PR target/17245
[official-gcc.git] / gcc / tree-ssa-loop-im.c
blob7823e1711e7dfae285ea9f830a91af7941b7dfcd
1 /* Loop invariant motion.
2 Copyright (C) 2003, 2004, 2005 Free Software Foundation, Inc.
4 This file is part of GCC.
6 GCC is free software; you can redistribute it and/or modify it
7 under the terms of the GNU General Public License as published by the
8 Free Software Foundation; either version 2, or (at your option) any
9 later version.
11 GCC is distributed in the hope that it will be useful, but WITHOUT
12 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
13 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
14 for more details.
16 You should have received a copy of the GNU General Public License
17 along with GCC; see the file COPYING. If not, write to the Free
18 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
19 02111-1307, USA. */
21 #include "config.h"
22 #include "system.h"
23 #include "coretypes.h"
24 #include "tm.h"
25 #include "tree.h"
26 #include "rtl.h"
27 #include "tm_p.h"
28 #include "hard-reg-set.h"
29 #include "basic-block.h"
30 #include "output.h"
31 #include "diagnostic.h"
32 #include "tree-flow.h"
33 #include "tree-dump.h"
34 #include "timevar.h"
35 #include "cfgloop.h"
36 #include "domwalk.h"
37 #include "params.h"
38 #include "tree-pass.h"
39 #include "flags.h"
41 /* TODO: Support for predicated code motion. I.e.
43 while (1)
45 if (cond)
47 a = inv;
48 something;
52 Where COND and INV are is invariants, but evaluating INV may trap or be
53 invalid from some other reason if !COND. This may be transformed to
55 if (cond)
56 a = inv;
57 while (1)
59 if (cond)
60 something;
61 } */
63 /* A type for the list of statements that have to be moved in order to be able
64 to hoist an invariant computation. */
66 struct depend
68 tree stmt;
69 struct depend *next;
72 /* The auxiliary data kept for each statement. */
74 struct lim_aux_data
76 struct loop *max_loop; /* The outermost loop in that the statement
77 is invariant. */
79 struct loop *tgt_loop; /* The loop out of that we want to move the
80 invariant. */
82 struct loop *always_executed_in;
83 /* The outermost loop for that we are sure
84 the statement is executed if the loop
85 is entered. */
87 bool sm_done; /* True iff the store motion for a memory
88 reference in the statement has already
89 been executed. */
91 unsigned cost; /* Cost of the computation performed by the
92 statement. */
94 struct depend *depends; /* List of statements that must be also hoisted
95 out of the loop when this statement is
96 hoisted; i.e. those that define the operands
97 of the statement and are inside of the
98 MAX_LOOP loop. */
101 #define LIM_DATA(STMT) (TREE_CODE (STMT) == PHI_NODE \
102 ? NULL \
103 : (struct lim_aux_data *) (stmt_ann (STMT)->common.aux))
105 /* Description of a memory reference for store motion. */
107 struct mem_ref
109 tree *ref; /* The reference itself. */
110 tree stmt; /* The statement in that it occurs. */
111 struct mem_ref *next; /* Next use in the chain. */
114 /* Minimum cost of an expensive expression. */
115 #define LIM_EXPENSIVE ((unsigned) PARAM_VALUE (PARAM_LIM_EXPENSIVE))
117 /* The outermost loop for that execution of the header guarantees that the
118 block will be executed. */
119 #define ALWAYS_EXECUTED_IN(BB) ((struct loop *) (BB)->aux)
121 static unsigned max_stmt_uid; /* Maximal uid of a statement. Uids to phi
122 nodes are assigned using the versions of
123 ssa names they define. */
125 /* Returns uid of statement STMT. */
127 static unsigned
128 get_stmt_uid (tree stmt)
130 if (TREE_CODE (stmt) == PHI_NODE)
131 return SSA_NAME_VERSION (PHI_RESULT (stmt)) + max_stmt_uid;
133 return stmt_ann (stmt)->uid;
136 /* Calls CBCK for each index in memory reference ADDR_P. There are two
137 kinds situations handled; in each of these cases, the memory reference
138 and DATA are passed to the callback:
140 Access to an array: ARRAY_{RANGE_}REF (base, index). In this case we also
141 pass the pointer to the index to the callback.
143 Pointer dereference: INDIRECT_REF (addr). In this case we also pass the
144 pointer to addr to the callback.
146 If the callback returns false, the whole search stops and false is returned.
147 Otherwise the function returns true after traversing through the whole
148 reference *ADDR_P. */
150 bool
151 for_each_index (tree *addr_p, bool (*cbck) (tree, tree *, void *), void *data)
153 tree *nxt, *idx;
155 for (; ; addr_p = nxt)
157 switch (TREE_CODE (*addr_p))
159 case SSA_NAME:
160 return cbck (*addr_p, addr_p, data);
162 case MISALIGNED_INDIRECT_REF:
163 case ALIGN_INDIRECT_REF:
164 case INDIRECT_REF:
165 nxt = &TREE_OPERAND (*addr_p, 0);
166 return cbck (*addr_p, nxt, data);
168 case BIT_FIELD_REF:
169 case VIEW_CONVERT_EXPR:
170 case ARRAY_RANGE_REF:
171 case REALPART_EXPR:
172 case IMAGPART_EXPR:
173 nxt = &TREE_OPERAND (*addr_p, 0);
174 break;
176 case COMPONENT_REF:
177 /* If the component has varying offset, it behaves like index
178 as well. */
179 idx = &TREE_OPERAND (*addr_p, 2);
180 if (*idx
181 && !cbck (*addr_p, idx, data))
182 return false;
184 nxt = &TREE_OPERAND (*addr_p, 0);
185 break;
187 case ARRAY_REF:
188 nxt = &TREE_OPERAND (*addr_p, 0);
189 if (!cbck (*addr_p, &TREE_OPERAND (*addr_p, 1), data))
190 return false;
191 break;
193 case VAR_DECL:
194 case PARM_DECL:
195 case STRING_CST:
196 case RESULT_DECL:
197 return true;
199 default:
200 gcc_unreachable ();
205 /* If it is possible to hoist the statement STMT unconditionally,
206 returns MOVE_POSSIBLE.
