Merge from mainline (gomp-merge-2005-02-26).
[official-gcc.git] / gcc / tree-ssa.c
blobb39c260c273a5e3374007af3f633e1b91c8b5733
1 /* Miscellaneous SSA utility functions.
2 Copyright (C) 2001, 2002, 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
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 2, or (at your option)
9 any later version.
11 GCC is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License 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
18 the Free Software Foundation, 59 Temple Place - Suite 330,
19 Boston, MA 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 "flags.h"
27 #include "rtl.h"
28 #include "tm_p.h"
29 #include "ggc.h"
30 #include "langhooks.h"
31 #include "hard-reg-set.h"
32 #include "basic-block.h"
33 #include "output.h"
34 #include "errors.h"
35 #include "expr.h"
36 #include "function.h"
37 #include "diagnostic.h"
38 #include "bitmap.h"
39 #include "pointer-set.h"
40 #include "tree-flow.h"
41 #include "tree-gimple.h"
42 #include "tree-inline.h"
43 #include "varray.h"
44 #include "timevar.h"
45 #include "hashtab.h"
46 #include "tree-dump.h"
47 #include "tree-pass.h"
49 /* Remove the corresponding arguments from the PHI nodes in E's
50 destination block and redirect it to DEST. Return redirected edge.
51 The list of removed arguments is stored in PENDING_STMT (e). */
53 edge
54 ssa_redirect_edge (edge e, basic_block dest)
56 tree phi, next;
57 tree list = NULL, *last = &list;
58 tree src, dst, node;
60 /* Remove the appropriate PHI arguments in E's destination block. */
61 for (phi = phi_nodes (e->dest); phi; phi = next)
63 next = PHI_CHAIN (phi);
65 if (PHI_ARG_DEF (phi, e->dest_idx) == NULL_TREE)
66 continue;
68 src = PHI_ARG_DEF (phi, e->dest_idx);
69 dst = PHI_RESULT (phi);
70 node = build_tree_list (dst, src);
71 *last = node;
72 last = &TREE_CHAIN (node);
75 e = redirect_edge_succ_nodup (e, dest);
76 PENDING_STMT (e) = list;
78 return e;
81 /* Add PHI arguments queued in PENDINT_STMT list on edge E to edge
82 E->dest. */
84 void
85 flush_pending_stmts (edge e)
87 tree phi, arg;
89 if (!PENDING_STMT (e))
90 return;
92 for (phi = phi_nodes (e->dest), arg = PENDING_STMT (e);
93 phi;
94 phi = PHI_CHAIN (phi), arg = TREE_CHAIN (arg))
96 tree def = TREE_VALUE (arg);
97 add_phi_arg (phi, def, e);
100 PENDING_STMT (e) = NULL;
103 /* Return true if SSA_NAME is malformed and mark it visited.
105 IS_VIRTUAL is true if this SSA_NAME was found inside a virtual
106 operand. */
108 static bool
109 verify_ssa_name (tree ssa_name, bool is_virtual)
111 if (TREE_CODE (ssa_name) != SSA_NAME)
113 error ("Expected an SSA_NAME object");
114 return true;
117 if (TREE_TYPE (ssa_name) != TREE_TYPE (SSA_NAME_VAR (ssa_name)))
119 error ("Type mismatch between an SSA_NAME and its symbol.");
120 return true;
123 if (SSA_NAME_IN_FREE_LIST (ssa_name))
125 error ("Found an SSA_NAME that had been released into the free pool");
126 return true;
129 if (is_virtual && is_gimple_reg (ssa_name))
131 error ("Found a virtual definition for a GIMPLE register");
132 return true;
135 if (!is_virtual && !is_gimple_reg (ssa_name))
137 error ("Found a real definition for a non-register");
138 return true;
141 return false;
145 /* Return true if the definition of SSA_NAME at block BB is malformed.
147 STMT is the statement where SSA_NAME is created.
149 DEFINITION_BLOCK is an array of basic blocks indexed by SSA_NAME
150 version numbers. If DEFINITION_BLOCK[SSA_NAME_VERSION] is set,
151 it means that the block in that array slot contains the
152 definition of SSA_NAME.
154 IS_VIRTUAL is true if SSA_NAME is created by a V_MAY_DEF or a
155 V_MUST_DEF. */
157 static bool
158 verify_def (basic_block bb, basic_block *definition_block, tree ssa_name,
159 tree stmt, bool is_virtual)
161 if (verify_ssa_name (ssa_name, is_virtual))
162 goto err;
164 if (definition_block[SSA_NAME_VERSION (ssa_name)])
166 error ("SSA_NAME created in two different blocks %i and %i",
167 definition_block[SSA_NAME_VERSION (ssa_name)]->index, bb->index);
168 goto err;
171 definition_block[SSA_NAME_VERSION (ssa_name)] = bb;
173 if (SSA_NAME_DEF_STMT (ssa_name) != stmt)
175 error ("SSA_NAME_DEF_STMT is wrong");
176 fprintf (stderr, "Expected definition statement:\n");
177 print_generic_stmt (stderr, SSA_NAME_DEF_STMT (ssa_name), TDF_VOPS);
178 fprintf (stderr, "\nActual definition statement:\n");
179 print_generic_stmt (stderr, stmt, TDF_VOPS);
180 goto err;
183 return false;
185 err:
186 fprintf (stderr, "while verifying SSA_NAME ");
187 print_generic_expr (stderr, ssa_name, 0);
188 fprintf (stderr, " in statement\n");
189 print_generic_stmt (stderr, stmt, TDF_VOPS);
191 return true;
195 /* Return true if the use of SSA_NAME at statement STMT in block BB is
196 malformed.
198 DEF_BB is the block where SSA_NAME was found to be created.
200 IDOM contains immediate dominator information for the flowgraph.
202 CHECK_ABNORMAL is true if the caller wants to check whether this use
203 is flowing through an abnormal edge (only used when checking PHI
204 arguments).
