}
}
if (n_ret > 0)
- phi = new_Phi(n_ret, cf_pred, get_irn_mode(cf_pred[0]));
+ phi = new_Phi(n_ret, cf_pred, get_irn_mode(cf_pred[0]));
else
- phi = new_Bad();
+ phi = new_Bad();
res_pred[j] = phi;
/* Conserve Phi-list for further inlinings -- but might be optimized */
if (get_nodes_Block(phi) == post_bl) {
/* get_entity_name(get_irg_entity(callee))); */
if (inline_method(call, callee)) {
did_inline = 1;
- env->n_call_nodes--;
- eset_insert_all(env->call_nodes, callee_env->call_nodes);
- env->n_call_nodes += callee_env->n_call_nodes;
- env->n_nodes += callee_env->n_nodes;
- callee_env->n_callers--;
- }
+ env->n_call_nodes--;
+ eset_insert_all(env->call_nodes, callee_env->call_nodes);
+ env->n_call_nodes += callee_env->n_call_nodes;
+ env->n_nodes += callee_env->n_nodes;
+ callee_env->n_callers--;
+ }
} else {
eset_insert(env->call_nodes, call);
}
assert(get_irn_op(n) != op_Block);
if ((get_irn_op(n) == op_Const) ||
- (get_irn_op(n) == op_SymConst) ||
- (is_Bad(n)) ||
- (get_irn_op(n) == op_Unknown)) {
+ (get_irn_op(n) == op_SymConst) ||
+ (is_Bad(n)) ||
+ (get_irn_op(n) == op_Unknown)) {
/* These nodes will not be placed by the loop below. */
b = get_irg_start_block(current_ir_graph);
depth = 1;
ir_node *dep_block;
if ((irn_not_visited(dep))
- && (get_op_pinned(get_irn_op(dep)) == floats)) {
- place_floats_early(dep, worklist);
+ && (get_op_pinned(get_irn_op(dep)) == floats)) {
+ place_floats_early(dep, worklist);
}
/*
been finished on them. We do not have any unfinished inputs! */
dep_block = get_nodes_Block(dep);
if ((!is_Bad(dep_block)) &&
- (get_Block_dom_depth(dep_block) > depth)) {
- b = dep_block;
- depth = get_Block_dom_depth(dep_block);
+ (get_Block_dom_depth(dep_block) > depth)) {
+ b = dep_block;
+ depth = get_Block_dom_depth(dep_block);
}
/* Avoid that the node is placed in the Start block */
if ((depth == 1) && (get_Block_dom_depth(get_nodes_Block(n)) > 1)) {
- b = get_Block_cfg_out(get_irg_start_block(current_ir_graph), 0);
- assert(b != get_irg_start_block(current_ir_graph));
- depth = 2;
+ b = get_Block_cfg_out(get_irg_start_block(current_ir_graph), 0);
+ assert(b != get_irg_start_block(current_ir_graph));
+ depth = 2;
}
}
set_nodes_Block(n, b);
irn_arity = get_irn_arity(consumer);
for (i = 0; i < irn_arity; i++) {
if (get_irn_n(consumer, i) == producer) {
- block = get_nodes_Block(get_Block_cfgpred(phi_block, i));
+ block = get_nodes_Block(get_Block_cfgpred(phi_block, i));
}
}
} else {
for (i = 0; i < get_irn_n_outs(n); i++) {
ir_node *succ = get_irn_out(n, i);
if (irn_not_visited(succ) && (get_irn_op(succ) != op_Phi))
- place_floats_late(succ, worklist);
+ place_floats_late(succ, worklist);
}
/* We have to determine the final block of this node... except for
constants. */
if ((get_op_pinned(get_irn_op(n)) == floats) &&
- (get_irn_op(n) != op_Const) &&
- (get_irn_op(n) != op_SymConst)) {
+ (get_irn_op(n) != op_Const) &&
+ (get_irn_op(n) != op_SymConst)) {
ir_node *dca = NULL; /* deepest common ancestor in the
dominator tree of all nodes'
blocks depending on us; our final
placement has to dominate DCA. */
for (i = 0; i < get_irn_n_outs(n); i++) {
- dca = consumer_dom_dca (dca, get_irn_out(n, i), n);
+ dca = consumer_dom_dca (dca, get_irn_out(n, i), n);
}
set_nodes_Block(n, dca);
}
}
-static INLINE void place_late(pdeq* worklist) {
+static INLINE void place_late(pdeq *worklist) {
assert(worklist);
inc_irg_visited(current_ir_graph);
/* GL @@@ : is this possible? if (get_opt_normalize()) -- added, all tests go through.
