib4/blob/symmetric-power-lift-ump/Mathlib/LinearAlgebra/TensorPower/Symmetric.lean#L114).
**Note on approach**: this PR builds `SymmetricPower` on top of a `ModuleCon`
(a congruence relation respecting both addition and scalar multiplication),
rather than the plain `addConGen`-based quotient currently on master, since
this streamlines the proof of the universal property. The generic
congruence-relation machinery this needs --
[`moduleConGen`/`ModuleConGen.Rel`](https://github.com/gmcninch-prof/mathlib4/blob/symmetric-power-lift-ump/Mathlib/Algebra/Module/Congruence/Defs.lean#L77-L98)
and
[`ModuleCon.lift`/`.mk'`/`.eq`/`.lift_mk'`/`.mk'_surjective`](https://github.com/gmcninch-prof/mathlib4/blob/symmetric-power-lift-ump/Mathlib/Algebra/Module/Congruence/Defs.lean#L159-L194)
-- isn't specific to symmetric powers, so it lives in
`Mathlib.Algebra.Module.Congruence.Defs` alongside the existing `ModuleCon`
API there, rather than inline in `Symmetric.lean`. Since this does replace the
current definition of `SymmetricPower`/`Sym[R] ι M`, reviewers should note
it's not purely additive over what's on master.
This was one of the items in the `ToDo` in
[`Mathlib/LinearAlgebra/TensorPower/Symmetric.lean`](https://github.com/gmcninch-prof/mathlib4/blob/symmetric-power-lift-ump/Mathlib/LinearAlgebra/TensorPower/Symmetric.lean#L28)
(namely, the universal property). I hope to address the remaining items in
that list soon (grading, relation with multivariate polynomials).
This PR builds on #41426 (`SymmetricMap`), which should be reviewed/merged
first.
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
blocked-by-other-PR
label:t-algebra$ |
571/48 |
Mathlib.lean,Mathlib/Algebra/Module/Congruence/Defs.lean,Mathlib/LinearAlgebra/TensorPower/Symmetric.lean,Mathlib/LinearAlgebra/TensorProduct/SymmetricMap.lean |
4 |
3 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
54-52585 1 month ago |
unknown |
0-0 0 seconds |
| 40237 |
syedjafri06193 author:syedjafri06193 |
fix(scripts): add_deprecations.sh generates additive aliases for @[to_additive] decls |
Fixes #38550
When a renamed declaration is preceded by `@[to_additive]`, the script
previously only emitted a deprecation alias for the multiplicative name.
This PR also emits one for the additive counterpart.
**Changes:**
- Switch `git diff` to `--unified=1` so the unchanged `@[to_additive]`
attribute appears as a context line in the diff output
- Track that context line in awk; when detected, apply standard
mul→add word substitutions to derive additive old/new names and
emit a second `@[deprecated] alias`
**Example — before:**
@[deprecated (since := "2026-06-04")] alias foo_mul := bar_mul
**Example — after:**
@[deprecated (since := "2026-06-04")] alias foo_mul := bar_mul
@[deprecated (since := "2026-06-04")] alias foo_add := bar_add
---
- [ ] depends on: #40503
AI disclosure: this fix was developed with Claude (claude.ai).
I understand all the changes and can explain every design decision. |
new-contributor
CI
awaiting-author
LLM-generated
|
58/4 |
scripts/add_deprecations.sh |
1 |
10 |
['CoolRmal', 'SnirBroshi', 'adomani', 'github-actions', 'grunweg', 'mathlib-dependent-issues', 'syedjafri06193'] |
nobody |
54-37372 1 month ago |
87-39175 87 days ago |
0-2329 38 minutes |
| 38527 |
archiebrowne author:archiebrowne |
feat(Analysis/Calculus): continuously differentiable actions |
define the class `ContDiffSMul 𝕜 M X n` which asserts that the map `(c, x) ↦ c • x` is `n` times continuously differentiable on `M × X`.
Many of the results are the C^n analogues of those in the module Mathlib.Topology.Algebra.MulAction.
|
t-differential-geometry
new-contributor
|
317/24 |
Mathlib.lean,Mathlib/Analysis/Calculus/BumpFunction/Basic.lean,Mathlib/Analysis/Calculus/ContDiff/Operations.lean,Mathlib/Analysis/Calculus/IteratedDeriv/Lemmas.lean,Mathlib/Analysis/ContDiffMulAction.lean,Mathlib/Analysis/InnerProductSpace/Calculus.lean |
6 |
11 |
['archiebrowne', 'github-actions', 'grunweg', 'peabrainiac'] |
fpvandoorn assignee:fpvandoorn |
53-60228 1 month ago |
53-60144 53 days ago |
69-45955 69 days |
| 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 |
53-50754 1 month ago |
53-50754 53 days ago |
70-6468 70 days |
| 39406 |
roos-j author:roos-j |
feat(Analysis): van der Corput's lemma |
Adds van der Corput's lemma on one-dimensional oscillatory integrals, a standard tool in harmonic analysis.
Co-authored-by: Manasa Praveen <Manasa_Praveen@student.uml.edu>
---
From https://github.com/roos-j/lean-oscillatory, see there for future plans
Zulip discussion [#mathlib4 > Oscillatory integrals in Lean](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Oscillatory.20integrals.20in.20Lean/with/584786060)
AI disclosure: The code in this PR was human-written. At some point there were attempts to shorten proofs using AI, but those have since been largely overwritten. Currently there is no significant AI-contributed code.
(Edited 6/18/26) |
t-analysis
new-contributor
awaiting-author
|
523/0 |
Mathlib.lean,Mathlib/Analysis/Complex/Trigonometric.lean,Mathlib/Analysis/OscillatoryIntegrals/VanDerCorput.lean,Mathlib/Topology/Order/IntermediateValue.lean,docs/references.bib |
5 |
69 |
['github-actions', 'j-loreaux', 'mathlib-merge-conflicts', 'mathlib-triage', 'roos-j', 'sgouezel'] |
j-loreaux assignee:j-loreaux |
53-22159 1 month ago |
53-61900 53 days ago |
49-34758 49 days |
| 24333 |
xcloudyunx author:xcloudyunx |
feat(Combinatorics/SimpleGraph): cycle graph implementation for generic vertex types |
The existing `cycleGraph` implementation under Combinatorics/SimpleGraph/Circulant.lean only operates over `Fin n`. This PR implements a cycle graph implementation over any generic vertex type.
---
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PR is merged. Please leave a blank newline before the `---`, otherwise
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
awaiting-author
t-combinatorics
new-contributor
|
187/0 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/Cycle.lean |
2 |
43 |
['IvanRenison', 'SnirBroshi', 'github-actions', 'mathlib4-merge-conflict-bot', 'vlad902'] |
kmill assignee:kmill |
52-83178 1 month ago |
370-78710 370 days ago |
123-18878 123 days |
| 41499 |
qdiazblanco author:qdiazblanco |
feat(NumberTheory): add bernoulli'_five, bernoulli'_six and riemannZeta_six |
Add bernoulli'_five and bernoulli'_six as simp lemmas, continuing the
existing sequence of explicit values bernoulli'_zero through
bernoulli'_four, and use the latter to prove `riemannZeta 6 = π ^ 6 / 945`.
Along the way, golf the proofs of `bernoulli'_two`, `bernoulli'_three` and
`bernoulli'_four` .
These results are upstreamed from the FLT project (ImperialCollegeLondon/FLT#1069).
Co-authored-by: William Coram
Co-authored-by: Samuel Yin
Co-authored-by: Pepa Montero
Co-authored-by: Archie Browne
---
Original PR by William Coram and Samuel Yin, written with the assistance of Claude and
cleaned up by Codex and then by Pepa Montero).
I have done some further changes to fit Mathlib conventions and Claude was also used to help shorten the
proof of `riemannZeta_six` with an idea by Archie Browne.
<!-- 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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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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using the following format:
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-->
[](https://gitpod.io/from-referrer/)
|
t-number-theory
LLM-generated
FLT
new-contributor
awaiting-author
|
18/4 |
Mathlib/NumberTheory/Bernoulli.lean,Mathlib/NumberTheory/LSeries/HurwitzZetaValues.lean |
2 |
5 |
['github-actions', 'grunweg', 'qdiazblanco'] |
nobody |
52-54407 1 month ago |
53-50095 53 days ago |
0-3903 1 hour |
| 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)
---
<!-- 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:
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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
any "Co-authored-by" lines) using the following format:
Moves:
- Vector.* -> List.Vector.*
- ...
Deletions:
- Nat.bit1_add_bit1
- ...
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|
t-ring-theory
new-contributor
|
13/0 |
Mathlib/RingTheory/TwoSidedIdeal/Lattice.lean |
1 |
5 |
['Whysoserioushah', 'github-actions', 'kbuzzard'] |
nobody |
52-45085 1 month ago |
52-47528 52 days ago |
52-55142 52 days |
| 41593 |
Mal-Pat author:Mal-Pat |
feat(Combinatorics/SimpleGraph/Girth): `G.girth ≤ 2 * G.diam + 1` |
Add the lemma `G.girth ≤ 2 * G.diam + 1` given that `G.diam ≠ 0`.
---
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- [ ] depends on: #25834 |
t-combinatorics
new-contributor
blocked-by-other-PR
|
26/7 |
Mathlib/Combinatorics/SimpleGraph/Girth.lean |
1 |
3 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
49-29704 1 month ago |
51-45680 51 days ago |
0-809 13 minutes |
| 36487 |
samueloettl author:samueloettl |
feat(Dynamics): Ergodicity characterization |
---
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- [ ] depends on: #35402
- [x] depends on: #35451
This is a work in progress for a characterization of ergodicity via a Birkhoff Average.
Coarse Feedback is very encouraged.
[](https://gitpod.io/from-referrer/)
|
WIP
new-contributor
large-import
blocked-by-other-PR
|
421/1 |
Mathlib/Dynamics/Ergodic/Function.lean,Mathlib/Dynamics/Ergodic/OnAverageIndependent.lean,Mathlib/Topology/MetricSpace/Pseudo/Basic.lean |
3 |
5 |
['github-actions', 'lua-vr', 'mathlib-dependent-issues', 'samueloettl'] |
nobody |
47-28131 1 month ago |
172-50745 172 days ago |
0-163 2 minutes |
| 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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[](https://gitpod.io/from-referrer/)
|
t-algebra
LLM-generated
new-contributor
label:t-algebra$ |
22/0 |
Mathlib/LinearAlgebra/TensorPower/Basic.lean |
1 |
4 |
['github-actions', 'teng10'] |
nobody |
46-48642 1 month ago |
46-51242 46 days ago |
46-51095 46 days |
| 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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[](https://gitpod.io/from-referrer/)
|
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 |
46-15653 1 month ago |
46-16174 46 days ago |
53-85372 53 days |
| 41755 |
Yangdx02 author:Yangdx02 |
feat(RingTheory/KrullAkizuki): add the Krull-Akizuki theorem |
This PR proves the Krull–Akizuki theorem. It proves that if $A$ is a one-dimensional Noetherian domain with fraction field $K$, $L / K$ is a finite extension, and $B$ is a subring of $L$ containing $A$, then $B$ is a Noetherian ring of Krull dimension at most one, and every nonzero ideal of $B$ has finite $A$-length quotient.
Main results:
* `krullAkizuki_isNoetherianRing`
* `krullAkizuki_dimensionLEOne`
* `krullAkizuki_quotient_ideal_finiteLength`
* `krull_akizuki`
--- |
t-ring-theory
new-contributor
awaiting-author
|
684/0 |
Mathlib.lean,Mathlib/RingTheory/KrullAkizuki.lean,Mathlib/RingTheory/Length.lean |
3 |
11 |
['Yangdx02', 'github-actions', 'grunweg', 'tb65536', 'vlad902'] |
nobody |
45-65530 1 month ago |
47-32341 47 days ago |
0-115 1 minute |
| 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 |
5 |
['b-mehta', 'espottesmith', 'github-actions', 'mathlib4-merge-conflict-bot'] |
nobody |
45-56363 1 month ago |
70-53371 70 days ago |
207-56956 207 days |
| 41732 |
vaca22 author:vaca22 |
feat(RingTheory/ClassGroup): add mulEquiv_mk0 |
Add a simp lemma describing how the class-group equivalence induced by a ring equivalence acts on the class of a nonzero ideal.
The image is the class of the ideal mapped along the ring equivalence. The proof compares the corresponding fractional ideals through the existing class-group equivalence and localization membership API.
**AI disclosure**: this PR is primarily LLM-generated (Claude Code).
|
t-ring-theory
new-contributor
LLM-generated
|
43/0 |
Mathlib/RingTheory/ClassGroup/Basic.lean |
1 |
3 |
['github-actions', 'vaca22'] |
nobody |
45-45354 1 month ago |
47-60628 47 days ago |
47-60465 47 days |
| 41729 |
vaca22 author:vaca22 |
feat(RingTheory/DedekindDomain): add divisor group core |
Add the formal divisor group of a Dedekind domain and bundle the existing factorization API as an additive equivalence between nonzero fractional ideals and divisors.
Divisors are finitely supported integer-valued functions on height-one primes. divisor records FractionalIdeal.count, ofDivisor reconstructs a fractional ideal from prime powers, and divisorEquiv proves these operations are inverse and send ideal multiplication to divisor addition.
------------
This is the core of the earlier larger proposal. Principal divisors and weighted degrees are deliberately left for later pull requests.
**AI disclosure**: this PR is primarily LLM-generated (Claude Code).
|
t-ring-theory
new-contributor
LLM-generated
|
100/0 |
Mathlib.lean,Mathlib/RingTheory/DedekindDomain/Divisor.lean |
2 |
4 |
['github-actions', 'grunweg', 'vaca22'] |
nobody |
45-28801 1 month ago |
45-28801 45 days ago |
47-25841 47 days |
| 41396 |
xixifusi1213-gif author:xixifusi1213-gif |
Rename Real rpow order lemmas |
Closes #13544.
This renames the `Real.rpow` order lemmas so the names indicate which argument is being varied:
- `_left` for monotonicity/strict monotonicity in the base
- `_right` for monotonicity/strict monotonicity in the exponent
The old `Real` names are kept as deprecated aliases, and downstream `Real` usages in Mathlib are updated to the new names. The public `NNReal` and `ENNReal` theorem names are intentionally left unchanged.
|
new-contributor
awaiting-author
merge-conflict
|
253/169 |
Mathlib/Algebra/Module/ZLattice/Summable.lean,Mathlib/Analysis/AbsoluteValue/Equivalence.lean,Mathlib/Analysis/Complex/Hadamard.lean,Mathlib/Analysis/Complex/PhragmenLindelof.lean,Mathlib/Analysis/Distribution/SchwartzSpace/Basic.lean,Mathlib/Analysis/Distribution/TemperateGrowth.lean,Mathlib/Analysis/Fourier/PoissonSummation.lean,Mathlib/Analysis/MeanInequalities.lean,Mathlib/Analysis/MeanInequalitiesPow.lean,Mathlib/Analysis/MellinTransform.lean,Mathlib/Analysis/Normed/Lp/lpSpace.lean,Mathlib/Analysis/Normed/Unbundled/SmoothingSeminorm.lean,Mathlib/Analysis/Normed/Unbundled/SpectralNorm.lean,Mathlib/Analysis/SpecialFunctions/ImproperIntegrals.lean,Mathlib/Analysis/SpecialFunctions/Integrability/Basic.lean,Mathlib/Analysis/SpecialFunctions/Log/Base.lean,Mathlib/Analysis/SpecialFunctions/Log/Monotone.lean,Mathlib/Analysis/SpecialFunctions/Pow/Asymptotics.lean,Mathlib/Analysis/SpecialFunctions/Pow/NNReal.lean,Mathlib/Analysis/SpecialFunctions/Pow/Real.lean,Mathlib/Analysis/SpecificLimits/FloorPow.lean,Mathlib/Combinatorics/Additive/AP/Three/Behrend.lean,Mathlib/Computability/AkraBazzi/GrowsPolynomially.lean,Mathlib/Computability/AkraBazzi/SumTransform.lean,Mathlib/MeasureTheory/Function/ConditionalExpectation/CondJensen.lean,Mathlib/MeasureTheory/Function/ContinuousMapDense.lean,Mathlib/MeasureTheory/Function/UniformIntegrable.lean,Mathlib/MeasureTheory/Integral/IntegralEqImproper.lean,Mathlib/MeasureTheory/Measure/Lebesgue/VolumeOfBalls.lean,Mathlib/NumberTheory/Bertrand.lean,Mathlib/NumberTheory/Harmonic/EulerMascheroni.lean,Mathlib/NumberTheory/LSeries/PrimesInAP.lean,Mathlib/NumberTheory/ModularForms/EisensteinSeries/Summable.lean,Mathlib/NumberTheory/NumberField/CanonicalEmbedding/ConvexBody.lean,Mathlib/NumberTheory/NumberField/Discriminant/Basic.lean,Mathlib/NumberTheory/Ostrowski.lean,Mathlib/NumberTheory/SumPrimeReciprocals.lean,Mathlib/NumberTheory/Transcendental/Liouville/Measure.lean,Mathlib/Topology/MetricSpace/Snowflaking.lean |
39 |
4 |
['github-actions', 'grunweg', 'mathlib-merge-conflicts'] |
nobody |
45-11632 1 month ago |
55-66555 55 days ago |
0-21602 6 hours |
| 41538 |
Mathias-Stout author:Mathias-Stout |
feat(Algebra/Quaternion): quaternion are central simple |
We show that the quaternion algebra `ℍ[R,a,b,c]` over a field `R` is a central simple `R`-algebra, provided that `c * (b ^ 2 + 4 * a) ≠ 0`.
- [ ] depends on: #41536
- [ ] depends on: #41537
Co-authored-by: Justus Springer [justusspringer@gmx.de](mailto:justusspringer@gmx.de)
---
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[](https://gitpod.io/from-referrer/)
|
file-removed
new-contributor
blocked-by-other-PR
merge-conflict
|
170/7 |
Mathlib.lean,Mathlib/Algebra/DualQuaternion.lean,Mathlib/Algebra/Quaternion/Basic.lean,Mathlib/Algebra/Quaternion/Basis.lean,Mathlib/Algebra/Quaternion/CentralSimple.lean,Mathlib/Analysis/Quaternion.lean,Mathlib/LinearAlgebra/CliffordAlgebra/Equivs.lean,Mathlib/RingTheory/TwoSidedIdeal/Lattice.lean,MathlibTest/Quaternion.lean |
9 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
45-11620 1 month ago |
52-51785 52 days ago |
0-4449 1 hour |
| 39341 |
drocta author:drocta |
feat(Algebra/Colimit/DirectLimit): add DirectLimit.(NonUnital)StarAlgebra.(lift/of) maps and associated lemmas |
add the `of` and `lift` maps for `DirectLimit.StarAlgebra` and `DirectLimit.NonUnitalStarAlgebra`, as well as the associated lemmas, `of_f`, `lift_comp_of`, `lift_of`, and `hom_ext` for each. Also make `DirectLimit.NonUnitalAlgebra` only require `[Monoid R]` rather than `[CommSemiring R]`.
---
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Use of AI: I again asked ChatGPT for some advice about some things about this code. I can personally vouch for all of the code I'm submitting, and that I understand all of it.
This is the third part of my project towards supporting direct limits of $C^∗$ -algebras (as I described [on Zulip](https://leanprover.zulipchat.com/#narrow/channel/113489-new-members/topic/Early.20feedback.20on.20approach.20towards.20formalizing.20UHF.20algebras.3F) ).
This PR adds an import of `Mathlib.Algebra.Star.StarAlgHom` (because it needs `StarAlgHom` and `NonUnitalStarAlgHom`) replacing/encompassing the previously added imports of `Mathlib.Algebra.Star.StarRingHom` and `Mathlib.Algebra.Algebra.NonUnitalHom` (added in PR #38308 and #38672 respectively). |
t-algebra
new-contributor
awaiting-author
label:t-algebra$ |
100/3 |
Mathlib/Algebra/Colimit/DirectLimit.lean |
1 |
22 |
['dagurtomas', 'drocta', 'github-actions', 'themathqueen'] |
themathqueen assignee:themathqueen |
44-51161 1 month ago |
44-51161 44 days ago |
56-22749 56 days |
| 31610 |
rudynicolop author:rudynicolop |
feat(Computability/NFA): Kleene star closure for Regular Languages via NFA |
This PR constructs a Kleene star closure for non-epsilon NFAs, and proves that regular languages are closed under Kleene star. The NFA construction is `NFA.kstar`. The main theorems are:
- `NFA.accepts_kstar`: demonstrates that `M.kstar` accepts the Kleene star closure of the language of `M`.
- `IsRegular.kstar`: demonstrates that regular languages are closed under Kleene star.
There is an onging zulip discussion about regular languages in Mathlib: https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Regular.20languages.3A.20the.20review.20queue/with/553759136
This discussion is also tracked at #24205.
Furthermore, the construction and proofs in this PR are heavily inspired by @TpmKranz from his #15651. #15651 supersedes this PR, so if it is accepted then this PR is not needed.
---
- [x] depends on: #31038
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[](https://gitpod.io/from-referrer/)
|
t-computability
new-contributor
awaiting-author
awaiting-CI
merge-conflict
|
405/7 |
Mathlib/Computability/NFA.lean |
1 |
17 |
['YaelDillies', 'ctchou', 'github-actions', 'mathlib-merge-conflicts', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot'] |
nobody |
44-49644 1 month ago |
228-40693 228 days ago |
43-77956 43 days |
| 41911 |
kedlaya author:kedlaya |
feat(FieldTheory): implement Artin-Schreier extensions, Artin-Schreier theorem |
Implement the Artin-Schreier description of cyclic degree-p extensions of fields of characteristic p, and the related theorem of Artin-Schreier that a field with a finite algebraically closed extension is either algebraically closed or real closed.
|
t-algebra
new-contributor
label:t-algebra$ |
486/0 |
Mathlib.lean,Mathlib/Algebra/Polynomial/FieldDivision.lean,Mathlib/FieldTheory/ArtinSchreierExtension.lean,Mathlib/FieldTheory/IsRealClosed/ArtinSchreier.lean |
4 |
11 |
['SnirBroshi', 'github-actions', 'jcommelin', 'kedlaya'] |
nobody |
43-3285 1 month ago |
43-12135 43 days ago |
43-13313 43 days |
| 41922 |
junjihashimoto author:junjihashimoto |
feat(Analysis/Fourier): the Plancherel theorem for the Clifford-Fourier transform |
The Clifford–Fourier transform (Ebling–Scheuermann, *IEEE TVCG* 2005; Brackx–De Schepper–Sommen, *J. Fourier Anal. Appl.* 2005) of `f : ℝⁿ → Cl(n,0)` replaces the imaginary unit in the Fourier kernel by the pseudoscalar `ω`:
`ℱ f ξ = ∫ x, (cos (2π ⟪x, ξ⟫) - sin (2π ⟪x, ξ⟫) ω) * f x`.
