sparc_transform.c 47.6 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.
 */

/**
 * @file
 * @brief   code selection (transform FIRM into SPARC FIRM)
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 * @version $Id$
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 */
#include "config.h"

#include "irnode_t.h"
#include "irgraph_t.h"
#include "irmode_t.h"
#include "irgmod.h"
#include "iredges.h"
#include "ircons.h"
#include "irprintf.h"
#include "dbginfo.h"
#include "iropt_t.h"
#include "debug.h"
#include "error.h"

#include "../benode.h"
#include "../beirg.h"
#include "../beutil.h"
#include "../betranshlp.h"
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#include "../beabihelper.h"
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#include "bearch_sparc_t.h"

#include "sparc_nodes_attr.h"
#include "sparc_transform.h"
#include "sparc_new_nodes.h"
#include "gen_sparc_new_nodes.h"

#include "gen_sparc_regalloc_if.h"
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#include "sparc_cconv.h"
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#include <limits.h>

DEBUG_ONLY(static firm_dbg_module_t *dbg = NULL;)

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static sparc_code_gen_t      *env_cg;
static beabi_helper_env_t    *abihelper;
static const arch_register_t *sp_reg = &sparc_gp_regs[REG_SP];
static const arch_register_t *fp_reg = &sparc_gp_regs[REG_FRAME_POINTER];
static calling_convention_t  *cconv  = NULL;
static ir_mode               *mode_gp;
static ir_mode               *mode_fp;
static pmap                  *node_to_stack;
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static ir_node *gen_SymConst(ir_node *node);


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static inline int mode_needs_gp_reg(ir_mode *mode)
{
	return mode_is_int(mode) || mode_is_reference(mode);
}

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/**
 * Create an And that will zero out upper bits.
 *
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 * @param dbgi      debug info
 * @param block     the basic block
 * @param op        the original node
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 * @param src_bits  number of lower bits that will remain
 */
static ir_node *gen_zero_extension(dbg_info *dbgi, ir_node *block, ir_node *op,
                                   int src_bits)
{
	if (src_bits == 8) {
		return new_bd_sparc_And_imm(dbgi, block, op, 0xFF);
	} else if (src_bits == 16) {
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		ir_node *lshift = new_bd_sparc_Sll_imm(dbgi, block, op, 16);
		ir_node *rshift = new_bd_sparc_Slr_imm(dbgi, block, lshift, 16);
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		return rshift;
	} else {
		panic("zero extension only supported for 8 and 16 bits");
	}
}

/**
 * Generate code for a sign extension.
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 *
 * @param dbgi      debug info
 * @param block     the basic block
 * @param op        the original node
 * @param src_bits  number of lower bits that will remain
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 */
static ir_node *gen_sign_extension(dbg_info *dbgi, ir_node *block, ir_node *op,
                                   int src_bits)
{
	int shift_width = 32 - src_bits;
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	ir_node *lshift_node = new_bd_sparc_Sll_imm(dbgi, block, op, shift_width);
	ir_node *rshift_node = new_bd_sparc_Sra_imm(dbgi, block, lshift_node, shift_width);
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	return rshift_node;
}

/**
 * returns true if it is assured, that the upper bits of a node are "clean"
 * which means for a 16 or 8 bit value, that the upper bits in the register
 * are 0 for unsigned and a copy of the last significant bit for signed
 * numbers.
 */
static bool upper_bits_clean(ir_node *transformed_node, ir_mode *mode)
{
	(void) transformed_node;
	(void) mode;
	/* TODO */
	return false;
}

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/**
 * Extend a value to 32 bit signed/unsigned depending on its mode.
 *
 * @param dbgi      debug info
 * @param block     the basic block
 * @param op        the original node
 * @param orig_mode the original mode of op
 */
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static ir_node *gen_extension(dbg_info *dbgi, ir_node *block, ir_node *op,
                              ir_mode *orig_mode)
{
	int bits = get_mode_size_bits(orig_mode);
	if (bits == 32)
		return op;

	if (mode_is_signed(orig_mode)) {
		return gen_sign_extension(dbgi, block, op, bits);
	} else {
		return gen_zero_extension(dbgi, block, op, bits);
	}
}

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/**
 * Creates a possible DAG for a constant.
 */
static ir_node *create_const_graph_value(dbg_info *dbgi, ir_node *block,
				long value)
{
	ir_node *result;

