bemain.c 26.2 KB
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/*
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 * Copyright (C) 1995-2011 University of Karlsruhe.  All right reserved.
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 *
 * This file is part of libFirm.
 *
 * This file may be distributed and/or modified under the terms of the
 * GNU General Public License version 2 as published by the Free Software
 * Foundation and appearing in the file LICENSE.GPL included in the
 * packaging of this file.
 *
 * Licensees holding valid libFirm Professional Edition licenses may use
 * this file in accordance with the libFirm Commercial License.
 * Agreement provided with the Software.
 *
 * This file is provided AS IS with NO WARRANTY OF ANY KIND, INCLUDING THE
 * WARRANTY OF DESIGN, MERCHANTABILITY AND FITNESS FOR A PARTICULAR
 * PURPOSE.
 */

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/**
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 * @file
 * @brief       Main Backend driver.
 * @author      Sebastian Hack
 * @date        25.11.2004
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 */
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#include "config.h"
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#include <stdarg.h>
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#include <stdio.h>
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#include "lc_opts.h"
#include "lc_opts_enum.h"
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#include "obst.h"
#include "bitset.h"

#include "irprog.h"
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#include "irgopt.h"
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#include "irgraph.h"
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#include "irdump.h"
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#include "irdom_t.h"
#include "iredges_t.h"
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#include "irloop_t.h"
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#include "irtools.h"
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#include "irverify.h"
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#include "irprintf.h"
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#include "iroptimize.h"
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#include "firmstat.h"
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#include "execfreq_t.h"
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#include "irprofile.h"
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#include "irpass_t.h"
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#include "ircons.h"
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#include "bearch.h"
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#include "be_t.h"
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#include "bemodule.h"
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#include "beutil.h"
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#include "benode.h"
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#include "beirgmod.h"
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#include "besched.h"
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#include "belistsched.h"
#include "belive_t.h"
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#include "bera.h"
#include "bechordal_t.h"
#include "beifg.h"
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#include "becopyopt.h"
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#include "becopystat.h"
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#include "bessadestr.h"
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#include "beabi.h"
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#include "belower.h"
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#include "bestat.h"
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#include "beverify.h"
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#include "beirg.h"
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#include "bestack.h"
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#include "beemitter.h"
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#define NEW_ID(s) new_id_from_chars(s, sizeof(s) - 1)

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/* options visible for anyone */
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be_options_t be_options = {
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	DUMP_NONE,                         /* dump flags */
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	BE_TIME_OFF,                       /* no timing */
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	false,                             /* profile_generate */
	false,                             /* profile_use */
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	0,                                 /* try to omit frame pointer */
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	0,                                 /* create PIC code */
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	BE_VERIFY_WARN,                    /* verification level: warn */
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	"",                                /* ilp server */
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	"",                                /* ilp solver */
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	0,                                 /* enable statistic event dumping */
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	"",                                /* print stat events */
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	1,                                 /* verbose assembler output */
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};

/* back end instruction set architecture to use */
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static const arch_isa_if_t *isa_if = NULL;
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/* possible dumping options */
static const lc_opt_enum_mask_items_t dump_items[] = {
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	{ "none",       DUMP_NONE },
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	{ "initial",    DUMP_INITIAL },
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	{ "abi",        DUMP_ABI    },
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	{ "sched",      DUMP_SCHED  },
	{ "prepared",   DUMP_PREPARED },
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	{ "regalloc",   DUMP_RA },
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	{ "final",      DUMP_FINAL },
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	{ "be",         DUMP_BE },
	{ "all",        2 * DUMP_BE - 1 },
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	{ NULL,         0 }
};

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/* verify options. */
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static const lc_opt_enum_int_items_t verify_items[] = {
	{ "off",    BE_VERIFY_OFF    },
	{ "warn",   BE_VERIFY_WARN   },
	{ "assert", BE_VERIFY_ASSERT },
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	{ NULL,     0 }
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};
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static lc_opt_enum_mask_var_t dump_var = {
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	&be_options.dump_flags, dump_items
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};

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static lc_opt_enum_int_var_t verify_var = {
	&be_options.verify_option, verify_items
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};

