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1 /* SSA operands management for trees.
2 Copyright (C) 2003-2013 Free Software Foundation, Inc.
3
4 This file is part of GCC.
5
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 3, or (at your option)
9 any later version.
10
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.
15
16 You should have received a copy of the GNU General Public License
17 along with GCC; see the file COPYING3. If not see
18 <http://www.gnu.org/licenses/>. */
19
20 #include "config.h"
21 #include "system.h"
22 #include "coretypes.h"
23 #include "tm.h"
24 #include "tree.h"
25 #include "flags.h"
26 #include "function.h"
27 #include "gimple-pretty-print.h"
28 #include "tree-ssa.h"
29 #include "tree-inline.h"
30 #include "timevar.h"
31 #include "dumpfile.h"
32 #include "ggc.h"
33 #include "timevar.h"
34 #include "langhooks.h"
35 #include "diagnostic-core.h"
36
37
38 /* This file contains the code required to manage the operands cache of the
39 SSA optimizer. For every stmt, we maintain an operand cache in the stmt
40 annotation. This cache contains operands that will be of interest to
41 optimizers and other passes wishing to manipulate the IL.
42
43 The operand type are broken up into REAL and VIRTUAL operands. The real
44 operands are represented as pointers into the stmt's operand tree. Thus
45 any manipulation of the real operands will be reflected in the actual tree.
46 Virtual operands are represented solely in the cache, although the base
47 variable for the SSA_NAME may, or may not occur in the stmt's tree.
48 Manipulation of the virtual operands will not be reflected in the stmt tree.
49
50 The routines in this file are concerned with creating this operand cache
51 from a stmt tree.
52
53 The operand tree is the parsed by the various get_* routines which look
54 through the stmt tree for the occurrence of operands which may be of
55 interest, and calls are made to the append_* routines whenever one is
56 found. There are 4 of these routines, each representing one of the
57 4 types of operands. Defs, Uses, Virtual Uses, and Virtual May Defs.
58
59 The append_* routines check for duplication, and simply keep a list of
60 unique objects for each operand type in the build_* extendable vectors.
61
62 Once the stmt tree is completely parsed, the finalize_ssa_operands()
63 routine is called, which proceeds to perform the finalization routine
64 on each of the 4 operand vectors which have been built up.
65
66 If the stmt had a previous operand cache, the finalization routines
67 attempt to match up the new operands with the old ones. If it's a perfect
68 match, the old vector is simply reused. If it isn't a perfect match, then
69 a new vector is created and the new operands are placed there. For
70 virtual operands, if the previous cache had SSA_NAME version of a
71 variable, and that same variable occurs in the same operands cache, then
72 the new cache vector will also get the same SSA_NAME.
73
74 i.e., if a stmt had a VUSE of 'a_5', and 'a' occurs in the new
75 operand vector for VUSE, then the new vector will also be modified
76 such that it contains 'a_5' rather than 'a'. */
77
78
79 /* Flags to describe operand properties in helpers. */
80
81 /* By default, operands are loaded. */
82 #define opf_use 0
83
84 /* Operand is the target of an assignment expression or a
85 call-clobbered variable. */
86 #define opf_def (1 << 0)
87
88 /* No virtual operands should be created in the expression. This is used
89 when traversing ADDR_EXPR nodes which have different semantics than
90 other expressions. Inside an ADDR_EXPR node, the only operands that we
91 need to consider are indices into arrays. For instance, &a.b[i] should
92 generate a USE of 'i' but it should not generate a VUSE for 'a' nor a
93 VUSE for 'b'. */
94 #define opf_no_vops (1 << 1)
95
96 /* Operand is an implicit reference. This is used to distinguish
97 explicit assignments in the form of MODIFY_EXPR from
98 clobbering sites like function calls or ASM_EXPRs. */
99 #define opf_implicit (1 << 2)
100
101 /* Operand is in a place where address-taken does not imply addressable. */
102 #define opf_non_addressable (1 << 3)
103
104 /* Operand is in a place where opf_non_addressable does not apply. */
105 #define opf_not_non_addressable (1 << 4)
106
107 /* Array for building all the use operands. */
108 static vec<tree> build_uses;
109
110 /* The built VDEF operand. */
111 static tree build_vdef;
112
113 /* The built VUSE operand. */
114 static tree build_vuse;
115
116 /* Bitmap obstack for our datastructures that needs to survive across
117 compilations of multiple functions. */
118 static bitmap_obstack operands_bitmap_obstack;
119
120 static void get_expr_operands (gimple, tree *, int);
121
122 /* Number of functions with initialized ssa_operands. */
123 static int n_initialized = 0;
124
125
126 /* Return true if the SSA operands cache is active. */
127
128 bool
129 ssa_operands_active (struct function *fun)
130 {
131 if (fun == NULL)
132 return false;
133
134 return fun->gimple_df && gimple_ssa_operands (fun)->ops_active;
135 }
136
137
138 /* Create the VOP variable, an artificial global variable to act as a
139 representative of all of the virtual operands FUD chain. */
140
141 static void
142 create_vop_var (struct function *fn)
143 {
144 tree global_var;
145
146 gcc_assert (fn->gimple_df->vop == NULL_TREE);
147
148 global_var = build_decl (BUILTINS_LOCATION, VAR_DECL,
149 get_identifier (".MEM"),
150 void_type_node);
151 DECL_ARTIFICIAL (global_var) = 1;
152 TREE_READONLY (global_var) = 0;
153 DECL_EXTERNAL (global_var) = 1;
154 TREE_STATIC (global_var) = 1;
155 TREE_USED (global_var) = 1;
156 DECL_CONTEXT (global_var) = NULL_TREE;
157 TREE_THIS_VOLATILE (global_var) = 0;
158 TREE_ADDRESSABLE (global_var) = 0;
159 VAR_DECL_IS_VIRTUAL_OPERAND (global_var) = 1;
160
161 fn->gimple_df->vop = global_var;
162 }
163
164 /* These are the sizes of the operand memory buffer in bytes which gets
165 allocated each time more operands space is required. The final value is
166 the amount that is allocated every time after that.
