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5e351e96 1/* Core data structures for the 'tree' type.
cbe34bb5 2 Copyright (C) 1989-2017 Free Software Foundation, Inc.
5e351e96
DN
3
4This file is part of GCC.
5
6GCC is free software; you can redistribute it and/or modify it under
7the terms of the GNU General Public License as published by the Free
8Software Foundation; either version 3, or (at your option) any later
9version.
10
11GCC is distributed in the hope that it will be useful, but WITHOUT ANY
12WARRANTY; without even the implied warranty of MERCHANTABILITY or
13FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
14for more details.
15
16You should have received a copy of the GNU General Public License
17along with GCC; see the file COPYING3. If not see
18<http://www.gnu.org/licenses/>. */
19
20#ifndef GCC_TREE_CORE_H
21#define GCC_TREE_CORE_H
22
c7131fb2
AM
23#include "symtab.h"
24
5e351e96
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25/* This file contains all the data structures that define the 'tree' type.
26 There are no accessor macros nor functions in this file. Only the
27 basic data structures, extern declarations and type definitions. */
28
29/*---------------------------------------------------------------------------
30 Forward type declarations. Mostly to avoid including unnecessary headers
31---------------------------------------------------------------------------*/
32struct function;
33struct real_value;
34struct fixed_value;
35struct ptr_info_def;
a895a2b8 36struct range_info_def;
5e351e96 37struct die_struct;
5e351e96
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38
39
40/*---------------------------------------------------------------------------
41 #defined constants
42---------------------------------------------------------------------------*/
43/* Nonzero if this is a call to a function whose return value depends
44 solely on its arguments, has no side effects, and does not read
45 global memory. This corresponds to TREE_READONLY for function
46 decls. */
47#define ECF_CONST (1 << 0)
48
49/* Nonzero if this is a call to "pure" function (like const function,
50 but may read memory. This corresponds to DECL_PURE_P for function
51 decls. */
52#define ECF_PURE (1 << 1)
53
54/* Nonzero if this is ECF_CONST or ECF_PURE but cannot be proven to no
55 infinite loop. This corresponds to DECL_LOOPING_CONST_OR_PURE_P
56 for function decls.*/
57#define ECF_LOOPING_CONST_OR_PURE (1 << 2)
58
59/* Nonzero if this call will never return. */
60#define ECF_NORETURN (1 << 3)
61
62/* Nonzero if this is a call to malloc or a related function. */
63#define ECF_MALLOC (1 << 4)
64
65/* Nonzero if it is plausible that this is a call to alloca. */
66#define ECF_MAY_BE_ALLOCA (1 << 5)
67
68/* Nonzero if this is a call to a function that won't throw an exception. */
69#define ECF_NOTHROW (1 << 6)
70
71/* Nonzero if this is a call to setjmp or a related function. */
72#define ECF_RETURNS_TWICE (1 << 7)
73
74/* Nonzero if this call replaces the current stack frame. */
75#define ECF_SIBCALL (1 << 8)
76
77/* Function does not read or write memory (but may have side effects, so
78 it does not necessarily fit ECF_CONST). */
79#define ECF_NOVOPS (1 << 9)
80
81/* The function does not lead to calls within current function unit. */
82#define ECF_LEAF (1 << 10)
83
ee516de9
EB
84/* Nonzero if this call returns its first argument. */
85#define ECF_RET1 (1 << 11)
86
5e351e96 87/* Nonzero if this call does not affect transactions. */
ee516de9 88#define ECF_TM_PURE (1 << 12)
5e351e96
DN
89
90/* Nonzero if this call is into the transaction runtime library. */
ee516de9 91#define ECF_TM_BUILTIN (1 << 13)
5e351e96 92
4c640e26
EB
93/* Nonzero if this is an indirect call by descriptor. */
94#define ECF_BY_DESCRIPTOR (1 << 14)
95
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96/* Call argument flags. */
97/* Nonzero if the argument is not dereferenced recursively, thus only
98 directly reachable memory is read or written. */
99#define EAF_DIRECT (1 << 0)
100
101/* Nonzero if memory reached by the argument is not clobbered. */
102#define EAF_NOCLOBBER (1 << 1)
103
104/* Nonzero if the argument does not escape. */
105#define EAF_NOESCAPE (1 << 2)
106
107/* Nonzero if the argument is not used by the function. */
108#define EAF_UNUSED (1 << 3)
109
110/* Call return flags. */
111/* Mask for the argument number that is returned. Lower two bits of
112 the return flags, encodes argument slots zero to three. */
113#define ERF_RETURN_ARG_MASK (3)
114
115/* Nonzero if the return value is equal to the argument number
116 flags & ERF_RETURN_ARG_MASK. */
117#define ERF_RETURNS_ARG (1 << 2)
118
119/* Nonzero if the return value does not alias with anything. Functions
120 with the malloc attribute have this set on their return value. */
121#define ERF_NOALIAS (1 << 3)
122
123
124/*---------------------------------------------------------------------------
125 Enumerations
126---------------------------------------------------------------------------*/
127/* Codes of tree nodes. */
128#define DEFTREECODE(SYM, STRING, TYPE, NARGS) SYM,
129#define END_OF_BASE_TREE_CODES LAST_AND_UNUSED_TREE_CODE,
130
131enum tree_code {
132#include "all-tree.def"
133MAX_TREE_CODES
134};
135
136#undef DEFTREECODE
137#undef END_OF_BASE_TREE_CODES
138
139/* Number of language-independent tree codes. */
140#define NUM_TREE_CODES \
141 ((int) LAST_AND_UNUSED_TREE_CODE)
142
143#define CODE_CONTAINS_STRUCT(CODE, STRUCT) \
144 (tree_contains_struct[(CODE)][(STRUCT)])
145
146
147/* Classify which part of the compiler has defined a given builtin function.
148 Note that we assume below that this is no more than two bits. */
149enum built_in_class {
150 NOT_BUILT_IN = 0,
151 BUILT_IN_FRONTEND,
152 BUILT_IN_MD,
153 BUILT_IN_NORMAL
154};
155
156/* Last marker used for LTO stremaing of built_in_class. We can not add it
157 to the enum since we need the enumb to fit in 2 bits. */
158#define BUILT_IN_LAST (BUILT_IN_NORMAL + 1)
159
160/* Codes that identify the various built in functions
161 so that expand_call can identify them quickly. */
162#define DEF_BUILTIN(ENUM, N, C, T, LT, B, F, NA, AT, IM, COND) ENUM,
163enum built_in_function {
164#include "builtins.def"
165
edcf72f3
IE
166 BEGIN_CHKP_BUILTINS,
167
e3bc4a35 168#define DEF_BUILTIN(ENUM, N, C, T, LT, B, F, NA, AT, IM, COND)
e3bc4a35
JJ
169#define DEF_BUILTIN_CHKP(ENUM, N, C, T, LT, B, F, NA, AT, IM, COND) \
170 ENUM##_CHKP = ENUM + BEGIN_CHKP_BUILTINS + 1,
edcf72f3
IE
171#include "builtins.def"
172
e3bc4a35 173 END_CHKP_BUILTINS = BEGIN_CHKP_BUILTINS * 2 + 1,
edcf72f3 174
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175 /* Complex division routines in libgcc. These are done via builtins
176 because emit_library_call_value can't handle complex values. */
177 BUILT_IN_COMPLEX_MUL_MIN,
178 BUILT_IN_COMPLEX_MUL_MAX
179 = BUILT_IN_COMPLEX_MUL_MIN
180 + MAX_MODE_COMPLEX_FLOAT
181 - MIN_MODE_COMPLEX_FLOAT,
182
183 BUILT_IN_COMPLEX_DIV_MIN,
184 BUILT_IN_COMPLEX_DIV_MAX
185 = BUILT_IN_COMPLEX_DIV_MIN
186 + MAX_MODE_COMPLEX_FLOAT
187 - MIN_MODE_COMPLEX_FLOAT,
188
189 /* Upper bound on non-language-specific builtins. */
190 END_BUILTINS
191};
5e351e96 192
00175cb2
RS
193/* Internal functions. */
194enum internal_fn {
195#define DEF_INTERNAL_FN(CODE, FLAGS, FNSPEC) IFN_##CODE,
196#include "internal-fn.def"
197 IFN_LAST
198};
199
200/* An enum that combines target-independent built-in functions with
201 internal functions, so that they can be treated in a similar way.
202 The numbers for built-in functions are the same as for the
203 built_in_function enum. The numbers for internal functions
204 start at END_BUITLINS. */
205enum combined_fn {
206#define DEF_BUILTIN(ENUM, N, C, T, LT, B, F, NA, AT, IM, COND) \
207 CFN_##ENUM = int (ENUM),
208#include "builtins.def"
209
210#define DEF_BUILTIN(ENUM, N, C, T, LT, B, F, NA, AT, IM, COND)
211#define DEF_BUILTIN_CHKP(ENUM, N, C, T, LT, B, F, NA, AT, IM, COND) \
212 CFN_##ENUM##_CHKP = int (ENUM##_CHKP),
213#include "builtins.def"
214
215#define DEF_INTERNAL_FN(CODE, FLAGS, FNSPEC) \
216 CFN_##CODE = int (END_BUILTINS) + int (IFN_##CODE),
217#include "internal-fn.def"
218
219 CFN_LAST
220};
221
5e351e96
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222/* Tree code classes. Each tree_code has an associated code class
223 represented by a TREE_CODE_CLASS. */
224enum tree_code_class {
225 tcc_exceptional, /* An exceptional code (fits no category). */
226 tcc_constant, /* A constant. */
227 /* Order of tcc_type and tcc_declaration is important. */
228 tcc_type, /* A type object code. */
229 tcc_declaration, /* A declaration (also serving as variable refs). */
230 tcc_reference, /* A reference to storage. */
231 tcc_comparison, /* A comparison expression. */
232 tcc_unary, /* A unary arithmetic expression. */
233 tcc_binary, /* A binary arithmetic expression. */
234 tcc_statement, /* A statement expression, which have side effects
235 but usually no interesting value. */
236 tcc_vl_exp, /* A function call or other expression with a
237 variable-length operand vector. */
238 tcc_expression /* Any other expression. */
239};
240
241/* OMP_CLAUSE codes. Do not reorder, as this is used to index into
242 the tables omp_clause_num_ops and omp_clause_code_name. */
243enum omp_clause_code {
244 /* Clause zero is special-cased inside the parser
245 (c_parser_omp_variable_list). */
246 OMP_CLAUSE_ERROR = 0,
247
41dbbb37 248 /* OpenACC/OpenMP clause: private (variable_list). */
5e351e96
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249 OMP_CLAUSE_PRIVATE,
250
251 /* OpenMP clause: shared (variable_list). */
252 OMP_CLAUSE_SHARED,
253
41dbbb37 254 /* OpenACC/OpenMP clause: firstprivate (variable_list). */
5e351e96
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255 OMP_CLAUSE_FIRSTPRIVATE,
256
257 /* OpenMP clause: lastprivate (variable_list). */
258 OMP_CLAUSE_LASTPRIVATE,
259
41dbbb37 260 /* OpenACC/OpenMP clause: reduction (operator:variable_list).
