(************************************************************************) (* * The Coq Proof Assistant / The Coq Development Team *) (* v * INRIA, CNRS and contributors - Copyright 1999-2018 *) (* ?pl:UState.universe_decl -> goal_kind -> Evd.evar_map -> named_context_val -> EConstr.constr -> ?init_tac:unit Proofview.tactic -> Proof_global.proof_terminator -> unit (** {6 ... } *) (** [cook_proof opacity] turns the current proof (assumed completed) into a constant with its name, kind and possible hook (see [start_proof]); it fails if there is no current proof of if it is not completed; it also tells if the guardness condition has to be inferred. *) val cook_this_proof : Proof_global.proof_object -> (Id.t * (Safe_typing.private_constants Entries.definition_entry * UState.t * goal_kind)) val cook_proof : unit -> (Id.t * (Safe_typing.private_constants Entries.definition_entry * UState.t * goal_kind)) (** {6 ... } *) (** [get_goal_context n] returns the context of the [n]th subgoal of the current focused proof or raises a [UserError] if there is no focused proof or if there is no more subgoals *) val get_goal_context : int -> Evd.evar_map * env (** [get_current_goal_context ()] works as [get_goal_context 1] *) val get_current_goal_context : unit -> Evd.evar_map * env (** [get_current_context ()] returns the context of the current focused goal. If there is no focused goal but there is a proof in progress, it returns the corresponding evar_map. If there is no pending proof then it returns the current global environment and empty evar_map. *) val get_current_context : ?p:Proof.t -> unit -> Evd.evar_map * env (** [current_proof_statement] *) val current_proof_statement : unit -> Id.t * goal_kind * EConstr.types (** {6 ... } *) (** [solve (SelectNth n) tac] applies tactic [tac] to the [n]th subgoal of the current focused proof or raises a [UserError] if no proof is focused or if there is no [n]th subgoal. [solve SelectAll tac] applies [tac] to all subgoals. *) val solve : ?with_end_tac:unit Proofview.tactic -> Goal_select.t -> int option -> unit Proofview.tactic -> Proof.t -> Proof.t * bool (** [by tac] applies tactic [tac] to the 1st subgoal of the current focused proof or raises a UserError if there is no focused proof or if there is no more subgoals. Returns [false] if an unsafe tactic has been used. *) val by : unit Proofview.tactic -> bool (** Option telling if unification heuristics should be used. *) val use_unification_heuristics : unit -> bool (** [instantiate_nth_evar_com n c] instantiate the [n]th undefined existential variable of the current focused proof by [c] or raises a UserError if no proof is focused or if there is no such [n]th existential variable *) val instantiate_nth_evar_com : int -> Constrexpr.constr_expr -> unit (** [build_by_tactic typ tac] returns a term of type [typ] by calling [tac]. The return boolean, if [false] indicates the use of an unsafe tactic. *) val build_constant_by_tactic : Id.t -> UState.t -> named_context_val -> ?goal_kind:goal_kind -> EConstr.types -> unit Proofview.tactic -> Safe_typing.private_constants Entries.definition_entry * bool * UState.t val build_by_tactic : ?side_eff:bool -> env -> UState.t -> ?poly:polymorphic -> EConstr.types -> unit Proofview.tactic -> constr * bool * UState.t val refine_by_tactic : env -> Evd.evar_map -> EConstr.types -> unit Proofview.tactic -> constr * Evd.evar_map (** A variant of the above function that handles open terms as well. Caveat: all effects are purged in the returned term at the end, but other evars solved by side-effects are NOT purged, so that unexpected failures may occur. Ideally all code using this function should be rewritten in the monad. *) (** Declare the default tactic to fill implicit arguments *) val declare_implicit_tactic : unit Proofview.tactic -> unit (** To remove the default tactic *) val clear_implicit_tactic : unit -> unit (* Raise Exit if cannot solve *) val solve_by_implicit_tactic : unit -> Pretyping.inference_hook option