Don't warn when alignment of global common data exceeds maximum alignment.
[official-gcc.git] / gcc / tree.h
blob905417fd17b1721f6c65d3cdf66a5fd5f920de7f
1 /* Definitions for the ubiquitous 'tree' type for GNU compilers.
2 Copyright (C) 1989-2021 Free Software Foundation, Inc.
4 This file is part of GCC.
6 GCC is free software; you can redistribute it and/or modify it under
7 the terms of the GNU General Public License as published by the Free
8 Software Foundation; either version 3, or (at your option) any later
9 version.
11 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
12 WARRANTY; without even the implied warranty of MERCHANTABILITY or
13 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
14 for more details.
16 You should have received a copy of the GNU General Public License
17 along with GCC; see the file COPYING3. If not see
18 <http://www.gnu.org/licenses/>. */
20 #ifndef GCC_TREE_H
21 #define GCC_TREE_H
23 #include "tree-core.h"
24 #include "options.h"
26 /* Convert a target-independent built-in function code to a combined_fn. */
28 inline combined_fn
29 as_combined_fn (built_in_function fn)
31 return combined_fn (int (fn));
34 /* Convert an internal function code to a combined_fn. */
36 inline combined_fn
37 as_combined_fn (internal_fn fn)
39 return combined_fn (int (fn) + int (END_BUILTINS));
42 /* Return true if CODE is a target-independent built-in function. */
44 inline bool
45 builtin_fn_p (combined_fn code)
47 return int (code) < int (END_BUILTINS);
50 /* Return the target-independent built-in function represented by CODE.
51 Only valid if builtin_fn_p (CODE). */
53 inline built_in_function
54 as_builtin_fn (combined_fn code)
56 gcc_checking_assert (builtin_fn_p (code));
57 return built_in_function (int (code));
60 /* Return true if CODE is an internal function. */
62 inline bool
63 internal_fn_p (combined_fn code)
65 return int (code) >= int (END_BUILTINS);
68 /* Return the internal function represented by CODE. Only valid if
69 internal_fn_p (CODE). */
71 inline internal_fn
72 as_internal_fn (combined_fn code)
74 gcc_checking_assert (internal_fn_p (code));
75 return internal_fn (int (code) - int (END_BUILTINS));
78 /* Macros for initializing `tree_contains_struct'. */
79 #define MARK_TS_BASE(C) \
80 (tree_contains_struct[C][TS_BASE] = true)
82 #define MARK_TS_TYPED(C) \
83 (MARK_TS_BASE (C), \
84 tree_contains_struct[C][TS_TYPED] = true)
86 #define MARK_TS_COMMON(C) \
87 (MARK_TS_TYPED (C), \
88 tree_contains_struct[C][TS_COMMON] = true)
90 #define MARK_TS_TYPE_COMMON(C) \
91 (MARK_TS_COMMON (C), \
92 tree_contains_struct[C][TS_TYPE_COMMON] = true)
94 #define MARK_TS_TYPE_WITH_LANG_SPECIFIC(C) \
95 (MARK_TS_TYPE_COMMON (C), \
96 tree_contains_struct[C][TS_TYPE_WITH_LANG_SPECIFIC] = true)
98 #define MARK_TS_TYPE_NON_COMMON(C) \
99 (MARK_TS_TYPE_WITH_LANG_SPECIFIC (C), \
100 tree_contains_struct[C][TS_TYPE_NON_COMMON] = true) \
102 #define MARK_TS_DECL_MINIMAL(C) \
103 (MARK_TS_COMMON (C), \
104 tree_contains_struct[C][TS_DECL_MINIMAL] = true)
106 #define MARK_TS_DECL_COMMON(C) \
107 (MARK_TS_DECL_MINIMAL (C), \
108 tree_contains_struct[C][TS_DECL_COMMON] = true)
110 #define MARK_TS_DECL_WRTL(C) \
111 (MARK_TS_DECL_COMMON (C), \
112 tree_contains_struct[C][TS_DECL_WRTL] = true)
114 #define MARK_TS_DECL_WITH_VIS(C) \
115 (MARK_TS_DECL_WRTL (C), \
116 tree_contains_struct[C][TS_DECL_WITH_VIS] = true)
118 #define MARK_TS_DECL_NON_COMMON(C) \
119 (MARK_TS_DECL_WITH_VIS (C), \
120 tree_contains_struct[C][TS_DECL_NON_COMMON] = true)
122 #define MARK_TS_EXP(C) \
123 (MARK_TS_TYPED (C), \
124 tree_contains_struct[C][TS_EXP] = true)
126 /* Returns the string representing CLASS. */
128 #define TREE_CODE_CLASS_STRING(CLASS)\
129 tree_code_class_strings[(int) (CLASS)]
131 #define TREE_CODE_CLASS(CODE) tree_code_type[(int) (CODE)]
133 /* Nonzero if NODE represents an exceptional code. */
135 #define EXCEPTIONAL_CLASS_P(NODE)\
136 (TREE_CODE_CLASS (TREE_CODE (NODE)) == tcc_exceptional)
138 /* Nonzero if NODE represents a constant. */
140 #define CONSTANT_CLASS_P(NODE)\
141 (TREE_CODE_CLASS (TREE_CODE (NODE)) == tcc_constant)
143 /* Nonzero if NODE represents a constant, or is a location wrapper
144 around such a node. */
146 #define CONSTANT_CLASS_OR_WRAPPER_P(NODE)\
147 (CONSTANT_CLASS_P (tree_strip_any_location_wrapper (NODE)))
149 /* Nonzero if NODE represents a type. */
151 #define TYPE_P(NODE)\
152 (TREE_CODE_CLASS (TREE_CODE (NODE)) == tcc_type)
154 /* Nonzero if NODE represents a declaration. */
156 #define DECL_P(NODE)\
157 (TREE_CODE_CLASS (TREE_CODE (NODE)) == tcc_declaration)
159 /* True if NODE designates a variable declaration. */
160 #define VAR_P(NODE) \
161 (TREE_CODE (NODE) == VAR_DECL)
163 /* Nonzero if DECL represents a VAR_DECL or FUNCTION_DECL. */
165 #define VAR_OR_FUNCTION_DECL_P(DECL)\
166 (TREE_CODE (DECL) == VAR_DECL || TREE_CODE (DECL) == FUNCTION_DECL)
168 /* Nonzero if NODE represents a INDIRECT_REF. Keep these checks in
169 ascending code order. */
171 #define INDIRECT_REF_P(NODE)\
172 (TREE_CODE (NODE) == INDIRECT_REF)
174 /* Nonzero if NODE represents a reference. */
176 #define REFERENCE_CLASS_P(NODE)\
177 (TREE_CODE_CLASS (TREE_CODE (NODE)) == tcc_reference)
179 /* Nonzero if NODE represents a comparison. */
181 #define COMPARISON_CLASS_P(NODE)\
182 (TREE_CODE_CLASS (TREE_CODE (NODE)) == tcc_comparison)
184 /* Nonzero if NODE represents a unary arithmetic expression. */
186 #define UNARY_CLASS_P(NODE)\
187 (TREE_CODE_CLASS (TREE_CODE (NODE)) == tcc_unary)
189 /* Nonzero if NODE represents a binary arithmetic expression. */
191 #define BINARY_CLASS_P(NODE)\
192 (TREE_CODE_CLASS (TREE_CODE (NODE)) == tcc_binary)
194 /* Nonzero if NODE represents a statement expression. */
196 #define STATEMENT_CLASS_P(NODE)\
197 (TREE_CODE_CLASS (TREE_CODE (NODE)) == tcc_statement)
199 /* Nonzero if NODE represents a function call-like expression with a
200 variable-length operand vector. */
202 #define VL_EXP_CLASS_P(NODE)\
203 (TREE_CODE_CLASS (TREE_CODE (NODE)) == tcc_vl_exp)
205 /* Nonzero if NODE represents any other expression. */
207 #define EXPRESSION_CLASS_P(NODE)\
208 (TREE_CODE_CLASS (TREE_CODE (NODE)) == tcc_expression)
210 /* Returns nonzero iff NODE represents a type or declaration. */
212 #define IS_TYPE_OR_DECL_P(NODE)\
213 (TYPE_P (NODE) || DECL_P (NODE))
215 /* Returns nonzero iff CLASS is the tree-code class of an
216 expression. */
218 #define IS_EXPR_CODE_CLASS(CLASS)\
219 ((CLASS) >= tcc_reference && (CLASS) <= tcc_expression)
221 /* Returns nonzero iff NODE is an expression of some kind. */
223 #define EXPR_P(NODE) IS_EXPR_CODE_CLASS (TREE_CODE_CLASS (TREE_CODE (NODE)))
225 #define TREE_CODE_LENGTH(CODE) tree_code_length[(int) (CODE)]
228 /* Helper macros for math builtins. */
230 #define CASE_FLT_FN(FN) case FN: case FN##F: case FN##L
231 #define CASE_FLT_FN_FLOATN_NX(FN) \
232 case FN##F16: case FN##F32: case FN##F64: case FN##F128: \
233 case FN##F32X: case FN##F64X: case FN##F128X
234 #define CASE_FLT_FN_REENT(FN) case FN##_R: case FN##F_R: case FN##L_R
235 #define CASE_INT_FN(FN) case FN: case FN##L: case FN##LL: case FN##IMAX
237 #define NULL_TREE (tree) NULL
239 /* Define accessors for the fields that all tree nodes have
240 (though some fields are not used for all kinds of nodes). */
242 /* The tree-code says what kind of node it is.
243 Codes are defined in tree.def. */
244 #define TREE_CODE(NODE) ((enum tree_code) (NODE)->base.code)
245 #define TREE_SET_CODE(NODE, VALUE) ((NODE)->base.code = (VALUE))
247 /* When checking is enabled, errors will be generated if a tree node
248 is accessed incorrectly. The macros die with a fatal error. */
249 #if defined ENABLE_TREE_CHECKING && (GCC_VERSION >= 2007)
251 #define TREE_CHECK(T, CODE) \
252 (tree_check ((T), __FILE__, __LINE__, __FUNCTION__, (CODE)))
254 #define TREE_NOT_CHECK(T, CODE) \
255 (tree_not_check ((T), __FILE__, __LINE__, __FUNCTION__, (CODE)))
257 #define TREE_CHECK2(T, CODE1, CODE2) \
258 (tree_check2 ((T), __FILE__, __LINE__, __FUNCTION__, (CODE1), (CODE2)))
260 #define TREE_NOT_CHECK2(T, CODE1, CODE2) \
261 (tree_not_check2 ((T), __FILE__, __LINE__, __FUNCTION__, (CODE1), (CODE2)))
263 #define TREE_CHECK3(T, CODE1, CODE2, CODE3) \
264 (tree_check3 ((T), __FILE__, __LINE__, __FUNCTION__, (CODE1), (CODE2), (CODE3)))
266 #define TREE_NOT_CHECK3(T, CODE1, CODE2, CODE3) \
267 (tree_not_check3 ((T), __FILE__, __LINE__, __FUNCTION__, \
268 (CODE1), (CODE2), (CODE3)))
270 #define TREE_CHECK4(T, CODE1, CODE2, CODE3, CODE4) \
271 (tree_check4 ((T), __FILE__, __LINE__, __FUNCTION__, \
272 (CODE1), (CODE2), (CODE3), (CODE4)))
274 #define TREE_NOT_CHECK4(T, CODE1, CODE2, CODE3, CODE4) \
275 (tree_not_check4 ((T), __FILE__, __LINE__, __FUNCTION__, \
276 (CODE1), (CODE2), (CODE3), (CODE4)))
278 #define TREE_CHECK5(T, CODE1, CODE2, CODE3, CODE4, CODE5) \
279 (tree_check5 ((T), __FILE__, __LINE__, __FUNCTION__, \
280 (CODE1), (CODE2), (CODE3), (CODE4), (CODE5)))
282 #define TREE_NOT_CHECK5(T, CODE1, CODE2, CODE3, CODE4, CODE5) \
283 (tree_not_check5 ((T), __FILE__, __LINE__, __FUNCTION__, \
284 (CODE1), (CODE2), (CODE3), (CODE4), (CODE5)))
286 #define CONTAINS_STRUCT_CHECK(T, STRUCT) \
287 (contains_struct_check ((T), (STRUCT), __FILE__, __LINE__, __FUNCTION__))
289 #define TREE_CLASS_CHECK(T, CLASS) \
290 (tree_class_check ((T), (CLASS), __FILE__, __LINE__, __FUNCTION__))
292 #define TREE_RANGE_CHECK(T, CODE1, CODE2) \
293 (tree_range_check ((T), (CODE1), (CODE2), __FILE__, __LINE__, __FUNCTION__))
295 #define OMP_CLAUSE_SUBCODE_CHECK(T, CODE) \
296 (omp_clause_subcode_check ((T), (CODE), __FILE__, __LINE__, __FUNCTION__))
298 #define OMP_CLAUSE_RANGE_CHECK(T, CODE1, CODE2) \
299 (omp_clause_range_check ((T), (CODE1), (CODE2), \
300 __FILE__, __LINE__, __FUNCTION__))
302 /* These checks have to be special cased. */
303 #define EXPR_CHECK(T) \
304 (expr_check ((T), __FILE__, __LINE__, __FUNCTION__))
306 /* These checks have to be special cased. */
307 #define NON_TYPE_CHECK(T) \
308 (non_type_check ((T), __FILE__, __LINE__, __FUNCTION__))
310 /* These checks have to be special cased. */
311 #define ANY_INTEGRAL_TYPE_CHECK(T) \
312 (any_integral_type_check ((T), __FILE__, __LINE__, __FUNCTION__))
314 #define TREE_INT_CST_ELT_CHECK(T, I) \
315 (*tree_int_cst_elt_check ((T), (I), __FILE__, __LINE__, __FUNCTION__))
317 #define TREE_VEC_ELT_CHECK(T, I) \
318 (*(CONST_CAST2 (tree *, typeof (T)*, \
319 tree_vec_elt_check ((T), (I), __FILE__, __LINE__, __FUNCTION__))))
321 #define OMP_CLAUSE_ELT_CHECK(T, I) \
322 (*(omp_clause_elt_check ((T), (I), __FILE__, __LINE__, __FUNCTION__)))
324 /* Special checks for TREE_OPERANDs. */
325 #define TREE_OPERAND_CHECK(T, I) \
326 (*(CONST_CAST2 (tree*, typeof (T)*, \
327 tree_operand_check ((T), (I), __FILE__, __LINE__, __FUNCTION__))))
329 #define TREE_OPERAND_CHECK_CODE(T, CODE, I) \
330 (*(tree_operand_check_code ((T), (CODE), (I), \
331 __FILE__, __LINE__, __FUNCTION__)))
333 /* Nodes are chained together for many purposes.
334 Types are chained together to record them for being output to the debugger
335 (see the function `chain_type').
336 Decls in the same scope are chained together to record the contents
337 of the scope.
338 Statement nodes for successive statements used to be chained together.
339 Often lists of things are represented by TREE_LIST nodes that
340 are chained together. */
342 #define TREE_CHAIN(NODE) \
343 (CONTAINS_STRUCT_CHECK (NODE, TS_COMMON)->common.chain)
345 /* In all nodes that are expressions, this is the data type of the expression.
346 In POINTER_TYPE nodes, this is the type that the pointer points to.
347 In ARRAY_TYPE nodes, this is the type of the elements.
348 In VECTOR_TYPE nodes, this is the type of the elements. */
349 #define TREE_TYPE(NODE) \
350 (CONTAINS_STRUCT_CHECK (NODE, TS_TYPED)->typed.type)
352 extern void tree_contains_struct_check_failed (const_tree,
353 const enum tree_node_structure_enum,
354 const char *, int, const char *)
355 ATTRIBUTE_NORETURN ATTRIBUTE_COLD;
357 extern void tree_check_failed (const_tree, const char *, int, const char *,
358 ...) ATTRIBUTE_NORETURN ATTRIBUTE_COLD;
359 extern void tree_not_check_failed (const_tree, const char *, int, const char *,
360 ...) ATTRIBUTE_NORETURN ATTRIBUTE_COLD;
361 extern void tree_class_check_failed (const_tree, const enum tree_code_class,
362 const char *, int, const char *)
363 ATTRIBUTE_NORETURN ATTRIBUTE_COLD;
364 extern void tree_range_check_failed (const_tree, const char *, int,
365 const char *, enum tree_code,
366 enum tree_code)
367 ATTRIBUTE_NORETURN ATTRIBUTE_COLD;
368 extern void tree_not_class_check_failed (const_tree,
369 const enum tree_code_class,
370 const char *, int, const char *)
371 ATTRIBUTE_NORETURN ATTRIBUTE_COLD;
372 extern void tree_int_cst_elt_check_failed (int, int, const char *,
373 int, const char *)
374 ATTRIBUTE_NORETURN ATTRIBUTE_COLD;
375 extern void tree_vec_elt_check_failed (int, int, const char *,
376 int, const char *)
377 ATTRIBUTE_NORETURN ATTRIBUTE_COLD;
378 extern void phi_node_elt_check_failed (int, int, const char *,
379 int, const char *)
380 ATTRIBUTE_NORETURN ATTRIBUTE_COLD;
381 extern void tree_operand_check_failed (int, const_tree,
382 const char *, int, const char *)
383 ATTRIBUTE_NORETURN ATTRIBUTE_COLD;
384 extern void omp_clause_check_failed (const_tree, const char *, int,
385 const char *, enum omp_clause_code)
386 ATTRIBUTE_NORETURN ATTRIBUTE_COLD;
387 extern void omp_clause_operand_check_failed (int, const_tree, const char *,
388 int, const char *)
389 ATTRIBUTE_NORETURN ATTRIBUTE_COLD;
390 extern void omp_clause_range_check_failed (const_tree, const char *, int,
391 const char *, enum omp_clause_code,
392 enum omp_clause_code)
393 ATTRIBUTE_NORETURN ATTRIBUTE_COLD;
395 #else /* not ENABLE_TREE_CHECKING, or not gcc */
397 #define CONTAINS_STRUCT_CHECK(T, ENUM) (T)
398 #define TREE_CHECK(T, CODE) (T)
399 #define TREE_NOT_CHECK(T, CODE) (T)
400 #define TREE_CHECK2(T, CODE1, CODE2) (T)
401 #define TREE_NOT_CHECK2(T, CODE1, CODE2) (T)
402 #define TREE_CHECK3(T, CODE1, CODE2, CODE3) (T)
403 #define TREE_NOT_CHECK3(T, CODE1, CODE2, CODE3) (T)
404 #define TREE_CHECK4(T, CODE1, CODE2, CODE3, CODE4) (T)
405 #define TREE_NOT_CHECK4(T, CODE1, CODE2, CODE3, CODE4) (T)
406 #define TREE_CHECK5(T, CODE1, CODE2, CODE3, CODE4, CODE5) (T)
407 #define TREE_NOT_CHECK5(T, CODE1, CODE2, CODE3, CODE4, CODE5) (T)
408 #define TREE_CLASS_CHECK(T, CODE) (T)
409 #define TREE_RANGE_CHECK(T, CODE1, CODE2) (T)
410 #define EXPR_CHECK(T) (T)
411 #define NON_TYPE_CHECK(T) (T)
412 #define TREE_INT_CST_ELT_CHECK(T, I) ((T)->int_cst.val[I])
413 #define TREE_VEC_ELT_CHECK(T, I) ((T)->vec.a[I])
414 #define TREE_OPERAND_CHECK(T, I) ((T)->exp.operands[I])
415 #define TREE_OPERAND_CHECK_CODE(T, CODE, I) ((T)->exp.operands[I])
416 #define OMP_CLAUSE_ELT_CHECK(T, i) ((T)->omp_clause.ops[i])
417 #define OMP_CLAUSE_RANGE_CHECK(T, CODE1, CODE2) (T)
418 #define OMP_CLAUSE_SUBCODE_CHECK(T, CODE) (T)
419 #define ANY_INTEGRAL_TYPE_CHECK(T) (T)
421 #define TREE_CHAIN(NODE) ((NODE)->common.chain)
422 #define TREE_TYPE(NODE) ((NODE)->typed.type)
424 #endif
426 #define TREE_BLOCK(NODE) (tree_block (NODE))
427 #define TREE_SET_BLOCK(T, B) (tree_set_block ((T), (B)))
429 #include "tree-check.h"
431 #define TYPE_CHECK(T) TREE_CLASS_CHECK (T, tcc_type)
432 #define DECL_MINIMAL_CHECK(T) CONTAINS_STRUCT_CHECK (T, TS_DECL_MINIMAL)
433 #define DECL_COMMON_CHECK(T) CONTAINS_STRUCT_CHECK (T, TS_DECL_COMMON)
434 #define DECL_WRTL_CHECK(T) CONTAINS_STRUCT_CHECK (T, TS_DECL_WRTL)
435 #define DECL_WITH_VIS_CHECK(T) CONTAINS_STRUCT_CHECK (T, TS_DECL_WITH_VIS)
436 #define DECL_NON_COMMON_CHECK(T) CONTAINS_STRUCT_CHECK (T, TS_DECL_NON_COMMON)
437 #define CST_CHECK(T) TREE_CLASS_CHECK (T, tcc_constant)
438 #define STMT_CHECK(T) TREE_CLASS_CHECK (T, tcc_statement)
439 #define VL_EXP_CHECK(T) TREE_CLASS_CHECK (T, tcc_vl_exp)
440 #define FUNC_OR_METHOD_CHECK(T) TREE_CHECK2 (T, FUNCTION_TYPE, METHOD_TYPE)
441 #define PTR_OR_REF_CHECK(T) TREE_CHECK2 (T, POINTER_TYPE, REFERENCE_TYPE)
443 #define RECORD_OR_UNION_CHECK(T) \
444 TREE_CHECK3 (T, RECORD_TYPE, UNION_TYPE, QUAL_UNION_TYPE)
445 #define NOT_RECORD_OR_UNION_CHECK(T) \
446 TREE_NOT_CHECK3 (T, RECORD_TYPE, UNION_TYPE, QUAL_UNION_TYPE)
447 #define ARRAY_OR_INTEGER_TYPE_CHECK(T) \
448 TREE_CHECK2 (T, ARRAY_TYPE, INTEGER_TYPE)
450 #define NUMERICAL_TYPE_CHECK(T) \
451 TREE_CHECK5 (T, INTEGER_TYPE, ENUMERAL_TYPE, BOOLEAN_TYPE, REAL_TYPE, \
452 FIXED_POINT_TYPE)
454 /* Here is how primitive or already-canonicalized types' hash codes
455 are made. */
456 #define TYPE_HASH(TYPE) (TYPE_UID (TYPE))
458 /* A simple hash function for an arbitrary tree node. This must not be
459 used in hash tables which are saved to a PCH. */
460 #define TREE_HASH(NODE) ((size_t) (NODE) & 0777777)
462 /* Tests if CODE is a conversion expr (NOP_EXPR or CONVERT_EXPR). */
463 #define CONVERT_EXPR_CODE_P(CODE) \
464 ((CODE) == NOP_EXPR || (CODE) == CONVERT_EXPR)
466 /* Similarly, but accept an expression instead of a tree code. */
467 #define CONVERT_EXPR_P(EXP) CONVERT_EXPR_CODE_P (TREE_CODE (EXP))
469 /* Generate case for NOP_EXPR, CONVERT_EXPR. */
471 #define CASE_CONVERT \
472 case NOP_EXPR: \
473 case CONVERT_EXPR
475 /* Given an expression as a tree, strip any conversion that generates
476 no instruction. Accepts both tree and const_tree arguments since
477 we are not modifying the tree itself. */
479 #define STRIP_NOPS(EXP) \
480 (EXP) = tree_strip_nop_conversions (CONST_CAST_TREE (EXP))
482 /* Like STRIP_NOPS, but don't let the signedness change either. */
484 #define STRIP_SIGN_NOPS(EXP) \
485 (EXP) = tree_strip_sign_nop_conversions (CONST_CAST_TREE (EXP))
487 /* Like STRIP_NOPS, but don't alter the TREE_TYPE either. */
489 #define STRIP_TYPE_NOPS(EXP) \
490 while ((CONVERT_EXPR_P (EXP) \
491 || TREE_CODE (EXP) == NON_LVALUE_EXPR) \
492 && TREE_OPERAND (EXP, 0) != error_mark_node \
493 && (TREE_TYPE (EXP) \
494 == TREE_TYPE (TREE_OPERAND (EXP, 0)))) \
495 (EXP) = TREE_OPERAND (EXP, 0)
497 /* Remove unnecessary type conversions according to
498 tree_ssa_useless_type_conversion. */
500 #define STRIP_USELESS_TYPE_CONVERSION(EXP) \
501 (EXP) = tree_ssa_strip_useless_type_conversions (EXP)
503 /* Remove any VIEW_CONVERT_EXPR or NON_LVALUE_EXPR that's purely
504 in use to provide a location_t. */
506 #define STRIP_ANY_LOCATION_WRAPPER(EXP) \
507 (EXP) = tree_strip_any_location_wrapper (CONST_CAST_TREE (EXP))
509 /* Nonzero if TYPE represents a vector type. */
511 #define VECTOR_TYPE_P(TYPE) (TREE_CODE (TYPE) == VECTOR_TYPE)
513 /* Nonzero if TYPE represents a vector of booleans. */
515 #define VECTOR_BOOLEAN_TYPE_P(TYPE) \
516 (TREE_CODE (TYPE) == VECTOR_TYPE \
517 && TREE_CODE (TREE_TYPE (TYPE)) == BOOLEAN_TYPE)
519 /* Nonzero if TYPE represents an integral type. Note that we do not
520 include COMPLEX types here. Keep these checks in ascending code
521 order. */
523 #define INTEGRAL_TYPE_P(TYPE) \
524 (TREE_CODE (TYPE) == ENUMERAL_TYPE \
525 || TREE_CODE (TYPE) == BOOLEAN_TYPE \
526 || TREE_CODE (TYPE) == INTEGER_TYPE)
528 /* Nonzero if TYPE represents an integral type, including complex
529 and vector integer types. */
531 #define ANY_INTEGRAL_TYPE_P(TYPE) \
532 (INTEGRAL_TYPE_P (TYPE) \
533 || ((TREE_CODE (TYPE) == COMPLEX_TYPE \
534 || VECTOR_TYPE_P (TYPE)) \
535 && INTEGRAL_TYPE_P (TREE_TYPE (TYPE))))
537 /* Nonzero if TYPE represents a non-saturating fixed-point type. */
539 #define NON_SAT_FIXED_POINT_TYPE_P(TYPE) \
540 (TREE_CODE (TYPE) == FIXED_POINT_TYPE && !TYPE_SATURATING (TYPE))
542 /* Nonzero if TYPE represents a saturating fixed-point type. */
544 #define SAT_FIXED_POINT_TYPE_P(TYPE) \
545 (TREE_CODE (TYPE) == FIXED_POINT_TYPE && TYPE_SATURATING (TYPE))
547 /* Nonzero if TYPE represents a fixed-point type. */
549 #define FIXED_POINT_TYPE_P(TYPE) (TREE_CODE (TYPE) == FIXED_POINT_TYPE)
551 /* Nonzero if TYPE represents a scalar floating-point type. */
553 #define SCALAR_FLOAT_TYPE_P(TYPE) (TREE_CODE (TYPE) == REAL_TYPE)
555 /* Nonzero if TYPE represents a complex floating-point type. */
557 #define COMPLEX_FLOAT_TYPE_P(TYPE) \
558 (TREE_CODE (TYPE) == COMPLEX_TYPE \
559 && TREE_CODE (TREE_TYPE (TYPE)) == REAL_TYPE)
561 /* Nonzero if TYPE represents a vector integer type. */
563 #define VECTOR_INTEGER_TYPE_P(TYPE) \
564 (VECTOR_TYPE_P (TYPE) \
565 && TREE_CODE (TREE_TYPE (TYPE)) == INTEGER_TYPE)
568 /* Nonzero if TYPE represents a vector floating-point type. */
570 #define VECTOR_FLOAT_TYPE_P(TYPE) \
571 (VECTOR_TYPE_P (TYPE) \
572 && TREE_CODE (TREE_TYPE (TYPE)) == REAL_TYPE)
574 /* Nonzero if TYPE represents a floating-point type, including complex
575 and vector floating-point types. The vector and complex check does
576 not use the previous two macros to enable early folding. */
578 #define FLOAT_TYPE_P(TYPE) \
579 (SCALAR_FLOAT_TYPE_P (TYPE) \
580 || ((TREE_CODE (TYPE) == COMPLEX_TYPE \
581 || VECTOR_TYPE_P (TYPE)) \
582 && SCALAR_FLOAT_TYPE_P (TREE_TYPE (TYPE))))
584 /* Nonzero if TYPE represents a decimal floating-point type. */
585 #define DECIMAL_FLOAT_TYPE_P(TYPE) \
586 (SCALAR_FLOAT_TYPE_P (TYPE) \
587 && DECIMAL_FLOAT_MODE_P (TYPE_MODE (TYPE)))
589 /* Nonzero if TYPE is a record or union type. */
590 #define RECORD_OR_UNION_TYPE_P(TYPE) \
591 (TREE_CODE (TYPE) == RECORD_TYPE \
592 || TREE_CODE (TYPE) == UNION_TYPE \
593 || TREE_CODE (TYPE) == QUAL_UNION_TYPE)
595 /* Nonzero if TYPE represents an aggregate (multi-component) type.
596 Keep these checks in ascending code order. */
598 #define AGGREGATE_TYPE_P(TYPE) \
599 (TREE_CODE (TYPE) == ARRAY_TYPE || RECORD_OR_UNION_TYPE_P (TYPE))
601 /* Nonzero if TYPE represents a pointer or reference type.
602 (It should be renamed to INDIRECT_TYPE_P.) Keep these checks in
603 ascending code order. */
605 #define POINTER_TYPE_P(TYPE) \
606 (TREE_CODE (TYPE) == POINTER_TYPE || TREE_CODE (TYPE) == REFERENCE_TYPE)
608 /* Nonzero if TYPE represents a pointer to function. */
609 #define FUNCTION_POINTER_TYPE_P(TYPE) \
610 (POINTER_TYPE_P (TYPE) && TREE_CODE (TREE_TYPE (TYPE)) == FUNCTION_TYPE)
612 /* Nonzero if this type is a complete type. */
613 #define COMPLETE_TYPE_P(NODE) (TYPE_SIZE (NODE) != NULL_TREE)
615 /* Nonzero if this type is the (possibly qualified) void type. */
616 #define VOID_TYPE_P(NODE) (TREE_CODE (NODE) == VOID_TYPE)
618 /* Nonzero if this type is complete or is cv void. */
619 #define COMPLETE_OR_VOID_TYPE_P(NODE) \
620 (COMPLETE_TYPE_P (NODE) || VOID_TYPE_P (NODE))
622 /* Nonzero if this type is complete or is an array with unspecified bound. */
623 #define COMPLETE_OR_UNBOUND_ARRAY_TYPE_P(NODE) \
624 (COMPLETE_TYPE_P (TREE_CODE (NODE) == ARRAY_TYPE ? TREE_TYPE (NODE) : (NODE)))
626 #define FUNC_OR_METHOD_TYPE_P(NODE) \
627 (TREE_CODE (NODE) == FUNCTION_TYPE || TREE_CODE (NODE) == METHOD_TYPE)
629 #define OPAQUE_TYPE_P(NODE) \
630 (TREE_CODE (NODE) == OPAQUE_TYPE)
632 /* Define many boolean fields that all tree nodes have. */
634 /* In VAR_DECL, PARM_DECL and RESULT_DECL nodes, nonzero means address
635 of this is needed. So it cannot be in a register.
636 In a FUNCTION_DECL it has no meaning.
637 In LABEL_DECL nodes, it means a goto for this label has been seen
638 from a place outside all binding contours that restore stack levels.
639 In an artificial SSA_NAME that points to a stack partition with at least
640 two variables, it means that at least one variable has TREE_ADDRESSABLE.
641 In ..._TYPE nodes, it means that objects of this type must be fully
642 addressable. This means that pieces of this object cannot go into
643 register parameters, for example. If this a function type, this
644 means that the value must be returned in memory.
645 In CONSTRUCTOR nodes, it means object constructed must be in memory.
646 In IDENTIFIER_NODEs, this means that some extern decl for this name
647 had its address taken. That matters for inline functions.
648 In a STMT_EXPR, it means we want the result of the enclosed expression. */
649 #define TREE_ADDRESSABLE(NODE) ((NODE)->base.addressable_flag)
651 /* Set on a CALL_EXPR if the call is in a tail position, ie. just before the
652 exit of a function. Calls for which this is true are candidates for tail
653 call optimizations. */
654 #define CALL_EXPR_TAILCALL(NODE) \
655 (CALL_EXPR_CHECK (NODE)->base.addressable_flag)
657 /* Set on a CALL_EXPR if the call has been marked as requiring tail call
658 optimization for correctness. */
659 #define CALL_EXPR_MUST_TAIL_CALL(NODE) \
660 (CALL_EXPR_CHECK (NODE)->base.static_flag)
662 /* Used as a temporary field on a CASE_LABEL_EXPR to indicate that the
663 CASE_LOW operand has been processed. */
664 #define CASE_LOW_SEEN(NODE) \
665 (CASE_LABEL_EXPR_CHECK (NODE)->base.addressable_flag)
667 #define PREDICT_EXPR_OUTCOME(NODE) \
668 ((enum prediction) (PREDICT_EXPR_CHECK (NODE)->base.addressable_flag))
669 #define SET_PREDICT_EXPR_OUTCOME(NODE, OUTCOME) \
670 (PREDICT_EXPR_CHECK (NODE)->base.addressable_flag = (int) OUTCOME)
671 #define PREDICT_EXPR_PREDICTOR(NODE) \
672 ((enum br_predictor)tree_to_shwi (TREE_OPERAND (PREDICT_EXPR_CHECK (NODE), 0)))
674 /* In a VAR_DECL, nonzero means allocate static storage.
675 In a FUNCTION_DECL, nonzero if function has been defined.
676 In a CONSTRUCTOR, nonzero means allocate static storage. */
677 #define TREE_STATIC(NODE) ((NODE)->base.static_flag)
679 /* In an ADDR_EXPR, nonzero means do not use a trampoline. */
680 #define TREE_NO_TRAMPOLINE(NODE) (ADDR_EXPR_CHECK (NODE)->base.static_flag)
682 /* In a TARGET_EXPR or WITH_CLEANUP_EXPR, means that the pertinent cleanup
683 should only be executed if an exception is thrown, not on normal exit
684 of its scope. */
685 #define CLEANUP_EH_ONLY(NODE) ((NODE)->base.static_flag)
687 /* In a TRY_CATCH_EXPR, means that the handler should be considered a
688 separate cleanup in honor_protect_cleanup_actions. */
689 #define TRY_CATCH_IS_CLEANUP(NODE) \
690 (TRY_CATCH_EXPR_CHECK (NODE)->base.static_flag)
692 /* Used as a temporary field on a CASE_LABEL_EXPR to indicate that the
693 CASE_HIGH operand has been processed. */
694 #define CASE_HIGH_SEEN(NODE) \
695 (CASE_LABEL_EXPR_CHECK (NODE)->base.static_flag)
697 /* Used to mark scoped enums. */
698 #define ENUM_IS_SCOPED(NODE) (ENUMERAL_TYPE_CHECK (NODE)->base.static_flag)
700 /* Determines whether an ENUMERAL_TYPE has defined the list of constants. */
701 #define ENUM_IS_OPAQUE(NODE) (ENUMERAL_TYPE_CHECK (NODE)->base.private_flag)
703 /* In an expr node (usually a conversion) this means the node was made
704 implicitly and should not lead to any sort of warning. In a decl node,
705 warnings concerning the decl should be suppressed. This is used at
706 least for used-before-set warnings, and it set after one warning is
707 emitted. */
708 #define TREE_NO_WARNING(NODE) ((NODE)->base.nowarning_flag)
710 /* Nonzero if we should warn about the change in empty class parameter
711 passing ABI in this TU. */
712 #define TRANSLATION_UNIT_WARN_EMPTY_P(NODE) \
713 (TRANSLATION_UNIT_DECL_CHECK (NODE)->decl_common.decl_flag_0)
715 /* Nonzero if this type is "empty" according to the particular psABI. */
716 #define TYPE_EMPTY_P(NODE) (TYPE_CHECK (NODE)->type_common.empty_flag)
718 /* Used to indicate that this TYPE represents a compiler-generated entity. */
719 #define TYPE_ARTIFICIAL(NODE) (TYPE_CHECK (NODE)->base.nowarning_flag)
721 /* True if the type is indivisible at the source level, i.e. if its
722 component parts cannot be accessed directly. This is used to suppress
723 normal GNU extensions for target-specific vector types. */
724 #define TYPE_INDIVISIBLE_P(NODE) (TYPE_CHECK (NODE)->type_common.indivisible_p)
726 /* In an IDENTIFIER_NODE, this means that assemble_name was called with
727 this string as an argument. */
728 #define TREE_SYMBOL_REFERENCED(NODE) \
729 (IDENTIFIER_NODE_CHECK (NODE)->base.static_flag)
731 /* Nonzero in a pointer or reference type means the data pointed to
732 by this type can alias anything. */
733 #define TYPE_REF_CAN_ALIAS_ALL(NODE) \
734 (PTR_OR_REF_CHECK (NODE)->base.static_flag)
736 /* In an INTEGER_CST, REAL_CST, COMPLEX_CST, or VECTOR_CST, this means
737 there was an overflow in folding. */
739 #define TREE_OVERFLOW(NODE) (CST_CHECK (NODE)->base.public_flag)
741 /* TREE_OVERFLOW can only be true for EXPR of CONSTANT_CLASS_P. */
743 #define TREE_OVERFLOW_P(EXPR) \
744 (CONSTANT_CLASS_P (EXPR) && TREE_OVERFLOW (EXPR))
746 /* In a VAR_DECL, FUNCTION_DECL, NAMESPACE_DECL or TYPE_DECL,
747 nonzero means name is to be accessible from outside this translation unit.
748 In an IDENTIFIER_NODE, nonzero means an external declaration
749 accessible from outside this translation unit was previously seen
750 for this name in an inner scope. */
751 #define TREE_PUBLIC(NODE) ((NODE)->base.public_flag)
753 /* In a _TYPE, indicates whether TYPE_CACHED_VALUES contains a vector
754 of cached values, or is something else. */
755 #define TYPE_CACHED_VALUES_P(NODE) (TYPE_CHECK (NODE)->base.public_flag)
757 /* In a SAVE_EXPR, indicates that the original expression has already
758 been substituted with a VAR_DECL that contains the value. */
759 #define SAVE_EXPR_RESOLVED_P(NODE) \
760 (SAVE_EXPR_CHECK (NODE)->base.public_flag)
762 /* Set on a CALL_EXPR if this stdarg call should be passed the argument
763 pack. */
764 #define CALL_EXPR_VA_ARG_PACK(NODE) \
765 (CALL_EXPR_CHECK (NODE)->base.public_flag)
767 /* In any expression, decl, or constant, nonzero means it has side effects or
768 reevaluation of the whole expression could produce a different value.
769 This is set if any subexpression is a function call, a side effect or a
770 reference to a volatile variable. In a ..._DECL, this is set only if the
771 declaration said `volatile'. This will never be set for a constant. */
772 #define TREE_SIDE_EFFECTS(NODE) \
773 (NON_TYPE_CHECK (NODE)->base.side_effects_flag)
775 /* In a LABEL_DECL, nonzero means this label had its address taken
776 and therefore can never be deleted and is a jump target for
777 computed gotos. */
778 #define FORCED_LABEL(NODE) (LABEL_DECL_CHECK (NODE)->base.side_effects_flag)
780 /* Whether a case or a user-defined label is allowed to fall through to.
781 This is used to implement -Wimplicit-fallthrough. */
782 #define FALLTHROUGH_LABEL_P(NODE) \
783 (LABEL_DECL_CHECK (NODE)->base.private_flag)
785 /* Set on the artificial label created for break; stmt from a switch.
786 This is used to implement -Wimplicit-fallthrough. */
787 #define SWITCH_BREAK_LABEL_P(NODE) \
788 (LABEL_DECL_CHECK (NODE)->base.protected_flag)
790 /* Nonzero means this expression is volatile in the C sense:
791 its address should be of type `volatile WHATEVER *'.
792 In other words, the declared item is volatile qualified.
793 This is used in _DECL nodes and _REF nodes.
794 On a FUNCTION_DECL node, this means the function does not
795 return normally. This is the same effect as setting
796 the attribute noreturn on the function in C.
798 In a ..._TYPE node, means this type is volatile-qualified.
799 But use TYPE_VOLATILE instead of this macro when the node is a type,
800 because eventually we may make that a different bit.
802 If this bit is set in an expression, so is TREE_SIDE_EFFECTS. */
803 #define TREE_THIS_VOLATILE(NODE) ((NODE)->base.volatile_flag)
805 /* Nonzero means this node will not trap. In an INDIRECT_REF, means
806 accessing the memory pointed to won't generate a trap. However,
807 this only applies to an object when used appropriately: it doesn't
808 mean that writing a READONLY mem won't trap.
810 In ARRAY_REF and ARRAY_RANGE_REF means that we know that the index
811 (or slice of the array) always belongs to the range of the array.