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static const lc_opt_table_entry_t be_main_options[] = {
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	LC_OPT_ENT_ENUM_MASK("dump",       "dump irg on several occasions",                       &dump_var),
	LC_OPT_ENT_BOOL     ("omitfp",     "omit frame pointer",                                  &be_options.omit_fp),
	LC_OPT_ENT_BOOL     ("pic",        "create PIC code",                                     &be_options.pic),
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	LC_OPT_ENT_ENUM_INT ("verify",     "verify the backend irg",                              &verify_var),
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	LC_OPT_ENT_BOOL     ("time",       "get backend timing statistics",                       &be_options.timing),
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	LC_OPT_ENT_BOOL     ("profilegenerate", "instrument the code for execution count profiling",   &be_options.opt_profile_generate),
	LC_OPT_ENT_BOOL     ("profileuse",      "use existing profile data",                           &be_options.opt_profile_use),
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	LC_OPT_ENT_BOOL     ("statev",     "dump statistic events",                               &be_options.statev),
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	LC_OPT_ENT_STR      ("filtev",     "filter for stat events (regex if support is active",   be_options.filtev),
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	LC_OPT_ENT_BOOL     ("verboseasm", "enable verbose assembler output",                     &be_options.verbose_asm),
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	LC_OPT_ENT_STR("ilp.server", "the ilp server name", be_options.ilp_server),
	LC_OPT_ENT_STR("ilp.solver", "the ilp solver name", be_options.ilp_solver),
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	LC_OPT_LAST
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};

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static be_module_list_entry_t *isa_ifs         = NULL;
static bool                    isa_initialized = false;
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asm_constraint_flags_t asm_constraint_flags[256];
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static void initialize_isa(void)
{
	if (isa_initialized)
		return;
	isa_if->init();
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	isa_initialized = true;
}

static void finish_isa(void)
{
	if (isa_initialized) {
		isa_if->finish();
		isa_initialized = false;
	}
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}

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void be_init_default_asm_constraint_flags(void)
{
	asm_constraint_flags['?'] = ASM_CONSTRAINT_FLAG_NO_SUPPORT;
	asm_constraint_flags['!'] = ASM_CONSTRAINT_FLAG_NO_SUPPORT;
	asm_constraint_flags['&'] = ASM_CONSTRAINT_FLAG_NO_SUPPORT
		| ASM_CONSTRAINT_FLAG_MODIFIER_EARLYCLOBBER;
	asm_constraint_flags['%'] = ASM_CONSTRAINT_FLAG_NO_SUPPORT
		| ASM_CONSTRAINT_FLAG_MODIFIER_COMMUTATIVE;
	asm_constraint_flags['!'] = ASM_CONSTRAINT_FLAG_NO_SUPPORT;

	asm_constraint_flags['='] = ASM_CONSTRAINT_FLAG_MODIFIER_WRITE
		| ASM_CONSTRAINT_FLAG_MODIFIER_NO_READ;
	asm_constraint_flags['+'] = ASM_CONSTRAINT_FLAG_MODIFIER_READ
		| ASM_CONSTRAINT_FLAG_MODIFIER_WRITE;

	asm_constraint_flags['i'] = ASM_CONSTRAINT_FLAG_SUPPORTS_IMMEDIATE;
	asm_constraint_flags['s'] = ASM_CONSTRAINT_FLAG_SUPPORTS_IMMEDIATE;
	asm_constraint_flags['E'] = ASM_CONSTRAINT_FLAG_SUPPORTS_IMMEDIATE;
	asm_constraint_flags['F'] = ASM_CONSTRAINT_FLAG_SUPPORTS_IMMEDIATE;
	asm_constraint_flags['G'] = ASM_CONSTRAINT_FLAG_SUPPORTS_IMMEDIATE;
	asm_constraint_flags['H'] = ASM_CONSTRAINT_FLAG_SUPPORTS_IMMEDIATE;
	asm_constraint_flags['I'] = ASM_CONSTRAINT_FLAG_SUPPORTS_IMMEDIATE;
	asm_constraint_flags['J'] = ASM_CONSTRAINT_FLAG_SUPPORTS_IMMEDIATE;
	asm_constraint_flags['K'] = ASM_CONSTRAINT_FLAG_SUPPORTS_IMMEDIATE;
	asm_constraint_flags['L'] = ASM_CONSTRAINT_FLAG_SUPPORTS_IMMEDIATE;
	asm_constraint_flags['M'] = ASM_CONSTRAINT_FLAG_SUPPORTS_IMMEDIATE;
	asm_constraint_flags['N'] = ASM_CONSTRAINT_FLAG_SUPPORTS_IMMEDIATE;
	asm_constraint_flags['O'] = ASM_CONSTRAINT_FLAG_SUPPORTS_IMMEDIATE;
	asm_constraint_flags['P'] = ASM_CONSTRAINT_FLAG_SUPPORTS_IMMEDIATE;

