2010-07-27 Paolo Carlini <paolo.carlini@oracle.com>
[official-gcc/alias-decl.git] / gcc / ipa-type-escape.c
blob354e651c4768e6ff8b0d172dc069ff34e440f116
1 /* Escape analysis for types.
2 Copyright (C) 2004, 2005, 2006, 2007, 2008, 2010
3 Free Software Foundation, Inc.
4 Contributed by Kenneth Zadeck <zadeck@naturalbridge.com>
6 This file is part of GCC.
8 GCC is free software; you can redistribute it and/or modify it under
9 the terms of the GNU General Public License as published by the Free
10 Software Foundation; either version 3, or (at your option) any later
11 version.
13 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
14 WARRANTY; without even the implied warranty of MERCHANTABILITY or
15 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
16 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 /* This pass determines which types in the program contain only
23 instances that are completely encapsulated by the compilation unit.
24 Those types that are encapsulated must also pass the further
25 requirement that there be no bad operations on any instances of
26 those types.
28 A great deal of freedom in compilation is allowed for the instances
29 of those types that pass these conditions.
32 /* The code in this module is called by the ipa pass manager. It
33 should be one of the later passes since its information is used by
34 the rest of the compilation. */
36 #include "config.h"
37 #include "system.h"
38 #include "coretypes.h"
39 #include "tm.h"
40 #include "tree.h"
41 #include "tree-flow.h"
42 #include "tree-inline.h"
43 #include "tree-pass.h"
44 #include "langhooks.h"
45 #include "pointer-set.h"
46 #include "splay-tree.h"
47 #include "ggc.h"
48 #include "ipa-utils.h"
49 #include "ipa-type-escape.h"
50 #include "gimple.h"
51 #include "cgraph.h"
52 #include "output.h"
53 #include "flags.h"
54 #include "timevar.h"
55 #include "diagnostic.h"
56 #include "tree-pretty-print.h"
57 #include "langhooks.h"
59 /* Some of the aliasing is called very early, before this phase is
60 called. To assure that this is not a problem, we keep track of if
61 this phase has been run. */
62 static bool initialized = false;
64 /* Scratch bitmap for avoiding work. */
65 static bitmap been_there_done_that;
66 static bitmap bitmap_tmp;
68 /* There are two levels of escape that types can undergo.
70 EXPOSED_PARAMETER - some instance of the variable is
71 passed by value into an externally visible function or some
72 instance of the variable is passed out of an externally visible
73 function as a return value. In this case any of the fields of the
74 variable that are pointer types end up having their types marked as
75 FULL_ESCAPE.
77 FULL_ESCAPE - when bad things happen to good types. One of the
78 following things happens to the type: (a) either an instance of the
79 variable has its address passed to an externally visible function,
80 (b) the address is taken and some bad cast happens to the address
81 or (c) explicit arithmetic is done to the address.
84 enum escape_t
86 EXPOSED_PARAMETER,
87 FULL_ESCAPE
90 /* The following two bit vectors global_types_* correspond to
91 previous cases above. During the analysis phase, a bit is set in
92 one of these vectors if an operation of the offending class is
93 discovered to happen on the associated type. */
95 static bitmap global_types_exposed_parameter;
96 static bitmap global_types_full_escape;
98 /* All of the types seen in this compilation unit. */
99 static bitmap global_types_seen;
100 /* Reverse map to take a canon uid and map it to a canon type. Uid's
101 are never manipulated unless they are associated with a canon
102 type. */
103 static splay_tree uid_to_canon_type;
105 /* Internal structure of type mapping code. This maps a canon type
106 name to its canon type. */
107 static splay_tree all_canon_types;
109 /* Map from type clones to the single canon type. */
110 static splay_tree type_to_canon_type;
112 /* A splay tree of bitmaps. An element X in the splay tree has a bit
113 set in its bitmap at TYPE_UID (TYPE_MAIN_VARIANT (Y)) if there was
114 an operation in the program of the form "&X.Y". */
115 static splay_tree uid_to_addressof_down_map;
117 /* A splay tree of bitmaps. An element Y in the splay tree has a bit
118 set in its bitmap at TYPE_UID (TYPE_MAIN_VARIANT (X)) if there was
119 an operation in the program of the form "&X.Y". */
120 static splay_tree uid_to_addressof_up_map;
122 /* Tree to hold the subtype maps used to mark subtypes of escaped
123 types. */
124 static splay_tree uid_to_subtype_map;
126 /* Records tree nodes seen in cgraph_create_edges. Simply using
127 walk_tree_without_duplicates doesn't guarantee each node is visited
128 once because it gets a new htab upon each recursive call from
129 scan_for_refs. */
130 static struct pointer_set_t *visited_nodes;
132 /* Visited stmts by walk_use_def_chains function because it's called
133 recursively. */
134 static struct pointer_set_t *visited_stmts;
136 static bitmap_obstack ipa_obstack;
138 /* Static functions from this file that are used
139 before being defined. */
140 static unsigned int look_for_casts (tree);
141 static bool is_cast_from_non_pointer (tree, gimple, void *);
143 /* Get the name of TYPE or return the string "<UNNAMED>". */
144 static const char*
145 get_name_of_type (tree type)
147 tree name = TYPE_NAME (type);
149 if (!name)
150 /* Unnamed type, do what you like here. */
151 return "<UNNAMED>";
153 /* It will be a TYPE_DECL in the case of a typedef, otherwise, an
154 identifier_node */
155 if (TREE_CODE (name) == TYPE_DECL)
157 /* Each DECL has a DECL_NAME field which contains an
158 IDENTIFIER_NODE. (Some decls, most often labels, may have
159 zero as the DECL_NAME). */
160 if (DECL_NAME (name))
161 return IDENTIFIER_POINTER (DECL_NAME (name));
162 else
163 /* Unnamed type, do what you like here. */
164 return "<UNNAMED>";
166 else if (TREE_CODE (name) == IDENTIFIER_NODE)
167 return IDENTIFIER_POINTER (name);
168 else
169 return "<UNNAMED>";
172 struct type_brand_s
174 const char* name;
175 int seq;
178 /* Splay tree comparison function on type_brand_s structures. */
180 static int
181 compare_type_brand (splay_tree_key sk1, splay_tree_key sk2)
183 struct type_brand_s * k1 = (struct type_brand_s *) sk1;
184 struct type_brand_s * k2 = (struct type_brand_s *) sk2;
186 int value = strcmp(k1->name, k2->name);
187 if (value == 0)
188 return k2->seq - k1->seq;
189 else
190 return value;
193 /* All of the "unique_type" code is a hack to get around the sleazy
194 implementation used to compile more than file. Currently gcc does
195 not get rid of multiple instances of the same type that have been
196 collected from different compilation units. */
197 /* This is a trivial algorithm for removing duplicate types. This
198 would not work for any language that used structural equivalence as
199 the basis of its type system. */
200 /* Return TYPE if no type compatible with TYPE has been seen so far,
201 otherwise return a type compatible with TYPE that has already been
202 processed. */
204 static tree
205 discover_unique_type (tree type)
207 struct type_brand_s * brand = XNEW (struct type_brand_s);
208 int i = 0;
209 splay_tree_node result;
211 brand->name = get_name_of_type (type);
213 while (1)
215 brand->seq = i++;
216 result = splay_tree_lookup (all_canon_types, (splay_tree_key) brand);
218 if (result)
220 /* Create an alias since this is just the same as
221 other_type. */
222 tree other_type = (tree) result->value;
223 if (types_compatible_p (type, other_type))
225 free (brand);
226 /* Insert this new type as an alias for other_type. */
227 splay_tree_insert (type_to_canon_type,
228 (splay_tree_key) type,
229 (splay_tree_value) other_type);
230 return other_type;
232 /* Not compatible, look for next instance with same name. */
234 else
236 /* No more instances, create new one since this is the first
237 time we saw this type. */
238 brand->seq = i++;
239 /* Insert the new brand. */
240 splay_tree_insert (all_canon_types,
241 (splay_tree_key) brand,
242 (splay_tree_value) type);