812 I.e. that the access will not trap, provided that the access to
813 the base to the array will not trap. */
814 #define TREE_THIS_NOTRAP(NODE) \
815 (TREE_CHECK5 (NODE, INDIRECT_REF, MEM_REF, TARGET_MEM_REF, ARRAY_REF, \
816 ARRAY_RANGE_REF)->base.nothrow_flag)
818 /* In a VAR_DECL, PARM_DECL or FIELD_DECL, or any kind of ..._REF node,
819 nonzero means it may not be the lhs of an assignment.
820 Nonzero in a FUNCTION_DECL means this function should be treated
821 as "const" function (can only read its arguments). */
822 #define TREE_READONLY(NODE) (NON_TYPE_CHECK (NODE)->base.readonly_flag)
824 /* Value of expression is constant. Always on in all ..._CST nodes. May
825 also appear in an expression or decl where the value is constant. */
826 #define TREE_CONSTANT(NODE) (NON_TYPE_CHECK (NODE)->base.constant_flag)
828 /* Nonzero if NODE, a type, has had its sizes gimplified. */
829 #define TYPE_SIZES_GIMPLIFIED(NODE) \
830 (TYPE_CHECK (NODE)->base.constant_flag)
832 /* In a decl (most significantly a FIELD_DECL), means an unsigned field. */
833 #define DECL_UNSIGNED(NODE) \
834 (DECL_COMMON_CHECK (NODE)->base.u.bits.unsigned_flag)
836 /* In integral and pointer types, means an unsigned type. */
837 #define TYPE_UNSIGNED(NODE) (TYPE_CHECK (NODE)->base.u.bits.unsigned_flag)
839 /* Same as TYPE_UNSIGNED but converted to SIGNOP. */
840 #define TYPE_SIGN(NODE) ((signop) TYPE_UNSIGNED (NODE))
842 /* True if overflow wraps around for the given integral or pointer type. That
843 is, TYPE_MAX + 1 == TYPE_MIN. */
844 #define TYPE_OVERFLOW_WRAPS(TYPE) \
845 (POINTER_TYPE_P (TYPE) \
846 ? flag_wrapv_pointer \
847 : (ANY_INTEGRAL_TYPE_CHECK(TYPE)->base.u.bits.unsigned_flag \
848 || flag_wrapv))
850 /* True if overflow is undefined for the given integral or pointer type.
851 We may optimize on the assumption that values in the type never overflow.
853 IMPORTANT NOTE: Any optimization based on TYPE_OVERFLOW_UNDEFINED
854 must issue a warning based on warn_strict_overflow. In some cases
855 it will be appropriate to issue the warning immediately, and in
856 other cases it will be appropriate to simply set a flag and let the
857 caller decide whether a warning is appropriate or not. */
858 #define TYPE_OVERFLOW_UNDEFINED(TYPE) \
859 (POINTER_TYPE_P (TYPE) \
860 ? !flag_wrapv_pointer \
861 : (!ANY_INTEGRAL_TYPE_CHECK(TYPE)->base.u.bits.unsigned_flag \
862 && !flag_wrapv && !flag_trapv))
864 /* True if overflow for the given integral type should issue a
865 trap. */
866 #define TYPE_OVERFLOW_TRAPS(TYPE) \
867 (!ANY_INTEGRAL_TYPE_CHECK(TYPE)->base.u.bits.unsigned_flag && flag_trapv)
869 /* True if an overflow is to be preserved for sanitization. */
870 #define TYPE_OVERFLOW_SANITIZED(TYPE) \
871 (INTEGRAL_TYPE_P (TYPE) \
872 && !TYPE_OVERFLOW_WRAPS (TYPE) \
873 && (flag_sanitize & SANITIZE_SI_OVERFLOW))
875 /* Nonzero in a VAR_DECL or STRING_CST means assembler code has been written.
876 Nonzero in a FUNCTION_DECL means that the function has been compiled.
877 This is interesting in an inline function, since it might not need
878 to be compiled separately.
879 Nonzero in a RECORD_TYPE, UNION_TYPE, QUAL_UNION_TYPE, ENUMERAL_TYPE
880 or TYPE_DECL if the debugging info for the type has been written.
881 In a BLOCK node, nonzero if reorder_blocks has already seen this block.
882 In an SSA_NAME node, nonzero if the SSA_NAME occurs in an abnormal
883 PHI node. */
884 #define TREE_ASM_WRITTEN(NODE) ((NODE)->base.asm_written_flag)
886 /* Nonzero in a _DECL if the name is used in its scope.
887 Nonzero in an expr node means inhibit warning if value is unused.
888 In IDENTIFIER_NODEs, this means that some extern decl for this name
889 was used.
890 In a BLOCK, this means that the block contains variables that are used. */
891 #define TREE_USED(NODE) ((NODE)->base.used_flag)
893 /* In a FUNCTION_DECL, nonzero means a call to the function cannot
894 throw an exception. In a CALL_EXPR, nonzero means the call cannot
895 throw. We can't easily check the node type here as the C++
896 frontend also uses this flag (for AGGR_INIT_EXPR). */
897 #define TREE_NOTHROW(NODE) ((NODE)->base.nothrow_flag)
899 /* In a CALL_EXPR, means that it's safe to use the target of the call
900 expansion as the return slot for a call that returns in memory. */
901 #define CALL_EXPR_RETURN_SLOT_OPT(NODE) \
902 (CALL_EXPR_CHECK (NODE)->base.private_flag)
904 /* In a RESULT_DECL, PARM_DECL and VAR_DECL, means that it is
905 passed by invisible reference (and the TREE_TYPE is a pointer to the true
906 type). */
907 #define DECL_BY_REFERENCE(NODE) \
908 (TREE_CHECK3 (NODE, VAR_DECL, PARM_DECL, \
909 RESULT_DECL)->decl_common.decl_by_reference_flag)
911 /* In VAR_DECL and PARM_DECL, set when the decl has been used except for
912 being set. */
913 #define DECL_READ_P(NODE) \
914 (TREE_CHECK2 (NODE, VAR_DECL, PARM_DECL)->decl_common.decl_read_flag)
916 /* In VAR_DECL or RESULT_DECL, set when significant code movement precludes
917 attempting to share the stack slot with some other variable. */
918 #define DECL_NONSHAREABLE(NODE) \
919 (TREE_CHECK2 (NODE, VAR_DECL, \
920 RESULT_DECL)->decl_common.decl_nonshareable_flag)
922 /* In a PARM_DECL, set for Fortran hidden string length arguments that some
923 buggy callers don't pass to the callee. */
924 #define DECL_HIDDEN_STRING_LENGTH(NODE) \
925 (TREE_CHECK (NODE, PARM_DECL)->decl_common.decl_nonshareable_flag)
927 /* In a CALL_EXPR, means that the call is the jump from a thunk to the
928 thunked-to function. Be careful to avoid using this macro when one of the
929 next two applies instead. */
930 #define CALL_FROM_THUNK_P(NODE) (CALL_EXPR_CHECK (NODE)->base.protected_flag)
932 /* In a CALL_EXPR, if the function being called is BUILT_IN_ALLOCA, means that
933 it has been built for the declaration of a variable-sized object and, if the
934 function being called is BUILT_IN_MEMCPY, means that it has been built for
935 the assignment of a variable-sized object. */
936 #define CALL_ALLOCA_FOR_VAR_P(NODE) \
937 (CALL_EXPR_CHECK (NODE)->base.protected_flag)
939 /* In a CALL_EXPR, if the function being called is DECL_IS_OPERATOR_NEW_P or
940 DECL_IS_OPERATOR_DELETE_P, true for allocator calls from C++ new or delete
941 expressions. Not set for C++20 destroying delete operators. */
942 #define CALL_FROM_NEW_OR_DELETE_P(NODE) \
943 (CALL_EXPR_CHECK (NODE)->base.protected_flag)
945 /* Used in classes in C++. */
946 #define TREE_PRIVATE(NODE) ((NODE)->base.private_flag)
947 /* Used in classes in C++. */
948 #define TREE_PROTECTED(NODE) ((NODE)->base.protected_flag)
950 /* True if reference type NODE is a C++ rvalue reference. */
951 #define TYPE_REF_IS_RVALUE(NODE) \
952 (REFERENCE_TYPE_CHECK (NODE)->base.private_flag)
954 /* Nonzero in a _DECL if the use of the name is defined as a
955 deprecated feature by __attribute__((deprecated)). */
956 #define TREE_DEPRECATED(NODE) \
957 ((NODE)->base.deprecated_flag)
959 /* Nonzero indicates an IDENTIFIER_NODE that names an anonymous
960 aggregate, (as created by anon_aggr_name_format). */
961 #define IDENTIFIER_ANON_P(NODE) \
962 (IDENTIFIER_NODE_CHECK (NODE)->base.private_flag)
964 /* Nonzero in an IDENTIFIER_NODE if the name is a local alias, whose
965 uses are to be substituted for uses of the TREE_CHAINed identifier. */
966 #define IDENTIFIER_TRANSPARENT_ALIAS(NODE) \
967 (IDENTIFIER_NODE_CHECK (NODE)->base.deprecated_flag)
969 /* In an aggregate type, indicates that the scalar fields of the type are
970 stored in reverse order from the target order. This effectively
971 toggles BYTES_BIG_ENDIAN and WORDS_BIG_ENDIAN within the type. */
972 #define TYPE_REVERSE_STORAGE_ORDER(NODE) \
973 (TREE_CHECK4 (NODE, RECORD_TYPE, UNION_TYPE, QUAL_UNION_TYPE, ARRAY_TYPE)->base.u.bits.saturating_flag)
975 /* In a non-aggregate type, indicates a saturating type. */
976 #define TYPE_SATURATING(NODE) \
977 (TREE_NOT_CHECK4 (NODE, RECORD_TYPE, UNION_TYPE, QUAL_UNION_TYPE, ARRAY_TYPE)->base.u.bits.saturating_flag)
979 /* In a BIT_FIELD_REF and MEM_REF, indicates that the reference is to a group
980 of bits stored in reverse order from the target order. This effectively
981 toggles both BYTES_BIG_ENDIAN and WORDS_BIG_ENDIAN for the reference.
983 The overall strategy is to preserve the invariant that every scalar in
984 memory is associated with a single storage order, i.e. all accesses to
985 this scalar are done with the same storage order. This invariant makes
986 it possible to factor out the storage order in most transformations, as
987 only the address and/or the value (in target order) matter for them.
988 But, of course, the storage order must be preserved when the accesses
989 themselves are rewritten or transformed. */
990 #define REF_REVERSE_STORAGE_ORDER(NODE) \
991 (TREE_CHECK2 (NODE, BIT_FIELD_REF, MEM_REF)->base.default_def_flag)
993 /* In an ADDR_EXPR, indicates that this is a pointer to nested function
994 represented by a descriptor instead of a trampoline. */
995 #define FUNC_ADDR_BY_DESCRIPTOR(NODE) \
996 (TREE_CHECK (NODE, ADDR_EXPR)->base.default_def_flag)
998 /* In a CALL_EXPR, indicates that this is an indirect call for which
999 pointers to nested function are descriptors instead of trampolines. */
1000 #define CALL_EXPR_BY_DESCRIPTOR(NODE) \
1001 (TREE_CHECK (NODE, CALL_EXPR)->base.default_def_flag)
1003 /* These flags are available for each language front end to use internally. */
1004 #define TREE_LANG_FLAG_0(NODE) \
1005 (TREE_NOT_CHECK2 (NODE, TREE_VEC, SSA_NAME)->base.u.bits.lang_flag_0)
1006 #define TREE_LANG_FLAG_1(NODE) \
1007 (TREE_NOT_CHECK2 (NODE, TREE_VEC, SSA_NAME)->base.u.bits.lang_flag_1)
1008 #define TREE_LANG_FLAG_2(NODE) \
1009 (TREE_NOT_CHECK2 (NODE, TREE_VEC, SSA_NAME)->base.u.bits.lang_flag_2)
1010 #define TREE_LANG_FLAG_3(NODE) \
1011 (TREE_NOT_CHECK2 (NODE, TREE_VEC, SSA_NAME)->base.u.bits.lang_flag_3)
1012 #define TREE_LANG_FLAG_4(NODE) \
1013 (TREE_NOT_CHECK2 (NODE, TREE_VEC, SSA_NAME)->base.u.bits.lang_flag_4)
1014 #define TREE_LANG_FLAG_5(NODE) \
1015 (TREE_NOT_CHECK2 (NODE, TREE_VEC, SSA_NAME)->base.u.bits.lang_flag_5)
1016 #define TREE_LANG_FLAG_6(NODE) \
1017 (TREE_NOT_CHECK2 (NODE, TREE_VEC, SSA_NAME)->base.u.bits.lang_flag_6)
1019 /* Define additional fields and accessors for nodes representing constants. */
1021 #define TREE_INT_CST_NUNITS(NODE) \
1022 (INTEGER_CST_CHECK (NODE)->base.u.int_length.unextended)
1023 #define TREE_INT_CST_EXT_NUNITS(NODE) \
1024 (INTEGER_CST_CHECK (NODE)->base.u.int_length.extended)
1025 #define TREE_INT_CST_OFFSET_NUNITS(NODE) \
1026 (INTEGER_CST_CHECK (NODE)->base.u.int_length.offset)
1027 #define TREE_INT_CST_ELT(NODE, I) TREE_INT_CST_ELT_CHECK (NODE, I)
1028 #define TREE_INT_CST_LOW(NODE) \
1029 ((unsigned HOST_WIDE_INT) TREE_INT_CST_ELT (NODE, 0))
1031 /* Return true if NODE is a POLY_INT_CST. This is only ever true on
1032 targets with variable-sized modes. */
1033 #define POLY_INT_CST_P(NODE) \
1034 (NUM_POLY_INT_COEFFS > 1 && TREE_CODE (NODE) == POLY_INT_CST)
1036 /* In a POLY_INT_CST node. */
1037 #define POLY_INT_CST_COEFF(NODE, I) \
1038 (POLY_INT_CST_CHECK (NODE)->poly_int_cst.coeffs[I])
1040 #define TREE_REAL_CST_PTR(NODE) (REAL_CST_CHECK (NODE)->real_cst.real_cst_ptr)
1041 #define TREE_REAL_CST(NODE) (*TREE_REAL_CST_PTR (NODE))
1043 #define TREE_FIXED_CST_PTR(NODE) \
1044 (FIXED_CST_CHECK (NODE)->fixed_cst.fixed_cst_ptr)
1045 #define TREE_FIXED_CST(NODE) (*TREE_FIXED_CST_PTR (NODE))
1047 /* In a STRING_CST */
1048 /* In C terms, this is sizeof, not strlen. */
1049 #define TREE_STRING_LENGTH(NODE) (STRING_CST_CHECK (NODE)->string.length)
1050 #define TREE_STRING_POINTER(NODE) \
1051 ((const char *)(STRING_CST_CHECK (NODE)->string.str))
1053 /* In a COMPLEX_CST node. */
1054 #define TREE_REALPART(NODE) (COMPLEX_CST_CHECK (NODE)->complex.real)
1055 #define TREE_IMAGPART(NODE) (COMPLEX_CST_CHECK (NODE)->complex.imag)
1057 /* In a VECTOR_CST node. See generic.texi for details. */
1058 #define VECTOR_CST_NELTS(NODE) (TYPE_VECTOR_SUBPARTS (TREE_TYPE (NODE)))
1059 #define VECTOR_CST_ELT(NODE,IDX) vector_cst_elt (NODE, IDX)
1061 #define VECTOR_CST_LOG2_NPATTERNS(NODE) \
1062 (VECTOR_CST_CHECK (NODE)->base.u.vector_cst.log2_npatterns)
1063 #define VECTOR_CST_NPATTERNS(NODE) \
1064 (1U << VECTOR_CST_LOG2_NPATTERNS (NODE))
1065 #define VECTOR_CST_NELTS_PER_PATTERN(NODE) \
1066 (VECTOR_CST_CHECK (NODE)->base.u.vector_cst.nelts_per_pattern)
1067 #define VECTOR_CST_DUPLICATE_P(NODE) \
1068 (VECTOR_CST_NELTS_PER_PATTERN (NODE) == 1)
1069 #define VECTOR_CST_STEPPED_P(NODE) \
1070 (VECTOR_CST_NELTS_PER_PATTERN (NODE) == 3)
1071 #define VECTOR_CST_ENCODED_ELTS(NODE) \
1072 (VECTOR_CST_CHECK (NODE)->vector.elts)
1073 #define VECTOR_CST_ENCODED_ELT(NODE, ELT) \
1074 (VECTOR_CST_CHECK (NODE)->vector.elts[ELT])
1076 /* Define fields and accessors for some special-purpose tree nodes. */
1078 #define IDENTIFIER_LENGTH(NODE) \
1079 (IDENTIFIER_NODE_CHECK (NODE)->identifier.id.len)
1080 #define IDENTIFIER_POINTER(NODE) \
1081 ((const char *) IDENTIFIER_NODE_CHECK (NODE)->identifier.id.str)
1082 #define IDENTIFIER_HASH_VALUE(NODE) \
1083 (IDENTIFIER_NODE_CHECK (NODE)->identifier.id.hash_value)
1085 /* Translate a hash table identifier pointer to a tree_identifier
1086 pointer, and vice versa. */
1088 #define HT_IDENT_TO_GCC_IDENT(NODE) \
1089 ((tree) ((char *) (NODE) - sizeof (struct tree_common)))
1090 #define GCC_IDENT_TO_HT_IDENT(NODE) (&((struct tree_identifier *) (NODE))->id)
1092 /* In a TREE_LIST node. */
1093 #define TREE_PURPOSE(NODE) (TREE_LIST_CHECK (NODE)->list.purpose)
1094 #define TREE_VALUE(NODE) (TREE_LIST_CHECK (NODE)->list.value)
1096 /* In a TREE_VEC node. */
1097 #define TREE_VEC_LENGTH(NODE) (TREE_VEC_CHECK (NODE)->base.u.length)
1098 #define TREE_VEC_END(NODE) \
1099 ((void) TREE_VEC_CHECK (NODE), &((NODE)->vec.a[(NODE)->vec.base.u.length]))
1101 #define TREE_VEC_ELT(NODE,I) TREE_VEC_ELT_CHECK (NODE, I)
1103 /* In a CONSTRUCTOR node. */
1104 #define CONSTRUCTOR_ELTS(NODE) (CONSTRUCTOR_CHECK (NODE)->constructor.elts)
1105 #define CONSTRUCTOR_ELT(NODE,IDX) \
1106 (&(*CONSTRUCTOR_ELTS (NODE))[IDX])
1107 #define CONSTRUCTOR_NELTS(NODE) \
1108 (vec_safe_length (CONSTRUCTOR_ELTS (NODE)))
1109 #define CONSTRUCTOR_NO_CLEARING(NODE) \
1110 (CONSTRUCTOR_CHECK (NODE)->base.public_flag)
1112 /* Iterate through the vector V of CONSTRUCTOR_ELT elements, yielding the
1113 value of each element (stored within VAL). IX must be a scratch variable
1114 of unsigned integer type. */
1115 #define FOR_EACH_CONSTRUCTOR_VALUE(V, IX, VAL) \
1116 for (IX = 0; (IX >= vec_safe_length (V)) \
1117 ? false \
1118 : ((VAL = (*(V))[IX].value), \
1119 true); \
1120 (IX)++)
1122 /* Iterate through the vector V of CONSTRUCTOR_ELT elements, yielding both
1123 the value of each element (stored within VAL) and its index (stored
1124 within INDEX). IX must be a scratch variable of unsigned integer type. */
1125 #define FOR_EACH_CONSTRUCTOR_ELT(V, IX, INDEX, VAL) \
1126 for (IX = 0; (IX >= vec_safe_length (V)) \
1127 ? false \
1128 : (((void) (VAL = (*V)[IX].value)), \
1129 (INDEX = (*V)[IX].index), \
1130 true); \
1131 (IX)++)
1133 /* Append a new constructor element to V, with the specified INDEX and VAL. */
1134 #define CONSTRUCTOR_APPEND_ELT(V, INDEX, VALUE) \
1135 do { \
1136 constructor_elt _ce___ = {INDEX, VALUE}; \
1137 vec_safe_push ((V), _ce___); \
1138 } while (0)
1140 /* True if NODE, a FIELD_DECL, is to be processed as a bitfield for
1141 constructor output purposes. */
1142 #define CONSTRUCTOR_BITFIELD_P(NODE) \
1143 (DECL_BIT_FIELD (FIELD_DECL_CHECK (NODE)) && DECL_MODE (NODE) != BLKmode)
1145 /* True if NODE is a clobber right hand side, an expression of indeterminate
1146 value that clobbers the LHS in a copy instruction. We use a volatile
1147 empty CONSTRUCTOR for this, as it matches most of the necessary semantic.
1148 In particular the volatile flag causes us to not prematurely remove
1149 such clobber instructions. */
1150 #define TREE_CLOBBER_P(NODE) \
1151 (TREE_CODE (NODE) == CONSTRUCTOR && TREE_THIS_VOLATILE (NODE))
1153 /* Define fields and accessors for some nodes that represent expressions. */
1155 /* Nonzero if NODE is an empty statement (NOP_EXPR <0>). */
1156 #define IS_EMPTY_STMT(NODE) (TREE_CODE (NODE) == NOP_EXPR \
1157 && VOID_TYPE_P (TREE_TYPE (NODE)) \
1158 && integer_zerop (TREE_OPERAND (NODE, 0)))
1160 /* In ordinary expression nodes. */
1161 #define TREE_OPERAND_LENGTH(NODE) tree_operand_length (NODE)
1162 #define TREE_OPERAND(NODE, I) TREE_OPERAND_CHECK (NODE, I)
1164 /* In a tcc_vl_exp node, operand 0 is an INT_CST node holding the operand
1165 length. Its value includes the length operand itself; that is,
1166 the minimum valid length is 1.
1167 Note that we have to bypass the use of TREE_OPERAND to access
1168 that field to avoid infinite recursion in expanding the macros. */
1169 #define VL_EXP_OPERAND_LENGTH(NODE) \
1170 ((int)TREE_INT_CST_LOW (VL_EXP_CHECK (NODE)->exp.operands[0]))
1172 /* Nonzero if gimple_debug_nonbind_marker_p() may possibly hold. */
1173 #define MAY_HAVE_DEBUG_MARKER_STMTS debug_nonbind_markers_p
1174 /* Nonzero if gimple_debug_bind_p() (and thus
1175 gimple_debug_source_bind_p()) may possibly hold. */
1176 #define MAY_HAVE_DEBUG_BIND_STMTS flag_var_tracking_assignments
1177 /* Nonzero if is_gimple_debug() may possibly hold. */
1178 #define MAY_HAVE_DEBUG_STMTS \
1179 (MAY_HAVE_DEBUG_MARKER_STMTS || MAY_HAVE_DEBUG_BIND_STMTS)
1181 /* In a LOOP_EXPR node. */
1182 #define LOOP_EXPR_BODY(NODE) TREE_OPERAND_CHECK_CODE (NODE, LOOP_EXPR, 0)
1184 /* The source location of this expression. Non-tree_exp nodes such as
1185 decls and constants can be shared among multiple locations, so
1186 return nothing. */
1187 #define EXPR_LOCATION(NODE) \
1188 (CAN_HAVE_LOCATION_P ((NODE)) ? (NODE)->exp.locus : UNKNOWN_LOCATION)
1189 #define SET_EXPR_LOCATION(NODE, LOCUS) EXPR_CHECK ((NODE))->exp.locus = (LOCUS)
1190 #define EXPR_HAS_LOCATION(NODE) (LOCATION_LOCUS (EXPR_LOCATION (NODE)) \
1191 != UNKNOWN_LOCATION)
1192 /* The location to be used in a diagnostic about this expression. Do not
1193 use this macro if the location will be assigned to other expressions. */
1194 #define EXPR_LOC_OR_LOC(NODE, LOCUS) (EXPR_HAS_LOCATION (NODE) \
1195 ? (NODE)->exp.locus : (LOCUS))
1196 #define EXPR_FILENAME(NODE) LOCATION_FILE (EXPR_CHECK ((NODE))->exp.locus)
1197 #define EXPR_LINENO(NODE) LOCATION_LINE (EXPR_CHECK (NODE)->exp.locus)
1199 #define CAN_HAVE_RANGE_P(NODE) (CAN_HAVE_LOCATION_P (NODE))
1200 #define EXPR_LOCATION_RANGE(NODE) (get_expr_source_range (EXPR_CHECK ((NODE))))
1202 #define EXPR_HAS_RANGE(NODE) \
1203 (CAN_HAVE_RANGE_P (NODE) \
1204 ? EXPR_LOCATION_RANGE (NODE).m_start != UNKNOWN_LOCATION \
1205 : false)
1207 /* True if a tree is an expression or statement that can have a
1208 location. */
1209 #define CAN_HAVE_LOCATION_P(NODE) ((NODE) && EXPR_P (NODE))
1211 static inline source_range
1212 get_expr_source_range (tree expr)
1214 location_t loc = EXPR_LOCATION (expr);
1215 return get_range_from_loc (line_table, loc);
1218 extern void protected_set_expr_location (tree, location_t);
1219 extern void protected_set_expr_location_if_unset (tree, location_t);
1221 WARN_UNUSED_RESULT extern tree maybe_wrap_with_location (tree, location_t);
1223 extern int suppress_location_wrappers;
1225 /* A class for suppressing the creation of location wrappers.
1226 Location wrappers will not be created during the lifetime
1227 of an instance of this class. */
1229 class auto_suppress_location_wrappers
1231 public:
1232 auto_suppress_location_wrappers () { ++suppress_location_wrappers; }
1233 ~auto_suppress_location_wrappers () { --suppress_location_wrappers; }
1236 /* In a TARGET_EXPR node. */
1237 #define TARGET_EXPR_SLOT(NODE) TREE_OPERAND_CHECK_CODE (NODE, TARGET_EXPR, 0)
1238 #define TARGET_EXPR_INITIAL(NODE) TREE_OPERAND_CHECK_CODE (NODE, TARGET_EXPR, 1)
1239 #define TARGET_EXPR_CLEANUP(NODE) TREE_OPERAND_CHECK_CODE (NODE, TARGET_EXPR, 2)
1240 /* Don't elide the initialization of TARGET_EXPR_SLOT for this TARGET_EXPR
1241 on rhs of MODIFY_EXPR. */
1242 #define TARGET_EXPR_NO_ELIDE(NODE) (TARGET_EXPR_CHECK (NODE)->base.private_flag)
1244 /* DECL_EXPR accessor. This gives access to the DECL associated with
1245 the given declaration statement. */
1246 #define DECL_EXPR_DECL(NODE) TREE_OPERAND (DECL_EXPR_CHECK (NODE), 0)
1248 #define EXIT_EXPR_COND(NODE) TREE_OPERAND (EXIT_EXPR_CHECK (NODE), 0)
1250 /* COMPOUND_LITERAL_EXPR accessors. */
1251 #define COMPOUND_LITERAL_EXPR_DECL_EXPR(NODE) \
1252 TREE_OPERAND (COMPOUND_LITERAL_EXPR_CHECK (NODE), 0)
1253 #define COMPOUND_LITERAL_EXPR_DECL(NODE) \
1254 DECL_EXPR_DECL (COMPOUND_LITERAL_EXPR_DECL_EXPR (NODE))
1256 /* SWITCH_EXPR accessors. These give access to the condition and body. */
1257 #define SWITCH_COND(NODE) TREE_OPERAND (SWITCH_EXPR_CHECK (NODE), 0)
1258 #define SWITCH_BODY(NODE) TREE_OPERAND (SWITCH_EXPR_CHECK (NODE), 1)
1259 /* True if there are case labels for all possible values of SWITCH_COND, either
1260 because there is a default: case label or because the case label ranges cover
1261 all values. */
1262 #define SWITCH_ALL_CASES_P(NODE) (SWITCH_EXPR_CHECK (NODE)->base.private_flag)
1264 /* CASE_LABEL_EXPR accessors. These give access to the high and low values
1265 of a case label, respectively. */
1266 #define CASE_LOW(NODE) TREE_OPERAND (CASE_LABEL_EXPR_CHECK (NODE), 0)
1267 #define CASE_HIGH(NODE) TREE_OPERAND (CASE_LABEL_EXPR_CHECK (NODE), 1)
1268 #define CASE_LABEL(NODE) TREE_OPERAND (CASE_LABEL_EXPR_CHECK (NODE), 2)
1269 #define CASE_CHAIN(NODE) TREE_OPERAND (CASE_LABEL_EXPR_CHECK (NODE), 3)
1271 /* The operands of a TARGET_MEM_REF. Operands 0 and 1 have to match
1272 corresponding MEM_REF operands. */
1273 #define TMR_BASE(NODE) (TREE_OPERAND (TARGET_MEM_REF_CHECK (NODE), 0))
1274 #define TMR_OFFSET(NODE) (TREE_OPERAND (TARGET_MEM_REF_CHECK (NODE), 1))
1275 #define TMR_INDEX(NODE) (TREE_OPERAND (TARGET_MEM_REF_CHECK (NODE), 2))
1276 #define TMR_STEP(NODE) (TREE_OPERAND (TARGET_MEM_REF_CHECK (NODE), 3))
1277 #define TMR_INDEX2(NODE) (TREE_OPERAND (TARGET_MEM_REF_CHECK (NODE), 4))
1279 #define MR_DEPENDENCE_CLIQUE(NODE) \
1280 (TREE_CHECK2 (NODE, MEM_REF, TARGET_MEM_REF)->base.u.dependence_info.clique)
1281 #define MR_DEPENDENCE_BASE(NODE) \
1282 (TREE_CHECK2 (NODE, MEM_REF, TARGET_MEM_REF)->base.u.dependence_info.base)
1284 /* The operands of a BIND_EXPR. */
1285 #define BIND_EXPR_VARS(NODE) (TREE_OPERAND (BIND_EXPR_CHECK (NODE), 0))
1286 #define BIND_EXPR_BODY(NODE) (TREE_OPERAND (BIND_EXPR_CHECK (NODE), 1))
1287 #define BIND_EXPR_BLOCK(NODE) (TREE_OPERAND (BIND_EXPR_CHECK (NODE), 2))
1289 /* GOTO_EXPR accessor. This gives access to the label associated with
1290 a goto statement. */
1291 #define GOTO_DESTINATION(NODE) TREE_OPERAND (GOTO_EXPR_CHECK (NODE), 0)
1293 /* ASM_EXPR accessors. ASM_STRING returns a STRING_CST for the
1294 instruction (e.g., "mov x, y"). ASM_OUTPUTS, ASM_INPUTS, and
1295 ASM_CLOBBERS represent the outputs, inputs, and clobbers for the
1296 statement. */
1297 #define ASM_STRING(NODE) TREE_OPERAND (ASM_EXPR_CHECK (NODE), 0)
1298 #define ASM_OUTPUTS(NODE) TREE_OPERAND (ASM_EXPR_CHECK (NODE), 1)
1299 #define ASM_INPUTS(NODE) TREE_OPERAND (ASM_EXPR_CHECK (NODE), 2)
1300 #define ASM_CLOBBERS(NODE) TREE_OPERAND (ASM_EXPR_CHECK (NODE), 3)
1301 #define ASM_LABELS(NODE) TREE_OPERAND (ASM_EXPR_CHECK (NODE), 4)
1302 /* Nonzero if we want to create an ASM_INPUT instead of an
1303 ASM_OPERAND with no operands. */
1304 #define ASM_INPUT_P(NODE) (ASM_EXPR_CHECK (NODE)->base.static_flag)
1305 #define ASM_VOLATILE_P(NODE) (ASM_EXPR_CHECK (NODE)->base.public_flag)
1306 /* Nonzero if we want to consider this asm as minimum length and cost
1307 for inlining decisions. */
1308 #define ASM_INLINE_P(NODE) (ASM_EXPR_CHECK (NODE)->base.protected_flag)
1310 /* COND_EXPR accessors. */
1311 #define COND_EXPR_COND(NODE) (TREE_OPERAND (COND_EXPR_CHECK (NODE), 0))
1312 #define COND_EXPR_THEN(NODE) (TREE_OPERAND (COND_EXPR_CHECK (NODE), 1))
1313 #define COND_EXPR_ELSE(NODE) (TREE_OPERAND (COND_EXPR_CHECK (NODE), 2))
1315 /* Accessors for the chains of recurrences. */
1316 #define CHREC_LEFT(NODE) TREE_OPERAND (POLYNOMIAL_CHREC_CHECK (NODE), 0)
1317 #define CHREC_RIGHT(NODE) TREE_OPERAND (POLYNOMIAL_CHREC_CHECK (NODE), 1)
1318 #define CHREC_VARIABLE(NODE) POLYNOMIAL_CHREC_CHECK (NODE)->base.u.chrec_var
1320 /* LABEL_EXPR accessor. This gives access to the label associated with
1321 the given label expression. */
1322 #define LABEL_EXPR_LABEL(NODE) TREE_OPERAND (LABEL_EXPR_CHECK (NODE), 0)
1324 /* CATCH_EXPR accessors. */
1325 #define CATCH_TYPES(NODE) TREE_OPERAND (CATCH_EXPR_CHECK (NODE), 0)
1326 #define CATCH_BODY(NODE) TREE_OPERAND (CATCH_EXPR_CHECK (NODE), 1)
1328 /* EH_FILTER_EXPR accessors. */
1329 #define EH_FILTER_TYPES(NODE) TREE_OPERAND (EH_FILTER_EXPR_CHECK (NODE), 0)
1330 #define EH_FILTER_FAILURE(NODE) TREE_OPERAND (EH_FILTER_EXPR_CHECK (NODE), 1)
1332 /* OBJ_TYPE_REF accessors. */
1333 #define OBJ_TYPE_REF_EXPR(NODE) TREE_OPERAND (OBJ_TYPE_REF_CHECK (NODE), 0)
1334 #define OBJ_TYPE_REF_OBJECT(NODE) TREE_OPERAND (OBJ_TYPE_REF_CHECK (NODE), 1)
1335 #define OBJ_TYPE_REF_TOKEN(NODE) TREE_OPERAND (OBJ_TYPE_REF_CHECK (NODE), 2)
1337 /* ASSERT_EXPR accessors. */
1338 #define ASSERT_EXPR_VAR(NODE) TREE_OPERAND (ASSERT_EXPR_CHECK (NODE), 0)
1339 #define ASSERT_EXPR_COND(NODE) TREE_OPERAND (ASSERT_EXPR_CHECK (NODE), 1)
1341 /* CALL_EXPR accessors. */
1342 #define CALL_EXPR_FN(NODE) TREE_OPERAND (CALL_EXPR_CHECK (NODE), 1)
1343 #define CALL_EXPR_STATIC_CHAIN(NODE) TREE_OPERAND (CALL_EXPR_CHECK (NODE), 2)
1344 #define CALL_EXPR_ARG(NODE, I) TREE_OPERAND (CALL_EXPR_CHECK (NODE), (I) + 3)
1345 #define call_expr_nargs(NODE) (VL_EXP_OPERAND_LENGTH (NODE) - 3)
1346 #define CALL_EXPR_IFN(NODE) (CALL_EXPR_CHECK (NODE)->base.u.ifn)
1348 /* CALL_EXPR_ARGP returns a pointer to the argument vector for NODE.
1349 We can't use &CALL_EXPR_ARG (NODE, 0) because that will complain if
1350 the argument count is zero when checking is enabled. Instead, do
1351 the pointer arithmetic to advance past the 3 fixed operands in a
1352 CALL_EXPR. That produces a valid pointer to just past the end of the
1353 operand array, even if it's not valid to dereference it. */
1354 #define CALL_EXPR_ARGP(NODE) \
1355 (&(TREE_OPERAND (CALL_EXPR_CHECK (NODE), 0)) + 3)
1357 /* TM directives and accessors. */
1358 #define TRANSACTION_EXPR_BODY(NODE) \
1359 TREE_OPERAND (TRANSACTION_EXPR_CHECK (NODE), 0)
1360 #define TRANSACTION_EXPR_OUTER(NODE) \
1361 (TRANSACTION_EXPR_CHECK (NODE)->base.static_flag)
1362 #define TRANSACTION_EXPR_RELAXED(NODE) \
1363 (TRANSACTION_EXPR_CHECK (NODE)->base.public_flag)
1365 /* OpenMP and OpenACC directive and clause accessors. */
1367 /* Generic accessors for OMP nodes that keep the body as operand 0, and clauses
1368 as operand 1. */
1369 #define OMP_BODY(NODE) \
1370 TREE_OPERAND (TREE_RANGE_CHECK (NODE, OACC_PARALLEL, OMP_MASTER), 0)
1371 #define OMP_CLAUSES(NODE) \
1372 TREE_OPERAND (TREE_RANGE_CHECK (NODE, OACC_PARALLEL, OMP_SCAN), 1)
1374 /* Generic accessors for OMP nodes that keep clauses as operand 0. */
1375 #define OMP_STANDALONE_CLAUSES(NODE) \
1376 TREE_OPERAND (TREE_RANGE_CHECK (NODE, OACC_CACHE, OMP_TARGET_EXIT_DATA), 0)
1378 #define OACC_DATA_BODY(NODE) \
1379 TREE_OPERAND (OACC_DATA_CHECK (NODE), 0)
1380 #define OACC_DATA_CLAUSES(NODE) \
1381 TREE_OPERAND (OACC_DATA_CHECK (NODE), 1)
1383 #define OACC_HOST_DATA_BODY(NODE) \
1384 TREE_OPERAND (OACC_HOST_DATA_CHECK (NODE), 0)
1385 #define OACC_HOST_DATA_CLAUSES(NODE) \
1386 TREE_OPERAND (OACC_HOST_DATA_CHECK (NODE), 1)
1388 #define OACC_CACHE_CLAUSES(NODE) \
1389 TREE_OPERAND (OACC_CACHE_CHECK (NODE), 0)
1391 #define OACC_DECLARE_CLAUSES(NODE) \
1392 TREE_OPERAND (OACC_DECLARE_CHECK (NODE), 0)
1394 #define OACC_ENTER_DATA_CLAUSES(NODE) \
1395 TREE_OPERAND (OACC_ENTER_DATA_CHECK (NODE), 0)
1397 #define OACC_EXIT_DATA_CLAUSES(NODE) \
1398 TREE_OPERAND (OACC_EXIT_DATA_CHECK (NODE), 0)
1400 #define OACC_UPDATE_CLAUSES(NODE) \
1401 TREE_OPERAND (OACC_UPDATE_CHECK (NODE), 0)
1403 #define OMP_PARALLEL_BODY(NODE) TREE_OPERAND (OMP_PARALLEL_CHECK (NODE), 0)
1404 #define OMP_PARALLEL_CLAUSES(NODE) TREE_OPERAND (OMP_PARALLEL_CHECK (NODE), 1)
1406 #define OMP_TASK_BODY(NODE) TREE_OPERAND (OMP_TASK_CHECK (NODE), 0)
1407 #define OMP_TASK_CLAUSES(NODE) TREE_OPERAND (OMP_TASK_CHECK (NODE), 1)
1409 #define OMP_TASKREG_CHECK(NODE) TREE_RANGE_CHECK (NODE, OMP_PARALLEL, OMP_TASK)
1410 #define OMP_TASKREG_BODY(NODE) TREE_OPERAND (OMP_TASKREG_CHECK (NODE), 0)
1411 #define OMP_TASKREG_CLAUSES(NODE) TREE_OPERAND (OMP_TASKREG_CHECK (NODE), 1)
1413 #define OMP_LOOPING_CHECK(NODE) TREE_RANGE_CHECK (NODE, OMP_FOR, OACC_LOOP)
1414 #define OMP_FOR_BODY(NODE) TREE_OPERAND (OMP_LOOPING_CHECK (NODE), 0)
1415 #define OMP_FOR_CLAUSES(NODE) TREE_OPERAND (OMP_LOOPING_CHECK (NODE), 1)
1416 #define OMP_FOR_INIT(NODE) TREE_OPERAND (OMP_LOOPING_CHECK (NODE), 2)
1417 #define OMP_FOR_COND(NODE) TREE_OPERAND (OMP_LOOPING_CHECK (NODE), 3)
1418 #define OMP_FOR_INCR(NODE) TREE_OPERAND (OMP_LOOPING_CHECK (NODE), 4)
1419 #define OMP_FOR_PRE_BODY(NODE) TREE_OPERAND (OMP_LOOPING_CHECK (NODE), 5)
1420 #define OMP_FOR_ORIG_DECLS(NODE) TREE_OPERAND (OMP_LOOPING_CHECK (NODE), 6)
1422 #define OMP_SECTIONS_BODY(NODE) TREE_OPERAND (OMP_SECTIONS_CHECK (NODE), 0)
1423 #define OMP_SECTIONS_CLAUSES(NODE) TREE_OPERAND (OMP_SECTIONS_CHECK (NODE), 1)
1425 #define OMP_SECTION_BODY(NODE) TREE_OPERAND (OMP_SECTION_CHECK (NODE), 0)
1427 #define OMP_SINGLE_BODY(NODE) TREE_OPERAND (OMP_SINGLE_CHECK (NODE), 0)
1428 #define OMP_SINGLE_CLAUSES(NODE) TREE_OPERAND (OMP_SINGLE_CHECK (NODE), 1)
1430 #define OMP_SCOPE_BODY(NODE) TREE_OPERAND (OMP_SCOPE_CHECK (NODE), 0)
1431 #define OMP_SCOPE_CLAUSES(NODE) TREE_OPERAND (OMP_SCOPE_CHECK (NODE), 1)
1433 #define OMP_MASTER_BODY(NODE) TREE_OPERAND (OMP_MASTER_CHECK (NODE), 0)
1435 #define OMP_MASKED_BODY(NODE) TREE_OPERAND (OMP_MASKED_CHECK (NODE), 0)
1436 #define OMP_MASKED_CLAUSES(NODE) TREE_OPERAND (OMP_MASKED_CHECK (NODE), 1)
1438 #define OMP_TASKGROUP_BODY(NODE) TREE_OPERAND (OMP_TASKGROUP_CHECK (NODE), 0)
1439 #define OMP_TASKGROUP_CLAUSES(NODE) \
1440 TREE_OPERAND (OMP_TASKGROUP_CHECK (NODE), 1)
1442 #define OMP_ORDERED_BODY(NODE) TREE_OPERAND (OMP_ORDERED_CHECK (NODE), 0)
1443 #define OMP_ORDERED_CLAUSES(NODE) TREE_OPERAND (OMP_ORDERED_CHECK (NODE), 1)
1445 #define OMP_CRITICAL_BODY(NODE) TREE_OPERAND (OMP_CRITICAL_CHECK (NODE), 0)
1446 #define OMP_CRITICAL_CLAUSES(NODE) TREE_OPERAND (OMP_CRITICAL_CHECK (NODE), 1)
1447 #define OMP_CRITICAL_NAME(NODE) TREE_OPERAND (OMP_CRITICAL_CHECK (NODE), 2)
1449 #define OMP_TEAMS_BODY(NODE) TREE_OPERAND (OMP_TEAMS_CHECK (NODE), 0)
1450 #define OMP_TEAMS_CLAUSES(NODE) TREE_OPERAND (OMP_TEAMS_CHECK (NODE), 1)
1452 #define OMP_TARGET_DATA_BODY(NODE) \
1453 TREE_OPERAND (OMP_TARGET_DATA_CHECK (NODE), 0)
1454 #define OMP_TARGET_DATA_CLAUSES(NODE)\
1455 TREE_OPERAND (OMP_TARGET_DATA_CHECK (NODE), 1)
1457 #define OMP_TARGET_BODY(NODE) TREE_OPERAND (OMP_TARGET_CHECK (NODE), 0)
1458 #define OMP_TARGET_CLAUSES(NODE) TREE_OPERAND (OMP_TARGET_CHECK (NODE), 1)
1460 #define OMP_TARGET_UPDATE_CLAUSES(NODE)\
1461 TREE_OPERAND (OMP_TARGET_UPDATE_CHECK (NODE), 0)
1463 #define OMP_TARGET_ENTER_DATA_CLAUSES(NODE)\
1464 TREE_OPERAND (OMP_TARGET_ENTER_DATA_CHECK (NODE), 0)
1466 #define OMP_TARGET_EXIT_DATA_CLAUSES(NODE)\
1467 TREE_OPERAND (OMP_TARGET_EXIT_DATA_CHECK (NODE), 0)
1469 #define OMP_SCAN_BODY(NODE) TREE_OPERAND (OMP_SCAN_CHECK (NODE), 0)
1470 #define OMP_SCAN_CLAUSES(NODE) TREE_OPERAND (OMP_SCAN_CHECK (NODE), 1)
1472 #define OMP_CLAUSE_SIZE(NODE) \
1473 OMP_CLAUSE_OPERAND (OMP_CLAUSE_RANGE_CHECK (OMP_CLAUSE_CHECK (NODE), \
1474 OMP_CLAUSE_FROM, \
1475 OMP_CLAUSE__CACHE_), 1)
1477 #define OMP_CLAUSE_CHAIN(NODE) TREE_CHAIN (OMP_CLAUSE_CHECK (NODE))
1478 #define OMP_CLAUSE_DECL(NODE) \
1479 OMP_CLAUSE_OPERAND (OMP_CLAUSE_RANGE_CHECK (OMP_CLAUSE_CHECK (NODE), \
1480 OMP_CLAUSE_PRIVATE, \
1481 OMP_CLAUSE__SCANTEMP_), 0)
1482 #define OMP_CLAUSE_HAS_LOCATION(NODE) \
1483 (LOCATION_LOCUS ((OMP_CLAUSE_CHECK (NODE))->omp_clause.locus) \
1484 != UNKNOWN_LOCATION)
1485 #define OMP_CLAUSE_LOCATION(NODE) (OMP_CLAUSE_CHECK (NODE))->omp_clause.locus
1487 /* True on OMP_FOR and other OpenMP/OpenACC looping constructs if the loop nest
1488 is non-rectangular. */
1489 #define OMP_FOR_NON_RECTANGULAR(NODE) \
1490 (OMP_LOOPING_CHECK (NODE)->base.private_flag)
1492 /* True on an OMP_SECTION statement that was the last lexical member.