	asm_constraint_flags['m'] = ASM_CONSTRAINT_FLAG_SUPPORTS_MEMOP;
	asm_constraint_flags['o'] = ASM_CONSTRAINT_FLAG_SUPPORTS_MEMOP;
	asm_constraint_flags['V'] = ASM_CONSTRAINT_FLAG_SUPPORTS_MEMOP;
	asm_constraint_flags['<'] = ASM_CONSTRAINT_FLAG_SUPPORTS_MEMOP;
	asm_constraint_flags['>'] = ASM_CONSTRAINT_FLAG_SUPPORTS_MEMOP;

	asm_constraint_flags['p'] = ASM_CONSTRAINT_FLAG_SUPPORTS_REGISTER;
	asm_constraint_flags['0'] = ASM_CONSTRAINT_FLAG_SUPPORTS_REGISTER;
	asm_constraint_flags['1'] = ASM_CONSTRAINT_FLAG_SUPPORTS_REGISTER;
	asm_constraint_flags['2'] = ASM_CONSTRAINT_FLAG_SUPPORTS_REGISTER;
	asm_constraint_flags['3'] = ASM_CONSTRAINT_FLAG_SUPPORTS_REGISTER;
	asm_constraint_flags['4'] = ASM_CONSTRAINT_FLAG_SUPPORTS_REGISTER;
	asm_constraint_flags['5'] = ASM_CONSTRAINT_FLAG_SUPPORTS_REGISTER;
	asm_constraint_flags['6'] = ASM_CONSTRAINT_FLAG_SUPPORTS_REGISTER;
	asm_constraint_flags['7'] = ASM_CONSTRAINT_FLAG_SUPPORTS_REGISTER;
	asm_constraint_flags['8'] = ASM_CONSTRAINT_FLAG_SUPPORTS_REGISTER;
	asm_constraint_flags['9'] = ASM_CONSTRAINT_FLAG_SUPPORTS_REGISTER;

	asm_constraint_flags['X'] = ASM_CONSTRAINT_FLAG_SUPPORTS_REGISTER
		| ASM_CONSTRAINT_FLAG_SUPPORTS_MEMOP
		| ASM_CONSTRAINT_FLAG_SUPPORTS_IMMEDIATE;

	/* these should have been catched by the parsing code already */
	asm_constraint_flags['#']  = ASM_CONSTRAINT_FLAG_NO_SUPPORT;
	asm_constraint_flags['*']  = ASM_CONSTRAINT_FLAG_NO_SUPPORT;
	asm_constraint_flags[' ']  = ASM_CONSTRAINT_FLAG_NO_SUPPORT;
	asm_constraint_flags['\t'] = ASM_CONSTRAINT_FLAG_NO_SUPPORT;
	asm_constraint_flags['\n'] = ASM_CONSTRAINT_FLAG_NO_SUPPORT;
	asm_constraint_flags['\r'] = ASM_CONSTRAINT_FLAG_NO_SUPPORT;
}

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asm_constraint_flags_t be_parse_asm_constraints(const char *constraint)
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{
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	asm_constraint_flags_t  flags = ASM_CONSTRAINT_FLAG_NONE;
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	const char             *c;
	asm_constraint_flags_t  tflags;

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	initialize_isa();

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	for (c = constraint; *c != '\0'; ++c) {
		switch (*c) {
		case '#':
			/* 'comment' stuff */
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			while (*c != 0 && *c != ',')
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				++c;
			break;
		case '*':
			/* 'comment' character */
			++c;
			break;
		case ' ':
		case '\t':
		case '\n':
		case '\r':
			break;
		default:
			tflags = asm_constraint_flags[(int) *c];
			if (tflags != 0) {
				flags |= tflags;
			} else {
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				flags |= isa_if->parse_asm_constraint(&c);
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			}
			break;
		}
	}