207 If it is possible to hoist the statement STMT, but we must avoid making
208 it executed if it would not be executed in the original program (e.g.
209 because it may trap), return MOVE_PRESERVE_EXECUTION.
210 Otherwise return MOVE_IMPOSSIBLE. */
212 enum move_pos
213 movement_possibility (tree stmt)
215 tree lhs, rhs;
217 if (flag_unswitch_loops
218 && TREE_CODE (stmt) == COND_EXPR)
220 /* If we perform unswitching, force the operands of the invariant
221 condition to be moved out of the loop. */
222 get_stmt_operands (stmt);
224 return MOVE_POSSIBLE;
227 if (TREE_CODE (stmt) != MODIFY_EXPR)
228 return MOVE_IMPOSSIBLE;
230 if (stmt_ends_bb_p (stmt))
231 return MOVE_IMPOSSIBLE;
233 get_stmt_operands (stmt);
235 if (stmt_ann (stmt)->has_volatile_ops)
236 return MOVE_IMPOSSIBLE;
238 lhs = TREE_OPERAND (stmt, 0);
239 if (TREE_CODE (lhs) == SSA_NAME
240 && SSA_NAME_OCCURS_IN_ABNORMAL_PHI (lhs))
241 return MOVE_IMPOSSIBLE;
243 rhs = TREE_OPERAND (stmt, 1);
245 if (TREE_SIDE_EFFECTS (rhs))
246 return MOVE_IMPOSSIBLE;
248 if (TREE_CODE (lhs) != SSA_NAME
249 || tree_could_trap_p (rhs))
250 return MOVE_PRESERVE_EXECUTION;
252 if (get_call_expr_in (stmt))
254 /* While pure or const call is guaranteed to have no side effects, we
255 cannot move it arbitrarily. Consider code like
257 char *s = something ();
259 while (1)
261 if (s)
262 t = strlen (s);
263 else
264 t = 0;
267 Here the strlen call cannot be moved out of the loop, even though
268 s is invariant. In addition to possibly creating a call with
269 invalid arguments, moving out a function call that is not executed
270 may cause performance regressions in case the call is costly and
271 not executed at all. */
272 return MOVE_PRESERVE_EXECUTION;
274 return MOVE_POSSIBLE;
277 /* Suppose that operand DEF is used inside the LOOP. Returns the outermost
278 loop to that we could move the expression using DEF if it did not have
279 other operands, i.e. the outermost loop enclosing LOOP in that the value
280 of DEF is invariant. */
282 static struct loop *
283 outermost_invariant_loop (tree def, struct loop *loop)
285 tree def_stmt;
286 basic_block def_bb;
287 struct loop *max_loop;
289 if (TREE_CODE (def) != SSA_NAME)
290 return superloop_at_depth (loop, 1);
292 def_stmt = SSA_NAME_DEF_STMT (def);
293 def_bb = bb_for_stmt (def_stmt);
294 if (!def_bb)
295 return superloop_at_depth (loop, 1);
297 max_loop = find_common_loop (loop, def_bb->loop_father);
299 if (LIM_DATA (def_stmt) && LIM_DATA (def_stmt)->max_loop)
300 max_loop = find_common_loop (max_loop,
301 LIM_DATA (def_stmt)->max_loop->outer);
302 if (max_loop == loop)
303 return NULL;
304 max_loop = superloop_at_depth (loop, max_loop->depth + 1);
306 return max_loop;
309 /* Returns the outermost superloop of LOOP in that the expression EXPR is
310 invariant. */
312 static struct loop *
313 outermost_invariant_loop_expr (tree expr, struct loop *loop)
315 enum tree_code_class class = TREE_CODE_CLASS (TREE_CODE (expr));
316 unsigned i, nops;
317 struct loop *max_loop = superloop_at_depth (loop, 1), *aloop;
319 if (TREE_CODE (expr) == SSA_NAME
320 || TREE_CODE (expr) == INTEGER_CST
321 || is_gimple_min_invariant (expr))
322 return outermost_invariant_loop (expr, loop);
324 if (class != tcc_unary
325 && class != tcc_binary
326 && class != tcc_expression
327 && class != tcc_comparison)
328 return NULL;
330 nops = TREE_CODE_LENGTH (TREE_CODE (expr));
331 for (i = 0; i < nops; i++)
333 aloop = outermost_invariant_loop_expr (TREE_OPERAND (expr, i), loop);
334 if (!aloop)
335 return NULL;
337 if (flow_loop_nested_p (max_loop, aloop))
338 max_loop = aloop;
341 return max_loop;
344 /* DATA is a structure containing information associated with a statement
345 inside LOOP. DEF is one of the operands of this statement.
347 Find the outermost loop enclosing LOOP in that value of DEF is invariant
348 and record this in DATA->max_loop field. If DEF itself is defined inside
349 this loop as well (i.e. we need to hoist it out of the loop if we want
350 to hoist the statement represented by DATA), record the statement in that
351 DEF is defined to the DATA->depends list. Additionally if ADD_COST is true,
352 add the cost of the computation of DEF to the DATA->cost.