5e351e96
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261 OMP_CLAUSE_REDUCTION_CODE: The tree_code of the operator.
262 Operand 1: OMP_CLAUSE_REDUCTION_INIT: Stmt-list to initialize the var.
263 Operand 2: OMP_CLAUSE_REDUCTION_MERGE: Stmt-list to merge private var
264 into the shared one.
265 Operand 3: OMP_CLAUSE_REDUCTION_PLACEHOLDER: A dummy VAR_DECL
d9a6bd32
JJ
266 placeholder used in OMP_CLAUSE_REDUCTION_{INIT,MERGE}.
267 Operand 4: OMP_CLAUSE_REDUCTION_DECL_PLACEHOLDER: Another dummy
268 VAR_DECL placeholder, used like the above for C/C++ array
269 reductions. */
5e351e96
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270 OMP_CLAUSE_REDUCTION,
271
272 /* OpenMP clause: copyin (variable_list). */
273 OMP_CLAUSE_COPYIN,
274
275 /* OpenMP clause: copyprivate (variable_list). */
276 OMP_CLAUSE_COPYPRIVATE,
277
278 /* OpenMP clause: linear (variable-list[:linear-step]). */
279 OMP_CLAUSE_LINEAR,
280
acf0174b
JJ
281 /* OpenMP clause: aligned (variable-list[:alignment]). */
282 OMP_CLAUSE_ALIGNED,
283
284 /* OpenMP clause: depend ({in,out,inout}:variable-list). */
285 OMP_CLAUSE_DEPEND,
286
5e351e96
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287 /* OpenMP clause: uniform (argument-list). */
288 OMP_CLAUSE_UNIFORM,
289
d9a6bd32
JJ
290 /* OpenMP clause: to (extended-list).
291 Only when it appears in declare target. */
292 OMP_CLAUSE_TO_DECLARE,
293
294 /* OpenMP clause: link (variable-list). */
295 OMP_CLAUSE_LINK,
296
acf0174b
JJ
297 /* OpenMP clause: from (variable-list). */
298 OMP_CLAUSE_FROM,
299
300 /* OpenMP clause: to (variable-list). */
301 OMP_CLAUSE_TO,
302
41dbbb37
TS
303 /* OpenACC clauses: {copy, copyin, copyout, create, delete, deviceptr,
304 device, host (self), present, present_or_copy (pcopy), present_or_copyin
305 (pcopyin), present_or_copyout (pcopyout), present_or_create (pcreate)}
306 (variable-list).
307
308 OpenMP clause: map ({alloc:,to:,from:,tofrom:,}variable-list). */
acf0174b
JJ
309 OMP_CLAUSE_MAP,
310
c7b48c8a
TS
311 /* OpenACC clause: use_device (variable_list).
312 OpenMP clause: use_device_ptr (variable-list). */
d9a6bd32
JJ
313 OMP_CLAUSE_USE_DEVICE_PTR,
314
315 /* OpenMP clause: is_device_ptr (variable-list). */
316 OMP_CLAUSE_IS_DEVICE_PTR,
317
41dbbb37
TS
318 /* Internal structure to hold OpenACC cache directive's variable-list.
319 #pragma acc cache (variable-list). */
320 OMP_CLAUSE__CACHE_,
321
41dbbb37
TS
322 /* OpenACC clause: gang [(gang-argument-list)].
323 Where
324 gang-argument-list: [gang-argument-list, ] gang-argument
325 gang-argument: [num:] integer-expression
326 | static: size-expression
327 size-expression: * | integer-expression. */
328 OMP_CLAUSE_GANG,
329
330 /* OpenACC clause: async [(integer-expression)]. */
331 OMP_CLAUSE_ASYNC,
332
333 /* OpenACC clause: wait [(integer-expression-list)]. */
334 OMP_CLAUSE_WAIT,
335
336 /* OpenACC clause: auto. */
337 OMP_CLAUSE_AUTO,
338
339 /* OpenACC clause: seq. */
340 OMP_CLAUSE_SEQ,
341
acf0174b
JJ
342 /* Internal clause: temporary for combined loops expansion. */
343 OMP_CLAUSE__LOOPTEMP_,
344
41dbbb37 345 /* OpenACC/OpenMP clause: if (scalar-expression). */
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346 OMP_CLAUSE_IF,
347
348 /* OpenMP clause: num_threads (integer-expression). */
349 OMP_CLAUSE_NUM_THREADS,
350
351 /* OpenMP clause: schedule. */
352 OMP_CLAUSE_SCHEDULE,
353
354 /* OpenMP clause: nowait. */
355 OMP_CLAUSE_NOWAIT,
356
d9a6bd32 357 /* OpenMP clause: ordered [(constant-integer-expression)]. */
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358 OMP_CLAUSE_ORDERED,
359
7fd549d2 360 /* OpenACC/OpenMP clause: default. */
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361 OMP_CLAUSE_DEFAULT,
362
41dbbb37 363 /* OpenACC/OpenMP clause: collapse (constant-integer-expression). */
5e351e96
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364 OMP_CLAUSE_COLLAPSE,
365
366 /* OpenMP clause: untied. */
367 OMP_CLAUSE_UNTIED,
368
369 /* OpenMP clause: final (scalar-expression). */
370 OMP_CLAUSE_FINAL,
371
372 /* OpenMP clause: mergeable. */
373 OMP_CLAUSE_MERGEABLE,
374
acf0174b
JJ
375 /* OpenMP clause: device (integer-expression). */
376 OMP_CLAUSE_DEVICE,
377
378 /* OpenMP clause: dist_schedule (static[:chunk-size]). */
379 OMP_CLAUSE_DIST_SCHEDULE,
380
381 /* OpenMP clause: inbranch. */
382 OMP_CLAUSE_INBRANCH,
383
384 /* OpenMP clause: notinbranch. */
385 OMP_CLAUSE_NOTINBRANCH,
386
387 /* OpenMP clause: num_teams(integer-expression). */
388 OMP_CLAUSE_NUM_TEAMS,
389
390 /* OpenMP clause: thread_limit(integer-expression). */
391 OMP_CLAUSE_THREAD_LIMIT,
392
393 /* OpenMP clause: proc_bind ({master,close,spread}). */
394 OMP_CLAUSE_PROC_BIND,
395
5e351e96
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396 /* OpenMP clause: safelen (constant-integer-expression). */
397 OMP_CLAUSE_SAFELEN,
398
acf0174b
JJ
399 /* OpenMP clause: simdlen (constant-integer-expression). */
400 OMP_CLAUSE_SIMDLEN,
401
402 /* OpenMP clause: for. */
403 OMP_CLAUSE_FOR,
404
405 /* OpenMP clause: parallel. */
406 OMP_CLAUSE_PARALLEL,
407
408 /* OpenMP clause: sections. */
409 OMP_CLAUSE_SECTIONS,
410
411 /* OpenMP clause: taskgroup. */
412 OMP_CLAUSE_TASKGROUP,
413
d9a6bd32
JJ
414 /* OpenMP clause: priority (integer-expression). */
415 OMP_CLAUSE_PRIORITY,
416
417 /* OpenMP clause: grainsize (integer-expression). */
418 OMP_CLAUSE_GRAINSIZE,
419
420 /* OpenMP clause: num_tasks (integer-expression). */
421 OMP_CLAUSE_NUM_TASKS,
422
423 /* OpenMP clause: nogroup. */
424 OMP_CLAUSE_NOGROUP,
425
426 /* OpenMP clause: threads. */
427 OMP_CLAUSE_THREADS,
428
429 /* OpenMP clause: simd. */
430 OMP_CLAUSE_SIMD,
431
432 /* OpenMP clause: hint (integer-expression). */
433 OMP_CLAUSE_HINT,
434
435 /* OpenMP clause: defaultmap (tofrom: scalar). */
436 OMP_CLAUSE_DEFAULTMAP,
437
5e351e96 438 /* Internally used only clause, holding SIMD uid. */
9a771876
JJ
439 OMP_CLAUSE__SIMDUID_,
440
6c7509bc
JJ
441 /* Internally used only clause, flag whether this is SIMT simd
442 loop or not. */
443 OMP_CLAUSE__SIMT_,
444
9a771876
JJ
445 /* Internally used only clause, holding _Cilk_for # of iterations
446 on OMP_PARALLEL. */
41dbbb37
TS
447 OMP_CLAUSE__CILK_FOR_COUNT_,
448
449 /* OpenACC clause: independent. */
450 OMP_CLAUSE_INDEPENDENT,
451
452 /* OpenACC clause: worker [( [num:] integer-expression)]. */
453 OMP_CLAUSE_WORKER,
454
455 /* OpenACC clause: vector [( [length:] integer-expression)]. */
456 OMP_CLAUSE_VECTOR,
457
458 /* OpenACC clause: num_gangs (integer-expression). */
459 OMP_CLAUSE_NUM_GANGS,
460
461 /* OpenACC clause: num_workers (integer-expression). */
462 OMP_CLAUSE_NUM_WORKERS,
463
464 /* OpenACC clause: vector_length (integer-expression). */
7a5e4956
CP
465 OMP_CLAUSE_VECTOR_LENGTH,
466
467 /* OpenACC clause: tile ( size-expr-list ). */
b2b40051
MJ
468 OMP_CLAUSE_TILE,
469
470 /* OpenMP internal-only clause to specify grid dimensions of a gridified
471 kernel. */
472 OMP_CLAUSE__GRIDDIM_
5e351e96
DN
473};
474
475#undef DEFTREESTRUCT
476#define DEFTREESTRUCT(ENUM, NAME) ENUM,
477enum tree_node_structure_enum {
478#include "treestruct.def"
479 LAST_TS_ENUM
480};
481#undef DEFTREESTRUCT
482
483enum omp_clause_schedule_kind {