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	if ((
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	        flags & ASM_CONSTRAINT_FLAG_MODIFIER_WRITE &&
	        flags & ASM_CONSTRAINT_FLAG_MODIFIER_NO_WRITE
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	    ) || (
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	        flags & ASM_CONSTRAINT_FLAG_MODIFIER_READ &&
	        flags & ASM_CONSTRAINT_FLAG_MODIFIER_NO_READ
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	    )) {
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		flags |= ASM_CONSTRAINT_FLAG_INVALID;
	}
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	if (!(flags & (ASM_CONSTRAINT_FLAG_MODIFIER_READ     |
	               ASM_CONSTRAINT_FLAG_MODIFIER_WRITE    |
	               ASM_CONSTRAINT_FLAG_MODIFIER_NO_WRITE |
	               ASM_CONSTRAINT_FLAG_MODIFIER_NO_READ)
	    )) {
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		flags |= ASM_CONSTRAINT_FLAG_MODIFIER_READ;
	}
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	return flags;
}

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int be_is_valid_clobber(const char *clobber)
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{
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	initialize_isa();

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	/* memory is a valid clobber. (the frontend has to detect this case too,
	 * because it has to add memory edges to the asm) */
	if (strcmp(clobber, "memory") == 0)
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		return 1;
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	/* cc (condition code) is always valid */
	if (strcmp(clobber, "cc") == 0)
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		return 1;
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	return isa_if->is_valid_clobber(clobber);
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}

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void be_register_isa_if(const char *name, const arch_isa_if_t *isa)
{
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	if (isa_if == NULL)
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		isa_if = isa;

	be_add_module_to_list(&isa_ifs, name, (void*) isa);
}

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static void be_opt_register(void)
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{
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	lc_opt_entry_t *be_grp;
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	static int run_once = 0;

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	if (run_once)
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		return;
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	run_once = 1;
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	be_grp = lc_opt_get_grp(firm_opt_get_root(), "be");
	lc_opt_add_table(be_grp, be_main_options);
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	be_add_module_list_opt(be_grp, "isa", "the instruction set architecture",
	                       &isa_ifs, (void**) &isa_if);
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	be_init_modules();
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}
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/* Parse one argument. */
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int be_parse_arg(const char *arg)
{
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	lc_opt_entry_t *be_grp = lc_opt_get_grp(firm_opt_get_root(), "be");
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	if (strcmp(arg, "help") == 0 || (arg[0] == '?' && arg[1] == '\0')) {
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		lc_opt_print_help_for_entry(be_grp, '-', stdout);
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		return -1;
	}
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	return lc_opt_from_single_arg(be_grp, NULL, arg, NULL);
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}

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/* Perform schedule verification if requested. */
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static void be_sched_verify(ir_graph *irg, int verify_opt)
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{
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	if (verify_opt == BE_VERIFY_WARN) {
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		be_verify_schedule(irg);
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	} else if (verify_opt == BE_VERIFY_ASSERT) {
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		assert(be_verify_schedule(irg) && "Schedule verification failed.");
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	}
}

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/* Initialize the Firm backend. Must be run first in init_firm()! */
void firm_be_init(void)
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{
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	be_opt_register();
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	be_init_modules();
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}
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/* Finalize the Firm backend. */
void firm_be_finish(void)
{
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	finish_isa();
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	be_quit_modules();
}

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/* Returns the backend parameter */
const backend_params *be_get_backend_param(void)
{
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	initialize_isa();
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	return isa_if->get_params();
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}

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int be_is_big_endian(void)
{
	return be_get_backend_param()->byte_order_big_endian;
}

unsigned be_get_machine_size(void)
{
	return be_get_backend_param()->machine_size;
}

ir_mode *be_get_mode_float_arithmetic(void)
{
	return be_get_backend_param()->mode_float_arithmetic;
}

ir_type *be_get_type_long_long(void)
{
	return be_get_backend_param()->type_long_long;
}

ir_type *be_get_type_unsigned_long_long(void)
{
	return be_get_backend_param()->type_unsigned_long_long;
}

ir_type *be_get_type_long_double(void)
{
	return be_get_backend_param()->type_long_double;
}