354 If DEF is not invariant in LOOP, return false. Otherwise return TRUE. */
356 static bool
357 add_dependency (tree def, struct lim_aux_data *data, struct loop *loop,
358 bool add_cost)
360 tree def_stmt = SSA_NAME_DEF_STMT (def);
361 basic_block def_bb = bb_for_stmt (def_stmt);
362 struct loop *max_loop;
363 struct depend *dep;
365 if (!def_bb)
366 return true;
368 max_loop = outermost_invariant_loop (def, loop);
369 if (!max_loop)
370 return false;
372 if (flow_loop_nested_p (data->max_loop, max_loop))
373 data->max_loop = max_loop;
375 if (!LIM_DATA (def_stmt))
376 return true;
378 if (add_cost
379 /* Only add the cost if the statement defining DEF is inside LOOP,
380 i.e. if it is likely that by moving the invariants dependent
381 on it, we will be able to avoid creating a new register for
382 it (since it will be only used in these dependent invariants). */
383 && def_bb->loop_father == loop)
384 data->cost += LIM_DATA (def_stmt)->cost;
386 dep = xmalloc (sizeof (struct depend));
387 dep->stmt = def_stmt;
388 dep->next = data->depends;
389 data->depends = dep;
391 return true;
394 /* Returns an estimate for a cost of statement STMT. TODO -- the values here
395 are just ad-hoc constants. The estimates should be based on target-specific
396 values. */
398 static unsigned
399 stmt_cost (tree stmt)
401 tree rhs;
402 unsigned cost = 1;
404 /* Always try to create possibilities for unswitching. */
405 if (TREE_CODE (stmt) == COND_EXPR)
406 return LIM_EXPENSIVE;
408 rhs = TREE_OPERAND (stmt, 1);
410 /* Hoisting memory references out should almost surely be a win. */
411 if (stmt_references_memory_p (stmt))
412 cost += 20;
414 switch (TREE_CODE (rhs))
416 case CALL_EXPR:
417 /* We should be hoisting calls if possible. */
419 /* Unless the call is a builtin_constant_p; this always folds to a
420 constant, so moving it is useless. */
421 rhs = get_callee_fndecl (rhs);
422 if (DECL_BUILT_IN_CLASS (rhs) == BUILT_IN_NORMAL
423 && DECL_FUNCTION_CODE (rhs) == BUILT_IN_CONSTANT_P)
424 return 0;
426 cost += 20;
427 break;
429 case MULT_EXPR:
430 case TRUNC_DIV_EXPR:
431 case CEIL_DIV_EXPR:
432 case FLOOR_DIV_EXPR:
433 case ROUND_DIV_EXPR:
434 case EXACT_DIV_EXPR:
435 case CEIL_MOD_EXPR:
436 case FLOOR_MOD_EXPR:
437 case ROUND_MOD_EXPR:
438 case TRUNC_MOD_EXPR:
439 case RDIV_EXPR:
440 /* Division and multiplication are usually expensive. */
441 cost += 20;
442 break;
444 default:
445 break;
448 return cost;
451 /* Determine the outermost loop to that it is possible to hoist a statement
452 STMT and store it to LIM_DATA (STMT)->max_loop. To do this we determine
453 the outermost loop in that the value computed by STMT is invariant.
454 If MUST_PRESERVE_EXEC is true, additionally choose such a loop that
455 we preserve the fact whether STMT is executed. It also fills other related
456 information to LIM_DATA (STMT).
458 The function returns false if STMT cannot be hoisted outside of the loop it
459 is defined in, and true otherwise. */
461 static bool
462 determine_max_movement (tree stmt, bool must_preserve_exec)
464 basic_block bb = bb_for_stmt (stmt);
465 struct loop *loop = bb->loop_father;
466 struct loop *level;
467 struct lim_aux_data *lim_data = LIM_DATA (stmt);
468 tree val;
469 ssa_op_iter iter;
471 if (must_preserve_exec)
472 level = ALWAYS_EXECUTED_IN (bb);
473 else
474 level = superloop_at_depth (loop, 1);
475 lim_data->max_loop = level;
477 FOR_EACH_SSA_TREE_OPERAND (val, stmt, iter, SSA_OP_USE)
478 if (!add_dependency (val, lim_data, loop, true))
479 return false;
481 FOR_EACH_SSA_TREE_OPERAND (val, stmt, iter, SSA_OP_VIRTUAL_USES | SSA_OP_VIRTUAL_KILLS)
482 if (!add_dependency (val, lim_data, loop, false))
483 return false;
485 lim_data->cost += stmt_cost (stmt);
487 return true;
490 /* Suppose that some statement in ORIG_LOOP is hoisted to the loop LEVEL,
491 and that one of the operands of this statement is computed by STMT.
492 Ensure that STMT (together with all the statements that define its
493 operands) is hoisted at least out of the loop LEVEL. */
495 static void
496 set_level (tree stmt, struct loop *orig_loop, struct loop *level)
498 struct loop *stmt_loop = bb_for_stmt (stmt)->loop_father;
499 struct depend *dep;
501 stmt_loop = find_common_loop (orig_loop, stmt_loop);
502 if (LIM_DATA (stmt) && LIM_DATA (stmt)->tgt_loop)
503 stmt_loop = find_common_loop (stmt_loop,
504 LIM_DATA (stmt)->tgt_loop->outer);
505 if (flow_loop_nested_p (stmt_loop, level))
506 return;
508 gcc_assert (LIM_DATA (stmt));
509 gcc_assert (level == LIM_DATA (stmt)->max_loop
510 || flow_loop_nested_p (LIM_DATA (stmt)->max_loop, level));
512 LIM_DATA (stmt)->tgt_loop = level;
513 for (dep = LIM_DATA (stmt)->depends; dep; dep = dep->next)
514 set_level (dep->stmt, orig_loop, level);
517 /* Determines an outermost loop from that we want to hoist the statement STMT.
518 For now we chose the outermost possible loop. TODO -- use profiling
519 information to set it more sanely. */
521 static void
522 set_profitable_level (tree stmt)
524 set_level (stmt, bb_for_stmt (stmt)->loop_father, LIM_DATA (stmt)->max_loop);
527 /* Returns true if STMT is not a pure call. */
529 static bool
530 nonpure_call_p (tree stmt)
532 tree call = get_call_expr_in (stmt);
534 if (!call)
535 return false;
537 return TREE_SIDE_EFFECTS (call) != 0;
540 /* Releases the memory occupied by DATA. */
542 static void
543 free_lim_aux_data (struct lim_aux_data *data)
545 struct depend *dep, *next;
547 for (dep = data->depends; dep; dep = next)
549 next = dep->next;
550 free (dep);
552 free (data);
555 /* Determine the outermost loops in that statements in basic block BB are
556 invariant, and record them to the LIM_DATA associated with the statements.