484 OMP_CLAUSE_SCHEDULE_STATIC,
485 OMP_CLAUSE_SCHEDULE_DYNAMIC,
486 OMP_CLAUSE_SCHEDULE_GUIDED,
487 OMP_CLAUSE_SCHEDULE_AUTO,
c193f58b 488 OMP_CLAUSE_SCHEDULE_RUNTIME,
9a771876 489 OMP_CLAUSE_SCHEDULE_CILKFOR,
e01d41e5
JJ
490 OMP_CLAUSE_SCHEDULE_MASK = (1 << 3) - 1,
491 OMP_CLAUSE_SCHEDULE_MONOTONIC = (1 << 3),
492 OMP_CLAUSE_SCHEDULE_NONMONOTONIC = (1 << 4),
493 OMP_CLAUSE_SCHEDULE_LAST = 2 * OMP_CLAUSE_SCHEDULE_NONMONOTONIC - 1
5e351e96
DN
494};
495
496enum omp_clause_default_kind {
497 OMP_CLAUSE_DEFAULT_UNSPECIFIED,
498 OMP_CLAUSE_DEFAULT_SHARED,
499 OMP_CLAUSE_DEFAULT_NONE,
500 OMP_CLAUSE_DEFAULT_PRIVATE,
c193f58b 501 OMP_CLAUSE_DEFAULT_FIRSTPRIVATE,
7fd549d2 502 OMP_CLAUSE_DEFAULT_PRESENT,
c193f58b 503 OMP_CLAUSE_DEFAULT_LAST
5e351e96
DN
504};
505
506/* There is a TYPE_QUAL value for each type qualifier. They can be
507 combined by bitwise-or to form the complete set of qualifiers for a
508 type. */
509enum cv_qualifier {
510 TYPE_UNQUALIFIED = 0x0,
511 TYPE_QUAL_CONST = 0x1,
512 TYPE_QUAL_VOLATILE = 0x2,
267bac10
JM
513 TYPE_QUAL_RESTRICT = 0x4,
514 TYPE_QUAL_ATOMIC = 0x8
5e351e96
DN
515};
516
5e351e96
DN
517/* Standard named or nameless data types of the C compiler. */
518enum tree_index {
519 TI_ERROR_MARK,
520 TI_INTQI_TYPE,
521 TI_INTHI_TYPE,
522 TI_INTSI_TYPE,
523 TI_INTDI_TYPE,
524 TI_INTTI_TYPE,
525
526 TI_UINTQI_TYPE,
527 TI_UINTHI_TYPE,
528 TI_UINTSI_TYPE,
529 TI_UINTDI_TYPE,
530 TI_UINTTI_TYPE,
531
267bac10
JM
532 TI_ATOMICQI_TYPE,
533 TI_ATOMICHI_TYPE,
534 TI_ATOMICSI_TYPE,
535 TI_ATOMICDI_TYPE,
536 TI_ATOMICTI_TYPE,
537
5e351e96
DN
538 TI_UINT16_TYPE,
539 TI_UINT32_TYPE,
540 TI_UINT64_TYPE,
541
632f2871
RS
542 TI_VOID,
543
5e351e96
DN
544 TI_INTEGER_ZERO,
545 TI_INTEGER_ONE,
546 TI_INTEGER_THREE,
547 TI_INTEGER_MINUS_ONE,
548 TI_NULL_POINTER,
549
550 TI_SIZE_ZERO,
551 TI_SIZE_ONE,
552
553 TI_BITSIZE_ZERO,
554 TI_BITSIZE_ONE,
555 TI_BITSIZE_UNIT,
556
557 TI_PUBLIC,
558 TI_PROTECTED,
559 TI_PRIVATE,
560
561 TI_BOOLEAN_FALSE,
562 TI_BOOLEAN_TRUE,
563
5e351e96
DN
564 TI_FLOAT_TYPE,
565 TI_DOUBLE_TYPE,
566 TI_LONG_DOUBLE_TYPE,
567
c65699ef
JM
568 /* The _FloatN and _FloatNx types must be consecutive, and in the
569 same sequence as the corresponding complex types, which must also
570 be consecutive; _FloatN must come before _FloatNx; the order must
571 also be the same as in the floatn_nx_types array and the RID_*
572 values in c-common.h. This is so that iterations over these
573 types work as intended. */
574 TI_FLOAT16_TYPE,
575 TI_FLOATN_TYPE_FIRST = TI_FLOAT16_TYPE,
576 TI_FLOATN_NX_TYPE_FIRST = TI_FLOAT16_TYPE,
577 TI_FLOAT32_TYPE,
578 TI_FLOAT64_TYPE,
579 TI_FLOAT128_TYPE,
580 TI_FLOATN_TYPE_LAST = TI_FLOAT128_TYPE,
581#define NUM_FLOATN_TYPES (TI_FLOATN_TYPE_LAST - TI_FLOATN_TYPE_FIRST + 1)
582 TI_FLOAT32X_TYPE,
583 TI_FLOATNX_TYPE_FIRST = TI_FLOAT32X_TYPE,
584 TI_FLOAT64X_TYPE,
585 TI_FLOAT128X_TYPE,
586 TI_FLOATNX_TYPE_LAST = TI_FLOAT128X_TYPE,
587 TI_FLOATN_NX_TYPE_LAST = TI_FLOAT128X_TYPE,
588#define NUM_FLOATNX_TYPES (TI_FLOATNX_TYPE_LAST - TI_FLOATNX_TYPE_FIRST + 1)
589#define NUM_FLOATN_NX_TYPES (TI_FLOATN_NX_TYPE_LAST \
590 - TI_FLOATN_NX_TYPE_FIRST \
591 + 1)
592
3b834a2e
TS
593 /* Put the complex types after their component types, so that in (sequential)
594 tree streaming we can assert that their component types have already been
595 handled (see tree-streamer.c:record_common_node). */
596 TI_COMPLEX_INTEGER_TYPE,
597 TI_COMPLEX_FLOAT_TYPE,
598 TI_COMPLEX_DOUBLE_TYPE,
599 TI_COMPLEX_LONG_DOUBLE_TYPE,
600
601 TI_COMPLEX_FLOAT16_TYPE,
602 TI_COMPLEX_FLOATN_NX_TYPE_FIRST = TI_COMPLEX_FLOAT16_TYPE,
603 TI_COMPLEX_FLOAT32_TYPE,
604 TI_COMPLEX_FLOAT64_TYPE,
605 TI_COMPLEX_FLOAT128_TYPE,
606 TI_COMPLEX_FLOAT32X_TYPE,
607 TI_COMPLEX_FLOAT64X_TYPE,
608 TI_COMPLEX_FLOAT128X_TYPE,
609
5e351e96
DN
610 TI_FLOAT_PTR_TYPE,
611 TI_DOUBLE_PTR_TYPE,
612 TI_LONG_DOUBLE_PTR_TYPE,
613 TI_INTEGER_PTR_TYPE,
614
615 TI_VOID_TYPE,
616 TI_PTR_TYPE,
617 TI_CONST_PTR_TYPE,
618 TI_SIZE_TYPE,
619 TI_PID_TYPE,
620 TI_PTRDIFF_TYPE,
621 TI_VA_LIST_TYPE,
622 TI_VA_LIST_GPR_COUNTER_FIELD,
623 TI_VA_LIST_FPR_COUNTER_FIELD,
624 TI_BOOLEAN_TYPE,
625 TI_FILEPTR_TYPE,
48330c93 626 TI_CONST_TM_PTR_TYPE,
5e351e96
DN
627 TI_POINTER_SIZED_TYPE,
628
d5e254e1
IE
629 TI_POINTER_BOUNDS_TYPE,
630
5e351e96
DN
631 TI_DFLOAT32_TYPE,
632 TI_DFLOAT64_TYPE,
633 TI_DFLOAT128_TYPE,
634 TI_DFLOAT32_PTR_TYPE,
635 TI_DFLOAT64_PTR_TYPE,
636 TI_DFLOAT128_PTR_TYPE,
637
638 TI_VOID_LIST_NODE,
639
640 TI_MAIN_IDENTIFIER,
641
642 TI_SAT_SFRACT_TYPE,
643 TI_SAT_FRACT_TYPE,
644 TI_SAT_LFRACT_TYPE,
645 TI_SAT_LLFRACT_TYPE,
646 TI_SAT_USFRACT_TYPE,
647 TI_SAT_UFRACT_TYPE,
648 TI_SAT_ULFRACT_TYPE,
649 TI_SAT_ULLFRACT_TYPE,
650 TI_SFRACT_TYPE,
651 TI_FRACT_TYPE,
652 TI_LFRACT_TYPE,
653 TI_LLFRACT_TYPE,
654 TI_USFRACT_TYPE,
655 TI_UFRACT_TYPE,
656 TI_ULFRACT_TYPE,
657 TI_ULLFRACT_TYPE,
658 TI_SAT_SACCUM_TYPE,
659 TI_SAT_ACCUM_TYPE,
660 TI_SAT_LACCUM_TYPE,
661 TI_SAT_LLACCUM_TYPE,
662 TI_SAT_USACCUM_TYPE,
663 TI_SAT_UACCUM_TYPE,
664 TI_SAT_ULACCUM_TYPE,
665 TI_SAT_ULLACCUM_TYPE,
666 TI_SACCUM_TYPE,
667 TI_ACCUM_TYPE,
668 TI_LACCUM_TYPE,
669 TI_LLACCUM_TYPE,
670 TI_USACCUM_TYPE,
671 TI_UACCUM_TYPE,
672 TI_ULACCUM_TYPE,
673 TI_ULLACCUM_TYPE,
674 TI_QQ_TYPE,
675 TI_HQ_TYPE,
676 TI_SQ_TYPE,
677 TI_DQ_TYPE,
678 TI_TQ_TYPE,
679 TI_UQQ_TYPE,
680 TI_UHQ_TYPE,
681 TI_USQ_TYPE,
682 TI_UDQ_TYPE,
683 TI_UTQ_TYPE,
684 TI_SAT_QQ_TYPE,
685 TI_SAT_HQ_TYPE,
686 TI_SAT_SQ_TYPE,
687 TI_SAT_DQ_TYPE,
688 TI_SAT_TQ_TYPE,
689 TI_SAT_UQQ_TYPE,
690 TI_SAT_UHQ_TYPE,
691 TI_SAT_USQ_TYPE,
692 TI_SAT_UDQ_TYPE,
693 TI_SAT_UTQ_TYPE,
694 TI_HA_TYPE,
695 TI_SA_TYPE,
696 TI_DA_TYPE,
697 TI_TA_TYPE,
698 TI_UHA_TYPE,
699 TI_USA_TYPE,
700 TI_UDA_TYPE,
701 TI_UTA_TYPE,
702 TI_SAT_HA_TYPE,
703 TI_SAT_SA_TYPE,
704 TI_SAT_DA_TYPE,
705 TI_SAT_TA_TYPE,
706 TI_SAT_UHA_TYPE,
707 TI_SAT_USA_TYPE,
708 TI_SAT_UDA_TYPE,
709 TI_SAT_UTA_TYPE,
710
711 TI_OPTIMIZATION_DEFAULT,
712 TI_OPTIMIZATION_CURRENT,
713 TI_TARGET_OPTION_DEFAULT,
714 TI_TARGET_OPTION_CURRENT,
715 TI_CURRENT_TARGET_PRAGMA,
716 TI_CURRENT_OPTIMIZE_PRAGMA,
717
718 TI_MAX
719};
720
721/* An enumeration of the standard C integer types. These must be
722 ordered so that shorter types appear before longer ones, and so
723 that signed types appear before unsigned ones, for the correct
724 functioning of interpret_integer() in c-lex.c. */
725enum integer_type_kind {
726 itk_char,
727 itk_signed_char,
728 itk_unsigned_char,
729 itk_short,
730 itk_unsigned_short,
731 itk_int,
732 itk_unsigned_int,
733 itk_long,
734 itk_unsigned_long,
735 itk_long_long,
736 itk_unsigned_long_long,
78a7c317
DD
737
738 itk_intN_0,
739 itk_unsigned_intN_0,
740 itk_intN_1,
741 itk_unsigned_intN_1,
742 itk_intN_2,
743 itk_unsigned_intN_2,
744 itk_intN_3,
745 itk_unsigned_intN_3,
746
5e351e96
DN
747 itk_none
748};
749
750/* A pointer-to-function member type looks like:
751
752 struct {
753 __P __pfn;
754 ptrdiff_t __delta;
755 };
756
757 If __pfn is NULL, it is a NULL pointer-to-member-function.
758
759 (Because the vtable is always the first thing in the object, we
760 don't need its offset.) If the function is virtual, then PFN is
761 one plus twice the index into the vtable; otherwise, it is just a
762 pointer to the function.
