Source file library.ml
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open Pp
open CErrors
open Util
open Names
open Libobject
let raw_extern_library f =
ObjFile.open_out ~file:f
let raw_intern_library f =
System.with_magic_number_check
(fun file -> ObjFile.open_in ~file) f
(** Serialized objects loaded on-the-fly *)
exception Faulty of string
module Delayed :
sig
type 'a delayed
val in_delayed : string -> ObjFile.in_handle -> segment:'a ObjFile.id -> 'a delayed * Digest.t
val fetch_delayed : 'a delayed -> 'a
end =
struct
type 'a delayed = {
del_file : string;
del_off : int64;
del_digest : Digest.t;
}
let in_delayed f ch ~segment =
let seg = ObjFile.get_segment ch ~segment in
let digest = seg.ObjFile.hash in
{ del_file = f; del_digest = digest; del_off = seg.ObjFile.pos; }, digest
(** Fetching a table of opaque terms at position [pos] in file [f],
expecting to find first a copy of [digest]. *)
let fetch_delayed del =
let { del_digest = digest; del_file = f; del_off = pos; } = del in
let ch = open_in_bin f in
let obj, digest' =
try
let () = LargeFile.seek_in ch pos in
let obj = System.marshal_in f ch in
let digest' = Digest.input ch in
obj, digest'
with e -> close_in ch; raise e
in
close_in ch;
if not (String.equal digest digest') then raise (Faulty f);
obj
end
open Delayed
type compilation_unit_name = DirPath.t
type library_disk = {
md_compiled : Safe_typing.compiled_library;
md_syntax_objects : Declaremods.library_objects;
md_objects : Declaremods.library_objects;
}
type summary_disk = {
md_name : compilation_unit_name;
md_deps : (compilation_unit_name * Safe_typing.vodigest) array;
md_ocaml : string;
md_info : Library_info.t list;
}
type library_t = {
library_name : compilation_unit_name;
library_data : library_disk;
library_deps : (compilation_unit_name * Safe_typing.vodigest) array;
library_digests : Safe_typing.vodigest;
library_extra_univs : Univ.ContextSet.t;
library_info : Library_info.t list;
}
type library_summary = {
libsum_name : compilation_unit_name;
libsum_digests : Safe_typing.vodigest;
libsum_info : Library_info.t list;
}
let libraries_table : library_summary DPmap.t ref =
Summary.ref DPmap.empty ~stage:Summary.Stage.Synterp ~name:"LIBRARY"
let libraries_filename_table = ref DPmap.empty
let libraries_loaded_list = Summary.ref [] ~stage:Summary.Stage.Synterp ~name:"LIBRARY-LOAD"
let loaded_native_libraries = Summary.ref DPset.empty ~stage:Summary.Stage.Interp ~name:"NATIVE-LIBRARY-LOAD"
let find_library dir =
DPmap.find dir !libraries_table
let try_find_library dir =
try find_library dir
with Not_found ->
user_err
(str "Unknown library " ++ DirPath.print dir ++ str ".")