557 Callback for walk_dominator_tree. */
559 static void
560 determine_invariantness_stmt (struct dom_walk_data *dw_data ATTRIBUTE_UNUSED,
561 basic_block bb)
563 enum move_pos pos;
564 block_stmt_iterator bsi;
565 tree stmt;
566 bool maybe_never = ALWAYS_EXECUTED_IN (bb) == NULL;
567 struct loop *outermost = ALWAYS_EXECUTED_IN (bb);
569 if (!bb->loop_father->outer)
570 return;
572 if (dump_file && (dump_flags & TDF_DETAILS))
573 fprintf (dump_file, "Basic block %d (loop %d -- depth %d):\n\n",
574 bb->index, bb->loop_father->num, bb->loop_father->depth);
576 for (bsi = bsi_start (bb); !bsi_end_p (bsi); bsi_next (&bsi))
578 stmt = bsi_stmt (bsi);
580 pos = movement_possibility (stmt);
581 if (pos == MOVE_IMPOSSIBLE)
583 if (nonpure_call_p (stmt))
585 maybe_never = true;
586 outermost = NULL;
588 continue;
591 stmt_ann (stmt)->common.aux = xcalloc (1, sizeof (struct lim_aux_data));
592 LIM_DATA (stmt)->always_executed_in = outermost;
594 if (maybe_never && pos == MOVE_PRESERVE_EXECUTION)
595 continue;
597 if (!determine_max_movement (stmt, pos == MOVE_PRESERVE_EXECUTION))
599 LIM_DATA (stmt)->max_loop = NULL;
600 continue;
603 if (dump_file && (dump_flags & TDF_DETAILS))
605 print_generic_stmt_indented (dump_file, stmt, 0, 2);
606 fprintf (dump_file, " invariant up to level %d, cost %d.\n\n",
607 LIM_DATA (stmt)->max_loop->depth,
608 LIM_DATA (stmt)->cost);
611 if (LIM_DATA (stmt)->cost >= LIM_EXPENSIVE)
612 set_profitable_level (stmt);
616 /* For each statement determines the outermost loop in that it is invariant,
617 statements on whose motion it depends and the cost of the computation.
618 This information is stored to the LIM_DATA structure associated with
619 each statement. */
621 static void
622 determine_invariantness (void)
624 struct dom_walk_data walk_data;
626 memset (&walk_data, 0, sizeof (struct dom_walk_data));
627 walk_data.before_dom_children_before_stmts = determine_invariantness_stmt;
629 init_walk_dominator_tree (&walk_data);
630 walk_dominator_tree (&walk_data, ENTRY_BLOCK_PTR);
631 fini_walk_dominator_tree (&walk_data);
634 /* Commits edge insertions and updates loop structures. */
636 void
637 loop_commit_inserts (void)
639 unsigned old_last_basic_block, i;
640 basic_block bb;
642 old_last_basic_block = last_basic_block;
643 bsi_commit_edge_inserts ();
644 for (i = old_last_basic_block; i < (unsigned) last_basic_block; i++)
646 bb = BASIC_BLOCK (i);
647 add_bb_to_loop (bb,
648 find_common_loop (single_pred (bb)->loop_father,
649 single_succ (bb)->loop_father));
653 /* Hoist the statements in basic block BB out of the loops prescribed by
654 data stored in LIM_DATA structures associated with each statement. Callback
655 for walk_dominator_tree. */
657 static void
658 move_computations_stmt (struct dom_walk_data *dw_data ATTRIBUTE_UNUSED,
659 basic_block bb)
661 struct loop *level;
662 block_stmt_iterator bsi;
663 tree stmt;
664 unsigned cost = 0;
666 if (!bb->loop_father->outer)
667 return;
669 for (bsi = bsi_start (bb); !bsi_end_p (bsi); )
671 stmt = bsi_stmt (bsi);
673 if (!LIM_DATA (stmt))
675 bsi_next (&bsi);
676 continue;
679 cost = LIM_DATA (stmt)->cost;
680 level = LIM_DATA (stmt)->tgt_loop;
681 free_lim_aux_data (LIM_DATA (stmt));
682 stmt_ann (stmt)->common.aux = NULL;
684 if (!level)
686 bsi_next (&bsi);
687 continue;
690 /* We do not really want to move conditionals out of the loop; we just
691 placed it here to force its operands to be moved if necessary. */
692 if (TREE_CODE (stmt) == COND_EXPR)
693 continue;
695 if (dump_file && (dump_flags & TDF_DETAILS))
697 fprintf (dump_file, "Moving statement\n");
698 print_generic_stmt (dump_file, stmt, 0);
699 fprintf (dump_file, "(cost %u) out of loop %d.\n\n",
700 cost, level->num);
702 bsi_insert_on_edge (loop_preheader_edge (level), stmt);
703 bsi_remove (&bsi);
707 /* Hoist the statements out of the loops prescribed by data stored in
708 LIM_DATA structures associated with each statement.*/
710 static void
711 move_computations (void)
713 struct dom_walk_data walk_data;
715 memset (&walk_data, 0, sizeof (struct dom_walk_data));
716 walk_data.before_dom_children_before_stmts = move_computations_stmt;
718 init_walk_dominator_tree (&walk_data);
719 walk_dominator_tree (&walk_data, ENTRY_BLOCK_PTR);
720 fini_walk_dominator_tree (&walk_data);
722 loop_commit_inserts ();
723 rewrite_into_ssa (false);
724 if (!bitmap_empty_p (vars_to_rename))
726 /* The rewrite of ssa names may cause violation of loop closed ssa
727 form invariants. TODO -- avoid these rewrites completely.
