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Discussed starting at <http://lists.gnu.org/archive/html/bison-patches/2006-07/msg00019.html> and <http://lists.gnu.org/archive/html/help-bison/2006-07/msg00013.html>. Make the skeletons consistent in how they pop the end token and invoke its %destructor. * data/glr.c (yyrecoverSyntaxError, yyparse): Don't pop the start state, which has token number 0, since this would invoke the %destructor for the end token. * data/lalr1.cc (yy::parser::parse): Don't check for the final state until after shifting the end token, or else it won't be popped. * data/yacc.c (yyparse): Likewise. * data/glr.c (yyparse): Clear the lookahead after shifting it even when it's the end token. Upon termination, destroy an unshifted lookahead even when it's the end token. * data/lalr1.cc (yy::parser::parse): Likewise. * data/yacc.c (yyparse): Likewise. * src/reader.c (packgram): Don't check rule 0. This suppresses unused value warnings for the end token when the user gives the end token a %destructor. * tests/actions.at (Printers and Destructors): Test all the above.
638 lines
19 KiB
C
638 lines
19 KiB
C
/* Input parser for Bison
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Copyright (C) 1984, 1986, 1989, 1992, 1998, 2000, 2001, 2002, 2003,
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2005, 2006 Free Software Foundation, Inc.
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This file is part of Bison, the GNU Compiler Compiler.
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Bison is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2, or (at your option)
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any later version.
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Bison is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with Bison; see the file COPYING. If not, write to
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the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
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Boston, MA 02110-1301, USA. */
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#include <config.h>
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#include "system.h"
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#include <assert.h>
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#include <quotearg.h>
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#include "complain.h"
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#include "conflicts.h"
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#include "files.h"
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#include "getargs.h"
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#include "gram.h"
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#include "muscle_tab.h"
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#include "reader.h"
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#include "symlist.h"
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#include "symtab.h"
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#include "scan-gram.h"
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#include "scan-code.h"
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static void check_and_convert_grammar (void);
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static symbol_list *grammar = NULL;
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static bool start_flag = false;
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merger_list *merge_functions;
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/* Was %union seen? */
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bool union_seen = false;
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/* Was a tag seen? */
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bool tag_seen = false;
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/* Should rules have a default precedence? */
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bool default_prec = true;
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/*-----------------------.
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| Set the start symbol. |
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`-----------------------*/
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void
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grammar_start_symbol_set (symbol *sym, location loc)
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{
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if (start_flag)
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complain_at (loc, _("multiple %s declarations"), "%start");
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else
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{
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start_flag = true;
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startsymbol = sym;
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startsymbol_location = loc;
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}
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}
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/*---------------------------------------------------------------------.
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| There are two prologues: one before the first %union and one after. |
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| Augment the one specified by POST. |
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`---------------------------------------------------------------------*/
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void
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prologue_augment (const char *prologue, location loc, bool post)
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{
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struct obstack *oout =
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!post ? &pre_prologue_obstack : &post_prologue_obstack;
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obstack_fgrow1 (oout, "]b4_syncline(%d, [[", loc.start.line);
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/* FIXME: Protection of M4 characters missing here. See
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output.c:escaped_output. */
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MUSCLE_OBSTACK_SGROW (oout,
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quotearg_style (c_quoting_style, loc.start.file));
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obstack_sgrow (oout, "]])[\n");
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obstack_sgrow (oout, prologue);
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}
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/*------------------------------------------------------------------------.
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| Return the merger index for a merging function named NAME. Records the |
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| function, if new, in MERGER_LIST. |
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`------------------------------------------------------------------------*/
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static int
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get_merge_function (uniqstr name)
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{
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merger_list *syms;
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merger_list head;
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int n;
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if (! glr_parser)
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return 0;
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head.next = merge_functions;
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for (syms = &head, n = 1; syms->next; syms = syms->next, n += 1)
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if (UNIQSTR_EQ (name, syms->next->name))
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break;
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if (syms->next == NULL)
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{
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syms->next = xmalloc (sizeof syms->next[0]);
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syms->next->name = uniqstr_new (name);
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/* After all symbol type declarations have been parsed, packgram invokes
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record_merge_function_type to set the type. */
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syms->next->type = NULL;
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syms->next->next = NULL;
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merge_functions = head.next;
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}
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return n;
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}
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/*-------------------------------------------------------------------------.
