371 lines
13 KiB
OCaml
371 lines
13 KiB
OCaml
(***********************************************************************)
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(* *)
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(* Objective Caml *)
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(* *)
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(* Xavier Leroy, projet Cristal, INRIA Rocquencourt *)
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(* *)
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(* Copyright 1999 Institut National de Recherche en Informatique et *)
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(* en Automatique. All rights reserved. This file is distributed *)
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(* under the terms of the Q Public License version 1.0. *)
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(* *)
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(***********************************************************************)
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(* $Id$ *)
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open Format
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open Location
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open Longident
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open Parsetree
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module StringSet = Set.Make(struct type t = string let compare = compare end)
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(* Collect free module identifiers in the a.s.t. *)
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let free_structure_names = ref StringSet.empty
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let rec addmodule bv lid =
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match lid with
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Lident s ->
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if not (StringSet.mem s bv)
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then free_structure_names := StringSet.add s !free_structure_names
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| Ldot(l, s) -> addmodule bv l
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| Lapply(l1, l2) -> addmodule bv l1; addmodule bv l2
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let add bv lid =
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match lid with
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Ldot(l, s) -> addmodule bv l
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| _ -> ()
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let rec add_type bv ty =
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match ty.ptyp_desc with
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Ptyp_any -> ()
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| Ptyp_var v -> ()
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| Ptyp_arrow(_, t1, t2) -> add_type bv t1; add_type bv t2
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| Ptyp_tuple tl -> List.iter (add_type bv) tl
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| Ptyp_constr(c, tl) -> add bv c; List.iter (add_type bv) tl
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| Ptyp_object fl -> List.iter (add_field_type bv) fl
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| Ptyp_class(c, tl, _) -> add bv c; List.iter (add_type bv) tl
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| Ptyp_alias(t, s) -> add_type bv t
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| Ptyp_variant(fl, _, _) ->
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List.iter (fun (_,_,stl) -> List.iter (add_type bv) stl) fl
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and add_field_type bv ft =
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match ft.pfield_desc with
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Pfield(name, ty) -> add_type bv ty
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| Pfield_var -> ()
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let add_opt add_fn bv = function
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None -> ()
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| Some x -> add_fn bv x
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let add_type_declaration bv td =
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List.iter
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(fun (ty1, ty2, _) -> add_type bv ty1; add_type bv ty2)
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td.ptype_cstrs;
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add_opt add_type bv td.ptype_manifest;
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match td.ptype_kind with
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Ptype_abstract -> ()
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| Ptype_variant cstrs ->
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List.iter (fun (c, args) -> List.iter (add_type bv) args) cstrs
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| Ptype_record lbls ->
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List.iter (fun (l, mut, ty) -> add_type bv ty) lbls
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let rec add_class_type bv cty =
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match cty.pcty_desc with
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Pcty_constr(l, tyl) ->
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add bv l; List.iter (add_type bv) tyl
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| Pcty_signature (ty, fieldl) ->
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add_type bv ty;
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List.iter (add_class_type_field bv) fieldl
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| Pcty_fun(_, ty1, cty2) ->
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add_type bv ty1; add_class_type bv cty2
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and add_class_type_field bv = function
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Pctf_inher cty -> add_class_type bv cty
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| Pctf_val(_, _, oty, _) -> add_opt add_type bv oty
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| Pctf_virt(_, _, ty, _) -> add_type bv ty
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| Pctf_meth(_, _, ty, _) -> add_type bv ty
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| Pctf_cstr(ty1, ty2, _) -> add_type bv ty1; add_type bv ty2
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let add_class_description bv infos =
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add_class_type bv infos.pci_expr
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let add_class_type_declaration = add_class_description
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let rec add_pattern bv pat =
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match pat.ppat_desc with
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Ppat_any -> ()
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| Ppat_var _ -> ()
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| Ppat_alias(p, _) -> add_pattern bv p
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| Ppat_constant _ -> ()