A different order of optimizations might cause problems. */
if (get_opt_normalize())
- set_Block_cfgpred(n, i, skip_Tuple(get_Block_cfgpred(n, i)));
+ set_Block_cfgpred(n, i, skip_Tuple(get_Block_cfgpred(n, i)));
} else if (get_opt_optimize() && (get_irn_mode(n) == mode_X)) {
/* We will soon visit a block. Optimize it before visiting! */
ir_node *b = get_nodes_Block(n);
ir_node *new_node = equivalent_node(b);
while (irn_not_visited(b) && (!is_Bad(new_node)) && (new_node != b)) {
/* We would have to run gigo if new is bad, so we
- promote it directly below. */
+ promote it directly below. */
assert(((b == new_node) ||
get_opt_control_flow_straightening() ||
get_opt_control_flow_weak_simplification()) &&
* Collects all Phi nodes in link list of Block.
* Marks all blocks "block_visited" if they contain a node other
* than Jmp.
+ *
+ * Colelct Conds and its Projs in the cond_list
*/
static void collect_nodes(ir_node *n, void *env) {
+ ir_node **cond_list = env;
+
if (is_no_Block(n)) {
ir_node *b = get_nodes_Block(n);
- if ((get_irn_op(n) == op_Phi)) {
+ switch (get_irn_opcode(n)) {
+
+ case iro_Phi:
/* Collect Phi nodes to compact ins along with block's ins. */
set_irn_link(n, get_irn_link(b));
set_irn_link(b, n);
- } else if ((get_irn_op(n) != op_Jmp) && !is_Bad(b)) { /* Check for non empty block. */
+ break;
+
+ case iro_Cond:
+ {
+ ir_node *value = get_Cond_selector(n);
+ tarval *tv = computed_value(value);
+
+ if (tv != tarval_bad && mode_is_int(get_tarval_mode(tv))) {
+ set_irn_link(n, *cond_list);
+ *cond_list = n;
+ }
+ else { /* mark the cond, we cannot optimize it */
+ set_irn_link(n, NULL);
+ }
+ }
+ break;
+
+ case iro_Proj:
+ {
+ ir_node *cond = get_Proj_pred(n);
+
+ if (get_irn_op(cond) == op_Cond) {
+ void *link = get_irn_link(cond);
+
+ if (link) {
+ /* the cond node can be optimized, collect Proj */
+ set_irn_link(n, link);
+ set_irn_link(cond, n);
+ }
+ }
+ }
+ break;
+
+ default:
+ break;
+ }
+
+ if ((get_irn_op(n) != op_Jmp) && !is_Bad(b)) { /* Check for non empty block. */
mark_Block_block_visited(b);
}
}
n_preds = get_Block_n_cfgpreds(pred);
} else {
/* b's pred blocks and pred's pred blocks must be pairwise disjunct.
- Work preds < pos as if they were already removed. */
+ Work preds < pos as if they were already removed. */
for (i = 0; i < pos; i++) {
- ir_node *b_pred = get_nodes_Block(get_Block_cfgpred(b, i));
- if (get_Block_block_visited(b_pred) + 1
- < get_irg_block_visited(current_ir_graph)) {
- for (j = 0; j < get_Block_n_cfgpreds(b_pred); j++) {
- ir_node *b_pred_pred = get_nodes_Block(get_Block_cfgpred(b_pred, j));
- if (is_pred_of(b_pred_pred, pred)) dispensable = 0;
- }
- } else {
- if (is_pred_of(b_pred, pred)) dispensable = 0;
- }
+ ir_node *b_pred = get_nodes_Block(get_Block_cfgpred(b, i));
+ if (get_Block_block_visited(b_pred) + 1
+ < get_irg_block_visited(current_ir_graph)) {
+ for (j = 0; j < get_Block_n_cfgpreds(b_pred); j++) {
+ ir_node *b_pred_pred = get_nodes_Block(get_Block_cfgpred(b_pred, j));
+ if (is_pred_of(b_pred_pred, pred)) dispensable = 0;
+ }
+ } else {
+ if (is_pred_of(b_pred, pred)) dispensable = 0;
+ }
}
for (i = pos +1; i < get_Block_n_cfgpreds(b); i++) {
- ir_node *b_pred = get_nodes_Block(get_Block_cfgpred(b, i));
- if (is_pred_of(b_pred, pred)) dispensable = 0;
+ ir_node *b_pred = get_nodes_Block(get_Block_cfgpred(b, i));
+ if (is_pred_of(b_pred, pred)) dispensable = 0;
}
if (!dispensable) {
- set_Block_block_visited(pred, get_irg_block_visited(current_ir_graph)-1);
- n_preds = 1;
+ set_Block_block_visited(pred, get_irg_block_visited(current_ir_graph)-1);
+ n_preds = 1;
} else {
n_preds = get_Block_n_cfgpreds(pred);
}
for (i = 0; i < get_Block_n_cfgpreds(b); i++) {
pred = get_nodes_Block(get_Block_cfgpred(b, i));
if (is_Bad(get_Block_cfgpred(b, i))) {
- /* Do nothing */
+ /* Do nothing */
} else if (get_Block_block_visited(pred) +1
- < get_irg_block_visited(current_ir_graph)) {
- /* It's an empty block and not yet visited. */
- ir_node *phi_pred = get_Phi_pred(phi, i);
- for (j = 0; j < get_Block_n_cfgpreds(pred); j++) {
- if (get_nodes_Block(phi_pred) == pred) {
- assert(get_irn_op(phi_pred) == op_Phi); /* Block is empty!! */
- in[n_preds] = get_Phi_pred(phi_pred, j);
- } else {
- in[n_preds] = phi_pred;
- }
- n_preds++;
- }
- /* The Phi_pred node is replaced now if it is a Phi.