1493 This status is meaningful in the implementation of lastprivate. */
1494 #define OMP_SECTION_LAST(NODE) \
1495 (OMP_SECTION_CHECK (NODE)->base.private_flag)
1497 /* True on an OMP_PARALLEL statement if it represents an explicit
1498 combined parallel work-sharing constructs. */
1499 #define OMP_PARALLEL_COMBINED(NODE) \
1500 (OMP_PARALLEL_CHECK (NODE)->base.private_flag)
1502 /* True on an OMP_TEAMS statement if it represents an explicit
1503 combined teams distribute constructs. */
1504 #define OMP_TEAMS_COMBINED(NODE) \
1505 (OMP_TEAMS_CHECK (NODE)->base.private_flag)
1507 /* True on an OMP_TARGET statement if it represents explicit
1508 combined target teams, target parallel or target simd constructs. */
1509 #define OMP_TARGET_COMBINED(NODE) \
1510 (OMP_TARGET_CHECK (NODE)->base.private_flag)
1512 /* True on an OMP_MASTER statement if it represents an explicit
1513 combined master constructs. */
1514 #define OMP_MASTER_COMBINED(NODE) \
1515 (OMP_MASTER_CHECK (NODE)->base.private_flag)
1517 /* True on an OMP_MASKED statement if it represents an explicit
1518 combined masked constructs. */
1519 #define OMP_MASKED_COMBINED(NODE) \
1520 (OMP_MASKED_CHECK (NODE)->base.private_flag)
1522 /* Memory order for OMP_ATOMIC*. */
1523 #define OMP_ATOMIC_MEMORY_ORDER(NODE) \
1524 (TREE_RANGE_CHECK (NODE, OMP_ATOMIC, \
1525 OMP_ATOMIC_CAPTURE_NEW)->base.u.omp_atomic_memory_order)
1527 /* True on a PRIVATE clause if its decl is kept around for debugging
1528 information only and its DECL_VALUE_EXPR is supposed to point
1529 to what it has been remapped to. */
1530 #define OMP_CLAUSE_PRIVATE_DEBUG(NODE) \
1531 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_PRIVATE)->base.public_flag)
1533 /* True on a PRIVATE clause if ctor needs access to outer region's
1534 variable. */
1535 #define OMP_CLAUSE_PRIVATE_OUTER_REF(NODE) \
1536 TREE_PRIVATE (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_PRIVATE))
1538 /* True if a PRIVATE clause is for a C++ class IV on taskloop construct
1539 (thus should be private on the outer taskloop and firstprivate on
1540 task). */
1541 #define OMP_CLAUSE_PRIVATE_TASKLOOP_IV(NODE) \
1542 TREE_PROTECTED (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_PRIVATE))
1544 /* True on a FIRSTPRIVATE clause if it has been added implicitly. */
1545 #define OMP_CLAUSE_FIRSTPRIVATE_IMPLICIT(NODE) \
1546 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_FIRSTPRIVATE)->base.public_flag)
1548 /* True on a FIRSTPRIVATE clause if only the reference and not what it refers
1549 to should be firstprivatized. */
1550 #define OMP_CLAUSE_FIRSTPRIVATE_NO_REFERENCE(NODE) \
1551 TREE_PRIVATE (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_FIRSTPRIVATE))
1553 /* True on a FIRSTPRIVATE clause with OMP_CLAUSE_FIRSTPRIVATE_IMPLICIT also
1554 set if target construct is the only one that accepts the clause. */
1555 #define OMP_CLAUSE_FIRSTPRIVATE_IMPLICIT_TARGET(NODE) \
1556 TREE_PROTECTED (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_FIRSTPRIVATE))
1558 /* True on a LASTPRIVATE clause if a FIRSTPRIVATE clause for the same
1559 decl is present in the chain. */
1560 #define OMP_CLAUSE_LASTPRIVATE_FIRSTPRIVATE(NODE) \
1561 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_LASTPRIVATE)->base.public_flag)
1562 #define OMP_CLAUSE_LASTPRIVATE_STMT(NODE) \
1563 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, \
1564 OMP_CLAUSE_LASTPRIVATE),\
1566 #define OMP_CLAUSE_LASTPRIVATE_GIMPLE_SEQ(NODE) \
1567 (OMP_CLAUSE_CHECK (NODE))->omp_clause.gimple_reduction_init
1569 /* True if a LASTPRIVATE clause is for a C++ class IV on taskloop or
1570 loop construct (thus should be lastprivate on the outer taskloop and
1571 firstprivate on task for the taskloop construct and carefully handled
1572 for loop construct). */
1573 #define OMP_CLAUSE_LASTPRIVATE_LOOP_IV(NODE) \
1574 TREE_PROTECTED (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_LASTPRIVATE))
1576 /* True if a LASTPRIVATE clause has CONDITIONAL: modifier. */
1577 #define OMP_CLAUSE_LASTPRIVATE_CONDITIONAL(NODE) \
1578 TREE_PRIVATE (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_LASTPRIVATE))
1580 /* True on a SHARED clause if a FIRSTPRIVATE clause for the same
1581 decl is present in the chain (this can happen only for taskloop
1582 with FIRSTPRIVATE/LASTPRIVATE on it originally. */
1583 #define OMP_CLAUSE_SHARED_FIRSTPRIVATE(NODE) \
1584 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_SHARED)->base.public_flag)
1586 /* True on a SHARED clause if a scalar is not modified in the body and
1587 thus could be optimized as firstprivate. */
1588 #define OMP_CLAUSE_SHARED_READONLY(NODE) \
1589 TREE_PRIVATE (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_SHARED))
1591 #define OMP_CLAUSE_IF_MODIFIER(NODE) \
1592 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_IF)->omp_clause.subcode.if_modifier)
1594 #define OMP_CLAUSE_FINAL_EXPR(NODE) \
1595 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_FINAL), 0)
1596 #define OMP_CLAUSE_IF_EXPR(NODE) \
1597 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_IF), 0)
1598 #define OMP_CLAUSE_NUM_THREADS_EXPR(NODE) \
1599 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_NUM_THREADS),0)
1600 #define OMP_CLAUSE_SCHEDULE_CHUNK_EXPR(NODE) \
1601 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_SCHEDULE), 0)
1602 #define OMP_CLAUSE_NUM_TASKS_EXPR(NODE) \
1603 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_NUM_TASKS), 0)
1604 #define OMP_CLAUSE_HINT_EXPR(NODE) \
1605 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_HINT), 0)
1606 #define OMP_CLAUSE_FILTER_EXPR(NODE) \
1607 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_FILTER), 0)
1609 #define OMP_CLAUSE_GRAINSIZE_EXPR(NODE) \
1610 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_GRAINSIZE),0)
1612 #define OMP_CLAUSE_PRIORITY_EXPR(NODE) \
1613 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_PRIORITY),0)
1615 /* OpenACC clause expressions */
1616 #define OMP_CLAUSE_EXPR(NODE, CLAUSE) \
1617 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, CLAUSE), 0)
1618 #define OMP_CLAUSE_GANG_EXPR(NODE) \
1619 OMP_CLAUSE_OPERAND ( \
1620 OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_GANG), 0)
1621 #define OMP_CLAUSE_GANG_STATIC_EXPR(NODE) \
1622 OMP_CLAUSE_OPERAND ( \
1623 OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_GANG), 1)
1624 #define OMP_CLAUSE_ASYNC_EXPR(NODE) \
1625 OMP_CLAUSE_OPERAND ( \
1626 OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_ASYNC), 0)
1627 #define OMP_CLAUSE_WAIT_EXPR(NODE) \
1628 OMP_CLAUSE_OPERAND ( \
1629 OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_WAIT), 0)
1630 #define OMP_CLAUSE_VECTOR_EXPR(NODE) \
1631 OMP_CLAUSE_OPERAND ( \
1632 OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_VECTOR), 0)
1633 #define OMP_CLAUSE_WORKER_EXPR(NODE) \
1634 OMP_CLAUSE_OPERAND ( \
1635 OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_WORKER), 0)
1636 #define OMP_CLAUSE_NUM_GANGS_EXPR(NODE) \
1637 OMP_CLAUSE_OPERAND ( \
1638 OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_NUM_GANGS), 0)
1639 #define OMP_CLAUSE_NUM_WORKERS_EXPR(NODE) \
1640 OMP_CLAUSE_OPERAND ( \
1641 OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_NUM_WORKERS), 0)
1642 #define OMP_CLAUSE_VECTOR_LENGTH_EXPR(NODE) \
1643 OMP_CLAUSE_OPERAND ( \
1644 OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_VECTOR_LENGTH), 0)
1646 #define OMP_CLAUSE_DEPEND_KIND(NODE) \
1647 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_DEPEND)->omp_clause.subcode.depend_kind)
1649 #define OMP_CLAUSE_DEPEND_SINK_NEGATIVE(NODE) \
1650 TREE_PUBLIC (TREE_LIST_CHECK (NODE))
1652 #define OMP_CLAUSE_MAP_KIND(NODE) \
1653 ((enum gomp_map_kind) OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_MAP)->omp_clause.subcode.map_kind)
1654 #define OMP_CLAUSE_SET_MAP_KIND(NODE, MAP_KIND) \
1655 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_MAP)->omp_clause.subcode.map_kind \
1656 = (unsigned int) (MAP_KIND))
1658 /* Nonzero if this map clause is for array (rather than pointer) based array
1659 section with zero bias. Both the non-decl OMP_CLAUSE_MAP and corresponding
1660 OMP_CLAUSE_MAP with GOMP_MAP_POINTER are marked with this flag. */
1661 #define OMP_CLAUSE_MAP_ZERO_BIAS_ARRAY_SECTION(NODE) \
1662 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_MAP)->base.public_flag)
1663 /* Nonzero if this is a mapped array section, that might need special
1664 treatment if OMP_CLAUSE_SIZE is zero. */
1665 #define OMP_CLAUSE_MAP_MAYBE_ZERO_LENGTH_ARRAY_SECTION(NODE) \
1666 TREE_PROTECTED (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_MAP))
1667 /* Nonzero if this map clause is for an OpenACC compute construct's reduction
1668 variable or OpenMP map clause mentioned also in in_reduction clause on the
1669 same construct. */
1670 #define OMP_CLAUSE_MAP_IN_REDUCTION(NODE) \
1671 TREE_PRIVATE (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_MAP))
1672 /* Nonzero on map clauses added implicitly for reduction clauses on combined
1673 or composite constructs. They shall be removed if there is an explicit
1674 map clause. */
1675 #define OMP_CLAUSE_MAP_IMPLICIT(NODE) \
1676 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_MAP)->base.default_def_flag)
1678 /* True on an OMP_CLAUSE_USE_DEVICE_PTR with an OpenACC 'if_present'
1679 clause. */
1680 #define OMP_CLAUSE_USE_DEVICE_PTR_IF_PRESENT(NODE) \
1681 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_USE_DEVICE_PTR)->base.public_flag)
1683 #define OMP_CLAUSE_PROC_BIND_KIND(NODE) \
1684 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_PROC_BIND)->omp_clause.subcode.proc_bind_kind)
1686 #define OMP_CLAUSE_DEVICE_TYPE_KIND(NODE) \
1687 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_DEVICE_TYPE)->omp_clause.subcode.device_type_kind)
1689 #define OMP_CLAUSE_COLLAPSE_EXPR(NODE) \
1690 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_COLLAPSE), 0)
1691 #define OMP_CLAUSE_COLLAPSE_ITERVAR(NODE) \
1692 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_COLLAPSE), 1)
1693 #define OMP_CLAUSE_COLLAPSE_COUNT(NODE) \
1694 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_COLLAPSE), 2)
1696 #define OMP_CLAUSE_ORDERED_EXPR(NODE) \
1697 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_ORDERED), 0)
1699 #define OMP_CLAUSE_REDUCTION_CODE(NODE) \
1700 (OMP_CLAUSE_RANGE_CHECK (NODE, OMP_CLAUSE_REDUCTION, \
1701 OMP_CLAUSE_IN_REDUCTION)->omp_clause.subcode.reduction_code)
1702 #define OMP_CLAUSE_REDUCTION_INIT(NODE) \
1703 OMP_CLAUSE_OPERAND (OMP_CLAUSE_RANGE_CHECK (NODE, OMP_CLAUSE_REDUCTION, \
1704 OMP_CLAUSE_IN_REDUCTION), 1)
1705 #define OMP_CLAUSE_REDUCTION_MERGE(NODE) \
1706 OMP_CLAUSE_OPERAND (OMP_CLAUSE_RANGE_CHECK (NODE, OMP_CLAUSE_REDUCTION, \
1707 OMP_CLAUSE_IN_REDUCTION), 2)
1708 #define OMP_CLAUSE_REDUCTION_GIMPLE_INIT(NODE) \
1709 (OMP_CLAUSE_CHECK (NODE))->omp_clause.gimple_reduction_init
1710 #define OMP_CLAUSE_REDUCTION_GIMPLE_MERGE(NODE) \
1711 (OMP_CLAUSE_CHECK (NODE))->omp_clause.gimple_reduction_merge
1712 #define OMP_CLAUSE_REDUCTION_PLACEHOLDER(NODE) \
1713 OMP_CLAUSE_OPERAND (OMP_CLAUSE_RANGE_CHECK (NODE, OMP_CLAUSE_REDUCTION, \
1714 OMP_CLAUSE_IN_REDUCTION), 3)
1715 #define OMP_CLAUSE_REDUCTION_DECL_PLACEHOLDER(NODE) \
1716 OMP_CLAUSE_OPERAND (OMP_CLAUSE_RANGE_CHECK (NODE, OMP_CLAUSE_REDUCTION, \
1717 OMP_CLAUSE_IN_REDUCTION), 4)
1719 /* True if a REDUCTION clause may reference the original list item (omp_orig)
1720 in its OMP_CLAUSE_REDUCTION_{,GIMPLE_}INIT. */
1721 #define OMP_CLAUSE_REDUCTION_OMP_ORIG_REF(NODE) \
1722 (OMP_CLAUSE_RANGE_CHECK (NODE, OMP_CLAUSE_REDUCTION, \
1723 OMP_CLAUSE_IN_REDUCTION)->base.public_flag)
1725 /* True if a REDUCTION clause has task reduction-modifier. */
1726 #define OMP_CLAUSE_REDUCTION_TASK(NODE) \
1727 TREE_PROTECTED (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_REDUCTION))
1729 /* True if a REDUCTION clause has inscan reduction-modifier. */
1730 #define OMP_CLAUSE_REDUCTION_INSCAN(NODE) \
1731 TREE_PRIVATE (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_REDUCTION))
1733 /* True if a LINEAR clause doesn't need copy in. True for iterator vars which
1734 are always initialized inside of the loop construct, false otherwise. */
1735 #define OMP_CLAUSE_LINEAR_NO_COPYIN(NODE) \
1736 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_LINEAR)->base.public_flag)
1738 /* True if a LINEAR clause doesn't need copy out. True for iterator vars which
1739 are declared inside of the simd construct. */
1740 #define OMP_CLAUSE_LINEAR_NO_COPYOUT(NODE) \
1741 TREE_PRIVATE (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_LINEAR))
1743 /* True if a LINEAR clause has a stride that is variable. */
1744 #define OMP_CLAUSE_LINEAR_VARIABLE_STRIDE(NODE) \
1745 TREE_PROTECTED (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_LINEAR))
1747 /* True if a LINEAR clause is for an array or allocatable variable that
1748 needs special handling by the frontend. */
1749 #define OMP_CLAUSE_LINEAR_ARRAY(NODE) \
1750 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_LINEAR)->base.deprecated_flag)
1752 #define OMP_CLAUSE_LINEAR_STEP(NODE) \
1753 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_LINEAR), 1)
1755 #define OMP_CLAUSE_LINEAR_STMT(NODE) \
1756 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_LINEAR), 2)
1758 #define OMP_CLAUSE_LINEAR_GIMPLE_SEQ(NODE) \
1759 (OMP_CLAUSE_CHECK (NODE))->omp_clause.gimple_reduction_init
1761 #define OMP_CLAUSE_LINEAR_KIND(NODE) \
1762 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_LINEAR)->omp_clause.subcode.linear_kind)
1764 #define OMP_CLAUSE_ALIGNED_ALIGNMENT(NODE) \
1765 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_ALIGNED), 1)
1767 #define OMP_CLAUSE_ALLOCATE_ALLOCATOR(NODE) \
1768 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_ALLOCATE), 1)
1770 /* True if an ALLOCATE clause was present on a combined or composite
1771 construct and the code for splitting the clauses has already performed
1772 checking if the listed variable has explicit privatization on the
1773 construct. */
1774 #define OMP_CLAUSE_ALLOCATE_COMBINED(NODE) \
1775 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_ALLOCATE)->base.public_flag)
1777 #define OMP_CLAUSE_NUM_TEAMS_EXPR(NODE) \
1778 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_NUM_TEAMS), 0)
1780 #define OMP_CLAUSE_THREAD_LIMIT_EXPR(NODE) \
1781 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, \
1782 OMP_CLAUSE_THREAD_LIMIT), 0)
1784 #define OMP_CLAUSE_DEVICE_ID(NODE) \
1785 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_DEVICE), 0)
1787 #define OMP_CLAUSE_DIST_SCHEDULE_CHUNK_EXPR(NODE) \
1788 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, \
1789 OMP_CLAUSE_DIST_SCHEDULE), 0)
1791 #define OMP_CLAUSE_SAFELEN_EXPR(NODE) \
1792 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_SAFELEN), 0)
1794 #define OMP_CLAUSE_SIMDLEN_EXPR(NODE) \
1795 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_SIMDLEN), 0)
1797 #define OMP_CLAUSE__SIMDUID__DECL(NODE) \
1798 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE__SIMDUID_), 0)
1800 #define OMP_CLAUSE_SCHEDULE_KIND(NODE) \
1801 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_SCHEDULE)->omp_clause.subcode.schedule_kind)
1803 /* True if a SCHEDULE clause has the simd modifier on it. */
1804 #define OMP_CLAUSE_SCHEDULE_SIMD(NODE) \
1805 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_SCHEDULE)->base.public_flag)
1807 #define OMP_CLAUSE_DEFAULT_KIND(NODE) \
1808 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_DEFAULT)->omp_clause.subcode.default_kind)
1810 #define OMP_CLAUSE_DEFAULTMAP_KIND(NODE) \
1811 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_DEFAULTMAP)->omp_clause.subcode.defaultmap_kind)
1812 #define OMP_CLAUSE_DEFAULTMAP_CATEGORY(NODE) \
1813 ((enum omp_clause_defaultmap_kind) \
1814 (OMP_CLAUSE_DEFAULTMAP_KIND (NODE) & OMP_CLAUSE_DEFAULTMAP_CATEGORY_MASK))
1815 #define OMP_CLAUSE_DEFAULTMAP_BEHAVIOR(NODE) \
1816 ((enum omp_clause_defaultmap_kind) \
1817 (OMP_CLAUSE_DEFAULTMAP_KIND (NODE) & OMP_CLAUSE_DEFAULTMAP_MASK))
1818 #define OMP_CLAUSE_DEFAULTMAP_SET_KIND(NODE, BEHAVIOR, CATEGORY) \
1819 (OMP_CLAUSE_DEFAULTMAP_KIND (NODE) \
1820 = (enum omp_clause_defaultmap_kind) (CATEGORY | BEHAVIOR))
1822 #define OMP_CLAUSE_BIND_KIND(NODE) \
1823 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_BIND)->omp_clause.subcode.bind_kind)
1825 #define OMP_CLAUSE_TILE_LIST(NODE) \
1826 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_TILE), 0)
1827 #define OMP_CLAUSE_TILE_ITERVAR(NODE) \
1828 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_TILE), 1)
1829 #define OMP_CLAUSE_TILE_COUNT(NODE) \
1830 OMP_CLAUSE_OPERAND (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE_TILE), 2)
1832 /* _CONDTEMP_ holding temporary with iteration count. */
1833 #define OMP_CLAUSE__CONDTEMP__ITER(NODE) \
1834 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE__CONDTEMP_)->base.public_flag)
1836 /* _SCANTEMP_ holding temporary with pointer to thread's local array;
1837 allocation. */
1838 #define OMP_CLAUSE__SCANTEMP__ALLOC(NODE) \
1839 (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE__SCANTEMP_)->base.public_flag)
1841 /* _SCANTEMP_ holding temporary with a control variable for deallocation;
1842 one boolean_type_node for test whether alloca was used, another one
1843 to pass to __builtin_stack_restore or free. */
1844 #define OMP_CLAUSE__SCANTEMP__CONTROL(NODE) \
1845 TREE_PRIVATE (OMP_CLAUSE_SUBCODE_CHECK (NODE, OMP_CLAUSE__SCANTEMP_))
1847 /* SSA_NAME accessors. */
1849 /* Whether SSA_NAME NODE is a virtual operand. This simply caches the
1850 information in the underlying SSA_NAME_VAR for efficiency. */
1851 #define SSA_NAME_IS_VIRTUAL_OPERAND(NODE) \
1852 SSA_NAME_CHECK (NODE)->base.public_flag
1854 /* Returns the IDENTIFIER_NODE giving the SSA name a name or NULL_TREE
1855 if there is no name associated with it. */
1856 #define SSA_NAME_IDENTIFIER(NODE) \
1857 (SSA_NAME_CHECK (NODE)->ssa_name.var != NULL_TREE \
1858 ? (TREE_CODE ((NODE)->ssa_name.var) == IDENTIFIER_NODE \
1859 ? (NODE)->ssa_name.var \
1860 : DECL_NAME ((NODE)->ssa_name.var)) \
1861 : NULL_TREE)
1863 /* Returns the variable being referenced. This can be NULL_TREE for
1864 temporaries not associated with any user variable.
1865 Once released, this is the only field that can be relied upon. */
1866 #define SSA_NAME_VAR(NODE) \
1867 (SSA_NAME_CHECK (NODE)->ssa_name.var == NULL_TREE \
1868 || TREE_CODE ((NODE)->ssa_name.var) == IDENTIFIER_NODE \
1869 ? NULL_TREE : (NODE)->ssa_name.var)
1871 #define SET_SSA_NAME_VAR_OR_IDENTIFIER(NODE,VAR) \
1872 do \
1874 tree var_ = (VAR); \
1875 SSA_NAME_CHECK (NODE)->ssa_name.var = var_; \
1876 SSA_NAME_IS_VIRTUAL_OPERAND (NODE) \
1877 = (var_ \
1878 && TREE_CODE (var_) == VAR_DECL \
1879 && VAR_DECL_IS_VIRTUAL_OPERAND (var_)); \
1881 while (0)
1883 /* Returns the statement which defines this SSA name. */
1884 #define SSA_NAME_DEF_STMT(NODE) SSA_NAME_CHECK (NODE)->ssa_name.def_stmt
1886 /* Returns the SSA version number of this SSA name. Note that in
1887 tree SSA, version numbers are not per variable and may be recycled. */
1888 #define SSA_NAME_VERSION(NODE) SSA_NAME_CHECK (NODE)->base.u.version
1890 /* Nonzero if this SSA name occurs in an abnormal PHI. SSA_NAMES are
1891 never output, so we can safely use the ASM_WRITTEN_FLAG for this
1892 status bit. */
1893 #define SSA_NAME_OCCURS_IN_ABNORMAL_PHI(NODE) \
1894 SSA_NAME_CHECK (NODE)->base.asm_written_flag
1896 /* Nonzero if this SSA_NAME expression is currently on the free list of
1897 SSA_NAMES. Using NOTHROW_FLAG seems reasonably safe since throwing
1898 has no meaning for an SSA_NAME. */
1899 #define SSA_NAME_IN_FREE_LIST(NODE) \
1900 SSA_NAME_CHECK (NODE)->base.nothrow_flag
1902 /* Nonzero if this SSA_NAME is the default definition for the
1903 underlying symbol. A default SSA name is created for symbol S if
1904 the very first reference to S in the function is a read operation.
1905 Default definitions are always created by an empty statement and
1906 belong to no basic block. */
1907 #define SSA_NAME_IS_DEFAULT_DEF(NODE) \
1908 SSA_NAME_CHECK (NODE)->base.default_def_flag
1910 /* Nonzero if this SSA_NAME is known to point to memory that may not
1911 be written to. This is set for default defs of function parameters
1912 that have a corresponding r or R specification in the functions
1913 fn spec attribute. This is used by alias analysis. */
1914 #define SSA_NAME_POINTS_TO_READONLY_MEMORY(NODE) \
1915 SSA_NAME_CHECK (NODE)->base.deprecated_flag
1917 /* Attributes for SSA_NAMEs for pointer-type variables. */
1918 #define SSA_NAME_PTR_INFO(N) \
1919 SSA_NAME_CHECK (N)->ssa_name.info.ptr_info
1921 /* True if SSA_NAME_RANGE_INFO describes an anti-range. */
1922 #define SSA_NAME_ANTI_RANGE_P(N) \
1923 SSA_NAME_CHECK (N)->base.static_flag
1925 /* The type of range described by SSA_NAME_RANGE_INFO. */
1926 #define SSA_NAME_RANGE_TYPE(N) \
1927 (SSA_NAME_ANTI_RANGE_P (N) ? VR_ANTI_RANGE : VR_RANGE)
1929 /* Value range info attributes for SSA_NAMEs of non pointer-type variables. */
1930 #define SSA_NAME_RANGE_INFO(N) \
1931 SSA_NAME_CHECK (N)->ssa_name.info.range_info
1933 /* Return the immediate_use information for an SSA_NAME. */
1934 #define SSA_NAME_IMM_USE_NODE(NODE) SSA_NAME_CHECK (NODE)->ssa_name.imm_uses
1936 #define OMP_CLAUSE_CODE(NODE) \
1937 (OMP_CLAUSE_CHECK (NODE))->omp_clause.code
1939 #define OMP_CLAUSE_SET_CODE(NODE, CODE) \
1940 ((OMP_CLAUSE_CHECK (NODE))->omp_clause.code = (CODE))
1942 #define OMP_CLAUSE_OPERAND(NODE, I) \
1943 OMP_CLAUSE_ELT_CHECK (NODE, I)
1945 /* In a BLOCK (scope) node:
1946 Variables declared in the scope NODE. */
1947 #define BLOCK_VARS(NODE) (BLOCK_CHECK (NODE)->block.vars)
1948 #define BLOCK_NONLOCALIZED_VARS(NODE) \
1949 (BLOCK_CHECK (NODE)->block.nonlocalized_vars)
1950 #define BLOCK_NUM_NONLOCALIZED_VARS(NODE) \
1951 vec_safe_length (BLOCK_NONLOCALIZED_VARS (NODE))
1952 #define BLOCK_NONLOCALIZED_VAR(NODE,N) (*BLOCK_NONLOCALIZED_VARS (NODE))[N]
1953 /* A chain of BLOCKs (scopes) nested within the scope NODE. */
1954 #define BLOCK_SUBBLOCKS(NODE) (BLOCK_CHECK (NODE)->block.subblocks)
1955 /* The scope enclosing the scope NODE, or FUNCTION_DECL for the "outermost"
1956 function scope. Inlined functions are chained by this so that given
1957 expression E and its TREE_BLOCK(E) B, BLOCK_SUPERCONTEXT(B) is the scope
1958 in which E has been made or into which E has been inlined. */
1959 #define BLOCK_SUPERCONTEXT(NODE) (BLOCK_CHECK (NODE)->block.supercontext)
1960 /* Points to the next scope at the same level of nesting as scope NODE. */
1961 #define BLOCK_CHAIN(NODE) (BLOCK_CHECK (NODE)->block.chain)
1962 /* A BLOCK, or FUNCTION_DECL of the function from which a block has been
1963 inlined. In a scope immediately enclosing an inlined leaf expression,
1964 points to the outermost scope into which it has been inlined (thus
1965 bypassing all intermediate BLOCK_SUPERCONTEXTs). */
1966 #define BLOCK_ABSTRACT_ORIGIN(NODE) (BLOCK_CHECK (NODE)->block.abstract_origin)
1967 #define BLOCK_ORIGIN(NODE) \
1968 (BLOCK_ABSTRACT_ORIGIN(NODE) ? BLOCK_ABSTRACT_ORIGIN(NODE) : (NODE))
1969 #define BLOCK_DIE(NODE) (BLOCK_CHECK (NODE)->block.die)
1971 /* True if BLOCK has the same ranges as its BLOCK_SUPERCONTEXT. */
1972 #define BLOCK_SAME_RANGE(NODE) (BLOCK_CHECK (NODE)->base.u.bits.nameless_flag)
1974 /* True if BLOCK appears in cold section. */
1975 #define BLOCK_IN_COLD_SECTION_P(NODE) \
1976 (BLOCK_CHECK (NODE)->base.u.bits.atomic_flag)
1978 /* An index number for this block. These values are not guaranteed to
1979 be unique across functions -- whether or not they are depends on
1980 the debugging output format in use. */
1981 #define BLOCK_NUMBER(NODE) (BLOCK_CHECK (NODE)->block.block_num)
1983 /* If block reordering splits a lexical block into discontiguous
1984 address ranges, we'll make a copy of the original block.
1986 Note that this is logically distinct from BLOCK_ABSTRACT_ORIGIN.
1987 In that case, we have one source block that has been replicated
1988 (through inlining or unrolling) into many logical blocks, and that
1989 these logical blocks have different physical variables in them.
1991 In this case, we have one logical block split into several
1992 non-contiguous address ranges. Most debug formats can't actually
1993 represent this idea directly, so we fake it by creating multiple
1994 logical blocks with the same variables in them. However, for those
1995 that do support non-contiguous regions, these allow the original
1996 logical block to be reconstructed, along with the set of address
1997 ranges.
1999 One of the logical block fragments is arbitrarily chosen to be
2000 the ORIGIN. The other fragments will point to the origin via
2001 BLOCK_FRAGMENT_ORIGIN; the origin itself will have this pointer
2002 be null. The list of fragments will be chained through
2003 BLOCK_FRAGMENT_CHAIN from the origin. */
2005 #define BLOCK_FRAGMENT_ORIGIN(NODE) (BLOCK_CHECK (NODE)->block.fragment_origin)
2006 #define BLOCK_FRAGMENT_CHAIN(NODE) (BLOCK_CHECK (NODE)->block.fragment_chain)
2008 /* For an inlined function, this gives the location where it was called
2009 from. This is only set in the top level block, which corresponds to the
2010 inlined function scope. This is used in the debug output routines. */
2012 #define BLOCK_SOURCE_LOCATION(NODE) (BLOCK_CHECK (NODE)->block.locus)
2014 /* This gives the location of the end of the block, useful to attach
2015 code implicitly generated for outgoing paths. */
2017 #define BLOCK_SOURCE_END_LOCATION(NODE) (BLOCK_CHECK (NODE)->block.end_locus)
2019 /* Define fields and accessors for nodes representing data types. */
2021 /* See tree.def for documentation of the use of these fields.
2022 Look at the documentation of the various ..._TYPE tree codes.
2024 Note that the type.values, type.minval, and type.maxval fields are
2025 overloaded and used for different macros in different kinds of types.
2026 Each macro must check to ensure the tree node is of the proper kind of
2027 type. Note also that some of the front-ends also overload these fields,
2028 so they must be checked as well. */
2030 #define TYPE_UID(NODE) (TYPE_CHECK (NODE)->type_common.uid)
2031 /* Type size in bits as a tree expression. Need not be constant and may
2032 be greater than TYPE_SIZE for a C++ FIELD_DECL representing a base
2033 class subobject with its own virtual base classes (which are laid out
2034 separately). */
2035 #define TYPE_SIZE(NODE) (TYPE_CHECK (NODE)->type_common.size)
2036 /* Likewise, type size in bytes. */
2037 #define TYPE_SIZE_UNIT(NODE) (TYPE_CHECK (NODE)->type_common.size_unit)
2038 #define TYPE_POINTER_TO(NODE) (TYPE_CHECK (NODE)->type_common.pointer_to)
2039 #define TYPE_REFERENCE_TO(NODE) (TYPE_CHECK (NODE)->type_common.reference_to)
2040 #define TYPE_PRECISION(NODE) (TYPE_CHECK (NODE)->type_common.precision)
2041 #define TYPE_NAME(NODE) (TYPE_CHECK (NODE)->type_common.name)
2042 #define TYPE_NEXT_VARIANT(NODE) (TYPE_CHECK (NODE)->type_common.next_variant)
2043 #define TYPE_MAIN_VARIANT(NODE) (TYPE_CHECK (NODE)->type_common.main_variant)
2044 #define TYPE_CONTEXT(NODE) (TYPE_CHECK (NODE)->type_common.context)
2046 #define TYPE_MODE_RAW(NODE) (TYPE_CHECK (NODE)->type_common.mode)
2047 #define TYPE_MODE(NODE) \
2048 (VECTOR_TYPE_P (TYPE_CHECK (NODE)) \
2049 ? vector_type_mode (NODE) : (NODE)->type_common.mode)
2050 #define SCALAR_TYPE_MODE(NODE) \
2051 (as_a <scalar_mode> (TYPE_CHECK (NODE)->type_common.mode))
2052 #define SCALAR_INT_TYPE_MODE(NODE) \
2053 (as_a <scalar_int_mode> (TYPE_CHECK (NODE)->type_common.mode))
2054 #define SCALAR_FLOAT_TYPE_MODE(NODE) \
2055 (as_a <scalar_float_mode> (TYPE_CHECK (NODE)->type_common.mode))
2056 #define SET_TYPE_MODE(NODE, MODE) \
2057 (TYPE_CHECK (NODE)->type_common.mode = (MODE))
2059 extern machine_mode element_mode (const_tree);
2060 extern machine_mode vector_type_mode (const_tree);
2061 extern unsigned int vector_element_bits (const_tree);
2062 extern tree vector_element_bits_tree (const_tree);
2064 /* The "canonical" type for this type node, which is used by frontends to
2065 compare the type for equality with another type. If two types are
2066 equal (based on the semantics of the language), then they will have
2067 equivalent TYPE_CANONICAL entries.
2069 As a special case, if TYPE_CANONICAL is NULL_TREE, and thus
2070 TYPE_STRUCTURAL_EQUALITY_P is true, then it cannot
2071 be used for comparison against other types. Instead, the type is
2072 said to require structural equality checks, described in
2073 TYPE_STRUCTURAL_EQUALITY_P.
2075 For unqualified aggregate and function types the middle-end relies on
2076 TYPE_CANONICAL to tell whether two variables can be assigned
2077 to each other without a conversion. The middle-end also makes sure
2078 to assign the same alias-sets to the type partition with equal
2079 TYPE_CANONICAL of their unqualified variants. */
2080 #define TYPE_CANONICAL(NODE) (TYPE_CHECK (NODE)->type_common.canonical)
2081 /* Indicates that the type node requires structural equality
2082 checks. The compiler will need to look at the composition of the
2083 type to determine whether it is equal to another type, rather than
2084 just comparing canonical type pointers. For instance, we would need
2085 to look at the return and parameter types of a FUNCTION_TYPE
2086 node. */
2087 #define TYPE_STRUCTURAL_EQUALITY_P(NODE) (TYPE_CANONICAL (NODE) == NULL_TREE)
2088 /* Sets the TYPE_CANONICAL field to NULL_TREE, indicating that the
2089 type node requires structural equality. */
2090 #define SET_TYPE_STRUCTURAL_EQUALITY(NODE) (TYPE_CANONICAL (NODE) = NULL_TREE)
2092 #define TYPE_IBIT(NODE) (GET_MODE_IBIT (TYPE_MODE (NODE)))
2093 #define TYPE_FBIT(NODE) (GET_MODE_FBIT (TYPE_MODE (NODE)))
2095 /* The (language-specific) typed-based alias set for this type.
2096 Objects whose TYPE_ALIAS_SETs are different cannot alias each
2097 other. If the TYPE_ALIAS_SET is -1, no alias set has yet been
2098 assigned to this type. If the TYPE_ALIAS_SET is 0, objects of this
2099 type can alias objects of any type. */
2100 #define TYPE_ALIAS_SET(NODE) (TYPE_CHECK (NODE)->type_common.alias_set)
2102 /* Nonzero iff the typed-based alias set for this type has been
2103 calculated. */
2104 #define TYPE_ALIAS_SET_KNOWN_P(NODE) \
2105 (TYPE_CHECK (NODE)->type_common.alias_set != -1)
2107 /* A TREE_LIST of IDENTIFIER nodes of the attributes that apply
2108 to this type. */
2109 #define TYPE_ATTRIBUTES(NODE) (TYPE_CHECK (NODE)->type_common.attributes)
2111 /* Raw access to the alignment field. */
2112 #define TYPE_ALIGN_RAW(NODE) \
2113 (TYPE_CHECK (NODE)->type_common.align)
2115 /* The alignment necessary for objects of this type.