206 IS_VIRTUAL is true if SSA_NAME is created by a V_MAY_DEF or a
207 V_MUST_DEF.
209 If NAMES_DEFINED_IN_BB is not NULL, it contains a bitmap of ssa names
210 that are defined before STMT in basic block BB. */
212 static bool
213 verify_use (basic_block bb, basic_block def_bb, tree ssa_name,
214 tree stmt, bool check_abnormal, bool is_virtual,
215 bitmap names_defined_in_bb)
217 bool err = false;
219 err = verify_ssa_name (ssa_name, is_virtual);
220 TREE_VISITED (ssa_name) = 1;
222 if (IS_EMPTY_STMT (SSA_NAME_DEF_STMT (ssa_name))
223 && var_ann (SSA_NAME_VAR (ssa_name))->default_def == ssa_name)
224 ; /* Default definitions have empty statements. Nothing to do. */
225 else if (!def_bb)
227 error ("Missing definition");
228 err = true;
230 else if (bb != def_bb
231 && !dominated_by_p (CDI_DOMINATORS, bb, def_bb))
233 error ("Definition in block %i does not dominate use in block %i",
234 def_bb->index, bb->index);
235 err = true;
237 else if (bb == def_bb
238 && names_defined_in_bb != NULL
239 && !bitmap_bit_p (names_defined_in_bb, SSA_NAME_VERSION (ssa_name)))
241 error ("Definition in block %i follows the use", def_bb->index);
242 err = true;
245 if (check_abnormal
246 && !SSA_NAME_OCCURS_IN_ABNORMAL_PHI (ssa_name))
248 error ("SSA_NAME_OCCURS_IN_ABNORMAL_PHI should be set");
249 err = true;
252 if (err)
254 fprintf (stderr, "for SSA_NAME: ");
255 print_generic_expr (stderr, ssa_name, TDF_VOPS);
256 fprintf (stderr, "in statement:\n");
257 print_generic_stmt (stderr, stmt, TDF_VOPS);
260 return err;
264 /* Return true if any of the arguments for PHI node PHI at block BB is
265 malformed.
267 DEFINITION_BLOCK is an array of basic blocks indexed by SSA_NAME version
268 numbers. If DEFINITION_BLOCK[SSA_NAME_VERSION] is set, it means that the
269 block in that array slot contains the definition of SSA_NAME. */
271 static bool
272 verify_phi_args (tree phi, basic_block bb, basic_block *definition_block)
274 edge e;
275 bool err = false;
276 unsigned i, phi_num_args = PHI_NUM_ARGS (phi);
278 if (EDGE_COUNT (bb->preds) != phi_num_args)
280 error ("Incoming edge count does not match number of PHI arguments\n");
281 err = true;
282 goto error;
285 for (i = 0; i < phi_num_args; i++)
287 tree op = PHI_ARG_DEF (phi, i);
289 e = EDGE_PRED (bb, i);
291 if (op == NULL_TREE)
293 error ("PHI argument is missing for edge %d->%d\n",
294 e->src->index,
295 e->dest->index);
296 err = true;
297 goto error;
300 if (TREE_CODE (op) != SSA_NAME && !is_gimple_min_invariant (op))
302 error ("PHI argument is not SSA_NAME, or invariant");
303 err = true;
306 if (TREE_CODE (op) == SSA_NAME)
307 err = verify_use (e->src, definition_block[SSA_NAME_VERSION (op)], op,
308 phi, e->flags & EDGE_ABNORMAL,
309 !is_gimple_reg (PHI_RESULT (phi)),
310 NULL);
312 if (e->dest != bb)
314 error ("Wrong edge %d->%d for PHI argument\n",
315 e->src->index, e->dest->index, bb->index);
316 err = true;
319 if (err)
321 fprintf (stderr, "PHI argument\n");
322 print_generic_stmt (stderr, op, TDF_VOPS);
323 goto error;
327 error:
328 if (err)
330 fprintf (stderr, "for PHI node\n");
331 print_generic_stmt (stderr, phi, TDF_VOPS);
335 return err;
339 static void
340 verify_flow_insensitive_alias_info (void)
342 size_t i;
343 tree var;
344 bitmap visited = BITMAP_ALLOC (NULL);
346 for (i = 0; i < num_referenced_vars; i++)
348 size_t j;
349 var_ann_t ann;
350 varray_type may_aliases;
352 var = referenced_var (i);
353 ann = var_ann (var);
354 may_aliases = ann->may_aliases;
356 for (j = 0; may_aliases && j < VARRAY_ACTIVE_SIZE (may_aliases); j++)
358 tree alias = VARRAY_TREE (may_aliases, j);
360 bitmap_set_bit (visited, var_ann (alias)->uid);
362 if (!may_be_aliased (alias))
364 error ("Non-addressable variable inside an alias set.");
365 debug_variable (alias);
366 goto err;
371 for (i = 0; i < num_referenced_vars; i++)
373 var_ann_t ann;
375 var = referenced_var (i);
376 ann = var_ann (var);
378 if (ann->mem_tag_kind == NOT_A_TAG
379 && ann->is_alias_tag
380 && !bitmap_bit_p (visited, ann->uid))
382 error ("Addressable variable that is an alias tag but is not in any alias set.");
383 goto err;
387 BITMAP_FREE (visited);
388 return;
390 err:
391 debug_variable (var);
392 internal_error ("verify_flow_insensitive_alias_info failed.");
396 static void
397 verify_flow_sensitive_alias_info (void)
399 size_t i;
400 tree ptr;
402 for (i = 1; i < num_ssa_names; i++)
404 tree var;
405 var_ann_t ann;
406 struct ptr_info_def *pi;
409 ptr = ssa_name (i);
410 if (!ptr)
411 continue;
413 /* We only care for pointers that are actually referenced in the
414 program. */
415 if (!POINTER_TYPE_P (TREE_TYPE (ptr)) || !TREE_VISITED (ptr))
416 continue;
418 /* RESULT_DECL is special. If it's a GIMPLE register, then it
419 is only written-to only once in the return statement.
