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(************************************************************************)
(* v * The Coq Proof Assistant / The Coq Development Team *)
(* <O___,, * INRIA - CNRS - LIX - LRI - PPS - Copyright 1999-2012 *)
(* \VV/ **************************************************************)
(* // * This file is distributed under the terms of the *)
(* * GNU Lesser General Public License Version 2.1 *)
(************************************************************************)
let commands = [
[(* "Abort"; *)
"Add Abstract Ring A Aplus Amult Aone Azero Ainv Aeq T.";
"Add Abstract Semi Ring A Aplus Amult Aone Azero Aeq T.";
"Add Field";
"Add LoadPath";
"Add ML Path";
"Add Morphism";
"Add Printing Constructor";
"Add Printing If";
"Add Printing Let";
"Add Printing Record";
"Add Rec LoadPath";
"Add Rec ML Path";
"Add Ring A Aplus Amult Aone Azero Ainv Aeq T [ c1 ... cn ]. ";
"Add Semi Ring A Aplus Amult Aone Azero Aeq T [ c1 ... cn ].";
"Add Relation";
"Add Setoid";
"Axiom";];
[(* "Back"; *) ];
["Canonical Structure";
"Chapter";
"Coercion";
"Coercion Local";
"CoFixpoint";
"CoInductive";
];
["Declare ML Module";
"Defined.";
"Definition";
"Derive Dependent Inversion";
"Derive Dependent Inversion__clear";
"Derive Inversion";
"Derive Inversion__clear";
];
["End";
"End Silent.";
"Eval";
"Extract Constant";
"Extract Inductive";
"Extraction Inline";
"Extraction Language";
"Extraction NoInline";];
["Fact";
"Fixpoint";
"Focus";];
["Global Variable";
"Goal";
"Grammar";];
["Hint";
"Hint Constructors";
"Hint Extern";
"Hint Immediate";
"Hint Resolve";
"Hint Rewrite";
"Hint Unfold";
"Hypothesis";];
["Identity Coercion";
"Implicit Arguments";
"Inductive";
"Infix";
];
["Lemma";
"Load";
"Load Verbose";
"Local";
"Ltac";
];
["Module";
"Module Type";
"Mutual Inductive";];
["Notation";
"Next Obligation";];
["Opaque";
"Obligations Tactic";];
["Parameter";
"Proof.";
"Program Definition";
"Program Fixpoint";
"Program Lemma";
"Program Theorem";
];
["Qed.";
];
["Read Module";
"Record";
"Variant";
"Remark";
"Remove LoadPath";
"Remove Printing Constructor";
"Remove Printing If";
"Remove Printing Let";
"Remove Printing Record";
"Require";
"Require Export";
"Require Import";
"Reset Extraction Inline";
"Restore State";
];
[ "Save.";
"Scheme";
"Section";
"Set Extraction AutoInline";
"Set Extraction Optimize";
"Set Hyps__limit";
"Set Implicit Arguments";
(*"Set Printing Coercion";
"Set Printing Coercions";
"Set Printing Synth";*)
"Set Printing Wildcard";
"Set Silent.";
"Set Undo";
(*"Show";
"Show Conjectures";
"Show Implicits";
"Show Intro";
"Show Intros";
"Show Programs";
"Show Proof";
"Show Script";
"Show Tree";*)
"Structure";
"Syntactic Definition";
"Syntax";];
[
"Test Printing If";
"Test Printing Let";
"Test Printing Synth";
"Test Printing Wildcard";
"Theorem";
"Time";
"Transparent";];
[(* "Undo"; *)
"Unfocus";
"Unset Extraction AutoInline";
"Unset Extraction Optimize";
"Unset Hyps__limit";
"Unset Implicit Arguments";
(*
"Unset Printing Coercion";
"Unset Printing Coercions";
"Unset Printing Synth"; *)
"Unset Printing Wildcard";
"Unset Silent.";
"Unset Undo";];
["Variable";
"Variables";];
["Write State";];
]
let state_preserving = [
