Loogle!
Result
Found 51 declarations mentioning CategoryTheory.LaxFunctor.mapId.
- CategoryTheory.LaxFunctor.id_mapId 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
(B : Type u₁) [CategoryTheory.Bicategory B] (a : B) : (CategoryTheory.LaxFunctor.id B).mapId a = CategoryTheory.CategoryStruct.id (CategoryTheory.CategoryStruct.id a) - CategoryTheory.LaxFunctor.mapId 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (self : CategoryTheory.LaxFunctor B C) (a : B) : CategoryTheory.CategoryStruct.id (self.obj a) ⟶ self.map (CategoryTheory.CategoryStruct.id a) - CategoryTheory.LaxFunctor.mapId'_eq_mapId 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (F : CategoryTheory.LaxFunctor B C) (b : B) : F.mapId' (CategoryTheory.CategoryStruct.id b) ⋯ = F.mapId b - CategoryTheory.LaxFunctor.PseudoCore.mapIdIso_inv 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] {F : CategoryTheory.LaxFunctor B C} (self : F.PseudoCore) {a : B} : (self.mapIdIso a).inv = F.mapId a - CategoryTheory.LaxFunctor.comp_mapId 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] {D : Type u₃} [CategoryTheory.Bicategory D] (F : CategoryTheory.LaxFunctor B C) (G : CategoryTheory.LaxFunctor C D) (a : B) : (F.comp G).mapId a = CategoryTheory.CategoryStruct.comp (G.mapId (F.obj a)) (G.map₂ (F.mapId a)) - CategoryTheory.LaxFunctor.PseudoCore.mk 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] {F : CategoryTheory.LaxFunctor B C} (mapIdIso : (a : B) → F.map (CategoryTheory.CategoryStruct.id a) ≅ CategoryTheory.CategoryStruct.id (F.obj a)) (mapCompIso : {a b c : B} → (f : a ⟶ b) → (g : b ⟶ c) → F.map (CategoryTheory.CategoryStruct.comp f g) ≅ CategoryTheory.CategoryStruct.comp (F.map f) (F.map g)) (mapIdIso_inv : ∀ {a : B}, (mapIdIso a).inv = F.mapId a := by cat_disch) (mapCompIso_inv : ∀ {a b c : B} (f : a ⟶ b) (g : b ⟶ c), (mapCompIso f g).inv = F.mapComp f g := by cat_disch) : F.PseudoCore - CategoryTheory.LaxFunctor.map₂_leftUnitor 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (self : CategoryTheory.LaxFunctor B C) {a b : B} (f : a ⟶ b) : self.map₂ (CategoryTheory.Bicategory.leftUnitor f).inv = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.leftUnitor (self.map f)).inv (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerRight (self.mapId a) (self.map f)) (self.mapComp (CategoryTheory.CategoryStruct.id a) f)) - CategoryTheory.LaxFunctor.map₂_rightUnitor 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (self : CategoryTheory.LaxFunctor B C) {a b : B} (f : a ⟶ b) : self.map₂ (CategoryTheory.Bicategory.rightUnitor f).inv = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.rightUnitor (self.map f)).inv (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (self.map f) (self.mapId b)) (self.mapComp f (CategoryTheory.CategoryStruct.id b))) - CategoryTheory.LaxFunctor.map₂_leftUnitor_hom 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (F : CategoryTheory.LaxFunctor B C) {a b : B} (f : a ⟶ b) : (CategoryTheory.Bicategory.leftUnitor (F.map f)).hom = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerRight (F.mapId a) (F.map f)) (CategoryTheory.CategoryStruct.comp (F.mapComp (CategoryTheory.CategoryStruct.id a) f) (F.map₂ (CategoryTheory.Bicategory.leftUnitor f).hom)) - CategoryTheory.LaxFunctor.map₂_rightUnitor_hom 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (F : CategoryTheory.LaxFunctor B C) {a b : B} (f : a ⟶ b) : (CategoryTheory.Bicategory.rightUnitor (F.map f)).hom = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (F.map f) (F.mapId b)) (CategoryTheory.CategoryStruct.comp (F.mapComp f (CategoryTheory.CategoryStruct.id b)) (F.map₂ (CategoryTheory.Bicategory.rightUnitor f).hom)) - CategoryTheory.LaxFunctor.map₂_leftUnitor_assoc 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (self : CategoryTheory.LaxFunctor B C) {a b : B} (f : a ⟶ b) {Z : self.obj a ⟶ self.obj b} (h : self.map (CategoryTheory.CategoryStruct.comp (CategoryTheory.CategoryStruct.id a) f) ⟶ Z) : CategoryTheory.CategoryStruct.comp (self.map₂ (CategoryTheory.Bicategory.leftUnitor f).inv) h = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.leftUnitor (self.map f)).inv (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerRight (self.mapId a) (self.map f)) (CategoryTheory.CategoryStruct.comp (self.mapComp (CategoryTheory.CategoryStruct.id a) f) h)) - CategoryTheory.LaxFunctor.map₂_rightUnitor_assoc 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (self : CategoryTheory.LaxFunctor B C) {a b : B} (f : a ⟶ b) {Z : self.obj a ⟶ self.obj b} (h : self.map (CategoryTheory.CategoryStruct.comp f (CategoryTheory.CategoryStruct.id b)) ⟶ Z) : CategoryTheory.CategoryStruct.comp (self.map₂ (CategoryTheory.Bicategory.rightUnitor f).inv) h = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.rightUnitor (self.map f)).inv (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (self.map f) (self.mapId b)) (CategoryTheory.CategoryStruct.comp (self.mapComp f (CategoryTheory.CategoryStruct.id b)) h)) - CategoryTheory.LaxFunctor.map₂_leftUnitor_hom_assoc 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (F : CategoryTheory.LaxFunctor B C) {a b : B} (f : a ⟶ b) {Z : F.obj a ⟶ F.obj b} (h : F.map f ⟶ Z) : CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.leftUnitor (F.map f)).hom h = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerRight (F.mapId a) (F.map f)) (CategoryTheory.CategoryStruct.comp (F.mapComp (CategoryTheory.CategoryStruct.id a) f) (CategoryTheory.CategoryStruct.comp (F.map₂ (CategoryTheory.Bicategory.leftUnitor f).hom) h)) - CategoryTheory.LaxFunctor.map₂_rightUnitor_hom_assoc 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (F : CategoryTheory.LaxFunctor B C) {a b : B} (f : a ⟶ b) {Z : F.obj a ⟶ F.obj b} (h : F.map f ⟶ Z) : CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.rightUnitor (F.map f)).hom h = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (F.map f) (F.mapId b)) (CategoryTheory.CategoryStruct.comp (F.mapComp f (CategoryTheory.CategoryStruct.id b)) (CategoryTheory.CategoryStruct.comp (F.map₂ (CategoryTheory.Bicategory.rightUnitor f).hom) h)) - CategoryTheory.LaxFunctor.map₂_rightUnitor_app 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u_1} [CategoryTheory.Bicategory B] (self : CategoryTheory.LaxFunctor B CategoryTheory.Cat) {a b : B} (f : a ⟶ b) (X : ↑(self.obj a)) : (self.map₂ (CategoryTheory.Bicategory.rightUnitor f).inv).toNatTrans.app X = CategoryTheory.CategoryStruct.comp ((self.mapId b).toNatTrans.app ((self.map f).toFunctor.obj X)) ((self.mapComp f (CategoryTheory.CategoryStruct.id b)).toNatTrans.app X) - CategoryTheory.LaxFunctor.map₂_leftUnitor_app 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u_1} [CategoryTheory.Bicategory B] (self : CategoryTheory.LaxFunctor B CategoryTheory.Cat) {a b : B} (f : a ⟶ b) (X : ↑(self.obj a)) : (self.map₂ (CategoryTheory.Bicategory.leftUnitor f).inv).toNatTrans.app X = CategoryTheory.CategoryStruct.comp ((self.map f).toFunctor.map ((self.mapId a).toNatTrans.app X)) ((self.mapComp (CategoryTheory.CategoryStruct.id a) f).toNatTrans.app X) - CategoryTheory.LaxFunctor.map₂_rightUnitor_app_assoc 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u_1} [CategoryTheory.Bicategory B] (self : CategoryTheory.LaxFunctor B CategoryTheory.Cat) {a b : B} (f : a ⟶ b) (X : ↑(self.obj a)) {Z : ↑(self.obj b)} (h : (self.map (CategoryTheory.CategoryStruct.comp f (CategoryTheory.CategoryStruct.id b))).toFunctor.obj X ⟶ Z) : CategoryTheory.CategoryStruct.comp ((self.map₂ (CategoryTheory.Bicategory.rightUnitor f).inv).toNatTrans.app X) h = CategoryTheory.CategoryStruct.comp ((self.mapId b).toNatTrans.app ((self.map f).toFunctor.obj X)) (CategoryTheory.CategoryStruct.comp ((self.mapComp f (CategoryTheory.CategoryStruct.id b)).toNatTrans.app X) h) - CategoryTheory.LaxFunctor.map₂_leftUnitor_app_assoc 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u_1} [CategoryTheory.Bicategory B] (self : CategoryTheory.LaxFunctor B CategoryTheory.Cat) {a b : B} (f : a ⟶ b) (X : ↑(self.obj a)) {Z : ↑(self.obj b)} (h : (self.map (CategoryTheory.CategoryStruct.comp (CategoryTheory.CategoryStruct.id a) f)).toFunctor.obj X ⟶ Z) : CategoryTheory.CategoryStruct.comp ((self.map₂ (CategoryTheory.Bicategory.leftUnitor f).inv).toNatTrans.app X) h = CategoryTheory.CategoryStruct.comp ((self.map f).toFunctor.map ((self.mapId a).toNatTrans.app X)) (CategoryTheory.CategoryStruct.comp ((self.mapComp (CategoryTheory.CategoryStruct.id a) f).toNatTrans.app X) h) - CategoryTheory.LaxFunctor.map₂_rightUnitor_hom_app 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u_1} [CategoryTheory.Bicategory B] (F : CategoryTheory.LaxFunctor B CategoryTheory.Cat) {a b : B} (f : a ⟶ b) (X : ↑(F.obj a)) : CategoryTheory.CategoryStruct.id ((CategoryTheory.CategoryStruct.id (F.obj b)).toFunctor.obj ((F.map f).toFunctor.obj X)) = CategoryTheory.CategoryStruct.comp ((F.mapId b).toNatTrans.app ((F.map f).toFunctor.obj X)) (CategoryTheory.CategoryStruct.comp ((F.mapComp f (CategoryTheory.CategoryStruct.id b)).toNatTrans.app X) ((F.map₂ (CategoryTheory.Bicategory.rightUnitor f).hom).toNatTrans.app X)) - CategoryTheory.LaxFunctor.map₂_rightUnitor_hom_app_assoc 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u_1} [CategoryTheory.Bicategory B] (F : CategoryTheory.LaxFunctor B CategoryTheory.Cat) {a b : B} (f : a ⟶ b) (X : ↑(F.obj a)) {Z : ↑(F.obj b)} (h : (CategoryTheory.CategoryStruct.id (F.obj b)).toFunctor.obj ((F.map f).toFunctor.obj X) ⟶ Z) : h = CategoryTheory.CategoryStruct.comp ((F.mapId b).toNatTrans.app ((F.map f).toFunctor.obj X)) (CategoryTheory.CategoryStruct.comp ((F.mapComp f (CategoryTheory.CategoryStruct.id b)).toNatTrans.app X) (CategoryTheory.CategoryStruct.comp ((F.map₂ (CategoryTheory.Bicategory.rightUnitor f).hom).toNatTrans.app X) h)) - CategoryTheory.LaxFunctor.map₂_leftUnitor_hom_app 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u_1} [CategoryTheory.Bicategory B] (F : CategoryTheory.LaxFunctor B CategoryTheory.Cat) {a b : B} (f : a ⟶ b) (X : ↑(F.obj a)) : CategoryTheory.CategoryStruct.id ((F.map f).toFunctor.obj ((CategoryTheory.CategoryStruct.id (F.obj a)).toFunctor.obj X)) = CategoryTheory.CategoryStruct.comp ((F.map f).toFunctor.map ((F.mapId a).toNatTrans.app X)) (CategoryTheory.CategoryStruct.comp ((F.mapComp (CategoryTheory.CategoryStruct.id a) f).toNatTrans.app X) ((F.map₂ (CategoryTheory.Bicategory.leftUnitor f).hom).toNatTrans.app X)) - CategoryTheory.LaxFunctor.map₂_leftUnitor_hom_app_assoc 📋 Mathlib.CategoryTheory.Bicategory.Functor.Lax
{B : Type u_1} [CategoryTheory.Bicategory B] (F : CategoryTheory.LaxFunctor B CategoryTheory.Cat) {a b : B} (f : a ⟶ b) (X : ↑(F.obj a)) {Z : ↑(F.obj b)} (h : (F.map f).toFunctor.obj ((CategoryTheory.CategoryStruct.id (F.obj a)).toFunctor.obj X) ⟶ Z) : h = CategoryTheory.CategoryStruct.comp ((F.map f).toFunctor.map ((F.mapId a).toNatTrans.app X)) (CategoryTheory.CategoryStruct.comp ((F.mapComp (CategoryTheory.CategoryStruct.id a) f).toNatTrans.app X) (CategoryTheory.CategoryStruct.comp ((F.map₂ (CategoryTheory.Bicategory.leftUnitor f).hom).toNatTrans.app X) h)) - CategoryTheory.Pseudofunctor.toLax_mapId 📋 Mathlib.CategoryTheory.Bicategory.Functor.Pseudofunctor
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (F : CategoryTheory.Pseudofunctor B C) (a : B) : F.toLax.mapId a = (F.mapId a).inv - CategoryTheory.Pseudofunctor.mkOfLax' 📋 Mathlib.CategoryTheory.Bicategory.Functor.Pseudofunctor
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (F : CategoryTheory.LaxFunctor B C) [∀ (a : B), CategoryTheory.IsIso (F.mapId a)] [∀ {a b c : B} (f : a ⟶ b) (g : b ⟶ c), CategoryTheory.IsIso (F.mapComp f g)] : CategoryTheory.Pseudofunctor B C - CategoryTheory.Pseudofunctor.mkOfLax'_toPrelaxFunctor 📋 Mathlib.CategoryTheory.Bicategory.Functor.Pseudofunctor
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (F : CategoryTheory.LaxFunctor B C) [∀ (a : B), CategoryTheory.IsIso (F.mapId a)] [∀ {a b c : B} (f : a ⟶ b) (g : b ⟶ c), CategoryTheory.IsIso (F.mapComp f g)] : (CategoryTheory.Pseudofunctor.mkOfLax' F).toPrelaxFunctor = F.toPrelaxFunctor - CategoryTheory.Pseudofunctor.mkOfLax'_mapId_inv 📋 Mathlib.CategoryTheory.Bicategory.Functor.Pseudofunctor