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	/* we need to load hi & lo separately */
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	if (value < -4096 || value > 4095) {
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		ir_node *hi = new_bd_sparc_HiImm(dbgi, block, (int) value);
		result = new_bd_sparc_LoImm(dbgi, block, hi, value);
		be_dep_on_frame(hi);
	} else {
		result = new_bd_sparc_Mov_imm(dbgi, block, (int) value);
		be_dep_on_frame(result);
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	}

	return result;
}

/**
 * Create a DAG constructing a given Const.
 *
 * @param irn  a Firm const
 */
static ir_node *create_const_graph(ir_node *irn, ir_node *block)
{
	tarval  *tv = get_Const_tarval(irn);
	ir_mode *mode = get_tarval_mode(tv);
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	dbg_info *dbgi = get_irn_dbg_info(irn);
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	long value;

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	if (mode_is_reference(mode)) {
		/* SPARC V8 is 32bit, so we can safely convert a reference tarval into Iu */
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		assert(get_mode_size_bits(mode) == get_mode_size_bits(mode_gp));
		tv = tarval_convert_to(tv, mode_gp);
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	}
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	value = get_tarval_long(tv);
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	return create_const_graph_value(dbgi, block, value);
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}

typedef enum {
	MATCH_NONE         = 0,
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	MATCH_COMMUTATIVE  = 1 << 0, /**< commutative operation. */
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	MATCH_SIZE_NEUTRAL = 1 << 1,
} match_flags_t;

typedef ir_node* (*new_binop_reg_func) (dbg_info *dbgi, ir_node *block, ir_node *op1, ir_node *op2);
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typedef ir_node* (*new_binop_fp_func) (dbg_info *dbgi, ir_node *block, ir_node *op1, ir_node *op2, ir_mode *mode);
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typedef ir_node* (*new_binop_imm_func) (dbg_info *dbgi, ir_node *block, ir_node *op1, int simm13);

/**
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 * checks if a node's value can be encoded as a immediate
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 *
 */
static bool is_imm_encodeable(const ir_node *node)
{
	long val;

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	//assert(mode_is_float_vector(get_irn_mode(node)));

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	if (!is_Const(node))
		return false;

	val = get_tarval_long(get_Const_tarval(node));

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	return -4096 <= val && val <= 4095;
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}

/**
 * helper function for binop operations
 *
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 * @param new_reg  register generation function ptr
 * @param new_imm  immediate generation function ptr
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 */
static ir_node *gen_helper_binop(ir_node *node, match_flags_t flags,
				new_binop_reg_func new_reg, new_binop_imm_func new_imm)
{
	ir_node  *block   = be_transform_node(get_nodes_block(node));
	ir_node  *op1     = get_binop_left(node);
	ir_node  *new_op1;
	ir_node  *op2     = get_binop_right(node);
	ir_node  *new_op2;
	dbg_info *dbgi    = get_irn_dbg_info(node);

	if (is_imm_encodeable(op2)) {
		ir_node *new_op1 = be_transform_node(op1);
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		return new_imm(dbgi, block, new_op1, get_tarval_long(get_Const_tarval(op2)));
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	}

	new_op2 = be_transform_node(op2);

	if ((flags & MATCH_COMMUTATIVE) && is_imm_encodeable(op1)) {
		return new_imm(dbgi, block, new_op2, get_tarval_long(get_Const_tarval(op1)) );
	}

	new_op1 = be_transform_node(op1);

	return new_reg(dbgi, block, new_op1, new_op2);
}

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/**
 * helper function for FP binop operations
 */
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static ir_node *gen_helper_binfpop(ir_node *node, ir_mode *mode,
                                   new_binop_fp_func new_func)
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{
	ir_node  *block   = be_transform_node(get_nodes_block(node));
	ir_node  *op1     = get_binop_left(node);
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	ir_node  *new_op1 = be_transform_node(op1);
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	ir_node  *op2     = get_binop_right(node);
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	ir_node  *new_op2 = be_transform_node(op2);
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	dbg_info *dbgi    = get_irn_dbg_info(node);

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	return new_func(dbgi, block, new_op1, new_op2, mode);
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}