728 Information in virtual phi nodes is sufficient for it. */
729 rewrite_into_loop_closed_ssa (NULL);
731 bitmap_clear (vars_to_rename);
734 /* Checks whether the statement defining variable *INDEX can be hoisted
735 out of the loop passed in DATA. Callback for for_each_index. */
737 static bool
738 may_move_till (tree ref, tree *index, void *data)
740 struct loop *loop = data, *max_loop;
742 /* If REF is an array reference, check also that the step and the lower
743 bound is invariant in LOOP. */
744 if (TREE_CODE (ref) == ARRAY_REF)
746 tree step = array_ref_element_size (ref);
747 tree lbound = array_ref_low_bound (ref);
749 max_loop = outermost_invariant_loop_expr (step, loop);
750 if (!max_loop)
751 return false;
753 max_loop = outermost_invariant_loop_expr (lbound, loop);
754 if (!max_loop)
755 return false;
758 max_loop = outermost_invariant_loop (*index, loop);
759 if (!max_loop)
760 return false;
762 return true;
765 /* Forces statements defining (invariant) SSA names in expression EXPR to be
766 moved out of the LOOP. ORIG_LOOP is the loop in that EXPR is used. */
768 static void
769 force_move_till_expr (tree expr, struct loop *orig_loop, struct loop *loop)
771 enum tree_code_class class = TREE_CODE_CLASS (TREE_CODE (expr));
772 unsigned i, nops;
774 if (TREE_CODE (expr) == SSA_NAME)
776 tree stmt = SSA_NAME_DEF_STMT (expr);
777 if (IS_EMPTY_STMT (stmt))
778 return;
780 set_level (stmt, orig_loop, loop);
781 return;
784 if (class != tcc_unary
785 && class != tcc_binary
786 && class != tcc_expression
787 && class != tcc_comparison)
788 return;
790 nops = TREE_CODE_LENGTH (TREE_CODE (expr));
791 for (i = 0; i < nops; i++)
792 force_move_till_expr (TREE_OPERAND (expr, i), orig_loop, loop);
795 /* Forces statement defining invariants in REF (and *INDEX) to be moved out of
796 the LOOP. The reference REF is used in the loop ORIG_LOOP. Callback for
797 for_each_index. */
799 struct fmt_data
801 struct loop *loop;
802 struct loop *orig_loop;
805 static bool
806 force_move_till (tree ref, tree *index, void *data)
808 tree stmt;
809 struct fmt_data *fmt_data = data;
811 if (TREE_CODE (ref) == ARRAY_REF)
813 tree step = array_ref_element_size (ref);
814 tree lbound = array_ref_low_bound (ref);
816 force_move_till_expr (step, fmt_data->orig_loop, fmt_data->loop);
817 force_move_till_expr (lbound, fmt_data->orig_loop, fmt_data->loop);
820 if (TREE_CODE (*index) != SSA_NAME)
821 return true;
823 stmt = SSA_NAME_DEF_STMT (*index);
824 if (IS_EMPTY_STMT (stmt))
825 return true;
827 set_level (stmt, fmt_data->orig_loop, fmt_data->loop);
829 return true;
832 /* Records memory reference *REF (that occurs in statement STMT)
833 to the list MEM_REFS. */
835 static void
836 record_mem_ref (struct mem_ref **mem_refs, tree stmt, tree *ref)
838 struct mem_ref *aref = xmalloc (sizeof (struct mem_ref));
840 aref->stmt = stmt;
841 aref->ref = ref;
843 aref->next = *mem_refs;
844 *mem_refs = aref;
847 /* Releases list of memory references MEM_REFS. */
849 static void
850 free_mem_refs (struct mem_ref *mem_refs)
852 struct mem_ref *act;
854 while (mem_refs)
856 act = mem_refs;
857 mem_refs = mem_refs->next;
858 free (act);
862 /* If VAR is defined in LOOP and the statement it is defined in does not belong
863 to the set SEEN, add the statement to QUEUE of length IN_QUEUE and
864 to the set SEEN. */
866 static void
867 maybe_queue_var (tree var, struct loop *loop,
868 sbitmap seen, tree *queue, unsigned *in_queue)
870 tree stmt = SSA_NAME_DEF_STMT (var);
871 basic_block def_bb = bb_for_stmt (stmt);
873 if (!def_bb
874 || !flow_bb_inside_loop_p (loop, def_bb)
875 || TEST_BIT (seen, get_stmt_uid (stmt)))
876 return;
878 SET_BIT (seen, get_stmt_uid (stmt));
879 queue[(*in_queue)++] = stmt;
882 /* If COMMON_REF is NULL, set COMMON_REF to *OP and return true.
883 Otherwise return true if the memory reference *OP is equal to COMMON_REF.
884 Record the reference OP to list MEM_REFS. STMT is the statement in that
885 the reference occurs. */
887 struct sra_data
889 struct mem_ref **mem_refs;
890 tree common_ref;
891 tree stmt;
894 static bool
895 fem_single_reachable_address (tree *op, void *data)
897 struct sra_data *sra_data = data;
899 if (sra_data->common_ref
900 && !operand_equal_p (*op, sra_data->common_ref, 0))
901 return false;
902 sra_data->common_ref = *op;
904 record_mem_ref (sra_data->mem_refs, sra_data->stmt, op);
905 return true;
908 /* Runs CALLBACK for each operand of STMT that is a memory reference. DATA
909 is passed to the CALLBACK as well. The traversal stops if CALLBACK
910 returns false, for_each_memref then returns false as well. Otherwise
911 for_each_memref returns true. */
913 static bool
914 for_each_memref (tree stmt, bool (*callback)(tree *, void *), void *data)
916 tree *op;
918 if (TREE_CODE (stmt) == RETURN_EXPR)
919 stmt = TREE_OPERAND (stmt, 1);
921 if (TREE_CODE (stmt) == MODIFY_EXPR)
923 op = &TREE_OPERAND (stmt, 0);
924 if (TREE_CODE (*op) != SSA_NAME
925 && !callback (op, data))
926 return false;
928 op = &TREE_OPERAND (stmt, 1);
929 if (TREE_CODE (*op) != SSA_NAME
930 && is_gimple_lvalue (*op)
931 && !callback (op, data))
932 return false;
934 stmt = TREE_OPERAND (stmt, 1);
937 if (TREE_CODE (stmt) == WITH_SIZE_EXPR)
938 stmt = TREE_OPERAND (stmt, 0);
940 if (TREE_CODE (stmt) == CALL_EXPR)
942 tree args;
944 for (args = TREE_OPERAND (stmt, 1); args; args = TREE_CHAIN (args))
946 op = &TREE_VALUE (args);
948 if (TREE_CODE (*op) != SSA_NAME
949 && is_gimple_lvalue (*op)
950 && !callback (op, data))
951 return false;
955 return true;
958 /* Determine whether all memory references inside the LOOP that correspond
959 to virtual ssa names defined in statement STMT are equal.
