2016-05-04 Thomas Preud'homme <thomas.preudhomme@arm.com>
[official-gcc.git] / gcc / builtins.c
blob476feb1eb164e4c5cdd22e2526bd1786f115dca6
1 /* Expand builtin functions.
2 Copyright (C) 1988-2016 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 /* Legacy warning! Please add no further builtin simplifications here
21 (apart from pure constant folding) - builtin simplifications should go
22 to match.pd or gimple-fold.c instead. */
24 #include "config.h"
25 #include "system.h"
26 #include "coretypes.h"
27 #include "backend.h"
28 #include "target.h"
29 #include "rtl.h"
30 #include "tree.h"
31 #include "gimple.h"
32 #include "predict.h"
33 #include "tm_p.h"
34 #include "stringpool.h"
35 #include "tree-ssanames.h"
36 #include "expmed.h"
37 #include "optabs.h"
38 #include "emit-rtl.h"
39 #include "recog.h"
40 #include "diagnostic-core.h"
41 #include "alias.h"
42 #include "fold-const.h"
43 #include "fold-const-call.h"
44 #include "stor-layout.h"
45 #include "calls.h"
46 #include "varasm.h"
47 #include "tree-object-size.h"
48 #include "realmpfr.h"
49 #include "cfgrtl.h"
50 #include "except.h"
51 #include "dojump.h"
52 #include "explow.h"
53 #include "stmt.h"
54 #include "expr.h"
55 #include "libfuncs.h"
56 #include "output.h"
57 #include "typeclass.h"
58 #include "langhooks.h"
59 #include "value-prof.h"
60 #include "builtins.h"
61 #include "asan.h"
62 #include "cilk.h"
63 #include "tree-chkp.h"
64 #include "rtl-chkp.h"
65 #include "internal-fn.h"
66 #include "case-cfn-macros.h"
69 struct target_builtins default_target_builtins;
70 #if SWITCHABLE_TARGET
71 struct target_builtins *this_target_builtins = &default_target_builtins;
72 #endif
74 /* Define the names of the builtin function types and codes. */
75 const char *const built_in_class_names[BUILT_IN_LAST]
76 = {"NOT_BUILT_IN", "BUILT_IN_FRONTEND", "BUILT_IN_MD", "BUILT_IN_NORMAL"};
78 #define DEF_BUILTIN(X, N, C, T, LT, B, F, NA, AT, IM, COND) #X,
79 const char * built_in_names[(int) END_BUILTINS] =
81 #include "builtins.def"
84 /* Setup an array of builtin_info_type, make sure each element decl is
85 initialized to NULL_TREE. */
86 builtin_info_type builtin_info[(int)END_BUILTINS];
88 /* Non-zero if __builtin_constant_p should be folded right away. */
89 bool force_folding_builtin_constant_p;
91 static rtx c_readstr (const char *, machine_mode);
92 static int target_char_cast (tree, char *);
93 static rtx get_memory_rtx (tree, tree);
94 static int apply_args_size (void);
95 static int apply_result_size (void);
96 static rtx result_vector (int, rtx);
97 static void expand_builtin_prefetch (tree);
98 static rtx expand_builtin_apply_args (void);
99 static rtx expand_builtin_apply_args_1 (void);
100 static rtx expand_builtin_apply (rtx, rtx, rtx);
101 static void expand_builtin_return (rtx);
102 static enum type_class type_to_class (tree);
103 static rtx expand_builtin_classify_type (tree);
104 static rtx expand_builtin_mathfn_3 (tree, rtx, rtx);
105 static rtx expand_builtin_mathfn_ternary (tree, rtx, rtx);
106 static rtx expand_builtin_interclass_mathfn (tree, rtx);
107 static rtx expand_builtin_sincos (tree);
108 static rtx expand_builtin_cexpi (tree, rtx);
109 static rtx expand_builtin_int_roundingfn (tree, rtx);
110 static rtx expand_builtin_int_roundingfn_2 (tree, rtx);
111 static rtx expand_builtin_next_arg (void);
112 static rtx expand_builtin_va_start (tree);
113 static rtx expand_builtin_va_end (tree);
114 static rtx expand_builtin_va_copy (tree);
115 static rtx expand_builtin_strcmp (tree, rtx);
116 static rtx expand_builtin_strncmp (tree, rtx, machine_mode);
117 static rtx builtin_memcpy_read_str (void *, HOST_WIDE_INT, machine_mode);
118 static rtx expand_builtin_memcpy (tree, rtx);
119 static rtx expand_builtin_memcpy_with_bounds (tree, rtx);
120 static rtx expand_builtin_memcpy_args (tree, tree, tree, rtx, tree);
121 static rtx expand_builtin_mempcpy (tree, rtx, machine_mode);
122 static rtx expand_builtin_mempcpy_with_bounds (tree, rtx, machine_mode);
123 static rtx expand_builtin_mempcpy_args (tree, tree, tree, rtx,
124 machine_mode, int, tree);
125 static rtx expand_builtin_strcpy (tree, rtx);
126 static rtx expand_builtin_strcpy_args (tree, tree, rtx);
127 static rtx expand_builtin_stpcpy (tree, rtx, machine_mode);
128 static rtx expand_builtin_strncpy (tree, rtx);
129 static rtx builtin_memset_gen_str (void *, HOST_WIDE_INT, machine_mode);
130 static rtx expand_builtin_memset (tree, rtx, machine_mode);
131 static rtx expand_builtin_memset_with_bounds (tree, rtx, machine_mode);
132 static rtx expand_builtin_memset_args (tree, tree, tree, rtx, machine_mode, tree);
133 static rtx expand_builtin_bzero (tree);
134 static rtx expand_builtin_strlen (tree, rtx, machine_mode);
135 static rtx expand_builtin_alloca (tree, bool);
136 static rtx expand_builtin_unop (machine_mode, tree, rtx, rtx, optab);
137 static rtx expand_builtin_frame_address (tree, tree);
138 static tree stabilize_va_list_loc (location_t, tree, int);
139 static rtx expand_builtin_expect (tree, rtx);
140 static tree fold_builtin_constant_p (tree);
141 static tree fold_builtin_classify_type (tree);
142 static tree fold_builtin_strlen (location_t, tree, tree);
143 static tree fold_builtin_inf (location_t, tree, int);
144 static tree rewrite_call_expr (location_t, tree, int, tree, int, ...);
145 static bool validate_arg (const_tree, enum tree_code code);
146 static rtx expand_builtin_fabs (tree, rtx, rtx);
147 static rtx expand_builtin_signbit (tree, rtx);
148 static tree fold_builtin_strchr (location_t, tree, tree, tree);
149 static tree fold_builtin_memchr (location_t, tree, tree, tree, tree);
150 static tree fold_builtin_memcmp (location_t, tree, tree, tree);
151 static tree fold_builtin_strcmp (location_t, tree, tree);
152 static tree fold_builtin_strncmp (location_t, tree, tree, tree);
153 static tree fold_builtin_isascii (location_t, tree);
154 static tree fold_builtin_toascii (location_t, tree);
155 static tree fold_builtin_isdigit (location_t, tree);
156 static tree fold_builtin_fabs (location_t, tree, tree);
157 static tree fold_builtin_abs (location_t, tree, tree);
158 static tree fold_builtin_unordered_cmp (location_t, tree, tree, tree, enum tree_code,
159 enum tree_code);
160 static tree fold_builtin_0 (location_t, tree);
161 static tree fold_builtin_1 (location_t, tree, tree);
162 static tree fold_builtin_2 (location_t, tree, tree, tree);
163 static tree fold_builtin_3 (location_t, tree, tree, tree, tree);
164 static tree fold_builtin_varargs (location_t, tree, tree*, int);
166 static tree fold_builtin_strpbrk (location_t, tree, tree, tree);
167 static tree fold_builtin_strstr (location_t, tree, tree, tree);
168 static tree fold_builtin_strrchr (location_t, tree, tree, tree);
169 static tree fold_builtin_strspn (location_t, tree, tree);
170 static tree fold_builtin_strcspn (location_t, tree, tree);
172 static rtx expand_builtin_object_size (tree);
173 static rtx expand_builtin_memory_chk (tree, rtx, machine_mode,
174 enum built_in_function);
175 static void maybe_emit_chk_warning (tree, enum built_in_function);
176 static void maybe_emit_sprintf_chk_warning (tree, enum built_in_function);
177 static void maybe_emit_free_warning (tree);
178 static tree fold_builtin_object_size (tree, tree);
180 unsigned HOST_WIDE_INT target_newline;
181 unsigned HOST_WIDE_INT target_percent;
182 static unsigned HOST_WIDE_INT target_c;
183 static unsigned HOST_WIDE_INT target_s;
184 char target_percent_c[3];
185 char target_percent_s[3];
186 char target_percent_s_newline[4];
187 static tree do_mpfr_remquo (tree, tree, tree);
188 static tree do_mpfr_lgamma_r (tree, tree, tree);
189 static void expand_builtin_sync_synchronize (void);
191 /* Return true if NAME starts with __builtin_ or __sync_. */
193 static bool
194 is_builtin_name (const char *name)
196 if (strncmp (name, "__builtin_", 10) == 0)
197 return true;
198 if (strncmp (name, "__sync_", 7) == 0)
199 return true;
200 if (strncmp (name, "__atomic_", 9) == 0)
201 return true;
202 if (flag_cilkplus
203 && (!strcmp (name, "__cilkrts_detach")
204 || !strcmp (name, "__cilkrts_pop_frame")))
205 return true;
206 return false;
210 /* Return true if DECL is a function symbol representing a built-in. */
212 bool
213 is_builtin_fn (tree decl)
215 return TREE_CODE (decl) == FUNCTION_DECL && DECL_BUILT_IN (decl);
218 /* Return true if NODE should be considered for inline expansion regardless
219 of the optimization level. This means whenever a function is invoked with
220 its "internal" name, which normally contains the prefix "__builtin". */
222 bool
223 called_as_built_in (tree node)
225 /* Note that we must use DECL_NAME, not DECL_ASSEMBLER_NAME_SET_P since
226 we want the name used to call the function, not the name it
227 will have. */
228 const char *name = IDENTIFIER_POINTER (DECL_NAME (node));
229 return is_builtin_name (name);
232 /* Compute values M and N such that M divides (address of EXP - N) and such
233 that N < M. If these numbers can be determined, store M in alignp and N in
234 *BITPOSP and return true. Otherwise return false and store BITS_PER_UNIT to
235 *alignp and any bit-offset to *bitposp.
237 Note that the address (and thus the alignment) computed here is based
238 on the address to which a symbol resolves, whereas DECL_ALIGN is based
239 on the address at which an object is actually located. These two
240 addresses are not always the same. For example, on ARM targets,
241 the address &foo of a Thumb function foo() has the lowest bit set,
242 whereas foo() itself starts on an even address.
244 If ADDR_P is true we are taking the address of the memory reference EXP
245 and thus cannot rely on the access taking place. */
247 static bool
248 get_object_alignment_2 (tree exp, unsigned int *alignp,
249 unsigned HOST_WIDE_INT *bitposp, bool addr_p)
251 HOST_WIDE_INT bitsize, bitpos;
252 tree offset;
253 machine_mode mode;
254 int unsignedp, reversep, volatilep;
255 unsigned int align = BITS_PER_UNIT;
256 bool known_alignment = false;
258 /* Get the innermost object and the constant (bitpos) and possibly
259 variable (offset) offset of the access. */
260 exp = get_inner_reference (exp, &bitsize, &bitpos, &offset, &mode,
261 &unsignedp, &reversep, &volatilep, true);
263 /* Extract alignment information from the innermost object and
264 possibly adjust bitpos and offset. */
265 if (TREE_CODE (exp) == FUNCTION_DECL)
267 /* Function addresses can encode extra information besides their
268 alignment. However, if TARGET_PTRMEMFUNC_VBIT_LOCATION
269 allows the low bit to be used as a virtual bit, we know
270 that the address itself must be at least 2-byte aligned. */
271 if (TARGET_PTRMEMFUNC_VBIT_LOCATION == ptrmemfunc_vbit_in_pfn)
272 align = 2 * BITS_PER_UNIT;
274 else if (TREE_CODE (exp) == LABEL_DECL)
276 else if (TREE_CODE (exp) == CONST_DECL)
278 /* The alignment of a CONST_DECL is determined by its initializer. */
279 exp = DECL_INITIAL (exp);
280 align = TYPE_ALIGN (TREE_TYPE (exp));
281 if (CONSTANT_CLASS_P (exp))
282 align = (unsigned) CONSTANT_ALIGNMENT (exp, align);
284 known_alignment = true;
286 else if (DECL_P (exp))
288 align = DECL_ALIGN (exp);
289 known_alignment = true;
291 else if (TREE_CODE (exp) == VIEW_CONVERT_EXPR)
293 align = TYPE_ALIGN (TREE_TYPE (exp));
295 else if (TREE_CODE (exp) == INDIRECT_REF
296 || TREE_CODE (exp) == MEM_REF
297 || TREE_CODE (exp) == TARGET_MEM_REF)
299 tree addr = TREE_OPERAND (exp, 0);
300 unsigned ptr_align;
301 unsigned HOST_WIDE_INT ptr_bitpos;
302 unsigned HOST_WIDE_INT ptr_bitmask = ~0;
304 /* If the address is explicitely aligned, handle that. */
305 if (TREE_CODE (addr) == BIT_AND_EXPR
306 && TREE_CODE (TREE_OPERAND (addr, 1)) == INTEGER_CST)
308 ptr_bitmask = TREE_INT_CST_LOW (TREE_OPERAND (addr, 1));
309 ptr_bitmask *= BITS_PER_UNIT;
310 align = ptr_bitmask & -ptr_bitmask;
311 addr = TREE_OPERAND (addr, 0);
314 known_alignment
315 = get_pointer_alignment_1 (addr, &ptr_align, &ptr_bitpos);
316 align = MAX (ptr_align, align);
318 /* Re-apply explicit alignment to the bitpos. */
319 ptr_bitpos &= ptr_bitmask;
321 /* The alignment of the pointer operand in a TARGET_MEM_REF
322 has to take the variable offset parts into account. */
323 if (TREE_CODE (exp) == TARGET_MEM_REF)
325 if (TMR_INDEX (exp))
327 unsigned HOST_WIDE_INT step = 1;
328 if (TMR_STEP (exp))
329 step = TREE_INT_CST_LOW (TMR_STEP (exp));
330 align = MIN (align, (step & -step) * BITS_PER_UNIT);
332 if (TMR_INDEX2 (exp))
333 align = BITS_PER_UNIT;
334 known_alignment = false;
337 /* When EXP is an actual memory reference then we can use
338 TYPE_ALIGN of a pointer indirection to derive alignment.
339 Do so only if get_pointer_alignment_1 did not reveal absolute
340 alignment knowledge and if using that alignment would
341 improve the situation. */
342 if (!addr_p && !known_alignment
343 && TYPE_ALIGN (TREE_TYPE (exp)) > align)
344 align = TYPE_ALIGN (TREE_TYPE (exp));
345 else
347 /* Else adjust bitpos accordingly. */
348 bitpos += ptr_bitpos;
349 if (TREE_CODE (exp) == MEM_REF
350 || TREE_CODE (exp) == TARGET_MEM_REF)
351 bitpos += mem_ref_offset (exp).to_short_addr () * BITS_PER_UNIT;
354 else if (TREE_CODE (exp) == STRING_CST)
356 /* STRING_CST are the only constant objects we allow to be not
357 wrapped inside a CONST_DECL. */
358 align = TYPE_ALIGN (TREE_TYPE (exp));
359 if (CONSTANT_CLASS_P (exp))
360 align = (unsigned) CONSTANT_ALIGNMENT (exp, align);
362 known_alignment = true;
365 /* If there is a non-constant offset part extract the maximum
366 alignment that can prevail. */
367 if (offset)
369 unsigned int trailing_zeros = tree_ctz (offset);
370 if (trailing_zeros < HOST_BITS_PER_INT)
372 unsigned int inner = (1U << trailing_zeros) * BITS_PER_UNIT;
373 if (inner)
374 align = MIN (align, inner);
378 *alignp = align;
379 *bitposp = bitpos & (*alignp - 1);
380 return known_alignment;
383 /* For a memory reference expression EXP compute values M and N such that M
384 divides (&EXP - N) and such that N < M. If these numbers can be determined,
385 store M in alignp and N in *BITPOSP and return true. Otherwise return false
386 and store BITS_PER_UNIT to *alignp and any bit-offset to *bitposp. */
388 bool
389 get_object_alignment_1 (tree exp, unsigned int *alignp,
390 unsigned HOST_WIDE_INT *bitposp)
392 return get_object_alignment_2 (exp, alignp, bitposp, false);
395 /* Return the alignment in bits of EXP, an object. */
397 unsigned int
398 get_object_alignment (tree exp)
400 unsigned HOST_WIDE_INT bitpos = 0;
401 unsigned int align;
403 get_object_alignment_1 (exp, &align, &bitpos);
405 /* align and bitpos now specify known low bits of the pointer.