167 In 1k we can fit 25 use operands (or 63 def operands) on a host with
168 8 byte pointers, that would be 10 statements each with 1 def and 2
169 uses. */
170
171 #define OP_SIZE_INIT 0
172 #define OP_SIZE_1 (1024 - sizeof (void *))
173 #define OP_SIZE_2 (1024 * 4 - sizeof (void *))
174 #define OP_SIZE_3 (1024 * 16 - sizeof (void *))
175
176 /* Initialize the operand cache routines. */
177
178 void
179 init_ssa_operands (struct function *fn)
180 {
181 if (!n_initialized++)
182 {
183 build_uses.create (10);
184 build_vuse = NULL_TREE;
185 build_vdef = NULL_TREE;
186 bitmap_obstack_initialize (&operands_bitmap_obstack);
187 }
188
189 gcc_assert (gimple_ssa_operands (fn)->operand_memory == NULL);
190 gimple_ssa_operands (fn)->operand_memory_index
191 = gimple_ssa_operands (fn)->ssa_operand_mem_size;
192 gimple_ssa_operands (fn)->ops_active = true;
193 gimple_ssa_operands (fn)->ssa_operand_mem_size = OP_SIZE_INIT;
194 create_vop_var (fn);
195 }
196
197
198 /* Dispose of anything required by the operand routines. */
199
200 void
201 fini_ssa_operands (void)
202 {
203 struct ssa_operand_memory_d *ptr;
204
205 if (!--n_initialized)
206 {
207 build_uses.release ();
208 build_vdef = NULL_TREE;
209 build_vuse = NULL_TREE;
210 }
211
212 gimple_ssa_operands (cfun)->free_uses = NULL;
213
214 while ((ptr = gimple_ssa_operands (cfun)->operand_memory) != NULL)
215 {
216 gimple_ssa_operands (cfun)->operand_memory
217 = gimple_ssa_operands (cfun)->operand_memory->next;
218 ggc_free (ptr);
219 }
220
221 gimple_ssa_operands (cfun)->ops_active = false;
222
223 if (!n_initialized)
224 bitmap_obstack_release (&operands_bitmap_obstack);
225
226 cfun->gimple_df->vop = NULL_TREE;
227 }
228
229
230 /* Return memory for an operand of size SIZE. */
231
232 static inline void *
233 ssa_operand_alloc (unsigned size)
234 {
235 char *ptr;
236
237 gcc_assert (size == sizeof (struct use_optype_d));
238
239 if (gimple_ssa_operands (cfun)->operand_memory_index + size
240 >= gimple_ssa_operands (cfun)->ssa_operand_mem_size)
241 {
242 struct ssa_operand_memory_d *ptr;
243
244 switch (gimple_ssa_operands (cfun)->ssa_operand_mem_size)
245 {
246 case OP_SIZE_INIT:
247 gimple_ssa_operands (cfun)->ssa_operand_mem_size = OP_SIZE_1;
248 break;
249 case OP_SIZE_1:
250 gimple_ssa_operands (cfun)->ssa_operand_mem_size = OP_SIZE_2;
251 break;
252 case OP_SIZE_2:
253 case OP_SIZE_3:
254 gimple_ssa_operands (cfun)->ssa_operand_mem_size = OP_SIZE_3;
255 break;
256 default:
257 gcc_unreachable ();
258 }
259
260
261 ptr = ggc_alloc_ssa_operand_memory_d (sizeof (void *)
262 + gimple_ssa_operands (cfun)->ssa_operand_mem_size);
263
264 ptr->next = gimple_ssa_operands (cfun)->operand_memory;
265 gimple_ssa_operands (cfun)->operand_memory = ptr;
266 gimple_ssa_operands (cfun)->operand_memory_index = 0;
267 }
268
269 ptr = &(gimple_ssa_operands (cfun)->operand_memory
270 ->mem[gimple_ssa_operands (cfun)->operand_memory_index]);
271 gimple_ssa_operands (cfun)->operand_memory_index += size;
272 return ptr;
273 }
274
275
276 /* Allocate a USE operand. */
277
278 static inline struct use_optype_d *
279 alloc_use (void)
280 {
281 struct use_optype_d *ret;
282 if (gimple_ssa_operands (cfun)->free_uses)
283 {
284 ret = gimple_ssa_operands (cfun)->free_uses;
285 gimple_ssa_operands (cfun)->free_uses
286 = gimple_ssa_operands (cfun)->free_uses->next;
287 }
288 else
289 ret = (struct use_optype_d *)
290 ssa_operand_alloc (sizeof (struct use_optype_d));
291 return ret;
292 }
293
294
295 /* Adds OP to the list of uses of statement STMT after LAST. */
296
297 static inline use_optype_p
298 add_use_op (gimple stmt, tree *op, use_optype_p last)
299 {
300 use_optype_p new_use;
301
302 new_use = alloc_use ();
303 USE_OP_PTR (new_use)->use = op;
304 link_imm_use_stmt (USE_OP_PTR (new_use), *op, stmt);
305 last->next = new_use;
306 new_use->next = NULL;
307 return new_use;
308 }
309
310
311
312 /* Takes elements from build_defs and turns them into def operands of STMT.