For `n ≡ 2, 3 [MOD 4]` the pseudoscalar squares to `-1` (#41920), so left multiplication by the kernel is complex scalar multiplication for the pseudoscalar complex structure, and the Clifford–Fourier transform is *literally* the ordinary vector-valued Fourier transform (`cliffordFourierIntegral_eq_fourier`). Plancherel's theorem (`integral_norm_sq_cliffordFourier`), the Fourier inversion formula (`cliffordFourierInv_cliffordFourier`) and the `L²` isometry (`cliffordFourierL2`) are then inherited from the vector-valued `L²` Fourier theory. The case `n = 3` is the transform used for 3D vector field analysis in visualization; `n ≡ 2 [MOD 4]` covers the two-dimensional (quaternionic-style) transform, where the pseudoscalar is not central.
- [ ] depends on: #41920
|
t-analysis
new-contributor
blocked-by-other-PR
|
568/0 |
Mathlib.lean,Mathlib/Analysis/CliffordAlgebra/Euclidean.lean,Mathlib/Analysis/Fourier/CliffordPlancherel.lean |
3 |
4 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
42-65238 1 month ago |
42-71997 42 days ago |
0-501 8 minutes |
| 41868 |
angusjoshi author:angusjoshi |
feat(Analysis/Polynomial): the real numbers form a real closed field |
prove that the real numbers form a real closed field, providing the `IsRealClosed ℝ` instance. this completes the "real numbers" part of a todo in `Mathlib/FieldTheory/IsRealClosed/Basic.lean`.
the nontrivial ingredient is that every odd-degree real polynomial has a real root (`Real.exists_isRoot_of_odd_natDegree`), deduced from the intermediate value theorem via the eventual-sign lemmas in `Mathlib/Analysis/Polynomial/Order.lean`: if such a polynomial had no root, those lemmas would force its value at `0` to be simultaneously positive and negative.
---
[](https://gitpod.io/from-referrer/)
|
new-contributor
awaiting-author
|
61/1 |
Mathlib.lean,Mathlib/Analysis/Polynomial/IsRealClosed.lean,Mathlib/FieldTheory/IsRealClosed/Basic.lean |
3 |
12 |
['angusjoshi', 'artie2000', 'felixpernegger', 'github-actions', 'metakunt'] |
nobody |
42-45960 1 month ago |
44-40528 44 days ago |
0-9687 2 hours |
| 41053 |
hawkrobe author:hawkrobe |
refactor(RingTheory): migrate bialgebra/Hopf to RingCon.Quotient |
---
Cleanup after #39790 using the [new RingCon](https://github.com/leanprover-community/mathlib4/pull/40451) instead of Ideal.
- [ ] depends on: #41052
[](https://gitpod.io/from-referrer/)
|
t-ring-theory
new-contributor
blocked-by-other-PR
|
160/138 |
Mathlib/RingTheory/Bialgebra/Convolution.lean,Mathlib/RingTheory/Bialgebra/Quotient.lean,Mathlib/RingTheory/Coalgebra/Convolution.lean,Mathlib/RingTheory/HopfAlgebra/Convolution.lean,Mathlib/RingTheory/HopfAlgebra/Quotient.lean |
5 |
4 |
['github-actions', 'hawkrobe', 'mathlib-dependent-issues'] |
nobody |
42-32008 1 month ago |
66-32466 66 days ago |
0-1332 22 minutes |
| 41840 |
SofiaSL author:SofiaSL |
feat: generalise Hermite polynomial to any commutative ring |
Change the definition of the Hermite polynomials to be over an arbitrary commutative ring instead of the integers.
Add functions that cast the coefficients into integers.
This code was written at the ICARM summer school on formalization of mathematics, who I have to thank for their help and hospitality. Furthermore, this is the first in a sequence of PRs I and Alan have planned proving that the Hermite polynomials are orthogonal under the appropriate inner product, and that they form a basis of the associated Hilbert space. No AI was used in this PR except for web search.
Co-authored-by: Alan Li <alanli2326@gmail.com>
---
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[](https://gitpod.io/from-referrer/)
|
t-ring-theory
new-contributor
awaiting-author
|
99/39 |
Mathlib/RingTheory/Polynomial/Hermite/Basic.lean,Mathlib/RingTheory/Polynomial/Hermite/Gaussian.lean |
2 |
15 |
['CoolRmal', 'SofiaSL', 'github-actions', 'grunweg'] |
nobody |
42-26479 1 month ago |
42-70522 42 days ago |
2-29441 2 days |
| 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 |
42-18689 1 month ago |
42-32432 42 days ago |
42-32269 42 days |
| 41947 |
hawkrobe author:hawkrobe |
feat(Order/Antisymmetrization): comparable minimal elements are equivalent |
Adds `Minimal.antisymmRel_of_ge` and `Minimal.antisymmRel_of_symmGen` at preorder generality.
---
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-order
|
32/3 |
Mathlib/Order/Antisymmetrization.lean |
1 |
2 |
['github-actions'] |
nobody |
42-5070 1 month ago |
42-9156 42 days ago |
42-8993 42 days |
| 41948 |
jiangf13 author:jiangf13 |
feat(Data/Set/Intervals): add subtraction formula for closed intervals |
This PR adds a formula for the pointwise subtraction of two closed intervals:
`Set.Icc a b - Set.Icc c d = Set.Icc (a - d) (b - c)`
under the assumptions `a ≤ b` and `c ≤ d`.
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
awaiting-author
label:t-algebra$ |
6/0 |
Mathlib/Algebra/Order/Group/Pointwise/Interval.lean |
1 |
3 |
['github-actions', 'wwylele'] |
nobody |
41-2392 1 month ago |
41-2392 41 days ago |
1-4559 1 day |
| 41475 |
Sanghyeok0 author:Sanghyeok0 |
MvPolynomial: polynomial reduction as a relation |
## Summary
This PR defines polynomial reduction on multivariate polynomials as an ordinary
binary relation and develops its basic reduction-theoretic API.
The main results cover reducibility and normal forms over general commutative
coefficient rings, termination, degree bounds, linear-combination certificates,
ideal-membership bridges, and translation and confluence results under the
coefficient hypotheses required by each theorem.
The polynomial results follow the reduction theory in
Becker--Weispfenning--Kredel, Chapter 5.
## Polynomial reduction as a relation
The central definition is one-step reduction modulo a set of polynomials:
```lean
def MonomialOrder.ReducesToSet
(m : MonomialOrder σ)
(P : Set (MvPolynomial σ R))
(f g : MvPolynomial σ R) : Prop :=
∃ p ∈ P, m.ReducesToPoly p f g
```
A reduction step chooses one nonzero reducer and one term of the source
polynomial. Both monomial divisibility and coefficient divisibility are
required. The resulting polynomial is obtained by subtracting the witnessed
monomial multiple of that reducer.
For example, reducibility is characterized without assumptions on leading
coefficients by:
```lean
theorem MonomialOrder.ReducesToPoly.reducible_iff_exists_degree_le_and_leadingCoeff_dvd
(p f : MvPolynomial σ R) :
m.Reducible p f ↔
p ≠ 0 ∧
∃ t ∈ f.support,
m.degree p ≤ t ∧
m.leadingCoeff p ∣ f.coeff t
```
Likewise, a polynomial is in normal form exactly when no support term satisfies
both divisibility conditions for a nonzero reducer. When every nonzero reducer
has unit leading coefficient, this specializes to the usual monomial
divisibility condition.
## Termination and certificates
Every reduction step strictly decreases the colexicographic order on finite
supports. This proves that the reverse reduction relation is well-founded,
without imposing unit or regularity assumptions on leading coefficients.
Finite reduction also produces explicit quotient data with the expected degree
bound:
```lean
theorem MonomialOrder.exists_linearCombination_of_reflTransGen_with_degree_bound
(B : Set (MvPolynomial σ R))
{f r : MvPolynomial σ R}
(h : f ⟶*[m, B] r) :
∃ q : B →₀ MvPolynomial σ R,
f =
Finsupp.linearCombination
(MvPolynomial σ R)
(fun b : B => (b : MvPolynomial σ R))
q + r ∧
∀ b : B, m.degree ((b : MvPolynomial σ R) * q b) ≼[m] m.degree f
```
Thus a finite reduction sequence supplies the linear-combination certificate
expected from a division/remainder statement.
## Coefficient assumptions
The API separates the assumptions needed by different results:
* The reduction relation, its general reducibility and normal-form
characterizations, termination, degree bounds, certificates, and the
implication from reduction equivalence to ideal congruence require no unit
assumptions.
* Reduction of a multiple of a chosen reducer to zero only requires the leading
coefficient of that reducer to be a non-zero-divisor when the reducer is
nonzero.
* The translation lemmas and the equivalence between reduction equivalence and
congruence modulo `Ideal.span P` use the hypothesis that every reducer is
either zero or has unit leading coefficient.
* Local confluence for reduction modulo a singleton `{p}` requires only that
`p` have unit leading coefficient. The corresponding result for a set
generating the same principal ideal uses the zero-or-unit hypothesis on that
set.
## Relation-level API
This development is intended to depend on #40368 for `Relation.Diamond`,
`Relation.Confluent`, and `Relation.ChurchRosser`, together with their basic
conversion API.
The new file `Mathlib.Logic.Relation.NormalForm` adds the normal-form
vocabulary and Newman-style results used by polynomial reduction:
* `Relation.IsNormalForm`
* `Relation.IsNormalFormOf`
* `Relation.UniqueNormalForms`
* `Relation.LocallyConfluent`
## Scope
The reduction relation in this PR is a termwise, single-reducer relation: each
step uses one polynomial from the reducer set to eliminate one term of the
source polynomial.
An earlier version also included a reduction-theoretic Gröbner basis criterion.
That layer is intentionally deferred. Over arbitrary coefficient rings,
relating single-reducer reduction to an ideal-based leading-term criterion
requires a careful distinction between single-reducer and weak reduction.
Keeping the criterion in a separate PR will also allow it to reuse the shared
Gröbner-basis API rather than introduce a competing definition.
---
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- [ ] depends on: #40368
[](https://gitpod.io/from-referrer/)
|
new-contributor
blocked-by-other-PR
|
1570/5 |
Mathlib.lean,Mathlib/Logic/Relation.lean,Mathlib/Logic/Relation/NormalForm.lean,Mathlib/RingTheory/MvPolynomial/PolynomialReductions.lean |
4 |
4 |
['github-actions', 'mathlib-bors', 'mathlib-dependent-issues'] |
nobody |
40-73305 1 month ago |
42-53562 42 days ago |
0-13 13 seconds |
| 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 |
39-17933 1 month ago |
60-71397 60 days ago |
92-34330 92 days |
| 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 |
37-65048 1 month ago |
38-16618 38 days ago |
38-16455 38 days |
| 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 |
37-65029 1 month ago |
38-16618 38 days ago |
38-16455 38 days |
| 38316 |
tannerduve author:tannerduve |
feat(Order/OmegaCompletePartialOrder): least fixed point and Scott induction |
Adds `ContinuousHom.lfp` for endomorphisms on an ωCPO with `⊥`, as the `ωSup` of the iterate chain from `⊥`, together with `map_lfp`, `isFixedPt_lfp`, `lfp_le_fixed`, `isLeast_lfp`, and the Scott induction theorem `lfp_induction` (specialized from a more general seed-based `ωSup_iterate_induction`).
For `Part.fix`, adds:
* `Part.exists_mem_approx_of_mem_fix`: if `y ∈ Part.fix g x`, some finite approximation of `g` already contains `y`.
* `Part.Fix.approx_eq_iterate_bot` and `Part.Fix.approxChain_eq_iterateChain`: bridges between `Fix.approx`/`approxChain` and `f^[n] ⊥`/`iterateChain`.
* `Part.fix_eq_lfp`: `Part.fix g = ContinuousHom.lfp (.ofFun g hc)` when `g` is ω-Scott continuous.
* `Part.fix_scott_induction`: Scott induction specialized to `Part.fix`.
* `Part.fix_induction_mem`: membership induction on `Part.fix`, derived from `fix_scott_induction`. |
new-contributor
awaiting-author
t-order
|
118/9 |
Mathlib/Control/LawfulFix.lean,Mathlib/Order/OmegaCompletePartialOrder.lean,docs/references.bib |
3 |
7 |
['b-mehta', 'github-actions'] |
b-mehta assignee:b-mehta |
37-64945 1 month ago |
44-42392 44 days ago |
87-62939 87 days |
| 41945 |
generantao author:generantao |
feat(Polish): add analyticSet_graph_iff_measurable |
Proved that a function between standard Borel spaces (with specified Polish topologies) is Borel measurable iff its graph is analytic.
Supported by NSF grant DMS 2425401.
- [ ] depends on: #41944
Co-authored-by: Zelong Li <zelongl@andrew.cmu.edu>
Co-authored-by: Aaron Liu <aaronliu2008@outlook.com>
Co-authored-by: Wojciech Nawrocki <wjn@lean-fro.org>
---
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|
t-measure-probability
blocked-by-other-PR
new-contributor
|
81/2 |
Mathlib/MeasureTheory/Constructions/Polish/Basic.lean,Mathlib/MeasureTheory/MeasurableSpace/CountablyGenerated.lean,Mathlib/MeasureTheory/Measure/Lebesgue/Basic.lean |
3 |
4 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
37-16869 1 month ago |
42-14659 42 days ago |
0-3165 52 minutes |
| 42066 |
lyfar author:lyfar |
feat(SimpleGraph/Coloring): add list-coloring compactness |
This is the focused part of [Lean Pool PR #275](https://github.com/Vilin97/lean-pool/pull/275) that does not duplicate Mathlib's existing ordinary de Bruijn--Erdős API. I brought it here after Vasily Ilin [recommended moving the genuinely new list-coloring part to Mathlib](https://github.com/Vilin97/lean-pool/pull/275#issuecomment-5066933313).
It adds `SimpleGraph.ListColoring`, restriction to induced subgraphs, compactness for explicitly finite color sets via `Set.Finite.rado_selection_subtype`, and the finite-induced-subgraph iff.
This is a formalized API for a standard corollary of Rado's selection lemma, not new mathematics.
AI disclosure: I used OpenAI Codex to inspect the current Mathlib API and contribution policy, adapt the list-coloring part of Lean Pool PR #275, implement this file, and run the verification commands below.
Verification:
```text
lake build Mathlib.Combinatorics.SimpleGraph.Coloring.List
lake exe lint-style Mathlib.Combinatorics.SimpleGraph.Coloring.List
lake exe batteries/runLinter Mathlib.Combinatorics.SimpleGraph.Coloring.List
lake exe mk_all --check
git diff upstream/master...HEAD --check
```
|
t-combinatorics
LLM-generated
new-contributor
awaiting-author
awaiting-zulip
|
96/0 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/Coloring/List.lean |
2 |
10 |
['SnirBroshi', 'felixpernegger', 'github-actions', 'lyfar'] |
nobody |
36-78700 1 month ago |
37-50223 37 days ago |
0-4355 1 hour |
| 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 |
36-54843 1 month ago |
36-55627 36 days ago |
36-63935 36 days |
| 31766 |
SuccessMoses author:SuccessMoses |
feat(Topology/EMetricSpace): continuity of arc length |
fixes half of #31751
---
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PR is merged. Please leave a blank newline before the `---`, otherwise
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|
new-contributor
t-topology
awaiting-author
merge-conflict
|
396/0 |
Mathlib.lean,Mathlib/Topology/EMetricSpace/ArcLength.lean,Mathlib/Topology/EMetricSpace/BoundedVariation.lean |
3 |
41 |
['SnirBroshi', 'SuccessMoses', 'Zeta-Wu', 'alreadydone', 'github-actions', 'grunweg', 'j-loreaux', 'mathlib-merge-conflicts'] |
nobody |
35-22202 1 month ago |
264-29813 264 days ago |
2-77182 2 days |
| 41944 |
generantao author:generantao |
feat(CountablyGenerated): add measurableSet_graph |
This PR proves that the graph of a measurable function into a countably separated space is measurable. It also renames the currently proven special case `measurableSet_graph` to `measurableSet_graph_real`, deprecating the current name.
Supported by NSF grant DMS 2425401.
Co-authored-by: Wojciech Nawrocki <wjn@lean-fro.org>
---
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-measure-probability
|
28/2 |
Mathlib/MeasureTheory/MeasurableSpace/CountablyGenerated.lean,Mathlib/MeasureTheory/Measure/Lebesgue/Basic.lean |
2 |
22 |
['CoolRmal', 'Vtec234', 'generantao', 'github-actions', 'plp127', 'vlad902'] |
nobody |
35-13988 1 month ago |
39-24446 39 days ago |
2-81269 2 days |
| 41963 |
sweeneyde author:sweeneyde |
feat(AlgebraicTopology): nerve preserves products |
This formalizes the fact that a composable chain of pairs can be identified with a pair of composable chains.
It may be useful in the future for converting a natural transformation into a simplicial homotopy.
---
I added this to a different file to avoid the circular import from `Nerve -> Monoidal -> StdSimplex -> NerveNondegenerate -> Nerve`
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|
t-algebraic-topology
new-contributor
awaiting-author
|
82/0 |
Mathlib.lean,Mathlib/AlgebraicTopology/SimplicialSet/NerveProduct.lean,Mathlib/CategoryTheory/ComposableArrows/Basic.lean,Mathlib/CategoryTheory/IsoCat.lean,Mathlib/CategoryTheory/Products/Basic.lean |
5 |
20 |
['github-actions', 'joelriou', 'robin-carlier', 'sweeneyde'] |
nobody |
34-81620 1 month ago |
41-2896 41 days ago |
0-12994 3 hours |
| 38546 |
yhx-12243 author:yhx-12243 |
fix(Algebra/Module/Injective): changing the universe from the module's to the ring's |
Change the definition of
```lean
class Module.Injective : Prop where
out : ∀ ⦃X Y : Type v⦄ [AddCommGroup X] [AddCommGroup Y] [Module R X] [Module R Y]
(f : X →ₗ[R] Y) (_ : Function.Injective f) (g : X →ₗ[R] Q),
∃ h : Y →ₗ[R] Q, ∀ x, h (f x) = g x
```
into
```lean
class Module.Injective : Prop where
out : ∀ ⦃X Y : Type u⦄ [AddCommGroup X] [AddCommGroup Y] [Module R X] [Module R Y]
(f : X →ₗ[R] Y) (_ : Function.Injective f) (g : X →ₗ[R] Q),
∃ h : Y →ₗ[R] Q, ∀ x, h (f x) = g x
```
where `u` is the universe of ring, `v` is the universe of module,
to make it agree with `Module.Baer` and real mathematical definition, **without universe issues** (make the theorem [`Module.Baer.of_injective`](https://leanprover-community.github.io/mathlib4_docs/Mathlib/Algebra/Module/Injective.html#Module.Baer.of_injective) not require `Small.{v, u} R` issue).
This type of adaption also appeared in the criterion `Module.Flat`, which also uses `Type u` on testing modules.
See discussions in https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Universe.20issue.20about.20injective.20module .
---
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|
t-algebra
new-contributor
awaiting-zulip
awaiting-author
label:t-algebra$ |
57/43 |
Mathlib/Algebra/Category/ModuleCat/Injective.lean,Mathlib/Algebra/Category/ModuleCat/Ulift.lean,Mathlib/Algebra/Module/Injective.lean,Mathlib/RepresentationTheory/FinGroupCharZero.lean,Mathlib/RingTheory/Flat/Tensor.lean,Mathlib/RingTheory/LocalProperties/Injective.lean |
6 |
11 |
['eric-wieser', 'github-actions', 'grunweg', 'mathlib-bors', 'wwylele', 'yhx-12243'] |
nobody |
34-59911 1 month ago |
126-32413 126 days ago |
0-26133 7 hours |
| 42158 |
sweeneyde author:sweeneyde |
feat(AlgebraicTopology): natural transformation to nerve homotopy |
Given a natural transformation between two functors, we produce a homotopy between the maps they induce on nerve simplicial sets.
---
Using `SmallCategory` instances made the proof easier--I had trouble with the universe levels involved when trying to use `Category.{v} C` instead. One could use [CategoryTheory.AsSmall](https://leanprover-community.github.io/mathlib4_docs/Mathlib/CategoryTheory/Category/ULift.html#CategoryTheory.AsSmall) to convert to a small category first.
- [ ] depends on: #41963
<!-- Your PR title will become the first line of the commit message.
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|
new-contributor
blocked-by-other-PR
|
119/0 |
Mathlib.lean,Mathlib/AlgebraicTopology/SimplicialSet/NerveProduct.lean,Mathlib/CategoryTheory/ComposableArrows/Basic.lean,Mathlib/CategoryTheory/IsoCat.lean,Mathlib/CategoryTheory/Products/Basic.lean |
5 |
4 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
34-25852 1 month ago |
34-25885 34 days ago |
0-1372 22 minutes |
| 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 |
33-80774 1 month ago |
45-40652 45 days ago |
45-41531 45 days |
| 37716 |
slavanaprienko author:slavanaprienko |
feat(LinearAlgebra/Matrix/Determinant): Desnanot-Jacobi identity |
This PR adds the Desnanot-Jacobi identity (also known as the Lewis Carroll identity or Dodgson condensation): for any (n+2)×(n+2) matrix M over a commutative ring,
$$\det(M) \cdot \det(M_{1,n}^{1,n}) = \det(M_1^1) \cdot \det(M_n^n) - \det(M_1^n) \cdot \det(M_n^1)$$
The proof follows Bressoud's *Proofs and Confirmations* (Cambridge University Press, 1999): multiply M by an auxiliary matrix built from columns of the adjugate, then compare determinants. This yields the identity premultiplied by det(M). To cancel, we pass to a universal polynomial ring (an integral domain with nonzero determinant), then specialize back to arbitrary commutative rings.
It seems there's some interest in adding this:
https://leanprover.zulipchat.com/#narrow/channel/217875-Is-there-code-for-X.3F/topic/Determinantal.20identity.20and.20the.20Cauchy.20matrix.20determinant/with/582946873
--- |
t-algebra
new-contributor
merge-conflict
label:t-algebra$ |
217/0 |
Mathlib.lean,Mathlib/LinearAlgebra/Matrix/Determinant/DesnanotJacobi.lean |
2 |
14 |
['SnirBroshi', 'github-actions', 'grunweg', 'kim-em', 'mathlib-merge-conflicts', 'slavanaprienko'] |
nobody |
33-61440 1 month ago |
59-24175 59 days ago |
53-49476 53 days |
| 34138 |
pfaffelh author:pfaffelh |
feat(MeasureTheory): Introduce `DiscreteMeasure α` giving rise to a `Measure α` as a sum of `dirac`s |
Define `DiscreteMeasure α` as a structure with `weight : α → ℝ≥0∞`
Define `toMeasure (w : DiscreteMeasure α) : Measure α` as a sum of diracs
Show properties of the resulting objects
This PR intends to start a more userfriendly interaction with discrete probability (measure) theory, in contrast to probability mass functions (`PMF`). There are two main differences between `DiscreteMeasure` and `PMF`:
* Every `PMF` hast the additional property `HasSum 1`, making the resulting measure a probability measure. (For `DiscreteMeasure`, I intend to use the typeclass `IsProbabilityMeasure`in a later PR instead.)
* The `toMeasure` function of `MassFunction` defines the measure as a sum of diracs, which immediately makes computations possible.