763
764 Unfortunately, using the lowest bit of PFN doesn't work in
765 architectures that don't impose alignment requirements on function
766 addresses, or that use the lowest bit to tell one ISA from another,
767 for example. For such architectures, we use the lowest bit of
768 DELTA instead of the lowest bit of the PFN, and DELTA will be
769 multiplied by 2. */
770enum ptrmemfunc_vbit_where_t {
771 ptrmemfunc_vbit_in_pfn,
772 ptrmemfunc_vbit_in_delta
773};
774
775/* Flags that may be passed in the third argument of decl_attributes, and
776 to handler functions for attributes. */
777enum attribute_flags {
778 /* The type passed in is the type of a DECL, and any attributes that
779 should be passed in again to be applied to the DECL rather than the
780 type should be returned. */
781 ATTR_FLAG_DECL_NEXT = 1,
782 /* The type passed in is a function return type, and any attributes that
783 should be passed in again to be applied to the function type rather
784 than the return type should be returned. */
785 ATTR_FLAG_FUNCTION_NEXT = 2,
786 /* The type passed in is an array element type, and any attributes that
787 should be passed in again to be applied to the array type rather
788 than the element type should be returned. */
789 ATTR_FLAG_ARRAY_NEXT = 4,
790 /* The type passed in is a structure, union or enumeration type being
791 created, and should be modified in place. */
792 ATTR_FLAG_TYPE_IN_PLACE = 8,
793 /* The attributes are being applied by default to a library function whose
794 name indicates known behavior, and should be silently ignored if they
795 are not in fact compatible with the function type. */
796 ATTR_FLAG_BUILT_IN = 16,
797 /* A given attribute has been parsed as a C++-11 attribute. */
798 ATTR_FLAG_CXX11 = 32
799};
800
801/* Types used to represent sizes. */
802enum size_type_kind {
803 stk_sizetype, /* Normal representation of sizes in bytes. */
804 stk_ssizetype, /* Signed representation of sizes in bytes. */
805 stk_bitsizetype, /* Normal representation of sizes in bits. */
806 stk_sbitsizetype, /* Signed representation of sizes in bits. */
807 stk_type_kind_last
808};
809
810enum operand_equal_flag {
811 OEP_ONLY_CONST = 1,
812 OEP_PURE_SAME = 2,
2a8e3358 813 OEP_MATCH_SIDE_EFFECTS = 4,
b3b2bae4
JJ
814 OEP_ADDRESS_OF = 8,
815 /* Internal within operand_equal_p: */
2d1ac15a
JJ
816 OEP_NO_HASH_CHECK = 16,
817 /* Internal within inchash::add_expr: */
2ebd93e1
MP
818 OEP_HASH_CHECK = 32,
819 /* Makes operand_equal_p handle more expressions: */
820 OEP_LEXICOGRAPHIC = 64
5e351e96
DN
821};
822
823/* Enum and arrays used for tree allocation stats.
824 Keep in sync with tree.c:tree_node_kind_names. */
825enum tree_node_kind {
826 d_kind,
827 t_kind,
828 b_kind,
829 s_kind,
830 r_kind,
831 e_kind,
832 c_kind,
833 id_kind,
834 vec_kind,
835 binfo_kind,
836 ssa_name_kind,
837 constr_kind,
838 x_kind,
839 lang_decl,
840 lang_type,
841 omp_clause_kind,
842 all_kinds
843};
844
8170608b 845enum annot_expr_kind {
718c4601
EB
846 annot_expr_ivdep_kind,
847 annot_expr_no_vector_kind,
848 annot_expr_vector_kind,
849 annot_expr_kind_last
8170608b
TB
850};
851
5e351e96
DN
852/*---------------------------------------------------------------------------
853 Type definitions
854---------------------------------------------------------------------------*/
855/* When processing aliases at the symbol table level, we need the
856 declaration of target. For this reason we need to queue aliases and
857 process them after all declarations has been produced. */
84562394 858struct GTY(()) alias_pair {
5e351e96
DN
859 tree decl;
860 tree target;
84562394 861};
5e351e96
DN
862
863/* An initialization priority. */
864typedef unsigned short priority_type;
865
866/* The type of a callback function for walking over tree structure. */
867typedef tree (*walk_tree_fn) (tree *, int *, void *);
868
869/* The type of a callback function that represents a custom walk_tree. */
870typedef tree (*walk_tree_lh) (tree *, int *, tree (*) (tree *, int *, void *),
6e2830c3 871 void *, hash_set<tree> *);
5e351e96
DN
872
873
874/*---------------------------------------------------------------------------
875 Main data structures
876---------------------------------------------------------------------------*/
877/* A tree node can represent a data type, a variable, an expression
878 or a statement. Each node has a TREE_CODE which says what kind of
879 thing it represents. Some common codes are:
880 INTEGER_TYPE -- represents a type of integers.
881 ARRAY_TYPE -- represents a type of pointer.
882 VAR_DECL -- represents a declared variable.
883 INTEGER_CST -- represents a constant integer value.
884 PLUS_EXPR -- represents a sum (an expression).
885
886 As for the contents of a tree node: there are some fields
887 that all nodes share. Each TREE_CODE has various special-purpose
888 fields as well. The fields of a node are never accessed directly,
889 always through accessor macros. */
890
891/* Every kind of tree node starts with this structure,
892 so all nodes have these fields.
893
894 See the accessor macros, defined below, for documentation of the
895 fields, and the table below which connects the fields and the
896 accessor macros. */
897
898struct GTY(()) tree_base {
899 ENUM_BITFIELD(tree_code) code : 16;
900
901 unsigned side_effects_flag : 1;
902 unsigned constant_flag : 1;
903 unsigned addressable_flag : 1;
904 unsigned volatile_flag : 1;
905 unsigned readonly_flag : 1;
906 unsigned asm_written_flag: 1;
907 unsigned nowarning_flag : 1;
908 unsigned visited : 1;
909
910 unsigned used_flag : 1;
911 unsigned nothrow_flag : 1;
912 unsigned static_flag : 1;
913 unsigned public_flag : 1;
914 unsigned private_flag : 1;
915 unsigned protected_flag : 1;
916 unsigned deprecated_flag : 1;
917 unsigned default_def_flag : 1;
918
919 union {
920 /* The bits in the following structure should only be used with
921 accessor macros that constrain inputs with tree checking. */
922 struct {
923 unsigned lang_flag_0 : 1;
924 unsigned lang_flag_1 : 1;
925 unsigned lang_flag_2 : 1;
926 unsigned lang_flag_3 : 1;
927 unsigned lang_flag_4 : 1;
928 unsigned lang_flag_5 : 1;
929 unsigned lang_flag_6 : 1;
930 unsigned saturating_flag : 1;
931
932 unsigned unsigned_flag : 1;
933 unsigned packed_flag : 1;
934 unsigned user_align : 1;
935 unsigned nameless_flag : 1;
267bac10
JM
936 unsigned atomic_flag : 1;
937 unsigned spare0 : 3;
5e351e96
DN
938
939 unsigned spare1 : 8;
940
941 /* This field is only used with TREE_TYPE nodes; the only reason it is
942 present in tree_base instead of tree_type is to save space. The size
943 of the field must be large enough to hold addr_space_t values. */
944 unsigned address_space : 8;
945 } bits;
807e902e 946
5e351e96
DN
947 /* The following fields are present in tree_base to save space. The
948 nodes using them do not require any of the flags above and so can
949 make better use of the 4-byte sized word. */
807e902e
KZ
950
951 /* The number of HOST_WIDE_INTs in an INTEGER_CST. */
952 struct {
953 /* The number of HOST_WIDE_INTs if the INTEGER_CST is accessed in
954 its native precision. */
955 unsigned char unextended;
956
957 /* The number of HOST_WIDE_INTs if the INTEGER_CST is extended to
958 wider precisions based on its TYPE_SIGN. */
959 unsigned char extended;
960
961 /* The number of HOST_WIDE_INTs if the INTEGER_CST is accessed in
962 offset_int precision, with smaller integers being extended
963 according to their TYPE_SIGN. This is equal to one of the two
964 fields above but is cached for speed. */
965 unsigned char offset;
966 } int_length;
967
5e351e96
DN
968 /* VEC length. This field is only used with TREE_VEC. */
969 int length;
807e902e 970
5e351e96
DN
971 /* SSA version number. This field is only used with SSA_NAME. */
972 unsigned int version;
0e37a2f3
MP
973
974 /* Internal function code. */
975 enum internal_fn ifn;
f3dccf50
RB
976
977 /* The following two fields are used for MEM_REF and TARGET_MEM_REF
978 expression trees and specify known data non-dependences. For
979 two memory references in a function they are known to not
980 alias if dependence_info.clique are equal and dependence_info.base
981 are distinct. */
982 struct {
983 unsigned short clique;
984 unsigned short base;
985 } dependence_info;
5e351e96
DN
986 } GTY((skip(""))) u;
987};
988
989/* The following table lists the uses of each of the above flags and
990 for which types of nodes they are defined.
