jumpthreading.c 19.1 KB
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/*
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 * Copyright (C) 1995-2010 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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/**
 * @file
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 * @brief   Path-Sensitive Jump Threading
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 * @date    10. Sep. 2006
 * @author  Christoph Mallon, Matthias Braun
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 */
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#include "config.h"

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#include "iroptimize.h"

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#include <assert.h>
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#include <stdbool.h>
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#include "array_t.h"
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#include "debug.h"
#include "ircons.h"
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#include "irgmod.h"
#include "irgopt.h"
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#include "irgwalk.h"
#include "irnode.h"
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#include "irnode_t.h"
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#include "iredges.h"
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#include "iredges_t.h"
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#include "irtools.h"
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#include "irgraph.h"
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#include "tv.h"
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#include "iroptimize.h"
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#include "iropt_dbg.h"
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#include "irpass.h"
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#include "vrp.h"
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#include "firmstat_t.h"
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#undef AVOID_PHIB
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DEBUG_ONLY(static firm_dbg_module_t *dbg;)
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/**
 * Add the new predecessor x to node node, which is either a Block or a Phi
 */
static void add_pred(ir_node* node, ir_node* x)
{
	ir_node** ins;

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	int const n = get_Block_n_cfgpreds(node);
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	NEW_ARR_A(ir_node*, ins, n + 1);
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	for (int i = 0; i < n; i++)
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		ins[i] = get_irn_n(node, i);
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	ins[n] = x;
	set_irn_in(node, n + 1, ins);
}

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static ir_node *ssa_second_def;
static ir_node *ssa_second_def_block;

static ir_node *search_def_and_create_phis(ir_node *block, ir_mode *mode,
                                           int first)
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{
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	int i;
	int n_cfgpreds;
	ir_graph *irg;
	ir_node *phi;
	ir_node **in;
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	ir_node *dummy;
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	/* In case of a bad input to a block we need to return the bad value */
	if (is_Bad(block)) {
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		ir_graph *irg = get_irn_irg(block);
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		return new_r_Bad(irg, mode);
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	}
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	/* the other defs can't be marked for cases where a user of the original
	 * value is in the same block as the alternative definition.
	 * In this case we mustn't use the alternative definition.
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	 * So we keep a flag that indicated whether we walked at least 1 block
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	 * away and may use the alternative definition */
	if (block == ssa_second_def_block && !first) {
		return ssa_second_def;
	}

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	/* already processed this block? */
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	if (irn_visited(block)) {
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		ir_node *value = (ir_node*) get_irn_link(block);
		return value;
	}

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	irg = get_irn_irg(block);
	assert(block != get_irg_start_block(irg));

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	/* a Block with only 1 predecessor needs no Phi */
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	n_cfgpreds = get_Block_n_cfgpreds(block);
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	if (n_cfgpreds == 1) {
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		ir_node *pred_block = get_Block_cfgpred_block(block, 0);
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		ir_node *value      = search_def_and_create_phis(pred_block, mode, 0);
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		set_irn_link(block, value);
		mark_irn_visited(block);
		return value;
	}

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	/* create a new Phi */
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	NEW_ARR_A(ir_node*, in, n_cfgpreds);
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	dummy = new_r_Dummy(irg, mode);
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	for (i = 0; i < n_cfgpreds; ++i)
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		in[i] = dummy;
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	phi = new_r_Phi(block, n_cfgpreds, in, mode);
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	set_irn_link(block, phi);
	mark_irn_visited(block);

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	/* set Phi predecessors */
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	for (i = 0; i < n_cfgpreds; ++i) {
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		ir_node *pred_block = get_Block_cfgpred_block(block, i);
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		ir_node *pred_val   = search_def_and_create_phis(pred_block, mode, 0);
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		set_irn_n(phi, i, pred_val);
	}

	return phi;
}

/**
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 * Given a set of values this function constructs SSA-form for the users of the
 * first value (the users are determined through the out-edges of the value).
 * Uses the irn_visited flags. Works without using the dominance tree.
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 */
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static void construct_ssa(ir_node *orig_block, ir_node *orig_val,
                          ir_node *second_block, ir_node *second_val)
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{
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	ir_graph *irg;
	ir_mode *mode;