Discussion thread on [zulip](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/PMF.20Refactor.3A.20FunLike.20vs.20Definition.20Change)
- depends on: #37060
---
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[](https://gitpod.io/from-referrer/)
|
t-measure-probability
new-contributor
|
216/0 |
Mathlib.lean,Mathlib/Algebra/GroupWithZero/Indicator.lean,Mathlib/Data/Set/Pairwise/Basic.lean,Mathlib/MeasureTheory/Measure/DiscreteMeasure.lean |
4 |
27 |
['DavidLedvinka', 'eric-wieser', 'github-actions', 'mathlib-merge-conflicts', 'metakunt', 'ocfnash', 'pfaffelh'] |
nobody |
33-61387 1 month ago |
79-78682 79 days ago |
82-21885 82 days |
| 40416 |
sparckix author:sparckix |
feat(Order/Monotone): add diagonal subsequence extraction |
This PR adds a small diagonal extraction lemma for nested strictly monotone subsequences of `Nat`.
Given strict-mono maps `φ k : Nat -> Nat` such that each `φ (k + 1)` factors through `φ k` by a strict-mono map `τ k`, the diagonal sequence `fun n => φ n n` is strictly monotone and each tail of the diagonal factors through the corresponding `φ k` by a strict-mono map.
The lemma is intended as a reusable sequence/order fact and is placed near `Nat.exists_strictMono_subsequence`.
Local checks run:
```text
lake env lean Mathlib/Order/Monotone/Basic.lean
lake build Mathlib.Order.Monotone.Basic
lake exe lint-style Mathlib/Order/Monotone/Basic.lean
git diff --check
```
AI assistance disclosure: I used AI tools, including Codex and external model feedback, to help extract and review this small lemma from a local formalization project. I have checked the statement and proof myself and am responsible for the submitted code.
|
t-order
new-contributor
LLM-generated
|
66/0 |
Mathlib/Order/Monotone/Basic.lean |
1 |
3 |
['github-actions', 'pepamontero'] |
nobody |
33-55107 1 month ago |
82-49865 82 days ago |
82-49702 82 days |
| 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 |
33-55009 1 month ago |
37-6646 37 days ago |
37-6483 37 days |
| 41069 |
ymonbru author:ymonbru |
feat: adds the definition of the pushforward of a Ksheaf |
For f: X to Y a proper map between T2 spaces and Y being locally comapct, this files adds the pushforward of KSheaves: in particular one gets a functor from Ksheaf A X to Ksheaf A Y.
In order to prove this lemma, we add the fact that the base changes of compact neighbourhoods of K to f^-1(K) is an initial functor.
This require to know that if f is closed then kernImage f (the adjoint of the preimage) is Open. (Note that if f is open then kernImage f is closed, we thus add this lemma even though we do not use it there).
We also add the ddefinition of the pushforward of a bicartesian square in order to define the pushforward.
Maybe the `properPreimage`in l.101 of BasechngeNhds should go elsewhere but find_home told me to let it there.
---
- [ ] depends on: #40953
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[](https://gitpod.io/from-referrer/)
|
new-contributor
blocked-by-other-PR
merge-conflict
|
272/2 |
Mathlib.lean,Mathlib/Order/CompleteLattice/MulticoequalizerDiagram.lean,Mathlib/Topology/Basic.lean,Mathlib/Topology/Sets/BaseChangeNhds.lean,Mathlib/Topology/Sets/Compacts.lean,Mathlib/Topology/Sheaves/KSheaf.lean |
6 |
5 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
33-22497 1 month ago |
65-72140 65 days ago |
0-2162 36 minutes |
| 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'] |
nobody |
33-19328 1 month ago |
33-19960 33 days ago |
48-66687 48 days |
| 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
|
326/0 |
Mathlib.lean,Mathlib/Analysis/Matrix/Inertia.lean,Mathlib/Combinatorics/SimpleGraph/LineGraphSignature.lean |
3 |
2 |
['github-actions'] |
nobody |
33-6166 1 month ago |
33-56637 33 days ago |
33-56474 33 days |
| 42226 |
espottesmith author:espottesmith |
feat(Combinatorics/Hypergraph): add restriction `x ≠ y` to hypergraph vertex and edge adjacency |
---
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Co-authors in the squash commit are gathered from two sources:
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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 |
32-77478 1 month ago |
32-78044 32 days ago |
32-77881 32 days |
| 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
awaiting-author
|
55/0 |
Mathlib/GroupTheory/ArchimedeanDensely.lean |
1 |
7 |
['github-actions', 'grunweg', 'tb65536', 'vaca22', 'wwylele'] |
nobody |
32-64212 1 month ago |
32-68795 32 days ago |
14-44542 14 days |
| 41449 |
EzequielS2 author:EzequielS2 |
feat(Topology/ContinuousMap): domMulAct action on C(X, Y) |
## Summary
- Define the action of `Mᵈᵐᵃ` on `C(α, β)` when `M` acts continuously on `α`.
- Add `SMul`, `MulAction`, `SMulCommClass`, and `ContinuousSMul` instances.
- Closes #5379.
## Test plan
- [x] `lake build Mathlib.Topology.ContinuousMap.DomAct`
- [x] `lake exe runLinter Mathlib.Topology.ContinuousMap.DomAct`
|
t-topology
new-contributor
awaiting-author
|
104/0 |
Mathlib.lean,Mathlib/Topology/ContinuousMap/DomAct.lean |
2 |
6 |
['github-actions', 'j-loreaux'] |
nobody |
32-54696 1 month ago |
33-17564 33 days ago |
21-31184 21 days |
| 35442 |
dhyan-aranha author:dhyan-aranha |
feat: Affine line with doubled origin counter example |
---
<!-- Your PR title will become the first line of the commit message.
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In particular, note that most reviewers will only notice your PR
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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
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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If this PR depends on other PRs, please list them below this comment,
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-->
[](https://gitpod.io/from-referrer/)
|
new-contributor
awaiting-author
t-algebraic-geometry
merge-conflict
|
305/0 |
Counterexamples.lean,Counterexamples/AffineLineWithDoubledOrigin.lean,Mathlib/AlgebraicGeometry/Limits.lean,Mathlib/Topology/Category/TopCat/Limits/Pullbacks.lean |
4 |
22 |
['BryceT233', 'chrisflav', 'dhyan-aranha', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
32-49622 1 month ago |
194-56326 194 days ago |
0-3706 1 hour |
| 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 |
31-54167 1 month ago |
32-81975 32 days ago |
32-81812 32 days |
| 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 |
31-54141 1 month ago |
32-80913 32 days ago |
32-83958 32 days |
| 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 |
31-54141 1 month ago |
33-31544 33 days ago |
33-32205 33 days |
| 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 |
31-54134 1 month ago |
33-74059 33 days ago |
33-73896 33 days |
| 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
|
23/3 |
Mathlib/FieldTheory/Galois/Basic.lean,Mathlib/RingTheory/Ideal/Norm/RelNorm.lean,Mathlib/RingTheory/NormalClosure.lean |
3 |
15 |
['felixpernegger', 'github-actions', 'leanprover-radar', 'vaca22', 'xroblot'] |
nobody |
30-79080 30 days ago |
39-42111 39 days ago |
44-50858 44 days |
| 41454 |
EzequielS2 author:EzequielS2 |
feat(Topology/ContinuousMap): domMulAct action on bounded continuous maps |
- Define the action of `Mᵈᵐᵃ` on bounded continuous functions `α →ᵇ β`.
- Add basic instances and simp lemmas.
---
- [ ] depends on: #41449
|
new-contributor
t-topology
blocked-by-other-PR
|
184/0 |
Mathlib.lean,Mathlib/Topology/ContinuousMap/Bounded/DomAct.lean,Mathlib/Topology/ContinuousMap/DomAct.lean |
3 |
8 |
['EzequielS2', 'github-actions', 'grunweg', 'j-loreaux', 'mathlib-dependent-issues'] |
j-loreaux assignee:j-loreaux |
30-67582 30 days ago |
33-18262 33 days ago |
21-27470 21 days |
| 41991 |
dahlem author:dahlem |
fix(Analysis/Matrix): anchor the elementwise matrix norm's topology to instTopologicalSpaceMatrix |
With `open scoped Matrix.Norms.Elementwise`,
```lean
noncomputable example {m n : Type*} [Fintype m] [Fintype n] :
Norm (Matrix m n ℝ →L[ℝ] Matrix m n ℝ) := inferInstance
```
fails to synthesize, even though the norm-induced topology on `Matrix m n ℝ` is definitionally equal to the ambient `instTopologicalSpaceMatrix` (`rfl` proves the equality).
What goes wrong: the `→L[ℝ]` type is elaborated with the *direct* instance `instTopologicalSpaceMatrix`, while `ContinuousLinearMap.hasOpNorm`'s conclusion carries topologies that are *projections* of its `SeminormedAddCommGroup` arguments. During resolution, pending synthesis does find `Matrix.seminormedAddCommGroup`, but the projected topology then has to unify with `instTopologicalSpaceMatrix`, and the projection chain through `fast_instance% Pi.seminormedAddCommGroup` does not reduce to the same term. (Types like `ℝ` or `EuclideanSpace` don't hit this because they have no direct `TopologicalSpace` instance competing with the projection path — matrices do.)
**Fix**: anchor the topology field of `Matrix.seminormedAddCommGroup` / `Matrix.normedAddCommGroup` to `instTopologicalSpaceMatrix` via `PseudoMetricSpace.replaceTopology` / `MetricSpace.replaceTopology` with `rfl` proofs — the standard forgetful-inheritance pattern; the Frobenius family in the same file already achieves this through `PiLp.seminormedAddCommGroupToPi`. Anchoring to a freshly-elaborated `inferInstanceAs <| TopologicalSpace (m → n → α)` is *not* sufficient — the anchor must be the same instance term that appears in elaborated goal types, which is why this also adds `public import Mathlib.Topology.Instances.Matrix` (no cycle; that file only imports `LinearAlgebra.Matrix.*` and `Topology.Algebra.*`).
`norm`, `dist`, and the uniformity are untouched — only the packaging of the topology field changes, in the direction of the canonical instance. The fix works at Lean's default `maxSynthPendingDepth`. It also unblocks smul-continuity resolution in Fréchet-derivative developments over matrix codomains (`HasFDerivAt.const_smul` sites), where the goal's topology argument is the same non-reducing projection.
Motivation: hit in a downstream project (~4300 build jobs of matrix-valued Fréchet calculus) where ten files currently need local high-priority compat instances to work around this. A downstream repair cannot be shipped safely: boosting a repaired `SeminormedAddCommGroup`'s priority steals `‖·‖` resolution from files mixing norm scopes (e.g. `Matrix.Norms.L2Operator` sections of a Davis–Kahan development silently re-resolve to the elementwise norm). The fix has to live in the instance definitions.
Validation: full `lake build Mathlib` passes with the change (8666 jobs), plus new regression tests in `MathlibTest/MatrixNormTopology.lean` (both `rfl` agreements, the `Norm` synthesis above, `‖f‖` usage, `ContinuousConstSMul` unification).
Open questions for reviewers:
- Should the `linftyOp*` family get the same anchor for uniformity of design?
- Is `letI I := fast_instance% …; { I with … }` the preferred spelling here?
- Is the added import acceptable, or should the anchored instances move to a file that already sees `Topology.Instances.Matrix`?
Disclosure: this PR was prepared with AI assistance (Claude); the diagnosis and fix were validated by the full mathlib build and the included regression tests.
🤖 Generated with [Claude Code](https://claude.com/claude-code)
|
t-analysis
new-contributor
LLM-generated
|
60/4 |
Mathlib/Analysis/Matrix/Normed.lean,MathlibTest/MatrixNormTopology.lean |
2 |
2 |
['github-actions'] |
nobody |
30-59770 30 days ago |
40-37254 40 days ago |
40-37091 40 days |
| 41921 |
junjihashimoto author:junjihashimoto |
feat(Analysis/Fourier): the Plancherel theorem for hypercomplex Fourier transforms |
The (left-sided) hypercomplex Fourier transform of `f : V → CayleyDickson A` replaces the imaginary unit in the Fourier kernel by the Cayley–Dickson doubling unit `ℓ`:
`ℱ f ξ = ∫ x, (cos (2π ⟪x, ξ⟫) - sin (2π ⟪x, ξ⟫) ℓ) * f x`.
Cayley–Dickson algebras beyond the quaternions are not associative — the sedenions are not even alternative and have zero divisors — but the Fourier theory only needs a complex *module* structure on the codomain: `ℓ * (ℓ * x) = -x` holds at every level of the tower, so `Complex.liftAux` into `Module.End ℝ (CayleyDickson A)` (where associativity lives) makes every Cayley–Dickson algebra a complex vector space. Equipping it with a compatible complex Hilbert space structure, Plancherel's theorem (`CayleyDickson.integral_norm_sq_fourierIntegral`) and the Fourier inversion formula (`CayleyDickson.fourierInvIntegral_fourierIntegral`) are inherited from the vector-valued `L²` Fourier theory (#24063-style `Lp.fourierTransformₗᵢ`), on any finite-dimensional real inner product space domain.
Taking `A = ℍ[ℝ]` gives the octonion Fourier transform (Hahn–Snopek; Błaszczyk, *J. Fourier Anal. Appl.* 2020); `A = Octonion ℝ` gives the sedenion one, recorded explicitly as `Sedenion.integral_norm_sq_fourierIntegral`.
- [ ] depends on: #41919
|
new-contributor
blocked-by-other-PR
awaiting-author
|
617/0 |
Mathlib.lean,Mathlib/Algebra/CayleyDickson.lean,Mathlib/Algebra/Octonion.lean,Mathlib/Analysis/Fourier/CayleyDicksonPlancherel.lean |
4 |
5 |
['github-actions', 'grunweg', 'mathlib-dependent-issues'] |
nobody |
30-59355 30 days ago |
42-72027 42 days ago |
0-500 8 minutes |
| 41919 |
junjihashimoto author:junjihashimoto |
feat(Algebra): the Cayley-Dickson construction, octonions and sedenions |
We define the Cayley–Dickson double of a (possibly non-associative) star ring, and show that it preserves `NonAssocRing` and `StarRing`, so the construction can be iterated indefinitely: quaternions → octonions → sedenions → trigintaduonions → …. The octonions and sedenions are defined as the corresponding levels of the tower over `Quaternion R`.
The key lemma is `CayleyDickson.unit_mul_unit_mul`: the doubling unit `ℓ = ⟨0, 1⟩` satisfies `ℓ * (ℓ * x) = -x` at *every* level of the tower, by a computation that only uses that `star` is an involution — no alternativity is developed (and indeed the sedenions are not alternative and have zero divisors). Left multiplication by `ℓ` is therefore a complex structure on every Cayley–Dickson algebra; in a follow-up PR this yields Plancherel's theorem and the Fourier inversion formula for the hypercomplex (octonion, sedenion, …) Fourier transforms, by reduction to the vector-valued `L²` Fourier theory.
TODO (deliberately left for future work, noted in the module docstring): alternativity of the double of an associative star ring (Moufang identities), the multiplicative norm for composition algebras.
- [ ] depends on: (nothing)
|
t-algebra
new-contributor
awaiting-author
label:t-algebra$ |
315/0 |
Mathlib.lean,Mathlib/Algebra/CayleyDickson.lean,Mathlib/Algebra/Octonion.lean |
3 |
9 |
['github-actions', 'vihdzp'] |
nobody |
30-59339 30 days ago |
30-59339 30 days ago |
12-7454 12 days |
| 41924 |
junjihashimoto author:junjihashimoto |
feat(NumberTheory): the number-theoretic transform |
The number-theoretic transform is the discrete Fourier transform of functions `ZMod N → M`, where `M` is a module over a commutative domain `R` containing a primitive `N`-th root of unity `ζ` (e.g. `R = ZMod p` with `N ∣ p - 1`):
`ntt hζ f k = ∑ j, ζ ^ (j * k) • f j`.
We prove the character orthogonality relation (`sum_zmodChar_mul`, from `AddChar.sum_eq_ite`), the **Fourier inversion formula** `nttInv_ntt` / `ntt_nttInv` (so the transform is bijective whenever `N` is invertible in `R`), and the **bilinear Parseval identity** `sum_bilin_ntt_ntt_neg` — over a general coefficient ring there is no norm or conjugation, and this is the correct finite-field replacement for Plancherel's theorem.
The module `M` is arbitrary; taking `M` to be a hypercomplex algebra over `R` (e.g. the octonions or sedenions over `ZMod p` from #41919, whence the dependency) yields hypercomplex number-theoretic transforms, recorded as an example. This is the finite-field counterpart of the archimedean theory in #41921/#41922.
The NTT is the transform underlying polynomial multiplication in lattice-based cryptography (e.g. ML-KEM/Kyber), so this also provides groundwork for formalizing those schemes.
- [ ] depends on: #41919
|
new-contributor
blocked-by-other-PR
awaiting-author
|
469/0 |
Mathlib.lean,Mathlib/Algebra/CayleyDickson.lean,Mathlib/Algebra/Octonion.lean,Mathlib/NumberTheory/NumberTheoreticTransform.lean |
4 |
4 |
['github-actions', 'grunweg', 'mathlib-dependent-issues'] |
nobody |
30-59018 30 days ago |
42-59368 42 days ago |
0-1887 31 minutes |
| 42116 |
jyh author:jyh |
feat(Counterexamples): the Jacobian conjecture is false |
We verify that the Jacobian conjecture is false, using the 2026 counterexample of Levent Alpöge (crediting Akhil Mathew), which gives an explicit polynomial self-map of ℚ³ with Jacobian determinant −2 that is not injective. Hence it admits no polynomial (nor even set-theoretic) inverse.
The statement here is aligned with the formalization in google-deepmind/formal-conjectures PR [#4474](https://github.com/google-deepmind/formal-conjectures/pull/4474) (merged 2026-07-26). The correspondence is documented term-by-term in a comment block in this file. Both formalizations independently transcribe Alpöge's Theorem 3.1, which is why the polynomials coincide. The verification adapted here predates the FC disproof and was published independently at jyh/jacobian-verify. Here is the discussion on Zulip: https://leanprover.zulipchat.com/#narrow/channel/583339-AI-authored-projects/topic/Counterexample.20to.20the.20Jacobean.20conjecture
This contribution was developed in collaboration with Claude (Anthropic). The Lean code was written by Claude (Anthropic — Claude Code, with Opus and Fable models) working under my direction. I worked with Claude to align and verify the statement against FC. I reviewed every line and every design decision (the DecidableEq substitution, the CharZero retention, the transpose bridge, the ℚ-concretization) and I can defend each without assistance. |
LLM-generated
new-contributor
|
308/0 |
Counterexamples.lean,Counterexamples/JacobianConjecture.lean |
2 |
7 |
['felixpernegger', 'github-actions', 'jyh', 'mathlib-merge-conflicts', 'ocfnash'] |
nobody |
30-53284 30 days ago |
30-53657 30 days ago |
4-27820 4 days |
| 41822 |
ReemMelamed author:ReemMelamed |
feat(Algebra/Group/GreensRelations): add theorems of Green's relations |
This PR introduces `MulSeq`, `Green`, `Finite`, and `Order`, and proves the main theorems for Green's relations on semigroups.
It contains:
* **MulSeq**: Iterated multiplication sequences (`rightMulSeq`, `leftMulSeq`) for finite
semigroups, together with intermediate structural lemmas: existence of idempotents in
L-classes and R-classes of regular elements, and Green's lemma (the bijection between
H-classes inside a common D-class).
* **Green**: The major structural theorems for Green's relations:
* Green's lemma (translation maps between H-classes are bijections).
* Equivalence `L ∘ R = R ∘ L` (i.e., `isGreenD_commutes_L_R`).
* Characterizations of regular D-classes: a D-class is regular iff it contains an
idempotent, iff every L-class (resp. R-class) inside it contains an idempotent.
* **Finite**: Theorems requiring a finite semigroup:
* `isGreenD_of_isGreenJ`: D = J for finite semigroups.
* Conditions for H-classes to carry a group structure.
* **Order**: Natural `PartialOrder` instances on the quotient types:
* `GreenLClass.instPartialOrder`, `GreenRClass.instPartialOrder`,
`GreenJClass.instPartialOrder`.
* `GreenDClass.instPartialOrder` for finite semigroups (via D = J).
---
- [ ] depends on: #40050 |
t-algebra
blocked-by-other-PR
new-contributor
label:t-algebra$ |
1246/0 |
Mathlib.lean,Mathlib/Algebra/Group/GreensRelations/Basic.lean,Mathlib/Algebra/Group/GreensRelations/Finite.lean,Mathlib/Algebra/Group/GreensRelations/Green.lean,Mathlib/Algebra/Group/GreensRelations/MulSeq.lean,Mathlib/Algebra/Group/GreensRelations/Order.lean,docs/references.bib |
7 |
4 |
['github-actions', 'mathlib-dependent-issues'] |
nobody |
30-44148 30 days ago |
45-55183 45 days ago |
0-218 3 minutes |
| 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
awaiting-author
label:t-algebra$ |
505/0 |
Mathlib.lean,Mathlib/Algebra/Group/GreensRelations/Basic.lean |
2 |
32 |
['ReemMelamed', 'YaelDillies', 'YanYablonovskiy', 'github-actions', 'mathlib-bors', 'mathlib-dependent-issues'] |
nobody |
30-43302 30 days ago |
45-67117 45 days ago |
19-77057 19 days |
| 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 |
23 |
['Formalistic03', 'SnirBroshi', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
30-29728 30 days ago |
30-32828 30 days ago |
69-19596 69 days |
| 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 |
3 |
['github-actions'] |
nobody |
29-79558 29 days ago |
30-23621 30 days ago |
30-24127 30 days |
| 42345 |
TomOleDiem author:TomOleDiem |
feat(Analysis/Normed/Algebra): characterize continuous one-parameter subgroups |
This PR proves that every continuous one-parameter subgroup of the unit group of a real Banach algebra has a unique exponential generator.
The theorem applies to any function-like type from `Multiplicative ℝ` to `Eˣ` carrying `MonoidHomClass` and `ContinuousMapClass` instances.
The proof first derives differentiability from an invertible local average. It then identifies the subgroup with the exponential of its derivative at zero and proves uniqueness by differentiation at zero.
The new module builds successfully and passes `lint-style`.
Substantial AI assistance was used to develop and review this formalization. |
t-analysis
new-contributor
LLM-generated
|
248/0 |
Mathlib.lean,Mathlib/Analysis/Normed/Algebra/OneParameterSubgroup.lean |
2 |
3 |
['TomOleDiem', 'github-actions'] |
nobody |
29-37457 29 days ago |
29-37457 29 days ago |
29-37294 29 days |
| 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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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
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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,
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:
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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-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 |
29-23805 29 days ago |
34-58394 34 days ago |
34-82959 34 days |
| 42095 |
DrDMT-VR author:DrDMT-VR |
feat(Analysis/CStarAlgebra): the non-unital CFC maps into closed two-sided ideals |
## What
For a non-unital C*-algebra `A`, a closed two-sided ideal `I`, an element `a ∈ I`, and any
`f : ℝ → ℝ`, this proves `cfcₙ f a ∈ I`. No hypotheses on `f` are needed: whenever `cfcₙ`
would take its junk value (`f` not continuous on the quasispectrum, `f 0 ≠ 0`, or `a` not
selfadjoint) that value is `0 ∈ I`.