let register_library_filename dir f =
libraries_filename_table :=
DPmap.add dir f !libraries_filename_table
let library_full_filename dir =
try DPmap.find dir !libraries_filename_table
with Not_found -> "<unavailable filename>"
let library_is_loaded dir =
try let _ = find_library dir in true
with Not_found -> false
let register_loaded_library m =
let libname = m.libsum_name in
let rec aux = function
| [] -> [libname]
| m'::_ as l when DirPath.equal m' libname -> l
| m'::l' -> m' :: aux l' in
libraries_loaded_list := aux !libraries_loaded_list;
libraries_table := DPmap.add libname m !libraries_table
let register_native_library libname =
if (Global.typing_flags ()).enable_native_compiler
&& not (DPset.mem libname !loaded_native_libraries) then begin
let dirname = Filename.dirname (library_full_filename libname) in
loaded_native_libraries := DPset.add libname !loaded_native_libraries;
Nativelib.enable_library dirname libname
end
let loaded_libraries () = !libraries_loaded_list
(** Delayed / available tables of opaque terms *)
type table_status =
| ToFetch of Opaques.opaque_disk delayed
| Fetched of Opaques.opaque_disk
let opaque_tables =
ref (DPmap.empty : table_status DPmap.t)
let add_opaque_table dp st =
opaque_tables := DPmap.add dp st !opaque_tables
let access_table what tables dp i =
let t = match DPmap.find dp !tables with
| Fetched t -> t
| ToFetch f ->
let dir_path = Names.DirPath.to_string dp in
Flags.if_verbose Feedback.msg_info (str"Fetching " ++ str what++str" from disk for " ++ str dir_path);
let t =
try fetch_delayed f
with Faulty f ->
user_err
(str "The file " ++ str f ++ str " (bound to " ++ str dir_path ++
str ") is corrupted,\ncannot load some " ++
str what ++ str " in it.\n")
in
tables := DPmap.add dp (Fetched t) !tables;
t
in
Opaques.get_opaque_disk i t
let access_opaque_table o =
let (sub, ci, dp, i) = Opaqueproof.repr o in
let ans =
if DirPath.equal dp (Global.current_dirpath ()) then
Opaques.get_current_opaque i
else
let what = "opaque proofs" in
access_table what opaque_tables dp i
in
match ans with
| None -> None
| Some (c, ctx) ->
let (c, ctx) = Discharge.cook_opaque_proofterm ci (c, ctx) in
let c = Mod_subst.(List.fold_right subst_mps sub c) in
Some (c, ctx)
let indirect_accessor = {
Global.access_proof = access_opaque_table;
}
type seg_sum = summary_disk
type seg_lib = library_disk
type seg_univ =
Univ.ContextSet.t * bool
type seg_proofs = Opaques.opaque_disk
let mk_library sd md digests univs =
{
library_name = sd.md_name;
library_data = md;
library_deps = sd.md_deps;
library_digests = digests;
library_extra_univs = univs;
library_info = sd.md_info;
}
let mk_summary m = {
libsum_name = m.library_name;
libsum_digests = m.library_digests;
libsum_info = m.library_info;
}
let mk_intern_library sum lib digest_lib univs digest_univs proofs =
add_opaque_table sum.md_name (ToFetch proofs);
let open Safe_typing in
match univs with
| None -> mk_library sum lib (Dvo_or_vi digest_lib) Univ.ContextSet.empty
| Some (uall,true) ->
mk_library sum lib (Dvivo (digest_lib, digest_univs)) uall
| Some (_,false) ->
mk_library sum lib (Dvo_or_vi digest_lib) Univ.ContextSet.empty
type ('uid, 'doc) tasks = (('uid, 'doc) Stateid.request * bool) list
let summary_seg : seg_sum ObjFile.id = ObjFile.make_id "summary"
let library_seg : seg_lib ObjFile.id = ObjFile.make_id "library"
let universes_seg : seg_univ option ObjFile.id = ObjFile.make_id "universes"
let tasks_seg () : (Opaqueproof.opaque_handle option, 'doc) tasks option ObjFile.id = ObjFile.make_id "tasks"
let opaques_seg : seg_proofs ObjFile.id = ObjFile.make_id "opaques"
let intern_from_file lib_resolver dir =
let f = lib_resolver dir in
Feedback.feedback(Feedback.FileDependency (Some f, DirPath.to_string dir));
let ch = raw_intern_library f in
let lsd, digest_lsd = ObjFile.marshal_in_segment ch ~segment:summary_seg in
let lmd, digest_lmd = ObjFile.marshal_in_segment ch ~segment:library_seg in
let univs, digest_u = ObjFile.marshal_in_segment ch ~segment:universes_seg in
let del_opaque, _ = in_delayed f ch ~segment:opaques_seg in
ObjFile.close_in ch;
System.check_caml_version ~caml:lsd.md_ocaml ~file:f;
register_library_filename lsd.md_name f;
if not (DirPath.equal dir lsd.md_name) then
user_err
(str "The file " ++ str f ++ str " contains library" ++ spc () ++
DirPath.print lsd.md_name ++ spc () ++ str "and not library" ++
spc() ++ DirPath.print dir ++ str ".");
Feedback.feedback (Feedback.FileLoaded(DirPath.to_string dir, f));
List.iter (fun info ->
Library_info.warn_library_info ~transitive:true (lsd.md_name,info))
lsd.md_info;