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	/* no need to do anything */
	if (orig_val == second_val)
		return;

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	irg = get_irn_irg(orig_val);
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	inc_irg_visited(irg);

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	mode = get_irn_mode(orig_val);
	set_irn_link(orig_block, orig_val);
	mark_irn_visited(orig_block);
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	ssa_second_def_block = second_block;
	ssa_second_def       = second_val;
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	/* Only fix the users of the first, i.e. the original node */
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	foreach_out_edge_safe(orig_val, edge) {
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		ir_node *user = get_edge_src_irn(edge);
		int j = get_edge_src_pos(edge);
		ir_node *user_block = get_nodes_block(user);
		ir_node *newval;
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		/* ignore keeps */
		if (is_End(user))
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			continue;
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		DB((dbg, LEVEL_3, ">>> Fixing user %+F (pred %d == %+F)\n", user, j, get_irn_n(user, j)));

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		if (is_Phi(user)) {
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			ir_node *pred_block = get_Block_cfgpred_block(user_block, j);
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			newval = search_def_and_create_phis(pred_block, mode, 1);
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		} else {
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			newval = search_def_and_create_phis(user_block, mode, 1);
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		}

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		/* don't fix newly created Phis from the SSA construction */
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		if (newval != user) {
			DB((dbg, LEVEL_4, ">>>> Setting input %d of %+F to %+F\n", j, user, newval));
			set_irn_n(user, j, newval);
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		}
	}
}

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/**
 * jumpthreading produces critical edges, e.g. B-C:
 *     A         A
 *  \ /       \  |
 *   B    =>   B |
 *  / \       / \|
 *     C         C
 *
 * By splitting this critical edge more threadings might be possible.
 */
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static void split_critical_edge(ir_node *block, int pos)
{
	ir_graph *irg = get_irn_irg(block);
	ir_node *in[1];
	ir_node *new_block;
	ir_node *new_jmp;

	in[0] = get_Block_cfgpred(block, pos);
	new_block = new_r_Block(irg, 1, in);
	new_jmp = new_r_Jmp(new_block);
	set_Block_cfgpred(block, pos, new_jmp);
}

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typedef struct jumpthreading_env_t {
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	ir_node       *true_block;
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	ir_node       *cmp;        /**< The Compare node that might be partial evaluated */
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	ir_relation    relation;   /**< The Compare mode of the Compare node. */
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	ir_node       *cnst;
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	ir_tarval     *tv;
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	ir_visited_t   visited_nr;
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	ir_node       *cnst_pred;   /**< the block before the constant */
	int            cnst_pos;    /**< the pos to the constant block (needed to
	                                  kill that edge later) */
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} jumpthreading_env_t;
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static ir_node *copy_and_fix_node(const jumpthreading_env_t *env,
                                  ir_node *block, ir_node *copy_block, int j,
                                  ir_node *node)
{
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	int      i, arity;
	ir_node *copy;

	/* we can evaluate Phis right now, all other nodes get copied */
	if (is_Phi(node)) {
		copy = get_Phi_pred(node, j);
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		/* we might have to evaluate a Phi-cascade */
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		if (get_irn_visited(copy) >= env->visited_nr) {
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			copy = (ir_node*)get_irn_link(copy);
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		}
	} else {
		copy = exact_copy(node);
		set_nodes_block(copy, copy_block);

		assert(get_irn_mode(copy) != mode_X);

		arity = get_irn_arity(copy);
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		for (i = 0; i < arity; ++i) {
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			ir_node *pred     = get_irn_n(copy, i);
			ir_node *new_pred;

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			if (get_nodes_block(pred) != block)
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				continue;

