* gcc.dg/compat/struct-layout-1_generate.c (dg_options): New. Moved
[official-gcc.git] / gcc / tree-ssa-live.c
blob859c0c7427de1b7855c16b6cb03b9007917b9328
1 /* Liveness for SSA trees.
2 Copyright (C) 2003, 2004, 2005, 2007, 2008 Free Software Foundation,
3 Inc.
4 Contributed by Andrew MacLeod <amacleod@redhat.com>
6 This file is part of GCC.
8 GCC is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 3, or (at your option)
11 any later version.
13 GCC is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
18 You should have received a copy of the GNU General Public License
19 along with GCC; see the file COPYING3. If not see
20 <http://www.gnu.org/licenses/>. */
22 #include "config.h"
23 #include "system.h"
24 #include "coretypes.h"
25 #include "tm.h"
26 #include "tree.h"
27 #include "diagnostic.h"
28 #include "bitmap.h"
29 #include "tree-flow.h"
30 #include "tree-dump.h"
31 #include "tree-ssa-live.h"
32 #include "toplev.h"
33 #include "debug.h"
34 #include "flags.h"
36 #ifdef ENABLE_CHECKING
37 static void verify_live_on_entry (tree_live_info_p);
38 #endif
41 /* VARMAP maintains a mapping from SSA version number to real variables.
43 All SSA_NAMES are divided into partitions. Initially each ssa_name is the
44 only member of it's own partition. Coalescing will attempt to group any
45 ssa_names which occur in a copy or in a PHI node into the same partition.
47 At the end of out-of-ssa, each partition becomes a "real" variable and is
48 rewritten as a compiler variable.
50 The var_map data structure is used to manage these partitions. It allows
51 partitions to be combined, and determines which partition belongs to what
52 ssa_name or variable, and vice versa. */
55 /* This routine will initialize the basevar fields of MAP. */
57 static void
58 var_map_base_init (var_map map)
60 int x, num_part, num;
61 tree var;
62 var_ann_t ann;
64 num = 0;
65 num_part = num_var_partitions (map);
67 /* If a base table already exists, clear it, otherwise create it. */
68 if (map->partition_to_base_index != NULL)
70 free (map->partition_to_base_index);
71 VEC_truncate (tree, map->basevars, 0);
73 else
74 map->basevars = VEC_alloc (tree, heap, MAX (40, (num_part / 10)));
76 map->partition_to_base_index = (int *) xmalloc (sizeof (int) * num_part);
78 /* Build the base variable list, and point partitions at their bases. */
79 for (x = 0; x < num_part; x++)
81 var = partition_to_var (map, x);
82 if (TREE_CODE (var) == SSA_NAME)
83 var = SSA_NAME_VAR (var);
84 ann = var_ann (var);
85 /* If base variable hasn't been seen, set it up. */
86 if (!ann->base_var_processed)
88 ann->base_var_processed = 1;
89 VAR_ANN_BASE_INDEX (ann) = num++;
90 VEC_safe_push (tree, heap, map->basevars, var);
92 map->partition_to_base_index[x] = VAR_ANN_BASE_INDEX (ann);
95 map->num_basevars = num;
97 /* Now clear the processed bit. */
98 for (x = 0; x < num; x++)
100 var = VEC_index (tree, map->basevars, x);
101 var_ann (var)->base_var_processed = 0;
104 #ifdef ENABLE_CHECKING
105 for (x = 0; x < num_part; x++)
107 tree var2;
108 var = SSA_NAME_VAR (partition_to_var (map, x));
109 var2 = VEC_index (tree, map->basevars, basevar_index (map, x));
110 gcc_assert (var == var2);
112 #endif
116 /* Remove the base table in MAP. */
118 static void
119 var_map_base_fini (var_map map)
121 /* Free the basevar info if it is present. */
122 if (map->partition_to_base_index != NULL)
124 VEC_free (tree, heap, map->basevars);
125 free (map->partition_to_base_index);
126 map->partition_to_base_index = NULL;
127 map->num_basevars = 0;
130 /* Create a variable partition map of SIZE, initialize and return it. */
132 var_map
133 init_var_map (int size)
135 var_map map;
137 map = (var_map) xmalloc (sizeof (struct _var_map));
138 map->var_partition = partition_new (size);
139 map->partition_to_var
140 = (tree *)xmalloc (size * sizeof (tree));
141 memset (map->partition_to_var, 0, size * sizeof (tree));
143 map->partition_to_view = NULL;
144 map->view_to_partition = NULL;
145 map->num_partitions = size;
146 map->partition_size = size;
147 map->num_basevars = 0;
148 map->partition_to_base_index = NULL;
149 map->basevars = NULL;
150 return map;
154 /* Free memory associated with MAP. */
156 void
157 delete_var_map (var_map map)