2116 The value is an int, measured in bits and must be a power of two.
2117 We support also an "alignment" of zero. */
2118 #define TYPE_ALIGN(NODE) \
2119 (TYPE_ALIGN_RAW (NODE) \
2120 ? ((unsigned)1) << (TYPE_ALIGN_RAW(NODE) - 1) : 0)
2122 /* Specify that TYPE_ALIGN(NODE) is X. */
2123 #define SET_TYPE_ALIGN(NODE, X) \
2124 (TYPE_CHECK (NODE)->type_common.align = ffs_hwi (X))
2126 /* 1 if the alignment for this type was requested by "aligned" attribute,
2127 0 if it is the default for this type. */
2128 #define TYPE_USER_ALIGN(NODE) (TYPE_CHECK (NODE)->base.u.bits.user_align)
2130 /* The alignment for NODE, in bytes. */
2131 #define TYPE_ALIGN_UNIT(NODE) (TYPE_ALIGN (NODE) / BITS_PER_UNIT)
2133 /* The minimum alignment necessary for objects of this type without
2134 warning. The value is an int, measured in bits. */
2135 #define TYPE_WARN_IF_NOT_ALIGN(NODE) \
2136 (TYPE_CHECK (NODE)->type_common.warn_if_not_align \
2137 ? ((unsigned)1) << ((NODE)->type_common.warn_if_not_align - 1) : 0)
2139 /* Specify that TYPE_WARN_IF_NOT_ALIGN(NODE) is X. */
2140 #define SET_TYPE_WARN_IF_NOT_ALIGN(NODE, X) \
2141 (TYPE_CHECK (NODE)->type_common.warn_if_not_align = ffs_hwi (X))
2143 /* If your language allows you to declare types, and you want debug info
2144 for them, then you need to generate corresponding TYPE_DECL nodes.
2145 These "stub" TYPE_DECL nodes have no name, and simply point at the
2146 type node. You then set the TYPE_STUB_DECL field of the type node
2147 to point back at the TYPE_DECL node. This allows the debug routines
2148 to know that the two nodes represent the same type, so that we only
2149 get one debug info record for them. */
2150 #define TYPE_STUB_DECL(NODE) (TREE_CHAIN (TYPE_CHECK (NODE)))
2152 /* In a RECORD_TYPE, UNION_TYPE, QUAL_UNION_TYPE or ARRAY_TYPE, it means
2153 the type has BLKmode only because it lacks the alignment required for
2154 its size. */
2155 #define TYPE_NO_FORCE_BLK(NODE) \
2156 (TYPE_CHECK (NODE)->type_common.no_force_blk_flag)
2158 /* Nonzero in a type considered volatile as a whole. */
2159 #define TYPE_VOLATILE(NODE) (TYPE_CHECK (NODE)->base.volatile_flag)
2161 /* Nonzero in a type considered atomic as a whole. */
2162 #define TYPE_ATOMIC(NODE) (TYPE_CHECK (NODE)->base.u.bits.atomic_flag)
2164 /* Means this type is const-qualified. */
2165 #define TYPE_READONLY(NODE) (TYPE_CHECK (NODE)->base.readonly_flag)
2167 /* If nonzero, this type is `restrict'-qualified, in the C sense of
2168 the term. */
2169 #define TYPE_RESTRICT(NODE) (TYPE_CHECK (NODE)->type_common.restrict_flag)
2171 /* If nonzero, type's name shouldn't be emitted into debug info. */
2172 #define TYPE_NAMELESS(NODE) (TYPE_CHECK (NODE)->base.u.bits.nameless_flag)
2174 /* The address space the type is in. */
2175 #define TYPE_ADDR_SPACE(NODE) (TYPE_CHECK (NODE)->base.u.bits.address_space)
2177 /* Encode/decode the named memory support as part of the qualifier. If more
2178 than 8 qualifiers are added, these macros need to be adjusted. */
2179 #define ENCODE_QUAL_ADDR_SPACE(NUM) ((NUM & 0xFF) << 8)
2180 #define DECODE_QUAL_ADDR_SPACE(X) (((X) >> 8) & 0xFF)
2182 /* Return all qualifiers except for the address space qualifiers. */
2183 #define CLEAR_QUAL_ADDR_SPACE(X) ((X) & ~0xFF00)
2185 /* Only keep the address space out of the qualifiers and discard the other
2186 qualifiers. */
2187 #define KEEP_QUAL_ADDR_SPACE(X) ((X) & 0xFF00)
2189 /* The set of type qualifiers for this type. */
2190 #define TYPE_QUALS(NODE) \
2191 ((int) ((TYPE_READONLY (NODE) * TYPE_QUAL_CONST) \
2192 | (TYPE_VOLATILE (NODE) * TYPE_QUAL_VOLATILE) \
2193 | (TYPE_ATOMIC (NODE) * TYPE_QUAL_ATOMIC) \
2194 | (TYPE_RESTRICT (NODE) * TYPE_QUAL_RESTRICT) \
2195 | (ENCODE_QUAL_ADDR_SPACE (TYPE_ADDR_SPACE (NODE)))))
2197 /* The same as TYPE_QUALS without the address space qualifications. */
2198 #define TYPE_QUALS_NO_ADDR_SPACE(NODE) \
2199 ((int) ((TYPE_READONLY (NODE) * TYPE_QUAL_CONST) \
2200 | (TYPE_VOLATILE (NODE) * TYPE_QUAL_VOLATILE) \
2201 | (TYPE_ATOMIC (NODE) * TYPE_QUAL_ATOMIC) \
2202 | (TYPE_RESTRICT (NODE) * TYPE_QUAL_RESTRICT)))
2204 /* The same as TYPE_QUALS without the address space and atomic
2205 qualifications. */
2206 #define TYPE_QUALS_NO_ADDR_SPACE_NO_ATOMIC(NODE) \
2207 ((int) ((TYPE_READONLY (NODE) * TYPE_QUAL_CONST) \
2208 | (TYPE_VOLATILE (NODE) * TYPE_QUAL_VOLATILE) \
2209 | (TYPE_RESTRICT (NODE) * TYPE_QUAL_RESTRICT)))
2211 /* These flags are available for each language front end to use internally. */
2212 #define TYPE_LANG_FLAG_0(NODE) (TYPE_CHECK (NODE)->type_common.lang_flag_0)
2213 #define TYPE_LANG_FLAG_1(NODE) (TYPE_CHECK (NODE)->type_common.lang_flag_1)
2214 #define TYPE_LANG_FLAG_2(NODE) (TYPE_CHECK (NODE)->type_common.lang_flag_2)
2215 #define TYPE_LANG_FLAG_3(NODE) (TYPE_CHECK (NODE)->type_common.lang_flag_3)
2216 #define TYPE_LANG_FLAG_4(NODE) (TYPE_CHECK (NODE)->type_common.lang_flag_4)
2217 #define TYPE_LANG_FLAG_5(NODE) (TYPE_CHECK (NODE)->type_common.lang_flag_5)
2218 #define TYPE_LANG_FLAG_6(NODE) (TYPE_CHECK (NODE)->type_common.lang_flag_6)
2219 #define TYPE_LANG_FLAG_7(NODE) (TYPE_CHECK (NODE)->type_common.lang_flag_7)
2221 /* Used to keep track of visited nodes in tree traversals. This is set to
2222 0 by copy_node and make_node. */
2223 #define TREE_VISITED(NODE) ((NODE)->base.visited)
2225 /* If set in an ARRAY_TYPE, indicates a string type (for languages
2226 that distinguish string from array of char).
2227 If set in a INTEGER_TYPE, indicates a character type. */
2228 #define TYPE_STRING_FLAG(NODE) \
2229 (ARRAY_OR_INTEGER_TYPE_CHECK (NODE)->type_common.string_flag)
2231 /* If set for RECORD_TYPE or UNION_TYPE it indicates that the type conforms
2232 to the C++ one definition rule. This is used for LTO canonical type
2233 computation. */
2234 #define TYPE_CXX_ODR_P(NODE) \
2235 (RECORD_OR_UNION_CHECK (NODE)->type_common.string_flag)
2237 /* Nonzero in a VECTOR_TYPE if the frontends should not emit warnings
2238 about missing conversions to other vector types of the same size. */
2239 #define TYPE_VECTOR_OPAQUE(NODE) \
2240 (VECTOR_TYPE_CHECK (NODE)->base.default_def_flag)
2242 /* Indicates that objects of this type must be initialized by calling a
2243 function when they are created. */
2244 #define TYPE_NEEDS_CONSTRUCTING(NODE) \
2245 (TYPE_CHECK (NODE)->type_common.needs_constructing_flag)
2247 /* Indicates that a UNION_TYPE object should be passed the same way that
2248 the first union alternative would be passed, or that a RECORD_TYPE
2249 object should be passed the same way that the first (and only) member
2250 would be passed. */
2251 #define TYPE_TRANSPARENT_AGGR(NODE) \
2252 (RECORD_OR_UNION_CHECK (NODE)->type_common.transparent_aggr_flag)
2254 /* For an ARRAY_TYPE, indicates that it is not permitted to take the
2255 address of a component of the type. This is the counterpart of
2256 DECL_NONADDRESSABLE_P for arrays, see the definition of this flag. */
2257 #define TYPE_NONALIASED_COMPONENT(NODE) \
2258 (ARRAY_TYPE_CHECK (NODE)->type_common.transparent_aggr_flag)
2260 /* For an ARRAY_TYPE, a RECORD_TYPE, a UNION_TYPE or a QUAL_UNION_TYPE
2261 whether the array is typeless storage or the type contains a member
2262 with this flag set. Such types are exempt from type-based alias
2263 analysis. For ARRAY_TYPEs with AGGREGATE_TYPE_P element types
2264 the flag should be inherited from the element type, can change
2265 when type is finalized and because of that should not be used in
2266 type hashing. For ARRAY_TYPEs with non-AGGREGATE_TYPE_P element types
2267 the flag should not be changed after the array is created and should
2268 be used in type hashing. */
2269 #define TYPE_TYPELESS_STORAGE(NODE) \
2270 (TREE_CHECK4 (NODE, RECORD_TYPE, UNION_TYPE, QUAL_UNION_TYPE, \
2271 ARRAY_TYPE)->type_common.typeless_storage)
2273 /* Indicated that objects of this type should be laid out in as
2274 compact a way as possible. */
2275 #define TYPE_PACKED(NODE) (TYPE_CHECK (NODE)->base.u.bits.packed_flag)
2277 /* Used by type_contains_placeholder_p to avoid recomputation.
2278 Values are: 0 (unknown), 1 (false), 2 (true). Never access
2279 this field directly. */
2280 #define TYPE_CONTAINS_PLACEHOLDER_INTERNAL(NODE) \
2281 (TYPE_CHECK (NODE)->type_common.contains_placeholder_bits)
2283 /* Nonzero if RECORD_TYPE represents a final derivation of class. */
2284 #define TYPE_FINAL_P(NODE) \
2285 (RECORD_OR_UNION_CHECK (NODE)->base.default_def_flag)
2287 /* The debug output functions use the symtab union field to store
2288 information specific to the debugging format. The different debug
2289 output hooks store different types in the union field. These three
2290 macros are used to access different fields in the union. The debug
2291 hooks are responsible for consistently using only a specific
2292 macro. */
2294 /* Symtab field as an integer. Used by stabs generator in dbxout.c to
2295 hold the type's number in the generated stabs. */
2296 #define TYPE_SYMTAB_ADDRESS(NODE) \
2297 (TYPE_CHECK (NODE)->type_common.symtab.address)
2299 /* Symtab field as a pointer to a DWARF DIE. Used by DWARF generator
2300 in dwarf2out.c to point to the DIE generated for the type. */
2301 #define TYPE_SYMTAB_DIE(NODE) \
2302 (TYPE_CHECK (NODE)->type_common.symtab.die)
2304 /* The garbage collector needs to know the interpretation of the
2305 symtab field. These constants represent the different types in the
2306 union. */
2308 #define TYPE_SYMTAB_IS_ADDRESS (0)
2309 #define TYPE_SYMTAB_IS_DIE (1)
2311 #define TYPE_LANG_SPECIFIC(NODE) \
2312 (TYPE_CHECK (NODE)->type_with_lang_specific.lang_specific)
2314 #define TYPE_VALUES(NODE) (ENUMERAL_TYPE_CHECK (NODE)->type_non_common.values)
2315 #define TYPE_DOMAIN(NODE) (ARRAY_TYPE_CHECK (NODE)->type_non_common.values)
2316 #define TYPE_FIELDS(NODE) \
2317 (RECORD_OR_UNION_CHECK (NODE)->type_non_common.values)
2318 #define TYPE_CACHED_VALUES(NODE) (TYPE_CHECK (NODE)->type_non_common.values)
2319 #define TYPE_ARG_TYPES(NODE) \
2320 (FUNC_OR_METHOD_CHECK (NODE)->type_non_common.values)
2321 #define TYPE_VALUES_RAW(NODE) (TYPE_CHECK (NODE)->type_non_common.values)
2323 #define TYPE_MIN_VALUE(NODE) \
2324 (NUMERICAL_TYPE_CHECK (NODE)->type_non_common.minval)
2325 #define TYPE_NEXT_PTR_TO(NODE) \
2326 (POINTER_TYPE_CHECK (NODE)->type_non_common.minval)
2327 #define TYPE_NEXT_REF_TO(NODE) \
2328 (REFERENCE_TYPE_CHECK (NODE)->type_non_common.minval)
2329 #define TYPE_VFIELD(NODE) \
2330 (RECORD_OR_UNION_CHECK (NODE)->type_non_common.minval)
2331 #define TYPE_MIN_VALUE_RAW(NODE) (TYPE_CHECK (NODE)->type_non_common.minval)
2333 #define TYPE_MAX_VALUE(NODE) \
2334 (NUMERICAL_TYPE_CHECK (NODE)->type_non_common.maxval)
2335 #define TYPE_METHOD_BASETYPE(NODE) \
2336 (FUNC_OR_METHOD_CHECK (NODE)->type_non_common.maxval)
2337 #define TYPE_OFFSET_BASETYPE(NODE) \
2338 (OFFSET_TYPE_CHECK (NODE)->type_non_common.maxval)
2339 /* If non-NULL, this is an upper bound of the size (in bytes) of an
2340 object of the given ARRAY_TYPE_NON_COMMON. This allows temporaries to be
2341 allocated. */
2342 #define TYPE_ARRAY_MAX_SIZE(ARRAY_TYPE) \
2343 (ARRAY_TYPE_CHECK (ARRAY_TYPE)->type_non_common.maxval)
2344 #define TYPE_MAX_VALUE_RAW(NODE) (TYPE_CHECK (NODE)->type_non_common.maxval)
2345 /* For record and union types, information about this type, as a base type
2346 for itself. */
2347 #define TYPE_BINFO(NODE) (RECORD_OR_UNION_CHECK (NODE)->type_non_common.maxval)
2349 /* For types, used in a language-dependent way. */
2350 #define TYPE_LANG_SLOT_1(NODE) \
2351 (TYPE_CHECK (NODE)->type_non_common.lang_1)
2353 /* Define accessor macros for information about type inheritance
2354 and basetypes.
2356 A "basetype" means a particular usage of a data type for inheritance
2357 in another type. Each such basetype usage has its own "binfo"
2358 object to describe it. The binfo object is a TREE_VEC node.
2360 Inheritance is represented by the binfo nodes allocated for a
2361 given type. For example, given types C and D, such that D is
2362 inherited by C, 3 binfo nodes will be allocated: one for describing
2363 the binfo properties of C, similarly one for D, and one for
2364 describing the binfo properties of D as a base type for C.
2365 Thus, given a pointer to class C, one can get a pointer to the binfo
2366 of D acting as a basetype for C by looking at C's binfo's basetypes. */
2368 /* BINFO specific flags. */
2370 /* Nonzero means that the derivation chain is via a `virtual' declaration. */
2371 #define BINFO_VIRTUAL_P(NODE) (TREE_BINFO_CHECK (NODE)->base.static_flag)
2373 /* Flags for language dependent use. */
2374 #define BINFO_FLAG_0(NODE) TREE_LANG_FLAG_0 (TREE_BINFO_CHECK (NODE))
2375 #define BINFO_FLAG_1(NODE) TREE_LANG_FLAG_1 (TREE_BINFO_CHECK (NODE))
2376 #define BINFO_FLAG_2(NODE) TREE_LANG_FLAG_2 (TREE_BINFO_CHECK (NODE))
2377 #define BINFO_FLAG_3(NODE) TREE_LANG_FLAG_3 (TREE_BINFO_CHECK (NODE))
2378 #define BINFO_FLAG_4(NODE) TREE_LANG_FLAG_4 (TREE_BINFO_CHECK (NODE))
2379 #define BINFO_FLAG_5(NODE) TREE_LANG_FLAG_5 (TREE_BINFO_CHECK (NODE))
2380 #define BINFO_FLAG_6(NODE) TREE_LANG_FLAG_6 (TREE_BINFO_CHECK (NODE))
2382 /* The actual data type node being inherited in this basetype. */
2383 #define BINFO_TYPE(NODE) TREE_TYPE (TREE_BINFO_CHECK (NODE))
2385 /* The offset where this basetype appears in its containing type.
2386 BINFO_OFFSET slot holds the offset (in bytes)
2387 from the base of the complete object to the base of the part of the
2388 object that is allocated on behalf of this `type'.
2389 This is always 0 except when there is multiple inheritance. */
2391 #define BINFO_OFFSET(NODE) (TREE_BINFO_CHECK (NODE)->binfo.offset)
2392 #define BINFO_OFFSET_ZEROP(NODE) (integer_zerop (BINFO_OFFSET (NODE)))
2394 /* The virtual function table belonging to this basetype. Virtual
2395 function tables provide a mechanism for run-time method dispatching.
2396 The entries of a virtual function table are language-dependent. */
2398 #define BINFO_VTABLE(NODE) (TREE_BINFO_CHECK (NODE)->binfo.vtable)
2400 /* The virtual functions in the virtual function table. This is
2401 a TREE_LIST that is used as an initial approximation for building
2402 a virtual function table for this basetype. */
2403 #define BINFO_VIRTUALS(NODE) (TREE_BINFO_CHECK (NODE)->binfo.virtuals)
2405 /* A vector of binfos for the direct basetypes inherited by this
2406 basetype.
2408 If this basetype describes type D as inherited in C, and if the
2409 basetypes of D are E and F, then this vector contains binfos for
2410 inheritance of E and F by C. */
2411 #define BINFO_BASE_BINFOS(NODE) (&TREE_BINFO_CHECK (NODE)->binfo.base_binfos)
2413 /* The number of basetypes for NODE. */
2414 #define BINFO_N_BASE_BINFOS(NODE) (BINFO_BASE_BINFOS (NODE)->length ())
2416 /* Accessor macro to get to the Nth base binfo of this binfo. */
2417 #define BINFO_BASE_BINFO(NODE,N) \
2418 ((*BINFO_BASE_BINFOS (NODE))[(N)])
2419 #define BINFO_BASE_ITERATE(NODE,N,B) \
2420 (BINFO_BASE_BINFOS (NODE)->iterate ((N), &(B)))
2421 #define BINFO_BASE_APPEND(NODE,T) \
2422 (BINFO_BASE_BINFOS (NODE)->quick_push ((T)))
2424 /* For a BINFO record describing a virtual base class, i.e., one where
2425 TREE_VIA_VIRTUAL is set, this field assists in locating the virtual
2426 base. The actual contents are language-dependent. In the C++
2427 front-end this field is an INTEGER_CST giving an offset into the
2428 vtable where the offset to the virtual base can be found. */
2429 #define BINFO_VPTR_FIELD(NODE) (TREE_BINFO_CHECK (NODE)->binfo.vptr_field)
2431 /* Indicates the accesses this binfo has to its bases. The values are
2432 access_public_node, access_protected_node or access_private_node.
2433 If this array is not present, public access is implied. */
2434 #define BINFO_BASE_ACCESSES(NODE) \
2435 (TREE_BINFO_CHECK (NODE)->binfo.base_accesses)
2437 #define BINFO_BASE_ACCESS(NODE,N) \
2438 (*BINFO_BASE_ACCESSES (NODE))[(N)]
2439 #define BINFO_BASE_ACCESS_APPEND(NODE,T) \
2440 BINFO_BASE_ACCESSES (NODE)->quick_push ((T))
2442 /* The index in the VTT where this subobject's sub-VTT can be found.
2443 NULL_TREE if there is no sub-VTT. */
2444 #define BINFO_SUBVTT_INDEX(NODE) (TREE_BINFO_CHECK (NODE)->binfo.vtt_subvtt)
2446 /* The index in the VTT where the vptr for this subobject can be
2447 found. NULL_TREE if there is no secondary vptr in the VTT. */
2448 #define BINFO_VPTR_INDEX(NODE) (TREE_BINFO_CHECK (NODE)->binfo.vtt_vptr)
2450 /* The BINFO_INHERITANCE_CHAIN points at the binfo for the base
2451 inheriting this base for non-virtual bases. For virtual bases it
2452 points either to the binfo for which this is a primary binfo, or to
2453 the binfo of the most derived type. */
2454 #define BINFO_INHERITANCE_CHAIN(NODE) \
2455 (TREE_BINFO_CHECK (NODE)->binfo.inheritance)
2458 /* Define fields and accessors for nodes representing declared names. */
2460 /* Nonzero if DECL represents an SSA name or a variable that can possibly
2461 have an associated SSA name. */
2462 #define SSA_VAR_P(DECL) \
2463 (TREE_CODE (DECL) == VAR_DECL \
2464 || TREE_CODE (DECL) == PARM_DECL \
2465 || TREE_CODE (DECL) == RESULT_DECL \
2466 || TREE_CODE (DECL) == SSA_NAME)
2469 #define DECL_CHAIN(NODE) (TREE_CHAIN (DECL_MINIMAL_CHECK (NODE)))
2471 /* This is the name of the object as written by the user.
2472 It is an IDENTIFIER_NODE. */
2473 #define DECL_NAME(NODE) (DECL_MINIMAL_CHECK (NODE)->decl_minimal.name)
2475 /* The IDENTIFIER_NODE associated with the TYPE_NAME field. */
2476 #define TYPE_IDENTIFIER(NODE) \
2477 (TYPE_NAME (NODE) && DECL_P (TYPE_NAME (NODE)) \
2478 ? DECL_NAME (TYPE_NAME (NODE)) : TYPE_NAME (NODE))
2480 /* Every ..._DECL node gets a unique number. */
2481 #define DECL_UID(NODE) (DECL_MINIMAL_CHECK (NODE)->decl_minimal.uid)
2483 /* DEBUG_EXPR_DECLs get negative UID numbers, to catch erroneous
2484 uses. */
2485 #define DEBUG_TEMP_UID(NODE) (-DECL_UID (TREE_CHECK ((NODE), DEBUG_EXPR_DECL)))
2487 /* Every ..._DECL node gets a unique number that stays the same even
2488 when the decl is copied by the inliner once it is set. */
2489 #define DECL_PT_UID(NODE) \
2490 (DECL_COMMON_CHECK (NODE)->decl_common.pt_uid == -1u \
2491 ? (NODE)->decl_minimal.uid : (NODE)->decl_common.pt_uid)
2492 /* Initialize the ..._DECL node pt-uid to the decls uid. */
2493 #define SET_DECL_PT_UID(NODE, UID) \
2494 (DECL_COMMON_CHECK (NODE)->decl_common.pt_uid = (UID))
2495 /* Whether the ..._DECL node pt-uid has been initialized and thus needs to
2496 be preserved when copyin the decl. */
2497 #define DECL_PT_UID_SET_P(NODE) \
2498 (DECL_COMMON_CHECK (NODE)->decl_common.pt_uid != -1u)
2500 /* These two fields describe where in the source code the declaration
2501 was. If the declaration appears in several places (as for a C
2502 function that is declared first and then defined later), this
2503 information should refer to the definition. */
2504 #define DECL_SOURCE_LOCATION(NODE) \
2505 (DECL_MINIMAL_CHECK (NODE)->decl_minimal.locus)
2506 #define DECL_SOURCE_FILE(NODE) LOCATION_FILE (DECL_SOURCE_LOCATION (NODE))
2507 #define DECL_SOURCE_LINE(NODE) LOCATION_LINE (DECL_SOURCE_LOCATION (NODE))
2508 #define DECL_SOURCE_COLUMN(NODE) LOCATION_COLUMN (DECL_SOURCE_LOCATION (NODE))
2509 /* This decl was created by a front-end or back-end rather than by
2510 user code, and has not been explicitly declared by the user -- when
2511 that happens the source location is updated to the user's
2512 source. This includes decls with no location (!). */
2513 #define DECL_IS_UNDECLARED_BUILTIN(DECL) \
2514 (DECL_SOURCE_LOCATION (DECL) <= BUILTINS_LOCATION)
2516 /* For FIELD_DECLs, this is the RECORD_TYPE, UNION_TYPE, or
2517 QUAL_UNION_TYPE node that the field is a member of. For VAR_DECL,
2518 PARM_DECL, FUNCTION_DECL, LABEL_DECL, RESULT_DECL, and CONST_DECL
2519 nodes, this points to either the FUNCTION_DECL for the containing
2520 function, the RECORD_TYPE or UNION_TYPE for the containing type, or
2521 NULL_TREE or a TRANSLATION_UNIT_DECL if the given decl has "file
2522 scope". In particular, for VAR_DECLs which are virtual table pointers
2523 (they have DECL_VIRTUAL set), we use DECL_CONTEXT to determine the type
2524 they belong to. */
2525 #define DECL_CONTEXT(NODE) (DECL_MINIMAL_CHECK (NODE)->decl_minimal.context)
2526 #define DECL_FIELD_CONTEXT(NODE) \
2527 (FIELD_DECL_CHECK (NODE)->decl_minimal.context)
2529 /* If nonzero, decl's name shouldn't be emitted into debug info. */
2530 #define DECL_NAMELESS(NODE) (DECL_MINIMAL_CHECK (NODE)->base.u.bits.nameless_flag)
2532 /* For any sort of a ..._DECL node, this points to the original (abstract)
2533 decl node which this decl is an inlined/cloned instance of, or else it
2534 is NULL indicating that this decl is not an instance of some other decl.
2536 The C front-end also uses this in a nested declaration of an inline
2537 function, to point back to the definition. */
2538 #define DECL_ABSTRACT_ORIGIN(NODE) \
2539 (DECL_COMMON_CHECK (NODE)->decl_common.abstract_origin)
2541 /* Like DECL_ABSTRACT_ORIGIN, but returns NODE if there's no abstract
2542 origin. This is useful when setting the DECL_ABSTRACT_ORIGIN. */
2543 #define DECL_ORIGIN(NODE) \
2544 (DECL_ABSTRACT_ORIGIN (NODE) ? DECL_ABSTRACT_ORIGIN (NODE) : (NODE))
2546 /* Nonzero for any sort of ..._DECL node means this decl node represents an
2547 inline instance of some original (abstract) decl from an inline function;
2548 suppress any warnings about shadowing some other variable. FUNCTION_DECL
2549 nodes can also have their abstract origin set to themselves. */
2550 #define DECL_FROM_INLINE(NODE) \
2551 (DECL_ABSTRACT_ORIGIN (NODE) != NULL_TREE \
2552 && DECL_ABSTRACT_ORIGIN (NODE) != (NODE))
2554 /* In a DECL this is the field where attributes are stored. */
2555 #define DECL_ATTRIBUTES(NODE) \
2556 (DECL_COMMON_CHECK (NODE)->decl_common.attributes)
2558 /* For a FUNCTION_DECL, holds the tree of BINDINGs.
2559 For a TRANSLATION_UNIT_DECL, holds the namespace's BLOCK.
2560 For a VAR_DECL, holds the initial value.
2561 For a PARM_DECL, used for DECL_ARG_TYPE--default
2562 values for parameters are encoded in the type of the function,
2563 not in the PARM_DECL slot.
2564 For a FIELD_DECL, this is used for enumeration values and the C
2565 frontend uses it for temporarily storing bitwidth of bitfields.
2567 ??? Need to figure out some way to check this isn't a PARM_DECL. */
2568 #define DECL_INITIAL(NODE) (DECL_COMMON_CHECK (NODE)->decl_common.initial)
2570 /* Holds the size of the datum, in bits, as a tree expression.
2571 Need not be constant and may be null. May be less than TYPE_SIZE
2572 for a C++ FIELD_DECL representing a base class subobject with its
2573 own virtual base classes (which are laid out separately). */
2574 #define DECL_SIZE(NODE) (DECL_COMMON_CHECK (NODE)->decl_common.size)
2575 /* Likewise for the size in bytes. */
2576 #define DECL_SIZE_UNIT(NODE) (DECL_COMMON_CHECK (NODE)->decl_common.size_unit)
2577 #define DECL_ALIGN_RAW(NODE) (DECL_COMMON_CHECK (NODE)->decl_common.align)
2578 /* Returns the alignment required for the datum, in bits. It must
2579 be a power of two, but an "alignment" of zero is supported
2580 (e.g. as "uninitialized" sentinel). */
2581 #define DECL_ALIGN(NODE) \
2582 (DECL_ALIGN_RAW (NODE) \
2583 ? ((unsigned)1) << (DECL_ALIGN_RAW (NODE) - 1) : 0)
2584 /* Specify that DECL_ALIGN(NODE) is X. */
2585 #define SET_DECL_ALIGN(NODE, X) \
2586 (DECL_ALIGN_RAW (NODE) = ffs_hwi (X))
2588 /* The minimum alignment necessary for the datum, in bits, without
2589 warning. */
2590 #define DECL_WARN_IF_NOT_ALIGN_RAW(NODE) \
2591 (DECL_COMMON_CHECK (NODE)->decl_common.warn_if_not_align)
2592 #define DECL_WARN_IF_NOT_ALIGN(NODE) \
2593 (DECL_WARN_IF_NOT_ALIGN_RAW (NODE) \
2594 ? ((unsigned)1) << (DECL_WARN_IF_NOT_ALIGN_RAW (NODE) - 1) : 0)
2596 /* Specify that DECL_WARN_IF_NOT_ALIGN(NODE) is X. */
2597 #define SET_DECL_WARN_IF_NOT_ALIGN(NODE, X) \
2598 (DECL_WARN_IF_NOT_ALIGN_RAW (NODE) = ffs_hwi (X))
2600 /* The alignment of NODE, in bytes. */
2601 #define DECL_ALIGN_UNIT(NODE) (DECL_ALIGN (NODE) / BITS_PER_UNIT)
2602 /* Set if the alignment of this DECL has been set by the user, for
2603 example with an 'aligned' attribute. */
2604 #define DECL_USER_ALIGN(NODE) \
2605 (DECL_COMMON_CHECK (NODE)->base.u.bits.user_align)
2606 /* Holds the machine mode corresponding to the declaration of a variable or
2607 field. Always equal to TYPE_MODE (TREE_TYPE (decl)) except for a
2608 FIELD_DECL. */
2609 #define DECL_MODE(NODE) (DECL_COMMON_CHECK (NODE)->decl_common.mode)
2610 #define SET_DECL_MODE(NODE, MODE) \
2611 (DECL_COMMON_CHECK (NODE)->decl_common.mode = (MODE))
2613 /* For FUNCTION_DECL, if it is built-in, this identifies which built-in
2614 operation it is. This is only intended for low-level accesses;
2615 normally DECL_FUNCTION_CODE, DECL_FE_FUNCTION_CODE or DECL_MD_FUNCTION
2616 should be used instead. */
2617 #define DECL_UNCHECKED_FUNCTION_CODE(NODE) \
2618 (FUNCTION_DECL_CHECK (NODE)->function_decl.function_code)
2620 /* Test if FCODE is a function code for an alloca operation. */
2621 #define ALLOCA_FUNCTION_CODE_P(FCODE) \
2622 ((FCODE) == BUILT_IN_ALLOCA \
2623 || (FCODE) == BUILT_IN_ALLOCA_WITH_ALIGN \
2624 || (FCODE) == BUILT_IN_ALLOCA_WITH_ALIGN_AND_MAX)
2626 /* Generate case for an alloca operation. */
2627 #define CASE_BUILT_IN_ALLOCA \
2628 case BUILT_IN_ALLOCA: \
2629 case BUILT_IN_ALLOCA_WITH_ALIGN: \
2630 case BUILT_IN_ALLOCA_WITH_ALIGN_AND_MAX
2632 #define DECL_FUNCTION_PERSONALITY(NODE) \
2633 (FUNCTION_DECL_CHECK (NODE)->function_decl.personality)
2635 /* Nonzero for a given ..._DECL node means that the name of this node should
2636 be ignored for symbolic debug purposes. For a TYPE_DECL, this means that
2637 the associated type should be ignored. For a FUNCTION_DECL, the body of
2638 the function should also be ignored. */
2639 #define DECL_IGNORED_P(NODE) \
2640 (DECL_COMMON_CHECK (NODE)->decl_common.ignored_flag)
2642 /* Nonzero for a given ..._DECL node means that this node represents an
2643 "abstract instance" of the given declaration (e.g. in the original
2644 declaration of an inline function). When generating symbolic debugging
2645 information, we mustn't try to generate any address information for nodes
2646 marked as "abstract instances" because we don't actually generate
2647 any code or allocate any data space for such instances. */
2648 #define DECL_ABSTRACT_P(NODE) \
2649 (DECL_COMMON_CHECK (NODE)->decl_common.abstract_flag)
2651 /* Language-specific decl information. */
2652 #define DECL_LANG_SPECIFIC(NODE) \
2653 (DECL_COMMON_CHECK (NODE)->decl_common.lang_specific)
2655 /* In a VAR_DECL or FUNCTION_DECL, nonzero means external reference:
2656 do not allocate storage, and refer to a definition elsewhere. Note that
2657 this does not necessarily imply the entity represented by NODE
2658 has no program source-level definition in this translation unit. For
2659 example, for a FUNCTION_DECL, DECL_SAVED_TREE may be non-NULL and
2660 DECL_EXTERNAL may be true simultaneously; that can be the case for
2661 a C99 "extern inline" function. */
2662 #define DECL_EXTERNAL(NODE) (DECL_COMMON_CHECK (NODE)->decl_common.decl_flag_1)
2664 /* Nonzero in a ..._DECL means this variable is ref'd from a nested function.
2665 For VAR_DECL nodes, PARM_DECL nodes, and FUNCTION_DECL nodes.
2667 For LABEL_DECL nodes, nonzero if nonlocal gotos to the label are permitted.
2669 Also set in some languages for variables, etc., outside the normal
2670 lexical scope, such as class instance variables. */
2671 #define DECL_NONLOCAL(NODE) \
2672 (DECL_COMMON_CHECK (NODE)->decl_common.nonlocal_flag)
2674 /* Used in VAR_DECLs to indicate that the variable is a vtable.
2675 Used in FIELD_DECLs for vtable pointers.
2676 Used in FUNCTION_DECLs to indicate that the function is virtual. */
2677 #define DECL_VIRTUAL_P(NODE) \
2678 (DECL_COMMON_CHECK (NODE)->decl_common.virtual_flag)
2680 /* Used to indicate that this DECL represents a compiler-generated entity. */
2681 #define DECL_ARTIFICIAL(NODE) \
2682 (DECL_COMMON_CHECK (NODE)->decl_common.artificial_flag)
2684 /* Additional flags for language-specific uses. */
2685 #define DECL_LANG_FLAG_0(NODE) \
2686 (DECL_COMMON_CHECK (NODE)->decl_common.lang_flag_0)
2687 #define DECL_LANG_FLAG_1(NODE) \
2688 (DECL_COMMON_CHECK (NODE)->decl_common.lang_flag_1)
2689 #define DECL_LANG_FLAG_2(NODE) \
2690 (DECL_COMMON_CHECK (NODE)->decl_common.lang_flag_2)
2691 #define DECL_LANG_FLAG_3(NODE) \
2692 (DECL_COMMON_CHECK (NODE)->decl_common.lang_flag_3)
2693 #define DECL_LANG_FLAG_4(NODE) \
2694 (DECL_COMMON_CHECK (NODE)->decl_common.lang_flag_4)
2695 #define DECL_LANG_FLAG_5(NODE) \
2696 (DECL_COMMON_CHECK (NODE)->decl_common.lang_flag_5)
2697 #define DECL_LANG_FLAG_6(NODE) \
2698 (DECL_COMMON_CHECK (NODE)->decl_common.lang_flag_6)
2699 #define DECL_LANG_FLAG_7(NODE) \
2700 (DECL_COMMON_CHECK (NODE)->decl_common.lang_flag_7)
2701 #define DECL_LANG_FLAG_8(NODE) \
2702 (DECL_COMMON_CHECK (NODE)->decl_common.lang_flag_8)
2704 /* Nonzero for a scope which is equal to file scope. */
2705 #define SCOPE_FILE_SCOPE_P(EXP) \
2706 (! (EXP) || TREE_CODE (EXP) == TRANSLATION_UNIT_DECL)
2707 /* Nonzero for a decl which is at file scope. */
2708 #define DECL_FILE_SCOPE_P(EXP) SCOPE_FILE_SCOPE_P (DECL_CONTEXT (EXP))
2709 /* Nonzero for a type which is at file scope. */
2710 #define TYPE_FILE_SCOPE_P(EXP) SCOPE_FILE_SCOPE_P (TYPE_CONTEXT (EXP))
2712 /* Nonzero for a decl that is decorated using attribute used.
2713 This indicates to compiler tools that this decl needs to be preserved. */
2714 #define DECL_PRESERVE_P(DECL) \
2715 DECL_COMMON_CHECK (DECL)->decl_common.preserve_flag
2717 /* Nonzero for a decl that is decorated with the "noinit" attribute.
2718 decls with this attribute are placed into the ".noinit" section, so they are
2719 not initialized by the target's startup code. */
2720 #define DECL_NOINIT_P(DECL) \
2721 (DECL_P (DECL) \
2722 && (lookup_attribute ("noinit", DECL_ATTRIBUTES (DECL)) != NULL_TREE))
2724 /* Nonzero for a decl that is decorated with the "persistent" attribute.
2725 decls with this attribute are placed into the ".persistent" section, so they
2726 are not initialized by the target's startup code. */
2727 #define DECL_PERSISTENT_P(DECL) \
2728 (DECL_P (DECL) \
2729 && (lookup_attribute ("persistent", DECL_ATTRIBUTES (DECL)) != NULL_TREE))
2731 /* For function local variables of COMPLEX and VECTOR types,
2732 indicates that the variable is not aliased, and that all
2733 modifications to the variable have been adjusted so that
2734 they are killing assignments. Thus the variable may now
2735 be treated as a GIMPLE register, and use real instead of
2736 virtual ops in SSA form. */
2737 #define DECL_NOT_GIMPLE_REG_P(DECL) \
2738 DECL_COMMON_CHECK (DECL)->decl_common.not_gimple_reg_flag
2740 extern tree decl_value_expr_lookup (tree);
2741 extern void decl_value_expr_insert (tree, tree);
2743 /* In a VAR_DECL or PARM_DECL, the location at which the value may be found,
2744 if transformations have made this more complicated than evaluating the
2745 decl itself. */
2746 #define DECL_HAS_VALUE_EXPR_P(NODE) \
2747 (TREE_CHECK3 (NODE, VAR_DECL, PARM_DECL, RESULT_DECL) \
2748 ->decl_common.decl_flag_2)
2749 #define DECL_VALUE_EXPR(NODE) \
2750 (decl_value_expr_lookup (DECL_WRTL_CHECK (NODE)))
2751 #define SET_DECL_VALUE_EXPR(NODE, VAL) \
2752 (decl_value_expr_insert (DECL_WRTL_CHECK (NODE), VAL))
2754 /* Holds the RTL expression for the value of a variable or function.