313 TODO -- Make build_defs vec of tree *. */
314
315 static inline void
316 finalize_ssa_defs (gimple stmt)
317 {
318 /* Pre-pend the vdef we may have built. */
319 if (build_vdef != NULL_TREE)
320 {
321 tree oldvdef = gimple_vdef (stmt);
322 if (oldvdef
323 && TREE_CODE (oldvdef) == SSA_NAME)
324 oldvdef = SSA_NAME_VAR (oldvdef);
325 if (oldvdef != build_vdef)
326 gimple_set_vdef (stmt, build_vdef);
327 }
328
329 /* Clear and unlink a no longer necessary VDEF. */
330 if (build_vdef == NULL_TREE
331 && gimple_vdef (stmt) != NULL_TREE)
332 {
333 if (TREE_CODE (gimple_vdef (stmt)) == SSA_NAME)
334 {
335 unlink_stmt_vdef (stmt);
336 release_ssa_name (gimple_vdef (stmt));
337 }
338 gimple_set_vdef (stmt, NULL_TREE);
339 }
340
341 /* If we have a non-SSA_NAME VDEF, mark it for renaming. */
342 if (gimple_vdef (stmt)
343 && TREE_CODE (gimple_vdef (stmt)) != SSA_NAME)
344 {
345 cfun->gimple_df->rename_vops = 1;
346 cfun->gimple_df->ssa_renaming_needed = 1;
347 }
348 }
349
350
351 /* Takes elements from build_uses and turns them into use operands of STMT.
352 TODO -- Make build_uses vec of tree *. */
353
354 static inline void
355 finalize_ssa_uses (gimple stmt)
356 {
357 unsigned new_i;
358 struct use_optype_d new_list;
359 use_optype_p old_ops, ptr, last;
360
361 /* Pre-pend the VUSE we may have built. */
362 if (build_vuse != NULL_TREE)
363 {
364 tree oldvuse = gimple_vuse (stmt);
365 if (oldvuse
366 && TREE_CODE (oldvuse) == SSA_NAME)
367 oldvuse = SSA_NAME_VAR (oldvuse);
368 if (oldvuse != (build_vuse != NULL_TREE
369 ? build_vuse : build_vdef))
370 gimple_set_vuse (stmt, NULL_TREE);
371 build_uses.safe_insert (0, (tree)gimple_vuse_ptr (stmt));
372 }
373
374 new_list.next = NULL;
375 last = &new_list;
376
377 old_ops = gimple_use_ops (stmt);
378
379 /* Clear a no longer necessary VUSE. */
380 if (build_vuse == NULL_TREE
381 && gimple_vuse (stmt) != NULL_TREE)
382 gimple_set_vuse (stmt, NULL_TREE);
383
384 /* If there is anything in the old list, free it. */
385 if (old_ops)
386 {
387 for (ptr = old_ops; ptr; ptr = ptr->next)
388 delink_imm_use (USE_OP_PTR (ptr));
389 old_ops->next = gimple_ssa_operands (cfun)->free_uses;
390 gimple_ssa_operands (cfun)->free_uses = old_ops;
391 }
392
393 /* If we added a VUSE, make sure to set the operand if it is not already
394 present and mark it for renaming. */
395 if (build_vuse != NULL_TREE
396 && gimple_vuse (stmt) == NULL_TREE)
397 {
398 gimple_set_vuse (stmt, gimple_vop (cfun));
399 cfun->gimple_df->rename_vops = 1;
400 cfun->gimple_df->ssa_renaming_needed = 1;
401 }
402
403 /* Now create nodes for all the new nodes. */
404 for (new_i = 0; new_i < build_uses.length (); new_i++)
405 {
406 tree *op = (tree *) build_uses[new_i];
407 last = add_use_op (stmt, op, last);
408 }
409
410 /* Now set the stmt's operands. */
411 gimple_set_use_ops (stmt, new_list.next);
412 }
413
414
415 /* Clear the in_list bits and empty the build array for VDEFs and
416 VUSEs. */
417
418 static inline void
419 cleanup_build_arrays (void)
420 {
421 build_vdef = NULL_TREE;
422 build_vuse = NULL_TREE;
423 build_uses.truncate (0);
424 }
425
426
427 /* Finalize all the build vectors, fill the new ones into INFO. */
428
429 static inline void
430 finalize_ssa_stmt_operands (gimple stmt)
431 {
432 finalize_ssa_defs (stmt);
433 finalize_ssa_uses (stmt);
434 cleanup_build_arrays ();
435 }
436
437
438 /* Start the process of building up operands vectors in INFO. */
439
440 static inline void
441 start_ssa_stmt_operands (void)
442 {
443 gcc_assert (build_uses.length () == 0);
444 gcc_assert (build_vuse == NULL_TREE);
445 gcc_assert (build_vdef == NULL_TREE);
446 }
447
448
449 /* Add USE_P to the list of pointers to operands. */
450
451 static inline void
452 append_use (tree *use_p)
453 {
454 build_uses.safe_push ((tree) use_p);
455 }
456
457
458 /* Add VAR to the set of variables that require a VDEF operator. */
459
460 static inline void
461 append_vdef (tree var)
462 {
463 if (!optimize)
464 return;
465
466 gcc_assert ((build_vdef == NULL_TREE
467 || build_vdef == var)
468 && (build_vuse == NULL_TREE
469 || build_vuse == var));
470
471 build_vdef = var;
472 build_vuse = var;
473 }
474
475
476 /* Add VAR to the set of variables that require a VUSE operator. */
477
478 static inline void
479 append_vuse (tree var)
480 {
481 if (!optimize)
482 return;
483
484 gcc_assert (build_vuse == NULL_TREE
485 || build_vuse == var);
486
487 build_vuse = var;
488 }
489
490 /* Add virtual operands for STMT. FLAGS is as in get_expr_operands. */
491
492 static void
493 add_virtual_operand (gimple stmt ATTRIBUTE_UNUSED, int flags)
494 {
495 /* Add virtual operands to the stmt, unless the caller has specifically
496 requested not to do that (used when adding operands inside an
497 ADDR_EXPR expression). */
498 if (flags & opf_no_vops)
499 return;
500
501 gcc_assert (!is_gimple_debug (stmt));
502
503 if (flags & opf_def)
504 append_vdef (gimple_vop (cfun));
505 else
506 append_vuse (gimple_vop (cfun));
507 }
508
509
510 /* Add *VAR_P to the appropriate operand array for statement STMT.