159 var_map_base_fini (map);
160 free (map->partition_to_var);
161 partition_delete (map->var_partition);
162 if (map->partition_to_view)
163 free (map->partition_to_view);
164 if (map->view_to_partition)
165 free (map->view_to_partition);
166 free (map);
170 /* This function will combine the partitions in MAP for VAR1 and VAR2. It
171 Returns the partition which represents the new partition. If the two
172 partitions cannot be combined, NO_PARTITION is returned. */
175 var_union (var_map map, tree var1, tree var2)
177 int p1, p2, p3;
178 tree root_var = NULL_TREE;
179 tree other_var = NULL_TREE;
181 /* This is independent of partition_to_view. If partition_to_view is
182 on, then whichever one of these partitions is absorbed will never have a
183 dereference into the partition_to_view array any more. */
185 if (TREE_CODE (var1) == SSA_NAME)
186 p1 = partition_find (map->var_partition, SSA_NAME_VERSION (var1));
187 else
189 p1 = var_to_partition (map, var1);
190 if (map->view_to_partition)
191 p1 = map->view_to_partition[p1];
192 root_var = var1;
195 if (TREE_CODE (var2) == SSA_NAME)
196 p2 = partition_find (map->var_partition, SSA_NAME_VERSION (var2));
197 else
199 p2 = var_to_partition (map, var2);
200 if (map->view_to_partition)
201 p2 = map->view_to_partition[p2];
203 /* If there is no root_var set, or it's not a user variable, set the
204 root_var to this one. */
205 if (!root_var || (DECL_P (root_var) && DECL_IGNORED_P (root_var)))
207 other_var = root_var;
208 root_var = var2;
210 else
211 other_var = var2;
214 gcc_assert (p1 != NO_PARTITION);
215 gcc_assert (p2 != NO_PARTITION);
217 if (p1 == p2)
218 p3 = p1;
219 else
220 p3 = partition_union (map->var_partition, p1, p2);
222 if (map->partition_to_view)
223 p3 = map->partition_to_view[p3];
225 if (root_var)
226 change_partition_var (map, root_var, p3);
227 if (other_var)
228 change_partition_var (map, other_var, p3);
230 return p3;
234 /* Compress the partition numbers in MAP such that they fall in the range
235 0..(num_partitions-1) instead of wherever they turned out during
236 the partitioning exercise. This removes any references to unused
237 partitions, thereby allowing bitmaps and other vectors to be much
238 denser.
240 This is implemented such that compaction doesn't affect partitioning.
241 Ie., once partitions are created and possibly merged, running one
242 or more different kind of compaction will not affect the partitions
243 themselves. Their index might change, but all the same variables will
244 still be members of the same partition group. This allows work on reduced
245 sets, and no loss of information when a larger set is later desired.
247 In particular, coalescing can work on partitions which have 2 or more
248 definitions, and then 'recompact' later to include all the single
249 definitions for assignment to program variables. */
252 /* Set MAP back to the initial state of having no partition view. Return a
253 bitmap which has a bit set for each partition number which is in use in the
254 varmap. */
256 static bitmap
257 partition_view_init (var_map map)
259 bitmap used;
260 int tmp;
261 unsigned int x;
263 used = BITMAP_ALLOC (NULL);
265 /* Already in a view? Abandon the old one. */
266 if (map->partition_to_view)
268 free (map->partition_to_view);
269 map->partition_to_view = NULL;
271 if (map->view_to_partition)
273 free (map->view_to_partition);
274 map->view_to_partition = NULL;
277 /* Find out which partitions are actually referenced. */
278 for (x = 0; x < map->partition_size; x++)
280 tmp = partition_find (map->var_partition, x);
281 if (map->partition_to_var[tmp] != NULL_TREE && !bitmap_bit_p (used, tmp))
282 bitmap_set_bit (used, tmp);
285 map->num_partitions = map->partition_size;
286 return used;
290 /* This routine will finalize the view data for MAP based on the partitions
291 set in SELECTED. This is either the same bitmap returned from
292 partition_view_init, or a trimmed down version if some of those partitions
293 were not desired in this view. SELECTED is freed before returning. */
295 static void
296 partition_view_fini (var_map map, bitmap selected)
298 bitmap_iterator bi;
299 unsigned count, i, x, limit;
300 tree var;