2755 This value can be evaluated lazily for functions, variables with
2756 static storage duration, and labels. */
2757 #define DECL_RTL(NODE) \
2758 (DECL_WRTL_CHECK (NODE)->decl_with_rtl.rtl \
2759 ? (NODE)->decl_with_rtl.rtl \
2760 : (make_decl_rtl (NODE), (NODE)->decl_with_rtl.rtl))
2762 /* Set the DECL_RTL for NODE to RTL. */
2763 #define SET_DECL_RTL(NODE, RTL) set_decl_rtl (NODE, RTL)
2765 /* Returns nonzero if NODE is a tree node that can contain RTL. */
2766 #define HAS_RTL_P(NODE) (CODE_CONTAINS_STRUCT (TREE_CODE (NODE), TS_DECL_WRTL))
2768 /* Returns nonzero if the DECL_RTL for NODE has already been set. */
2769 #define DECL_RTL_SET_P(NODE) \
2770 (HAS_RTL_P (NODE) && DECL_WRTL_CHECK (NODE)->decl_with_rtl.rtl != NULL)
2772 /* Copy the RTL from SRC_DECL to DST_DECL. If the RTL was not set for
2773 SRC_DECL, it will not be set for DST_DECL; this is a lazy copy. */
2774 #define COPY_DECL_RTL(SRC_DECL, DST_DECL) \
2775 (DECL_WRTL_CHECK (DST_DECL)->decl_with_rtl.rtl \
2776 = DECL_WRTL_CHECK (SRC_DECL)->decl_with_rtl.rtl)
2778 /* The DECL_RTL for NODE, if it is set, or NULL, if it is not set. */
2779 #define DECL_RTL_IF_SET(NODE) (DECL_RTL_SET_P (NODE) ? DECL_RTL (NODE) : NULL)
2781 #if (GCC_VERSION >= 2007)
2782 #define DECL_RTL_KNOWN_SET(decl) __extension__ \
2783 ({ tree const __d = (decl); \
2784 gcc_checking_assert (DECL_RTL_SET_P (__d)); \
2785 /* Dereference it so the compiler knows it can't be NULL even \
2786 without assertion checking. */ \
2787 &*DECL_RTL_IF_SET (__d); })
2788 #else
2789 #define DECL_RTL_KNOWN_SET(decl) (&*DECL_RTL_IF_SET (decl))
2790 #endif
2792 /* In VAR_DECL and PARM_DECL nodes, nonzero means declared `register'. */
2793 #define DECL_REGISTER(NODE) (DECL_WRTL_CHECK (NODE)->decl_common.decl_flag_0)
2795 /* In a FIELD_DECL, this is the field position, counting in bytes, of the
2796 DECL_OFFSET_ALIGN-bit-sized word containing the bit closest to the beginning
2797 of the structure. */
2798 #define DECL_FIELD_OFFSET(NODE) (FIELD_DECL_CHECK (NODE)->field_decl.offset)
2800 /* In a FIELD_DECL, this is the offset, in bits, of the first bit of the
2801 field from DECL_FIELD_OFFSET. This field may be nonzero even for fields
2802 that are not bit fields (since DECL_OFFSET_ALIGN may be larger than the
2803 natural alignment of the field's type). */
2804 #define DECL_FIELD_BIT_OFFSET(NODE) \
2805 (FIELD_DECL_CHECK (NODE)->field_decl.bit_offset)
2807 /* In a FIELD_DECL, this indicates whether the field was a bit-field and
2808 if so, the type that was originally specified for it.
2809 TREE_TYPE may have been modified (in finish_struct). */
2810 #define DECL_BIT_FIELD_TYPE(NODE) \
2811 (FIELD_DECL_CHECK (NODE)->field_decl.bit_field_type)
2813 /* In a FIELD_DECL of a RECORD_TYPE, this is a pointer to the storage
2814 representative FIELD_DECL. */
2815 #define DECL_BIT_FIELD_REPRESENTATIVE(NODE) \
2816 (FIELD_DECL_CHECK (NODE)->field_decl.qualifier)
2818 /* For a FIELD_DECL in a QUAL_UNION_TYPE, records the expression, which
2819 if nonzero, indicates that the field occupies the type. */
2820 #define DECL_QUALIFIER(NODE) (FIELD_DECL_CHECK (NODE)->field_decl.qualifier)
2822 /* For FIELD_DECLs, off_align holds the number of low-order bits of
2823 DECL_FIELD_OFFSET which are known to be always zero.
2824 DECL_OFFSET_ALIGN thus returns the alignment that DECL_FIELD_OFFSET
2825 has. */
2826 #define DECL_OFFSET_ALIGN(NODE) \
2827 (((unsigned HOST_WIDE_INT)1) << FIELD_DECL_CHECK (NODE)->decl_common.off_align)
2829 /* Specify that DECL_OFFSET_ALIGN(NODE) is X. */
2830 #define SET_DECL_OFFSET_ALIGN(NODE, X) \
2831 (FIELD_DECL_CHECK (NODE)->decl_common.off_align = ffs_hwi (X) - 1)
2833 /* For FIELD_DECLS, DECL_FCONTEXT is the *first* baseclass in
2834 which this FIELD_DECL is defined. This information is needed when
2835 writing debugging information about vfield and vbase decls for C++. */
2836 #define DECL_FCONTEXT(NODE) (FIELD_DECL_CHECK (NODE)->field_decl.fcontext)
2838 /* In a FIELD_DECL, indicates this field should be bit-packed. */
2839 #define DECL_PACKED(NODE) (FIELD_DECL_CHECK (NODE)->base.u.bits.packed_flag)
2841 /* In a FIELD_DECL, indicates this field should be ignored for ABI decisions
2842 like passing/returning containing struct by value.
2843 Set for C++17 empty base artificial FIELD_DECLs as well as
2844 empty [[no_unique_address]] non-static data members. */
2845 #define DECL_FIELD_ABI_IGNORED(NODE) \
2846 (FIELD_DECL_CHECK (NODE)->decl_common.decl_flag_0)
2848 /* Nonzero in a FIELD_DECL means it is a bit field, and must be accessed
2849 specially. */
2850 #define DECL_BIT_FIELD(NODE) (FIELD_DECL_CHECK (NODE)->decl_common.decl_flag_1)
2852 /* Used in a FIELD_DECL to indicate that we cannot form the address of
2853 this component. This makes it possible for Type-Based Alias Analysis
2854 to disambiguate accesses to this field with indirect accesses using
2855 the field's type:
2857 struct S { int i; } s;
2858 int *p;
2860 If the flag is set on 'i', TBAA computes that s.i and *p never conflict.
2862 From the implementation's viewpoint, the alias set of the type of the
2863 field 'i' (int) will not be recorded as a subset of that of the type of
2864 's' (struct S) in record_component_aliases. The counterpart is that
2865 accesses to s.i must not be given the alias set of the type of 'i'
2866 (int) but instead directly that of the type of 's' (struct S). */
2867 #define DECL_NONADDRESSABLE_P(NODE) \
2868 (FIELD_DECL_CHECK (NODE)->decl_common.decl_flag_2)
2870 /* Used in a FIELD_DECL to indicate that this field is padding. */
2871 #define DECL_PADDING_P(NODE) \
2872 (FIELD_DECL_CHECK (NODE)->decl_common.decl_flag_3)
2874 /* A numeric unique identifier for a LABEL_DECL. The UID allocation is
2875 dense, unique within any one function, and may be used to index arrays.
2876 If the value is -1, then no UID has been assigned. */
2877 #define LABEL_DECL_UID(NODE) \
2878 (LABEL_DECL_CHECK (NODE)->label_decl.label_decl_uid)
2880 /* In a LABEL_DECL, the EH region number for which the label is the
2881 post_landing_pad. */
2882 #define EH_LANDING_PAD_NR(NODE) \
2883 (LABEL_DECL_CHECK (NODE)->label_decl.eh_landing_pad_nr)
2885 /* For a PARM_DECL, records the data type used to pass the argument,
2886 which may be different from the type seen in the program. */
2887 #define DECL_ARG_TYPE(NODE) (PARM_DECL_CHECK (NODE)->decl_common.initial)
2889 /* For PARM_DECL, holds an RTL for the stack slot or register
2890 where the data was actually passed. */
2891 #define DECL_INCOMING_RTL(NODE) \
2892 (PARM_DECL_CHECK (NODE)->parm_decl.incoming_rtl)
2894 /* Nonzero for a given ..._DECL node means that no warnings should be
2895 generated just because this node is unused. */
2896 #define DECL_IN_SYSTEM_HEADER(NODE) \
2897 (in_system_header_at (DECL_SOURCE_LOCATION (NODE)))
2899 /* Used to indicate that the linkage status of this DECL is not yet known,
2900 so it should not be output now. */
2901 #define DECL_DEFER_OUTPUT(NODE) \
2902 (DECL_WITH_VIS_CHECK (NODE)->decl_with_vis.defer_output)
2904 /* In a VAR_DECL that's static,
2905 nonzero if the space is in the text section. */
2906 #define DECL_IN_TEXT_SECTION(NODE) \
2907 (VAR_DECL_CHECK (NODE)->decl_with_vis.in_text_section)
2909 /* In a VAR_DECL that's static,
2910 nonzero if it belongs to the global constant pool. */
2911 #define DECL_IN_CONSTANT_POOL(NODE) \
2912 (VAR_DECL_CHECK (NODE)->decl_with_vis.in_constant_pool)
2914 /* Nonzero for a given ..._DECL node means that this node should be
2915 put in .common, if possible. If a DECL_INITIAL is given, and it
2916 is not error_mark_node, then the decl cannot be put in .common. */
2917 #define DECL_COMMON(NODE) \
2918 (DECL_WITH_VIS_CHECK (NODE)->decl_with_vis.common_flag)
2920 /* In a VAR_DECL, nonzero if the decl is a register variable with
2921 an explicit asm specification. */
2922 #define DECL_HARD_REGISTER(NODE) \
2923 (VAR_DECL_CHECK (NODE)->decl_with_vis.hard_register)
2925 /* Used to indicate that this DECL has weak linkage. */
2926 #define DECL_WEAK(NODE) (DECL_WITH_VIS_CHECK (NODE)->decl_with_vis.weak_flag)
2928 /* Used to indicate that the DECL is a dllimport. */
2929 #define DECL_DLLIMPORT_P(NODE) \
2930 (DECL_WITH_VIS_CHECK (NODE)->decl_with_vis.dllimport_flag)
2932 /* Used in a DECL to indicate that, even if it TREE_PUBLIC, it need
2933 not be put out unless it is needed in this translation unit.
2934 Entities like this are shared across translation units (like weak
2935 entities), but are guaranteed to be generated by any translation
2936 unit that needs them, and therefore need not be put out anywhere
2937 where they are not needed. DECL_COMDAT is just a hint to the
2938 back-end; it is up to front-ends which set this flag to ensure
2939 that there will never be any harm, other than bloat, in putting out
2940 something which is DECL_COMDAT. */
2941 #define DECL_COMDAT(NODE) \
2942 (DECL_WITH_VIS_CHECK (NODE)->decl_with_vis.comdat_flag)
2944 #define DECL_COMDAT_GROUP(NODE) \
2945 decl_comdat_group (NODE)
2947 /* Used in TREE_PUBLIC decls to indicate that copies of this DECL in
2948 multiple translation units should be merged. */
2949 #define DECL_ONE_ONLY(NODE) (DECL_COMDAT_GROUP (NODE) != NULL_TREE \
2950 && (TREE_PUBLIC (NODE) || DECL_EXTERNAL (NODE)))
2952 /* The name of the object as the assembler will see it (but before any
2953 translations made by ASM_OUTPUT_LABELREF). Often this is the same
2954 as DECL_NAME. It is an IDENTIFIER_NODE.
2956 ASSEMBLER_NAME of TYPE_DECLS may store global name of type used for
2957 One Definition Rule based type merging at LTO. It is computed only for
2958 LTO compilation and C++. */
2959 #define DECL_ASSEMBLER_NAME(NODE) decl_assembler_name (NODE)
2961 /* Raw accessor for DECL_ASSEMBLE_NAME. */
2962 #define DECL_ASSEMBLER_NAME_RAW(NODE) \
2963 (DECL_WITH_VIS_CHECK (NODE)->decl_with_vis.assembler_name)
2965 /* Return true if NODE is a NODE that can contain a DECL_ASSEMBLER_NAME.
2966 This is true of all DECL nodes except FIELD_DECL. */
2967 #define HAS_DECL_ASSEMBLER_NAME_P(NODE) \
2968 (CODE_CONTAINS_STRUCT (TREE_CODE (NODE), TS_DECL_WITH_VIS))
2970 /* Returns nonzero if the DECL_ASSEMBLER_NAME for NODE has been set. If zero,
2971 the NODE might still have a DECL_ASSEMBLER_NAME -- it just hasn't been set
2972 yet. */
2973 #define DECL_ASSEMBLER_NAME_SET_P(NODE) \
2974 (DECL_ASSEMBLER_NAME_RAW (NODE) != NULL_TREE)
2976 /* Set the DECL_ASSEMBLER_NAME for NODE to NAME. */
2977 #define SET_DECL_ASSEMBLER_NAME(NODE, NAME) \
2978 overwrite_decl_assembler_name (NODE, NAME)
2980 /* Copy the DECL_ASSEMBLER_NAME from SRC_DECL to DST_DECL. Note that
2981 if SRC_DECL's DECL_ASSEMBLER_NAME has not yet been set, using this
2982 macro will not cause the DECL_ASSEMBLER_NAME to be set, but will
2983 clear DECL_ASSEMBLER_NAME of DST_DECL, if it was already set. In
2984 other words, the semantics of using this macro, are different than
2985 saying:
2987 SET_DECL_ASSEMBLER_NAME(DST_DECL, DECL_ASSEMBLER_NAME (SRC_DECL))
2989 which will try to set the DECL_ASSEMBLER_NAME for SRC_DECL. */
2991 #define COPY_DECL_ASSEMBLER_NAME(SRC_DECL, DST_DECL) \
2992 SET_DECL_ASSEMBLER_NAME (DST_DECL, DECL_ASSEMBLER_NAME_RAW (SRC_DECL))
2994 /* Records the section name in a section attribute. Used to pass
2995 the name from decl_attributes to make_function_rtl and make_decl_rtl. */
2996 #define DECL_SECTION_NAME(NODE) decl_section_name (NODE)
2998 /* Nonzero in a decl means that the gimplifier has seen (or placed)
2999 this variable in a BIND_EXPR. */
3000 #define DECL_SEEN_IN_BIND_EXPR_P(NODE) \
3001 (DECL_WITH_VIS_CHECK (NODE)->decl_with_vis.seen_in_bind_expr)
3003 /* Value of the decls's visibility attribute */
3004 #define DECL_VISIBILITY(NODE) \
3005 (DECL_WITH_VIS_CHECK (NODE)->decl_with_vis.visibility)
3007 /* Nonzero means that the decl (or an enclosing scope) had its
3008 visibility specified rather than being inferred. */
3009 #define DECL_VISIBILITY_SPECIFIED(NODE) \
3010 (DECL_WITH_VIS_CHECK (NODE)->decl_with_vis.visibility_specified)
3012 /* In a VAR_DECL, the model to use if the data should be allocated from
3013 thread-local storage. */
3014 #define DECL_TLS_MODEL(NODE) decl_tls_model (NODE)
3016 /* In a VAR_DECL, nonzero if the data should be allocated from
3017 thread-local storage. */
3018 #define DECL_THREAD_LOCAL_P(NODE) \
3019 ((TREE_STATIC (NODE) || DECL_EXTERNAL (NODE)) && decl_tls_model (NODE) >= TLS_MODEL_REAL)
3021 /* In a non-local VAR_DECL with static storage duration, true if the
3022 variable has an initialization priority. If false, the variable
3023 will be initialized at the DEFAULT_INIT_PRIORITY. */
3024 #define DECL_HAS_INIT_PRIORITY_P(NODE) \
3025 (VAR_DECL_CHECK (NODE)->decl_with_vis.init_priority_p)
3027 extern tree decl_debug_expr_lookup (tree);
3028 extern void decl_debug_expr_insert (tree, tree);
3030 /* For VAR_DECL, this is set to an expression that it was split from. */
3031 #define DECL_HAS_DEBUG_EXPR_P(NODE) \
3032 (VAR_DECL_CHECK (NODE)->decl_common.debug_expr_is_from)
3033 #define DECL_DEBUG_EXPR(NODE) \
3034 (decl_debug_expr_lookup (VAR_DECL_CHECK (NODE)))
3036 #define SET_DECL_DEBUG_EXPR(NODE, VAL) \
3037 (decl_debug_expr_insert (VAR_DECL_CHECK (NODE), VAL))
3039 extern priority_type decl_init_priority_lookup (tree);
3040 extern priority_type decl_fini_priority_lookup (tree);
3041 extern void decl_init_priority_insert (tree, priority_type);
3042 extern void decl_fini_priority_insert (tree, priority_type);
3044 /* For a VAR_DECL or FUNCTION_DECL the initialization priority of
3045 NODE. */
3046 #define DECL_INIT_PRIORITY(NODE) \
3047 (decl_init_priority_lookup (NODE))
3048 /* Set the initialization priority for NODE to VAL. */
3049 #define SET_DECL_INIT_PRIORITY(NODE, VAL) \
3050 (decl_init_priority_insert (NODE, VAL))
3052 /* For a FUNCTION_DECL the finalization priority of NODE. */
3053 #define DECL_FINI_PRIORITY(NODE) \
3054 (decl_fini_priority_lookup (NODE))
3055 /* Set the finalization priority for NODE to VAL. */
3056 #define SET_DECL_FINI_PRIORITY(NODE, VAL) \
3057 (decl_fini_priority_insert (NODE, VAL))
3059 /* The initialization priority for entities for which no explicit
3060 initialization priority has been specified. */
3061 #define DEFAULT_INIT_PRIORITY 65535
3063 /* The maximum allowed initialization priority. */
3064 #define MAX_INIT_PRIORITY 65535
3066 /* The largest priority value reserved for use by system runtime
3067 libraries. */
3068 #define MAX_RESERVED_INIT_PRIORITY 100
3070 /* In a VAR_DECL, nonzero if this is a global variable for VOPs. */
3071 #define VAR_DECL_IS_VIRTUAL_OPERAND(NODE) \
3072 (VAR_DECL_CHECK (NODE)->base.u.bits.saturating_flag)
3074 /* In a VAR_DECL, nonzero if this is a non-local frame structure. */
3075 #define DECL_NONLOCAL_FRAME(NODE) \
3076 (VAR_DECL_CHECK (NODE)->base.default_def_flag)
3078 /* In a VAR_DECL, nonzero if this variable is not aliased by any pointer. */
3079 #define DECL_NONALIASED(NODE) \
3080 (VAR_DECL_CHECK (NODE)->base.nothrow_flag)
3082 /* This field is used to reference anything in decl.result and is meant only
3083 for use by the garbage collector. */
3084 #define DECL_RESULT_FLD(NODE) \
3085 (DECL_NON_COMMON_CHECK (NODE)->decl_non_common.result)
3087 /* The DECL_VINDEX is used for FUNCTION_DECLS in two different ways.
3088 Before the struct containing the FUNCTION_DECL is laid out,
3089 DECL_VINDEX may point to a FUNCTION_DECL in a base class which
3090 is the FUNCTION_DECL which this FUNCTION_DECL will replace as a virtual
3091 function. When the class is laid out, this pointer is changed
3092 to an INTEGER_CST node which is suitable for use as an index
3093 into the virtual function table. */
3094 #define DECL_VINDEX(NODE) \
3095 (FUNCTION_DECL_CHECK (NODE)->function_decl.vindex)
3097 /* In FUNCTION_DECL, holds the decl for the return value. */
3098 #define DECL_RESULT(NODE) (FUNCTION_DECL_CHECK (NODE)->decl_non_common.result)
3100 /* In a FUNCTION_DECL, nonzero if the function cannot be inlined. */
3101 #define DECL_UNINLINABLE(NODE) \
3102 (FUNCTION_DECL_CHECK (NODE)->function_decl.uninlinable)
3104 /* In a FUNCTION_DECL, the saved representation of the body of the
3105 entire function. */
3106 #define DECL_SAVED_TREE(NODE) \
3107 (FUNCTION_DECL_CHECK (NODE)->function_decl.saved_tree)
3109 /* Nonzero in a FUNCTION_DECL means this function should be treated
3110 as if it were a malloc, meaning it returns a pointer that is
3111 not an alias. */
3112 #define DECL_IS_MALLOC(NODE) \
3113 (FUNCTION_DECL_CHECK (NODE)->function_decl.malloc_flag)
3115 /* Macro for direct set and get of function_decl.decl_type. */
3116 #define FUNCTION_DECL_DECL_TYPE(NODE) \
3117 (NODE->function_decl.decl_type)
3119 /* Set decl_type of a DECL. Set it to T when SET is true, or reset
3120 it to NONE. */
3122 static inline void
3123 set_function_decl_type (tree decl, function_decl_type t, bool set)
3125 if (set)
3127 gcc_assert (FUNCTION_DECL_DECL_TYPE (decl) == NONE
3128 || FUNCTION_DECL_DECL_TYPE (decl) == t);
3129 FUNCTION_DECL_DECL_TYPE (decl) = t;
3131 else if (FUNCTION_DECL_DECL_TYPE (decl) == t)
3132 FUNCTION_DECL_DECL_TYPE (decl) = NONE;
3135 /* Nonzero in a FUNCTION_DECL means this function is a replaceable
3136 function (like replaceable operators new or delete). */
3137 #define DECL_IS_REPLACEABLE_OPERATOR(NODE)\
3138 (FUNCTION_DECL_CHECK (NODE)->function_decl.replaceable_operator)
3140 /* Nonzero in a FUNCTION_DECL means this function should be treated as
3141 C++ operator new, meaning that it returns a pointer for which we
3142 should not use type based aliasing. */
3143 #define DECL_IS_OPERATOR_NEW_P(NODE) \
3144 (FUNCTION_DECL_DECL_TYPE (FUNCTION_DECL_CHECK (NODE)) == OPERATOR_NEW)
3146 #define DECL_IS_REPLACEABLE_OPERATOR_NEW_P(NODE) \
3147 (DECL_IS_OPERATOR_NEW_P (NODE) && DECL_IS_REPLACEABLE_OPERATOR (NODE))
3149 #define DECL_SET_IS_OPERATOR_NEW(NODE, VAL) \
3150 set_function_decl_type (FUNCTION_DECL_CHECK (NODE), OPERATOR_NEW, VAL)
3152 /* Nonzero in a FUNCTION_DECL means this function should be treated as
3153 C++ operator delete. */
3154 #define DECL_IS_OPERATOR_DELETE_P(NODE) \
3155 (FUNCTION_DECL_DECL_TYPE (FUNCTION_DECL_CHECK (NODE)) == OPERATOR_DELETE)
3157 #define DECL_SET_IS_OPERATOR_DELETE(NODE, VAL) \
3158 set_function_decl_type (FUNCTION_DECL_CHECK (NODE), OPERATOR_DELETE, VAL)
3160 /* Nonzero in a FUNCTION_DECL means this function may return more
3161 than once. */
3162 #define DECL_IS_RETURNS_TWICE(NODE) \
3163 (FUNCTION_DECL_CHECK (NODE)->function_decl.returns_twice_flag)
3165 /* Nonzero in a FUNCTION_DECL means this function should be treated
3166 as "pure" function (like const function, but may read global memory).
3167 Note that being pure or const for a function is orthogonal to being
3168 nothrow, i.e. it is valid to have DECL_PURE_P set and TREE_NOTHROW
3169 cleared. */
3170 #define DECL_PURE_P(NODE) (FUNCTION_DECL_CHECK (NODE)->function_decl.pure_flag)
3172 /* Nonzero only if one of TREE_READONLY or DECL_PURE_P is nonzero AND
3173 the const or pure function may not terminate. When this is nonzero
3174 for a const or pure function, it can be dealt with by cse passes
3175 but cannot be removed by dce passes since you are not allowed to
3176 change an infinite looping program into one that terminates without
3177 error. */
3178 #define DECL_LOOPING_CONST_OR_PURE_P(NODE) \
3179 (FUNCTION_DECL_CHECK (NODE)->function_decl.looping_const_or_pure_flag)
3181 /* Nonzero in a FUNCTION_DECL means this function should be treated
3182 as "novops" function (function that does not read global memory,
3183 but may have arbitrary side effects). */
3184 #define DECL_IS_NOVOPS(NODE) \
3185 (FUNCTION_DECL_CHECK (NODE)->function_decl.novops_flag)
3187 /* Used in FUNCTION_DECLs to indicate that they should be run automatically
3188 at the beginning or end of execution. */
3189 #define DECL_STATIC_CONSTRUCTOR(NODE) \
3190 (FUNCTION_DECL_CHECK (NODE)->function_decl.static_ctor_flag)
3192 #define DECL_STATIC_DESTRUCTOR(NODE) \
3193 (FUNCTION_DECL_CHECK (NODE)->function_decl.static_dtor_flag)
3195 /* Used in FUNCTION_DECLs to indicate that function entry and exit should
3196 be instrumented with calls to support routines. */
3197 #define DECL_NO_INSTRUMENT_FUNCTION_ENTRY_EXIT(NODE) \
3198 (FUNCTION_DECL_CHECK (NODE)->function_decl.no_instrument_function_entry_exit)
3200 /* Used in FUNCTION_DECLs to indicate that limit-stack-* should be
3201 disabled in this function. */
3202 #define DECL_NO_LIMIT_STACK(NODE) \
3203 (FUNCTION_DECL_CHECK (NODE)->function_decl.no_limit_stack)
3205 /* In a FUNCTION_DECL indicates that a static chain is needed. */
3206 #define DECL_STATIC_CHAIN(NODE) \
3207 (FUNCTION_DECL_CHECK (NODE)->decl_with_vis.regdecl_flag)
3209 /* Nonzero for a decl that cgraph has decided should be inlined into
3210 at least one call site. It is not meaningful to look at this
3211 directly; always use cgraph_function_possibly_inlined_p. */
3212 #define DECL_POSSIBLY_INLINED(DECL) \
3213 FUNCTION_DECL_CHECK (DECL)->function_decl.possibly_inlined
3215 /* Nonzero in a FUNCTION_DECL means that this function was declared inline,
3216 such as via the `inline' keyword in C/C++. This flag controls the linkage
3217 semantics of 'inline' */
3218 #define DECL_DECLARED_INLINE_P(NODE) \
3219 (FUNCTION_DECL_CHECK (NODE)->function_decl.declared_inline_flag)
3221 /* Nonzero in a FUNCTION_DECL means this function should not get
3222 -Winline warnings. */
3223 #define DECL_NO_INLINE_WARNING_P(NODE) \
3224 (FUNCTION_DECL_CHECK (NODE)->function_decl.no_inline_warning_flag)
3226 /* Nonzero if a FUNCTION_CODE is a TM load/store. */
3227 #define BUILTIN_TM_LOAD_STORE_P(FN) \
3228 ((FN) >= BUILT_IN_TM_STORE_1 && (FN) <= BUILT_IN_TM_LOAD_RFW_LDOUBLE)
3230 /* Nonzero if a FUNCTION_CODE is a TM load. */
3231 #define BUILTIN_TM_LOAD_P(FN) \
3232 ((FN) >= BUILT_IN_TM_LOAD_1 && (FN) <= BUILT_IN_TM_LOAD_RFW_LDOUBLE)
3234 /* Nonzero if a FUNCTION_CODE is a TM store. */
3235 #define BUILTIN_TM_STORE_P(FN) \
3236 ((FN) >= BUILT_IN_TM_STORE_1 && (FN) <= BUILT_IN_TM_STORE_WAW_LDOUBLE)
3238 #define CASE_BUILT_IN_TM_LOAD(FN) \
3239 case BUILT_IN_TM_LOAD_##FN: \
3240 case BUILT_IN_TM_LOAD_RAR_##FN: \
3241 case BUILT_IN_TM_LOAD_RAW_##FN: \
3242 case BUILT_IN_TM_LOAD_RFW_##FN
3244 #define CASE_BUILT_IN_TM_STORE(FN) \
3245 case BUILT_IN_TM_STORE_##FN: \
3246 case BUILT_IN_TM_STORE_WAR_##FN: \
3247 case BUILT_IN_TM_STORE_WAW_##FN
3249 /* Nonzero in a FUNCTION_DECL that should be always inlined by the inliner
3250 disregarding size and cost heuristics. This is equivalent to using
3251 the always_inline attribute without the required diagnostics if the
3252 function cannot be inlined. */
3253 #define DECL_DISREGARD_INLINE_LIMITS(NODE) \
3254 (FUNCTION_DECL_CHECK (NODE)->function_decl.disregard_inline_limits)
3256 extern vec<tree, va_gc> **decl_debug_args_lookup (tree);
3257 extern vec<tree, va_gc> **decl_debug_args_insert (tree);
3259 /* Nonzero if a FUNCTION_DECL has DEBUG arguments attached to it. */
3260 #define DECL_HAS_DEBUG_ARGS_P(NODE) \
3261 (FUNCTION_DECL_CHECK (NODE)->function_decl.has_debug_args_flag)
3263 /* For FUNCTION_DECL, this holds a pointer to a structure ("struct function")
3264 that describes the status of this function. */
3265 #define DECL_STRUCT_FUNCTION(NODE) \
3266 (FUNCTION_DECL_CHECK (NODE)->function_decl.f)
3268 /* For a builtin function, identify which part of the compiler defined it. */
3269 #define DECL_BUILT_IN_CLASS(NODE) \
3270 ((built_in_class) FUNCTION_DECL_CHECK (NODE)->function_decl.built_in_class)
3272 /* In FUNCTION_DECL, a chain of ..._DECL nodes. */
3273 #define DECL_ARGUMENTS(NODE) \
3274 (FUNCTION_DECL_CHECK (NODE)->function_decl.arguments)
3276 /* In FUNCTION_DECL, the function specific target options to use when compiling
3277 this function. */
3278 #define DECL_FUNCTION_SPECIFIC_TARGET(NODE) \
3279 (FUNCTION_DECL_CHECK (NODE)->function_decl.function_specific_target)
3281 /* In FUNCTION_DECL, the function specific optimization options to use when
3282 compiling this function. */
3283 #define DECL_FUNCTION_SPECIFIC_OPTIMIZATION(NODE) \
3284 (FUNCTION_DECL_CHECK (NODE)->function_decl.function_specific_optimization)
3286 /* In FUNCTION_DECL, this is set if this function has other versions generated
3287 using "target" attributes. The default version is the one which does not
3288 have any "target" attribute set. */
3289 #define DECL_FUNCTION_VERSIONED(NODE)\
3290 (FUNCTION_DECL_CHECK (NODE)->function_decl.versioned_function)
3292 /* In FUNCTION_DECL, this is set if this function is a C++ constructor.
3293 Devirtualization machinery uses this knowledge for determing type of the
3294 object constructed. Also we assume that constructor address is not
3295 important. */
3296 #define DECL_CXX_CONSTRUCTOR_P(NODE)\
3297 (FUNCTION_DECL_CHECK (NODE)->decl_with_vis.cxx_constructor)
3299 /* In FUNCTION_DECL, this is set if this function is a C++ destructor.
3300 Devirtualization machinery uses this to track types in destruction. */
3301 #define DECL_CXX_DESTRUCTOR_P(NODE)\
3302 (FUNCTION_DECL_CHECK (NODE)->decl_with_vis.cxx_destructor)
3304 /* In FUNCTION_DECL, this is set if this function is a lambda function. */
3305 #define DECL_LAMBDA_FUNCTION_P(NODE) \
3306 (FUNCTION_DECL_DECL_TYPE (FUNCTION_DECL_CHECK (NODE)) == LAMBDA_FUNCTION)
3308 #define DECL_SET_LAMBDA_FUNCTION(NODE, VAL) \
3309 set_function_decl_type (FUNCTION_DECL_CHECK (NODE), LAMBDA_FUNCTION, VAL)
3311 /* In FUNCTION_DECL that represent an virtual method this is set when
3312 the method is final. */
3313 #define DECL_FINAL_P(NODE)\
3314 (FUNCTION_DECL_CHECK (NODE)->decl_with_vis.final)
3316 /* The source language of the translation-unit. */
3317 #define TRANSLATION_UNIT_LANGUAGE(NODE) \
3318 (TRANSLATION_UNIT_DECL_CHECK (NODE)->translation_unit_decl.language)
3320 /* TRANSLATION_UNIT_DECL inherits from DECL_MINIMAL. */
3322 /* For a TYPE_DECL, holds the "original" type. (TREE_TYPE has the copy.) */
3323 #define DECL_ORIGINAL_TYPE(NODE) \
3324 (TYPE_DECL_CHECK (NODE)->decl_non_common.result)
3326 /* In a TYPE_DECL nonzero means the detail info about this type is not dumped
3327 into stabs. Instead it will generate cross reference ('x') of names.
3328 This uses the same flag as DECL_EXTERNAL. */
3329 #define TYPE_DECL_SUPPRESS_DEBUG(NODE) \
3330 (TYPE_DECL_CHECK (NODE)->decl_common.decl_flag_1)
3332 /* Getter of the imported declaration associated to the
3333 IMPORTED_DECL node. */
3334 #define IMPORTED_DECL_ASSOCIATED_DECL(NODE) \
3335 (DECL_INITIAL (IMPORTED_DECL_CHECK (NODE)))
3337 /* Getter of the symbol declaration associated with the
3338 NAMELIST_DECL node. */
3339 #define NAMELIST_DECL_ASSOCIATED_DECL(NODE) \
3340 (DECL_INITIAL (NODE))
3342 /* A STATEMENT_LIST chains statements together in GENERIC and GIMPLE.
