mirror of
https://git.code.sf.net/p/quake/quakeforge
synced 2024-11-23 12:52:46 +00:00
541 lines
11 KiB
C
541 lines
11 KiB
C
/*
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def.c
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def management and symbol tables
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Copyright (C) 2002 Bill Currie <bill@taniwha.org>
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Copyright (C) 1996-1997 Id Software, Inc.
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Author: Bill Currie <bill@taniwha.org>
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Date: 2002/06/09
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; either version 2
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of the License, or (at your option) any later version.
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This program 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.
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See the 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 this program; if not, write to:
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Free Software Foundation, Inc.
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59 Temple Place - Suite 330
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Boston, MA 02111-1307, USA
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*/
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#ifdef HAVE_CONFIG_H
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# include "config.h"
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#endif
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static __attribute__ ((unused)) const char rcsid[] =
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"$Id$";
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#ifdef HAVE_STRING_H
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# include <string.h>
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#endif
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#ifdef HAVE_STRINGS_H
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# include <strings.h>
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#endif
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#include <stdlib.h>
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#include <QF/hash.h>
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#include <QF/sys.h>
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#include <QF/va.h>
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#include "qfcc.h"
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#include "def.h"
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#include "expr.h"
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#include "immediate.h"
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#include "reloc.h"
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#include "strpool.h"
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#include "struct.h"
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#include "type.h"
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typedef struct locref_s {
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struct locref_s *next;
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int ofs;
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int size;
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} locref_t;
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def_t def_void = { &type_void, "def void" };
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def_t def_function = { &type_function, "def function" };
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static def_t *free_temps[4]; // indexted by type size
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static def_t temp_scope;
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static def_t *free_defs;
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static defspace_t *free_spaces;
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static scope_t *free_scopes;
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static locref_t *free_free_locs;
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static hashtab_t *defs_by_name;
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static hashtab_t *field_defs;
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static const char *
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defs_get_key (void *_def, void *unused)
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{
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def_t *def = (def_t *) _def;
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return def->name;
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}
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static def_t *
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check_for_name (type_t *type, const char *name, scope_t *scope,
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storage_class_t storage)
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{
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def_t *def;
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if (!defs_by_name) {
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defs_by_name = Hash_NewTable (16381, defs_get_key, 0, 0);
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field_defs = Hash_NewTable (16381, defs_get_key, 0, 0);
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}
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if (!name)
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return 0;
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if (scope->type == sc_global && get_enum (name)) {
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error (0, "%s redeclared", name);
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return 0;
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}
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// see if the name is already in use
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def = (def_t *) Hash_Find (defs_by_name, name);
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if (def) {
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if (storage != st_none && scope == def->scope)
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if (type && def->type != type) {
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print_type (type);
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print_type (def->type);
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error (0, "Type mismatch on redeclaration of %s", name);
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}
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if (storage == st_none || def->scope == scope)
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return def;
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}
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return 0;
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}
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static int
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grow_space (defspace_t *space)
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{
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space->max_size += 1024;
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return 1;
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}
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defspace_t *
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new_defspace (void)
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{
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defspace_t *space;
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ALLOC (1024, defspace_t, spaces, space);
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space->grow = grow_space;
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return space;
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}
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void
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defspace_adddata (defspace_t *space, pr_type_t *data, int size)
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{
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if (space->size + size > space->max_size) {
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space->max_size = (space->size + size + 1023) & ~1023;
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space->data = realloc (space->data,
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space->max_size * sizeof (pr_type_t));
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}
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if (data)
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memcpy (space->data + space->size, data, size * sizeof (pr_type_t));
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space->size += size;
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}
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scope_t *
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new_scope (scope_type type, defspace_t *space, scope_t *parent)
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{
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scope_t *scope;
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ALLOC (1024, scope_t, scopes, scope);
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scope->type = type;
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scope->space = space;
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scope->parent = parent;
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scope->tail = &scope->head;
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return scope;
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}
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static void
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set_storage_bits (def_t *def, storage_class_t storage)
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{
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switch (storage) {
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case st_none:
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break;
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case st_system:
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def->system = 1;
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// fall through
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case st_global:
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def->global = 1;
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def->external = 0;
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def->local = 0;
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break;
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case st_extern:
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def->global = 1;
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def->external = 1;
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def->local = 0;
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break;
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case st_static:
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def->external = 0;
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def->global = 0;
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def->local = 0;
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break;
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case st_local:
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def->external = 0;
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def->global = 0;
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def->local = 1;