991
992 addressable_flag:
993
994 TREE_ADDRESSABLE in
995 VAR_DECL, PARM_DECL, RESULT_DECL, FUNCTION_DECL, LABEL_DECL
996 SSA_NAME
997 all types
998 CONSTRUCTOR, IDENTIFIER_NODE
999 STMT_EXPR
1000
1001 CALL_EXPR_TAILCALL in
1002 CALL_EXPR
1003
1004 CASE_LOW_SEEN in
1005 CASE_LABEL_EXPR
1006
1007 PREDICT_EXPR_OUTCOME in
1008 PREDICT_EXPR
1009
1010 static_flag:
1011
1012 TREE_STATIC in
1013 VAR_DECL, FUNCTION_DECL
1014 CONSTRUCTOR
1015
1016 TREE_NO_TRAMPOLINE in
1017 ADDR_EXPR
1018
1019 BINFO_VIRTUAL_P in
1020 TREE_BINFO
1021
1022 TREE_SYMBOL_REFERENCED in
1023 IDENTIFIER_NODE
1024
1025 CLEANUP_EH_ONLY in
1026 TARGET_EXPR, WITH_CLEANUP_EXPR
1027
1028 TRY_CATCH_IS_CLEANUP in
1029 TRY_CATCH_EXPR
1030
1031 ASM_INPUT_P in
1032 ASM_EXPR
1033
1034 TYPE_REF_CAN_ALIAS_ALL in
1035 POINTER_TYPE, REFERENCE_TYPE
1036
1037 CASE_HIGH_SEEN in
1038 CASE_LABEL_EXPR
1039
1040 ENUM_IS_SCOPED in
1041 ENUMERAL_TYPE
1042
1043 TRANSACTION_EXPR_OUTER in
1044 TRANSACTION_EXPR
1045
f5c8b24c
RS
1046 SSA_NAME_ANTI_RANGE_P in
1047 SSA_NAME
1048
9a385c2d
DM
1049 MUST_TAIL_CALL in
1050 CALL_EXPR
1051
5e351e96
DN
1052 public_flag:
1053
1054 TREE_OVERFLOW in
1055 INTEGER_CST, REAL_CST, COMPLEX_CST, VECTOR_CST
1056
1057 TREE_PUBLIC in
1058 VAR_DECL, FUNCTION_DECL
1059 IDENTIFIER_NODE
1060
1448093c
TG
1061 CONSTRUCTOR_NO_CLEARING in
1062 CONSTRUCTOR
1063
5e351e96
DN
1064 ASM_VOLATILE_P in
1065 ASM_EXPR
1066
1067 CALL_EXPR_VA_ARG_PACK in
1068 CALL_EXPR
1069
1070 TYPE_CACHED_VALUES_P in
1071 all types
1072
1073 SAVE_EXPR_RESOLVED_P in
1074 SAVE_EXPR
1075
1076 OMP_CLAUSE_LASTPRIVATE_FIRSTPRIVATE in
1077 OMP_CLAUSE_LASTPRIVATE
1078
1079 OMP_CLAUSE_PRIVATE_DEBUG in
1080 OMP_CLAUSE_PRIVATE
1081
46f851f3
DN
1082 OMP_CLAUSE_LINEAR_NO_COPYIN in
1083 OMP_CLAUSE_LINEAR
1084
acf0174b
JJ
1085 OMP_CLAUSE_MAP_ZERO_BIAS_ARRAY_SECTION in
1086 OMP_CLAUSE_MAP
1087
1088 OMP_CLAUSE_REDUCTION_OMP_ORIG_REF in
1089 OMP_CLAUSE_REDUCTION
1090
5e351e96
DN
1091 TRANSACTION_EXPR_RELAXED in
1092 TRANSACTION_EXPR
1093
81fea426
MP
1094 FALLTHROUGH_LABEL_P in
1095 LABEL_DECL
1096
e7960be7
RS
1097 SSA_NAME_IS_VIRTUAL_OPERAND in
1098 SSA_NAME
1099
5e351e96
DN
1100 private_flag:
1101
1102 TREE_PRIVATE in
1103 all decls
1104
1105 CALL_EXPR_RETURN_SLOT_OPT in
1106 CALL_EXPR
1107
1108 OMP_SECTION_LAST in
1109 OMP_SECTION
1110
1111 OMP_PARALLEL_COMBINED in
1112 OMP_PARALLEL
1113
acf0174b
JJ
1114 OMP_ATOMIC_SEQ_CST in
1115 OMP_ATOMIC*
1116
5e351e96
DN
1117 OMP_CLAUSE_PRIVATE_OUTER_REF in
1118 OMP_CLAUSE_PRIVATE
1119
46f851f3
DN
1120 OMP_CLAUSE_LINEAR_NO_COPYOUT in
1121 OMP_CLAUSE_LINEAR
1122
5e351e96
DN
1123 TYPE_REF_IS_RVALUE in
1124 REFERENCE_TYPE
1125
1126 ENUM_IS_OPAQUE in
1127 ENUMERAL_TYPE
1128
1129 protected_flag:
1130
1131 TREE_PROTECTED in
1132 BLOCK
1133 all decls
1134
1135 CALL_FROM_THUNK_P and
1136 CALL_ALLOCA_FOR_VAR_P in
1137 CALL_EXPR
1138
0136f8f0
AH
1139 OMP_CLAUSE_LINEAR_VARIABLE_STRIDE in
1140 OMP_CLAUSE_LINEAR
1141
5e351e96
DN
1142 side_effects_flag:
1143
1144 TREE_SIDE_EFFECTS in
1145 all expressions
1146 all decls
1147 all constants
1148
1149 FORCED_LABEL in
1150 LABEL_DECL
1151
1152 volatile_flag:
1153
1154 TREE_THIS_VOLATILE in
1155 all expressions
1156 all decls
1157
1158 TYPE_VOLATILE in
1159 all types
1160
1161 readonly_flag:
1162
1163 TREE_READONLY in
1164 all expressions
1165 all decls
1166
1167 TYPE_READONLY in
1168 all types
1169
1170 constant_flag:
1171
1172 TREE_CONSTANT in
1173 all expressions
1174 all decls
1175 all constants
1176
1177 TYPE_SIZES_GIMPLIFIED in
1178 all types
1179
1180 unsigned_flag:
1181
1182 TYPE_UNSIGNED in
1183 all types
1184
1185 DECL_UNSIGNED in
1186 all decls
1187
1188 asm_written_flag:
1189
1190 TREE_ASM_WRITTEN in
1191 VAR_DECL, FUNCTION_DECL, TYPE_DECL
1192 RECORD_TYPE, UNION_TYPE, QUAL_UNION_TYPE
1193 BLOCK, STRING_CST
1194
1195 SSA_NAME_OCCURS_IN_ABNORMAL_PHI in
1196 SSA_NAME
1197
815d9cc6
XR
1198 EXPR_CILK_SPAWN in
1199 CALL_EXPR
1200 AGGR_INIT_EXPR
1201
5e351e96
DN
1202 used_flag:
1203
1204 TREE_USED in
1205 all expressions
1206 all decls
1207 IDENTIFIER_NODE
1208
1209 nothrow_flag:
1210
1211 TREE_NOTHROW in
1212 CALL_EXPR
1213 FUNCTION_DECL
1214
5e351e96
DN
1215 TREE_THIS_NOTRAP in
1216 INDIRECT_REF, MEM_REF, TARGET_MEM_REF, ARRAY_REF, ARRAY_RANGE_REF
1217
d7e90b66 1218 SSA_NAME_IN_FREE_LIST in
5e351e96
DN
1219 SSA_NAME
1220
9c85aeb6 1221 DECL_NONALIASED in
400a4f6c
RB
1222 VAR_DECL
1223
5e351e96
DN
1224 deprecated_flag:
1225
1226 TREE_DEPRECATED in
1227 all decls
1228 all types
1229
1230 IDENTIFIER_TRANSPARENT_ALIAS in
1231 IDENTIFIER_NODE
1232
1233 visited:
1234
1235 TREE_VISITED in
1236 all trees (used liberally by many passes)
1237
1238 saturating_flag:
1239
ee45a32d
EB
1240 TYPE_REVERSE_STORAGE_ORDER in
1241 RECORD_TYPE, UNION_TYPE, QUAL_UNION_TYPE, ARRAY_TYPE
1242
5e351e96 1243 TYPE_SATURATING in
ee45a32d
EB
1244 other types
1245
5e351e96
DN
1246 VAR_DECL_IS_VIRTUAL_OPERAND in
1247 VAR_DECL
1248
1249 nowarning_flag:
1250
1251 TREE_NO_WARNING in
1252 all expressions
1253 all decls
1254
1255 TYPE_ARTIFICIAL in
1256 all types
1257
1258 default_def_flag:
1259
7b95c729
EB
1260 TYPE_FINAL_P in
1261 RECORD_TYPE, UNION_TYPE and QUAL_UNION_TYPE
1262
5e351e96
DN
1263 TYPE_VECTOR_OPAQUE in
1264 VECTOR_TYPE
1265
1266 SSA_NAME_IS_DEFAULT_DEF in
1267 SSA_NAME
1268
1269 DECL_NONLOCAL_FRAME in
1270 VAR_DECL
46f851f3 1271
7b95c729
EB
1272 REF_REVERSE_STORAGE_ORDER in
1273 BIT_FIELD_REF, MEM_REF
4c640e26
EB
1274
1275 FUNC_ADDR_BY_DESCRIPTOR in
1276 ADDR_EXPR
1277
1278 CALL_EXPR_BY_DESCRIPTOR in
1279 CALL_EXPR
5e351e96
DN
1280*/
1281
1282struct GTY(()) tree_typed {
1283 struct tree_base base;
1284 tree type;
1285};
1286
1287struct GTY(()) tree_common {
1288 struct tree_typed typed;
1289 tree chain;
1290};
1291
1292struct GTY(()) tree_int_cst {
1293 struct tree_typed typed;
807e902e 1294 HOST_WIDE_INT val[1];
5e351e96
DN
1295};
1296
1297
1298struct GTY(()) tree_real_cst {
1299 struct tree_typed typed;
1300 struct real_value * real_cst_ptr;
1301};
1302
1303struct GTY(()) tree_fixed_cst {
1304 struct tree_typed typed;
1305 struct fixed_value * fixed_cst_ptr;
1306};
1307
1308struct GTY(()) tree_string {
1309 struct tree_typed typed;
1310 int length;
1311 char str[1];
1312};
1313
1314struct GTY(()) tree_complex {
1315 struct tree_typed typed;
1316 tree real;
1317 tree imag;
1318};
1319
1320struct GTY(()) tree_vector {
1321 struct tree_typed typed;
1322 tree GTY ((length ("TYPE_VECTOR_SUBPARTS (TREE_TYPE ((tree)&%h))"))) elts[1];
1323};
1324
1325struct GTY(()) tree_identifier {
1326 struct tree_common common;
1327 struct ht_identifier id;
1328};
1329
1330struct GTY(()) tree_list {
1331 struct tree_common common;
1332 tree purpose;
1333 tree value;
1334};
1335
1336struct GTY(()) tree_vec {
1337 struct tree_common common;
1338 tree GTY ((length ("TREE_VEC_LENGTH ((tree)&%h)"))) a[1];
1339};
1340
1341/* A single element of a CONSTRUCTOR. VALUE holds the actual value of the
1342 element. INDEX can optionally design the position of VALUE: in arrays,
1343 it is the index where VALUE has to be placed; in structures, it is the
1344 FIELD_DECL of the member. */
84562394 1345struct GTY(()) constructor_elt {
5e351e96
DN
1346 tree index;
1347 tree value;
84562394 1348};
5e351e96
DN
1349
1350struct GTY(()) tree_constructor {
1351 struct tree_typed typed;
1352 vec<constructor_elt, va_gc> *elts;
1353};
1354
acf0174b
JJ
1355enum omp_clause_depend_kind
1356{
1357 OMP_CLAUSE_DEPEND_IN,
1358 OMP_CLAUSE_DEPEND_OUT,
c193f58b 1359 OMP_CLAUSE_DEPEND_INOUT,
d9a6bd32
JJ
1360 OMP_CLAUSE_DEPEND_SOURCE,
1361 OMP_CLAUSE_DEPEND_SINK,
c193f58b 1362 OMP_CLAUSE_DEPEND_LAST
acf0174b
JJ
1363};
1364
