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1 /* Gimple IR definitions.
2
3 Copyright (C) 2007-2020 Free Software Foundation, Inc.
4 Contributed by Aldy Hernandez <aldyh@redhat.com>
5
6 This file is part of GCC.
7
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.
12
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.
17
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/>. */
21
22 #ifndef GCC_GIMPLE_H
23 #define GCC_GIMPLE_H
24
25 #include "tree-ssa-alias.h"
26 #include "gimple-expr.h"
27
28 typedef gimple *gimple_seq_node;
29
30 enum gimple_code {
31 #define DEFGSCODE(SYM, STRING, STRUCT) SYM,
32 #include "gimple.def"
33 #undef DEFGSCODE
34 LAST_AND_UNUSED_GIMPLE_CODE
35 };
36
37 extern const char *const gimple_code_name[];
38 extern const unsigned char gimple_rhs_class_table[];
39
40 /* Strip the outermost pointer, from tr1/type_traits. */
41 template<typename T> struct remove_pointer { typedef T type; };
42 template<typename T> struct remove_pointer<T *> { typedef T type; };
43
44 /* Error out if a gimple tuple is addressed incorrectly. */
45 #if defined ENABLE_GIMPLE_CHECKING
46 #define gcc_gimple_checking_assert(EXPR) gcc_assert (EXPR)
47 extern void gimple_check_failed (const gimple *, const char *, int, \
48 const char *, enum gimple_code, \
49 enum tree_code) ATTRIBUTE_NORETURN \
50 ATTRIBUTE_COLD;
51
52 #define GIMPLE_CHECK(GS, CODE) \
53 do { \
54 const gimple *__gs = (GS); \
55 if (gimple_code (__gs) != (CODE)) \
56 gimple_check_failed (__gs, __FILE__, __LINE__, __FUNCTION__, \
57 (CODE), ERROR_MARK); \
58 } while (0)
59 template <typename T>
60 static inline T
61 GIMPLE_CHECK2(const gimple *gs,
62 #if __GNUC__ > 4 || (__GNUC__ == 4 && __GNUC_MINOR__ >= 8)
63 const char *file = __builtin_FILE (),
64 int line = __builtin_LINE (),
65 const char *fun = __builtin_FUNCTION ())
66 #else
67 const char *file = __FILE__,
68 int line = __LINE__,
69 const char *fun = NULL)
70 #endif
71 {
72 T ret = dyn_cast <T> (gs);
73 if (!ret)
74 gimple_check_failed (gs, file, line, fun,
75 remove_pointer<T>::type::code_, ERROR_MARK);
76 return ret;
77 }
78 template <typename T>
79 static inline T
80 GIMPLE_CHECK2(gimple *gs,
81 #if __GNUC__ > 4 || (__GNUC__ == 4 && __GNUC_MINOR__ >= 8)
82 const char *file = __builtin_FILE (),
83 int line = __builtin_LINE (),
84 const char *fun = __builtin_FUNCTION ())
85 #else
86 const char *file = __FILE__,
87 int line = __LINE__,
88 const char *fun = NULL)
89 #endif
90 {
91 T ret = dyn_cast <T> (gs);
92 if (!ret)
93 gimple_check_failed (gs, file, line, fun,
94 remove_pointer<T>::type::code_, ERROR_MARK);
95 return ret;
96 }
97 #else /* not ENABLE_GIMPLE_CHECKING */
98 #define gcc_gimple_checking_assert(EXPR) ((void)(0 && (EXPR)))
99 #define GIMPLE_CHECK(GS, CODE) (void)0
100 template <typename T>
101 static inline T
102 GIMPLE_CHECK2(gimple *gs)
103 {
104 return as_a <T> (gs);
105 }
106 template <typename T>
107 static inline T
108 GIMPLE_CHECK2(const gimple *gs)
109 {
110 return as_a <T> (gs);
111 }
112 #endif
113
114 /* Class of GIMPLE expressions suitable for the RHS of assignments. See
115 get_gimple_rhs_class. */
116 enum gimple_rhs_class
117 {
118 GIMPLE_INVALID_RHS, /* The expression cannot be used on the RHS. */
119 GIMPLE_TERNARY_RHS, /* The expression is a ternary operation. */
120 GIMPLE_BINARY_RHS, /* The expression is a binary operation. */
121 GIMPLE_UNARY_RHS, /* The expression is a unary operation. */
122 GIMPLE_SINGLE_RHS /* The expression is a single object (an SSA
123 name, a _DECL, a _REF, etc. */
124 };
125
126 /* Specific flags for individual GIMPLE statements. These flags are
127 always stored in gimple.subcode and they may only be
128 defined for statement codes that do not use subcodes.
129
130 Values for the masks can overlap as long as the overlapping values
131 are never used in the same statement class.
132
133 The maximum mask value that can be defined is 1 << 15 (i.e., each
134 statement code can hold up to 16 bitflags).
135
136 Keep this list sorted. */
137 enum gf_mask {
138 GF_ASM_INPUT = 1 << 0,
139 GF_ASM_VOLATILE = 1 << 1,
140 GF_ASM_INLINE = 1 << 2,
141 GF_CALL_FROM_THUNK = 1 << 0,
142 GF_CALL_RETURN_SLOT_OPT = 1 << 1,
143 GF_CALL_TAILCALL = 1 << 2,
144 GF_CALL_VA_ARG_PACK = 1 << 3,
145 GF_CALL_NOTHROW = 1 << 4,
146 GF_CALL_ALLOCA_FOR_VAR = 1 << 5,
147 GF_CALL_INTERNAL = 1 << 6,
148 GF_CALL_CTRL_ALTERING = 1 << 7,
149 GF_CALL_MUST_TAIL_CALL = 1 << 9,
150 GF_CALL_BY_DESCRIPTOR = 1 << 10,
151 GF_CALL_NOCF_CHECK = 1 << 11,
152 GF_OMP_PARALLEL_COMBINED = 1 << 0,
153 GF_OMP_PARALLEL_GRID_PHONY = 1 << 1,
154 GF_OMP_TASK_TASKLOOP = 1 << 0,
155 GF_OMP_TASK_TASKWAIT = 1 << 1,
156 GF_OMP_FOR_KIND_MASK = (1 << 3) - 1,
157 GF_OMP_FOR_KIND_FOR = 0,
158 GF_OMP_FOR_KIND_DISTRIBUTE = 1,
159 GF_OMP_FOR_KIND_TASKLOOP = 2,
160 GF_OMP_FOR_KIND_OACC_LOOP = 4,
161 GF_OMP_FOR_KIND_GRID_LOOP = 5,
162 GF_OMP_FOR_KIND_SIMD = 6,
163 GF_OMP_FOR_COMBINED = 1 << 3,
164 GF_OMP_FOR_COMBINED_INTO = 1 << 4,
165 /* The following flag must not be used on GF_OMP_FOR_KIND_GRID_LOOP loop
166 statements. */
167 GF_OMP_FOR_GRID_PHONY = 1 << 5,
168 /* The following two flags should only be set on GF_OMP_FOR_KIND_GRID_LOOP
169 loop statements. */
170 GF_OMP_FOR_GRID_INTRA_GROUP = 1 << 5,
171 GF_OMP_FOR_GRID_GROUP_ITER = 1 << 6,
172 GF_OMP_TARGET_KIND_MASK = (1 << 4) - 1,
173 GF_OMP_TARGET_KIND_REGION = 0,
174 GF_OMP_TARGET_KIND_DATA = 1,
175 GF_OMP_TARGET_KIND_UPDATE = 2,
176 GF_OMP_TARGET_KIND_ENTER_DATA = 3,
177 GF_OMP_TARGET_KIND_EXIT_DATA = 4,
178 GF_OMP_TARGET_KIND_OACC_PARALLEL = 5,
179 GF_OMP_TARGET_KIND_OACC_KERNELS = 6,
180 GF_OMP_TARGET_KIND_OACC_SERIAL = 7,
181 GF_OMP_TARGET_KIND_OACC_DATA = 8,
182 GF_OMP_TARGET_KIND_OACC_UPDATE = 9,
183 GF_OMP_TARGET_KIND_OACC_ENTER_EXIT_DATA = 10,
184 GF_OMP_TARGET_KIND_OACC_DECLARE = 11,
185 GF_OMP_TARGET_KIND_OACC_HOST_DATA = 12,
186 GF_OMP_TEAMS_GRID_PHONY = 1 << 0,
187 GF_OMP_TEAMS_HOST = 1 << 1,
188
189 /* True on an GIMPLE_OMP_RETURN statement if the return does not require
190 a thread synchronization via some sort of barrier. The exact barrier
191 that would otherwise be emitted is dependent on the OMP statement with
192 which this return is associated. */
193 GF_OMP_RETURN_NOWAIT = 1 << 0,
194
195 GF_OMP_SECTION_LAST = 1 << 0,
196 GF_OMP_ATOMIC_MEMORY_ORDER = (1 << 3) - 1,
197 GF_OMP_ATOMIC_NEED_VALUE = 1 << 3,
198 GF_PREDICT_TAKEN = 1 << 15
199 };
200
201 /* This subcode tells apart different kinds of stmts that are not used
202 for codegen, but rather to retain debug information. */
203 enum gimple_debug_subcode {
204 GIMPLE_DEBUG_BIND = 0,
205 GIMPLE_DEBUG_SOURCE_BIND = 1,
206 GIMPLE_DEBUG_BEGIN_STMT = 2,
207 GIMPLE_DEBUG_INLINE_ENTRY = 3
208 };
209
210 /* Masks for selecting a pass local flag (PLF) to work on. These
211 masks are used by gimple_set_plf and gimple_plf. */
212 enum plf_mask {
213 GF_PLF_1 = 1 << 0,
214 GF_PLF_2 = 1 << 1
215 };
216
217 /* Data structure definitions for GIMPLE tuples. NOTE: word markers
218 are for 64 bit hosts. */
219
220 struct GTY((desc ("gimple_statement_structure (&%h)"), tag ("GSS_BASE"),
221 chain_next ("%h.next"), variable_size))
222 gimple
223 {
224 /* [ WORD 1 ]
225 Main identifying code for a tuple. */
226 ENUM_BITFIELD(gimple_code) code : 8;
227
228 /* Nonzero if a warning should not be emitted on this tuple. */
229 unsigned int no_warning : 1;
230
231 /* Nonzero if this tuple has been visited. Passes are responsible
232 for clearing this bit before using it. */
233 unsigned int visited : 1;
234
235 /* Nonzero if this tuple represents a non-temporal move. */
236 unsigned int nontemporal_move : 1;
237
238 /* Pass local flags. These flags are free for any pass to use as
239 they see fit. Passes should not assume that these flags contain
240 any useful value when the pass starts. Any initial state that
241 the pass requires should be set on entry to the pass. See
242 gimple_set_plf and gimple_plf for usage. */
243 unsigned int plf : 2;
244
245 /* Nonzero if this statement has been modified and needs to have its
246 operands rescanned. */
247 unsigned modified : 1;
248
249 /* Nonzero if this statement contains volatile operands. */
250 unsigned has_volatile_ops : 1;
251
252 /* Padding to get subcode to 16 bit alignment. */
253 unsigned pad : 1;
254
255 /* The SUBCODE field can be used for tuple-specific flags for tuples
256 that do not require subcodes. Note that SUBCODE should be at
257 least as wide as tree codes, as several tuples store tree codes
258 in there. */
259 unsigned int subcode : 16;
260
261 /* UID of this statement. This is used by passes that want to
262 assign IDs to statements. It must be assigned and used by each
263 pass. By default it should be assumed to contain garbage. */
264 unsigned uid;
265
266 /* [ WORD 2 ]
267 Locus information for debug info. */
268 location_t location;
269
270 /* Number of operands in this tuple. */
271 unsigned num_ops;
272
273 /* [ WORD 3 ]
274 Basic block holding this statement. */
275 basic_block bb;
276
277 /* [ WORD 4-5 ]
278 Linked lists of gimple statements. The next pointers form
279 a NULL terminated list, the prev pointers are a cyclic list.
280 A gimple statement is hence also a double-ended list of
281 statements, with the pointer itself being the first element,
282 and the prev pointer being the last. */
283 gimple *next;
284 gimple *GTY((skip)) prev;
285 };
286
287
288 /* Base structure for tuples with operands. */
289
290 /* This gimple subclass has no tag value. */
291 struct GTY(())
292 gimple_statement_with_ops_base : public gimple
293 {
294 /* [ WORD 1-6 ] : base class */
295
296 /* [ WORD 7 ]
297 SSA operand vectors. NOTE: It should be possible to
298 amalgamate these vectors with the operand vector OP. However,
299 the SSA operand vectors are organized differently and contain
300 more information (like immediate use chaining). */
301 struct use_optype_d GTY((skip (""))) *use_ops;
302 };
303
304
305 /* Statements that take register operands. */
306
307 struct GTY((tag("GSS_WITH_OPS")))
308 gimple_statement_with_ops : public gimple_statement_with_ops_base
309 {
310 /* [ WORD 1-7 ] : base class */
311
312 /* [ WORD 8 ]
313 Operand vector. NOTE! This must always be the last field
314 of this structure. In particular, this means that this
315 structure cannot be embedded inside another one. */
316 tree GTY((length ("%h.num_ops"))) op[1];
317 };
318
319
320 /* Base for statements that take both memory and register operands. */
321
322 struct GTY((tag("GSS_WITH_MEM_OPS_BASE")))
323 gimple_statement_with_memory_ops_base : public gimple_statement_with_ops_base
324 {
325 /* [ WORD 1-7 ] : base class */
326
327 /* [ WORD 8-9 ]
328 Virtual operands for this statement. The GC will pick them
329 up via the ssa_names array. */
330 tree GTY((skip (""))) vdef;
331 tree GTY((skip (""))) vuse;
332 };
333
334
335 /* Statements that take both memory and register operands. */
336
337 struct GTY((tag("GSS_WITH_MEM_OPS")))
338 gimple_statement_with_memory_ops :
339 public gimple_statement_with_memory_ops_base
340 {
341 /* [ WORD 1-9 ] : base class */
342
343 /* [ WORD 10 ]
344 Operand vector. NOTE! This must always be the last field
345 of this structure. In particular, this means that this
346 structure cannot be embedded inside another one. */
347 tree GTY((length ("%h.num_ops"))) op[1];
348 };
349
350
351 /* Call statements that take both memory and register operands. */
352
353 struct GTY((tag("GSS_CALL")))
354 gcall : public gimple_statement_with_memory_ops_base
355 {
356 /* [ WORD 1-9 ] : base class */
357
358 /* [ WORD 10-13 ] */
359 struct pt_solution call_used;
360 struct pt_solution call_clobbered;
361
362 /* [ WORD 14 ] */
363 union GTY ((desc ("%1.subcode & GF_CALL_INTERNAL"))) {
364 tree GTY ((tag ("0"))) fntype;
365 enum internal_fn GTY ((tag ("GF_CALL_INTERNAL"))) internal_fn;
366 } u;
367
368 /* [ WORD 15 ]
369 Operand vector. NOTE! This must always be the last field
370 of this structure. In particular, this means that this
371 structure cannot be embedded inside another one. */
372 tree GTY((length ("%h.num_ops"))) op[1];
373
374 static const enum gimple_code code_ = GIMPLE_CALL;
375 };
376
377
378 /* OMP statements. */
379
380 struct GTY((tag("GSS_OMP")))
381 gimple_statement_omp : public gimple
382 {
383 /* [ WORD 1-6 ] : base class */
384
385 /* [ WORD 7 ] */
386 gimple_seq body;
387 };
388
389
390 /* GIMPLE_BIND */
391
392 struct GTY((tag("GSS_BIND")))
393 gbind : public gimple
394 {
395 /* [ WORD 1-6 ] : base class */
396
397 /* [ WORD 7 ]
398 Variables declared in this scope. */
399 tree vars;
400
401 /* [ WORD 8 ]
402 This is different than the BLOCK field in gimple,
403 which is analogous to TREE_BLOCK (i.e., the lexical block holding
404 this statement). This field is the equivalent of BIND_EXPR_BLOCK
405 in tree land (i.e., the lexical scope defined by this bind). See
406 gimple-low.c. */
407 tree block;
408
409 /* [ WORD 9 ] */
410 gimple_seq body;
411 };
412
413
414 /* GIMPLE_CATCH */
415
416 struct GTY((tag("GSS_CATCH")))
417 gcatch : public gimple
418 {
419 /* [ WORD 1-6 ] : base class */
420
421 /* [ WORD 7 ] */
422 tree types;
423
424 /* [ WORD 8 ] */
425 gimple_seq handler;
426 };
427
428
429 /* GIMPLE_EH_FILTER */
430
431 struct GTY((tag("GSS_EH_FILTER")))
432 geh_filter : public gimple
433 {
434 /* [ WORD 1-6 ] : base class */
435
436 /* [ WORD 7 ]
437 Filter types. */
438 tree types;
439
440 /* [ WORD 8 ]
441 Failure actions. */
442 gimple_seq failure;
443 };
444
445 /* GIMPLE_EH_ELSE */
446
447 struct GTY((tag("GSS_EH_ELSE")))
448 geh_else : public gimple
449 {
450 /* [ WORD 1-6 ] : base class */
451
452 /* [ WORD 7,8 ] */
453 gimple_seq n_body, e_body;
454 };
455
456 /* GIMPLE_EH_MUST_NOT_THROW */
457
458 struct GTY((tag("GSS_EH_MNT")))
459 geh_mnt : public gimple
460 {
461 /* [ WORD 1-6 ] : base class */
462
463 /* [ WORD 7 ] Abort function decl. */
464 tree fndecl;
465 };
466
467 /* GIMPLE_PHI */
468
469 struct GTY((tag("GSS_PHI")))
470 gphi : public gimple
471 {
472 /* [ WORD 1-6 ] : base class */
473
474 /* [ WORD 7 ] */
475 unsigned capacity;
476 unsigned nargs;
477
478 /* [ WORD 8 ] */
479 tree result;
480
481 /* [ WORD 9 ] */
482 struct phi_arg_d GTY ((length ("%h.nargs"))) args[1];
483 };
484
485
486 /* GIMPLE_RESX, GIMPLE_EH_DISPATCH */
487
488 struct GTY((tag("GSS_EH_CTRL")))
489 gimple_statement_eh_ctrl : public gimple
490 {
491 /* [ WORD 1-6 ] : base class */
492
493 /* [ WORD 7 ]
494 Exception region number. */
495 int region;
496 };
497
498 struct GTY((tag("GSS_EH_CTRL")))
499 gresx : public gimple_statement_eh_ctrl
500 {
501 /* No extra fields; adds invariant:
502 stmt->code == GIMPLE_RESX. */
503 };
504
505 struct GTY((tag("GSS_EH_CTRL")))
506 geh_dispatch : public gimple_statement_eh_ctrl
507 {
508 /* No extra fields; adds invariant:
509 stmt->code == GIMPLE_EH_DISPATH. */
510 };
511
512
513 /* GIMPLE_TRY */
514
515 struct GTY((tag("GSS_TRY")))
516 gtry : public gimple
517 {
518 /* [ WORD 1-6 ] : base class */
519
520 /* [ WORD 7 ]
521 Expression to evaluate. */
522 gimple_seq eval;
523
524 /* [ WORD 8 ]
525 Cleanup expression. */
526 gimple_seq cleanup;
527 };
528
529 /* Kind of GIMPLE_TRY statements. */
530 enum gimple_try_flags
531 {
532 /* A try/catch. */
533 GIMPLE_TRY_CATCH = 1 << 0,
534
535 /* A try/finally. */
536 GIMPLE_TRY_FINALLY = 1 << 1,
537 GIMPLE_TRY_KIND = GIMPLE_TRY_CATCH | GIMPLE_TRY_FINALLY,
538
539 /* Analogous to TRY_CATCH_IS_CLEANUP. */
540 GIMPLE_TRY_CATCH_IS_CLEANUP = 1 << 2
541 };
542
543 /* GIMPLE_WITH_CLEANUP_EXPR */
544
545 struct GTY((tag("GSS_WCE")))
546 gimple_statement_wce : public gimple
547 {
548 /* [ WORD 1-6 ] : base class */
549
550 /* Subcode: CLEANUP_EH_ONLY. True if the cleanup should only be
551 executed if an exception is thrown, not on normal exit of its
552 scope. This flag is analogous to the CLEANUP_EH_ONLY flag
553 in TARGET_EXPRs. */
554
555 /* [ WORD 7 ]
556 Cleanup expression. */
557 gimple_seq cleanup;
558 };
559
560
561 /* GIMPLE_ASM */
562
563 struct GTY((tag("GSS_ASM")))
564 gasm : public gimple_statement_with_memory_ops_base
565 {
566 /* [ WORD 1-9 ] : base class */
567
568 /* [ WORD 10 ]
569 __asm__ statement. */
570 const char *string;
571
572 /* [ WORD 11 ]
573 Number of inputs, outputs, clobbers, labels. */
574 unsigned char ni;
575 unsigned char no;
576 unsigned char nc;
577 unsigned char nl;
578
579 /* [ WORD 12 ]
580 Operand vector. NOTE! This must always be the last field
581 of this structure. In particular, this means that this
582 structure cannot be embedded inside another one. */
583 tree GTY((length ("%h.num_ops"))) op[1];
584 };
585
586 /* GIMPLE_OMP_CRITICAL */
587
588 struct GTY((tag("GSS_OMP_CRITICAL")))
589 gomp_critical : public gimple_statement_omp
590 {
591 /* [ WORD 1-7 ] : base class */
592
593 /* [ WORD 8 ] */
594 tree clauses;
595
596 /* [ WORD 9 ]
597 Critical section name. */
598 tree name;
599 };
600
601
602 struct GTY(()) gimple_omp_for_iter {
603 /* Condition code. */
604 enum tree_code cond;
605
606 /* Index variable. */
607 tree index;
608
609 /* Initial value. */
610 tree initial;
611
612 /* Final value. */
613 tree final;
614
615 /* Increment. */
616 tree incr;
617 };
618
619 /* GIMPLE_OMP_FOR */
620
621 struct GTY((tag("GSS_OMP_FOR")))
622 gomp_for : public gimple_statement_omp
623 {
624 /* [ WORD 1-7 ] : base class */
625
626 /* [ WORD 8 ] */
627 tree clauses;
628
629 /* [ WORD 9 ]
630 Number of elements in iter array. */
631 size_t collapse;
632
633 /* [ WORD 10 ] */
634 struct gimple_omp_for_iter * GTY((length ("%h.collapse"))) iter;
635
636 /* [ WORD 11 ]
637 Pre-body evaluated before the loop body begins. */
638 gimple_seq pre_body;
639 };
640
641
642 /* GIMPLE_OMP_PARALLEL, GIMPLE_OMP_TARGET, GIMPLE_OMP_TASK, GIMPLE_OMP_TEAMS */
643
644 struct GTY((tag("GSS_OMP_PARALLEL_LAYOUT")))
645 gimple_statement_omp_parallel_layout : public gimple_statement_omp
646 {
647 /* [ WORD 1-7 ] : base class */
648
649 /* [ WORD 8 ]
650 Clauses. */
651 tree clauses;
652
653 /* [ WORD 9 ]
654 Child function holding the body of the parallel region. */
655 tree child_fn;
656
657 /* [ WORD 10 ]
658 Shared data argument. */
659 tree data_arg;
660 };
661
662 /* GIMPLE_OMP_PARALLEL or GIMPLE_TASK */
663 struct GTY((tag("GSS_OMP_PARALLEL_LAYOUT")))
664 gimple_statement_omp_taskreg : public gimple_statement_omp_parallel_layout
665 {
666 /* No extra fields; adds invariant:
667 stmt->code == GIMPLE_OMP_PARALLEL
668 || stmt->code == GIMPLE_OMP_TASK
669 || stmt->code == GIMPLE_OMP_TEAMS. */
670 };
671
672 /* GIMPLE_OMP_PARALLEL */
673 struct GTY((tag("GSS_OMP_PARALLEL_LAYOUT")))
674 gomp_parallel : public gimple_statement_omp_taskreg
675 {
676 /* No extra fields; adds invariant:
677 stmt->code == GIMPLE_OMP_PARALLEL. */
678 };
679
680 /* GIMPLE_OMP_TARGET */
681 struct GTY((tag("GSS_OMP_PARALLEL_LAYOUT")))
682 gomp_target : public gimple_statement_omp_parallel_layout
683 {
684 /* No extra fields; adds invariant:
685 stmt->code == GIMPLE_OMP_TARGET. */
686 };
687
688 /* GIMPLE_OMP_TASK */
689
690 struct GTY((tag("GSS_OMP_TASK")))
691 gomp_task : public gimple_statement_omp_taskreg
692 {
693 /* [ WORD 1-10 ] : base class */
694
695 /* [ WORD 11 ]
696 Child function holding firstprivate initialization if needed. */
697 tree copy_fn;
698
699 /* [ WORD 12-13 ]
700 Size and alignment in bytes of the argument data block. */
701 tree arg_size;
702 tree arg_align;
703 };
704
705
706 /* GIMPLE_OMP_SECTION */
707 /* Uses struct gimple_statement_omp. */
708
709
710 /* GIMPLE_OMP_SECTIONS */
711
712 struct GTY((tag("GSS_OMP_SECTIONS")))
713 gomp_sections : public gimple_statement_omp
714 {
715 /* [ WORD 1-7 ] : base class */
716
717 /* [ WORD 8 ] */
718 tree clauses;
719
720 /* [ WORD 9 ]
721 The control variable used for deciding which of the sections to
722 execute. */
723 tree control;
724 };
725
726 /* GIMPLE_OMP_CONTINUE.
727
728 Note: This does not inherit from gimple_statement_omp, because we
729 do not need the body field. */
730
731 struct GTY((tag("GSS_OMP_CONTINUE")))
732 gomp_continue : public gimple
733 {
734 /* [ WORD 1-6 ] : base class */
735
736 /* [ WORD 7 ] */
737 tree control_def;
738
739 /* [ WORD 8 ] */
740 tree control_use;
741 };
742
743 /* GIMPLE_OMP_SINGLE, GIMPLE_OMP_ORDERED, GIMPLE_OMP_TASKGROUP,
744 GIMPLE_OMP_SCAN. */
745
746 struct GTY((tag("GSS_OMP_SINGLE_LAYOUT")))
747 gimple_statement_omp_single_layout : public gimple_statement_omp
748 {
749 /* [ WORD 1-7 ] : base class */
750
751 /* [ WORD 8 ] */
752 tree clauses;
753 };
754
755 struct GTY((tag("GSS_OMP_SINGLE_LAYOUT")))
756 gomp_single : public gimple_statement_omp_single_layout
757 {
758 /* No extra fields; adds invariant:
759 stmt->code == GIMPLE_OMP_SINGLE. */
760 };
761
762 struct GTY((tag("GSS_OMP_PARALLEL_LAYOUT")))
763 gomp_teams : public gimple_statement_omp_taskreg
764 {
765 /* No extra fields; adds invariant:
766 stmt->code == GIMPLE_OMP_TEAMS. */
767 };
768
769 struct GTY((tag("GSS_OMP_SINGLE_LAYOUT")))
770 gomp_ordered : public gimple_statement_omp_single_layout
771 {
772 /* No extra fields; adds invariant:
773 stmt->code == GIMPLE_OMP_ORDERED. */
774 };
775
776 struct GTY((tag("GSS_OMP_SINGLE_LAYOUT")))
777 gomp_scan : public gimple_statement_omp_single_layout
778 {
779 /* No extra fields; adds invariant:
780 stmt->code == GIMPLE_OMP_SCAN. */
781 };
782
783
784 /* GIMPLE_OMP_ATOMIC_LOAD.
785 Note: This is based on gimple, not g_s_omp, because g_s_omp
786 contains a sequence, which we don't need here. */
787
788 struct GTY((tag("GSS_OMP_ATOMIC_LOAD")))
789 gomp_atomic_load : public gimple
790 {
791 /* [ WORD 1-6 ] : base class */
792
793 /* [ WORD 7-8 ] */
794 tree rhs, lhs;
795 };
796
797 /* GIMPLE_OMP_ATOMIC_STORE.
798 See note on GIMPLE_OMP_ATOMIC_LOAD. */
799
800 struct GTY((tag("GSS_OMP_ATOMIC_STORE_LAYOUT")))
801 gimple_statement_omp_atomic_store_layout : public gimple
802 {
803 /* [ WORD 1-6 ] : base class */
804
805 /* [ WORD 7 ] */
806 tree val;
807 };
808
809 struct GTY((tag("GSS_OMP_ATOMIC_STORE_LAYOUT")))
810 gomp_atomic_store :
811 public gimple_statement_omp_atomic_store_layout
812 {
813 /* No extra fields; adds invariant:
814 stmt->code == GIMPLE_OMP_ATOMIC_STORE. */
815 };
816
817 struct GTY((tag("GSS_OMP_ATOMIC_STORE_LAYOUT")))
818 gimple_statement_omp_return :
819 public gimple_statement_omp_atomic_store_layout
820 {
821 /* No extra fields; adds invariant:
822 stmt->code == GIMPLE_OMP_RETURN. */
823 };
824
825 /* GIMPLE_TRANSACTION. */
826
827 /* Bits to be stored in the GIMPLE_TRANSACTION subcode. */
828
829 /* The __transaction_atomic was declared [[outer]] or it is
830 __transaction_relaxed. */
831 #define GTMA_IS_OUTER (1u << 0)
832 #define GTMA_IS_RELAXED (1u << 1)
833 #define GTMA_DECLARATION_MASK (GTMA_IS_OUTER | GTMA_IS_RELAXED)
834
835 /* The transaction is seen to not have an abort. */
836 #define GTMA_HAVE_ABORT (1u << 2)
837 /* The transaction is seen to have loads or stores. */
838 #define GTMA_HAVE_LOAD (1u << 3)
839 #define GTMA_HAVE_STORE (1u << 4)
840 /* The transaction MAY enter serial irrevocable mode in its dynamic scope. */
841 #define GTMA_MAY_ENTER_IRREVOCABLE (1u << 5)
842 /* The transaction WILL enter serial irrevocable mode.