406 ptr & (align - 1) == bitpos. */
408 if (bitpos != 0)
409 align = (bitpos & -bitpos);
410 return align;
413 /* For a pointer valued expression EXP compute values M and N such that M
414 divides (EXP - N) and such that N < M. If these numbers can be determined,
415 store M in alignp and N in *BITPOSP and return true. Return false if
416 the results are just a conservative approximation.
418 If EXP is not a pointer, false is returned too. */
420 bool
421 get_pointer_alignment_1 (tree exp, unsigned int *alignp,
422 unsigned HOST_WIDE_INT *bitposp)
424 STRIP_NOPS (exp);
426 if (TREE_CODE (exp) == ADDR_EXPR)
427 return get_object_alignment_2 (TREE_OPERAND (exp, 0),
428 alignp, bitposp, true);
429 else if (TREE_CODE (exp) == POINTER_PLUS_EXPR)
431 unsigned int align;
432 unsigned HOST_WIDE_INT bitpos;
433 bool res = get_pointer_alignment_1 (TREE_OPERAND (exp, 0),
434 &align, &bitpos);
435 if (TREE_CODE (TREE_OPERAND (exp, 1)) == INTEGER_CST)
436 bitpos += TREE_INT_CST_LOW (TREE_OPERAND (exp, 1)) * BITS_PER_UNIT;
437 else
439 unsigned int trailing_zeros = tree_ctz (TREE_OPERAND (exp, 1));
440 if (trailing_zeros < HOST_BITS_PER_INT)
442 unsigned int inner = (1U << trailing_zeros) * BITS_PER_UNIT;
443 if (inner)
444 align = MIN (align, inner);
447 *alignp = align;
448 *bitposp = bitpos & (align - 1);
449 return res;
451 else if (TREE_CODE (exp) == SSA_NAME
452 && POINTER_TYPE_P (TREE_TYPE (exp)))
454 unsigned int ptr_align, ptr_misalign;
455 struct ptr_info_def *pi = SSA_NAME_PTR_INFO (exp);
457 if (pi && get_ptr_info_alignment (pi, &ptr_align, &ptr_misalign))
459 *bitposp = ptr_misalign * BITS_PER_UNIT;
460 *alignp = ptr_align * BITS_PER_UNIT;
461 /* Make sure to return a sensible alignment when the multiplication
462 by BITS_PER_UNIT overflowed. */
463 if (*alignp == 0)
464 *alignp = 1u << (HOST_BITS_PER_INT - 1);
465 /* We cannot really tell whether this result is an approximation. */
466 return false;
468 else
470 *bitposp = 0;
471 *alignp = BITS_PER_UNIT;
472 return false;
475 else if (TREE_CODE (exp) == INTEGER_CST)
477 *alignp = BIGGEST_ALIGNMENT;
478 *bitposp = ((TREE_INT_CST_LOW (exp) * BITS_PER_UNIT)
479 & (BIGGEST_ALIGNMENT - 1));
480 return true;
483 *bitposp = 0;
484 *alignp = BITS_PER_UNIT;
485 return false;
488 /* Return the alignment in bits of EXP, a pointer valued expression.
489 The alignment returned is, by default, the alignment of the thing that
490 EXP points to. If it is not a POINTER_TYPE, 0 is returned.
492 Otherwise, look at the expression to see if we can do better, i.e., if the
493 expression is actually pointing at an object whose alignment is tighter. */
495 unsigned int
496 get_pointer_alignment (tree exp)
498 unsigned HOST_WIDE_INT bitpos = 0;
499 unsigned int align;
501 get_pointer_alignment_1 (exp, &align, &bitpos);
503 /* align and bitpos now specify known low bits of the pointer.
504 ptr & (align - 1) == bitpos. */
506 if (bitpos != 0)
507 align = (bitpos & -bitpos);
509 return align;
512 /* Compute the length of a C string. TREE_STRING_LENGTH is not the right
513 way, because it could contain a zero byte in the middle.
514 TREE_STRING_LENGTH is the size of the character array, not the string.
516 ONLY_VALUE should be nonzero if the result is not going to be emitted
517 into the instruction stream and zero if it is going to be expanded.
518 E.g. with i++ ? "foo" : "bar", if ONLY_VALUE is nonzero, constant 3
519 is returned, otherwise NULL, since
520 len = c_strlen (src, 1); if (len) expand_expr (len, ...); would not
521 evaluate the side-effects.
523 If ONLY_VALUE is two then we do not emit warnings about out-of-bound
524 accesses. Note that this implies the result is not going to be emitted
525 into the instruction stream.
527 The value returned is of type `ssizetype'.
529 Unfortunately, string_constant can't access the values of const char
530 arrays with initializers, so neither can we do so here. */
532 tree
533 c_strlen (tree src, int only_value)
535 tree offset_node;
536 HOST_WIDE_INT offset;
537 int max;
538 const char *ptr;
539 location_t loc;
541 STRIP_NOPS (src);
542 if (TREE_CODE (src) == COND_EXPR
543 && (only_value || !TREE_SIDE_EFFECTS (TREE_OPERAND (src, 0))))
545 tree len1, len2;
547 len1 = c_strlen (TREE_OPERAND (src, 1), only_value);
548 len2 = c_strlen (TREE_OPERAND (src, 2), only_value);
549 if (tree_int_cst_equal (len1, len2))
550 return len1;
553 if (TREE_CODE (src) == COMPOUND_EXPR
554 && (only_value || !TREE_SIDE_EFFECTS (TREE_OPERAND (src, 0))))
555 return c_strlen (TREE_OPERAND (src, 1), only_value);
557 loc = EXPR_LOC_OR_LOC (src, input_location);
559 src = string_constant (src, &offset_node);
560 if (src == 0)
561 return NULL_TREE;
563 max = TREE_STRING_LENGTH (src) - 1;
564 ptr = TREE_STRING_POINTER (src);
566 if (offset_node && TREE_CODE (offset_node) != INTEGER_CST)
568 /* If the string has an internal zero byte (e.g., "foo\0bar"), we can't
569 compute the offset to the following null if we don't know where to
570 start searching for it. */
571 int i;
573 for (i = 0; i < max; i++)
574 if (ptr[i] == 0)
575 return NULL_TREE;
577 /* We don't know the starting offset, but we do know that the string
578 has no internal zero bytes. We can assume that the offset falls
579 within the bounds of the string; otherwise, the programmer deserves
580 what he gets. Subtract the offset from the length of the string,
581 and return that. This would perhaps not be valid if we were dealing
582 with named arrays in addition to literal string constants. */
584 return size_diffop_loc (loc, size_int (max), offset_node);
587 /* We have a known offset into the string. Start searching there for
588 a null character if we can represent it as a single HOST_WIDE_INT. */
589 if (offset_node == 0)
590 offset = 0;
591 else if (! tree_fits_shwi_p (offset_node))
592 offset = -1;
593 else
594 offset = tree_to_shwi (offset_node);
596 /* If the offset is known to be out of bounds, warn, and call strlen at
597 runtime. */
598 if (offset < 0 || offset > max)
600 /* Suppress multiple warnings for propagated constant strings. */
601 if (only_value != 2
602 && !TREE_NO_WARNING (src))
604 warning_at (loc, 0, "offset outside bounds of constant string");
605 TREE_NO_WARNING (src) = 1;
607 return NULL_TREE;
610 /* Use strlen to search for the first zero byte. Since any strings
611 constructed with build_string will have nulls appended, we win even
612 if we get handed something like (char[4])"abcd".
614 Since OFFSET is our starting index into the string, no further
615 calculation is needed. */
616 return ssize_int (strlen (ptr + offset));
619 /* Return a constant integer corresponding to target reading
620 GET_MODE_BITSIZE (MODE) bits from string constant STR. */
622 static rtx
623 c_readstr (const char *str, machine_mode mode)
625 HOST_WIDE_INT ch;
626 unsigned int i, j;
627 HOST_WIDE_INT tmp[MAX_BITSIZE_MODE_ANY_INT / HOST_BITS_PER_WIDE_INT];
629 gcc_assert (GET_MODE_CLASS (mode) == MODE_INT);
630 unsigned int len = (GET_MODE_PRECISION (mode) + HOST_BITS_PER_WIDE_INT - 1)
631 / HOST_BITS_PER_WIDE_INT;
633 gcc_assert (len <= MAX_BITSIZE_MODE_ANY_INT / HOST_BITS_PER_WIDE_INT);
634 for (i = 0; i < len; i++)
635 tmp[i] = 0;
637 ch = 1;
638 for (i = 0; i < GET_MODE_SIZE (mode); i++)
640 j = i;
641 if (WORDS_BIG_ENDIAN)
642 j = GET_MODE_SIZE (mode) - i - 1;
643 if (BYTES_BIG_ENDIAN != WORDS_BIG_ENDIAN
644 && GET_MODE_SIZE (mode) >= UNITS_PER_WORD)
645 j = j + UNITS_PER_WORD - 2 * (j % UNITS_PER_WORD) - 1;
646 j *= BITS_PER_UNIT;
648 if (ch)
649 ch = (unsigned char) str[i];
650 tmp[j / HOST_BITS_PER_WIDE_INT] |= ch << (j % HOST_BITS_PER_WIDE_INT);
653 wide_int c = wide_int::from_array (tmp, len, GET_MODE_PRECISION (mode));
654 return immed_wide_int_const (c, mode);
657 /* Cast a target constant CST to target CHAR and if that value fits into
658 host char type, return zero and put that value into variable pointed to by
659 P. */
661 static int
662 target_char_cast (tree cst, char *p)
664 unsigned HOST_WIDE_INT val, hostval;
666 if (TREE_CODE (cst) != INTEGER_CST
667 || CHAR_TYPE_SIZE > HOST_BITS_PER_WIDE_INT)
668 return 1;
670 /* Do not care if it fits or not right here. */
671 val = TREE_INT_CST_LOW (cst);
673 if (CHAR_TYPE_SIZE < HOST_BITS_PER_WIDE_INT)
674 val &= (((unsigned HOST_WIDE_INT) 1) << CHAR_TYPE_SIZE) - 1;
676 hostval = val;
677 if (HOST_BITS_PER_CHAR < HOST_BITS_PER_WIDE_INT)
678 hostval &= (((unsigned HOST_WIDE_INT) 1) << HOST_BITS_PER_CHAR) - 1;
680 if (val != hostval)
681 return 1;
683 *p = hostval;
684 return 0;
687 /* Similar to save_expr, but assumes that arbitrary code is not executed
688 in between the multiple evaluations. In particular, we assume that a
689 non-addressable local variable will not be modified. */
691 static tree
692 builtin_save_expr (tree exp)
694 if (TREE_CODE (exp) == SSA_NAME
695 || (TREE_ADDRESSABLE (exp) == 0
696 && (TREE_CODE (exp) == PARM_DECL
697 || (TREE_CODE (exp) == VAR_DECL && !TREE_STATIC (exp)))))
698 return exp;
700 return save_expr (exp);
703 /* Given TEM, a pointer to a stack frame, follow the dynamic chain COUNT
704 times to get the address of either a higher stack frame, or a return
705 address located within it (depending on FNDECL_CODE). */
707 static rtx
708 expand_builtin_return_addr (enum built_in_function fndecl_code, int count)
710 int i;
711 rtx tem = INITIAL_FRAME_ADDRESS_RTX;
712 if (tem == NULL_RTX)
714 /* For a zero count with __builtin_return_address, we don't care what
715 frame address we return, because target-specific definitions will
716 override us. Therefore frame pointer elimination is OK, and using
717 the soft frame pointer is OK.