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (F : CategoryTheory.LaxFunctor B C) [∀ (a : B), CategoryTheory.IsIso (F.mapId a)] [∀ {a b c : B} (f : a ⟶ b) (g : b ⟶ c), CategoryTheory.IsIso (F.mapComp f g)] (a : B) : ((CategoryTheory.Pseudofunctor.mkOfLax' F).mapId a).inv = F.mapId a - CategoryTheory.Pseudofunctor.mkOfLax'_mapId_hom 📋 Mathlib.CategoryTheory.Bicategory.Functor.Pseudofunctor
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (F : CategoryTheory.LaxFunctor B C) [∀ (a : B), CategoryTheory.IsIso (F.mapId a)] [∀ {a b c : B} (f : a ⟶ b) (g : b ⟶ c), CategoryTheory.IsIso (F.mapComp f g)] (a : B) : ((CategoryTheory.Pseudofunctor.mkOfLax' F).mapId a).hom = CategoryTheory.inv (F.mapId a) - CategoryTheory.Pseudofunctor.mkOfLax'_mapComp_inv 📋 Mathlib.CategoryTheory.Bicategory.Functor.Pseudofunctor
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (F : CategoryTheory.LaxFunctor B C) [∀ (a : B), CategoryTheory.IsIso (F.mapId a)] [∀ {a b c : B} (f : a ⟶ b) (g : b ⟶ c), CategoryTheory.IsIso (F.mapComp f g)] {a✝ b✝ c✝ : B} (f : a✝ ⟶ b✝) (g : b✝ ⟶ c✝) : ((CategoryTheory.Pseudofunctor.mkOfLax' F).mapComp f g).inv = F.mapComp f g - CategoryTheory.Pseudofunctor.mkOfLax'_mapComp_hom 📋 Mathlib.CategoryTheory.Bicategory.Functor.Pseudofunctor
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (F : CategoryTheory.LaxFunctor B C) [∀ (a : B), CategoryTheory.IsIso (F.mapId a)] [∀ {a b c : B} (f : a ⟶ b) (g : b ⟶ c), CategoryTheory.IsIso (F.mapComp f g)] {a✝ b✝ c✝ : B} (f : a✝ ⟶ b✝) (g : b✝ ⟶ c✝) : ((CategoryTheory.Pseudofunctor.mkOfLax' F).mapComp f g).hom = CategoryTheory.inv (F.mapComp f g) - CategoryTheory.StrictlyUnitaryLaxFunctor.id_mapId 📋 Mathlib.CategoryTheory.Bicategory.Functor.StrictlyUnitary
(B : Type u₁) [CategoryTheory.Bicategory B] (a : B) : (CategoryTheory.StrictlyUnitaryLaxFunctor.id B).mapId a = CategoryTheory.CategoryStruct.id (CategoryTheory.CategoryStruct.id a) - CategoryTheory.StrictlyUnitaryLaxFunctor.mk'_mapId 📋 Mathlib.CategoryTheory.Bicategory.Functor.StrictlyUnitary
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (S : CategoryTheory.StrictlyUnitaryLaxFunctorCore B C) (x : B) : (CategoryTheory.StrictlyUnitaryLaxFunctor.mk' S).mapId x = CategoryTheory.eqToHom ⋯ - CategoryTheory.StrictlyUnitaryLaxFunctor.mapId_isIso 📋 Mathlib.CategoryTheory.Bicategory.Functor.StrictlyUnitary
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (F : CategoryTheory.StrictlyUnitaryLaxFunctor B C) (x : B) : CategoryTheory.IsIso (F.mapId x) - CategoryTheory.StrictlyUnitaryLaxFunctor.mapIdIso_hom 📋 Mathlib.CategoryTheory.Bicategory.Functor.StrictlyUnitary
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (F : CategoryTheory.StrictlyUnitaryLaxFunctor B C) (x : B) : (F.mapIdIso x).hom = F.mapId x - CategoryTheory.StrictlyUnitaryPseudofunctor.toStrictlyUnitaryLaxFunctor_mapId 📋 Mathlib.CategoryTheory.Bicategory.Functor.StrictlyUnitary
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (F : CategoryTheory.StrictlyUnitaryPseudofunctor B C) {x : B} : F.toStrictlyUnitaryLaxFunctor.mapId x = (F.mapId x).inv - CategoryTheory.StrictlyUnitaryLaxFunctor.mapId_eq_eqToHom 📋 Mathlib.CategoryTheory.Bicategory.Functor.StrictlyUnitary
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (self : CategoryTheory.StrictlyUnitaryLaxFunctor B C) (X : B) : self.mapId X = CategoryTheory.eqToHom ⋯ - CategoryTheory.StrictlyUnitaryLaxFunctor.mk 📋 Mathlib.CategoryTheory.Bicategory.Functor.StrictlyUnitary
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] (toLaxFunctor : CategoryTheory.LaxFunctor B C) (map_id : ∀ (X : B), toLaxFunctor.map (CategoryTheory.CategoryStruct.id X) = CategoryTheory.CategoryStruct.id (toLaxFunctor.obj X) := by rfl_cat) (mapId_eq_eqToHom : ∀ (X : B), toLaxFunctor.mapId X = CategoryTheory.eqToHom ⋯ := by cat_disch) : CategoryTheory.StrictlyUnitaryLaxFunctor B C - CategoryTheory.StrictlyUnitaryLaxFunctor.comp_mapId 📋 Mathlib.CategoryTheory.Bicategory.Functor.StrictlyUnitary