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/**
 * Creates an sparc Add.
 *
 * @param node   FIRM node
 * @return the created sparc Add node
 */
static ir_node *gen_Add(ir_node *node)
{
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	ir_mode *mode = get_irn_mode(node);
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	if (mode_is_float(mode)) {
		return gen_helper_binfpop(node, mode, new_bd_sparc_fadd);
	}
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	return gen_helper_binop(node, MATCH_COMMUTATIVE | MATCH_SIZE_NEUTRAL, new_bd_sparc_Add_reg, new_bd_sparc_Add_imm);
}

/**
 * Creates an sparc Sub.
 *
 * @param node       FIRM node
 * @return the created sparc Sub node
 */
static ir_node *gen_Sub(ir_node *node)
{
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	ir_mode *mode = get_irn_mode(node);
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	if (mode_is_float(mode)) {
		return gen_helper_binfpop(node, mode, new_bd_sparc_fsub);
	}
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	return gen_helper_binop(node, MATCH_SIZE_NEUTRAL, new_bd_sparc_Sub_reg, new_bd_sparc_Sub_imm);
}

/**
 * Transforms a Load.
 *
 * @param node    the ir Load node
 * @return the created sparc Load node
 */
static ir_node *gen_Load(ir_node *node)
{
	ir_mode  *mode     = get_Load_mode(node);
	ir_node  *block    = be_transform_node(get_nodes_block(node));
	ir_node  *ptr      = get_Load_ptr(node);
	ir_node  *new_ptr  = be_transform_node(ptr);
	ir_node  *mem      = get_Load_mem(node);
	ir_node  *new_mem  = be_transform_node(mem);
	dbg_info *dbgi      = get_irn_dbg_info(node);
	ir_node  *new_load = NULL;

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	if (mode_is_float(mode)) {
		new_load = new_bd_sparc_Ldf(dbgi, block, new_ptr, new_mem, mode, NULL, 0, 0, false);
	} else {
		new_load = new_bd_sparc_Ld(dbgi, block, new_ptr, new_mem, mode, NULL, 0, 0, false);
	}
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	set_irn_pinned(new_load, get_irn_pinned(node));

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	return new_load;
}

/**
 * Transforms a Store.
 *
 * @param node    the ir Store node
 * @return the created sparc Store node
 */
static ir_node *gen_Store(ir_node *node)
{
	ir_node  *block    = be_transform_node(get_nodes_block(node));
	ir_node  *ptr      = get_Store_ptr(node);
	ir_node  *new_ptr  = be_transform_node(ptr);
	ir_node  *mem      = get_Store_mem(node);
	ir_node  *new_mem  = be_transform_node(mem);
	ir_node  *val      = get_Store_value(node);
	ir_node  *new_val  = be_transform_node(val);
	ir_mode  *mode     = get_irn_mode(val);
	dbg_info *dbgi     = get_irn_dbg_info(node);
	ir_node *new_store = NULL;

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	if (mode_is_float(mode)) {
		new_store = new_bd_sparc_Stf(dbgi, block, new_ptr, new_val, new_mem, mode, NULL, 0, 0, false);
	} else {
		new_store = new_bd_sparc_St(dbgi, block, new_ptr, new_val, new_mem, mode, NULL, 0, 0, false);
	}
	set_irn_pinned(new_store, get_irn_pinned(node));
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	return new_store;
}

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/**
 * Creates an sparc Mul.
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 * returns the lower 32bits of the 64bit multiply result
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 *
 * @return the created sparc Mul node
 */
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static ir_node *gen_Mul(ir_node *node)
{
	ir_mode *mode = get_irn_mode(node);
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	if (mode_is_float(mode)) {
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		return gen_helper_binfpop(node, mode, new_bd_sparc_fmul);
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	}
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	assert(mode_is_data(mode));
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	return gen_helper_binop(node, MATCH_COMMUTATIVE | MATCH_SIZE_NEUTRAL,
	                        new_bd_sparc_Mul_reg, new_bd_sparc_Mul_imm);
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}