New declarations (namespace `TwoSidedIdeal`):
- `smul_mem_of_isClosed` — a closed two-sided ideal in a non-unital C*-algebra is closed
under the scalar action (proved via the canonical approximate unit `CStarAlgebra.approximateUnit`).
- `cfcₙHom_mem_of_isClosed` — for selfadjoint `a ∈ I`, every value of the underlying
homomorphism `cfcₙHom` lies in `I` (Weierstrass induction on `C(σₙ ℝ a, ℝ)₀`).
- `cfcₙ_mem_of_isClosed` — the main result.
## Why
Closed two-sided ideals of a C*-algebra are hereditary under the continuous functional
calculus; this is a basic tool for spectral-projection and ideal-membership arguments, and
complements the existing "cfc commutes with *-homomorphisms" results. `smul_mem_of_isClosed`
is of independent interest (a closed two-sided ideal is a submodule).
## Notes
This is my second contribution (see #42093). I checked the referenced cfc / approximate-unit
API against current master at the source level; CI is the first full build and I will fix
anything it flags. Suggested location `Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Ideal.lean`;
happy to relocate if preferred.
Parts of this contribution were developed with AI assistance (Claude). All statements are machine-checked by the Lean kernel; `#print axioms` on the new declarations reports only `[propext, Classical.choice, Quot.sound]`.
|
t-analysis
new-contributor
awaiting-author
|
91/0 |
Mathlib.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Ideal.lean |
2 |
3 |
['github-actions', 'grunweg'] |
nobody |
29-16844 29 days ago |
34-64083 34 days ago |
1-47792 1 day |
| 42100 |
DrDMT-VR author:DrDMT-VR |
feat(Analysis/CStarAlgebra): spectral projections from clopen spectral sets |
## What
For `a` in a non-unital C*-algebra and `U : Set ℝ` clopen in the quasispectrum of `a`
with `0 ∉ U`, the indicator `U.indicator 1` is continuous on the quasispectrum and
vanishes at `0`, so `cfcₙ` applies. The resulting element
CStarAlgebra.spectralProjection a U := cfcₙ (U.indicator 1) a
is a genuine projection: selfadjoint and idempotent. It is nonzero exactly when `U`
meets the quasispectrum, and it lies in any closed two-sided ideal containing `a`.
A corollary covers the finite-quasispectrum case: a nonzero selfadjoint element with
finite quasispectrum admits a nonzero spectral projection onto a nonzero spectral value.
## Why
The indicator of a clopen spectral set is the standard way to extract projections from a
disconnected spectrum. Combined with the `cfcₙ`-into-ideals result this produces
projections inside ideals, which is the basic move in the projection theory of non-unital
C*-algebras.
## Note
Parts of this contribution were developed with AI assistance (Claude). All statements are machine-checked by the Lean kernel; `#print axioms` on the new declarations reports only `[propext, Classical.choice, Quot.sound]`.
------
- [ ] depends on: #42095 (uses `TwoSidedIdeal.cfcₙ_mem_of_isClosed`)
|
t-analysis
new-contributor
awaiting-author
blocked-by-other-PR
|
237/0 |
Mathlib.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/Ideal.lean,Mathlib/Analysis/CStarAlgebra/ContinuousFunctionalCalculus/SpectralProjection.lean |
3 |
5 |
['felixpernegger', 'github-actions', 'grunweg', 'mathlib-dependent-issues'] |
nobody |
29-16777 29 days ago |
36-18875 36 days ago |
0-110 1 minute |
| 42101 |
DrDMT-VR author:DrDMT-VR |
feat(NumberTheory/LSeries): conjugation symmetry for the completed Riemann zeta function |
Adds conjugation symmetry for the completed Riemann zeta functions and for Deligne's archimedean
Gamma factor:
* `Complex.Gammaℝ_conj : Gammaℝ (conj s) = conj (Gammaℝ s)`
(`Mathlib/Analysis/SpecialFunctions/Gamma/Deligne.lean`)
* `completedRiemannZeta₀_conj : completedRiemannZeta₀ (conj s) = conj (completedRiemannZeta₀ s)`
* `completedRiemannZeta_conj : completedRiemannZeta (conj s) = conj (completedRiemannZeta s)`
(both in `Mathlib/NumberTheory/LSeries/RiemannZeta.lean`)
All three hold for **every** `s : ℂ`, with no points excluded — in particular no exclusion of the
poles `s = 0, 1` of `Λ`, since `Λ` is built from the entire function `Λ₀` by subtracting
`1 / s + 1 / (1 - s)` and Mathlib's `1 / 0 = 0` convention makes both sides agree there. They are
tagged `@[simp]`, matching the existing `riemannZeta_conj`.
### Why
Conjugation symmetry is a basic structural fact about `ζ` that Mathlib already has
(`riemannZeta_conj`, in `Mathlib/NumberTheory/Harmonic/ZetaAsymp.lean`), but the corresponding
statements for the completed functions `Λ`, `Λ₀` and for `Gammaℝ` were missing. The `Λ` version is
the one actually needed for work on the critical line: combined with the functional equation
`completedRiemannZeta_one_sub` it gives `conj (Λ ⟨1/2, t⟩) = Λ ⟨1/2, t⟩`, i.e. the Riemann
Ξ-function is real-valued on the critical line. It is also the natural form for completed
L-function arguments generally, where `Λ` rather than `ζ` is the object with the clean symmetry.
Note the `Λ` statements do **not** follow formally from `riemannZeta_conj`: the bridge
`riemannZeta_def_of_ne_zero` reads `ζ s = Λ s / Gammaℝ s`, and `Gammaℝ` vanishes at the trivial
zeros, so it cannot be inverted. The proof here instead runs the identity principle directly on the
entire function `Λ₀`.
### Proof
On the halfplane `1 < re s` the Dirichlet-series representation
`completedZeta_eq_tsum_of_one_lt_re` conjugates termwise (real coefficients), giving the result for
`Λ` and hence for `Λ₀` via `completedRiemannZeta_eq`. Since `Λ₀` is entire
(`differentiable_completedZeta₀`) and `conj ∘ Λ₀ ∘ conj` is entire by
`DifferentiableAt.conj_conj`, `AnalyticOnNhd.eq_of_eventuallyEq` propagates the identity from a
neighbourhood of `2` to all of `ℂ`. Transferring back through `completedRiemannZeta_eq` — which is
unconditional — yields `completedRiemannZeta_conj` with no side conditions.
### Drive-by
`riemannZeta_conj` in `Mathlib/NumberTheory/Harmonic/ZetaAsymp.lean` is golfed from ~25 lines to 4
by deriving it from `completedRiemannZeta_conj` and `Gammaℝ_conj` (statement, name and `@[simp]`
attribute unchanged); its two now-unused private imports are dropped. It no longer depends on
anything in `ZetaAsymp`, so it could reasonably be relocated to `RiemannZeta.lean` alongside the new
lemmas — happy to do that in this PR if reviewers prefer.
`Mathlib/NumberTheory/LSeries/RiemannZeta.lean` gains one import,
`Mathlib.Analysis.Calculus.Deriv.Star` (2 extra modules in the transitive closure).
### Checks
Built locally against master (`v4.33.0-rc1`): full `lake build Mathlib` completes with zero errors
and zero warnings; `lake exe lint-style` is clean on all three touched files. No `sorry`, no new
axioms.
Parts of this contribution were developed with AI assistance (Claude). All statements are machine-checked by the Lean kernel; `#print axioms` on the new declarations reports only `[propext, Classical.choice, Quot.sound]`.
This PR is standalone and independent of my other open PRs (#42093, #42095, #42100).
|
new-contributor
awaiting-author
t-number-theory
t-analysis
|
92/30 |
Mathlib/Analysis/SpecialFunctions/Gamma/Deligne.lean,Mathlib/NumberTheory/Harmonic/ZetaAsymp.lean,Mathlib/NumberTheory/LSeries/RiemannZeta.lean |
3 |
4 |
['github-actions', 'grunweg', 'tb65536'] |
nobody |
29-16732 29 days ago |
34-64159 34 days ago |
1-36261 1 day |
| 41165 |
gnahz04 author:gnahz04 |
feat(Analysis/InnerProductSpace): the representer theorem |
Adds the representer theorem (Schölkopf version): infinite dimensional kernel space represented by finite number of data points.
Discussed in #mathlib4 ("RKHS representer theorem").
**AI disclosure.** I used Claude Code (Claude Opus 4.8) to draft and iterate the Lean proof. I work in kernel methods / RKHS, understand the statement and proof, and can justify the design choices to reviewers.
🤖 Generated with [Claude Code](https://claude.com/claude-code) |
t-analysis
new-contributor
LLM-generated
awaiting-author
|
51/0 |
Mathlib/Analysis/InnerProductSpace/Reproducing.lean |
1 |
11 |
['felixpernegger', 'github-actions', 'gnahz04', 'j-loreaux'] |
j-loreaux assignee:j-loreaux |
28-53844 28 days ago |
40-46986 40 days ago |
21-79281 21 days |
| 17176 |
arulandu author:arulandu |
feat: integrals and integrability with .re |
Lemmas for swapping order of .re and integration/integrability.
---
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PR is merged. Please leave a blank newline before the `---`, otherwise
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[](https://gitpod.io/from-referrer/)
|
merge-conflict
awaiting-author
new-contributor
t-measure-probability
please-adopt
|
49/0 |
Mathlib/MeasureTheory/Function/L1Space.lean,Mathlib/MeasureTheory/Integral/IntegrableOn.lean,Mathlib/MeasureTheory/Integral/IntervalIntegral.lean,Mathlib/MeasureTheory/Integral/SetIntegral.lean |
4 |
34 |
['EtienneC30', 'JJYYY-JJY', 'arulandu', 'github-actions', 'loefflerd'] |
nobody |
28-42853 28 days ago |
684-83118 684 days ago |
9-73631 9 days |
| 41477 |
lucifer1004 author:lucifer1004 |
feat(Analysis/InnerProductSpace): add Hilbert-Schmidt inner product and norm |
This PR adds the Hilbert-Schmidt (Frobenius) inner product and norm on linear maps `E →ₗ[𝕜] F` between finite-dimensional inner product spaces over an `RCLike` field, built through `InnerProductSpace.Core`. The instances are scoped under `LinearMap.Norms.HilbertSchmidt` (rather than global, since `E →ₗ[𝕜] F` should not carry a canonical norm), mirroring the `Matrix.Norms.Frobenius` convention.
Main declarations:
- `LinearMap.hilbertSchmidtCore`
- `LinearMap.hilbertSchmidtNormedAddCommGroup`
- `LinearMap.hilbertSchmidtInnerProductSpace`
- `LinearMap.trace_adjoint_comp_eq_sum_inner`
- `LinearMap.hilbertSchmidt_inner_eq_trace`
- `LinearMap.hilbertSchmidt_norm_sq_eq_re_trace`
- `LinearMap.hilbertSchmidt_norm_sq_eq_sum_norm_sq`
This is the foundation for a sequence of PRs proving the Eckart-Young-Mirsky best low-rank approximation theorems on top of `LinearMap.singularValues`; see the notes below the fold.
Verification:
- Builds
- `runLinter` passes
- `lint-style` clean
- No `sorry`
AI use disclosure: this PR was developed with the assistance of Claude (via Claude Code), which was used to draft and refactor the Lean proofs under my direction. I have reviewed the final code, can justify the design decisions, and take responsibility for it.
---
Following review feedback on Zulip, the original four-file PR has been split; this PR now contains only the Hilbert-Schmidt norm, and the proofs across all four files have been refactored to be more compact. The follow-ups are:
- Ky Fan inequality + Eckart-Young in Frobenius norm (branch `eckart-young-frobenius`, depends on this PR);
- the operator norm equals the largest singular value (branch `opnorm-singular-values`, independent);
- Eckart-Young in operator norm (branch `eckart-young-spectral`, independent).
I would especially appreciate feedback on whether the scoped `LinearMap.Norms.HilbertSchmidt` instance is the right API here, or whether a type-synonym approach (à la `WithLp`) would be preferred.
|
t-analysis
new-contributor
LLM-generated
awaiting-author
|
120/0 |
Mathlib.lean,Mathlib/Analysis/InnerProductSpace/HilbertSchmidt.lean |
2 |
6 |
['TJHeeringa', 'github-actions', 'j-loreaux', 'ocfnash'] |
j-loreaux assignee:j-loreaux |
27-84340 27 days ago |
33-18424 33 days ago |
20-75814 20 days |
| 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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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:
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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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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,
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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 |
10 |
['SnirBroshi', 'github-actions', 'stalex444'] |
nobody |
27-64788 27 days ago |
44-41076 44 days ago |
44-40913 44 days |
| 41862 |
mpacholski author:mpacholski |
feat(Analysis/Normed/Module/TensorProduct): define projective seminorm on binary tensor products |
Introduce the projective seminorm on the tensor product of two normed spaces,
mirroring the n-ary construction in `PiTensorProduct.ProjectiveSeminorm` and prove its basic properties.
---
<!-- 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:
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- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
- [ ] depends on: #41731
- [ ] depends on: #41827
|
new-contributor
tech debt
blocked-by-other-PR
|
272/9 |
Mathlib.lean,Mathlib/Analysis/Fourier/FourierTransformDeriv.lean,Mathlib/Analysis/Normed/Module/TensorProduct/ProjectiveSeminorm.lean,Mathlib/LinearAlgebra/TensorProduct/Basic.lean,Mathlib/MeasureTheory/Measure/CharacteristicFunction/TaylorExpansion.lean,Mathlib/Topology/Algebra/Module/Spaces/ContinuousLinearMap.lean |
6 |
5 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'themathqueen'] |
nobody |
27-27320 27 days ago |
32-53785 32 days ago |
1-35 1 day |
| 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 |
27-8201 27 days ago |
28-17787 28 days ago |
28-17624 28 days |
| 42446 |
ipezygj author:ipezygj |
feat(Algebra/Order/Ring/Pow): bernoulli's inequality for a subtracted term |
Adds `one_sub_mul_le_pow`, the mirror of `one_add_mul_le_pow`:
```lean
lemma one_sub_mul_le_pow (H : a ≤ 2) (n : ℕ) : 1 - n * a ≤ (1 - a) ^ n
```
`Mathlib/Algebra/Order/Ring/Pow.lean` already carries Bernoulli in the `1 + a` form
and one reformulation of it (`one_add_mul_sub_le_pow`); this is the `1 - a` form,
which is the shape that comes up when bounding a product of complements — for
example showing that `1 - (1 - p) ^ n ≤ n * p`, the comparison between the Šidák and
Bonferroni corrections in statistics, which follows immediately by `linarith`.
The hypothesis `a ≤ 2` is exactly what `one_add_mul_le_pow`'s `-2 ≤ -a` becomes, and
it is load-bearing rather than decorative: the inequality fails for `a > 2` (checked
numerically over a grid before writing the proof).
Proof is two lines and reduces directly to the existing lemma.
This is my first contribution to mathlib, so please do point out anything that does
not match the library's conventions.
---
[Blueprint] not applicable.
|
t-algebra
new-contributor
label:t-algebra$ |
6/0 |
Mathlib/Algebra/Order/Ring/Pow.lean |
1 |
3 |
['github-actions'] |
nobody |
26-43671 26 days ago |
26-46671 26 days ago |
26-46508 26 days |
| 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
|
60/1 |
Mathlib/Data/List/PeriodicityLemma.lean |
1 |
8 |
['SnirBroshi', 'github-actions', 'theebayuser'] |
nobody |
26-18527 26 days ago |
43-82494 43 days ago |
43-82331 43 days |
| 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
|
44/3 |
Mathlib/Data/List/Infix.lean |
1 |
3 |
['github-actions', 'theebayuser'] |
nobody |
26-16250 26 days ago |
43-9309 43 days ago |
43-9146 43 days |
| 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.
---
<!-- 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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-->
- `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
t-combinatorics
new-contributor
|
64/0 |
Mathlib/Data/Finset/Image.lean,Mathlib/Order/Partition/Finpartition.lean |
2 |
4 |
['github-actions', 'lydia-schiff'] |
nobody |
26-13395 26 days ago |
26-16204 26 days ago |
26-21437 26 days |
| 40963 |
Formalistic03 author:Formalistic03 |
feat(Combinatorics/SimpleGraph/Paths): add lemma about the first dart if dropLast is a path |
If `dropLast` of a walk is a path, a dart of the walk sharing its first vertex with the walk also shares its second vertex.
I thought this was a natural more general form of `IsPath.eq_snd_of_mem_edges`, useful for cycles for example.
---
<!-- 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.
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Co-authors in the squash commit are gathered from two sources:
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-->
[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
|
15/0 |
Mathlib/Combinatorics/SimpleGraph/Paths.lean,Mathlib/Combinatorics/SimpleGraph/Walk/Operations.lean |
2 |
3 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
25-41799 25 days ago |
25-42417 25 days ago |
67-61949 67 days |
| 35812 |
khwilson author:khwilson |
feat(MeasureTheory/Group/GeometryOfNumbers): successive minima and existence of a directional basis |
Define the successive minima of a discrete subgroup of a real vector space with respect to a convex set. These invariants show up throughout the geometry of numbers and are the focus of Minkowski's Second Theorem (whose statement is left here with a `proof_wanted`).
Note: The key lemma is that the "gauge set" of the convex set is closed. I took the approach of showing that it is sequentially closed. There's an alternative approach via showing it's the union of a finite number of closed sets. I personally thought this approach was more intuitive, but the union approach may result in a slightly shorter proof.
Co-authored-by: Yaël Dillies <yael.dillies@gmail.com>
---
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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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- [x] depends on #37738
- [x] depends on #37740
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-measure-probability
merge-conflict
|
350/36 |
Mathlib/Algebra/Module/ZLattice/Basic.lean,Mathlib/Analysis/Convex/Basic.lean,Mathlib/Analysis/Convex/Body.lean,Mathlib/Analysis/Convex/Gauge.lean,Mathlib/LinearAlgebra/FiniteDimensional/Basic.lean,Mathlib/MeasureTheory/Group/GeometryOfNumbers.lean,Mathlib/NumberTheory/NumberField/Units/Regulator.lean |
7 |
99 |
['Vierkantor', 'YaelDillies', 'github-actions', 'joneugster', 'khwilson', 'mathlib-merge-conflicts', 'ocfnash', 'sgouezel'] |
nobody |
24-83441 24 days ago |
24-83441 24 days ago |
90-31998 90 days |
| 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$ |
50/0 |
Mathlib/Algebra/BigOperators/Group/Finset/Powerset.lean |
1 |
3 |
['bocowgill', 'github-actions'] |
nobody |
24-60733 24 days ago |
24-60733 24 days ago |
24-60570 24 days |
| 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
|
605/0 |
Mathlib.lean,Mathlib/Probability/Quantile.lean |
2 |
3 |
['Ganton23', 'github-actions'] |
nobody |
24-27327 24 days ago |
24-34651 24 days ago |
1-75224 1 day |
| 41622 |
benjub author:benjub |
feat(Order): add subset_Icc_iff and Set.OrdConnected.eq_Icc |
Add two lemmas relating to closed bounded intervals in a preorder:
- `subset_Icc_iff : s ⊆ Icc a b ↔ a ∈ lowerBounds s ∧ b ∈ upperBounds s` in `Mathlib/Order/Bounds/Basic.lean` characterizes containment in a closed bounded interval. This is the version "with witnesses" of `bddBelow_bddAbove_iff_subset_Icc`, and we prove the latter as a corollary.
- `OrdConnected.eq_Icc (s : Set α) (hs : OrdConnected s) (ha : IsLeast s a) (hb : IsGreatest s b) : s = Icc a b` in `Mathlib/Order/Interval/Set/OrdConnected.lean` gives a sufficient condition to be a closed bounded interval. It uses the previous lemma in its proof.
---
**Motivation:** I plan to use `OrdConnected.eq_Icc` to show that a set is closed when it is ordconnected and contains its infimum and supremum. This will allow to use the existing "continuous induction principle" `IsClosed.mem_of_ge_of_forall_exists_gt` to shorten the (compiling) proof in the draft PR #41552. |
t-order
new-contributor
merge-conflict
|
9/3 |
Mathlib/Order/Bounds/Basic.lean,Mathlib/Order/Interval/Set/OrdConnected.lean |
2 |
6 |
['benjub', 'github-actions', 'grunweg', 'mathlib-merge-conflicts'] |
nobody |
24-22236 24 days ago |
24-22237 24 days ago |
25-30706 25 days |
| 14237 |
js2357 author:js2357 |
feat: Define the localization of a fractional ideal at a prime ideal |
Define the localization of a fractional ideal at a prime ideal, and prove some basic properties.
---
<!-- The text above the `---` will become the commit message when your
PR is merged. Please leave a blank newline before the `---`, otherwise
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This PR is part 3 out of 4 of a proof of `isDedekindDomain_iff_isDedekindDomainDvr`.
Part 4 is available here: #14242
- [x] depends on: #14099 Part 1
- [x] depends on: #14216 Part 2
[](https://gitpod.io/from-referrer/)
|
merge-conflict
awaiting-author
t-algebra
new-contributor
label:t-algebra$ |
230/0 |
Mathlib.lean,Mathlib/RingTheory/FractionalIdeal/LocalizedAtPrime.lean,Mathlib/RingTheory/Localization/Basic.lean |
3 |
24 |
['Vierkantor', 'YaelDillies', 'alreadydone', 'github-actions', 'js2357', 'kbuzzard', 'leanprover-community-bot-assistant', 'mathlib4-merge-conflict-bot'] |
Vierkantor assignee:Vierkantor |
24-8671 24 days ago |
733-54696 733 days ago |
6-3525 6 days |
| 39332 |
Michaillus author:Michaillus |
chore(Topology/Spectral): Added two small lemmas |
chore(Topology/Spectral): Added two lemmas
`IsCompact.isClosed_constructibleTopology_of_isOpen`
`IsCompact.isClosed_constructibleTopology_of_isClosed`
---
<!-- 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:
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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.*
- ...
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- Nat.bit1_add_bit1
- ...
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- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
t-topology
new-contributor
awaiting-author
|
28/0 |
Mathlib/Topology/Defs/Basic.lean,Mathlib/Topology/Spectral/ConstructibleTopology.lean,scripts/nolints.json |
3 |
15 |
['Michaillus', 'github-actions', 'j-loreaux', 'plp127', 'qawbecrdtey'] |
j-loreaux assignee:j-loreaux |
22-48140 22 days ago |
54-37059 54 days ago |
54-79797 54 days |
| 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 |
411/0 |
Mathlib.lean,Mathlib/RingTheory/Valuation/ContinuousValuation.lean,Mathlib/Topology/Algebra/Nonarchimedean/Spa.lean |
3 |
3 |
['github-actions', 'tb65536'] |
nobody |
22-39403 22 days ago |
28-47301 28 days ago |
28-51132 28 days |
| 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 |
22-32695 22 days ago |
30-23516 30 days ago |
30-23899 30 days |
| 42583 |
attilavjda author:attilavjda |
chore(Analysis/Calculus/FDeriv/Prod): deprecate differentiable*_finCons' as duplicates |
The four primed differentiable*_finCons' lemmas are definitionally the unprimed ones (@…' = @… := rfl). Replaced by deprecated aliases, and repointed four in-file uses.
