bearch.c 7.94 KB
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/**
 * Processor architecture specification.
 * @author Sebastian Hack
 * @date 11.2.2005
 *
 * $Id$
 */
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#ifdef HAVE_CONFIG_H
#include "config.h"
#endif

#ifdef HAVE_ALLOCA_H
#include <alloca.h>
#endif
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#ifdef HAVE_MALLOC_H
#include <malloc.h>
#endif
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#include <string.h>

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#include "bearch.h"
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#include "ircons_t.h"
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#include "irnode_t.h"
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#include "bitset.h"
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#include "pset.h"
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#include "entity.h"

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#include "irprintf.h"

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/* Initialize the architecture environment struct. */
arch_env_t *arch_env_init(arch_env_t *env, const arch_isa_if_t *isa_if, FILE *file_handle)
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{
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  memset(env, 0, sizeof(*env));
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  env->isa = isa_if->init(file_handle);
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  return env;
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}

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arch_env_t *arch_env_push_irn_handler(arch_env_t *env,
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    const arch_irn_handler_t *handler)
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{
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  assert(env->handlers_tos <= ARCH_MAX_HANDLERS);
  env->handlers[env->handlers_tos++] = handler;
  return env;
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}

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const arch_irn_handler_t *arch_env_pop_irn_handler(arch_env_t *env)
{
  assert(env->handlers_tos > 0 && env->handlers_tos <= ARCH_MAX_HANDLERS);
  return env->handlers[--env->handlers_tos];
}

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static const arch_irn_ops_t *fallback_irn_ops = NULL;
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int arch_register_class_put(const arch_register_class_t *cls, bitset_t *bs)
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{
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  if(bs) {
    int i, n;
    for(i = 0, n = cls->n_regs; i < n; ++i)
      bitset_set(bs, i);
  }
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  return cls->n_regs;
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}

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/**
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 * Get the isa responsible for a node.
 * @param env The arch environment with the isa stack.
 * @param irn The node to get the responsible isa for.
 * @return The irn operations given by the responsible isa.
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 */
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static INLINE const arch_irn_ops_t *
get_irn_ops(const arch_env_t *env, const ir_node *irn)
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{
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  int i;
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  for(i = env->handlers_tos - 1; i >= 0; --i) {
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    const arch_irn_handler_t *handler = env->handlers[i];
    const arch_irn_ops_t *ops = handler->get_irn_ops(handler, irn);

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    if(ops)
      return ops;
  }
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  return fallback_irn_ops;
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}

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const arch_irn_ops_t *arch_get_irn_ops(const arch_env_t *env, const ir_node *irn) {
	return get_irn_ops(env, irn);
}

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const arch_register_req_t *arch_get_register_req(const arch_env_t *env,
    arch_register_req_t *req, const ir_node *irn, int pos)
{
  const arch_irn_ops_t *ops = get_irn_ops(env, irn);
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  req->type = arch_register_req_type_none;
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  return ops->impl->get_irn_reg_req(ops, req, irn, pos);
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}

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void arch_set_frame_offset(const arch_env_t *env, ir_node *irn, int offset)
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{
  const arch_irn_ops_t *ops = get_irn_ops(env, irn);
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  ops->impl->set_frame_offset(ops, irn, offset);
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}

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entity *arch_get_frame_entity(const arch_env_t *env, ir_node *irn)
{
  const arch_irn_ops_t *ops = get_irn_ops(env, irn);
  return ops->impl->get_frame_entity(ops, irn);
}

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void arch_set_frame_entity(const arch_env_t *env, ir_node *irn, entity *ent)
{
	const arch_irn_ops_t *ops = get_irn_ops(env, irn);
	ops->impl->set_frame_entity(ops, irn, ent);
}

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arch_inverse_t *arch_get_inverse(const arch_env_t *env, const ir_node *irn, int i, arch_inverse_t *inverse, struct obstack *obstack)
{
  const arch_irn_ops_t *ops = get_irn_ops(env, irn);
  if(ops->impl->get_inverse) {
    return ops->impl->get_inverse(ops, irn, i, inverse, obstack);
  } else {
    return NULL;
  }
}

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int arch_possible_memory_operand(const arch_env_t *env, const ir_node *irn, unsigned int i) {
	const arch_irn_ops_t *ops = get_irn_ops(env, irn);
	if(ops->impl->possible_memory_operand) {
		return ops->impl->possible_memory_operand(ops, irn, i);
	} else {
		return 0;
	}
}

extern void arch_perform_memory_operand(const arch_env_t *env, ir_node *irn, ir_node *reload, unsigned int i) {
	const arch_irn_ops_t *ops = get_irn_ops(env, irn);
	if(ops->impl->perform_memory_operand) {
		ops->impl->perform_memory_operand(ops, irn, reload, i);
	} else {
		return;
	}
}