843 An irrevocable block post-dominates the entire transaction, such
844 that all invocations of the transaction will go serial-irrevocable.
845 In such case, we don't bother instrumenting the transaction, and
846 tell the runtime that it should begin the transaction in
847 serial-irrevocable mode. */
848 #define GTMA_DOES_GO_IRREVOCABLE (1u << 6)
849 /* The transaction contains no instrumentation code whatsover, most
850 likely because it is guaranteed to go irrevocable upon entry. */
851 #define GTMA_HAS_NO_INSTRUMENTATION (1u << 7)
852
853 struct GTY((tag("GSS_TRANSACTION")))
854 gtransaction : public gimple_statement_with_memory_ops_base
855 {
856 /* [ WORD 1-9 ] : base class */
857
858 /* [ WORD 10 ] */
859 gimple_seq body;
860
861 /* [ WORD 11-13 ] */
862 tree label_norm;
863 tree label_uninst;
864 tree label_over;
865 };
866
867 #define DEFGSSTRUCT(SYM, STRUCT, HAS_TREE_OP) SYM,
868 enum gimple_statement_structure_enum {
869 #include "gsstruct.def"
870 LAST_GSS_ENUM
871 };
872 #undef DEFGSSTRUCT
873
874 /* A statement with the invariant that
875 stmt->code == GIMPLE_COND
876 i.e. a conditional jump statement. */
877
878 struct GTY((tag("GSS_WITH_OPS")))
879 gcond : public gimple_statement_with_ops
880 {
881 /* no additional fields; this uses the layout for GSS_WITH_OPS. */
882 static const enum gimple_code code_ = GIMPLE_COND;
883 };
884
885 /* A statement with the invariant that
886 stmt->code == GIMPLE_DEBUG
887 i.e. a debug statement. */
888
889 struct GTY((tag("GSS_WITH_OPS")))
890 gdebug : public gimple_statement_with_ops
891 {
892 /* no additional fields; this uses the layout for GSS_WITH_OPS. */
893 };
894
895 /* A statement with the invariant that
896 stmt->code == GIMPLE_GOTO
897 i.e. a goto statement. */
898
899 struct GTY((tag("GSS_WITH_OPS")))
900 ggoto : public gimple_statement_with_ops
901 {
902 /* no additional fields; this uses the layout for GSS_WITH_OPS. */
903 };
904
905 /* A statement with the invariant that
906 stmt->code == GIMPLE_LABEL
907 i.e. a label statement. */
908
909 struct GTY((tag("GSS_WITH_OPS")))
910 glabel : public gimple_statement_with_ops
911 {
912 /* no additional fields; this uses the layout for GSS_WITH_OPS. */
913 };
914
915 /* A statement with the invariant that
916 stmt->code == GIMPLE_SWITCH
917 i.e. a switch statement. */
918
919 struct GTY((tag("GSS_WITH_OPS")))
920 gswitch : public gimple_statement_with_ops
921 {
922 /* no additional fields; this uses the layout for GSS_WITH_OPS. */
923 };
924
925 /* A statement with the invariant that
926 stmt->code == GIMPLE_ASSIGN
927 i.e. an assignment statement. */
928
929 struct GTY((tag("GSS_WITH_MEM_OPS")))
930 gassign : public gimple_statement_with_memory_ops
931 {
932 static const enum gimple_code code_ = GIMPLE_ASSIGN;
933 /* no additional fields; this uses the layout for GSS_WITH_MEM_OPS. */
934 };
935
936 /* A statement with the invariant that
937 stmt->code == GIMPLE_RETURN
938 i.e. a return statement. */
939
940 struct GTY((tag("GSS_WITH_MEM_OPS")))
941 greturn : public gimple_statement_with_memory_ops
942 {
943 /* no additional fields; this uses the layout for GSS_WITH_MEM_OPS. */
944 };
945
946 template <>
947 template <>
948 inline bool
949 is_a_helper <gasm *>::test (gimple *gs)
950 {
951 return gs->code == GIMPLE_ASM;
952 }
953
954 template <>
955 template <>
956 inline bool
957 is_a_helper <gassign *>::test (gimple *gs)
958 {
959 return gs->code == GIMPLE_ASSIGN;
960 }
961
962 template <>
963 template <>
964 inline bool
965 is_a_helper <const gassign *>::test (const gimple *gs)
966 {
967 return gs->code == GIMPLE_ASSIGN;
968 }
969
970 template <>
971 template <>
972 inline bool
973 is_a_helper <gbind *>::test (gimple *gs)
974 {
975 return gs->code == GIMPLE_BIND;
976 }
977
978 template <>
979 template <>
980 inline bool
981 is_a_helper <gcall *>::test (gimple *gs)
982 {
983 return gs->code == GIMPLE_CALL;
984 }
985
986 template <>
987 template <>
988 inline bool
989 is_a_helper <gcatch *>::test (gimple *gs)
990 {
991 return gs->code == GIMPLE_CATCH;
992 }
993
994 template <>
995 template <>
996 inline bool
997 is_a_helper <gcond *>::test (gimple *gs)
998 {
999 return gs->code == GIMPLE_COND;
1000 }
1001
1002 template <>
1003 template <>
1004 inline bool
1005 is_a_helper <const gcond *>::test (const gimple *gs)
1006 {
1007 return gs->code == GIMPLE_COND;
1008 }
1009
1010 template <>
1011 template <>
1012 inline bool
1013 is_a_helper <gdebug *>::test (gimple *gs)
1014 {
1015 return gs->code == GIMPLE_DEBUG;
1016 }
1017
1018 template <>
1019 template <>
1020 inline bool
1021 is_a_helper <const gdebug *>::test (const gimple *gs)
1022 {
1023 return gs->code == GIMPLE_DEBUG;
1024 }
1025
1026 template <>
1027 template <>
1028 inline bool
1029 is_a_helper <ggoto *>::test (gimple *gs)
1030 {
1031 return gs->code == GIMPLE_GOTO;
1032 }
1033
1034 template <>
1035 template <>
1036 inline bool
1037 is_a_helper <const ggoto *>::test (const gimple *gs)
1038 {
1039 return gs->code == GIMPLE_GOTO;
1040 }
1041
1042 template <>
1043 template <>
1044 inline bool
1045 is_a_helper <glabel *>::test (gimple *gs)
1046 {
1047 return gs->code == GIMPLE_LABEL;
1048 }
1049
1050 template <>
1051 template <>
1052 inline bool
1053 is_a_helper <const glabel *>::test (const gimple *gs)
1054 {
1055 return gs->code == GIMPLE_LABEL;
1056 }
1057
1058 template <>
1059 template <>
1060 inline bool
1061 is_a_helper <gresx *>::test (gimple *gs)
1062 {
1063 return gs->code == GIMPLE_RESX;
1064 }
1065
1066 template <>
1067 template <>
1068 inline bool
1069 is_a_helper <geh_dispatch *>::test (gimple *gs)
1070 {
1071 return gs->code == GIMPLE_EH_DISPATCH;
1072 }
1073
1074 template <>
1075 template <>
1076 inline bool
1077 is_a_helper <geh_else *>::test (gimple *gs)
1078 {
1079 return gs->code == GIMPLE_EH_ELSE;
1080 }
1081
1082 template <>
1083 template <>
1084 inline bool
1085 is_a_helper <const geh_else *>::test (const gimple *gs)
1086 {
1087 return gs->code == GIMPLE_EH_ELSE;
1088 }
1089
1090 template <>
1091 template <>
1092 inline bool
1093 is_a_helper <geh_filter *>::test (gimple *gs)
1094 {
1095 return gs->code == GIMPLE_EH_FILTER;
1096 }
1097
1098 template <>
1099 template <>
1100 inline bool
1101 is_a_helper <geh_mnt *>::test (gimple *gs)
1102 {
1103 return gs->code == GIMPLE_EH_MUST_NOT_THROW;
1104 }
1105
1106 template <>
1107 template <>
1108 inline bool
1109 is_a_helper <const geh_mnt *>::test (const gimple *gs)
1110 {
1111 return gs->code == GIMPLE_EH_MUST_NOT_THROW;
1112 }
1113
1114 template <>
1115 template <>
1116 inline bool
1117 is_a_helper <gomp_atomic_load *>::test (gimple *gs)
1118 {
1119 return gs->code == GIMPLE_OMP_ATOMIC_LOAD;
1120 }
1121
1122 template <>
1123 template <>
1124 inline bool
1125 is_a_helper <gomp_atomic_store *>::test (gimple *gs)
1126 {
1127 return gs->code == GIMPLE_OMP_ATOMIC_STORE;
1128 }
1129
1130 template <>
1131 template <>
1132 inline bool
1133 is_a_helper <gimple_statement_omp_return *>::test (gimple *gs)
1134 {
1135 return gs->code == GIMPLE_OMP_RETURN;
1136 }
1137
1138 template <>
1139 template <>
1140 inline bool
1141 is_a_helper <gomp_continue *>::test (gimple *gs)
1142 {
1143 return gs->code == GIMPLE_OMP_CONTINUE;
1144 }
1145
1146 template <>
1147 template <>
1148 inline bool
1149 is_a_helper <gomp_critical *>::test (gimple *gs)
1150 {
1151 return gs->code == GIMPLE_OMP_CRITICAL;
1152 }
1153
1154 template <>
1155 template <>
1156 inline bool
1157 is_a_helper <gomp_ordered *>::test (gimple *gs)
1158 {
1159 return gs->code == GIMPLE_OMP_ORDERED;
1160 }
1161
1162 template <>
1163 template <>
1164 inline bool
1165 is_a_helper <gomp_scan *>::test (gimple *gs)
1166 {
1167 return gs->code == GIMPLE_OMP_SCAN;
1168 }
1169
1170 template <>
1171 template <>
1172 inline bool
1173 is_a_helper <gomp_for *>::test (gimple *gs)
1174 {
1175 return gs->code == GIMPLE_OMP_FOR;
1176 }
1177
1178 template <>
1179 template <>
1180 inline bool
1181 is_a_helper <gimple_statement_omp_taskreg *>::test (gimple *gs)
1182 {
1183 return (gs->code == GIMPLE_OMP_PARALLEL
1184 || gs->code == GIMPLE_OMP_TASK
1185 || gs->code == GIMPLE_OMP_TEAMS);
1186 }
1187
1188 template <>
1189 template <>
1190 inline bool
1191 is_a_helper <gomp_parallel *>::test (gimple *gs)
1192 {
1193 return gs->code == GIMPLE_OMP_PARALLEL;
1194 }
1195
1196 template <>
1197 template <>
1198 inline bool
1199 is_a_helper <gomp_target *>::test (gimple *gs)
1200 {
1201 return gs->code == GIMPLE_OMP_TARGET;
1202 }
1203
1204 template <>
1205 template <>
1206 inline bool
1207 is_a_helper <gomp_sections *>::test (gimple *gs)
1208 {
1209 return gs->code == GIMPLE_OMP_SECTIONS;
1210 }
1211
1212 template <>
1213 template <>
1214 inline bool
1215 is_a_helper <gomp_single *>::test (gimple *gs)
1216 {
1217 return gs->code == GIMPLE_OMP_SINGLE;
1218 }
1219
1220 template <>
1221 template <>
1222 inline bool
1223 is_a_helper <gomp_teams *>::test (gimple *gs)
1224 {
1225 return gs->code == GIMPLE_OMP_TEAMS;
1226 }
1227
1228 template <>
1229 template <>
1230 inline bool
1231 is_a_helper <gomp_task *>::test (gimple *gs)
1232 {
1233 return gs->code == GIMPLE_OMP_TASK;
1234 }
1235
1236 template <>
1237 template <>
1238 inline bool
1239 is_a_helper <gphi *>::test (gimple *gs)
1240 {
1241 return gs->code == GIMPLE_PHI;
1242 }
1243
1244 template <>
1245 template <>
1246 inline bool
1247 is_a_helper <greturn *>::test (gimple *gs)
1248 {
1249 return gs->code == GIMPLE_RETURN;
1250 }
1251
1252 template <>
1253 template <>
1254 inline bool
1255 is_a_helper <gswitch *>::test (gimple *gs)
1256 {
1257 return gs->code == GIMPLE_SWITCH;
1258 }
1259
1260 template <>
1261 template <>
1262 inline bool
1263 is_a_helper <const gswitch *>::test (const gimple *gs)
1264 {
1265 return gs->code == GIMPLE_SWITCH;
1266 }
1267
1268 template <>
1269 template <>
1270 inline bool
1271 is_a_helper <gtransaction *>::test (gimple *gs)
1272 {
1273 return gs->code == GIMPLE_TRANSACTION;
1274 }
1275
1276 template <>
1277 template <>
1278 inline bool
1279 is_a_helper <gtry *>::test (gimple *gs)
1280 {
1281 return gs->code == GIMPLE_TRY;
1282 }
1283
1284 template <>
1285 template <>
1286 inline bool
1287 is_a_helper <const gtry *>::test (const gimple *gs)
1288 {
1289 return gs->code == GIMPLE_TRY;
1290 }
1291
1292 template <>
1293 template <>
1294 inline bool
1295 is_a_helper <gimple_statement_wce *>::test (gimple *gs)
1296 {
1297 return gs->code == GIMPLE_WITH_CLEANUP_EXPR;
1298 }
1299
1300 template <>
1301 template <>
1302 inline bool
1303 is_a_helper <const gasm *>::test (const gimple *gs)
1304 {
1305 return gs->code == GIMPLE_ASM;
1306 }
1307
1308 template <>
1309 template <>
1310 inline bool
1311 is_a_helper <const gbind *>::test (const gimple *gs)
1312 {
1313 return gs->code == GIMPLE_BIND;
1314 }
1315
1316 template <>
1317 template <>
1318 inline bool
1319 is_a_helper <const gcall *>::test (const gimple *gs)
1320 {
1321 return gs->code == GIMPLE_CALL;
1322 }
1323
1324 template <>
1325 template <>
1326 inline bool
1327 is_a_helper <const gcatch *>::test (const gimple *gs)
1328 {
1329 return gs->code == GIMPLE_CATCH;
1330 }
1331
1332 template <>
1333 template <>
1334 inline bool
1335 is_a_helper <const gresx *>::test (const gimple *gs)
1336 {
1337 return gs->code == GIMPLE_RESX;
1338 }
1339
1340 template <>
1341 template <>
1342 inline bool
1343 is_a_helper <const geh_dispatch *>::test (const gimple *gs)
1344 {
1345 return gs->code == GIMPLE_EH_DISPATCH;
1346 }
1347
1348 template <>
1349 template <>
1350 inline bool
1351 is_a_helper <const geh_filter *>::test (const gimple *gs)
1352 {
1353 return gs->code == GIMPLE_EH_FILTER;
1354 }
1355
1356 template <>
1357 template <>
1358 inline bool
1359 is_a_helper <const gomp_atomic_load *>::test (const gimple *gs)
1360 {
1361 return gs->code == GIMPLE_OMP_ATOMIC_LOAD;
1362 }
1363
1364 template <>
1365 template <>
1366 inline bool
1367 is_a_helper <const gomp_atomic_store *>::test (const gimple *gs)
1368 {
1369 return gs->code == GIMPLE_OMP_ATOMIC_STORE;
1370 }
1371
1372 template <>
1373 template <>
1374 inline bool
1375 is_a_helper <const gimple_statement_omp_return *>::test (const gimple *gs)
1376 {
1377 return gs->code == GIMPLE_OMP_RETURN;
1378 }
1379
1380 template <>
1381 template <>
1382 inline bool
1383 is_a_helper <const gomp_continue *>::test (const gimple *gs)
1384 {
1385 return gs->code == GIMPLE_OMP_CONTINUE;
1386 }
1387
1388 template <>
1389 template <>
1390 inline bool
1391 is_a_helper <const gomp_critical *>::test (const gimple *gs)
1392 {
1393 return gs->code == GIMPLE_OMP_CRITICAL;
1394 }
1395
1396 template <>
1397 template <>
1398 inline bool
1399 is_a_helper <const gomp_ordered *>::test (const gimple *gs)
1400 {
1401 return gs->code == GIMPLE_OMP_ORDERED;
1402 }
1403
1404 template <>
1405 template <>
1406 inline bool
1407 is_a_helper <const gomp_scan *>::test (const gimple *gs)
1408 {
1409 return gs->code == GIMPLE_OMP_SCAN;
1410 }
1411
1412 template <>
1413 template <>
1414 inline bool
1415 is_a_helper <const gomp_for *>::test (const gimple *gs)
1416 {
1417 return gs->code == GIMPLE_OMP_FOR;
1418 }
1419
1420 template <>
1421 template <>
1422 inline bool
1423 is_a_helper <const gimple_statement_omp_taskreg *>::test (const gimple *gs)
1424 {
1425 return (gs->code == GIMPLE_OMP_PARALLEL
1426 || gs->code == GIMPLE_OMP_TASK
1427 || gs->code == GIMPLE_OMP_TEAMS);
1428 }
1429
1430 template <>
1431 template <>
1432 inline bool
1433 is_a_helper <const gomp_parallel *>::test (const gimple *gs)
1434 {
1435 return gs->code == GIMPLE_OMP_PARALLEL;
1436 }
1437
1438 template <>
1439 template <>
1440 inline bool
1441 is_a_helper <const gomp_target *>::test (const gimple *gs)
1442 {
1443 return gs->code == GIMPLE_OMP_TARGET;
1444 }
1445
1446 template <>
1447 template <>
1448 inline bool
1449 is_a_helper <const gomp_sections *>::test (const gimple *gs)
1450 {
1451 return gs->code == GIMPLE_OMP_SECTIONS;
1452 }
1453
1454 template <>
1455 template <>
1456 inline bool
1457 is_a_helper <const gomp_single *>::test (const gimple *gs)
1458 {
1459 return gs->code == GIMPLE_OMP_SINGLE;
1460 }
1461
1462 template <>
1463 template <>
1464 inline bool
1465 is_a_helper <const gomp_teams *>::test (const gimple *gs)
1466 {
1467 return gs->code == GIMPLE_OMP_TEAMS;
1468 }
1469
1470 template <>
1471 template <>
1472 inline bool
1473 is_a_helper <const gomp_task *>::test (const gimple *gs)
1474 {
1475 return gs->code == GIMPLE_OMP_TASK;
1476 }
1477
1478 template <>
1479 template <>
1480 inline bool
1481 is_a_helper <const gphi *>::test (const gimple *gs)
1482 {
1483 return gs->code == GIMPLE_PHI;
1484 }
1485
1486 template <>
1487 template <>
1488 inline bool
1489 is_a_helper <const greturn *>::test (const gimple *gs)
1490 {
1491 return gs->code == GIMPLE_RETURN;
1492 }
1493
1494 template <>
1495 template <>
1496 inline bool
1497 is_a_helper <const gtransaction *>::test (const gimple *gs)
1498 {
1499 return gs->code == GIMPLE_TRANSACTION;
1500 }
1501
1502 /* Offset in bytes to the location of the operand vector.
1503 Zero if there is no operand vector for this tuple structure. */
1504 extern size_t const gimple_ops_offset_[];
1505
1506 /* Map GIMPLE codes to GSS codes. */
1507 extern enum gimple_statement_structure_enum const gss_for_code_[];
1508
1509 /* This variable holds the currently expanded gimple statement for purposes
1510 of comminucating the profile info to the builtin expanders. */
1511 extern gimple *currently_expanding_gimple_stmt;
1512
1513 size_t gimple_size (enum gimple_code code, unsigned num_ops = 0);
1514 void gimple_init (gimple *g, enum gimple_code code, unsigned num_ops);
1515 gimple *gimple_alloc (enum gimple_code, unsigned CXX_MEM_STAT_INFO);
1516 greturn *gimple_build_return (tree);
1517 void gimple_call_reset_alias_info (gcall *);
1518 gcall *gimple_build_call_vec (tree, vec<tree> );
1519 gcall *gimple_build_call (tree, unsigned, ...);
1520 gcall *gimple_build_call_valist (tree, unsigned, va_list);
1521 gcall *gimple_build_call_internal (enum internal_fn, unsigned, ...);
1522 gcall *gimple_build_call_internal_vec (enum internal_fn, vec<tree> );
1523 gcall *gimple_build_call_from_tree (tree, tree);
1524 gassign *gimple_build_assign (tree, tree CXX_MEM_STAT_INFO);
1525 gassign *gimple_build_assign (tree, enum tree_code,
1526 tree, tree, tree CXX_MEM_STAT_INFO);
1527 gassign *gimple_build_assign (tree, enum tree_code,
1528 tree, tree CXX_MEM_STAT_INFO);
1529 gassign *gimple_build_assign (tree, enum tree_code, tree CXX_MEM_STAT_INFO);
1530 gcond *gimple_build_cond (enum tree_code, tree, tree, tree, tree);
1531 gcond *gimple_build_cond_from_tree (tree, tree, tree);
1532 void gimple_cond_set_condition_from_tree (gcond *, tree);
1533 glabel *gimple_build_label (tree label);
1534 ggoto *gimple_build_goto (tree dest);
1535 gimple *gimple_build_nop (void);
1536 gbind *gimple_build_bind (tree, gimple_seq, tree);
1537 gasm *gimple_build_asm_vec (const char *, vec<tree, va_gc> *,
1538 vec<tree, va_gc> *, vec<tree, va_gc> *,
1539 vec<tree, va_gc> *);
1540 gcatch *gimple_build_catch (tree, gimple_seq);
1541 geh_filter *gimple_build_eh_filter (tree, gimple_seq);
1542 geh_mnt *gimple_build_eh_must_not_throw (tree);
1543 geh_else *gimple_build_eh_else (gimple_seq, gimple_seq);
1544 gtry *gimple_build_try (gimple_seq, gimple_seq,
1545 enum gimple_try_flags);
1546 gimple *gimple_build_wce (gimple_seq);
1547 gresx *gimple_build_resx (int);
1548 gswitch *gimple_build_switch_nlabels (unsigned, tree, tree);
1549 gswitch *gimple_build_switch (tree, tree, vec<tree> );
1550 geh_dispatch *gimple_build_eh_dispatch (int);
1551 gdebug *gimple_build_debug_bind (tree, tree, gimple * CXX_MEM_STAT_INFO);
1552 gdebug *gimple_build_debug_source_bind (tree, tree, gimple * CXX_MEM_STAT_INFO);
1553 gdebug *gimple_build_debug_begin_stmt (tree, location_t CXX_MEM_STAT_INFO);
1554 gdebug *gimple_build_debug_inline_entry (tree, location_t CXX_MEM_STAT_INFO);
1555 gomp_critical *gimple_build_omp_critical (gimple_seq, tree, tree);
1556 gomp_for *gimple_build_omp_for (gimple_seq, int, tree, size_t, gimple_seq);
1557 gomp_parallel *gimple_build_omp_parallel (gimple_seq, tree, tree, tree);
1558 gomp_task *gimple_build_omp_task (gimple_seq, tree, tree, tree, tree,
1559 tree, tree);
1560 gimple *gimple_build_omp_section (gimple_seq);
1561 gimple *gimple_build_omp_master (gimple_seq);
1562 gimple *gimple_build_omp_grid_body (gimple_seq);
1563 gimple *gimple_build_omp_taskgroup (gimple_seq, tree);
1564 gomp_continue *gimple_build_omp_continue (tree, tree);
1565 gomp_ordered *gimple_build_omp_ordered (gimple_seq, tree);
1566 gimple *gimple_build_omp_return (bool);
1567 gomp_scan *gimple_build_omp_scan (gimple_seq, tree);
1568 gomp_sections *gimple_build_omp_sections (gimple_seq, tree);
1569 gimple *gimple_build_omp_sections_switch (void);
1570 gomp_single *gimple_build_omp_single (gimple_seq, tree);
1571 gomp_target *gimple_build_omp_target (gimple_seq, int, tree);
1572 gomp_teams *gimple_build_omp_teams (gimple_seq, tree);
1573 gomp_atomic_load *gimple_build_omp_atomic_load (tree, tree,
1574 enum omp_memory_order);
1575 gomp_atomic_store *gimple_build_omp_atomic_store (tree, enum omp_memory_order);
1576 gtransaction *gimple_build_transaction (gimple_seq);
1577 extern void gimple_seq_add_stmt (gimple_seq *, gimple *);
1578 extern void gimple_seq_add_stmt_without_update (gimple_seq *, gimple *);
1579 void gimple_seq_add_seq (gimple_seq *, gimple_seq);
1580 void gimple_seq_add_seq_without_update (gimple_seq *, gimple_seq);
1581 extern void annotate_all_with_location_after (gimple_seq, gimple_stmt_iterator,
1582 location_t);
1583 extern void annotate_all_with_location (gimple_seq, location_t);
1584 bool empty_body_p (gimple_seq);
1585 gimple_seq gimple_seq_copy (gimple_seq);
1586 bool gimple_call_same_target_p (const gimple *, const gimple *);
1587 int gimple_call_flags (const gimple *);
1588 int gimple_call_arg_flags (const gcall *, unsigned);
1589 int gimple_call_return_flags (const gcall *);
1590 bool gimple_call_nonnull_result_p (gcall *);
1591 tree gimple_call_nonnull_arg (gcall *);
1592 bool gimple_assign_copy_p (gimple *);
1593 bool gimple_assign_ssa_name_copy_p (gimple *);
1594 bool gimple_assign_unary_nop_p (gimple *);
1595 void gimple_set_bb (gimple *, basic_block);
1596 void gimple_assign_set_rhs_from_tree (gimple_stmt_iterator *, tree);
1597 void gimple_assign_set_rhs_with_ops (gimple_stmt_iterator *, enum tree_code,
1598 tree, tree, tree);
1599 tree gimple_get_lhs (const gimple *);
1600 void gimple_set_lhs (gimple *, tree);
1601 gimple *gimple_copy (gimple *);
1602 void gimple_move_vops (gimple *, gimple *);
1603 bool gimple_has_side_effects (const gimple *);
1604 bool gimple_could_trap_p_1 (gimple *, bool, bool);
1605 bool gimple_could_trap_p (gimple *);
1606 bool gimple_assign_rhs_could_trap_p (gimple *);
1607 extern void dump_gimple_statistics (void);
1608 unsigned get_gimple_rhs_num_ops (enum tree_code);
1609 extern tree canonicalize_cond_expr_cond (tree);
1610 gcall *gimple_call_copy_skip_args (gcall *, bitmap);
1611 extern bool gimple_compare_field_offset (tree, tree);
1612 extern tree gimple_unsigned_type (tree);
1613 extern tree gimple_signed_type (tree);
1614 extern alias_set_type gimple_get_alias_set (tree);
1615 extern bool gimple_ior_addresses_taken (bitmap, gimple *);
1616 extern bool gimple_builtin_call_types_compatible_p (const gimple *, tree);
1617 extern combined_fn gimple_call_combined_fn (const gimple *);
1618 extern bool gimple_call_replaceable_operator_delete_p (const gcall *);
1619 extern bool gimple_call_builtin_p (const gimple *);
1620 extern bool gimple_call_builtin_p (const gimple *, enum built_in_class);
1621 extern bool gimple_call_builtin_p (const gimple *, enum built_in_function);
1622 extern bool gimple_asm_clobbers_memory_p (const gasm *);
1623 extern void dump_decl_set (FILE *, bitmap);
1624 extern bool nonfreeing_call_p (gimple *);
1625 extern bool nonbarrier_call_p (gimple *);
1626 extern bool infer_nonnull_range (gimple *, tree);
1627 extern bool infer_nonnull_range_by_dereference (gimple *, tree);
1628 extern bool infer_nonnull_range_by_attribute (gimple *, tree);
1629 extern void sort_case_labels (vec<tree>);
1630 extern void preprocess_case_label_vec_for_gimple (vec<tree>, tree, tree *);
1631 extern void gimple_seq_set_location (gimple_seq, location_t);
1632 extern void gimple_seq_discard (gimple_seq);
1633 extern void maybe_remove_unused_call_args (struct function *, gimple *);
1634 extern bool gimple_inexpensive_call_p (gcall *);
1635 extern bool stmt_can_terminate_bb_p (gimple *);
1636 extern location_t gimple_or_expr_nonartificial_location (gimple *, tree);
1637
1638
1639 /* Formal (expression) temporary table handling: multiple occurrences of
1640 the same scalar expression are evaluated into the same temporary. */
1641
1642 typedef struct gimple_temp_hash_elt
1643 {
1644 tree val; /* Key */
1645 tree temp; /* Value */
1646 } elt_t;
1647
1648 /* Get the number of the next statement uid to be allocated. */
1649 static inline unsigned int
1650 gimple_stmt_max_uid (struct function *fn)
1651 {
1652 return fn->last_stmt_uid;
1653 }
1654
1655 /* Set the number of the next statement uid to be allocated. */
1656 static inline void
1657 set_gimple_stmt_max_uid (struct function *fn, unsigned int maxid)
1658 {
1659 fn->last_stmt_uid = maxid;
1660 }
1661
1662 /* Set the number of the next statement uid to be allocated. */
1663 static inline unsigned int
1664 inc_gimple_stmt_max_uid (struct function *fn)
1665 {
1666 return fn->last_stmt_uid++;
1667 }
1668
1669 /* Return the first node in GIMPLE sequence S. */
1670
1671 static inline gimple_seq_node
1672 gimple_seq_first (gimple_seq s)
1673 {
1674 return s;
1675 }
1676
1677
1678 /* Return the first statement in GIMPLE sequence S. */
1679
1680 static inline gimple *
1681 gimple_seq_first_stmt (gimple_seq s)
1682 {
1683 gimple_seq_node n = gimple_seq_first (s);
1684 return n;
1685 }
1686
1687 /* Return the first statement in GIMPLE sequence S as a gbind *,
1688 verifying that it has code GIMPLE_BIND in a checked build. */
1689
1690 static inline gbind *
1691 gimple_seq_first_stmt_as_a_bind (gimple_seq s)
1692 {
1693 gimple_seq_node n = gimple_seq_first (s);
1694 return as_a <gbind *> (n);
1695 }
1696
1697
1698 /* Return the last node in GIMPLE sequence S. */
1699
1700 static inline gimple_seq_node
1701 gimple_seq_last (gimple_seq s)
1702 {
1703 return s ? s->prev : NULL;
1704 }
1705
1706
1707 /* Return the last statement in GIMPLE sequence S. */
1708
1709 static inline gimple *
1710 gimple_seq_last_stmt (gimple_seq s)
1711 {
1712 gimple_seq_node n = gimple_seq_last (s);
1713 return n;
1714 }
1715
1716
1717 /* Set the last node in GIMPLE sequence *PS to LAST. */
1718
1719 static inline void
1720 gimple_seq_set_last (gimple_seq *ps, gimple_seq_node last)
1721 {
1722 (*ps)->prev = last;
1723 }
1724
1725
1726 /* Set the first node in GIMPLE sequence *PS to FIRST. */
1727
1728 static inline void
1729 gimple_seq_set_first (gimple_seq *ps, gimple_seq_node first)
1730 {
1731 *ps = first;
1732 }
1733
1734
1735 /* Return true if GIMPLE sequence S is empty. */
1736
1737 static inline bool
1738 gimple_seq_empty_p (gimple_seq s)
1739 {
1740 return s == NULL;
1741 }
1742
1743 /* Allocate a new sequence and initialize its first element with STMT. */
1744
1745 static inline gimple_seq
1746 gimple_seq_alloc_with_stmt (gimple *stmt)
1747 {
1748 gimple_seq seq = NULL;
1749 gimple_seq_add_stmt (&seq, stmt);
1750 return seq;
1751 }
1752
1753
1754 /* Returns the sequence of statements in BB. */
1755
1756 static inline gimple_seq
1757 bb_seq (const_basic_block bb)
1758 {
1759 return (!(bb->flags & BB_RTL)) ? bb->il.gimple.seq : NULL;
1760 }
1761
1762 static inline gimple_seq *
1763 bb_seq_addr (basic_block bb)
1764 {
1765 return (!(bb->flags & BB_RTL)) ? &bb->il.gimple.seq : NULL;
1766 }
1767
1768 /* Sets the sequence of statements in BB to SEQ. */
1769
1770 static inline void
1771 set_bb_seq (basic_block bb, gimple_seq seq)
1772 {
1773 gcc_checking_assert (!(bb->flags & BB_RTL));
1774 bb->il.gimple.seq = seq;
1775 }
1776
1777
1778 /* Return the code for GIMPLE statement G. */
1779
1780 static inline enum gimple_code
1781 gimple_code (const gimple *g)
1782 {
1783 return g->code;
1784 }
1785
1786
1787 /* Return the GSS code used by a GIMPLE code. */
1788
1789 static inline enum gimple_statement_structure_enum
1790 gss_for_code (enum gimple_code code)
1791 {
1792 gcc_gimple_checking_assert ((unsigned int)code < LAST_AND_UNUSED_GIMPLE_CODE);
1793 return gss_for_code_[code];
1794 }
1795
1796
1797 /* Return which GSS code is used by GS. */
1798
1799 static inline enum gimple_statement_structure_enum
1800 gimple_statement_structure (gimple *gs)
1801 {
1802 return gss_for_code (gimple_code (gs));
1803 }
1804
1805
1806 /* Return true if statement G has sub-statements. This is only true for
1807 High GIMPLE statements. */
1808
1809 static inline bool
1810 gimple_has_substatements (gimple *g)
1811 {
1812 switch (gimple_code (g))
1813 {
1814 case GIMPLE_BIND:
1815 case GIMPLE_CATCH:
1816 case GIMPLE_EH_FILTER:
1817 case GIMPLE_EH_ELSE:
1818 case GIMPLE_TRY:
1819 case GIMPLE_OMP_FOR:
1820 case GIMPLE_OMP_MASTER:
1821 case GIMPLE_OMP_TASKGROUP:
1822 case GIMPLE_OMP_ORDERED:
1823 case GIMPLE_OMP_SECTION:
1824 case GIMPLE_OMP_PARALLEL:
1825 case GIMPLE_OMP_TASK:
1826 case GIMPLE_OMP_SECTIONS:
1827 case GIMPLE_OMP_SINGLE:
1828 case GIMPLE_OMP_TARGET:
1829 case GIMPLE_OMP_TEAMS:
1830 case GIMPLE_OMP_CRITICAL:
1831 case GIMPLE_WITH_CLEANUP_EXPR:
1832 case GIMPLE_TRANSACTION:
1833 case GIMPLE_OMP_GRID_BODY:
1834 return true;
1835
1836 default:
1837 return false;
1838 }
1839 }
1840
1841
1842 /* Return the basic block holding statement G. */
1843
1844 static inline basic_block
1845 gimple_bb (const gimple *g)
1846 {
1847 return g->bb;
1848 }
1849
1850
1851 /* Return the lexical scope block holding statement G. */
1852
1853 static inline tree
1854 gimple_block (const gimple *g)
1855 {
1856 return LOCATION_BLOCK (g->location);
1857 }
1858
1859
1860 /* Set BLOCK to be the lexical scope block holding statement G. */
1861
1862 static inline void
1863 gimple_set_block (gimple *g, tree block)
1864 {
1865 g->location = set_block (g->location, block);
1866 }
1867
1868
1869 /* Return location information for statement G. */
1870
1871 static inline location_t
1872 gimple_location (const gimple *g)
1873 {
1874 return g->location;
1875 }
1876
1877 /* Return location information for statement G if g is not NULL.
