Source file uniq_resolve.ml
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let src = Logs.Src.create "uniq.resolve"
module Log = (val Logs.src_log src : Logs.LOG)
module Digest = Uniq_digest
module Info = Uniq_info
type _ Effect.t +=
| Choose : Modname.t * Info.t list -> Info.t Effect.t
| Conflict : Digest.t * Info.t * Info.t -> Info.t Effect.t
let conflict crc t t' = Effect.perform (Conflict (crc, t, t'))
let by_crc gamma =
let add u m crc =
match Digest.Map.find_opt crc m with
| None -> Digest.Map.add crc u m
| Some v -> (
match (Info.is_a_library u, Info.is_a_library v) with
| true, false -> Digest.Map.add crc u m
| false, true -> Digest.Map.add crc v m
| _ ->
if Info.is_a_cmi u && Info.is_a_cmi v then Digest.Map.add crc u m
else
let t = conflict crc u v in
Digest.Map.add crc t m)
in
let fold m t =
List.filter_map snd (Info.exports t) |> List.fold_left (add t) m
in
List.fold_left fold Digest.Map.empty gamma
let choose modname vs =
Log.debug (fun m ->
m "choose %a from: @[<hov>%a@]" Modname.pp modname
Fmt.(list ~sep:(any ";@.") Info.pp)
vs);
match List.filter Info.is_a_library vs with
| [] -> Effect.perform (Choose (modname, vs))
| [ v ] -> v
| ws -> (
match List.filter Info.is_native ws with
| [] -> Effect.perform (Choose (modname, vs))
| [ w ] -> w
| _ -> Effect.perform (Choose (modname, vs)))
let flip f y x = f x y
let ( $ ) f x = f x
let exports m v =
let fn (m', _) =
match Uniq_info.Path.to_list m' with
| [ m' ] -> Modname.compare m m' = 0
| _ -> false
in
List.exists fn (Info.exports v)
let qualify_by_crc gamma =
let by_crc = by_crc gamma in
let qualify k (by_modname, t) (modname, crc) =
Log.debug (fun m ->
m "search %a for %a"
Fmt.(option ~none:(any "<none>") Digest.pp)
crc Info.pp t);
match Stdlib.Option.bind crc (flip $ Digest.Map.find_opt $ by_crc) with
| None -> (by_modname, t)
| Some v when exports modname v ->
let by_modname =
match k with
| `Impl ->
(fst by_modname, Modname.Map.add modname [ v ] (snd by_modname))
| `Intf ->
(Modname.Map.add modname [ v ] (fst by_modname), snd by_modname)
in
let location = Info.location v in
let t = Info.qualify t ~location ?crc k modname in
(by_modname, t)
| Some _v ->
Logs.err (fun m -> m "%a => %a" Modname.pp modname Info.pp _v);
assert false
in
let fold (by_modname, ts) t =
(by_modname, t)
|> (flip $ List.fold_left (qualify `Intf) $ Info.intfs_imported t)
|> (flip $ List.fold_left (qualify `Impl) $ Info.impls_imported t)
|> fun (by_modname, t) -> (by_modname, t :: ts)
in
List.fold_left fold (Modname.Map.(empty, empty), []) gamma
let complete_by_modname by_modname gamma =
let add t m (modname, _crc) =
match Modname.Map.find_opt modname m with
| Some [ t' ] when Stdlib.Option.is_some (Info.crc_of t' modname) -> m
| None -> Modname.Map.add modname [ t ] m
| Some ts -> Modname.Map.add modname (t :: ts) m
in
let fold (intfs, impls) t =
match Info.kind t with
| `Impl -> (intfs, List.fold_left (add t) impls t.Info.exports)
| `Intf -> (List.fold_left (add t) intfs t.Info.exports, impls)
in
List.fold_left fold by_modname gamma |> fun (intfs, impls) ->
let only _ = function [ t ] -> Some t | _ -> None in
let restricted_intfs = Modname.Map.filter_map only intfs in
let restricted_impls = Modname.Map.filter_map only impls in
((restricted_intfs, restricted_impls), (intfs, impls))
let qualify_objects gamma =
let by_modname, gamma = qualify_by_crc gamma in
let restricted, extended = complete_by_modname by_modname gamma in
let qualify k (gamma, t) (modname, _crc) =
Log.debug (fun m -> m "search %a for %a" Modname.pp modname Info.pp t);
let restricted, extended =
match k with
| `Intf -> (fst gamma, fst extended)
| `Impl -> (snd gamma, snd extended)
in
let mr = Modname.Map.find_opt modname restricted
and me = Modname.Map.find_opt modname extended in
match (mr, me) with