3343 To reduce overhead, the nodes containing the statements are not trees.
3344 This avoids the overhead of tree_common on all linked list elements.
3346 Use the interface in tree-iterator.h to access this node. */
3348 #define STATEMENT_LIST_HEAD(NODE) \
3349 (STATEMENT_LIST_CHECK (NODE)->stmt_list.head)
3350 #define STATEMENT_LIST_TAIL(NODE) \
3351 (STATEMENT_LIST_CHECK (NODE)->stmt_list.tail)
3353 #define TREE_OPTIMIZATION(NODE) \
3354 (OPTIMIZATION_NODE_CHECK (NODE)->optimization.opts)
3356 #define TREE_OPTIMIZATION_OPTABS(NODE) \
3357 (OPTIMIZATION_NODE_CHECK (NODE)->optimization.optabs)
3359 #define TREE_OPTIMIZATION_BASE_OPTABS(NODE) \
3360 (OPTIMIZATION_NODE_CHECK (NODE)->optimization.base_optabs)
3362 /* Return a tree node that encapsulates the optimization options in OPTS
3363 and OPTS_SET. */
3364 extern tree build_optimization_node (struct gcc_options *opts,
3365 struct gcc_options *opts_set);
3367 #define TREE_TARGET_OPTION(NODE) \
3368 (TARGET_OPTION_NODE_CHECK (NODE)->target_option.opts)
3370 #define TREE_TARGET_GLOBALS(NODE) \
3371 (TARGET_OPTION_NODE_CHECK (NODE)->target_option.globals)
3373 /* Return a tree node that encapsulates the target options in OPTS and
3374 OPTS_SET. */
3375 extern tree build_target_option_node (struct gcc_options *opts,
3376 struct gcc_options *opts_set);
3378 extern void prepare_target_option_nodes_for_pch (void);
3380 #if defined ENABLE_TREE_CHECKING && (GCC_VERSION >= 2007)
3382 inline tree
3383 tree_check (tree __t, const char *__f, int __l, const char *__g, tree_code __c)
3385 if (TREE_CODE (__t) != __c)
3386 tree_check_failed (__t, __f, __l, __g, __c, 0);
3387 return __t;
3390 inline tree
3391 tree_not_check (tree __t, const char *__f, int __l, const char *__g,
3392 enum tree_code __c)
3394 if (TREE_CODE (__t) == __c)
3395 tree_not_check_failed (__t, __f, __l, __g, __c, 0);
3396 return __t;
3399 inline tree
3400 tree_check2 (tree __t, const char *__f, int __l, const char *__g,
3401 enum tree_code __c1, enum tree_code __c2)
3403 if (TREE_CODE (__t) != __c1
3404 && TREE_CODE (__t) != __c2)
3405 tree_check_failed (__t, __f, __l, __g, __c1, __c2, 0);
3406 return __t;
3409 inline tree
3410 tree_not_check2 (tree __t, const char *__f, int __l, const char *__g,
3411 enum tree_code __c1, enum tree_code __c2)
3413 if (TREE_CODE (__t) == __c1
3414 || TREE_CODE (__t) == __c2)
3415 tree_not_check_failed (__t, __f, __l, __g, __c1, __c2, 0);
3416 return __t;
3419 inline tree
3420 tree_check3 (tree __t, const char *__f, int __l, const char *__g,
3421 enum tree_code __c1, enum tree_code __c2, enum tree_code __c3)
3423 if (TREE_CODE (__t) != __c1
3424 && TREE_CODE (__t) != __c2
3425 && TREE_CODE (__t) != __c3)
3426 tree_check_failed (__t, __f, __l, __g, __c1, __c2, __c3, 0);
3427 return __t;
3430 inline tree
3431 tree_not_check3 (tree __t, const char *__f, int __l, const char *__g,
3432 enum tree_code __c1, enum tree_code __c2, enum tree_code __c3)
3434 if (TREE_CODE (__t) == __c1
3435 || TREE_CODE (__t) == __c2
3436 || TREE_CODE (__t) == __c3)
3437 tree_not_check_failed (__t, __f, __l, __g, __c1, __c2, __c3, 0);
3438 return __t;
3441 inline tree
3442 tree_check4 (tree __t, const char *__f, int __l, const char *__g,
3443 enum tree_code __c1, enum tree_code __c2, enum tree_code __c3,
3444 enum tree_code __c4)
3446 if (TREE_CODE (__t) != __c1
3447 && TREE_CODE (__t) != __c2
3448 && TREE_CODE (__t) != __c3
3449 && TREE_CODE (__t) != __c4)
3450 tree_check_failed (__t, __f, __l, __g, __c1, __c2, __c3, __c4, 0);
3451 return __t;
3454 inline tree
3455 tree_not_check4 (tree __t, const char *__f, int __l, const char *__g,
3456 enum tree_code __c1, enum tree_code __c2, enum tree_code __c3,
3457 enum tree_code __c4)
3459 if (TREE_CODE (__t) == __c1
3460 || TREE_CODE (__t) == __c2
3461 || TREE_CODE (__t) == __c3
3462 || TREE_CODE (__t) == __c4)
3463 tree_not_check_failed (__t, __f, __l, __g, __c1, __c2, __c3, __c4, 0);
3464 return __t;
3467 inline tree
3468 tree_check5 (tree __t, const char *__f, int __l, const char *__g,
3469 enum tree_code __c1, enum tree_code __c2, enum tree_code __c3,
3470 enum tree_code __c4, enum tree_code __c5)
3472 if (TREE_CODE (__t) != __c1
3473 && TREE_CODE (__t) != __c2
3474 && TREE_CODE (__t) != __c3
3475 && TREE_CODE (__t) != __c4
3476 && TREE_CODE (__t) != __c5)
3477 tree_check_failed (__t, __f, __l, __g, __c1, __c2, __c3, __c4, __c5, 0);
3478 return __t;
3481 inline tree
3482 tree_not_check5 (tree __t, const char *__f, int __l, const char *__g,
3483 enum tree_code __c1, enum tree_code __c2, enum tree_code __c3,
3484 enum tree_code __c4, enum tree_code __c5)
3486 if (TREE_CODE (__t) == __c1
3487 || TREE_CODE (__t) == __c2
3488 || TREE_CODE (__t) == __c3
3489 || TREE_CODE (__t) == __c4
3490 || TREE_CODE (__t) == __c5)
3491 tree_not_check_failed (__t, __f, __l, __g, __c1, __c2, __c3, __c4, __c5, 0);
3492 return __t;
3495 inline tree
3496 contains_struct_check (tree __t, const enum tree_node_structure_enum __s,
3497 const char *__f, int __l, const char *__g)
3499 if (tree_contains_struct[TREE_CODE (__t)][__s] != 1)
3500 tree_contains_struct_check_failed (__t, __s, __f, __l, __g);
3501 return __t;
3504 inline tree
3505 tree_class_check (tree __t, const enum tree_code_class __class,
3506 const char *__f, int __l, const char *__g)
3508 if (TREE_CODE_CLASS (TREE_CODE (__t)) != __class)
3509 tree_class_check_failed (__t, __class, __f, __l, __g);
3510 return __t;
3513 inline tree
3514 tree_range_check (tree __t,
3515 enum tree_code __code1, enum tree_code __code2,
3516 const char *__f, int __l, const char *__g)
3518 if (TREE_CODE (__t) < __code1 || TREE_CODE (__t) > __code2)
3519 tree_range_check_failed (__t, __f, __l, __g, __code1, __code2);
3520 return __t;
3523 inline tree
3524 omp_clause_subcode_check (tree __t, enum omp_clause_code __code,
3525 const char *__f, int __l, const char *__g)
3527 if (TREE_CODE (__t) != OMP_CLAUSE)
3528 tree_check_failed (__t, __f, __l, __g, OMP_CLAUSE, 0);
3529 if (__t->omp_clause.code != __code)
3530 omp_clause_check_failed (__t, __f, __l, __g, __code);
3531 return __t;
3534 inline tree
3535 omp_clause_range_check (tree __t,
3536 enum omp_clause_code __code1,
3537 enum omp_clause_code __code2,
3538 const char *__f, int __l, const char *__g)
3540 if (TREE_CODE (__t) != OMP_CLAUSE)
3541 tree_check_failed (__t, __f, __l, __g, OMP_CLAUSE, 0);
3542 if ((int) __t->omp_clause.code < (int) __code1
3543 || (int) __t->omp_clause.code > (int) __code2)
3544 omp_clause_range_check_failed (__t, __f, __l, __g, __code1, __code2);
3545 return __t;
3548 /* These checks have to be special cased. */
3550 inline tree
3551 expr_check (tree __t, const char *__f, int __l, const char *__g)
3553 char const __c = TREE_CODE_CLASS (TREE_CODE (__t));
3554 if (!IS_EXPR_CODE_CLASS (__c))
3555 tree_class_check_failed (__t, tcc_expression, __f, __l, __g);
3556 return __t;
3559 /* These checks have to be special cased. */
3561 inline tree
3562 non_type_check (tree __t, const char *__f, int __l, const char *__g)
3564 if (TYPE_P (__t))
3565 tree_not_class_check_failed (__t, tcc_type, __f, __l, __g);
3566 return __t;
3569 inline const HOST_WIDE_INT *
3570 tree_int_cst_elt_check (const_tree __t, int __i,
3571 const char *__f, int __l, const char *__g)
3573 if (TREE_CODE (__t) != INTEGER_CST)
3574 tree_check_failed (__t, __f, __l, __g, INTEGER_CST, 0);
3575 if (__i < 0 || __i >= __t->base.u.int_length.extended)
3576 tree_int_cst_elt_check_failed (__i, __t->base.u.int_length.extended,
3577 __f, __l, __g);
3578 return &CONST_CAST_TREE (__t)->int_cst.val[__i];
3581 inline HOST_WIDE_INT *
3582 tree_int_cst_elt_check (tree __t, int __i,
3583 const char *__f, int __l, const char *__g)
3585 if (TREE_CODE (__t) != INTEGER_CST)
3586 tree_check_failed (__t, __f, __l, __g, INTEGER_CST, 0);
3587 if (__i < 0 || __i >= __t->base.u.int_length.extended)
3588 tree_int_cst_elt_check_failed (__i, __t->base.u.int_length.extended,
3589 __f, __l, __g);
3590 return &CONST_CAST_TREE (__t)->int_cst.val[__i];
3593 /* Workaround -Wstrict-overflow false positive during profiledbootstrap. */
3595 # if GCC_VERSION >= 4006
3596 #pragma GCC diagnostic push
3597 #pragma GCC diagnostic ignored "-Wstrict-overflow"
3598 #endif
3600 inline tree *
3601 tree_vec_elt_check (tree __t, int __i,
3602 const char *__f, int __l, const char *__g)
3604 if (TREE_CODE (__t) != TREE_VEC)
3605 tree_check_failed (__t, __f, __l, __g, TREE_VEC, 0);
3606 if (__i < 0 || __i >= __t->base.u.length)
3607 tree_vec_elt_check_failed (__i, __t->base.u.length, __f, __l, __g);
3608 return &CONST_CAST_TREE (__t)->vec.a[__i];
3611 # if GCC_VERSION >= 4006
3612 #pragma GCC diagnostic pop
3613 #endif
3615 inline tree *
3616 omp_clause_elt_check (tree __t, int __i,
3617 const char *__f, int __l, const char *__g)
3619 if (TREE_CODE (__t) != OMP_CLAUSE)
3620 tree_check_failed (__t, __f, __l, __g, OMP_CLAUSE, 0);
3621 if (__i < 0 || __i >= omp_clause_num_ops [__t->omp_clause.code])
3622 omp_clause_operand_check_failed (__i, __t, __f, __l, __g);
3623 return &__t->omp_clause.ops[__i];
3626 /* These checks have to be special cased. */
3628 inline tree
3629 any_integral_type_check (tree __t, const char *__f, int __l, const char *__g)
3631 if (!ANY_INTEGRAL_TYPE_P (__t))
3632 tree_check_failed (__t, __f, __l, __g, BOOLEAN_TYPE, ENUMERAL_TYPE,
3633 INTEGER_TYPE, 0);
3634 return __t;
3637 inline const_tree
3638 tree_check (const_tree __t, const char *__f, int __l, const char *__g,
3639 tree_code __c)
3641 if (TREE_CODE (__t) != __c)
3642 tree_check_failed (__t, __f, __l, __g, __c, 0);
3643 return __t;
3646 inline const_tree
3647 tree_not_check (const_tree __t, const char *__f, int __l, const char *__g,
3648 enum tree_code __c)
3650 if (TREE_CODE (__t) == __c)
3651 tree_not_check_failed (__t, __f, __l, __g, __c, 0);
3652 return __t;
3655 inline const_tree
3656 tree_check2 (const_tree __t, const char *__f, int __l, const char *__g,
3657 enum tree_code __c1, enum tree_code __c2)
3659 if (TREE_CODE (__t) != __c1
3660 && TREE_CODE (__t) != __c2)
3661 tree_check_failed (__t, __f, __l, __g, __c1, __c2, 0);
3662 return __t;
3665 inline const_tree
3666 tree_not_check2 (const_tree __t, const char *__f, int __l, const char *__g,
3667 enum tree_code __c1, enum tree_code __c2)
3669 if (TREE_CODE (__t) == __c1
3670 || TREE_CODE (__t) == __c2)
3671 tree_not_check_failed (__t, __f, __l, __g, __c1, __c2, 0);
3672 return __t;
3675 inline const_tree
3676 tree_check3 (const_tree __t, const char *__f, int __l, const char *__g,
3677 enum tree_code __c1, enum tree_code __c2, enum tree_code __c3)
3679 if (TREE_CODE (__t) != __c1
3680 && TREE_CODE (__t) != __c2
3681 && TREE_CODE (__t) != __c3)
3682 tree_check_failed (__t, __f, __l, __g, __c1, __c2, __c3, 0);
3683 return __t;
3686 inline const_tree
3687 tree_not_check3 (const_tree __t, const char *__f, int __l, const char *__g,
3688 enum tree_code __c1, enum tree_code __c2, enum tree_code __c3)
3690 if (TREE_CODE (__t) == __c1
3691 || TREE_CODE (__t) == __c2
3692 || TREE_CODE (__t) == __c3)
3693 tree_not_check_failed (__t, __f, __l, __g, __c1, __c2, __c3, 0);
3694 return __t;
3697 inline const_tree
3698 tree_check4 (const_tree __t, const char *__f, int __l, const char *__g,
3699 enum tree_code __c1, enum tree_code __c2, enum tree_code __c3,
3700 enum tree_code __c4)
3702 if (TREE_CODE (__t) != __c1
3703 && TREE_CODE (__t) != __c2
3704 && TREE_CODE (__t) != __c3
3705 && TREE_CODE (__t) != __c4)
3706 tree_check_failed (__t, __f, __l, __g, __c1, __c2, __c3, __c4, 0);
3707 return __t;
3710 inline const_tree
3711 tree_not_check4 (const_tree __t, const char *__f, int __l, const char *__g,
3712 enum tree_code __c1, enum tree_code __c2, enum tree_code __c3,
3713 enum tree_code __c4)
3715 if (TREE_CODE (__t) == __c1
3716 || TREE_CODE (__t) == __c2
3717 || TREE_CODE (__t) == __c3
3718 || TREE_CODE (__t) == __c4)
3719 tree_not_check_failed (__t, __f, __l, __g, __c1, __c2, __c3, __c4, 0);
3720 return __t;
3723 inline const_tree
3724 tree_check5 (const_tree __t, const char *__f, int __l, const char *__g,
3725 enum tree_code __c1, enum tree_code __c2, enum tree_code __c3,
3726 enum tree_code __c4, enum tree_code __c5)
3728 if (TREE_CODE (__t) != __c1
3729 && TREE_CODE (__t) != __c2
3730 && TREE_CODE (__t) != __c3
3731 && TREE_CODE (__t) != __c4
3732 && TREE_CODE (__t) != __c5)
3733 tree_check_failed (__t, __f, __l, __g, __c1, __c2, __c3, __c4, __c5, 0);
3734 return __t;
3737 inline const_tree
3738 tree_not_check5 (const_tree __t, const char *__f, int __l, const char *__g,
3739 enum tree_code __c1, enum tree_code __c2, enum tree_code __c3,
3740 enum tree_code __c4, enum tree_code __c5)
3742 if (TREE_CODE (__t) == __c1
3743 || TREE_CODE (__t) == __c2
3744 || TREE_CODE (__t) == __c3
3745 || TREE_CODE (__t) == __c4
3746 || TREE_CODE (__t) == __c5)
3747 tree_not_check_failed (__t, __f, __l, __g, __c1, __c2, __c3, __c4, __c5, 0);
3748 return __t;
3751 inline const_tree
3752 contains_struct_check (const_tree __t, const enum tree_node_structure_enum __s,
3753 const char *__f, int __l, const char *__g)
3755 if (tree_contains_struct[TREE_CODE (__t)][__s] != 1)
3756 tree_contains_struct_check_failed (__t, __s, __f, __l, __g);
3757 return __t;
3760 inline const_tree
3761 tree_class_check (const_tree __t, const enum tree_code_class __class,
3762 const char *__f, int __l, const char *__g)
3764 if (TREE_CODE_CLASS (TREE_CODE (__t)) != __class)
3765 tree_class_check_failed (__t, __class, __f, __l, __g);
3766 return __t;
3769 inline const_tree
3770 tree_range_check (const_tree __t,
3771 enum tree_code __code1, enum tree_code __code2,
3772 const char *__f, int __l, const char *__g)
3774 if (TREE_CODE (__t) < __code1 || TREE_CODE (__t) > __code2)
3775 tree_range_check_failed (__t, __f, __l, __g, __code1, __code2);
3776 return __t;
3779 inline const_tree
3780 omp_clause_subcode_check (const_tree __t, enum omp_clause_code __code,
3781 const char *__f, int __l, const char *__g)
3783 if (TREE_CODE (__t) != OMP_CLAUSE)
3784 tree_check_failed (__t, __f, __l, __g, OMP_CLAUSE, 0);
3785 if (__t->omp_clause.code != __code)
3786 omp_clause_check_failed (__t, __f, __l, __g, __code);
3787 return __t;
3790 inline const_tree
3791 omp_clause_range_check (const_tree __t,
3792 enum omp_clause_code __code1,
3793 enum omp_clause_code __code2,
3794 const char *__f, int __l, const char *__g)
3796 if (TREE_CODE (__t) != OMP_CLAUSE)
3797 tree_check_failed (__t, __f, __l, __g, OMP_CLAUSE, 0);
3798 if ((int) __t->omp_clause.code < (int) __code1
3799 || (int) __t->omp_clause.code > (int) __code2)
3800 omp_clause_range_check_failed (__t, __f, __l, __g, __code1, __code2);
3801 return __t;
3804 inline const_tree
3805 expr_check (const_tree __t, const char *__f, int __l, const char *__g)
3807 char const __c = TREE_CODE_CLASS (TREE_CODE (__t));
3808 if (!IS_EXPR_CODE_CLASS (__c))
3809 tree_class_check_failed (__t, tcc_expression, __f, __l, __g);
3810 return __t;
3813 inline const_tree
3814 non_type_check (const_tree __t, const char *__f, int __l, const char *__g)
3816 if (TYPE_P (__t))
3817 tree_not_class_check_failed (__t, tcc_type, __f, __l, __g);
3818 return __t;
3821 # if GCC_VERSION >= 4006
3822 #pragma GCC diagnostic push
3823 #pragma GCC diagnostic ignored "-Wstrict-overflow"
3824 #endif
3826 inline const_tree *
3827 tree_vec_elt_check (const_tree __t, int __i,
3828 const char *__f, int __l, const char *__g)
3830 if (TREE_CODE (__t) != TREE_VEC)
3831 tree_check_failed (__t, __f, __l, __g, TREE_VEC, 0);
3832 if (__i < 0 || __i >= __t->base.u.length)
3833 tree_vec_elt_check_failed (__i, __t->base.u.length, __f, __l, __g);
3834 return CONST_CAST (const_tree *, &__t->vec.a[__i]);
3835 //return &__t->vec.a[__i];
3838 # if GCC_VERSION >= 4006
3839 #pragma GCC diagnostic pop
3840 #endif
3842 inline const_tree *
3843 omp_clause_elt_check (const_tree __t, int __i,
3844 const char *__f, int __l, const char *__g)
3846 if (TREE_CODE (__t) != OMP_CLAUSE)
3847 tree_check_failed (__t, __f, __l, __g, OMP_CLAUSE, 0);
3848 if (__i < 0 || __i >= omp_clause_num_ops [__t->omp_clause.code])
3849 omp_clause_operand_check_failed (__i, __t, __f, __l, __g);
3850 return CONST_CAST (const_tree *, &__t->omp_clause.ops[__i]);
3853 inline const_tree
3854 any_integral_type_check (const_tree __t, const char *__f, int __l,
3855 const char *__g)
3857 if (!ANY_INTEGRAL_TYPE_P (__t))
3858 tree_check_failed (__t, __f, __l, __g, BOOLEAN_TYPE, ENUMERAL_TYPE,
3859 INTEGER_TYPE, 0);
3860 return __t;
3863 #endif
3865 /* Compute the number of operands in an expression node NODE. For
3866 tcc_vl_exp nodes like CALL_EXPRs, this is stored in the node itself,
3867 otherwise it is looked up from the node's code. */
3868 static inline int
3869 tree_operand_length (const_tree node)
3871 if (VL_EXP_CLASS_P (node))
3872 return VL_EXP_OPERAND_LENGTH (node);
3873 else
3874 return TREE_CODE_LENGTH (TREE_CODE (node));
3877 #if defined ENABLE_TREE_CHECKING && (GCC_VERSION >= 2007)
3879 /* Special checks for TREE_OPERANDs. */
3880 inline tree *
3881 tree_operand_check (tree __t, int __i,
3882 const char *__f, int __l, const char *__g)
3884 const_tree __u = EXPR_CHECK (__t);
3885 if (__i < 0 || __i >= TREE_OPERAND_LENGTH (__u))
3886 tree_operand_check_failed (__i, __u, __f, __l, __g);
3887 return &CONST_CAST_TREE (__u)->exp.operands[__i];
3890 inline tree *
3891 tree_operand_check_code (tree __t, enum tree_code __code, int __i,
3892 const char *__f, int __l, const char *__g)
3894 if (TREE_CODE (__t) != __code)
3895 tree_check_failed (__t, __f, __l, __g, __code, 0);
3896 if (__i < 0 || __i >= TREE_OPERAND_LENGTH (__t))
3897 tree_operand_check_failed (__i, __t, __f, __l, __g);
3898 return &__t->exp.operands[__i];
3901 inline const_tree *
3902 tree_operand_check (const_tree __t, int __i,
3903 const char *__f, int __l, const char *__g)
3905 const_tree __u = EXPR_CHECK (__t);
3906 if (__i < 0 || __i >= TREE_OPERAND_LENGTH (__u))
3907 tree_operand_check_failed (__i, __u, __f, __l, __g);
3908 return CONST_CAST (const_tree *, &__u->exp.operands[__i]);
3911 inline const_tree *
3912 tree_operand_check_code (const_tree __t, enum tree_code __code, int __i,
3913 const char *__f, int __l, const char *__g)
3915 if (TREE_CODE (__t) != __code)
3916 tree_check_failed (__t, __f, __l, __g, __code, 0);
3917 if (__i < 0 || __i >= TREE_OPERAND_LENGTH (__t))
3918 tree_operand_check_failed (__i, __t, __f, __l, __g);
3919 return CONST_CAST (const_tree *, &__t->exp.operands[__i]);
3922 #endif
3924 /* True iff an identifier matches a C string. */
3926 inline bool
3927 id_equal (const_tree id, const char *str)
3929 return !strcmp (IDENTIFIER_POINTER (id), str);
3932 inline bool
3933 id_equal (const char *str, const_tree id)
3935 return id_equal (id, str);
3938 /* Return the number of elements in the VECTOR_TYPE given by NODE. */
3940 inline poly_uint64
3941 TYPE_VECTOR_SUBPARTS (const_tree node)
3943 STATIC_ASSERT (NUM_POLY_INT_COEFFS <= 2);
3944 unsigned int precision = VECTOR_TYPE_CHECK (node)->type_common.precision;
3945 if (NUM_POLY_INT_COEFFS == 2)
3947 /* See the corresponding code in SET_TYPE_VECTOR_SUBPARTS for a
3948 description of the encoding. */
3949 poly_uint64 res = 0;
3950 res.coeffs[0] = HOST_WIDE_INT_1U << (precision & 0xff);
3951 if (precision & 0x100)
3952 res.coeffs[1] = HOST_WIDE_INT_1U << (precision & 0xff);
3953 return res;
3955 else
3956 return HOST_WIDE_INT_1U << precision;
3959 /* Set the number of elements in VECTOR_TYPE NODE to SUBPARTS, which must
3960 satisfy valid_vector_subparts_p. */
3962 inline void
3963 SET_TYPE_VECTOR_SUBPARTS (tree node, poly_uint64 subparts)
3965 STATIC_ASSERT (NUM_POLY_INT_COEFFS <= 2);
3966 unsigned HOST_WIDE_INT coeff0 = subparts.coeffs[0];
3967 int index = exact_log2 (coeff0);
3968 gcc_assert (index >= 0);
3969 if (NUM_POLY_INT_COEFFS == 2)
3971 /* We have two coefficients that are each in the range 1 << [0, 63],
3972 so supporting all combinations would require 6 bits per coefficient
3973 and 12 bits in total. Since the precision field is only 10 bits
3974 in size, we need to be more restrictive than that.
3976 At present, coeff[1] is always either 0 (meaning that the number
3977 of units is constant) or equal to coeff[0] (meaning that the number
3978 of units is N + X * N for some target-dependent zero-based runtime
3979 parameter X). We can therefore encode coeff[1] in a single bit.
3981 The most compact encoding would be to use mask 0x3f for coeff[0]
3982 and 0x40 for coeff[1], leaving 0x380 unused. It's possible to
3983 get slightly more efficient code on some hosts if we instead
3984 treat the shift amount as an independent byte, so here we use
3985 0xff for coeff[0] and 0x100 for coeff[1]. */
3986 unsigned HOST_WIDE_INT coeff1 = subparts.coeffs[1];
3987 gcc_assert (coeff1 == 0 || coeff1 == coeff0);
3988 VECTOR_TYPE_CHECK (node)->type_common.precision
3989 = index + (coeff1 != 0 ? 0x100 : 0);
3991 else
3992 VECTOR_TYPE_CHECK (node)->type_common.precision = index;
3995 /* Return true if we can construct vector types with the given number
3996 of subparts. */
3998 static inline bool
3999 valid_vector_subparts_p (poly_uint64 subparts)
4001 unsigned HOST_WIDE_INT coeff0 = subparts.coeffs[0];
4002 if (!pow2p_hwi (coeff0))
4003 return false;
4004 if (NUM_POLY_INT_COEFFS == 2)
4006 unsigned HOST_WIDE_INT coeff1 = subparts.coeffs[1];
4007 if (coeff1 != 0 && coeff1 != coeff0)
4008 return false;
4010 return true;
4013 /* Return the built-in function that DECL represents, given that it is known
4014 to be a FUNCTION_DECL with built-in class BUILT_IN_NORMAL. */
4015 inline built_in_function
4016 DECL_FUNCTION_CODE (const_tree decl)
4018 const tree_function_decl &fndecl = FUNCTION_DECL_CHECK (decl)->function_decl;
4019 gcc_checking_assert (fndecl.built_in_class == BUILT_IN_NORMAL);
4020 return (built_in_function) fndecl.function_code;
4023 /* Return the target-specific built-in function that DECL represents,
4024 given that it is known to be a FUNCTION_DECL with built-in class
4025 BUILT_IN_MD. */
4026 inline int
4027 DECL_MD_FUNCTION_CODE (const_tree decl)
4029 const tree_function_decl &fndecl = FUNCTION_DECL_CHECK (decl)->function_decl;
4030 gcc_checking_assert (fndecl.built_in_class == BUILT_IN_MD);
4031 return fndecl.function_code;
4034 /* Return the frontend-specific built-in function that DECL represents,
4035 given that it is known to be a FUNCTION_DECL with built-in class
4036 BUILT_IN_FRONTEND. */
4037 inline int
4038 DECL_FE_FUNCTION_CODE (const_tree decl)
4040 const tree_function_decl &fndecl = FUNCTION_DECL_CHECK (decl)->function_decl;
4041 gcc_checking_assert (fndecl.built_in_class == BUILT_IN_FRONTEND);
4042 return fndecl.function_code;
4045 /* Record that FUNCTION_DECL DECL represents built-in function FCODE of
4046 class FCLASS. */
4047 inline void
4048 set_decl_built_in_function (tree decl, built_in_class fclass,
4049 unsigned int fcode)
4051 tree_function_decl &fndecl = FUNCTION_DECL_CHECK (decl)->function_decl;
4052 fndecl.built_in_class = fclass;
4053 fndecl.function_code = fcode;
4056 /* Record that FUNCTION_DECL NEWDECL represents the same built-in function
4057 as OLDDECL (or none, if OLDDECL doesn't represent a built-in function). */
4058 inline void
4059 copy_decl_built_in_function (tree newdecl, const_tree olddecl)
4061 tree_function_decl &newfndecl = FUNCTION_DECL_CHECK (newdecl)->function_decl;
4062 const tree_function_decl &oldfndecl
4063 = FUNCTION_DECL_CHECK (olddecl)->function_decl;
4064 newfndecl.built_in_class = oldfndecl.built_in_class;
4065 newfndecl.function_code = oldfndecl.function_code;
4068 /* In NON_LVALUE_EXPR and VIEW_CONVERT_EXPR, set when this node is merely a
4069 wrapper added to express a location_t on behalf of the node's child
4070 (e.g. by maybe_wrap_with_location). */
4072 #define EXPR_LOCATION_WRAPPER_P(NODE) \
4073 (TREE_CHECK2(NODE, NON_LVALUE_EXPR, VIEW_CONVERT_EXPR)->base.public_flag)
4075 /* Test if EXP is merely a wrapper node, added to express a location_t
4076 on behalf of the node's child (e.g. by maybe_wrap_with_location). */
4078 inline bool
4079 location_wrapper_p (const_tree exp)
4081 /* A wrapper node has code NON_LVALUE_EXPR or VIEW_CONVERT_EXPR, and
4082 the flag EXPR_LOCATION_WRAPPER_P is set.
4083 It normally has the same type as its operand, but it can have a
4084 different one if the type of the operand has changed (e.g. when
4085 merging duplicate decls).
4087 NON_LVALUE_EXPR is used for wrapping constants, apart from STRING_CST.
4088 VIEW_CONVERT_EXPR is used for wrapping non-constants and STRING_CST. */
4089 if ((TREE_CODE (exp) == NON_LVALUE_EXPR
4090 || TREE_CODE (exp) == VIEW_CONVERT_EXPR)
4091 && EXPR_LOCATION_WRAPPER_P (exp))
4092 return true;
4093 return false;
4096 /* Implementation of STRIP_ANY_LOCATION_WRAPPER. */
4098 inline tree
4099 tree_strip_any_location_wrapper (tree exp)
4101 if (location_wrapper_p (exp))
4102 return TREE_OPERAND (exp, 0);
4103 else
4104 return exp;
4107 #define error_mark_node global_trees[TI_ERROR_MARK]
4109 #define intQI_type_node global_trees[TI_INTQI_TYPE]
4110 #define intHI_type_node global_trees[TI_INTHI_TYPE]
4111 #define intSI_type_node global_trees[TI_INTSI_TYPE]
4112 #define intDI_type_node global_trees[TI_INTDI_TYPE]
4113 #define intTI_type_node global_trees[TI_INTTI_TYPE]
4115 #define unsigned_intQI_type_node global_trees[TI_UINTQI_TYPE]
4116 #define unsigned_intHI_type_node global_trees[TI_UINTHI_TYPE]
4117 #define unsigned_intSI_type_node global_trees[TI_UINTSI_TYPE]
4118 #define unsigned_intDI_type_node global_trees[TI_UINTDI_TYPE]
4119 #define unsigned_intTI_type_node global_trees[TI_UINTTI_TYPE]
4121 #define atomicQI_type_node global_trees[TI_ATOMICQI_TYPE]
4122 #define atomicHI_type_node global_trees[TI_ATOMICHI_TYPE]
4123 #define atomicSI_type_node global_trees[TI_ATOMICSI_TYPE]
4124 #define atomicDI_type_node global_trees[TI_ATOMICDI_TYPE]
4125 #define atomicTI_type_node global_trees[TI_ATOMICTI_TYPE]
4127 #define uint16_type_node global_trees[TI_UINT16_TYPE]
4128 #define uint32_type_node global_trees[TI_UINT32_TYPE]
4129 #define uint64_type_node global_trees[TI_UINT64_TYPE]
4130 #define uint128_type_node global_trees[TI_UINT128_TYPE]
4132 #define void_node global_trees[TI_VOID]
4134 #define integer_zero_node global_trees[TI_INTEGER_ZERO]
4135 #define integer_one_node global_trees[TI_INTEGER_ONE]
4136 #define integer_three_node global_trees[TI_INTEGER_THREE]
4137 #define integer_minus_one_node global_trees[TI_INTEGER_MINUS_ONE]
4138 #define size_zero_node global_trees[TI_SIZE_ZERO]
4139 #define size_one_node global_trees[TI_SIZE_ONE]
4140 #define bitsize_zero_node global_trees[TI_BITSIZE_ZERO]
4141 #define bitsize_one_node global_trees[TI_BITSIZE_ONE]
4142 #define bitsize_unit_node global_trees[TI_BITSIZE_UNIT]
4144 /* Base access nodes. */
4145 #define access_public_node global_trees[TI_PUBLIC]
4146 #define access_protected_node global_trees[TI_PROTECTED]
4147 #define access_private_node global_trees[TI_PRIVATE]
4149 #define null_pointer_node global_trees[TI_NULL_POINTER]
4151 #define float_type_node global_trees[TI_FLOAT_TYPE]
4152 #define double_type_node global_trees[TI_DOUBLE_TYPE]
4153 #define long_double_type_node global_trees[TI_LONG_DOUBLE_TYPE]
4155 /* Nodes for particular _FloatN and _FloatNx types in sequence. */
4156 #define FLOATN_TYPE_NODE(IDX) global_trees[TI_FLOATN_TYPE_FIRST + (IDX)]
4157 #define FLOATN_NX_TYPE_NODE(IDX) global_trees[TI_FLOATN_NX_TYPE_FIRST + (IDX)]
4158 #define FLOATNX_TYPE_NODE(IDX) global_trees[TI_FLOATNX_TYPE_FIRST + (IDX)]
4160 /* Names for individual types (code should normally iterate over all
4161 such types; these are only for back-end use, or in contexts such as
4162 *.def where iteration is not possible). */
4163 #define float16_type_node global_trees[TI_FLOAT16_TYPE]
4164 #define float32_type_node global_trees[TI_FLOAT32_TYPE]
4165 #define float64_type_node global_trees[TI_FLOAT64_TYPE]
4166 #define float128_type_node global_trees[TI_FLOAT128_TYPE]
4167 #define float32x_type_node global_trees[TI_FLOAT32X_TYPE]
4168 #define float64x_type_node global_trees[TI_FLOAT64X_TYPE]
4169 #define float128x_type_node global_trees[TI_FLOAT128X_TYPE]
4171 #define float_ptr_type_node global_trees[TI_FLOAT_PTR_TYPE]
4172 #define double_ptr_type_node global_trees[TI_DOUBLE_PTR_TYPE]
4173 #define long_double_ptr_type_node global_trees[TI_LONG_DOUBLE_PTR_TYPE]
4174 #define integer_ptr_type_node global_trees[TI_INTEGER_PTR_TYPE]
4176 #define complex_integer_type_node global_trees[TI_COMPLEX_INTEGER_TYPE]
4177 #define complex_float_type_node global_trees[TI_COMPLEX_FLOAT_TYPE]
4178 #define complex_double_type_node global_trees[TI_COMPLEX_DOUBLE_TYPE]
4179 #define complex_long_double_type_node global_trees[TI_COMPLEX_LONG_DOUBLE_TYPE]
4181 #define COMPLEX_FLOATN_NX_TYPE_NODE(IDX) global_trees[TI_COMPLEX_FLOATN_NX_TYPE_FIRST + (IDX)]
4183 #define void_type_node global_trees[TI_VOID_TYPE]
4184 /* The C type `void *'. */
4185 #define ptr_type_node global_trees[TI_PTR_TYPE]
4186 /* The C type `const void *'. */
4187 #define const_ptr_type_node global_trees[TI_CONST_PTR_TYPE]
4188 /* The C type `size_t'. */
4189 #define size_type_node global_trees[TI_SIZE_TYPE]
4190 #define pid_type_node global_trees[TI_PID_TYPE]
4191 #define ptrdiff_type_node global_trees[TI_PTRDIFF_TYPE]
4192 #define va_list_type_node global_trees[TI_VA_LIST_TYPE]
4193 #define va_list_gpr_counter_field global_trees[TI_VA_LIST_GPR_COUNTER_FIELD]
4194 #define va_list_fpr_counter_field global_trees[TI_VA_LIST_FPR_COUNTER_FIELD]
4195 /* The C type `FILE *'. */
4196 #define fileptr_type_node global_trees[TI_FILEPTR_TYPE]
4197 /* The C type `const struct tm *'. */
4198 #define const_tm_ptr_type_node global_trees[TI_CONST_TM_PTR_TYPE]
4199 /* The C type `fenv_t *'. */
4200 #define fenv_t_ptr_type_node global_trees[TI_FENV_T_PTR_TYPE]
4201 #define const_fenv_t_ptr_type_node global_trees[TI_CONST_FENV_T_PTR_TYPE]
4202 /* The C type `fexcept_t *'. */
4203 #define fexcept_t_ptr_type_node global_trees[TI_FEXCEPT_T_PTR_TYPE]
4204 #define const_fexcept_t_ptr_type_node global_trees[TI_CONST_FEXCEPT_T_PTR_TYPE]
4205 #define pointer_sized_int_node global_trees[TI_POINTER_SIZED_TYPE]
4207 #define boolean_type_node global_trees[TI_BOOLEAN_TYPE]
4208 #define boolean_false_node global_trees[TI_BOOLEAN_FALSE]
4209 #define boolean_true_node global_trees[TI_BOOLEAN_TRUE]
4211 /* The decimal floating point types. */
4212 #define dfloat32_type_node global_trees[TI_DFLOAT32_TYPE]
4213 #define dfloat64_type_node global_trees[TI_DFLOAT64_TYPE]
4214 #define dfloat128_type_node global_trees[TI_DFLOAT128_TYPE]
4216 /* The fixed-point types. */
4217 #define sat_short_fract_type_node global_trees[TI_SAT_SFRACT_TYPE]
4218 #define sat_fract_type_node global_trees[TI_SAT_FRACT_TYPE]
4219 #define sat_long_fract_type_node global_trees[TI_SAT_LFRACT_TYPE]
4220 #define sat_long_long_fract_type_node global_trees[TI_SAT_LLFRACT_TYPE]
4221 #define sat_unsigned_short_fract_type_node \
4222 global_trees[TI_SAT_USFRACT_TYPE]
4223 #define sat_unsigned_fract_type_node global_trees[TI_SAT_UFRACT_TYPE]
4224 #define sat_unsigned_long_fract_type_node \
4225 global_trees[TI_SAT_ULFRACT_TYPE]
4226 #define sat_unsigned_long_long_fract_type_node \
4227 global_trees[TI_SAT_ULLFRACT_TYPE]
4228 #define short_fract_type_node global_trees[TI_SFRACT_TYPE]
4229 #define fract_type_node global_trees[TI_FRACT_TYPE]
4230 #define long_fract_type_node global_trees[TI_LFRACT_TYPE]
4231 #define long_long_fract_type_node global_trees[TI_LLFRACT_TYPE]
4232 #define unsigned_short_fract_type_node global_trees[TI_USFRACT_TYPE]
4233 #define unsigned_fract_type_node global_trees[TI_UFRACT_TYPE]
4234 #define unsigned_long_fract_type_node global_trees[TI_ULFRACT_TYPE]
4235 #define unsigned_long_long_fract_type_node \
4236 global_trees[TI_ULLFRACT_TYPE]
4237 #define sat_short_accum_type_node global_trees[TI_SAT_SACCUM_TYPE]
4238 #define sat_accum_type_node global_trees[TI_SAT_ACCUM_TYPE]
4239 #define sat_long_accum_type_node global_trees[TI_SAT_LACCUM_TYPE]
4240 #define sat_long_long_accum_type_node global_trees[TI_SAT_LLACCUM_TYPE]
4241 #define sat_unsigned_short_accum_type_node \
4242 global_trees[TI_SAT_USACCUM_TYPE]
4243 #define sat_unsigned_accum_type_node global_trees[TI_SAT_UACCUM_TYPE]
4244 #define sat_unsigned_long_accum_type_node \
4245 global_trees[TI_SAT_ULACCUM_TYPE]
4246 #define sat_unsigned_long_long_accum_type_node \
4247 global_trees[TI_SAT_ULLACCUM_TYPE]
4248 #define short_accum_type_node global_trees[TI_SACCUM_TYPE]
4249 #define accum_type_node global_trees[TI_ACCUM_TYPE]
4250 #define long_accum_type_node global_trees[TI_LACCUM_TYPE]
4251 #define long_long_accum_type_node global_trees[TI_LLACCUM_TYPE]
4252 #define unsigned_short_accum_type_node global_trees[TI_USACCUM_TYPE]
4253 #define unsigned_accum_type_node global_trees[TI_UACCUM_TYPE]
4254 #define unsigned_long_accum_type_node global_trees[TI_ULACCUM_TYPE]
4255 #define unsigned_long_long_accum_type_node \
4256 global_trees[TI_ULLACCUM_TYPE]
4257 #define qq_type_node global_trees[TI_QQ_TYPE]
4258 #define hq_type_node global_trees[TI_HQ_TYPE]
4259 #define sq_type_node global_trees[TI_SQ_TYPE]
4260 #define dq_type_node global_trees[TI_DQ_TYPE]
4261 #define tq_type_node global_trees[TI_TQ_TYPE]
4262 #define uqq_type_node global_trees[TI_UQQ_TYPE]
4263 #define uhq_type_node global_trees[TI_UHQ_TYPE]
4264 #define usq_type_node global_trees[TI_USQ_TYPE]
4265 #define udq_type_node global_trees[TI_UDQ_TYPE]
4266 #define utq_type_node global_trees[TI_UTQ_TYPE]
4267 #define sat_qq_type_node global_trees[TI_SAT_QQ_TYPE]
4268 #define sat_hq_type_node global_trees[TI_SAT_HQ_TYPE]
4269 #define sat_sq_type_node global_trees[TI_SAT_SQ_TYPE]
4270 #define sat_dq_type_node global_trees[TI_SAT_DQ_TYPE]
4271 #define sat_tq_type_node global_trees[TI_SAT_TQ_TYPE]
4272 #define sat_uqq_type_node global_trees[TI_SAT_UQQ_TYPE]
4273 #define sat_uhq_type_node global_trees[TI_SAT_UHQ_TYPE]
4274 #define sat_usq_type_node global_trees[TI_SAT_USQ_TYPE]
4275 #define sat_udq_type_node global_trees[TI_SAT_UDQ_TYPE]
4276 #define sat_utq_type_node global_trees[TI_SAT_UTQ_TYPE]
4277 #define ha_type_node global_trees[TI_HA_TYPE]
4278 #define sa_type_node global_trees[TI_SA_TYPE]
4279 #define da_type_node global_trees[TI_DA_TYPE]
4280 #define ta_type_node global_trees[TI_TA_TYPE]
4281 #define uha_type_node global_trees[TI_UHA_TYPE]
4282 #define usa_type_node global_trees[TI_USA_TYPE]
4283 #define uda_type_node global_trees[TI_UDA_TYPE]
4284 #define uta_type_node global_trees[TI_UTA_TYPE]
4285 #define sat_ha_type_node global_trees[TI_SAT_HA_TYPE]
4286 #define sat_sa_type_node global_trees[TI_SAT_SA_TYPE]
4287 #define sat_da_type_node global_trees[TI_SAT_DA_TYPE]
4288 #define sat_ta_type_node global_trees[TI_SAT_TA_TYPE]
4289 #define sat_uha_type_node global_trees[TI_SAT_UHA_TYPE]
4290 #define sat_usa_type_node global_trees[TI_SAT_USA_TYPE]
4291 #define sat_uda_type_node global_trees[TI_SAT_UDA_TYPE]
4292 #define sat_uta_type_node global_trees[TI_SAT_UTA_TYPE]
4294 /* The node that should be placed at the end of a parameter list to
4295 indicate that the function does not take a variable number of
4296 arguments. The TREE_VALUE will be void_type_node and there will be
4297 no TREE_CHAIN. Language-independent code should not assume
4298 anything else about this node. */
4299 #define void_list_node global_trees[TI_VOID_LIST_NODE]
4301 #define main_identifier_node global_trees[TI_MAIN_IDENTIFIER]
4302 #define MAIN_NAME_P(NODE) \
4303 (IDENTIFIER_NODE_CHECK (NODE) == main_identifier_node)
4305 /* Optimization options (OPTIMIZATION_NODE) to use for default and current
4306 functions. */
4307 #define optimization_default_node global_trees[TI_OPTIMIZATION_DEFAULT]
4308 #define optimization_current_node global_trees[TI_OPTIMIZATION_CURRENT]
4310 /* Default/current target options (TARGET_OPTION_NODE). */
4311 #define target_option_default_node global_trees[TI_TARGET_OPTION_DEFAULT]
4312 #define target_option_current_node global_trees[TI_TARGET_OPTION_CURRENT]
4314 /* Default tree list option(), optimize() pragmas to be linked into the
4315 attribute list. */
4316 #define current_target_pragma global_trees[TI_CURRENT_TARGET_PRAGMA]
4317 #define current_optimize_pragma global_trees[TI_CURRENT_OPTIMIZE_PRAGMA]
4319 /* SCEV analyzer global shared trees. */
4320 #define chrec_not_analyzed_yet NULL_TREE
4321 #define chrec_dont_know global_trees[TI_CHREC_DONT_KNOW]
4322 #define chrec_known global_trees[TI_CHREC_KNOWN]
4324 #define char_type_node integer_types[itk_char]
4325 #define signed_char_type_node integer_types[itk_signed_char]
4326 #define unsigned_char_type_node integer_types[itk_unsigned_char]
4327 #define short_integer_type_node integer_types[itk_short]
4328 #define short_unsigned_type_node integer_types[itk_unsigned_short]
4329 #define integer_type_node integer_types[itk_int]
4330 #define unsigned_type_node integer_types[itk_unsigned_int]
4331 #define long_integer_type_node integer_types[itk_long]
4332 #define long_unsigned_type_node integer_types[itk_unsigned_long]
4333 #define long_long_integer_type_node integer_types[itk_long_long]
4334 #define long_long_unsigned_type_node integer_types[itk_unsigned_long_long]
4336 /* True if NODE is an erroneous expression. */
4338 #define error_operand_p(NODE) \
4339 ((NODE) == error_mark_node \
4340 || ((NODE) && TREE_TYPE ((NODE)) == error_mark_node))
4342 /* Return the number of elements encoded directly in a VECTOR_CST. */
4344 inline unsigned int
4345 vector_cst_encoded_nelts (const_tree t)
4347 return VECTOR_CST_NPATTERNS (t) * VECTOR_CST_NELTS_PER_PATTERN (t);
4350 extern tree decl_assembler_name (tree);
4351 extern void overwrite_decl_assembler_name (tree decl, tree name);
4352 extern tree decl_comdat_group (const_tree);
4353 extern tree decl_comdat_group_id (const_tree);
4354 extern const char *decl_section_name (const_tree);
4355 extern void set_decl_section_name (tree, const char *);
4356 extern void set_decl_section_name (tree, const_tree);
4357 extern enum tls_model decl_tls_model (const_tree);
4358 extern void set_decl_tls_model (tree, enum tls_model);
4360 /* Compute the number of bytes occupied by 'node'. This routine only
4361 looks at TREE_CODE and, if the code is TREE_VEC, TREE_VEC_LENGTH. */
4363 extern size_t tree_size (const_tree);
4365 /* Compute the number of bytes occupied by a tree with code CODE.
4366 This function cannot be used for TREE_VEC or INTEGER_CST nodes,
4367 which are of variable length. */
4368 extern size_t tree_code_size (enum tree_code);
4370 /* Allocate and return a new UID from the DECL_UID namespace. */
4371 extern int allocate_decl_uid (void);
4373 /* Lowest level primitive for allocating a node.