acf0174b
JJ
1365enum omp_clause_proc_bind_kind
1366{
1367 /* Numbers should match omp_proc_bind_t enum in omp.h. */
1368 OMP_CLAUSE_PROC_BIND_FALSE = 0,
1369 OMP_CLAUSE_PROC_BIND_TRUE = 1,
1370 OMP_CLAUSE_PROC_BIND_MASTER = 2,
1371 OMP_CLAUSE_PROC_BIND_CLOSE = 3,
c193f58b
JJ
1372 OMP_CLAUSE_PROC_BIND_SPREAD = 4,
1373 OMP_CLAUSE_PROC_BIND_LAST
acf0174b
JJ
1374};
1375
d9a6bd32
JJ
1376enum omp_clause_linear_kind
1377{
1378 OMP_CLAUSE_LINEAR_DEFAULT,
1379 OMP_CLAUSE_LINEAR_REF,
1380 OMP_CLAUSE_LINEAR_VAL,
1381 OMP_CLAUSE_LINEAR_UVAL
1382};
1383
5e351e96
DN
1384struct GTY(()) tree_exp {
1385 struct tree_typed typed;
1386 location_t locus;
1387 tree GTY ((special ("tree_exp"),
1388 desc ("TREE_CODE ((tree) &%0)")))
1389 operands[1];
1390};
1391
1392/* Immediate use linking structure. This structure is used for maintaining
1393 a doubly linked list of uses of an SSA_NAME. */
84562394
OE
1394struct GTY(()) ssa_use_operand_t {
1395 struct ssa_use_operand_t* GTY((skip(""))) prev;
1396 struct ssa_use_operand_t* GTY((skip(""))) next;
5e351e96
DN
1397 /* Immediate uses for a given SSA name are maintained as a cyclic
1398 list. To recognize the root of this list, the location field
1399 needs to point to the original SSA name. Since statements and
1400 SSA names are of different data types, we need this union. See
84562394 1401 the explanation in struct imm_use_iterator. */
355fe088 1402 union { gimple *stmt; tree ssa_name; } GTY((skip(""))) loc;
5e351e96 1403 tree *GTY((skip(""))) use;
84562394 1404};
5e351e96
DN
1405
1406struct GTY(()) tree_ssa_name {
1407 struct tree_typed typed;
1408
1409 /* _DECL wrapped by this SSA name. */
1410 tree var;
1411
1412 /* Statement that defines this SSA name. */
355fe088 1413 gimple *def_stmt;
5e351e96 1414
a895a2b8
KV
1415 /* Value range information. */
1416 union ssa_name_info_type {
1417 /* Pointer attributes used for alias analysis. */
1418 struct GTY ((tag ("0"))) ptr_info_def *ptr_info;
1419 /* Value range attributes used for zero/sign extension elimination. */
1420 struct GTY ((tag ("1"))) range_info_def *range_info;
1421 } GTY ((desc ("%1.typed.type ?" \
0498471b 1422 "!POINTER_TYPE_P (TREE_TYPE ((tree)&%1)) : 2"))) info;
5e351e96
DN
1423
1424 /* Immediate uses list for this SSA_NAME. */
84562394 1425 struct ssa_use_operand_t imm_uses;
5e351e96
DN
1426};
1427
1428struct GTY(()) phi_arg_d {
1429 /* imm_use MUST be the first element in struct because we do some
1430 pointer arithmetic with it. See phi_arg_index_from_use. */
84562394 1431 struct ssa_use_operand_t imm_use;
5e351e96
DN
1432 tree def;
1433 location_t locus;
1434};
1435
1436struct GTY(()) tree_omp_clause {
1437 struct tree_common common;
1438 location_t locus;
1439 enum omp_clause_code code;
1440 union omp_clause_subcode {
acf0174b
JJ
1441 enum omp_clause_default_kind default_kind;
1442 enum omp_clause_schedule_kind schedule_kind;
1443 enum omp_clause_depend_kind depend_kind;
41dbbb37 1444 /* See include/gomp-constants.h for enum gomp_map_kind's values. */
d9a6bd32 1445 unsigned int map_kind;
acf0174b
JJ
1446 enum omp_clause_proc_bind_kind proc_bind_kind;
1447 enum tree_code reduction_code;
d9a6bd32
JJ
1448 enum omp_clause_linear_kind linear_kind;
1449 enum tree_code if_modifier;
b2b40051
MJ
1450 /* The dimension a OMP_CLAUSE__GRIDDIM_ clause of a gridified target
1451 construct describes. */
1452 unsigned int dimension;
5e351e96
DN
1453 } GTY ((skip)) subcode;
1454
1455 /* The gimplification of OMP_CLAUSE_REDUCTION_{INIT,MERGE} for omp-low's
1456 usage. */
1457 gimple_seq gimple_reduction_init;
1458 gimple_seq gimple_reduction_merge;
1459
1460 tree GTY ((length ("omp_clause_num_ops[OMP_CLAUSE_CODE ((tree)&%h)]")))
1461 ops[1];
1462};
1463
1464struct GTY(()) tree_block {
1465 struct tree_base base;
1466 tree chain;
1467
1468 unsigned abstract_flag : 1;
1469 unsigned block_num : 31;
1470
1471 location_t locus;
a5852bea 1472 location_t end_locus;
5e351e96
DN
1473
1474 tree vars;
1475 vec<tree, va_gc> *nonlocalized_vars;
1476
1477 tree subblocks;
1478 tree supercontext;
1479 tree abstract_origin;
1480 tree fragment_origin;
1481 tree fragment_chain;
70660539
AH
1482
1483 /* Pointer to the DWARF lexical block. */
1484 struct die_struct *die;
5e351e96
DN
1485};
1486
1487struct GTY(()) tree_type_common {
1488 struct tree_common common;
1489 tree size;
1490 tree size_unit;
1491 tree attributes;
1492 unsigned int uid;
1493
1494 unsigned int precision : 10;
1495 unsigned no_force_blk_flag : 1;
1496 unsigned needs_constructing_flag : 1;
1497 unsigned transparent_aggr_flag : 1;
1498 unsigned restrict_flag : 1;
1499 unsigned contains_placeholder_bits : 2;
1500
1501 ENUM_BITFIELD(machine_mode) mode : 8;
1502
1503 unsigned string_flag : 1;
1504 unsigned lang_flag_0 : 1;
1505 unsigned lang_flag_1 : 1;
1506 unsigned lang_flag_2 : 1;
1507 unsigned lang_flag_3 : 1;
1508 unsigned lang_flag_4 : 1;
1509 unsigned lang_flag_5 : 1;
1510 unsigned lang_flag_6 : 1;
25b75a48 1511 unsigned lang_flag_7 : 1;
5e351e96 1512
fe37c7af
MM
1513 /* TYPE_ALIGN in log2; this has to be large enough to hold values
1514 of the maximum of BIGGEST_ALIGNMENT and MAX_OFILE_ALIGNMENT,
1515 the latter being usually the larger. For ELF it is 8<<28,
1516 so we need to store the value 32 (not 31, as we need the zero
1517 as well), hence six bits. */
1518 unsigned align : 6;
350792ff
RB
1519 unsigned typeless_storage : 1;
1520 unsigned spare : 24;
1521
5e351e96
DN
1522 alias_set_type alias_set;
1523 tree pointer_to;
1524 tree reference_to;
1525 union tree_type_symtab {
1526 int GTY ((tag ("TYPE_SYMTAB_IS_ADDRESS"))) address;
1527 const char * GTY ((tag ("TYPE_SYMTAB_IS_POINTER"))) pointer;
1528 struct die_struct * GTY ((tag ("TYPE_SYMTAB_IS_DIE"))) die;
1529 } GTY ((desc ("debug_hooks->tree_type_symtab_field"))) symtab;
ce2f49b3 1530 tree canonical;
5e351e96
DN
1531 tree next_variant;
1532 tree main_variant;
1533 tree context;
ce2f49b3 1534 tree name;
5e351e96
DN
1535};
1536
1537struct GTY(()) tree_type_with_lang_specific {
1538 struct tree_type_common common;
1539 /* Points to a structure whose details depend on the language in use. */
1540 struct lang_type *lang_specific;
1541};
1542
1543struct GTY(()) tree_type_non_common {
1544 struct tree_type_with_lang_specific with_lang_specific;
1545 tree values;
1546 tree minval;
1547 tree maxval;
1548 tree binfo;
1549};
1550
1551struct GTY (()) tree_binfo {
1552 struct tree_common common;
1553
1554 tree offset;
1555 tree vtable;
1556 tree virtuals;
1557 tree vptr_field;
1558 vec<tree, va_gc> *base_accesses;
1559 tree inheritance;
1560
1561 tree vtt_subvtt;
1562 tree vtt_vptr;
1563
1564 vec<tree, va_gc> base_binfos;
1565};
1566
1567struct GTY(()) tree_decl_minimal {
1568 struct tree_common common;
1569 location_t locus;
1570 unsigned int uid;
1571 tree name;
1572 tree context;
1573};
1574
1575struct GTY(()) tree_decl_common {
1576 struct tree_decl_minimal common;
1577 tree size;
1578
1579 ENUM_BITFIELD(machine_mode) mode : 8;
1580
1581 unsigned nonlocal_flag : 1;
1582 unsigned virtual_flag : 1;
1583 unsigned ignored_flag : 1;
1584 unsigned abstract_flag : 1;
1585 unsigned artificial_flag : 1;
1586 unsigned preserve_flag: 1;
1587 unsigned debug_expr_is_from : 1;
1588
1589 unsigned lang_flag_0 : 1;
1590 unsigned lang_flag_1 : 1;
1591 unsigned lang_flag_2 : 1;
1592 unsigned lang_flag_3 : 1;
1593 unsigned lang_flag_4 : 1;
1594 unsigned lang_flag_5 : 1;
1595 unsigned lang_flag_6 : 1;
1596 unsigned lang_flag_7 : 1;
1597 unsigned lang_flag_8 : 1;
1598
46f851f3 1599 /* In VAR_DECL and PARM_DECL, this is DECL_REGISTER. */
5e351e96
DN
1600 unsigned decl_flag_0 : 1;