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break;
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}
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def->initialized = 0;
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}
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static const char *vector_component_names[] = {"%s_x", "%s_y", "%s_z"};
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static void
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vector_component (int is_field, def_t *vec, int comp, scope_t *scope,
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storage_class_t storage)
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{
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def_t *d;
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const char *name;
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name = save_string (va (vector_component_names[comp], vec->name));
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d = get_def (is_field ? &type_floatfield : &type_float, name, scope,
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st_none);
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if (d && d->scope == scope) {
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if (vec->external) {
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error (0, "internal error");
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abort ();
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}
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} else {
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d = new_def (is_field ? &type_floatfield : &type_float, name, scope);
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}
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d->used = 1;
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d->parent = vec;
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d->ofs = vec->ofs + comp;
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set_storage_bits (d, storage);
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if (is_field && (storage == st_global || storage == st_static)) {
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G_INT (d->ofs) = G_INT (vec->ofs) + comp;
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reloc_def_field (d, d->ofs);
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}
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Hash_Add (defs_by_name, d);
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if (is_field)
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Hash_Add (field_defs, d);
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}
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def_t *
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field_def (const char *name)
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{
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return Hash_Find (field_defs, name);
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}
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/*
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get_def
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If type is NULL, it will match any type
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If allocate is true, a new def will be allocated if it can't be found
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*/
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def_t *
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get_def (type_t *type, const char *name, scope_t *scope,
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storage_class_t storage)
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{
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def_t *def = check_for_name (type, name, scope, storage);
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defspace_t *space = NULL;
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if (storage == st_none)
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return def;
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if (def) {
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if (storage != st_extern && !def->initialized) {
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def->file = pr.source_file;
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def->line = pr.source_line;
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}
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if (!def->external || storage == st_extern)
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return def;
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} else {
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// allocate a new def
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def = new_def (type, name, scope);
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if (name)
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Hash_Add (defs_by_name, def);
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}
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switch (storage) {
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case st_none:
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case st_global:
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case st_local:
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case st_system:
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space = scope->space;
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break;
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case st_extern:
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space = 0;
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break;
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case st_static:
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space = pr.near_data;
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break;
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}
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if (space) {
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if (type->type == ev_field && type->aux_type == &type_vector)
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def->ofs = new_location (type->aux_type, space);
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else
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def->ofs = new_location (type, space);
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}
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set_storage_bits (def, storage);
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if (name) {
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// make automatic defs for the vectors elements .origin can be accessed
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// as .origin_x, .origin_y, and .origin_z
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if (type->type == ev_vector) {
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vector_component (0, def, 0, scope, storage);
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vector_component (0, def, 1, scope, storage);
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vector_component (0, def, 2, scope, storage);
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}
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if (type->type == ev_field) {
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if (storage == st_global || storage == st_static) {
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G_INT (def->ofs) = new_location (type->aux_type,
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pr.entity_data);
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reloc_def_field (def, def->ofs);
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def->constant = 1;
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def->nosave = 1;
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}
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if (type->aux_type->type == ev_vector) {
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vector_component (1, def, 0, scope, storage);
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vector_component (1, def, 1, scope, storage);
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vector_component (1, def, 2, scope, storage);
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}
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Hash_Add (field_defs, def);
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}
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}
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return def;
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}
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def_t *
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new_def (type_t *type, const char *name, scope_t *scope)
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{
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def_t *def;
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ALLOC (16384, def_t, defs, def);
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if (scope) {
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*scope->tail = def;
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scope->tail = &def->def_next;
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scope->num_defs++;
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}
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def->return_addr = __builtin_return_address (0);
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def->name = name ? save_string (name) : 0;
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def->type = type;
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if (scope) {
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def->scope = scope;
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def->space = scope->space;
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}
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def->file = pr.source_file;
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def->line = pr.source_line;
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return def;
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}
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int
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new_location (type_t *type, defspace_t *space)
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{
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int size = type_size (type);
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int ofs;
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locref_t *loc;
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locref_t **l = &space->free_locs;
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while (*l && (*l)->size < size)
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l = &(*l)->next;
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if ((loc = *l)) {
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ofs = loc->ofs;
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if (loc->size == size) {
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*l = loc->next;
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} else {
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loc->ofs += size;
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loc->size -= size;
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}
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return ofs;
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}
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ofs = space->size;
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space->size += size;
