/*
- * Project: libFIRM
- * File name: ir/ana/field_temperature.c
- * Purpose: Compute an estimate of field temperature, i.e., field access heuristic.
- * Author: Goetz Lindenmaier
- * Modified by:
- * Created: 21.7.2004
- * CVS-ID: $Id$
- * Copyright: (c) 2004 Universität Karlsruhe
- * Licence: This file protected by GPL - GNU GENERAL PUBLIC LICENSE.
+ * Copyright (C) 1995-2007 University of Karlsruhe. All right reserved.
+ *
+ * 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 Compute an estimate of field temperature, i.e., field access heuristic.
+ * @author Goetz Lindenmaier
+ * @date 21.7.2004
+ * @version $Id$
+ */
+#ifdef HAVE_CONFIG_H
+# include "config.h"
+#endif
+
#include <math.h>
#include "field_temperature.h"
return 1;
}
-entity *get_Sel_accessed_entity(ir_node *sel, int pos) {
+ir_entity *get_Sel_accessed_entity(ir_node *sel, int pos) {
return get_Sel_entity(sel);
}
case tpo_struct: {
int i, n_mem = get_compound_n_members(tp);
for (i = 0; i < n_mem; ++i) {
- entity *mem = get_compound_member(tp, i);
+ ir_entity *mem = get_compound_member(tp, i);
if (get_entity_allocation(mem) == allocation_automatic) {
s += get_type_estimated_n_fields(get_entity_type(mem));
}
case tpo_struct: {
int i, n_mem = get_compound_n_members(tp);
for (i = 0; i < n_mem; ++i) {
- entity *mem = get_compound_member(tp, i);
+ ir_entity *mem = get_compound_member(tp, i);
s += get_type_estimated_size_bytes(get_entity_type(mem));
if (get_entity_allocation(mem) == allocation_automatic) {
int i, n_mems = get_class_n_members(clss);
double n_calls = 0;
for (i = 0; i < n_mems; ++i) {
- entity *mem = get_class_member(clss, i);
+ ir_entity *mem = get_class_member(clss, i);
n_calls += get_entity_estimated_n_dyncalls(mem);
}
return n_calls;
get_class_estimated_dispatch_writes(clss);
}
-double get_entity_estimated_n_loads(entity *ent) {
+double get_entity_estimated_n_loads(ir_entity *ent) {
int i, n_acc = get_entity_n_accesses(ent);
double n_loads = 0;
for (i = 0; i < n_acc; ++i) {
return n_loads;
}
-double get_entity_estimated_n_stores(entity *ent) {
+double get_entity_estimated_n_stores(ir_entity *ent) {
int i, n_acc = get_entity_n_accesses(ent);
double n_stores = 0;
for (i = 0; i < n_acc; ++i) {
}
/* @@@ Should we evaluate the callee array? */
-double get_entity_estimated_n_calls(entity *ent) {
+double get_entity_estimated_n_calls(ir_entity *ent) {
int i, n_acc = get_entity_n_accesses(ent);
double n_calls = 0;
for (i = 0; i < n_acc; ++i) {
return n_calls;
}
-double get_entity_estimated_n_dyncalls(entity *ent) {
+double get_entity_estimated_n_dyncalls(ir_entity *ent) {
int i, n_acc = get_entity_n_accesses(ent);
double n_calls = 0;
for (i = 0; i < n_acc; ++i) {
/* MemOp->Sel combination for static, overwritten entities */
} else if (is_memop(acc) && is_Sel(get_memop_ptr(acc))) {
- entity *ent = get_Sel_entity(get_memop_ptr(acc));
+ ir_entity *ent = get_Sel_entity(get_memop_ptr(acc));
if (is_Class_type(get_entity_owner(ent))) {
/* We might call this for inner entities in compounds. */
if (get_entity_n_overwrites(ent) > 0 ||
#include "entity_t.h" // for the assertion.
-int is_jack_rts_entity(entity *e) {
+int is_jack_rts_entity(ir_entity *e) {
ident *name;
assert(e->ld_name);