- In Schleifen kann offenbar der entfernte Phi Knoten legal verwendet werden.
- Daher muss der Phiknoten durch den neuen ersetzt werden.
- Weiter muss der alte Phiknoten entfernt werden (durch ersetzen oder
- durch einen Bad) damit er aus den keep_alive verschwinden kann.
- Man sollte also, falls keine Schleife vorliegt, exchange mit new_Bad
- aufrufen. */
- if (get_nodes_Block(phi_pred) == pred) {
- /* remove the Phi as it might be kept alive. Further there
- might be other users. */
- exchange(phi_pred, phi); /* geht, ist aber doch semantisch falsch! Warum?? */
- }
+ < get_irg_block_visited(current_ir_graph)) {
+ /* It's an empty block and not yet visited. */
+ ir_node *phi_pred = get_Phi_pred(phi, i);
+ for (j = 0; j < get_Block_n_cfgpreds(pred); j++) {
+ if (get_nodes_Block(phi_pred) == pred) {
+ assert(get_irn_op(phi_pred) == op_Phi); /* Block is empty!! */
+ in[n_preds] = get_Phi_pred(phi_pred, j);
+ } else {
+ in[n_preds] = phi_pred;
+ }
+ n_preds++;
+ }
+ /* The Phi_pred node is replaced now if it is a Phi.
+ In Schleifen kann offenbar der entfernte Phi Knoten legal verwendet werden.
+ Daher muss der Phiknoten durch den neuen ersetzt werden.
+ Weiter muss der alte Phiknoten entfernt werden (durch ersetzen oder
+ durch einen Bad) damit er aus den keep_alive verschwinden kann.
+ Man sollte also, falls keine Schleife vorliegt, exchange mit new_Bad
+ aufrufen. */
+ if (get_nodes_Block(phi_pred) == pred) {
+ /* remove the Phi as it might be kept alive. Further there
+ might be other users. */
+ exchange(phi_pred, phi); /* geht, ist aber doch semantisch falsch! Warum?? */
+ }
} else {
- in[n_preds] = get_Phi_pred(phi, i);
- n_preds ++;
+ in[n_preds] = get_Phi_pred(phi, i);
+ n_preds ++;
}
}
/* Fix the node */
phi = get_irn_link(phi);
}
-/*-
- This happens only if merge between loop backedge and single loop entry. -*/
+ /*- This happens only if merge between loop backedge and single loop entry. -*/
for (k = 0; k < get_Block_n_cfgpreds(b); k++) {
pred = get_nodes_Block(get_Block_cfgpred(b, k));
if (get_Block_block_visited(pred)+1 < get_irg_block_visited(current_ir_graph)) {
phi = get_irn_link(pred);
while (phi) {
- if (get_irn_op(phi) == op_Phi) {
- set_nodes_Block(phi, b);
-
- n_preds = 0;
- for (i = 0; i < k; i++) {
- pred = get_nodes_Block(get_Block_cfgpred(b, i));
- if (is_Bad(get_Block_cfgpred(b, i))) {
- /* Do nothing */
- } else if (get_Block_block_visited(pred) +1
- < get_irg_block_visited(current_ir_graph)) {
- /* It's an empty block and not yet visited. */
- for (j = 0; j < get_Block_n_cfgpreds(pred); j++) {
- /* @@@ Hier brauche ich Schleifeninformation!!! Kontrollflusskante
- muss Rueckwaertskante sein! (An allen vier in[n_preds] = phi
- Anweisungen.) Trotzdem tuts bisher!! */
- in[n_preds] = phi;
- n_preds++;
+ if (get_irn_op(phi) == op_Phi) {
+ set_nodes_Block(phi, b);
+
+ n_preds = 0;
+ for (i = 0; i < k; i++) {
+ pred = get_nodes_Block(get_Block_cfgpred(b, i));
+ if (is_Bad(get_Block_cfgpred(b, i))) {
+ /* Do nothing */
+ } else if (get_Block_block_visited(pred) +1
+ < get_irg_block_visited(current_ir_graph)) {
+ /* It's an empty block and not yet visited. */