420 Otherwise, aggregate RESULT_DECLs may be written-to more than
421 once in virtual operands. */
422 var = SSA_NAME_VAR (ptr);
423 if (TREE_CODE (var) == RESULT_DECL
424 && is_gimple_reg (ptr))
425 continue;
427 pi = SSA_NAME_PTR_INFO (ptr);
428 if (pi == NULL)
429 continue;
431 ann = var_ann (var);
432 if (pi->is_dereferenced && !pi->name_mem_tag && !ann->type_mem_tag)
434 error ("Dereferenced pointers should have a name or a type tag");
435 goto err;
438 if (pi->name_mem_tag
439 && !pi->pt_malloc
440 && (pi->pt_vars == NULL || bitmap_empty_p (pi->pt_vars)))
442 error ("Pointers with a memory tag, should have points-to sets or point to malloc");
443 goto err;
446 if (pi->value_escapes_p
447 && pi->name_mem_tag
448 && !is_call_clobbered (pi->name_mem_tag))
450 error ("Pointer escapes but its name tag is not call-clobbered.");
451 goto err;
455 return;
457 err:
458 debug_variable (ptr);
459 internal_error ("verify_flow_sensitive_alias_info failed.");
462 DEF_VEC_MALLOC_P (bitmap);
464 /* Verify that all name tags have different points to sets.
465 This algorithm takes advantage of the fact that every variable with the
466 same name tag must have the same points-to set.
467 So we check a single variable for each name tag, and verify that its
468 points-to set is different from every other points-to set for other name
469 tags.
471 Additionally, given a pointer P_i with name tag NMT and type tag
472 TMT, this function verified the alias set of TMT is a superset of
473 the alias set of NMT. */
475 static void
476 verify_name_tags (void)
478 size_t i;
479 size_t j;
480 bitmap first, second;
481 VEC (tree) *name_tag_reps = NULL;
482 VEC (bitmap) *pt_vars_for_reps = NULL;
483 bitmap type_aliases = BITMAP_ALLOC (NULL);
485 /* First we compute the name tag representatives and their points-to sets. */
486 for (i = 0; i < num_ssa_names; i++)
488 struct ptr_info_def *pi;
489 tree tmt, ptr = ssa_name (i);
491 if (ptr == NULL_TREE)
492 continue;
494 pi = SSA_NAME_PTR_INFO (ptr);
496 if (!TREE_VISITED (ptr)
497 || !POINTER_TYPE_P (TREE_TYPE (ptr))
498 || !pi
499 || !pi->name_mem_tag
500 || TREE_VISITED (pi->name_mem_tag))
501 continue;
503 TREE_VISITED (pi->name_mem_tag) = 1;
505 if (pi->pt_vars == NULL)
506 continue;
508 VEC_safe_push (tree, name_tag_reps, ptr);
509 VEC_safe_push (bitmap, pt_vars_for_reps, pi->pt_vars);
511 /* Verify that alias set of PTR's type tag is a superset of the
512 alias set of PTR's name tag. */
513 tmt = var_ann (SSA_NAME_VAR (ptr))->type_mem_tag;
514 if (tmt)
516 size_t i;
517 varray_type aliases = var_ann (tmt)->may_aliases;
518 bitmap_clear (type_aliases);
519 for (i = 0; aliases && i < VARRAY_ACTIVE_SIZE (aliases); i++)
521 tree alias = VARRAY_TREE (aliases, i);
522 bitmap_set_bit (type_aliases, var_ann (alias)->uid);
525 /* When grouping, we may have added PTR's type tag into the
526 alias set of PTR's name tag. To prevent a false
527 positive, pretend that TMT is in its own alias set. */
528 bitmap_set_bit (type_aliases, var_ann (tmt)->uid);
530 if (bitmap_equal_p (type_aliases, pi->pt_vars))
531 continue;
533 if (!bitmap_intersect_compl_p (type_aliases, pi->pt_vars))
535 error ("Alias set of a pointer's type tag should be a superset of the corresponding name tag");
536 debug_variable (tmt);
537 debug_variable (pi->name_mem_tag);
538 goto err;
543 /* Now compare all the representative bitmaps with all other representative
544 bitmaps, to verify that they are all different. */
545 for (i = 0; VEC_iterate (bitmap, pt_vars_for_reps, i, first); i++)
547 for (j = i + 1; VEC_iterate (bitmap, pt_vars_for_reps, j, second); j++)
549 if (bitmap_equal_p (first, second))
551 error ("Two different pointers with identical points-to sets but different name tags");
552 debug_variable (VEC_index (tree, name_tag_reps, j));
553 goto err;
558 /* Lastly, clear out the visited flags. */
559 for (i = 0; i < num_ssa_names; i++)
561 if (ssa_name (i))
563 tree ptr = ssa_name (i);
564 struct ptr_info_def *pi = SSA_NAME_PTR_INFO (ptr);
565 if (!TREE_VISITED (ptr)
566 || !POINTER_TYPE_P (TREE_TYPE (ptr))
567 || !pi
568 || !pi->name_mem_tag)
569 continue;
570 TREE_VISITED (pi->name_mem_tag) = 0;
574 VEC_free (bitmap, pt_vars_for_reps);
575 BITMAP_FREE (type_aliases);
576 return;
578 err:
579 debug_variable (VEC_index (tree, name_tag_reps, i));
580 internal_error ("verify_name_tags failed");
584 /* Verify the consistency of aliasing information. */
586 static void
587 verify_alias_info (void)
589 verify_flow_sensitive_alias_info ();
590 verify_name_tags ();
591 verify_flow_insensitive_alias_info ();
595 /* Verify common invariants in the SSA web.
