package coq-serapi
Serialization library and protocol for machine interaction with the Coq proof assistant
Install
Dune Dependency
Authors
Maintainers
Sources
coq-serapi-8.20.0.0.20.0.tbz
sha256=ead9382f111ea385008fe9037513ff1f738dd90d8e989b8d1a0c9290963d9afe
sha512=b29103c2d1eb3cf8a33fa9ddf26b5a6c89e7277cd31256589bcae8a89c37a3de7a3c3e7fe5d376358e874d44dc6c60ab96736cbd1037511ab36705e9f40f0ade
doc/src/coq-serapi.serlib/ser_cAst.ml.html
Source file ser_cAst.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) *) (************************************************************************) (************************************************************************) (* SerAPI: Coq interaction protocol with bidirectional serialization *) (************************************************************************) (* Copyright 2016-2019 MINES ParisTech -- License LGPL 2.1+ *) (* Copyright 2019-2023 Inria -- License LGPL 2.1+ *) (* Written by: Emilio J. Gallego Arias and others *) (************************************************************************) open Sexplib.Std module Loc = Ser_loc module L = struct type 'a t = { v : 'a; loc : Loc.t option [@ignore] [@hash.ignore]; } [@@deriving sexp,yojson,hash,compare] end type 'a t = 'a CAst.t = private { v : 'a; loc : Loc.t option; } let t_of_sexp f s = let { L.v ; loc } = L.t_of_sexp f s in CAst.make ?loc:loc v let sexp_of_t f { CAst.v ; loc } = L.sexp_of_t f { L.v ; loc } let of_yojson f json = Ppx_deriving_yojson_runtime.(L.of_yojson f json >|= fun { L.v; loc } -> CAst.make ?loc:loc v) let to_yojson f { CAst.v ; loc } = L.to_yojson f { L.v ; loc } let hash_fold_t f st { CAst.v; loc } = L.hash_fold_t f st { L.v; loc } let compare f { CAst.v = v1; loc = l1 } { CAst.v = v2; loc = l2 } = L.compare f { L.v = v1; loc = l1 } { L.v = v2; loc = l2 } let omit_att = ref false let sexp_of_t f x = if !omit_att then f x.CAst.v else sexp_of_t f x (* let to_yojson f x = if !omit_att then ... *)
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