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			if (get_irn_visited(pred) >= env->visited_nr) {
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				new_pred = (ir_node*)get_irn_link(pred);
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			} else {
				new_pred = copy_and_fix_node(env, block, copy_block, j, pred);
			}
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			DB((dbg, LEVEL_2, ">> Set Pred of %+F to %+F\n", copy, new_pred));
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			set_irn_n(copy, i, new_pred);
		}
	}

	set_irn_link(node, copy);
	set_irn_visited(node, env->visited_nr);

	return copy;
}

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static void copy_and_fix(const jumpthreading_env_t *env, ir_node *block,
                         ir_node *copy_block, int j)
{
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	/* Look at all nodes in the cond_block and copy them into pred */
	foreach_out_edge(block, edge) {
		ir_node *node = get_edge_src_irn(edge);
		ir_node *copy;
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		ir_mode *mode;

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		if (is_End(node)) {
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			/* edge is a Keep edge. If the end block is unreachable via normal
			 * control flow, we must maintain end's reachability with Keeps.
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			 */
			keep_alive(copy_block);
			continue;
		}
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		/* ignore control flow */
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		mode = get_irn_mode(node);
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		if (mode == mode_X || is_Cond(node) || is_Switch(node))
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			continue;
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#ifdef AVOID_PHIB
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		/* we may not copy mode_b nodes, because this could produce Phi with
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		 * mode_bs which can't be handled in all backends. Instead we duplicate
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		 * the node and move it to its users */
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		if (mode == mode_b) {
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			ir_node *const pred = get_Proj_pred(node);
			long     const pn   = get_Proj_proj(node);
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			foreach_out_edge_safe(node, edge) {
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				ir_node *cmp_copy;
				ir_node *user       = get_edge_src_irn(edge);
				int pos             = get_edge_src_pos(edge);
				ir_node *user_block = get_nodes_block(user);

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				if (user_block == block)
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					continue;

				cmp_copy = exact_copy(pred);
				set_nodes_block(cmp_copy, user_block);
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				copy = new_r_Proj(cmp_copy, mode_b, pn);
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				set_irn_n(user, pos, copy);
			}
			continue;
		}
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#endif
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		copy = copy_and_fix_node(env, block, copy_block, j, node);
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		/* we might hit values in blocks that have already been processed by a
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		 * recursive find_phi_with_const() call */
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		assert(get_irn_visited(copy) <= env->visited_nr);
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		if (get_irn_visited(copy) >= env->visited_nr) {
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			ir_node *prev_copy = (ir_node*)get_irn_link(copy);
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			if (prev_copy != NULL)
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				set_irn_link(node, prev_copy);
		}
	}
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	/* fix data-flow (and reconstruct SSA if needed) */
	foreach_out_edge(block, edge) {
		ir_node *node = get_edge_src_irn(edge);
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		ir_node *copy_node;
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		ir_mode *mode;

		mode = get_irn_mode(node);
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		if (mode == mode_X || is_Cond(node) || is_Switch(node))
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			continue;
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#ifdef AVOID_PHIB
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		if (mode == mode_b)
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			continue;
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#endif
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		DB((dbg, LEVEL_2, ">> Fixing users of %+F\n", node));

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		copy_node = (ir_node*)get_irn_link(node);
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		construct_ssa(block, node, copy_block, copy_node);
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	}
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	/* make sure new nodes are kept alive if old nodes were */
	ir_graph *irg = get_irn_irg(block);
	ir_node  *end = get_irg_end(irg);
	for (int i = 0, arity = get_End_n_keepalives(end); i < arity; ++i) {
		ir_node *keep = get_End_keepalive(end, i);
		if (get_irn_visited(keep) < env->visited_nr || is_Block(keep))
			continue;
		ir_node *copy = get_irn_link(keep);
		add_End_keepalive(end, copy);
	}
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}