596 TODO: verify the variable annotations. */
598 void
599 verify_ssa (void)
601 size_t i;
602 basic_block bb;
603 basic_block *definition_block = xcalloc (num_ssa_names, sizeof (basic_block));
604 ssa_op_iter iter;
605 tree op;
606 enum dom_state orig_dom_state = dom_computed[CDI_DOMINATORS];
607 bitmap names_defined_in_bb = BITMAP_ALLOC (NULL);
609 timevar_push (TV_TREE_SSA_VERIFY);
611 /* Keep track of SSA names present in the IL. */
612 for (i = 1; i < num_ssa_names; i++)
614 tree name = ssa_name (i);
615 if (name)
617 tree stmt;
618 TREE_VISITED (name) = 0;
620 stmt = SSA_NAME_DEF_STMT (name);
621 if (!IS_EMPTY_STMT (stmt))
623 basic_block bb = bb_for_stmt (stmt);
624 verify_def (bb, definition_block,
625 name, stmt, !is_gimple_reg (name));
631 calculate_dominance_info (CDI_DOMINATORS);
633 /* Now verify all the uses and make sure they agree with the definitions
634 found in the previous pass. */
635 FOR_EACH_BB (bb)
637 edge e;
638 tree phi;
639 edge_iterator ei;
640 block_stmt_iterator bsi;
642 /* Make sure that all edges have a clear 'aux' field. */
643 FOR_EACH_EDGE (e, ei, bb->preds)
645 if (e->aux)
647 error ("AUX pointer initialized for edge %d->%d\n", e->src->index,
648 e->dest->index);
649 goto err;
653 /* Verify the arguments for every PHI node in the block. */
654 for (phi = phi_nodes (bb); phi; phi = PHI_CHAIN (phi))
656 if (verify_phi_args (phi, bb, definition_block))
657 goto err;
658 bitmap_set_bit (names_defined_in_bb,
659 SSA_NAME_VERSION (PHI_RESULT (phi)));
662 /* Now verify all the uses and vuses in every statement of the block. */
663 for (bsi = bsi_start (bb); !bsi_end_p (bsi); bsi_next (&bsi))
665 tree stmt = bsi_stmt (bsi);
667 get_stmt_operands (stmt);
669 if (stmt_ann (stmt)->makes_aliased_stores
670 && NUM_V_MAY_DEFS (STMT_V_MAY_DEF_OPS (stmt)) == 0)
672 error ("Statement makes aliased stores, but has no V_MAY_DEFS");
673 print_generic_stmt (stderr, stmt, TDF_VOPS);
674 goto err;
677 FOR_EACH_SSA_TREE_OPERAND (op, stmt, iter, SSA_OP_ALL_USES | SSA_OP_ALL_KILLS)
679 if (verify_use (bb, definition_block[SSA_NAME_VERSION (op)],
680 op, stmt, false, !is_gimple_reg (op),
681 names_defined_in_bb))
682 goto err;
685 FOR_EACH_SSA_TREE_OPERAND (op, stmt, iter, SSA_OP_ALL_DEFS)
687 bitmap_set_bit (names_defined_in_bb, SSA_NAME_VERSION (op));
691 bitmap_clear (names_defined_in_bb);
694 /* Finally, verify alias information. */
695 verify_alias_info ();
697 free (definition_block);
698 /* Restore the dominance information to its prior known state, so
699 that we do not perturb the compiler's subsequent behavior. */
700 if (orig_dom_state == DOM_NONE)
701 free_dominance_info (CDI_DOMINATORS);
702 else
703 dom_computed[CDI_DOMINATORS] = orig_dom_state;
705 BITMAP_FREE (names_defined_in_bb);
706 timevar_pop (TV_TREE_SSA_VERIFY);
707 return;
709 err:
710 internal_error ("verify_ssa failed.");
714 /* Initialize global DFA and SSA structures. */
716 void
717 init_tree_ssa (void)
719 VARRAY_TREE_INIT (referenced_vars, 20, "referenced_vars");
720 call_clobbered_vars = BITMAP_ALLOC (NULL);
721 addressable_vars = BITMAP_ALLOC (NULL);
722 init_ssa_operands ();
723 init_ssanames ();
724 init_phinodes ();
725 global_var = NULL_TREE;
726 aliases_computed_p = false;
730 /* Deallocate memory associated with SSA data structures for FNDECL. */
732 void
733 delete_tree_ssa (void)
735 size_t i;
736 basic_block bb;
737 block_stmt_iterator bsi;
739 /* Remove annotations from every tree in the function. */
740 FOR_EACH_BB (bb)
741 for (bsi = bsi_start (bb); !bsi_end_p (bsi); bsi_next (&bsi))
743 tree stmt = bsi_stmt (bsi);
744 release_defs (stmt);
745 ggc_free (stmt->common.ann);
746 stmt->common.ann = NULL;
749 /* Remove annotations from every referenced variable. */
750 if (referenced_vars)
752 for (i = 0; i < num_referenced_vars; i++)
754 tree var = referenced_var (i);
755 ggc_free (var->common.ann);
756 var->common.ann = NULL;
758 referenced_vars = NULL;
761 fini_ssanames ();
762 fini_phinodes ();
763 fini_ssa_operands ();
765 global_var = NULL_TREE;
766 BITMAP_FREE (call_clobbered_vars);
767 call_clobbered_vars = NULL;
768 BITMAP_FREE (addressable_vars);
769 addressable_vars = NULL;
770 modified_noreturn_calls = NULL;
771 aliases_computed_p = false;
775 /* Return true if EXPR is a useless type conversion, otherwise return
776 false. */
778 bool
779 tree_ssa_useless_type_conversion_1 (tree outer_type, tree inner_type)
781 /* If the inner and outer types are effectively the same, then
782 strip the type conversion and enter the equivalence into
783 the table. */
784 if (inner_type == outer_type
785 || (lang_hooks.types_compatible_p (inner_type, outer_type)))
786 return true;
788 /* If both types are pointers and the outer type is a (void *), then
789 the conversion is not necessary. The opposite is not true since
790 that conversion would result in a loss of information if the
791 equivalence was used. Consider an indirect function call where
792 we need to know the exact type of the function to correctly
793 implement the ABI. */
794 else if (POINTER_TYPE_P (inner_type)
795 && POINTER_TYPE_P (outer_type)
796 && TYPE_MODE (inner_type) == TYPE_MODE (outer_type)