1601 /* In FIELD_DECL, this is DECL_BIT_FIELD
1602 In VAR_DECL and FUNCTION_DECL, this is DECL_EXTERNAL.
1603 In TYPE_DECL, this is TYPE_DECL_SUPPRESS_DEBUG. */
1604 unsigned decl_flag_1 : 1;
1605 /* In FIELD_DECL, this is DECL_NONADDRESSABLE_P
1606 In VAR_DECL, PARM_DECL and RESULT_DECL, this is
1607 DECL_HAS_VALUE_EXPR_P. */
1608 unsigned decl_flag_2 : 1;
1609 /* 1 bit unused. */
1610 unsigned decl_flag_3 : 1;
1611 /* Logically, these two would go in a theoretical base shared by var and
1612 parm decl. */
1613 unsigned gimple_reg_flag : 1;
1614 /* In VAR_DECL, PARM_DECL and RESULT_DECL, this is DECL_BY_REFERENCE. */
1615 unsigned decl_by_reference_flag : 1;
1616 /* In a VAR_DECL and PARM_DECL, this is DECL_READ_P. */
1617 unsigned decl_read_flag : 1;
1618 /* In a VAR_DECL or RESULT_DECL, this is DECL_NONSHAREABLE. */
1619 unsigned decl_nonshareable_flag : 1;
1620
1621 /* DECL_OFFSET_ALIGN, used only for FIELD_DECLs. */
fe37c7af 1622 unsigned int off_align : 6;
5e351e96
DN
1623
1624 /* DECL_ALIGN. It should have the same size as TYPE_ALIGN. */
fe37c7af
MM
1625 unsigned int align : 6;
1626
1627 /* 20 bits unused. */
5e351e96
DN
1628
1629 /* UID for points-to sets, stable over copying from inlining. */
1630 unsigned int pt_uid;
1631
1632 tree size_unit;
1633 tree initial;
1634 tree attributes;
1635 tree abstract_origin;
1636
1637 /* Points to a structure whose details depend on the language in use. */
1638 struct lang_decl *lang_specific;
1639};
1640
1641struct GTY(()) tree_decl_with_rtl {
1642 struct tree_decl_common common;
1643 rtx rtl;
1644};
1645
1646struct GTY(()) tree_field_decl {
1647 struct tree_decl_common common;
1648
1649 tree offset;
1650 tree bit_field_type;
1651 tree qualifier;
1652 tree bit_offset;
1653 tree fcontext;
1654};
1655
1656struct GTY(()) tree_label_decl {
1657 struct tree_decl_with_rtl common;
1658 int label_decl_uid;
1659 int eh_landing_pad_nr;
1660};
1661
1662struct GTY(()) tree_result_decl {
1663 struct tree_decl_with_rtl common;
1664};
1665
1666struct GTY(()) tree_const_decl {
1667 struct tree_decl_common common;
1668};
1669
1670struct GTY(()) tree_parm_decl {
1671 struct tree_decl_with_rtl common;
1672 rtx incoming_rtl;
1673};
1674
1675struct GTY(()) tree_decl_with_vis {
1676 struct tree_decl_with_rtl common;
1677 tree assembler_name;
aede2c10 1678 struct symtab_node *symtab_node;
5e351e96
DN
1679
1680 /* Belong to VAR_DECL exclusively. */
1681 unsigned defer_output : 1;
1682 unsigned hard_register : 1;
1683 unsigned common_flag : 1;
1684 unsigned in_text_section : 1;
1685 unsigned in_constant_pool : 1;
1686 unsigned dllimport_flag : 1;
1687 /* Don't belong to VAR_DECL exclusively. */
1688 unsigned weak_flag : 1;
5e351e96
DN
1689
1690 unsigned seen_in_bind_expr : 1;
1691 unsigned comdat_flag : 1;
56363ffd 1692 /* Used for FUNCTION_DECL, VAR_DECL and in C++ for TYPE_DECL. */
5e351e96
DN
1693 ENUM_BITFIELD(symbol_visibility) visibility : 2;
1694 unsigned visibility_specified : 1;
5e351e96
DN
1695
1696 /* Belong to FUNCTION_DECL exclusively. */
1697 unsigned init_priority_p : 1;
1698 /* Used by C++ only. Might become a generic decl flag. */
1699 unsigned shadowed_for_var_p : 1;
1700 /* Belong to FUNCTION_DECL exclusively. */
1701 unsigned cxx_constructor : 1;
1702 /* Belong to FUNCTION_DECL exclusively. */
1703 unsigned cxx_destructor : 1;
1704 /* Belong to FUNCTION_DECL exclusively. */
1705 unsigned final : 1;
c1b7a563
KY
1706 /* Belong to FUNCTION_DECL exclusively. */
1707 unsigned regdecl_flag : 1;
1708 /* 14 unused bits. */
5e351e96
DN
1709};
1710
1711struct GTY(()) tree_var_decl {
1712 struct tree_decl_with_vis common;
1713};
1714
1715struct GTY(()) tree_decl_non_common {
1716 struct tree_decl_with_vis common;
5e351e96
DN
1717 /* Almost all FE's use this. */
1718 tree result;
5e351e96
DN
1719};
1720
e6523306
MS
1721/* FUNCTION_DECL inherits from DECL_NON_COMMON because of the use of the
1722 arguments/result/saved_tree fields by front ends. It was either inherit
1723 FUNCTION_DECL from non_common, or inherit non_common from FUNCTION_DECL,
1724 which seemed a bit strange. */
1725
5e351e96
DN
1726struct GTY(()) tree_function_decl {
1727 struct tree_decl_non_common common;
1728
1729 struct function *f;
1730
ad115a3c
JH
1731 /* Arguments of the function. */
1732 tree arguments;
5e351e96
DN
1733 /* The personality function. Used for stack unwinding. */
1734 tree personality;
1735
1736 /* Function specific options that are used by this function. */
1737 tree function_specific_target; /* target options */
1738 tree function_specific_optimization; /* optimization options */
1739
aaf8a23e
JH
1740 /* Generic function body. */
1741 tree saved_tree;
1742 /* Index within a virtual table. */
1743 tree vindex;
1744
5e351e96
DN
1745 /* In a FUNCTION_DECL for which DECL_BUILT_IN holds, this is
1746 DECL_FUNCTION_CODE. Otherwise unused.
1747 ??? The bitfield needs to be able to hold all target function
1748 codes as well. */
c1b7a563 1749 ENUM_BITFIELD(built_in_function) function_code : 12;
5e351e96
DN
1750 ENUM_BITFIELD(built_in_class) built_in_class : 2;
1751
1752 unsigned static_ctor_flag : 1;
1753 unsigned static_dtor_flag : 1;
5e351e96 1754
c1b7a563 1755 unsigned uninlinable : 1;
5e351e96
DN
1756 unsigned possibly_inlined : 1;
1757 unsigned novops_flag : 1;
1758 unsigned returns_twice_flag : 1;
1759 unsigned malloc_flag : 1;
1760 unsigned operator_new_flag : 1;
1761 unsigned declared_inline_flag : 1;
5e351e96
DN
1762 unsigned no_inline_warning_flag : 1;
1763
1764 unsigned no_instrument_function_entry_exit : 1;
1765 unsigned no_limit_stack : 1;
1766 unsigned disregard_inline_limits : 1;
1767 unsigned pure_flag : 1;
1768 unsigned looping_const_or_pure_flag : 1;
1769 unsigned has_debug_args_flag : 1;
1770 unsigned tm_clone_flag : 1;
1771 unsigned versioned_function : 1;
1772 /* No bits left. */
1773};
1774
1775struct GTY(()) tree_translation_unit_decl {
1776 struct tree_decl_common common;
1777 /* Source language of this translation unit. Used for DWARF output. */
1778 const char * GTY((skip(""))) language;
1779 /* TODO: Non-optimization used to build this translation unit. */
1780 /* TODO: Root of a partial DWARF tree for global types and decls. */
1781};
1782
1783struct GTY(()) tree_type_decl {
1784 struct tree_decl_non_common common;
1785
1786};
1787
1788struct GTY ((chain_next ("%h.next"), chain_prev ("%h.prev"))) tree_statement_list_node
1789 {
1790 struct tree_statement_list_node *prev;
1791 struct tree_statement_list_node *next;
1792 tree stmt;
1793};
1794
1795struct GTY(()) tree_statement_list
1796 {
1797 struct tree_typed typed;
1798 struct tree_statement_list_node *head;
1799 struct tree_statement_list_node *tail;
1800};
1801
46f851f3
DN
1802
1803/* Optimization options used by a function. */
1804
5e351e96 1805struct GTY(()) tree_optimization_option {
ef9d56f8 1806 struct tree_base base;
5e351e96
DN
1807
1808 /* The optimization options used by the user. */
fbf196a2 1809 struct cl_optimization *opts;
5e351e96
DN
1810
1811 /* Target optabs for this set of optimization options. This is of
1812 type `struct target_optabs *'. */
cc349a39 1813 void *GTY ((atomic)) optabs;
5e351e96
DN
1814
1815 /* The value of this_target_optabs against which the optabs above were
1816 generated. */
1817 struct target_optabs *GTY ((skip)) base_optabs;
1818};
1819
e83b8e2e
JJ
1820/* Forward declaration, defined in target-globals.h. */
1821
1822struct GTY(()) target_globals;
1823
46f851f3
DN
1824/* Target options used by a function. */
1825
5e351e96 1826struct GTY(()) tree_target_option {
ef9d56f8 1827 struct tree_base base;
5e351e96 1828
e83b8e2e
JJ
1829 /* Target globals for the corresponding target option. */
1830 struct target_globals *globals;
1831
5e351e96 1832 /* The optimization options used by the user. */
f6e3667f 1833 struct cl_target_option *opts;
5e351e96
DN
1834};
1835
1836/* Define the overall contents of a tree node.