+ for (j = 0; j < get_Block_n_cfgpreds(pred); j++) {
+ /* @@@ Hier brauche ich Schleifeninformation!!! Kontrollflusskante
+ muss Rueckwaertskante sein! (An allen vier in[n_preds] = phi
+ Anweisungen.) Trotzdem tuts bisher!! */
+ in[n_preds] = phi;
+ n_preds++;
+ }
+ } else {
+ in[n_preds] = phi;
+ n_preds++;
+ }
}
- } else {
- in[n_preds] = phi;
- n_preds++;
- }
- }
- for (i = 0; i < get_Phi_n_preds(phi); i++) {
- in[n_preds] = get_Phi_pred(phi, i);
- n_preds++;
- }
- for (i = k+1; i < get_Block_n_cfgpreds(b); i++) {
- pred = get_nodes_Block(get_Block_cfgpred(b, i));
- if (is_Bad(get_Block_cfgpred(b, i))) {
- /* Do nothing */
- } else if (get_Block_block_visited(pred) +1
- < get_irg_block_visited(current_ir_graph)) {
- /* It's an empty block and not yet visited. */
- for (j = 0; j < get_Block_n_cfgpreds(pred); j++) {
- in[n_preds] = phi;
- n_preds++;
+ for (i = 0; i < get_Phi_n_preds(phi); i++) {
+ in[n_preds] = get_Phi_pred(phi, i);
+ n_preds++;
}
- } else {
- in[n_preds] = phi;
- n_preds++;
+ for (i = k+1; i < get_Block_n_cfgpreds(b); i++) {
+ pred = get_nodes_Block(get_Block_cfgpred(b, i));
+ if (is_Bad(get_Block_cfgpred(b, i))) {
+ /* Do nothing */
+ } else if (get_Block_block_visited(pred) +1
+ < get_irg_block_visited(current_ir_graph)) {
+ /* It's an empty block and not yet visited. */
+ for (j = 0; j < get_Block_n_cfgpreds(pred); j++) {
+ in[n_preds] = phi;
+ n_preds++;
+ }
+ } else {
+ in[n_preds] = phi;
+ n_preds++;
+ }
+ }
+ set_irn_in(phi, n_preds, in);
}
- }
- set_irn_in(phi, n_preds, in);
- }
- phi = get_irn_link(phi);
+ phi = get_irn_link(phi);
}
}
}
assert(get_Block_n_cfgpreds(b) > 1);
/* Else it should be optimized by equivalent_node. */
for (j = 0; j < get_Block_n_cfgpreds(pred); j++) {
- in[n_preds] = get_Block_cfgpred(pred, j);
- n_preds++;
+ in[n_preds] = get_Block_cfgpred(pred, j);
+ n_preds++;
}
/* Remove block as it might be kept alive. */
exchange(pred, b/*new_Bad()*/);
free(in);
}
+/**
+ * an impossible ir_node * != NULL
+ */
+static const char _anchor;
+#define ANCHOR ((ir_node *)&_anchor)
+
+/**
+ * optimize constant cond with projs
+ *
+ * If we come here, we should have 3 situations:
+ *
+ * 1.) Only one Proj exists: This should be the default Proj, convert to jump
+ * 2.) Two Proj's exists: One is the taken, the other the not-taken default proj
+ * 3.) More than 2 Proj's: local_optimize() did not run or internal error do nothing
+ */
+static void optimize_const_conds(ir_node *cond_list)
+{
+ ir_node *cond, *next;
+
+ for (cond = cond_list; cond != ANCHOR; cond = next) {
+ ir_node *block, *jmp;
+ ir_node *proj = NULL, *def_proj = NULL;
+ int num = 0;
+
+ for (next = get_irn_link(cond); next != ANCHOR; next = get_irn_link(next)) {
+ if (get_irn_op(next) == op_Cond)
+ break;
+
+ assert(get_irn_op(next) == op_Proj && "something neither Cond not Proj in cond-list");
+ assert(get_Proj_pred(next) == cond && "cond-list corrupt");
+
+ if (get_Proj_proj(next) == get_Cond_defaultProj(cond))
+ def_proj = next;
+ else
+ proj = next;
+ ++num;
+ }
+
+ if (num == 1) {
+ assert(def_proj);
+
+ block = get_nodes_block(def_proj);
+ jmp = new_rd_Jmp(get_irn_dbg_info(def_proj), current_ir_graph, block);