302 gcc_assert (selected);
304 count = bitmap_count_bits (selected);
305 limit = map->partition_size;
307 /* If its a one-to-one ratio, we don't need any view compaction. */
308 if (count < limit)
310 map->partition_to_view = (int *)xmalloc (limit * sizeof (int));
311 memset (map->partition_to_view, 0xff, (limit * sizeof (int)));
312 map->view_to_partition = (int *)xmalloc (count * sizeof (int));
314 i = 0;
315 /* Give each selected partition an index. */
316 EXECUTE_IF_SET_IN_BITMAP (selected, 0, x, bi)
318 map->partition_to_view[x] = i;
319 map->view_to_partition[i] = x;
320 var = map->partition_to_var[x];
321 /* If any one of the members of a partition is not an SSA_NAME, make
322 sure it is the representative. */
323 if (TREE_CODE (var) != SSA_NAME)
324 change_partition_var (map, var, i);
325 i++;
327 gcc_assert (i == count);
328 map->num_partitions = i;
331 BITMAP_FREE (selected);
335 /* Create a partition view which includes all the used partitions in MAP. If
336 WANT_BASES is true, create the base variable map as well. */
338 extern void
339 partition_view_normal (var_map map, bool want_bases)
341 bitmap used;
343 used = partition_view_init (map);
344 partition_view_fini (map, used);
346 if (want_bases)
347 var_map_base_init (map);
348 else
349 var_map_base_fini (map);
353 /* Create a partition view in MAP which includes just partitions which occur in
354 the bitmap ONLY. If WANT_BASES is true, create the base variable map
355 as well. */
357 extern void
358 partition_view_bitmap (var_map map, bitmap only, bool want_bases)
360 bitmap used;
361 bitmap new_partitions = BITMAP_ALLOC (NULL);
362 unsigned x, p;
363 bitmap_iterator bi;
365 used = partition_view_init (map);
366 EXECUTE_IF_SET_IN_BITMAP (only, 0, x, bi)
368 p = partition_find (map->var_partition, x);
369 gcc_assert (bitmap_bit_p (used, p));
370 bitmap_set_bit (new_partitions, p);
372 partition_view_fini (map, new_partitions);
374 BITMAP_FREE (used);
375 if (want_bases)
376 var_map_base_init (map);
377 else
378 var_map_base_fini (map);
382 /* This function is used to change the representative variable in MAP for VAR's
383 partition to a regular non-ssa variable. This allows partitions to be
384 mapped back to real variables. */
386 void
387 change_partition_var (var_map map, tree var, int part)
389 var_ann_t ann;
391 gcc_assert (TREE_CODE (var) != SSA_NAME);
393 ann = var_ann (var);
394 ann->out_of_ssa_tag = 1;
395 VAR_ANN_PARTITION (ann) = part;
396 if (map->view_to_partition)
397 map->partition_to_var[map->view_to_partition[part]] = var;
401 static inline void mark_all_vars_used (tree *, void *data);
403 /* Helper function for mark_all_vars_used, called via walk_tree. */
405 static tree
406 mark_all_vars_used_1 (tree *tp, int *walk_subtrees, void *data)
408 tree t = *tp;
409 enum tree_code_class c = TREE_CODE_CLASS (TREE_CODE (t));
410 tree b;
412 if (TREE_CODE (t) == SSA_NAME)
413 t = SSA_NAME_VAR (t);
415 if (IS_EXPR_CODE_CLASS (c)
416 && (b = TREE_BLOCK (t)) != NULL)
417 TREE_USED (b) = true;
419 /* Ignore TREE_ORIGINAL for TARGET_MEM_REFS, as well as other
420 fields that do not contain vars. */
421 if (TREE_CODE (t) == TARGET_MEM_REF)
423 mark_all_vars_used (&TMR_SYMBOL (t), data);
424 mark_all_vars_used (&TMR_BASE (t), data);
425 mark_all_vars_used (&TMR_INDEX (t), data);
426 *walk_subtrees = 0;
427 return NULL;
430 /* Only need to mark VAR_DECLS; parameters and return results are not
431 eliminated as unused. */
432 if (TREE_CODE (t) == VAR_DECL)
434 if (data != NULL && bitmap_bit_p ((bitmap) data, DECL_UID (t)))
436 bitmap_clear_bit ((bitmap) data, DECL_UID (t));
437 mark_all_vars_used (&DECL_INITIAL (t), data);
439 set_is_used (t);
442 if (IS_TYPE_OR_DECL_P (t))
443 *walk_subtrees = 0;
445 return NULL;
448 /* Mark the scope block SCOPE and its subblocks unused when they can be
449 possibly eliminated if dead. */
451 static void
452 mark_scope_block_unused (tree scope)
454 tree t;
455 TREE_USED (scope) = false;
456 if (!(*debug_hooks->ignore_block) (scope))
457 TREE_USED (scope) = true;
458 for (t = BLOCK_SUBBLOCKS (scope); t ; t = BLOCK_CHAIN (t))
459 mark_scope_block_unused (t);
462 /* Look if the block is dead (by possibly eliminating its dead subblocks)
463 and return true if so.