511 FLAGS is as in get_expr_operands. If *VAR_P is a GIMPLE register,
512 it will be added to the statement's real operands, otherwise it is
513 added to virtual operands. */
514
515 static void
516 add_stmt_operand (tree *var_p, gimple stmt, int flags)
517 {
518 tree var = *var_p;
519
520 gcc_assert (SSA_VAR_P (*var_p));
521
522 if (is_gimple_reg (var))
523 {
524 /* The variable is a GIMPLE register. Add it to real operands. */
525 if (flags & opf_def)
526 ;
527 else
528 append_use (var_p);
529 if (DECL_P (*var_p))
530 cfun->gimple_df->ssa_renaming_needed = 1;
531 }
532 else
533 {
534 /* Mark statements with volatile operands. */
535 if (!(flags & opf_no_vops)
536 && TREE_THIS_VOLATILE (var))
537 gimple_set_has_volatile_ops (stmt, true);
538
539 /* The variable is a memory access. Add virtual operands. */
540 add_virtual_operand (stmt, flags);
541 }
542 }
543
544 /* Mark the base address of REF as having its address taken.
545 REF may be a single variable whose address has been taken or any
546 other valid GIMPLE memory reference (structure reference, array,
547 etc). */
548
549 static void
550 mark_address_taken (tree ref)
551 {
552 tree var;
553
554 /* Note that it is *NOT OKAY* to use the target of a COMPONENT_REF
555 as the only thing we take the address of. If VAR is a structure,
556 taking the address of a field means that the whole structure may
557 be referenced using pointer arithmetic. See PR 21407 and the
558 ensuing mailing list discussion. */
559 var = get_base_address (ref);
560 if (var)
561 {
562 if (DECL_P (var))
563 TREE_ADDRESSABLE (var) = 1;
564 else if (TREE_CODE (var) == MEM_REF
565 && TREE_CODE (TREE_OPERAND (var, 0)) == ADDR_EXPR
566 && DECL_P (TREE_OPERAND (TREE_OPERAND (var, 0), 0)))
567 TREE_ADDRESSABLE (TREE_OPERAND (TREE_OPERAND (var, 0), 0)) = 1;
568 }
569 }
570
571
572 /* A subroutine of get_expr_operands to handle MEM_REF.
573
574 STMT is the statement being processed, EXPR is the MEM_REF
575 that got us here.
576
577 FLAGS is as in get_expr_operands. */
578
579 static void
580 get_indirect_ref_operands (gimple stmt, tree expr, int flags)
581 {
582 tree *pptr = &TREE_OPERAND (expr, 0);
583
584 if (!(flags & opf_no_vops)
585 && TREE_THIS_VOLATILE (expr))
586 gimple_set_has_volatile_ops (stmt, true);
587
588 /* Add the VOP. */
589 add_virtual_operand (stmt, flags);
590
591 /* If requested, add a USE operand for the base pointer. */
592 get_expr_operands (stmt, pptr,
593 opf_non_addressable | opf_use
594 | (flags & (opf_no_vops|opf_not_non_addressable)));
595 }
596
597
598 /* A subroutine of get_expr_operands to handle TARGET_MEM_REF. */
599
600 static void
601 get_tmr_operands (gimple stmt, tree expr, int flags)
602 {
603 if (!(flags & opf_no_vops)
604 && TREE_THIS_VOLATILE (expr))
605 gimple_set_has_volatile_ops (stmt, true);
606
607 /* First record the real operands. */
608 get_expr_operands (stmt, &TMR_BASE (expr), opf_use | (flags & opf_no_vops));
609 get_expr_operands (stmt, &TMR_INDEX (expr), opf_use | (flags & opf_no_vops));
610 get_expr_operands (stmt, &TMR_INDEX2 (expr), opf_use | (flags & opf_no_vops));
611
612 add_virtual_operand (stmt, flags);
613 }
614
615
616 /* If STMT is a call that may clobber globals and other symbols that
617 escape, add them to the VDEF/VUSE lists for it. */
618
619 static void
620 maybe_add_call_vops (gimple stmt)
621 {
622 int call_flags = gimple_call_flags (stmt);
623
624 /* If aliases have been computed already, add VDEF or VUSE
625 operands for all the symbols that have been found to be
626 call-clobbered. */
627 if (!(call_flags & ECF_NOVOPS))
628 {
629 /* A 'pure' or a 'const' function never call-clobbers anything.
630 A 'noreturn' function might, but since we don't return anyway
631 there is no point in recording that. */
632 if (!(call_flags & (ECF_PURE | ECF_CONST | ECF_NORETURN)))
633 add_virtual_operand (stmt, opf_def);
634 else if (!(call_flags & ECF_CONST))
635 add_virtual_operand (stmt, opf_use);
636 }
637 }
638
639
640 /* Scan operands in the ASM_EXPR stmt referred to in INFO. */
641
642 static void
643 get_asm_expr_operands (gimple stmt)
644 {
645 size_t i, noutputs;
646 const char **oconstraints;
647 const char *constraint;
648 bool allows_mem, allows_reg, is_inout;
649
650 noutputs = gimple_asm_noutputs (stmt);
651 oconstraints = (const char **) alloca ((noutputs) * sizeof (const char *));
652
653 /* Gather all output operands. */
654 for (i = 0; i < gimple_asm_noutputs (stmt); i++)
655 {
656 tree link = gimple_asm_output_op (stmt, i);