719 For a nonzero count, or a zero count with __builtin_frame_address,
720 we require a stable offset from the current frame pointer to the
721 previous one, so we must use the hard frame pointer, and
722 we must disable frame pointer elimination. */
723 if (count == 0 && fndecl_code == BUILT_IN_RETURN_ADDRESS)
724 tem = frame_pointer_rtx;
725 else
727 tem = hard_frame_pointer_rtx;
729 /* Tell reload not to eliminate the frame pointer. */
730 crtl->accesses_prior_frames = 1;
734 if (count > 0)
735 SETUP_FRAME_ADDRESSES ();
737 /* On the SPARC, the return address is not in the frame, it is in a
738 register. There is no way to access it off of the current frame
739 pointer, but it can be accessed off the previous frame pointer by
740 reading the value from the register window save area. */
741 if (RETURN_ADDR_IN_PREVIOUS_FRAME && fndecl_code == BUILT_IN_RETURN_ADDRESS)
742 count--;
744 /* Scan back COUNT frames to the specified frame. */
745 for (i = 0; i < count; i++)
747 /* Assume the dynamic chain pointer is in the word that the
748 frame address points to, unless otherwise specified. */
749 tem = DYNAMIC_CHAIN_ADDRESS (tem);
750 tem = memory_address (Pmode, tem);
751 tem = gen_frame_mem (Pmode, tem);
752 tem = copy_to_reg (tem);
755 /* For __builtin_frame_address, return what we've got. But, on
756 the SPARC for example, we may have to add a bias. */
757 if (fndecl_code == BUILT_IN_FRAME_ADDRESS)
758 return FRAME_ADDR_RTX (tem);
760 /* For __builtin_return_address, get the return address from that frame. */
761 #ifdef RETURN_ADDR_RTX
762 tem = RETURN_ADDR_RTX (count, tem);
763 #else
764 tem = memory_address (Pmode,
765 plus_constant (Pmode, tem, GET_MODE_SIZE (Pmode)));
766 tem = gen_frame_mem (Pmode, tem);
767 #endif
768 return tem;
771 /* Alias set used for setjmp buffer. */
772 static alias_set_type setjmp_alias_set = -1;
774 /* Construct the leading half of a __builtin_setjmp call. Control will
775 return to RECEIVER_LABEL. This is also called directly by the SJLJ
776 exception handling code. */
778 void
779 expand_builtin_setjmp_setup (rtx buf_addr, rtx receiver_label)
781 machine_mode sa_mode = STACK_SAVEAREA_MODE (SAVE_NONLOCAL);
782 rtx stack_save;
783 rtx mem;
785 if (setjmp_alias_set == -1)
786 setjmp_alias_set = new_alias_set ();
788 buf_addr = convert_memory_address (Pmode, buf_addr);
790 buf_addr = force_reg (Pmode, force_operand (buf_addr, NULL_RTX));
792 /* We store the frame pointer and the address of receiver_label in
793 the buffer and use the rest of it for the stack save area, which
794 is machine-dependent. */
796 mem = gen_rtx_MEM (Pmode, buf_addr);
797 set_mem_alias_set (mem, setjmp_alias_set);
798 emit_move_insn (mem, targetm.builtin_setjmp_frame_value ());
800 mem = gen_rtx_MEM (Pmode, plus_constant (Pmode, buf_addr,
801 GET_MODE_SIZE (Pmode))),
802 set_mem_alias_set (mem, setjmp_alias_set);
804 emit_move_insn (validize_mem (mem),
805 force_reg (Pmode, gen_rtx_LABEL_REF (Pmode, receiver_label)));
807 stack_save = gen_rtx_MEM (sa_mode,
808 plus_constant (Pmode, buf_addr,
809 2 * GET_MODE_SIZE (Pmode)));
810 set_mem_alias_set (stack_save, setjmp_alias_set);
811 emit_stack_save (SAVE_NONLOCAL, &stack_save);
813 /* If there is further processing to do, do it. */
814 if (targetm.have_builtin_setjmp_setup ())
815 emit_insn (targetm.gen_builtin_setjmp_setup (buf_addr));
817 /* We have a nonlocal label. */
818 cfun->has_nonlocal_label = 1;
821 /* Construct the trailing part of a __builtin_setjmp call. This is
822 also called directly by the SJLJ exception handling code.
823 If RECEIVER_LABEL is NULL, instead contruct a nonlocal goto handler. */
825 void
826 expand_builtin_setjmp_receiver (rtx receiver_label)
828 rtx chain;
830 /* Mark the FP as used when we get here, so we have to make sure it's
831 marked as used by this function. */
832 emit_use (hard_frame_pointer_rtx);
834 /* Mark the static chain as clobbered here so life information
835 doesn't get messed up for it. */
836 chain = targetm.calls.static_chain (current_function_decl, true);
837 if (chain && REG_P (chain))
838 emit_clobber (chain);
840 /* Now put in the code to restore the frame pointer, and argument
841 pointer, if needed. */
842 if (! targetm.have_nonlocal_goto ())
844 /* First adjust our frame pointer to its actual value. It was
845 previously set to the start of the virtual area corresponding to
846 the stacked variables when we branched here and now needs to be
847 adjusted to the actual hardware fp value.
849 Assignments to virtual registers are converted by
850 instantiate_virtual_regs into the corresponding assignment
851 to the underlying register (fp in this case) that makes
852 the original assignment true.
853 So the following insn will actually be decrementing fp by
854 STARTING_FRAME_OFFSET. */
855 emit_move_insn (virtual_stack_vars_rtx, hard_frame_pointer_rtx);
857 /* Restoring the frame pointer also modifies the hard frame pointer.
858 Mark it used (so that the previous assignment remains live once
859 the frame pointer is eliminated) and clobbered (to represent the
860 implicit update from the assignment). */
861 emit_use (hard_frame_pointer_rtx);
862 emit_clobber (hard_frame_pointer_rtx);
865 if (!HARD_FRAME_POINTER_IS_ARG_POINTER && fixed_regs[ARG_POINTER_REGNUM])
867 #ifdef ELIMINABLE_REGS
868 /* If the argument pointer can be eliminated in favor of the
869 frame pointer, we don't need to restore it. We assume here
870 that if such an elimination is present, it can always be used.
871 This is the case on all known machines; if we don't make this
872 assumption, we do unnecessary saving on many machines. */
873 size_t i;
874 static const struct elims {const int from, to;} elim_regs[] = ELIMINABLE_REGS;
876 for (i = 0; i < ARRAY_SIZE (elim_regs); i++)
877 if (elim_regs[i].from == ARG_POINTER_REGNUM
878 && elim_regs[i].to == HARD_FRAME_POINTER_REGNUM)
879 break;
881 if (i == ARRAY_SIZE (elim_regs))
882 #endif
884 /* Now restore our arg pointer from the address at which it
885 was saved in our stack frame. */
886 emit_move_insn (crtl->args.internal_arg_pointer,
887 copy_to_reg (get_arg_pointer_save_area ()));
891 if (receiver_label != NULL && targetm.have_builtin_setjmp_receiver ())
892 emit_insn (targetm.gen_builtin_setjmp_receiver (receiver_label));
893 else if (targetm.have_nonlocal_goto_receiver ())
894 emit_insn (targetm.gen_nonlocal_goto_receiver ());
895 else
896 { /* Nothing */ }
898 /* We must not allow the code we just generated to be reordered by
899 scheduling. Specifically, the update of the frame pointer must
900 happen immediately, not later. */
901 emit_insn (gen_blockage ());
904 /* __builtin_longjmp is passed a pointer to an array of five words (not
905 all will be used on all machines). It operates similarly to the C
906 library function of the same name, but is more efficient. Much of
907 the code below is copied from the handling of non-local gotos. */
909 static void
910 expand_builtin_longjmp (rtx buf_addr, rtx value)
912 rtx fp, lab, stack;
913 rtx_insn *insn, *last;
914 machine_mode sa_mode = STACK_SAVEAREA_MODE (SAVE_NONLOCAL);
916 /* DRAP is needed for stack realign if longjmp is expanded to current
917 function */
918 if (SUPPORTS_STACK_ALIGNMENT)
919 crtl->need_drap = true;
921 if (setjmp_alias_set == -1)
922 setjmp_alias_set = new_alias_set ();
924 buf_addr = convert_memory_address (Pmode, buf_addr);
926 buf_addr = force_reg (Pmode, buf_addr);
928 /* We require that the user must pass a second argument of 1, because
929 that is what builtin_setjmp will return. */
930 gcc_assert (value == const1_rtx);
932 last = get_last_insn ();
933 if (targetm.have_builtin_longjmp ())
934 emit_insn (targetm.gen_builtin_longjmp (buf_addr));
935 else
937 fp = gen_rtx_MEM (Pmode, buf_addr);
938 lab = gen_rtx_MEM (Pmode, plus_constant (Pmode, buf_addr,
939 GET_MODE_SIZE (Pmode)));
941 stack = gen_rtx_MEM (sa_mode, plus_constant (Pmode, buf_addr,
942 2 * GET_MODE_SIZE (Pmode)));
943 set_mem_alias_set (fp, setjmp_alias_set);
944 set_mem_alias_set (lab, setjmp_alias_set);
945 set_mem_alias_set (stack, setjmp_alias_set);
947 /* Pick up FP, label, and SP from the block and jump. This code is
948 from expand_goto in stmt.c; see there for detailed comments. */
949 if (targetm.have_nonlocal_goto ())
950 /* We have to pass a value to the nonlocal_goto pattern that will
951 get copied into the static_chain pointer, but it does not matter
952 what that value is, because builtin_setjmp does not use it. */
953 emit_insn (targetm.gen_nonlocal_goto (value, lab, stack, fp));
954 else
956 lab = copy_to_reg (lab);
958 emit_clobber (gen_rtx_MEM (BLKmode, gen_rtx_SCRATCH (VOIDmode)));
959 emit_clobber (gen_rtx_MEM (BLKmode, hard_frame_pointer_rtx));
961 emit_move_insn (hard_frame_pointer_rtx, fp);
962 emit_stack_restore (SAVE_NONLOCAL, stack);
964 emit_use (hard_frame_pointer_rtx);
965 emit_use (stack_pointer_rtx);
966 emit_indirect_jump (lab);
970 /* Search backwards and mark the jump insn as a non-local goto.
971 Note that this precludes the use of __builtin_longjmp to a
972 __builtin_setjmp target in the same function. However, we've
973 already cautioned the user that these functions are for
974 internal exception handling use only. */
975 for (insn = get_last_insn (); insn; insn = PREV_INSN (insn))
977 gcc_assert (insn != last);
979 if (JUMP_P (insn))
981 add_reg_note (insn, REG_NON_LOCAL_GOTO, const0_rtx);
982 break;
984 else if (CALL_P (insn))
985 break;
989 static inline bool
990 more_const_call_expr_args_p (const const_call_expr_arg_iterator *iter)
992 return (iter->i < iter->n);
995 /* This function validates the types of a function call argument list
996 against a specified list of tree_codes. If the last specifier is a 0,
997 that represents an ellipses, otherwise the last specifier must be a
998 VOID_TYPE. */
1000 static bool
1001 validate_arglist (const_tree callexpr, ...)
1003 enum tree_code code;
1004 bool res = 0;
1005 va_list ap;
1006 const_call_expr_arg_iterator iter;
1007 const_tree arg;
1009 va_start (ap, callexpr);
1010 init_const_call_expr_arg_iterator (callexpr, &iter);
1014 code = (enum tree_code) va_arg (ap, int);
1015 switch (code)
1017 case 0:
1018 /* This signifies an ellipses, any further arguments are all ok. */
1019 res = true;
1020 goto end;
1021 case VOID_TYPE:
1022 /* This signifies an endlink, if no arguments remain, return
1023 true, otherwise return false. */
1024 res = !more_const_call_expr_args_p (&iter);
1025 goto end;
1026 default:
1027 /* If no parameters remain or the parameter's code does not
1028 match the specified code, return false. Otherwise continue
1029 checking any remaining arguments. */
1030 arg = next_const_call_expr_arg (&iter);
1031 if (!validate_arg (arg, code))
1032 goto end;
1033 break;
1036 while (1);
1038 /* We need gotos here since we can only have one VA_CLOSE in a
1039 function. */
1040 end: ;
1041 va_end (ap);
1043 return res;
1046 /* Expand a call to __builtin_nonlocal_goto. We're passed the target label
1047 and the address of the save area. */
1049 static rtx
1050 expand_builtin_nonlocal_goto (tree exp)
1052 tree t_label, t_save_area;
1053 rtx r_label, r_save_area, r_fp, r_sp;
1054 rtx_insn *insn;
1056 if (!validate_arglist (exp, POINTER_TYPE, POINTER_TYPE, VOID_TYPE))
1057 return NULL_RTX;
1059 t_label = CALL_EXPR_ARG (exp, 0);
1060 t_save_area = CALL_EXPR_ARG (exp, 1);
1062 r_label = expand_normal (t_label);
1063 r_label = convert_memory_address (Pmode, r_label);
1064 r_save_area = expand_normal (t_save_area);
1065 r_save_area = convert_memory_address (Pmode, r_save_area);
1066 /* Copy the address of the save location to a register just in case it was
1067 based on the frame pointer. */
1068 r_save_area = copy_to_reg (r_save_area);
1069 r_fp = gen_rtx_MEM (Pmode, r_save_area);
1070 r_sp = gen_rtx_MEM (STACK_SAVEAREA_MODE (SAVE_NONLOCAL),
1071 plus_constant (Pmode, r_save_area,
1072 GET_MODE_SIZE (Pmode)));
1074 crtl->has_nonlocal_goto = 1;
1076 /* ??? We no longer need to pass the static chain value, afaik. */
1077 if (targetm.have_nonlocal_goto ())
1078 emit_insn (targetm.gen_nonlocal_goto (const0_rtx, r_label, r_sp, r_fp));
1079 else
1081 r_label = copy_to_reg (r_label);
1083 emit_clobber (gen_rtx_MEM (BLKmode, gen_rtx_SCRATCH (VOIDmode)));
1084 emit_clobber (gen_rtx_MEM (BLKmode, hard_frame_pointer_rtx));
1086 /* Restore frame pointer for containing function. */
1087 emit_move_insn (hard_frame_pointer_rtx, r_fp);
1088 emit_stack_restore (SAVE_NONLOCAL, r_sp);
1090 /* USE of hard_frame_pointer_rtx added for consistency;
1091 not clear if really needed. */
1092 emit_use (hard_frame_pointer_rtx);
1093 emit_use (stack_pointer_rtx);
1095 /* If the architecture is using a GP register, we must
1096 conservatively assume that the target function makes use of it.
1097 The prologue of functions with nonlocal gotos must therefore
1098 initialize the GP register to the appropriate value, and we
1099 must then make sure that this value is live at the point
1100 of the jump. (Note that this doesn't necessarily apply
1101 to targets with a nonlocal_goto pattern; they are free
1102 to implement it in their own way. Note also that this is
1103 a no-op if the GP register is a global invariant.) */
1104 if ((unsigned) PIC_OFFSET_TABLE_REGNUM != INVALID_REGNUM
1105 && fixed_regs[PIC_OFFSET_TABLE_REGNUM])
1106 emit_use (pic_offset_table_rtx);
1108 emit_indirect_jump (r_label);
1111 /* Search backwards to the jump insn and mark it as a
1112 non-local goto. */
1113 for (insn = get_last_insn (); insn; insn = PREV_INSN (insn))
1115 if (JUMP_P (insn))
1117 add_reg_note (insn, REG_NON_LOCAL_GOTO, const0_rtx);
1118 break;
1120 else if (CALL_P (insn))
1121 break;
1124 return const0_rtx;
1127 /* __builtin_update_setjmp_buf is passed a pointer to an array of five words
1128 (not all will be used on all machines) that was passed to __builtin_setjmp.