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/**
 * Initializes the main environment for the backend.
 *
 * @param env          an empty environment
 * @param file_handle  the file handle where the output will be written to
 */
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static be_main_env_t *be_init_env(be_main_env_t *env, FILE *file_handle,
                                  const char *compilation_unit_name)
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{
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	memset(env, 0, sizeof(*env));
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	env->file_handle          = file_handle;
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	env->ent_trampoline_map   = pmap_create();
	env->pic_trampolines_type = new_type_class(NEW_ID("$PIC_TRAMPOLINE_TYPE"));
	env->ent_pic_symbol_map   = pmap_create();
	env->pic_symbols_type     = new_type_struct(NEW_ID("$PIC_SYMBOLS_TYPE"));
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	env->cup_name             = compilation_unit_name;
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	set_class_final(env->pic_trampolines_type, 1);
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	memset(asm_constraint_flags, 0, sizeof(asm_constraint_flags));
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	env->arch_env = arch_env_begin_codegeneration(isa_if, env);
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	return env;
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}

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/**
 * Called when the be_main_env_t can be destroyed.
 */
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static void be_done_env(be_main_env_t *env)
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{
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	pmap_destroy(env->ent_trampoline_map);
	pmap_destroy(env->ent_pic_symbol_map);
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	free_type(env->pic_trampolines_type);
	free_type(env->pic_symbols_type);
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}
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/**
 * A wrapper around a firm dumper. Dumps only, if
 * flags are enabled.
 *
 * @param mask    a bitmask containing the reason what will be dumped
 * @param irg     the IR graph to dump
 * @param suffix  the suffix for the dumper
 * @param dumper  the dumper to be called
 */
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static void dump(int mask, ir_graph *irg, const char *suffix)
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{
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	if (be_options.dump_flags & mask)
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		dump_ir_graph(irg, suffix);
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}
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/**
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 * Prepare a backend graph for code generation and initialize its irg
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 */
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static void initialize_birg(be_irg_t *birg, ir_graph *irg, be_main_env_t *env)
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{
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	/* don't duplicate locals in backend when dumping... */
	ir_remove_dump_flags(ir_dump_flag_consts_local);

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	dump(DUMP_INITIAL, irg, "begin");

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	irg->be_data = birg;

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	memset(birg, 0, sizeof(*birg));
	birg->irg = irg;
	birg->main_env = env;
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	obstack_init(&birg->obst);
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	birg->lv = be_liveness_new(irg);
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	edges_deactivate(irg);
	edges_activate(irg);
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	/* set the current graph (this is important for several firm functions) */
	current_ir_graph = irg;

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	/* we do this before critical edge split. As this produces less returns,
	   because sometimes (= 164.gzip) multiple returns are slower */
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	normalize_n_returns(irg);
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	/* Remove critical edges */
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	remove_critical_cf_edges_ex(irg, /*ignore_exception_edges=*/0);
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	/* For code generation all unreachable code and Bad nodes should be gone */
	remove_unreachable_code(irg);
	remove_bads(irg);

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	/* Ensure, that the ir_edges are computed. */
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	assure_edges(irg);
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	set_irg_phase_state(irg, phase_backend);
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	be_info_init_irg(irg);
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	dump(DUMP_INITIAL, irg, "prepared");
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}

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int be_timing;
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static const char *get_timer_name(be_timer_id_t id)
{
	switch (id) {
	case T_ABI:            return "abi";
	case T_CODEGEN:        return "codegen";
	case T_RA_PREPARATION: return "ra_preparation";
	case T_SCHED:          return "sched";
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	case T_SPLIT:          return "split";
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	case T_CONSTR:         return "constr";
	case T_FINISH:         return "finish";
	case T_EMIT:           return "emit";
	case T_VERIFY:         return "verify";
	case T_OTHER:          return "other";
	case T_HEIGHTS:        return "heights";
	case T_LIVE:           return "live";
	case T_EXECFREQ:       return "execfreq";
	case T_SSA_CONSTR:     return "ssa_constr";
	case T_RA_PROLOG:      return "ra_prolog";
	case T_RA_EPILOG:      return "ra_epilog";
	case T_RA_CONSTR:      return "ra_constr";
	case T_RA_SPILL:       return "ra_spill";
	case T_RA_SPILL_APPLY: return "ra_spill_apply";
	case T_RA_COLOR:       return "ra_color";
	case T_RA_IFG:         return "ra_ifg";
	case T_RA_COPYMIN:     return "ra_copymin";
	case T_RA_SSA:         return "ra_ssa";
	case T_RA_OTHER:       return "ra_other";
	}
	return "unknown";
}
ir_timer_t *be_timers[T_LAST+1];
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void be_lower_for_target(void)
{
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	size_t i;
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	initialize_isa();