4374 The TREE_CODE is the only argument. Contents are initialized
4375 to zero except for a few of the common fields. */
4377 extern tree make_node (enum tree_code CXX_MEM_STAT_INFO);
4379 /* Free tree node. */
4381 extern void free_node (tree);
4383 /* Make a copy of a node, with all the same contents. */
4385 extern tree copy_node (tree CXX_MEM_STAT_INFO);
4387 /* Make a copy of a chain of TREE_LIST nodes. */
4389 extern tree copy_list (tree);
4391 /* Make a CASE_LABEL_EXPR. */
4393 extern tree build_case_label (tree, tree, tree);
4395 /* Make a BINFO. */
4396 extern tree make_tree_binfo (unsigned CXX_MEM_STAT_INFO);
4398 /* Make an INTEGER_CST. */
4400 extern tree make_int_cst (int, int CXX_MEM_STAT_INFO);
4402 /* Make a TREE_VEC. */
4404 extern tree make_tree_vec (int CXX_MEM_STAT_INFO);
4406 /* Grow a TREE_VEC. */
4408 extern tree grow_tree_vec (tree v, int CXX_MEM_STAT_INFO);
4410 /* Construct various types of nodes. */
4412 extern tree build_nt (enum tree_code, ...);
4413 extern tree build_nt_call_vec (tree, vec<tree, va_gc> *);
4415 extern tree build0 (enum tree_code, tree CXX_MEM_STAT_INFO);
4416 extern tree build1 (enum tree_code, tree, tree CXX_MEM_STAT_INFO);
4417 extern tree build2 (enum tree_code, tree, tree, tree CXX_MEM_STAT_INFO);
4418 extern tree build3 (enum tree_code, tree, tree, tree, tree CXX_MEM_STAT_INFO);
4419 extern tree build4 (enum tree_code, tree, tree, tree, tree,
4420 tree CXX_MEM_STAT_INFO);
4421 extern tree build5 (enum tree_code, tree, tree, tree, tree, tree,
4422 tree CXX_MEM_STAT_INFO);
4424 /* _loc versions of build[1-5]. */
4426 static inline tree
4427 build1_loc (location_t loc, enum tree_code code, tree type,
4428 tree arg1 CXX_MEM_STAT_INFO)
4430 tree t = build1 (code, type, arg1 PASS_MEM_STAT);
4431 if (CAN_HAVE_LOCATION_P (t))
4432 SET_EXPR_LOCATION (t, loc);
4433 return t;
4436 static inline tree
4437 build2_loc (location_t loc, enum tree_code code, tree type, tree arg0,
4438 tree arg1 CXX_MEM_STAT_INFO)
4440 tree t = build2 (code, type, arg0, arg1 PASS_MEM_STAT);
4441 if (CAN_HAVE_LOCATION_P (t))
4442 SET_EXPR_LOCATION (t, loc);
4443 return t;
4446 static inline tree
4447 build3_loc (location_t loc, enum tree_code code, tree type, tree arg0,
4448 tree arg1, tree arg2 CXX_MEM_STAT_INFO)
4450 tree t = build3 (code, type, arg0, arg1, arg2 PASS_MEM_STAT);
4451 if (CAN_HAVE_LOCATION_P (t))
4452 SET_EXPR_LOCATION (t, loc);
4453 return t;
4456 static inline tree
4457 build4_loc (location_t loc, enum tree_code code, tree type, tree arg0,
4458 tree arg1, tree arg2, tree arg3 CXX_MEM_STAT_INFO)
4460 tree t = build4 (code, type, arg0, arg1, arg2, arg3 PASS_MEM_STAT);
4461 if (CAN_HAVE_LOCATION_P (t))
4462 SET_EXPR_LOCATION (t, loc);
4463 return t;
4466 static inline tree
4467 build5_loc (location_t loc, enum tree_code code, tree type, tree arg0,
4468 tree arg1, tree arg2, tree arg3, tree arg4 CXX_MEM_STAT_INFO)
4470 tree t = build5 (code, type, arg0, arg1, arg2, arg3,
4471 arg4 PASS_MEM_STAT);
4472 if (CAN_HAVE_LOCATION_P (t))
4473 SET_EXPR_LOCATION (t, loc);
4474 return t;
4477 /* Constructs double_int from tree CST. */
4479 extern tree double_int_to_tree (tree, double_int);
4481 extern tree wide_int_to_tree (tree type, const poly_wide_int_ref &cst);
4482 extern tree force_fit_type (tree, const poly_wide_int_ref &, int, bool);
4484 /* Create an INT_CST node with a CST value zero extended. */
4486 /* static inline */
4487 extern tree build_int_cst (tree, poly_int64);
4488 extern tree build_int_cstu (tree type, poly_uint64);
4489 extern tree build_int_cst_type (tree, poly_int64);
4490 extern tree make_vector (unsigned, unsigned CXX_MEM_STAT_INFO);
4491 extern tree build_vector_from_ctor (tree, const vec<constructor_elt, va_gc> *);
4492 extern tree build_vector_from_val (tree, tree);
4493 extern tree build_uniform_cst (tree, tree);
4494 extern tree build_vec_series (tree, tree, tree);
4495 extern tree build_index_vector (tree, poly_uint64, poly_uint64);
4496 extern tree build_vector_a_then_b (tree, unsigned int, tree, tree);
4497 extern void recompute_constructor_flags (tree);
4498 extern void verify_constructor_flags (tree);
4499 extern tree build_constructor (tree, vec<constructor_elt, va_gc> * CXX_MEM_STAT_INFO);
4500 extern tree build_constructor_single (tree, tree, tree);
4501 extern tree build_constructor_from_list (tree, tree);
4502 extern tree build_constructor_from_vec (tree, const vec<tree, va_gc> *);
4503 extern tree build_constructor_va (tree, int, ...);
4504 extern tree build_clobber (tree);
4505 extern tree build_real_from_int_cst (tree, const_tree);
4506 extern tree build_real_from_wide (tree, const wide_int_ref &, signop);
4507 extern tree build_complex (tree, tree, tree);
4508 extern tree build_complex_inf (tree, bool);
4509 extern tree build_each_one_cst (tree);
4510 extern tree build_one_cst (tree);
4511 extern tree build_minus_one_cst (tree);
4512 extern tree build_all_ones_cst (tree);
4513 extern tree build_zero_cst (tree);
4514 extern tree build_string (unsigned, const char * = NULL);
4515 extern tree build_poly_int_cst (tree, const poly_wide_int_ref &);
4516 extern tree build_tree_list (tree, tree CXX_MEM_STAT_INFO);
4517 extern tree build_tree_list_vec (const vec<tree, va_gc> * CXX_MEM_STAT_INFO);
4518 extern tree build_decl (location_t, enum tree_code,
4519 tree, tree CXX_MEM_STAT_INFO);
4520 extern tree build_fn_decl (const char *, tree);
4521 extern tree build_translation_unit_decl (tree);
4522 extern tree build_block (tree, tree, tree, tree);
4523 extern tree build_empty_stmt (location_t);
4524 extern tree build_omp_clause (location_t, enum omp_clause_code);
4526 extern tree build_vl_exp (enum tree_code, int CXX_MEM_STAT_INFO);
4528 extern tree build_call_nary (tree, tree, int, ...);
4529 extern tree build_call_valist (tree, tree, int, va_list);
4530 #define build_call_array(T1,T2,N,T3)\
4531 build_call_array_loc (UNKNOWN_LOCATION, T1, T2, N, T3)
4532 extern tree build_call_array_loc (location_t, tree, tree, int, const tree *);
4533 extern tree build_call_vec (tree, tree, vec<tree, va_gc> *);
4534 extern tree build_call_expr_loc_array (location_t, tree, int, tree *);
4535 extern tree build_call_expr_loc_vec (location_t, tree, vec<tree, va_gc> *);
4536 extern tree build_call_expr_loc (location_t, tree, int, ...);
4537 extern tree build_call_expr (tree, int, ...);
4538 extern tree build_call_expr_internal_loc (location_t, enum internal_fn,
4539 tree, int, ...);
4540 extern tree build_call_expr_internal_loc_array (location_t, enum internal_fn,
4541 tree, int, const tree *);
4542 extern tree maybe_build_call_expr_loc (location_t, combined_fn, tree,
4543 int, ...);
4544 extern tree build_alloca_call_expr (tree, unsigned int, HOST_WIDE_INT);
4545 extern tree build_string_literal (unsigned, const char * = NULL,
4546 tree = char_type_node,
4547 unsigned HOST_WIDE_INT = HOST_WIDE_INT_M1U);
4549 /* Construct various nodes representing data types. */
4551 extern tree signed_or_unsigned_type_for (int, tree);
4552 extern tree signed_type_for (tree);
4553 extern tree unsigned_type_for (tree);
4554 extern tree truth_type_for (tree);
4555 extern tree build_pointer_type_for_mode (tree, machine_mode, bool);
4556 extern tree build_pointer_type (tree);
4557 extern tree build_reference_type_for_mode (tree, machine_mode, bool);
4558 extern tree build_reference_type (tree);
4559 extern tree build_vector_type_for_mode (tree, machine_mode);
4560 extern tree build_vector_type (tree, poly_int64);
4561 extern tree build_truth_vector_type_for_mode (poly_uint64, machine_mode);
4562 extern tree build_opaque_vector_type (tree, poly_int64);
4563 extern tree build_index_type (tree);
4564 extern tree build_array_type_1 (tree, tree, bool, bool, bool);
4565 extern tree build_array_type (tree, tree, bool = false);
4566 extern tree build_nonshared_array_type (tree, tree);
4567 extern tree build_array_type_nelts (tree, poly_uint64);
4568 extern tree build_function_type (tree, tree);
4569 extern tree build_function_type_list (tree, ...);
4570 extern tree build_varargs_function_type_list (tree, ...);
4571 extern tree build_function_type_array (tree, int, tree *);
4572 extern tree build_varargs_function_type_array (tree, int, tree *);
4573 #define build_function_type_vec(RET, V) \
4574 build_function_type_array (RET, vec_safe_length (V), vec_safe_address (V))
4575 #define build_varargs_function_type_vec(RET, V) \
4576 build_varargs_function_type_array (RET, vec_safe_length (V), \
4577 vec_safe_address (V))
4578 extern tree build_method_type_directly (tree, tree, tree);
4579 extern tree build_method_type (tree, tree);
4580 extern tree build_offset_type (tree, tree);
4581 extern tree build_complex_type (tree, bool named = false);
4582 extern tree array_type_nelts (const_tree);
4584 extern tree value_member (tree, tree);
4585 extern tree purpose_member (const_tree, tree);
4586 extern bool vec_member (const_tree, vec<tree, va_gc> *);
4587 extern tree chain_index (int, tree);
4589 /* Arguments may be null. */
4590 extern int tree_int_cst_equal (const_tree, const_tree);
4592 /* The following predicates are safe to call with a null argument. */
4593 extern bool tree_fits_shwi_p (const_tree) ATTRIBUTE_PURE;
4594 extern bool tree_fits_poly_int64_p (const_tree) ATTRIBUTE_PURE;
4595 extern bool tree_fits_uhwi_p (const_tree) ATTRIBUTE_PURE;
4596 extern bool tree_fits_poly_uint64_p (const_tree) ATTRIBUTE_PURE;
4598 extern HOST_WIDE_INT tree_to_shwi (const_tree)
4599 ATTRIBUTE_NONNULL (1) ATTRIBUTE_PURE;
4600 extern poly_int64 tree_to_poly_int64 (const_tree)
4601 ATTRIBUTE_NONNULL (1) ATTRIBUTE_PURE;
4602 extern unsigned HOST_WIDE_INT tree_to_uhwi (const_tree)
4603 ATTRIBUTE_NONNULL (1) ATTRIBUTE_PURE;
4604 extern poly_uint64 tree_to_poly_uint64 (const_tree)
4605 ATTRIBUTE_NONNULL (1) ATTRIBUTE_PURE;
4606 #if !defined ENABLE_TREE_CHECKING && (GCC_VERSION >= 4003)
4607 extern inline __attribute__ ((__gnu_inline__)) HOST_WIDE_INT
4608 tree_to_shwi (const_tree t)
4610 gcc_assert (tree_fits_shwi_p (t));
4611 return TREE_INT_CST_LOW (t);
4614 extern inline __attribute__ ((__gnu_inline__)) unsigned HOST_WIDE_INT
4615 tree_to_uhwi (const_tree t)
4617 gcc_assert (tree_fits_uhwi_p (t));
4618 return TREE_INT_CST_LOW (t);
4620 #if NUM_POLY_INT_COEFFS == 1
4621 extern inline __attribute__ ((__gnu_inline__)) poly_int64
4622 tree_to_poly_int64 (const_tree t)
4624 gcc_assert (tree_fits_poly_int64_p (t));
4625 return TREE_INT_CST_LOW (t);
4628 extern inline __attribute__ ((__gnu_inline__)) poly_uint64
4629 tree_to_poly_uint64 (const_tree t)
4631 gcc_assert (tree_fits_poly_uint64_p (t));
4632 return TREE_INT_CST_LOW (t);
4634 #endif
4635 #endif
4636 extern int tree_int_cst_sgn (const_tree);
4637 extern int tree_int_cst_sign_bit (const_tree);
4638 extern unsigned int tree_int_cst_min_precision (tree, signop);
4639 extern tree strip_array_types (tree);
4640 extern tree excess_precision_type (tree);
4642 /* Desription of the reason why the argument of valid_constant_size_p
4643 is not a valid size. */
4644 enum cst_size_error {
4645 cst_size_ok,
4646 cst_size_not_constant,
4647 cst_size_negative,
4648 cst_size_too_big,
4649 cst_size_overflow
4652 extern bool valid_constant_size_p (const_tree, cst_size_error * = NULL);
4653 extern tree max_object_size ();
4655 /* Return true if T holds a value that can be represented as a poly_int64
4656 without loss of precision. Store the value in *VALUE if so. */
4658 inline bool
4659 poly_int_tree_p (const_tree t, poly_int64_pod *value)
4661 if (tree_fits_poly_int64_p (t))
4663 *value = tree_to_poly_int64 (t);
4664 return true;
4666 return false;
4669 /* Return true if T holds a value that can be represented as a poly_uint64
4670 without loss of precision. Store the value in *VALUE if so. */
4672 inline bool
4673 poly_int_tree_p (const_tree t, poly_uint64_pod *value)
4675 if (tree_fits_poly_uint64_p (t))
4677 *value = tree_to_poly_uint64 (t);
4678 return true;
4680 return false;
4683 /* From expmed.c. Since rtl.h is included after tree.h, we can't
4684 put the prototype here. Rtl.h does declare the prototype if
4685 tree.h had been included. */
4687 extern tree make_tree (tree, rtx);
4689 /* Returns true iff CAND and BASE have equivalent language-specific
4690 qualifiers. */
4692 extern bool check_lang_type (const_tree cand, const_tree base);
4694 /* Returns true iff unqualified CAND and BASE are equivalent. */
4696 extern bool check_base_type (const_tree cand, const_tree base);
4698 /* Check whether CAND is suitable to be returned from get_qualified_type
4699 (BASE, TYPE_QUALS). */
4701 extern bool check_qualified_type (const_tree, const_tree, int);
4703 /* Return a version of the TYPE, qualified as indicated by the
4704 TYPE_QUALS, if one exists. If no qualified version exists yet,
4705 return NULL_TREE. */
4707 extern tree get_qualified_type (tree, int);
4709 /* Like get_qualified_type, but creates the type if it does not
4710 exist. This function never returns NULL_TREE. */
4712 extern tree build_qualified_type (tree, int CXX_MEM_STAT_INFO);
4714 /* Create a variant of type T with alignment ALIGN. */
4716 extern tree build_aligned_type (tree, unsigned int);
4718 /* Like build_qualified_type, but only deals with the `const' and
4719 `volatile' qualifiers. This interface is retained for backwards
4720 compatibility with the various front-ends; new code should use
4721 build_qualified_type instead. */
4723 #define build_type_variant(TYPE, CONST_P, VOLATILE_P) \
4724 build_qualified_type ((TYPE), \
4725 ((CONST_P) ? TYPE_QUAL_CONST : 0) \
4726 | ((VOLATILE_P) ? TYPE_QUAL_VOLATILE : 0))
4728 /* Make a copy of a type node. */
4730 extern tree build_distinct_type_copy (tree CXX_MEM_STAT_INFO);
4731 extern tree build_variant_type_copy (tree CXX_MEM_STAT_INFO);
4733 /* Given a hashcode and a ..._TYPE node (for which the hashcode was made),
4734 return a canonicalized ..._TYPE node, so that duplicates are not made.
4735 How the hash code is computed is up to the caller, as long as any two
4736 callers that could hash identical-looking type nodes agree. */
4738 extern hashval_t type_hash_canon_hash (tree);
4739 extern tree type_hash_canon (unsigned int, tree);
4741 extern tree convert (tree, tree);
4742 extern tree size_in_bytes_loc (location_t, const_tree);
4743 inline tree
4744 size_in_bytes (const_tree t)
4746 return size_in_bytes_loc (input_location, t);
4749 extern HOST_WIDE_INT int_size_in_bytes (const_tree);
4750 extern HOST_WIDE_INT max_int_size_in_bytes (const_tree);
4751 extern tree bit_position (const_tree);
4752 extern tree byte_position (const_tree);
4753 extern HOST_WIDE_INT int_byte_position (const_tree);
4755 /* Type for sizes of data-type. */
4757 #define sizetype sizetype_tab[(int) stk_sizetype]
4758 #define bitsizetype sizetype_tab[(int) stk_bitsizetype]
4759 #define ssizetype sizetype_tab[(int) stk_ssizetype]
4760 #define sbitsizetype sizetype_tab[(int) stk_sbitsizetype]
4761 #define size_int(L) size_int_kind (L, stk_sizetype)
4762 #define ssize_int(L) size_int_kind (L, stk_ssizetype)
4763 #define bitsize_int(L) size_int_kind (L, stk_bitsizetype)
4764 #define sbitsize_int(L) size_int_kind (L, stk_sbitsizetype)
4766 /* Log2 of BITS_PER_UNIT. */
4768 #if BITS_PER_UNIT == 8
4769 #define LOG2_BITS_PER_UNIT 3
4770 #elif BITS_PER_UNIT == 16
4771 #define LOG2_BITS_PER_UNIT 4
4772 #else
4773 #error Unknown BITS_PER_UNIT
4774 #endif
4776 /* Concatenate two lists (chains of TREE_LIST nodes) X and Y
4777 by making the last node in X point to Y.
4778 Returns X, except if X is 0 returns Y. */
4780 extern tree chainon (tree, tree);
4782 /* Make a new TREE_LIST node from specified PURPOSE, VALUE and CHAIN. */
4784 extern tree tree_cons (tree, tree, tree CXX_MEM_STAT_INFO);
4786 /* Return the last tree node in a chain. */
4788 extern tree tree_last (tree);
4790 /* Reverse the order of elements in a chain, and return the new head. */
4792 extern tree nreverse (tree);
4794 /* Returns the length of a chain of nodes
4795 (number of chain pointers to follow before reaching a null pointer). */
4797 extern int list_length (const_tree);
4799 /* Returns the first/last FIELD_DECL in a RECORD_TYPE. */
4801 extern tree first_field (const_tree) ATTRIBUTE_NONNULL (1);
4802 extern tree last_field (const_tree) ATTRIBUTE_NONNULL (1);
4804 /* Given an initializer INIT, return TRUE if INIT is zero or some
4805 aggregate of zeros. Otherwise return FALSE. If NONZERO is not
4806 null, set *NONZERO if and only if INIT is known not to be all
4807 zeros. The combination of return value of false and *NONZERO
4808 false implies that INIT may but need not be all zeros. Other
4809 combinations indicate definitive answers. */
4811 extern bool initializer_zerop (const_tree, bool * = NULL);
4812 extern bool initializer_each_zero_or_onep (const_tree);
4814 extern tree vector_cst_elt (const_tree, unsigned int);
4816 /* Given a vector VEC, return its first element if all elements are
4817 the same. Otherwise return NULL_TREE. */
4819 extern tree uniform_vector_p (const_tree);
4821 /* If the argument is INTEGER_CST, return it. If the argument is vector
4822 with all elements the same INTEGER_CST, return that INTEGER_CST. Otherwise
4823 return NULL_TREE. */
4825 extern tree uniform_integer_cst_p (tree);
4827 extern int single_nonzero_element (const_tree);
4829 /* Given a CONSTRUCTOR CTOR, return the element values as a vector. */
4831 extern vec<tree, va_gc> *ctor_to_vec (tree);
4833 /* zerop (tree x) is nonzero if X is a constant of value 0. */
4835 extern bool zerop (const_tree);
4837 /* integer_zerop (tree x) is nonzero if X is an integer constant of value 0. */
4839 extern bool integer_zerop (const_tree);
4841 /* integer_onep (tree x) is nonzero if X is an integer constant of value 1. */
4843 extern bool integer_onep (const_tree);
4845 /* integer_onep (tree x) is nonzero if X is an integer constant of value 1, or
4846 a vector or complex where each part is 1. */
4848 extern bool integer_each_onep (const_tree);
4850 /* integer_all_onesp (tree x) is nonzero if X is an integer constant
4851 all of whose significant bits are 1. */
4853 extern bool integer_all_onesp (const_tree);
4855 /* integer_minus_onep (tree x) is nonzero if X is an integer constant of
4856 value -1. */
4858 extern bool integer_minus_onep (const_tree);
4860 /* integer_pow2p (tree x) is nonzero is X is an integer constant with
4861 exactly one bit 1. */
4863 extern bool integer_pow2p (const_tree);
4865 /* integer_nonzerop (tree x) is nonzero if X is an integer constant
4866 with a nonzero value. */
4868 extern bool integer_nonzerop (const_tree);
4870 /* integer_truep (tree x) is nonzero if X is an integer constant of value 1 or
4871 a vector where each element is an integer constant of value -1. */
4873 extern bool integer_truep (const_tree);
4875 extern bool cst_and_fits_in_hwi (const_tree);
4876 extern tree num_ending_zeros (const_tree);
4878 /* fixed_zerop (tree x) is nonzero if X is a fixed-point constant of
4879 value 0. */
4881 extern bool fixed_zerop (const_tree);
4883 /* staticp (tree x) is nonzero if X is a reference to data allocated
4884 at a fixed address in memory. Returns the outermost data. */
4886 extern tree staticp (tree);
4888 /* save_expr (EXP) returns an expression equivalent to EXP
4889 but it can be used multiple times within context CTX
4890 and only evaluate EXP once. */
4892 extern tree save_expr (tree);
4894 /* Return true if T is function-invariant. */
4896 extern bool tree_invariant_p (tree);
4898 /* Look inside EXPR into any simple arithmetic operations. Return the
4899 outermost non-arithmetic or non-invariant node. */
4901 extern tree skip_simple_arithmetic (tree);
4903 /* Look inside EXPR into simple arithmetic operations involving constants.
4904 Return the outermost non-arithmetic or non-constant node. */
4906 extern tree skip_simple_constant_arithmetic (tree);
4908 /* Return which tree structure is used by T. */
4910 enum tree_node_structure_enum tree_node_structure (const_tree);
4912 /* Return true if EXP contains a PLACEHOLDER_EXPR, i.e. if it represents a
4913 size or offset that depends on a field within a record. */
4915 extern bool contains_placeholder_p (const_tree);
4917 /* This macro calls the above function but short-circuits the common
4918 case of a constant to save time. Also check for null. */
4920 #define CONTAINS_PLACEHOLDER_P(EXP) \
4921 ((EXP) != 0 && ! TREE_CONSTANT (EXP) && contains_placeholder_p (EXP))
4923 /* Return true if any part of the structure of TYPE involves a PLACEHOLDER_EXPR
4924 directly. This includes size, bounds, qualifiers (for QUAL_UNION_TYPE) and
4925 field positions. */
4927 extern bool type_contains_placeholder_p (tree);
4929 /* Given a tree EXP, find all occurrences of references to fields
4930 in a PLACEHOLDER_EXPR and place them in vector REFS without
4931 duplicates. Also record VAR_DECLs and CONST_DECLs. Note that
4932 we assume here that EXP contains only arithmetic expressions
4933 or CALL_EXPRs with PLACEHOLDER_EXPRs occurring only in their
4934 argument list. */
4936 extern void find_placeholder_in_expr (tree, vec<tree> *);
4938 /* This macro calls the above function but short-circuits the common
4939 case of a constant to save time and also checks for NULL. */
4941 #define FIND_PLACEHOLDER_IN_EXPR(EXP, V) \
4942 do { \
4943 if((EXP) && !TREE_CONSTANT (EXP)) \
4944 find_placeholder_in_expr (EXP, V); \
4945 } while (0)
4947 /* Given a tree EXP, a FIELD_DECL F, and a replacement value R,
4948 return a tree with all occurrences of references to F in a
4949 PLACEHOLDER_EXPR replaced by R. Also handle VAR_DECLs and
4950 CONST_DECLs. Note that we assume here that EXP contains only
4951 arithmetic expressions or CALL_EXPRs with PLACEHOLDER_EXPRs
4952 occurring only in their argument list. */
4954 extern tree substitute_in_expr (tree, tree, tree);
4956 /* This macro calls the above function but short-circuits the common
4957 case of a constant to save time and also checks for NULL. */
4959 #define SUBSTITUTE_IN_EXPR(EXP, F, R) \
4960 ((EXP) == 0 || TREE_CONSTANT (EXP) ? (EXP) : substitute_in_expr (EXP, F, R))
4962 /* Similar, but look for a PLACEHOLDER_EXPR in EXP and find a replacement
4963 for it within OBJ, a tree that is an object or a chain of references. */
4965 extern tree substitute_placeholder_in_expr (tree, tree);
4967 /* This macro calls the above function but short-circuits the common
4968 case of a constant to save time and also checks for NULL. */
4970 #define SUBSTITUTE_PLACEHOLDER_IN_EXPR(EXP, OBJ) \
4971 ((EXP) == 0 || TREE_CONSTANT (EXP) ? (EXP) \
4972 : substitute_placeholder_in_expr (EXP, OBJ))
4975 /* stabilize_reference (EXP) returns a reference equivalent to EXP
4976 but it can be used multiple times
4977 and only evaluate the subexpressions once. */
4979 extern tree stabilize_reference (tree);
4981 /* Return EXP, stripped of any conversions to wider types
4982 in such a way that the result of converting to type FOR_TYPE
4983 is the same as if EXP were converted to FOR_TYPE.
4984 If FOR_TYPE is 0, it signifies EXP's type. */
4986 extern tree get_unwidened (tree, tree);
4988 /* Return OP or a simpler expression for a narrower value
4989 which can be sign-extended or zero-extended to give back OP.
4990 Store in *UNSIGNEDP_PTR either 1 if the value should be zero-extended
4991 or 0 if the value should be sign-extended. */
4993 extern tree get_narrower (tree, int *);
4995 /* Return true if T is an expression that get_inner_reference handles. */
4997 static inline bool
4998 handled_component_p (const_tree t)
5000 switch (TREE_CODE (t))
5002 case COMPONENT_REF:
5003 case BIT_FIELD_REF:
5004 case ARRAY_REF:
5005 case ARRAY_RANGE_REF:
5006 case REALPART_EXPR:
5007 case IMAGPART_EXPR:
5008 case VIEW_CONVERT_EXPR:
5009 return true;
5011 default:
5012 return false;
5016 /* Return true T is a component with reverse storage order. */
5018 static inline bool
5019 reverse_storage_order_for_component_p (tree t)
5021 /* The storage order only applies to scalar components. */
5022 if (AGGREGATE_TYPE_P (TREE_TYPE (t))
5023 || POINTER_TYPE_P (TREE_TYPE (t))
5024 || VECTOR_TYPE_P (TREE_TYPE (t)))
5025 return false;
5027 if (TREE_CODE (t) == REALPART_EXPR || TREE_CODE (t) == IMAGPART_EXPR)
5028 t = TREE_OPERAND (t, 0);
5030 switch (TREE_CODE (t))
5032 case ARRAY_REF:
5033 case COMPONENT_REF:
5034 /* ??? Fortran can take COMPONENT_REF of a VOID_TYPE. */
5035 /* ??? UBSan can take COMPONENT_REF of a REFERENCE_TYPE. */
5036 return AGGREGATE_TYPE_P (TREE_TYPE (TREE_OPERAND (t, 0)))
5037 && TYPE_REVERSE_STORAGE_ORDER (TREE_TYPE (TREE_OPERAND (t, 0)));
5039 case BIT_FIELD_REF:
5040 case MEM_REF:
5041 return REF_REVERSE_STORAGE_ORDER (t);
5043 case ARRAY_RANGE_REF:
5044 case VIEW_CONVERT_EXPR:
5045 default:
5046 return false;
5049 gcc_unreachable ();
5052 /* Return true if T is a storage order barrier, i.e. a VIEW_CONVERT_EXPR
5053 that can modify the storage order of objects. Note that, even if the
5054 TYPE_REVERSE_STORAGE_ORDER flag is set on both the inner type and the
5055 outer type, a VIEW_CONVERT_EXPR can modify the storage order because
5056 it can change the partition of the aggregate object into scalars. */
5058 static inline bool
5059 storage_order_barrier_p (const_tree t)
5061 if (TREE_CODE (t) != VIEW_CONVERT_EXPR)
5062 return false;
5064 if (AGGREGATE_TYPE_P (TREE_TYPE (t))
5065 && TYPE_REVERSE_STORAGE_ORDER (TREE_TYPE (t)))
5066 return true;
5068 tree op = TREE_OPERAND (t, 0);
5070 if (AGGREGATE_TYPE_P (TREE_TYPE (op))
5071 && TYPE_REVERSE_STORAGE_ORDER (TREE_TYPE (op)))
5072 return true;
5074 return false;
5077 /* Given a DECL or TYPE, return the scope in which it was declared, or
5078 NUL_TREE if there is no containing scope. */
5080 extern tree get_containing_scope (const_tree);
5082 /* Returns the ultimate TRANSLATION_UNIT_DECL context of DECL or NULL. */
5084 extern const_tree get_ultimate_context (const_tree);
5086 /* Return the FUNCTION_DECL which provides this _DECL with its context,
5087 or zero if none. */
5088 extern tree decl_function_context (const_tree);
5090 /* Return the RECORD_TYPE, UNION_TYPE, or QUAL_UNION_TYPE which provides
5091 this _DECL with its context, or zero if none. */
5092 extern tree decl_type_context (const_tree);
5094 /* Return true if EXPR is the real constant zero. */
5095 extern bool real_zerop (const_tree);
5097 /* Initialize the iterator I with arguments from function FNDECL */
5099 static inline void
5100 function_args_iter_init (function_args_iterator *i, const_tree fntype)
5102 i->next = TYPE_ARG_TYPES (fntype);
5105 /* Return a pointer that holds the next argument if there are more arguments to
5106 handle, otherwise return NULL. */
5108 static inline tree *
5109 function_args_iter_cond_ptr (function_args_iterator *i)
5111 return (i->next) ? &TREE_VALUE (i->next) : NULL;
5114 /* Return the next argument if there are more arguments to handle, otherwise
5115 return NULL. */
5117 static inline tree
5118 function_args_iter_cond (function_args_iterator *i)
5120 return (i->next) ? TREE_VALUE (i->next) : NULL_TREE;
5123 /* Advance to the next argument. */
5124 static inline void
5125 function_args_iter_next (function_args_iterator *i)
5127 gcc_assert (i->next != NULL_TREE);
5128 i->next = TREE_CHAIN (i->next);
5131 /* Returns true if a BLOCK has a source location.
5132 BLOCK_SOURCE_LOCATION is set only to inlined function entry points,
5133 so the function returns true for all but the innermost and outermost
5134 blocks into which an expression has been inlined. */
5136 static inline bool
5137 inlined_function_outer_scope_p (const_tree block)
5139 return LOCATION_LOCUS (BLOCK_SOURCE_LOCATION (block)) != UNKNOWN_LOCATION;
5142 /* Loop over all function arguments of FNTYPE. In each iteration, PTR is set
5143 to point to the next tree element. ITER is an instance of
5144 function_args_iterator used to iterate the arguments. */
5145 #define FOREACH_FUNCTION_ARGS_PTR(FNTYPE, PTR, ITER) \
5146 for (function_args_iter_init (&(ITER), (FNTYPE)); \
5147 (PTR = function_args_iter_cond_ptr (&(ITER))) != NULL; \
5148 function_args_iter_next (&(ITER)))
5150 /* Loop over all function arguments of FNTYPE. In each iteration, TREE is set
5151 to the next tree element. ITER is an instance of function_args_iterator
5152 used to iterate the arguments. */
5153 #define FOREACH_FUNCTION_ARGS(FNTYPE, TREE, ITER) \
5154 for (function_args_iter_init (&(ITER), (FNTYPE)); \
5155 (TREE = function_args_iter_cond (&(ITER))) != NULL_TREE; \
5156 function_args_iter_next (&(ITER)))
5158 /* In tree.c */
5159 extern unsigned crc32_unsigned_n (unsigned, unsigned, unsigned);
5160 extern unsigned crc32_string (unsigned, const char *);
5161 inline unsigned
5162 crc32_unsigned (unsigned chksum, unsigned value)
5164 return crc32_unsigned_n (chksum, value, 4);
5166 inline unsigned
5167 crc32_byte (unsigned chksum, char byte)
5169 return crc32_unsigned_n (chksum, byte, 1);
5171 extern void clean_symbol_name (char *);
5172 extern tree get_file_function_name (const char *);
5173 extern tree get_callee_fndecl (const_tree);
5174 extern combined_fn get_call_combined_fn (const_tree);
5175 extern int type_num_arguments (const_tree);
5176 extern tree type_argument_type (const_tree, unsigned) ATTRIBUTE_NONNULL (1);
5177 extern bool associative_tree_code (enum tree_code);
5178 extern bool commutative_tree_code (enum tree_code);
5179 extern bool commutative_ternary_tree_code (enum tree_code);
5180 extern bool operation_can_overflow (enum tree_code);
5181 extern bool operation_no_trapping_overflow (tree, enum tree_code);
5182 extern tree upper_bound_in_type (tree, tree);
5183 extern tree lower_bound_in_type (tree, tree);
5184 extern int operand_equal_for_phi_arg_p (const_tree, const_tree);
5185 extern tree create_artificial_label (location_t);
5186 extern const char *get_name (tree);
5187 extern bool stdarg_p (const_tree);
5188 extern bool prototype_p (const_tree);
5189 extern bool is_typedef_decl (const_tree x);
5190 extern bool typedef_variant_p (const_tree);
5191 extern bool auto_var_p (const_tree);
5192 extern bool auto_var_in_fn_p (const_tree, const_tree);
5193 extern tree build_low_bits_mask (tree, unsigned);
5194 extern bool tree_nop_conversion_p (const_tree, const_tree);
5195 extern tree tree_strip_nop_conversions (tree);
5196 extern tree tree_strip_sign_nop_conversions (tree);
5197 extern const_tree strip_invariant_refs (const_tree);
5198 extern tree lhd_gcc_personality (void);
5199 extern void assign_assembler_name_if_needed (tree);
5200 extern bool warn_deprecated_use (tree, tree);
5201 extern tree cache_integer_cst (tree, bool might_duplicate = false);
5202 extern const char *combined_fn_name (combined_fn);
5204 /* Compare and hash for any structure which begins with a canonical
5205 pointer. Assumes all pointers are interchangeable, which is sort
5206 of already assumed by gcc elsewhere IIRC. */
5208 static inline int
5209 struct_ptr_eq (const void *a, const void *b)
5211 const void * const * x = (const void * const *) a;
5212 const void * const * y = (const void * const *) b;
5213 return *x == *y;
5216 static inline hashval_t
5217 struct_ptr_hash (const void *a)
5219 const void * const * x = (const void * const *) a;
5220 return (intptr_t)*x >> 4;
5223 /* Return nonzero if CODE is a tree code that represents a truth value. */
5224 static inline bool
5225 truth_value_p (enum tree_code code)
5227 return (TREE_CODE_CLASS (code) == tcc_comparison
5228 || code == TRUTH_AND_EXPR || code == TRUTH_ANDIF_EXPR
5229 || code == TRUTH_OR_EXPR || code == TRUTH_ORIF_EXPR
5230 || code == TRUTH_XOR_EXPR || code == TRUTH_NOT_EXPR);
5233 /* Return whether TYPE is a type suitable for an offset for
5234 a POINTER_PLUS_EXPR. */
5235 static inline bool
5236 ptrofftype_p (tree type)
5238 return (INTEGRAL_TYPE_P (type)
5239 && TYPE_PRECISION (type) == TYPE_PRECISION (sizetype)
5240 && TYPE_UNSIGNED (type) == TYPE_UNSIGNED (sizetype));
5243 /* Return true if the argument is a complete type or an array
5244 of unknown bound (whose type is incomplete but) whose elements
5245 have complete type. */
5246 static inline bool
5247 complete_or_array_type_p (const_tree type)
5249 return COMPLETE_TYPE_P (type)
5250 || (TREE_CODE (type) == ARRAY_TYPE
5251 && COMPLETE_TYPE_P (TREE_TYPE (type)));
5254 /* Return true if the value of T could be represented as a poly_widest_int. */
5256 inline bool
5257 poly_int_tree_p (const_tree t)
5259 return (TREE_CODE (t) == INTEGER_CST || POLY_INT_CST_P (t));
5262 /* Return the bit size of BIT_FIELD_REF T, in cases where it is known
5263 to be a poly_uint64. (This is always true at the gimple level.) */
5265 inline poly_uint64
5266 bit_field_size (const_tree t)
5268 return tree_to_poly_uint64 (TREE_OPERAND (t, 1));
5271 /* Return the starting bit offset of BIT_FIELD_REF T, in cases where it is
5272 known to be a poly_uint64. (This is always true at the gimple level.) */
5274 inline poly_uint64
5275 bit_field_offset (const_tree t)
5277 return tree_to_poly_uint64 (TREE_OPERAND (t, 2));
5280 extern tree strip_float_extensions (tree);
5281 extern bool really_constant_p (const_tree);
5282 extern bool ptrdiff_tree_p (const_tree, poly_int64_pod *);
5283 extern bool decl_address_invariant_p (const_tree);
5284 extern bool decl_address_ip_invariant_p (const_tree);
5285 extern bool int_fits_type_p (const_tree, const_tree)
5286 ATTRIBUTE_NONNULL (1) ATTRIBUTE_NONNULL (2) ATTRIBUTE_PURE;
5287 #ifndef GENERATOR_FILE
5288 extern void get_type_static_bounds (const_tree, mpz_t, mpz_t);
5289 #endif
5290 extern bool variably_modified_type_p (tree, tree);
5291 extern int tree_log2 (const_tree);
5292 extern int tree_floor_log2 (const_tree);
5293 extern unsigned int tree_ctz (const_tree);
5294 extern int simple_cst_equal (const_tree, const_tree);
5296 namespace inchash
5299 extern void add_expr (const_tree, hash &, unsigned int = 0);
5303 /* Compat version until all callers are converted. Return hash for
5304 TREE with SEED. */
5305 static inline hashval_t iterative_hash_expr(const_tree tree, hashval_t seed)
5307 inchash::hash hstate (seed);
5308 inchash::add_expr (tree, hstate);
5309 return hstate.end ();
5312 extern int compare_tree_int (const_tree, unsigned HOST_WIDE_INT);
5313 extern bool type_list_equal (const_tree, const_tree);
5314 extern bool chain_member (const_tree, const_tree);
5315 extern void dump_tree_statistics (void);
5316 extern void recompute_tree_invariant_for_addr_expr (tree);
5317 extern bool needs_to_live_in_memory (const_tree);
5318 extern tree reconstruct_complex_type (tree, tree);
5319 extern bool real_onep (const_tree);
5320 extern bool real_minus_onep (const_tree);
5321 extern void init_ttree (void);
5322 extern void build_common_tree_nodes (bool);
5323 extern void build_common_builtin_nodes (void);
5324 extern tree build_nonstandard_integer_type (unsigned HOST_WIDE_INT, int);
5325 extern tree build_nonstandard_boolean_type (unsigned HOST_WIDE_INT);
5326 extern tree build_range_type (tree, tree, tree);
5327 extern tree build_nonshared_range_type (tree, tree, tree);
5328 extern bool subrange_type_for_debug_p (const_tree, tree *, tree *);
5329 extern HOST_WIDE_INT int_cst_value (const_tree);
5330 extern tree tree_block (tree);
5331 extern void tree_set_block (tree, tree);
5332 extern location_t *block_nonartificial_location (tree);
5333 extern location_t tree_nonartificial_location (tree);
5334 extern location_t tree_inlined_location (tree, bool = true);
5335 extern tree block_ultimate_origin (const_tree);
5336 extern tree get_binfo_at_offset (tree, poly_int64, tree);
5337 extern bool virtual_method_call_p (const_tree, bool = false);
5338 extern tree obj_type_ref_class (const_tree ref, bool = false);
5339 extern bool types_same_for_odr (const_tree type1, const_tree type2);
5340 extern bool contains_bitfld_component_ref_p (const_tree);
5341 extern bool block_may_fallthru (const_tree);
5342 extern void using_eh_for_cleanups (void);
5343 extern bool using_eh_for_cleanups_p (void);
5344 extern const char *get_tree_code_name (enum tree_code);
5345 extern void set_call_expr_flags (tree, int);
5346 extern tree walk_tree_1 (tree*, walk_tree_fn, void*, hash_set<tree>*,
5347 walk_tree_lh);
5348 extern tree walk_tree_without_duplicates_1 (tree*, walk_tree_fn, void*,
5349 walk_tree_lh);
5350 #define walk_tree(a,b,c,d) \
5351 walk_tree_1 (a, b, c, d, NULL)
5352 #define walk_tree_without_duplicates(a,b,c) \
5353 walk_tree_without_duplicates_1 (a, b, c, NULL)
5355 extern tree drop_tree_overflow (tree);
5357 /* Given a memory reference expression T, return its base address.