960 If so, store the list of the references to MEM_REFS, and return one
961 of them. Otherwise store NULL to MEM_REFS and return NULL_TREE.
962 *SEEN_CALL_STMT is set to true if the virtual operands suggest
963 that the reference might be clobbered by a call inside the LOOP. */
965 static tree
966 single_reachable_address (struct loop *loop, tree stmt,
967 struct mem_ref **mem_refs,
968 bool *seen_call_stmt)
970 unsigned max_uid = max_stmt_uid + num_ssa_names;
971 tree *queue = xmalloc (sizeof (tree) * max_uid);
972 sbitmap seen = sbitmap_alloc (max_uid);
973 unsigned in_queue = 1;
974 unsigned i;
975 struct sra_data sra_data;
976 tree call;
977 tree val;
978 ssa_op_iter iter;
979 imm_use_iterator imm_iter;
980 use_operand_p use_p;
982 sbitmap_zero (seen);
984 *mem_refs = NULL;
985 sra_data.mem_refs = mem_refs;
986 sra_data.common_ref = NULL_TREE;
988 queue[0] = stmt;
989 SET_BIT (seen, get_stmt_uid (stmt));
990 *seen_call_stmt = false;
992 while (in_queue)
994 stmt = queue[--in_queue];
995 sra_data.stmt = stmt;
997 if (LIM_DATA (stmt)
998 && LIM_DATA (stmt)->sm_done)
999 goto fail;
1001 switch (TREE_CODE (stmt))
1003 case MODIFY_EXPR:
1004 case CALL_EXPR:
1005 case RETURN_EXPR:
1006 if (!for_each_memref (stmt, fem_single_reachable_address,
1007 &sra_data))
1008 goto fail;
1010 /* If this is a function that may depend on the memory location,
1011 record the fact. We cannot directly refuse call clobbered
1012 operands here, since sra_data.common_ref did not have
1013 to be set yet. */
1014 call = get_call_expr_in (stmt);
1015 if (call
1016 && !(call_expr_flags (call) & ECF_CONST))
1017 *seen_call_stmt = true;
1019 /* Traverse also definitions of the VUSES (there may be other
1020 distinct from the one we used to get to this statement). */
1021 FOR_EACH_SSA_TREE_OPERAND (val, stmt, iter, SSA_OP_VIRTUAL_USES)
1022 maybe_queue_var (val, loop, seen, queue, &in_queue);
1024 break;
1026 case PHI_NODE:
1027 for (i = 0; i < (unsigned) PHI_NUM_ARGS (stmt); i++)
1028 if (TREE_CODE (PHI_ARG_DEF (stmt, i)) == SSA_NAME)
1029 maybe_queue_var (PHI_ARG_DEF (stmt, i), loop,
1030 seen, queue, &in_queue);
1031 break;
1033 default:
1034 goto fail;
1037 /* Find uses of virtual names. */
1038 if (TREE_CODE (stmt) == PHI_NODE)
1040 if (!is_gimple_reg (SSA_NAME_VAR (PHI_RESULT (stmt))))
1041 FOR_EACH_IMM_USE_FAST (use_p, imm_iter, PHI_RESULT (stmt))
1043 tree imm_stmt = USE_STMT (use_p);
1045 if (TEST_BIT (seen, get_stmt_uid (imm_stmt)))
1046 continue;
1048 if (!flow_bb_inside_loop_p (loop, bb_for_stmt (imm_stmt)))
1049 continue;
1051 SET_BIT (seen, get_stmt_uid (imm_stmt));
1053 queue[in_queue++] = imm_stmt;
1056 else
1057 FOR_EACH_SSA_TREE_OPERAND (val, stmt, iter, SSA_OP_VIRTUAL_DEFS)
1058 FOR_EACH_IMM_USE_FAST (use_p, imm_iter, val)
1060 tree imm_stmt = USE_STMT (use_p);
1062 if (TEST_BIT (seen, get_stmt_uid (imm_stmt)))
1063 continue;
1065 if (!flow_bb_inside_loop_p (loop, bb_for_stmt (imm_stmt)))
1066 continue;
1068 SET_BIT (seen, get_stmt_uid (imm_stmt));
1070 queue[in_queue++] = imm_stmt;
1074 free (queue);
1075 sbitmap_free (seen);
1077 return sra_data.common_ref;
1079 fail:
1080 free_mem_refs (*mem_refs);
1081 *mem_refs = NULL;
1082 free (queue);
1083 sbitmap_free (seen);
1085 return NULL;
1088 /* Rewrites memory references in list MEM_REFS by variable TMP_VAR. */
1090 static void
1091 rewrite_mem_refs (tree tmp_var, struct mem_ref *mem_refs)
1093 tree var;
1094 ssa_op_iter iter;
1096 for (; mem_refs; mem_refs = mem_refs->next)
1098 FOR_EACH_SSA_TREE_OPERAND (var, mem_refs->stmt, iter, SSA_OP_ALL_VIRTUALS)
1100 var = SSA_NAME_VAR (var);
1101 bitmap_set_bit (vars_to_rename, var_ann (var)->uid);
1104 *mem_refs->ref = tmp_var;
1105 update_stmt (mem_refs->stmt);
1109 /* Records request for store motion of memory reference REF from LOOP.
1110 MEM_REFS is the list of occurrences of the reference REF inside LOOP;
1111 these references are rewritten by a new temporary variable.