/**
 * Creates an sparc Mulh.
 * Mulh returns the upper 32bits of a mul instruction
 *
 * @return the created sparc Mulh node
 */
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static ir_node *gen_Mulh(ir_node *node)
{
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	ir_mode *mode = get_irn_mode(node);
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	ir_node *mul;
	ir_node *proj_res_hi;

	if (mode_is_float(mode))
		panic("FP not supported yet");


	assert(mode_is_data(mode));
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	mul = gen_helper_binop(node, MATCH_COMMUTATIVE | MATCH_SIZE_NEUTRAL, new_bd_sparc_Mulh_reg, new_bd_sparc_Mulh_imm);
	//arch_irn_add_flags(mul, arch_irn_flags_modify_flags);
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	proj_res_hi = new_r_Proj(mul, mode_gp, pn_sparc_Mulh_low);
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	return proj_res_hi;
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}
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/**
 * Creates an sparc Div.
 *
 * @return the created sparc Div node
 */
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static ir_node *gen_Div(ir_node *node)
{
	ir_mode *mode = get_Div_resmode(node);
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	ir_node *res;

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	assert(!mode_is_float(mode));
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	if (mode_is_signed(mode)) {
		res = gen_helper_binop(node, 0, new_bd_sparc_SDiv_reg,
		                       new_bd_sparc_SDiv_imm);
	} else {
		res = gen_helper_binop(node, 0, new_bd_sparc_UDiv_reg,
		                       new_bd_sparc_UDiv_imm);
	}
	return res;
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}

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static ir_node *gen_Quot(ir_node *node)
{
	ir_mode *mode = get_Quot_resmode(node);
	assert(mode_is_float(mode));
	return gen_helper_binfpop(node, mode, new_bd_sparc_fdiv);
}
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/**
 * transform abs node:
 * mov a, b
 * sra b, 31, b
 * xor a, b
 * sub a, b
 *
 * @return
 */
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static ir_node *gen_Abs(ir_node *node) {
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	ir_node  *block   = be_transform_node(get_nodes_block(node));
	ir_mode  *mode    = get_irn_mode(node);
	dbg_info *dbgi    = get_irn_dbg_info(node);
	ir_node   *op     = get_Abs_op(node);

	ir_node *mov, *sra, *xor, *sub, *new_op;

	if (mode_is_float(mode))
		panic("FP not supported yet");

	new_op = be_transform_node(op);

	mov = new_bd_sparc_Mov_reg(dbgi, block, new_op);
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	sra = new_bd_sparc_Sra_imm(dbgi, block, mov, 31);
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	xor = new_bd_sparc_Xor_reg(dbgi, block, new_op, sra);
	sub = new_bd_sparc_Sub_reg(dbgi, block, sra, xor);

	return sub;
}

/**
 * Transforms a Not node.
 *
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 * @return the created sparc Not node
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 */
static ir_node *gen_Not(ir_node *node)
{
	ir_node  *block   = be_transform_node(get_nodes_block(node));
	ir_node  *op      = get_Not_op(node);
	ir_node  *new_op  = be_transform_node(op);
	dbg_info *dbgi    = get_irn_dbg_info(node);

	return new_bd_sparc_Not(dbgi, block, new_op);
}

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static ir_node *gen_And(ir_node *node)
{
	return gen_helper_binop(node, MATCH_COMMUTATIVE, new_bd_sparc_And_reg, new_bd_sparc_And_imm);
}

static ir_node *gen_Or(ir_node *node)
{
	return gen_helper_binop(node, MATCH_COMMUTATIVE, new_bd_sparc_Or_reg, new_bd_sparc_Or_imm);
}

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static ir_node *gen_Eor(ir_node *node)
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{
	return gen_helper_binop(node, MATCH_COMMUTATIVE, new_bd_sparc_Xor_reg, new_bd_sparc_Xor_imm);
}

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static ir_node *gen_Shl(ir_node *node)
{
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	return gen_helper_binop(node, MATCH_SIZE_NEUTRAL, new_bd_sparc_Sll_reg, new_bd_sparc_Sll_imm);
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}

static ir_node *gen_Shr(ir_node *node)
{
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	return gen_helper_binop(node, MATCH_SIZE_NEUTRAL, new_bd_sparc_Slr_reg, new_bd_sparc_Slr_imm);
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}
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static ir_node *gen_Shrs(ir_node *node)
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{
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	return gen_helper_binop(node, MATCH_SIZE_NEUTRAL, new_bd_sparc_Sra_reg, new_bd_sparc_Sra_imm);
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}

