package coq-lsp

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Language Server Protocol native server for Coq

Install

dune-project
 Dependency

Authors

Maintainers

Sources

coq-lsp-0.2.4.9.0.tbz
sha256=b6bf58331589b0bc750c01cc96a607322cf20260e61bd74f64998e04a9b909d3
sha512=b74f88117a180b089f99dc2d0cd867bdeb7aef071fa487334cdd2961ac61b9ba592e7f58c509dd6920ca2708dcc64992944009d4dce504bb5d0e28bb7d963c07

doc/coq-lsp.coq/Coq/State/index.html

Module Coq.StateSource

Sourcetype t
Sourceval compare : t -> t -> int
Sourceval equal : t -> t -> bool
Sourceval hash : t -> int
Sourceval mode : st:t -> Pvernac.proof_mode option
Sourceval parsing : st:t -> Procq.frozen_t
Sourcemodule Proof : sig ... end

Proof states

Sourceval lemmas : st:t -> Proof.t option
Sourceval program : st:t -> Declare.OblState.View.t Names.Id.Map.t
Sourceval in_state : token:Limits.Token.t -> st:t -> f:('a -> 'b) -> 'a -> ('b, Loc.t) Protect.E.t

Execute a command in state st. Unfortunately this can produce anomalies as Coq state setting is imperative, so we need to wrap it in protect.

Sourceval in_stateM : token:Limits.Token.t -> st:t -> f:('a -> ('b, Loc.t) Protect.E.t) -> 'a -> ('b, Loc.t) Protect.E.t

Execute a monadic command in state st.

Sourceval drop_proof : st:t -> t

Drop the top proof from the state

Sourceval drop_all_proofs : st:t -> t

Drop all proofs from the state

Sourceval admit : token:Limits.Token.t -> st:t -> (t, Loc.t) Protect.E.t

Fully admit an ongoing proof

Sourceval admit_goal : token:Limits.Token.t -> st:t -> (t, Loc.t) Protect.E.t

Admit the current sub-goal

Sourceval info_universes : token:Limits.Token.t -> st:t -> (int * int, Loc.t) Protect.E.t

Info about universes

Sourceval marshal_in : in_channel -> t

Extra / interanl

Sourceval marshal_out : out_channel -> t -> unit
Sourceval of_coq : Vernacstate.t -> t
Sourceval to_coq : t -> Vernacstate.t