1878 Otherwise, UNKNOWN_LOCATION is returned. */
1879
1880 static inline location_t
1881 gimple_location_safe (const gimple *g)
1882 {
1883 return g ? gimple_location (g) : UNKNOWN_LOCATION;
1884 }
1885
1886 /* Set location information for statement G. */
1887
1888 static inline void
1889 gimple_set_location (gimple *g, location_t location)
1890 {
1891 g->location = location;
1892 }
1893
1894
1895 /* Return true if G contains location information. */
1896
1897 static inline bool
1898 gimple_has_location (const gimple *g)
1899 {
1900 return LOCATION_LOCUS (gimple_location (g)) != UNKNOWN_LOCATION;
1901 }
1902
1903
1904 /* Return non-artificial location information for statement G. */
1905
1906 static inline location_t
1907 gimple_nonartificial_location (const gimple *g)
1908 {
1909 location_t *ploc = NULL;
1910
1911 if (tree block = gimple_block (g))
1912 ploc = block_nonartificial_location (block);
1913
1914 return ploc ? *ploc : gimple_location (g);
1915 }
1916
1917
1918 /* Return the file name of the location of STMT. */
1919
1920 static inline const char *
1921 gimple_filename (const gimple *stmt)
1922 {
1923 return LOCATION_FILE (gimple_location (stmt));
1924 }
1925
1926
1927 /* Return the line number of the location of STMT. */
1928
1929 static inline int
1930 gimple_lineno (const gimple *stmt)
1931 {
1932 return LOCATION_LINE (gimple_location (stmt));
1933 }
1934
1935
1936 /* Determine whether SEQ is a singleton. */
1937
1938 static inline bool
1939 gimple_seq_singleton_p (gimple_seq seq)
1940 {
1941 return ((gimple_seq_first (seq) != NULL)
1942 && (gimple_seq_first (seq) == gimple_seq_last (seq)));
1943 }
1944
1945 /* Return true if no warnings should be emitted for statement STMT. */
1946
1947 static inline bool
1948 gimple_no_warning_p (const gimple *stmt)
1949 {
1950 return stmt->no_warning;
1951 }
1952
1953 /* Set the no_warning flag of STMT to NO_WARNING. */
1954
1955 static inline void
1956 gimple_set_no_warning (gimple *stmt, bool no_warning)
1957 {
1958 stmt->no_warning = (unsigned) no_warning;
1959 }
1960
1961 /* Set the visited status on statement STMT to VISITED_P.
1962
1963 Please note that this 'visited' property of the gimple statement is
1964 supposed to be undefined at pass boundaries. This means that a
1965 given pass should not assume it contains any useful value when the
1966 pass starts and thus can set it to any value it sees fit.
1967
1968 You can learn more about the visited property of the gimple
1969 statement by reading the comments of the 'visited' data member of
1970 struct gimple.
1971 */
1972
1973 static inline void
1974 gimple_set_visited (gimple *stmt, bool visited_p)
1975 {
1976 stmt->visited = (unsigned) visited_p;
1977 }
1978
1979
1980 /* Return the visited status for statement STMT.
1981
1982 Please note that this 'visited' property of the gimple statement is
1983 supposed to be undefined at pass boundaries. This means that a
1984 given pass should not assume it contains any useful value when the
1985 pass starts and thus can set it to any value it sees fit.
1986
1987 You can learn more about the visited property of the gimple
1988 statement by reading the comments of the 'visited' data member of
1989 struct gimple. */
1990
1991 static inline bool
1992 gimple_visited_p (gimple *stmt)
1993 {
1994 return stmt->visited;
1995 }
1996
1997
1998 /* Set pass local flag PLF on statement STMT to VAL_P.
1999
2000 Please note that this PLF property of the gimple statement is
2001 supposed to be undefined at pass boundaries. This means that a
2002 given pass should not assume it contains any useful value when the
2003 pass starts and thus can set it to any value it sees fit.
2004
2005 You can learn more about the PLF property by reading the comment of
2006 the 'plf' data member of struct gimple_statement_structure. */
2007
2008 static inline void
2009 gimple_set_plf (gimple *stmt, enum plf_mask plf, bool val_p)
2010 {
2011 if (val_p)
2012 stmt->plf |= (unsigned int) plf;
2013 else
2014 stmt->plf &= ~((unsigned int) plf);
2015 }
2016
2017
2018 /* Return the value of pass local flag PLF on statement STMT.
2019
2020 Please note that this 'plf' property of the gimple statement is
2021 supposed to be undefined at pass boundaries. This means that a
2022 given pass should not assume it contains any useful value when the
2023 pass starts and thus can set it to any value it sees fit.
2024
2025 You can learn more about the plf property by reading the comment of
2026 the 'plf' data member of struct gimple_statement_structure. */
2027
2028 static inline unsigned int
2029 gimple_plf (gimple *stmt, enum plf_mask plf)
2030 {
2031 return stmt->plf & ((unsigned int) plf);
2032 }
2033
2034
2035 /* Set the UID of statement.
2036
2037 Please note that this UID property is supposed to be undefined at
2038 pass boundaries. This means that a given pass should not assume it
2039 contains any useful value when the pass starts and thus can set it
2040 to any value it sees fit. */
2041
2042 static inline void
2043 gimple_set_uid (gimple *g, unsigned uid)
2044 {
2045 g->uid = uid;
2046 }
2047
2048
2049 /* Return the UID of statement.
2050
2051 Please note that this UID property is supposed to be undefined at
2052 pass boundaries. This means that a given pass should not assume it
2053 contains any useful value when the pass starts and thus can set it
2054 to any value it sees fit. */
2055
2056 static inline unsigned
2057 gimple_uid (const gimple *g)
2058 {
2059 return g->uid;
2060 }
2061
2062
2063 /* Make statement G a singleton sequence. */
2064
2065 static inline void
2066 gimple_init_singleton (gimple *g)
2067 {
2068 g->next = NULL;
2069 g->prev = g;
2070 }
2071
2072
2073 /* Return true if GIMPLE statement G has register or memory operands. */
2074
2075 static inline bool
2076 gimple_has_ops (const gimple *g)
2077 {
2078 return gimple_code (g) >= GIMPLE_COND && gimple_code (g) <= GIMPLE_RETURN;
2079 }
2080
2081 template <>
2082 template <>
2083 inline bool
2084 is_a_helper <const gimple_statement_with_ops *>::test (const gimple *gs)
2085 {
2086 return gimple_has_ops (gs);
2087 }
2088
2089 template <>
2090 template <>
2091 inline bool
2092 is_a_helper <gimple_statement_with_ops *>::test (gimple *gs)
2093 {
2094 return gimple_has_ops (gs);
2095 }
2096
2097 /* Return true if GIMPLE statement G has memory operands. */
2098
2099 static inline bool
2100 gimple_has_mem_ops (const gimple *g)
2101 {
2102 return gimple_code (g) >= GIMPLE_ASSIGN && gimple_code (g) <= GIMPLE_RETURN;
2103 }
2104
2105 template <>
2106 template <>
2107 inline bool
2108 is_a_helper <const gimple_statement_with_memory_ops *>::test (const gimple *gs)
2109 {
2110 return gimple_has_mem_ops (gs);
2111 }
2112
2113 template <>
2114 template <>
2115 inline bool
2116 is_a_helper <gimple_statement_with_memory_ops *>::test (gimple *gs)
2117 {
2118 return gimple_has_mem_ops (gs);
2119 }
2120
2121 /* Return the set of USE operands for statement G. */
2122
2123 static inline struct use_optype_d *
2124 gimple_use_ops (const gimple *g)
2125 {
2126 const gimple_statement_with_ops *ops_stmt =
2127 dyn_cast <const gimple_statement_with_ops *> (g);
2128 if (!ops_stmt)
2129 return NULL;
2130 return ops_stmt->use_ops;
2131 }
2132
2133
2134 /* Set USE to be the set of USE operands for statement G. */
2135
2136 static inline void
2137 gimple_set_use_ops (gimple *g, struct use_optype_d *use)
2138 {
2139 gimple_statement_with_ops *ops_stmt =
2140 as_a <gimple_statement_with_ops *> (g);
2141 ops_stmt->use_ops = use;
2142 }
2143
2144
2145 /* Return the single VUSE operand of the statement G. */
2146
2147 static inline tree
2148 gimple_vuse (const gimple *g)
2149 {
2150 const gimple_statement_with_memory_ops *mem_ops_stmt =
2151 dyn_cast <const gimple_statement_with_memory_ops *> (g);
2152 if (!mem_ops_stmt)
2153 return NULL_TREE;
2154 return mem_ops_stmt->vuse;
2155 }
2156
2157 /* Return the single VDEF operand of the statement G. */
2158
2159 static inline tree
2160 gimple_vdef (const gimple *g)
2161 {
2162 const gimple_statement_with_memory_ops *mem_ops_stmt =
2163 dyn_cast <const gimple_statement_with_memory_ops *> (g);
2164 if (!mem_ops_stmt)
2165 return NULL_TREE;
2166 return mem_ops_stmt->vdef;
2167 }
2168
2169 /* Return the single VUSE operand of the statement G. */
2170
2171 static inline tree *
2172 gimple_vuse_ptr (gimple *g)
2173 {
2174 gimple_statement_with_memory_ops *mem_ops_stmt =
2175 dyn_cast <gimple_statement_with_memory_ops *> (g);
2176 if (!mem_ops_stmt)
2177 return NULL;
2178 return &mem_ops_stmt->vuse;
2179 }
2180
2181 /* Return the single VDEF operand of the statement G. */
2182
2183 static inline tree *
2184 gimple_vdef_ptr (gimple *g)
2185 {
2186 gimple_statement_with_memory_ops *mem_ops_stmt =
2187 dyn_cast <gimple_statement_with_memory_ops *> (g);
2188 if (!mem_ops_stmt)
2189 return NULL;
2190 return &mem_ops_stmt->vdef;
2191 }
2192
2193 /* Set the single VUSE operand of the statement G. */
2194
2195 static inline void
2196 gimple_set_vuse (gimple *g, tree vuse)
2197 {
2198 gimple_statement_with_memory_ops *mem_ops_stmt =
2199 as_a <gimple_statement_with_memory_ops *> (g);
2200 mem_ops_stmt->vuse = vuse;
2201 }
2202
2203 /* Set the single VDEF operand of the statement G. */
2204
2205 static inline void
2206 gimple_set_vdef (gimple *g, tree vdef)
2207 {
2208 gimple_statement_with_memory_ops *mem_ops_stmt =
2209 as_a <gimple_statement_with_memory_ops *> (g);
2210 mem_ops_stmt->vdef = vdef;
2211 }
2212
2213
2214 /* Return true if statement G has operands and the modified field has
2215 been set. */
2216
2217 static inline bool
2218 gimple_modified_p (const gimple *g)
2219 {
2220 return (gimple_has_ops (g)) ? (bool) g->modified : false;
2221 }
2222
2223
2224 /* Set the MODIFIED flag to MODIFIEDP, iff the gimple statement G has
2225 a MODIFIED field. */
2226
2227 static inline void
2228 gimple_set_modified (gimple *s, bool modifiedp)
2229 {
2230 if (gimple_has_ops (s))
2231 s->modified = (unsigned) modifiedp;
2232 }
2233
2234
2235 /* Return the tree code for the expression computed by STMT. This is
2236 only valid for GIMPLE_COND, GIMPLE_CALL and GIMPLE_ASSIGN. For
2237 GIMPLE_CALL, return CALL_EXPR as the expression code for
2238 consistency. This is useful when the caller needs to deal with the
2239 three kinds of computation that GIMPLE supports. */
2240
2241 static inline enum tree_code
2242 gimple_expr_code (const gimple *stmt)
2243 {
2244 enum gimple_code code = gimple_code (stmt);
2245 if (code == GIMPLE_ASSIGN || code == GIMPLE_COND)
2246 return (enum tree_code) stmt->subcode;
2247 else
2248 {
2249 gcc_gimple_checking_assert (code == GIMPLE_CALL);
2250 return CALL_EXPR;
2251 }
2252 }
2253
2254
2255 /* Return true if statement STMT contains volatile operands. */
2256
2257 static inline bool
2258 gimple_has_volatile_ops (const gimple *stmt)
2259 {
2260 if (gimple_has_mem_ops (stmt))
2261 return stmt->has_volatile_ops;
2262 else
2263 return false;
2264 }
2265
2266
2267 /* Set the HAS_VOLATILE_OPS flag to VOLATILEP. */
2268
2269 static inline void
2270 gimple_set_has_volatile_ops (gimple *stmt, bool volatilep)
2271 {
2272 if (gimple_has_mem_ops (stmt))
2273 stmt->has_volatile_ops = (unsigned) volatilep;
2274 }
2275
2276 /* Return true if STMT is in a transaction. */
2277
2278 static inline bool
2279 gimple_in_transaction (const gimple *stmt)
2280 {
2281 return bb_in_transaction (gimple_bb (stmt));
2282 }
2283
2284 /* Return true if statement STMT may access memory. */
2285
2286 static inline bool
2287 gimple_references_memory_p (gimple *stmt)
2288 {
2289 return gimple_has_mem_ops (stmt) && gimple_vuse (stmt);
2290 }
2291
2292
2293 /* Return the subcode for OMP statement S. */
2294
2295 static inline unsigned
2296 gimple_omp_subcode (const gimple *s)
2297 {
2298 gcc_gimple_checking_assert (gimple_code (s) >= GIMPLE_OMP_ATOMIC_LOAD
2299 && gimple_code (s) <= GIMPLE_OMP_TEAMS);
2300 return s->subcode;
2301 }
2302
2303 /* Set the subcode for OMP statement S to SUBCODE. */
2304
2305 static inline void
2306 gimple_omp_set_subcode (gimple *s, unsigned int subcode)
2307 {
2308 /* We only have 16 bits for the subcode. Assert that we are not
2309 overflowing it. */
2310 gcc_gimple_checking_assert (subcode < (1 << 16));
2311 s->subcode = subcode;
2312 }
2313
2314 /* Set the nowait flag on OMP_RETURN statement S. */
2315
2316 static inline void
2317 gimple_omp_return_set_nowait (gimple *s)
2318 {
2319 GIMPLE_CHECK (s, GIMPLE_OMP_RETURN);
2320 s->subcode |= GF_OMP_RETURN_NOWAIT;
2321 }
2322
2323
2324 /* Return true if OMP return statement G has the GF_OMP_RETURN_NOWAIT
2325 flag set. */
2326
2327 static inline bool
2328 gimple_omp_return_nowait_p (const gimple *g)
2329 {
2330 GIMPLE_CHECK (g, GIMPLE_OMP_RETURN);
2331 return (gimple_omp_subcode (g) & GF_OMP_RETURN_NOWAIT) != 0;
2332 }
2333
2334
2335 /* Set the LHS of OMP return. */
2336
2337 static inline void
2338 gimple_omp_return_set_lhs (gimple *g, tree lhs)
2339 {
2340 gimple_statement_omp_return *omp_return_stmt =
2341 as_a <gimple_statement_omp_return *> (g);
2342 omp_return_stmt->val = lhs;
2343 }
2344
2345
2346 /* Get the LHS of OMP return. */
2347
2348 static inline tree
2349 gimple_omp_return_lhs (const gimple *g)
2350 {
2351 const gimple_statement_omp_return *omp_return_stmt =
2352 as_a <const gimple_statement_omp_return *> (g);
2353 return omp_return_stmt->val;
2354 }
2355
2356
2357 /* Return a pointer to the LHS of OMP return. */
2358
2359 static inline tree *
2360 gimple_omp_return_lhs_ptr (gimple *g)
2361 {
2362 gimple_statement_omp_return *omp_return_stmt =
2363 as_a <gimple_statement_omp_return *> (g);
2364 return &omp_return_stmt->val;
2365 }
2366
2367
2368 /* Return true if OMP section statement G has the GF_OMP_SECTION_LAST
2369 flag set. */
2370
2371 static inline bool
2372 gimple_omp_section_last_p (const gimple *g)
2373 {
2374 GIMPLE_CHECK (g, GIMPLE_OMP_SECTION);
2375 return (gimple_omp_subcode (g) & GF_OMP_SECTION_LAST) != 0;
2376 }
2377
2378
2379 /* Set the GF_OMP_SECTION_LAST flag on G. */
2380
2381 static inline void
2382 gimple_omp_section_set_last (gimple *g)
2383 {
2384 GIMPLE_CHECK (g, GIMPLE_OMP_SECTION);
2385 g->subcode |= GF_OMP_SECTION_LAST;
2386 }
2387
2388
2389 /* Return true if OMP parallel statement G has the
2390 GF_OMP_PARALLEL_COMBINED flag set. */
2391
2392 static inline bool
2393 gimple_omp_parallel_combined_p (const gimple *g)
2394 {
2395 GIMPLE_CHECK (g, GIMPLE_OMP_PARALLEL);
2396 return (gimple_omp_subcode (g) & GF_OMP_PARALLEL_COMBINED) != 0;
2397 }
2398
2399
2400 /* Set the GF_OMP_PARALLEL_COMBINED field in G depending on the boolean
2401 value of COMBINED_P. */
2402
2403 static inline void
2404 gimple_omp_parallel_set_combined_p (gimple *g, bool combined_p)
2405 {
2406 GIMPLE_CHECK (g, GIMPLE_OMP_PARALLEL);
2407 if (combined_p)
2408 g->subcode |= GF_OMP_PARALLEL_COMBINED;
2409 else
2410 g->subcode &= ~GF_OMP_PARALLEL_COMBINED;
2411 }
2412
2413
2414 /* Return true if OMP atomic load/store statement G has the
2415 GF_OMP_ATOMIC_NEED_VALUE flag set. */
2416
2417 static inline bool
2418 gimple_omp_atomic_need_value_p (const gimple *g)
2419 {
2420 if (gimple_code (g) != GIMPLE_OMP_ATOMIC_LOAD)
2421 GIMPLE_CHECK (g, GIMPLE_OMP_ATOMIC_STORE);
2422 return (gimple_omp_subcode (g) & GF_OMP_ATOMIC_NEED_VALUE) != 0;
2423 }
2424
2425
2426 /* Set the GF_OMP_ATOMIC_NEED_VALUE flag on G. */
2427
2428 static inline void
2429 gimple_omp_atomic_set_need_value (gimple *g)
2430 {
2431 if (gimple_code (g) != GIMPLE_OMP_ATOMIC_LOAD)
2432 GIMPLE_CHECK (g, GIMPLE_OMP_ATOMIC_STORE);
2433 g->subcode |= GF_OMP_ATOMIC_NEED_VALUE;
2434 }
2435
2436
2437 /* Return the memory order of the OMP atomic load/store statement G. */
2438
2439 static inline enum omp_memory_order
2440 gimple_omp_atomic_memory_order (const gimple *g)
2441 {
2442 if (gimple_code (g) != GIMPLE_OMP_ATOMIC_LOAD)
2443 GIMPLE_CHECK (g, GIMPLE_OMP_ATOMIC_STORE);
2444 return (enum omp_memory_order)
2445 (gimple_omp_subcode (g) & GF_OMP_ATOMIC_MEMORY_ORDER);
2446 }
2447
2448
2449 /* Set the memory order on G. */
2450
2451 static inline void
2452 gimple_omp_atomic_set_memory_order (gimple *g, enum omp_memory_order mo)
2453 {
2454 if (gimple_code (g) != GIMPLE_OMP_ATOMIC_LOAD)
2455 GIMPLE_CHECK (g, GIMPLE_OMP_ATOMIC_STORE);
2456 g->subcode = ((g->subcode & ~GF_OMP_ATOMIC_MEMORY_ORDER)
2457 | (mo & GF_OMP_ATOMIC_MEMORY_ORDER));
2458 }
2459
2460
2461 /* Return the number of operands for statement GS. */
2462
2463 static inline unsigned
2464 gimple_num_ops (const gimple *gs)
2465 {
2466 return gs->num_ops;
2467 }
2468
2469
2470 /* Set the number of operands for statement GS. */
2471
2472 static inline void
2473 gimple_set_num_ops (gimple *gs, unsigned num_ops)
2474 {
2475 gs->num_ops = num_ops;
2476 }
2477
2478
2479 /* Return the array of operands for statement GS. */
2480
2481 static inline tree *
2482 gimple_ops (gimple *gs)
2483 {
2484 size_t off;
2485
2486 /* All the tuples have their operand vector at the very bottom
2487 of the structure. Note that those structures that do not
2488 have an operand vector have a zero offset. */
2489 off = gimple_ops_offset_[gimple_statement_structure (gs)];
2490 gcc_gimple_checking_assert (off != 0);
2491
2492 return (tree *) ((char *) gs + off);
2493 }
2494
2495
2496 /* Return operand I for statement GS. */
2497
2498 static inline tree
2499 gimple_op (const gimple *gs, unsigned i)
2500 {
2501 if (gimple_has_ops (gs))
2502 {
2503 gcc_gimple_checking_assert (i < gimple_num_ops (gs));
2504 return gimple_ops (CONST_CAST_GIMPLE (gs))[i];
2505 }
2506 else
2507 return NULL_TREE;
2508 }
2509
2510 /* Return a pointer to operand I for statement GS. */
2511
2512 static inline tree *
2513 gimple_op_ptr (gimple *gs, unsigned i)
2514 {
2515 if (gimple_has_ops (gs))
2516 {
2517 gcc_gimple_checking_assert (i < gimple_num_ops (gs));
2518 return gimple_ops (gs) + i;
2519 }
2520 else
2521 return NULL;
2522 }
2523
2524 /* Set operand I of statement GS to OP. */
2525
2526 static inline void
2527 gimple_set_op (gimple *gs, unsigned i, tree op)
2528 {
2529 gcc_gimple_checking_assert (gimple_has_ops (gs) && i < gimple_num_ops (gs));
2530
2531 /* Note. It may be tempting to assert that OP matches
2532 is_gimple_operand, but that would be wrong. Different tuples
2533 accept slightly different sets of tree operands. Each caller
2534 should perform its own validation. */
2535 gimple_ops (gs)[i] = op;
2536 }
2537
2538 /* Return true if GS is a GIMPLE_ASSIGN. */
2539
2540 static inline bool
2541 is_gimple_assign (const gimple *gs)
2542 {
2543 return gimple_code (gs) == GIMPLE_ASSIGN;
2544 }
2545
2546 /* Determine if expression CODE is one of the valid expressions that can
2547 be used on the RHS of GIMPLE assignments. */
2548
2549 static inline enum gimple_rhs_class
2550 get_gimple_rhs_class (enum tree_code code)
2551 {
2552 return (enum gimple_rhs_class) gimple_rhs_class_table[(int) code];
2553 }
2554
2555 /* Return the LHS of assignment statement GS. */
2556
2557 static inline tree
2558 gimple_assign_lhs (const gassign *gs)
2559 {
2560 return gs->op[0];
2561 }
2562
2563 static inline tree
2564 gimple_assign_lhs (const gimple *gs)
2565 {
2566 const gassign *ass = GIMPLE_CHECK2<const gassign *> (gs);
2567 return gimple_assign_lhs (ass);
2568 }
2569
2570
2571 /* Return a pointer to the LHS of assignment statement GS. */
2572
2573 static inline tree *
2574 gimple_assign_lhs_ptr (gassign *gs)
2575 {
2576 return &gs->op[0];
2577 }
2578
2579 static inline tree *
2580 gimple_assign_lhs_ptr (gimple *gs)
2581 {
2582 gassign *ass = GIMPLE_CHECK2<gassign *> (gs);
2583 return gimple_assign_lhs_ptr (ass);
2584 }
2585
2586
2587 /* Set LHS to be the LHS operand of assignment statement GS. */
2588
2589 static inline void
2590 gimple_assign_set_lhs (gassign *gs, tree lhs)
2591 {
2592 gs->op[0] = lhs;
2593
2594 if (lhs && TREE_CODE (lhs) == SSA_NAME)
2595 SSA_NAME_DEF_STMT (lhs) = gs;
2596 }
2597
2598 static inline void
2599 gimple_assign_set_lhs (gimple *gs, tree lhs)
2600 {
2601 gassign *ass = GIMPLE_CHECK2<gassign *> (gs);
2602 gimple_assign_set_lhs (ass, lhs);
2603 }
2604
2605
2606 /* Return the first operand on the RHS of assignment statement GS. */
2607
2608 static inline tree
2609 gimple_assign_rhs1 (const gassign *gs)
2610 {
2611 return gs->op[1];
2612 }
2613
2614 static inline tree
2615 gimple_assign_rhs1 (const gimple *gs)
2616 {
2617 const gassign *ass = GIMPLE_CHECK2<const gassign *> (gs);
2618 return gimple_assign_rhs1 (ass);
2619 }
2620
2621
2622 /* Return a pointer to the first operand on the RHS of assignment
2623 statement GS. */
2624
2625 static inline tree *
2626 gimple_assign_rhs1_ptr (gassign *gs)
2627 {
2628 return &gs->op[1];
2629 }
2630
2631 static inline tree *
2632 gimple_assign_rhs1_ptr (gimple *gs)
2633 {
2634 gassign *ass = GIMPLE_CHECK2<gassign *> (gs);
2635 return gimple_assign_rhs1_ptr (ass);
2636 }
2637
2638 /* Set RHS to be the first operand on the RHS of assignment statement GS. */
2639
2640 static inline void
2641 gimple_assign_set_rhs1 (gassign *gs, tree rhs)
2642 {
2643 gs->op[1] = rhs;
2644 }
2645
2646 static inline void
2647 gimple_assign_set_rhs1 (gimple *gs, tree rhs)
2648 {
2649 gassign *ass = GIMPLE_CHECK2<gassign *> (gs);
2650 gimple_assign_set_rhs1 (ass, rhs);
2651 }
2652
2653
2654 /* Return the second operand on the RHS of assignment statement GS.