lsd, lmd, digest_lmd, univs, digest_u, del_opaque
let rec intern_library ~intern (needed, contents as acc) dir =
try find_library dir, acc
with Not_found ->
try mk_summary (DPmap.find dir contents), acc
with Not_found ->
let lsd, lmd, digest_lmd, univs, digest_u, del_opaque = intern dir in
let m = mk_intern_library lsd lmd digest_lmd univs digest_u del_opaque in
mk_summary m, intern_library_deps ~intern acc dir m
and intern_library_deps ~intern libs dir m =
let needed, contents =
Array.fold_left (intern_mandatory_library ~intern dir)
libs m.library_deps in
(dir :: needed, DPmap.add dir m contents )
and intern_mandatory_library ~intern caller libs (dir,d) =
let m, libs = intern_library ~intern libs dir in
let digest = m.libsum_digests in
let () = if not (Safe_typing.digest_match ~actual:digest ~required:d) then
let from = library_full_filename caller in
user_err
(str "Compiled library " ++ DirPath.print caller ++
str " (in file " ++ str from ++
str ") makes inconsistent assumptions over library " ++
DirPath.print dir)
in
libs
let rec_intern_library ~lib_resolver libs dir =
let intern dir = intern_from_file lib_resolver dir in
let m, libs = intern_library ~intern libs dir in
List.iter (fun info -> Library_info.warn_library_info (m.libsum_name,info))
m.libsum_info;
libs
let native_name_from_filename f =
let ch = raw_intern_library f in
let lmd, digest_lmd = ObjFile.marshal_in_segment ch ~segment:summary_seg in
Nativecode.mod_uid_of_dirpath lmd.md_name
let register_library m =
let l = m.library_data in
Declaremods.Interp.register_library
m.library_name
l.md_compiled
l.md_objects
m.library_digests
m.library_extra_univs;
register_native_library m.library_name
let register_library_syntax m =
let l = m.library_data in
Declaremods.Synterp.register_library
m.library_name
l.md_syntax_objects;
register_loaded_library (mk_summary m)
let load_require _ needed =
List.iter register_library needed
let cache_require o =
load_require 1 o
let discharge_require o = Some o
type require_obj = library_t list
let in_require : require_obj -> obj =
declare_object
{(default_object "REQUIRE") with
cache_function = cache_require;
load_function = load_require;
open_function = (fun _ _ -> assert false);
discharge_function = discharge_require;
classify_function = (fun o -> Anticipate) }
let load_require_syntax _ needed =
List.iter register_library_syntax needed
let cache_require_syntax o =
load_require_syntax 1 o
let discharge_require_syntax o = Some o
type require_obj_syntax = library_t list
let in_require_syntax : require_obj_syntax -> obj =
declare_object
{(default_object "REQUIRE-SYNTAX") with
object_stage = Summary.Stage.Synterp;
cache_function = cache_require_syntax;
load_function = load_require_syntax;
open_function = (fun _ _ -> assert false);
discharge_function = discharge_require_syntax;
classify_function = (fun o -> Anticipate) }
let warn_require_in_module =
CWarnings.create ~name:"require-in-module" ~category:CWarnings.CoreCategories.fragile
(fun () -> strbrk "Use of “Require” inside a module is fragile." ++ spc() ++
strbrk "It is not recommended to use this functionality in finished proof scripts.")
let require_library_from_dirpath needed =
if Lib.is_module_or_modtype () then warn_require_in_module ();
Lib.add_leaf (in_require needed)
let require_library_syntax_from_dirpath ~lib_resolver modrefl =
let needed, contents = List.fold_left (rec_intern_library ~lib_resolver) ([], DPmap.empty) modrefl in
let needed = List.rev_map (fun dir -> DPmap.find dir contents) needed in
Lib.add_leaf (in_require_syntax needed);
needed
let load_library_todo f =
let ch = raw_intern_library f in
let s0, _ = ObjFile.marshal_in_segment ch ~segment:summary_seg in
let s1, _ = ObjFile.marshal_in_segment ch ~segment:library_seg in
let s2, _ = ObjFile.marshal_in_segment ch ~segment:universes_seg in
let tasks, _ = ObjFile.marshal_in_segment ch ~segment:(tasks_seg ()) in
let s4, _ = ObjFile.marshal_in_segment ch ~segment:opaques_seg in
ObjFile.close_in ch;
System.check_caml_version ~caml:s0.md_ocaml ~file:f;
if tasks = None then user_err (str "Not a .vio file.");
if s2 = None then user_err (str "Not a .vio file.");
if snd (Option.get s2) then user_err (str "Not a .vio file.");
s0, s1, Option.get s2, Option.get tasks, s4
let current_deps () =
let map name =
let m = try_find_library name in
(name, m.libsum_digests)
in
List.map map !libraries_loaded_list
let error_recursively_dependent_library dir =
user_err
(strbrk "Unable to use logical name " ++ DirPath.print dir ++
strbrk " to save current library because" ++
strbrk " it already depends on a library of this name.")