657 constraint = TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (link)));
658 oconstraints[i] = constraint;
659 parse_output_constraint (&constraint, i, 0, 0, &allows_mem,
660 &allows_reg, &is_inout);
661
662 /* This should have been split in gimplify_asm_expr. */
663 gcc_assert (!allows_reg || !is_inout);
664
665 /* Memory operands are addressable. Note that STMT needs the
666 address of this operand. */
667 if (!allows_reg && allows_mem)
668 mark_address_taken (TREE_VALUE (link));
669
670 get_expr_operands (stmt, &TREE_VALUE (link), opf_def | opf_not_non_addressable);
671 }
672
673 /* Gather all input operands. */
674 for (i = 0; i < gimple_asm_ninputs (stmt); i++)
675 {
676 tree link = gimple_asm_input_op (stmt, i);
677 constraint = TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (link)));
678 parse_input_constraint (&constraint, 0, 0, noutputs, 0, oconstraints,
679 &allows_mem, &allows_reg);
680
681 /* Memory operands are addressable. Note that STMT needs the
682 address of this operand. */
683 if (!allows_reg && allows_mem)
684 mark_address_taken (TREE_VALUE (link));
685
686 get_expr_operands (stmt, &TREE_VALUE (link), opf_not_non_addressable);
687 }
688
689 /* Clobber all memory and addressable symbols for asm ("" : : : "memory"); */
690 if (gimple_asm_clobbers_memory_p (stmt))
691 add_virtual_operand (stmt, opf_def);
692 }
693
694
695 /* Recursively scan the expression pointed to by EXPR_P in statement
696 STMT. FLAGS is one of the OPF_* constants modifying how to
697 interpret the operands found. */
698
699 static void
700 get_expr_operands (gimple stmt, tree *expr_p, int flags)
701 {
702 enum tree_code code;
703 enum tree_code_class codeclass;
704 tree expr = *expr_p;
705 int uflags = opf_use;
706
707 if (expr == NULL)
708 return;
709
710 if (is_gimple_debug (stmt))
711 uflags |= (flags & opf_no_vops);
712
713 code = TREE_CODE (expr);
714 codeclass = TREE_CODE_CLASS (code);
715
716 switch (code)
717 {
718 case ADDR_EXPR:
719 /* Taking the address of a variable does not represent a
720 reference to it, but the fact that the statement takes its
721 address will be of interest to some passes (e.g. alias
722 resolution). */
723 if ((!(flags & opf_non_addressable)
724 || (flags & opf_not_non_addressable))
725 && !is_gimple_debug (stmt))
726 mark_address_taken (TREE_OPERAND (expr, 0));
727
728 /* If the address is invariant, there may be no interesting
729 variable references inside. */
730 if (is_gimple_min_invariant (expr))
731 return;
732
733 /* Otherwise, there may be variables referenced inside but there
734 should be no VUSEs created, since the referenced objects are
735 not really accessed. The only operands that we should find
736 here are ARRAY_REF indices which will always be real operands
737 (GIMPLE does not allow non-registers as array indices). */
738 flags |= opf_no_vops;
739 get_expr_operands (stmt, &TREE_OPERAND (expr, 0),
740 flags | opf_not_non_addressable);
741 return;
742
743 case SSA_NAME:
744 case VAR_DECL:
745 case PARM_DECL:
746 case RESULT_DECL:
747 add_stmt_operand (expr_p, stmt, flags);
748 return;
749
750 case DEBUG_EXPR_DECL:
751 gcc_assert (gimple_debug_bind_p (stmt));
752 return;
753
754 case MEM_REF:
755 get_indirect_ref_operands (stmt, expr, flags);
756 return;
757
758 case TARGET_MEM_REF:
759 get_tmr_operands (stmt, expr, flags);
760 return;
761
762 case ARRAY_REF:
763 case ARRAY_RANGE_REF:
764 case COMPONENT_REF:
765 case REALPART_EXPR:
766 case IMAGPART_EXPR:
767 {
768 if (!(flags & opf_no_vops)
769 && TREE_THIS_VOLATILE (expr))
770 gimple_set_has_volatile_ops (stmt, true);
771
772 get_expr_operands (stmt, &TREE_OPERAND (expr, 0), flags);
773
774 if (code == COMPONENT_REF)
775 {
776 if (!(flags & opf_no_vops)
777 && TREE_THIS_VOLATILE (TREE_OPERAND (expr, 1)))
778 gimple_set_has_volatile_ops (stmt, true);
779 get_expr_operands (stmt, &TREE_OPERAND (expr, 2), uflags);
780 }
781 else if (code == ARRAY_REF || code == ARRAY_RANGE_REF)
782 {
783 get_expr_operands (stmt, &TREE_OPERAND (expr, 1), uflags);
784 get_expr_operands (stmt, &TREE_OPERAND (expr, 2), uflags);
785 get_expr_operands (stmt, &TREE_OPERAND (expr, 3), uflags);
786 }
787
788 return;
789 }
790
791 case WITH_SIZE_EXPR:
792 /* WITH_SIZE_EXPR is a pass-through reference to its first argument,
793 and an rvalue reference to its second argument. */
794 get_expr_operands (stmt, &TREE_OPERAND (expr, 1), uflags);
795 get_expr_operands (stmt, &TREE_OPERAND (expr, 0), flags);
796 return;
797
798 case COND_EXPR:
799 case VEC_COND_EXPR:
800 case VEC_PERM_EXPR:
801 get_expr_operands (stmt, &TREE_OPERAND (expr, 0), uflags);
802 get_expr_operands (stmt, &TREE_OPERAND (expr, 1), uflags);
803 get_expr_operands (stmt, &TREE_OPERAND (expr, 2), uflags);
804 return;
805
806 case CONSTRUCTOR:
807 {
808 /* General aggregate CONSTRUCTORs have been decomposed, but they
809 are still in use as the COMPLEX_EXPR equivalent for vectors. */
810 constructor_elt *ce;
811 unsigned HOST_WIDE_INT idx;
812
813 /* A volatile constructor is actually TREE_CLOBBER_P, transfer
814 the volatility to the statement, don't use TREE_CLOBBER_P for
815 mirroring the other uses of THIS_VOLATILE in this file. */
816 if (!(flags & opf_no_vops)
817 && TREE_THIS_VOLATILE (expr))
818 gimple_set_has_volatile_ops (stmt, true);
819
820 for (idx = 0;
821 vec_safe_iterate (CONSTRUCTOR_ELTS (expr), idx, &ce);
822 idx++)
823 get_expr_operands (stmt, &ce->value, uflags);
824
825 return;
826 }
827
828 case BIT_FIELD_REF:
829 if (!(flags & opf_no_vops)
830 && TREE_THIS_VOLATILE (expr))
831 gimple_set_has_volatile_ops (stmt, true);
832 /* FALLTHRU */
833
834 case VIEW_CONVERT_EXPR:
835 do_unary:
836 get_expr_operands (stmt, &TREE_OPERAND (expr, 0), flags);
837 return;
838
839 case COMPOUND_EXPR:
840 case OBJ_TYPE_REF:
841 case ASSERT_EXPR:
842 do_binary:
843 {
844 get_expr_operands (stmt, &TREE_OPERAND (expr, 0), flags);
845 get_expr_operands (stmt, &TREE_OPERAND (expr, 1), flags);
846 return;
847 }
848
849 case DOT_PROD_EXPR:
850 case REALIGN_LOAD_EXPR:
851 case WIDEN_MULT_PLUS_EXPR:
852 case WIDEN_MULT_MINUS_EXPR:
853 case FMA_EXPR:
854 {
855 get_expr_operands (stmt, &TREE_OPERAND (expr, 0), flags);
856 get_expr_operands (stmt, &TREE_OPERAND (expr, 1), flags);
857 get_expr_operands (stmt, &TREE_OPERAND (expr, 2), flags);
858 return;
859 }
860
861 case FUNCTION_DECL:
862 case LABEL_DECL:
863 case CONST_DECL:
864 case CASE_LABEL_EXPR:
865 /* Expressions that make no memory references. */
866 return;
867
868 default:
869 if (codeclass == tcc_unary)
870 goto do_unary;
871 if (codeclass == tcc_binary || codeclass == tcc_comparison)
872 goto do_binary;
873 if (codeclass == tcc_constant || codeclass == tcc_type)
874 return;
875 }
876
877 /* If we get here, something has gone wrong. */
878 #ifdef ENABLE_CHECKING
879 fprintf (stderr, "unhandled expression in get_expr_operands():\n");
880 debug_tree (expr);
881 fputs ("\n", stderr);
882 #endif
883 gcc_unreachable ();
884 }
885
886
887 /* Parse STMT looking for operands. When finished, the various
888 build_* operand vectors will have potential operands in them. */
889
890 static void
891 parse_ssa_operands (gimple stmt)
892 {
893 enum gimple_code code = gimple_code (stmt);
894 size_t i, n, start = 0;
895
896 switch (code)
897 {
898 case GIMPLE_ASM:
899 get_asm_expr_operands (stmt);
900 break;
901
902 case GIMPLE_TRANSACTION:
903 /* The start of a transaction is a memory barrier. */
904 add_virtual_operand (stmt, opf_def | opf_use);
905 break;
906
907 case GIMPLE_DEBUG:
908 if (gimple_debug_bind_p (stmt)
909 && gimple_debug_bind_has_value_p (stmt))
910 get_expr_operands (stmt, gimple_debug_bind_get_value_ptr (stmt),
911 opf_use | opf_no_vops);
912 break;
913
914 case GIMPLE_RETURN:
915 append_vuse (gimple_vop (cfun));
916 goto do_default;
917
918 case GIMPLE_CALL:
919 /* Add call-clobbered operands, if needed. */
920 maybe_add_call_vops (stmt);
921 /* FALLTHRU */
922
923 case GIMPLE_ASSIGN:
924 get_expr_operands (stmt, gimple_op_ptr (stmt, 0), opf_def);
925 start = 1;
926 /* FALLTHRU */
927
928 default:
929 do_default:
930 n = gimple_num_ops (stmt);
931 for (i = start; i < n; i++)
932 get_expr_operands (stmt, gimple_op_ptr (stmt, i), opf_use);
933 break;
934 }
935 }
936
937
938 /* Create an operands cache for STMT. */
939
940 static void
941 build_ssa_operands (gimple stmt)
942 {
943 /* Initially assume that the statement has no volatile operands. */
944 gimple_set_has_volatile_ops (stmt, false);
945
946 start_ssa_stmt_operands ();
947 parse_ssa_operands (stmt);
948 finalize_ssa_stmt_operands (stmt);
949 }
950
951 /* Verifies SSA statement operands. */
952
953 DEBUG_FUNCTION bool
954 verify_ssa_operands (gimple stmt)
955 {
956 use_operand_p use_p;
957 def_operand_p def_p;
958 ssa_op_iter iter;
959 unsigned i;
960 tree use, def;
961 bool volatile_p = gimple_has_volatile_ops (stmt);
962
963 /* build_ssa_operands w/o finalizing them. */
964 gimple_set_has_volatile_ops (stmt, false);
965 start_ssa_stmt_operands ();
966 parse_ssa_operands (stmt);
967