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] {D : Type u₃} [CategoryTheory.Bicategory D] (F : CategoryTheory.StrictlyUnitaryLaxFunctor B C) (G : CategoryTheory.StrictlyUnitaryLaxFunctor C D) (a : B) : (F.comp G).mapId a = CategoryTheory.CategoryStruct.comp (G.mapId (F.obj a)) (G.map₂ (F.mapId a)) - CategoryTheory.StrictlyUnitaryLaxFunctor.ext 📋 Mathlib.CategoryTheory.Bicategory.Functor.StrictlyUnitary
{B : Type u₁} {inst✝ : CategoryTheory.Bicategory B} {C : Type u₂} {inst✝¹ : CategoryTheory.Bicategory C} {x y : CategoryTheory.StrictlyUnitaryLaxFunctor B C} (obj : x.obj = y.obj) (map : @Prefunctor.map B inst✝.toQuiver C inst✝¹.toQuiver x.toPrefunctor ≍ @Prefunctor.map B inst✝.toQuiver C inst✝¹.toQuiver y.toPrefunctor) (map₂ : @CategoryTheory.PrelaxFunctorStruct.map₂ B inst✝.toQuiver (fun a b => (CategoryTheory.Bicategory.homCategory a b).toQuiver) C inst✝¹.toQuiver (fun a b => (CategoryTheory.Bicategory.homCategory a b).toQuiver) x.toPrelaxFunctorStruct ≍ @CategoryTheory.PrelaxFunctorStruct.map₂ B inst✝.toQuiver (fun a b => (CategoryTheory.Bicategory.homCategory a b).toQuiver) C inst✝¹.toQuiver (fun a b => (CategoryTheory.Bicategory.homCategory a b).toQuiver) y.toPrelaxFunctorStruct) (mapId : x.mapId ≍ y.mapId) (mapComp : @CategoryTheory.LaxFunctor.mapComp B inst✝ C inst✝¹ x.toLaxFunctor ≍ @CategoryTheory.LaxFunctor.mapComp B inst✝ C inst✝¹ y.toLaxFunctor) : x = y - CategoryTheory.StrictlyUnitaryLaxFunctor.ext_iff 📋 Mathlib.CategoryTheory.Bicategory.Functor.StrictlyUnitary
{B : Type u₁} {inst✝ : CategoryTheory.Bicategory B} {C : Type u₂} {inst✝¹ : CategoryTheory.Bicategory C} {x y : CategoryTheory.StrictlyUnitaryLaxFunctor B C} : x = y ↔ x.obj = y.obj ∧ @Prefunctor.map B inst✝.toQuiver C inst✝¹.toQuiver x.toPrefunctor ≍ @Prefunctor.map B inst✝.toQuiver C inst✝¹.toQuiver y.toPrefunctor ∧ @CategoryTheory.PrelaxFunctorStruct.map₂ B inst✝.toQuiver (fun a b => (CategoryTheory.Bicategory.homCategory a b).toQuiver) C inst✝¹.toQuiver (fun a b => (CategoryTheory.Bicategory.homCategory a b).toQuiver) x.toPrelaxFunctorStruct ≍ @CategoryTheory.PrelaxFunctorStruct.map₂ B inst✝.toQuiver (fun a b => (CategoryTheory.Bicategory.homCategory a b).toQuiver) C inst✝¹.toQuiver (fun a b => (CategoryTheory.Bicategory.homCategory a b).toQuiver) y.toPrelaxFunctorStruct ∧ x.mapId ≍ y.mapId ∧ @CategoryTheory.LaxFunctor.mapComp B inst✝ C inst✝¹ x.toLaxFunctor ≍ @CategoryTheory.LaxFunctor.mapComp B inst✝ C inst✝¹ y.toLaxFunctor - CategoryTheory.Lax.LaxTrans.naturality_id 📋 Mathlib.CategoryTheory.Bicategory.NaturalTransformation.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] {F G : CategoryTheory.LaxFunctor B C} (self : CategoryTheory.Lax.LaxTrans F G) (a : B) : CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (self.app a) (G.mapId a)) (self.naturality (CategoryTheory.CategoryStruct.id a)) = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.rightUnitor (self.app a)).hom (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.leftUnitor (self.app a)).inv (CategoryTheory.Bicategory.whiskerRight (F.mapId a) (self.app a))) - CategoryTheory.Lax.OplaxTrans.naturality_id 📋 Mathlib.CategoryTheory.Bicategory.NaturalTransformation.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] {F G : CategoryTheory.LaxFunctor B C} (self : CategoryTheory.Lax.OplaxTrans F G) (a : B) : CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerRight (F.mapId a) (self.app a)) (self.naturality (CategoryTheory.CategoryStruct.id a)) = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.leftUnitor (self.app a)).hom (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.rightUnitor (self.app a)).inv (CategoryTheory.Bicategory.whiskerLeft (self.app a) (G.mapId a))) - CategoryTheory.Lax.LaxTrans.vComp_naturality_id 📋 Mathlib.CategoryTheory.Bicategory.NaturalTransformation.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] {F G H : CategoryTheory.LaxFunctor B C} (η : CategoryTheory.Lax.LaxTrans F G) (θ : CategoryTheory.Lax.LaxTrans G H) (a : B) : CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (η.vCompApp θ a) (H.mapId a)) (η.vCompNaturality θ (CategoryTheory.CategoryStruct.id a)) = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.rightUnitor (η.vCompApp θ a)).hom (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.leftUnitor (η.vCompApp θ a)).inv (CategoryTheory.Bicategory.whiskerRight (F.mapId a) (η.vCompApp θ a))) - CategoryTheory.Lax.OplaxTrans.vComp_naturality_id 📋 Mathlib.CategoryTheory.Bicategory.NaturalTransformation.