2655 If GS does not have two operands, NULL is returned instead. */
2656
2657 static inline tree
2658 gimple_assign_rhs2 (const gassign *gs)
2659 {
2660 if (gimple_num_ops (gs) >= 3)
2661 return gs->op[2];
2662 else
2663 return NULL_TREE;
2664 }
2665
2666 static inline tree
2667 gimple_assign_rhs2 (const gimple *gs)
2668 {
2669 const gassign *ass = GIMPLE_CHECK2<const gassign *> (gs);
2670 return gimple_assign_rhs2 (ass);
2671 }
2672
2673
2674 /* Return a pointer to the second operand on the RHS of assignment
2675 statement GS. */
2676
2677 static inline tree *
2678 gimple_assign_rhs2_ptr (gassign *gs)
2679 {
2680 gcc_gimple_checking_assert (gimple_num_ops (gs) >= 3);
2681 return &gs->op[2];
2682 }
2683
2684 static inline tree *
2685 gimple_assign_rhs2_ptr (gimple *gs)
2686 {
2687 gassign *ass = GIMPLE_CHECK2<gassign *> (gs);
2688 return gimple_assign_rhs2_ptr (ass);
2689 }
2690
2691
2692 /* Set RHS to be the second operand on the RHS of assignment statement GS. */
2693
2694 static inline void
2695 gimple_assign_set_rhs2 (gassign *gs, tree rhs)
2696 {
2697 gcc_gimple_checking_assert (gimple_num_ops (gs) >= 3);
2698 gs->op[2] = rhs;
2699 }
2700
2701 static inline void
2702 gimple_assign_set_rhs2 (gimple *gs, tree rhs)
2703 {
2704 gassign *ass = GIMPLE_CHECK2<gassign *> (gs);
2705 return gimple_assign_set_rhs2 (ass, rhs);
2706 }
2707
2708 /* Return the third operand on the RHS of assignment statement GS.
2709 If GS does not have two operands, NULL is returned instead. */
2710
2711 static inline tree
2712 gimple_assign_rhs3 (const gassign *gs)
2713 {
2714 if (gimple_num_ops (gs) >= 4)
2715 return gs->op[3];
2716 else
2717 return NULL_TREE;
2718 }
2719
2720 static inline tree
2721 gimple_assign_rhs3 (const gimple *gs)
2722 {
2723 const gassign *ass = GIMPLE_CHECK2<const gassign *> (gs);
2724 return gimple_assign_rhs3 (ass);
2725 }
2726
2727 /* Return a pointer to the third operand on the RHS of assignment
2728 statement GS. */
2729
2730 static inline tree *
2731 gimple_assign_rhs3_ptr (gimple *gs)
2732 {
2733 gassign *ass = GIMPLE_CHECK2<gassign *> (gs);
2734 gcc_gimple_checking_assert (gimple_num_ops (gs) >= 4);
2735 return &ass->op[3];
2736 }
2737
2738
2739 /* Set RHS to be the third operand on the RHS of assignment statement GS. */
2740
2741 static inline void
2742 gimple_assign_set_rhs3 (gassign *gs, tree rhs)
2743 {
2744 gcc_gimple_checking_assert (gimple_num_ops (gs) >= 4);
2745 gs->op[3] = rhs;
2746 }
2747
2748 static inline void
2749 gimple_assign_set_rhs3 (gimple *gs, tree rhs)
2750 {
2751 gassign *ass = GIMPLE_CHECK2<gassign *> (gs);
2752 gimple_assign_set_rhs3 (ass, rhs);
2753 }
2754
2755
2756 /* A wrapper around 3 operand gimple_assign_set_rhs_with_ops, for callers
2757 which expect to see only two operands. */
2758
2759 static inline void
2760 gimple_assign_set_rhs_with_ops (gimple_stmt_iterator *gsi, enum tree_code code,
2761 tree op1, tree op2)
2762 {
2763 gimple_assign_set_rhs_with_ops (gsi, code, op1, op2, NULL);
2764 }
2765
2766 /* A wrapper around 3 operand gimple_assign_set_rhs_with_ops, for callers
2767 which expect to see only one operands. */
2768
2769 static inline void
2770 gimple_assign_set_rhs_with_ops (gimple_stmt_iterator *gsi, enum tree_code code,
2771 tree op1)
2772 {
2773 gimple_assign_set_rhs_with_ops (gsi, code, op1, NULL, NULL);
2774 }
2775
2776 /* Returns true if GS is a nontemporal move. */
2777
2778 static inline bool
2779 gimple_assign_nontemporal_move_p (const gassign *gs)
2780 {
2781 return gs->nontemporal_move;
2782 }
2783
2784 /* Sets nontemporal move flag of GS to NONTEMPORAL. */
2785
2786 static inline void
2787 gimple_assign_set_nontemporal_move (gimple *gs, bool nontemporal)
2788 {
2789 GIMPLE_CHECK (gs, GIMPLE_ASSIGN);
2790 gs->nontemporal_move = nontemporal;
2791 }
2792
2793
2794 /* Return the code of the expression computed on the rhs of assignment
2795 statement GS. In case that the RHS is a single object, returns the
2796 tree code of the object. */
2797
2798 static inline enum tree_code
2799 gimple_assign_rhs_code (const gassign *gs)
2800 {
2801 enum tree_code code = (enum tree_code) gs->subcode;
2802 /* While we initially set subcode to the TREE_CODE of the rhs for
2803 GIMPLE_SINGLE_RHS assigns we do not update that subcode to stay
2804 in sync when we rewrite stmts into SSA form or do SSA propagations. */
2805 if (get_gimple_rhs_class (code) == GIMPLE_SINGLE_RHS)
2806 code = TREE_CODE (gs->op[1]);
2807
2808 return code;
2809 }
2810
2811 static inline enum tree_code
2812 gimple_assign_rhs_code (const gimple *gs)
2813 {
2814 const gassign *ass = GIMPLE_CHECK2<const gassign *> (gs);
2815 return gimple_assign_rhs_code (ass);
2816 }
2817
2818
2819 /* Set CODE to be the code for the expression computed on the RHS of
2820 assignment S. */
2821
2822 static inline void
2823 gimple_assign_set_rhs_code (gimple *s, enum tree_code code)
2824 {
2825 GIMPLE_CHECK (s, GIMPLE_ASSIGN);
2826 s->subcode = code;
2827 }
2828
2829
2830 /* Return the gimple rhs class of the code of the expression computed on
2831 the rhs of assignment statement GS.
2832 This will never return GIMPLE_INVALID_RHS. */
2833
2834 static inline enum gimple_rhs_class
2835 gimple_assign_rhs_class (const gimple *gs)
2836 {
2837 return get_gimple_rhs_class (gimple_assign_rhs_code (gs));
2838 }
2839
2840 /* Return true if GS is an assignment with a singleton RHS, i.e.,
2841 there is no operator associated with the assignment itself.
2842 Unlike gimple_assign_copy_p, this predicate returns true for
2843 any RHS operand, including those that perform an operation
2844 and do not have the semantics of a copy, such as COND_EXPR. */
2845
2846 static inline bool
2847 gimple_assign_single_p (const gimple *gs)
2848 {
2849 return (is_gimple_assign (gs)
2850 && gimple_assign_rhs_class (gs) == GIMPLE_SINGLE_RHS);
2851 }
2852
2853 /* Return true if GS performs a store to its lhs. */
2854
2855 static inline bool
2856 gimple_store_p (const gimple *gs)
2857 {
2858 tree lhs = gimple_get_lhs (gs);
2859 return lhs && !is_gimple_reg (lhs);
2860 }
2861
2862 /* Return true if GS is an assignment that loads from its rhs1. */
2863
2864 static inline bool
2865 gimple_assign_load_p (const gimple *gs)
2866 {
2867 tree rhs;
2868 if (!gimple_assign_single_p (gs))
2869 return false;
2870 rhs = gimple_assign_rhs1 (gs);
2871 if (TREE_CODE (rhs) == WITH_SIZE_EXPR)
2872 return true;
2873 rhs = get_base_address (rhs);
2874 return (DECL_P (rhs)
2875 || TREE_CODE (rhs) == MEM_REF || TREE_CODE (rhs) == TARGET_MEM_REF);
2876 }
2877
2878
2879 /* Return true if S is a type-cast assignment. */
2880
2881 static inline bool
2882 gimple_assign_cast_p (const gimple *s)
2883 {
2884 if (is_gimple_assign (s))
2885 {
2886 enum tree_code sc = gimple_assign_rhs_code (s);
2887 return CONVERT_EXPR_CODE_P (sc)
2888 || sc == VIEW_CONVERT_EXPR
2889 || sc == FIX_TRUNC_EXPR;
2890 }
2891
2892 return false;
2893 }
2894
2895 /* Return true if S is a clobber statement. */
2896
2897 static inline bool
2898 gimple_clobber_p (const gimple *s)
2899 {
2900 return gimple_assign_single_p (s)
2901 && TREE_CLOBBER_P (gimple_assign_rhs1 (s));
2902 }
2903
2904 /* Return true if GS is a GIMPLE_CALL. */
2905
2906 static inline bool
2907 is_gimple_call (const gimple *gs)
2908 {
2909 return gimple_code (gs) == GIMPLE_CALL;
2910 }
2911
2912 /* Return the LHS of call statement GS. */
2913
2914 static inline tree
2915 gimple_call_lhs (const gcall *gs)
2916 {
2917 return gs->op[0];
2918 }
2919
2920 static inline tree
2921 gimple_call_lhs (const gimple *gs)
2922 {
2923 const gcall *gc = GIMPLE_CHECK2<const gcall *> (gs);
2924 return gimple_call_lhs (gc);
2925 }
2926
2927
2928 /* Return a pointer to the LHS of call statement GS. */
2929
2930 static inline tree *
2931 gimple_call_lhs_ptr (gcall *gs)
2932 {
2933 return &gs->op[0];
2934 }
2935
2936 static inline tree *
2937 gimple_call_lhs_ptr (gimple *gs)
2938 {
2939 gcall *gc = GIMPLE_CHECK2<gcall *> (gs);
2940 return gimple_call_lhs_ptr (gc);
2941 }
2942
2943
2944 /* Set LHS to be the LHS operand of call statement GS. */
2945
2946 static inline void
2947 gimple_call_set_lhs (gcall *gs, tree lhs)
2948 {
2949 gs->op[0] = lhs;
2950 if (lhs && TREE_CODE (lhs) == SSA_NAME)
2951 SSA_NAME_DEF_STMT (lhs) = gs;
2952 }
2953
2954 static inline void
2955 gimple_call_set_lhs (gimple *gs, tree lhs)
2956 {
2957 gcall *gc = GIMPLE_CHECK2<gcall *> (gs);
2958 gimple_call_set_lhs (gc, lhs);
2959 }
2960
2961
2962 /* Return true if call GS calls an internal-only function, as enumerated
2963 by internal_fn. */
2964
2965 static inline bool
2966 gimple_call_internal_p (const gcall *gs)
2967 {
2968 return (gs->subcode & GF_CALL_INTERNAL) != 0;
2969 }
2970
2971 static inline bool
2972 gimple_call_internal_p (const gimple *gs)
2973 {
2974 const gcall *gc = GIMPLE_CHECK2<const gcall *> (gs);
2975 return gimple_call_internal_p (gc);
2976 }
2977
2978 /* Return true if call GS is marked as nocf_check. */
2979
2980 static inline bool
2981 gimple_call_nocf_check_p (const gcall *gs)
2982 {
2983 return (gs->subcode & GF_CALL_NOCF_CHECK) != 0;
2984 }
2985
2986 /* Mark statement GS as nocf_check call. */
2987
2988 static inline void
2989 gimple_call_set_nocf_check (gcall *gs, bool nocf_check)
2990 {
2991 if (nocf_check)
2992 gs->subcode |= GF_CALL_NOCF_CHECK;
2993 else
2994 gs->subcode &= ~GF_CALL_NOCF_CHECK;
2995 }
2996
2997 /* Return the target of internal call GS. */
2998
2999 static inline enum internal_fn
3000 gimple_call_internal_fn (const gcall *gs)
3001 {
3002 gcc_gimple_checking_assert (gimple_call_internal_p (gs));
3003 return gs->u.internal_fn;
3004 }
3005
3006 static inline enum internal_fn
3007 gimple_call_internal_fn (const gimple *gs)
3008 {
3009 const gcall *gc = GIMPLE_CHECK2<const gcall *> (gs);
3010 return gimple_call_internal_fn (gc);
3011 }
3012
3013 /* Return true, if this internal gimple call is unique. */
3014
3015 static inline bool
3016 gimple_call_internal_unique_p (const gcall *gs)
3017 {
3018 return gimple_call_internal_fn (gs) == IFN_UNIQUE;
3019 }
3020
3021 static inline bool
3022 gimple_call_internal_unique_p (const gimple *gs)
3023 {
3024 const gcall *gc = GIMPLE_CHECK2<const gcall *> (gs);
3025 return gimple_call_internal_unique_p (gc);
3026 }
3027
3028 /* Return true if GS is an internal function FN. */
3029
3030 static inline bool
3031 gimple_call_internal_p (const gimple *gs, internal_fn fn)
3032 {
3033 return (is_gimple_call (gs)
3034 && gimple_call_internal_p (gs)
3035 && gimple_call_internal_fn (gs) == fn);
3036 }
3037
3038 /* If CTRL_ALTERING_P is true, mark GIMPLE_CALL S to be a stmt
3039 that could alter control flow. */
3040
3041 static inline void
3042 gimple_call_set_ctrl_altering (gcall *s, bool ctrl_altering_p)
3043 {
3044 if (ctrl_altering_p)
3045 s->subcode |= GF_CALL_CTRL_ALTERING;
3046 else
3047 s->subcode &= ~GF_CALL_CTRL_ALTERING;
3048 }
3049
3050 static inline void
3051 gimple_call_set_ctrl_altering (gimple *s, bool ctrl_altering_p)
3052 {
3053 gcall *gc = GIMPLE_CHECK2<gcall *> (s);
3054 gimple_call_set_ctrl_altering (gc, ctrl_altering_p);
3055 }
3056
3057 /* Return true if call GS calls an func whose GF_CALL_CTRL_ALTERING
3058 flag is set. Such call could not be a stmt in the middle of a bb. */
3059
3060 static inline bool
3061 gimple_call_ctrl_altering_p (const gcall *gs)
3062 {
3063 return (gs->subcode & GF_CALL_CTRL_ALTERING) != 0;
3064 }
3065
3066 static inline bool
3067 gimple_call_ctrl_altering_p (const gimple *gs)
3068 {
3069 const gcall *gc = GIMPLE_CHECK2<const gcall *> (gs);
3070 return gimple_call_ctrl_altering_p (gc);
3071 }
3072
3073
3074 /* Return the function type of the function called by GS. */
3075
3076 static inline tree
3077 gimple_call_fntype (const gcall *gs)
3078 {
3079 if (gimple_call_internal_p (gs))
3080 return NULL_TREE;
3081 return gs->u.fntype;
3082 }
3083
3084 static inline tree
3085 gimple_call_fntype (const gimple *gs)
3086 {
3087 const gcall *call_stmt = GIMPLE_CHECK2<const gcall *> (gs);
3088 return gimple_call_fntype (call_stmt);
3089 }
3090
3091 /* Set the type of the function called by CALL_STMT to FNTYPE. */
3092
3093 static inline void
3094 gimple_call_set_fntype (gcall *call_stmt, tree fntype)
3095 {
3096 gcc_gimple_checking_assert (!gimple_call_internal_p (call_stmt));
3097 call_stmt->u.fntype = fntype;
3098 }
3099
3100
3101 /* Return the tree node representing the function called by call
3102 statement GS. */
3103
3104 static inline tree
3105 gimple_call_fn (const gcall *gs)
3106 {
3107 return gs->op[1];
3108 }
3109
3110 static inline tree
3111 gimple_call_fn (const gimple *gs)
3112 {
3113 const gcall *gc = GIMPLE_CHECK2<const gcall *> (gs);
3114 return gimple_call_fn (gc);
3115 }
3116
3117 /* Return a pointer to the tree node representing the function called by call
3118 statement GS. */
3119
3120 static inline tree *
3121 gimple_call_fn_ptr (gcall *gs)
3122 {
3123 return &gs->op[1];
3124 }
3125
3126 static inline tree *
3127 gimple_call_fn_ptr (gimple *gs)
3128 {
3129 gcall *gc = GIMPLE_CHECK2<gcall *> (gs);
3130 return gimple_call_fn_ptr (gc);
3131 }
3132
3133
3134 /* Set FN to be the function called by call statement GS. */
3135
3136 static inline void
3137 gimple_call_set_fn (gcall *gs, tree fn)
3138 {
3139 gcc_gimple_checking_assert (!gimple_call_internal_p (gs));
3140 gs->op[1] = fn;
3141 }
3142
3143
3144 /* Set FNDECL to be the function called by call statement GS. */
3145
3146 static inline void
3147 gimple_call_set_fndecl (gcall *gs, tree decl)
3148 {
3149 gcc_gimple_checking_assert (!gimple_call_internal_p (gs));
3150 gs->op[1] = build1_loc (gimple_location (gs), ADDR_EXPR,
3151 build_pointer_type (TREE_TYPE (decl)), decl);
3152 }
3153
3154 static inline void
3155 gimple_call_set_fndecl (gimple *gs, tree decl)
3156 {
3157 gcall *gc = GIMPLE_CHECK2<gcall *> (gs);
3158 gimple_call_set_fndecl (gc, decl);
3159 }
3160
3161
3162 /* Set internal function FN to be the function called by call statement CALL_STMT. */
3163
3164 static inline void
3165 gimple_call_set_internal_fn (gcall *call_stmt, enum internal_fn fn)
3166 {
3167 gcc_gimple_checking_assert (gimple_call_internal_p (call_stmt));
3168 call_stmt->u.internal_fn = fn;
3169 }
3170
3171
3172 /* If a given GIMPLE_CALL's callee is a FUNCTION_DECL, return it.