464 Block is declared dead if:
465 1) No statements are associated with it.
466 2) Declares no live variables
467 3) All subblocks are dead
468 or there is precisely one subblocks and the block
469 has same abstract origin as outer block and declares
470 no variables, so it is pure wrapper.
471 When we are not outputting full debug info, we also eliminate dead variables
472 out of scope blocks to let them to be recycled by GGC and to save copying work
473 done by the inliner. */
475 static bool
476 remove_unused_scope_block_p (tree scope)
478 tree *t, *next;
479 bool unused = !TREE_USED (scope);
480 var_ann_t ann;
481 int nsubblocks = 0;
483 for (t = &BLOCK_VARS (scope); *t; t = next)
485 next = &TREE_CHAIN (*t);
487 /* Debug info of nested function refers to the block of the
488 function. */
489 if (TREE_CODE (*t) == FUNCTION_DECL)
490 unused = false;
492 /* Remove everything we don't generate debug info for. */
493 else if (DECL_IGNORED_P (*t))
495 *t = TREE_CHAIN (*t);
496 next = t;
499 /* When we are outputting debug info, we usually want to output
500 info about optimized-out variables in the scope blocks.
501 Exception are the scope blocks not containing any instructions
502 at all so user can't get into the scopes at first place. */
503 else if ((ann = var_ann (*t)) != NULL
504 && ann->used)
505 unused = false;
507 /* When we are not doing full debug info, we however can keep around
508 only the used variables for cfgexpand's memory packing saving quite
509 a lot of memory. */
510 else if (debug_info_level == DINFO_LEVEL_NORMAL
511 || debug_info_level == DINFO_LEVEL_VERBOSE
512 /* Removing declarations before inlining is going to affect
513 DECL_UID that in turn is going to affect hashtables and
514 code generation. */
515 || !cfun->after_inlining)
516 unused = false;
518 else
520 *t = TREE_CHAIN (*t);
521 next = t;
525 for (t = &BLOCK_SUBBLOCKS (scope); *t ;)
526 if (remove_unused_scope_block_p (*t))
528 if (BLOCK_SUBBLOCKS (*t))
530 tree next = BLOCK_CHAIN (*t);
531 tree supercontext = BLOCK_SUPERCONTEXT (*t);
532 *t = BLOCK_SUBBLOCKS (*t);
533 gcc_assert (!BLOCK_CHAIN (*t));
534 BLOCK_CHAIN (*t) = next;
535 BLOCK_SUPERCONTEXT (*t) = supercontext;
536 t = &BLOCK_CHAIN (*t);
537 nsubblocks ++;
539 else
541 gcc_assert (!BLOCK_VARS (*t));
542 *t = BLOCK_CHAIN (*t);
545 else
547 t = &BLOCK_CHAIN (*t);
548 nsubblocks ++;
550 /* Outer scope is always used. */
551 if (!BLOCK_SUPERCONTEXT (scope)
552 || TREE_CODE (BLOCK_SUPERCONTEXT (scope)) == FUNCTION_DECL)
553 unused = false;
554 /* If there are more than one live subblocks, it is used. */
555 else if (nsubblocks > 1)
556 unused = false;
557 /* When there is only one subblock, see if it is just wrapper we can
558 ignore. Wrappers are not declaring any variables and not changing
559 abstract origin. */
560 else if (nsubblocks == 1
561 && (BLOCK_VARS (scope)
562 || ((debug_info_level == DINFO_LEVEL_NORMAL
563 || debug_info_level == DINFO_LEVEL_VERBOSE)
564 && ((BLOCK_ABSTRACT_ORIGIN (scope)
565 != BLOCK_ABSTRACT_ORIGIN (BLOCK_SUPERCONTEXT (scope)))))))
566 unused = false;
567 return unused;
570 /* Mark all VAR_DECLS under *EXPR_P as used, so that they won't be
571 eliminated during the tree->rtl conversion process. */
573 static inline void
574 mark_all_vars_used (tree *expr_p, void *data)
576 walk_tree (expr_p, mark_all_vars_used_1, data, NULL);
580 /* Remove local variables that are not referenced in the IL. */
582 void
583 remove_unused_locals (void)
585 basic_block bb;
586 tree t, *cell;
587 referenced_var_iterator rvi;
588 var_ann_t ann;
589 bitmap global_unused_vars = NULL;
591 if (optimize)
592 mark_scope_block_unused (DECL_INITIAL (current_function_decl));
594 /* Assume all locals are unused. */
595 FOR_EACH_REFERENCED_VAR (t, rvi)
596 var_ann (t)->used = false;
598 /* Walk the CFG marking all referenced symbols. */
599 FOR_EACH_BB (bb)
601 gimple_stmt_iterator gsi;
602 size_t i;