+ exchange(def_proj, jmp);
+ }
+ else if (num == 2) {
+ assert(def_proj && proj);
+
+ exchange(def_proj, new_Bad());
+
+ block = get_nodes_block(proj);
+ jmp = new_rd_Jmp(get_irn_dbg_info(proj), current_ir_graph, block);
+ exchange(proj, jmp);
+ }
+ }
+}
+
void optimize_cf(ir_graph *irg) {
int i;
ir_node **in;
ir_node *end = get_irg_end(irg);
ir_graph *rem = current_ir_graph;
current_ir_graph = irg;
+ ir_node *cond_list = ANCHOR;
/* Handle graph state */
assert(get_irg_phase_state(irg) != phase_building);
/* Use block visited flag to mark non-empty blocks. */
inc_irg_block_visited(irg);
- irg_walk(end, merge_blocks, collect_nodes, NULL);
+ irg_walk(end, merge_blocks, collect_nodes, &cond_list);
+
+ /* now, optimize switches */
+ if (get_opt_unreachable_code())
+ optimize_const_conds(cond_list);
/* Optimize the standard code. */
irg_block_walk(get_irg_end_block(irg), optimize_blocks, NULL, NULL);
ir_node *ka = get_End_keepalive(end, i);
if (irn_not_visited(ka)) {
if ((get_irn_op(ka) == op_Block) && Block_not_block_visited(ka)) {
- set_irg_block_visited(current_ir_graph, /* Don't walk all the way to Start. */
- get_irg_block_visited(current_ir_graph)-1);
- irg_block_walk(ka, optimize_blocks, NULL, NULL);
- mark_irn_visited(ka);
- ARR_APP1 (ir_node *, in, ka);
+ set_irg_block_visited(current_ir_graph, /* Don't walk all the way to Start. */
+ get_irg_block_visited(current_ir_graph)-1);
+ irg_block_walk(ka, optimize_blocks, NULL, NULL);
+ mark_irn_visited(ka);
+ ARR_APP1 (ir_node *, in, ka);
} else if (get_irn_op(ka) == op_Phi) {
- mark_irn_visited(ka);
- ARR_APP1 (ir_node *, in, ka);
+ mark_irn_visited(ka);
+ ARR_APP1 (ir_node *, in, ka);
}
}
}
int arity, i;
ir_node *pre, *block, **in, *jmp;
+ arity = get_irn_arity(n);
+
/* Block has multiple predecessors */
- if ((op_Block == get_irn_op(n)) &&
- (get_irn_arity(n) > 1)) {
- arity = get_irn_arity(n);
+ if (op_Block == get_irn_op(n) && arity > 1) {
if (n == get_irg_end_block(current_ir_graph))
return; /* No use to add a block here. */
- for (i=0; i<arity; i++) {
+ for (i = 0; i < arity; ++i) {
pre = get_irn_n(n, i);
/* Predecessor has multiple successors. Insert new flow edge */
if ((NULL != pre) &&
- (op_Proj == get_irn_op(pre)) &&
- op_Raise != get_irn_op(skip_Proj(pre))) {
-
- /* set predecessor array for new block */
- in = NEW_ARR_D (ir_node *, current_ir_graph->obst, 1);
- /* set predecessor of new block */
- in[0] = pre;
- block = new_Block(1, in);
- /* insert new jmp node to new block */
- switch_block(block);
- jmp = new_Jmp();
- switch_block(n);
- /* set successor of new block */
- set_irn_n(n, i, jmp);
+ (op_Proj == get_irn_op(pre)) &&
+ op_Raise != get_irn_op(skip_Proj(pre))) {
+
+ /* set predecessor array for new block */
+ in = NEW_ARR_D (ir_node *, current_ir_graph->obst, 1);
+ /* set predecessor of new block */
+ in[0] = pre;
+ block = new_Block(1, in);
+ /* insert new jmp node to new block */
+ switch_block(block);
+ jmp = new_Jmp();
+ switch_block(n);
+ /* set successor of new block */
+ set_irn_n(n, i, jmp);
} /* predecessor has multiple successors */
} /* for all predecessors */