3173 Otherwise return NULL. This function is analogous to
3174 get_callee_fndecl in tree land. */
3175
3176 static inline tree
3177 gimple_call_fndecl (const gcall *gs)
3178 {
3179 return gimple_call_addr_fndecl (gimple_call_fn (gs));
3180 }
3181
3182 static inline tree
3183 gimple_call_fndecl (const gimple *gs)
3184 {
3185 const gcall *gc = GIMPLE_CHECK2<const gcall *> (gs);
3186 return gimple_call_fndecl (gc);
3187 }
3188
3189
3190 /* Return the type returned by call statement GS. */
3191
3192 static inline tree
3193 gimple_call_return_type (const gcall *gs)
3194 {
3195 tree type = gimple_call_fntype (gs);
3196
3197 if (type == NULL_TREE)
3198 return TREE_TYPE (gimple_call_lhs (gs));
3199
3200 /* The type returned by a function is the type of its
3201 function type. */
3202 return TREE_TYPE (type);
3203 }
3204
3205
3206 /* Return the static chain for call statement GS. */
3207
3208 static inline tree
3209 gimple_call_chain (const gcall *gs)
3210 {
3211 return gs->op[2];
3212 }
3213
3214 static inline tree
3215 gimple_call_chain (const gimple *gs)
3216 {
3217 const gcall *gc = GIMPLE_CHECK2<const gcall *> (gs);
3218 return gimple_call_chain (gc);
3219 }
3220
3221
3222 /* Return a pointer to the static chain for call statement CALL_STMT. */
3223
3224 static inline tree *
3225 gimple_call_chain_ptr (gcall *call_stmt)
3226 {
3227 return &call_stmt->op[2];
3228 }
3229
3230 /* Set CHAIN to be the static chain for call statement CALL_STMT. */
3231
3232 static inline void
3233 gimple_call_set_chain (gcall *call_stmt, tree chain)
3234 {
3235 call_stmt->op[2] = chain;
3236 }
3237
3238
3239 /* Return the number of arguments used by call statement GS. */
3240
3241 static inline unsigned
3242 gimple_call_num_args (const gcall *gs)
3243 {
3244 return gimple_num_ops (gs) - 3;
3245 }
3246
3247 static inline unsigned
3248 gimple_call_num_args (const gimple *gs)
3249 {
3250 const gcall *gc = GIMPLE_CHECK2<const gcall *> (gs);
3251 return gimple_call_num_args (gc);
3252 }
3253
3254
3255 /* Return the argument at position INDEX for call statement GS. */
3256
3257 static inline tree
3258 gimple_call_arg (const gcall *gs, unsigned index)
3259 {
3260 gcc_gimple_checking_assert (gimple_num_ops (gs) > index + 3);
3261 return gs->op[index + 3];
3262 }
3263
3264 static inline tree
3265 gimple_call_arg (const gimple *gs, unsigned index)
3266 {
3267 const gcall *gc = GIMPLE_CHECK2<const gcall *> (gs);
3268 return gimple_call_arg (gc, index);
3269 }
3270
3271
3272 /* Return a pointer to the argument at position INDEX for call
3273 statement GS. */
3274
3275 static inline tree *
3276 gimple_call_arg_ptr (gcall *gs, unsigned index)
3277 {
3278 gcc_gimple_checking_assert (gimple_num_ops (gs) > index + 3);
3279 return &gs->op[index + 3];
3280 }
3281
3282 static inline tree *
3283 gimple_call_arg_ptr (gimple *gs, unsigned index)
3284 {
3285 gcall *gc = GIMPLE_CHECK2<gcall *> (gs);
3286 return gimple_call_arg_ptr (gc, index);
3287 }
3288
3289
3290 /* Set ARG to be the argument at position INDEX for call statement GS. */
3291
3292 static inline void
3293 gimple_call_set_arg (gcall *gs, unsigned index, tree arg)
3294 {
3295 gcc_gimple_checking_assert (gimple_num_ops (gs) > index + 3);
3296 gs->op[index + 3] = arg;
3297 }
3298
3299 static inline void
3300 gimple_call_set_arg (gimple *gs, unsigned index, tree arg)
3301 {
3302 gcall *gc = GIMPLE_CHECK2<gcall *> (gs);
3303 gimple_call_set_arg (gc, index, arg);
3304 }
3305
3306
3307 /* If TAIL_P is true, mark call statement S as being a tail call
3308 (i.e., a call just before the exit of a function). These calls are
3309 candidate for tail call optimization. */
3310
3311 static inline void
3312 gimple_call_set_tail (gcall *s, bool tail_p)
3313 {
3314 if (tail_p)
3315 s->subcode |= GF_CALL_TAILCALL;
3316 else
3317 s->subcode &= ~GF_CALL_TAILCALL;
3318 }
3319
3320
3321 /* Return true if GIMPLE_CALL S is marked as a tail call. */
3322
3323 static inline bool
3324 gimple_call_tail_p (const gcall *s)
3325 {
3326 return (s->subcode & GF_CALL_TAILCALL) != 0;
3327 }
3328
3329 /* Mark (or clear) call statement S as requiring tail call optimization. */
3330
3331 static inline void
3332 gimple_call_set_must_tail (gcall *s, bool must_tail_p)
3333 {
3334 if (must_tail_p)
3335 s->subcode |= GF_CALL_MUST_TAIL_CALL;
3336 else
3337 s->subcode &= ~GF_CALL_MUST_TAIL_CALL;
3338 }
3339
3340 /* Return true if call statement has been marked as requiring
3341 tail call optimization. */
3342
3343 static inline bool
3344 gimple_call_must_tail_p (const gcall *s)
3345 {
3346 return (s->subcode & GF_CALL_MUST_TAIL_CALL) != 0;
3347 }
3348
3349 /* If RETURN_SLOT_OPT_P is true mark GIMPLE_CALL S as valid for return
3350 slot optimization. This transformation uses the target of the call
3351 expansion as the return slot for calls that return in memory. */
3352
3353 static inline void
3354 gimple_call_set_return_slot_opt (gcall *s, bool return_slot_opt_p)
3355 {
3356 if (return_slot_opt_p)
3357 s->subcode |= GF_CALL_RETURN_SLOT_OPT;
3358 else
3359 s->subcode &= ~GF_CALL_RETURN_SLOT_OPT;
3360 }
3361
3362
3363 /* Return true if S is marked for return slot optimization. */
3364
3365 static inline bool
3366 gimple_call_return_slot_opt_p (const gcall *s)
3367 {
3368 return (s->subcode & GF_CALL_RETURN_SLOT_OPT) != 0;
3369 }
3370
3371
3372 /* If FROM_THUNK_P is true, mark GIMPLE_CALL S as being the jump from a
3373 thunk to the thunked-to function. */
3374
3375 static inline void
3376 gimple_call_set_from_thunk (gcall *s, bool from_thunk_p)
3377 {
3378 if (from_thunk_p)
3379 s->subcode |= GF_CALL_FROM_THUNK;
3380 else
3381 s->subcode &= ~GF_CALL_FROM_THUNK;
3382 }
3383
3384
3385 /* Return true if GIMPLE_CALL S is a jump from a thunk. */
3386
3387 static inline bool
3388 gimple_call_from_thunk_p (gcall *s)
3389 {
3390 return (s->subcode & GF_CALL_FROM_THUNK) != 0;
3391 }
3392
3393
3394 /* If PASS_ARG_PACK_P is true, GIMPLE_CALL S is a stdarg call that needs the
3395 argument pack in its argument list. */
3396
3397 static inline void
3398 gimple_call_set_va_arg_pack (gcall *s, bool pass_arg_pack_p)
3399 {
3400 if (pass_arg_pack_p)
3401 s->subcode |= GF_CALL_VA_ARG_PACK;
3402 else
3403 s->subcode &= ~GF_CALL_VA_ARG_PACK;
3404 }
3405
3406
3407 /* Return true if GIMPLE_CALL S is a stdarg call that needs the
3408 argument pack in its argument list. */
3409
3410 static inline bool
3411 gimple_call_va_arg_pack_p (const gcall *s)
3412 {
3413 return (s->subcode & GF_CALL_VA_ARG_PACK) != 0;
3414 }
3415
3416
3417 /* Return true if S is a noreturn call. */
3418
3419 static inline bool
3420 gimple_call_noreturn_p (const gcall *s)
3421 {
3422 return (gimple_call_flags (s) & ECF_NORETURN) != 0;
3423 }
3424
3425 static inline bool
3426 gimple_call_noreturn_p (const gimple *s)
3427 {
3428 const gcall *gc = GIMPLE_CHECK2<const gcall *> (s);
3429 return gimple_call_noreturn_p (gc);
3430 }
3431
3432
3433 /* If NOTHROW_P is true, GIMPLE_CALL S is a call that is known to not throw
3434 even if the called function can throw in other cases. */
3435
3436 static inline void
3437 gimple_call_set_nothrow (gcall *s, bool nothrow_p)
3438 {
3439 if (nothrow_p)
3440 s->subcode |= GF_CALL_NOTHROW;
3441 else
3442 s->subcode &= ~GF_CALL_NOTHROW;
3443 }
3444
3445 /* Return true if S is a nothrow call. */
3446
3447 static inline bool
3448 gimple_call_nothrow_p (gcall *s)
3449 {
3450 return (gimple_call_flags (s) & ECF_NOTHROW) != 0;
3451 }
3452
3453 /* If FOR_VAR is true, GIMPLE_CALL S is a call to builtin_alloca that
3454 is known to be emitted for VLA objects. Those are wrapped by
3455 stack_save/stack_restore calls and hence can't lead to unbounded
3456 stack growth even when they occur in loops. */
3457
3458 static inline void
3459 gimple_call_set_alloca_for_var (gcall *s, bool for_var)
3460 {
3461 if (for_var)
3462 s->subcode |= GF_CALL_ALLOCA_FOR_VAR;
3463 else
3464 s->subcode &= ~GF_CALL_ALLOCA_FOR_VAR;
3465 }
3466
3467 /* Return true of S is a call to builtin_alloca emitted for VLA objects. */
3468
3469 static inline bool
3470 gimple_call_alloca_for_var_p (gcall *s)
3471 {
3472 return (s->subcode & GF_CALL_ALLOCA_FOR_VAR) != 0;
3473 }
3474
3475 /* If BY_DESCRIPTOR_P is true, GIMPLE_CALL S is an indirect call for which
3476 pointers to nested function are descriptors instead of trampolines. */
3477
3478 static inline void
3479 gimple_call_set_by_descriptor (gcall *s, bool by_descriptor_p)
3480 {
3481 if (by_descriptor_p)
3482 s->subcode |= GF_CALL_BY_DESCRIPTOR;
3483 else
3484 s->subcode &= ~GF_CALL_BY_DESCRIPTOR;
3485 }
3486
3487 /* Return true if S is a by-descriptor call. */
3488
3489 static inline bool
3490 gimple_call_by_descriptor_p (gcall *s)
3491 {
3492 return (s->subcode & GF_CALL_BY_DESCRIPTOR) != 0;
3493 }
3494
3495 /* Copy all the GF_CALL_* flags from ORIG_CALL to DEST_CALL. */
3496
3497 static inline void
3498 gimple_call_copy_flags (gcall *dest_call, gcall *orig_call)
3499 {
3500 dest_call->subcode = orig_call->subcode;
3501 }
3502
3503
3504 /* Return a pointer to the points-to solution for the set of call-used
3505 variables of the call CALL_STMT. */
3506
3507 static inline struct pt_solution *
3508 gimple_call_use_set (gcall *call_stmt)
3509 {
3510 return &call_stmt->call_used;
3511 }
3512
3513 /* As above, but const. */
3514
3515 static inline const pt_solution *
3516 gimple_call_use_set (const gcall *call_stmt)
3517 {
3518 return &call_stmt->call_used;
3519 }
3520
3521 /* Return a pointer to the points-to solution for the set of call-used
3522 variables of the call CALL_STMT. */
3523
3524 static inline struct pt_solution *
3525 gimple_call_clobber_set (gcall *call_stmt)
3526 {
3527 return &call_stmt->call_clobbered;
3528 }
3529
3530 /* As above, but const. */
3531
3532 static inline const pt_solution *
3533 gimple_call_clobber_set (const gcall *call_stmt)
3534 {
3535 return &call_stmt->call_clobbered;
3536 }
3537
3538
3539 /* Returns true if this is a GIMPLE_ASSIGN or a GIMPLE_CALL with a
3540 non-NULL lhs. */
3541
3542 static inline bool
3543 gimple_has_lhs (const gimple *stmt)
3544 {
3545 if (is_gimple_assign (stmt))
3546 return true;
3547 if (const gcall *call = dyn_cast <const gcall *> (stmt))
3548 return gimple_call_lhs (call) != NULL_TREE;
3549 return false;
3550 }
3551
3552
3553 /* Return the code of the predicate computed by conditional statement GS. */
3554
3555 static inline enum tree_code
3556 gimple_cond_code (const gcond *gs)
3557 {
3558 return (enum tree_code) gs->subcode;
3559 }
3560
3561 static inline enum tree_code
3562 gimple_cond_code (const gimple *gs)
3563 {
3564 const gcond *gc = GIMPLE_CHECK2<const gcond *> (gs);
3565 return gimple_cond_code (gc);
3566 }
3567
3568
3569 /* Set CODE to be the predicate code for the conditional statement GS. */
3570
3571 static inline void
3572 gimple_cond_set_code (gcond *gs, enum tree_code code)
3573 {
3574 gs->subcode = code;
3575 }
3576
3577
3578 /* Return the LHS of the predicate computed by conditional statement GS. */
3579
3580 static inline tree
3581 gimple_cond_lhs (const gcond *gs)
3582 {
3583 return gs->op[0];
3584 }
3585
3586 static inline tree
3587 gimple_cond_lhs (const gimple *gs)
3588 {
3589 const gcond *gc = GIMPLE_CHECK2<const gcond *> (gs);
3590 return gimple_cond_lhs (gc);
3591 }
3592
3593 /* Return the pointer to the LHS of the predicate computed by conditional
3594 statement GS. */
3595
3596 static inline tree *
3597 gimple_cond_lhs_ptr (gcond *gs)
3598 {
3599 return &gs->op[0];
3600 }
3601
3602 /* Set LHS to be the LHS operand of the predicate computed by
3603 conditional statement GS. */
3604
3605 static inline void
3606 gimple_cond_set_lhs (gcond *gs, tree lhs)
3607 {
3608 gs->op[0] = lhs;
3609 }
3610
3611
3612 /* Return the RHS operand of the predicate computed by conditional GS. */
3613
3614 static inline tree
3615 gimple_cond_rhs (const gcond *gs)
3616 {
3617 return gs->op[1];
3618 }
3619
3620 static inline tree
3621 gimple_cond_rhs (const gimple *gs)
3622 {
3623 const gcond *gc = GIMPLE_CHECK2<const gcond *> (gs);
3624 return gimple_cond_rhs (gc);
3625 }
3626
3627 /* Return the pointer to the RHS operand of the predicate computed by
3628 conditional GS. */
3629
3630 static inline tree *
3631 gimple_cond_rhs_ptr (gcond *gs)
3632 {
3633 return &gs->op[1];
3634 }
3635
3636
3637 /* Set RHS to be the RHS operand of the predicate computed by
3638 conditional statement GS. */
3639
3640 static inline void
3641 gimple_cond_set_rhs (gcond *gs, tree rhs)
3642 {
3643 gs->op[1] = rhs;
3644 }
3645
3646
3647 /* Return the label used by conditional statement GS when its
3648 predicate evaluates to true. */
3649
3650 static inline tree
3651 gimple_cond_true_label (const gcond *gs)
3652 {
3653 return gs->op[2];
3654 }
3655
3656
3657 /* Set LABEL to be the label used by conditional statement GS when its
3658 predicate evaluates to true. */
3659
3660 static inline void
3661 gimple_cond_set_true_label (gcond *gs, tree label)
3662 {
3663 gs->op[2] = label;
3664 }
3665
3666
3667 /* Set LABEL to be the label used by conditional statement GS when its
3668 predicate evaluates to false. */
3669
3670 static inline void
3671 gimple_cond_set_false_label (gcond *gs, tree label)
3672 {
3673 gs->op[3] = label;
3674 }
3675
3676
3677 /* Return the label used by conditional statement GS when its
3678 predicate evaluates to false. */
3679
3680 static inline tree
3681 gimple_cond_false_label (const gcond *gs)
3682 {
3683 return gs->op[3];
3684 }
3685
3686
3687 /* Set the conditional COND_STMT to be of the form 'if (1 == 0)'. */
3688
3689 static inline void
3690 gimple_cond_make_false (gcond *gs)
3691 {
3692 gimple_cond_set_lhs (gs, boolean_false_node);
3693 gimple_cond_set_rhs (gs, boolean_false_node);
3694 gs->subcode = NE_EXPR;
3695 }
3696
3697
3698 /* Set the conditional COND_STMT to be of the form 'if (1 == 1)'. */
3699
3700 static inline void
3701 gimple_cond_make_true (gcond *gs)
3702 {
3703 gimple_cond_set_lhs (gs, boolean_true_node);
3704 gimple_cond_set_rhs (gs, boolean_false_node);
3705 gs->subcode = NE_EXPR;
3706 }
3707
3708 /* Check if conditional statemente GS is of the form 'if (1 == 1)',
3709 'if (0 == 0)', 'if (1 != 0)' or 'if (0 != 1)' */
3710
3711 static inline bool
3712 gimple_cond_true_p (const gcond *gs)
3713 {
3714 tree lhs = gimple_cond_lhs (gs);
3715 tree rhs = gimple_cond_rhs (gs);
3716 enum tree_code code = gimple_cond_code (gs);
3717
3718 if (lhs != boolean_true_node && lhs != boolean_false_node)
3719 return false;
3720
3721 if (rhs != boolean_true_node && rhs != boolean_false_node)
3722 return false;
3723
3724 if (code == NE_EXPR && lhs != rhs)
3725 return true;
3726
3727 if (code == EQ_EXPR && lhs == rhs)
3728 return true;
3729
3730 return false;
3731 }
3732
3733 /* Check if conditional statement GS is of the form 'if (1 != 1)',
3734 'if (0 != 0)', 'if (1 == 0)' or 'if (0 == 1)' */
3735
3736 static inline bool
3737 gimple_cond_false_p (const gcond *gs)
3738 {
3739 tree lhs = gimple_cond_lhs (gs);
3740 tree rhs = gimple_cond_rhs (gs);
3741 enum tree_code code = gimple_cond_code (gs);
3742
3743 if (lhs != boolean_true_node && lhs != boolean_false_node)
3744 return false;
3745
3746 if (rhs != boolean_true_node && rhs != boolean_false_node)
3747 return false;
3748
3749 if (code == NE_EXPR && lhs == rhs)
3750 return true;
3751
3752 if (code == EQ_EXPR && lhs != rhs)
3753 return true;
3754
3755 return false;
3756 }
3757
3758 /* Set the code, LHS and RHS of GIMPLE_COND STMT from CODE, LHS and RHS. */
3759
3760 static inline void
3761 gimple_cond_set_condition (gcond *stmt, enum tree_code code, tree lhs,
3762 tree rhs)
3763 {
3764 gimple_cond_set_code (stmt, code);
3765 gimple_cond_set_lhs (stmt, lhs);
3766 gimple_cond_set_rhs (stmt, rhs);
3767 }
3768
3769 /* Return the LABEL_DECL node used by GIMPLE_LABEL statement GS. */
3770
3771 static inline tree
3772 gimple_label_label (const glabel *gs)
3773 {
3774 return gs->op[0];
3775 }
3776
3777
3778 /* Set LABEL to be the LABEL_DECL node used by GIMPLE_LABEL statement
3779 GS. */
3780
3781 static inline void
3782 gimple_label_set_label (glabel *gs, tree label)
3783 {
3784 gs->op[0] = label;
3785 }
3786
3787
3788 /* Return the destination of the unconditional jump GS. */
3789
3790 static inline tree
3791 gimple_goto_dest (const gimple *gs)
3792 {
3793 GIMPLE_CHECK (gs, GIMPLE_GOTO);
3794 return gimple_op (gs, 0);
3795 }
3796
3797
3798 /* Set DEST to be the destination of the unconditonal jump GS. */
3799
3800 static inline void
3801 gimple_goto_set_dest (ggoto *gs, tree dest)
3802 {
3803 gs->op[0] = dest;
3804 }
3805
3806
3807 /* Return the variables declared in the GIMPLE_BIND statement GS. */
3808
3809 static inline tree
3810 gimple_bind_vars (const gbind *bind_stmt)
3811 {
3812 return bind_stmt->vars;
3813 }
3814
3815
3816 /* Set VARS to be the set of variables declared in the GIMPLE_BIND
3817 statement GS. */
3818
3819 static inline void
3820 gimple_bind_set_vars (gbind *bind_stmt, tree vars)
3821 {
3822 bind_stmt->vars = vars;
3823 }
3824
3825
3826 /* Append VARS to the set of variables declared in the GIMPLE_BIND
3827 statement GS. */
3828
3829 static inline void
3830 gimple_bind_append_vars (gbind *bind_stmt, tree vars)
3831 {
3832 bind_stmt->vars = chainon (bind_stmt->vars, vars);
3833 }
3834
3835
3836 static inline gimple_seq *
3837 gimple_bind_body_ptr (gbind *bind_stmt)
3838 {
3839 return &bind_stmt->body;
3840 }
3841
3842 /* Return the GIMPLE sequence contained in the GIMPLE_BIND statement GS. */
3843
3844 static inline gimple_seq
3845 gimple_bind_body (const gbind *gs)
3846 {
3847 return *gimple_bind_body_ptr (const_cast <gbind *> (gs));
3848 }
3849
3850
3851 /* Set SEQ to be the GIMPLE sequence contained in the GIMPLE_BIND
3852 statement GS. */
3853
3854 static inline void
3855 gimple_bind_set_body (gbind *bind_stmt, gimple_seq seq)
3856 {
3857 bind_stmt->body = seq;
3858 }
3859
3860
3861 /* Append a statement to the end of a GIMPLE_BIND's body. */
3862
3863 static inline void
3864 gimple_bind_add_stmt (gbind *bind_stmt, gimple *stmt)
3865 {
3866 gimple_seq_add_stmt (&bind_stmt->body, stmt);
3867 }
3868
3869
3870 /* Append a sequence of statements to the end of a GIMPLE_BIND's body. */
3871
3872 static inline void
3873 gimple_bind_add_seq (gbind *bind_stmt, gimple_seq seq)
3874 {
3875 gimple_seq_add_seq (&bind_stmt->body, seq);
3876 }
3877
3878
3879 /* Return the TREE_BLOCK node associated with GIMPLE_BIND statement
3880 GS. This is analogous to the BIND_EXPR_BLOCK field in trees. */
3881
3882 static inline tree
3883 gimple_bind_block (const gbind *bind_stmt)
3884 {
3885 return bind_stmt->block;
3886 }
3887
3888
3889 /* Set BLOCK to be the TREE_BLOCK node associated with GIMPLE_BIND
3890 statement GS. */
3891
3892 static inline void
3893 gimple_bind_set_block (gbind *bind_stmt, tree block)
3894 {
3895 gcc_gimple_checking_assert (block == NULL_TREE
3896 || TREE_CODE (block) == BLOCK);
3897 bind_stmt->block = block;
3898 }
3899
3900
3901 /* Return the number of input operands for GIMPLE_ASM ASM_STMT. */
3902
3903 static inline unsigned
3904 gimple_asm_ninputs (const gasm *asm_stmt)
3905 {
3906 return asm_stmt->ni;
3907 }
3908
3909
3910 /* Return the number of output operands for GIMPLE_ASM ASM_STMT. */
3911
3912 static inline unsigned
3913 gimple_asm_noutputs (const gasm *asm_stmt)
3914 {
3915 return asm_stmt->no;
3916 }
3917
3918
3919 /* Return the number of clobber operands for GIMPLE_ASM ASM_STMT. */
3920
3921 static inline unsigned
3922 gimple_asm_nclobbers (const gasm *asm_stmt)
3923 {
3924 return asm_stmt->nc;
3925 }
3926
3927 /* Return the number of label operands for GIMPLE_ASM ASM_STMT. */
3928
3929 static inline unsigned
3930 gimple_asm_nlabels (const gasm *asm_stmt)
3931 {
3932 return asm_stmt->nl;
3933 }
3934
3935 /* Return input operand INDEX of GIMPLE_ASM ASM_STMT. */
3936
3937 static inline tree
3938 gimple_asm_input_op (const gasm *asm_stmt, unsigned index)
3939 {
3940 gcc_gimple_checking_assert (index < asm_stmt->ni);
3941 return asm_stmt->op[index + asm_stmt->no];
3942 }
3943
3944 /* Set IN_OP to be input operand INDEX in GIMPLE_ASM ASM_STMT. */
3945
3946 static inline void
3947 gimple_asm_set_input_op (gasm *asm_stmt, unsigned index, tree in_op)
3948 {
3949 gcc_gimple_checking_assert (index < asm_stmt->ni
3950 && TREE_CODE (in_op) == TREE_LIST);
3951 asm_stmt->op[index + asm_stmt->no] = in_op;
3952 }
3953
3954
3955 /* Return output operand INDEX of GIMPLE_ASM ASM_STMT. */
3956
3957 static inline tree
3958 gimple_asm_output_op (const gasm *asm_stmt, unsigned index)
3959 {
3960 gcc_gimple_checking_assert (index < asm_stmt->no);
3961 return asm_stmt->op[index];
3962 }
3963
3964 /* Set OUT_OP to be output operand INDEX in GIMPLE_ASM ASM_STMT. */
3965
3966 static inline void
3967 gimple_asm_set_output_op (gasm *asm_stmt, unsigned index, tree out_op)
3968 {
3969 gcc_gimple_checking_assert (index < asm_stmt->no
3970 && TREE_CODE (out_op) == TREE_LIST);
3971 asm_stmt->op[index] = out_op;
3972 }
3973
3974
3975 /* Return clobber operand INDEX of GIMPLE_ASM ASM_STMT. */
3976
3977 static inline tree
3978 gimple_asm_clobber_op (const gasm *asm_stmt, unsigned index)
3979 {
3980 gcc_gimple_checking_assert (index < asm_stmt->nc);
3981 return asm_stmt->op[index + asm_stmt->ni + asm_stmt->no];
3982 }
3983
3984
3985 /* Set CLOBBER_OP to be clobber operand INDEX in GIMPLE_ASM ASM_STMT. */
3986
3987 static inline void
3988 gimple_asm_set_clobber_op (gasm *asm_stmt, unsigned index, tree clobber_op)
3989 {
3990 gcc_gimple_checking_assert (index < asm_stmt->nc
3991 && TREE_CODE (clobber_op) == TREE_LIST);
3992 asm_stmt->op[index + asm_stmt->ni + asm_stmt->no] = clobber_op;
3993 }
3994
3995 /* Return label operand INDEX of GIMPLE_ASM ASM_STMT. */
3996
3997 static inline tree
3998 gimple_asm_label_op (const gasm *asm_stmt, unsigned index)
3999 {
4000 gcc_gimple_checking_assert (index < asm_stmt->nl);
4001 return asm_stmt->op[index + asm_stmt->ni + asm_stmt->nc];
4002 }
4003
4004 /* Set LABEL_OP to be label operand INDEX in GIMPLE_ASM ASM_STMT. */
4005
4006 static inline void
4007 gimple_asm_set_label_op (gasm *asm_stmt, unsigned index, tree label_op)
4008 {
4009 gcc_gimple_checking_assert (index < asm_stmt->nl
4010 && TREE_CODE (label_op) == TREE_LIST);
4011 asm_stmt->op[index + asm_stmt->ni + asm_stmt->nc] = label_op;
4012 }
4013
4014 /* Return the string representing the assembly instruction in
4015 GIMPLE_ASM ASM_STMT. */
4016
4017 static inline const char *
4018 gimple_asm_string (const gasm *asm_stmt)
4019 {
4020 return asm_stmt->string;
4021 }
4022
4023
4024 /* Return true if ASM_STMT is marked volatile. */
4025
4026 static inline bool
4027 gimple_asm_volatile_p (const gasm *asm_stmt)
4028 {
4029 return (asm_stmt->subcode & GF_ASM_VOLATILE) != 0;
4030 }
4031
4032
4033 /* If VOLATILE_P is true, mark asm statement ASM_STMT as volatile. */
4034
4035 static inline void
4036 gimple_asm_set_volatile (gasm *asm_stmt, bool volatile_p)
4037 {
4038 if (volatile_p)
4039 asm_stmt->subcode |= GF_ASM_VOLATILE;
4040 else
4041 asm_stmt->subcode &= ~GF_ASM_VOLATILE;
4042 }
4043
4044
4045 /* Return true if ASM_STMT is marked inline. */
4046
4047 static inline bool
4048 gimple_asm_inline_p (const gasm *asm_stmt)
4049 {
4050 return (asm_stmt->subcode & GF_ASM_INLINE) != 0;
4051 }
4052
4053
4054 /* If INLINE_P is true, mark asm statement ASM_STMT as inline. */
4055
4056 static inline void
4057 gimple_asm_set_inline (gasm *asm_stmt, bool inline_p)
4058 {
4059 if (inline_p)
4060 asm_stmt->subcode |= GF_ASM_INLINE;
4061 else
4062 asm_stmt->subcode &= ~GF_ASM_INLINE;
4063 }
4064
4065
4066 /* If INPUT_P is true, mark asm ASM_STMT as an ASM_INPUT. */
4067
4068 static inline void
4069 gimple_asm_set_input (gasm *asm_stmt, bool input_p)
4070 {
4071 if (input_p)
4072 asm_stmt->subcode |= GF_ASM_INPUT;
4073 else
4074 asm_stmt->subcode &= ~GF_ASM_INPUT;
4075 }
4076
4077
4078 /* Return true if asm ASM_STMT is an ASM_INPUT. */
4079
4080 static inline bool
4081 gimple_asm_input_p (const gasm *asm_stmt)
4082 {
4083 return (asm_stmt->subcode & GF_ASM_INPUT) != 0;
4084 }
4085
4086
4087 /* Return the types handled by GIMPLE_CATCH statement CATCH_STMT. */
4088
4089 static inline tree
4090 gimple_catch_types (const gcatch *catch_stmt)
4091 {
4092 return catch_stmt->types;
4093 }
4094
4095
4096 /* Return a pointer to the types handled by GIMPLE_CATCH statement CATCH_STMT. */
4097
4098 static inline tree *