797 && TYPE_REF_CAN_ALIAS_ALL (inner_type)
798 == TYPE_REF_CAN_ALIAS_ALL (outer_type)
799 && TREE_CODE (TREE_TYPE (outer_type)) == VOID_TYPE)
800 return true;
802 /* Pointers and references are equivalent once we get to GENERIC,
803 so strip conversions that just switch between them. */
804 else if (POINTER_TYPE_P (inner_type)
805 && POINTER_TYPE_P (outer_type)
806 && TYPE_MODE (inner_type) == TYPE_MODE (outer_type)
807 && TYPE_REF_CAN_ALIAS_ALL (inner_type)
808 == TYPE_REF_CAN_ALIAS_ALL (outer_type)
809 && lang_hooks.types_compatible_p (TREE_TYPE (inner_type),
810 TREE_TYPE (outer_type)))
811 return true;
813 /* If both the inner and outer types are integral types, then the
814 conversion is not necessary if they have the same mode and
815 signedness and precision, and both or neither are boolean. Some
816 code assumes an invariant that boolean types stay boolean and do
817 not become 1-bit bit-field types. Note that types with precision
818 not using all bits of the mode (such as bit-field types in C)
819 mean that testing of precision is necessary. */
820 else if (INTEGRAL_TYPE_P (inner_type)
821 && INTEGRAL_TYPE_P (outer_type)
822 && TYPE_MODE (inner_type) == TYPE_MODE (outer_type)
823 && TYPE_UNSIGNED (inner_type) == TYPE_UNSIGNED (outer_type)
824 && TYPE_PRECISION (inner_type) == TYPE_PRECISION (outer_type))
826 bool first_boolean = (TREE_CODE (inner_type) == BOOLEAN_TYPE);
827 bool second_boolean = (TREE_CODE (outer_type) == BOOLEAN_TYPE);
828 if (first_boolean == second_boolean)
829 return true;
832 /* Recurse for complex types. */
833 else if (TREE_CODE (inner_type) == COMPLEX_TYPE
834 && TREE_CODE (outer_type) == COMPLEX_TYPE
835 && tree_ssa_useless_type_conversion_1 (TREE_TYPE (outer_type),
836 TREE_TYPE (inner_type)))
837 return true;
839 return false;
842 /* Return true if EXPR is a useless type conversion, otherwise return
843 false. */
845 bool
846 tree_ssa_useless_type_conversion (tree expr)
848 /* If we have an assignment that merely uses a NOP_EXPR to change
849 the top of the RHS to the type of the LHS and the type conversion
850 is "safe", then strip away the type conversion so that we can
851 enter LHS = RHS into the const_and_copies table. */
852 if (TREE_CODE (expr) == NOP_EXPR || TREE_CODE (expr) == CONVERT_EXPR
853 || TREE_CODE (expr) == VIEW_CONVERT_EXPR
854 || TREE_CODE (expr) == NON_LVALUE_EXPR)
855 return tree_ssa_useless_type_conversion_1 (TREE_TYPE (expr),
856 TREE_TYPE (TREE_OPERAND (expr,
857 0)));
860 return false;
863 /* Returns true if statement STMT may read memory. */
865 bool
866 stmt_references_memory_p (tree stmt)
868 stmt_ann_t ann;
870 get_stmt_operands (stmt);
871 ann = stmt_ann (stmt);
873 if (ann->has_volatile_ops)
874 return true;
876 return (NUM_VUSES (VUSE_OPS (ann)) > 0
877 || NUM_V_MAY_DEFS (V_MAY_DEF_OPS (ann)) > 0
878 || NUM_V_MUST_DEFS (V_MUST_DEF_OPS (ann)) > 0);
881 /* Internal helper for walk_use_def_chains. VAR, FN and DATA are as
882 described in walk_use_def_chains.
884 VISITED is a pointer set used to mark visited SSA_NAMEs to avoid
885 infinite loops. We used to have a bitmap for this to just mark
886 SSA versions we had visited. But non-sparse bitmaps are way too
887 expensive, while sparse bitmaps may cause quadratic behavior.
889 IS_DFS is true if the caller wants to perform a depth-first search
890 when visiting PHI nodes. A DFS will visit each PHI argument and
891 call FN after each one. Otherwise, all the arguments are
892 visited first and then FN is called with each of the visited
893 arguments in a separate pass. */
895 static bool
896 walk_use_def_chains_1 (tree var, walk_use_def_chains_fn fn, void *data,
897 struct pointer_set_t *visited, bool is_dfs)
899 tree def_stmt;
901 if (pointer_set_insert (visited, var))
902 return false;
904 def_stmt = SSA_NAME_DEF_STMT (var);
906 if (TREE_CODE (def_stmt) != PHI_NODE)
908 /* If we reached the end of the use-def chain, call FN. */
909 return fn (var, def_stmt, data);
911 else
913 int i;
915 /* When doing a breadth-first search, call FN before following the
916 use-def links for each argument. */
917 if (!is_dfs)
918 for (i = 0; i < PHI_NUM_ARGS (def_stmt); i++)
919 if (fn (PHI_ARG_DEF (def_stmt, i), def_stmt, data))
920 return true;
922 /* Follow use-def links out of each PHI argument. */
923 for (i = 0; i < PHI_NUM_ARGS (def_stmt); i++)
925 tree arg = PHI_ARG_DEF (def_stmt, i);
926 if (TREE_CODE (arg) == SSA_NAME
927 && walk_use_def_chains_1 (arg, fn, data, visited, is_dfs))
928 return true;
931 /* When doing a depth-first search, call FN after following the
932 use-def links for each argument. */
933 if (is_dfs)
934 for (i = 0; i < PHI_NUM_ARGS (def_stmt); i++)
935 if (fn (PHI_ARG_DEF (def_stmt, i), def_stmt, data))
936 return true;
939 return false;
944 /* Walk use-def chains starting at the SSA variable VAR. Call
945 function FN at each reaching definition found. FN takes three
946 arguments: VAR, its defining statement (DEF_STMT) and a generic
947 pointer to whatever state information that FN may want to maintain
948 (DATA). FN is able to stop the walk by returning true, otherwise
949 in order to continue the walk, FN should return false.