244 /* Insert this new type as an alias for itself. */
245 splay_tree_insert (type_to_canon_type,
246 (splay_tree_key) type,
247 (splay_tree_value) type);
249 /* Insert the uid for reverse lookup; */
250 splay_tree_insert (uid_to_canon_type,
251 (splay_tree_key) TYPE_UID (type),
252 (splay_tree_value) type);
254 bitmap_set_bit (global_types_seen, TYPE_UID (type));
255 return type;
260 /* Return true if TYPE is one of the type classes that we are willing
261 to analyze. This skips the goofy types like arrays of pointers to
262 methods. */
263 static bool
264 type_to_consider (tree type)
266 /* Strip the *'s off. */
267 type = TYPE_MAIN_VARIANT (type);
268 while (POINTER_TYPE_P (type) || TREE_CODE (type) == ARRAY_TYPE)
269 type = TYPE_MAIN_VARIANT (TREE_TYPE (type));
271 switch (TREE_CODE (type))
273 case BOOLEAN_TYPE:
274 case COMPLEX_TYPE:
275 case ENUMERAL_TYPE:
276 case INTEGER_TYPE:
277 case QUAL_UNION_TYPE:
278 case REAL_TYPE:
279 case FIXED_POINT_TYPE:
280 case RECORD_TYPE:
281 case UNION_TYPE:
282 case VECTOR_TYPE:
283 case VOID_TYPE:
284 return true;
286 default:
287 return false;
291 /* Get the canon type of TYPE. If SEE_THRU_PTRS is true, remove all
292 the POINTER_TOs and if SEE_THRU_ARRAYS is true, remove all of the
293 ARRAY_OFs and POINTER_TOs. */
295 static tree
296 get_canon_type (tree type, bool see_thru_ptrs, bool see_thru_arrays)
298 splay_tree_node result;
299 /* Strip the *'s off. */
300 if (!type || !type_to_consider (type))
301 return NULL;
303 type = TYPE_MAIN_VARIANT (type);
304 if (see_thru_arrays)
305 while (POINTER_TYPE_P (type) || TREE_CODE (type) == ARRAY_TYPE)
306 type = TYPE_MAIN_VARIANT (TREE_TYPE (type));
308 else if (see_thru_ptrs)
309 while (POINTER_TYPE_P (type))
310 type = TYPE_MAIN_VARIANT (TREE_TYPE (type));
312 result = splay_tree_lookup (type_to_canon_type, (splay_tree_key) type);
314 if (result == NULL)
315 return discover_unique_type (type);
316 else return (tree) result->value;
319 /* Same as GET_CANON_TYPE, except return the TYPE_ID rather than the
320 TYPE. */
322 static int
323 get_canon_type_uid (tree type, bool see_thru_ptrs, bool see_thru_arrays)
325 type = get_canon_type (type, see_thru_ptrs, see_thru_arrays);
326 if (type)
327 return TYPE_UID(type);
328 else return 0;
331 /* Return 0 if TYPE is a record or union type. Return a positive
332 number if TYPE is a pointer to a record or union. The number is
333 the number of pointer types stripped to get to the record or union
334 type. Return -1 if TYPE is none of the above. */
337 ipa_type_escape_star_count_of_interesting_type (tree type)
339 int count = 0;
340 /* Strip the *'s off. */
341 if (!type)
342 return -1;
343 type = TYPE_MAIN_VARIANT (type);
344 while (POINTER_TYPE_P (type))
346 type = TYPE_MAIN_VARIANT (TREE_TYPE (type));
347 count++;
350 /* We are interested in records, and unions only. */
351 if (TREE_CODE (type) == RECORD_TYPE
352 || TREE_CODE (type) == QUAL_UNION_TYPE
353 || TREE_CODE (type) == UNION_TYPE)
354 return count;
355 else
356 return -1;
360 /* Return 0 if TYPE is a record or union type. Return a positive
361 number if TYPE is a pointer to a record or union. The number is
362 the number of pointer types stripped to get to the record or union
363 type. Return -1 if TYPE is none of the above. */
366 ipa_type_escape_star_count_of_interesting_or_array_type (tree type)
368 int count = 0;
369 /* Strip the *'s off. */
370 if (!type)
371 return -1;
372 type = TYPE_MAIN_VARIANT (type);
373 while (POINTER_TYPE_P (type) || TREE_CODE (type) == ARRAY_TYPE)
375 type = TYPE_MAIN_VARIANT (TREE_TYPE (type));
376 count++;
379 /* We are interested in records, and unions only. */
380 if (TREE_CODE (type) == RECORD_TYPE
381 || TREE_CODE (type) == QUAL_UNION_TYPE
382 || TREE_CODE (type) == UNION_TYPE)
383 return count;
384 else
385 return -1;
389 /* Return true if the record, or union TYPE passed in escapes this
390 compilation unit. Note that all of the pointer-to's are removed
391 before testing since these may not be correct. */
393 bool
394 ipa_type_escape_type_contained_p (tree type)
396 if (!initialized)
397 return false;
398 return !bitmap_bit_p (global_types_full_escape,
399 get_canon_type_uid (type, true, false));
402 /* Return true if a modification to a field of type FIELD_TYPE cannot
403 clobber a record of RECORD_TYPE. */
405 bool
406 ipa_type_escape_field_does_not_clobber_p (tree record_type, tree field_type)
408 splay_tree_node result;
409 int uid;
411 if (!initialized)
412 return false;
414 /* Strip off all of the pointer tos on the record type. Strip the
415 same number of pointer tos from the field type. If the field
416 type has fewer, it could not have been aliased. */
417 record_type = TYPE_MAIN_VARIANT (record_type);
418 field_type = TYPE_MAIN_VARIANT (field_type);
419 while (POINTER_TYPE_P (record_type))
421 record_type = TYPE_MAIN_VARIANT (TREE_TYPE (record_type));
422 if (POINTER_TYPE_P (field_type))
423 field_type = TYPE_MAIN_VARIANT (TREE_TYPE (field_type));
424 else
425 /* However, if field_type is a union, this quick test is not
426 correct since one of the variants of the union may be a
427 pointer to type and we cannot see across that here. So we
428 just strip the remaining pointer tos off the record type
429 and fall thru to the more precise code. */
430 if (TREE_CODE (field_type) == QUAL_UNION_TYPE
431 || TREE_CODE (field_type) == UNION_TYPE)
433 while (POINTER_TYPE_P (record_type))
434 record_type = TYPE_MAIN_VARIANT (TREE_TYPE (record_type));
435 break;
437 else
438 return true;
441 record_type = get_canon_type (record_type, true, true);
442 /* The record type must be contained. The field type may
443 escape. */
444 if (!ipa_type_escape_type_contained_p (record_type))
445 return false;
447 uid = TYPE_UID (record_type);
448 result = splay_tree_lookup (uid_to_addressof_down_map, (splay_tree_key) uid);
450 if (result)
452 bitmap field_type_map = (bitmap) result->value;
453 uid = get_canon_type_uid (field_type, true, true);
454 /* If the bit is there, the address was taken. If not, it
455 wasn't. */
456 return !bitmap_bit_p (field_type_map, uid);
458 else
459 /* No bitmap means no addresses were taken. */
460 return true;
464 /* Add TYPE to the suspect type set. Return true if the bit needed to
465 be marked. */
467 static tree
468 mark_type (tree type, enum escape_t escape_status)
470 bitmap map = NULL;
471 int uid;
473 type = get_canon_type (type, true, true);
474 if (!type)
475 return NULL;
477 switch (escape_status)
479 case EXPOSED_PARAMETER:
480 map = global_types_exposed_parameter;
481 break;
482 case FULL_ESCAPE:
483 map = global_types_full_escape;
484 break;
487 uid = TYPE_UID (type);
488 if (bitmap_bit_p (map, uid))
489 return type;
490 else
492 bitmap_set_bit (map, uid);
493 if (escape_status == FULL_ESCAPE)
495 /* Efficiency hack. When things are bad, do not mess around
496 with this type anymore. */
497 bitmap_set_bit (global_types_exposed_parameter, uid);
500 return type;
503 /* Add interesting TYPE to the suspect type set. If the set is
504 EXPOSED_PARAMETER and the TYPE is a pointer type, the set is
505 changed to FULL_ESCAPE. */
507 static void
508 mark_interesting_type (tree type, enum escape_t escape_status)
510 if (!type) return;
511 if (ipa_type_escape_star_count_of_interesting_type (type) >= 0)
513 if ((escape_status == EXPOSED_PARAMETER)
514 && POINTER_TYPE_P (type))
515 /* EXPOSED_PARAMETERs are only structs or unions are passed by
516 value. Anything passed by reference to an external
517 function fully exposes the type. */
518 mark_type (type, FULL_ESCAPE);
519 else
520 mark_type (type, escape_status);
524 /* Return true if PARENT is supertype of CHILD. Both types must be
525 known to be structures or unions. */
527 static bool
528 parent_type_p (tree parent, tree child)
530 int i;
531 tree binfo, base_binfo;
532 if (TYPE_BINFO (parent))
533 for (binfo = TYPE_BINFO (parent), i = 0;
534 BINFO_BASE_ITERATE (binfo, i, base_binfo); i++)
536 tree binfotype = BINFO_TYPE (base_binfo);
537 if (binfotype == child)
538 return true;
