#include "config.h"
#endif
+#ifdef HAVE_MALLOC_H
+#include <malloc.h>
+#endif
+#ifdef HAVE_ALLOCA_H
+#include <alloca.h>
+#endif
#ifdef HAVE_STRING_H
#include <string.h>
#endif
#include "irgraph_t.h" /* To access state field. */
#include "irnode_t.h"
#include "ircons_t.h"
+#include "array.h"
#define get_dom_info(bl) (&(bl)->attr.block.dom)
}
/*--------------------------------------------------------------------*/
-/* Building and Removing the dominator datastructure */
+/* Building and Removing the dominator data structure */
/*--------------------------------------------------------------------*/
-/**
- * count the number of blocks and clears the dominance info
- */
-static void count_and_init_blocks_dom(ir_node *bl, void *env) {
- int *n_blocks = (int *) env;
- (*n_blocks) ++;
-
- memset(get_dom_info(bl), 0, sizeof(dom_info));
- set_Block_idom(bl, NULL);
- set_Block_dom_pre_num(bl, -1);
- set_Block_dom_depth(bl, -1);
-}
-
/**
* count the number of blocks and clears the post dominance info
*/
/**
- * Walks Blocks along the out datastructure. If recursion started with
+ * Walks Blocks along the out data structure. If recursion started with
* Start block misses control dead blocks.
*/
static void init_tmp_dom_info(ir_node *bl, tmp_dom_info *parent,
tmp_dom_info *tdi;
int i;
- assert(get_irn_op(bl) == op_Block);
+ assert(is_Block(bl));
if (get_irg_block_visited(current_ir_graph) == get_Block_block_visited(bl))
return;
mark_Block_block_visited(bl);
tdi->block = bl;
/* Iterate */
- for(i = 0; i < get_Block_n_cfg_outs(bl); i++) {
- ir_node *pred = get_Block_cfg_out(bl, i);
- assert(get_irn_opcode(pred) == iro_Block);
+ for (i = get_Block_n_cfg_outs_ka(bl) - 1; i >= 0; --i) {
+ ir_node *pred = get_Block_cfg_out_ka(bl, i);
+ assert(is_Block(pred));
init_tmp_dom_info(pred, tdi, tdi_list, used);
}
}
tmp_dom_info *tdi;
int i;
- assert(get_irn_op(bl) == op_Block);
+ assert(is_Block(bl));
if (get_irg_block_visited(current_ir_graph) == get_Block_block_visited(bl))
return;
mark_Block_block_visited(bl);
tdi->block = bl;
/* Iterate */
- for(i = 0; i < get_Block_n_cfgpreds(bl); i++) {
+ for (i = get_Block_n_cfgpreds(bl) - 1; i >= 0; --i) {
ir_node *pred = get_Block_cfgpred_block(bl, i);
if (is_Bad(pred))
continue;
assert(is_Block(pred));
init_tmp_pdom_info(pred, tdi, tdi_list, used);
}
+
+ /* Handle keep-alives. Note that the preprocessing
+ in init_construction() had already killed all
+ phantom keep-alive edges. All remaining block keep-alives
+ are really edges to endless loops.
+ */
+ if (bl == get_irg_end_block(current_ir_graph)) {
+ ir_node *end = get_irg_end(current_ir_graph);
+
+ for (i = get_irn_arity(end) - 1; i >= 0; --i) {
+ ir_node *pred = get_irn_n(end, i);
+
+ if (is_Block(pred))
+ init_tmp_pdom_info(pred, tdi, tdi_list, used);
+ }
+ }
}
static void dom_compress(tmp_dom_info *v)
w->ancestor = v;
}
+/**
+ * Walker: count the number of blocks and clears the dominance info
+ */
+static void count_and_init_blocks_dom(ir_node *bl, void *env) {
+ int *n_blocks = (int *) env;
+ (*n_blocks) ++;
+
+ memset(get_dom_info(bl), 0, sizeof(dom_info));
+ set_Block_idom(bl, NULL);
+ set_Block_dom_pre_num(bl, -1);
+ set_Block_dom_depth(bl, -1);
+}
+
+/**
+ * Initialize the dominance/postdominance construction:
+ *
+ * - count the number of blocks
+ * - clear the dominance info
+ * - remove block-keepalives of live blocks to reduce
+ * the number of "phantom" block edges
+ *
+ * @param irg the graph
+ * @param pre a walker function that will be called for every block in the graph
+ */
+static int init_construction(ir_graph *irg, irg_walk_func *pre) {
+ ir_graph *rem = current_ir_graph;
+ ir_node *end;
+ int arity;
+ int n_blocks = 0;
+
+ current_ir_graph = irg;
+
+ /* this visits only the reachable blocks */
+ irg_block_walk(get_irg_end_block(irg), pre, NULL, &n_blocks);
+
+ /* now visit the unreachable (from End) Blocks and remove unnecessary keep-alives */
+ end = get_irg_end(irg);
+ arity = get_End_n_keepalives(end);
+ if (arity) { /* we have keep-alives */
+ ir_node **in;
+ int i, j;
+
+ NEW_ARR_A(ir_node *, in, arity);
+ for (i = j = 0; i < arity; i++) {
+ ir_node *pred = get_End_keepalive(end, i);
+
+ if (get_irn_op(pred) == op_Block) {
+ if (Block_not_block_visited(pred)) {
+ /* we found a endless loop */
+ dec_irg_block_visited(irg);
+ irg_block_walk(pred, pre, NULL, &n_blocks);
+ }
+ else
+ continue;
+ }
+ in[j++] = pred;
+ }
+ if (j != arity) {
+ /* we kill some Block keep-alives */
+ set_End_keepalives(end, j, in);
+ set_irg_outs_inconsistent(irg);
+ }
+ }
+
+ current_ir_graph = rem;
+ return n_blocks;
+}
+
+
/* Computes the dominator trees. Sets a flag in irg to "dom_consistent".