1129 It updates the stack pointer in that block to the current value. This is
1130 also called directly by the SJLJ exception handling code. */
1132 void
1133 expand_builtin_update_setjmp_buf (rtx buf_addr)
1135 machine_mode sa_mode = STACK_SAVEAREA_MODE (SAVE_NONLOCAL);
1136 rtx stack_save
1137 = gen_rtx_MEM (sa_mode,
1138 memory_address
1139 (sa_mode,
1140 plus_constant (Pmode, buf_addr,
1141 2 * GET_MODE_SIZE (Pmode))));
1143 emit_stack_save (SAVE_NONLOCAL, &stack_save);
1146 /* Expand a call to __builtin_prefetch. For a target that does not support
1147 data prefetch, evaluate the memory address argument in case it has side
1148 effects. */
1150 static void
1151 expand_builtin_prefetch (tree exp)
1153 tree arg0, arg1, arg2;
1154 int nargs;
1155 rtx op0, op1, op2;
1157 if (!validate_arglist (exp, POINTER_TYPE, 0))
1158 return;
1160 arg0 = CALL_EXPR_ARG (exp, 0);
1162 /* Arguments 1 and 2 are optional; argument 1 (read/write) defaults to
1163 zero (read) and argument 2 (locality) defaults to 3 (high degree of
1164 locality). */
1165 nargs = call_expr_nargs (exp);
1166 if (nargs > 1)
1167 arg1 = CALL_EXPR_ARG (exp, 1);
1168 else
1169 arg1 = integer_zero_node;
1170 if (nargs > 2)
1171 arg2 = CALL_EXPR_ARG (exp, 2);
1172 else
1173 arg2 = integer_three_node;
1175 /* Argument 0 is an address. */
1176 op0 = expand_expr (arg0, NULL_RTX, Pmode, EXPAND_NORMAL);
1178 /* Argument 1 (read/write flag) must be a compile-time constant int. */
1179 if (TREE_CODE (arg1) != INTEGER_CST)
1181 error ("second argument to %<__builtin_prefetch%> must be a constant");
1182 arg1 = integer_zero_node;
1184 op1 = expand_normal (arg1);
1185 /* Argument 1 must be either zero or one. */
1186 if (INTVAL (op1) != 0 && INTVAL (op1) != 1)
1188 warning (0, "invalid second argument to %<__builtin_prefetch%>;"
1189 " using zero");
1190 op1 = const0_rtx;
1193 /* Argument 2 (locality) must be a compile-time constant int. */
1194 if (TREE_CODE (arg2) != INTEGER_CST)
1196 error ("third argument to %<__builtin_prefetch%> must be a constant");
1197 arg2 = integer_zero_node;
1199 op2 = expand_normal (arg2);
1200 /* Argument 2 must be 0, 1, 2, or 3. */
1201 if (INTVAL (op2) < 0 || INTVAL (op2) > 3)
1203 warning (0, "invalid third argument to %<__builtin_prefetch%>; using zero");
1204 op2 = const0_rtx;
1207 if (targetm.have_prefetch ())
1209 struct expand_operand ops[3];
1211 create_address_operand (&ops[0], op0);
1212 create_integer_operand (&ops[1], INTVAL (op1));
1213 create_integer_operand (&ops[2], INTVAL (op2));
1214 if (maybe_expand_insn (targetm.code_for_prefetch, 3, ops))
1215 return;
1218 /* Don't do anything with direct references to volatile memory, but
1219 generate code to handle other side effects. */
1220 if (!MEM_P (op0) && side_effects_p (op0))
1221 emit_insn (op0);
1224 /* Get a MEM rtx for expression EXP which is the address of an operand
1225 to be used in a string instruction (cmpstrsi, movmemsi, ..). LEN is
1226 the maximum length of the block of memory that might be accessed or
1227 NULL if unknown. */
1229 static rtx
1230 get_memory_rtx (tree exp, tree len)
1232 tree orig_exp = exp;
1233 rtx addr, mem;
1235 /* When EXP is not resolved SAVE_EXPR, MEM_ATTRS can be still derived
1236 from its expression, for expr->a.b only <variable>.a.b is recorded. */
1237 if (TREE_CODE (exp) == SAVE_EXPR && !SAVE_EXPR_RESOLVED_P (exp))
1238 exp = TREE_OPERAND (exp, 0);
1240 addr = expand_expr (orig_exp, NULL_RTX, ptr_mode, EXPAND_NORMAL);
1241 mem = gen_rtx_MEM (BLKmode, memory_address (BLKmode, addr));
1243 /* Get an expression we can use to find the attributes to assign to MEM.
1244 First remove any nops. */
1245 while (CONVERT_EXPR_P (exp)
1246 && POINTER_TYPE_P (TREE_TYPE (TREE_OPERAND (exp, 0))))
1247 exp = TREE_OPERAND (exp, 0);
1249 /* Build a MEM_REF representing the whole accessed area as a byte blob,
1250 (as builtin stringops may alias with anything). */
1251 exp = fold_build2 (MEM_REF,
1252 build_array_type (char_type_node,
1253 build_range_type (sizetype,
1254 size_one_node, len)),
1255 exp, build_int_cst (ptr_type_node, 0));
1257 /* If the MEM_REF has no acceptable address, try to get the base object
1258 from the original address we got, and build an all-aliasing
1259 unknown-sized access to that one. */
1260 if (is_gimple_mem_ref_addr (TREE_OPERAND (exp, 0)))
1261 set_mem_attributes (mem, exp, 0);
1262 else if (TREE_CODE (TREE_OPERAND (exp, 0)) == ADDR_EXPR
1263 && (exp = get_base_address (TREE_OPERAND (TREE_OPERAND (exp, 0),
1264 0))))
1266 exp = build_fold_addr_expr (exp);
1267 exp = fold_build2 (MEM_REF,
1268 build_array_type (char_type_node,
1269 build_range_type (sizetype,
1270 size_zero_node,
1271 NULL)),
1272 exp, build_int_cst (ptr_type_node, 0));
1273 set_mem_attributes (mem, exp, 0);
1275 set_mem_alias_set (mem, 0);
1276 return mem;
1279 /* Built-in functions to perform an untyped call and return. */
1281 #define apply_args_mode \
1282 (this_target_builtins->x_apply_args_mode)
1283 #define apply_result_mode \
1284 (this_target_builtins->x_apply_result_mode)
1286 /* Return the size required for the block returned by __builtin_apply_args,
1287 and initialize apply_args_mode. */
1289 static int
1290 apply_args_size (void)
1292 static int size = -1;
1293 int align;
1294 unsigned int regno;
1295 machine_mode mode;
1297 /* The values computed by this function never change. */
1298 if (size < 0)
1300 /* The first value is the incoming arg-pointer. */
1301 size = GET_MODE_SIZE (Pmode);
1303 /* The second value is the structure value address unless this is
1304 passed as an "invisible" first argument. */
1305 if (targetm.calls.struct_value_rtx (cfun ? TREE_TYPE (cfun->decl) : 0, 0))
1306 size += GET_MODE_SIZE (Pmode);
1308 for (regno = 0; regno < FIRST_PSEUDO_REGISTER; regno++)
1309 if (FUNCTION_ARG_REGNO_P (regno))
1311 mode = targetm.calls.get_raw_arg_mode (regno);
1313 gcc_assert (mode != VOIDmode);
1315 align = GET_MODE_ALIGNMENT (mode) / BITS_PER_UNIT;
1316 if (size % align != 0)
1317 size = CEIL (size, align) * align;
1318 size += GET_MODE_SIZE (mode);
1319 apply_args_mode[regno] = mode;
1321 else
1323 apply_args_mode[regno] = VOIDmode;
1326 return size;
1329 /* Return the size required for the block returned by __builtin_apply,
1330 and initialize apply_result_mode. */
1332 static int
1333 apply_result_size (void)
1335 static int size = -1;
1336 int align, regno;
1337 machine_mode mode;
1339 /* The values computed by this function never change. */
1340 if (size < 0)
1342 size = 0;
1344 for (regno = 0; regno < FIRST_PSEUDO_REGISTER; regno++)
1345 if (targetm.calls.function_value_regno_p (regno))
1347 mode = targetm.calls.get_raw_result_mode (regno);
1349 gcc_assert (mode != VOIDmode);
1351 align = GET_MODE_ALIGNMENT (mode) / BITS_PER_UNIT;
1352 if (size % align != 0)
1353 size = CEIL (size, align) * align;
1354 size += GET_MODE_SIZE (mode);
1355 apply_result_mode[regno] = mode;
1357 else
1358 apply_result_mode[regno] = VOIDmode;
1360 /* Allow targets that use untyped_call and untyped_return to override
1361 the size so that machine-specific information can be stored here. */
1362 #ifdef APPLY_RESULT_SIZE
1363 size = APPLY_RESULT_SIZE;
1364 #endif
1366 return size;
1369 /* Create a vector describing the result block RESULT. If SAVEP is true,
1370 the result block is used to save the values; otherwise it is used to
1371 restore the values. */
1373 static rtx
1374 result_vector (int savep, rtx result)
1376 int regno, size, align, nelts;
1377 machine_mode mode;
1378 rtx reg, mem;
1379 rtx *savevec = XALLOCAVEC (rtx, FIRST_PSEUDO_REGISTER);
1381 size = nelts = 0;
1382 for (regno = 0; regno < FIRST_PSEUDO_REGISTER; regno++)
1383 if ((mode = apply_result_mode[regno]) != VOIDmode)
1385 align = GET_MODE_ALIGNMENT (mode) / BITS_PER_UNIT;
1386 if (size % align != 0)
1387 size = CEIL (size, align) * align;
1388 reg = gen_rtx_REG (mode, savep ? regno : INCOMING_REGNO (regno));
1389 mem = adjust_address (result, mode, size);
1390 savevec[nelts++] = (savep
1391 ? gen_rtx_SET (mem, reg)
1392 : gen_rtx_SET (reg, mem));
1393 size += GET_MODE_SIZE (mode);
1395 return gen_rtx_PARALLEL (VOIDmode, gen_rtvec_v (nelts, savevec));
1398 /* Save the state required to perform an untyped call with the same
1399 arguments as were passed to the current function. */
1401 static rtx
1402 expand_builtin_apply_args_1 (void)
1404 rtx registers, tem;
1405 int size, align, regno;
1406 machine_mode mode;
1407 rtx struct_incoming_value = targetm.calls.struct_value_rtx (cfun ? TREE_TYPE (cfun->decl) : 0, 1);
1409 /* Create a block where the arg-pointer, structure value address,
1410 and argument registers can be saved. */
1411 registers = assign_stack_local (BLKmode, apply_args_size (), -1);
1413 /* Walk past the arg-pointer and structure value address. */
1414 size = GET_MODE_SIZE (Pmode);
1415 if (targetm.calls.struct_value_rtx (cfun ? TREE_TYPE (cfun->decl) : 0, 0))
1416 size += GET_MODE_SIZE (Pmode);
1418 /* Save each register used in calling a function to the block. */
1419 for (regno = 0; regno < FIRST_PSEUDO_REGISTER; regno++)
1420 if ((mode = apply_args_mode[regno]) != VOIDmode)
1422 align = GET_MODE_ALIGNMENT (mode) / BITS_PER_UNIT;
1423 if (size % align != 0)
1424 size = CEIL (size, align) * align;
1426 tem = gen_rtx_REG (mode, INCOMING_REGNO (regno));
1428 emit_move_insn (adjust_address (registers, mode, size), tem);
1429 size += GET_MODE_SIZE (mode);
1432 /* Save the arg pointer to the block. */
1433 tem = copy_to_reg (crtl->args.internal_arg_pointer);
1434 /* We need the pointer as the caller actually passed them to us, not
1435 as we might have pretended they were passed. Make sure it's a valid
1436 operand, as emit_move_insn isn't expected to handle a PLUS. */
1437 if (STACK_GROWS_DOWNWARD)
1439 = force_operand (plus_constant (Pmode, tem,
1440 crtl->args.pretend_args_size),
1441 NULL_RTX);
1442 emit_move_insn (adjust_address (registers, Pmode, 0), tem);
1444 size = GET_MODE_SIZE (Pmode);
1446 /* Save the structure value address unless this is passed as an
1447 "invisible" first argument. */
1448 if (struct_incoming_value)
1450 emit_move_insn (adjust_address (registers, Pmode, size),
1451 copy_to_reg (struct_incoming_value));
1452 size += GET_MODE_SIZE (Pmode);
1455 /* Return the address of the block. */
1456 return copy_addr_to_reg (XEXP (registers, 0));
1459 /* __builtin_apply_args returns block of memory allocated on
1460 the stack into which is stored the arg pointer, structure
1461 value address, static chain, and all the registers that might
1462 possibly be used in performing a function call. The code is
1463 moved to the start of the function so the incoming values are
1464 saved. */
1466 static rtx
1467 expand_builtin_apply_args (void)
1469 /* Don't do __builtin_apply_args more than once in a function.
1470 Save the result of the first call and reuse it. */
1471 if (apply_args_value != 0)
1472 return apply_args_value;
1474 /* When this function is called, it means that registers must be
1475 saved on entry to this function. So we migrate the
1476 call to the first insn of this function. */
1477 rtx temp;
1479 start_sequence ();
1480 temp = expand_builtin_apply_args_1 ();
1481 rtx_insn *seq = get_insns ();
1482 end_sequence ();
1484 apply_args_value = temp;
1486 /* Put the insns after the NOTE that starts the function.
1487 If this is inside a start_sequence, make the outer-level insn
1488 chain current, so the code is placed at the start of the
1489 function. If internal_arg_pointer is a non-virtual pseudo,
1490 it needs to be placed after the function that initializes
1491 that pseudo. */
1492 push_topmost_sequence ();
1493 if (REG_P (crtl->args.internal_arg_pointer)
1494 && REGNO (crtl->args.internal_arg_pointer) > LAST_VIRTUAL_REGISTER)
1495 emit_insn_before (seq, parm_birth_insn);
1496 else
1497 emit_insn_before (seq, NEXT_INSN (entry_of_function ()));
1498 pop_topmost_sequence ();
1499 return temp;
1503 /* Perform an untyped call and save the state required to perform an
1504 untyped return of whatever value was returned by the given function. */
1506 static rtx
1507 expand_builtin_apply (rtx function, rtx arguments, rtx argsize)
1509 int size, align, regno;
1510 machine_mode mode;
1511 rtx incoming_args, result, reg, dest, src;
1512 rtx_call_insn *call_insn;
1513 rtx old_stack_level = 0;
1514 rtx call_fusage = 0;
1515 rtx struct_value = targetm.calls.struct_value_rtx (cfun ? TREE_TYPE (cfun->decl) : 0, 0);
1517 arguments = convert_memory_address (Pmode, arguments);
1519 /* Create a block where the return registers can be saved. */
1520 result = assign_stack_local (BLKmode, apply_result_size (), -1);
1522 /* Fetch the arg pointer from the ARGUMENTS block. */
1523 incoming_args = gen_reg_rtx (Pmode);
1524 emit_move_insn (incoming_args, gen_rtx_MEM (Pmode, arguments));
1525 if (!STACK_GROWS_DOWNWARD)
1526 incoming_args = expand_simple_binop (Pmode, MINUS, incoming_args, argsize,
1527 incoming_args, 0, OPTAB_LIB_WIDEN);
1529 /* Push a new argument block and copy the arguments. Do not allow
1530 the (potential) memcpy call below to interfere with our stack
1531 manipulations. */
1532 do_pending_stack_adjust ();
1533 NO_DEFER_POP;
1535 /* Save the stack with nonlocal if available. */
1536 if (targetm.have_save_stack_nonlocal ())
1537 emit_stack_save (SAVE_NONLOCAL, &old_stack_level);
1538 else
1539 emit_stack_save (SAVE_BLOCK, &old_stack_level);
1541 /* Allocate a block of memory onto the stack and copy the memory
1542 arguments to the outgoing arguments address. We can pass TRUE
1543 as the 4th argument because we just saved the stack pointer
1544 and will restore it right after the call. */
1545 allocate_dynamic_stack_space (argsize, 0, BIGGEST_ALIGNMENT, true);
1547 /* Set DRAP flag to true, even though allocate_dynamic_stack_space
1548 may have already set current_function_calls_alloca to true.