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] {F G H : CategoryTheory.LaxFunctor B C} (η : CategoryTheory.Lax.OplaxTrans F G) (θ : CategoryTheory.Lax.OplaxTrans G H) (a : B) : CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerRight (F.mapId a) (η.vCompApp θ a)) (η.vCompNaturality θ (CategoryTheory.CategoryStruct.id a)) = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.leftUnitor (η.vCompApp θ a)).hom (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.rightUnitor (η.vCompApp θ a)).inv (CategoryTheory.Bicategory.whiskerLeft (η.vCompApp θ a) (H.mapId a))) - CategoryTheory.Lax.StrongTrans.naturality_id 📋 Mathlib.CategoryTheory.Bicategory.NaturalTransformation.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] {F G : CategoryTheory.LaxFunctor B C} (self : CategoryTheory.Lax.StrongTrans F G) (a : B) : CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (self.app a) (G.mapId a)) (self.naturality (CategoryTheory.CategoryStruct.id a)).hom = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.rightUnitor (self.app a)).hom (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.leftUnitor (self.app a)).inv (CategoryTheory.Bicategory.whiskerRight (F.mapId a) (self.app a))) - CategoryTheory.Lax.LaxTrans.naturality_id_assoc 📋 Mathlib.CategoryTheory.Bicategory.NaturalTransformation.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] {F G : CategoryTheory.LaxFunctor B C} (self : CategoryTheory.Lax.LaxTrans F G) (a : B) {Z : F.obj a ⟶ G.obj a} (h : CategoryTheory.CategoryStruct.comp (F.map (CategoryTheory.CategoryStruct.id a)) (self.app a) ⟶ Z) : CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (self.app a) (G.mapId a)) (CategoryTheory.CategoryStruct.comp (self.naturality (CategoryTheory.CategoryStruct.id a)) h) = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.rightUnitor (self.app a)).hom (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.leftUnitor (self.app a)).inv (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerRight (F.mapId a) (self.app a)) h)) - CategoryTheory.Lax.OplaxTrans.naturality_id_assoc 📋 Mathlib.CategoryTheory.Bicategory.NaturalTransformation.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] {F G : CategoryTheory.LaxFunctor B C} (self : CategoryTheory.Lax.OplaxTrans F G) (a : B) {Z : F.obj a ⟶ G.obj a} (h : CategoryTheory.CategoryStruct.comp (self.app a) (G.map (CategoryTheory.CategoryStruct.id a)) ⟶ Z) : CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerRight (F.mapId a) (self.app a)) (CategoryTheory.CategoryStruct.comp (self.naturality (CategoryTheory.CategoryStruct.id a)) h) = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.leftUnitor (self.app a)).hom (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.rightUnitor (self.app a)).inv (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (self.app a) (G.mapId a)) h)) - CategoryTheory.Lax.StrongTrans.naturality_id_assoc 📋 Mathlib.CategoryTheory.Bicategory.NaturalTransformation.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] {F G : CategoryTheory.LaxFunctor B C} (self : CategoryTheory.Lax.StrongTrans F G) (a : B) {Z : F.obj a ⟶ G.obj a} (h : CategoryTheory.CategoryStruct.comp (F.map (CategoryTheory.CategoryStruct.id a)) (self.app a) ⟶ Z) : CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (self.app a) (G.mapId a)) (CategoryTheory.CategoryStruct.comp (self.naturality (CategoryTheory.CategoryStruct.id a)).hom h) = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.rightUnitor (self.app a)).hom (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.leftUnitor (self.app a)).inv (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerRight (F.mapId a) (self.app a)) h)) - CategoryTheory.Lax.LaxTrans.mk 📋 Mathlib.CategoryTheory.Bicategory.NaturalTransformation.