539 else if (parent_type_p (binfotype, child))
540 return true;
542 if (TREE_CODE (parent) == UNION_TYPE
543 || TREE_CODE (parent) == QUAL_UNION_TYPE)
545 tree field;
546 /* Search all of the variants in the union to see if one of them
547 is the child. */
548 for (field = TYPE_FIELDS (parent);
549 field;
550 field = TREE_CHAIN (field))
552 tree field_type;
553 if (TREE_CODE (field) != FIELD_DECL)
554 continue;
556 field_type = TREE_TYPE (field);
557 if (field_type == child)
558 return true;
561 /* If we did not find it, recursively ask the variants if one of
562 their children is the child type. */
563 for (field = TYPE_FIELDS (parent);
564 field;
565 field = TREE_CHAIN (field))
567 tree field_type;
568 if (TREE_CODE (field) != FIELD_DECL)
569 continue;
571 field_type = TREE_TYPE (field);
572 if (TREE_CODE (field_type) == RECORD_TYPE
573 || TREE_CODE (field_type) == QUAL_UNION_TYPE
574 || TREE_CODE (field_type) == UNION_TYPE)
575 if (parent_type_p (field_type, child))
576 return true;
580 if (TREE_CODE (parent) == RECORD_TYPE)
582 tree field;
583 for (field = TYPE_FIELDS (parent);
584 field;
585 field = TREE_CHAIN (field))
587 tree field_type;
588 if (TREE_CODE (field) != FIELD_DECL)
589 continue;
591 field_type = TREE_TYPE (field);
592 if (field_type == child)
593 return true;
594 /* You can only cast to the first field so if it does not
595 match, quit. */
596 if (TREE_CODE (field_type) == RECORD_TYPE
597 || TREE_CODE (field_type) == QUAL_UNION_TYPE
598 || TREE_CODE (field_type) == UNION_TYPE)
600 if (parent_type_p (field_type, child))
601 return true;
602 else
603 break;
607 return false;
610 /* Return the number of pointer tos for TYPE and return TYPE with all
611 of these stripped off. */
613 static int
614 count_stars (tree* type_ptr)
616 tree type = *type_ptr;
617 int i = 0;
618 type = TYPE_MAIN_VARIANT (type);
619 while (POINTER_TYPE_P (type))
621 type = TYPE_MAIN_VARIANT (TREE_TYPE (type));
622 i++;
625 *type_ptr = type;
626 return i;
629 enum cast_type {
630 CT_UP = 0x1,
631 CT_DOWN = 0x2,
632 CT_SIDEWAYS = 0x4,
633 CT_USELESS = 0x8,
634 CT_FROM_P_BAD = 0x10,
635 CT_FROM_NON_P = 0x20,
636 CT_TO_NON_INTER = 0x40,
637 CT_FROM_MALLOC = 0x80,
638 CT_NO_CAST = 0x100
641 /* Check the cast FROM_TYPE to TO_TYPE. This function requires that
642 the two types have already passed the
643 ipa_type_escape_star_count_of_interesting_type test. */
645 static enum cast_type
646 check_cast_type (tree to_type, tree from_type)
648 int to_stars = count_stars (&to_type);
649 int from_stars = count_stars (&from_type);
650 if (to_stars != from_stars)
651 return CT_SIDEWAYS;
653 if (to_type == from_type)
654 return CT_USELESS;
656 if (parent_type_p (to_type, from_type)) return CT_UP;
657 if (parent_type_p (from_type, to_type)) return CT_DOWN;
658 return CT_SIDEWAYS;
661 /* This function returns nonzero if VAR is result of call
662 to malloc function. */
664 static bool
665 is_malloc_result (tree var)
667 gimple def_stmt;
669 if (!var)
670 return false;
672 if (SSA_NAME_IS_DEFAULT_DEF (var))
673 return false;
675 def_stmt = SSA_NAME_DEF_STMT (var);
677 if (!is_gimple_call (def_stmt))
678 return false;
680 if (var != gimple_call_lhs (def_stmt))
681 return false;
683 return ((gimple_call_flags (def_stmt) & ECF_MALLOC) != 0);
687 /* Check a cast FROM this variable, TO_TYPE. Mark the escaping types
688 if appropriate. Returns cast_type as detected. */
690 static enum cast_type
691 check_cast (tree to_type, tree from)
693 tree from_type = get_canon_type (TREE_TYPE (from), false, false);
694 bool to_interesting_type, from_interesting_type;
695 enum cast_type cast = CT_NO_CAST;
697 to_type = get_canon_type (to_type, false, false);
698 if (!from_type || !to_type || from_type == to_type)
699 return cast;
701 to_interesting_type =
702 ipa_type_escape_star_count_of_interesting_type (to_type) >= 0;
703 from_interesting_type =
704 ipa_type_escape_star_count_of_interesting_type (from_type) >= 0;
706 if (to_interesting_type)
707 if (from_interesting_type)
709 /* Both types are interesting. This can be one of four types
710 of cast: useless, up, down, or sideways. We do not care
711 about up or useless. Sideways casts are always bad and
712 both sides get marked as escaping. Downcasts are not
713 interesting here because if type is marked as escaping, all
714 of its subtypes escape. */
715 cast = check_cast_type (to_type, from_type);
716 switch (cast)
718 case CT_UP:
719 case CT_USELESS:
720 case CT_DOWN:
721 break;
723 case CT_SIDEWAYS:
724 mark_type (to_type, FULL_ESCAPE);
725 mark_type (from_type, FULL_ESCAPE);
726 break;
728 default:
729 break;
732 else
734 /* This code excludes two cases from marking as escaped:
736 1. if this is a cast of index of array of structures/unions
737 that happens before accessing array element, we should not
738 mark it as escaped.
739 2. if this is a cast from the local that is a result from a
740 call to malloc, do not mark the cast as bad.
744 if (POINTER_TYPE_P (to_type) && !POINTER_TYPE_P (from_type))
745 cast = CT_FROM_NON_P;
746 else if (TREE_CODE (from) == SSA_NAME
747 && is_malloc_result (from))
748 cast = CT_FROM_MALLOC;
749 else
751 cast = CT_FROM_P_BAD;
752 mark_type (to_type, FULL_ESCAPE);
755 else if (from_interesting_type)
757 mark_type (from_type, FULL_ESCAPE);
758 cast = CT_TO_NON_INTER;
761 return cast;
765 /* Scan assignment statement S to see if there are any casts within it. */
767 static unsigned int
768 look_for_casts_stmt (gimple s)
770 unsigned int cast = 0;
772 gcc_assert (is_gimple_assign (s));
774 if (gimple_assign_cast_p (s))
776 tree castfromvar = gimple_assign_rhs1 (s);
777 cast |= check_cast (TREE_TYPE (gimple_assign_lhs (s)), castfromvar);
779 else
781 size_t i;
782 for (i = 0; i < gimple_num_ops (s); i++)
783 cast |= look_for_casts (gimple_op (s, i));
786 if (!cast)
787 cast = CT_NO_CAST;
789 return cast;
793 typedef struct cast
795 int type;
796 gimple stmt;
797 } cast_t;
799 /* This function is a callback for walk_use_def_chains function called
800 from is_array_access_through_pointer_and_index. */
802 static bool
803 is_cast_from_non_pointer (tree var, gimple def_stmt, void *data)
805 if (!def_stmt || !var)
806 return false;
808 if (gimple_code (def_stmt) == GIMPLE_PHI)
809 return false;
811 if (SSA_NAME_IS_DEFAULT_DEF (var))
812 return false;
814 if (is_gimple_assign (def_stmt))
816 use_operand_p use_p;
817 ssa_op_iter iter;
818 unsigned int cast = look_for_casts_stmt (def_stmt);
820 /* Check that only one cast happened, and it's of non-pointer
821 type. */
822 if ((cast & CT_FROM_NON_P) == (CT_FROM_NON_P)
823 && (cast & ~(CT_FROM_NON_P)) == 0)
825 ((cast_t *)data)->stmt = def_stmt;
826 ((cast_t *)data)->type++;
828 FOR_EACH_SSA_USE_OPERAND (use_p, def_stmt, iter, SSA_OP_ALL_USES)
830 walk_use_def_chains (USE_FROM_PTR (use_p),
831 is_cast_from_non_pointer, data, false);
832 if (((cast_t*)data)->type == -1)
833 break;
836 /* Check that there is no cast, or cast is not harmful. */
837 else if ((cast & CT_NO_CAST) == (CT_NO_CAST)
838 || (cast & CT_DOWN) == (CT_DOWN)
839 || (cast & CT_UP) == (CT_UP)
840 || (cast & CT_USELESS) == (CT_USELESS)
841 || (cast & CT_FROM_MALLOC) == (CT_FROM_MALLOC))
843 FOR_EACH_SSA_USE_OPERAND (use_p, def_stmt, iter, SSA_OP_ALL_USES)
845 walk_use_def_chains (USE_FROM_PTR (use_p),
846 is_cast_from_non_pointer, data, false);
847 if (((cast_t*)data)->type == -1)
848 break;
851 /* The cast is harmful. */
852 else
853 ((cast_t *)data)->type = -1;
856 if (((cast_t*)data)->type == -1)
857 return true;
859 return false;
862 /* When array element a_p[i] is accessed through the pointer a_p
863 and index i, it's translated into the following sequence
864 in gimple:
866 i.1_5 = (unsigned int) i_1;
867 D.1605_6 = i.1_5 * 16;
868 D.1606_7 = (struct str_t *) D.1605_6;
869 a_p.2_8 = a_p;
870 D.1608_9 = D.1606_7 + a_p.2_8;
872 OP0 and OP1 are of the same pointer types and stand for
873 D.1606_7 and a_p.2_8 or vise versa.
875 This function checks that:
877 1. one of OP0 and OP1 (D.1606_7) has passed only one cast from
878 non-pointer type (D.1606_7 = (struct str_t *) D.1605_6;).