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| For the existing merging function with index MERGER, record the result |
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| type as TYPE as required by the lhs of the rule whose %merge declaration |
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| is at DECLARATION_LOC. |
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`-------------------------------------------------------------------------*/
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static void
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record_merge_function_type (int merger, uniqstr type, location declaration_loc)
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{
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int merger_find;
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merger_list *merge_function;
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if (merger <= 0)
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return;
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if (type == NULL)
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type = uniqstr_new ("");
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merger_find = 1;
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for (merge_function = merge_functions;
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merge_function != NULL && merger_find != merger;
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merge_function = merge_function->next)
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merger_find += 1;
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assert (merge_function != NULL && merger_find == merger);
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if (merge_function->type != NULL && !UNIQSTR_EQ (merge_function->type, type))
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{
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complain_at (declaration_loc,
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_("result type clash on merge function `%s': <%s> != <%s>"),
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merge_function->name, type, merge_function->type);
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complain_at (merge_function->type_declaration_location,
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_("previous declaration"));
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}
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merge_function->type = uniqstr_new (type);
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merge_function->type_declaration_location = declaration_loc;
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}
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/*--------------------------------------.
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| Free all merge-function definitions. |
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`--------------------------------------*/
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void
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free_merger_functions (void)
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{
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merger_list *L0 = merge_functions;
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while (L0)
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{
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merger_list *L1 = L0->next;
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free (L0);
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L0 = L1;
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}
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}
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/*-------------------------------------------------------------------.
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| Parse the input grammar into a one symbol_list structure. Each |
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| rule is represented by a sequence of symbols: the left hand side |
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| followed by the contents of the right hand side, followed by a |
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| null pointer instead of a symbol to terminate the rule. The next |
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| symbol is the lhs of the following rule. |
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| |
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| All actions are copied out, labelled by the rule number they apply |
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| to. |
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`-------------------------------------------------------------------*/
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/* The (currently) last symbol of GRAMMAR. */
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static symbol_list *grammar_end = NULL;
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/* Append SYM to the grammar. */
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static void
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grammar_symbol_append (symbol *sym, location loc)
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{
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symbol_list *p = symbol_list_new (sym, loc);
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if (grammar_end)
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grammar_end->next = p;
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else
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grammar = p;
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grammar_end = p;
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/* A null SYM stands for an end of rule; it is not an actual
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part of it. */
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if (sym)
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++nritems;
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}
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/* The rule currently being defined, and the previous rule.
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CURRENT_RULE points to the first LHS of the current rule, while
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PREVIOUS_RULE_END points to the *end* of the previous rule (NULL). */
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static symbol_list *current_rule = NULL;
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static symbol_list *previous_rule_end = NULL;
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/*----------------------------------------------.
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| Create a new rule for LHS in to the GRAMMAR. |
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`----------------------------------------------*/
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void
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grammar_current_rule_begin (symbol *lhs, location loc)
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{
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if (!start_flag)
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{
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startsymbol = lhs;
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startsymbol_location = loc;
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start_flag = true;
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}
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/* Start a new rule and record its lhs. */
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++nrules;
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previous_rule_end = grammar_end;
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grammar_symbol_append (lhs, loc);
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current_rule = grammar_end;
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/* Mark the rule's lhs as a nonterminal if not already so. */
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if (lhs->class == unknown_sym)
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{
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lhs->class = nterm_sym;
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lhs->number = nvars;
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++nvars;
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}
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else if (lhs->class == token_sym)
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complain_at (loc, _("rule given for %s, which is a token"), lhs->tag);
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}
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/*----------------------------------------------------------------------.
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| A symbol should be used if it has a destructor, or if it is a |
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| mid-rule symbol (i.e., the generated LHS replacing a mid-rule |
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| action) that was assigned to, as in "exp: { $$ = 1; } { $$ = $1; }". |
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`----------------------------------------------------------------------*/
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static bool
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symbol_should_be_used (symbol_list const *s)
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{
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return (s->sym->destructor
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|| (s->midrule && s->midrule->used));
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}
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/*----------------------------------------------------------------.
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| Check that the rule R is properly defined. For instance, there |
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| should be no type clash on the default action. |
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`----------------------------------------------------------------*/
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static void
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grammar_rule_check (const symbol_list *r)
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{
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/* Type check.
