package uniq
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A library which introspect and infer dependencies via codept, ocamlfind and opam
Install
dune-project
Dependency
Authors
Maintainers
Sources
uniq-0.1.0.tbz
sha256=998588f1053cf03161a4bded6d7f8068c88de497e77fc0bbca81a5234fa444d5
sha512=53d4ee5ad8c01e19a2e1fbda86266768d118f78566b82f0c736338ce2c12258185a5f4dbb90bf0da37a7528098266ec81861bdcfea29e55daa3122a4f3a1daca
doc/src/uniq.clos/uniq_clos.ml.html
Source file uniq_clos.ml
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256module Info = Uniq_info module Meta = Uniq_meta module MSet = Set.Make (Modname) module Archive = struct type t = Meta.archive let compare = Stdlib.compare end module ASet = Set.Make (Archive) type env = { stdlib: Fpath.t option ; predicates: string list ; gamma: Info.t Fpath.Map.t ; roots: Fpath.t list ; pkgs: Meta.package list } type disambiguate = Modname.t -> Meta.Path.t list -> Meta.Path.t type intf = Modname.t * Info.t type impl = Modname.t * Info.t let search_cmis ~roots = let elements path = if Sys.is_directory (Fpath.to_string path) then Ok false else if Fpath.mem_ext [ ".cmi" ] path then Ok true else Ok false in let traverse path = let fn root = Fpath.is_rooted ~root path || Fpath.equal root path in let traverse = List.exists fn roots in Ok traverse in let fn path acc = match Uniq_info.v path with | Ok info when Uniq_info.is_a_cmi info -> Fpath.Map.add path info acc | Ok _ | Error _ -> acc in let err _path _ = Ok () in Bos.OS.Path.fold ~err ~dotfiles:false ~elements:(`Sat elements) ~traverse:(`Sat traverse) fn Fpath.Map.empty roots let env ?cfg roots = let ( let* ) = Result.bind in let stdlib = match cfg with | Some cfg -> Uniq_cfg.get cfg ~key:"standard_library" Uniq_cfg.Value.path | None -> None in let native = match cfg with | Some (where, _) -> let base = Fpath.basename (where :> Fpath.t) in not (String.length base >= 6 && String.sub base 0 6 = "ocamlc") | None -> true in let predicates = if native then [ "native" ] else [ "byte" ] in let* gamma = search_cmis ~roots in let pkgs = Meta.packages_with_archive roots in Ok { stdlib; predicates; gamma; roots; pkgs } let gamma { gamma; _ } = gamma let stdlib { stdlib; _ } = stdlib let close_impls ~resolve intfs impls = let ( let* ) = Result.bind in let key info = Fpath.to_string (Info.location info) in let provided infos = let add_unit set (path, _) = match Info.Path.to_list path with [ m ] -> MSet.add m set | _ -> set in let add_info set info = List.fold_left add_unit set (Info.exports info) in List.fold_left add_info MSet.empty infos in let imported impls = let tbl = Hashtbl.create 0x7ff in let fn info = let impl (m, _) = if not (Hashtbl.mem tbl m) then Hashtbl.add tbl m (m, None) in let intf (m, crc) = Hashtbl.replace tbl m (m, crc) in List.iter impl (Info.impls_imported info); List.iter intf (Info.intfs_imported info) in List.iter fn impls; Hashtbl.fold (fun _ mc acc -> mc :: acc) tbl [] in let seen = Hashtbl.create 0x7ff in List.iter (fun info -> Hashtbl.replace seen (key info) ()) impls; let rec go attempted impls = let known = provided (List.rev_append intfs impls) in let missing = imported impls |> List.filter (fun (m, _) -> (not (MSet.mem m known)) && not (MSet.mem m attempted)) in match missing with | [] -> Ok impls | missing -> let fn acc (m, crc) = let* attempted, added = acc in let attempted = MSet.add m attempted in let* archives = resolve (m, crc) in let archives = List.filter (fun info -> not (Hashtbl.mem seen (key info))) archives in List.iter (fun info -> Hashtbl.replace seen (key info) ()) archives; Ok (attempted, List.rev_append archives added) in let* attempted, added = List.fold_left fn (Ok (attempted, [])) missing in if added = [] then Ok impls else go attempted (List.rev_append added impls) in go MSet.empty impls let their_are_copies = function | [] -> true | witness :: rem -> let e = witness.Info.exports in let rem = List.map (fun info -> info.Info.exports) rem in let fn0 (m, crc) (m', crc') = match (crc, crc') with | Some crc, Some crc' -> Digest.equal crc crc' && Modname.compare m m' = 0 | _, _ -> false in let fn1 e' = try List.for_all2 fn0 e e' with _ -> false in List.for_all fn1 rem let prefer_stdlib ?stdlib solutions = match stdlib with | None -> List.hd solutions | Some dir -> let dir = Fpath.