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] {F G : CategoryTheory.LaxFunctor B C} (app : (a : B) → F.obj a ⟶ G.obj a) (naturality : {a b : B} → (f : a ⟶ b) → CategoryTheory.CategoryStruct.comp (app a) (G.map f) ⟶ CategoryTheory.CategoryStruct.comp (F.map f) (app b)) (naturality_naturality : ∀ {a b : B} {f g : a ⟶ b} (η : f ⟶ g), CategoryTheory.CategoryStruct.comp (naturality f) (CategoryTheory.Bicategory.whiskerRight (F.map₂ η) (app b)) = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (app a) (G.map₂ η)) (naturality g) := by cat_disch) (naturality_id : ∀ (a : B), CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (app a) (G.mapId a)) (naturality (CategoryTheory.CategoryStruct.id a)) = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.rightUnitor (app a)).hom (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.leftUnitor (app a)).inv (CategoryTheory.Bicategory.whiskerRight (F.mapId a) (app a))) := by cat_disch) (naturality_comp : ∀ {a b c : B} (f : a ⟶ b) (g : b ⟶ c), CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (app a) (G.mapComp f g)) (naturality (CategoryTheory.CategoryStruct.comp f g)) = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.associator (app a) (G.map f) (G.map g)).inv (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerRight (naturality f) (G.map g)) (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.associator (F.map f) (app b) (G.map g)).hom (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (F.map f) (naturality g)) (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.associator (F.map f) (F.map g) (app c)).inv (CategoryTheory.Bicategory.whiskerRight (F.mapComp f g) (app c)))))) := by cat_disch) : CategoryTheory.Lax.LaxTrans F G - CategoryTheory.Lax.OplaxTrans.mk 📋 Mathlib.CategoryTheory.Bicategory.NaturalTransformation.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] {F G : CategoryTheory.LaxFunctor B C} (app : (a : B) → F.obj a ⟶ G.obj a) (naturality : {a b : B} → (f : a ⟶ b) → CategoryTheory.CategoryStruct.comp (F.map f) (app b) ⟶ CategoryTheory.CategoryStruct.comp (app a) (G.map f)) (naturality_naturality : ∀ {a b : B} {f g : a ⟶ b} (η : f ⟶ g), CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerRight (F.map₂ η) (app b)) (naturality g) = CategoryTheory.CategoryStruct.comp (naturality f) (CategoryTheory.Bicategory.whiskerLeft (app a) (G.map₂ η)) := by cat_disch) (naturality_id : ∀ (a : B), CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerRight (F.mapId a) (app a)) (naturality (CategoryTheory.CategoryStruct.id a)) = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.leftUnitor (app a)).hom (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.rightUnitor (app a)).inv (CategoryTheory.Bicategory.whiskerLeft (app a) (G.mapId a))) := by cat_disch) (naturality_comp : ∀ {a b c : B} (f : a ⟶ b) (g : b ⟶ c), CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerRight (F.mapComp f g) (app c)) (naturality (CategoryTheory.CategoryStruct.comp f g)) = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.associator (F.map f) (F.map g) (app c)).hom (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (F.map f) (naturality g)) (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.associator (F.map f) (app b) (G.map g)).inv (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerRight (naturality f) (G.map g)) (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.associator (app a) (G.map f) (G.map g)).hom (CategoryTheory.Bicategory.whiskerLeft (app a) (G.mapComp f g)))))) := by cat_disch) : CategoryTheory.Lax.OplaxTrans F G - CategoryTheory.Lax.StrongTrans.mk 📋 Mathlib.CategoryTheory.Bicategory.NaturalTransformation.Lax