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If there is an action, then there is nothing we can do: the user
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is allowed to shoot herself in the foot.
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Don't worry about the default action if $$ is untyped, since $$'s
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value can't be used. */
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if (!r->action && r->sym->type_name)
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{
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symbol *first_rhs = r->next->sym;
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/* If $$ is being set in default way, report if any type mismatch. */
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if (first_rhs)
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{
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char const *lhs_type = r->sym->type_name;
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const char *rhs_type =
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first_rhs->type_name ? first_rhs->type_name : "";
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if (!UNIQSTR_EQ (lhs_type, rhs_type))
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warn_at (r->location,
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_("type clash on default action: <%s> != <%s>"),
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lhs_type, rhs_type);
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}
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/* Warn if there is no default for $$ but we need one. */
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else
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warn_at (r->location,
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_("empty rule for typed nonterminal, and no action"));
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}
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/* Check that symbol values that should be used are in fact used. */
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{
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symbol_list const *l = r;
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int n = 0;
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for (; l && l->sym; l = l->next, ++n)
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if (! (l->used
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|| !symbol_should_be_used (l)
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/* The default action, $$ = $1, `uses' both. */
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|| (!r->action && (n == 0 || n == 1))))
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{
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if (n)
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warn_at (r->location, _("unused value: $%d"), n);
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else
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warn_at (r->location, _("unset value: $$"));
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}
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}
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}
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/*-------------------------------------.
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| End the currently being grown rule. |
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`-------------------------------------*/
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void
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grammar_current_rule_end (location loc)
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{
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/* Put an empty link in the list to mark the end of this rule */
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grammar_symbol_append (NULL, grammar_end->location);
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current_rule->location = loc;
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}
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/*-------------------------------------------------------------------.
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| The previous action turns out the be a mid-rule action. Attach it |
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| to the current rule, i.e., create a dummy symbol, attach it this |
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| mid-rule action, and append this dummy nonterminal to the current |
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| rule. |
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`-------------------------------------------------------------------*/
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void
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grammar_midrule_action (void)
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{
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/* Since the action was written out with this rule's number, we must
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give the new rule this number by inserting the new rule before
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it. */
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/* Make a DUMMY nonterminal, whose location is that of the midrule
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action. Create the MIDRULE. */
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location dummy_location = current_rule->action_location;
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symbol *dummy = dummy_symbol_get (dummy_location);
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symbol_list *midrule = symbol_list_new (dummy, dummy_location);
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/* Make a new rule, whose body is empty, before the current one, so
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that the action just read can belong to it. */
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++nrules;
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++nritems;
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/* Attach its location and actions to that of the DUMMY. */
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midrule->location = dummy_location;
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midrule->action = current_rule->action;
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midrule->action_location = dummy_location;
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current_rule->action = NULL;
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/* The action has not been translated yet, so $$ use hasn't been
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detected yet. */
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midrule->used = false;
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if (previous_rule_end)
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previous_rule_end->next = midrule;
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else
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grammar = midrule;
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/* End the dummy's rule. */
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midrule->next = symbol_list_new (NULL, dummy_location);
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midrule->next->next = current_rule;
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previous_rule_end = midrule->next;
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/* Insert the dummy nonterminal replacing the midrule action into
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the current rule. Bind it to its dedicated rule. */
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grammar_current_rule_symbol_append (dummy, dummy_location);
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grammar_end->midrule = midrule;
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midrule->midrule_parent_rule = current_rule;
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midrule->midrule_parent_rhs_index = symbol_list_length (current_rule->next);
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}
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/* Set the precedence symbol of the current rule to PRECSYM. */
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void
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grammar_current_rule_prec_set (symbol *precsym, location loc)
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{
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if (current_rule->ruleprec)
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complain_at (loc, _("only one %s allowed per rule"), "%prec");
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current_rule->ruleprec = precsym;
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}
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/* Attach dynamic precedence DPREC to the current rule. */
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void