Aristotle found this duplication.
---
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|
t-analysis
new-contributor
|
12/28 |
Mathlib/Analysis/Calculus/FDeriv/Prod.lean |
1 |
5 |
['Rob23oba', 'attilavjda', 'github-actions'] |
nobody |
21-84020 21 days ago |
22-28597 22 days ago |
22-28434 22 days |
| 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 |
21-74048 21 days ago |
21-74680 21 days ago |
73-82982 73 days |
| 35376 |
michaellee94 author:michaellee94 |
feat(Geometry/Manifold): orientable manifolds |
This adds a definition of orientation and orientability for manifolds.
AI disclosure: I used Claude to revise an initial human pass at the core definitions, as well as to help formalize proofs of natural follow-up statements from human-written definitions and theorem statements.
---
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- [x] depends on: #33189
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-differential-geometry
awaiting-author
|
726/1 |
Mathlib.lean,Mathlib/Geometry/Manifold/Instances/Real.lean,Mathlib/Geometry/Manifold/IsManifold/Basic.lean,Mathlib/Geometry/Manifold/Orientation.lean,Mathlib/Geometry/Manifold/VectorBundle/Tangent.lean,Mathlib/Topology/LocallyConstant/Basic.lean |
6 |
84 |
['Rida-Hamadani', 'github-actions', 'grunweg', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'michaellee94', 'sgouezel'] |
sgouezel assignee:sgouezel |
21-58677 21 days ago |
41-48179 41 days ago |
17-68470 17 days |
| 42452 |
menon-codes author:menon-codes |
feat: lint for use of ellipsis |
See the conversation at [#mathlib4 > Linter for ellipsis @ 💬](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Linter.20for.20ellipsis/near/613523943)
Creates a linter to detect excessive use of `_` holes at end of lemmas and replace it when appropriate with uses of `..`
It also creates a respective test file to check it, though I am not too certain about the styles and techniques mathlib uses for testing.
AI (GPT 5.6 Terra) was used heavily in the documentation and testing of the code. Most of the logic and coding was done manually. |
new-contributor
LLM-generated
t-linter
|
948/5 |
Mathlib.lean,Mathlib/Init.lean,Mathlib/RingTheory/NoetherNormalization.lean,Mathlib/Tactic.lean,Mathlib/Tactic/Linter/DirectoryDependency.lean,Mathlib/Tactic/Linter/EllipsisPlaceholders.lean,MathlibTest/Linter/EllipsisPlaceholders.lean |
7 |
7 |
['copilot-pull-request-reviewer', 'github-actions', 'mathlib-bors', 'menon-codes'] |
thorimur assignee:thorimur |
21-56379 21 days ago |
21-53812 21 days ago |
4-36317 4 days |
| 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
|
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 |
20-81887 20 days ago |
20-85045 20 days ago |
49-58058 49 days |
| 33163 |
Aaron1011 author:Aaron1011 |
feat: prove subgroup of (M -> Z) is finitely generated |
---
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[](https://gitpod.io/from-referrer/)
|
t-ring-theory
new-contributor
awaiting-author
merge-conflict
|
5/0 |
Mathlib/RingTheory/DedekindDomain/Dvr.lean |
1 |
3 |
['erdOne', 'github-actions', 'mathlib-merge-conflicts'] |
alreadydone assignee:alreadydone |
20-65973 20 days ago |
246-37768 246 days ago |
5-82139 5 days |
| 40652 |
michaellee94 author:michaellee94 |
feat(Geometry/Manifold): the Möbius band is a non-orientable manifold |
Constructs the Möbius band as the total space of a line bundle over the circle (`moebiusBundleCore`, `MoebiusBand`), proves it is a connected smooth manifold (`MoebiusBand.isManifold`, `MoebiusBand.connectedSpace`), and proves it is non-orientable (`MoebiusBand.not_orientable`).
AI assistance note: After formalizing definitions and theorem statements, I used Claude (hooked up to the Lean LSP MCP running locally) to help iteratively fix elaboration errors (e.g. by calling Loogle to locate the necessary intermediate results and inject them where needed).
- [ ] depends on: #35376 |
t-differential-geometry
new-contributor
blocked-by-other-PR
LLM-generated
merge-conflict
|
1895/0 |
Mathlib.lean,Mathlib/Analysis/Complex/Circle.lean,Mathlib/Geometry/Manifold/Instances/MoebiusBand.lean,Mathlib/Geometry/Manifold/Instances/Real.lean,Mathlib/Geometry/Manifold/IsManifold/Basic.lean,Mathlib/Geometry/Manifold/Orientation.lean,Mathlib/Geometry/Manifold/VectorBundle/Tangent.lean,Mathlib/Topology/LocallyConstant/Basic.lean |
8 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
20-62276 20 days ago |
76-11619 76 days ago |
0-313 5 minutes |
| 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 |
20-47652 20 days ago |
20-48583 20 days ago |
20-49191 20 days |
| 42615 |
williamjblair author:williamjblair |
feat(Data/Nat/Prime/Basic): a nonzero natural has a prime not dividing it |
Any prime factor of `n + 1` works, so the proof needs nothing beyond `minFac`.
---
[](https://gitpod.io/from-referrer/) |
t-data
new-contributor
LLM-generated
|
8/0 |
Mathlib/Data/Nat/Prime/Basic.lean |
1 |
3 |
['github-actions', 'williamjblair'] |
nobody |
20-46305 20 days ago |
20-48681 20 days ago |
20-48518 20 days |
| 42614 |
williamjblair author:williamjblair |
chore(Algebra/Group/Action/Pointwise/Set): generalize smul_mem_smul_set_iff to IsLeftCancelSMul |
The lemma only needs `a • ·` to be injective, which is what `IsLeftCancelSMul` says. Moving it into that section covers the previous `[Group α] [MulAction α β]` case through the existing instance, and also covers `[Mul α] [IsLeftCancelMul α]` acting on itself.
---
[](https://gitpod.io/from-referrer/) |
t-algebra
new-contributor
LLM-generated
label:t-algebra$ |
5/4 |
Mathlib/Algebra/Group/Action/Pointwise/Set/Basic.lean |
1 |
3 |
['github-actions', 'williamjblair'] |
nobody |
20-46087 20 days ago |
20-48906 20 days ago |
20-48743 20 days |
| 34722 |
GrigorenkoPV author:GrigorenkoPV |
feat(Data/Finset/RangeDistance): bound distance between elements of `Finset.range` |
---
Rebase of https://github.com/leanprover-community/mathlib4/pull/26347
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- Nat.bit1_add_bit1
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[](https://gitpod.io/from-referrer/)
|
new-contributor
t-data
awaiting-author
merge-conflict
|
34/0 |
Mathlib.lean,Mathlib/Algebra/Order/Group/Unbundled/Abs.lean,Mathlib/Data/Finset/RangeDistance.lean |
3 |
8 |
['GrigorenkoPV', 'Vierkantor', 'github-actions', 'joneugster', 'mathlib-merge-conflicts', 'mathlib-splicebot', 'plp127'] |
pechersky assignee:pechersky |
20-36191 20 days ago |
157-41503 157 days ago |
52-18954 52 days |
| 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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- ...
Deletions:
- Nat.bit1_add_bit1
- ...
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[](https://gitpod.io/from-referrer/)
|
t-analysis
new-contributor
|
253/0 |
Mathlib.lean,Mathlib/Analysis/Complex/Wirtinger.lean |
2 |
2 |
['github-actions'] |
nobody |
20-12198 20 days ago |
20-12793 20 days ago |
20-12630 20 days |
| 38631 |
FordUniver author:FordUniver |
feat(Combinatorics/SimpleGraph/InducedCopy): add `UnlabeledEmbedding`, `unlabeledEmbeddingCount` and `embeddingCount` |
Extracts the induced-containment material from `SimpleGraph/Copy.lean` into a new `SimpleGraph/InducedCopy.lean` and adds the induced analogues of `UnlabeledCopy`/`copyCount`/`unlabeledCopyCount`: a type `UnlabeledEmbedding G H` for induced subgraphs of `H` isomorphic to `G`, a count `H.embeddingCount G := Nat.card (G ↪g H)` for induced labeled copies (i.e. graph embeddings), and a count `H.unlabeledEmbeddingCount G := Nat.card (G.UnlabeledEmbedding H)` for induced unlabelled copies, each with the parallel `_of_isEmpty` / `_eq_zero` / `_pos` / `_le_*` / `_eq_nat_card` API. `IsIndContained`, the `⊴` notation, `IndFree`, and all related lemmas move from `Copy.lean` to the new file. `Embedding.range_toSubgraph` characterises induced subgraphs as the range of `Embedding.toSubgraph : (G ↪g H) → H.Subgraph` and bridges `embeddingCount` to `unlabeledEmbeddingCount`.
Co-authored-by: Malte Jackisch <45597826+MaltyBlanket@users.noreply.github.com>
---
**Final step 5/5 of the `Copy` / `InducedCopy` refactor stack.**
The new file mirrors `Copy.lean`'s organisation (containment → counting → killing sections) for the induced row; the killing-induced-copies machinery is left as a TODO. Naming follows the convention established in #38745: types are guest-first (`UnlabeledEmbedding G H`, `IsIndContained G H`), operations host-first (`H.embeddingCount G`, `H.unlabeledEmbeddingCount G`). The induced labelled type is `Embedding`, i.e., `G ↪g H`, directly. Two bookkeeping changes in `Copy.lean`: `Copy.isContained` / `Embedding.isContained` / `Iso.isContained`/`'` and `isContained_iff_exists_le_comap`, which lived in the now-deleted "Induced containment" section but are non-induced, move up into the `IsContained` section.
`LineGraph.lean`'s `Copy` import switches to `InducedCopy` since it uses `IsIndContained`. The cross-module proofs `embeddingCount_le_copyCount` and `unlabeledEmbeddingCount_le_unlabeledCopyCount` bridge through the public `copyCount_eq_nat_card`/`unlabeledCopyCount_eq_nat_card` lemmas introduced in #38931 (the counts themselves remain unexposed per @plp127's review). `Embedding.ofIsInduced` (used by `Embedding.range_toSubgraph`) comes from the independent prerequisite #39288.
| | labeled | unlabeled |
|---|---|---|
| ordinary | `Copy` / `copyCount` | `UnlabeledCopy` / `unlabeledCopyCount` |
| induced | `Embedding` / `embeddingCount` | `UnlabeledEmbedding` / `unlabeledEmbeddingCount` |
This branch sits on top of an octopus-merge diffbase (`FordUniver:diffbase/ind-copy-count`) of `chore/copy-nat-card` and `feat/subgraph-ofIsInduced`, so the link below shows only the changes intrinsic to this PR.
- [ ] depends on: #38931
- [ ] depends on: #39288
Diff for the changes *just* in this PR over its predecessors: [link](https://github.com/FordUniver/mathlib4/compare/diffbase/ind-copy-count...feat/ind-copy-count).
|
t-combinatorics
new-contributor
blocked-by-other-PR
large-import
tech debt
merge-conflict
|
644/342 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/Copy.lean,Mathlib/Combinatorics/SimpleGraph/InducedCopy.lean,Mathlib/Combinatorics/SimpleGraph/LineGraph.lean,Mathlib/Combinatorics/SimpleGraph/Subgraph.lean |
5 |
46 |
['FordUniver', 'SnirBroshi', 'YaelDillies', 'github-actions', 'mathlib-bors', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'plp127'] |
nobody |
20-6631 20 days ago |
121-83404 121 days ago |
2-46521 2 days |
| 38843 |
FordUniver author:FordUniver |
chore(Combinatorics/SimpleGraph/Copy): replace file-wide `@[expose]` with selective exposure |
Removes the file-wide `@[expose] public section` and restores selective `@[expose]` only on the small constructive `def`s that need cross-module reduction: `Copy.toEmbedding`, `Copy.id`, `Copy.ofLE`, `Copy.topEmbedding` — each has an exported `@[simp]` lemma proved by `rfl` that needs the definition unfolded to typecheck. Replaces `@[simps!]` on `topEmbedding` with an explicit `@[simp] topEmbedding_apply` to avoid a private `_proof_1` term leaking into generated lemma names; adds `toEmbedding_apply` to match the existing `toHom_apply`. Switches `IsIndContained` from `def` to `abbrev` so the structural alias `Nonempty (G ↪g H)` stays transparent, matching `IsContained` and `Free`.
Co-authored-by: Malte Jackisch <45597826+MaltyBlanket@users.noreply.github.com>
---
**Step 3/5 of the `Copy` / `InducedCopy` refactor-feat stack.**
The noncomputable counts `copyCount` and `unlabeledCopyCount` are deliberately *not* exposed (see [@plp127's review](https://github.com/leanprover-community/mathlib4/pull/38631#discussion_r3161902380) on #38631 explaining that unfolding a `classical`-`Fintype.card` body is rarely what you want); the downstream consumers in #38631 bridge via public `*_eq_nat_card` lemmas introduced in #38931 instead.
- [ ] depends on: #38745
Diff for the changes *just* in this PR over its predecessor: [link](https://github.com/FordUniver/mathlib4/compare/chore/copy-spelling...chore/copy-expose)
|
t-combinatorics
new-contributor
blocked-by-other-PR
tech debt
merge-conflict
|
251/246 |
Mathlib/Combinatorics/SimpleGraph/Copy.lean |
1 |
7 |
['github-actions', 'mathlib-bors', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
20-6628 20 days ago |
109-71845 109 days ago |
0-76500 21 hours |
| 38931 |
FordUniver author:FordUniver |
chore(Combinatorics/SimpleGraph/Copy): replace classical `Fintype.card` with `Nat.card` |
Replaces definitions of `copyCount` and `unlabeledCopyCount` with `Nat.card` instead of `Fintype.card` as well as several `Fintype` occurrences with `Finite`. The body of `uniqueUnlabeledCopyBot` is restructured to use `Finite.injective_iff_surjective` since the `Fintype.card_congr` route no longer applies under the weakened `[Finite W]` hypothesis. Adds public `copyCount_eq_nat_card` and `unlabeledCopyCount_eq_nat_card` bridge lemmas so downstream files can characterize the counts (e.g. for `Nat.card_le_card_of_injective` bridging in `InducedCopy.lean`) without unfolding.
Co-authored-by: Malte Jackisch <45597826+MaltyBlanket@users.noreply.github.com>
---
**Step 4/5 of the `Copy` / `InducedCopy` refactor-feat stack.**
As suggested in #38631 by @SnirBroshi and @YaelDillies. I went with `Nat` over `ENat` based on Yael's preference (but I think that could easily be changed to `ENat`). Quite a bit of churn was needed as a consequence.
- [ ] depends on: #38843
Diff for the changes *just* in this PR over its predecessor: [link](https://github.com/FordUniver/mathlib4/compare/chore/copy-expose...chore/copy-nat-card) |
new-contributor
t-combinatorics
large-import
blocked-by-other-PR
tech debt
merge-conflict
|
281/257 |
Mathlib/Combinatorics/SimpleGraph/Copy.lean |
1 |
10 |
['FordUniver', 'SnirBroshi', 'github-actions', 'mathlib-bors', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
20-6625 20 days ago |
118-59102 118 days ago |
0-2006 33 minutes |
| 40768 |
AlexeyMilovanov author:AlexeyMilovanov |
Add a reachability characterization for PFun.fix |
Add a `ReflTransGen` characterization of `PFun.fix` and use it to simplify one Turing machine proof. |
new-contributor
merge-conflict
|
27/13 |
Mathlib/Computability/TuringMachine/Config.lean,Mathlib/Data/PFun.lean |
2 |
3 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
20-4119 20 days ago |
20-4120 20 days ago |
40-57718 40 days |
| 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 |
19-46002 19 days ago |
19-46702 19 days ago |
31-73949 31 days |
| 38309 |
ntapiam author:ntapiam |
feat(Algebra/NonAssoc): dendriform algebras |
This PR introduces dendriform structures such as dendriform semirings
and algebras, and proves basic facts linking them to their pre-Lie
counterparts.
---
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[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
awaiting-author
merge-conflict
label:t-algebra$ |
270/0 |
Mathlib.lean,Mathlib/Algebra/NonAssoc/Dendriform/Defs.lean,docs/references.bib |
3 |
10 |
['YaelDillies', 'dagurtomas', 'github-actions', 'mathlib-merge-conflicts', 'ntapiam'] |
ocfnash assignee:ocfnash |
19-37891 19 days ago |
75-61529 75 days ago |
54-13016 54 days |
| 42410 |
MrBrain295 author:MrBrain295 |
feat(Data/EReal): prove recENNReal_neg_coe_ennreal |
---
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Replaces the `proof_wanted` with a proof and removes the extra import. Generated by @Aristotle-Harmonic and reviewed by myself.
[](https://gitpod.io/from-referrer/)
|
t-data
LLM-generated
new-contributor
|
12/1 |
Mathlib/Data/EReal/Operations.lean |
1 |
10 |
['MrBrain295', 'Whysoserioushah', 'github-actions', 'mathlib-merge-conflicts'] |
nobody |
19-33858 19 days ago |
19-32861 19 days ago |
7-79285 7 days |
| 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 |
19-23479 19 days ago |
19-30636 19 days ago |
19-30473 19 days |
| 37062 |
tannerduve author:tannerduve |
feat(Computability): Turing join and semilattice structure on Turing degrees |
- Add `Partrec.kronecker` (equality test) and `Partrec.join` (disjoint union by parity) in `Partrec.lean`
- Prove `Nat.RecursiveIn` is closed under computable conditionals (`cond_const`, `cond`)
- Show each component reduces to the join (`left_le_join`, `right_le_join`) and the join is the least upper bound (`join_le`)
- Establish `SemilatticeSup` instance on `TuringDegree` |
t-computability
new-contributor
large-import
awaiting-author
merge-conflict
|
311/15 |
Mathlib/Computability/Partrec.lean,Mathlib/Computability/RecursiveIn.lean,Mathlib/Computability/TuringDegree.lean |
3 |
19 |
['Komyyy', 'YaelDillies', 'github-actions', 'mathlib-merge-conflicts', 'tannerduve'] |
YaelDillies assignee:YaelDillies |
19-19463 19 days ago |
72-503 72 days ago |
68-28225 68 days |
| 36323 |
SproutSeeds author:SproutSeeds |
feat(Inversion): discontinuity and center/global fderiv formulas |
Part of #5939
Adds the discontinuity-at-center lemma for inversion and derives the center/global `fderiv` formulas from it. 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`
Tools used: Codex 5.3 extra high
---
Happy to adjust naming, placement, or proof style based on maintainer preference.
|
t-euclidean-geometry
new-contributor
LLM-generated
|
22/0 |
Mathlib/Geometry/Euclidean/Inversion/Calculus.lean |
1 |
4 |
['SproutSeeds', 'github-actions', 'mathlib-merge-conflicts'] |
jsm28 assignee:jsm28 |
19-18835 19 days ago |
20-11553 20 days ago |
20-11390 20 days |
| 42505 |
attilavjda author:attilavjda |
chore(Algebra/Tropical/Basic): deduplicate five pairs of lemmas |
`On a LinearOrder`, `⊓`/`⊔` are `min`/`max`, so `trop_inf`, `untrop_sup`, `inf_eq_add`, and `trop_sup_def` are the same statements as `trop_min`, `untrop_max`, `min_eq_add`, and `trop_max_def`, respectively (three duplicated `simp` lemmas). Likewise, `injective_trop`/`injective_untrop` duplicate `trop_injective`/`untrop_injective`. The removed lemmas become deprecated aliases.
[I used Aristotle AI](https://github.com/attilavjda/formal-contributions/blob/main/tropical_dedup_lemmas/RequestProject/TropicalDedup.lean) it helped find the duplicates, and generated the solutions, verified the equivalences, and helped in understanding the proofs, and meaning of the refactor.
---
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[](https://gitpod.io/from-referrer/)
|
new-contributor
t-algebra
LLM-generated
label:t-algebra$ |
8/17 |
Mathlib/Algebra/Tropical/Basic.lean |
1 |
2 |
['github-actions', 'wwylele'] |
nobody |
18-71345 18 days ago |
24-37020 24 days ago |
24-40729 24 days |
| 41989 |
bryan-hu author:bryan-hu |
feat(NumberTheory/LegendreSymbol/QuadraticChar/Basic): characterize when products are squares |
## Motivation
This is a basic application of the quadratic character of a finite field that can be used in many instances, for example later to characterize squares in `ℤ_[p]`.
## Summary
`FiniteField.isSquare_mul_iff` characterizes when the product of two nonzero elements in a finite field is a square, using the quadratic character.
## Testing
- `lake build Mathlib.NumberTheory.LegendreSymbol.QuadraticChar.Basic -q --log-level=info`
- `lake exe lint-style Mathlib.NumberTheory.LegendreSymbol.QuadraticChar.Basic`
- `git diff --check upstream/master...HEAD`
## AI assistance
I was working with AI assistance (Claude Code, Codex) to formalize some fun number theory I like (Hilbert symbols, towards reciprocity laws) to help me learn Lean. I used AI assistance to highlight some small pieces that might be appropriate for mathlib, and to help me properly format these small items for mathlib.
---
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[](https://gitpod.io/from-referrer/)
|
t-number-theory
new-contributor
LLM-generated
awaiting-author
|
31/0 |
Mathlib/NumberTheory/LegendreSymbol/QuadraticChar/Basic.lean |
1 |
10 |
['bryan-hu', 'felixpernegger', 'github-actions', 'loefflerd'] |
loefflerd assignee:loefflerd |
18-62933 18 days ago |
37-60810 37 days ago |
2-68372 2 days |
| 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
|
157/0 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/OrientedIncMatrix.lean |
2 |
1 |
['github-actions'] |
nobody |
18-61442 18 days ago |
81-48349 81 days ago |
81-48279 81 days |
| 42118 |
edwardfalk author:edwardfalk |
feat(NumberTheory/ModularForms/JacobiTheta): the derivative of jacobiTheta₂ in τ |
Adds `hasDerivAt_jacobiTheta₂_snd`, the companion to the existing `hasDerivAt_jacobiTheta₂_fst`: for `0 < im τ`,
```lean
HasDerivAt (jacobiTheta₂ z) (∑' n : ℤ, π * I * n ^ 2 * jacobiTheta₂_term n z τ) τ
```
The file already provides `differentiableAt_jacobiTheta₂_fst` / `differentiableAt_jacobiTheta₂_snd` and `hasDerivAt_jacobiTheta₂_fst`, so the `τ`-derivative in `HasDerivAt` form was the one missing corner of that square. The proof mirrors `hasDerivAt_jacobiTheta₂_fst`, evaluating the Fréchet derivative in the direction `(0, 1)` rather than `(1, 0)`.
Unlike the `z`-derivative there is no named function for the `τ`-derivative (`jacobiTheta₂'` has no `τ` analogue), so the statement uses an explicit `tsum`. Happy to introduce a definition instead if reviewers prefer.