| None, None -> (gamma, t)
| Some v, _ ->
let location = Info.location v in
let crc = Info.crc_of v modname in
(gamma, Info.qualify t ~location ?crc k modname)
| None, Some vs ->
let v = choose modname vs in
let location = Info.location v in
let crc = Info.crc_of v modname in
let gamma =
match k with
| `Intf -> (Modname.Map.add modname v (fst gamma), snd gamma)
| `Impl -> (fst gamma, Modname.Map.add modname v (snd gamma))
in
(gamma, Info.qualify t ~location ?crc k modname)
in
let is_none = Stdlib.Option.is_none in
let fold (gamma, ts) t =
let unqualified_intfs =
List.filter (Fun.compose is_none snd) (Info.intfs_imported t)
in
let unqualified_impls =
List.filter (Fun.compose is_none snd) (Info.impls_imported t)
in
(gamma, t)
|> (flip $ List.fold_left (qualify `Intf) $ unqualified_intfs)
|> (flip $ List.fold_left (qualify `Impl) $ unqualified_impls)
|> fun (by_modname, t) -> (by_modname, t :: ts)
in
List.fold_left fold (restricted, []) gamma |> snd
module Src = struct
type directory = { recurse: bool; location: Fpath.t; exclude: Fpath.t list }
type t = [ `File of Fpath.t | `Sources of directory | `Objects of directory ]
let pp ppf = function
| `File v -> Fpath.pp ppf v
| `Sources { recurse= true; location; _ } ->
Fmt.pf ppf "Y(%a:*.{ml,mli,cmi,cmo,cmx,cma,cmxa})" Fpath.pp location
| `Sources { recurse= false; location; _ } ->
Fmt.pf ppf "(%a:*.{cmi,cmo,cmx,cma,cmxa})" Fpath.pp location
| `Objects { recurse= true; location; _ } ->
Fmt.pf ppf "Y(%a:*.{cmi,cmo,cmx,cma,cmxa})" Fpath.pp location
| `Objects { recurse= false; location; _ } ->
Fmt.pf ppf "(%a:*.{cmi,cmo,cmx,cma,cmxa})" Fpath.pp location
let file location =
if
Fpath.is_file_path location = false
|| Sys.file_exists (Fpath.to_string location) = false
|| Sys.is_directory (Fpath.to_string location) = true
then Fmt.invalid_arg "%a is not a file" Fpath.pp location
else
let sources = [ ".ml"; ".mli" ] in
let objects = [ ".cmi" ] in
if Fpath.mem_ext sources location then `File location
else if Fpath.mem_ext objects location then
let is_cmi ic () =
match Misc.Magic_number.read_info ic with
| Ok { Misc.Magic_number.kind= Cmi; _ } -> true
| _ | (exception _) -> false
in
match Bos.OS.File.with_ic location is_cmi () with
| Ok true -> `File location
| Ok false | Error _ ->
Fmt.invalid_arg "Invalid .cmi file: %a" Fpath.pp location
else Fmt.invalid_arg "Invalid extension of %a" Fpath.pp location
let sources ?(recurse = true) ?(exclude = []) location =
if
Fpath.is_dir_path location = false
|| Sys.file_exists (Fpath.to_string location) = false
|| Sys.is_directory (Fpath.to_string location) = false
then Fmt.invalid_arg "%a is not a directory" Fpath.pp location
else `Sources { recurse; location; exclude }
let objects ?(recurse = false) ?(exclude = []) location =
if
Fpath.is_dir_path location = false
|| Sys.file_exists (Fpath.to_string location) = false
|| Sys.is_directory (Fpath.to_string location) = false
then Fmt.invalid_arg "%a is not a directory" Fpath.pp location
else `Objects { recurse; location; exclude }
end
open Bos
let is_excluded exclude path =
let fn x =
let x_as_dir = Fpath.to_dir_path x in
let path_as_dir = Fpath.to_dir_path path in
Fpath.equal x path
|| Fpath.equal x_as_dir path_as_dir
|| Fpath.is_prefix x_as_dir path_as_dir
in
List.exists fn exclude
let traverse_with ~recurse ~exclude location =
if recurse then `Sat (fun p -> Ok (not (is_excluded exclude p)))
else `Sat (fun p -> Ok (Fpath.equal location p))
let sources_to_locations (`Sources { Src.recurse; location; exclude }) =
let traverse = traverse_with ~recurse ~exclude location in
let elements =
let sources = [ ".ml"; ".mli"; ".cmo"; ".cmi"; ".cma"; ".cmx"; "cmxa" ] in
let fn location =
let base = Fpath.basename (Fpath.rem_ext location) in
Ok
(Fpath.mem_ext sources location
&& (not (String.contains base '.'))