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grammar_current_rule_dprec_set (int dprec, location loc)
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{
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if (! glr_parser)
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warn_at (loc, _("%s affects only GLR parsers"), "%dprec");
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if (dprec <= 0)
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complain_at (loc, _("%s must be followed by positive number"), "%dprec");
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else if (current_rule->dprec != 0)
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complain_at (loc, _("only one %s allowed per rule"), "%dprec");
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current_rule->dprec = dprec;
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}
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/* Attach a merge function NAME with argument type TYPE to current
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rule. */
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void
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grammar_current_rule_merge_set (uniqstr name, location loc)
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{
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if (! glr_parser)
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warn_at (loc, _("%s affects only GLR parsers"), "%merge");
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if (current_rule->merger != 0)
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complain_at (loc, _("only one %s allowed per rule"), "%merge");
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current_rule->merger = get_merge_function (name);
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current_rule->merger_declaration_location = loc;
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}
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/* Attach SYM to the current rule. If needed, move the previous
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action as a mid-rule action. */
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void
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grammar_current_rule_symbol_append (symbol *sym, location loc)
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{
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if (current_rule->action)
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grammar_midrule_action ();
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grammar_symbol_append (sym, loc);
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}
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/* Attach an ACTION to the current rule. */
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void
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grammar_current_rule_action_append (const char *action, location loc)
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{
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if (current_rule->action)
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grammar_midrule_action ();
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/* After all symbol declarations have been parsed, packgram invokes
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translate_rule_action. */
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current_rule->action = action;
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current_rule->action_location = loc;
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}
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/*---------------------------------------------------------------.
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| Convert the rules into the representation using RRHS, RLHS and |
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| RITEM. |
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`---------------------------------------------------------------*/
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static void
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packgram (void)
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{
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unsigned int itemno = 0;
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rule_number ruleno = 0;
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symbol_list *p = grammar;
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ritem = xnmalloc (nritems + 1, sizeof *ritem);
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/* This sentinel is used by build_relations in gram.c. */
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*ritem++ = 0;
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rules = xnmalloc (nrules, sizeof *rules);
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while (p)
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{
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int rule_length = 0;
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symbol *ruleprec = p->ruleprec;
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record_merge_function_type (p->merger, p->sym->type_name,
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p->merger_declaration_location);
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rules[ruleno].user_number = ruleno;
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rules[ruleno].number = ruleno;
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rules[ruleno].lhs = p->sym;
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rules[ruleno].rhs = ritem + itemno;
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rules[ruleno].prec = NULL;
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rules[ruleno].dprec = p->dprec;
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rules[ruleno].merger = p->merger;
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rules[ruleno].precsym = NULL;
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rules[ruleno].location = p->location;
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rules[ruleno].useful = true;
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rules[ruleno].action = p->action ? translate_rule_action (p) : NULL;
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rules[ruleno].action_location = p->action_location;
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/* If this rule contains midrules, rest assured that
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grammar_midrule_action inserted the midrules into grammar before this
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rule. Thus, the midrule actions have already been scanned in order to
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set `used' flags for this rule's rhs, so grammar_rule_check will work
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properly. */
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/* Don't check the generated rule 0. It has no action, so some rhs
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symbols may appear unused, but the parsing algorithm ensures that
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%destructor's are invoked appropriately. */
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if (p != grammar)
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grammar_rule_check (p);
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for (p = p->next; p && p->sym; p = p->next)
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{
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++rule_length;
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/* Don't allow rule_length == INT_MAX, since that might
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cause confusion with strtol if INT_MAX == LONG_MAX. */
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if (rule_length == INT_MAX)
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fatal_at (rules[ruleno].location, _("rule is too long"));
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/* item_number = symbol_number.
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But the former needs to contain more: negative rule numbers. */
|
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ritem[itemno++] = symbol_number_as_item_number (p->sym->number);
|
||
/* A rule gets by default the precedence and associativity
|
||
of its last token. */
|
||
if (p->sym->class == token_sym && default_prec)
|
||
rules[ruleno].prec = p->sym;
|
||
}
|
||
|
||
/* If this rule has a %prec,
|
||
the specified symbol's precedence replaces the default. */
|
||
if (ruleprec)
|
||
{
|
||
rules[ruleno].precsym = ruleprec;
|
||
rules[ruleno].prec = ruleprec;
|
||
}
|
||
/* An item ends by the rule number (negated). */
|
||
ritem[itemno++] = rule_number_as_item_number (ruleno);
|
||
assert (itemno < ITEM_NUMBER_MAX);
|
||
++ruleno;
|
||
assert (ruleno < RULE_NUMBER_MAX);
|
||
|
||
if (p)
|
||
p = p->next;
|
||
}
|
||
|
||
assert (itemno == nritems);
|
||
|
||
if (trace_flag & trace_sets)
|
||
ritem_print (stderr);
|
||
}
|
||
|
||
/*------------------------------------------------------------------.