1549 current_function_calls_alloca won't be set if argsize is zero,
1550 so we have to guarantee need_drap is true here. */
1551 if (SUPPORTS_STACK_ALIGNMENT)
1552 crtl->need_drap = true;
1554 dest = virtual_outgoing_args_rtx;
1555 if (!STACK_GROWS_DOWNWARD)
1557 if (CONST_INT_P (argsize))
1558 dest = plus_constant (Pmode, dest, -INTVAL (argsize));
1559 else
1560 dest = gen_rtx_PLUS (Pmode, dest, negate_rtx (Pmode, argsize));
1562 dest = gen_rtx_MEM (BLKmode, dest);
1563 set_mem_align (dest, PARM_BOUNDARY);
1564 src = gen_rtx_MEM (BLKmode, incoming_args);
1565 set_mem_align (src, PARM_BOUNDARY);
1566 emit_block_move (dest, src, argsize, BLOCK_OP_NORMAL);
1568 /* Refer to the argument block. */
1569 apply_args_size ();
1570 arguments = gen_rtx_MEM (BLKmode, arguments);
1571 set_mem_align (arguments, PARM_BOUNDARY);
1573 /* Walk past the arg-pointer and structure value address. */
1574 size = GET_MODE_SIZE (Pmode);
1575 if (struct_value)
1576 size += GET_MODE_SIZE (Pmode);
1578 /* Restore each of the registers previously saved. Make USE insns
1579 for each of these registers for use in making the call. */
1580 for (regno = 0; regno < FIRST_PSEUDO_REGISTER; regno++)
1581 if ((mode = apply_args_mode[regno]) != VOIDmode)
1583 align = GET_MODE_ALIGNMENT (mode) / BITS_PER_UNIT;
1584 if (size % align != 0)
1585 size = CEIL (size, align) * align;
1586 reg = gen_rtx_REG (mode, regno);
1587 emit_move_insn (reg, adjust_address (arguments, mode, size));
1588 use_reg (&call_fusage, reg);
1589 size += GET_MODE_SIZE (mode);
1592 /* Restore the structure value address unless this is passed as an
1593 "invisible" first argument. */
1594 size = GET_MODE_SIZE (Pmode);
1595 if (struct_value)
1597 rtx value = gen_reg_rtx (Pmode);
1598 emit_move_insn (value, adjust_address (arguments, Pmode, size));
1599 emit_move_insn (struct_value, value);
1600 if (REG_P (struct_value))
1601 use_reg (&call_fusage, struct_value);
1602 size += GET_MODE_SIZE (Pmode);
1605 /* All arguments and registers used for the call are set up by now! */
1606 function = prepare_call_address (NULL, function, NULL, &call_fusage, 0, 0);
1608 /* Ensure address is valid. SYMBOL_REF is already valid, so no need,
1609 and we don't want to load it into a register as an optimization,
1610 because prepare_call_address already did it if it should be done. */
1611 if (GET_CODE (function) != SYMBOL_REF)
1612 function = memory_address (FUNCTION_MODE, function);
1614 /* Generate the actual call instruction and save the return value. */
1615 if (targetm.have_untyped_call ())
1617 rtx mem = gen_rtx_MEM (FUNCTION_MODE, function);
1618 emit_call_insn (targetm.gen_untyped_call (mem, result,
1619 result_vector (1, result)));
1621 else if (targetm.have_call_value ())
1623 rtx valreg = 0;
1625 /* Locate the unique return register. It is not possible to
1626 express a call that sets more than one return register using
1627 call_value; use untyped_call for that. In fact, untyped_call
1628 only needs to save the return registers in the given block. */
1629 for (regno = 0; regno < FIRST_PSEUDO_REGISTER; regno++)
1630 if ((mode = apply_result_mode[regno]) != VOIDmode)
1632 gcc_assert (!valreg); /* have_untyped_call required. */
1634 valreg = gen_rtx_REG (mode, regno);
1637 emit_insn (targetm.gen_call_value (valreg,
1638 gen_rtx_MEM (FUNCTION_MODE, function),
1639 const0_rtx, NULL_RTX, const0_rtx));
1641 emit_move_insn (adjust_address (result, GET_MODE (valreg), 0), valreg);
1643 else
1644 gcc_unreachable ();
1646 /* Find the CALL insn we just emitted, and attach the register usage
1647 information. */
1648 call_insn = last_call_insn ();
1649 add_function_usage_to (call_insn, call_fusage);
1651 /* Restore the stack. */
1652 if (targetm.have_save_stack_nonlocal ())
1653 emit_stack_restore (SAVE_NONLOCAL, old_stack_level);
1654 else
1655 emit_stack_restore (SAVE_BLOCK, old_stack_level);
1656 fixup_args_size_notes (call_insn, get_last_insn (), 0);
1658 OK_DEFER_POP;
1660 /* Return the address of the result block. */
1661 result = copy_addr_to_reg (XEXP (result, 0));
1662 return convert_memory_address (ptr_mode, result);
1665 /* Perform an untyped return. */
1667 static void
1668 expand_builtin_return (rtx result)
1670 int size, align, regno;
1671 machine_mode mode;
1672 rtx reg;
1673 rtx_insn *call_fusage = 0;
1675 result = convert_memory_address (Pmode, result);
1677 apply_result_size ();
1678 result = gen_rtx_MEM (BLKmode, result);
1680 if (targetm.have_untyped_return ())
1682 rtx vector = result_vector (0, result);
1683 emit_jump_insn (targetm.gen_untyped_return (result, vector));
1684 emit_barrier ();
1685 return;
1688 /* Restore the return value and note that each value is used. */
1689 size = 0;
1690 for (regno = 0; regno < FIRST_PSEUDO_REGISTER; regno++)
1691 if ((mode = apply_result_mode[regno]) != VOIDmode)
1693 align = GET_MODE_ALIGNMENT (mode) / BITS_PER_UNIT;
1694 if (size % align != 0)
1695 size = CEIL (size, align) * align;
1696 reg = gen_rtx_REG (mode, INCOMING_REGNO (regno));
1697 emit_move_insn (reg, adjust_address (result, mode, size));
1699 push_to_sequence (call_fusage);
1700 emit_use (reg);
1701 call_fusage = get_insns ();
1702 end_sequence ();
1703 size += GET_MODE_SIZE (mode);
1706 /* Put the USE insns before the return. */
1707 emit_insn (call_fusage);
1709 /* Return whatever values was restored by jumping directly to the end
1710 of the function. */
1711 expand_naked_return ();
1714 /* Used by expand_builtin_classify_type and fold_builtin_classify_type. */
1716 static enum type_class
1717 type_to_class (tree type)
1719 switch (TREE_CODE (type))
1721 case VOID_TYPE: return void_type_class;
1722 case INTEGER_TYPE: return integer_type_class;
1723 case ENUMERAL_TYPE: return enumeral_type_class;
1724 case BOOLEAN_TYPE: return boolean_type_class;
1725 case POINTER_TYPE: return pointer_type_class;
1726 case REFERENCE_TYPE: return reference_type_class;
1727 case OFFSET_TYPE: return offset_type_class;
1728 case REAL_TYPE: return real_type_class;
1729 case COMPLEX_TYPE: return complex_type_class;
1730 case FUNCTION_TYPE: return function_type_class;
1731 case METHOD_TYPE: return method_type_class;
1732 case RECORD_TYPE: return record_type_class;
1733 case UNION_TYPE:
1734 case QUAL_UNION_TYPE: return union_type_class;
1735 case ARRAY_TYPE: return (TYPE_STRING_FLAG (type)
1736 ? string_type_class : array_type_class);
1737 case LANG_TYPE: return lang_type_class;
1738 default: return no_type_class;
1742 /* Expand a call EXP to __builtin_classify_type. */
1744 static rtx
1745 expand_builtin_classify_type (tree exp)
1747 if (call_expr_nargs (exp))
1748 return GEN_INT (type_to_class (TREE_TYPE (CALL_EXPR_ARG (exp, 0))));
1749 return GEN_INT (no_type_class);
1752 /* This helper macro, meant to be used in mathfn_built_in below,
1753 determines which among a set of three builtin math functions is
1754 appropriate for a given type mode. The `F' and `L' cases are
1755 automatically generated from the `double' case. */
1756 #define CASE_MATHFN(MATHFN) \
1757 CASE_CFN_##MATHFN: \
1758 fcode = BUILT_IN_##MATHFN; fcodef = BUILT_IN_##MATHFN##F ; \
1759 fcodel = BUILT_IN_##MATHFN##L ; break;
1760 /* Similar to above, but appends _R after any F/L suffix. */
1761 #define CASE_MATHFN_REENT(MATHFN) \
1762 case CFN_BUILT_IN_##MATHFN##_R: \
1763 case CFN_BUILT_IN_##MATHFN##F_R: \
1764 case CFN_BUILT_IN_##MATHFN##L_R: \
1765 fcode = BUILT_IN_##MATHFN##_R; fcodef = BUILT_IN_##MATHFN##F_R ; \
1766 fcodel = BUILT_IN_##MATHFN##L_R ; break;
1768 /* Return a function equivalent to FN but operating on floating-point
1769 values of type TYPE, or END_BUILTINS if no such function exists.
1770 This is purely an operation on function codes; it does not guarantee
1771 that the target actually has an implementation of the function. */
1773 static built_in_function
1774 mathfn_built_in_2 (tree type, combined_fn fn)
1776 built_in_function fcode, fcodef, fcodel;
1778 switch (fn)
1780 CASE_MATHFN (ACOS)
1781 CASE_MATHFN (ACOSH)
1782 CASE_MATHFN (ASIN)
1783 CASE_MATHFN (ASINH)
1784 CASE_MATHFN (ATAN)
1785 CASE_MATHFN (ATAN2)
1786 CASE_MATHFN (ATANH)
1787 CASE_MATHFN (CBRT)
1788 CASE_MATHFN (CEIL)
1789 CASE_MATHFN (CEXPI)
1790 CASE_MATHFN (COPYSIGN)
1791 CASE_MATHFN (COS)
1792 CASE_MATHFN (COSH)
1793 CASE_MATHFN (DREM)
1794 CASE_MATHFN (ERF)
1795 CASE_MATHFN (ERFC)
1796 CASE_MATHFN (EXP)
1797 CASE_MATHFN (EXP10)
1798 CASE_MATHFN (EXP2)
1799 CASE_MATHFN (EXPM1)
1800 CASE_MATHFN (FABS)
1801 CASE_MATHFN (FDIM)
1802 CASE_MATHFN (FLOOR)
1803 CASE_MATHFN (FMA)
1804 CASE_MATHFN (FMAX)
1805 CASE_MATHFN (FMIN)
1806 CASE_MATHFN (FMOD)
1807 CASE_MATHFN (FREXP)
1808 CASE_MATHFN (GAMMA)
1809 CASE_MATHFN_REENT (GAMMA) /* GAMMA_R */
1810 CASE_MATHFN (HUGE_VAL)
1811 CASE_MATHFN (HYPOT)
1812 CASE_MATHFN (ILOGB)
1813 CASE_MATHFN (ICEIL)
1814 CASE_MATHFN (IFLOOR)
1815 CASE_MATHFN (INF)
1816 CASE_MATHFN (IRINT)
1817 CASE_MATHFN (IROUND)
1818 CASE_MATHFN (ISINF)
1819 CASE_MATHFN (J0)
1820 CASE_MATHFN (J1)
1821 CASE_MATHFN (JN)
1822 CASE_MATHFN (LCEIL)
1823 CASE_MATHFN (LDEXP)
1824 CASE_MATHFN (LFLOOR)
1825 CASE_MATHFN (LGAMMA)
1826 CASE_MATHFN_REENT (LGAMMA) /* LGAMMA_R */
1827 CASE_MATHFN (LLCEIL)
1828 CASE_MATHFN (LLFLOOR)
1829 CASE_MATHFN (LLRINT)
1830 CASE_MATHFN (LLROUND)
1831 CASE_MATHFN (LOG)
1832 CASE_MATHFN (LOG10)
1833 CASE_MATHFN (LOG1P)
1834 CASE_MATHFN (LOG2)
1835 CASE_MATHFN (LOGB)
1836 CASE_MATHFN (LRINT)
1837 CASE_MATHFN (LROUND)
1838 CASE_MATHFN (MODF)
1839 CASE_MATHFN (NAN)
1840 CASE_MATHFN (NANS)
1841 CASE_MATHFN (NEARBYINT)
1842 CASE_MATHFN (NEXTAFTER)
1843 CASE_MATHFN (NEXTTOWARD)
1844 CASE_MATHFN (POW)
1845 CASE_MATHFN (POWI)
1846 CASE_MATHFN (POW10)
1847 CASE_MATHFN (REMAINDER)
1848 CASE_MATHFN (REMQUO)
1849 CASE_MATHFN (RINT)
1850 CASE_MATHFN (ROUND)
1851 CASE_MATHFN (SCALB)
1852 CASE_MATHFN (SCALBLN)
1853 CASE_MATHFN (SCALBN)
1854 CASE_MATHFN (SIGNBIT)
1855 CASE_MATHFN (SIGNIFICAND)
1856 CASE_MATHFN (SIN)
1857 CASE_MATHFN (SINCOS)
1858 CASE_MATHFN (SINH)
1859 CASE_MATHFN (SQRT)
1860 CASE_MATHFN (TAN)
1861 CASE_MATHFN (TANH)
1862 CASE_MATHFN (TGAMMA)
1863 CASE_MATHFN (TRUNC)
1864 CASE_MATHFN (Y0)
1865 CASE_MATHFN (Y1)
1866 CASE_MATHFN (YN)
1868 default:
1869 return END_BUILTINS;
1872 if (TYPE_MAIN_VARIANT (type) == double_type_node)
1873 return fcode;
1874 else if (TYPE_MAIN_VARIANT (type) == float_type_node)
1875 return fcodef;
1876 else if (TYPE_MAIN_VARIANT (type) == long_double_type_node)
1877 return fcodel;
1878 else
1879 return END_BUILTINS;
1882 /* Return mathematic function equivalent to FN but operating directly on TYPE,
1883 if available. If IMPLICIT_P is true use the implicit builtin declaration,
1884 otherwise use the explicit declaration. If we can't do the conversion,
1885 return null. */
1887 static tree
1888 mathfn_built_in_1 (tree type, combined_fn fn, bool implicit_p)
1890 built_in_function fcode2 = mathfn_built_in_2 (type, fn);
1891 if (fcode2 == END_BUILTINS)
1892 return NULL_TREE;
1894 if (implicit_p && !builtin_decl_implicit_p (fcode2))
1895 return NULL_TREE;
1897 return builtin_decl_explicit (fcode2);
1900 /* Like mathfn_built_in_1, but always use the implicit array. */
1902 tree
1903 mathfn_built_in (tree type, combined_fn fn)
1905 return mathfn_built_in_1 (type, fn, /*implicit=*/ 1);
1908 /* Like mathfn_built_in_1, but take a built_in_function and
1909 always use the implicit array. */
1911 tree
1912 mathfn_built_in (tree type, enum built_in_function fn)
1914 return mathfn_built_in_1 (type, as_combined_fn (fn), /*implicit=*/ 1);
1917 /* If BUILT_IN_NORMAL function FNDECL has an associated internal function,
1918 return its code, otherwise return IFN_LAST. Note that this function
1919 only tests whether the function is defined in internals.def, not whether
1920 it is actually available on the target. */
1922 internal_fn
1923 associated_internal_fn (tree fndecl)
1925 gcc_checking_assert (DECL_BUILT_IN_CLASS (fndecl) == BUILT_IN_NORMAL);
1926 tree return_type = TREE_TYPE (TREE_TYPE (fndecl));
1927 switch (DECL_FUNCTION_CODE (fndecl))
1929 #define DEF_INTERNAL_FLT_FN(NAME, FLAGS, OPTAB, TYPE) \
1930 CASE_FLT_FN (BUILT_IN_##NAME): return IFN_##NAME;
1931 #define DEF_INTERNAL_INT_FN(NAME, FLAGS, OPTAB, TYPE) \
1932 CASE_INT_FN (BUILT_IN_##NAME): return IFN_##NAME;
1933 #include "internal-fn.def"
1935 CASE_FLT_FN (BUILT_IN_POW10):
1936 return IFN_EXP10;
1938 CASE_FLT_FN (BUILT_IN_DREM):
1939 return IFN_REMAINDER;
1941 CASE_FLT_FN (BUILT_IN_SCALBN):
1942 CASE_FLT_FN (BUILT_IN_SCALBLN):
1943 if (REAL_MODE_FORMAT (TYPE_MODE (return_type))->b == 2)
1944 return IFN_LDEXP;
1945 return IFN_LAST;
1947 default:
1948 return IFN_LAST;
1952 /* If CALL is a call to a BUILT_IN_NORMAL function that could be replaced
1953 on the current target by a call to an internal function, return the
1954 code of that internal function, otherwise return IFN_LAST. The caller
1955 is responsible for ensuring that any side-effects of the built-in
1956 call are dealt with correctly. E.g. if CALL sets errno, the caller
1957 must decide that the errno result isn't needed or make it available
1958 in some other way. */
1960 internal_fn
1961 replacement_internal_fn (gcall *call)
1963 if (gimple_call_builtin_p (call, BUILT_IN_NORMAL))
1965 internal_fn ifn = associated_internal_fn (gimple_call_fndecl (call));
1966 if (ifn != IFN_LAST)
1968 tree_pair types = direct_internal_fn_types (ifn, call);
1969 optimization_type opt_type = bb_optimization_type (gimple_bb (call));
1970 if (direct_internal_fn_supported_p (ifn, types, opt_type))
1971 return ifn;
1974 return IFN_LAST;
1977 /* Expand a call to the builtin trinary math functions (fma).