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/**
 * Transforms a Minus node.
 */
static ir_node *gen_Minus(ir_node *node)
{
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	ir_node  *block  = be_transform_node(get_nodes_block(node));
	ir_node  *op     = get_Minus_op(node);
	ir_node  *new_op = be_transform_node(op);
	dbg_info *dbgi   = get_irn_dbg_info(node);
	ir_mode  *mode   = get_irn_mode(node);
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	if (mode_is_float(mode)) {
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		return new_bd_sparc_fneg(dbgi, block, new_op, mode);
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	}

	return new_bd_sparc_Minus(dbgi, block, new_op);
}

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static ir_node *make_addr(dbg_info *dbgi, ir_entity *entity)
{
	ir_node *block = get_irg_start_block(current_ir_graph);
	ir_node *node  = new_bd_sparc_SymConst(dbgi, block, entity);
	be_dep_on_frame(node);
	return node;
}

/**
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 * Create an entity for a given (floating point) tarval
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 */
static ir_entity *create_float_const_entity(tarval *tv)
{
	ir_entity        *entity = (ir_entity*) pmap_get(env_cg->constants, tv);
	ir_initializer_t *initializer;
	ir_mode          *mode;
	ir_type          *type;
	ir_type          *glob;

	if (entity != NULL)
		return entity;

	mode   = get_tarval_mode(tv);
	type   = get_type_for_mode(mode);
	glob   = get_glob_type();
	entity = new_entity(glob, id_unique("C%u"), type);
	set_entity_visibility(entity, ir_visibility_private);
	add_entity_linkage(entity, IR_LINKAGE_CONSTANT);

	initializer = create_initializer_tarval(tv);
	set_entity_initializer(entity, initializer);

	pmap_insert(env_cg->constants, tv, entity);
	return entity;
}

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/**
 * Transforms a Const node.
 *
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 * @param node    the ir Const node
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 * @return The transformed sparc node.
 */
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static ir_node *gen_Const(ir_node *node)
{
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	ir_node *block = be_transform_node(get_nodes_block(node));
	ir_mode *mode  = get_irn_mode(node);
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	if (mode_is_float(mode)) {
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		dbg_info  *dbgi   = get_irn_dbg_info(node);
		tarval    *tv     = get_Const_tarval(node);
		ir_entity *entity = create_float_const_entity(tv);
		ir_node   *addr   = make_addr(dbgi, entity);
		ir_node   *mem    = new_NoMem();
		ir_node   *new_op
			= new_bd_sparc_Ldf(dbgi, block, addr, mem, mode, NULL, 0, 0, false);

		ir_node   *proj   = new_Proj(new_op, mode, pn_sparc_Ldf_res);
		return proj;
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	}
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	return create_const_graph(node, block);
}

/**
 * AddSP
 * @param node the ir AddSP node
 * @return transformed sparc SAVE node
 */
static ir_node *gen_be_AddSP(ir_node *node)
{
	ir_node  *block  = be_transform_node(get_nodes_block(node));
	ir_node  *sz     = get_irn_n(node, be_pos_AddSP_size);
	ir_node  *new_sz = be_transform_node(sz);
	ir_node  *sp     = get_irn_n(node, be_pos_AddSP_old_sp);
	ir_node  *new_sp = be_transform_node(sp);
	dbg_info *dbgi   = get_irn_dbg_info(node);
	ir_node  *nomem  = new_NoMem();
	ir_node  *new_op;

	/* SPARC stack grows in reverse direction */
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	new_op = new_bd_sparc_SubSP(dbgi, block, new_sp, new_sz, nomem);
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	return new_op;
}

/**
 * SubSP
 * @param node the ir SubSP node
 * @return transformed sparc SAVE node
 */
static ir_node *gen_be_SubSP(ir_node *node)
{
	ir_node  *block  = be_transform_node(get_nodes_block(node));
	ir_node  *sz     = get_irn_n(node, be_pos_SubSP_size);
	ir_node  *new_sz = be_transform_node(sz);
	ir_node  *sp     = get_irn_n(node, be_pos_SubSP_old_sp);
	ir_node  *new_sp = be_transform_node(sp);
	dbg_info *dbgi   = get_irn_dbg_info(node);
	ir_node  *nomem  = new_NoMem();
	ir_node  *new_op;

	/* SPARC stack grows in reverse direction */
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	new_op = new_bd_sparc_AddSP(dbgi, block, new_sp, new_sz, nomem);
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	return new_op;
}