|
||
| Read in the grammar specification and record it in the format |
|
||
| described in gram.h. All actions are copied into ACTION_OBSTACK, |
|
||
| in each case forming the body of a C function (YYACTION) which |
|
||
| contains a switch statement to decide which action to execute. |
|
||
`------------------------------------------------------------------*/
|
||
|
||
void
|
||
reader (void)
|
||
{
|
||
/* Initialize the symbol table. */
|
||
symbols_new ();
|
||
|
||
/* Construct the accept symbol. */
|
||
accept = symbol_get ("$accept", empty_location);
|
||
accept->class = nterm_sym;
|
||
accept->number = nvars++;
|
||
|
||
/* Construct the error token */
|
||
errtoken = symbol_get ("error", empty_location);
|
||
errtoken->class = token_sym;
|
||
errtoken->number = ntokens++;
|
||
|
||
/* Construct a token that represents all undefined literal tokens.
|
||
It is always token number 2. */
|
||
undeftoken = symbol_get ("$undefined", empty_location);
|
||
undeftoken->class = token_sym;
|
||
undeftoken->number = ntokens++;
|
||
|
||
/* Initialize the obstacks. */
|
||
obstack_init (&pre_prologue_obstack);
|
||
obstack_init (&post_prologue_obstack);
|
||
|
||
gram_in = xfopen (grammar_file, "r");
|
||
|
||
gram__flex_debug = trace_flag & trace_scan;
|
||
gram_debug = trace_flag & trace_parse;
|
||
gram_scanner_initialize ();
|
||
gram_parse ();
|
||
|
||
if (! complaint_issued)
|
||
check_and_convert_grammar ();
|
||
|
||
xfclose (gram_in);
|
||
}
|
||
|
||
|
||
/*-------------------------------------------------------------.
|
||
| Check the grammar that has just been read, and convert it to |
|
||
| internal form. |
|
||
`-------------------------------------------------------------*/
|
||
|
||
static void
|
||
check_and_convert_grammar (void)
|
||
{
|
||
/* Grammar has been read. Do some checking. */
|
||
if (nrules == 0)
|
||
fatal (_("no rules in the input grammar"));
|
||
|
||
/* Report any undefined symbols and consider them nonterminals. */
|
||
symbols_check_defined ();
|
||
|
||
/* If the user did not define her ENDTOKEN, do it now. */
|
||
if (!endtoken)
|
||
{
|
||
endtoken = symbol_get ("$end", empty_location);
|
||
endtoken->class = token_sym;
|
||
endtoken->number = 0;
|
||
/* Value specified by POSIX. */
|
||
endtoken->user_token_number = 0;
|
||
}
|
||
|
||
/* Insert the initial rule, whose line is that of the first rule
|
||
(not that of the start symbol):
|
||
|
||
accept: %start EOF. */
|
||
{
|
||
symbol_list *p = symbol_list_new (accept, empty_location);
|
||
p->location = grammar->location;
|
||
p->next = symbol_list_new (startsymbol, empty_location);
|
||
p->next->next = symbol_list_new (endtoken, empty_location);
|
||
p->next->next->next = symbol_list_new (NULL, empty_location);
|
||
p->next->next->next->next = grammar;
|
||
nrules += 1;
|
||
nritems += 3;
|
||
grammar = p;
|
||
}
|
||
|
||
assert (nsyms <= SYMBOL_NUMBER_MAXIMUM && nsyms == ntokens + nvars);
|
||
|
||
/* Assign the symbols their symbol numbers. Write #defines for the
|
||
token symbols into FDEFINES if requested. */
|
||
symbols_pack ();
|
||
|
||
/* Convert the grammar into the format described in gram.h. */
|
||
packgram ();
|
||
|
||
/* The grammar as a symbol_list is no longer needed. */
|
||
LIST_FREE (symbol_list, grammar);
|
||
}
|