880 2. one of OP0 and OP1 which has passed the cast from
881 non-pointer type (D.1606_7), is actually generated by multiplication of
882 index by size of type to which both OP0 and OP1 point to
883 (in this case D.1605_6 = i.1_5 * 16; ).
885 3. an address of def of the var to which was made cast (D.1605_6)
886 was not taken.(How can it happen?)
888 The following items are checked implicitly by the end of algorithm:
890 4. one of OP0 and OP1 (a_p.2_8) have never been cast
891 (because if it was cast to pointer type, its type, that is also
892 the type of OP0 and OP1, will be marked as escaped during
893 analysis of casting stmt (when check_cast() is called
894 from scan_for_refs for this stmt)).
896 5. defs of OP0 and OP1 are not passed into externally visible function
897 (because if they are passed then their type, that is also the type of OP0
898 and OP1, will be marked and escaped during check_call function called from
899 scan_for_refs with call stmt).
901 In total, 1-5 guaranty that it's an access to array by pointer and index.
905 bool
906 is_array_access_through_pointer_and_index (enum tree_code code, tree op0,
907 tree op1, tree *base, tree *offset,
908 gimple *offset_cast_stmt)
910 tree before_cast;
911 gimple before_cast_def_stmt;
912 cast_t op0_cast, op1_cast;
914 *base = NULL;
915 *offset = NULL;
916 *offset_cast_stmt = NULL;
918 /* Check 1. */
919 if (code == POINTER_PLUS_EXPR)
921 tree op0type = TYPE_MAIN_VARIANT (TREE_TYPE (op0));
922 tree op1type = TYPE_MAIN_VARIANT (TREE_TYPE (op1));
924 /* One of op0 and op1 is of pointer type and the other is numerical. */
925 if (POINTER_TYPE_P (op0type) && NUMERICAL_TYPE_CHECK (op1type))
927 *base = op0;
928 *offset = op1;
930 else if (POINTER_TYPE_P (op1type) && NUMERICAL_TYPE_CHECK (op0type))
932 *base = op1;
933 *offset = op0;
935 else
936 return false;
938 else
940 /* Init data for walk_use_def_chains function. */
941 op0_cast.type = op1_cast.type = 0;
942 op0_cast.stmt = op1_cast.stmt = NULL;
944 visited_stmts = pointer_set_create ();
945 walk_use_def_chains (op0, is_cast_from_non_pointer,(void *)(&op0_cast),
946 false);
947 pointer_set_destroy (visited_stmts);
949 visited_stmts = pointer_set_create ();
950 walk_use_def_chains (op1, is_cast_from_non_pointer,(void *)(&op1_cast),
951 false);
952 pointer_set_destroy (visited_stmts);
954 if (op0_cast.type == 1 && op1_cast.type == 0)
956 *base = op1;
957 *offset = op0;
958 *offset_cast_stmt = op0_cast.stmt;
960 else if (op0_cast.type == 0 && op1_cast.type == 1)
962 *base = op0;
963 *offset = op1;
964 *offset_cast_stmt = op1_cast.stmt;
966 else
967 return false;
970 /* Check 2.
971 offset_cast_stmt is of the form:
972 D.1606_7 = (struct str_t *) D.1605_6; */
974 if (*offset_cast_stmt)
976 before_cast = SINGLE_SSA_TREE_OPERAND (*offset_cast_stmt, SSA_OP_USE);
977 if (!before_cast)
978 return false;
980 if (SSA_NAME_IS_DEFAULT_DEF (before_cast))
981 return false;
983 before_cast_def_stmt = SSA_NAME_DEF_STMT (before_cast);
984 if (!before_cast_def_stmt)
985 return false;
987 else
988 before_cast_def_stmt = SSA_NAME_DEF_STMT (*offset);
990 /* before_cast_def_stmt should be of the form:
991 D.1605_6 = i.1_5 * 16; */
993 if (is_gimple_assign (before_cast_def_stmt))
995 /* We expect temporary here. */
996 if (!is_gimple_reg (gimple_assign_lhs (before_cast_def_stmt)))
997 return false;
999 if (gimple_assign_rhs_code (before_cast_def_stmt) == MULT_EXPR)
1001 tree arg0 = gimple_assign_rhs1 (before_cast_def_stmt);
1002 tree arg1 = gimple_assign_rhs2 (before_cast_def_stmt);
1003 tree unit_size =
1004 TYPE_SIZE_UNIT (TREE_TYPE (TYPE_MAIN_VARIANT (TREE_TYPE (op0))));
1006 if (!(CONSTANT_CLASS_P (arg0)
1007 && simple_cst_equal (arg0, unit_size))
1008 && !(CONSTANT_CLASS_P (arg1)
1009 && simple_cst_equal (arg1, unit_size)))
1010 return false;
1012 else
1013 return false;
1015 else
1016 return false;
1018 /* Check 3.
1019 check that address of D.1605_6 was not taken.
1020 FIXME: if D.1605_6 is gimple reg than it cannot be addressable. */
1022 return true;
1025 /* Register the parameter and return types of function FN. The type
1026 ESCAPES if the function is visible outside of the compilation
1027 unit. */
1028 static void
1029 check_function_parameter_and_return_types (tree fn, bool escapes)
1031 tree arg;
1033 if (TYPE_ARG_TYPES (TREE_TYPE (fn)))
1035 for (arg = TYPE_ARG_TYPES (TREE_TYPE (fn));
1036 arg && TREE_VALUE (arg) != void_type_node;
1037 arg = TREE_CHAIN (arg))
1039 tree type = get_canon_type (TREE_VALUE (arg), false, false);
1040 if (escapes)
1041 mark_interesting_type (type, EXPOSED_PARAMETER);
1044 else
1046 /* FIXME - According to Geoff Keating, we should never have to
1047 do this; the front ends should always process the arg list
1048 from the TYPE_ARG_LIST. However, Geoff is wrong, this code
1049 does seem to be live. */
1051 for (arg = DECL_ARGUMENTS (fn); arg; arg = DECL_CHAIN (arg))
1053 tree type = get_canon_type (TREE_TYPE (arg), false, false);
1054 if (escapes)
1055 mark_interesting_type (type, EXPOSED_PARAMETER);
1058 if (escapes)
1060 tree type = get_canon_type (TREE_TYPE (TREE_TYPE (fn)), false, false);
1061 mark_interesting_type (type, EXPOSED_PARAMETER);
1065 /* Return true if the variable T is the right kind of static variable to
1066 perform compilation unit scope escape analysis. */
1068 static inline void
1069 has_proper_scope_for_analysis (tree t)
1071 /* If the variable has the "used" attribute, treat it as if it had a
1072 been touched by the devil. */
1073 tree type = get_canon_type (TREE_TYPE (t), false, false);
1074 if (!type) return;
1076 if (DECL_PRESERVE_P (t))
1078 mark_interesting_type (type, FULL_ESCAPE);
1079 return;
1082 /* Do not want to do anything with volatile except mark any
1083 function that uses one to be not const or pure. */
1084 if (TREE_THIS_VOLATILE (t))
1085 return;
1087 /* Do not care about a local automatic that is not static. */
1088 if (!TREE_STATIC (t) && !DECL_EXTERNAL (t))
1089 return;
1091 if (DECL_EXTERNAL (t) || TREE_PUBLIC (t))
1093 /* If the front end set the variable to be READONLY and
1094 constant, we can allow this variable in pure or const
1095 functions but the scope is too large for our analysis to set
1096 these bits ourselves. */
1098 if (TREE_READONLY (t)
1099 && DECL_INITIAL (t)
1100 && is_gimple_min_invariant (DECL_INITIAL (t)))
1101 ; /* Read of a constant, do not change the function state. */
1102 else
1104 /* The type escapes for all public and externs. */
1105 mark_interesting_type (type, FULL_ESCAPE);
1110 /* If T is a VAR_DECL for a static that we are interested in, add the
1111 uid to the bitmap. */
1113 static void
1114 check_operand (tree t)
1116 if (!t) return;
1118 /* This is an assignment from a function, register the types as
1119 escaping. */
1120 if (TREE_CODE (t) == FUNCTION_DECL)
1121 check_function_parameter_and_return_types (t, true);
1123 else if (TREE_CODE (t) == VAR_DECL)
1124 has_proper_scope_for_analysis (t);
1127 /* Examine tree T for references. */
1129 static void
1130 check_tree (tree t)
1132 /* We want to catch here also REALPART_EXPR and IMAGEPART_EXPR,
1133 but they already included in handled_component_p. */
1134 while (handled_component_p (t))
1136 if (TREE_CODE (t) == ARRAY_REF)
1137 check_operand (TREE_OPERAND (t, 1));
1138 t = TREE_OPERAND (t, 0);