"About";
"Check";
"Eval";
"Eval lazy in";
"Eval vm_compute in";
"Eval compute in";
"Extraction";
"Extraction Library";
"Extraction Module";
"Inspect";
"Locate";
"Obligations";
"Print";
"Print All.";
"Print Classes";
"Print Coercion Paths";
"Print Coercions";
"Print Extraction Inline";
"Print Grammar";
"Print Graph";
"Print Hint";
"Print Hint *";
"Print HintDb";
"Print Implicit";
"Print LoadPath";
"Print ML Modules";
"Print ML Path";
"Print Module";
"Print Module Type";
"Print Modules";
"Print Proof";
"Print Rewrite HintDb";
"Print Setoids";
"Print Scope";
"Print Scopes.";
"Print Section";
"Print Table Printing If.";
"Print Table Printing Let.";
"Print Tables.";
"Print Term";
"Print Visibility";
"Pwd.";
"Recursive Extraction";
"Recursive Extraction Library";
"Search";
"SearchAbout (* deprecated *)";
"SearchHead";
"SearchPattern";
"SearchRewrite";
"Show";
"Show Conjectures";
"Show Existentials";
"Show Implicits";
"Show Intro";
"Show Intros";
"Show Proof";
"Show Script";
"Show Tree";
"Test Printing If";
"Test Printing Let";
"Test Printing Synth";
"Test Printing Wildcard";
"Whelp Hint";
"Whelp Locate";
]
let tactics =
[
[
"abstract";
"absurd";
"apply";
"apply __ with";
"assert";
"assert (__:__)";
"assert (__:=__)";
"assumption";
"auto";
"auto with";
"autorewrite";
];
[
"case";
"case __ with";
"casetype";
"cbv";
"cbv in";
"change";
"change __ in";
"clear";
"clearbody";
"cofix";
"compare";
"compute";
"compute in";
"congruence";
"constructor";
"constructor __ with";
"contradiction";
"cut";
"cutrewrite";
];
[
"decide equality";
"decompose";
"decompose record";
"decompose sum";
"dependent inversion";
"dependent inversion __ with";
"dependent inversion__clear";
"dependent inversion__clear __ with";
"dependent rewrite ->";
"dependent rewrite <-";
"destruct";
"discriminate";
"do";
"double induction";
];
[
"eapply";
"eauto";
"eauto with";
"eexact";
"elim";
"elim __ using";
"elim __ with";
"elimtype";
"exact";
"exists";
];
[
"fail";
"field";
"first";
"firstorder";
"firstorder using";
"firstorder with";
"fix";
"fix __ with";
"fold";
"fold __ in";
"fourier";
"functional induction";
];
[
"generalize";
"generalize dependent";
];
[
"hnf";
];
[
"idtac";
"induction";
"info";
"injection";
"instantiate (__:=__)";
"intro";
"intro after";
"intro __ after";
"intros";
"intros until";
"intuition";
"inversion";
"inversion __ in";
"inversion __ using";
"inversion __ using __ in";
"inversion__clear";
"inversion__clear __ in";
];
[
"jp <n>";
"jp";
];
[
"lapply";
"lazy";
"lazy in";
"left";
];
[
"move __ after";
];
[
"omega";
];
[
"pattern";
"pose";
"pose __:=__)";
"progress";
];
[
"quote";
];
[
"red";
"red in";
"refine";
"reflexivity";
"rename __ into";
"repeat";
"replace __ with";
"rewrite";
"rewrite __ in";
"rewrite <-";
"rewrite <- __ in";
"right";
"ring";
];
[
"set";
"set (__:=__)";
"setoid__replace";
"setoid__rewrite";
"simpl";
"simpl __ in";
"simple destruct";
"simple induction";
"simple inversion";
"simplify__eq";
"solve";
"split";
(* "split__Rabs";
"split__Rmult";
*)
"subst";
"symmetry";
"symmetry in";
];
[
"tauto";
"transitivity";
"trivial";
"try";
];
[
"unfold";
"unfold __ in";
];
]
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