968 /* Now verify the built operands are the same as present in STMT. */
969 def = gimple_vdef (stmt);
970 if (def
971 && TREE_CODE (def) == SSA_NAME)
972 def = SSA_NAME_VAR (def);
973 if (build_vdef != def)
974 {
975 error ("virtual definition of statement not up-to-date");
976 return true;
977 }
978 if (gimple_vdef (stmt)
979 && ((def_p = gimple_vdef_op (stmt)) == NULL_DEF_OPERAND_P
980 || DEF_FROM_PTR (def_p) != gimple_vdef (stmt)))
981 {
982 error ("virtual def operand missing for stmt");
983 return true;
984 }
985
986 use = gimple_vuse (stmt);
987 if (use
988 && TREE_CODE (use) == SSA_NAME)
989 use = SSA_NAME_VAR (use);
990 if (build_vuse != use)
991 {
992 error ("virtual use of statement not up-to-date");
993 return true;
994 }
995 if (gimple_vuse (stmt)
996 && ((use_p = gimple_vuse_op (stmt)) == NULL_USE_OPERAND_P
997 || USE_FROM_PTR (use_p) != gimple_vuse (stmt)))
998 {
999 error ("virtual use operand missing for stmt");
1000 return true;
1001 }
1002
1003 FOR_EACH_SSA_USE_OPERAND (use_p, stmt, iter, SSA_OP_USE)
1004 {
1005 FOR_EACH_VEC_ELT (build_uses, i, use)
1006 {
1007 if (use_p->use == (tree *)use)
1008 {
1009 build_uses[i] = NULL_TREE;
1010 break;
1011 }
1012 }
1013 if (i == build_uses.length ())
1014 {
1015 error ("excess use operand for stmt");
1016 debug_generic_expr (USE_FROM_PTR (use_p));
1017 return true;
1018 }
1019 }
1020 FOR_EACH_VEC_ELT (build_uses, i, use)
1021 if (use != NULL_TREE)
1022 {
1023 error ("use operand missing for stmt");
1024 debug_generic_expr (*(tree *)use);
1025 return true;
1026 }
1027
1028 if (gimple_has_volatile_ops (stmt) != volatile_p)
1029 {
1030 error ("stmt volatile flag not up-to-date");
1031 return true;
1032 }
1033
1034 cleanup_build_arrays ();
1035 return false;
1036 }
1037
1038
1039 /* Releases the operands of STMT back to their freelists, and clears
1040 the stmt operand lists. */
1041
1042 void
1043 free_stmt_operands (gimple stmt)
1044 {
1045 use_optype_p uses = gimple_use_ops (stmt), last_use;
1046
1047 if (uses)
1048 {
1049 for (last_use = uses; last_use->next; last_use = last_use->next)
1050 delink_imm_use (USE_OP_PTR (last_use));
1051 delink_imm_use (USE_OP_PTR (last_use));
1052 last_use->next = gimple_ssa_operands (cfun)->free_uses;
1053 gimple_ssa_operands (cfun)->free_uses = uses;
1054 gimple_set_use_ops (stmt, NULL);
1055 }
1056
1057 if (gimple_has_mem_ops (stmt))
1058 {
1059 gimple_set_vuse (stmt, NULL_TREE);
1060 gimple_set_vdef (stmt, NULL_TREE);
1061 }
1062 }
1063
1064
1065 /* Get the operands of statement STMT. */
1066
1067 void
1068 update_stmt_operands (gimple stmt)
1069 {
1070 /* If update_stmt_operands is called before SSA is initialized, do
1071 nothing. */
1072 if (!ssa_operands_active (cfun))
1073 return;
1074
1075 timevar_push (TV_TREE_OPS);
1076
1077 /* If the stmt is a noreturn call queue it to be processed by
1078 split_bbs_on_noreturn_calls during cfg cleanup. */
1079 if (is_gimple_call (stmt)
1080 && gimple_call_noreturn_p (stmt))
1081 vec_safe_push (MODIFIED_NORETURN_CALLS (cfun), stmt);
1082
1083 gcc_assert (gimple_modified_p (stmt));
1084 build_ssa_operands (stmt);
1085 gimple_set_modified (stmt, false);
1086
1087 timevar_pop (TV_TREE_OPS);
1088 }
1089
1090
1091 /* Swap operands EXP0 and EXP1 in statement STMT. No attempt is done
1092 to test the validity of the swap operation. */
1093
1094 void
1095 swap_ssa_operands (gimple stmt, tree *exp0, tree *exp1)
1096 {
1097 tree op0, op1;
1098 op0 = *exp0;
1099 op1 = *exp1;
1100
1101 gcc_checking_assert (ssa_operands_active (cfun));
1102
1103 if (op0 != op1)
1104 {
1105 /* Attempt to preserve the relative positions of these two operands in
1106 their * respective immediate use lists by adjusting their use pointer
1107 to point to the new operand position. */
1108 use_optype_p use0, use1, ptr;
1109 use0 = use1 = NULL;
1110
1111 /* Find the 2 operands in the cache, if they are there. */
1112 for (ptr = gimple_use_ops (stmt); ptr; ptr = ptr->next)
1113 if (USE_OP_PTR (ptr)->use == exp0)
1114 {
1115 use0 = ptr;
1116 break;
1117 }
1118
1119 for (ptr = gimple_use_ops (stmt); ptr; ptr = ptr->next)
1120 if (USE_OP_PTR (ptr)->use == exp1)
1121 {
1122 use1 = ptr;
1123 break;
1124 }
1125
1126 /* And adjust their location to point to the new position of the
1127 operand. */
1128 if (use0)
1129 USE_OP_PTR (use0)->use = exp1;
1130 if (use1)
1131 USE_OP_PTR (use1)->use = exp0;
1132
1133 /* Now swap the data. */
1134 *exp0 = op1;
1135 *exp1 = op0;
1136 }
1137 }
1138
1139
1140 /* Scan the immediate_use list for VAR making sure its linked properly.