No new imports, no changes to existing declarations.
I needed this to differentiate the theta functional equation at its fixed point `τ = i`; it seemed generally useful enough to upstream on its own.
|
t-number-theory
new-contributor
awaiting-author
|
23/0 |
Mathlib/NumberTheory/ModularForms/JacobiTheta/TwoVariable.lean |
1 |
7 |
['copilot-pull-request-reviewer', 'github-actions', 'loefflerd'] |
loefflerd assignee:loefflerd |
18-60403 18 days ago |
18-60403 18 days ago |
16-62351 16 days |
| 41935 |
martinamaggio author:martinamaggio |
feat(Probability/Independence): grouping an independent family by pairwise disjoint index sets |
If `m : ι → MeasurableSpace Ω` is an independent family of σ-algebras and `G : ι' → Set ι` is a
pairwise disjoint family of index sets, then the family of grouped σ-algebras
`fun i' ↦ ⨆ j ∈ G i', m j` is again independent.
This is the indexed-family version of the existing two-group lemma `indep_iSup_of_disjoint`, from
which it follows by induction on the finite subfamily, peeling off one group at a time against the
union of the remaining ones. As usual it is proven for the kernel notion of independence
(`Kernel.iIndep_iSup_of_disjoint`) and specialized to independence w.r.t. a measure
(`iIndep_iSup_of_disjoint`) and to conditional independence (`iCondIndep_iSup_of_disjoint`).
The lemma is the natural bridge from an independent family to block/grouping arguments — e.g.
Markov-style properties of recursions driven by disjoint sets of randomness sources. It was
developed for a formalization of end-to-end latency distributions of periodic task chains, where it
establishes that successive chain states, being measurable w.r.t. σ-algebras of disjoint groups of
an independent family, form an independent family themselves. |
t-measure-probability
new-contributor
awaiting-author
|
52/0 |
Mathlib/Probability/Independence/Basic.lean,Mathlib/Probability/Independence/Conditional.lean,Mathlib/Probability/Independence/Kernel/Indep.lean |
3 |
4 |
['bocowgill', 'github-actions'] |
kex-y assignee:kex-y |
18-55322 18 days ago |
18-55322 18 days ago |
23-60541 23 days |
| 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
easy
label:t-algebra$ |
14/0 |
Mathlib/Algebra/Ring/GeomSum.lean |
1 |
4 |
['github-actions', 'matt-w-horn'] |
nobody |
18-27650 18 days ago |
18-28813 18 days ago |
18-28650 18 days |
| 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
<!-- Your PR title will become the first line of the commit message.
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below the `---`, and placed outside this HTML comment, or else they
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|
new-contributor
LLM-generated
|
229/6 |
Mathlib.lean,Mathlib/Algebra/Star/CHSH.lean,Mathlib/Analysis/Matrix/CHSH.lean |
3 |
8 |
['github-actions', 'stalex444', 'vihdzp'] |
nobody |
18-25802 18 days ago |
45-19415 45 days ago |
45-19252 45 days |
| 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 |
18-20691 18 days ago |
18-22031 18 days ago |
30-25603 30 days |
| 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'] |
RemyDegenne assignee:RemyDegenne |
18-18821 18 days ago |
53-28274 53 days ago |
53-28111 53 days |
| 42719 |
justinhalford author:justinhalford |
feat(LinearAlgebra/BilinearForm): totally isotropic subspaces have dimension at most half |
Adds one lemma to `Mathlib/LinearAlgebra/BilinearForm/Orthogonal.lean`:
```lean
lemma two_mul_finrank_le_of_le_orthogonal (hB : B.Nondegenerate) {W : Submodule K V}
(hW : W ≤ B.orthogonal W) : 2 * finrank K W ≤ finrank K V
```
A subspace contained in its own orthogonal complement — a *totally isotropic* subspace — has dimension at most half the dimension of the ambient space, when `B` is nondegenerate.
### Why
This is the standard dimension bound underlying the Witt decomposition, and it is the missing step in a number of applications: the Eventown theorem in extremal combinatorics, bounds on self-orthogonal linear codes, and dimension bounds for isotropic subspaces of quadratic forms. Searching for `totally isotropic` / `IsotropicSubmodule` / `isTotallyIsotropic` in Mathlib returns nothing, so as far as I can tell the bound is not currently available in any form.
The hypothesis is deliberately phrased as `W ≤ B.orthogonal W` rather than introducing a new `IsTotallyIsotropic` predicate, so that it composes directly with the existing `orthogonal` API and needs no new definitions.
### Proof
Three existing lemmas and arithmetic: `Submodule.finrank_mono` on the hypothesis, `finrank_orthogonal` (immediately above it in the same file), and `Submodule.finrank_le`. It sits directly after `finrank_orthogonal`, whose statement it consumes.
### Verification
Compiles against `master` with no errors or warnings. `#print axioms` reports only `[propext, Classical.choice, Quot.sound]`. No new imports, no new definitions — `+9 -0` in a single file.
### Disclosure
Written with AI assistance (Claude Opus 5) and checked against the Lean kernel; I have read the statement and proof through before submitting. Happy to rename or restate as maintainers prefer — in particular if there is an appetite for an `IsTotallyIsotropic` predicate, I am glad to add one and state this in those terms instead.
### Related
Companion to #42718 (the linear algebra method and Oddtown), which will use this bound for the Eventown theorem, but the two are independent and this one stands alone.
|
t-algebra
new-contributor
label:t-algebra$ |
9/0 |
Mathlib/LinearAlgebra/BilinearForm/Orthogonal.lean |
1 |
2 |
['github-actions'] |
nobody |
17-71098 17 days ago |
17-71706 17 days ago |
17-71543 17 days |
| 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 |
17-69508 17 days ago |
17-71269 17 days ago |
17-71106 17 days |
| 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 |
17-67999 17 days ago |
17-72483 17 days ago |
17-72320 17 days |
| 42533 |
attilavjda author:attilavjda |
chore(Analysis/SpecialFunctions/Pow/Real): deprecate six misnamed duplicate log/rpow lemmas |
6 `Pow/Real.lean` lemmas duplicate with misleading names, replace by deprecated aliases
Some of these deprecated lemmas names, or their intended proofs seem mixed up too, which could be updated perhaps after the deprecation period?
[Used Aristotle in making this PR. It found the duplicates, generated guidance, example code, and verifications.](https://github.com/attilavjda/formal-contributions/blob/main/analysis-rpow-dedup/RpowLogDedup.lean)
---
<!-- 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
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Please ask for help on https://leanprover.zulipchat.com if needed.
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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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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]
-->
[](https://gitpod.io/from-referrer/)
|
t-analysis
new-contributor
awaiting-author
|
6/20 |
Mathlib/Analysis/SpecialFunctions/Pow/Real.lean |
1 |
6 |
['attilavjda', 'github-actions', 'j-loreaux', 'wwylele'] |
nobody |
17-57349 17 days ago |
18-5481 18 days ago |
5-56025 5 days |
| 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.
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.]
This PR is a pure addition: nothing is removed and no existing signature changes. `TopologicalSpace.Opens.CompleteCopy` and `IsOpen.polishSpace` are untouched, so the open case is still proved independently rather than derived from this result.
---
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 |
17-53281 17 days ago |
18-44054 18 days ago |
18-43891 18 days |
| 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 |
17-48480 17 days ago |
17-50499 17 days ago |
17-51684 17 days |
| 33031 |
chiyunhsu author:chiyunhsu |
feat(Combinatorics/Enumerative/Partition): add combinatorial proof of Euler's partition theorem |
The new file EulerComb.lean contains the combinatorial proof of Euler's partition theorem. The analytic proof of the theorem and its generalization of Glaisher's Theorem has already been formalized in [Glaisher.lean](https://github.com/leanprover-community/mathlib4/blob/master/Mathlib/Combinatorics/Enumerative/Partition/Glaisher.lean). The generalization of the combinatorial proof from this file to Glaisher's Theorem is within reach.
---
Zulip discussion: [#mathlib4 > Glaisher’s Bijection on integer partitions](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Glaisher.E2.80.99s.20Bijection.20on.20integer.20partitions/with/570808111)
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|
t-combinatorics
new-contributor
awaiting-zulip
|
531/0 |
Mathlib.lean,Mathlib/Combinatorics/Enumerative/Partition/EulerComb.lean |
2 |
9 |
['chiyunhsu', 'dagurtomas', 'github-actions', 'tb65536', 'vihdzp'] |
b-mehta assignee:b-mehta |
17-40456 17 days ago |
213-56128 213 days ago |
42-22427 42 days |
| 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 |
17-29961 17 days ago |
26-51394 26 days ago |
29-6351 29 days |
| 40368 |
Sanghyeok0 author:Sanghyeok0 |
feat: add confluence predicates for relations |
This PR adds a minimal relation-level API for confluence-style properties:
* `Relation.Diamond`
* `Relation.Confluent`
* `Relation.ChurchRosser`
It also adds the basic API connecting these predicates:
* `Relation.ReflTransGen.to_eqvGen`
* `Relation.Join.to_eqvGen`
* `Relation.ChurchRosser.confluent`
* `Relation.Confluent.churchRosser`
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*.
---
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|
t-logic
new-contributor
|
79/5 |
Mathlib/Logic/Relation.lean |
1 |
8 |
['Sanghyeok0', 'chenson2018', 'github-actions', 'mathlib-merge-conflicts'] |
fpvandoorn assignee:fpvandoorn |
17-18832 17 days ago |
42-63116 42 days ago |
65-74744 65 days |
| 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'] |
urkud assignee:urkud |
17-18832 17 days ago |
60-24512 60 days ago |
60-24349 60 days |
| 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'] |
nobody |
16-51563 16 days ago |
49-36680 49 days ago |
51-4819 51 days |
| 34054 |
YellPika author:YellPika |
feat(Order/OmegaCompletePartialOrder): OmegaCompletePartialOrder instance for `Sigma` with basic `ωScottContinuous` lemmas |
This PR adds an `OmegaCompletePartialOrder` instance for `Sigma` along with `ωScottContinuous` lemmas for basic operations (`mk`, `fst`, `snd`). Appropriate lemmas are marked with `@[fun_prop]` so that the `fun_prop` tactic can automatically deduce `ωScottContinuous` proofs for functions involving `Sigma`s.
---
- [x] depends on: #33941
- [x] depends on: #37258
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|
new-contributor
t-order
please-merge-master
awaiting-author
merge-conflict
|
231/0 |
Mathlib/Data/Sigma/Order.lean,Mathlib/Order/OmegaCompletePartialOrder.lean |
2 |
30 |
['Vierkantor', 'YellPika', 'github-actions', 'grunweg', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
grunweg assignee:grunweg |
16-28742 16 days ago |
191-34330 191 days ago |
16-66871 16 days |
| 38310 |
ZRTMRH author:ZRTMRH |
feat(Combinatorics/Quiver/Schreier): word evaluation and reachability |
Adds word evaluation and reachability results to the Schreier graph API.
* `SchreierGraph.evalWord` : evaluates a word `List (S × Bool)` as an element of the ambient group, where `(s, true)` contributes `ι s` and `(s, false)` contributes `(ι s)⁻¹`.
* `SchreierGraph.evalWord_eq_lift` : agreement with `FreeGroup.lift`.
* `SchreierGraph.evalWord_mem_closure` : every word evaluates into the subgroup generated by `ι`.
* `SchreierGraph.pathFromWord` : a Bool-tagged word yields a path in `Symmetrify (SchreierGraph V ι)` from `x` to `evalWord ι w • x`.
* `SchreierGraph.reachable_iff` : two vertices are connected by a path in the symmetrification iff some element of the subgroup closure carries one to the other.
Follow-up to #36320.
This PR was written with AI assistance (Claude). The code has been reviewed by the author.
---
- [x] depends on: #41849
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[](https://gitpod.io/from-referrer/)
|
new-contributor
t-combinatorics
large-import
LLM-generated
maintainer-merge
|
125/0 |
Mathlib/Combinatorics/Quiver/Schreier.lean |
1 |
26 |
['YaelDillies', 'ZRTMRH', 'github-actions', 'mathlib-dependent-issues'] |
nobody |
16-22309 16 days ago |
18-16047 18 days ago |
117-51755 117 days |
| 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'] |
nobody |
16-14053 16 days ago |
16-14695 16 days ago |
16-17166 16 days |
| 42575 |
gloges author:gloges |
feat(LinearAlgeabra/PiTensorProduct): add lifts of multi-semilinear maps |
Generalizes `PiTensorProduct.lift`, `PiTensorProduct.map`, `PiTensorProduct.map₂` and surrounding API from multilinear to multi-semilinear maps.
---
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-->
- [ ] depends on: #42534
[](https://gitpod.io/from-referrer/)
|
tech debt
blocked-by-other-PR
new-contributor
|
828/758 |
Mathlib/Analysis/Analytic/Composition.lean,Mathlib/Analysis/Analytic/Inverse.lean,Mathlib/Analysis/Calculus/ContDiff/FaaDiBruno.lean,Mathlib/Analysis/Normed/Module/Multilinear/Basic.lean,Mathlib/Analysis/Normed/Module/Multilinear/Curry.lean,Mathlib/LinearAlgebra/Alternating/Basic.lean,Mathlib/LinearAlgebra/Alternating/DomCoprod.lean,Mathlib/LinearAlgebra/Multilinear/Basic.lean,Mathlib/LinearAlgebra/Multilinear/Basis.lean,Mathlib/LinearAlgebra/Multilinear/Curry.lean,Mathlib/LinearAlgebra/Multilinear/DFinsupp.lean,Mathlib/LinearAlgebra/Multilinear/DirectSum.lean,Mathlib/LinearAlgebra/Multilinear/FiniteDimensional.lean,Mathlib/LinearAlgebra/Multilinear/Finsupp.lean,Mathlib/LinearAlgebra/Multilinear/Pi.lean,Mathlib/LinearAlgebra/Multilinear/TensorProduct.lean,Mathlib/LinearAlgebra/PiTensorProduct/Basic.lean,Mathlib/LinearAlgebra/PiTensorProduct/DFinsupp.lean,Mathlib/LinearAlgebra/PiTensorProduct/Generators.lean,Mathlib/LinearAlgebra/TensorAlgebra/Basic.lean,Mathlib/LinearAlgebra/TensorPower/Basic.lean,Mathlib/LinearAlgebra/TensorPower/Pairing.lean,Mathlib/LinearAlgebra/TensorPower/Symmetric.lean,Mathlib/RingTheory/PiTensorProduct.lean,Mathlib/Topology/Algebra/Module/Multilinear/Basic.lean |
25 |
4 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
16-11320 16 days ago |
22-47728 22 days ago |
0-897 14 minutes |
| 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 |
15-49465 15 days ago |
15-52160 15 days ago |
15-52117 15 days |
| 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 |
15-34103 15 days ago |
17-17004 17 days ago |
17-16841 17 days |
| 42133 |
joelkronqvist author:joelkronqvist |
feat(Order/Interval/Set/LinearOrder): add thms for unions of adjacent intervals |
This PR adds four new lemmas stating that for two nonempty intervals with a common endpoint, taking their union is equal to removing that common endpoint from a larger interval.
I use the fact `Ioo_union_Ioo_eq_Ioo_sdiff_singleton` in [ExtremeValueProject](https://github.com/joelkronqvist/ExtremeValueProject/commits/kandi-linear_of_additive_of_le_on_measure_pos).
I could also add versions of these lemmas for half-open intervals to this PR. Should I do it? I haven't added them yet because I suspect their proofs are quite repetitive and I'd like to get feedback on the first four additions to reduce the need of repetitive rewrites. Where would they belong? Probably not in a section that is concerned with two finite intervals with a common point. This addition would add 5 more proofs for `Iio ∪ Ioi`, `Ioo ∪ Ioi`, `Iio ∪ Ioo`, `Ico ∪ Ioi` and `Iio ∪ Ioc`.
Co-authored-by: Kalle Kytölä <kalle.kytola@aalto.fi>
---
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-->
[](https://gitpod.io/from-referrer/)
|
t-order
new-contributor
maintainer-merge
|
32/0 |
Mathlib/Order/Interval/Set/LinearOrder.lean |
1 |
4 |
['Ruben-VandeVelde', 'felixpernegger', 'github-actions', 'joelkronqvist', 'wwylele'] |
nobody |
15-31808 15 days ago |
34-64406 34 days ago |
34-64243 34 days |
| 39868 |
JuanCoRo author:JuanCoRo |
feat(Algebra/Polynomial): linearity of `divByMonic` and adjacent results |
---
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This PR adds the `R`-linearity of the monic polynomial division map `_ /ₘ q`. It also adds adjacent results that stem from this work.
#### Refactors:
- Reuses the proofs from `add_modByMonic` and `smul_modByMonic` to generalize these results to `add_div_modByMonic` and `smul_div_modByMonic` respectively.
- Replaces the proofs of `add_modByMonic` and `smul_modByMonic` as specializations of the more general theorems `add_div_modByMonic` and `smul_div_modByMonic` respectively.
#### Additions:
- Adds the necessary results for `_ /ₘ q` linearity:
- `add_divByMonic : (p₁ + p₂) /ₘ q = p₁ /ₘ q + p₂ /ₘ q`
- `smul_divByMonic : c • p /ₘ q = c • (p /ₘ q)`
- Adds `_ /ₘ q` as an `R`-linear map:
- `divByMonicHom`: definition of `_ /ₘ q` as a linear map
- `mem_ker_divByMonic`: kernel characterization for `_ /ₘ q`.
- In `Div.lean` adds dual results for `/ₘ` that were already present for `%ₘ`
- `neg_divByMonic : (-p) /ₘ q = -(p /ₘ q)`
- `sub_divByMonic : (p₁ - p₂) /ₘ q = p₁ /ₘ q - p₂ /ₘ q`
- `mul_divByMonic_assoc (hd : q ∣ p₂) : (p₁ * p₂) /ₘ q = p₁ * (p₂ /ₘ q)`
While `mul_divByMonic_assoc` is not exactly the dual of `mul_modByMonic`, I thought it wouldn't hurt to add it.
[](https://gitpod.io/from-referrer/) |
new-contributor
t-algebra
label:t-algebra$ |
54/17 |
Mathlib/Algebra/Polynomial/Div.lean,Mathlib/Algebra/Polynomial/RingDivision.lean |
2 |
8 |
['JuanCoRo', 'github-actions', 'wwylele'] |
joelriou assignee:joelriou |
15-18833 15 days ago |
93-67592 93 days ago |
93-67508 93 days |
| 40495 |
gw90 author:gw90 |
feat: weighted graphs with killing term |
Adding basic definitions and API for weighted graphs and weighted graphs with killing term.
---
My goal is to develop the basic theory from the beginning of [this textbook](https://www.math.uni-potsdam.de/fileadmin/user_upload/Prof-GraphTh/Keller/KellerLenzWojciechowski_GraphsAndDiscreteDirichletSpaces_wu_version.pdf). I also have some definitions and lemmas regarding Dirichlet forms and Laplacians to PR later, but I tried to pare down this first PR as much as possible. It currently has only 4 main definitions and sufficient API to demonstrate their correctness.
Note that I did not use [SimpleGraph.edgeLabeling](https://leanprover-community.github.io/mathlib4_docs/find/?pattern=SimpleGraph.EdgeLabeling#doc) for the edgeWeight function because it is important that vertices that are not adjacent have an edge weight of zero. That is, the edgeWeight must be defined for all pairs of vertices and respect the underlying adjacency relation on the graph.
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-->
[](https://gitpod.io/from-referrer/)
|
t-combinatorics
new-contributor
|
368/0 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/Weighted/Basic.lean,docs/references.bib |
3 |
2 |
['github-actions'] |
b-mehta assignee:b-mehta |
15-18832 15 days ago |
80-16495 80 days ago |
80-16332 80 days |
| 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 |
14-53442 14 days ago |
14-66208 14 days ago |
14-66045 14 days |
| 42534 |
gloges author:gloges |
feat(LinearAlgebra/MultilinearMap): generalize `MultilinearMap` with common `RingHom` |
Generalizes multilinear maps to multi-semilinear maps.
In analogy with `LinearMap σ M N`, `MultilinearMap σ M N` is the space of multilinear maps from the `R`-module `∀ i, M i` to the `S`-module `N` over a ring homomorphism `σ : R →+* S`: fixing all but one coordinate gives a map `M i →ₛₗ[σ] N`.
Both `ContinuousLinearMap` and `AlternatingMap` extend `MultilinearMap` and are left defined in terms of `RingHom.id`.
---
[](https://gitpod.io/from-referrer/)
|
new-contributor |
679/616 |
Mathlib/Analysis/Analytic/Composition.lean,Mathlib/Analysis/Analytic/Inverse.lean,Mathlib/Analysis/Calculus/ContDiff/FaaDiBruno.lean,Mathlib/Analysis/Normed/Module/Multilinear/Basic.lean,Mathlib/Analysis/Normed/Module/Multilinear/Curry.lean,Mathlib/LinearAlgebra/Alternating/Basic.lean,Mathlib/LinearAlgebra/Alternating/DomCoprod.lean,Mathlib/LinearAlgebra/Multilinear/Basic.lean,Mathlib/LinearAlgebra/Multilinear/Basis.lean,Mathlib/LinearAlgebra/Multilinear/Curry.lean,Mathlib/LinearAlgebra/Multilinear/DFinsupp.lean,Mathlib/LinearAlgebra/Multilinear/DirectSum.lean,Mathlib/LinearAlgebra/Multilinear/FiniteDimensional.lean,Mathlib/LinearAlgebra/Multilinear/Finsupp.lean,Mathlib/LinearAlgebra/Multilinear/Pi.lean,Mathlib/LinearAlgebra/Multilinear/TensorProduct.lean,Mathlib/LinearAlgebra/PiTensorProduct/Basic.lean,Mathlib/LinearAlgebra/PiTensorProduct/DFinsupp.lean,Mathlib/LinearAlgebra/PiTensorProduct/Generators.lean,Mathlib/LinearAlgebra/TensorAlgebra/Basic.lean,Mathlib/LinearAlgebra/TensorPower/Pairing.lean,Mathlib/LinearAlgebra/TensorPower/Symmetric.lean,Mathlib/RingTheory/PiTensorProduct.lean,Mathlib/Topology/Algebra/Module/Multilinear/Basic.lean |
24 |
16 |
['eric-wieser', 'github-actions', 'gloges', 'themathqueen'] |
nobody |
14-52789 14 days ago |
14-59769 14 days ago |
22-85718 22 days |
| 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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- [ ] 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 |
14-48841 14 days ago |
15-24709 15 days ago |
15-25157 15 days |
| 35735 |
mkaratarakis author:mkaratarakis |
feat(NumberTheory): analytical properties and lower bounds for Gelfond-Schneider auxiliary function |
This PR is the third component in the formalization of the Gelfond-Schneider Theorem (Hilbert's Seventh Problem). It connects the algebraically constructed auxiliary function `R(x)` to its analytical properties, establishing the exact order of vanishing and the fundamental lower bound on the norm of its non-zero derivative evaluation.
Following the argument in Loo-Keng Hua's *Introduction to Number Theory* (Chapter 17.9, equations (4) and (5)), we define the minimal non-vanishing derivative order $r$ and scale the evaluation to an algebraic integer to compute its norm.