604 /* Walk the statements. */
605 for (gsi = gsi_start_bb (bb); !gsi_end_p (gsi); gsi_next (&gsi))
607 gimple stmt = gsi_stmt (gsi);
608 tree b = gimple_block (stmt);
610 if (b)
611 TREE_USED (b) = true;
613 for (i = 0; i < gimple_num_ops (stmt); i++)
614 mark_all_vars_used (gimple_op_ptr (gsi_stmt (gsi), i), NULL);
617 for (gsi = gsi_start_phis (bb); !gsi_end_p (gsi); gsi_next (&gsi))
619 use_operand_p arg_p;
620 ssa_op_iter i;
621 tree def;
622 gimple phi = gsi_stmt (gsi);
624 /* No point processing globals. */
625 if (is_global_var (SSA_NAME_VAR (gimple_phi_result (phi))))
626 continue;
628 def = gimple_phi_result (phi);
629 mark_all_vars_used (&def, NULL);
631 FOR_EACH_PHI_ARG (arg_p, phi, i, SSA_OP_ALL_USES)
633 tree arg = USE_FROM_PTR (arg_p);
634 mark_all_vars_used (&arg, NULL);
639 /* Remove unmarked local vars from local_decls. */
640 for (cell = &cfun->local_decls; *cell; )
642 tree var = TREE_VALUE (*cell);
644 if (TREE_CODE (var) != FUNCTION_DECL
645 && (!(ann = var_ann (var))
646 || !ann->used))
648 if (is_global_var (var))
650 if (global_unused_vars == NULL)
651 global_unused_vars = BITMAP_ALLOC (NULL);
652 bitmap_set_bit (global_unused_vars, DECL_UID (var));
654 else
656 *cell = TREE_CHAIN (*cell);
657 continue;
660 cell = &TREE_CHAIN (*cell);
663 /* Remove unmarked global vars from local_decls. */
664 if (global_unused_vars != NULL)
666 for (t = cfun->local_decls; t; t = TREE_CHAIN (t))
668 tree var = TREE_VALUE (t);
670 if (TREE_CODE (var) == VAR_DECL
671 && is_global_var (var)
672 && (ann = var_ann (var)) != NULL
673 && ann->used)
674 mark_all_vars_used (&DECL_INITIAL (var), global_unused_vars);
677 for (cell = &cfun->local_decls; *cell; )
679 tree var = TREE_VALUE (*cell);
681 if (TREE_CODE (var) == VAR_DECL
682 && is_global_var (var)
683 && bitmap_bit_p (global_unused_vars, DECL_UID (var))
684 && (optimize || DECL_ARTIFICIAL (var)))
685 *cell = TREE_CHAIN (*cell);
686 else
687 cell = &TREE_CHAIN (*cell);
689 BITMAP_FREE (global_unused_vars);
692 /* Remove unused variables from REFERENCED_VARs. As a special
693 exception keep the variables that are believed to be aliased.
694 Those can't be easily removed from the alias sets and operand
695 caches. They will be removed shortly after the next may_alias
696 pass is performed. */
697 FOR_EACH_REFERENCED_VAR (t, rvi)
698 if (!is_global_var (t)
699 && !MTAG_P (t)
700 && TREE_CODE (t) != PARM_DECL
701 && TREE_CODE (t) != RESULT_DECL
702 && !(ann = var_ann (t))->used
703 && !ann->symbol_mem_tag
704 && !TREE_ADDRESSABLE (t)
705 && (optimize || DECL_ARTIFICIAL (t)))
706 remove_referenced_var (t);
707 if (optimize)
708 remove_unused_scope_block_p (DECL_INITIAL (current_function_decl));
712 /* Allocate and return a new live range information object base on MAP. */
714 static tree_live_info_p
715 new_tree_live_info (var_map map)
717 tree_live_info_p live;
718 unsigned x;
720 live = (tree_live_info_p) xmalloc (sizeof (struct tree_live_info_d));
721 live->map = map;
722 live->num_blocks = last_basic_block;
724 live->livein = (bitmap *)xmalloc (last_basic_block * sizeof (bitmap));
725 for (x = 0; x < (unsigned)last_basic_block; x++)
726 live->livein[x] = BITMAP_ALLOC (NULL);
728 live->liveout = (bitmap *)xmalloc (last_basic_block * sizeof (bitmap));
729 for (x = 0; x < (unsigned)last_basic_block; x++)
730 live->liveout[x] = BITMAP_ALLOC (NULL);
732 live->work_stack = XNEWVEC (int, last_basic_block);
733 live->stack_top = live->work_stack;
735 live->global = BITMAP_ALLOC (NULL);
736 return live;
740 /* Free storage for live range info object LIVE. */
742 void
743 delete_tree_live_info (tree_live_info_p live)
745 int x;
747 BITMAP_FREE (live->global);
748 free (live->work_stack);
750 for (x = live->num_blocks - 1; x >= 0; x--)
751 BITMAP_FREE (live->liveout[x]);
752 free (live->liveout);
754 for (x = live->num_blocks - 1; x >= 0; x--)
755 BITMAP_FREE (live->livein[x]);
756 free (live->livein);
758 free (live);