4099 gimple_catch_types_ptr (gcatch *catch_stmt)
4100 {
4101 return &catch_stmt->types;
4102 }
4103
4104
4105 /* Return a pointer to the GIMPLE sequence representing the body of
4106 the handler of GIMPLE_CATCH statement CATCH_STMT. */
4107
4108 static inline gimple_seq *
4109 gimple_catch_handler_ptr (gcatch *catch_stmt)
4110 {
4111 return &catch_stmt->handler;
4112 }
4113
4114
4115 /* Return the GIMPLE sequence representing the body of the handler of
4116 GIMPLE_CATCH statement CATCH_STMT. */
4117
4118 static inline gimple_seq
4119 gimple_catch_handler (const gcatch *catch_stmt)
4120 {
4121 return *gimple_catch_handler_ptr (const_cast <gcatch *> (catch_stmt));
4122 }
4123
4124
4125 /* Set T to be the set of types handled by GIMPLE_CATCH CATCH_STMT. */
4126
4127 static inline void
4128 gimple_catch_set_types (gcatch *catch_stmt, tree t)
4129 {
4130 catch_stmt->types = t;
4131 }
4132
4133
4134 /* Set HANDLER to be the body of GIMPLE_CATCH CATCH_STMT. */
4135
4136 static inline void
4137 gimple_catch_set_handler (gcatch *catch_stmt, gimple_seq handler)
4138 {
4139 catch_stmt->handler = handler;
4140 }
4141
4142
4143 /* Return the types handled by GIMPLE_EH_FILTER statement GS. */
4144
4145 static inline tree
4146 gimple_eh_filter_types (const gimple *gs)
4147 {
4148 const geh_filter *eh_filter_stmt = as_a <const geh_filter *> (gs);
4149 return eh_filter_stmt->types;
4150 }
4151
4152
4153 /* Return a pointer to the types handled by GIMPLE_EH_FILTER statement
4154 GS. */
4155
4156 static inline tree *
4157 gimple_eh_filter_types_ptr (gimple *gs)
4158 {
4159 geh_filter *eh_filter_stmt = as_a <geh_filter *> (gs);
4160 return &eh_filter_stmt->types;
4161 }
4162
4163
4164 /* Return a pointer to the sequence of statement to execute when
4165 GIMPLE_EH_FILTER statement fails. */
4166
4167 static inline gimple_seq *
4168 gimple_eh_filter_failure_ptr (gimple *gs)
4169 {
4170 geh_filter *eh_filter_stmt = as_a <geh_filter *> (gs);
4171 return &eh_filter_stmt->failure;
4172 }
4173
4174
4175 /* Return the sequence of statement to execute when GIMPLE_EH_FILTER
4176 statement fails. */
4177
4178 static inline gimple_seq
4179 gimple_eh_filter_failure (const gimple *gs)
4180 {
4181 return *gimple_eh_filter_failure_ptr (const_cast <gimple *> (gs));
4182 }
4183
4184
4185 /* Set TYPES to be the set of types handled by GIMPLE_EH_FILTER
4186 EH_FILTER_STMT. */
4187
4188 static inline void
4189 gimple_eh_filter_set_types (geh_filter *eh_filter_stmt, tree types)
4190 {
4191 eh_filter_stmt->types = types;
4192 }
4193
4194
4195 /* Set FAILURE to be the sequence of statements to execute on failure
4196 for GIMPLE_EH_FILTER EH_FILTER_STMT. */
4197
4198 static inline void
4199 gimple_eh_filter_set_failure (geh_filter *eh_filter_stmt,
4200 gimple_seq failure)
4201 {
4202 eh_filter_stmt->failure = failure;
4203 }
4204
4205 /* Get the function decl to be called by the MUST_NOT_THROW region. */
4206
4207 static inline tree
4208 gimple_eh_must_not_throw_fndecl (const geh_mnt *eh_mnt_stmt)
4209 {
4210 return eh_mnt_stmt->fndecl;
4211 }
4212
4213 /* Set the function decl to be called by GS to DECL. */
4214
4215 static inline void
4216 gimple_eh_must_not_throw_set_fndecl (geh_mnt *eh_mnt_stmt,
4217 tree decl)
4218 {
4219 eh_mnt_stmt->fndecl = decl;
4220 }
4221
4222 /* GIMPLE_EH_ELSE accessors. */
4223
4224 static inline gimple_seq *
4225 gimple_eh_else_n_body_ptr (geh_else *eh_else_stmt)
4226 {
4227 return &eh_else_stmt->n_body;
4228 }
4229
4230 static inline gimple_seq
4231 gimple_eh_else_n_body (const geh_else *eh_else_stmt)
4232 {
4233 return *gimple_eh_else_n_body_ptr (const_cast <geh_else *> (eh_else_stmt));
4234 }
4235
4236 static inline gimple_seq *
4237 gimple_eh_else_e_body_ptr (geh_else *eh_else_stmt)
4238 {
4239 return &eh_else_stmt->e_body;
4240 }
4241
4242 static inline gimple_seq
4243 gimple_eh_else_e_body (const geh_else *eh_else_stmt)
4244 {
4245 return *gimple_eh_else_e_body_ptr (const_cast <geh_else *> (eh_else_stmt));
4246 }
4247
4248 static inline void
4249 gimple_eh_else_set_n_body (geh_else *eh_else_stmt, gimple_seq seq)
4250 {
4251 eh_else_stmt->n_body = seq;
4252 }
4253
4254 static inline void
4255 gimple_eh_else_set_e_body (geh_else *eh_else_stmt, gimple_seq seq)
4256 {
4257 eh_else_stmt->e_body = seq;
4258 }
4259
4260 /* GIMPLE_TRY accessors. */
4261
4262 /* Return the kind of try block represented by GIMPLE_TRY GS. This is
4263 either GIMPLE_TRY_CATCH or GIMPLE_TRY_FINALLY. */
4264
4265 static inline enum gimple_try_flags
4266 gimple_try_kind (const gimple *gs)
4267 {
4268 GIMPLE_CHECK (gs, GIMPLE_TRY);
4269 return (enum gimple_try_flags) (gs->subcode & GIMPLE_TRY_KIND);
4270 }
4271
4272
4273 /* Set the kind of try block represented by GIMPLE_TRY GS. */
4274
4275 static inline void
4276 gimple_try_set_kind (gtry *gs, enum gimple_try_flags kind)
4277 {
4278 gcc_gimple_checking_assert (kind == GIMPLE_TRY_CATCH
4279 || kind == GIMPLE_TRY_FINALLY);
4280 if (gimple_try_kind (gs) != kind)
4281 gs->subcode = (unsigned int) kind;
4282 }
4283
4284
4285 /* Return the GIMPLE_TRY_CATCH_IS_CLEANUP flag. */
4286
4287 static inline bool
4288 gimple_try_catch_is_cleanup (const gimple *gs)
4289 {
4290 gcc_gimple_checking_assert (gimple_try_kind (gs) == GIMPLE_TRY_CATCH);
4291 return (gs->subcode & GIMPLE_TRY_CATCH_IS_CLEANUP) != 0;
4292 }
4293
4294
4295 /* Return a pointer to the sequence of statements used as the
4296 body for GIMPLE_TRY GS. */
4297
4298 static inline gimple_seq *
4299 gimple_try_eval_ptr (gimple *gs)
4300 {
4301 gtry *try_stmt = as_a <gtry *> (gs);
4302 return &try_stmt->eval;
4303 }
4304
4305
4306 /* Return the sequence of statements used as the body for GIMPLE_TRY GS. */
4307
4308 static inline gimple_seq
4309 gimple_try_eval (const gimple *gs)
4310 {
4311 return *gimple_try_eval_ptr (const_cast <gimple *> (gs));
4312 }
4313
4314
4315 /* Return a pointer to the sequence of statements used as the cleanup body for
4316 GIMPLE_TRY GS. */
4317
4318 static inline gimple_seq *
4319 gimple_try_cleanup_ptr (gimple *gs)
4320 {
4321 gtry *try_stmt = as_a <gtry *> (gs);
4322 return &try_stmt->cleanup;
4323 }
4324
4325
4326 /* Return the sequence of statements used as the cleanup body for
4327 GIMPLE_TRY GS. */
4328
4329 static inline gimple_seq
4330 gimple_try_cleanup (const gimple *gs)
4331 {
4332 return *gimple_try_cleanup_ptr (const_cast <gimple *> (gs));
4333 }
4334
4335
4336 /* Set the GIMPLE_TRY_CATCH_IS_CLEANUP flag. */
4337
4338 static inline void
4339 gimple_try_set_catch_is_cleanup (gtry *g, bool catch_is_cleanup)
4340 {
4341 gcc_gimple_checking_assert (gimple_try_kind (g) == GIMPLE_TRY_CATCH);
4342 if (catch_is_cleanup)
4343 g->subcode |= GIMPLE_TRY_CATCH_IS_CLEANUP;
4344 else
4345 g->subcode &= ~GIMPLE_TRY_CATCH_IS_CLEANUP;
4346 }
4347
4348
4349 /* Set EVAL to be the sequence of statements to use as the body for
4350 GIMPLE_TRY TRY_STMT. */
4351
4352 static inline void
4353 gimple_try_set_eval (gtry *try_stmt, gimple_seq eval)
4354 {
4355 try_stmt->eval = eval;
4356 }
4357
4358
4359 /* Set CLEANUP to be the sequence of statements to use as the cleanup
4360 body for GIMPLE_TRY TRY_STMT. */
4361
4362 static inline void
4363 gimple_try_set_cleanup (gtry *try_stmt, gimple_seq cleanup)
4364 {
4365 try_stmt->cleanup = cleanup;
4366 }
4367
4368
4369 /* Return a pointer to the cleanup sequence for cleanup statement GS. */
4370
4371 static inline gimple_seq *
4372 gimple_wce_cleanup_ptr (gimple *gs)
4373 {
4374 gimple_statement_wce *wce_stmt = as_a <gimple_statement_wce *> (gs);
4375 return &wce_stmt->cleanup;
4376 }
4377
4378
4379 /* Return the cleanup sequence for cleanup statement GS. */
4380
4381 static inline gimple_seq
4382 gimple_wce_cleanup (gimple *gs)
4383 {
4384 return *gimple_wce_cleanup_ptr (gs);
4385 }
4386
4387
4388 /* Set CLEANUP to be the cleanup sequence for GS. */
4389
4390 static inline void
4391 gimple_wce_set_cleanup (gimple *gs, gimple_seq cleanup)
4392 {
4393 gimple_statement_wce *wce_stmt = as_a <gimple_statement_wce *> (gs);
4394 wce_stmt->cleanup = cleanup;
4395 }
4396
4397
4398 /* Return the CLEANUP_EH_ONLY flag for a WCE tuple. */
4399
4400 static inline bool
4401 gimple_wce_cleanup_eh_only (const gimple *gs)
4402 {
4403 GIMPLE_CHECK (gs, GIMPLE_WITH_CLEANUP_EXPR);
4404 return gs->subcode != 0;
4405 }
4406
4407
4408 /* Set the CLEANUP_EH_ONLY flag for a WCE tuple. */
4409
4410 static inline void
4411 gimple_wce_set_cleanup_eh_only (gimple *gs, bool eh_only_p)
4412 {
4413 GIMPLE_CHECK (gs, GIMPLE_WITH_CLEANUP_EXPR);
4414 gs->subcode = (unsigned int) eh_only_p;
4415 }
4416
4417
4418 /* Return the maximum number of arguments supported by GIMPLE_PHI GS. */
4419
4420 static inline unsigned
4421 gimple_phi_capacity (const gimple *gs)
4422 {
4423 const gphi *phi_stmt = as_a <const gphi *> (gs);
4424 return phi_stmt->capacity;
4425 }
4426
4427
4428 /* Return the number of arguments in GIMPLE_PHI GS. This must always
4429 be exactly the number of incoming edges for the basic block holding
4430 GS. */
4431
4432 static inline unsigned
4433 gimple_phi_num_args (const gimple *gs)
4434 {
4435 const gphi *phi_stmt = as_a <const gphi *> (gs);
4436 return phi_stmt->nargs;
4437 }
4438
4439
4440 /* Return the SSA name created by GIMPLE_PHI GS. */
4441
4442 static inline tree
4443 gimple_phi_result (const gphi *gs)
4444 {
4445 return gs->result;
4446 }
4447
4448 static inline tree
4449 gimple_phi_result (const gimple *gs)
4450 {
4451 const gphi *phi_stmt = as_a <const gphi *> (gs);
4452 return gimple_phi_result (phi_stmt);
4453 }
4454
4455 /* Return a pointer to the SSA name created by GIMPLE_PHI GS. */
4456
4457 static inline tree *
4458 gimple_phi_result_ptr (gphi *gs)
4459 {
4460 return &gs->result;
4461 }
4462
4463 static inline tree *
4464 gimple_phi_result_ptr (gimple *gs)
4465 {
4466 gphi *phi_stmt = as_a <gphi *> (gs);
4467 return gimple_phi_result_ptr (phi_stmt);
4468 }
4469
4470 /* Set RESULT to be the SSA name created by GIMPLE_PHI PHI. */
4471
4472 static inline void
4473 gimple_phi_set_result (gphi *phi, tree result)
4474 {
4475 phi->result = result;
4476 if (result && TREE_CODE (result) == SSA_NAME)
4477 SSA_NAME_DEF_STMT (result) = phi;
4478 }
4479
4480
4481 /* Return the PHI argument corresponding to incoming edge INDEX for
4482 GIMPLE_PHI GS. */
4483
4484 static inline struct phi_arg_d *
4485 gimple_phi_arg (gphi *gs, unsigned index)
4486 {
4487 gcc_gimple_checking_assert (index < gs->nargs);
4488 return &(gs->args[index]);
4489 }
4490
4491 static inline const phi_arg_d *
4492 gimple_phi_arg (const gphi *gs, unsigned index)
4493 {
4494 gcc_gimple_checking_assert (index < gs->nargs);
4495 return &(gs->args[index]);
4496 }
4497
4498 static inline struct phi_arg_d *
4499 gimple_phi_arg (gimple *gs, unsigned index)
4500 {
4501 gphi *phi_stmt = as_a <gphi *> (gs);
4502 return gimple_phi_arg (phi_stmt, index);
4503 }
4504
4505 /* Set PHIARG to be the argument corresponding to incoming edge INDEX
4506 for GIMPLE_PHI PHI. */
4507
4508 static inline void
4509 gimple_phi_set_arg (gphi *phi, unsigned index, struct phi_arg_d * phiarg)
4510 {
4511 gcc_gimple_checking_assert (index < phi->nargs);
4512 phi->args[index] = *phiarg;
4513 }
4514
4515 /* Return the PHI nodes for basic block BB, or NULL if there are no
4516 PHI nodes. */
4517
4518 static inline gimple_seq
4519 phi_nodes (const_basic_block bb)
4520 {
4521 gcc_checking_assert (!(bb->flags & BB_RTL));
4522 return bb->il.gimple.phi_nodes;
4523 }
4524
4525 /* Return a pointer to the PHI nodes for basic block BB. */
4526
4527 static inline gimple_seq *
4528 phi_nodes_ptr (basic_block bb)
4529 {
4530 gcc_checking_assert (!(bb->flags & BB_RTL));
4531 return &bb->il.gimple.phi_nodes;
4532 }
4533
4534 /* Return the tree operand for argument I of PHI node GS. */
4535
4536 static inline tree
4537 gimple_phi_arg_def (const gphi *gs, size_t index)
4538 {
4539 return gimple_phi_arg (gs, index)->def;
4540 }
4541
4542 static inline tree
4543 gimple_phi_arg_def (gimple *gs, size_t index)
4544 {
4545 return gimple_phi_arg (gs, index)->def;
4546 }
4547
4548
4549 /* Return a pointer to the tree operand for argument I of phi node PHI. */
4550
4551 static inline tree *
4552 gimple_phi_arg_def_ptr (gphi *phi, size_t index)
4553 {
4554 return &gimple_phi_arg (phi, index)->def;
4555 }
4556
4557 /* Return the edge associated with argument I of phi node PHI. */
4558
4559 static inline edge
4560 gimple_phi_arg_edge (const gphi *phi, size_t i)
4561 {
4562 return EDGE_PRED (gimple_bb (phi), i);
4563 }
4564
4565 /* Return the source location of gimple argument I of phi node PHI. */
4566
4567 static inline location_t
4568 gimple_phi_arg_location (const gphi *phi, size_t i)
4569 {
4570 return gimple_phi_arg (phi, i)->locus;
4571 }
4572
4573 /* Return the source location of the argument on edge E of phi node PHI. */
4574
4575 static inline location_t
4576 gimple_phi_arg_location_from_edge (gphi *phi, edge e)
4577 {
4578 return gimple_phi_arg (phi, e->dest_idx)->locus;
4579 }
4580
4581 /* Set the source location of gimple argument I of phi node PHI to LOC. */
4582
4583 static inline void
4584 gimple_phi_arg_set_location (gphi *phi, size_t i, location_t loc)
4585 {
4586 gimple_phi_arg (phi, i)->locus = loc;
4587 }
4588
4589 /* Return TRUE if argument I of phi node PHI has a location record. */
4590
4591 static inline bool
4592 gimple_phi_arg_has_location (const gphi *phi, size_t i)
4593 {
4594 return gimple_phi_arg_location (phi, i) != UNKNOWN_LOCATION;
4595 }
4596
4597
4598 /* Return the region number for GIMPLE_RESX RESX_STMT. */
4599
4600 static inline int
4601 gimple_resx_region (const gresx *resx_stmt)
4602 {
4603 return resx_stmt->region;
4604 }
4605
4606 /* Set REGION to be the region number for GIMPLE_RESX RESX_STMT. */
4607
4608 static inline void
4609 gimple_resx_set_region (gresx *resx_stmt, int region)
4610 {
4611 resx_stmt->region = region;
4612 }
4613
4614 /* Return the region number for GIMPLE_EH_DISPATCH EH_DISPATCH_STMT. */
4615
4616 static inline int
4617 gimple_eh_dispatch_region (const geh_dispatch *eh_dispatch_stmt)
4618 {
4619 return eh_dispatch_stmt->region;
4620 }
4621
4622 /* Set REGION to be the region number for GIMPLE_EH_DISPATCH
4623 EH_DISPATCH_STMT. */
4624
4625 static inline void
4626 gimple_eh_dispatch_set_region (geh_dispatch *eh_dispatch_stmt, int region)
4627 {
4628 eh_dispatch_stmt->region = region;
4629 }
4630
4631 /* Return the number of labels associated with the switch statement GS. */
4632
4633 static inline unsigned
4634 gimple_switch_num_labels (const gswitch *gs)
4635 {
4636 unsigned num_ops;
4637 GIMPLE_CHECK (gs, GIMPLE_SWITCH);
4638 num_ops = gimple_num_ops (gs);
4639 gcc_gimple_checking_assert (num_ops > 1);
4640 return num_ops - 1;
4641 }
4642
4643
4644 /* Set NLABELS to be the number of labels for the switch statement GS. */
4645
4646 static inline void
4647 gimple_switch_set_num_labels (gswitch *g, unsigned nlabels)
4648 {
4649 GIMPLE_CHECK (g, GIMPLE_SWITCH);
4650 gimple_set_num_ops (g, nlabels + 1);
4651 }
4652
4653
4654 /* Return the index variable used by the switch statement GS. */
4655
4656 static inline tree
4657 gimple_switch_index (const gswitch *gs)
4658 {
4659 return gs->op[0];
4660 }
4661
4662
4663 /* Return a pointer to the index variable for the switch statement GS. */
4664
4665 static inline tree *
4666 gimple_switch_index_ptr (gswitch *gs)
4667 {
4668 return &gs->op[0];
4669 }
4670
4671
4672 /* Set INDEX to be the index variable for switch statement GS. */
4673
4674 static inline void
4675 gimple_switch_set_index (gswitch *gs, tree index)
4676 {
4677 gcc_gimple_checking_assert (SSA_VAR_P (index) || CONSTANT_CLASS_P (index));
4678 gs->op[0] = index;
4679 }
4680
4681
4682 /* Return the label numbered INDEX. The default label is 0, followed by any
4683 labels in a switch statement. */
4684
4685 static inline tree
4686 gimple_switch_label (const gswitch *gs, unsigned index)
4687 {
4688 gcc_gimple_checking_assert (gimple_num_ops (gs) > index + 1);
4689 return gs->op[index + 1];
4690 }
4691
4692 /* Set the label number INDEX to LABEL. 0 is always the default label. */
4693
4694 static inline void
4695 gimple_switch_set_label (gswitch *gs, unsigned index, tree label)
4696 {
4697 gcc_gimple_checking_assert (gimple_num_ops (gs) > index + 1
4698 && (label == NULL_TREE
4699 || TREE_CODE (label) == CASE_LABEL_EXPR));
4700 gs->op[index + 1] = label;
4701 }
4702
4703 /* Return the default label for a switch statement. */
4704
4705 static inline tree
4706 gimple_switch_default_label (const gswitch *gs)
4707 {
4708 tree label = gimple_switch_label (gs, 0);
4709 gcc_checking_assert (!CASE_LOW (label) && !CASE_HIGH (label));
4710 return label;
4711 }
4712
4713 /* Set the default label for a switch statement. */
4714
4715 static inline void
4716 gimple_switch_set_default_label (gswitch *gs, tree label)
4717 {
4718 gcc_checking_assert (!CASE_LOW (label) && !CASE_HIGH (label));
4719 gimple_switch_set_label (gs, 0, label);
4720 }
4721
4722 /* Return true if GS is a GIMPLE_DEBUG statement. */
4723
4724 static inline bool
4725 is_gimple_debug (const gimple *gs)
4726 {
4727 return gimple_code (gs) == GIMPLE_DEBUG;
4728 }
4729
4730
4731 /* Return the first nondebug statement in GIMPLE sequence S. */
4732
4733 static inline gimple *
4734 gimple_seq_first_nondebug_stmt (gimple_seq s)
4735 {
4736 gimple_seq_node n = gimple_seq_first (s);
4737 while (n && is_gimple_debug (n))
4738 n = n->next;
4739 return n;
4740 }
4741
4742
4743 /* Return the last nondebug statement in GIMPLE sequence S. */
4744
4745 static inline gimple *
4746 gimple_seq_last_nondebug_stmt (gimple_seq s)
4747 {
4748 gimple_seq_node n;
4749 for (n = gimple_seq_last (s);
4750 n && is_gimple_debug (n);
4751 n = n->prev)
4752 if (n == s)
4753 return NULL;
4754 return n;
4755 }
4756
4757
4758 /* Return true if S is a GIMPLE_DEBUG BIND statement. */
4759
4760 static inline bool
4761 gimple_debug_bind_p (const gimple *s)
4762 {
4763 if (is_gimple_debug (s))
4764 return s->subcode == GIMPLE_DEBUG_BIND;
4765
4766 return false;
4767 }
4768
4769 /* Return the variable bound in a GIMPLE_DEBUG bind statement. */
4770
4771 static inline tree
4772 gimple_debug_bind_get_var (const gimple *dbg)
4773 {
4774 GIMPLE_CHECK (dbg, GIMPLE_DEBUG);
4775 gcc_gimple_checking_assert (gimple_debug_bind_p (dbg));
4776 return gimple_op (dbg, 0);
4777 }
4778
4779 /* Return the value bound to the variable in a GIMPLE_DEBUG bind
4780 statement. */
4781
4782 static inline tree
4783 gimple_debug_bind_get_value (const gimple *dbg)
4784 {
4785 GIMPLE_CHECK (dbg, GIMPLE_DEBUG);
4786 gcc_gimple_checking_assert (gimple_debug_bind_p (dbg));
4787 return gimple_op (dbg, 1);
4788 }
4789
4790 /* Return a pointer to the value bound to the variable in a
4791 GIMPLE_DEBUG bind statement. */
4792
4793 static inline tree *
4794 gimple_debug_bind_get_value_ptr (gimple *dbg)
4795 {
4796 GIMPLE_CHECK (dbg, GIMPLE_DEBUG);
4797 gcc_gimple_checking_assert (gimple_debug_bind_p (dbg));
4798 return gimple_op_ptr (dbg, 1);
4799 }
4800
4801 /* Set the variable bound in a GIMPLE_DEBUG bind statement. */
4802
4803 static inline void
4804 gimple_debug_bind_set_var (gimple *dbg, tree var)
4805 {
4806 GIMPLE_CHECK (dbg, GIMPLE_DEBUG);
4807 gcc_gimple_checking_assert (gimple_debug_bind_p (dbg));
4808 gimple_set_op (dbg, 0, var);
4809 }
4810
4811 /* Set the value bound to the variable in a GIMPLE_DEBUG bind
4812 statement. */
4813
4814 static inline void
4815 gimple_debug_bind_set_value (gimple *dbg, tree value)
4816 {
4817 GIMPLE_CHECK (dbg, GIMPLE_DEBUG);
4818 gcc_gimple_checking_assert (gimple_debug_bind_p (dbg));
4819 gimple_set_op (dbg, 1, value);
4820 }
4821
4822 /* The second operand of a GIMPLE_DEBUG_BIND, when the value was
4823 optimized away. */
4824 #define GIMPLE_DEBUG_BIND_NOVALUE NULL_TREE /* error_mark_node */
4825
4826 /* Remove the value bound to the variable in a GIMPLE_DEBUG bind
4827 statement. */
4828
4829 static inline void
4830 gimple_debug_bind_reset_value (gimple *dbg)
4831 {
4832 GIMPLE_CHECK (dbg, GIMPLE_DEBUG);
4833 gcc_gimple_checking_assert (gimple_debug_bind_p (dbg));
4834 gimple_set_op (dbg, 1, GIMPLE_DEBUG_BIND_NOVALUE);
4835 }
4836
4837 /* Return true if the GIMPLE_DEBUG bind statement is bound to a
4838 value. */
4839
4840 static inline bool
4841 gimple_debug_bind_has_value_p (gimple *dbg)
4842 {
4843 GIMPLE_CHECK (dbg, GIMPLE_DEBUG);
4844 gcc_gimple_checking_assert (gimple_debug_bind_p (dbg));
4845 return gimple_op (dbg, 1) != GIMPLE_DEBUG_BIND_NOVALUE;
4846 }
4847
4848 #undef GIMPLE_DEBUG_BIND_NOVALUE
4849
4850 /* Return true if S is a GIMPLE_DEBUG SOURCE BIND statement. */
4851
4852 static inline bool
4853 gimple_debug_source_bind_p (const gimple *s)
4854 {
4855 if (is_gimple_debug (s))
4856 return s->subcode == GIMPLE_DEBUG_SOURCE_BIND;
4857
4858 return false;
4859 }
4860
4861 /* Return the variable bound in a GIMPLE_DEBUG source bind statement. */
4862
4863 static inline tree
4864 gimple_debug_source_bind_get_var (const gimple *dbg)
4865 {
4866 GIMPLE_CHECK (dbg, GIMPLE_DEBUG);
4867 gcc_gimple_checking_assert (gimple_debug_source_bind_p (dbg));
4868 return gimple_op (dbg, 0);
4869 }
4870
4871 /* Return the value bound to the variable in a GIMPLE_DEBUG source bind
4872 statement. */
4873
4874 static inline tree
4875 gimple_debug_source_bind_get_value (const gimple *dbg)
4876 {
4877 GIMPLE_CHECK (dbg, GIMPLE_DEBUG);
4878 gcc_gimple_checking_assert (gimple_debug_source_bind_p (dbg));
4879 return gimple_op (dbg, 1);
4880 }
4881
4882 /* Return a pointer to the value bound to the variable in a
4883 GIMPLE_DEBUG source bind statement. */
4884
4885 static inline tree *
4886 gimple_debug_source_bind_get_value_ptr (gimple *dbg)
4887 {
4888 GIMPLE_CHECK (dbg, GIMPLE_DEBUG);
4889 gcc_gimple_checking_assert (gimple_debug_source_bind_p (dbg));
4890 return gimple_op_ptr (dbg, 1);
4891 }
4892
4893 /* Set the variable bound in a GIMPLE_DEBUG source bind statement. */
4894
4895 static inline void
4896 gimple_debug_source_bind_set_var (gimple *dbg, tree var)
4897 {
4898 GIMPLE_CHECK (dbg, GIMPLE_DEBUG);
4899 gcc_gimple_checking_assert (gimple_debug_source_bind_p (dbg));
4900 gimple_set_op (dbg, 0, var);
4901 }
4902
4903 /* Set the value bound to the variable in a GIMPLE_DEBUG source bind
4904 statement. */
4905
4906 static inline void
4907 gimple_debug_source_bind_set_value (gimple *dbg, tree value)
4908 {
4909 GIMPLE_CHECK (dbg, GIMPLE_DEBUG);
4910 gcc_gimple_checking_assert (gimple_debug_source_bind_p (dbg));
4911 gimple_set_op (dbg, 1, value);
4912 }
4913
4914 /* Return true if S is a GIMPLE_DEBUG BEGIN_STMT statement. */
4915
4916 static inline bool
4917 gimple_debug_begin_stmt_p (const gimple *s)
4918 {
4919 if (is_gimple_debug (s))
4920 return s->subcode == GIMPLE_DEBUG_BEGIN_STMT;
4921
4922 return false;
4923 }
4924
4925 /* Return true if S is a GIMPLE_DEBUG INLINE_ENTRY statement. */
4926
4927 static inline bool
4928 gimple_debug_inline_entry_p (const gimple *s)
4929 {
4930 if (is_gimple_debug (s))
4931 return s->subcode == GIMPLE_DEBUG_INLINE_ENTRY;
4932
4933 return false;
4934 }
4935
4936 /* Return true if S is a GIMPLE_DEBUG non-binding marker statement. */
4937
4938 static inline bool
4939 gimple_debug_nonbind_marker_p (const gimple *s)
4940 {
4941 if (is_gimple_debug (s))
4942 return s->subcode == GIMPLE_DEBUG_BEGIN_STMT
4943 || s->subcode == GIMPLE_DEBUG_INLINE_ENTRY;
4944
4945 return false;
4946 }
4947
4948 /* Return the line number for EXPR, or return -1 if we have no line
4949 number information for it. */
4950 static inline int
4951 get_lineno (const gimple *stmt)
4952 {
4953 location_t loc;
4954
4955 if (!stmt)
4956 return -1;
4957
4958 loc = gimple_location (stmt);
4959 if (loc == UNKNOWN_LOCATION)
4960 return -1;
4961
4962 return LOCATION_LINE (loc);
4963 }
4964
4965 /* Return a pointer to the body for the OMP statement GS. */
4966
4967 static inline gimple_seq *
4968 gimple_omp_body_ptr (gimple *gs)
4969 {
4970 return &static_cast <gimple_statement_omp *> (gs)->body;
4971 }
4972
4973 /* Return the body for the OMP statement GS. */
4974
4975 static inline gimple_seq
4976 gimple_omp_body (const gimple *gs)
4977 {
4978 return *gimple_omp_body_ptr (const_cast <gimple *> (gs));
4979 }
4980
4981 /* Set BODY to be the body for the OMP statement GS. */
4982
4983 static inline void
4984 gimple_omp_set_body (gimple *gs, gimple_seq body)
4985 {
4986 static_cast <gimple_statement_omp *> (gs)->body = body;