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| Ppat_tuple pl -> List.iter (add_pattern bv) pl
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| Ppat_construct(c, op, _) -> add bv c; add_opt add_pattern bv op
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| Ppat_record pl -> List.iter (fun (_, p) -> add_pattern bv p) pl
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| Ppat_array pl -> List.iter (add_pattern bv) pl
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| Ppat_or(p1, p2) -> add_pattern bv p1; add_pattern bv p2
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| Ppat_constraint(p, ty) -> add_pattern bv p; add_type bv ty
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| Ppat_variant(_, op) -> add_opt add_pattern bv op
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| Ppat_type (li) -> add bv li
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let rec add_expr bv exp =
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match exp.pexp_desc with
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Pexp_ident l -> add bv l
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| Pexp_constant _ -> ()
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| Pexp_let(_, pel, e) -> add_pat_expr_list bv pel; add_expr bv e
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| Pexp_function (_, _, pel) -> add_pat_expr_list bv pel
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| Pexp_apply(e, el) ->
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add_expr bv e; List.iter (fun (_,e) -> add_expr bv e) el
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| Pexp_match(e, pel) -> add_expr bv e; add_pat_expr_list bv pel
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| Pexp_try(e, pel) -> add_expr bv e; add_pat_expr_list bv pel
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| Pexp_tuple el -> List.iter (add_expr bv) el
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| Pexp_construct(c, opte, _) -> add bv c; add_opt add_expr bv opte
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| Pexp_variant(_, opte) -> add_opt add_expr bv opte
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| Pexp_record(lblel, opte) ->
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List.iter (fun (lbl, e) -> add_expr bv e) lblel;
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add_opt add_expr bv opte
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| Pexp_field(e, fld) -> add_expr bv e; add bv fld
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| Pexp_setfield(e1, fld, e2) -> add_expr bv e1; add bv fld; add_expr bv e2
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| Pexp_array el -> List.iter (add_expr bv) el
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| Pexp_ifthenelse(e1, e2, opte3) ->
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add_expr bv e1; add_expr bv e2; add_opt add_expr bv opte3
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| Pexp_sequence(e1, e2) -> add_expr bv e1; add_expr bv e2
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| Pexp_while(e1, e2) -> add_expr bv e1; add_expr bv e2
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| Pexp_for(_, e1, e2, _, e3) ->
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add_expr bv e1; add_expr bv e2; add_expr bv e3
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| Pexp_constraint(e1, oty2, oty3) ->
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add_expr bv e1;
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add_opt add_type bv oty2;
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add_opt add_type bv oty3
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| Pexp_when(e1, e2) -> add_expr bv e1; add_expr bv e2
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| Pexp_send(e, m) -> add_expr bv e
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| Pexp_new l -> add bv l
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| Pexp_setinstvar(v, e) -> add_expr bv e
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| Pexp_override sel -> List.iter (fun (s, e) -> add_expr bv e) sel
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| Pexp_letmodule(id, m, e) ->
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add_module bv m; add_expr (StringSet.add id bv) e
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and add_pat_expr_list bv pel =
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List.iter (fun (p, e) -> add_pattern bv p; add_expr bv e) pel
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and add_modtype bv mty =
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match mty.pmty_desc with
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Pmty_ident l -> add bv l
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| Pmty_signature s -> add_signature bv s
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| Pmty_functor(id, mty1, mty2) ->
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add_modtype bv mty1; add_modtype (StringSet.add id bv) mty2
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| Pmty_with(mty, cstrl) ->
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add_modtype bv mty;
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List.iter
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(function (_, Pwith_type td) -> add_type_declaration bv td
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| (_, Pwith_module lid) -> addmodule bv lid)
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cstrl
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and add_signature bv = function
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[] -> ()
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| item :: rem -> add_signature (add_sig_item bv item) rem
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and add_sig_item bv item =
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match item.psig_desc with
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Psig_value(id, vd) ->
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add_type bv vd.pval_type; bv
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| Psig_type dcls ->
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List.iter (fun (id, td) -> add_type_declaration bv td) dcls; bv
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| Psig_exception(id, args) ->
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List.iter (add_type bv) args; bv
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| Psig_module(id, mty) ->
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add_modtype bv mty; StringSet.add id bv
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| Psig_modtype(id, mtyd) ->
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begin match mtyd with
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Pmodtype_abstract -> ()
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| Pmodtype_manifest mty -> add_modtype bv mty
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end;
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bv
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| Psig_open lid ->
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addmodule bv lid; bv