1. (`iteratedkDeriv_R_eq_zero` & `order_geq_n`): We verify that the coefficient vector $\eta$ (chosen via Siegel's lemma in the previous PR) forces the first $n$ derivatives of the auxiliary function $R(x)$ to vanish at the points $x \in \{1, 2, \dots, m\}$. Consequently, the analytical order of $R(x)$ at these points is at least $n$.
2. We extract $r$, the exact minimal order of vanishing of $R(x)$ among all points $1 \le l \le m$, and prove that $n \le r$.
3. We define the non-zero algebraic number $\rho = (\log \alpha)^{-r} R^{(r)}(l_0)$.
4. We prove the crucial textbook step that scaling $\rho$ by $c_1^{r+2mq}$ (formalized here as `cρ`) results in an algebraic integer in $\mathcal{O}_K$.
5. Because $c_1^{r+2mq} \rho$ is a non-zero algebraic integer, the absolute value of its norm is at least $1$. We use this to formally prove the strict lower bound on the absolute norm of the unscaled $\rho$: $|N(\rho)| > c_1^{-h(r+2mq)} > c_5^{-r}$.
This PR no longer adds `MainAlg.lean` or the `NumberField/House` refactor; both now come
from #39874, which this PR is built on top of.
---
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|
t-number-theory
new-contributor
blocked-by-other-PR
|
1133/45 |
Mathlib.lean,Mathlib/NumberTheory/NumberField/House.lean,Mathlib/NumberTheory/Transcendental/GelfondSchneider/MainAlg.lean,Mathlib/NumberTheory/Transcendental/GelfondSchneider/MainAlgSetup.lean,Mathlib/NumberTheory/Transcendental/GelfondSchneider/MainOrder.lean |
5 |
5 |
['github-actions', 'mathlib-dependent-issues', 'mathlib-merge-conflicts'] |
nobody |
14-47458 14 days ago |
15-58427 15 days ago |
0-636 10 minutes |
| 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 |
13-75316 13 days ago |
16-28592 16 days ago |
16-28480 16 days |
| 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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[](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 |
13-71861 13 days ago |
19-75571 19 days ago |
23-7200 23 days |
| 40005 |
tautschnig author:tautschnig |
feat(Data/ZMod/Basic): isUnit characterisation in prime power moduli |
Add two lemmas characterising units in ZMod (p^n) via divisibility of the canonical lift:
isUnit_iff_not_prime_dvd_val: for prime p and n > 0,
IsUnit x ↔ ¬ p ∣ x.val.
not_isUnit_iff_prime_dvd_val: for prime p and n > 0,
¬ IsUnit x ↔ p ∣ x.val.
These specialise the existing isUnit_iff_coprime to prime power moduli, where the coprimality condition reduces to a simple divisibility check on the unique prime factor.
---
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[](https://gitpod.io/from-referrer/)
|
t-data
new-contributor
maintainer-merge
awaiting-author
|
15/0 |
Mathlib/Data/ZMod/Basic.lean |
1 |
10 |
['Ruben-VandeVelde', 'Vierkantor', 'copilot-pull-request-reviewer', 'github-actions'] |
eric-wieser assignee:eric-wieser |
13-65997 13 days ago |
13-65997 13 days ago |
80-13200 80 days |
| 42835 |
rshlyakh author:rshlyakh |
feat(RingTheory/NoetherNormalization): add that `s` is Krull dimension to theorem statements |
This adds the fact that the natural number `s` in Noether normalization statements is the Krull dimension of the algebra `A`, using the fact (from #41904) that injective integral extensions preserve Krull dimension.
This was previously a `TO-DO` in this file.
- [ ] depends on: #41904
---
The statement of the lemma is now a bit awkward ("there exists `s` such that `s = ringKrullDim R`, and ..."), but I did not see a good alternative since it is desirable for `s` to be a Nat while `ringKrullDim R` is a `WithBot ENat`. Any suggestions on how to improve this would be appreciated.
Note that the only changes are to `NoetherNormalization.lean` (the other changes are from the dependent PR, #41904).
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[](https://gitpod.io/from-referrer/)
|
t-ring-theory
blocked-by-other-PR
large-import
new-contributor
|
97/28 |
Mathlib.lean,Mathlib/RingTheory/Ideal/HasGoingUp.lean,Mathlib/RingTheory/KrullDimension/Integral.lean,Mathlib/RingTheory/NoetherNormalization.lean |
4 |
5 |
['github-actions', 'mathlib-dependent-issues', 'vlad902'] |
nobody |
13-48481 13 days ago |
14-47225 14 days ago |
0-75 1 minute |
| 42764 |
attilavjda author:attilavjda |
chore(GroupTheory): make `smul_eq_self_of_mem_zpowers` `to_additive` |
This PR makes `smul_eq_self_of_mem_zpowers` amenable to `@[to_additive]` by reproving it via the action stabilizer and `Subgroup.zpowers_le`.
This allows the additive counterpart to be generated automatically, removing the hand-written additive proof and the `to_additive existing` workaround.
Used Aristotle AI to find this refactor and help write the proof.
---
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|
tech debt
t-group-theory
new-contributor
awaiting-author
|
4/11 |
Mathlib/GroupTheory/OrderOfElement.lean |
1 |
11 |
['SnirBroshi', 'attilavjda', 'github-actions', 'tb65536'] |
nobody |
13-39189 13 days ago |
16-65136 16 days ago |
0-2929 48 minutes |
| 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'] |
sgouezel assignee:sgouezel |
13-33936 13 days ago |
24-53915 24 days ago |
77-12399 77 days |
| 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 |
13-33126 13 days ago |
13-33720 13 days ago |
13-33747 13 days |
| 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 |
13-28800 13 days ago |
13-38289 13 days ago |
28-31733 28 days |
| 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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- [x] depends on: #37714
[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
label:t-algebra$ |
169/142 |
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 |
16 |
['github-actions', 'leanprover-radar', 'mathlib-dependent-issues', 'mathlib-merge-conflicts', 'mortarsanjaya', 'themathqueen'] |
jjdishere assignee:jjdishere |
13-18834 13 days ago |
13-23114 13 days ago |
73-65546 73 days |
| 41466 |
EzequielS2 author:EzequielS2 |
feat(Algebra/Order): stronger sublist product inequality via diff |
## Summary
Add `Sublist.prod_le_prod'_of_mem_diff` and `Sublist.sum_le_sum_of_mem_diff`.
## Test plan
- [x] `lake build` and `lake exe runLinter` on `Mathlib.Algebra.Order.BigOperators.Group.List`
|
t-algebra
new-contributor
label:t-algebra$ |
12/4 |
Mathlib/Algebra/Order/BigOperators/Group/List.lean |
1 |
7 |
['EzequielS2', 'github-actions', 'themathqueen', 'wwylele'] |
nobody |
13-16118 13 days ago |
13-18397 13 days ago |
54-35197 54 days |
| 28246 |
Sebi-Kumar author:Sebi-Kumar |
feat(AlgebraicTopology/FundamentalGroupoid): the n-sphere is simply connected for n > 1 |
Prove that the `n`-dimensional sphere (i.e., the unit sphere centered at the origin in `(n + 1)`-dimensional real Euclidean space) is a simply connected space for `n > 1`. This proof follows Hatcher's "Algebraic Topology"; we first prove a general lemma about decomposing loops and then exploit the fact that non-surjective loops in the sphere are homotopically trivial.
Note: To get this file to build, I edited `Mathlib/Tactic/Linter/DirectoryDependency.lean` to remove the restrictions on AlgebraicTopology files importing Geometry, NumberTheory, and FieldTheory files. Thank you to those who shared their expertise [here](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Warning.20that.20AlgebraicTopology.20can't.20import.20SetTheory/with/533833638). As I understand it, this is just a short-term solution, so I would appreciate feedback on what to do about this situation.
Note: I am unsure where exactly the file `SimplyConnectedSphere.lean` should go or whether that is an appropriate name for the file, so feedback there would be appreciated.
---
To provide additional context, this code was written as a part of the Fields Undergraduate Summer Research Program at the University of Western Ontario under the supervision of Chris Kapulkin and Daniel Carranza.
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- [x] depends on: #28208
- [x] depends on: #28198
- [x] depends on: #28185
[](https://gitpod.io/from-referrer/)
|
t-algebraic-topology
new-contributor
awaiting-author
|
371/3 |
Mathlib.lean,Mathlib/AlgebraicTopology/FundamentalGroupoid/SimplyConnectedSphere.lean,Mathlib/AlgebraicTopology/FundamentalGroupoid/VanKampen.lean,Mathlib/Logic/Equiv/PartialEquiv.lean,Mathlib/Tactic/Linter/DirectoryDependency.lean,Mathlib/Topology/Path.lean |
6 |
20 |
['Sebi-Kumar', 'alreadydone', 'dagurtomas', 'github-actions', 'mathlib4-dependent-issues-bot', 'mathlib4-merge-conflict-bot', 'robin-carlier'] |
nobody |
12-80261 12 days ago |
12-80261 12 days ago |
48-39665 48 days |
| 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 |
12-73684 12 days ago |
14-272 14 days ago |
14-14985 14 days |
| 42847 |
Rshin2024 author:Rshin2024 |
feat(Geometry/Manifold): pull back charted space and groupoid structures along a homeomorphism |
## Summary
Given a charted space `M` modelled on `H` and a homeomorphism `e : N ≃ₜ M`,
this PR endows `N` with the pulled-back charted-space structure whose atlas is
`{e.transOpenPartialHomeomorph c | c ∈ atlas H M}`, and shows the transport
preserves every satisfied structure groupoid:
* `Homeomorph.pullbackChartedSpace e : ChartedSpace H N` — the pulled-back
structure (marked `@[instance_reducible]`, not an instance, since it is one
of many possible structures on `N`), with `[simp, mfld_simps]` lemmas
`pullbackChartedSpace_chartAt` and `pullbackChartedSpace_atlas`, and the
atlas-membership helper
`transOpenPartialHomeomorph_mem_pullbackChartedSpace_atlas`.
* `Homeomorph.pullback_symm_trans` — the key computation: coordinate changes
of the transported atlas are **equal** (not merely equivalent) to
coordinate changes of the original atlas, because for a global
homeomorphism `e.toOpenPartialHomeomorph.symm ≫ₕ e.toOpenPartialHomeomorph`
is the identity chart (a private helper lemma).
* `Homeomorph.pullback_hasGroupoid e G` — consequently `HasGroupoid N G`
holds for every structure groupoid `G` that `M` satisfies.
* `Homeomorph.pullbackStructomorph e G : Structomorph G N M` — `e` itself is
a `G`-structomorphism for the pulled-back structure.
## Relation to existing API
`Homeomorph.chartedSpace` already transports charted-space structures, via
the `IsLocalHomeomorph` machinery (chart-by-chart, through local inverses).
The construction here is substantively different: it composes the *global*
homeomorphism with each chart of the entire supplied atlas, so coordinate
changes are unchanged on the nose and every structure groupoid transports
with no `ClosedUnderRestriction G` assumption. The definition uses the
existing `Homeomorph.transOpenPartialHomeomorph` API for the precomposition.
## Motivation
Given a specified homeomorphism `e : N ≃ₜ M`, this construction transports
the `G`-charted-space structure of `M` to `N`. It does not compare the
transported structure with any pre-existing structure on `N`; that comparison
is the substantive issue in questions such as the smooth four-dimensional
Poincaré conjecture (see `Mathlib.Geometry.Manifold.PoincareConjecture`).
The transport direction is nonetheless the natural prerequisite for stating
such comparisons, and does not currently exist in Mathlib at the groupoid
level.
Compiles with the single import `Mathlib.Geometry.Manifold.HasGroupoid`,
current module boilerplate (`module` / `public import` /
`@[expose] public section`), no `sorry`, no new axioms;
`lake exe mk_all --check` passes. Naming is open to review.
|
t-differential-geometry
new-contributor
awaiting-author
|
129/0 |
Mathlib.lean,Mathlib/Geometry/Manifold/PullbackGroupoid.lean |
2 |
4 |
['github-actions', 'grunweg'] |
nobody |
12-73323 12 days ago |
12-73323 12 days ago |
1-32395 1 day |
| 42884 |
Rshin2024 author:Rshin2024 |
feat(Geometry/Manifold): equivalence of C^n structomorphisms and diffeomorphisms |
## Summary
For manifolds `M`, `M'` modelled on the same model with corners `I`, Mathlib
has two notions of `C^n` isomorphism with no connection between them:
`Structomorph (contDiffGroupoid n I) M M'` (a homeomorphism whose chart
transports lie in the groupoid) and `M ≃ₘ^n⟮I, I⟯ M'` (`Diffeomorph`). This
PR provides both directions of the equivalence, in a new module
`Mathlib.Geometry.Manifold.ContMDiff.Structomorph`:
* `Structomorph.liftPropOn` — a structomorphism satisfies the
`IsLocalStructomorphWithinAt` lift property on its whole source: at each
point the chart-composed structomorphism is *definitionally* the witness.
* `Structomorph.contMDiff` / `Structomorph.toDiffeomorph` — via
`isLocalStructomorphOn_contDiffGroupoid_iff`, the lift property converts to
`ContMDiffOn` on `univ`, in both directions using `Structomorph.symm`.
* `Diffeomorph.toStructomorph` — conversely, `ContMDiff` in both directions
gives the lift property by the same `iff`;
`LocalInvariantProp.liftPropWithinAt_indep_chart` re-expresses it in an
arbitrary pair of atlas charts; and the resulting local groupoid elements
glue by `StructureGroupoid.locality`, using `closedUnderRestriction'` and
`StructureGroupoid.mem_of_eqOnSource`.
## Motivation
These are the two isomorphism notions of the charted-space and manifold
layers respectively; connecting them lets statements phrased at the groupoid
level (e.g. transport of structure along homeomorphisms) be consumed at the
`ContMDiff` level and vice versa. The two maps are packaged as
`structomorphEquivDiffeomorph : Structomorph (contDiffGroupoid n I) M M' ≃ (M ≃ₘ^n⟮I, I⟯ M')`,
with `rfl`-level inverse proofs via a new `Structomorph.toHomeomorph_injective`.
Independent of #42847 (neither imports the other), though motivated by the
same project. Compiles with the two imports `ContMDiff.Atlas` and
`Diffeomorph`; current module boilerplate; no `sorry`, no new axioms;
`lake exe mk_all --check` passes. Naming open to review.
|
t-differential-geometry
new-contributor
awaiting-author
|
141/0 |
Mathlib.lean,Mathlib/Geometry/Manifold/ContMDiff/Structomorph.lean |
2 |
6 |
['felixpernegger', 'github-actions', 'grunweg'] |
nobody |
12-73189 12 days ago |
12-73189 12 days ago |
0-44641 12 hours |
| 40687 |
michaellee94 author:michaellee94 |
feat(Analysis/ODE): uniqueness of integral curves on intervals and intersections |
Adds some uniqueness lemmas for integral curves of a Lipschitz vector field, proved via Grönwall's inequality. Split out from #26413 (existence of maximal solutions). |
t-analysis
new-contributor
awaiting-author
|
91/0 |
Mathlib/Analysis/ODE/ExistUnique.lean |
1 |
7 |
['github-actions', 'grunweg', 'michaellee94', 'sgouezel'] |
ADedecker assignee:ADedecker |
12-55199 12 days ago |
12-55200 12 days ago |
50-71304 50 days |
| 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 |
12-52264 12 days ago |
12-53796 12 days ago |
19-68410 19 days |
| 42843 |
than4213 author:than4213 |
feat(Combinatorics/SimpleGraph): transition matrix of the simple random walk |
Adds SimpleGraph.walkMatrix, the transition matrix of the simple random walk on a graph: row v is the uniform distribution on the neighbours of v. This is SimpleGraph.adjMatrix with each row divided by G.degree v, turning adjacency counts into transition probabilities.
Main results are that the matrix is row stochastic, and hence so is G.walkMatrix ^ n — the latter follows immediately from Matrix.rowStochastic being a Submonoid.
Two choices worth flagging:
- Valued in ℚ. Every entry is (G.degree v)⁻¹, so nothing irrational arises. This keeps entries computable — #eval evaluates G.walkMatrix ^ n on a concrete graph.
- Placed in Combinatorics/SimpleGraph. The file imports no probability theory, only Mathlib.LinearAlgebra.Matrix.Stochastic, and sits alongside adjMatrix, incMatrix and lapMatrix.
The walk is undefined at isolated vertices, so the results take ∀ v, ¬ G.IsIsolated v.
Used Claude Code in the creation of this PR. |
t-combinatorics
new-contributor
LLM-generated
|
107/0 |
Mathlib.lean,Mathlib/Combinatorics/SimpleGraph/RandomWalk.lean |
2 |
8 |
['SnirBroshi', 'github-actions', 'than4213'] |
nobody |
12-52087 12 days ago |
12-53430 12 days ago |
13-23088 13 days |
| 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'] |
nobody |
12-45299 12 days ago |
12-62401 12 days ago |
12-63192 12 days |
| 40900 |
judsonpereirademoura-netizen author:judsonpereirademoura-netizen |
feat(Analysis/Matrix): spectral theorem for normal matrices |
Adds the **spectral theorem for normal matrices** over `ℂ`: every normal matrix
(`IsStarNormal M`, i.e. `Mᴴ * M = M * Mᴴ`) is unitarily diagonalizable,
`M = U * diagonal μ * Uᴴ`. This extends `Matrix.IsHermitian.spectral_theorem`
(Hermitian case) to the normal case.
Specific to `ℂ` (algebraically closed): a real normal matrix — e.g. a planar rotation
`![![0,-1],![1,0]]` — is normal but not orthogonally diagonalizable over `ℝ`, hence the
hypothesis `Matrix n n ℂ` rather than `RCLike`.
### API (mirrors `Matrix.IsHermitian.*`)
- `normalEigenvectorBasis`, `normalEigenvalues`, `normalEigenvectorUnitary`
- `mulVec_normalEigenvectorBasis` (eigen equation); `normalEigenvectorUnitary_apply`/`_mulVec`
- `spectral_theorem_of_isStarNormal` (`M = U * diagonal μ * Uᴴ`)
- `exists_isUnitary_conj_diagonal_of_isStarNormal` (existential), `isStarNormal_of_isUnitary_conj_diagonal`
(converse), `isStarNormal_iff_exists_isUnitary_conj_diagonal` (iff)
### Proof
Cartesian decomposition `M = A + i•B` with `A = selfAdjointPart ℝ M` and
`B = -i • skewAdjointPart ℝ M`, both Hermitian. Normality of `M` is exactly `Commute A B`,
so `A`, `B` are commuting symmetric operators; the space splits as an internal direct sum of
their joint eigenspaces (`LinearMap.IsSymmetric.directSum_isInternal_of_commute`). A subordinate
orthonormal basis diagonalizes both, hence `M`.
---
*Notes for reviewers:* developed with AI assistance (Claude); the mathematics and proofs were
checked by the author. Locally validated against `v4.30.0-rc2`: `lake build` clean (0 warnings,
all style linters), `lake exe runLinter` passed, `#print axioms` = `[propext, Classical.choice,
Quot.sound]`. Opened as **draft** pending CI build against `master`. Naming/visibility happy to
adjust per review.
|
new-contributor
t-analysis
awaiting-author
LLM-generated
merge-conflict
|
315/0 |
Mathlib.lean,Mathlib/Analysis/Matrix/NormalSpectrum.lean |
2 |
10 |
['github-actions', 'judsonpereirademoura-netizen', 'mathlib-merge-conflicts', 'themathqueen', 'wwylele'] |
nobody |
12-25478 12 days ago |
unknown |
0-0 0 seconds |
| 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'] |
nobody |
11-53430 11 days ago |
49-28707 49 days ago |
53-31939 53 days |
| 40498 |
wangying11123 author:wangying11123 |
feat(Geometry/Euclidean): unoriented angle eq of oriented angle eq |
This PR adds two theorems to Mathlib/Geometry/Euclidean/Angle/Oriented/Affine.lean
`angle_eq_of_oangle_eq`: If two oriented angles are equal, and the four endpoint pairs are nondegenerate, then the
corresponding unoriented angles are equal.
`angle_eq_of_oangle_eq_not_collinear`: If two oriented angles are equal, and the first triple is not collinear, then the
corresponding unoriented angles are equal. |
new-contributor |
22/0 |
Mathlib/Geometry/Euclidean/Angle/Oriented/Affine.lean |
1 |
6 |
['github-actions', 'plp127', 'wangying11123'] |
nobody |
11-51485 11 days ago |
11-53816 11 days ago |
65-45933 65 days |
| 35402 |
samueloettl author:samueloettl |
feat(Dynamics/BirkhoffSum): birkhoffAverage const |
---
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I think this is useful and one of these should be a simp lemma.
I'm not really sure if I got the naming of the theorems correct.
When generalizing to the assumption (n : R) ≠ 0 instead of the special case CharZero R with n ≠ 0 I had to use "open Classical in". I'm a bit unfamiliar with that part so please check if this makes sense. See also https://github.com/leanprover-community/mathlib4/pull/35307#discussion_r2823586252
[](https://gitpod.io/from-referrer/)
|
t-dynamics
new-contributor
merge-conflict
|
14/0 |
Mathlib/Dynamics/BirkhoffSum/Average.lean |
1 |
41 |
['Maldooor', 'github-actions', 'lua-vr', 'mathlib-merge-conflicts', 'mcdoll', 'plp127', 'samueloettl'] |
nobody |
11-43921 11 days ago |
11-48722 11 days ago |
178-7372 178 days |
| 39567 |
AlexBrodbelt author:AlexBrodbelt |
feat(Mathlib/Data/Finite/Option): option type is finite iff type is finite |
Option type is finite if and only if the type is finite.
This is an intermediate result to proving that if the `GroupWithZero` is (in)finite then the `Units` are (in)finite.
---
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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
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- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
t-data
new-contributor
awaiting-author
|
25/0 |
Mathlib.lean,Mathlib/Data/Finite/Option.lean |
2 |
16 |
['ADedecker', 'AlexBrodbelt', 'felixpernegger', 'github-actions', 'plp127', 'themathqueen'] |
nobody |
11-41976 11 days ago |
18-20535 18 days ago |
85-51734 85 days |
| 42954 |
alejandro-soto-franco author:alejandro-soto-franco |
feat(Topology/MetricSpace/Holder): products of Hölder continuous functions |
`HolderWith` uses `add`, `smul` and `comp`, and `MemHolder` uses `add`, `smul` and `nsmul`. This PR adds the relevant product.
`HolderOnWith.mul` and `HolderWith.mul` take a bound on each factor, since a product of Hölder continuous functions is Hölder continuous only where both factors are bounded, and give the constant `Cf * C' + Cg * C` from the splitting `f x * g x - f y * g y = f x * (g x - g y) + (f x - f y) * g y`. The target is a `SeminormedRing`, so the estimate uses `‖a * b‖ ≤ ‖a‖ * ‖b‖`. No new imports: the file already reaches `nnnorm_mul_le`.
The statements come from a note of mine on Hölder classes on manifolds, where the same splitting gives the product estimate for Hölder seminorms.