1141 if (INDIRECT_REF_P (t))
1142 /* || TREE_CODE (t) == MEM_REF) */
1143 check_tree (TREE_OPERAND (t, 0));
1145 if (SSA_VAR_P (t) || (TREE_CODE (t) == FUNCTION_DECL))
1147 check_operand (t);
1148 if (DECL_P (t) && DECL_INITIAL (t))
1149 check_tree (DECL_INITIAL (t));
1153 /* Create an address_of edge FROM_TYPE.TO_TYPE. */
1154 static void
1155 mark_interesting_addressof (tree to_type, tree from_type)
1157 int from_uid;
1158 int to_uid;
1159 bitmap type_map;
1160 splay_tree_node result;
1162 from_type = get_canon_type (from_type, false, false);
1163 to_type = get_canon_type (to_type, false, false);
1165 if (!from_type || !to_type)
1166 return;
1168 from_uid = TYPE_UID (from_type);
1169 to_uid = TYPE_UID (to_type);
1171 gcc_assert (ipa_type_escape_star_count_of_interesting_type (from_type) == 0);
1173 /* Process the Y into X map pointer. */
1174 result = splay_tree_lookup (uid_to_addressof_down_map,
1175 (splay_tree_key) from_uid);
1177 if (result)
1178 type_map = (bitmap) result->value;
1179 else
1181 type_map = BITMAP_ALLOC (&ipa_obstack);
1182 splay_tree_insert (uid_to_addressof_down_map,
1183 from_uid,
1184 (splay_tree_value)type_map);
1186 bitmap_set_bit (type_map, TYPE_UID (to_type));
1188 /* Process the X into Y reverse map pointer. */
1189 result =
1190 splay_tree_lookup (uid_to_addressof_up_map, (splay_tree_key) to_uid);
1192 if (result)
1193 type_map = (bitmap) result->value;
1194 else
1196 type_map = BITMAP_ALLOC (&ipa_obstack);
1197 splay_tree_insert (uid_to_addressof_up_map,
1198 to_uid,
1199 (splay_tree_value)type_map);
1201 bitmap_set_bit (type_map, TYPE_UID (from_type));
1204 /* Scan tree T to see if there are any addresses taken in within T. */
1206 static void
1207 look_for_address_of (tree t)
1209 if (TREE_CODE (t) == ADDR_EXPR)
1211 tree x = get_base_var (t);
1212 tree cref = TREE_OPERAND (t, 0);
1214 /* If we have an expression of the form "&a.b.c.d", mark a.b,
1215 b.c and c.d. as having its address taken. */
1216 tree fielddecl = NULL_TREE;
1217 while (cref!= x)
1219 if (TREE_CODE (cref) == COMPONENT_REF)
1221 fielddecl = TREE_OPERAND (cref, 1);
1222 mark_interesting_addressof (TREE_TYPE (fielddecl),
1223 DECL_FIELD_CONTEXT (fielddecl));
1225 else if (TREE_CODE (cref) == ARRAY_REF)
1226 get_canon_type (TREE_TYPE (cref), false, false);
1228 cref = TREE_OPERAND (cref, 0);
1231 if (TREE_CODE (x) == VAR_DECL)
1232 has_proper_scope_for_analysis (x);
1237 /* Scan tree T to see if there are any casts within it. */
1239 static unsigned int
1240 look_for_casts (tree t)
1242 unsigned int cast = 0;
1244 if (is_gimple_cast (t) || TREE_CODE (t) == VIEW_CONVERT_EXPR)
1246 tree castfromvar = TREE_OPERAND (t, 0);
1247 cast = cast | check_cast (TREE_TYPE (t), castfromvar);
1249 else
1250 while (handled_component_p (t))
1252 t = TREE_OPERAND (t, 0);
1253 if (TREE_CODE (t) == VIEW_CONVERT_EXPR)
1255 /* This may be some part of a component ref.
1256 IE it may be a.b.VIEW_CONVERT_EXPR<weird_type>(c).d, AFAIK.
1257 castfromref will give you a.b.c, not a. */
1258 tree castfromref = TREE_OPERAND (t, 0);
1259 cast = cast | check_cast (TREE_TYPE (t), castfromref);
1261 else if (TREE_CODE (t) == COMPONENT_REF)
1262 get_canon_type (TREE_TYPE (TREE_OPERAND (t, 1)), false, false);
1265 if (!cast)
1266 cast = CT_NO_CAST;
1267 return cast;
1270 /* Check to see if T is a read or address of operation on a static var
1271 we are interested in analyzing. */
1273 static void
1274 check_rhs_var (tree t)
1276 look_for_address_of (t);
1277 check_tree (t);
1280 /* Check to see if T is an assignment to a static var we are
1281 interested in analyzing. */
1283 static void
1284 check_lhs_var (tree t)
1286 check_tree (t);
1289 /* This is a scaled down version of get_asm_expr_operands from
1290 tree_ssa_operands.c. The version there runs much later and assumes
1291 that aliasing information is already available. Here we are just
1292 trying to find if the set of inputs and outputs contain references
1293 or address of operations to local. FN is the function being
1294 analyzed and STMT is the actual asm statement. */
1296 static void
1297 check_asm (gimple stmt)
1299 size_t i;
1301 for (i = 0; i < gimple_asm_noutputs (stmt); i++)
1302 check_lhs_var (gimple_asm_output_op (stmt, i));
1304 for (i = 0; i < gimple_asm_ninputs (stmt); i++)
1305 check_rhs_var (gimple_asm_input_op (stmt, i));
1307 /* There is no code here to check for asm memory clobbers. The
1308 casual maintainer might think that such code would be necessary,
1309 but that appears to be wrong. In other parts of the compiler,
1310 the asm memory clobbers are assumed to only clobber variables
1311 that are addressable. All types with addressable instances are
1312 assumed to already escape. So, we are protected here. */
1316 /* Check the parameters of function call to CALL to mark the
1317 types that pass across the function boundary. Also check to see if
1318 this is either an indirect call, a call outside the compilation
1319 unit. */
1321 static void
1322 check_call (gimple call)
1324 tree callee_t = gimple_call_fndecl (call);
1325 struct cgraph_node* callee;
1326 enum availability avail = AVAIL_NOT_AVAILABLE;
1327 size_t i;
1329 for (i = 0; i < gimple_call_num_args (call); i++)
1330 check_rhs_var (gimple_call_arg (call, i));
1332 if (callee_t)
1334 tree arg_type;
1335 tree last_arg_type = NULL;
1336 callee = cgraph_node(callee_t);
1337 avail = cgraph_function_body_availability (callee);
1339 /* Check that there are no implicit casts in the passing of
1340 parameters. */
1341 if (TYPE_ARG_TYPES (TREE_TYPE (callee_t)))
1343 for (arg_type = TYPE_ARG_TYPES (TREE_TYPE (callee_t)), i = 0;
1344 arg_type && TREE_VALUE (arg_type) != void_type_node
1345 && i < gimple_call_num_args (call);
1346 arg_type = TREE_CHAIN (arg_type), i++)
1348 tree operand = gimple_call_arg (call, i);
1349 if (operand)
1351 last_arg_type = TREE_VALUE(arg_type);
1352 check_cast (last_arg_type, operand);
1354 else
1355 /* The code reaches here for some unfortunate
1356 builtin functions that do not have a list of
1357 argument types. */
1358 break;
1361 else
1363 /* FIXME - According to Geoff Keating, we should never
1364 have to do this; the front ends should always process
1365 the arg list from the TYPE_ARG_LIST. */
1366 for (arg_type = DECL_ARGUMENTS (callee_t), i = 0;
1367 arg_type && i < gimple_call_num_args (call);
1368 arg_type = TREE_CHAIN (arg_type), i++)
1370 tree operand = gimple_call_arg (call, i);
1371 if (operand)
1373 last_arg_type = TREE_TYPE (arg_type);
1374 check_cast (last_arg_type, operand);
1376 else
1377 /* The code reaches here for some unfortunate
1378 builtin functions that do not have a list of
1379 argument types. */
1380 break;
1384 /* In the case where we have a var_args function, we need to
1385 check the remaining parameters against the last argument. */
1386 arg_type = last_arg_type;
1387 for ( ; i < gimple_call_num_args (call); i++)
1389 tree operand = gimple_call_arg (call, i);
1390 if (arg_type)
1391 check_cast (arg_type, operand);
1392 else
1394 /* The code reaches here for some unfortunate
1395 builtin functions that do not have a list of
1396 argument types. Most of these functions have
1397 been marked as having their parameters not
1398 escape, but for the rest, the type is doomed. */
1399 tree type = get_canon_type (TREE_TYPE (operand), false, false);