5358 The base address of a memory reference expression is the main
5359 object being referenced. */
5360 extern tree get_base_address (tree t);
5362 /* Return a tree of sizetype representing the size, in bytes, of the element
5363 of EXP, an ARRAY_REF or an ARRAY_RANGE_REF. */
5364 extern tree array_ref_element_size (tree);
5366 /* Return a typenode for the "standard" C type with a given name. */
5367 extern tree get_typenode_from_name (const char *);
5369 /* Return a tree representing the upper bound of the array mentioned in
5370 EXP, an ARRAY_REF or an ARRAY_RANGE_REF. */
5371 extern tree array_ref_up_bound (tree);
5373 /* Return a tree representing the lower bound of the array mentioned in
5374 EXP, an ARRAY_REF or an ARRAY_RANGE_REF. */
5375 extern tree array_ref_low_bound (tree);
5377 /* Returns true if REF is an array reference or a component reference
5378 to an array at the end of a structure. If this is the case, the array
5379 may be allocated larger than its upper bound implies. */
5380 extern bool array_at_struct_end_p (tree);
5382 /* Return a tree representing the offset, in bytes, of the field referenced
5383 by EXP. This does not include any offset in DECL_FIELD_BIT_OFFSET. */
5384 extern tree component_ref_field_offset (tree);
5386 /* Describes a "special" array member due to which component_ref_size
5387 returns null. */
5388 enum struct special_array_member
5390 none, /* Not a special array member. */
5391 int_0, /* Interior array member with size zero. */
5392 trail_0, /* Trailing array member with size zero. */
5393 trail_1 /* Trailing array member with one element. */
5396 /* Return the size of the member referenced by the COMPONENT_REF, using
5397 its initializer expression if necessary in order to determine the size
5398 of an initialized flexible array member. The size might be zero for
5399 an object with an uninitialized flexible array member or null if it
5400 cannot be determined. */
5401 extern tree component_ref_size (tree, special_array_member * = NULL);
5403 extern int tree_map_base_eq (const void *, const void *);
5404 extern unsigned int tree_map_base_hash (const void *);
5405 extern int tree_map_base_marked_p (const void *);
5406 extern void DEBUG_FUNCTION verify_type (const_tree t);
5407 extern bool gimple_canonical_types_compatible_p (const_tree, const_tree,
5408 bool trust_type_canonical = true);
5409 extern bool type_with_interoperable_signedness (const_tree);
5410 extern bitmap get_nonnull_args (const_tree);
5411 extern int get_range_pos_neg (tree);
5413 /* Return true for a valid pair of new and delete operators. */
5414 extern bool valid_new_delete_pair_p (tree, tree, bool * = NULL);
5416 /* Return simplified tree code of type that is used for canonical type
5417 merging. */
5418 inline enum tree_code
5419 tree_code_for_canonical_type_merging (enum tree_code code)
5421 /* By C standard, each enumerated type shall be compatible with char,
5422 a signed integer, or an unsigned integer. The choice of type is
5423 implementation defined (in our case it depends on -fshort-enum).
5425 For this reason we make no distinction between ENUMERAL_TYPE and INTEGER
5426 type and compare only by their signedness and precision. */
5427 if (code == ENUMERAL_TYPE)
5428 return INTEGER_TYPE;
5429 /* To allow inter-operability between languages having references and
5430 C, we consider reference types and pointers alike. Note that this is
5431 not strictly necessary for C-Fortran 2008 interoperability because
5432 Fortran define C_PTR type that needs to be compatible with C pointers
5433 and we handle this one as ptr_type_node. */
5434 if (code == REFERENCE_TYPE)
5435 return POINTER_TYPE;
5436 return code;
5439 /* Return ture if get_alias_set care about TYPE_CANONICAL of given type.
5440 We don't define the types for pointers, arrays and vectors. The reason is
5441 that pointers are handled specially: ptr_type_node accesses conflict with
5442 accesses to all other pointers. This is done by alias.c.
5443 Because alias sets of arrays and vectors are the same as types of their
5444 elements, we can't compute canonical type either. Otherwise we could go
5445 form void *[10] to int *[10] (because they are equivalent for canonical type
5446 machinery) and get wrong TBAA. */
5448 inline bool
5449 canonical_type_used_p (const_tree t)
5451 return !(POINTER_TYPE_P (t)
5452 || TREE_CODE (t) == ARRAY_TYPE
5453 || TREE_CODE (t) == VECTOR_TYPE);
5456 /* Kinds of access to pass-by-reference arguments to functions. */
5457 enum access_mode
5459 access_none = 0,
5460 access_read_only = 1,
5461 access_write_only = 2,
5462 access_read_write = access_read_only | access_write_only,
5463 access_deferred = 4
5466 #define tree_map_eq tree_map_base_eq
5467 extern unsigned int tree_map_hash (const void *);
5468 #define tree_map_marked_p tree_map_base_marked_p
5470 #define tree_decl_map_eq tree_map_base_eq
5471 extern unsigned int tree_decl_map_hash (const void *);
5472 #define tree_decl_map_marked_p tree_map_base_marked_p
5474 struct tree_decl_map_cache_hasher : ggc_cache_ptr_hash<tree_decl_map>
5476 static hashval_t hash (tree_decl_map *m) { return tree_decl_map_hash (m); }
5477 static bool
5478 equal (tree_decl_map *a, tree_decl_map *b)
5480 return tree_decl_map_eq (a, b);
5483 static int
5484 keep_cache_entry (tree_decl_map *&m)
5486 return ggc_marked_p (m->base.from);
5490 #define tree_int_map_eq tree_map_base_eq
5491 #define tree_int_map_hash tree_map_base_hash
5492 #define tree_int_map_marked_p tree_map_base_marked_p
5494 #define tree_vec_map_eq tree_map_base_eq
5495 #define tree_vec_map_hash tree_decl_map_hash
5496 #define tree_vec_map_marked_p tree_map_base_marked_p
5498 /* Hasher for tree decls. Pointer equality is enough here, but the DECL_UID
5499 is a better hash than the pointer value and gives a predictable traversal
5500 order. Additionally it can be used across PCH save/restore. */
5501 struct tree_decl_hash : ggc_ptr_hash <tree_node>
5503 static inline hashval_t hash (tree);
5506 inline hashval_t
5507 tree_decl_hash::hash (tree t)
5509 return DECL_UID (t);
5512 /* Similarly for types. Uses TYPE_UID as hash function. */
5513 struct tree_type_hash : ggc_ptr_hash <tree_node>
5515 static inline hashval_t hash (tree);
5518 inline hashval_t
5519 tree_type_hash::hash (tree t)
5521 return TYPE_UID (t);
5524 /* Hash for SSA_NAMEs in the same function. Pointer equality is enough
5525 here, but the SSA_NAME_VERSION is a better hash than the pointer
5526 value and gives a predictable traversal order. */
5527 struct tree_ssa_name_hash : ggc_ptr_hash <tree_node>
5529 static inline hashval_t hash (tree);
5532 inline hashval_t
5533 tree_ssa_name_hash::hash (tree t)
5535 return SSA_NAME_VERSION (t);
5538 /* Hasher for general trees, based on their TREE_HASH. */
5539 struct tree_hash : ggc_ptr_hash <tree_node>
5541 static hashval_t hash (tree);
5544 inline hashval_t
5545 tree_hash::hash (tree t)
5547 return TREE_HASH (t);
5550 /* A hash_map of two trees for use with GTY((cache)). Garbage collection for
5551 such a map will not mark keys, and will mark values if the key is already
5552 marked. */
5553 struct tree_cache_traits
5554 : simple_cache_map_traits<default_hash_traits<tree>, tree> { };
5555 typedef hash_map<tree,tree,tree_cache_traits> tree_cache_map;
5557 /* Similarly, but use DECL_UID as hash function rather than pointer hashing.
5558 This is for hash_maps from decls to trees that need to work across PCH. */
5559 struct decl_tree_cache_traits
5560 : simple_cache_map_traits<tree_decl_hash, tree> { };
5561 typedef hash_map<tree,tree,decl_tree_cache_traits> decl_tree_cache_map;
5563 /* Similarly, but use TYPE_UID as hash function rather than pointer hashing.
5564 This is for hash_maps from types to trees that need to work across PCH. */
5565 struct type_tree_cache_traits
5566 : simple_cache_map_traits<tree_type_hash, tree> { };
5567 typedef hash_map<tree,tree,type_tree_cache_traits> type_tree_cache_map;
5569 /* Similarly to decl_tree_cache_map, but without caching. */
5570 struct decl_tree_traits
5571 : simple_hashmap_traits<tree_decl_hash, tree> { };
5572 typedef hash_map<tree,tree,decl_tree_traits> decl_tree_map;
5574 /* Initialize the abstract argument list iterator object ITER with the
5575 arguments from CALL_EXPR node EXP. */
5576 static inline void
5577 init_call_expr_arg_iterator (tree exp, call_expr_arg_iterator *iter)
5579 iter->t = exp;
5580 iter->n = call_expr_nargs (exp);
5581 iter->i = 0;
5584 static inline void
5585 init_const_call_expr_arg_iterator (const_tree exp, const_call_expr_arg_iterator *iter)
5587 iter->t = exp;
5588 iter->n = call_expr_nargs (exp);
5589 iter->i = 0;
5592 /* Return the next argument from abstract argument list iterator object ITER,
5593 and advance its state. Return NULL_TREE if there are no more arguments. */
5594 static inline tree
5595 next_call_expr_arg (call_expr_arg_iterator *iter)
5597 tree result;
5598 if (iter->i >= iter->n)
5599 return NULL_TREE;
5600 result = CALL_EXPR_ARG (iter->t, iter->i);
5601 iter->i++;
5602 return result;
5605 static inline const_tree
5606 next_const_call_expr_arg (const_call_expr_arg_iterator *iter)
5608 const_tree result;
5609 if (iter->i >= iter->n)
5610 return NULL_TREE;
5611 result = CALL_EXPR_ARG (iter->t, iter->i);
5612 iter->i++;
5613 return result;
5616 /* Initialize the abstract argument list iterator object ITER, then advance
5617 past and return the first argument. Useful in for expressions, e.g.
5618 for (arg = first_call_expr_arg (exp, &iter); arg;
5619 arg = next_call_expr_arg (&iter)) */
5620 static inline tree
5621 first_call_expr_arg (tree exp, call_expr_arg_iterator *iter)
5623 init_call_expr_arg_iterator (exp, iter);
5624 return next_call_expr_arg (iter);
5627 static inline const_tree
5628 first_const_call_expr_arg (const_tree exp, const_call_expr_arg_iterator *iter)
5630 init_const_call_expr_arg_iterator (exp, iter);
5631 return next_const_call_expr_arg (iter);
5634 /* Test whether there are more arguments in abstract argument list iterator
5635 ITER, without changing its state. */
5636 static inline bool
5637 more_call_expr_args_p (const call_expr_arg_iterator *iter)
5639 return (iter->i < iter->n);
5642 /* Iterate through each argument ARG of CALL_EXPR CALL, using variable ITER
5643 (of type call_expr_arg_iterator) to hold the iteration state. */
5644 #define FOR_EACH_CALL_EXPR_ARG(arg, iter, call) \
5645 for ((arg) = first_call_expr_arg ((call), &(iter)); (arg); \
5646 (arg) = next_call_expr_arg (&(iter)))
5648 #define FOR_EACH_CONST_CALL_EXPR_ARG(arg, iter, call) \
5649 for ((arg) = first_const_call_expr_arg ((call), &(iter)); (arg); \
5650 (arg) = next_const_call_expr_arg (&(iter)))
5652 /* Return true if tree node T is a language-specific node. */
5653 static inline bool
5654 is_lang_specific (const_tree t)
5656 return TREE_CODE (t) == LANG_TYPE || TREE_CODE (t) >= NUM_TREE_CODES;
5659 /* Valid builtin number. */
5660 #define BUILTIN_VALID_P(FNCODE) \
5661 (IN_RANGE ((int)FNCODE, ((int)BUILT_IN_NONE) + 1, ((int) END_BUILTINS) - 1))
5663 /* Obtain a pointer to the identifier string holding the asm name for
5664 BUILTIN, a BUILT_IN code. This is handy if the target
5665 mangles/overrides the function name that implements the
5666 builtin. */
5667 #define BUILTIN_ASM_NAME_PTR(BUILTIN) \
5668 (IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (builtin_decl_explicit (BUILTIN))))
5670 /* Return the tree node for an explicit standard builtin function or NULL. */
5671 static inline tree
5672 builtin_decl_explicit (enum built_in_function fncode)
5674 gcc_checking_assert (BUILTIN_VALID_P (fncode));
5676 return builtin_info[(size_t)fncode].decl;
5679 /* Return the tree node for an implicit builtin function or NULL. */
5680 static inline tree
5681 builtin_decl_implicit (enum built_in_function fncode)
5683 size_t uns_fncode = (size_t)fncode;
5684 gcc_checking_assert (BUILTIN_VALID_P (fncode));
5686 if (!builtin_info[uns_fncode].implicit_p)
5687 return NULL_TREE;
5689 return builtin_info[uns_fncode].decl;
5692 /* Set explicit builtin function nodes and whether it is an implicit
5693 function. */
5695 static inline void
5696 set_builtin_decl (enum built_in_function fncode, tree decl, bool implicit_p)
5698 size_t ufncode = (size_t)fncode;
5700 gcc_checking_assert (BUILTIN_VALID_P (fncode)
5701 && (decl != NULL_TREE || !implicit_p));
5703 builtin_info[ufncode].decl = decl;
5704 builtin_info[ufncode].implicit_p = implicit_p;
5705 builtin_info[ufncode].declared_p = false;
5708 /* Set the implicit flag for a builtin function. */
5710 static inline void
5711 set_builtin_decl_implicit_p (enum built_in_function fncode, bool implicit_p)
5713 size_t uns_fncode = (size_t)fncode;
5715 gcc_checking_assert (BUILTIN_VALID_P (fncode)
5716 && builtin_info[uns_fncode].decl != NULL_TREE);
5718 builtin_info[uns_fncode].implicit_p = implicit_p;
5721 /* Set the declared flag for a builtin function. */
5723 static inline void
5724 set_builtin_decl_declared_p (enum built_in_function fncode, bool declared_p)
5726 size_t uns_fncode = (size_t)fncode;
5728 gcc_checking_assert (BUILTIN_VALID_P (fncode)
5729 && builtin_info[uns_fncode].decl != NULL_TREE);
5731 builtin_info[uns_fncode].declared_p = declared_p;
5734 /* Return whether the standard builtin function can be used as an explicit
5735 function. */
5737 static inline bool
5738 builtin_decl_explicit_p (enum built_in_function fncode)
5740 gcc_checking_assert (BUILTIN_VALID_P (fncode));
5741 return (builtin_info[(size_t)fncode].decl != NULL_TREE);
5744 /* Return whether the standard builtin function can be used implicitly. */
5746 static inline bool
5747 builtin_decl_implicit_p (enum built_in_function fncode)
5749 size_t uns_fncode = (size_t)fncode;
5751 gcc_checking_assert (BUILTIN_VALID_P (fncode));
5752 return (builtin_info[uns_fncode].decl != NULL_TREE
5753 && builtin_info[uns_fncode].implicit_p);
5756 /* Return whether the standard builtin function was declared. */
5758 static inline bool
5759 builtin_decl_declared_p (enum built_in_function fncode)
5761 size_t uns_fncode = (size_t)fncode;
5763 gcc_checking_assert (BUILTIN_VALID_P (fncode));
5764 return (builtin_info[uns_fncode].decl != NULL_TREE
5765 && builtin_info[uns_fncode].declared_p);
5768 /* Determine if the function identified by FNDECL is one that
5769 makes sense to match by name, for those places where we detect
5770 "magic" functions by name.
5772 Return true if FNDECL has a name and is an extern fndecl at file scope.
5773 FNDECL must be a non-NULL decl.
5775 Avoid using this, as it's generally better to use attributes rather
5776 than to check for functions by name. */
5778 static inline bool
5779 maybe_special_function_p (const_tree fndecl)
5781 tree name_decl = DECL_NAME (fndecl);
5782 if (name_decl
5783 /* Exclude functions not at the file scope, or not `extern',
5784 since they are not the magic functions we would otherwise
5785 think they are. */
5786 && (DECL_CONTEXT (fndecl) == NULL_TREE
5787 || TREE_CODE (DECL_CONTEXT (fndecl)) == TRANSLATION_UNIT_DECL)
5788 && TREE_PUBLIC (fndecl))
5789 return true;
5790 return false;
5793 /* Return true if T (assumed to be a DECL) is a global variable.
5794 A variable is considered global if its storage is not automatic. */
5796 static inline bool
5797 is_global_var (const_tree t)
5799 return (TREE_STATIC (t) || DECL_EXTERNAL (t));
5802 /* Return true if VAR may be aliased. A variable is considered as
5803 maybe aliased if it has its address taken by the local TU
5804 or possibly by another TU and might be modified through a pointer. */
5806 static inline bool
5807 may_be_aliased (const_tree var)
5809 return (TREE_CODE (var) != CONST_DECL
5810 && (TREE_PUBLIC (var)
5811 || DECL_EXTERNAL (var)
5812 || TREE_ADDRESSABLE (var))
5813 && !((TREE_STATIC (var) || TREE_PUBLIC (var) || DECL_EXTERNAL (var))
5814 && (TREE_READONLY (var)
5815 || (TREE_CODE (var) == VAR_DECL
5816 && DECL_NONALIASED (var)))));
5819 /* Return pointer to optimization flags of FNDECL. */
5820 static inline struct cl_optimization *
5821 opts_for_fn (const_tree fndecl)
5823 tree fn_opts = DECL_FUNCTION_SPECIFIC_OPTIMIZATION (fndecl);
5824 if (fn_opts == NULL_TREE)
5825 fn_opts = optimization_default_node;
5826 return TREE_OPTIMIZATION (fn_opts);
5829 /* Return pointer to target flags of FNDECL. */
5830 static inline cl_target_option *
5831 target_opts_for_fn (const_tree fndecl)
5833 tree fn_opts = DECL_FUNCTION_SPECIFIC_TARGET (fndecl);
5834 if (fn_opts == NULL_TREE)
5835 fn_opts = target_option_default_node;
5836 return fn_opts == NULL_TREE ? NULL : TREE_TARGET_OPTION (fn_opts);
5839 /* opt flag for function FNDECL, e.g. opts_for_fn (fndecl, optimize) is
5840 the optimization level of function fndecl. */
5841 #define opt_for_fn(fndecl, opt) (opts_for_fn (fndecl)->x_##opt)
5843 /* For anonymous aggregate types, we need some sort of name to
5844 hold on to. In practice, this should not appear, but it should
5845 not be harmful if it does. Identifiers returned will be
5846 IDENTIFIER_ANON_P. */
5847 extern tree make_anon_name ();
5849 /* The tree and const_tree overload templates. */
5850 namespace wi
5852 class unextended_tree
5854 private:
5855 const_tree m_t;
5857 public:
5858 unextended_tree () {}
5859 unextended_tree (const_tree t) : m_t (t) {}
5861 unsigned int get_precision () const;
5862 const HOST_WIDE_INT *get_val () const;
5863 unsigned int get_len () const;
5864 const_tree get_tree () const { return m_t; }
5867 template <>
5868 struct int_traits <unextended_tree>
5870 static const enum precision_type precision_type = VAR_PRECISION;
5871 static const bool host_dependent_precision = false;
5872 static const bool is_sign_extended = false;
5875 template <int N>
5876 class extended_tree
5878 private:
5879 const_tree m_t;
5881 public:
5882 extended_tree () {}
5883 extended_tree (const_tree);
5885 unsigned int get_precision () const;
5886 const HOST_WIDE_INT *get_val () const;
5887 unsigned int get_len () const;
5888 const_tree get_tree () const { return m_t; }
5891 template <int N>
5892 struct int_traits <extended_tree <N> >
5894 static const enum precision_type precision_type = CONST_PRECISION;
5895 static const bool host_dependent_precision = false;
5896 static const bool is_sign_extended = true;
5897 static const unsigned int precision = N;
5900 typedef extended_tree <WIDE_INT_MAX_PRECISION> widest_extended_tree;
5901 typedef extended_tree <ADDR_MAX_PRECISION> offset_extended_tree;
5903 typedef const generic_wide_int <widest_extended_tree> tree_to_widest_ref;
5904 typedef const generic_wide_int <offset_extended_tree> tree_to_offset_ref;
5905 typedef const generic_wide_int<wide_int_ref_storage<false, false> >
5906 tree_to_wide_ref;
5908 tree_to_widest_ref to_widest (const_tree);
5909 tree_to_offset_ref to_offset (const_tree);
5910 tree_to_wide_ref to_wide (const_tree);
5911 wide_int to_wide (const_tree, unsigned int);
5913 typedef const poly_int <NUM_POLY_INT_COEFFS,
5914 generic_wide_int <widest_extended_tree> >
5915 tree_to_poly_widest_ref;
5916 typedef const poly_int <NUM_POLY_INT_COEFFS,
5917 generic_wide_int <offset_extended_tree> >
5918 tree_to_poly_offset_ref;
5919 typedef const poly_int <NUM_POLY_INT_COEFFS,
5920 generic_wide_int <unextended_tree> >
5921 tree_to_poly_wide_ref;
5923 tree_to_poly_widest_ref to_poly_widest (const_tree);
5924 tree_to_poly_offset_ref to_poly_offset (const_tree);
5925 tree_to_poly_wide_ref to_poly_wide (const_tree);
5927 template <int N>
5928 struct ints_for <generic_wide_int <extended_tree <N> >, CONST_PRECISION>
5930 typedef generic_wide_int <extended_tree <N> > extended;
5931 static extended zero (const extended &);
5934 template <>
5935 struct ints_for <generic_wide_int <unextended_tree>, VAR_PRECISION>
5937 typedef generic_wide_int <unextended_tree> unextended;
5938 static unextended zero (const unextended &);
5942 /* Used to convert a tree to a widest2_int like this:
5943 widest2_int foo = widest2_int_cst (some_tree). */
5944 typedef generic_wide_int <wi::extended_tree <WIDE_INT_MAX_PRECISION * 2> >
5945 widest2_int_cst;
5947 /* Refer to INTEGER_CST T as though it were a widest_int.
5949 This function gives T's actual numerical value, influenced by the
5950 signedness of its type. For example, a signed byte with just the
5951 top bit set would be -128 while an unsigned byte with the same
5952 bit pattern would be 128.
5954 This is the right choice when operating on groups of INTEGER_CSTs
5955 that might have different signedness or precision. It is also the
5956 right choice in code that specifically needs an approximation of
5957 infinite-precision arithmetic instead of normal modulo arithmetic.
5959 The approximation of infinite precision is good enough for realistic
5960 numbers of additions and subtractions of INTEGER_CSTs (where
5961 "realistic" includes any number less than 1 << 31) but it cannot
5962 represent the result of multiplying the two largest supported
5963 INTEGER_CSTs. The overflow-checking form of wi::mul provides a way
5964 of multiplying two arbitrary INTEGER_CSTs and checking that the
5965 result is representable as a widest_int.
5967 Note that any overflow checking done on these values is relative to
5968 the range of widest_int rather than the range of a TREE_TYPE.
5970 Calling this function should have no overhead in release builds,
5971 so it is OK to call it several times for the same tree. If it is
5972 useful for readability reasons to reduce the number of calls,
5973 it is more efficient to use:
5975 wi::tree_to_widest_ref wt = wi::to_widest (t);
5977 instead of:
5979 widest_int wt = wi::to_widest (t). */
5981 inline wi::tree_to_widest_ref
5982 wi::to_widest (const_tree t)
5984 return t;
5987 /* Refer to INTEGER_CST T as though it were an offset_int.
5989 This function is an optimisation of wi::to_widest for cases
5990 in which T is known to be a bit or byte count in the range
5991 (-(2 ^ (N + BITS_PER_UNIT)), 2 ^ (N + BITS_PER_UNIT)), where N is
5992 the target's address size in bits.
5994 This is the right choice when operating on bit or byte counts as
5995 untyped numbers rather than M-bit values. The wi::to_widest comments
5996 about addition, subtraction and multiplication apply here: sequences
5997 of 1 << 31 additions and subtractions do not induce overflow, but
5998 multiplying the largest sizes might. Again,
6000 wi::tree_to_offset_ref wt = wi::to_offset (t);
6002 is more efficient than:
6004 offset_int wt = wi::to_offset (t). */
6006 inline wi::tree_to_offset_ref
6007 wi::to_offset (const_tree t)
6009 return t;
6012 /* Refer to INTEGER_CST T as though it were a wide_int.
6014 In contrast to the approximation of infinite-precision numbers given
6015 by wi::to_widest and wi::to_offset, this function treats T as a
6016 signless collection of N bits, where N is the precision of T's type.
6017 As with machine registers, signedness is determined by the operation
6018 rather than the operands; for example, there is a distinction between
6019 signed and unsigned division.
6021 This is the right choice when operating on values with the same type
6022 using normal modulo arithmetic. The overflow-checking forms of things
6023 like wi::add check whether the result can be represented in T's type.
6025 Calling this function should have no overhead in release builds,
6026 so it is OK to call it several times for the same tree. If it is
6027 useful for readability reasons to reduce the number of calls,
6028 it is more efficient to use:
6030 wi::tree_to_wide_ref wt = wi::to_wide (t);
6032 instead of:
6034 wide_int wt = wi::to_wide (t). */
6036 inline wi::tree_to_wide_ref
6037 wi::to_wide (const_tree t)
6039 return wi::storage_ref (&TREE_INT_CST_ELT (t, 0), TREE_INT_CST_NUNITS (t),
6040 TYPE_PRECISION (TREE_TYPE (t)));
6043 /* Convert INTEGER_CST T to a wide_int of precision PREC, extending or
6044 truncating as necessary. When extending, use sign extension if T's
6045 type is signed and zero extension if T's type is unsigned. */
6047 inline wide_int
6048 wi::to_wide (const_tree t, unsigned int prec)
6050 return wide_int::from (wi::to_wide (t), prec, TYPE_SIGN (TREE_TYPE (t)));
6053 template <int N>
6054 inline wi::extended_tree <N>::extended_tree (const_tree t)
6055 : m_t (t)
6057 gcc_checking_assert (TYPE_PRECISION (TREE_TYPE (t)) <= N);
6060 template <int N>
6061 inline unsigned int
6062 wi::extended_tree <N>::get_precision () const
6064 return N;
6067 template <int N>
6068 inline const HOST_WIDE_INT *
6069 wi::extended_tree <N>::get_val () const
6071 return &TREE_INT_CST_ELT (m_t, 0);
6074 template <int N>
6075 inline unsigned int
6076 wi::extended_tree <N>::get_len () const
6078 if (N == ADDR_MAX_PRECISION)
6079 return TREE_INT_CST_OFFSET_NUNITS (m_t);
6080 else if (N >= WIDE_INT_MAX_PRECISION)
6081 return TREE_INT_CST_EXT_NUNITS (m_t);
6082 else
6083 /* This class is designed to be used for specific output precisions
6084 and needs to be as fast as possible, so there is no fallback for
6085 other casees. */
6086 gcc_unreachable ();
6089 inline unsigned int
6090 wi::unextended_tree::get_precision () const
6092 return TYPE_PRECISION (TREE_TYPE (m_t));
6095 inline const HOST_WIDE_INT *
6096 wi::unextended_tree::get_val () const
6098 return &TREE_INT_CST_ELT (m_t, 0);
6101 inline unsigned int
6102 wi::unextended_tree::get_len () const
6104 return TREE_INT_CST_NUNITS (m_t);
6107 /* Return the value of a POLY_INT_CST in its native precision. */
6109 inline wi::tree_to_poly_wide_ref
6110 poly_int_cst_value (const_tree x)
6112 poly_int <NUM_POLY_INT_COEFFS, generic_wide_int <wi::unextended_tree> > res;
6113 for (unsigned int i = 0; i < NUM_POLY_INT_COEFFS; ++i)
6114 res.coeffs[i] = POLY_INT_CST_COEFF (x, i);
6115 return res;
6118 /* Access INTEGER_CST or POLY_INT_CST tree T as if it were a
6119 poly_widest_int. See wi::to_widest for more details. */
6121 inline wi::tree_to_poly_widest_ref
6122 wi::to_poly_widest (const_tree t)
6124 if (POLY_INT_CST_P (t))
6126 poly_int <NUM_POLY_INT_COEFFS,
6127 generic_wide_int <widest_extended_tree> > res;
6128 for (unsigned int i = 0; i < NUM_POLY_INT_COEFFS; ++i)
6129 res.coeffs[i] = POLY_INT_CST_COEFF (t, i);
6130 return res;
6132 return t;
6135 /* Access INTEGER_CST or POLY_INT_CST tree T as if it were a
6136 poly_offset_int. See wi::to_offset for more details. */
6138 inline wi::tree_to_poly_offset_ref
6139 wi::to_poly_offset (const_tree t)
6141 if (POLY_INT_CST_P (t))
6143 poly_int <NUM_POLY_INT_COEFFS,
6144 generic_wide_int <offset_extended_tree> > res;
6145 for (unsigned int i = 0; i < NUM_POLY_INT_COEFFS; ++i)
6146 res.coeffs[i] = POLY_INT_CST_COEFF (t, i);
6147 return res;
6149 return t;
6152 /* Access INTEGER_CST or POLY_INT_CST tree T as if it were a
6153 poly_wide_int. See wi::to_wide for more details. */
6155 inline wi::tree_to_poly_wide_ref
6156 wi::to_poly_wide (const_tree t)
6158 if (POLY_INT_CST_P (t))
6159 return poly_int_cst_value (t);
6160 return t;
6163 template <int N>
6164 inline generic_wide_int <wi::extended_tree <N> >
6165 wi::ints_for <generic_wide_int <wi::extended_tree <N> >,
6166 wi::CONST_PRECISION>::zero (const extended &x)
6168 return build_zero_cst (TREE_TYPE (x.get_tree ()));
6171 inline generic_wide_int <wi::unextended_tree>
6172 wi::ints_for <generic_wide_int <wi::unextended_tree>,
6173 wi::VAR_PRECISION>::zero (const unextended &x)
6175 return build_zero_cst (TREE_TYPE (x.get_tree ()));
6178 namespace wi
6180 template <typename T>
6181 bool fits_to_boolean_p (const T &x, const_tree);
6183 template <typename T>
6184 bool fits_to_tree_p (const T &x, const_tree);
6186 wide_int min_value (const_tree);
6187 wide_int max_value (const_tree);
6188 wide_int from_mpz (const_tree, mpz_t, bool);
6191 template <typename T>
6192 bool
6193 wi::fits_to_boolean_p (const T &x, const_tree type)
6195 typedef typename poly_int_traits<T>::int_type int_type;
6196 return (known_eq (x, int_type (0))
6197 || known_eq (x, int_type (TYPE_UNSIGNED (type) ? 1 : -1)));
6200 template <typename T>
6201 bool
6202 wi::fits_to_tree_p (const T &x, const_tree type)
6204 /* Non-standard boolean types can have arbitrary precision but various
6205 transformations assume that they can only take values 0 and +/-1. */
6206 if (TREE_CODE (type) == BOOLEAN_TYPE)
6207 return fits_to_boolean_p (x, type);
6209 if (TYPE_UNSIGNED (type))
6210 return known_eq (x, zext (x, TYPE_PRECISION (type)));
6211 else
6212 return known_eq (x, sext (x, TYPE_PRECISION (type)));
6215 /* Produce the smallest number that is represented in TYPE. The precision
6216 and sign are taken from TYPE. */
6217 inline wide_int
6218 wi::min_value (const_tree type)
6220 return min_value (TYPE_PRECISION (type), TYPE_SIGN (type));
6223 /* Produce the largest number that is represented in TYPE. The precision
6224 and sign are taken from TYPE. */
6225 inline wide_int
6226 wi::max_value (const_tree type)
6228 return max_value (TYPE_PRECISION (type), TYPE_SIGN (type));
6231 /* Return true if INTEGER_CST T1 is less than INTEGER_CST T2,
6232 extending both according to their respective TYPE_SIGNs. */
6234 inline bool
6235 tree_int_cst_lt (const_tree t1, const_tree t2)
6237 return wi::to_widest (t1) < wi::to_widest (t2);
6240 /* Return true if INTEGER_CST T1 is less than or equal to INTEGER_CST T2,
6241 extending both according to their respective TYPE_SIGNs. */
6243 inline bool
6244 tree_int_cst_le (const_tree t1, const_tree t2)
6246 return wi::to_widest (t1) <= wi::to_widest (t2);
6249 /* Returns -1 if T1 < T2, 0 if T1 == T2, and 1 if T1 > T2. T1 and T2
6250 are both INTEGER_CSTs and their values are extended according to their
6251 respective TYPE_SIGNs. */
6253 inline int
6254 tree_int_cst_compare (const_tree t1, const_tree t2)
6256 return wi::cmps (wi::to_widest (t1), wi::to_widest (t2));
6259 /* FIXME - These declarations belong in builtins.h, expr.h and emit-rtl.h,
6260 but none of these files are allowed to be included from front ends.
6261 They should be split in two. One suitable for the FEs, the other suitable
6262 for the BE. */
6264 /* Assign the RTX to declaration. */
6265 extern void set_decl_rtl (tree, rtx);
6266 extern bool complete_ctor_at_level_p (const_tree, HOST_WIDE_INT, const_tree);
6268 /* Given an expression EXP that is a handled_component_p,
6269 look for the ultimate containing object, which is returned and specify
6270 the access position and size. */
6271 extern tree get_inner_reference (tree, poly_int64_pod *, poly_int64_pod *,
6272 tree *, machine_mode *, int *, int *, int *);
6274 extern tree build_personality_function (const char *);
6276 struct GTY(()) int_n_trees_t {
6277 /* These parts are initialized at runtime */
6278 tree signed_type;
6279 tree unsigned_type;
6282 /* This is also in machmode.h */
6283 extern bool int_n_enabled_p[NUM_INT_N_ENTS];
6284 extern GTY(()) struct int_n_trees_t int_n_trees[NUM_INT_N_ENTS];
6286 /* Like bit_position, but return as an integer. It must be representable in
6287 that way (since it could be a signed value, we don't have the
6288 option of returning -1 like int_size_in_byte can. */
6290 inline HOST_WIDE_INT
6291 int_bit_position (const_tree field)
6293 return ((wi::to_offset (DECL_FIELD_OFFSET (field)) << LOG2_BITS_PER_UNIT)
6294 + wi::to_offset (DECL_FIELD_BIT_OFFSET (field))).to_shwi ();
6297 /* Return true if it makes sense to consider alias set for a type T. */
6299 inline bool
6300 type_with_alias_set_p (const_tree t)
6302 /* Function and method types are never accessed as memory locations. */
6303 if (TREE_CODE (t) == FUNCTION_TYPE || TREE_CODE (t) == METHOD_TYPE)
6304 return false;
6306 if (COMPLETE_TYPE_P (t))
6307 return true;
6309 /* Incomplete types cannot be accessed in general except for arrays
6310 where we can fetch its element despite we have no array bounds. */
6311 if (TREE_CODE (t) == ARRAY_TYPE && COMPLETE_TYPE_P (TREE_TYPE (t)))
6312 return true;
6314 return false;
6317 extern location_t set_block (location_t loc, tree block);
6319 extern void gt_ggc_mx (tree &);
6320 extern void gt_pch_nx (tree &);
6321 extern void gt_pch_nx (tree &, gt_pointer_operator, void *);
6323 extern bool nonnull_arg_p (const_tree);
6324 extern bool is_empty_type (const_tree);
6325 extern bool default_is_empty_record (const_tree);
6326 extern bool flexible_array_type_p (const_tree);
6327 extern HOST_WIDE_INT arg_int_size_in_bytes (const_tree);
6328 extern tree arg_size_in_bytes (const_tree);
6329 extern bool expr_type_first_operand_type_p (tree_code);
6331 extern location_t
6332 set_source_range (tree expr, location_t start, location_t finish);
6334 extern location_t
6335 set_source_range (tree expr, source_range src_range);
6337 /* Return true if it makes sense to promote/demote from_type to to_type. */
6338 inline bool
6339 desired_pro_or_demotion_p (const_tree to_type, const_tree from_type)
6341 unsigned int to_type_precision = TYPE_PRECISION (to_type);
6343 /* OK to promote if to_type is no bigger than word_mode. */
6344 if (to_type_precision <= GET_MODE_PRECISION (word_mode))
6345 return true;
6347 /* Otherwise, allow only if narrowing or same precision conversions. */
6348 return to_type_precision <= TYPE_PRECISION (from_type);
6351 /* Pointer type used to declare builtins before we have seen its real
6352 declaration. */
6353 class builtin_structptr_type
6355 public:
6356 tree& node;
6357 tree& base;
6358 const char *str;
6360 extern const builtin_structptr_type builtin_structptr_types[6];
6362 /* Return true if type T has the same precision as its underlying mode. */
6364 inline bool
6365 type_has_mode_precision_p (const_tree t)
6367 return known_eq (TYPE_PRECISION (t), GET_MODE_PRECISION (TYPE_MODE (t)));
6370 /* Return true if a FUNCTION_DECL NODE is a GCC built-in function.
6372 Note that it is different from the DECL_IS_UNDECLARED_BUILTIN
6373 accessor, as this is impervious to user declaration. */
6375 inline bool
6376 fndecl_built_in_p (const_tree node)
6378 return DECL_BUILT_IN_CLASS (node) != NOT_BUILT_IN;
6381 /* Return true if a FUNCTION_DECL NODE is a GCC built-in function
6382 of class KLASS. */
6384 inline bool
6385 fndecl_built_in_p (const_tree node, built_in_class klass)
6387 return fndecl_built_in_p (node) && DECL_BUILT_IN_CLASS (node) == klass;
6390 /* Return true if a FUNCTION_DECL NODE is a GCC built-in function
6391 of class KLASS with name equal to NAME. */
6393 inline bool
6394 fndecl_built_in_p (const_tree node, unsigned int name, built_in_class klass)
6396 return (fndecl_built_in_p (node, klass)
6397 && DECL_UNCHECKED_FUNCTION_CODE (node) == name);
6400 /* Return true if a FUNCTION_DECL NODE is a GCC built-in function
6401 of BUILT_IN_NORMAL class with name equal to NAME. */
6403 inline bool
6404 fndecl_built_in_p (const_tree node, built_in_function name)
6406 return (fndecl_built_in_p (node, BUILT_IN_NORMAL)
6407 && DECL_FUNCTION_CODE (node) == name);
6410 /* A struct for encapsulating location information about an operator
6411 and the operation built from it.
6413 m_operator_loc is the location of the operator
6414 m_combined_loc is the location of the compound expression.
6416 For example, given "a && b" the, operator location is:
6417 a && b
6419 and the combined location is:
6420 a && b
6421 ~~^~~~
6422 Capturing this information allows for class binary_op_rich_location
6423 to provide detailed information about e.g. type mismatches in binary
6424 operations where enough location information is available:
6426 arg_0 op arg_1
6427 ~~~~~ ^~ ~~~~~
6429 | arg1 type
6430 arg0 type
6432 falling back to just showing the combined location:
6434 arg_0 op arg_1
6435 ~~~~~~^~~~~~~~
6437 where it is not. */
6439 class op_location_t
6441 public:
6442 location_t m_operator_loc;
6443 location_t m_combined_loc;
6445 /* 1-argument ctor, for constructing from a combined location. */
6446 op_location_t (location_t combined_loc)
6447 : m_operator_loc (UNKNOWN_LOCATION), m_combined_loc (combined_loc)
6450 /* 2-argument ctor, for distinguishing between the operator's location
6451 and the combined location. */
6452 op_location_t (location_t operator_loc, location_t combined_loc)
6453 : m_operator_loc (operator_loc), m_combined_loc (combined_loc)
6456 /* Implicitly convert back to a location_t, using the combined location. */
6457 operator location_t () const { return m_combined_loc; }
6460 /* Code that doesn't refer to any warning. Has no effect on suppression
6461 functions. */
6462 constexpr opt_code no_warning = opt_code ();
6463 /* Wildcard code that refers to all warnings. */
6464 constexpr opt_code all_warnings = N_OPTS;
6466 /* Return the disposition for a warning (or all warnings by default)
6467 at a location. */
6468 extern bool warning_suppressed_at (location_t, opt_code = all_warnings);
6469 /* Set the disposition for a warning (or all warnings by default)
6470 at a location to disabled by default. */
6471 extern bool suppress_warning_at (location_t, opt_code = all_warnings,
6472 bool = true);
6473 /* Copy warning disposition from one location to another. */
6474 extern void copy_warning (location_t, location_t);
6476 /* Return the disposition for a warning (or all warnings by default)
6477 for an expression. */
6478 extern bool warning_suppressed_p (const_tree, opt_code = all_warnings);
6479 /* Set the disposition for a warning (or all warnings by default)
6480 at a location to disabled by default. */
6481 extern void suppress_warning (tree, opt_code = all_warnings, bool = true)
6482 ATTRIBUTE_NONNULL (1);
6483 /* Copy warning disposition from one expression to another. */
6484 extern void copy_warning (tree, const_tree);
6486 /* Return the zero-based number corresponding to the argument being
6487 deallocated if FNDECL is a deallocation function or an out-of-bounds
6488 value if it isn't. */
6489 extern unsigned fndecl_dealloc_argno (tree);
6491 /* If an expression refers to a character array or pointer declared
6492 attribute nonstring, return a decl for that array or pointer and
6493 if nonnull, set the second argument to the referenced enclosing
6494 object or pointer. Otherwise return null. */
6495 extern tree get_attr_nonstring_decl (tree, tree * = NULL);
6497 #endif /* GCC_TREE_H */