1978 Return NULL_RTX if a normal call should be emitted rather than expanding the
1979 function in-line. EXP is the expression that is a call to the builtin
1980 function; if convenient, the result should be placed in TARGET.
1981 SUBTARGET may be used as the target for computing one of EXP's
1982 operands. */
1984 static rtx
1985 expand_builtin_mathfn_ternary (tree exp, rtx target, rtx subtarget)
1987 optab builtin_optab;
1988 rtx op0, op1, op2, result;
1989 rtx_insn *insns;
1990 tree fndecl = get_callee_fndecl (exp);
1991 tree arg0, arg1, arg2;
1992 machine_mode mode;
1994 if (!validate_arglist (exp, REAL_TYPE, REAL_TYPE, REAL_TYPE, VOID_TYPE))
1995 return NULL_RTX;
1997 arg0 = CALL_EXPR_ARG (exp, 0);
1998 arg1 = CALL_EXPR_ARG (exp, 1);
1999 arg2 = CALL_EXPR_ARG (exp, 2);
2001 switch (DECL_FUNCTION_CODE (fndecl))
2003 CASE_FLT_FN (BUILT_IN_FMA):
2004 builtin_optab = fma_optab; break;
2005 default:
2006 gcc_unreachable ();
2009 /* Make a suitable register to place result in. */
2010 mode = TYPE_MODE (TREE_TYPE (exp));
2012 /* Before working hard, check whether the instruction is available. */
2013 if (optab_handler (builtin_optab, mode) == CODE_FOR_nothing)
2014 return NULL_RTX;
2016 result = gen_reg_rtx (mode);
2018 /* Always stabilize the argument list. */
2019 CALL_EXPR_ARG (exp, 0) = arg0 = builtin_save_expr (arg0);
2020 CALL_EXPR_ARG (exp, 1) = arg1 = builtin_save_expr (arg1);
2021 CALL_EXPR_ARG (exp, 2) = arg2 = builtin_save_expr (arg2);
2023 op0 = expand_expr (arg0, subtarget, VOIDmode, EXPAND_NORMAL);
2024 op1 = expand_normal (arg1);
2025 op2 = expand_normal (arg2);
2027 start_sequence ();
2029 /* Compute into RESULT.
2030 Set RESULT to wherever the result comes back. */
2031 result = expand_ternary_op (mode, builtin_optab, op0, op1, op2,
2032 result, 0);
2034 /* If we were unable to expand via the builtin, stop the sequence
2035 (without outputting the insns) and call to the library function
2036 with the stabilized argument list. */
2037 if (result == 0)
2039 end_sequence ();
2040 return expand_call (exp, target, target == const0_rtx);
2043 /* Output the entire sequence. */
2044 insns = get_insns ();
2045 end_sequence ();
2046 emit_insn (insns);
2048 return result;
2051 /* Expand a call to the builtin sin and cos math functions.
2052 Return NULL_RTX if a normal call should be emitted rather than expanding the
2053 function in-line. EXP is the expression that is a call to the builtin
2054 function; if convenient, the result should be placed in TARGET.
2055 SUBTARGET may be used as the target for computing one of EXP's
2056 operands. */
2058 static rtx
2059 expand_builtin_mathfn_3 (tree exp, rtx target, rtx subtarget)
2061 optab builtin_optab;
2062 rtx op0;
2063 rtx_insn *insns;
2064 tree fndecl = get_callee_fndecl (exp);
2065 machine_mode mode;
2066 tree arg;
2068 if (!validate_arglist (exp, REAL_TYPE, VOID_TYPE))
2069 return NULL_RTX;
2071 arg = CALL_EXPR_ARG (exp, 0);
2073 switch (DECL_FUNCTION_CODE (fndecl))
2075 CASE_FLT_FN (BUILT_IN_SIN):
2076 CASE_FLT_FN (BUILT_IN_COS):
2077 builtin_optab = sincos_optab; break;
2078 default:
2079 gcc_unreachable ();
2082 /* Make a suitable register to place result in. */
2083 mode = TYPE_MODE (TREE_TYPE (exp));
2085 /* Check if sincos insn is available, otherwise fallback
2086 to sin or cos insn. */
2087 if (optab_handler (builtin_optab, mode) == CODE_FOR_nothing)
2088 switch (DECL_FUNCTION_CODE (fndecl))
2090 CASE_FLT_FN (BUILT_IN_SIN):
2091 builtin_optab = sin_optab; break;
2092 CASE_FLT_FN (BUILT_IN_COS):
2093 builtin_optab = cos_optab; break;
2094 default:
2095 gcc_unreachable ();
2098 /* Before working hard, check whether the instruction is available. */
2099 if (optab_handler (builtin_optab, mode) != CODE_FOR_nothing)
2101 rtx result = gen_reg_rtx (mode);
2103 /* Wrap the computation of the argument in a SAVE_EXPR, as we may
2104 need to expand the argument again. This way, we will not perform
2105 side-effects more the once. */
2106 CALL_EXPR_ARG (exp, 0) = arg = builtin_save_expr (arg);
2108 op0 = expand_expr (arg, subtarget, VOIDmode, EXPAND_NORMAL);
2110 start_sequence ();
2112 /* Compute into RESULT.
2113 Set RESULT to wherever the result comes back. */
2114 if (builtin_optab == sincos_optab)
2116 int ok;
2118 switch (DECL_FUNCTION_CODE (fndecl))
2120 CASE_FLT_FN (BUILT_IN_SIN):
2121 ok = expand_twoval_unop (builtin_optab, op0, 0, result, 0);
2122 break;
2123 CASE_FLT_FN (BUILT_IN_COS):
2124 ok = expand_twoval_unop (builtin_optab, op0, result, 0, 0);
2125 break;
2126 default:
2127 gcc_unreachable ();
2129 gcc_assert (ok);
2131 else
2132 result = expand_unop (mode, builtin_optab, op0, result, 0);
2134 if (result != 0)
2136 /* Output the entire sequence. */
2137 insns = get_insns ();
2138 end_sequence ();
2139 emit_insn (insns);
2140 return result;
2143 /* If we were unable to expand via the builtin, stop the sequence
2144 (without outputting the insns) and call to the library function
2145 with the stabilized argument list. */
2146 end_sequence ();
2149 return expand_call (exp, target, target == const0_rtx);
2152 /* Given an interclass math builtin decl FNDECL and it's argument ARG
2153 return an RTL instruction code that implements the functionality.
2154 If that isn't possible or available return CODE_FOR_nothing. */
2156 static enum insn_code
2157 interclass_mathfn_icode (tree arg, tree fndecl)
2159 bool errno_set = false;
2160 optab builtin_optab = unknown_optab;
2161 machine_mode mode;
2163 switch (DECL_FUNCTION_CODE (fndecl))
2165 CASE_FLT_FN (BUILT_IN_ILOGB):
2166 errno_set = true; builtin_optab = ilogb_optab; break;
2167 CASE_FLT_FN (BUILT_IN_ISINF):
2168 builtin_optab = isinf_optab; break;
2169 case BUILT_IN_ISNORMAL:
2170 case BUILT_IN_ISFINITE:
2171 CASE_FLT_FN (BUILT_IN_FINITE):
2172 case BUILT_IN_FINITED32:
2173 case BUILT_IN_FINITED64:
2174 case BUILT_IN_FINITED128:
2175 case BUILT_IN_ISINFD32:
2176 case BUILT_IN_ISINFD64:
2177 case BUILT_IN_ISINFD128:
2178 /* These builtins have no optabs (yet). */
2179 break;
2180 default:
2181 gcc_unreachable ();
2184 /* There's no easy way to detect the case we need to set EDOM. */
2185 if (flag_errno_math && errno_set)
2186 return CODE_FOR_nothing;
2188 /* Optab mode depends on the mode of the input argument. */
2189 mode = TYPE_MODE (TREE_TYPE (arg));
2191 if (builtin_optab)
2192 return optab_handler (builtin_optab, mode);
2193 return CODE_FOR_nothing;
2196 /* Expand a call to one of the builtin math functions that operate on
2197 floating point argument and output an integer result (ilogb, isinf,
2198 isnan, etc).
2199 Return 0 if a normal call should be emitted rather than expanding the
2200 function in-line. EXP is the expression that is a call to the builtin
2201 function; if convenient, the result should be placed in TARGET. */
2203 static rtx
2204 expand_builtin_interclass_mathfn (tree exp, rtx target)
2206 enum insn_code icode = CODE_FOR_nothing;
2207 rtx op0;
2208 tree fndecl = get_callee_fndecl (exp);
2209 machine_mode mode;
2210 tree arg;
2212 if (!validate_arglist (exp, REAL_TYPE, VOID_TYPE))
2213 return NULL_RTX;
2215 arg = CALL_EXPR_ARG (exp, 0);
2216 icode = interclass_mathfn_icode (arg, fndecl);
2217 mode = TYPE_MODE (TREE_TYPE (arg));
2219 if (icode != CODE_FOR_nothing)
2221 struct expand_operand ops[1];
2222 rtx_insn *last = get_last_insn ();
2223 tree orig_arg = arg;
2225 /* Wrap the computation of the argument in a SAVE_EXPR, as we may
2226 need to expand the argument again. This way, we will not perform
2227 side-effects more the once. */
2228 CALL_EXPR_ARG (exp, 0) = arg = builtin_save_expr (arg);
2230 op0 = expand_expr (arg, NULL_RTX, VOIDmode, EXPAND_NORMAL);
2232 if (mode != GET_MODE (op0))
2233 op0 = convert_to_mode (mode, op0, 0);
2235 create_output_operand (&ops[0], target, TYPE_MODE (TREE_TYPE (exp)));
2236 if (maybe_legitimize_operands (icode, 0, 1, ops)
2237 && maybe_emit_unop_insn (icode, ops[0].value, op0, UNKNOWN))
2238 return ops[0].value;
2240 delete_insns_since (last);
2241 CALL_EXPR_ARG (exp, 0) = orig_arg;
2244 return NULL_RTX;
2247 /* Expand a call to the builtin sincos math function.
2248 Return NULL_RTX if a normal call should be emitted rather than expanding the
2249 function in-line. EXP is the expression that is a call to the builtin
2250 function. */
2252 static rtx
2253 expand_builtin_sincos (tree exp)
2255 rtx op0, op1, op2, target1, target2;
2256 machine_mode mode;
2257 tree arg, sinp, cosp;
2258 int result;
2259 location_t loc = EXPR_LOCATION (exp);
2260 tree alias_type, alias_off;
2262 if (!validate_arglist (exp, REAL_TYPE,
2263 POINTER_TYPE, POINTER_TYPE, VOID_TYPE))
2264 return NULL_RTX;
2266 arg = CALL_EXPR_ARG (exp, 0);
2267 sinp = CALL_EXPR_ARG (exp, 1);
2268 cosp = CALL_EXPR_ARG (exp, 2);
2270 /* Make a suitable register to place result in. */
2271 mode = TYPE_MODE (TREE_TYPE (arg));
2273 /* Check if sincos insn is available, otherwise emit the call. */
2274 if (optab_handler (sincos_optab, mode) == CODE_FOR_nothing)
2275 return NULL_RTX;
2277 target1 = gen_reg_rtx (mode);
2278 target2 = gen_reg_rtx (mode);
2280 op0 = expand_normal (arg);
2281 alias_type = build_pointer_type_for_mode (TREE_TYPE (arg), ptr_mode, true);
2282 alias_off = build_int_cst (alias_type, 0);
2283 op1 = expand_normal (fold_build2_loc (loc, MEM_REF, TREE_TYPE (arg),
2284 sinp, alias_off));
2285 op2 = expand_normal (fold_build2_loc (loc, MEM_REF, TREE_TYPE (arg),
2286 cosp, alias_off));
2288 /* Compute into target1 and target2.
2289 Set TARGET to wherever the result comes back. */
2290 result = expand_twoval_unop (sincos_optab, op0, target2, target1, 0);
2291 gcc_assert (result);
2293 /* Move target1 and target2 to the memory locations indicated
2294 by op1 and op2. */
2295 emit_move_insn (op1, target1);
2296 emit_move_insn (op2, target2);
2298 return const0_rtx;
2301 /* Expand a call to the internal cexpi builtin to the sincos math function.
