package coq-core
The Coq Proof Assistant -- Core Binaries and Tools
Install
Dune Dependency
Authors
Maintainers
Sources
coq-8.20.0.tar.gz
md5=66e57ea55275903bef74d5bf36fbe0f1
sha512=1a7eac6e2f58724a3f9d68bbb321e4cfe963ba1a5551b9b011db4b3f559c79be433d810ff262593d753770ee41ea68fbd6a60daa1e2319ea00dff64c8851d70b
doc/src/coq-core.pretyping/evaluable.ml.html
Source file evaluable.ml
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(************************************************************************) (* * The Coq Proof Assistant / The Coq Development Team *) (* v * Copyright INRIA, CNRS and contributors *) (* <O___,, * (see version control and CREDITS file for authors & dates) *) (* \VV/ **************************************************************) (* // * This file is distributed under the terms of the *) (* * GNU Lesser General Public License Version 2.1 *) (* * (see LICENSE file for the text of the license) *) (************************************************************************) (** Evaluable references (whose transparency can be controlled) *) open Names type t = | EvalVarRef of Id.t | EvalConstRef of Constant.t | EvalProjectionRef of Projection.Repr.t let map fvar fcst fprj = function | EvalVarRef v -> EvalVarRef (fvar v) | EvalConstRef c -> EvalConstRef (fcst c) | EvalProjectionRef p -> EvalProjectionRef (fprj p) let equal er1 er2 = er1 == er2 || match er1, er2 with | EvalVarRef v1, EvalVarRef v2 -> Id.equal v1 v2 | EvalConstRef c1, EvalConstRef c2 -> Constant.CanOrd.equal c1 c2 | EvalProjectionRef p1, EvalProjectionRef p2 -> Projection.Repr.CanOrd.equal p1 p2 | _ -> false let to_kevaluable : t -> Conv_oracle.evaluable = fun er -> match er with | EvalVarRef v -> Conv_oracle.EvalVarRef v | EvalConstRef c -> Conv_oracle.EvalConstRef c | EvalProjectionRef p -> Conv_oracle.EvalProjectionRef p
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