/**
 * transform FrameAddr
 */
static ir_node *gen_be_FrameAddr(ir_node *node)
{
	ir_node   *block  = be_transform_node(get_nodes_block(node));
	ir_entity *ent    = be_get_frame_entity(node);
	ir_node   *fp     = be_get_FrameAddr_frame(node);
	ir_node   *new_fp = be_transform_node(fp);
	dbg_info  *dbgi   = get_irn_dbg_info(node);
	ir_node   *new_node;
	new_node = new_bd_sparc_FrameAddr(dbgi, block, new_fp, ent);
	return new_node;
}

/**
 * Transform a be_Copy.
 */
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static ir_node *gen_be_Copy(ir_node *node)
{
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	ir_node *result = be_duplicate_node(node);
	ir_mode *mode   = get_irn_mode(result);

	if (mode_needs_gp_reg(mode)) {
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		set_irn_mode(node, mode_gp);
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	}

	return result;
}

/**
 * Transform a Call
 */
static ir_node *gen_be_Call(ir_node *node)
{
	ir_node *res = be_duplicate_node(node);
	arch_irn_add_flags(res, arch_irn_flags_modify_flags);
	return res;
}

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/**
 * Transforms a Switch.
 *
 */
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static ir_node *gen_SwitchJmp(ir_node *node)
{
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	ir_node  *block    = be_transform_node(get_nodes_block(node));
	ir_node  *selector = get_Cond_selector(node);
	dbg_info *dbgi     = get_irn_dbg_info(node);
	ir_node *new_op = be_transform_node(selector);
	ir_node *const_graph;
	ir_node *sub;

	ir_node *proj;
	const ir_edge_t *edge;
	int min = INT_MAX;
	int max = INT_MIN;
	int translation;
	int pn;
	int n_projs;

	foreach_out_edge(node, edge) {
		proj = get_edge_src_irn(edge);
		assert(is_Proj(proj) && "Only proj allowed at SwitchJmp");

		pn = get_Proj_proj(proj);

		min = pn<min ? pn : min;
		max = pn>max ? pn : max;
	}

	translation = min;
	n_projs = max - translation + 1;

	foreach_out_edge(node, edge) {
		proj = get_edge_src_irn(edge);
		assert(is_Proj(proj) && "Only proj allowed at SwitchJmp");

		pn = get_Proj_proj(proj) - translation;
		set_Proj_proj(proj, pn);
	}

	const_graph = create_const_graph_value(dbgi, block, translation);
	sub = new_bd_sparc_Sub_reg(dbgi, block, new_op, const_graph);
	return new_bd_sparc_SwitchJmp(dbgi, block, sub, n_projs, get_Cond_default_proj(node) - translation);
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}

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static ir_mode *get_cmp_mode(ir_node *b_value)
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{
	ir_node *pred;
	ir_node *op;

	if (!is_Proj(b_value))
		panic("can't determine cond signednes");
	pred = get_Proj_pred(b_value);
	if (!is_Cmp(pred))
		panic("can't determine cond signednes (no cmp)");
	op = get_Cmp_left(pred);
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	return get_irn_mode(op);
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}

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/**
 * Transform Cond nodes
 */
static ir_node *gen_Cond(ir_node *node)
{
	ir_node  *selector = get_Cond_selector(node);
	ir_mode  *mode     = get_irn_mode(selector);
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	ir_mode  *cmp_mode;
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	ir_node  *block;
	ir_node  *flag_node;
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	bool      is_unsigned;
	pn_Cmp    pnc;
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	dbg_info *dbgi;

	// switch/case jumps
	if (mode != mode_b) {
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		return gen_SwitchJmp(node);
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	}

	// regular if/else jumps
	assert(is_Proj(selector));
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	assert(is_Cmp(get_Proj_pred(selector)));
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	cmp_mode = get_cmp_mode(selector);

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	block       = be_transform_node(get_nodes_block(node));
	dbgi        = get_irn_dbg_info(node);
	flag_node   = be_transform_node(get_Proj_pred(selector));
	pnc         = get_Proj_proj(selector);
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	is_unsigned = !mode_is_signed(cmp_mode);
	if (mode_is_float(cmp_mode)) {
		assert(!is_unsigned);
		return new_bd_sparc_fbfcc(dbgi, block, flag_node, pnc);
	} else {
		return new_bd_sparc_Bicc(dbgi, block, flag_node, pnc, is_unsigned);
	}
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}