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int arch_get_op_estimated_cost(const arch_env_t *env, const ir_node *irn)
{
  const arch_irn_ops_t *ops = get_irn_ops(env, irn);
  if(ops->impl->get_op_estimated_cost) {
    return ops->impl->get_op_estimated_cost(ops, irn);
  } else {
    return 1;
  }
}

int arch_is_possible_memory_operand(const arch_env_t *env, const ir_node *irn, int i)
{
  const arch_irn_ops_t *ops = get_irn_ops(env, irn);
  if(ops->impl->possible_memory_operand) {
    return ops->impl->possible_memory_operand(ops, irn, i);
  } else {
    return 0;
  }
}
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int arch_get_allocatable_regs(const arch_env_t *env, const ir_node *irn, int pos, bitset_t *bs)
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{
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  arch_register_req_t local_req;
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  const arch_irn_ops_t *ops = get_irn_ops(env, irn);
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  const arch_register_req_t *req = ops->impl->get_irn_reg_req(ops, &local_req, irn, pos);
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  if(req->type == arch_register_req_type_none) {
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	  bitset_clear_all(bs);
	  return 0;
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  }
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  if(arch_register_req_is(req, limited)) {
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	  req->limited(req->limited_env, bs);
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	  return bitset_popcnt(bs);
  }
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  arch_register_class_put(req->cls, bs);
  return req->cls->n_regs;
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}

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void arch_put_non_ignore_regs(const arch_env_t *env, const arch_register_class_t *cls, bitset_t *bs)
{
	int i;

	for(i = 0; i < cls->n_regs; ++i) {
		if(!arch_register_type_is(&cls->regs[i], ignore))
			bitset_set(bs, i);
	}
}

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int arch_count_non_ignore_regs(const arch_env_t *env, const arch_register_class_t *cls)
{
	int i;
	int result = 0;

	for(i = 0; i < cls->n_regs; ++i) {
		if(!arch_register_type_is(&cls->regs[i], ignore))
			result++;
	}

	return result;
}

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int arch_is_register_operand(const arch_env_t *env,
    const ir_node *irn, int pos)
{
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	arch_register_req_t local_req;
	const arch_irn_ops_t *ops = get_irn_ops(env, irn);
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	const arch_register_req_t *req = ops->impl->get_irn_reg_req(ops, &local_req, irn, pos);
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	return req != NULL;
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}

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int arch_reg_is_allocatable(const arch_env_t *env, const ir_node *irn,
    int pos, const arch_register_t *reg)
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{
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	arch_register_req_t req;

	arch_get_register_req(env, &req, irn, pos);
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	if(req.type == arch_register_req_type_none)
		return 0;

	if(arch_register_req_is(&req, limited)) {
		bitset_t *bs = bitset_alloca(req.cls->n_regs);
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		req.limited(req.limited_env, bs);
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		return bitset_is_set(bs, arch_register_get_index(reg));
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	}

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	return req.cls == reg->reg_class;
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}

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const arch_register_class_t *
arch_get_irn_reg_class(const arch_env_t *env, const ir_node *irn, int pos)
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{
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  arch_register_req_t local_req;
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  const arch_irn_ops_t *ops = get_irn_ops(env, irn);
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  const arch_register_req_t *req = ops->impl->get_irn_reg_req(ops, &local_req, irn, pos);
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  return req ? req->cls : NULL;
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}

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extern const arch_register_t *
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arch_get_irn_register(const arch_env_t *env, const ir_node *irn)
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{
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  const arch_irn_ops_t *ops = get_irn_ops(env, irn);
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  return ops->impl->get_irn_reg(ops, irn);
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}
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extern void arch_set_irn_register(const arch_env_t *env,
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    ir_node *irn, const arch_register_t *reg)
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{
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  const arch_irn_ops_t *ops = get_irn_ops(env, irn);
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  ops->impl->set_irn_reg(ops, irn, reg);
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}
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extern arch_irn_class_t arch_irn_classify(const arch_env_t *env, const ir_node *irn)
{
  const arch_irn_ops_t *ops = get_irn_ops(env, irn);
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  return ops->impl->classify(ops, irn);
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}
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extern arch_irn_flags_t arch_irn_get_flags(const arch_env_t *env, const ir_node *irn)
{
  const arch_irn_ops_t *ops = get_irn_ops(env, irn);
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  return ops->impl->get_flags(ops, irn);
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}
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extern const char *arch_irn_flag_str(arch_irn_flags_t fl)
{
	switch(fl) {
#define XXX(x) case arch_irn_flags_ ## x: return #x;
		XXX(dont_spill);
		XXX(ignore);
		XXX(rematerializable);
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		XXX(modify_sp);
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		XXX(none);
#undef XXX
	}
	return "n/a";
}

extern char *arch_register_req_format(char *buf, size_t len, const arch_register_req_t *req)
{
	char tmp[128];
	snprintf(buf, len, "class: %s", req->cls->name);

	if(arch_register_req_is(req, limited)) {
		bitset_pos_t elm;
		bitset_t *bs = bitset_alloca(req->cls->n_regs);
		req->limited(req->limited_env, bs);
		strncat(buf, " limited:", len);
		bitset_foreach(bs, elm) {
			strncat(buf, " ", len);
			strncat(buf, req->cls->regs[elm].name, len);
		}
	}

	if(arch_register_req_is(req, should_be_same)) {
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		ir_snprintf(tmp, sizeof(tmp), " same to: %+F", req->other_different);
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		strncat(buf, tmp, len);
	}

	if(arch_register_req_is(req, should_be_different)) {
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		ir_snprintf(tmp, sizeof(tmp), " different to: %+F", req->other_different);
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		strncat(buf, tmp, len);
	}

	return buf;
}