762 /* Visit basic block BB and propagate any required live on entry bits from
763 LIVE into the predecessors. VISITED is the bitmap of visited blocks.
764 TMP is a temporary work bitmap which is passed in to avoid reallocating
765 it each time. */
767 static void
768 loe_visit_block (tree_live_info_p live, basic_block bb, sbitmap visited,
769 bitmap tmp)
771 edge e;
772 bool change;
773 edge_iterator ei;
774 basic_block pred_bb;
775 bitmap loe;
776 gcc_assert (!TEST_BIT (visited, bb->index));
778 SET_BIT (visited, bb->index);
779 loe = live_on_entry (live, bb);
781 FOR_EACH_EDGE (e, ei, bb->preds)
783 pred_bb = e->src;
784 if (pred_bb == ENTRY_BLOCK_PTR)
785 continue;
786 /* TMP is variables live-on-entry from BB that aren't defined in the
787 predecessor block. This should be the live on entry vars to pred.
788 Note that liveout is the DEFs in a block while live on entry is
789 being calculated. */
790 bitmap_and_compl (tmp, loe, live->liveout[pred_bb->index]);
792 /* Add these bits to live-on-entry for the pred. if there are any
793 changes, and pred_bb has been visited already, add it to the
794 revisit stack. */
795 change = bitmap_ior_into (live_on_entry (live, pred_bb), tmp);
796 if (TEST_BIT (visited, pred_bb->index) && change)
798 RESET_BIT (visited, pred_bb->index);
799 *(live->stack_top)++ = pred_bb->index;
805 /* Using LIVE, fill in all the live-on-entry blocks between the defs and uses
806 of all the variables. */
808 static void
809 live_worklist (tree_live_info_p live)
811 unsigned b;
812 basic_block bb;
813 sbitmap visited = sbitmap_alloc (last_basic_block + 1);
814 bitmap tmp = BITMAP_ALLOC (NULL);
816 sbitmap_zero (visited);
818 /* Visit all the blocks in reverse order and propagate live on entry values
819 into the predecessors blocks. */
820 FOR_EACH_BB_REVERSE (bb)
821 loe_visit_block (live, bb, visited, tmp);
823 /* Process any blocks which require further iteration. */
824 while (live->stack_top != live->work_stack)
826 b = *--(live->stack_top);
827 loe_visit_block (live, BASIC_BLOCK (b), visited, tmp);
830 BITMAP_FREE (tmp);
831 sbitmap_free (visited);
835 /* Calculate the initial live on entry vector for SSA_NAME using immediate_use
836 links. Set the live on entry fields in LIVE. Def's are marked temporarily
837 in the liveout vector. */
839 static void
840 set_var_live_on_entry (tree ssa_name, tree_live_info_p live)
842 int p;
843 gimple stmt;
844 use_operand_p use;
845 basic_block def_bb = NULL;
846 imm_use_iterator imm_iter;
847 bool global = false;
849 p = var_to_partition (live->map, ssa_name);
850 if (p == NO_PARTITION)
851 return;
853 stmt = SSA_NAME_DEF_STMT (ssa_name);
854 if (stmt)
856 def_bb = gimple_bb (stmt);
857 /* Mark defs in liveout bitmap temporarily. */
858 if (def_bb)
859 bitmap_set_bit (live->liveout[def_bb->index], p);
861 else
862 def_bb = ENTRY_BLOCK_PTR;
864 /* Visit each use of SSA_NAME and if it isn't in the same block as the def,
865 add it to the list of live on entry blocks. */
866 FOR_EACH_IMM_USE_FAST (use, imm_iter, ssa_name)
868 gimple use_stmt = USE_STMT (use);
869 basic_block add_block = NULL;
871 if (gimple_code (use_stmt) == GIMPLE_PHI)
873 /* Uses in PHI's are considered to be live at exit of the SRC block
874 as this is where a copy would be inserted. Check to see if it is
875 defined in that block, or whether its live on entry. */
876 int index = PHI_ARG_INDEX_FROM_USE (use);
877 edge e = gimple_phi_arg_edge (use_stmt, index);
878 if (e->src != ENTRY_BLOCK_PTR)
880 if (e->src != def_bb)