	/* shouldn't lower program twice */
	assert(get_irp_phase_state() != phase_low);

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	isa_if->lower_for_target();
	/* set the phase to low */
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	for (i = get_irp_n_irgs(); i > 0;) {
		ir_graph *irg = get_irp_irg(--i);
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		set_irg_phase_state(irg, phase_low);
	}
	set_irp_phase_state(phase_low);
}

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/**
 * The Firm backend main loop.
 * Do architecture specific lowering for all graphs
 * and call the architecture specific code generator.
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 *
 * @param file_handle   the file handle the output will be written to
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 * @param cup_name      name of the compilation unit
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 */
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static void be_main_loop(FILE *file_handle, const char *cup_name)
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{
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	static const char suffix[] = ".prof";
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	size_t        i;
	size_t        num_irgs;
	size_t        num_birgs;
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	be_main_env_t env;
	char          prof_filename[256];
	be_irg_t      *birgs;
	arch_env_t    *arch_env;
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	be_timing = (be_options.timing == BE_TIME_ON);

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	/* perform target lowering if it didn't happen yet */
	if (get_irp_phase_state() != phase_low)
		be_lower_for_target();

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	if (be_timing) {
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		for (i = 0; i < T_LAST+1; ++i) {
			be_timers[i] = ir_timer_new();
		}
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	}
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	be_init_env(&env, file_handle, cup_name);
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	arch_env = env.arch_env;

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	/* we might need 1 birg more for instrumentation constructor */
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	num_irgs = get_irp_n_irgs();
	birgs    = ALLOCAN(be_irg_t, num_irgs + 1);
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	be_info_init();

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	/* First: initialize all birgs */
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	num_birgs = 0;
	for (i = 0; i < num_irgs; ++i) {
		ir_graph  *irg    = get_irp_irg(i);
		ir_entity *entity = get_irg_entity(irg);
		if (get_entity_linkage(entity) & IR_LINKAGE_NO_CODEGEN)
			continue;
		initialize_birg(&birgs[num_birgs++], irg, &env);
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	}
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	arch_env_handle_intrinsics(arch_env);
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	/*
		Get the filename for the profiling data.
		Beware: '\0' is already included in sizeof(suffix)
	*/
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	sprintf(prof_filename, "%.*s%s",
	        (int)(sizeof(prof_filename) - sizeof(suffix)), cup_name, suffix);

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	bool have_profile = false;
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	if (be_options.opt_profile_use) {
		bool res = ir_profile_read(prof_filename);
		if (!res) {
			fprintf(stderr, "Warning: Couldn't read profile data '%s'\n",
			        prof_filename);
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		} else {
			ir_create_execfreqs_from_profile();
			ir_profile_free();
			have_profile = true;
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		}
	}
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	if (num_birgs > 0 && be_options.opt_profile_generate) {
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		ir_graph *const prof_init_irg = ir_profile_instrument(prof_filename);
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		assert(prof_init_irg->be_data == NULL);
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		initialize_birg(&birgs[num_birgs], prof_init_irg, &env);
		num_birgs++;
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		num_irgs++;
		assert(num_irgs == get_irp_n_irgs());
	}

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	for (be_timer_id_t t = T_FIRST; t < T_LAST+1; ++t) {
		ir_timer_init_parent(be_timers[t]);
	}
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	if (!have_profile) {
		be_timer_push(T_EXECFREQ);
		for (i = 0; i < num_irgs; ++i) {
			ir_graph *irg = get_irp_irg(i);
			ir_estimate_execfreq(irg);
		}
		be_timer_pop(T_EXECFREQ);
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	}
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	/* For all graphs */
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	for (i = 0; i < num_birgs; ++i) {
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		be_irg_t *birg = &birgs[i];
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		ir_graph *irg  = birg->irg;
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		optimization_state_t state;
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		/* set the current graph (this is important for several firm functions) */
		current_ir_graph = irg;