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| Psig_include mty ->
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add_modtype bv mty; bv
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| Psig_class cdl ->
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List.iter (add_class_description bv) cdl; bv
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| Psig_class_type cdtl ->
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List.iter (add_class_type_declaration bv) cdtl; bv
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and add_module bv modl =
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match modl.pmod_desc with
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Pmod_ident l -> addmodule bv l
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| Pmod_structure s -> add_structure bv s
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| Pmod_functor(id, mty, modl) ->
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add_modtype bv mty;
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add_module (StringSet.add id bv) modl
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| Pmod_apply(mod1, mod2) ->
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add_module bv mod1; add_module bv mod2
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| Pmod_constraint(modl, mty) ->
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add_module bv modl; add_modtype bv mty
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and add_structure bv = function
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[] -> ()
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| item :: rem -> add_structure (add_struct_item bv item) rem
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and add_struct_item bv item =
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match item.pstr_desc with
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Pstr_eval e ->
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add_expr bv e; bv
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| Pstr_value(id, pel) ->
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add_pat_expr_list bv pel; bv
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| Pstr_primitive(id, vd) ->
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add_type bv vd.pval_type; bv
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| Pstr_type dcls ->
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List.iter (fun (id, td) -> add_type_declaration bv td) dcls; bv
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| Pstr_exception(id, args) ->
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List.iter (add_type bv) args; bv
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| Pstr_exn_rebind(id, l) ->
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add bv l; bv
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| Pstr_module(id, modl) ->
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add_module bv modl; StringSet.add id bv
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| Pstr_modtype(id, mty) ->
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add_modtype bv mty; bv
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| Pstr_open l ->
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addmodule bv l; bv
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| Pstr_class cdl ->
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List.iter (add_class_declaration bv) cdl; bv
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| Pstr_class_type cdtl ->
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List.iter (add_class_type_declaration bv) cdtl; bv
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and add_class_expr bv ce =
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match ce.pcl_desc with
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Pcl_constr(l, tyl) ->
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add bv l; List.iter (add_type bv) tyl
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| Pcl_structure(pat, fieldl) ->
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add_pattern bv pat; List.iter (add_class_field bv) fieldl
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| Pcl_fun(_, _, pat, ce) ->
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add_pattern bv pat; add_class_expr bv ce
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| Pcl_apply(ce, exprl) ->
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add_class_expr bv ce; List.iter (fun (_,e) -> add_expr bv e) exprl
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| Pcl_let(_, pel, ce) ->
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add_pat_expr_list bv pel; add_class_expr bv ce
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| Pcl_constraint(ce, ct) ->
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add_class_expr bv ce; add_class_type bv ct
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and add_class_field bv = function
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Pcf_inher(ce, _) -> add_class_expr bv ce
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| Pcf_val(_, _, e, _) -> add_expr bv e
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| Pcf_virt(_, _, ty, _) -> add_type bv ty
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| Pcf_meth(_, _, e, _) -> add_expr bv e
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| Pcf_cstr(ty1, ty2, _) -> add_type bv ty1; add_type bv ty2
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| Pcf_let(_, pel, _) -> add_pat_expr_list bv pel
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| Pcf_init e -> add_expr bv e
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and add_class_declaration bv decl =
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add_class_expr bv decl.pci_expr
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(* Print the dependencies *)
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let load_path = ref [""]
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let native_only = ref false
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let find_dependency modname (byt_deps, opt_deps) =
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let name = String.uncapitalize modname in
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try
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let filename = Misc.find_in_path !load_path (name ^ ".mli") in
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let basename = Filename.chop_suffix filename ".mli" in
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((basename ^ ".cmi") :: byt_deps,
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(if Sys.file_exists (basename ^ ".ml")
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then basename ^ ".cmx"
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else basename ^ ".cmi") :: opt_deps)
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with Not_found ->
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try
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let filename = Misc.find_in_path !load_path (name ^ ".ml") in
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let basename = Filename.chop_suffix filename ".ml" in