4987 }
4988
4989
4990 /* Return the name associated with OMP_CRITICAL statement CRIT_STMT. */
4991
4992 static inline tree
4993 gimple_omp_critical_name (const gomp_critical *crit_stmt)
4994 {
4995 return crit_stmt->name;
4996 }
4997
4998
4999 /* Return a pointer to the name associated with OMP critical statement
5000 CRIT_STMT. */
5001
5002 static inline tree *
5003 gimple_omp_critical_name_ptr (gomp_critical *crit_stmt)
5004 {
5005 return &crit_stmt->name;
5006 }
5007
5008
5009 /* Set NAME to be the name associated with OMP critical statement
5010 CRIT_STMT. */
5011
5012 static inline void
5013 gimple_omp_critical_set_name (gomp_critical *crit_stmt, tree name)
5014 {
5015 crit_stmt->name = name;
5016 }
5017
5018
5019 /* Return the clauses associated with OMP_CRITICAL statement CRIT_STMT. */
5020
5021 static inline tree
5022 gimple_omp_critical_clauses (const gomp_critical *crit_stmt)
5023 {
5024 return crit_stmt->clauses;
5025 }
5026
5027
5028 /* Return a pointer to the clauses associated with OMP critical statement
5029 CRIT_STMT. */
5030
5031 static inline tree *
5032 gimple_omp_critical_clauses_ptr (gomp_critical *crit_stmt)
5033 {
5034 return &crit_stmt->clauses;
5035 }
5036
5037
5038 /* Set CLAUSES to be the clauses associated with OMP critical statement
5039 CRIT_STMT. */
5040
5041 static inline void
5042 gimple_omp_critical_set_clauses (gomp_critical *crit_stmt, tree clauses)
5043 {
5044 crit_stmt->clauses = clauses;
5045 }
5046
5047
5048 /* Return the clauses associated with OMP_ORDERED statement ORD_STMT. */
5049
5050 static inline tree
5051 gimple_omp_ordered_clauses (const gomp_ordered *ord_stmt)
5052 {
5053 return ord_stmt->clauses;
5054 }
5055
5056
5057 /* Return a pointer to the clauses associated with OMP ordered statement
5058 ORD_STMT. */
5059
5060 static inline tree *
5061 gimple_omp_ordered_clauses_ptr (gomp_ordered *ord_stmt)
5062 {
5063 return &ord_stmt->clauses;
5064 }
5065
5066
5067 /* Set CLAUSES to be the clauses associated with OMP ordered statement
5068 ORD_STMT. */
5069
5070 static inline void
5071 gimple_omp_ordered_set_clauses (gomp_ordered *ord_stmt, tree clauses)
5072 {
5073 ord_stmt->clauses = clauses;
5074 }
5075
5076
5077 /* Return the clauses associated with OMP_SCAN statement SCAN_STMT. */
5078
5079 static inline tree
5080 gimple_omp_scan_clauses (const gomp_scan *scan_stmt)
5081 {
5082 return scan_stmt->clauses;
5083 }
5084
5085
5086 /* Return a pointer to the clauses associated with OMP scan statement
5087 ORD_STMT. */
5088
5089 static inline tree *
5090 gimple_omp_scan_clauses_ptr (gomp_scan *scan_stmt)
5091 {
5092 return &scan_stmt->clauses;
5093 }
5094
5095
5096 /* Set CLAUSES to be the clauses associated with OMP scan statement
5097 ORD_STMT. */
5098
5099 static inline void
5100 gimple_omp_scan_set_clauses (gomp_scan *scan_stmt, tree clauses)
5101 {
5102 scan_stmt->clauses = clauses;
5103 }
5104
5105
5106 /* Return the clauses associated with OMP_TASKGROUP statement GS. */
5107
5108 static inline tree
5109 gimple_omp_taskgroup_clauses (const gimple *gs)
5110 {
5111 GIMPLE_CHECK (gs, GIMPLE_OMP_TASKGROUP);
5112 return
5113 static_cast <const gimple_statement_omp_single_layout *> (gs)->clauses;
5114 }
5115
5116
5117 /* Return a pointer to the clauses associated with OMP taskgroup statement
5118 GS. */
5119
5120 static inline tree *
5121 gimple_omp_taskgroup_clauses_ptr (gimple *gs)
5122 {
5123 GIMPLE_CHECK (gs, GIMPLE_OMP_TASKGROUP);
5124 return &static_cast <gimple_statement_omp_single_layout *> (gs)->clauses;
5125 }
5126
5127
5128 /* Set CLAUSES to be the clauses associated with OMP taskgroup statement
5129 GS. */
5130
5131 static inline void
5132 gimple_omp_taskgroup_set_clauses (gimple *gs, tree clauses)
5133 {
5134 GIMPLE_CHECK (gs, GIMPLE_OMP_TASKGROUP);
5135 static_cast <gimple_statement_omp_single_layout *> (gs)->clauses
5136 = clauses;
5137 }
5138
5139
5140 /* Return the kind of the OMP_FOR statemement G. */
5141
5142 static inline int
5143 gimple_omp_for_kind (const gimple *g)
5144 {
5145 GIMPLE_CHECK (g, GIMPLE_OMP_FOR);
5146 return (gimple_omp_subcode (g) & GF_OMP_FOR_KIND_MASK);
5147 }
5148
5149
5150 /* Set the kind of the OMP_FOR statement G. */
5151
5152 static inline void
5153 gimple_omp_for_set_kind (gomp_for *g, int kind)
5154 {
5155 g->subcode = (g->subcode & ~GF_OMP_FOR_KIND_MASK)
5156 | (kind & GF_OMP_FOR_KIND_MASK);
5157 }
5158
5159
5160 /* Return true if OMP_FOR statement G has the
5161 GF_OMP_FOR_COMBINED flag set. */
5162
5163 static inline bool
5164 gimple_omp_for_combined_p (const gimple *g)
5165 {
5166 GIMPLE_CHECK (g, GIMPLE_OMP_FOR);
5167 return (gimple_omp_subcode (g) & GF_OMP_FOR_COMBINED) != 0;
5168 }
5169
5170
5171 /* Set the GF_OMP_FOR_COMBINED field in the OMP_FOR statement G depending on
5172 the boolean value of COMBINED_P. */
5173
5174 static inline void
5175 gimple_omp_for_set_combined_p (gomp_for *g, bool combined_p)
5176 {
5177 if (combined_p)
5178 g->subcode |= GF_OMP_FOR_COMBINED;
5179 else
5180 g->subcode &= ~GF_OMP_FOR_COMBINED;
5181 }
5182
5183
5184 /* Return true if the OMP_FOR statement G has the
5185 GF_OMP_FOR_COMBINED_INTO flag set. */
5186
5187 static inline bool
5188 gimple_omp_for_combined_into_p (const gimple *g)
5189 {
5190 GIMPLE_CHECK (g, GIMPLE_OMP_FOR);
5191 return (gimple_omp_subcode (g) & GF_OMP_FOR_COMBINED_INTO) != 0;
5192 }
5193
5194
5195 /* Set the GF_OMP_FOR_COMBINED_INTO field in the OMP_FOR statement G depending
5196 on the boolean value of COMBINED_P. */
5197
5198 static inline void
5199 gimple_omp_for_set_combined_into_p (gomp_for *g, bool combined_p)
5200 {
5201 if (combined_p)
5202 g->subcode |= GF_OMP_FOR_COMBINED_INTO;
5203 else
5204 g->subcode &= ~GF_OMP_FOR_COMBINED_INTO;
5205 }
5206
5207
5208 /* Return the clauses associated with the OMP_FOR statement GS. */
5209
5210 static inline tree
5211 gimple_omp_for_clauses (const gimple *gs)
5212 {
5213 const gomp_for *omp_for_stmt = as_a <const gomp_for *> (gs);
5214 return omp_for_stmt->clauses;
5215 }
5216
5217
5218 /* Return a pointer to the clauses associated with the OMP_FOR statement
5219 GS. */
5220
5221 static inline tree *
5222 gimple_omp_for_clauses_ptr (gimple *gs)
5223 {
5224 gomp_for *omp_for_stmt = as_a <gomp_for *> (gs);
5225 return &omp_for_stmt->clauses;
5226 }
5227
5228
5229 /* Set CLAUSES to be the list of clauses associated with the OMP_FOR statement
5230 GS. */
5231
5232 static inline void
5233 gimple_omp_for_set_clauses (gimple *gs, tree clauses)
5234 {
5235 gomp_for *omp_for_stmt = as_a <gomp_for *> (gs);
5236 omp_for_stmt->clauses = clauses;
5237 }
5238
5239
5240 /* Get the collapse count of the OMP_FOR statement GS. */
5241
5242 static inline size_t
5243 gimple_omp_for_collapse (const gimple *gs)
5244 {
5245 const gomp_for *omp_for_stmt = as_a <const gomp_for *> (gs);
5246 return omp_for_stmt->collapse;
5247 }
5248
5249
5250 /* Return the condition code associated with the OMP_FOR statement GS. */
5251
5252 static inline enum tree_code
5253 gimple_omp_for_cond (const gimple *gs, size_t i)
5254 {
5255 const gomp_for *omp_for_stmt = as_a <const gomp_for *> (gs);
5256 gcc_gimple_checking_assert (i < omp_for_stmt->collapse);
5257 return omp_for_stmt->iter[i].cond;
5258 }
5259
5260
5261 /* Set COND to be the condition code for the OMP_FOR statement GS. */
5262
5263 static inline void
5264 gimple_omp_for_set_cond (gimple *gs, size_t i, enum tree_code cond)
5265 {
5266 gomp_for *omp_for_stmt = as_a <gomp_for *> (gs);
5267 gcc_gimple_checking_assert (TREE_CODE_CLASS (cond) == tcc_comparison
5268 && i < omp_for_stmt->collapse);
5269 omp_for_stmt->iter[i].cond = cond;
5270 }
5271
5272
5273 /* Return the index variable for the OMP_FOR statement GS. */
5274
5275 static inline tree
5276 gimple_omp_for_index (const gimple *gs, size_t i)
5277 {
5278 const gomp_for *omp_for_stmt = as_a <const gomp_for *> (gs);
5279 gcc_gimple_checking_assert (i < omp_for_stmt->collapse);
5280 return omp_for_stmt->iter[i].index;
5281 }
5282
5283
5284 /* Return a pointer to the index variable for the OMP_FOR statement GS. */
5285
5286 static inline tree *
5287 gimple_omp_for_index_ptr (gimple *gs, size_t i)
5288 {
5289 gomp_for *omp_for_stmt = as_a <gomp_for *> (gs);
5290 gcc_gimple_checking_assert (i < omp_for_stmt->collapse);
5291 return &omp_for_stmt->iter[i].index;
5292 }
5293
5294
5295 /* Set INDEX to be the index variable for the OMP_FOR statement GS. */
5296
5297 static inline void
5298 gimple_omp_for_set_index (gimple *gs, size_t i, tree index)
5299 {
5300 gomp_for *omp_for_stmt = as_a <gomp_for *> (gs);
5301 gcc_gimple_checking_assert (i < omp_for_stmt->collapse);
5302 omp_for_stmt->iter[i].index = index;
5303 }
5304
5305
5306 /* Return the initial value for the OMP_FOR statement GS. */
5307
5308 static inline tree
5309 gimple_omp_for_initial (const gimple *gs, size_t i)
5310 {
5311 const gomp_for *omp_for_stmt = as_a <const gomp_for *> (gs);
5312 gcc_gimple_checking_assert (i < omp_for_stmt->collapse);
5313 return omp_for_stmt->iter[i].initial;
5314 }
5315
5316
5317 /* Return a pointer to the initial value for the OMP_FOR statement GS. */
5318
5319 static inline tree *
5320 gimple_omp_for_initial_ptr (gimple *gs, size_t i)
5321 {
5322 gomp_for *omp_for_stmt = as_a <gomp_for *> (gs);
5323 gcc_gimple_checking_assert (i < omp_for_stmt->collapse);
5324 return &omp_for_stmt->iter[i].initial;
5325 }
5326
5327
5328 /* Set INITIAL to be the initial value for the OMP_FOR statement GS. */
5329
5330 static inline void
5331 gimple_omp_for_set_initial (gimple *gs, size_t i, tree initial)
5332 {
5333 gomp_for *omp_for_stmt = as_a <gomp_for *> (gs);
5334 gcc_gimple_checking_assert (i < omp_for_stmt->collapse);
5335 omp_for_stmt->iter[i].initial = initial;
5336 }
5337
5338
5339 /* Return the final value for the OMP_FOR statement GS. */
5340
5341 static inline tree
5342 gimple_omp_for_final (const gimple *gs, size_t i)
5343 {
5344 const gomp_for *omp_for_stmt = as_a <const gomp_for *> (gs);
5345 gcc_gimple_checking_assert (i < omp_for_stmt->collapse);
5346 return omp_for_stmt->iter[i].final;
5347 }
5348
5349
5350 /* Return a pointer to the final value for the OMP_FOR statement GS. */
5351
5352 static inline tree *
5353 gimple_omp_for_final_ptr (gimple *gs, size_t i)
5354 {
5355 gomp_for *omp_for_stmt = as_a <gomp_for *> (gs);
5356 gcc_gimple_checking_assert (i < omp_for_stmt->collapse);
5357 return &omp_for_stmt->iter[i].final;
5358 }
5359
5360
5361 /* Set FINAL to be the final value for the OMP_FOR statement GS. */
5362
5363 static inline void
5364 gimple_omp_for_set_final (gimple *gs, size_t i, tree final)
5365 {
5366 gomp_for *omp_for_stmt = as_a <gomp_for *> (gs);
5367 gcc_gimple_checking_assert (i < omp_for_stmt->collapse);
5368 omp_for_stmt->iter[i].final = final;
5369 }
5370
5371
5372 /* Return the increment value for the OMP_FOR statement GS. */
5373
5374 static inline tree
5375 gimple_omp_for_incr (const gimple *gs, size_t i)
5376 {
5377 const gomp_for *omp_for_stmt = as_a <const gomp_for *> (gs);
5378 gcc_gimple_checking_assert (i < omp_for_stmt->collapse);
5379 return omp_for_stmt->iter[i].incr;
5380 }
5381
5382
5383 /* Return a pointer to the increment value for the OMP_FOR statement GS. */
5384
5385 static inline tree *
5386 gimple_omp_for_incr_ptr (gimple *gs, size_t i)
5387 {
5388 gomp_for *omp_for_stmt = as_a <gomp_for *> (gs);
5389 gcc_gimple_checking_assert (i < omp_for_stmt->collapse);
5390 return &omp_for_stmt->iter[i].incr;
5391 }
5392
5393
5394 /* Set INCR to be the increment value for the OMP_FOR statement GS. */
5395
5396 static inline void
5397 gimple_omp_for_set_incr (gimple *gs, size_t i, tree incr)
5398 {
5399 gomp_for *omp_for_stmt = as_a <gomp_for *> (gs);
5400 gcc_gimple_checking_assert (i < omp_for_stmt->collapse);
5401 omp_for_stmt->iter[i].incr = incr;
5402 }
5403
5404
5405 /* Return a pointer to the sequence of statements to execute before the OMP_FOR
5406 statement GS starts. */
5407
5408 static inline gimple_seq *
5409 gimple_omp_for_pre_body_ptr (gimple *gs)
5410 {
5411 gomp_for *omp_for_stmt = as_a <gomp_for *> (gs);
5412 return &omp_for_stmt->pre_body;
5413 }
5414
5415
5416 /* Return the sequence of statements to execute before the OMP_FOR
5417 statement GS starts. */
5418
5419 static inline gimple_seq
5420 gimple_omp_for_pre_body (const gimple *gs)
5421 {
5422 return *gimple_omp_for_pre_body_ptr (const_cast <gimple *> (gs));
5423 }
5424
5425
5426 /* Set PRE_BODY to be the sequence of statements to execute before the
5427 OMP_FOR statement GS starts. */
5428
5429 static inline void
5430 gimple_omp_for_set_pre_body (gimple *gs, gimple_seq pre_body)
5431 {
5432 gomp_for *omp_for_stmt = as_a <gomp_for *> (gs);
5433 omp_for_stmt->pre_body = pre_body;
5434 }
5435
5436 /* Return the kernel_phony of OMP_FOR statement. */
5437
5438 static inline bool
5439 gimple_omp_for_grid_phony (const gomp_for *omp_for)
5440 {
5441 gcc_checking_assert (gimple_omp_for_kind (omp_for)
5442 != GF_OMP_FOR_KIND_GRID_LOOP);
5443 return (gimple_omp_subcode (omp_for) & GF_OMP_FOR_GRID_PHONY) != 0;
5444 }
5445
5446 /* Set kernel_phony flag of OMP_FOR to VALUE. */
5447
5448 static inline void
5449 gimple_omp_for_set_grid_phony (gomp_for *omp_for, bool value)
5450 {
5451 gcc_checking_assert (gimple_omp_for_kind (omp_for)
5452 != GF_OMP_FOR_KIND_GRID_LOOP);
5453 if (value)
5454 omp_for->subcode |= GF_OMP_FOR_GRID_PHONY;
5455 else
5456 omp_for->subcode &= ~GF_OMP_FOR_GRID_PHONY;
5457 }
5458
5459 /* Return the kernel_intra_group of a GRID_LOOP OMP_FOR statement. */
5460
5461 static inline bool
5462 gimple_omp_for_grid_intra_group (const gomp_for *omp_for)
5463 {
5464 gcc_checking_assert (gimple_omp_for_kind (omp_for)
5465 == GF_OMP_FOR_KIND_GRID_LOOP);
5466 return (gimple_omp_subcode (omp_for) & GF_OMP_FOR_GRID_INTRA_GROUP) != 0;
5467 }
5468
5469 /* Set kernel_intra_group flag of OMP_FOR to VALUE. */
5470
5471 static inline void
5472 gimple_omp_for_set_grid_intra_group (gomp_for *omp_for, bool value)
5473 {
5474 gcc_checking_assert (gimple_omp_for_kind (omp_for)
5475 == GF_OMP_FOR_KIND_GRID_LOOP);
5476 if (value)
5477 omp_for->subcode |= GF_OMP_FOR_GRID_INTRA_GROUP;
5478 else
5479 omp_for->subcode &= ~GF_OMP_FOR_GRID_INTRA_GROUP;
5480 }
5481
5482 /* Return true if iterations of a grid OMP_FOR statement correspond to HSA
5483 groups. */
5484
5485 static inline bool
5486 gimple_omp_for_grid_group_iter (const gomp_for *omp_for)
5487 {
5488 gcc_checking_assert (gimple_omp_for_kind (omp_for)
5489 == GF_OMP_FOR_KIND_GRID_LOOP);
5490 return (gimple_omp_subcode (omp_for) & GF_OMP_FOR_GRID_GROUP_ITER) != 0;
5491 }
5492
5493 /* Set group_iter flag of OMP_FOR to VALUE. */
5494
5495 static inline void
5496 gimple_omp_for_set_grid_group_iter (gomp_for *omp_for, bool value)
5497 {
5498 gcc_checking_assert (gimple_omp_for_kind (omp_for)
5499 == GF_OMP_FOR_KIND_GRID_LOOP);
5500 if (value)
5501 omp_for->subcode |= GF_OMP_FOR_GRID_GROUP_ITER;
5502 else
5503 omp_for->subcode &= ~GF_OMP_FOR_GRID_GROUP_ITER;
5504 }
5505
5506 /* Return the clauses associated with OMP_PARALLEL GS. */
5507
5508 static inline tree
5509 gimple_omp_parallel_clauses (const gimple *gs)
5510 {
5511 const gomp_parallel *omp_parallel_stmt = as_a <const gomp_parallel *> (gs);
5512 return omp_parallel_stmt->clauses;
5513 }
5514
5515
5516 /* Return a pointer to the clauses associated with OMP_PARALLEL_STMT. */
5517
5518 static inline tree *
5519 gimple_omp_parallel_clauses_ptr (gomp_parallel *omp_parallel_stmt)
5520 {
5521 return &omp_parallel_stmt->clauses;
5522 }
5523
5524
5525 /* Set CLAUSES to be the list of clauses associated with OMP_PARALLEL_STMT. */
5526
5527 static inline void
5528 gimple_omp_parallel_set_clauses (gomp_parallel *omp_parallel_stmt,
5529 tree clauses)
5530 {
5531 omp_parallel_stmt->clauses = clauses;
5532 }
5533
5534
5535 /* Return the child function used to hold the body of OMP_PARALLEL_STMT. */
5536
5537 static inline tree
5538 gimple_omp_parallel_child_fn (const gomp_parallel *omp_parallel_stmt)
5539 {
5540 return omp_parallel_stmt->child_fn;
5541 }
5542
5543 /* Return a pointer to the child function used to hold the body of
5544 OMP_PARALLEL_STMT. */
5545
5546 static inline tree *
5547 gimple_omp_parallel_child_fn_ptr (gomp_parallel *omp_parallel_stmt)
5548 {
5549 return &omp_parallel_stmt->child_fn;
5550 }
5551
5552
5553 /* Set CHILD_FN to be the child function for OMP_PARALLEL_STMT. */
5554
5555 static inline void
5556 gimple_omp_parallel_set_child_fn (gomp_parallel *omp_parallel_stmt,
5557 tree child_fn)
5558 {
5559 omp_parallel_stmt->child_fn = child_fn;
5560 }
5561
5562
5563 /* Return the artificial argument used to send variables and values
5564 from the parent to the children threads in OMP_PARALLEL_STMT. */
5565
5566 static inline tree
5567 gimple_omp_parallel_data_arg (const gomp_parallel *omp_parallel_stmt)
5568 {
5569 return omp_parallel_stmt->data_arg;
5570 }
5571
5572
5573 /* Return a pointer to the data argument for OMP_PARALLEL_STMT. */
5574
5575 static inline tree *
5576 gimple_omp_parallel_data_arg_ptr (gomp_parallel *omp_parallel_stmt)
5577 {
5578 return &omp_parallel_stmt->data_arg;
5579 }
5580
5581
5582 /* Set DATA_ARG to be the data argument for OMP_PARALLEL_STMT. */
5583
5584 static inline void
5585 gimple_omp_parallel_set_data_arg (gomp_parallel *omp_parallel_stmt,
5586 tree data_arg)
5587 {
5588 omp_parallel_stmt->data_arg = data_arg;
5589 }
5590
5591 /* Return the kernel_phony flag of OMP_PARALLEL_STMT. */
5592
5593 static inline bool
5594 gimple_omp_parallel_grid_phony (const gomp_parallel *stmt)
5595 {
5596 return (gimple_omp_subcode (stmt) & GF_OMP_PARALLEL_GRID_PHONY) != 0;
5597 }
5598
5599 /* Set kernel_phony flag of OMP_PARALLEL_STMT to VALUE. */
5600
5601 static inline void
5602 gimple_omp_parallel_set_grid_phony (gomp_parallel *stmt, bool value)
5603 {
5604 if (value)
5605 stmt->subcode |= GF_OMP_PARALLEL_GRID_PHONY;
5606 else
5607 stmt->subcode &= ~GF_OMP_PARALLEL_GRID_PHONY;
5608 }
5609
5610 /* Return the clauses associated with OMP_TASK GS. */
5611
5612 static inline tree
5613 gimple_omp_task_clauses (const gimple *gs)
5614 {
5615 const gomp_task *omp_task_stmt = as_a <const gomp_task *> (gs);
5616 return omp_task_stmt->clauses;
5617 }
5618
5619
5620 /* Return a pointer to the clauses associated with OMP_TASK GS. */
5621
5622 static inline tree *
5623 gimple_omp_task_clauses_ptr (gimple *gs)
5624 {
5625 gomp_task *omp_task_stmt = as_a <gomp_task *> (gs);
5626 return &omp_task_stmt->clauses;
5627 }
5628
5629
5630 /* Set CLAUSES to be the list of clauses associated with OMP_TASK
5631 GS. */
5632
5633 static inline void
5634 gimple_omp_task_set_clauses (gimple *gs, tree clauses)
5635 {
5636 gomp_task *omp_task_stmt = as_a <gomp_task *> (gs);
5637 omp_task_stmt->clauses = clauses;
5638 }
5639
5640
5641 /* Return true if OMP task statement G has the
5642 GF_OMP_TASK_TASKLOOP flag set. */
5643
5644 static inline bool
5645 gimple_omp_task_taskloop_p (const gimple *g)
5646 {
5647 GIMPLE_CHECK (g, GIMPLE_OMP_TASK);
5648 return (gimple_omp_subcode (g) & GF_OMP_TASK_TASKLOOP) != 0;
5649 }
5650
5651
5652 /* Set the GF_OMP_TASK_TASKLOOP field in G depending on the boolean
5653 value of TASKLOOP_P. */
5654
5655 static inline void
5656 gimple_omp_task_set_taskloop_p (gimple *g, bool taskloop_p)
5657 {
5658 GIMPLE_CHECK (g, GIMPLE_OMP_TASK);
5659 if (taskloop_p)
5660 g->subcode |= GF_OMP_TASK_TASKLOOP;
5661 else
5662 g->subcode &= ~GF_OMP_TASK_TASKLOOP;
5663 }
5664
5665
5666 /* Return true if OMP task statement G has the
5667 GF_OMP_TASK_TASKWAIT flag set. */
5668
5669 static inline bool
5670 gimple_omp_task_taskwait_p (const gimple *g)
5671 {
5672 GIMPLE_CHECK (g, GIMPLE_OMP_TASK);
5673 return (gimple_omp_subcode (g) & GF_OMP_TASK_TASKWAIT) != 0;
5674 }
5675
5676
5677 /* Set the GF_OMP_TASK_TASKWAIT field in G depending on the boolean
5678 value of TASKWAIT_P. */
5679
5680 static inline void
5681 gimple_omp_task_set_taskwait_p (gimple *g, bool taskwait_p)
5682 {
5683 GIMPLE_CHECK (g, GIMPLE_OMP_TASK);
5684 if (taskwait_p)
5685 g->subcode |= GF_OMP_TASK_TASKWAIT;
5686 else
5687 g->subcode &= ~GF_OMP_TASK_TASKWAIT;
5688 }
5689
5690
5691 /* Return the child function used to hold the body of OMP_TASK GS. */
5692
5693 static inline tree
5694 gimple_omp_task_child_fn (const gimple *gs)
5695 {
5696 const gomp_task *omp_task_stmt = as_a <const gomp_task *> (gs);
5697 return omp_task_stmt->child_fn;
5698 }
5699
5700 /* Return a pointer to the child function used to hold the body of
5701 OMP_TASK GS. */
5702
5703 static inline tree *
5704 gimple_omp_task_child_fn_ptr (gimple *gs)
5705 {
5706 gomp_task *omp_task_stmt = as_a <gomp_task *> (gs);
5707 return &omp_task_stmt->child_fn;
5708 }
5709
5710
5711 /* Set CHILD_FN to be the child function for OMP_TASK GS. */
5712
5713 static inline void
5714 gimple_omp_task_set_child_fn (gimple *gs, tree child_fn)
5715 {
5716 gomp_task *omp_task_stmt = as_a <gomp_task *> (gs);
5717 omp_task_stmt->child_fn = child_fn;
5718 }
5719
5720
5721 /* Return the artificial argument used to send variables and values
5722 from the parent to the children threads in OMP_TASK GS. */
5723
5724 static inline tree
5725 gimple_omp_task_data_arg (const gimple *gs)
5726 {
5727 const gomp_task *omp_task_stmt = as_a <const gomp_task *> (gs);
5728 return omp_task_stmt->data_arg;
5729 }
5730
5731
5732 /* Return a pointer to the data argument for OMP_TASK GS. */
5733
5734 static inline tree *
5735 gimple_omp_task_data_arg_ptr (gimple *gs)
5736 {
5737 gomp_task *omp_task_stmt = as_a <gomp_task *> (gs);
5738 return &omp_task_stmt->data_arg;
5739 }
5740
5741
5742 /* Set DATA_ARG to be the data argument for OMP_TASK GS. */
5743
5744 static inline void
5745 gimple_omp_task_set_data_arg (gimple *gs, tree data_arg)
5746 {
5747 gomp_task *omp_task_stmt = as_a <gomp_task *> (gs);
5748 omp_task_stmt->data_arg = data_arg;
5749 }
5750
5751
5752 /* Return the clauses associated with OMP_TASK GS. */
5753
5754 static inline tree
5755 gimple_omp_taskreg_clauses (const gimple *gs)
5756 {
5757 const gimple_statement_omp_taskreg *omp_taskreg_stmt
5758 = as_a <const gimple_statement_omp_taskreg *> (gs);
5759 return omp_taskreg_stmt->clauses;
5760 }
5761
5762
5763 /* Return a pointer to the clauses associated with OMP_TASK GS. */
5764
5765 static inline tree *
5766 gimple_omp_taskreg_clauses_ptr (gimple *gs)
5767 {
5768 gimple_statement_omp_taskreg *omp_taskreg_stmt
5769 = as_a <gimple_statement_omp_taskreg *> (gs);
5770 return &omp_taskreg_stmt->clauses;
5771 }
5772
5773
5774 /* Set CLAUSES to be the list of clauses associated with OMP_TASK
5775 GS. */
5776
5777 static inline void
5778 gimple_omp_taskreg_set_clauses (gimple *gs, tree clauses)
5779 {
5780 gimple_statement_omp_taskreg *omp_taskreg_stmt
5781 = as_a <gimple_statement_omp_taskreg *> (gs);
5782 omp_taskreg_stmt->clauses = clauses;
5783 }
5784
5785
5786 /* Return the child function used to hold the body of OMP_TASK GS. */
5787
5788 static inline tree
5789 gimple_omp_taskreg_child_fn (const gimple *gs)
5790 {
5791 const gimple_statement_omp_taskreg *omp_taskreg_stmt
5792 = as_a <const gimple_statement_omp_taskreg *> (gs);
5793 return omp_taskreg_stmt->child_fn;
5794 }
5795
5796 /* Return a pointer to the child function used to hold the body of
5797 OMP_TASK GS. */
5798
5799 static inline tree *
5800 gimple_omp_taskreg_child_fn_ptr (gimple *gs)
5801 {
5802 gimple_statement_omp_taskreg *omp_taskreg_stmt
5803 = as_a <gimple_statement_omp_taskreg *> (gs);
5804 return &omp_taskreg_stmt->child_fn;
5805 }
5806
5807
5808 /* Set CHILD_FN to be the child function for OMP_TASK GS. */
5809
5810 static inline void
5811 gimple_omp_taskreg_set_child_fn (gimple *gs, tree child_fn)
5812 {
5813 gimple_statement_omp_taskreg *omp_taskreg_stmt
5814 = as_a <gimple_statement_omp_taskreg *> (gs);
5815 omp_taskreg_stmt->child_fn = child_fn;
5816 }
5817
5818
5819 /* Return the artificial argument used to send variables and values
5820 from the parent to the children threads in OMP_TASK GS. */
5821
5822 static inline tree
5823 gimple_omp_taskreg_data_arg (const gimple *gs)
5824 {
5825 const gimple_statement_omp_taskreg *omp_taskreg_stmt
5826 = as_a <const gimple_statement_omp_taskreg *> (gs);
5827 return omp_taskreg_stmt->data_arg;
5828 }
5829
5830
5831 /* Return a pointer to the data argument for OMP_TASK GS. */
5832
5833 static inline tree *
5834 gimple_omp_taskreg_data_arg_ptr (gimple *gs)
5835 {