{B : Type u₁} [CategoryTheory.Bicategory B] {C : Type u₂} [CategoryTheory.Bicategory C] {F G : CategoryTheory.LaxFunctor B C} (app : (a : B) → F.obj a ⟶ G.obj a) (naturality : {a b : B} → (f : a ⟶ b) → CategoryTheory.CategoryStruct.comp (app a) (G.map f) ≅ CategoryTheory.CategoryStruct.comp (F.map f) (app b)) (naturality_naturality : ∀ {a b : B} {f g : a ⟶ b} (η : f ⟶ g), CategoryTheory.CategoryStruct.comp (naturality f).hom (CategoryTheory.Bicategory.whiskerRight (F.map₂ η) (app b)) = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (app a) (G.map₂ η)) (naturality g).hom := by cat_disch) (naturality_id : ∀ (a : B), CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (app a) (G.mapId a)) (naturality (CategoryTheory.CategoryStruct.id a)).hom = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.rightUnitor (app a)).hom (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.leftUnitor (app a)).inv (CategoryTheory.Bicategory.whiskerRight (F.mapId a) (app a))) := by cat_disch) (naturality_comp : ∀ {a b c : B} (f : a ⟶ b) (g : b ⟶ c), CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (app a) (G.mapComp f g)) (naturality (CategoryTheory.CategoryStruct.comp f g)).hom = CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.associator (app a) (G.map f) (G.map g)).inv (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerRight (naturality f).hom (G.map g)) (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.associator (F.map f) (app b) (G.map g)).hom (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.whiskerLeft (F.map f) (naturality g).hom) (CategoryTheory.CategoryStruct.comp (CategoryTheory.Bicategory.associator (F.map f) (F.map g) (app c)).inv (CategoryTheory.Bicategory.whiskerRight (F.mapComp f g) (app c)))))) := by cat_disch) : CategoryTheory.Lax.StrongTrans F G - CategoryTheory.Bicategory.Pseudofunctor.ofLaxFunctorToLocallyGroupoid_mapIdIso_hom 📋 Mathlib.CategoryTheory.Bicategory.LocallyGroupoid
{B : Type u₁} [CategoryTheory.Bicategory B] {B' : Type u₂} [CategoryTheory.Bicategory B'] [CategoryTheory.Bicategory.IsLocallyGroupoid B] (F : CategoryTheory.LaxFunctor B' B) (x : B') : ((CategoryTheory.Bicategory.Pseudofunctor.ofLaxFunctorToLocallyGroupoid F).mapIdIso x).hom = CategoryTheory.inv (F.mapId x)
About
Loogle searches Lean and Mathlib definitions and theorems.
You can use Loogle from within the Lean4 VSCode language extension
using the Loogle command from the command palette. You can also try the
#loogle command from LeanSearchClient,
the CLI version, the Loogle
VS Code extension, the lean.nvim
integration or the Zulip bot.
Usage
Loogle finds definitions and lemmas in various ways:
By constant:
🔍Real.sin
finds all lemmas whose statement somehow mentions the sine function.By lemma name substring:
🔍"differ"
finds all lemmas that have"differ"somewhere in their lemma name.By subexpression:
🔍_ * (_ ^ _)
finds all lemmas whose statements somewhere include a product where the second argument is raised to some power.The pattern can also be non-linear, as in
🔍Real.sqrt ?a * Real.sqrt ?aIf the pattern has parameters, they are matched in any order. Both of these will find
List.map:
🔍(?a -> ?b) -> List ?a -> List ?b
🔍List ?a -> (?a -> ?b) -> List ?bBy main conclusion:
🔍|- tsum _ = _ * tsum _
finds all lemmas where the conclusion (the subexpression to the right of all→and∀) has the given shape.As before, if the pattern has parameters, they are matched against the hypotheses of the lemma in any order; for example,
🔍|- _ < _ → tsum _ < tsum _
will findtsum_lt_tsumeven though the hypothesisf i < g iis not the last.You can filter for definitions vs theorems: Using
⊢ (_ : Type _)finds all definitions which provide data while⊢ (_ : Prop)finds all theorems (and definitions of proofs).
If you pass more than one such search filter, separated by commas
Loogle will return lemmas which match all of them. The
search
🔍 Real.sin, "two", tsum, _ * _, _ ^ _, |- _ < _ → _
would find all lemmas which mention the constants Real.sin
and tsum, have "two" as a substring of the
lemma name, include a product and a power somewhere in the type,
and have a hypothesis of the form _ < _ (if
there were any such lemmas). Metavariables (?a) are
assigned independently in each filter.
The #lucky button will directly send you to the
documentation of the first hit.
Source code
You can find the source code for this service at https://github.com/nomeata/loogle. The https://loogle.lean-lang.org/ service is provided by the Lean FRO. Please review the Lean FRO Terms of Use and Privacy Policy.
This is Loogle revision 9f11169 serving mathlib revision 69fae59