951 Note, that if DEF_STMT is a PHI node, the semantics are slightly
952 different. The first argument to FN is no longer the original
953 variable VAR, but the PHI argument currently being examined. If FN
954 wants to get at VAR, it should call PHI_RESULT (PHI).
956 If IS_DFS is true, this function will:
958 1- walk the use-def chains for all the PHI arguments, and,
959 2- call (*FN) (ARG, PHI, DATA) on all the PHI arguments.
961 If IS_DFS is false, the two steps above are done in reverse order
962 (i.e., a breadth-first search). */
965 void
966 walk_use_def_chains (tree var, walk_use_def_chains_fn fn, void *data,
967 bool is_dfs)
969 tree def_stmt;
971 gcc_assert (TREE_CODE (var) == SSA_NAME);
973 def_stmt = SSA_NAME_DEF_STMT (var);
975 /* We only need to recurse if the reaching definition comes from a PHI
976 node. */
977 if (TREE_CODE (def_stmt) != PHI_NODE)
978 (*fn) (var, def_stmt, data);
979 else
981 struct pointer_set_t *visited = pointer_set_create ();
982 walk_use_def_chains_1 (var, fn, data, visited, is_dfs);
983 pointer_set_destroy (visited);
988 /* Replaces VAR with REPL in memory reference expression *X in
989 statement STMT. */
991 static void
992 propagate_into_addr (tree stmt, tree var, tree *x, tree repl)
994 tree new_var, ass_stmt, addr_var;
995 basic_block bb;
996 block_stmt_iterator bsi;
998 /* There is nothing special to handle in the other cases. */
999 if (TREE_CODE (repl) != ADDR_EXPR)
1000 return;
1001 addr_var = TREE_OPERAND (repl, 0);
1003 while (handled_component_p (*x)
1004 || TREE_CODE (*x) == REALPART_EXPR
1005 || TREE_CODE (*x) == IMAGPART_EXPR)
1006 x = &TREE_OPERAND (*x, 0);
1008 if (TREE_CODE (*x) != INDIRECT_REF
1009 || TREE_OPERAND (*x, 0) != var)
1010 return;
1012 if (TREE_TYPE (*x) == TREE_TYPE (addr_var))
1014 *x = addr_var;
1015 mark_new_vars_to_rename (stmt, vars_to_rename);
1016 return;
1020 /* Frontends sometimes produce expressions like *&a instead of a[0].
1021 Create a temporary variable to handle this case. */
1022 ass_stmt = build2 (MODIFY_EXPR, void_type_node, NULL_TREE, repl);
1023 new_var = duplicate_ssa_name (var, ass_stmt);
1024 TREE_OPERAND (*x, 0) = new_var;
1025 TREE_OPERAND (ass_stmt, 0) = new_var;
1027 bb = bb_for_stmt (stmt);
1028 tree_block_label (bb);
1029 bsi = bsi_after_labels (bb);
1030 bsi_insert_after (&bsi, ass_stmt, BSI_NEW_STMT);
1032 mark_new_vars_to_rename (stmt, vars_to_rename);
1035 /* Replaces immediate uses of VAR by REPL. */
1037 static void
1038 replace_immediate_uses (tree var, tree repl)
1040 int i, j, n;
1041 dataflow_t df;
1042 tree stmt;
1043 bool mark_new_vars;
1044 ssa_op_iter iter;
1045 use_operand_p use_p;
1047 df = get_immediate_uses (SSA_NAME_DEF_STMT (var));
1048 n = num_immediate_uses (df);
1050 for (i = 0; i < n; i++)
1052 stmt = immediate_use (df, i);
1054 if (TREE_CODE (stmt) == PHI_NODE)
1056 for (j = 0; j < PHI_NUM_ARGS (stmt); j++)
1057 if (PHI_ARG_DEF (stmt, j) == var)
1059 SET_PHI_ARG_DEF (stmt, j, repl);
1060 if (TREE_CODE (repl) == SSA_NAME
1061 && PHI_ARG_EDGE (stmt, j)->flags & EDGE_ABNORMAL)
1062 SSA_NAME_OCCURS_IN_ABNORMAL_PHI (repl) = 1;
1065 continue;
1068 get_stmt_operands (stmt);
1069 mark_new_vars = false;
1070 if (is_gimple_reg (SSA_NAME_VAR (var)))
1072 if (TREE_CODE (stmt) == MODIFY_EXPR)
1074 propagate_into_addr (stmt, var, &TREE_OPERAND (stmt, 0), repl);
1075 propagate_into_addr (stmt, var, &TREE_OPERAND (stmt, 1), repl);
1078 FOR_EACH_SSA_USE_OPERAND (use_p, stmt, iter, SSA_OP_USE)
1079 if (USE_FROM_PTR (use_p) == var)
1081 propagate_value (use_p, repl);
1082 mark_new_vars = POINTER_TYPE_P (TREE_TYPE (repl));
1085 else
1087 FOR_EACH_SSA_USE_OPERAND (use_p, stmt, iter,
1088 SSA_OP_VIRTUAL_USES | SSA_OP_VIRTUAL_KILLS)
1089 if (USE_FROM_PTR (use_p) == var)
1090 propagate_value (use_p, repl);
1093 /* FIXME. If REPL is a constant, we need to fold STMT.
1094 However, fold_stmt wants a pointer to the statement, because
1095 it may happen that it needs to replace the whole statement
1096 with a new expression. Since the current def-use machinery
1097 does not return pointers to statements, we call fold_stmt
1098 with the address of a local temporary, if that call changes
1099 the temporary then we fallback on looking for a proper
1100 pointer to STMT by scanning STMT's basic block.