881 add_block = e->src;
884 else
886 /* If its not defined in this block, its live on entry. */
887 basic_block use_bb = gimple_bb (use_stmt);
888 if (use_bb != def_bb)
889 add_block = use_bb;
892 /* If there was a live on entry use, set the bit. */
893 if (add_block)
895 global = true;
896 bitmap_set_bit (live->livein[add_block->index], p);
900 /* If SSA_NAME is live on entry to at least one block, fill in all the live
901 on entry blocks between the def and all the uses. */
902 if (global)
903 bitmap_set_bit (live->global, p);
907 /* Calculate the live on exit vectors based on the entry info in LIVEINFO. */
909 void
910 calculate_live_on_exit (tree_live_info_p liveinfo)
912 basic_block bb;
913 edge e;
914 edge_iterator ei;
916 /* live on entry calculations used liveout vectors for defs, clear them. */
917 FOR_EACH_BB (bb)
918 bitmap_clear (liveinfo->liveout[bb->index]);
920 /* Set all the live-on-exit bits for uses in PHIs. */
921 FOR_EACH_BB (bb)
923 gimple_stmt_iterator gsi;
924 size_t i;
926 /* Mark the PHI arguments which are live on exit to the pred block. */
927 for (gsi = gsi_start_phis (bb); !gsi_end_p (gsi); gsi_next (&gsi))
929 gimple phi = gsi_stmt (gsi);
930 for (i = 0; i < gimple_phi_num_args (phi); i++)
932 tree t = PHI_ARG_DEF (phi, i);
933 int p;
935 if (TREE_CODE (t) != SSA_NAME)
936 continue;
938 p = var_to_partition (liveinfo->map, t);
939 if (p == NO_PARTITION)
940 continue;
941 e = gimple_phi_arg_edge (phi, i);
942 if (e->src != ENTRY_BLOCK_PTR)
943 bitmap_set_bit (liveinfo->liveout[e->src->index], p);
947 /* Add each successors live on entry to this bock live on exit. */
948 FOR_EACH_EDGE (e, ei, bb->succs)
949 if (e->dest != EXIT_BLOCK_PTR)
950 bitmap_ior_into (liveinfo->liveout[bb->index],
951 live_on_entry (liveinfo, e->dest));
956 /* Given partition map MAP, calculate all the live on entry bitmaps for
957 each partition. Return a new live info object. */
959 tree_live_info_p
960 calculate_live_ranges (var_map map)
962 tree var;
963 unsigned i;
964 tree_live_info_p live;
966 live = new_tree_live_info (map);
967 for (i = 0; i < num_var_partitions (map); i++)
969 var = partition_to_var (map, i);
970 if (var != NULL_TREE)
971 set_var_live_on_entry (var, live);
974 live_worklist (live);
976 #ifdef ENABLE_CHECKING
977 verify_live_on_entry (live);
978 #endif
980 calculate_live_on_exit (live);
981 return live;
985 /* Output partition map MAP to file F. */
987 void
988 dump_var_map (FILE *f, var_map map)
990 int t;
991 unsigned x, y;
992 int p;
994 fprintf (f, "\nPartition map \n\n");
996 for (x = 0; x < map->num_partitions; x++)
998 if (map->view_to_partition != NULL)
999 p = map->view_to_partition[x];
1000 else
1001 p = x;
1003 if (map->partition_to_var[p] == NULL_TREE)
1004 continue;
1006 t = 0;
1007 for (y = 1; y < num_ssa_names; y++)
1009 p = partition_find (map->var_partition, y);
1010 if (map->partition_to_view)
1011 p = map->partition_to_view[p];
1012 if (p == (int)x)
1014 if (t++ == 0)
1016 fprintf(f, "Partition %d (", x);
1017 print_generic_expr (f, partition_to_var (map, p), TDF_SLIM);
1018 fprintf (f, " - ");
1020 fprintf (f, "%d ", y);
1023 if (t != 0)
1024 fprintf (f, ")\n");
1026 fprintf (f, "\n");
1030 /* Output live range info LIVE to file F, controlled by FLAG. */
1032 void
1033 dump_live_info (FILE *f, tree_live_info_p live, int flag)
1035 basic_block bb;
1036 unsigned i;
1037 var_map map = live->map;
1038 bitmap_iterator bi;
1040 if ((flag & LIVEDUMP_ENTRY) && live->livein)
1042 FOR_EACH_BB (bb)