1837 It may be any of the structures declared above
1838 for various types of node. */
1839union GTY ((ptr_alias (union lang_tree_node),
1840 desc ("tree_node_structure (&%h)"), variable_size)) tree_node {
1841 struct tree_base GTY ((tag ("TS_BASE"))) base;
1842 struct tree_typed GTY ((tag ("TS_TYPED"))) typed;
1843 struct tree_common GTY ((tag ("TS_COMMON"))) common;
1844 struct tree_int_cst GTY ((tag ("TS_INT_CST"))) int_cst;
1845 struct tree_real_cst GTY ((tag ("TS_REAL_CST"))) real_cst;
1846 struct tree_fixed_cst GTY ((tag ("TS_FIXED_CST"))) fixed_cst;
1847 struct tree_vector GTY ((tag ("TS_VECTOR"))) vector;
1848 struct tree_string GTY ((tag ("TS_STRING"))) string;
1849 struct tree_complex GTY ((tag ("TS_COMPLEX"))) complex;
1850 struct tree_identifier GTY ((tag ("TS_IDENTIFIER"))) identifier;
1851 struct tree_decl_minimal GTY((tag ("TS_DECL_MINIMAL"))) decl_minimal;
1852 struct tree_decl_common GTY ((tag ("TS_DECL_COMMON"))) decl_common;
1853 struct tree_decl_with_rtl GTY ((tag ("TS_DECL_WRTL"))) decl_with_rtl;
1854 struct tree_decl_non_common GTY ((tag ("TS_DECL_NON_COMMON")))
1855 decl_non_common;
1856 struct tree_parm_decl GTY ((tag ("TS_PARM_DECL"))) parm_decl;
1857 struct tree_decl_with_vis GTY ((tag ("TS_DECL_WITH_VIS"))) decl_with_vis;
1858 struct tree_var_decl GTY ((tag ("TS_VAR_DECL"))) var_decl;
1859 struct tree_field_decl GTY ((tag ("TS_FIELD_DECL"))) field_decl;
1860 struct tree_label_decl GTY ((tag ("TS_LABEL_DECL"))) label_decl;
1861 struct tree_result_decl GTY ((tag ("TS_RESULT_DECL"))) result_decl;
1862 struct tree_const_decl GTY ((tag ("TS_CONST_DECL"))) const_decl;
1863 struct tree_type_decl GTY ((tag ("TS_TYPE_DECL"))) type_decl;
1864 struct tree_function_decl GTY ((tag ("TS_FUNCTION_DECL"))) function_decl;
1865 struct tree_translation_unit_decl GTY ((tag ("TS_TRANSLATION_UNIT_DECL")))
1866 translation_unit_decl;
1867 struct tree_type_common GTY ((tag ("TS_TYPE_COMMON"))) type_common;
1868 struct tree_type_with_lang_specific GTY ((tag ("TS_TYPE_WITH_LANG_SPECIFIC")))
1869 type_with_lang_specific;
1870 struct tree_type_non_common GTY ((tag ("TS_TYPE_NON_COMMON")))
1871 type_non_common;
1872 struct tree_list GTY ((tag ("TS_LIST"))) list;
1873 struct tree_vec GTY ((tag ("TS_VEC"))) vec;
1874 struct tree_exp GTY ((tag ("TS_EXP"))) exp;
1875 struct tree_ssa_name GTY ((tag ("TS_SSA_NAME"))) ssa_name;
1876 struct tree_block GTY ((tag ("TS_BLOCK"))) block;
1877 struct tree_binfo GTY ((tag ("TS_BINFO"))) binfo;
1878 struct tree_statement_list GTY ((tag ("TS_STATEMENT_LIST"))) stmt_list;
1879 struct tree_constructor GTY ((tag ("TS_CONSTRUCTOR"))) constructor;
1880 struct tree_omp_clause GTY ((tag ("TS_OMP_CLAUSE"))) omp_clause;
1881 struct tree_optimization_option GTY ((tag ("TS_OPTIMIZATION"))) optimization;
1882 struct tree_target_option GTY ((tag ("TS_TARGET_OPTION"))) target_option;
1883};
1884
1885/* Structure describing an attribute and a function to handle it. */
1886struct attribute_spec {
1887 /* The name of the attribute (without any leading or trailing __),
1888 or NULL to mark the end of a table of attributes. */
1889 const char *name;
1890 /* The minimum length of the list of arguments of the attribute. */
1891 int min_length;
1892 /* The maximum length of the list of arguments of the attribute
1893 (-1 for no maximum). */
1894 int max_length;
1895 /* Whether this attribute requires a DECL. If it does, it will be passed
1896 from types of DECLs, function return types and array element types to
1897 the DECLs, function types and array types respectively; but when
1898 applied to a type in any other circumstances, it will be ignored with
1899 a warning. (If greater control is desired for a given attribute,
1900 this should be false, and the flags argument to the handler may be
1901 used to gain greater control in that case.) */
1902 bool decl_required;
1903 /* Whether this attribute requires a type. If it does, it will be passed
1904 from a DECL to the type of that DECL. */
1905 bool type_required;
1906 /* Whether this attribute requires a function (or method) type. If it does,
1907 it will be passed from a function pointer type to the target type,
1908 and from a function return type (which is not itself a function
1909 pointer type) to the function type. */
1910 bool function_type_required;
1911 /* Function to handle this attribute. NODE points to the node to which
1912 the attribute is to be applied. If a DECL, it should be modified in
1913 place; if a TYPE, a copy should be created. NAME is the name of the
1914 attribute (possibly with leading or trailing __). ARGS is the TREE_LIST
1915 of the arguments (which may be NULL). FLAGS gives further information
1916 about the context of the attribute. Afterwards, the attributes will
1917 be added to the DECL_ATTRIBUTES or TYPE_ATTRIBUTES, as appropriate,
1918 unless *NO_ADD_ATTRS is set to true (which should be done on error,
1919 as well as in any other cases when the attributes should not be added
1920 to the DECL or TYPE). Depending on FLAGS, any attributes to be
1921 applied to another type or DECL later may be returned;
1922 otherwise the return value should be NULL_TREE. This pointer may be
1923 NULL if no special handling is required beyond the checks implied
1924 by the rest of this structure. */
1925 tree (*handler) (tree *node, tree name, tree args,
1926 int flags, bool *no_add_attrs);
1927 /* Specifies if attribute affects type's identity. */
1928 bool affects_type_identity;
1929};
1930
1931/* These functions allow a front-end to perform a manual layout of a
1932 RECORD_TYPE. (For instance, if the placement of subsequent fields
1933 depends on the placement of fields so far.) Begin by calling
1934 start_record_layout. Then, call place_field for each of the
1935 fields. Then, call finish_record_layout. See layout_type for the
1936 default way in which these functions are used. */
1937typedef struct record_layout_info_s {
1938 /* The RECORD_TYPE that we are laying out. */
1939 tree t;
1940 /* The offset into the record so far, in bytes, not including bits in
1941 BITPOS. */
1942 tree offset;
1943 /* The last known alignment of SIZE. */
1944 unsigned int offset_align;
1945 /* The bit position within the last OFFSET_ALIGN bits, in bits. */
1946 tree bitpos;
1947 /* The alignment of the record so far, in bits. */
1948 unsigned int record_align;
1949 /* The alignment of the record so far, ignoring #pragma pack and
1950 __attribute__ ((packed)), in bits. */
1951 unsigned int unpacked_align;
1952 /* The previous field laid out. */
1953 tree prev_field;
1954 /* The static variables (i.e., class variables, as opposed to
1955 instance variables) encountered in T. */
1956 vec<tree, va_gc> *pending_statics;
1957 /* Bits remaining in the current alignment group */
1958 int remaining_in_alignment;
1959 /* True if we've seen a packed field that didn't have normal
1960 alignment anyway. */
1961 int packed_maybe_necessary;
1962} *record_layout_info;
1963
1964/* Iterator for going through the function arguments. */
1965struct function_args_iterator {
1966 tree next; /* TREE_LIST pointing to the next argument */
1967};
1968
1969/* Structures to map from a tree to another tree. */
1970struct GTY(()) tree_map_base {
1971 tree from;
1972};
1973
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1974/* Map from a tree to another tree. */
1975
d242408f 1976struct GTY((for_user)) tree_map {
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1977 struct tree_map_base base;
1978 unsigned int hash;
1979 tree to;
1980};
1981
1982/* Map from a decl tree to another tree. */
d242408f 1983struct GTY((for_user)) tree_decl_map {
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1984 struct tree_map_base base;
1985 tree to;
1986};
1987
1988/* Map from a tree to an int. */
d242408f 1989struct GTY((for_user)) tree_int_map {
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1990 struct tree_map_base base;
1991 unsigned int to;
1992};
1993
5e351e96 1994/* Map from a decl tree to a tree vector. */
d242408f 1995struct GTY((for_user)) tree_vec_map {
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1996 struct tree_map_base base;
1997 vec<tree, va_gc> *to;
1998};
1999
2000/* Abstract iterators for CALL_EXPRs. These static inline definitions
2001 have to go towards the end of tree.h so that union tree_node is fully
2002 defined by this point. */
2003
2004/* Structure containing iterator state. */
2005struct call_expr_arg_iterator {
2006 tree t; /* the call_expr */
2007 int n; /* argument count */
2008 int i; /* next argument index */
2009};
2010
2011struct const_call_expr_arg_iterator {
2012 const_tree t; /* the call_expr */
2013 int n; /* argument count */
2014 int i; /* next argument index */
2015};
2016
2017/* The builtin_info structure holds the FUNCTION_DECL of the standard builtin
cbf5d0e7 2018 function, and flags. */
5e351e96 2019struct GTY(()) builtin_info_type {
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2020 tree decl;
2021 /* Whether the user can use <xxx> instead of explicitly using calls
2022 to __builtin_<xxx>. */
2023 unsigned implicit_p : 1;
2024 /* Whether the user has provided a declaration of <xxx>. */
2025 unsigned declared_p : 1;
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2026};
2027
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2028/* Information about a _FloatN or _FloatNx type that may be
2029 supported. */
2030struct floatn_type_info {
2031 /* The number N in the type name. */
2032 int n;
2033 /* Whether it is an extended type _FloatNx (true) or an interchange
2034 type (false). */
2035 bool extended;
2036};
2037
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2038
2039/*---------------------------------------------------------------------------
2040 Global variables
2041---------------------------------------------------------------------------*/
2042/* Matrix describing the structures contained in a given tree code. */
2043extern unsigned char tree_contains_struct[MAX_TREE_CODES][64];
2044
2045/* Class of tree given its code. */
2046extern const enum tree_code_class tree_code_type[];
2047
2048/* Each tree code class has an associated string representation.
2049 These must correspond to the tree_code_class entries. */
2050extern const char *const tree_code_class_strings[];
2051
2052/* Number of argument-words in each kind of tree-node. */
2053extern const unsigned char tree_code_length[];
2054
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2055/* Vector of all alias pairs for global symbols. */
2056extern GTY(()) vec<alias_pair, va_gc> *alias_pairs;
2057
2058/* Names of all the built_in classes. */
2059extern const char *const built_in_class_names[BUILT_IN_LAST];
2060
2061/* Names of all the built_in functions. */
2062extern const char * built_in_names[(int) END_BUILTINS];
2063
2064/* Number of operands and names for each OMP_CLAUSE node. */
2065extern unsigned const char omp_clause_num_ops[];
2066extern const char * const omp_clause_code_name[];
2067
2068/* A vector of all translation-units. */
2069extern GTY (()) vec<tree, va_gc> *all_translation_units;
2070
2071/* Vector of standard trees used by the C compiler. */
2072extern GTY(()) tree global_trees[TI_MAX];
2073
2074/* The standard C integer types. Use integer_type_kind to index into
2075 this array. */
2076extern GTY(()) tree integer_types[itk_none];
2077
2078/* Types used to represent sizes. */
2079extern GTY(()) tree sizetype_tab[(int) stk_type_kind_last];
2080
2081/* Arrays for keeping track of tree node statistics. */
2082extern int tree_node_counts[];
2083extern int tree_node_sizes[];
2084
2085/* True if we are in gimple form and the actions of the folders need to
2086 be restricted. False if we are not in gimple form and folding is not
2087 restricted to creating gimple expressions. */
2088extern bool in_gimple_form;
2089
2090/* Functional interface to the builtin functions. */
cbf5d0e7 2091extern GTY(()) builtin_info_type builtin_info[(int)END_BUILTINS];
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2092
2093/* If nonzero, an upper limit on alignment of structure fields, in bits, */
2094extern unsigned int maximum_field_alignment;
2095
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2096/* Points to the FUNCTION_DECL of the function whose body we are reading. */
2097extern GTY(()) tree current_function_decl;
2098
2099/* Nonzero means a FUNC_BEGIN label was emitted. */
2100extern GTY(()) const char * current_function_func_begin_label;
2101
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2102/* Information about the _FloatN and _FloatNx types. */
2103extern const floatn_type_info floatn_nx_types[NUM_FLOATN_NX_TYPES];
2104
5e351e96 2105#endif // GCC_TREE_CORE_H