1102 Note that all this will become unnecessary soon. This
1103 pass is being replaced with a proper copy propagation pass
1104 for 4.1 (dnovillo, 2004-09-17). */
1105 if (TREE_CODE (repl) != SSA_NAME)
1107 tree tmp = stmt;
1108 fold_stmt (&tmp);
1109 mark_new_vars = true;
1110 if (tmp != stmt)
1112 block_stmt_iterator si = bsi_for_stmt (stmt);
1113 mark_new_vars_to_rename (tmp, vars_to_rename);
1114 redirect_immediate_uses (stmt, tmp);
1115 bsi_replace (&si, tmp, true);
1116 stmt = bsi_stmt (si);
1120 /* If REPL is a pointer, it may have different memory tags associated
1121 with it. For instance, VAR may have had a name tag while REPL
1122 only had a type tag. In these cases, the virtual operands (if
1123 any) in the statement will refer to different symbols which need
1124 to be renamed. */
1125 if (mark_new_vars)
1126 mark_new_vars_to_rename (stmt, vars_to_rename);
1127 else
1128 modify_stmt (stmt);
1132 /* Gets the value VAR is equivalent to according to EQ_TO. */
1134 static tree
1135 get_eq_name (tree *eq_to, tree var)
1137 unsigned ver;
1138 tree val = var;
1140 while (TREE_CODE (val) == SSA_NAME)
1142 ver = SSA_NAME_VERSION (val);
1143 if (!eq_to[ver])
1144 break;
1146 val = eq_to[ver];
1149 while (TREE_CODE (var) == SSA_NAME)
1151 ver = SSA_NAME_VERSION (var);
1152 if (!eq_to[ver])
1153 break;
1155 var = eq_to[ver];
1156 eq_to[ver] = val;
1159 return val;
1162 /* Checks whether phi node PHI is redundant and if it is, records the ssa name
1163 its result is redundant to to EQ_TO array. */
1165 static void
1166 check_phi_redundancy (tree phi, tree *eq_to)
1168 tree val = NULL_TREE, def, res = PHI_RESULT (phi), stmt;
1169 unsigned i, ver = SSA_NAME_VERSION (res), n;
1170 dataflow_t df;
1172 /* It is unlikely that such large phi node would be redundant. */
1173 if (PHI_NUM_ARGS (phi) > 16)
1174 return;
1176 for (i = 0; i < (unsigned) PHI_NUM_ARGS (phi); i++)
1178 def = PHI_ARG_DEF (phi, i);
1180 if (TREE_CODE (def) == SSA_NAME)
1182 def = get_eq_name (eq_to, def);
1183 if (def == res)
1184 continue;
1187 if (val
1188 && !operand_equal_for_phi_arg_p (val, def))
1189 return;
1191 val = def;
1194 /* At least one of the arguments should not be equal to the result, or
1195 something strange is happening. */
1196 gcc_assert (val);
1198 if (get_eq_name (eq_to, res) == val)
1199 return;
1201 if (!may_propagate_copy (res, val))
1202 return;
1204 eq_to[ver] = val;
1206 df = get_immediate_uses (SSA_NAME_DEF_STMT (res));
1207 n = num_immediate_uses (df);
1209 for (i = 0; i < n; i++)
1211 stmt = immediate_use (df, i);
1213 if (TREE_CODE (stmt) == PHI_NODE)
1214 check_phi_redundancy (stmt, eq_to);
1218 /* Removes redundant phi nodes.
1220 A redundant PHI node is a PHI node where all of its PHI arguments
1221 are the same value, excluding any PHI arguments which are the same
1222 as the PHI result.
1224 A redundant PHI node is effectively a copy, so we forward copy propagate
1225 which removes all uses of the destination of the PHI node then
1226 finally we delete the redundant PHI node.
1228 Note that if we can not copy propagate the PHI node, then the PHI
1229 will not be removed. Thus we do not have to worry about dependencies
1230 between PHIs and the problems serializing PHIs into copies creates.
1232 The most important effect of this pass is to remove degenerate PHI
1233 nodes created by removing unreachable code. */
1235 void
1236 kill_redundant_phi_nodes (void)
1238 tree *eq_to;
1239 unsigned i, old_num_ssa_names;
1240 basic_block bb;
1241 tree phi, var, repl, stmt;
1243 /* The EQ_TO[VER] holds the value by that the ssa name VER should be
1244 replaced. If EQ_TO[VER] is ssa name and it is decided to replace it by
1245 other value, it may be necessary to follow the chain till the final value.
1246 We perform path shortening (replacing the entries of the EQ_TO array with
1247 heads of these chains) whenever we access the field to prevent quadratic
1248 complexity (probably would not occur in practice anyway, but let us play
1249 it safe). */
1250 eq_to = xcalloc (num_ssa_names, sizeof (tree));
1252 /* We have had cases where computing immediate uses takes a
1253 significant amount of compile time. If we run into such
1254 problems here, we may want to only compute immediate uses for
1255 a subset of all the SSA_NAMEs instead of computing it for
1256 all of the SSA_NAMEs. */
1257 compute_immediate_uses (TDFA_USE_OPS | TDFA_USE_VOPS, NULL);
1258 old_num_ssa_names = num_ssa_names;
1260 FOR_EACH_BB (bb)
1262 for (phi = phi_nodes (bb); phi; phi = PHI_CHAIN (phi))
1264 var = PHI_RESULT (phi);
1265 check_phi_redundancy (phi, eq_to);
1269 /* Now propagate the values. */
1270 for (i = 0; i < old_num_ssa_names; i++)
1272 if (!ssa_name (i))
1273 continue;
1275 repl = get_eq_name (eq_to, ssa_name (i));
1276 if (repl != ssa_name (i))
1277 replace_immediate_uses (ssa_name (i), repl);
1280 /* And remove the dead phis. */
1281 for (i = 0; i < old_num_ssa_names; i++)
1283 if (!ssa_name (i))
1284 continue;
1286 repl = get_eq_name (eq_to, ssa_name (i));
1287 if (repl != ssa_name (i))
1289 stmt = SSA_NAME_DEF_STMT (ssa_name (i));
1290 remove_phi_node (stmt, NULL_TREE, bb_for_stmt (stmt));
1294 free_df ();
1295 free (eq_to);
1298 struct tree_opt_pass pass_redundant_phi =
1300 "redphi", /* name */
1301 NULL, /* gate */
1302 kill_redundant_phi_nodes, /* execute */
1303 NULL, /* sub */
1304 NULL, /* next */
1305 0, /* static_pass_number */
1306 TV_TREE_REDPHI, /* tv_id */
1307 PROP_cfg | PROP_ssa | PROP_alias, /* properties_required */
1308 0, /* properties_provided */
1309 0, /* properties_destroyed */
1310 0, /* todo_flags_start */
1311 TODO_dump_func | TODO_rename_vars
1312 | TODO_ggc_collect | TODO_verify_ssa, /* todo_flags_finish */
1313 0 /* letter */
1316 /* Emit warnings for uninitialized variables. This is done in two passes.