/**
 * transform Cmp
 */
static ir_node *gen_Cmp(ir_node *node)
{
	ir_node  *block    = be_transform_node(get_nodes_block(node));
	ir_node  *op1      = get_Cmp_left(node);
	ir_node  *op2      = get_Cmp_right(node);
	ir_mode  *cmp_mode = get_irn_mode(op1);
	dbg_info *dbgi     = get_irn_dbg_info(node);
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	ir_node  *new_op1  = be_transform_node(op1);
	ir_node  *new_op2  = be_transform_node(op2);
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	assert(get_irn_mode(op2) == cmp_mode);

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	if (mode_is_float(cmp_mode)) {
		return new_bd_sparc_fcmp(dbgi, block, new_op1, new_op2, cmp_mode);
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	}

	/* integer compare */
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	new_op1 = gen_extension(dbgi, block, new_op1, cmp_mode);
	new_op2 = gen_extension(dbgi, block, new_op2, cmp_mode);
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	return new_bd_sparc_Cmp_reg(dbgi, block, new_op1, new_op2);
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}

/**
 * Transforms a SymConst node.
 */
static ir_node *gen_SymConst(ir_node *node)
{
	ir_entity *entity = get_SymConst_entity(node);
	dbg_info  *dbgi   = get_irn_dbg_info(node);

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	return make_addr(dbgi, entity);
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}

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/**
 * Transforms a Conv node.
 *
 */
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static ir_node *gen_Conv(ir_node *node)
{
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	ir_node  *block    = be_transform_node(get_nodes_block(node));
	ir_node  *op       = get_Conv_op(node);
	ir_node  *new_op   = be_transform_node(op);
	ir_mode  *src_mode = get_irn_mode(op);
	ir_mode  *dst_mode = get_irn_mode(node);
	dbg_info *dbg      = get_irn_dbg_info(node);

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	int src_bits = get_mode_size_bits(src_mode);
	int dst_bits = get_mode_size_bits(dst_mode);

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	if (src_mode == dst_mode)
		return new_op;

	if (mode_is_float(src_mode) || mode_is_float(dst_mode)) {
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		assert((src_bits <= 64 && dst_bits <= 64) && "quad FP not implemented");

		if (mode_is_float(src_mode)) {
			if (mode_is_float(dst_mode)) {
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				/* float -> float conv */
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				return new_bd_sparc_fftof(dbg, block, new_op, src_mode, dst_mode);
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			} else {
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				/* float -> int conv */
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				if (!mode_is_signed(dst_mode))
					panic("float to unsigned not implemented yet");
				return new_bd_sparc_fftoi(dbg, block, new_op, src_mode);
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			}
		} else {
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			/* int -> float conv */
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			if (!mode_is_signed(src_mode))
				panic("unsigned to float not implemented yet");
			return new_bd_sparc_fitof(dbg, block, new_op, dst_mode);
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		}
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	} else { /* complete in gp registers */
		int min_bits;
		ir_mode *min_mode;

		if (src_bits == dst_bits) {
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			/* kill unnecessary conv */
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			return new_op;
		}

		if (src_bits < dst_bits) {
			min_bits = src_bits;
			min_mode = src_mode;
		} else {
			min_bits = dst_bits;
			min_mode = dst_mode;
		}

		if (upper_bits_clean(new_op, min_mode)) {
			return new_op;
		}

		if (mode_is_signed(min_mode)) {
			return gen_sign_extension(dbg, block, new_op, min_bits);
		} else {
			return gen_zero_extension(dbg, block, new_op, min_bits);
		}
	}
}

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static ir_node *gen_Unknown(ir_node *node)
{
	ir_node  *block     = get_nodes_block(node);
	ir_node  *new_block = be_transform_node(block);
	dbg_info *dbgi      = get_irn_dbg_info(node);