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if (space->size > space->max_size)
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space->grow (space);
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return ofs;
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}
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void
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free_location (def_t *def)
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{
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int size = type_size (def->type);
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locref_t *loc;
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for (loc = def->space->free_locs; loc; loc = loc->next) {
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if (def->ofs + size == loc->ofs) {
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loc->size += size;
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loc->ofs = def->ofs;
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return;
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} else if (loc->ofs + loc->size == def->ofs) {
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loc->size += size;
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if (loc->next && loc->next->ofs == loc->ofs + loc->size) {
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loc->size += loc->next->size;
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loc->next = loc->next->next;
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}
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return;
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}
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}
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ALLOC (1024, locref_t, free_locs, loc);
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loc->ofs = def->ofs;
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loc->size = size;
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loc->next = def->space->free_locs;
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def->space->free_locs = loc;
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}
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def_t *
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get_tempdef (type_t *type, scope_t *scope)
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{
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int size = type_size (type);
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def_t *def;
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if (free_temps[size]) {
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def = free_temps[size];
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free_temps[size] = def->next;
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def->type = type;
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} else {
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def = new_def (type, 0, scope);
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def->return_addr = __builtin_return_address (0);
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def->ofs = new_location (type, scope->space);
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}
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def->freed = def->removed = def->users = 0;
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def->next = temp_scope.next;
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set_storage_bits (def, st_local);
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temp_scope.next = def;
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return def;
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}
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void
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free_tempdefs (void)
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{
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def_t **def, *d;
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int size;
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def = &temp_scope.next;
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while (*def) {
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if ((*def)->users <= 0) {
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d = *def;
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*def = d->next;
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if (d->users < 0) {
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expr_t e;
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e.file = d->file;
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e.line = d->line;
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notice (&e, "%s %3d %3d %d", pr_type_name[d->type->type],
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d->ofs, d->users, d->managed);
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}
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size = type_size (d->type);
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if (d->expr)
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d->expr->e.temp.def = 0;
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if (!d->freed) {
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d->next = free_temps[size];
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free_temps[size] = d;
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d->freed = 1;
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}
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} else {
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def = &(*def)->next;
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}
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}
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}
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void
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reset_tempdefs (void)
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{
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unsigned int i;
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def_t *d;
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for (i = 0; i < sizeof (free_temps) / sizeof (free_temps[0]); i++) {
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free_temps[i] = 0;
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}
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for (d = temp_scope.next; d; d = d->next) {
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expr_t e;
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e.file = d->file;
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e.line = d->line;
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notice (&e, "%s %3d %3d %d", pr_type_name[d->type->type],
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d->ofs, d->users, d->managed);
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}
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temp_scope.next = 0;
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}
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void
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flush_scope (scope_t *scope, int force_used)
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{
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def_t *def;
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for (def = scope->head; def; def = def->def_next) {
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if (def->name) {
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if (!force_used && !def->used) {
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expr_t e;
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e.line = def->line;
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e.file = def->file;
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warning (&e, "unused variable `%s'", def->name);
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}
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if (!def->removed) {
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Hash_Del (defs_by_name, def->name);
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if (def->type->type == ev_field) {
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if (Hash_Find (field_defs, def->name) == def)
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Hash_Del (field_defs, def->name);
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}
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def->removed = 1;
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}
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}
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}
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}
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void
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def_initialized (def_t *d)
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{
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d->initialized = 1;
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if (d->type == &type_vector
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|| (d->type->type == ev_field && d->type->aux_type == &type_vector)) {
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d = d->def_next;
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d->initialized = 1;
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d = d->def_next;
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d->initialized = 1;
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d = d->def_next;
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d->initialized = 1;
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}
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if (d->parent) {
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d = d->parent;
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if (d->type == &type_vector
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&& d->def_next->initialized
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&& d->def_next->def_next->initialized
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&& d->def_next->def_next->def_next->initialized)
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d->initialized = 1;
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}
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}
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void
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clear_defs (void)
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{
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if (field_defs)
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Hash_FlushTable (field_defs);
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if (defs_by_name)
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Hash_FlushTable (defs_by_name);
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}
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void
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def_to_ddef (def_t *def, ddef_t *ddef, int aux)
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{
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type_t *type = def->type;
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if (aux)
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type = type->aux_type;
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ddef->type = type->type;
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ddef->ofs = def->ofs;
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ddef->s_name = ReuseString (def->name);
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}
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