type 'doc todo_proofs =
| ProofsTodoNone
| ProofsTodoSomeEmpty of Future.UUIDSet.t
| ProofsTodoSome of Future.UUIDSet.t * (Future.UUID.t, 'doc) tasks
let save_library_base f sum lib univs tasks proofs =
let ch = raw_extern_library f in
try
ObjFile.marshal_out_segment ch ~segment:summary_seg sum;
ObjFile.marshal_out_segment ch ~segment:library_seg lib;
ObjFile.marshal_out_segment ch ~segment:universes_seg univs;
ObjFile.marshal_out_segment ch ~segment:(tasks_seg ()) tasks;
ObjFile.marshal_out_segment ch ~segment:opaques_seg proofs;
ObjFile.close_out ch
with reraise ->
let reraise = Exninfo.capture reraise in
ObjFile.close_out ch;
Feedback.msg_warning (str "Removed file " ++ str f);
Sys.remove f;
Exninfo.iraise reraise
let save_library_struct ~output_native_objects dir =
let md_compiled, md_objects, md_syntax_objects, ast, info =
Declaremods.end_library ~output_native_objects dir in
let sd =
{ md_name = dir
; md_deps = Array.of_list (current_deps ())
; md_ocaml = Coq_config.caml_version
; md_info = info
} in
let md =
{ md_compiled
; md_syntax_objects
; md_objects
} in
if Array.exists (fun (d,_) -> DirPath.equal d dir) sd.md_deps then
error_recursively_dependent_library dir;
sd, md, ast
let save_library_to todo_proofs ~output_native_objects dir f =
assert(
let expected_extension = match todo_proofs with
| ProofsTodoNone -> ".vo"
| ProofsTodoSomeEmpty _ -> ".vos"
| ProofsTodoSome _ -> ".vio"
in
Filename.check_suffix f expected_extension);
let except = match todo_proofs with
| ProofsTodoNone -> Future.UUIDSet.empty
| ProofsTodoSomeEmpty except -> except
| ProofsTodoSome (except,l) -> except
in
let () = Opaques.Summary.join ~except () in
let opaque_table, f2t_map = Opaques.dump ~except () in
let () = assert (not (Future.UUIDSet.is_empty except) ||
Safe_typing.is_joined_environment (Global.safe_env ()))
in
let tasks, utab =
match todo_proofs with
| ProofsTodoNone -> None, None
| ProofsTodoSomeEmpty _except ->
None, Some (Univ.ContextSet.empty,false)
| ProofsTodoSome (_except, tasks) ->
let tasks =
List.map Stateid.(fun (r,b) ->
try { r with uuid = Some (Future.UUIDMap.find r.uuid f2t_map) }, b
with Not_found -> assert b; { r with uuid = None }, b)
tasks in
Some tasks,
Some (Univ.ContextSet.empty,false)
in
let sd, md, ast = save_library_struct ~output_native_objects dir in
save_library_base f sd md utab tasks opaque_table;
if output_native_objects then
let fn = Filename.dirname f ^"/"^ Nativecode.mod_uid_of_dirpath dir in
Nativelib.compile_library ast fn
let save_library_raw f sum lib univs proofs =
save_library_base f sum lib (Some univs) None proofs
let get_used_load_paths () =
String.Set.elements
(List.fold_left (fun acc m -> String.Set.add
(Filename.dirname (library_full_filename m)) acc)
String.Set.empty !libraries_loaded_list)
let _ = Nativelib.get_load_paths := get_used_load_paths