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/**
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 * returns whether the cmp evaluates to true or false, or can't be evaluated!
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 * 1: true, 0: false, -1: can't evaluate
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 *
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 * @param relation  the compare mode of the Compare
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 * @param tv_left   the left tarval
 * @param tv_right  the right tarval
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 */
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static int eval_cmp_tv(ir_relation relation, ir_tarval *tv_left,
                       ir_tarval *tv_right)
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{
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	ir_relation cmp_result = tarval_cmp(tv_left, tv_right);
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	/* does the compare evaluate to true? */
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	if (cmp_result == ir_relation_false)
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		return -1;
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	if ((cmp_result & relation) != 0)
		return 1;
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	return 0;
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}

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/**
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 * returns whether the cmp evaluates to true or false, or can't be evaluated!
 * 1: true, 0: false, -1: can't evaluate
 *
 * @param env      the environment
 * @param cand     the candidate node, either a Const or a Confirm
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 */
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static int eval_cmp(jumpthreading_env_t *env, ir_node *cand)
{
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	if (is_Const(cand)) {
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		ir_tarval *tv_cand = get_Const_tarval(cand);
		ir_tarval *tv_cmp  = get_Const_tarval(env->cnst);
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		return eval_cmp_tv(env->relation, tv_cand, tv_cmp);
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	} else { /* a Confirm */
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		ir_tarval *res = computed_value_Cmp_Confirm(env->cmp, cand, env->cnst, env->relation);
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		if (res == tarval_bad)
			return -1;
		return res == tarval_b_true;
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	}
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}

/**
 * Check for Const or Confirm with Const.
 */
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static int is_Const_or_Confirm(const ir_node *node)
{
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	if (is_Confirm(node))
		node = get_Confirm_bound(node);
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	return is_Const(node);
}

/**
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 * get the tarval of a Const or Confirm with
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 */
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static ir_tarval *get_Const_or_Confirm_tarval(const ir_node *node)
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{
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	if (is_Confirm(node)) {
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		if (get_Confirm_bound(node))
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			node = get_Confirm_bound(node);
	}
	return get_Const_tarval(node);
}

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static ir_node *find_const_or_confirm(jumpthreading_env_t *env, ir_node *jump,
                                      ir_node *value)
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{
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	ir_node *block = get_nodes_block(jump);

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	if (irn_visited_else_mark(value))
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		return NULL;

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	if (is_Const_or_Confirm(value)) {
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		if (eval_cmp(env, value) <= 0)
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			return NULL;
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		DB((
			dbg, LEVEL_1,
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			"> Found jump threading candidate %+F->%+F\n",
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			block, env->true_block
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		));

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		/* adjust true_block to point directly towards our jump */
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		add_pred(env->true_block, jump);
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		split_critical_edge(env->true_block, 0);

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		/* we need a bigger visited nr when going back */
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		env->visited_nr++;
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		return block;
	}
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	if (is_Phi(value)) {
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		int i, arity;
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		/* the Phi has to be in the same Block as the Jmp */
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		if (get_nodes_block(value) != block)
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			return NULL;
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		arity = get_irn_arity(value);
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		for (i = 0; i < arity; ++i) {
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			ir_node *copy_block;
			ir_node *phi_pred = get_Phi_pred(value, i);
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			ir_node *cfgpred  = get_Block_cfgpred(block, i);
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			copy_block = find_const_or_confirm(env, cfgpred, phi_pred);
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			if (copy_block == NULL)
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				continue;

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			/* copy duplicated nodes in copy_block and fix SSA */
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			copy_and_fix(env, block, copy_block, i);
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			if (copy_block == get_nodes_block(cfgpred)) {
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				env->cnst_pred = block;
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				env->cnst_pos  = i;
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			}
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			/* return now as we can't process more possibilities in 1 run */
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			return copy_block;
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		}
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	}
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	return NULL;
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}

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static ir_node *find_candidate(jumpthreading_env_t *env, ir_node *jump,
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                               ir_node *value)
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{
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	ir_node *block = get_nodes_block(jump);

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	if (irn_visited_else_mark(value)) {
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		return NULL;
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	}
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	if (is_Const_or_Confirm(value)) {
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		ir_tarval *tv = get_Const_or_Confirm_tarval(value);
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		if (tv != env->tv)
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			return NULL;

