Modules

categorical-crypto

  • Prelude

CategoricalCrypto

  • CategoricalCrypto
  • Abstract
  • Abstract2
  • Abstract2.Equivalence
  • Abstract2.Morphism
  • Abstract2.OAPEmulation
  • Abstract2.WideSubcategory
  • Channel.Category
  • Channel.Core
  • Channel.Selection
  • Examples.Basic
  • Examples.Commitment
  • Examples.RelSetup
  • Examples.Signatures
  • FamilyCategory
  • Machine.Constraints
  • Machine.Core
  • MachineAxioms
  • RandomOracle
  • RandomOracle2
  • SFunM
  • Standard
  • Standard2
  • Standard2.Morphism
  • StandardTV
  • UCSetup
  • UCSetup.Morphism
  • VanishingTV

Categories

  • Actegory
  • Actegory.Underlying
  • Category.EquivClosureHelper
  • Coherence.Monoidal
  • Coherence.Monoidal.Compare
  • Coherence.Monoidal.Diagram
  • Coherence.Monoidal.Frontend
  • Coherence.Monoidal.Frontend.Core
  • Coherence.Monoidal.Frontend.Sigma
  • Coherence.Monoidal.MacLane
  • Coherence.Monoidal.Normalize
  • Coherence.Monoidal.Reflect
  • Coherence.Monoidal.Sigma
  • Coherence.Monoidal.Test.Frontend
  • Coherence.Monoidal.Test.InterchangeStress
  • Coherence.Monoidal.Test.Limitations
  • Coherence.Monoidal.Test.SigmaFrontend
  • Coherence.Monoidal.WireCoherence
  • CoherenceIsos
  • Diagram.Coend.Ext.Setoids
  • Discrete
  • FreeMonoidal
  • FreeStrictMonoidal
  • Functor.Monoidal.CurriedTensor
  • Functor.Monoidal.CurriedTensor.Properties
  • Functor.Monoidal.Properties.Ext
  • Functor.Presheaf.Morphism
  • GradedKleisli
  • GradedKleisli.Functorial
  • GradedKleisli.Functorial.Category
  • GradedKleisli.Regrade
  • KernelCongruence
  • KernelCongruence.Reindex
  • LocallyGraded
  • LocallyGraded.FreeActegory
  • LocallyGraded.FreeActegory.Kleisli
  • LocallyGraded.Kleisli
  • Monad.Graded.Ext
  • Monad.Graded.Morphism
  • Monad.Graded.Pullback
  • Monad.Graded.Uncurried
  • Morphism.Reasoning.Ext
  • NaturalTransformationHelper
  • Properties

Class

  • Monad.Ext

Data

  • List.Properties.Ext
  • Maybe.Ext
  • Nat.Poly

LibExt

  • LibExt
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{-# OPTIONS --without-K #-}
module Class.Decidable.WithoutK where
 
open import Class.Prelude
open import Class.Decidable.Core
 
infix 0 ifᵈ_then_else_
ifᵈ_then_else_ : ∀ {X : Type ℓ} (P : Type ℓ′)
→ ⦃ P ⁇ ⦄ → ({_ : P} → X) → ({_ : ¬ P} → X) → X
ifᵈ P then t else f with ¿ P ¿
... | yes p = t {p}
... | no ¬p = f {¬p}
 
instance
import Data.Sum.Relation.Unary.All as ⊎; open ⊎ using (inj₁; inj₂)
 
Dec-⊎All : ⦃ P ⁇¹ ⦄ → ⦃ Q ⁇¹ ⦄ → ⊎.All P Q ⁇¹
Dec-⊎All {P = P} {Q = Q} {x = inj₁ x} .dec = mapDec inj₁ inj₁˘ ¿ P x ¿
where inj₁˘ : ∀ {x} → ⊎.All P Q (inj₁ x) → P x
inj₁˘ (inj₁ x) = x
Dec-⊎All {P = P} {Q = Q} {x = inj₂ y} .dec = mapDec inj₂ inj₂˘ ¿ Q y ¿
where inj₂˘ : ∀ {x} → ⊎.All P Q (inj₂ x) → Q x
inj₂˘ (inj₂ x) = x