1318 The first pass notices real uses of SSA names with default definitions.
1319 Such uses are unconditionally uninitialized, and we can be certain that
1320 such a use is a mistake. This pass is run before most optimizations,
1321 so that we catch as many as we can.
1323 The second pass follows PHI nodes to find uses that are potentially
1324 uninitialized. In this case we can't necessarily prove that the use
1325 is really uninitialized. This pass is run after most optimizations,
1326 so that we thread as many jumps and possible, and delete as much dead
1327 code as possible, in order to reduce false positives. We also look
1328 again for plain uninitialized variables, since optimization may have
1329 changed conditionally uninitialized to unconditionally uninitialized. */
1331 /* Emit a warning for T, an SSA_NAME, being uninitialized. The exact
1332 warning text is in MSGID and LOCUS may contain a location or be null. */
1334 static void
1335 warn_uninit (tree t, const char *msgid, location_t *locus)
1337 tree var = SSA_NAME_VAR (t);
1338 tree def = SSA_NAME_DEF_STMT (t);
1340 /* Default uses (indicated by an empty definition statement),
1341 are uninitialized. */
1342 if (!IS_EMPTY_STMT (def))
1343 return;
1345 /* Except for PARMs of course, which are always initialized. */
1346 if (TREE_CODE (var) == PARM_DECL)
1347 return;
1349 /* Hard register variables get their initial value from the ether. */
1350 if (TREE_CODE (var) == VAR_DECL && DECL_HARD_REGISTER (var))
1351 return;
1353 /* TREE_NO_WARNING either means we already warned, or the front end
1354 wishes to suppress the warning. */
1355 if (TREE_NO_WARNING (var))
1356 return;
1358 if (!locus)
1359 locus = &DECL_SOURCE_LOCATION (var);
1360 warning (msgid, locus, var);
1361 TREE_NO_WARNING (var) = 1;
1364 /* Called via walk_tree, look for SSA_NAMEs that have empty definitions
1365 and warn about them. */
1367 static tree
1368 warn_uninitialized_var (tree *tp, int *walk_subtrees, void *data)
1370 location_t *locus = data;
1371 tree t = *tp;
1373 /* We only do data flow with SSA_NAMEs, so that's all we can warn about. */
1374 if (TREE_CODE (t) == SSA_NAME)
1376 warn_uninit (t, "%H%qD is used uninitialized in this function", locus);
1377 *walk_subtrees = 0;
1379 else if (IS_TYPE_OR_DECL_P (t))
1380 *walk_subtrees = 0;
1382 return NULL_TREE;
1385 /* Look for inputs to PHI that are SSA_NAMEs that have empty definitions
1386 and warn about them. */
1388 static void
1389 warn_uninitialized_phi (tree phi)
1391 int i, n = PHI_NUM_ARGS (phi);
1393 /* Don't look at memory tags. */
1394 if (!is_gimple_reg (PHI_RESULT (phi)))
1395 return;
1397 for (i = 0; i < n; ++i)
1399 tree op = PHI_ARG_DEF (phi, i);
1400 if (TREE_CODE (op) == SSA_NAME)
1401 warn_uninit (op, "%H%qD may be used uninitialized in this function",
1402 NULL);
1406 static void
1407 execute_early_warn_uninitialized (void)
1409 block_stmt_iterator bsi;
1410 basic_block bb;
1412 FOR_EACH_BB (bb)
1413 for (bsi = bsi_start (bb); !bsi_end_p (bsi); bsi_next (&bsi))
1414 walk_tree (bsi_stmt_ptr (bsi), warn_uninitialized_var,
1415 EXPR_LOCUS (bsi_stmt (bsi)), NULL);
1418 static void
1419 execute_late_warn_uninitialized (void)
1421 basic_block bb;
1422 tree phi;
1424 /* Re-do the plain uninitialized variable check, as optimization may have
1425 straightened control flow. Do this first so that we don't accidentally
1426 get a "may be" warning when we'd have seen an "is" warning later. */
1427 execute_early_warn_uninitialized ();
1429 FOR_EACH_BB (bb)
1430 for (phi = phi_nodes (bb); phi; phi = PHI_CHAIN (phi))
1431 warn_uninitialized_phi (phi);
1434 static bool
1435 gate_warn_uninitialized (void)
1437 return warn_uninitialized != 0;
1440 struct tree_opt_pass pass_early_warn_uninitialized =
1442 NULL, /* name */
1443 gate_warn_uninitialized, /* gate */
1444 execute_early_warn_uninitialized, /* execute */
1445 NULL, /* sub */
1446 NULL, /* next */
1447 0, /* static_pass_number */
1448 0, /* tv_id */
1449 PROP_ssa, /* properties_required */
1450 0, /* properties_provided */
1451 0, /* properties_destroyed */
1452 0, /* todo_flags_start */
1453 0, /* todo_flags_finish */
1454 0 /* letter */
1457 struct tree_opt_pass pass_late_warn_uninitialized =
1459 NULL, /* name */
1460 gate_warn_uninitialized, /* gate */
1461 execute_late_warn_uninitialized, /* execute */
1462 NULL, /* sub */
1463 NULL, /* next */
1464 0, /* static_pass_number */
1465 0, /* tv_id */
1466 PROP_ssa, /* properties_required */
1467 0, /* properties_provided */
1468 0, /* properties_destroyed */
1469 0, /* todo_flags_start */
1470 0, /* todo_flags_finish */
1471 0 /* letter */