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((basename ^ (if !native_only then ".cmx" else ".cmo")) :: byt_deps,
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(basename ^ ".cmx") :: opt_deps)
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with Not_found ->
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(byt_deps, opt_deps)
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let (depends_on, escaped_eol) =
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match Sys.os_type with
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| "Unix" | "Win32" -> (": ", "\\\n ")
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| "MacOS" -> ("\196 ", "\182\n ")
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| _ -> assert false
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let print_dependencies target_file deps =
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match deps with
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[] -> ()
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| _ ->
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print_string target_file; print_string depends_on;
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let rec print_items pos = function
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[] -> print_string "\n"
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| dep :: rem ->
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if pos + String.length dep <= 77 then begin
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print_string dep; print_string " ";
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print_items (pos + String.length dep + 1) rem
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end else begin
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print_string escaped_eol; print_string dep; print_string " ";
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print_items (String.length dep + 5) rem
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end in
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print_items (String.length target_file + 2) deps
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(* Process one file *)
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let error_occurred = ref false
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let file_dependencies source_file =
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Location.input_name := source_file;
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if Sys.file_exists source_file then begin
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try
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free_structure_names := StringSet.empty;
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let ic = open_in source_file in
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try
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let lb = Lexing.from_channel ic in
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if Filename.check_suffix source_file ".ml" then begin
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add_structure StringSet.empty (Parse.implementation lb);
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let basename = Filename.chop_suffix source_file ".ml" in
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let init_deps =
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if Sys.file_exists (basename ^ ".mli")
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then let cmi_name = basename ^ ".cmi" in ([cmi_name], [cmi_name])
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else ([], []) in
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let (byt_deps, opt_deps) =
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StringSet.fold find_dependency !free_structure_names init_deps in
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print_dependencies (basename ^ ".cmo") byt_deps;
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print_dependencies (basename ^ ".cmx") opt_deps
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end else
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if Filename.check_suffix source_file ".mli" then begin
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add_signature StringSet.empty (Parse.interface lb);
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let basename = Filename.chop_suffix source_file ".mli" in
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let (byt_deps, opt_deps) =
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StringSet.fold find_dependency !free_structure_names ([], []) in
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print_dependencies (basename ^ ".cmi") byt_deps
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end else
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();
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close_in ic
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with x ->
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close_in ic; raise x
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with x ->
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let report_err = function
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| Lexer.Error(err, start, stop) ->
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fprintf Format.err_formatter "@[%a%a@]@."
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Location.print {loc_start = start; loc_end = stop; loc_ghost = false}
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Lexer.report_error err
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| Syntaxerr.Error err ->
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fprintf Format.err_formatter "@[%a@]@."
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Syntaxerr.report_error err
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| Sys_error msg ->
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fprintf Format.err_formatter "@[I/O error:@ %s@]@." msg
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| x -> raise x in
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error_occurred := true;
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report_err x
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end
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(* Entry point *)
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let usage = "Usage: ocamldep [-I <dir>] [-native] <files>"
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let _ =
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Clflags.classic := false;
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Arg.parse [
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"-I", Arg.String(fun dir -> load_path := !load_path @ [dir]),
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"<dir> Add <dir> to the list of include directories";
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"-native", Arg.Set native_only,
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" Generate dependencies for a pure native-code project (no .cmo files)"
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] file_dependencies usage;
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exit (if !error_occurred then 2 else 0)
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