2302 EXP is the expression that is a call to the builtin function; if convenient,
2303 the result should be placed in TARGET. */
2305 static rtx
2306 expand_builtin_cexpi (tree exp, rtx target)
2308 tree fndecl = get_callee_fndecl (exp);
2309 tree arg, type;
2310 machine_mode mode;
2311 rtx op0, op1, op2;
2312 location_t loc = EXPR_LOCATION (exp);
2314 if (!validate_arglist (exp, REAL_TYPE, VOID_TYPE))
2315 return NULL_RTX;
2317 arg = CALL_EXPR_ARG (exp, 0);
2318 type = TREE_TYPE (arg);
2319 mode = TYPE_MODE (TREE_TYPE (arg));
2321 /* Try expanding via a sincos optab, fall back to emitting a libcall
2322 to sincos or cexp. We are sure we have sincos or cexp because cexpi
2323 is only generated from sincos, cexp or if we have either of them. */
2324 if (optab_handler (sincos_optab, mode) != CODE_FOR_nothing)
2326 op1 = gen_reg_rtx (mode);
2327 op2 = gen_reg_rtx (mode);
2329 op0 = expand_expr (arg, NULL_RTX, VOIDmode, EXPAND_NORMAL);
2331 /* Compute into op1 and op2. */
2332 expand_twoval_unop (sincos_optab, op0, op2, op1, 0);
2334 else if (targetm.libc_has_function (function_sincos))
2336 tree call, fn = NULL_TREE;
2337 tree top1, top2;
2338 rtx op1a, op2a;
2340 if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPIF)
2341 fn = builtin_decl_explicit (BUILT_IN_SINCOSF);
2342 else if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPI)
2343 fn = builtin_decl_explicit (BUILT_IN_SINCOS);
2344 else if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPIL)
2345 fn = builtin_decl_explicit (BUILT_IN_SINCOSL);
2346 else
2347 gcc_unreachable ();
2349 op1 = assign_temp (TREE_TYPE (arg), 1, 1);
2350 op2 = assign_temp (TREE_TYPE (arg), 1, 1);
2351 op1a = copy_addr_to_reg (XEXP (op1, 0));
2352 op2a = copy_addr_to_reg (XEXP (op2, 0));
2353 top1 = make_tree (build_pointer_type (TREE_TYPE (arg)), op1a);
2354 top2 = make_tree (build_pointer_type (TREE_TYPE (arg)), op2a);
2356 /* Make sure not to fold the sincos call again. */
2357 call = build1 (ADDR_EXPR, build_pointer_type (TREE_TYPE (fn)), fn);
2358 expand_normal (build_call_nary (TREE_TYPE (TREE_TYPE (fn)),
2359 call, 3, arg, top1, top2));
2361 else
2363 tree call, fn = NULL_TREE, narg;
2364 tree ctype = build_complex_type (type);
2366 if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPIF)
2367 fn = builtin_decl_explicit (BUILT_IN_CEXPF);
2368 else if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPI)
2369 fn = builtin_decl_explicit (BUILT_IN_CEXP);
2370 else if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPIL)
2371 fn = builtin_decl_explicit (BUILT_IN_CEXPL);
2372 else
2373 gcc_unreachable ();
2375 /* If we don't have a decl for cexp create one. This is the
2376 friendliest fallback if the user calls __builtin_cexpi
2377 without full target C99 function support. */
2378 if (fn == NULL_TREE)
2380 tree fntype;
2381 const char *name = NULL;
2383 if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPIF)
2384 name = "cexpf";
2385 else if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPI)
2386 name = "cexp";
2387 else if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CEXPIL)
2388 name = "cexpl";
2390 fntype = build_function_type_list (ctype, ctype, NULL_TREE);
2391 fn = build_fn_decl (name, fntype);
2394 narg = fold_build2_loc (loc, COMPLEX_EXPR, ctype,
2395 build_real (type, dconst0), arg);
2397 /* Make sure not to fold the cexp call again. */
2398 call = build1 (ADDR_EXPR, build_pointer_type (TREE_TYPE (fn)), fn);
2399 return expand_expr (build_call_nary (ctype, call, 1, narg),
2400 target, VOIDmode, EXPAND_NORMAL);
2403 /* Now build the proper return type. */
2404 return expand_expr (build2 (COMPLEX_EXPR, build_complex_type (type),
2405 make_tree (TREE_TYPE (arg), op2),
2406 make_tree (TREE_TYPE (arg), op1)),
2407 target, VOIDmode, EXPAND_NORMAL);
2410 /* Conveniently construct a function call expression. FNDECL names the
2411 function to be called, N is the number of arguments, and the "..."
2412 parameters are the argument expressions. Unlike build_call_exr
2413 this doesn't fold the call, hence it will always return a CALL_EXPR. */
2415 static tree
2416 build_call_nofold_loc (location_t loc, tree fndecl, int n, ...)
2418 va_list ap;
2419 tree fntype = TREE_TYPE (fndecl);
2420 tree fn = build1 (ADDR_EXPR, build_pointer_type (fntype), fndecl);
2422 va_start (ap, n);
2423 fn = build_call_valist (TREE_TYPE (fntype), fn, n, ap);
2424 va_end (ap);
2425 SET_EXPR_LOCATION (fn, loc);
2426 return fn;
2429 /* Expand a call to one of the builtin rounding functions gcc defines
2430 as an extension (lfloor and lceil). As these are gcc extensions we
2431 do not need to worry about setting errno to EDOM.
2432 If expanding via optab fails, lower expression to (int)(floor(x)).
2433 EXP is the expression that is a call to the builtin function;
2434 if convenient, the result should be placed in TARGET. */
2436 static rtx
2437 expand_builtin_int_roundingfn (tree exp, rtx target)
2439 convert_optab builtin_optab;
2440 rtx op0, tmp;
2441 rtx_insn *insns;
2442 tree fndecl = get_callee_fndecl (exp);
2443 enum built_in_function fallback_fn;
2444 tree fallback_fndecl;
2445 machine_mode mode;
2446 tree arg;
2448 if (!validate_arglist (exp, REAL_TYPE, VOID_TYPE))
2449 gcc_unreachable ();
2451 arg = CALL_EXPR_ARG (exp, 0);
2453 switch (DECL_FUNCTION_CODE (fndecl))
2455 CASE_FLT_FN (BUILT_IN_ICEIL):
2456 CASE_FLT_FN (BUILT_IN_LCEIL):
2457 CASE_FLT_FN (BUILT_IN_LLCEIL):
2458 builtin_optab = lceil_optab;
2459 fallback_fn = BUILT_IN_CEIL;
2460 break;
2462 CASE_FLT_FN (BUILT_IN_IFLOOR):
2463 CASE_FLT_FN (BUILT_IN_LFLOOR):
2464 CASE_FLT_FN (BUILT_IN_LLFLOOR):
2465 builtin_optab = lfloor_optab;
2466 fallback_fn = BUILT_IN_FLOOR;
2467 break;
2469 default:
2470 gcc_unreachable ();
2473 /* Make a suitable register to place result in. */
2474 mode = TYPE_MODE (TREE_TYPE (exp));
2476 target = gen_reg_rtx (mode);
2478 /* Wrap the computation of the argument in a SAVE_EXPR, as we may
2479 need to expand the argument again. This way, we will not perform
2480 side-effects more the once. */
2481 CALL_EXPR_ARG (exp, 0) = arg = builtin_save_expr (arg);
2483 op0 = expand_expr (arg, NULL, VOIDmode, EXPAND_NORMAL);
2485 start_sequence ();
2487 /* Compute into TARGET. */
2488 if (expand_sfix_optab (target, op0, builtin_optab))
2490 /* Output the entire sequence. */
2491 insns = get_insns ();
2492 end_sequence ();
2493 emit_insn (insns);
2494 return target;
2497 /* If we were unable to expand via the builtin, stop the sequence
2498 (without outputting the insns). */
2499 end_sequence ();
2501 /* Fall back to floating point rounding optab. */
2502 fallback_fndecl = mathfn_built_in (TREE_TYPE (arg), fallback_fn);
2504 /* For non-C99 targets we may end up without a fallback fndecl here
2505 if the user called __builtin_lfloor directly. In this case emit
2506 a call to the floor/ceil variants nevertheless. This should result
2507 in the best user experience for not full C99 targets. */
2508 if (fallback_fndecl == NULL_TREE)
2510 tree fntype;
2511 const char *name = NULL;
2513 switch (DECL_FUNCTION_CODE (fndecl))
2515 case BUILT_IN_ICEIL:
2516 case BUILT_IN_LCEIL:
2517 case BUILT_IN_LLCEIL:
2518 name = "ceil";
2519 break;
2520 case BUILT_IN_ICEILF:
2521 case BUILT_IN_LCEILF:
2522 case BUILT_IN_LLCEILF:
2523 name = "ceilf";
2524 break;
2525 case BUILT_IN_ICEILL:
2526 case BUILT_IN_LCEILL:
2527 case BUILT_IN_LLCEILL:
2528 name = "ceill";
2529 break;
2530 case BUILT_IN_IFLOOR:
2531 case BUILT_IN_LFLOOR:
2532 case BUILT_IN_LLFLOOR:
2533 name = "floor";
2534 break;
2535 case BUILT_IN_IFLOORF:
2536 case BUILT_IN_LFLOORF:
2537 case BUILT_IN_LLFLOORF:
2538 name = "floorf";
2539 break;
2540 case BUILT_IN_IFLOORL:
2541 case BUILT_IN_LFLOORL:
2542 case BUILT_IN_LLFLOORL:
2543 name = "floorl";
2544 break;
2545 default:
2546 gcc_unreachable ();
2549 fntype = build_function_type_list (TREE_TYPE (arg),
2550 TREE_TYPE (arg), NULL_TREE);
2551 fallback_fndecl = build_fn_decl (name, fntype);
2554 exp = build_call_nofold_loc (EXPR_LOCATION (exp), fallback_fndecl, 1, arg);
2556 tmp = expand_normal (exp);
2557 tmp = maybe_emit_group_store (tmp, TREE_TYPE (exp));
2559 /* Truncate the result of floating point optab to integer
2560 via expand_fix (). */
2561 target = gen_reg_rtx (mode);
2562 expand_fix (target, tmp, 0);
2564 return target;
2567 /* Expand a call to one of the builtin math functions doing integer
2568 conversion (lrint).
2569 Return 0 if a normal call should be emitted rather than expanding the
2570 function in-line. EXP is the expression that is a call to the builtin
2571 function; if convenient, the result should be placed in TARGET. */
2573 static rtx
2574 expand_builtin_int_roundingfn_2 (tree exp, rtx target)
2576 convert_optab builtin_optab;
2577 rtx op0;
2578 rtx_insn *insns;
2579 tree fndecl = get_callee_fndecl (exp);
2580 tree arg;
2581 machine_mode mode;
2582 enum built_in_function fallback_fn = BUILT_IN_NONE;
2584 if (!validate_arglist (exp, REAL_TYPE, VOID_TYPE))
2585 gcc_unreachable ();
2587 arg = CALL_EXPR_ARG (exp, 0);
2589 switch (DECL_FUNCTION_CODE (fndecl))
2591 CASE_FLT_FN (BUILT_IN_IRINT):
2592 fallback_fn = BUILT_IN_LRINT;
2593 /* FALLTHRU */
2594 CASE_FLT_FN (BUILT_IN_LRINT):
2595 CASE_FLT_FN (BUILT_IN_LLRINT):
2596 builtin_optab = lrint_optab;
2597 break;
2599 CASE_FLT_FN (BUILT_IN_IROUND):
2600 fallback_fn = BUILT_IN_LROUND;
2601 /* FALLTHRU */
2602 CASE_FLT_FN (BUILT_IN_LROUND):
2603 CASE_FLT_FN (BUILT_IN_LLROUND):
2604 builtin_optab = lround_optab;
2605 break;
2607 default:
2608 gcc_unreachable ();
2611 /* There's no easy way to detect the case we need to set EDOM. */
2612 if (flag_errno_math && fallback_fn == BUILT_IN_NONE)
2613 return NULL_RTX;
2615 /* Make a suitable register to place result in. */
2616 mode = TYPE_MODE (TREE_TYPE (exp));
2618 /* There's no easy way to detect the case we need to set EDOM. */
2619 if (!flag_errno_math)
2621 rtx result = gen_reg_rtx (mode);
2623 /* Wrap the computation of the argument in a SAVE_EXPR, as we may
2624 need to expand the argument again. This way, we will not perform
2625 side-effects more the once. */
2626 CALL_EXPR_ARG (exp, 0) = arg = builtin_save_expr (arg);
2628 op0 = expand_expr (arg, NULL, VOIDmode, EXPAND_NORMAL);
2630 start_sequence ();
2632 if (expand_sfix_optab (result, op0, builtin_optab))
2634 /* Output the entire sequence. */
2635 insns = get_insns ();
2636 end_sequence ();
2637 emit_insn (insns);
2638 return result;
2641 /* If we were unable to expand via the builtin, stop the sequence
2642 (without outputting the insns) and call to the library function
2643 with the stabilized argument list. */
2644 end_sequence ();
2647 if (fallback_fn != BUILT_IN_NONE)
2649 /* Fall back to rounding to long int. Use implicit_p 0 - for non-C99
2650 targets, (int) round (x) should never be transformed into
2651 BUILT_IN_IROUND and if __builtin_iround is called directly, emit
2652 a call to lround in the hope that the target provides at least some
2653 C99 functions. This should result in the best user experience for
2654 not full C99 targets. */
2655 tree fallback_fndecl = mathfn_built_in_1
2656 (TREE_TYPE (arg), as_combined_fn (fallback_fn), 0);
2658 exp = build_call_nofold_loc (EXPR_LOCATION (exp),
2659 fallback_fndecl, 1, arg);
2661 target = expand_call (exp, NULL_RTX, target == const0_rtx);
2662 target = maybe_emit_group_store (target, TREE_TYPE (exp));
2663 return convert_to_mode (mode, target, 0);
2666 return expand_call (exp, target, target == const0_rtx);
2669 /* Expand a call to the powi built-in mathematical function. Return NULL_RTX if
2670 a normal call should be emitted rather than expanding the function
2671 in-line. EXP is the expression that is a call to the builtin
2672 function; if convenient, the result should be placed in TARGET. */
2674 static rtx
2675 expand_builtin_powi (tree exp, rtx target)
2677 tree arg0, arg1;
2678 rtx op0, op1;
2679 machine_mode mode;
2680 machine_mode mode2;
2682 if (! validate_arglist (exp, REAL_TYPE, INTEGER_TYPE, VOID_TYPE))
2683 return NULL_RTX;
2685 arg0 = CALL_EXPR_ARG (exp, 0);
2686 arg1 = CALL_EXPR_ARG (exp, 1);
2687 mode = TYPE_MODE (TREE_TYPE (exp));
2689 /* Emit a libcall to libgcc. */
2691 /* Mode of the 2nd argument must match that of an int. */
2692 mode2 = mode_for_size (INT_TYPE_SIZE, MODE_INT, 0);
2694 if (target == NULL_RTX)
2695 target = gen_reg_rtx (mode);
2697 op0 = expand_expr (arg0, NULL_RTX, mode, EXPAND_NORMAL);
2698 if (GET_MODE (op0) != mode)
2699 op0 = convert_to_mode (mode, op0, 0);
2700 op1 = expand_expr (arg1, NULL_RTX, mode2, EXPAND_NORMAL);
2701 if (GET_MODE (op1) != mode2)
2702 op1 = convert_to_mode (mode2, op1, 0);
2704 target = emit_library_call_value (optab_libfunc (powi_optab, mode),
2705 target, LCT_CONST, mode, 2,
2706 op0, mode, op1, mode2);
2708 return target;
2711 /* Expand expression EXP which is a call to the strlen builtin. Return
2712 NULL_RTX if we failed the caller should emit a normal call, otherwise
2713 try to get the result in TARGET, if convenient. */
2715 static rtx
2716 expand_builtin_strlen (tree exp, rtx target,
2717 machine_mode target_mode)
2719 if (!validate_arglist (exp, POINTER_TYPE, VOID_TYPE))
2720 return NULL_RTX;
2721 else
2723 struct expand_operand ops[4];
2724 rtx pat;
2725 tree len;
2726 tree src = CALL_EXPR_ARG (exp, 0);
2727 rtx src_reg;
2728 rtx_insn *before_strlen;
2729 machine_mode insn_mode = target_mode;
2730 enum insn_code icode = CODE_FOR_nothing;
2731 unsigned int align;
2733 /* If the length can be computed at compile-time, return it. */
2734 len = c_strlen (src, 0);
2735 if (len)
2736 return expand_expr (len, target, target_mode, EXPAND_NORMAL);
2738 /* If the length can be computed at compile-time and is constant
2739 integer, but there are side-effects in src, evaluate
2740 src for side-effects, then return len.
