* @date 19.02.2007
* @version $Id$
*/
-#ifdef HAVE_CONFIG_H
#include "config.h"
-#endif
#include "set.h"
#include "pset.h"
/**
* Compute the highest register pressure in a block.
- * @param loop_ana The loop ana object.
+ * @param birg The graph.
* @param block The block to compute pressure for.
* @param cls The register class to compute pressure for.
* @return The highest register pressure in the given block.
*/
-static unsigned be_compute_block_pressure(be_loopana_t *loop_ana, ir_node *block, const arch_register_class_t *cls) {
- const be_irg_t *birg = loop_ana->birg;
- const arch_env_t *aenv = be_get_birg_arch_env(birg);
- be_lv_t *lv = be_get_birg_liveness(birg);
- ir_nodeset_t live_nodes;
- ir_node *irn;
- int max_live;
+static unsigned be_compute_block_pressure(const be_irg_t *birg,
+ ir_node *block, const arch_register_class_t *cls)
+{
+ be_lv_t *lv = be_get_birg_liveness(birg);
+ ir_nodeset_t live_nodes;
+ ir_node *irn;
+ int max_live;
DBG((dbg, LEVEL_1, "Processing Block %+F\n", block));
/* determine largest pressure with this block */
ir_nodeset_init(&live_nodes);
- be_liveness_end_of_block(lv, aenv, cls, block, &live_nodes);
+ be_liveness_end_of_block(lv, cls, block, &live_nodes);
max_live = ir_nodeset_size(&live_nodes);
sched_foreach_reverse(block, irn) {
if (is_Phi(irn))
break;
- be_liveness_transfer(aenv, cls, irn, &live_nodes);
- cnt = ir_nodeset_size(&live_nodes);
- max_live = MAX(cnt, max_live);
+ be_liveness_transfer(cls, irn, &live_nodes);
+ cnt = ir_nodeset_size(&live_nodes);
+ max_live = MAX(cnt, max_live);
}
DBG((dbg, LEVEL_1, "Finished with Block %+F (%s %u)\n", block, cls->name, max_live));
unsigned son_pressure;
loop_element elem = get_loop_element(loop, i);
- switch (*elem.kind) {
- case k_ir_node:
- son_pressure = be_compute_block_pressure(loop_ana, elem.node, cls);
- break;
- case k_ir_loop:
- son_pressure = be_compute_loop_pressure(loop_ana, elem.son, cls);
- break;
- default:
- panic("Unknown element found in loop");
- break;
+ if (*elem.kind == k_ir_node)
+ son_pressure = be_compute_block_pressure(loop_ana->birg, elem.node, cls);
+ else {
+ assert(*elem.kind == k_ir_loop);
+ son_pressure = be_compute_loop_pressure(loop_ana, elem.son, cls);
}
pressure = MAX(pressure, son_pressure);
- }
+ }
DBG((dbg, LEVEL_1, "Done with loop %d, pressure %u for class %s\n", loop->loop_nr, pressure, cls->name));
/* update info in set */
be_loopana_t *be_new_loop_pressure_cls(be_irg_t *birg,
const arch_register_class_t *cls) {
ir_graph *irg = be_get_birg_irg(birg);
- be_loopana_t *loop_ana = xmalloc(sizeof(*loop_ana));
+ be_loopana_t *loop_ana = XMALLOC(be_loopana_t);
loop_ana->data = new_set(cmp_loop_info, 16);
loop_ana->birg = birg;
* @param birg The backend irg object
* @return The loop analysis object.
*/
-be_loopana_t *be_new_loop_pressure(be_irg_t *birg) {
+be_loopana_t *be_new_loop_pressure(be_irg_t *birg,
+ const arch_register_class_t *cls)
+{
ir_graph *irg = be_get_birg_irg(birg);
- be_loopana_t *loop_ana = xmalloc(sizeof(*loop_ana));
+ be_loopana_t *loop_ana = XMALLOC(be_loopana_t);
ir_loop *irg_loop = get_irg_loop(irg);
const arch_env_t *arch_env = be_get_birg_arch_env(birg);
int i;
construct_cf_backedges(irg);
}
- for (i = arch_env_get_n_reg_class(arch_env) - 1; i >= 0; --i) {
- const arch_register_class_t *cls = arch_env_get_reg_class(arch_env, i);
- DBG((dbg, LEVEL_1, "\n=====================================================\n", cls->name));
- DBG((dbg, LEVEL_1, " Computing register pressure for class %s:\n", cls->name));
- DBG((dbg, LEVEL_1, "=====================================================\n", cls->name));
+ if (cls != NULL) {
be_compute_loop_pressure(loop_ana, irg_loop, cls);
+ } else {
+ for (i = arch_env_get_n_reg_class(arch_env) - 1; i >= 0; --i) {
+ const arch_register_class_t *cls = arch_env_get_reg_class(arch_env, i);
+ DBG((dbg, LEVEL_1, "\n=====================================================\n", cls->name));
+ DBG((dbg, LEVEL_1, " Computing register pressure for class %s:\n", cls->name));
+ DBG((dbg, LEVEL_1, "=====================================================\n", cls->name));
+ be_compute_loop_pressure(loop_ana, irg_loop, cls);
+ }
}
return loop_ana;
if (entry)
pressure = entry->max_pressure;
else
- assert(0 && "Pressure not computed for given class and loop object.");
+ panic("Pressure not computed for given class and loop object.");
return pressure;
}