		DB((
			dbg, LEVEL_1,
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			"> Found jump threading candidate %+F->%+F\n",
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			block, env->true_block
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		));

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		/* adjust true_block to point directly towards our jump */
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		add_pred(env->true_block, jump);

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		split_critical_edge(env->true_block, 0);

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		/* we need a bigger visited nr when going back */
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		env->visited_nr++;
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		return block;
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	}
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	if (is_Phi(value)) {
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		int i, arity;
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		/* the Phi has to be in the same Block as the Jmp */
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		if (get_nodes_block(value) != block)
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			return NULL;
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		arity = get_irn_arity(value);
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		for (i = 0; i < arity; ++i) {
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			ir_node *copy_block;
			ir_node *phi_pred = get_Phi_pred(value, i);
			ir_node *cfgpred  = get_Block_cfgpred(block, i);
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			copy_block = find_candidate(env, cfgpred, phi_pred);
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			if (copy_block == NULL)
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				continue;

			/* copy duplicated nodes in copy_block and fix SSA */
			copy_and_fix(env, block, copy_block, i);

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			if (copy_block == get_nodes_block(cfgpred)) {
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				env->cnst_pred = block;
				env->cnst_pos  = i;
			}

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			/* return now as we can't process more possibilities in 1 run */
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			return copy_block;
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		}
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	}
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	if (is_Cmp(value)) {
		ir_node    *cmp      = value;
		ir_node    *left     = get_Cmp_left(cmp);
		ir_node    *right    = get_Cmp_right(cmp);
		ir_relation relation = get_Cmp_relation(cmp);
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		/* we assume that the constant is on the right side, swap left/right
		 * if needed */
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		if (is_Const(left)) {
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			ir_node *t = left;
			left       = right;
			right      = t;
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			relation   = get_inversed_relation(relation);
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		}
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		if (!is_Const(right))
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			return NULL;
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		if (get_nodes_block(left) != block)
			return NULL;
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		/* negate condition when we're looking for the false block */
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		if (env->tv == tarval_b_false) {
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			relation = get_negated_relation(relation);
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		}
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		/* (recursively) look if a pred of a Phi is a constant or a Confirm */
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		env->cmp      = cmp;
		env->relation = relation;
		env->cnst     = right;
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		return find_const_or_confirm(env, jump, left);
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	}
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	return NULL;
}
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/**
 * Block-walker: searches for the following construct
 *
 *  Const or Phi with constants
 *           |
 *          Cmp
 *           |
 *         Cond
 *          /
 *       ProjX
 *        /
 *     Block
 */
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static void thread_jumps(ir_node* block, void* data)
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{
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	jumpthreading_env_t env;
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	bool *changed = (bool*)data;
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	ir_node *selector;
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	ir_node *projx;
	ir_node *cond;
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	ir_node *copy_block;
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	int      selector_evaluated;
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	ir_graph *irg;
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	ir_node *badX;
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	int      cnst_pos;
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	/* we do not deal with Phis, so restrict this to exactly one cfgpred */
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	if (get_Block_n_cfgpreds(block) != 1)
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		return;

	projx = get_Block_cfgpred(block, 0);
	if (!is_Proj(projx))
		return;
	assert(get_irn_mode(projx) == mode_X);

	cond = get_Proj_pred(projx);
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	/* TODO handle switch Conds */
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	if (!is_Cond(cond))
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		return;
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	/* handle cases that can be immediately evaluated */
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	selector = get_Cond_selector(cond);
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	selector_evaluated = -1;
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	if (is_Cmp(selector)) {
		ir_node *left  = get_Cmp_left(selector);
		ir_node *right = get_Cmp_right(selector);
		if (is_Const(left) && is_Const(right)) {
			ir_relation relation = get_Cmp_relation(selector);
			ir_tarval  *tv_left  = get_Const_tarval(left);
			ir_tarval  *tv_right = get_Const_tarval(right);