&& not (is_excluded exclude location))
in
`Sat fn
in
OS.Path.fold ~dotfiles:true ~elements ~traverse List.cons [] [ location ]
let objects_to_locations (`Objects { Src.recurse; location; exclude }) =
let traverse = traverse_with ~recurse ~exclude location in
let elements =
let sources = [ ".cmo"; ".cma"; ".cmx"; ".cmxa"; ".cmi" ] in
let fn location =
Ok (Fpath.mem_ext sources location && not (is_excluded exclude location))
in
`Sat fn
in
OS.Path.fold ~dotfiles:true ~elements ~traverse List.cons [] [ location ]
let to_locations = function
| `File location -> Ok [ location ]
| `Sources location -> sources_to_locations (`Sources location)
| `Objects location -> objects_to_locations (`Objects location)
exception No_common_prefix of Fpath.t list
let no_common_prefix paths = raise (No_common_prefix paths)
let common_path paths =
let fold prefix p =
match Fpath.find_prefix prefix p with
| Some prefix' ->
if Fpath.compare prefix' prefix < 0 then prefix' else prefix
| None -> no_common_prefix paths
in
match paths with
| [ path ] -> fst (Fpath.split_base path)
| prefix :: paths -> List.fold_left fold prefix paths
| [] -> assert false
let from_sources ~stdlib ~cmis = function
| [] -> []
| sources ->
let current = common_path sources in
let sources = List.rev_append sources (List.map Info.location cmis) in
let sources =
List.map
begin fun p ->
Stdlib.Option.value ~default:p Fpath.(rem_prefix current p)
end
sources
in
let sources =
List.map (Fun.compose Unitname.modulize Fpath.to_string) sources
in
let sources = List.map Unitname.filepath sources in
let { Comp_unit.ml; Comp_unit.mli } =
Uniq_ml.run_into ~stdlib ~current sources
in
List.map
begin fun u ->
let intfs, impls =
Comp_unit.deps u
|> Deps.all
|> List.fold_left Info.to_elt ([], [])
in
let location =
Fpath.v (Namespaced.filepath u.Comp_unit.src.Pkg.file)
in
let name = Unitname.modulize (Fpath.to_string location) in
assert (
Unitname.modname name = Namespaced.module_name u.Comp_unit.path);
let kind =
match Support.extension (Fpath.to_string location) with
| "ml" -> M2l.Structure
| "mli" | "cmi" -> M2l.Signature
| _ -> assert false
in
let format =
match kind with
| M2l.Structure -> Info.Format (Ml, u)
| M2l.Signature -> Info.Format (Mli, u)
in
let version = None in
let exports = [ (Unitname.modname name, None) ] in
let modules = Uniq_info.Path.Set.empty in
{ Info.name; version; modules; exports; intfs; impls; format }
end
(List.rev_append ml mli)
|> List.filter (Fun.negate Info.is_a_cmi)
let ( let* ) = Result.bind
let failwith_error_msg = function Ok v -> v | Error (`Msg msg) -> failwith msg
let is_stdlib t =
let name = Modname.to_string (Info.modname t) in
String.equal name "Stdlib"
|| (String.length name > 8 && String.sub name 0 8 = "Stdlib__")
|| (String.length name > 11 && String.sub name 0 11 = "Camlinternal")
|| String.equal name "Std_exit"
let resolve_choose modname vs =
let ( let* ) x fn = match x with None -> fn () | Some v -> Some v in
let pick =
let* () = List.find_opt Info.is_a_cmi vs in
let* () = List.find_opt Info.is_a_library vs in
let* () = List.find_opt Info.is_native vs in
Some (List.hd vs)
in
let pick = Stdlib.Option.get pick in
Log.warn (fun m ->
m "Ambiguous module %a; picking %a among @[<hov>%a@]" Modname.pp modname
Info.pp pick
Fmt.(Dump.list Info.pp)
vs);
pick
let resolve_conflict crc u v =
let pick =
if Info.is_a_library u then u
else if Info.is_a_library v then v
else if Info.is_a_cmi u then u
else if Info.is_a_cmi v then v
else u
in
Log.warn (fun m ->
m "Conflict on %a between %a and %a; keeping %a" Digest.pp crc Info.pp u
Info.pp v Info.pp pick);
pick
let with_resolver fn =
let open Effect.Deep in
let retc = Fun.id
and exnc = raise
and effc (type a) (eff : a Effect.t) =
match eff with
| Choose (modname, vs) ->
Some
(fun (k : (a, _) continuation) ->
continue k (resolve_choose modname vs))
| Conflict (crc, u, v) ->
Some
(fun (k : (a, _) continuation) ->
continue k (resolve_conflict crc u v))
| _ -> None
in
match_with fn () { retc; exnc; effc }
let qualify ?(stdlib = true) files =
let fn0 location =
OS.File.with_ic location @@ fun ic () ->
match Misc.Magic_number.read_info ic with
| Error _ -> Ok (Either.Right location)
| Ok info ->
let* v = Info.from_object location info ic in
Ok (Either.Left v)
in
let fn0 loc = Result.join (fn0 loc ()) |> failwith_error_msg in
let fn1 () =
let objects, sources = List.partition_map fn0 files in
let objects = qualify_objects objects in
let cmis, _ = List.partition Info.is_a_cmi objects in
let cmis = List.filter (Fun.negate is_stdlib) cmis in
let sources = from_sources ~stdlib ~cmis sources in
List.rev_append objects sources
in
with_resolver fn1
let qualify ?(stdlib = true) lst =
let fn acc x =
let* loc = to_locations x in
let* acc = acc in
Ok (loc :: acc)
in
let* locations = List.fold_left fn (Ok []) lst in
let locations = List.concat locations in
try Ok (qualify ~stdlib locations) with Failure msg -> Error (`Msg msg)