(normalize (to_dir_path dir)) in let in_stdlib info = let where = Info.location info in Fpath.equal dir Fpath.(normalize (to_dir_path (parent where))) in List.find_opt in_stdlib solutions |> Stdlib.Option.value ~default:(List.hd solutions) let resolve ~env:{ stdlib; predicates; gamma; roots; pkgs } ~disambiguate (modname, crc) = let ( let* ) = Result.bind in let matches_crcs crc crc' = match (crc, crc') with | Some a, Some b -> Digest.equal a b | Some _, None | None, Some _ | None, None -> true in let matches info = let fn (m, crc') = Modname.compare modname m = 0 && matches_crcs crc crc' in List.exists fn info.Info.exports in let fn _ info acc = if matches info then info :: acc else acc in let candidates = Fpath.Map.fold fn gamma [] in let cmi = match candidates with | [] -> None | [ info ] -> Some info | _ :: _ as all when their_are_copies all -> Some (prefer_stdlib ?stdlib all) | _ :: _ -> Logs.warn (fun m -> m "Ambiguous implementation dependency %a; skipping" Modname.pp modname); None in match cmi with | None -> Ok [] | Some cmi -> begin let* archive = Meta.from_cmi_to_impl ~roots ~packages:pkgs ?stdlib ~disambiguate (Info.location cmi) in match archive with | None -> Ok [] | Some archive -> Meta.archives_of ~roots ~predicates archive end let impls_from_intfs ~env:{ stdlib; roots; pkgs; predicates; _ } ~disambiguate intfs = let ( let* ) = Result.bind in let* descrs = let fn acc info = let* acc = acc in let* pkg = Meta.from_cmi_to_impl ~roots ~packages:pkgs ?stdlib ~disambiguate (Uniq_info.location info) in Ok ((info, pkg) :: acc) in List.fold_left fn (Ok []) intfs in let archives = let fn acc (_, pkg) = let none = acc and some a = ASet.add a acc in Stdlib.Option.fold ~none ~some pkg in List.fold_left fn ASet.empty descrs |> ASet.elements in let fn acc archive = let* acc = acc in let* infos = Meta.archives_of ~roots ~predicates archive in Ok (List.rev_append infos acc) in List.fold_left fn (Ok []) archives let impls ~env ~disambiguate infos = let ( let* ) = Result.bind in let intfs = List.filter Info.is_a_cmi infos in let* impls = impls_from_intfs ~env ~disambiguate intfs in let resolve = resolve ~env ~disambiguate in close_impls ~resolve intfs impls let verify ~env ~disambiguate infos = let ( let* ) = Result.bind in let intfs = List.filter Info.is_a_cmi infos in let* impls = impls_from_intfs ~env ~disambiguate intfs in let resolve = resolve ~env ~disambiguate in let* impls = close_impls ~resolve intfs impls in let sources = List.filter (Fun.negate Info.is_a_cmi) infos in let names infos = let add_unit set (path, _) = match List.rev (Info.Path.to_list path) with | leaf :: _ -> MSet.add leaf set | [] -> set in let add_info set info = List.fold_left add_unit set (Info.exports info) in List.fold_left add_info MSet.empty infos in let intf_provided = names (List.concat [ sources; intfs; impls ]) in let impl_provided = names (List.rev_append sources impls) in let holes imported_of provided nodes = let tbl = Hashtbl.create 0x7ff in let fn info = let fn (m, _) = if (not (MSet.mem m provided)) && not (Hashtbl.mem tbl m) then Hashtbl.add tbl m (m, info) in List.iter fn (imported_of info) in List.iter fn nodes; Hashtbl.fold (fun _ hole acc -> hole :: acc) tbl [] in let intf_holes = holes Info.intfs_imported intf_provided (List.concat [ sources; intfs; impls ]) in let impl_holes = holes Info.impls_imported impl_provided (List.rev_append sources impls) in Ok (intf_holes, impl_holes)
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