			selector_evaluated = eval_cmp_tv(relation, tv_left, tv_right);
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		}
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	} else if (is_Const_or_Confirm(selector)) {
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		ir_tarval *tv = get_Const_or_Confirm_tarval(selector);
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		if (tv == tarval_b_true) {
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			selector_evaluated = 1;
		} else {
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			assert(tv == tarval_b_false);
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			selector_evaluated = 0;
		}
	}

	env.cnst_pred = NULL;
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	if (get_Proj_proj(projx) == pn_Cond_false) {
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		env.tv = tarval_b_false;
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		if (selector_evaluated >= 0)
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			selector_evaluated = !selector_evaluated;
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	} else {
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		env.tv = tarval_b_true;
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	}

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	if (selector_evaluated == 0) {
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		ir_graph *irg = get_irn_irg(block);
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		ir_node  *bad = new_r_Bad(irg, mode_X);
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		exchange(projx, bad);
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		*changed = true;
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		return;
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	} else if (selector_evaluated == 1) {
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		dbg_info *dbgi = get_irn_dbg_info(selector);
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		ir_node  *jmp  = new_rd_Jmp(dbgi, get_nodes_block(projx));
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		DBG_OPT_JUMPTHREADING(projx, jmp);
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		exchange(projx, jmp);
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		*changed = true;
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		return;
	}

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	/* (recursively) look if a pred of a Phi is a constant or a Confirm */
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	env.true_block = block;
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	irg = get_irn_irg(block);
	inc_irg_visited(irg);
	env.visited_nr = get_irg_visited(irg);
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	copy_block = find_candidate(&env, projx, selector);
	if (copy_block == NULL)
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		return;

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	/* We might thread the condition block of an infinite loop,
	 * such that there is no path to End anymore. */
	keep_alive(block);

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	/* we have to remove the edge towards the pred as the pred now
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	 * jumps into the true_block. We also have to shorten Phis
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	 * in our block because of this */
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	badX     = new_r_Bad(irg, mode_X);
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	cnst_pos = env.cnst_pos;

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	/* shorten Phis */
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	foreach_out_edge_safe(env.cnst_pred, edge) {
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		ir_node *node = get_edge_src_irn(edge);

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		if (is_Phi(node)) {
			ir_node *bad = new_r_Bad(irg, get_irn_mode(node));
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			set_Phi_pred(node, cnst_pos, bad);
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		}
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	}

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	set_Block_cfgpred(env.cnst_pred, cnst_pos, badX);
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	/* the graph is changed now */
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	*changed = true;
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}

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void opt_jumpthreading(ir_graph* irg)
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{
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	bool changed;
	bool rerun;

	assure_irg_properties(irg,
		IR_GRAPH_PROPERTY_NO_UNREACHABLE_CODE
		| IR_GRAPH_PROPERTY_CONSISTENT_OUT_EDGES
		| IR_GRAPH_PROPERTY_NO_CRITICAL_EDGES);
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	FIRM_DBG_REGISTER(dbg, "firm.opt.jumpthreading");
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	DB((dbg, LEVEL_1, "===> Performing jumpthreading on %+F\n", irg));
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	ir_reserve_resources(irg, IR_RESOURCE_IRN_LINK | IR_RESOURCE_IRN_VISITED);
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	changed = false;
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	do {
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		rerun = false;
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		irg_block_walk_graph(irg, thread_jumps, NULL, &rerun);
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		changed |= rerun;
	} while (rerun);

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	ir_free_resources(irg, IR_RESOURCE_IRN_LINK | IR_RESOURCE_IRN_VISITED);
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	confirm_irg_properties(irg,
		changed ? IR_GRAPH_PROPERTIES_NONE : IR_GRAPH_PROPERTIES_ALL);
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}
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/* Creates an ir_graph pass for opt_jumpthreading. */
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ir_graph_pass_t *opt_jumpthreading_pass(const char *name)
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{
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	return def_graph_pass(name ? name : "jumpthreading", opt_jumpthreading);
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}