1112 Exits from the LOOP are stored in EXITS, there are N_EXITS of them.
1113 The initialization of the temporary variable is put to the preheader
1114 of the loop, and assignments to the reference from the temporary variable
1115 are emitted to exits. */
1117 static void
1118 schedule_sm (struct loop *loop, edge *exits, unsigned n_exits, tree ref,
1119 struct mem_ref *mem_refs)
1121 struct mem_ref *aref;
1122 tree tmp_var;
1123 unsigned i;
1124 tree load, store;
1125 struct fmt_data fmt_data;
1127 if (dump_file && (dump_flags & TDF_DETAILS))
1129 fprintf (dump_file, "Executing store motion of ");
1130 print_generic_expr (dump_file, ref, 0);
1131 fprintf (dump_file, " from loop %d\n", loop->num);
1134 tmp_var = make_rename_temp (TREE_TYPE (ref), "lsm_tmp");
1136 fmt_data.loop = loop;
1137 fmt_data.orig_loop = loop;
1138 for_each_index (&ref, force_move_till, &fmt_data);
1140 rewrite_mem_refs (tmp_var, mem_refs);
1141 for (aref = mem_refs; aref; aref = aref->next)
1142 if (LIM_DATA (aref->stmt))
1143 LIM_DATA (aref->stmt)->sm_done = true;
1145 /* Emit the load & stores. */
1146 load = build (MODIFY_EXPR, void_type_node, tmp_var, ref);
1147 get_stmt_ann (load)->common.aux = xcalloc (1, sizeof (struct lim_aux_data));
1148 LIM_DATA (load)->max_loop = loop;
1149 LIM_DATA (load)->tgt_loop = loop;
1151 /* Put this into the latch, so that we are sure it will be processed after
1152 all dependencies. */
1153 bsi_insert_on_edge (loop_latch_edge (loop), load);
1155 for (i = 0; i < n_exits; i++)
1157 store = build (MODIFY_EXPR, void_type_node,
1158 unshare_expr (ref), tmp_var);
1159 bsi_insert_on_edge (exits[i], store);
1163 /* Returns true if REF may be clobbered by calls. */
1165 static bool
1166 is_call_clobbered_ref (tree ref)
1168 tree base;
1169 HOST_WIDE_INT offset, size;
1170 subvar_t sv;
1171 subvar_t svars;
1172 tree sref = ref;
1174 if (TREE_CODE (sref) == COMPONENT_REF
1175 && (sref = okay_component_ref_for_subvars (sref, &offset, &size)))
1177 svars = get_subvars_for_var (sref);
1178 for (sv = svars; sv; sv = sv->next)
1180 if (overlap_subvar (offset, size, sv, NULL)
1181 && is_call_clobbered (sv->var))
1182 return true;
1186 base = get_base_address (ref);
1187 if (!base)
1188 return true;
1190 if (DECL_P (base))
1192 if (var_can_have_subvars (base)
1193 && (svars = get_subvars_for_var (base)))
1195 for (sv = svars; sv; sv = sv->next)
1196 if (is_call_clobbered (sv->var))
1197 return true;
1198 return false;
1200 else
1201 return is_call_clobbered (base);
1204 if (INDIRECT_REF_P (base))
1206 /* Check whether the alias tags associated with the pointer
1207 are call clobbered. */
1208 tree ptr = TREE_OPERAND (base, 0);
1209 struct ptr_info_def *pi = SSA_NAME_PTR_INFO (ptr);
1210 tree nmt = (pi) ? pi->name_mem_tag : NULL_TREE;
1211 tree tmt = var_ann (SSA_NAME_VAR (ptr))->type_mem_tag;
1213 if ((nmt && is_call_clobbered (nmt))
1214 || (tmt && is_call_clobbered (tmt)))
1215 return true;
1217 return false;
1220 gcc_unreachable ();
1223 /* Determine whether all memory references inside LOOP corresponding to the
1224 virtual ssa name REG are equal to each other, and whether the address of
1225 this common reference can be hoisted outside of the loop. If this is true,
1226 prepare the statements that load the value of the memory reference to a
1227 temporary variable in the loop preheader, store it back on the loop exits,
1228 and replace all the references inside LOOP by this temporary variable.
1229 LOOP has N_EXITS stored in EXITS. */
1231 static void
1232 determine_lsm_reg (struct loop *loop, edge *exits, unsigned n_exits, tree reg)
1234 tree ref;
1235 struct mem_ref *mem_refs, *aref;
1236 struct loop *must_exec;
1237 bool sees_call;
1239 if (is_gimple_reg (reg))
1240 return;
1242 ref = single_reachable_address (loop, SSA_NAME_DEF_STMT (reg), &mem_refs,
1243 &sees_call);
1244 if (!ref)
1245 return;
1247 /* If we cannot create a ssa name for the result, give up. */
1248 if (!is_gimple_reg_type (TREE_TYPE (ref))
1249 || TREE_THIS_VOLATILE (ref))
1250 goto fail;
1252 /* If there is a call that may use the location, give up as well. */
1253 if (sees_call
1254 && is_call_clobbered_ref (ref))
1255 goto fail;
1257 if (!for_each_index (&ref, may_move_till, loop))
1258 goto fail;
1260 if (tree_could_trap_p (ref))
1262 /* If the memory access is unsafe (i.e. it might trap), ensure that some
1263 of the statements in that it occurs is always executed when the loop
1264 is entered. This way we know that by moving the load from the
1265 reference out of the loop we will not cause the error that would not
1266 occur otherwise.