1044 fprintf (f, "\nLive on entry to BB%d : ", bb->index);
1045 EXECUTE_IF_SET_IN_BITMAP (live->livein[bb->index], 0, i, bi)
1047 print_generic_expr (f, partition_to_var (map, i), TDF_SLIM);
1048 fprintf (f, " ");
1050 fprintf (f, "\n");
1054 if ((flag & LIVEDUMP_EXIT) && live->liveout)
1056 FOR_EACH_BB (bb)
1058 fprintf (f, "\nLive on exit from BB%d : ", bb->index);
1059 EXECUTE_IF_SET_IN_BITMAP (live->liveout[bb->index], 0, i, bi)
1061 print_generic_expr (f, partition_to_var (map, i), TDF_SLIM);
1062 fprintf (f, " ");
1064 fprintf (f, "\n");
1070 #ifdef ENABLE_CHECKING
1071 /* Verify that SSA_VAR is a non-virtual SSA_NAME. */
1073 void
1074 register_ssa_partition_check (tree ssa_var)
1076 gcc_assert (TREE_CODE (ssa_var) == SSA_NAME);
1077 if (!is_gimple_reg (SSA_NAME_VAR (ssa_var)))
1079 fprintf (stderr, "Illegally registering a virtual SSA name :");
1080 print_generic_expr (stderr, ssa_var, TDF_SLIM);
1081 fprintf (stderr, " in the SSA->Normal phase.\n");
1082 internal_error ("SSA corruption");
1087 /* Verify that the info in LIVE matches the current cfg. */
1089 static void
1090 verify_live_on_entry (tree_live_info_p live)
1092 unsigned i;
1093 tree var;
1094 gimple stmt;
1095 basic_block bb;
1096 edge e;
1097 int num;
1098 edge_iterator ei;
1099 var_map map = live->map;
1101 /* Check for live on entry partitions and report those with a DEF in
1102 the program. This will typically mean an optimization has done
1103 something wrong. */
1104 bb = ENTRY_BLOCK_PTR;
1105 num = 0;
1106 FOR_EACH_EDGE (e, ei, bb->succs)
1108 int entry_block = e->dest->index;
1109 if (e->dest == EXIT_BLOCK_PTR)
1110 continue;
1111 for (i = 0; i < (unsigned)num_var_partitions (map); i++)
1113 basic_block tmp;
1114 tree d;
1115 bitmap loe;
1116 var = partition_to_var (map, i);
1117 stmt = SSA_NAME_DEF_STMT (var);
1118 tmp = gimple_bb (stmt);
1119 d = gimple_default_def (cfun, SSA_NAME_VAR (var));
1121 loe = live_on_entry (live, e->dest);
1122 if (loe && bitmap_bit_p (loe, i))
1124 if (!gimple_nop_p (stmt))
1126 num++;
1127 print_generic_expr (stderr, var, TDF_SLIM);
1128 fprintf (stderr, " is defined ");
1129 if (tmp)
1130 fprintf (stderr, " in BB%d, ", tmp->index);
1131 fprintf (stderr, "by:\n");
1132 print_gimple_stmt (stderr, stmt, 0, TDF_SLIM);
1133 fprintf (stderr, "\nIt is also live-on-entry to entry BB %d",
1134 entry_block);
1135 fprintf (stderr, " So it appears to have multiple defs.\n");
1137 else
1139 if (d != var)
1141 num++;
1142 print_generic_expr (stderr, var, TDF_SLIM);
1143 fprintf (stderr, " is live-on-entry to BB%d ",
1144 entry_block);
1145 if (d)
1147 fprintf (stderr, " but is not the default def of ");
1148 print_generic_expr (stderr, d, TDF_SLIM);
1149 fprintf (stderr, "\n");
1151 else
1152 fprintf (stderr, " and there is no default def.\n");
1156 else
1157 if (d == var)
1159 /* The only way this var shouldn't be marked live on entry is
1160 if it occurs in a PHI argument of the block. */
1161 size_t z;
1162 bool ok = false;
1163 gimple_stmt_iterator gsi;
1164 for (gsi = gsi_start_phis (e->dest);
1165 !gsi_end_p (gsi) && !ok;
1166 gsi_next (&gsi))
1168 gimple phi = gsi_stmt (gsi);
1169 for (z = 0; z < gimple_phi_num_args (phi); z++)
1170 if (var == gimple_phi_arg_def (phi, z))
1172 ok = true;
1173 break;
1176 if (ok)
1177 continue;
1178 num++;
1179 print_generic_expr (stderr, var, TDF_SLIM);
1180 fprintf (stderr, " is not marked live-on-entry to entry BB%d ",
1181 entry_block);
1182 fprintf (stderr, "but it is a default def so it should be.\n");
1186 gcc_assert (num <= 0);
1188 #endif