1400 mark_interesting_type (type, FULL_ESCAPE);
1405 /* The callee is either unknown (indirect call) or there is just no
1406 scannable code for it (external call) . We look to see if there
1407 are any bits available for the callee (such as by declaration or
1408 because it is builtin) and process solely on the basis of those
1409 bits. */
1410 if (avail == AVAIL_NOT_AVAILABLE || avail == AVAIL_OVERWRITABLE)
1412 /* If this is a direct call to an external function, mark all of
1413 the parameter and return types. */
1414 for (i = 0; i < gimple_call_num_args (call); i++)
1416 tree operand = gimple_call_arg (call, i);
1417 tree type = get_canon_type (TREE_TYPE (operand), false, false);
1418 mark_interesting_type (type, EXPOSED_PARAMETER);
1421 if (callee_t)
1423 tree type =
1424 get_canon_type (TREE_TYPE (TREE_TYPE (callee_t)), false, false);
1425 mark_interesting_type (type, EXPOSED_PARAMETER);
1430 /* CODE is the operation on OP0 and OP1. OP0 is the operand that we
1431 *know* is a pointer type. OP1 may be a pointer type. */
1432 static bool
1433 okay_pointer_operation (enum tree_code code, tree op0, tree op1)
1435 tree op0type = TYPE_MAIN_VARIANT (TREE_TYPE (op0));
1437 switch (code)
1439 case MULT_EXPR:
1440 /* Multiplication does not change alignment. */
1441 return true;
1442 break;
1443 case MINUS_EXPR:
1444 case PLUS_EXPR:
1445 case POINTER_PLUS_EXPR:
1447 tree base, offset;
1448 gimple offset_cast_stmt;
1450 if (POINTER_TYPE_P (op0type)
1451 && TREE_CODE (op0) == SSA_NAME
1452 && TREE_CODE (op1) == SSA_NAME
1453 && is_array_access_through_pointer_and_index (code, op0, op1,
1454 &base,
1455 &offset,
1456 &offset_cast_stmt))
1457 return true;
1458 else
1460 tree size_of_op0_points_to = TYPE_SIZE_UNIT (TREE_TYPE (op0type));
1462 if (CONSTANT_CLASS_P (op1)
1463 && size_of_op0_points_to
1464 && multiple_of_p (TREE_TYPE (size_of_op0_points_to),
1465 op1, size_of_op0_points_to))
1466 return true;
1468 if (CONSTANT_CLASS_P (op0)
1469 && size_of_op0_points_to
1470 && multiple_of_p (TREE_TYPE (size_of_op0_points_to),
1471 op0, size_of_op0_points_to))
1472 return true;
1475 break;
1476 default:
1477 return false;
1479 return false;
1484 /* Helper for scan_for_refs. Check the operands of an assignment to
1485 mark types that may escape. */
1487 static void
1488 check_assign (gimple t)
1490 /* First look on the lhs and see what variable is stored to */
1491 check_lhs_var (gimple_assign_lhs (t));
1493 /* For the purposes of figuring out what the cast affects */
1495 /* Next check the operands on the rhs to see if they are ok. */
1496 switch (TREE_CODE_CLASS (gimple_assign_rhs_code (t)))
1498 case tcc_binary:
1500 tree op0 = gimple_assign_rhs1 (t);
1501 tree type0 = get_canon_type (TREE_TYPE (op0), false, false);
1502 tree op1 = gimple_assign_rhs2 (t);
1503 tree type1 = get_canon_type (TREE_TYPE (op1), false, false);
1505 /* If this is pointer arithmetic of any bad sort, then
1506 we need to mark the types as bad. For binary
1507 operations, no binary operator we currently support
1508 is always "safe" in regard to what it would do to
1509 pointers for purposes of determining which types
1510 escape, except operations of the size of the type.
1511 It is possible that min and max under the right set
1512 of circumstances and if the moon is in the correct
1513 place could be safe, but it is hard to see how this
1514 is worth the effort. */
1515 if (type0 && POINTER_TYPE_P (type0)
1516 && !okay_pointer_operation (gimple_assign_rhs_code (t), op0, op1))
1517 mark_interesting_type (type0, FULL_ESCAPE);
1519 if (type1 && POINTER_TYPE_P (type1)
1520 && !okay_pointer_operation (gimple_assign_rhs_code (t), op1, op0))
1521 mark_interesting_type (type1, FULL_ESCAPE);
1523 look_for_casts (op0);
1524 look_for_casts (op1);
1525 check_rhs_var (op0);
1526 check_rhs_var (op1);
1528 break;
1530 case tcc_unary:
1532 tree op0 = gimple_assign_rhs1 (t);
1533 tree type0 = get_canon_type (TREE_TYPE (op0), false, false);
1535 /* For unary operations, if the operation is NEGATE or ABS on
1536 a pointer, this is also considered pointer arithmetic and
1537 thus, bad for business. */
1538 if (type0
1539 && POINTER_TYPE_P (type0)
1540 && (TREE_CODE (op0) == NEGATE_EXPR
1541 || TREE_CODE (op0) == ABS_EXPR))
1542 mark_interesting_type (type0, FULL_ESCAPE);
1544 check_rhs_var (op0);
1545 look_for_casts (op0);
1547 break;
1549 case tcc_reference:
1550 look_for_casts (gimple_assign_rhs1 (t));
1551 check_rhs_var (gimple_assign_rhs1 (t));
1552 break;
1554 case tcc_declaration:
1555 check_rhs_var (gimple_assign_rhs1 (t));
1556 break;
1558 case tcc_expression:
1559 if (gimple_assign_rhs_code (t) == ADDR_EXPR)
1561 tree rhs = gimple_assign_rhs1 (t);
1562 look_for_casts (TREE_OPERAND (rhs, 0));
1563 check_rhs_var (rhs);
1565 break;
1567 default:
1568 break;
1573 /* Scan statement T for references to types and mark anything
1574 interesting. */
1576 static void
1577 scan_for_refs (gimple t)
1579 switch (gimple_code (t))
1581 case GIMPLE_ASSIGN:
1582 check_assign (t);
1583 break;
1585 case GIMPLE_CALL:
1586 /* If this is a call to malloc, squirrel away the result so we
1587 do mark the resulting cast as being bad. */
1588 check_call (t);
1589 break;
1591 case GIMPLE_ASM:
1592 check_asm (t);
1593 break;
1595 default:
1596 break;
1599 return;
1603 /* The init routine for analyzing global static variable usage. See
1604 comments at top for description. */
1605 static void
1606 ipa_init (void)
1608 bitmap_obstack_initialize (&ipa_obstack);
1609 global_types_exposed_parameter = BITMAP_ALLOC (&ipa_obstack);
1610 global_types_full_escape = BITMAP_ALLOC (&ipa_obstack);
1611 global_types_seen = BITMAP_ALLOC (&ipa_obstack);
1613 uid_to_canon_type = splay_tree_new (splay_tree_compare_ints, 0, 0);
1614 all_canon_types = splay_tree_new (compare_type_brand, 0, 0);
1615 type_to_canon_type = splay_tree_new (splay_tree_compare_pointers, 0, 0);
1616 uid_to_subtype_map = splay_tree_new (splay_tree_compare_ints, 0, 0);
1617 uid_to_addressof_down_map = splay_tree_new (splay_tree_compare_ints, 0, 0);
1618 uid_to_addressof_up_map = splay_tree_new (splay_tree_compare_ints, 0, 0);
1620 /* There are some shared nodes, in particular the initializers on
1621 static declarations. We do not need to scan them more than once
1622 since all we would be interested in are the addressof
1623 operations. */
1624 visited_nodes = pointer_set_create ();
1625 initialized = true;
1628 /* Check out the rhs of a static or global initialization VNODE to see
1629 if any of them contain addressof operations. Note that some of
1630 these variables may not even be referenced in the code in this
1631 compilation unit but their right hand sides may contain references
1632 to variables defined within this unit. */
1634 static void
1635 analyze_variable (struct varpool_node *vnode)
1637 tree global = vnode->decl;
1638 tree type = get_canon_type (TREE_TYPE (global), false, false);
1640 /* If this variable has exposure beyond the compilation unit, add
1641 its type to the global types. */
1643 if (vnode->externally_visible)
1644 mark_interesting_type (type, FULL_ESCAPE);
1646 gcc_assert (TREE_CODE (global) == VAR_DECL);
1648 if (DECL_INITIAL (global))
1649 check_tree (DECL_INITIAL (global));
1652 /* This is the main routine for finding the reference patterns for