1268 TODO -- in fact we would like to check for anticipability of the
1269 reference, i.e. that on each path from loop entry to loop exit at
1270 least one of the statements containing the memory reference is
1271 executed. */
1273 for (aref = mem_refs; aref; aref = aref->next)
1275 if (!LIM_DATA (aref->stmt))
1276 continue;
1278 must_exec = LIM_DATA (aref->stmt)->always_executed_in;
1279 if (!must_exec)
1280 continue;
1282 if (must_exec == loop
1283 || flow_loop_nested_p (must_exec, loop))
1284 break;
1287 if (!aref)
1288 goto fail;
1291 schedule_sm (loop, exits, n_exits, ref, mem_refs);
1293 fail: ;
1294 free_mem_refs (mem_refs);
1297 /* Checks whether LOOP (with N_EXITS exits stored in EXITS array) is suitable
1298 for a store motion optimization (i.e. whether we can insert statement
1299 on its exits). */
1301 static bool
1302 loop_suitable_for_sm (struct loop *loop ATTRIBUTE_UNUSED, edge *exits,
1303 unsigned n_exits)
1305 unsigned i;
1307 for (i = 0; i < n_exits; i++)
1308 if (exits[i]->flags & EDGE_ABNORMAL)
1309 return false;
1311 return true;
1314 /* Try to perform store motion for all memory references modified inside
1315 LOOP. */
1317 static void
1318 determine_lsm_loop (struct loop *loop)
1320 tree phi;
1321 unsigned n_exits;
1322 edge *exits = get_loop_exit_edges (loop, &n_exits);
1324 if (!loop_suitable_for_sm (loop, exits, n_exits))
1326 free (exits);
1327 return;
1330 for (phi = phi_nodes (loop->header); phi; phi = PHI_CHAIN (phi))
1331 determine_lsm_reg (loop, exits, n_exits, PHI_RESULT (phi));
1333 free (exits);
1336 /* Try to perform store motion for all memory references modified inside
1337 any of LOOPS. */
1339 static void
1340 determine_lsm (struct loops *loops)
1342 struct loop *loop;
1343 basic_block bb;
1345 if (!loops->tree_root->inner)
1346 return;
1348 /* Create a UID for each statement in the function. Ordering of the
1349 UIDs is not important for this pass. */
1350 max_stmt_uid = 0;
1351 FOR_EACH_BB (bb)
1353 block_stmt_iterator bsi;
1355 for (bsi = bsi_start (bb); !bsi_end_p (bsi); bsi_next (&bsi))
1356 stmt_ann (bsi_stmt (bsi))->uid = max_stmt_uid++;
1359 /* Pass the loops from the outermost. For each virtual operand loop phi node
1360 check whether all the references inside the loop correspond to a single
1361 address, and if so, move them. */
1363 loop = loops->tree_root->inner;
1364 while (1)
1366 determine_lsm_loop (loop);
1368 if (loop->inner)
1370 loop = loop->inner;
1371 continue;
1373 while (!loop->next)
1375 loop = loop->outer;
1376 if (loop == loops->tree_root)
1378 loop_commit_inserts ();
1379 return;
1382 loop = loop->next;
1386 /* Fills ALWAYS_EXECUTED_IN information for basic blocks of LOOP, i.e.
1387 for each such basic block bb records the outermost loop for that execution
1388 of its header implies execution of bb. CONTAINS_CALL is the bitmap of
1389 blocks that contain a nonpure call. */
1391 static void
1392 fill_always_executed_in (struct loop *loop, sbitmap contains_call)
1394 basic_block bb = NULL, *bbs, last = NULL;
1395 unsigned i;
1396 edge e;
1397 struct loop *inn_loop = loop;
1399 if (!loop->header->aux)
1401 bbs = get_loop_body_in_dom_order (loop);
1403 for (i = 0; i < loop->num_nodes; i++)
1405 edge_iterator ei;
1406 bb = bbs[i];
1408 if (dominated_by_p (CDI_DOMINATORS, loop->latch, bb))
1409 last = bb;
1411 if (TEST_BIT (contains_call, bb->index))
1412 break;
1414 FOR_EACH_EDGE (e, ei, bb->succs)
1415 if (!flow_bb_inside_loop_p (loop, e->dest))
1416 break;
1417 if (e)
1418 break;
1420 /* A loop might be infinite (TODO use simple loop analysis
1421 to disprove this if possible). */
1422 if (bb->flags & BB_IRREDUCIBLE_LOOP)
1423 break;
1425 if (!flow_bb_inside_loop_p (inn_loop, bb))
1426 break;
1428 if (bb->loop_father->header == bb)
1430 if (!dominated_by_p (CDI_DOMINATORS, loop->latch, bb))
1431 break;
1433 /* In a loop that is always entered we may proceed anyway.
1434 But record that we entered it and stop once we leave it. */
1435 inn_loop = bb->loop_father;
1439 while (1)
1441 last->aux = loop;
1442 if (last == loop->header)
1443 break;
1444 last = get_immediate_dominator (CDI_DOMINATORS, last);
1447 free (bbs);
1450 for (loop = loop->inner; loop; loop = loop->next)
1451 fill_always_executed_in (loop, contains_call);
1454 /* Compute the global information needed by the loop invariant motion pass.
1455 LOOPS is the loop tree. */
1457 static void
1458 tree_ssa_lim_initialize (struct loops *loops)
1460 sbitmap contains_call = sbitmap_alloc (last_basic_block);
1461 block_stmt_iterator bsi;
1462 struct loop *loop;
1463 basic_block bb;
1465 sbitmap_zero (contains_call);
1466 FOR_EACH_BB (bb)
1468 for (bsi = bsi_start (bb); !bsi_end_p (bsi); bsi_next (&bsi))
1470 if (nonpure_call_p (bsi_stmt (bsi)))
1471 break;
1474 if (!bsi_end_p (bsi))
1475 SET_BIT (contains_call, bb->index);
1478 for (loop = loops->tree_root->inner; loop; loop = loop->next)
1479 fill_always_executed_in (loop, contains_call);
1481 sbitmap_free (contains_call);
1484 /* Cleans up after the invariant motion pass. */
1486 static void
1487 tree_ssa_lim_finalize (void)
1489 basic_block bb;
1491 FOR_EACH_BB (bb)
1493 bb->aux = NULL;
1497 /* Moves invariants from LOOPS. Only "expensive" invariants are moved out --
1498 i.e. those that are likely to be win regardless of the register pressure. */
1500 void
1501 tree_ssa_lim (struct loops *loops)
1503 tree_ssa_lim_initialize (loops);
1505 /* For each statement determine the outermost loop in that it is
1506 invariant and cost for computing the invariant. */
1507 determine_invariantness ();
1509 /* For each memory reference determine whether it is possible to hoist it
1510 out of the loop. Force the necessary invariants to be moved out of the
1511 loops as well. */
1512 determine_lsm (loops);
1514 /* Move the expressions that are expensive enough. */
1515 move_computations ();
1517 tree_ssa_lim_finalize ();