141 lines
5.2 KiB
OCaml
141 lines
5.2 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 1996 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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(* Output the DFA tables and its entry points *)
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open Printf
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open Syntax
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open Lexgen
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open Compact
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open Common
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(* To output an array of short ints, encoded as a string *)
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let output_byte oc b =
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output_char oc '\\';
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output_char oc (Char.chr(48 + b / 100));
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output_char oc (Char.chr(48 + (b / 10) mod 10));
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output_char oc (Char.chr(48 + b mod 10))
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let output_array oc v =
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output_string oc " \"";
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for i = 0 to Array.length v - 1 do
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output_byte oc (v.(i) land 0xFF);
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output_byte oc ((v.(i) asr 8) land 0xFF);
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if i land 7 = 7 then output_string oc "\\\n "
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done;
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output_string oc "\""
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let output_byte_array oc v =
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output_string oc " \"";
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for i = 0 to Array.length v - 1 do
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output_byte oc (v.(i) land 0xFF);
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if i land 15 = 15 then output_string oc "\\\n "
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done;
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output_string oc "\""
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(* Output the tables *)
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let output_tables oc tbl =
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output_string oc "let __ocaml_lex_tables = {\n";
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fprintf oc " Lexing.lex_base = \n%a;\n" output_array tbl.tbl_base;
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fprintf oc " Lexing.lex_backtrk = \n%a;\n" output_array tbl.tbl_backtrk;
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fprintf oc " Lexing.lex_default = \n%a;\n" output_array tbl.tbl_default;
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fprintf oc " Lexing.lex_trans = \n%a;\n" output_array tbl.tbl_trans;
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fprintf oc " Lexing.lex_check = \n%a;\n" output_array tbl.tbl_check;
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fprintf oc " Lexing.lex_base_code = \n%a;\n" output_array tbl.tbl_base_code;
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fprintf oc " Lexing.lex_backtrk_code = \n%a;\n"
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output_array tbl.tbl_backtrk_code;
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fprintf oc " Lexing.lex_default_code = \n%a;\n"
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output_array tbl.tbl_default_code;
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fprintf oc " Lexing.lex_trans_code = \n%a;\n"
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output_array tbl.tbl_trans_code;
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fprintf oc " Lexing.lex_check_code = \n%a;\n"
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output_array tbl.tbl_check_code;
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fprintf oc " Lexing.lex_code = \n%a;\n" output_byte_array tbl.tbl_code;
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output_string oc "}\n\n"
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(* Output the entries *)
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let output_entry sourcefile ic oc oci e =
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let init_num, init_moves = e.auto_initial_state in
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fprintf oc "%s %alexbuf =\n\
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%a%a __ocaml_lex_%s_rec %alexbuf %d\n"
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e.auto_name
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output_args e.auto_args
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(fun oc x ->
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if x > 0 then
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fprintf oc "lexbuf.Lexing.lex_mem <- Array.create %d (-1) ; " x)
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e.auto_mem_size
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(output_memory_actions " ") init_moves
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e.auto_name
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output_args e.auto_args
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init_num;
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fprintf oc "and __ocaml_lex_%s_rec %alexbuf __ocaml_lex_state =\n"
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e.auto_name output_args e.auto_args ;
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fprintf oc " match Lexing.%sengine"
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(if e.auto_mem_size == 0 then "" else "new_");
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fprintf oc " __ocaml_lex_tables __ocaml_lex_state lexbuf with\n ";
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List.iter
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(fun (num, env, loc) ->
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fprintf oc " | ";
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fprintf oc "%d ->\n" num;
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output_env sourcefile ic oc oci env;
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copy_chunk sourcefile ic oc oci loc true;
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fprintf oc "\n")
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e.auto_actions;
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fprintf oc " | __ocaml_lex_state -> lexbuf.Lexing.refill_buff lexbuf; \
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__ocaml_lex_%s_rec %alexbuf __ocaml_lex_state\n\n"
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e.auto_name output_args e.auto_args
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(* Main output function *)
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exception Table_overflow
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let output_lexdef sourcefile ic oc oci header tables entry_points trailer =
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if not !Common.quiet_mode then
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Printf.printf "%d states, %d transitions, table size %d bytes\n"
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(Array.length tables.tbl_base)
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(Array.length tables.tbl_trans)
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(2 * (Array.length tables.tbl_base + Array.length tables.tbl_backtrk +
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Array.length tables.tbl_default + Array.length tables.tbl_trans +
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Array.length tables.tbl_check));
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let size_groups =
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(2 * (Array.length tables.tbl_base_code +
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Array.length tables.tbl_backtrk_code +
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Array.length tables.tbl_default_code +
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Array.length tables.tbl_trans_code +
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Array.length tables.tbl_check_code) +
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Array.length tables.tbl_code) in
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if size_groups > 0 && not !Common.quiet_mode then
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Printf.printf "%d additional bytes used for bindings\n" size_groups ;
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flush stdout;
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if Array.length tables.tbl_trans > 0x8000 then raise Table_overflow;
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copy_chunk sourcefile ic oc oci header false;
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output_tables oc tables;
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begin match entry_points with
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[] -> ()
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| entry1 :: entries ->
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output_string oc "let rec "; output_entry sourcefile ic oc oci entry1;
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List.iter
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(fun e -> output_string oc "and "; output_entry sourcefile ic oc oci e)
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entries;
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output_string oc ";;\n\n";
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end;
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copy_chunk sourcefile ic oc oci trailer false
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