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		if (stat_ev_enabled) {
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			stat_ev_ctx_push_fobj("bemain_irg", irg);
			be_stat_ev("bemain_insns_start", be_count_insns(irg));
			be_stat_ev("bemain_blocks_start", be_count_blocks(irg));
		}
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		/* stop and reset timers */
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		be_timer_push(T_OTHER);
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		/* Verify the initial graph */
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		be_timer_push(T_VERIFY);
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		if (be_options.verify_option == BE_VERIFY_WARN) {
			irg_verify(irg, VERIFY_ENFORCE_SSA);
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			be_check_dominance(irg);
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		} else if (be_options.verify_option == BE_VERIFY_ASSERT) {
			assert(irg_verify(irg, VERIFY_ENFORCE_SSA) && "irg verification failed");
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			assert(be_check_dominance(irg) && "Dominance verification failed");
		}
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		be_timer_pop(T_VERIFY);
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		/* get a code generator for this graph. */
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		arch_env->impl->init_graph(irg);
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		/* some transformations need to be done before abi introduce */
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		if (arch_env->impl->before_abi != NULL)
			arch_env->impl->before_abi(irg);
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		/* implement the ABI conventions. */
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		if (!arch_env->custom_abi) {
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			be_timer_push(T_ABI);
			be_abi_introduce(irg);
			be_timer_pop(T_ABI);
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			dump(DUMP_ABI, irg, "abi");
		}
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		/* We can't have Bad-blocks or critical edges in the backend.
		 * Before removing Bads, we remove unreachable code. */
		optimize_graph_df(irg);
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		remove_critical_cf_edges(irg);
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		remove_bads(irg);
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		/* We often have dead code reachable through out-edges here. So for
		 * now we rebuild edges (as we need correct user count for code
		 * selection) */
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		edges_deactivate(irg);
		edges_activate(irg);

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		dump(DUMP_PREPARED, irg, "before-code-selection");
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		if (be_options.verify_option == BE_VERIFY_WARN) {
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			be_check_dominance(irg);
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		} else if (be_options.verify_option == BE_VERIFY_ASSERT) {
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			assert(be_check_dominance(irg) && "Dominance verification failed");
		}

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		/* perform codeselection */
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		be_timer_push(T_CODEGEN);
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		if (arch_env->impl->prepare_graph != NULL)
			arch_env->impl->prepare_graph(irg);
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		be_timer_pop(T_CODEGEN);
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		if (be_options.verify_option == BE_VERIFY_WARN) {
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			be_check_dominance(irg);
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		} else if (be_options.verify_option == BE_VERIFY_ASSERT) {
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			assert(be_check_dominance(irg) && "Dominance verification failed");
		}

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		dump(DUMP_PREPARED, irg, "code-selection");

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		/* disabled for now, fails for EmptyFor.c and XXEndless.c */
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		/* be_live_chk_compare(irg); */
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		/* schedule the irg */
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		be_timer_push(T_SCHED);
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		be_schedule_graph(irg);
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		be_timer_pop(T_SCHED);
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		dump(DUMP_SCHED, irg, "sched");
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		/* check schedule */
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		be_timer_push(T_VERIFY);
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		be_sched_verify(irg, be_options.verify_option);
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		be_timer_pop(T_VERIFY);
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		/* introduce patterns to assure constraints */
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		be_timer_push(T_CONSTR);
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		/* we switch off optimizations here, because they might cause trouble */
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		save_optimization_state(&state);
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		set_optimize(0);
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		set_opt_cse(0);