1141 Return TRUE if there is a problem and emit an error message to F. */
1142
1143 DEBUG_FUNCTION bool
1144 verify_imm_links (FILE *f, tree var)
1145 {
1146 use_operand_p ptr, prev, list;
1147 int count;
1148
1149 gcc_assert (TREE_CODE (var) == SSA_NAME);
1150
1151 list = &(SSA_NAME_IMM_USE_NODE (var));
1152 gcc_assert (list->use == NULL);
1153
1154 if (list->prev == NULL)
1155 {
1156 gcc_assert (list->next == NULL);
1157 return false;
1158 }
1159
1160 prev = list;
1161 count = 0;
1162 for (ptr = list->next; ptr != list; )
1163 {
1164 if (prev != ptr->prev)
1165 goto error;
1166
1167 if (ptr->use == NULL)
1168 goto error; /* 2 roots, or SAFE guard node. */
1169 else if (*(ptr->use) != var)
1170 goto error;
1171
1172 prev = ptr;
1173 ptr = ptr->next;
1174
1175 /* Avoid infinite loops. 50,000,000 uses probably indicates a
1176 problem. */
1177 if (count++ > 50000000)
1178 goto error;
1179 }
1180
1181 /* Verify list in the other direction. */
1182 prev = list;
1183 for (ptr = list->prev; ptr != list; )
1184 {
1185 if (prev != ptr->next)
1186 goto error;
1187 prev = ptr;
1188 ptr = ptr->prev;
1189 if (count-- < 0)
1190 goto error;
1191 }
1192
1193 if (count != 0)
1194 goto error;
1195
1196 return false;
1197
1198 error:
1199 if (ptr->loc.stmt && gimple_modified_p (ptr->loc.stmt))
1200 {
1201 fprintf (f, " STMT MODIFIED. - <%p> ", (void *)ptr->loc.stmt);
1202 print_gimple_stmt (f, ptr->loc.stmt, 0, TDF_SLIM);
1203 }
1204 fprintf (f, " IMM ERROR : (use_p : tree - %p:%p)", (void *)ptr,
1205 (void *)ptr->use);
1206 print_generic_expr (f, USE_FROM_PTR (ptr), TDF_SLIM);
1207 fprintf (f, "\n");
1208 return true;
1209 }
1210
1211
1212 /* Dump all the immediate uses to FILE. */
1213
1214 void
1215 dump_immediate_uses_for (FILE *file, tree var)
1216 {
1217 imm_use_iterator iter;
1218 use_operand_p use_p;
1219
1220 gcc_assert (var && TREE_CODE (var) == SSA_NAME);
1221
1222 print_generic_expr (file, var, TDF_SLIM);
1223 fprintf (file, " : -->");
1224 if (has_zero_uses (var))
1225 fprintf (file, " no uses.\n");
1226 else
1227 if (has_single_use (var))
1228 fprintf (file, " single use.\n");
1229 else
1230 fprintf (file, "%d uses.\n", num_imm_uses (var));
1231
1232 FOR_EACH_IMM_USE_FAST (use_p, iter, var)
1233 {
1234 if (use_p->loc.stmt == NULL && use_p->use == NULL)
1235 fprintf (file, "***end of stmt iterator marker***\n");
1236 else
1237 if (!is_gimple_reg (USE_FROM_PTR (use_p)))
1238 print_gimple_stmt (file, USE_STMT (use_p), 0, TDF_VOPS|TDF_MEMSYMS);
1239 else
1240 print_gimple_stmt (file, USE_STMT (use_p), 0, TDF_SLIM);
1241 }
1242 fprintf (file, "\n");
1243 }
1244
1245
1246 /* Dump all the immediate uses to FILE. */
1247
1248 void
1249 dump_immediate_uses (FILE *file)
1250 {
1251 tree var;
1252 unsigned int x;
1253
1254 fprintf (file, "Immediate_uses: \n\n");
1255 for (x = 1; x < num_ssa_names; x++)
1256 {
1257 var = ssa_name (x);
1258 if (!var)
1259 continue;
1260 dump_immediate_uses_for (file, var);
1261 }
1262 }
1263
1264
1265 /* Dump def-use edges on stderr. */
1266
1267 DEBUG_FUNCTION void
1268 debug_immediate_uses (void)
1269 {
1270 dump_immediate_uses (stderr);
1271 }
1272
1273
1274 /* Dump def-use edges on stderr. */
1275
1276 DEBUG_FUNCTION void
1277 debug_immediate_uses_for (tree var)
1278 {
1279 dump_immediate_uses_for (stderr, var);
1280 }
1281
1282
1283 /* Return true if OP, an SSA name or a DECL is a virtual operand. */
1284
1285 bool
1286 virtual_operand_p (tree op)
1287 {
1288 if (TREE_CODE (op) == SSA_NAME)
1289 {
1290 op = SSA_NAME_VAR (op);
1291 if (!op)
1292 return false;
1293 }
1294
1295 if (TREE_CODE (op) == VAR_DECL)
1296 return VAR_DECL_IS_VIRTUAL_OPERAND (op);
1297
1298 return false;
1299 }
1300
1301 /* Unlink STMTs virtual definition from the IL by propagating its use. */
1302
1303 void
1304 unlink_stmt_vdef (gimple stmt)
1305 {
1306 use_operand_p use_p;
1307 imm_use_iterator iter;
1308 gimple use_stmt;
1309 tree vdef = gimple_vdef (stmt);
1310 tree vuse = gimple_vuse (stmt);
1311
1312 if (!vdef
1313 || TREE_CODE (vdef) != SSA_NAME)
1314 return;
1315
1316 FOR_EACH_IMM_USE_STMT (use_stmt, iter, vdef)
1317 {
1318 FOR_EACH_IMM_USE_ON_STMT (use_p, iter)
1319 SET_USE (use_p, vuse);
1320 }
1321
1322 if (SSA_NAME_OCCURS_IN_ABNORMAL_PHI (vdef))
1323 SSA_NAME_OCCURS_IN_ABNORMAL_PHI (vuse) = 1;
1324 }
1325
1326
1327 /* Return true if the var whose chain of uses starts at PTR has no
1328 nondebug uses. */
1329 bool
1330 has_zero_uses_1 (const ssa_use_operand_t *head)
1331 {
1332 const ssa_use_operand_t *ptr;
1333
1334 for (ptr = head->next; ptr != head; ptr = ptr->next)
1335 if (!is_gimple_debug (USE_STMT (ptr)))
1336 return false;
1337
1338 return true;
1339 }
1340
1341
1342 /* Return true if the var whose chain of uses starts at PTR has a
1343 single nondebug use. Set USE_P and STMT to that single nondebug
1344 use, if so, or to NULL otherwise. */
1345 bool
1346 single_imm_use_1 (const ssa_use_operand_t *head,
1347 use_operand_p *use_p, gimple *stmt)
1348 {
1349 ssa_use_operand_t *ptr, *single_use = 0;
1350
1351 for (ptr = head->next; ptr != head; ptr = ptr->next)
1352 if (!is_gimple_debug (USE_STMT (ptr)))
1353 {
1354 if (single_use)
1355 {
1356 single_use = NULL;
1357 break;
1358 }
1359 single_use = ptr;
1360 }
1361
1362 if (use_p)
1363 *use_p = single_use;
1364
1365 if (stmt)
1366 *stmt = single_use ? single_use->loc.stmt : NULL;
1367
1368 return single_use;
1369 }