1653 global variables within a function FN. */
1655 static void
1656 analyze_function (struct cgraph_node *fn)
1658 tree decl = fn->decl;
1659 check_function_parameter_and_return_types (decl,
1660 fn->local.externally_visible);
1661 if (dump_file)
1662 fprintf (dump_file, "\n local analysis of %s", cgraph_node_name (fn));
1665 struct function *this_cfun = DECL_STRUCT_FUNCTION (decl);
1666 basic_block this_block;
1668 FOR_EACH_BB_FN (this_block, this_cfun)
1670 gimple_stmt_iterator gsi;
1671 for (gsi = gsi_start_bb (this_block); !gsi_end_p (gsi); gsi_next (&gsi))
1672 scan_for_refs (gsi_stmt (gsi));
1676 /* There may be const decls with interesting right hand sides. */
1677 if (DECL_STRUCT_FUNCTION (decl))
1679 tree var;
1680 unsigned ix;
1682 FOR_EACH_LOCAL_DECL (DECL_STRUCT_FUNCTION (decl), ix, var)
1684 if (TREE_CODE (var) == VAR_DECL
1685 && DECL_INITIAL (var)
1686 && !TREE_STATIC (var))
1687 check_tree (DECL_INITIAL (var));
1688 get_canon_type (TREE_TYPE (var), false, false);
1695 /* Convert a type_UID into a type. */
1696 static tree
1697 type_for_uid (int uid)
1699 splay_tree_node result =
1700 splay_tree_lookup (uid_to_canon_type, (splay_tree_key) uid);
1702 if (result)
1703 return (tree) result->value;
1704 else return NULL;
1707 /* Return a bitmap with the subtypes of the type for UID. If it
1708 does not exist, return either NULL or a new bitmap depending on the
1709 value of CREATE. */
1711 static bitmap
1712 subtype_map_for_uid (int uid, bool create)
1714 splay_tree_node result = splay_tree_lookup (uid_to_subtype_map,
1715 (splay_tree_key) uid);
1717 if (result)
1718 return (bitmap) result->value;
1719 else if (create)
1721 bitmap subtype_map = BITMAP_ALLOC (&ipa_obstack);
1722 splay_tree_insert (uid_to_subtype_map,
1723 uid,
1724 (splay_tree_value)subtype_map);
1725 return subtype_map;
1727 else return NULL;
1730 /* Mark all of the supertypes and field types of TYPE as being seen.
1731 Also accumulate the subtypes for each type so that
1732 close_types_full_escape can mark a subtype as escaping if the
1733 supertype escapes. */
1735 static void
1736 close_type_seen (tree type)
1738 tree field;
1739 int i, uid;
1740 tree binfo, base_binfo;
1742 /* See thru all pointer tos and array ofs. */
1743 type = get_canon_type (type, true, true);
1744 if (!type)
1745 return;
1747 uid = TYPE_UID (type);
1749 if (bitmap_bit_p (been_there_done_that, uid))
1750 return;
1751 bitmap_set_bit (been_there_done_that, uid);
1753 /* If we are doing a language with a type hierarchy, mark all of
1754 the superclasses. */
1755 if (TYPE_BINFO (type))
1756 for (binfo = TYPE_BINFO (type), i = 0;
1757 BINFO_BASE_ITERATE (binfo, i, base_binfo); i++)
1759 tree binfo_type = BINFO_TYPE (base_binfo);
1760 bitmap subtype_map = subtype_map_for_uid
1761 (TYPE_UID (TYPE_MAIN_VARIANT (binfo_type)), true);
1762 bitmap_set_bit (subtype_map, uid);
1763 close_type_seen (get_canon_type (binfo_type, true, true));
1766 /* If the field is a struct or union type, mark all of the
1767 subfields. */
1768 for (field = TYPE_FIELDS (type);
1769 field;
1770 field = DECL_CHAIN (field))
1772 tree field_type;
1773 if (TREE_CODE (field) != FIELD_DECL)
1774 continue;
1776 field_type = TREE_TYPE (field);
1777 if (ipa_type_escape_star_count_of_interesting_or_array_type (field_type) >= 0)
1778 close_type_seen (get_canon_type (field_type, true, true));
1782 /* Take a TYPE that has been passed by value to an external function
1783 and mark all of the fields that have pointer types as escaping. For
1784 any of the non pointer types that are structures or unions,
1785 recurse. TYPE is never a pointer type. */
1787 static void
1788 close_type_exposed_parameter (tree type)
1790 tree field;
1791 int uid;
1793 type = get_canon_type (type, false, false);
1794 if (!type)
1795 return;
1796 uid = TYPE_UID (type);
1797 gcc_assert (!POINTER_TYPE_P (type));
1799 if (bitmap_bit_p (been_there_done_that, uid))
1800 return;
1801 bitmap_set_bit (been_there_done_that, uid);
1803 /* If the field is a struct or union type, mark all of the
1804 subfields. */
1805 for (field = TYPE_FIELDS (type);
1806 field;
1807 field = TREE_CHAIN (field))
1809 tree field_type;
1811 if (TREE_CODE (field) != FIELD_DECL)
1812 continue;
1814 field_type = get_canon_type (TREE_TYPE (field), false, false);
1815 mark_interesting_type (field_type, EXPOSED_PARAMETER);
1817 /* Only recurse for non pointer types of structures and unions. */
1818 if (ipa_type_escape_star_count_of_interesting_type (field_type) == 0)
1819 close_type_exposed_parameter (field_type);
1823 /* The next function handles the case where a type fully escapes.
1824 This means that not only does the type itself escape,
1826 a) the type of every field recursively escapes
1827 b) the type of every subtype escapes as well as the super as well
1828 as all of the pointer to types for each field.
1830 Note that pointer to types are not marked as escaping. If the
1831 pointed to type escapes, the pointer to type also escapes.
1833 Take a TYPE that has had the address taken for an instance of it
1834 and mark all of the types for its fields as having their addresses
1835 taken. */
1837 static void
1838 close_type_full_escape (tree type)
1840 tree field;
1841 unsigned int i;
1842 int uid;
1843 tree binfo, base_binfo;
1844 bitmap_iterator bi;
1845 bitmap subtype_map;
1846 splay_tree_node address_result;
1848 /* Strip off any pointer or array types. */
1849 type = get_canon_type (type, true, true);
1850 if (!type)
1851 return;
1852 uid = TYPE_UID (type);
1854 if (bitmap_bit_p (been_there_done_that, uid))
1855 return;
1856 bitmap_set_bit (been_there_done_that, uid);
1858 subtype_map = subtype_map_for_uid (uid, false);
1860 /* If we are doing a language with a type hierarchy, mark all of
1861 the superclasses. */
1862 if (TYPE_BINFO (type))
1863 for (binfo = TYPE_BINFO (type), i = 0;
1864 BINFO_BASE_ITERATE (binfo, i, base_binfo); i++)
1866 tree binfotype = BINFO_TYPE (base_binfo);
1867 binfotype = mark_type (binfotype, FULL_ESCAPE);
1868 close_type_full_escape (binfotype);
1871 /* Mark as escaped any types that have been down casted to
1872 this type. */
1873 if (subtype_map)
1874 EXECUTE_IF_SET_IN_BITMAP (subtype_map, 0, i, bi)
1876 tree subtype = type_for_uid (i);
1877 subtype = mark_type (subtype, FULL_ESCAPE);
1878 close_type_full_escape (subtype);
1881 /* If the field is a struct or union type, mark all of the
1882 subfields. */
1883 for (field = TYPE_FIELDS (type);
1884 field;
1885 field = TREE_CHAIN (field))
1887 tree field_type;
1888 if (TREE_CODE (field) != FIELD_DECL)
1889 continue;
1891 field_type = TREE_TYPE (field);
1892 if (ipa_type_escape_star_count_of_interesting_or_array_type (field_type) >= 0)
1894 field_type = mark_type (field_type, FULL_ESCAPE);
1895 close_type_full_escape (field_type);
1899 /* For all of the types A that contain this type B and were part of
1900 an expression like "&...A.B...", mark the A's as escaping. */
1901 address_result = splay_tree_lookup (uid_to_addressof_up_map,
1902 (splay_tree_key) uid);
1903 if (address_result)
1905 bitmap containing_classes = (bitmap) address_result->value;
1906 EXECUTE_IF_SET_IN_BITMAP (containing_classes, 0, i, bi)
1908 close_type_full_escape (type_for_uid (i));
1913 /* Transitively close the addressof bitmap for the type with UID.