If the control flow of the graph is changed this flag must be set to
"dom_inconsistent". */
current_ir_graph = irg;
/* Update graph state */
- assert(get_irg_phase_state(current_ir_graph) != phase_building);
- current_ir_graph->dom_state = dom_consistent;
+ assert(get_irg_phase_state(irg) != phase_building);
+ irg->dom_state = dom_consistent;
/* Count the number of blocks in the graph. */
- n_blocks = 0;
- irg_block_walk(get_irg_end(current_ir_graph), count_and_init_blocks_dom, NULL, &n_blocks);
+ n_blocks = init_construction(irg, count_and_init_blocks_dom);
/* Memory for temporary information. */
tdi_list = xcalloc(n_blocks, sizeof(tdi_list[0]));
- /* We need the out datastructure. */
- if (current_ir_graph->outs_state != outs_consistent)
- compute_irg_outs(current_ir_graph);
+ /* We need the out data structure. */
+ if (irg->outs_state != outs_consistent)
+ compute_irg_outs(irg);
/* this with a standard walker as passing the parent to the sons isn't
simple. */
used = 0;
- inc_irg_block_visited(current_ir_graph);
- init_tmp_dom_info(get_irg_start_block(current_ir_graph), NULL, tdi_list, &used);
+ inc_irg_block_visited(irg);
+ init_tmp_dom_info(get_irg_start_block(irg), NULL, tdi_list, &used);
/* If not all blocks are reachable from Start by out edges this assertion
fails.
assert(used == n_blocks && "Precondition for dom construction violated"); */
/* Step 2 */
irn_arity = get_irn_arity(w->block);
- for (j = 0; j < irn_arity; j++) {
+ for (j = 0; j < irn_arity; j++) {
ir_node *pred = get_Block_cfgpred_block(w->block, j);
tmp_dom_info *u;
u = dom_eval (&tdi_list[get_Block_dom_pre_num(pred)]);
if (u->semi < w->semi) w->semi = u->semi;
}
+
+ /* handle keep-alives if we are at the end block */
+ if (w->block == get_irg_end_block(irg)) {
+ ir_node *end = get_irg_end(irg);
+
+ irn_arity = get_irn_arity(end);
+ for (j = 0; j < irn_arity; j++) {
+ ir_node *pred = get_irn_n(end, j);
+ tmp_dom_info *u;
+
+ if (is_no_Block(pred))
+ continue;
+
+ if (get_Block_dom_pre_num(pred) == -1)
+ continue; /* control-dead */
+
+ u = dom_eval (&tdi_list[get_Block_dom_pre_num(pred)]);
+ if (u->semi < w->semi) w->semi = u->semi;
+ }
+ }
+
/* Add w to w->semi's bucket. w is in exactly one bucket, so
- buckets can ben implemented as linked lists. */
+ buckets can been implemented as linked lists. */
w->bucket = w->semi->bucket;
w->semi->bucket = w;
tdi_list[0].dom = NULL;
set_Block_idom(tdi_list[0].block, NULL);
set_Block_dom_depth(tdi_list[0].block, 1);
- for (i = 1; i < n_blocks; i++) {
+ for (i = 1; i < n_blocks; i++) {
tmp_dom_info *w = &tdi_list[i];
if (w->dom != w->semi) w->dom = w->dom->dom;
current_ir_graph = irg;
/* Update graph state */
- assert(get_irg_phase_state(current_ir_graph) != phase_building);
- current_ir_graph->pdom_state = dom_consistent;
+ assert(get_irg_phase_state(irg) != phase_building);
+ irg->pdom_state = dom_consistent;
/* Count the number of blocks in the graph. */
- n_blocks = 0;
- irg_block_walk(get_irg_end(current_ir_graph), count_and_init_blocks_pdom, NULL, &n_blocks);
+ n_blocks = init_construction(irg, count_and_init_blocks_pdom);
/* Memory for temporary information. */
tdi_list = xcalloc(n_blocks, sizeof(tdi_list[0]));
- /* We need the out datastructure. */
- if (current_ir_graph->outs_state != outs_consistent)
- compute_irg_outs(current_ir_graph);
+ /* We need the out data structure. */
+ if (irg->outs_state != outs_consistent)
+ compute_irg_outs(irg);
/* this with a standard walker as passing the parent to the sons isn't
simple. */
used = 0;
- inc_irg_block_visited(current_ir_graph);
- init_tmp_pdom_info(get_irg_end_block(current_ir_graph), NULL, tdi_list, &used);
+ inc_irg_block_visited(irg);
+ init_tmp_pdom_info(get_irg_end_block(irg), NULL, tdi_list, &used);
/* If not all blocks are reachable from End by cfg edges this assertion
fails.
assert(used == n_blocks && "Precondition for dom construction violated"); */
tmp_dom_info *v;
/* Step 2 */
- irn_arity = get_Block_n_cfg_outs(w->block);
+ irn_arity = get_Block_n_cfg_outs_ka(w->block);
for (j = 0; j < irn_arity; j++) {
- ir_node *succ = get_Block_cfg_out(w->block, j);
+ ir_node *succ = get_Block_cfg_out_ka(w->block, j);
tmp_dom_info *u;
if (get_Block_postdom_pre_num (succ) == -1)
/* clean up */
free(tdi_list);
- current_ir_graph = rem;
+ irg = rem;
/* Do a walk over the tree and assign the tree pre orders. */
{