5836 gimple_statement_omp_taskreg *omp_taskreg_stmt
5837 = as_a <gimple_statement_omp_taskreg *> (gs);
5838 return &omp_taskreg_stmt->data_arg;
5839 }
5840
5841
5842 /* Set DATA_ARG to be the data argument for OMP_TASK GS. */
5843
5844 static inline void
5845 gimple_omp_taskreg_set_data_arg (gimple *gs, tree data_arg)
5846 {
5847 gimple_statement_omp_taskreg *omp_taskreg_stmt
5848 = as_a <gimple_statement_omp_taskreg *> (gs);
5849 omp_taskreg_stmt->data_arg = data_arg;
5850 }
5851
5852
5853 /* Return the copy function used to hold the body of OMP_TASK GS. */
5854
5855 static inline tree
5856 gimple_omp_task_copy_fn (const gimple *gs)
5857 {
5858 const gomp_task *omp_task_stmt = as_a <const gomp_task *> (gs);
5859 return omp_task_stmt->copy_fn;
5860 }
5861
5862 /* Return a pointer to the copy function used to hold the body of
5863 OMP_TASK GS. */
5864
5865 static inline tree *
5866 gimple_omp_task_copy_fn_ptr (gimple *gs)
5867 {
5868 gomp_task *omp_task_stmt = as_a <gomp_task *> (gs);
5869 return &omp_task_stmt->copy_fn;
5870 }
5871
5872
5873 /* Set CHILD_FN to be the copy function for OMP_TASK GS. */
5874
5875 static inline void
5876 gimple_omp_task_set_copy_fn (gimple *gs, tree copy_fn)
5877 {
5878 gomp_task *omp_task_stmt = as_a <gomp_task *> (gs);
5879 omp_task_stmt->copy_fn = copy_fn;
5880 }
5881
5882
5883 /* Return size of the data block in bytes in OMP_TASK GS. */
5884
5885 static inline tree
5886 gimple_omp_task_arg_size (const gimple *gs)
5887 {
5888 const gomp_task *omp_task_stmt = as_a <const gomp_task *> (gs);
5889 return omp_task_stmt->arg_size;
5890 }
5891
5892
5893 /* Return a pointer to the data block size for OMP_TASK GS. */
5894
5895 static inline tree *
5896 gimple_omp_task_arg_size_ptr (gimple *gs)
5897 {
5898 gomp_task *omp_task_stmt = as_a <gomp_task *> (gs);
5899 return &omp_task_stmt->arg_size;
5900 }
5901
5902
5903 /* Set ARG_SIZE to be the data block size for OMP_TASK GS. */
5904
5905 static inline void
5906 gimple_omp_task_set_arg_size (gimple *gs, tree arg_size)
5907 {
5908 gomp_task *omp_task_stmt = as_a <gomp_task *> (gs);
5909 omp_task_stmt->arg_size = arg_size;
5910 }
5911
5912
5913 /* Return align of the data block in bytes in OMP_TASK GS. */
5914
5915 static inline tree
5916 gimple_omp_task_arg_align (const gimple *gs)
5917 {
5918 const gomp_task *omp_task_stmt = as_a <const gomp_task *> (gs);
5919 return omp_task_stmt->arg_align;
5920 }
5921
5922
5923 /* Return a pointer to the data block align for OMP_TASK GS. */
5924
5925 static inline tree *
5926 gimple_omp_task_arg_align_ptr (gimple *gs)
5927 {
5928 gomp_task *omp_task_stmt = as_a <gomp_task *> (gs);
5929 return &omp_task_stmt->arg_align;
5930 }
5931
5932
5933 /* Set ARG_SIZE to be the data block align for OMP_TASK GS. */
5934
5935 static inline void
5936 gimple_omp_task_set_arg_align (gimple *gs, tree arg_align)
5937 {
5938 gomp_task *omp_task_stmt = as_a <gomp_task *> (gs);
5939 omp_task_stmt->arg_align = arg_align;
5940 }
5941
5942
5943 /* Return the clauses associated with OMP_SINGLE GS. */
5944
5945 static inline tree
5946 gimple_omp_single_clauses (const gimple *gs)
5947 {
5948 const gomp_single *omp_single_stmt = as_a <const gomp_single *> (gs);
5949 return omp_single_stmt->clauses;
5950 }
5951
5952
5953 /* Return a pointer to the clauses associated with OMP_SINGLE GS. */
5954
5955 static inline tree *
5956 gimple_omp_single_clauses_ptr (gimple *gs)
5957 {
5958 gomp_single *omp_single_stmt = as_a <gomp_single *> (gs);
5959 return &omp_single_stmt->clauses;
5960 }
5961
5962
5963 /* Set CLAUSES to be the clauses associated with OMP_SINGLE_STMT. */
5964
5965 static inline void
5966 gimple_omp_single_set_clauses (gomp_single *omp_single_stmt, tree clauses)
5967 {
5968 omp_single_stmt->clauses = clauses;
5969 }
5970
5971
5972 /* Return the clauses associated with OMP_TARGET GS. */
5973
5974 static inline tree
5975 gimple_omp_target_clauses (const gimple *gs)
5976 {
5977 const gomp_target *omp_target_stmt = as_a <const gomp_target *> (gs);
5978 return omp_target_stmt->clauses;
5979 }
5980
5981
5982 /* Return a pointer to the clauses associated with OMP_TARGET GS. */
5983
5984 static inline tree *
5985 gimple_omp_target_clauses_ptr (gimple *gs)
5986 {
5987 gomp_target *omp_target_stmt = as_a <gomp_target *> (gs);
5988 return &omp_target_stmt->clauses;
5989 }
5990
5991
5992 /* Set CLAUSES to be the clauses associated with OMP_TARGET_STMT. */
5993
5994 static inline void
5995 gimple_omp_target_set_clauses (gomp_target *omp_target_stmt,
5996 tree clauses)
5997 {
5998 omp_target_stmt->clauses = clauses;
5999 }
6000
6001
6002 /* Return the kind of the OMP_TARGET G. */
6003
6004 static inline int
6005 gimple_omp_target_kind (const gimple *g)
6006 {
6007 GIMPLE_CHECK (g, GIMPLE_OMP_TARGET);
6008 return (gimple_omp_subcode (g) & GF_OMP_TARGET_KIND_MASK);
6009 }
6010
6011
6012 /* Set the kind of the OMP_TARGET G. */
6013
6014 static inline void
6015 gimple_omp_target_set_kind (gomp_target *g, int kind)
6016 {
6017 g->subcode = (g->subcode & ~GF_OMP_TARGET_KIND_MASK)
6018 | (kind & GF_OMP_TARGET_KIND_MASK);
6019 }
6020
6021
6022 /* Return the child function used to hold the body of OMP_TARGET_STMT. */
6023
6024 static inline tree
6025 gimple_omp_target_child_fn (const gomp_target *omp_target_stmt)
6026 {
6027 return omp_target_stmt->child_fn;
6028 }
6029
6030 /* Return a pointer to the child function used to hold the body of
6031 OMP_TARGET_STMT. */
6032
6033 static inline tree *
6034 gimple_omp_target_child_fn_ptr (gomp_target *omp_target_stmt)
6035 {
6036 return &omp_target_stmt->child_fn;
6037 }
6038
6039
6040 /* Set CHILD_FN to be the child function for OMP_TARGET_STMT. */
6041
6042 static inline void
6043 gimple_omp_target_set_child_fn (gomp_target *omp_target_stmt,
6044 tree child_fn)
6045 {
6046 omp_target_stmt->child_fn = child_fn;
6047 }
6048
6049
6050 /* Return the artificial argument used to send variables and values
6051 from the parent to the children threads in OMP_TARGET_STMT. */
6052
6053 static inline tree
6054 gimple_omp_target_data_arg (const gomp_target *omp_target_stmt)
6055 {
6056 return omp_target_stmt->data_arg;
6057 }
6058
6059
6060 /* Return a pointer to the data argument for OMP_TARGET GS. */
6061
6062 static inline tree *
6063 gimple_omp_target_data_arg_ptr (gomp_target *omp_target_stmt)
6064 {
6065 return &omp_target_stmt->data_arg;
6066 }
6067
6068
6069 /* Set DATA_ARG to be the data argument for OMP_TARGET_STMT. */
6070
6071 static inline void
6072 gimple_omp_target_set_data_arg (gomp_target *omp_target_stmt,
6073 tree data_arg)
6074 {
6075 omp_target_stmt->data_arg = data_arg;
6076 }
6077
6078
6079 /* Return the clauses associated with OMP_TEAMS GS. */
6080
6081 static inline tree
6082 gimple_omp_teams_clauses (const gimple *gs)
6083 {
6084 const gomp_teams *omp_teams_stmt = as_a <const gomp_teams *> (gs);
6085 return omp_teams_stmt->clauses;
6086 }
6087
6088
6089 /* Return a pointer to the clauses associated with OMP_TEAMS GS. */
6090
6091 static inline tree *
6092 gimple_omp_teams_clauses_ptr (gimple *gs)
6093 {
6094 gomp_teams *omp_teams_stmt = as_a <gomp_teams *> (gs);
6095 return &omp_teams_stmt->clauses;
6096 }
6097
6098
6099 /* Set CLAUSES to be the clauses associated with OMP_TEAMS_STMT. */
6100
6101 static inline void
6102 gimple_omp_teams_set_clauses (gomp_teams *omp_teams_stmt, tree clauses)
6103 {
6104 omp_teams_stmt->clauses = clauses;
6105 }
6106
6107 /* Return the child function used to hold the body of OMP_TEAMS_STMT. */
6108
6109 static inline tree
6110 gimple_omp_teams_child_fn (const gomp_teams *omp_teams_stmt)
6111 {
6112 return omp_teams_stmt->child_fn;
6113 }
6114
6115 /* Return a pointer to the child function used to hold the body of
6116 OMP_TEAMS_STMT. */
6117
6118 static inline tree *
6119 gimple_omp_teams_child_fn_ptr (gomp_teams *omp_teams_stmt)
6120 {
6121 return &omp_teams_stmt->child_fn;
6122 }
6123
6124
6125 /* Set CHILD_FN to be the child function for OMP_TEAMS_STMT. */
6126
6127 static inline void
6128 gimple_omp_teams_set_child_fn (gomp_teams *omp_teams_stmt, tree child_fn)
6129 {
6130 omp_teams_stmt->child_fn = child_fn;
6131 }
6132
6133
6134 /* Return the artificial argument used to send variables and values
6135 from the parent to the children threads in OMP_TEAMS_STMT. */
6136
6137 static inline tree
6138 gimple_omp_teams_data_arg (const gomp_teams *omp_teams_stmt)
6139 {
6140 return omp_teams_stmt->data_arg;
6141 }
6142
6143
6144 /* Return a pointer to the data argument for OMP_TEAMS_STMT. */
6145
6146 static inline tree *
6147 gimple_omp_teams_data_arg_ptr (gomp_teams *omp_teams_stmt)
6148 {
6149 return &omp_teams_stmt->data_arg;
6150 }
6151
6152
6153 /* Set DATA_ARG to be the data argument for OMP_TEAMS_STMT. */
6154
6155 static inline void
6156 gimple_omp_teams_set_data_arg (gomp_teams *omp_teams_stmt, tree data_arg)
6157 {
6158 omp_teams_stmt->data_arg = data_arg;
6159 }
6160
6161 /* Return the kernel_phony flag of an OMP_TEAMS_STMT. */
6162
6163 static inline bool
6164 gimple_omp_teams_grid_phony (const gomp_teams *omp_teams_stmt)
6165 {
6166 return (gimple_omp_subcode (omp_teams_stmt) & GF_OMP_TEAMS_GRID_PHONY) != 0;
6167 }
6168
6169 /* Set kernel_phony flag of an OMP_TEAMS_STMT to VALUE. */
6170
6171 static inline void
6172 gimple_omp_teams_set_grid_phony (gomp_teams *omp_teams_stmt, bool value)
6173 {
6174 if (value)
6175 omp_teams_stmt->subcode |= GF_OMP_TEAMS_GRID_PHONY;
6176 else
6177 omp_teams_stmt->subcode &= ~GF_OMP_TEAMS_GRID_PHONY;
6178 }
6179
6180 /* Return the host flag of an OMP_TEAMS_STMT. */
6181
6182 static inline bool
6183 gimple_omp_teams_host (const gomp_teams *omp_teams_stmt)
6184 {
6185 return (gimple_omp_subcode (omp_teams_stmt) & GF_OMP_TEAMS_HOST) != 0;
6186 }
6187
6188 /* Set host flag of an OMP_TEAMS_STMT to VALUE. */
6189
6190 static inline void
6191 gimple_omp_teams_set_host (gomp_teams *omp_teams_stmt, bool value)
6192 {
6193 if (value)
6194 omp_teams_stmt->subcode |= GF_OMP_TEAMS_HOST;
6195 else
6196 omp_teams_stmt->subcode &= ~GF_OMP_TEAMS_HOST;
6197 }
6198
6199 /* Return the clauses associated with OMP_SECTIONS GS. */
6200
6201 static inline tree
6202 gimple_omp_sections_clauses (const gimple *gs)
6203 {
6204 const gomp_sections *omp_sections_stmt = as_a <const gomp_sections *> (gs);
6205 return omp_sections_stmt->clauses;
6206 }
6207
6208
6209 /* Return a pointer to the clauses associated with OMP_SECTIONS GS. */
6210
6211 static inline tree *
6212 gimple_omp_sections_clauses_ptr (gimple *gs)
6213 {
6214 gomp_sections *omp_sections_stmt = as_a <gomp_sections *> (gs);
6215 return &omp_sections_stmt->clauses;
6216 }
6217
6218
6219 /* Set CLAUSES to be the set of clauses associated with OMP_SECTIONS
6220 GS. */
6221
6222 static inline void
6223 gimple_omp_sections_set_clauses (gimple *gs, tree clauses)
6224 {
6225 gomp_sections *omp_sections_stmt = as_a <gomp_sections *> (gs);
6226 omp_sections_stmt->clauses = clauses;
6227 }
6228
6229
6230 /* Return the control variable associated with the GIMPLE_OMP_SECTIONS
6231 in GS. */
6232
6233 static inline tree
6234 gimple_omp_sections_control (const gimple *gs)
6235 {
6236 const gomp_sections *omp_sections_stmt = as_a <const gomp_sections *> (gs);
6237 return omp_sections_stmt->control;
6238 }
6239
6240
6241 /* Return a pointer to the clauses associated with the GIMPLE_OMP_SECTIONS
6242 GS. */
6243
6244 static inline tree *
6245 gimple_omp_sections_control_ptr (gimple *gs)
6246 {
6247 gomp_sections *omp_sections_stmt = as_a <gomp_sections *> (gs);
6248 return &omp_sections_stmt->control;
6249 }
6250
6251
6252 /* Set CONTROL to be the set of clauses associated with the
6253 GIMPLE_OMP_SECTIONS in GS. */
6254
6255 static inline void
6256 gimple_omp_sections_set_control (gimple *gs, tree control)
6257 {
6258 gomp_sections *omp_sections_stmt = as_a <gomp_sections *> (gs);
6259 omp_sections_stmt->control = control;
6260 }
6261
6262
6263 /* Set the value being stored in an atomic store. */
6264
6265 static inline void
6266 gimple_omp_atomic_store_set_val (gomp_atomic_store *store_stmt, tree val)
6267 {
6268 store_stmt->val = val;
6269 }
6270
6271
6272 /* Return the value being stored in an atomic store. */
6273
6274 static inline tree
6275 gimple_omp_atomic_store_val (const gomp_atomic_store *store_stmt)
6276 {
6277 return store_stmt->val;
6278 }
6279
6280
6281 /* Return a pointer to the value being stored in an atomic store. */
6282
6283 static inline tree *
6284 gimple_omp_atomic_store_val_ptr (gomp_atomic_store *store_stmt)
6285 {
6286 return &store_stmt->val;
6287 }
6288
6289
6290 /* Set the LHS of an atomic load. */
6291
6292 static inline void
6293 gimple_omp_atomic_load_set_lhs (gomp_atomic_load *load_stmt, tree lhs)
6294 {
6295 load_stmt->lhs = lhs;
6296 }
6297
6298
6299 /* Get the LHS of an atomic load. */
6300
6301 static inline tree
6302 gimple_omp_atomic_load_lhs (const gomp_atomic_load *load_stmt)
6303 {
6304 return load_stmt->lhs;
6305 }
6306
6307
6308 /* Return a pointer to the LHS of an atomic load. */
6309
6310 static inline tree *
6311 gimple_omp_atomic_load_lhs_ptr (gomp_atomic_load *load_stmt)
6312 {
6313 return &load_stmt->lhs;
6314 }
6315
6316
6317 /* Set the RHS of an atomic load. */
6318
6319 static inline void
6320 gimple_omp_atomic_load_set_rhs (gomp_atomic_load *load_stmt, tree rhs)
6321 {
6322 load_stmt->rhs = rhs;
6323 }
6324
6325
6326 /* Get the RHS of an atomic load. */
6327
6328 static inline tree
6329 gimple_omp_atomic_load_rhs (const gomp_atomic_load *load_stmt)
6330 {
6331 return load_stmt->rhs;
6332 }
6333
6334
6335 /* Return a pointer to the RHS of an atomic load. */
6336
6337 static inline tree *
6338 gimple_omp_atomic_load_rhs_ptr (gomp_atomic_load *load_stmt)
6339 {
6340 return &load_stmt->rhs;
6341 }
6342
6343
6344 /* Get the definition of the control variable in a GIMPLE_OMP_CONTINUE. */
6345
6346 static inline tree
6347 gimple_omp_continue_control_def (const gomp_continue *cont_stmt)
6348 {
6349 return cont_stmt->control_def;
6350 }
6351
6352 /* The same as above, but return the address. */
6353
6354 static inline tree *
6355 gimple_omp_continue_control_def_ptr (gomp_continue *cont_stmt)
6356 {
6357 return &cont_stmt->control_def;
6358 }
6359
6360 /* Set the definition of the control variable in a GIMPLE_OMP_CONTINUE. */
6361
6362 static inline void
6363 gimple_omp_continue_set_control_def (gomp_continue *cont_stmt, tree def)
6364 {
6365 cont_stmt->control_def = def;
6366 }
6367
6368
6369 /* Get the use of the control variable in a GIMPLE_OMP_CONTINUE. */
6370
6371 static inline tree
6372 gimple_omp_continue_control_use (const gomp_continue *cont_stmt)
6373 {
6374 return cont_stmt->control_use;
6375 }
6376
6377
6378 /* The same as above, but return the address. */
6379
6380 static inline tree *
6381 gimple_omp_continue_control_use_ptr (gomp_continue *cont_stmt)
6382 {
6383 return &cont_stmt->control_use;
6384 }
6385
6386
6387 /* Set the use of the control variable in a GIMPLE_OMP_CONTINUE. */
6388
6389 static inline void
6390 gimple_omp_continue_set_control_use (gomp_continue *cont_stmt, tree use)
6391 {
6392 cont_stmt->control_use = use;
6393 }
6394
6395 /* Return a pointer to the body for the GIMPLE_TRANSACTION statement
6396 TRANSACTION_STMT. */
6397
6398 static inline gimple_seq *
6399 gimple_transaction_body_ptr (gtransaction *transaction_stmt)
6400 {
6401 return &transaction_stmt->body;
6402 }
6403
6404 /* Return the body for the GIMPLE_TRANSACTION statement TRANSACTION_STMT. */
6405
6406 static inline gimple_seq
6407 gimple_transaction_body (const gtransaction *transaction_stmt)
6408 {
6409 return transaction_stmt->body;
6410 }
6411
6412 /* Return the label associated with a GIMPLE_TRANSACTION. */
6413
6414 static inline tree
6415 gimple_transaction_label_norm (const gtransaction *transaction_stmt)
6416 {
6417 return transaction_stmt->label_norm;
6418 }
6419
6420 static inline tree *
6421 gimple_transaction_label_norm_ptr (gtransaction *transaction_stmt)
6422 {
6423 return &transaction_stmt->label_norm;
6424 }
6425
6426 static inline tree
6427 gimple_transaction_label_uninst (const gtransaction *transaction_stmt)
6428 {
6429 return transaction_stmt->label_uninst;
6430 }
6431
6432 static inline tree *
6433 gimple_transaction_label_uninst_ptr (gtransaction *transaction_stmt)
6434 {
6435 return &transaction_stmt->label_uninst;
6436 }
6437
6438 static inline tree
6439 gimple_transaction_label_over (const gtransaction *transaction_stmt)
6440 {
6441 return transaction_stmt->label_over;
6442 }
6443
6444 static inline tree *
6445 gimple_transaction_label_over_ptr (gtransaction *transaction_stmt)
6446 {
6447 return &transaction_stmt->label_over;
6448 }
6449
6450 /* Return the subcode associated with a GIMPLE_TRANSACTION. */
6451
6452 static inline unsigned int
6453 gimple_transaction_subcode (const gtransaction *transaction_stmt)
6454 {
6455 return transaction_stmt->subcode;
6456 }
6457
6458 /* Set BODY to be the body for the GIMPLE_TRANSACTION statement
6459 TRANSACTION_STMT. */
6460
6461 static inline void
6462 gimple_transaction_set_body (gtransaction *transaction_stmt,
6463 gimple_seq body)
6464 {
6465 transaction_stmt->body = body;
6466 }
6467
6468 /* Set the label associated with a GIMPLE_TRANSACTION. */
6469
6470 static inline void
6471 gimple_transaction_set_label_norm (gtransaction *transaction_stmt, tree label)
6472 {
6473 transaction_stmt->label_norm = label;
6474 }
6475
6476 static inline void
6477 gimple_transaction_set_label_uninst (gtransaction *transaction_stmt, tree label)
6478 {
6479 transaction_stmt->label_uninst = label;
6480 }
6481
6482 static inline void
6483 gimple_transaction_set_label_over (gtransaction *transaction_stmt, tree label)
6484 {
6485 transaction_stmt->label_over = label;
6486 }
6487
6488 /* Set the subcode associated with a GIMPLE_TRANSACTION. */
6489
6490 static inline void
6491 gimple_transaction_set_subcode (gtransaction *transaction_stmt,
6492 unsigned int subcode)
6493 {
6494 transaction_stmt->subcode = subcode;
6495 }
6496
6497 /* Return a pointer to the return value for GIMPLE_RETURN GS. */
6498
6499 static inline tree *
6500 gimple_return_retval_ptr (greturn *gs)
6501 {
6502 return &gs->op[0];
6503 }
6504
6505 /* Return the return value for GIMPLE_RETURN GS. */
6506
6507 static inline tree
6508 gimple_return_retval (const greturn *gs)
6509 {
6510 return gs->op[0];
6511 }
6512
6513
6514 /* Set RETVAL to be the return value for GIMPLE_RETURN GS. */
6515
6516 static inline void
6517 gimple_return_set_retval (greturn *gs, tree retval)
6518 {
6519 gs->op[0] = retval;
6520 }
6521
6522
6523 /* Returns true when the gimple statement STMT is any of the OMP types. */
6524
6525 #define CASE_GIMPLE_OMP \
6526 case GIMPLE_OMP_PARALLEL: \
6527 case GIMPLE_OMP_TASK: \
6528 case GIMPLE_OMP_FOR: \
6529 case GIMPLE_OMP_SECTIONS: \
6530 case GIMPLE_OMP_SECTIONS_SWITCH: \
6531 case GIMPLE_OMP_SINGLE: \
6532 case GIMPLE_OMP_TARGET: \
6533 case GIMPLE_OMP_TEAMS: \
6534 case GIMPLE_OMP_SECTION: \
6535 case GIMPLE_OMP_MASTER: \
6536 case GIMPLE_OMP_TASKGROUP: \
6537 case GIMPLE_OMP_ORDERED: \
6538 case GIMPLE_OMP_CRITICAL: \
6539 case GIMPLE_OMP_SCAN: \
6540 case GIMPLE_OMP_RETURN: \
6541 case GIMPLE_OMP_ATOMIC_LOAD: \
6542 case GIMPLE_OMP_ATOMIC_STORE: \
6543 case GIMPLE_OMP_CONTINUE: \
6544 case GIMPLE_OMP_GRID_BODY
6545
6546 static inline bool
6547 is_gimple_omp (const gimple *stmt)
6548 {
6549 switch (gimple_code (stmt))
6550 {
6551 CASE_GIMPLE_OMP:
6552 return true;
6553 default:
6554 return false;
6555 }
6556 }
6557
6558 /* Return true if the OMP gimple statement STMT is any of the OpenACC types
6559 specifically. */
6560
6561 static inline bool
6562 is_gimple_omp_oacc (const gimple *stmt)
6563 {
6564 gcc_assert (is_gimple_omp (stmt));
6565 switch (gimple_code (stmt))
6566 {
6567 case GIMPLE_OMP_FOR:
6568 switch (gimple_omp_for_kind (stmt))
6569 {
6570 case GF_OMP_FOR_KIND_OACC_LOOP:
6571 return true;
6572 default:
6573 return false;
6574 }
6575 case GIMPLE_OMP_TARGET:
6576 switch (gimple_omp_target_kind (stmt))
6577 {
6578 case GF_OMP_TARGET_KIND_OACC_PARALLEL:
6579 case GF_OMP_TARGET_KIND_OACC_KERNELS:
6580 case GF_OMP_TARGET_KIND_OACC_SERIAL:
6581 case GF_OMP_TARGET_KIND_OACC_DATA:
6582 case GF_OMP_TARGET_KIND_OACC_UPDATE:
6583 case GF_OMP_TARGET_KIND_OACC_ENTER_EXIT_DATA:
6584 case GF_OMP_TARGET_KIND_OACC_DECLARE:
6585 case GF_OMP_TARGET_KIND_OACC_HOST_DATA:
6586 return true;
6587 default:
6588 return false;
6589 }
6590 default:
6591 return false;
6592 }
6593 }
6594
6595
6596 /* Return true if the OMP gimple statement STMT is offloaded. */
6597
6598 static inline bool
6599 is_gimple_omp_offloaded (const gimple *stmt)
6600 {
6601 gcc_assert (is_gimple_omp (stmt));
6602 switch (gimple_code (stmt))
6603 {
6604 case GIMPLE_OMP_TARGET:
6605 switch (gimple_omp_target_kind (stmt))
6606 {
6607 case GF_OMP_TARGET_KIND_REGION:
6608 case GF_OMP_TARGET_KIND_OACC_PARALLEL:
6609 case GF_OMP_TARGET_KIND_OACC_KERNELS:
6610 case GF_OMP_TARGET_KIND_OACC_SERIAL:
6611 return true;
6612 default:
6613 return false;
6614 }
6615 default:
6616 return false;
6617 }
6618 }
6619
6620
6621 /* Returns TRUE if statement G is a GIMPLE_NOP. */
6622
6623 static inline bool
6624 gimple_nop_p (const gimple *g)
6625 {
6626 return gimple_code (g) == GIMPLE_NOP;
6627 }
6628
6629
6630 /* Return true if GS is a GIMPLE_RESX. */
6631
6632 static inline bool
6633 is_gimple_resx (const gimple *gs)
6634 {
6635 return gimple_code (gs) == GIMPLE_RESX;
6636 }
6637
6638 /* Return the type of the main expression computed by STMT. Return
6639 void_type_node if the statement computes nothing. */
6640
6641 static inline tree
6642 gimple_expr_type (const gimple *stmt)
6643 {
6644 enum gimple_code code = gimple_code (stmt);
6645 /* In general we want to pass out a type that can be substituted
6646 for both the RHS and the LHS types if there is a possibly
6647 useless conversion involved. That means returning the
6648 original RHS type as far as we can reconstruct it. */
6649 if (code == GIMPLE_CALL)
6650 {
6651 const gcall *call_stmt = as_a <const gcall *> (stmt);
6652 if (gimple_call_internal_p (call_stmt))
6653 switch (gimple_call_internal_fn (call_stmt))
6654 {
6655 case IFN_MASK_STORE:
6656 case IFN_SCATTER_STORE:
6657 return TREE_TYPE (gimple_call_arg (call_stmt, 3));
6658 case IFN_MASK_SCATTER_STORE:
6659 return TREE_TYPE (gimple_call_arg (call_stmt, 4));
6660 default:
6661 break;
6662 }
6663 return gimple_call_return_type (call_stmt);
6664 }
6665 else if (code == GIMPLE_ASSIGN)
6666 {
6667 if (gimple_assign_rhs_code (stmt) == POINTER_PLUS_EXPR)
6668 return TREE_TYPE (gimple_assign_rhs1 (stmt));
6669 else
6670 /* As fallback use the type of the LHS. */
6671 return TREE_TYPE (gimple_get_lhs (stmt));
6672 }
6673 else if (code == GIMPLE_COND)
6674 return boolean_type_node;
6675 else
6676 return void_type_node;
6677 }
6678
6679 /* Enum and arrays used for allocation stats. Keep in sync with
6680 gimple.c:gimple_alloc_kind_names. */
6681 enum gimple_alloc_kind
6682 {
6683 gimple_alloc_kind_assign, /* Assignments. */
6684 gimple_alloc_kind_phi, /* PHI nodes. */
6685 gimple_alloc_kind_cond, /* Conditionals. */
6686 gimple_alloc_kind_rest, /* Everything else. */
6687 gimple_alloc_kind_all
6688 };
6689
6690 extern uint64_t gimple_alloc_counts[];
6691 extern uint64_t gimple_alloc_sizes[];
6692
6693 /* Return the allocation kind for a given stmt CODE. */
6694 static inline enum gimple_alloc_kind
6695 gimple_alloc_kind (enum gimple_code code)
6696 {
6697 switch (code)
6698 {
6699 case GIMPLE_ASSIGN:
6700 return gimple_alloc_kind_assign;
6701 case GIMPLE_PHI:
6702 return gimple_alloc_kind_phi;
6703 case GIMPLE_COND:
6704 return gimple_alloc_kind_cond;
6705 default:
6706 return gimple_alloc_kind_rest;
6707 }
6708 }
6709
6710 /* Return true if a location should not be emitted for this statement
6711 by annotate_all_with_location. */
6712
6713 static inline bool
6714 gimple_do_not_emit_location_p (gimple *g)
6715 {
6716 return gimple_plf (g, GF_PLF_1);
6717 }
6718
6719 /* Mark statement G so a location will not be emitted by
6720 annotate_one_with_location. */
6721
6722 static inline void
6723 gimple_set_do_not_emit_location (gimple *g)
6724 {
6725 /* The PLF flags are initialized to 0 when a new tuple is created,
6726 so no need to initialize it anywhere. */
6727 gimple_set_plf (g, GF_PLF_1, true);
6728 }
6729
6730 #endif /* GCC_GIMPLE_H */