1914 This means that if we had a.b and b.c, a would have both b and c in
1915 its maps. */
1917 static bitmap
1918 close_addressof_down (int uid)
1920 bitmap_iterator bi;
1921 splay_tree_node result =
1922 splay_tree_lookup (uid_to_addressof_down_map, (splay_tree_key) uid);
1923 bitmap map = NULL;
1924 bitmap new_map;
1925 unsigned int i;
1927 if (result)
1928 map = (bitmap) result->value;
1929 else
1930 return NULL;
1932 if (bitmap_bit_p (been_there_done_that, uid))
1933 return map;
1934 bitmap_set_bit (been_there_done_that, uid);
1936 /* If the type escapes, get rid of the addressof map, it will not be
1937 needed. */
1938 if (bitmap_bit_p (global_types_full_escape, uid))
1940 BITMAP_FREE (map);
1941 splay_tree_remove (uid_to_addressof_down_map, (splay_tree_key) uid);
1942 return NULL;
1945 /* The new_map will have all of the bits for the enclosed fields and
1946 will have the unique id version of the old map. */
1947 new_map = BITMAP_ALLOC (&ipa_obstack);
1949 EXECUTE_IF_SET_IN_BITMAP (map, 0, i, bi)
1951 bitmap submap = close_addressof_down (i);
1952 bitmap_set_bit (new_map, i);
1953 if (submap)
1954 bitmap_ior_into (new_map, submap);
1956 result->value = (splay_tree_value) new_map;
1958 BITMAP_FREE (map);
1959 return new_map;
1963 /* The main entry point for type escape analysis. */
1965 static unsigned int
1966 type_escape_execute (void)
1968 struct cgraph_node *node;
1969 struct varpool_node *vnode;
1970 unsigned int i;
1971 bitmap_iterator bi;
1972 splay_tree_node result;
1974 ipa_init ();
1976 /* Process all of the variables first. */
1977 FOR_EACH_STATIC_VARIABLE (vnode)
1978 analyze_variable (vnode);
1980 /* Process all of the functions next.
1982 We do not want to process any of the clones so we check that this
1983 is a master clone. However, we do need to process any
1984 AVAIL_OVERWRITABLE functions (these are never clones) because
1985 they may cause a type variable to escape.
1987 for (node = cgraph_nodes; node; node = node->next)
1988 if (node->analyzed && !node->clone_of)
1989 analyze_function (node);
1992 pointer_set_destroy (visited_nodes);
1993 visited_nodes = NULL;
1995 /* Do all of the closures to discover which types escape the
1996 compilation unit. */
1998 been_there_done_that = BITMAP_ALLOC (&ipa_obstack);
1999 bitmap_tmp = BITMAP_ALLOC (&ipa_obstack);
2001 /* Examine the types that we have directly seen in scanning the code
2002 and add to that any contained types or superclasses. */
2004 bitmap_copy (bitmap_tmp, global_types_seen);
2005 EXECUTE_IF_SET_IN_BITMAP (bitmap_tmp, 0, i, bi)
2007 tree type = type_for_uid (i);
2008 /* Only look at records and unions and pointer tos. */
2009 if (ipa_type_escape_star_count_of_interesting_or_array_type (type) >= 0)
2010 close_type_seen (type);
2012 bitmap_clear (been_there_done_that);
2014 /* Examine all of the types passed by value and mark any enclosed
2015 pointer types as escaping. */
2016 bitmap_copy (bitmap_tmp, global_types_exposed_parameter);
2017 EXECUTE_IF_SET_IN_BITMAP (bitmap_tmp, 0, i, bi)
2019 close_type_exposed_parameter (type_for_uid (i));
2021 bitmap_clear (been_there_done_that);
2023 /* Close the types for escape. If something escapes, then any
2024 enclosed types escape as well as any subtypes. */
2025 bitmap_copy (bitmap_tmp, global_types_full_escape);
2026 EXECUTE_IF_SET_IN_BITMAP (bitmap_tmp, 0, i, bi)
2028 close_type_full_escape (type_for_uid (i));
2030 bitmap_clear (been_there_done_that);
2032 /* Before this pass, the uid_to_addressof_down_map for type X
2033 contained an entry for Y if there had been an operation of the
2034 form &X.Y. This step adds all of the fields contained within Y
2035 (recursively) to X's map. */
2037 result = splay_tree_min (uid_to_addressof_down_map);
2038 while (result)
2040 int uid = result->key;
2041 /* Close the addressof map, i.e. copy all of the transitive
2042 substructures up to this level. */
2043 close_addressof_down (uid);
2044 result = splay_tree_successor (uid_to_addressof_down_map, uid);
2047 /* Do not need the array types and pointer types in the persistent
2048 data structures. */
2049 result = splay_tree_min (all_canon_types);
2050 while (result)
2052 tree type = (tree) result->value;
2053 tree key = (tree) result->key;
2054 if (POINTER_TYPE_P (type)
2055 || TREE_CODE (type) == ARRAY_TYPE)
2057 splay_tree_remove (all_canon_types, (splay_tree_key) result->key);
2058 splay_tree_remove (type_to_canon_type, (splay_tree_key) type);
2059 splay_tree_remove (uid_to_canon_type, (splay_tree_key) TYPE_UID (type));
2060 bitmap_clear_bit (global_types_seen, TYPE_UID (type));
2062 result = splay_tree_successor (all_canon_types, (splay_tree_key) key);
2065 if (dump_file)
2067 EXECUTE_IF_SET_IN_BITMAP (global_types_seen, 0, i, bi)
2069 /* The pointer types are in the global_types_full_escape
2070 bitmap but not in the backwards map. They also contain
2071 no useful information since they are not marked. */
2072 tree type = type_for_uid (i);
2073 fprintf(dump_file, "type %d ", i);
2074 print_generic_expr (dump_file, type, 0);
2075 if (bitmap_bit_p (global_types_full_escape, i))
2076 fprintf(dump_file, " escaped\n");
2077 else
2078 fprintf(dump_file, " contained\n");
2082 /* Get rid of uid_to_addressof_up_map and its bitmaps. */
2083 result = splay_tree_min (uid_to_addressof_up_map);
2084 while (result)
2086 int uid = (int)result->key;
2087 bitmap bm = (bitmap)result->value;
2089 BITMAP_FREE (bm);
2090 splay_tree_remove (uid_to_addressof_up_map, (splay_tree_key) uid);
2091 result = splay_tree_successor (uid_to_addressof_up_map, uid);
2094 /* Get rid of the subtype map. */
2095 result = splay_tree_min (uid_to_subtype_map);
2096 while (result)
2098 bitmap b = (bitmap)result->value;
2099 BITMAP_FREE(b);
2100 splay_tree_remove (uid_to_subtype_map, result->key);
2101 result = splay_tree_min (uid_to_subtype_map);
2103 splay_tree_delete (uid_to_subtype_map);
2104 uid_to_subtype_map = NULL;
2106 BITMAP_FREE (global_types_exposed_parameter);
2107 BITMAP_FREE (been_there_done_that);
2108 BITMAP_FREE (bitmap_tmp);
2109 return 0;
2112 static bool
2113 gate_type_escape_vars (void)
2115 return flag_ipa_struct_reorg && flag_whole_program && (optimize > 0);
2118 struct simple_ipa_opt_pass pass_ipa_type_escape =
2121 SIMPLE_IPA_PASS,
2122 "type-escape-var", /* name */
2123 gate_type_escape_vars, /* gate */
2124 type_escape_execute, /* execute */
2125 NULL, /* sub */
2126 NULL, /* next */
2127 0, /* static_pass_number */
2128 TV_IPA_TYPE_ESCAPE, /* tv_id */
2129 0, /* properties_required */
2130 0, /* properties_provided */
2131 0, /* properties_destroyed */
2132 0, /* todo_flags_start */
2133 0 /* todo_flags_finish */