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		/* add Keeps for should_be_different constrained nodes  */
		/* beware: needs schedule due to usage of be_ssa_constr */
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		assure_constraints(irg);
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		be_timer_pop(T_CONSTR);
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		dump(DUMP_SCHED, irg, "assured");
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		/* stuff needs to be done after scheduling but before register allocation */
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		be_timer_push(T_RA_PREPARATION);
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		if (arch_env->impl->before_ra != NULL)
			arch_env->impl->before_ra(irg);
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		be_timer_pop(T_RA_PREPARATION);
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		/* connect all stack modifying nodes together (see beabi.c) */
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		be_timer_push(T_ABI);
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		be_abi_fix_stack_nodes(irg);
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		be_timer_pop(T_ABI);
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		dump(DUMP_SCHED, irg, "fix_stack");
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		/* check schedule */
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		be_timer_push(T_VERIFY);
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		be_sched_verify(irg, be_options.verify_option);
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		be_timer_pop(T_VERIFY);
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		if (stat_ev_enabled) {
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			stat_ev_dbl("bemain_costs_before_ra", be_estimate_irg_costs(irg));
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			be_stat_ev("bemain_insns_before_ra", be_count_insns(irg));
			be_stat_ev("bemain_blocks_before_ra", be_count_blocks(irg));
		}
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		/* Do register allocation */
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		be_allocate_registers(irg);
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		stat_ev_dbl("bemain_costs_before_ra", be_estimate_irg_costs(irg));
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		dump(DUMP_RA, irg, "ra");
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		be_timer_push(T_FINISH);
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		if (arch_env->impl->finish_graph != NULL)
			arch_env->impl->finish_graph(irg);
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		be_timer_pop(T_FINISH);
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		dump(DUMP_FINAL, irg, "finish");
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		if (stat_ev_enabled) {
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			be_stat_ev("bemain_insns_finish", be_count_insns(irg));
			be_stat_ev("bemain_blocks_finish", be_count_blocks(irg));
		}

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		/* check schedule and register allocation */
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		be_timer_push(T_VERIFY);
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		if (be_options.verify_option == BE_VERIFY_WARN) {
			irg_verify(irg, VERIFY_ENFORCE_SSA);
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			be_check_dominance(irg);
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			be_verify_schedule(irg);
			be_verify_register_allocation(irg);
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		} else if (be_options.verify_option == BE_VERIFY_ASSERT) {
			assert(irg_verify(irg, VERIFY_ENFORCE_SSA) && "irg verification failed");
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			assert(be_check_dominance(irg) && "Dominance verification failed");
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			assert(be_verify_schedule(irg) && "Schedule verification failed");
			assert(be_verify_register_allocation(irg)
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			       && "register allocation verification failed");
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		}
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		be_timer_pop(T_VERIFY);
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		/* emit assembler code */
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		be_timer_push(T_EMIT);
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		if (arch_env->impl->emit != NULL)
			arch_env->impl->emit(irg);
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		be_timer_pop(T_EMIT);
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		dump(DUMP_FINAL, irg, "end");
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		if (!arch_env->custom_abi) {
			be_timer_push(T_ABI);
			be_abi_free(irg);
			be_timer_pop(T_ABI);
		}
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		restore_optimization_state(&state);
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		be_timer_pop(T_OTHER);

		if (be_timing) {
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			be_timer_id_t t;
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			if (stat_ev_enabled) {
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				for (t = T_FIRST; t < T_LAST+1; ++t) {
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					char buf[128];
					snprintf(buf, sizeof(buf), "bemain_time_%s",
					         get_timer_name(t));
					stat_ev_dbl(buf, ir_timer_elapsed_usec(be_timers[i]));
				}
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			} else {
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				printf("==>> IRG %s <<==\n",
				       get_entity_name(get_irg_entity(irg)));
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				for (t = T_FIRST; t < T_LAST+1; ++t) {
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					double val = ir_timer_elapsed_usec(be_timers[t]) / 1000.0;
					printf("%-20s: %8.3lf msec\n", get_timer_name(t), val);
				}
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			}
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			for (t = T_FIRST; t < T_LAST+1; ++t) {
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				ir_timer_reset(be_timers[t]);
			}
		}
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		be_free_birg(irg);
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		stat_ev_ctx_pop("bemain_irg");
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	}
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	arch_env_end_codegeneration(arch_env);
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	be_done_env(&env);
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	be_info_free();
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}

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/* Main interface to the frontend. */
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void be_main(FILE *file_handle, const char *cup_name)
856
{
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	ir_timer_t *t = NULL;
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	if (be_options.timing == BE_TIME_ON) {
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		t = ir_timer_new();
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		if (ir_timer_enter_high_priority()) {
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			fprintf(stderr, "Warning: Could not enter high priority mode.\n");
		}