[](https://gitpod.io/from-referrer/)
|
t-topology
LLM-generated
new-contributor
|
43/0 |
Mathlib/Topology/MetricSpace/Holder.lean |
1 |
4 |
['alejandro-soto-franco', 'github-actions', 'grunweg'] |
nobody |
11-28801 11 days ago |
11-14793 11 days ago |
0-21621 6 hours |
| 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
---
<!-- 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:
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|
new-contributor
t-combinatorics
|
59/0 |
Mathlib/Combinatorics/SimpleGraph/Connectivity/EdgeConnectivity.lean |
1 |
91 |
['JadAbouHawili', 'SnirBroshi', 'github-actions', 'grunweg'] |
nobody |
11-19179 11 days ago |
12-46955 12 days ago |
20-15893 20 days |
| 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.
---
- [ ] 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 |
10-68171 10 days ago |
11-62016 11 days ago |
11-62150 11 days |
| 42916 |
0x00b1 author:0x00b1 |
feat(Analysis/Numerical): add (real-valued) bisection method |
Bisection method for real-valued functions on closed intervals. This is an exact, non-computable real-number formalization rather than a floating-point implementation. Nevertheless, I did try to make everything sufficiently flexible to simplify changes if floating-point is eventually added to mathlib4!
The core API represents each bisection state with endpoints in `Set.Icc a b`, ensuring that the function is never evaluated outside its domain. I provided a convenience API for functions `ℝ → ℝ` (on top of the interval-restricted core API). Degenerate intervals are also supported. I listed all the results that I think are important in the comments.
This is my first contribution to mathlib4 so please let me know if you have suggestions on improving either of the APIs and please let me know if you want me to add any real-valued theorems! Likewise, any suggestions on rewriting`dist_midpoint_step_midpoint` to feel less nasty would be appreciated.
---
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|
t-analysis
new-contributor
|
757/0 |
Mathlib.lean,Mathlib/Analysis/Numerical/Bisection.lean |
2 |
4 |
['0x00b1', 'github-actions', 'luigi-massacci'] |
luigi-massacci assignee:luigi-massacci |
10-53321 10 days ago |
12-38156 12 days ago |
12-37993 12 days |
| 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
large-import
maintainer-merge
|
73/3 |
Mathlib/Probability/HasCondDistrib.lean |
1 |
29 |
['CoolRmal', 'EtienneC30', 'bocowgill', 'github-actions', 'leanprover-radar'] |
kex-y assignee:kex-y |
10-51571 10 days ago |
11-9839 11 days ago |
34-1568 34 days |
| 40711 |
fraware author:fraware |
doc(CategoryTheory/Limits): add reference examples for binary products and coproducts |
## Summary
Examples-only PR: four `noncomputable example` blocks in a new `section ReferenceExamples` of `BinaryProducts.lean`. No API, automation, or attribute changes.
The lemmas used (`limit.isLimit`, `colimit.isColimit`, `uniqueUpToIso`) are already in Mathlib; these examples document the canonical universal-property pattern for binary (co)product diagrams.
## Examples added
1. Canonical product cone is a limit: `IsLimit (limit.cone (pair X Y))` via `limit.isLimit (pair X Y)`
2. Uniqueness up to iso for limits: `c ≅ limit.cone (pair X Y)` via `hc.uniqueUpToIso (limit.isLimit (pair X Y))`
3. Canonical coproduct cocone is a colimit: `IsColimit (colimit.cocone (pair X Y))` via `colimit.isColimit (pair X Y)`
4. Uniqueness up to iso for colimits: `c ≅ colimit.cocone (pair X Y)` via `hc.uniqueUpToIso (colimit.isColimit (pair X Y))`
## Test plan
- [ ] `lake build Mathlib.CategoryTheory.Limits.Shapes.BinaryProducts`
- [ ] CI green
## Notes
Branch is based on tag `v4.31.0`. Targeting `master` (currently ahead of v4.31.0); the example API matches the current `limit.isLimit` / `colimit.isColimit` / `uniqueUpToIso` names on that release. |
t-category-theory
new-contributor
awaiting-author
will-close-soon
merge-conflict
|
26/0 |
Mathlib/CategoryTheory/Limits/Shapes/BinaryProducts.lean |
1 |
4 |
['github-actions', 'mathlib-merge-conflicts'] |
nobody |
10-45013 10 days ago |
74-58144 74 days ago |
0-5917 1 hour |
| 18461 |
hannahfechtner author:hannahfechtner |
feat: left and right common multiples mixins |
add mixins for left and right common multiples. These carry the data of what factors are used to create the common multiples
---
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PR is merged. Please leave a blank newline before the `---`, otherwise
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|
awaiting-author
t-algebra
new-contributor
merge-conflict
label:t-algebra$ |
78/0 |
Mathlib/Algebra/Group/Defs.lean |
1 |
14 |
['github-actions', 'hannahfechtner', 'jcommelin', 'kbuzzard', 'kim-em', 'mathlib-merge-conflicts', 'trivial1711'] |
nobody |
10-32762 10 days ago |
587-73967 587 days ago |
69-35596 69 days |
| 39048 |
AydenLamp author:AydenLamp |
feat(Algebra/Group/Defs): add positive natural exponentiation for semigroups |
Introduce exponentiation for semigroups with positive natural exponents. This serves as a foundation for future results on Green’s relations and Rees matrix constructions in semigroups.
---
Co-authored-by: Howard Straubing <howard.straubing@bc.edu>
Soleil Repple <repple@bc.edu>
Nathan Hart-Hodgson <harthodg@bc.edu>
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|
new-contributor
t-algebra
awaiting-author
merge-conflict
label:t-algebra$ |
109/0 |
Mathlib.lean,Mathlib/Algebra/Group/SemigroupPow.lean |
2 |
8 |
['ScottCarnahan', 'github-actions', 'mathlib-merge-conflicts', 'wwylele'] |
nobody |
10-24915 10 days ago |
115-32416 115 days ago |
0-115 1 minute |
| 40241 |
AydenLamp author:AydenLamp |
feat(Algebra/Group): add ppow_succ lemmas and idempotent power results for finite semigroups |
Add two successor lemmas to `PNatPowAssoc`:
- `ppow_succ`: `x ^ (n + 1) = x ^ n * x`
- `ppow_succ'`: `x ^ (n + 1) = x * x ^ n`
Add `SemigroupIdempotentPow` with results on idempotent elements in finite semigroups and monoids:
- `Semigroup.exists_idempotent_ppow`: in a finite semigroup, every element has an idempotent positive power
- `Monoid.exists_idempotent_pow`: in a finite monoid, every element has a nonzero idempotent power
- `Monoid.exists_pow_sandwich_eq_self`: in a finite monoid, if `a = x * a * y`, then there exist positive powers `n₁` and `n₂` such that `x ^ n₁ * a = a` and `a * y ^ n₂ = a`
Co-authored-by: Howard Straubing <howard.straubing@bc.edu>
Co-authored-by: Soleil Repple <repple@bc.edu>
Co-authored-by: Nathan Hart-Hodgson <harthodg@bc.edu>
---
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|
t-algebra
new-contributor
awaiting-author
merge-conflict
label:t-algebra$ |
154/2 |
Mathlib.lean,Mathlib/Algebra/Group/PNatPowAssoc.lean,Mathlib/Algebra/Group/SemigroupIdempotentPow.lean |
3 |
13 |
['faenuccio', 'github-actions', 'mathlib-merge-conflicts'] |
faenuccio and mattrobball assignee:faenuccio assignee:mattrobball |
10-24359 10 days ago |
53-27020 53 days ago |
34-8152 34 days |
| 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 |
10-19693 10 days ago |
11-16829 11 days ago |
11-16666 11 days |
| 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 |
38 |
['ADedecker', 'ChiCubed', 'github-actions', 'themathqueen', 'wwylele'] |
ocfnash assignee:ocfnash |
10-18831 10 days ago |
26-13889 26 days ago |
76-28261 76 days |
| 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'] |
RemyDegenne assignee:RemyDegenne |
10-18830 10 days ago |
64-82760 64 days ago |
67-19894 67 days |
| 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'] |
urkud assignee:urkud |
10-18829 10 days ago |
53-6735 53 days ago |
53-6572 53 days |
| 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
|
8/60 |
Mathlib/Algebra/BigOperators/Pi.lean,Mathlib/Algebra/Category/Grp/Limits.lean,Mathlib/Algebra/Category/MonCat/Limits.lean,Mathlib/Algebra/Group/DivInvMonoid.lean,Mathlib/Algebra/Symmetrized.lean,Mathlib/GroupTheory/GroupAction/SubMulAction/OfStabilizer.lean,Mathlib/GroupTheory/Nilpotent.lean |
7 |
5 |
['attilavjda', 'github-actions', 'mathlib-merge-conflicts', 'wwylele'] |
nobody |
9-70110 9 days ago |
9-73057 9 days ago |
14-27875 14 days |
| 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 |
9-35366 9 days ago |
10-9195 10 days ago |
10-9032 10 days |
| 38848 |
jcreinhold author:jcreinhold |
feat(AlgebraicTopology/SimplicialSet): exists_isPushout_of_ne_top |
Every proper subcomplex of a simplicial set extends by attaching a single cell along its boundary, exhibited as a pushout of `∂Δ[n] ↪ Δ[n]`. This is the per-cell input for cell-by-cell filtrations of monomorphisms in `SSet`.
Adapted from @joelriou 's [proof](https://github.com/joelriou/topcat-model-category/blob/813338a8c88cfe0096deed7e3ba7daf92d4a1c71/TopCatModelCategory/SSet/Boundary.lean#L187). I also added the supporting lemma `Types.isPullback_of_eq_setPreimage` (set-preimage square is a pullback in `Type u`).
AI use: Claude helped locate `subtype_val_mono` and the `backward.isDefEq.respectTransparency` option.
|
t-algebraic-topology
new-contributor
merge-conflict
|
117/3 |
Mathlib/AlgebraicTopology/SimplicialSet/Boundary.lean,Mathlib/CategoryTheory/Limits/Types/Pullbacks.lean |
2 |
38 |
['dagurtomas', 'github-actions', 'jcreinhold', 'joelriou', 'mathlib-merge-conflicts', 'mckoen'] |
nobody |
9-29537 9 days ago |
9-29538 9 days ago |
109-72670 109 days |
| 40155 |
TheGoedeDoel author:TheGoedeDoel |
feat: functor of localized commutative rings |
Given a functor of commutative rings R and a submonoid functor S,
we add a functor of commutative rings with objects that are localizations
of R(U) at the submonoid S(U). We also show that this functor satisfies a
universal property.
---
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- Nat.bit1_add_bit1
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[](https://gitpod.io/from-referrer/)
|
t-algebra
new-contributor
label:t-algebra$ |
255/0 |
Mathlib.lean,Mathlib/Algebra/Category/ModuleCat/LocalizedFunctor.lean |
2 |
14 |
['TheGoedeDoel', 'chrisflav', 'github-actions'] |
joneugster assignee:joneugster |
9-18832 9 days ago |
80-26856 80 days ago |
89-26737 89 days |
| 40579 |
jcreinhold author:jcreinhold |
feat(Algebra/Category/Ring): preserve limits to CommMonCat |
Adds the missing instance saying that forgetting a commutative ring to its multiplicative commutative monoid preserves limits. |
t-algebra
new-contributor
label:t-algebra$ |
7/0 |
Mathlib/Algebra/Category/Ring/Limits.lean |
1 |
8 |
['felixpernegger', 'github-actions', 'jcreinhold'] |
joneugster assignee:joneugster |
9-18829 9 days ago |
77-72144 77 days ago |
77-80455 77 days |
| 42813 |
Robby955 author:Robby955 |
chore(downstream_repos): add FormalSLT |
## Summary
This adds [FormalSLT](https://github.com/Robby955/FormalSLT) to
`scripts/downstream_repos.yml`, and therefore to the Lean community's
[open-source projects page](https://leanprover-community.github.io/lean_projects.html).
FormalSLT is an MIT-licensed Lean 4/mathlib library for machine-checked
statistical learning theory. Its existing `main`-branch CI and documentation
workflow filenames are included for the downstream dashboard.
## Why it is a mathlib downstream
FormalSLT is built directly on mathlib rather than merely using Lean syntax.
Its theorem surface imports and extends mathlib's measure-theory and probability
APIs, finite product measures, PMFs and Markov kernels, filtrations,
martingales, conditional expectation and optional stopping, information-theoretic
KL divergence, real analysis, topology, and finite combinatorics.
The project pins compatible Lean and mathlib releases through Lake, and its
`main` CI builds the library and theorem checkers against that pin. Adding it to
the downstream dashboard gives mathlib a substantial probability/statistics
compatibility target.
## Use in accepted research
- [*From Agents to Axioms: Verifier-Gated Lean Formalization for Statistical
Learning Theory*](https://openreview.net/forum?id=EsEqPLc0ef) ICML 2026 AI for Math workshop and uses FormalSLT as its checked artifact.
- *A Machine-Checked Anytime-Valid Confidence Sequence by the Method of
Mixtures* [COPA 2026](https://copa-conference.com/).
its Lean result is implemented and audited in FormalSLT.
These are project research outputs that use FormalSLT, not claims of independent
third-party citation.
## Validation
- the YAML parses successfully;
- the FormalSLT entry is unique;
- the named `ci.yml` and `docs.yml` workflows exist on FormalSLT's default
branch;
- `git diff --check` passes.
## AI usage
FormalSLT permits and uses LLM-assisted formalization as part of its development
workflow. All resulting Lean declarations are checked by the Lean kernel, and
the project treats machine-checkable verification rather than authorship method
as the correctness criterion. This PR itself only adds FormalSLT to the mathlib
downstream-project configuration.
## Relevant Zulip Topics
- [#mathlib4 > Villes Inequality](https://leanprover.zulipchat.com/#narrow/channel/287929-mathlib4/topic/Villes.20Inequality/with/599033270) |
CI
new-contributor
awaiting-zulip
|
6/0 |
scripts/downstream_repos.yml |
1 |
4 |
['Robby955', 'github-actions', 'joneugster'] |
nobody |
9-13790 9 days ago |
9-58856 9 days ago |
5-45830 5 days |
| 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 |
8-80185 8 days ago |
8-81342 8 days ago |
8-81179 8 days |
| 42885 |
Rshin2024 author:Rshin2024 |
feat(Geometry/Manifold): interior chart and radial unit map for the closed ball |
## Summary
First installment of a series giving the closed unit ball in
`EuclideanSpace ℝ (Fin n)` a smooth manifold-with-boundary structure over
`EuclideanHalfSpace n` — the first such structure above dimension 1. The
series follows the idioms of the 1-dimensional `Icc` instance
(`Instances/Real.lean`): charts as `OpenPartialHomeomorph` into the
half-space, inverses made total by clamping, correctness proved on `target`.
This PR provides:
* `DiskInteriorChart` — the chart covering the open ball, shifting by
`2 • e₀` into the half-space interior; the inverse shifts back and
radially clamps (`radialClamp w = (1 ⊓ ‖w‖⁻¹) • w`, total by `0⁻¹ = 0`),
agreeing with the true inverse on the target — so no global continuity
lemma for the clamp is needed.
* `unitOr` — the radial unit map into the sphere, made total by a junk value
at `0`, with the rescaling identities (`smul_unitOr`, `unitOr_smul`) and
continuity away from the origin needed by the boundary charts.
* `EuclideanSpace.abs_coord_le_norm` — each coordinate is bounded by the
norm (placement advice welcome; it may belong in Analysis).
Sequels (prepared, opened after this lands): the boundary charts via
stereographic projection with verified inverse laws; the `ChartedSpace` and
`IsManifold (𝓡∂ n)` instances with all transitions proven `C^k`; and the
boundary identification `∂D = sphere`. Complete development available on
request. Motivated by making the ball form of the smooth 4-dimensional
Poincaré conjecture statable (cf. `Geometry/Manifold/PoincareConjecture.lean`).
No `sorry`, no new axioms; `lake exe mk_all --check` passes. Naming open to
review.
|
t-differential-geometry
new-contributor
awaiting-author
merge-conflict
|
196/0 |
Mathlib.lean,Mathlib/Geometry/Manifold/Instances/Disk.lean |
2 |
4 |
['github-actions', 'grunweg', 'mathlib-merge-conflicts'] |
nobody |
8-54110 8 days ago |
12-73589 12 days ago |
0-44185 12 hours |
| 42404 |
Robertboy18 author:Robertboy18 |
chore(downstream_repos): add TorchLean |
This PR adds [TorchLean](https://github.com/lean-dojo/TorchLean) to `scripts/downstream_repos.yml`!
TorchLean is the first unified Lean 4 framework for neural-network specification,
execution, training, and formal verification. It depends on Mathlib and maintains
build and documentation workflows on its default branch! Let me know if something else is needed:)
|
CI
new-contributor
|
7/0 |
scripts/downstream_repos.yml |
1 |
2 |
['copilot-pull-request-reviewer', 'github-actions'] |
nobody |
8-25069 8 days ago |
25-18202 25 days ago |
25-18039 25 days |
| 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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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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-->
[](https://gitpod.io/from-referrer/)
|
new-contributor
t-measure-probability
large-import
|
199/0 |
Mathlib/Probability/Distributions/Exponential.lean |
1 |
11 |
['EtienneC30', 'JoaBjo', 'Timeroot', 'github-actions', 'mathlib-merge-conflicts'] |
EtienneC30 assignee:EtienneC30 |
7-63358 7 days ago |
7-63452 7 days ago |
49-74214 49 days |
| 42831 |
ray-shang author:ray-shang |
feat(CategoryTheory/Linear): category algebra of R-linear category |
We formalize `CategoryAlgebra R C`, the category algebra, of a R-linear category `C` where `R` is a commutative semiring.
We show `CategoryAlgebra R C` is a non-unital algebra. We formalize its universal property by defining a structure `Hom R C A` for well-defined maps between `C` and a non-unital algebra `A`, and show `Hom R C A` and `CategoryAlgebra R C →ₙₐ[R] A` are equivalent types. When `C` is finite type (has finite objects), we show `CategoryAlgebra R C` is a R-algebra, and the universal property is upgraded to R-algebra morphisms via the equivalence of types between `UnitalHom R C A` and `CategoryAlgebra R C →ₐ[R] A`.
Note the previous author adds `sumAddHom₂` to `Mathlib/Data/DFinsupp/BigOperators.lean`, a bilinear version of `sumAddHom`, along with its corresponding `@[simp]` lemma `sumAddHom₂_single`.
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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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
- ...
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.
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using the following format:
- [ ] depends on: #abc [optional extra text]
- [ ] depends on: #xyz [optional extra text]
-->
[](https://gitpod.io/from-referrer/)
|
t-category-theory
new-contributor
awaiting-author
awaiting-zulip
|
485/0 |
Mathlib.lean,Mathlib/CategoryTheory/Linear/CategoryAlgebra.lean,Mathlib/Data/DFinsupp/BigOperators.lean |
3 |
8 |
['github-actions', 'joelriou', 'ray-shang', 'robin-carlier'] |
nobody |
7-55970 7 days ago |
8-31770 8 days ago |
0-33029 9 hours |
| 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 simp 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 |
8 |
['ashebson', 'github-actions', 'grunweg', 'mathlib-bors'] |
nobody |
7-43161 7 days ago |
8-64474 8 days ago |
9-11166 9 days |
| 41557 |
lakesare author:lakesare |
feat(Analysis/Convolution): add convolution_symm, convolution, (3 more lemmas) |
**Upstreaming from Carleson: [/Carleson/ToMathlib/Analysis/Convolution.lean](https://github.com/fpvandoorn/carleson/blob/master/Carleson/ToMathlib/Analysis/Convolution.lean)**
___
### Upstreamed theorems
- **theorem convolution_symm**
- renamed `g` to `f'` (to reuse the existing section variable)
- **theorem AEStronglyMeasurable.convolution** (refactored)
- **lemma lintegral_enorm_convolution_integrand_le_eLpNorm_mul_eLpNorm** (refactored)
- removed the comment _"This implies both of the following theorems convolutionExists_of_memLp_memLp and enorm_convolution_le_eLpNorm_mul_eLpNorm."_, because the comment would create an impression that it's an auxiliary lemma that shouldn't be used on its own
- **theorem ConvolutionExists.of_memLp_memLp** (slightly refactored)
- `(hf : AEStronglyMeasurable f μ)` and `(hg : AEStronglyMeasurable g μ)` were removed, because we can derive those hypotheses from `hfp.aestronglyMeasurable` and `hgq.aestronglyMeasurable` respectively (which we did during refactoring)
- **theorem enorm_convolution_le_eLpNorm_mul_eLpNorm**
___
- **lemma lintegral_enorm_convolution_integrand_le_eLpNorm_mul_eLpNorm,
theorem ConvolutionExists.of_memLp_memLp,
theorem enorm_convolution_le_eLpNorm_mul_eLpNorm**
- turned `(hpq : p.HolderConjugate q)` into an instance implicit `[hpq : p.HolderConjugate q]` (there does exist a `class HolderConjugate` for ENNReals, so mathlib seems to use instance implicits in such cases, like e.g. [here](https://github.com/leanprover-community/mathlib4/blob/79aee35d9696d759b73eed71d7dde666750bc35e/Mathlib/Analysis/Normed/Lp/lpHolder.lean#L262))
- **theorem AEStronglyMeasurable.convolution,
lemma lintegral_enorm_convolution_integrand_le_eLpNorm_mul_eLpNorm,
theorem ConvolutionExists.of_memLp_memLp,
theorem enorm_convolution_le_eLpNorm_mul_eLpNorm**
- `L` was implicit, now became explicit (to comply with existing section variables)
- changed `[SigmaFinite μ]` to `[SFinite μ]` (because it's a weaker requirement [/Mathlib/MeasureTheory/Measure/Typeclasses/SFinite.lean#L191](https://github.com/leanprover-community/mathlib4/blob/9ef14c7b82f8a45f8dfc03dace26d6bb25023bac/Mathlib/MeasureTheory/Measure/Typeclasses/SFinite.lean#L191))
|
carleson
t-analysis
new-contributor
awaiting-author
|
77/5 |
Mathlib/Analysis/Convolution.lean,Mathlib/MeasureTheory/Function/LpSeminorm/CompareExp.lean |
2 |
16 |
['github-actions', 'j-loreaux', 'lakesare'] |
j-loreaux assignee:j-loreaux |
7-22435 7 days ago |
18-28792 18 days ago |
29-37207 29 days |
| 43069 |
Ming-Yuan-Zhu author:Ming-Yuan-Zhu |
feat: add second derivative signs at local extrema |
This PR adds `IsLocalMax.deriv_deriv_nonpos` and
`IsLocalMin.deriv_deriv_nonneg`, complementing the existing
second-derivative tests in `DerivativeTest.lean`.
The immediate motivation is the formalization of the maximum principle
for elliptic PDEs, where the sign of the second derivatives at an
interior extremum is a basic ingredient.
---
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|
t-analysis
new-contributor
|
52/0 |
Mathlib/Analysis/Calculus/DerivativeTest.lean |
1 |
2 |
['github-actions'] |
nobody |
7-651 7 days ago |
5-61295 5 days ago |
1-79365 1 day |