	/* just produce a 0 */
	ir_mode *mode = get_irn_mode(node);
	if (mode_is_float(mode)) {
		panic("FP not implemented");
		be_dep_on_frame(node);
		return node;
	} else if (mode_needs_gp_reg(mode)) {
		return create_const_graph_value(dbgi, new_block, 0);
	}

	panic("Unexpected Unknown mode");
}

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/**
 * Produces the type which sits between the stack args and the locals on the
 * stack.
 */
static ir_type *sparc_get_between_type(void)
{
	static ir_type *between_type = NULL;

	if (between_type == NULL) {
		between_type = new_type_class(new_id_from_str("sparc_between_type"));
		set_type_size_bytes(between_type, SPARC_MIN_STACKSIZE);
	}

	return between_type;
}

static void create_stacklayout(ir_graph *irg)
{
	ir_entity         *entity        = get_irg_entity(irg);
	ir_type           *function_type = get_entity_type(entity);
	be_stack_layout_t *layout        = be_get_irg_stack_layout(irg);
	ir_type           *arg_type;
	int                p;
	int                n_params;

	/* calling conventions must be decided by now */
	assert(cconv != NULL);

	/* construct argument type */
	arg_type = new_type_struct(id_mangle_u(get_entity_ident(entity), new_id_from_chars("arg_type", 8)));
	n_params = get_method_n_params(function_type);
	for (p = 0; p < n_params; ++p) {
		reg_or_stackslot_t *param = &cconv->parameters[p];
		char                buf[128];
		ident              *id;

		if (param->type == NULL)
			continue;

		snprintf(buf, sizeof(buf), "param_%d", p);
		id            = new_id_from_str(buf);
		param->entity = new_entity(arg_type, id, param->type);
		set_entity_offset(param->entity, param->offset);
	}

	memset(layout, 0, sizeof(*layout));

	layout->frame_type     = get_irg_frame_type(irg);
	layout->between_type   = sparc_get_between_type();
	layout->arg_type       = arg_type;
	layout->initial_offset = 0;
	layout->initial_bias   = 0;
	layout->stack_dir      = -1;
	layout->sp_relative    = false;

	assert(N_FRAME_TYPES == 3);
	layout->order[0] = layout->frame_type;
	layout->order[1] = layout->between_type;
	layout->order[2] = layout->arg_type;
}

/**
 * transform the start node to the prolog code + initial barrier
 */
static ir_node *gen_Start(ir_node *node)
{
	ir_graph  *irg           = get_irn_irg(node);
	ir_entity *entity        = get_irg_entity(irg);
	ir_type   *function_type = get_entity_type(entity);
	ir_node   *block         = get_nodes_block(node);
	ir_node   *new_block     = be_transform_node(block);
	dbg_info  *dbgi          = get_irn_dbg_info(node);
	ir_node   *mem;
	ir_node   *start;
	ir_node   *sp;
	ir_node   *fp;
	ir_node   *barrier;
	ir_node   *save;
	int        i;

	/* stackpointer is important at function prolog */
	be_prolog_add_reg(abihelper, sp_reg,
			arch_register_req_type_produces_sp | arch_register_req_type_ignore);
	/* function parameters in registers */
	for (i = 0; i < get_method_n_params(function_type); ++i) {
		const reg_or_stackslot_t *param = &cconv->parameters[i];
		if (param->reg0 != NULL)
			be_prolog_add_reg(abihelper, param->reg0, 0);
		if (param->reg1 != NULL)
			be_prolog_add_reg(abihelper, param->reg1, 0);
	}

	start = be_prolog_create_start(abihelper, dbgi, new_block);

	mem  = be_prolog_get_memory(abihelper);
	sp   = be_prolog_get_reg_value(abihelper, sp_reg);
	save = new_bd_sparc_Save(NULL, block, sp, mem, SPARC_MIN_STACKSIZE);
	fp   = new_r_Proj(save, mode_gp, pn_sparc_Save_frame);
	sp   = new_r_Proj(save, mode_gp, pn_sparc_Save_stack);
	mem  = new_r_Proj(save, mode_M, pn_sparc_Save_mem);
	arch_set_irn_register(fp, fp_reg);
	arch_set_irn_register(sp, sp_reg);

	be_prolog_add_reg(abihelper, fp_reg, arch_register_req_type_ignore);
	be_prolog_set_reg_value(abihelper, fp_reg, fp);

	sp = be_new_IncSP(sp_reg, new_block, sp, BE_STACK_FRAME_SIZE_EXPAND, 0);
	be_prolog_set_reg_value(abihelper, sp_reg, sp);
	be_prolog_set_memory(abihelper, mem);

	barrier = be_prolog_create_barrier(abihelper, new_block);

	return barrier;
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