2741 E.g. x = strlen (i++ ? "xfoo" + 1 : "bar");
2742 can be optimized into: i++; x = 3; */
2743 len = c_strlen (src, 1);
2744 if (len && TREE_CODE (len) == INTEGER_CST)
2746 expand_expr (src, const0_rtx, VOIDmode, EXPAND_NORMAL);
2747 return expand_expr (len, target, target_mode, EXPAND_NORMAL);
2750 align = get_pointer_alignment (src) / BITS_PER_UNIT;
2752 /* If SRC is not a pointer type, don't do this operation inline. */
2753 if (align == 0)
2754 return NULL_RTX;
2756 /* Bail out if we can't compute strlen in the right mode. */
2757 while (insn_mode != VOIDmode)
2759 icode = optab_handler (strlen_optab, insn_mode);
2760 if (icode != CODE_FOR_nothing)
2761 break;
2763 insn_mode = GET_MODE_WIDER_MODE (insn_mode);
2765 if (insn_mode == VOIDmode)
2766 return NULL_RTX;
2768 /* Make a place to hold the source address. We will not expand
2769 the actual source until we are sure that the expansion will
2770 not fail -- there are trees that cannot be expanded twice. */
2771 src_reg = gen_reg_rtx (Pmode);
2773 /* Mark the beginning of the strlen sequence so we can emit the
2774 source operand later. */
2775 before_strlen = get_last_insn ();
2777 create_output_operand (&ops[0], target, insn_mode);
2778 create_fixed_operand (&ops[1], gen_rtx_MEM (BLKmode, src_reg));
2779 create_integer_operand (&ops[2], 0);
2780 create_integer_operand (&ops[3], align);
2781 if (!maybe_expand_insn (icode, 4, ops))
2782 return NULL_RTX;
2784 /* Now that we are assured of success, expand the source. */
2785 start_sequence ();
2786 pat = expand_expr (src, src_reg, Pmode, EXPAND_NORMAL);
2787 if (pat != src_reg)
2789 #ifdef POINTERS_EXTEND_UNSIGNED
2790 if (GET_MODE (pat) != Pmode)
2791 pat = convert_to_mode (Pmode, pat,
2792 POINTERS_EXTEND_UNSIGNED);
2793 #endif
2794 emit_move_insn (src_reg, pat);
2796 pat = get_insns ();
2797 end_sequence ();
2799 if (before_strlen)
2800 emit_insn_after (pat, before_strlen);
2801 else
2802 emit_insn_before (pat, get_insns ());
2804 /* Return the value in the proper mode for this function. */
2805 if (GET_MODE (ops[0].value) == target_mode)
2806 target = ops[0].value;
2807 else if (target != 0)
2808 convert_move (target, ops[0].value, 0);
2809 else
2810 target = convert_to_mode (target_mode, ops[0].value, 0);
2812 return target;
2816 /* Callback routine for store_by_pieces. Read GET_MODE_BITSIZE (MODE)
2817 bytes from constant string DATA + OFFSET and return it as target
2818 constant. */
2820 static rtx
2821 builtin_memcpy_read_str (void *data, HOST_WIDE_INT offset,
2822 machine_mode mode)
2824 const char *str = (const char *) data;
2826 gcc_assert (offset >= 0
2827 && ((unsigned HOST_WIDE_INT) offset + GET_MODE_SIZE (mode)
2828 <= strlen (str) + 1));
2830 return c_readstr (str + offset, mode);
2833 /* LEN specify length of the block of memcpy/memset operation.
2834 Figure out its range and put it into MIN_SIZE/MAX_SIZE.
2835 In some cases we can make very likely guess on max size, then we
2836 set it into PROBABLE_MAX_SIZE. */
2838 static void
2839 determine_block_size (tree len, rtx len_rtx,
2840 unsigned HOST_WIDE_INT *min_size,
2841 unsigned HOST_WIDE_INT *max_size,
2842 unsigned HOST_WIDE_INT *probable_max_size)
2844 if (CONST_INT_P (len_rtx))
2846 *min_size = *max_size = *probable_max_size = UINTVAL (len_rtx);
2847 return;
2849 else
2851 wide_int min, max;
2852 enum value_range_type range_type = VR_UNDEFINED;
2854 /* Determine bounds from the type. */
2855 if (tree_fits_uhwi_p (TYPE_MIN_VALUE (TREE_TYPE (len))))
2856 *min_size = tree_to_uhwi (TYPE_MIN_VALUE (TREE_TYPE (len)));
2857 else
2858 *min_size = 0;
2859 if (tree_fits_uhwi_p (TYPE_MAX_VALUE (TREE_TYPE (len))))
2860 *probable_max_size = *max_size
2861 = tree_to_uhwi (TYPE_MAX_VALUE (TREE_TYPE (len)));
2862 else
2863 *probable_max_size = *max_size = GET_MODE_MASK (GET_MODE (len_rtx));
2865 if (TREE_CODE (len) == SSA_NAME)
2866 range_type = get_range_info (len, &min, &max);
2867 if (range_type == VR_RANGE)
2869 if (wi::fits_uhwi_p (min) && *min_size < min.to_uhwi ())
2870 *min_size = min.to_uhwi ();
2871 if (wi::fits_uhwi_p (max) && *max_size > max.to_uhwi ())
2872 *probable_max_size = *max_size = max.to_uhwi ();
2874 else if (range_type == VR_ANTI_RANGE)
2876 /* Anti range 0...N lets us to determine minimal size to N+1. */
2877 if (min == 0)
2879 if (wi::fits_uhwi_p (max) && max.to_uhwi () + 1 != 0)
2880 *min_size = max.to_uhwi () + 1;
2882 /* Code like
2884 int n;
2885 if (n < 100)
2886 memcpy (a, b, n)
2888 Produce anti range allowing negative values of N. We still
2889 can use the information and make a guess that N is not negative.
2891 else if (!wi::leu_p (max, 1 << 30) && wi::fits_uhwi_p (min))
2892 *probable_max_size = min.to_uhwi () - 1;
2895 gcc_checking_assert (*max_size <=
2896 (unsigned HOST_WIDE_INT)
2897 GET_MODE_MASK (GET_MODE (len_rtx)));
2900 /* Helper function to do the actual work for expand_builtin_memcpy. */
2902 static rtx
2903 expand_builtin_memcpy_args (tree dest, tree src, tree len, rtx target, tree exp)
2905 const char *src_str;
2906 unsigned int src_align = get_pointer_alignment (src);
2907 unsigned int dest_align = get_pointer_alignment (dest);
2908 rtx dest_mem, src_mem, dest_addr, len_rtx;
2909 HOST_WIDE_INT expected_size = -1;
2910 unsigned int expected_align = 0;
2911 unsigned HOST_WIDE_INT min_size;
2912 unsigned HOST_WIDE_INT max_size;
2913 unsigned HOST_WIDE_INT probable_max_size;
2915 /* If DEST is not a pointer type, call the normal function. */
2916 if (dest_align == 0)
2917 return NULL_RTX;
2919 /* If either SRC is not a pointer type, don't do this
2920 operation in-line. */
2921 if (src_align == 0)
2922 return NULL_RTX;
2924 if (currently_expanding_gimple_stmt)
2925 stringop_block_profile (currently_expanding_gimple_stmt,
2926 &expected_align, &expected_size);
2928 if (expected_align < dest_align)
2929 expected_align = dest_align;
2930 dest_mem = get_memory_rtx (dest, len);
2931 set_mem_align (dest_mem, dest_align);
2932 len_rtx = expand_normal (len);
2933 determine_block_size (len, len_rtx, &min_size, &max_size,
2934 &probable_max_size);
2935 src_str = c_getstr (src);
2937 /* If SRC is a string constant and block move would be done
2938 by pieces, we can avoid loading the string from memory
2939 and only stored the computed constants. */
2940 if (src_str
2941 && CONST_INT_P (len_rtx)
2942 && (unsigned HOST_WIDE_INT) INTVAL (len_rtx) <= strlen (src_str) + 1
2943 && can_store_by_pieces (INTVAL (len_rtx), builtin_memcpy_read_str,
2944 CONST_CAST (char *, src_str),
2945 dest_align, false))
2947 dest_mem = store_by_pieces (dest_mem, INTVAL (len_rtx),
2948 builtin_memcpy_read_str,
2949 CONST_CAST (char *, src_str),
2950 dest_align, false, 0);
2951 dest_mem = force_operand (XEXP (dest_mem, 0), target);
2952 dest_mem = convert_memory_address (ptr_mode, dest_mem);
2953 return dest_mem;
2956 src_mem = get_memory_rtx (src, len);
2957 set_mem_align (src_mem, src_align);
2959 /* Copy word part most expediently. */
2960 dest_addr = emit_block_move_hints (dest_mem, src_mem, len_rtx,
2961 CALL_EXPR_TAILCALL (exp)
2962 ? BLOCK_OP_TAILCALL : BLOCK_OP_NORMAL,
2963 expected_align, expected_size,
2964 min_size, max_size, probable_max_size);
2966 if (dest_addr == 0)
2968 dest_addr = force_operand (XEXP (dest_mem, 0), target);
2969 dest_addr = convert_memory_address (ptr_mode, dest_addr);
2972 return dest_addr;
2975 /* Expand a call EXP to the memcpy builtin.
2976 Return NULL_RTX if we failed, the caller should emit a normal call,
2977 otherwise try to get the result in TARGET, if convenient (and in
2978 mode MODE if that's convenient). */
2980 static rtx
2981 expand_builtin_memcpy (tree exp, rtx target)
2983 if (!validate_arglist (exp,
2984 POINTER_TYPE, POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
2985 return NULL_RTX;
2986 else
2988 tree dest = CALL_EXPR_ARG (exp, 0);
2989 tree src = CALL_EXPR_ARG (exp, 1);
2990 tree len = CALL_EXPR_ARG (exp, 2);
2991 return expand_builtin_memcpy_args (dest, src, len, target, exp);
2995 /* Expand an instrumented call EXP to the memcpy builtin.
2996 Return NULL_RTX if we failed, the caller should emit a normal call,
2997 otherwise try to get the result in TARGET, if convenient (and in
2998 mode MODE if that's convenient). */
3000 static rtx
3001 expand_builtin_memcpy_with_bounds (tree exp, rtx target)
3003 if (!validate_arglist (exp,
3004 POINTER_TYPE, POINTER_BOUNDS_TYPE,
3005 POINTER_TYPE, POINTER_BOUNDS_TYPE,
3006 INTEGER_TYPE, VOID_TYPE))
3007 return NULL_RTX;
3008 else
3010 tree dest = CALL_EXPR_ARG (exp, 0);
3011 tree src = CALL_EXPR_ARG (exp, 2);
3012 tree len = CALL_EXPR_ARG (exp, 4);
3013 rtx res = expand_builtin_memcpy_args (dest, src, len, target, exp);
3015 /* Return src bounds with the result. */
3016 if (res)
3018 rtx bnd = force_reg (targetm.chkp_bound_mode (),
3019 expand_normal (CALL_EXPR_ARG (exp, 1)));
3020 res = chkp_join_splitted_slot (res, bnd);
3022 return res;
3026 /* Expand a call EXP to the mempcpy builtin.
3027 Return NULL_RTX if we failed; the caller should emit a normal call,
3028 otherwise try to get the result in TARGET, if convenient (and in
3029 mode MODE if that's convenient). If ENDP is 0 return the
3030 destination pointer, if ENDP is 1 return the end pointer ala
3031 mempcpy, and if ENDP is 2 return the end pointer minus one ala
3032 stpcpy. */
3034 static rtx
3035 expand_builtin_mempcpy (tree exp, rtx target, machine_mode mode)
3037 if (!validate_arglist (exp,
3038 POINTER_TYPE, POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
3039 return NULL_RTX;
3040 else
3042 tree dest = CALL_EXPR_ARG (exp, 0);
3043 tree src = CALL_EXPR_ARG (exp, 1);
3044 tree len = CALL_EXPR_ARG (exp, 2);
3045 return expand_builtin_mempcpy_args (dest, src, len,
3046 target, mode, /*endp=*/ 1,
3047 exp);
3051 /* Expand an instrumented call EXP to the mempcpy builtin.
3052 Return NULL_RTX if we failed, the caller should emit a normal call,
3053 otherwise try to get the result in TARGET, if convenient (and in
3054 mode MODE if that's convenient). */
3056 static rtx
3057 expand_builtin_mempcpy_with_bounds (tree exp, rtx target, machine_mode mode)
3059 if (!validate_arglist (exp,
3060 POINTER_TYPE, POINTER_BOUNDS_TYPE,
3061 POINTER_TYPE, POINTER_BOUNDS_TYPE,
3062 INTEGER_TYPE, VOID_TYPE))
3063 return NULL_RTX;
3064 else
3066 tree dest = CALL_EXPR_ARG (exp, 0);
3067 tree src = CALL_EXPR_ARG (exp, 2);
3068 tree len = CALL_EXPR_ARG (exp, 4);
3069 rtx res = expand_builtin_mempcpy_args (dest, src, len, target,
3070 mode, 1, exp);
3072 /* Return src bounds with the result. */
3073 if (res)
3075 rtx bnd = force_reg (targetm.chkp_bound_mode (),
3076 expand_normal (CALL_EXPR_ARG (exp, 1)));
3077 res = chkp_join_splitted_slot (res, bnd);
3079 return res;
3083 /* Helper function to do the actual work for expand_builtin_mempcpy. The
3084 arguments to the builtin_mempcpy call DEST, SRC, and LEN are broken out
3085 so that this can also be called without constructing an actual CALL_EXPR.
3086 The other arguments and return value are the same as for
3087 expand_builtin_mempcpy. */
3089 static rtx
3090 expand_builtin_mempcpy_args (tree dest, tree src, tree len,
3091 rtx target, machine_mode mode, int endp,
3092 tree orig_exp)
3094 tree fndecl = get_callee_fndecl (orig_exp);
3096 /* If return value is ignored, transform mempcpy into memcpy. */
3097 if (target == const0_rtx
3098 && DECL_FUNCTION_CODE (fndecl) == BUILT_IN_CHKP_MEMPCPY_NOBND_NOCHK_CHKP
3099 && builtin_decl_implicit_p (BUILT_IN_CHKP_MEMCPY_NOBND_NOCHK_CHKP))
3101 tree fn = builtin_decl_implicit (BUILT_IN_CHKP_MEMCPY_NOBND_NOCHK_CHKP);
3102 tree result = build_call_nofold_loc (UNKNOWN_LOCATION, fn, 3,
3103 dest, src, len);
3104 return expand_expr (result, target, mode, EXPAND_NORMAL);
3106 else if (target == const0_rtx
3107 && builtin_decl_implicit_p (BUILT_IN_MEMCPY))
3109 tree fn = builtin_decl_implicit (BUILT_IN_MEMCPY);
3110 tree result = build_call_nofold_loc (UNKNOWN_LOCATION, fn, 3,
3111 dest, src, len);
3112 return expand_expr (result, target, mode, EXPAND_NORMAL);
3114 else
3116 const char *src_str;
3117 unsigned int src_align = get_pointer_alignment (src);
3118 unsigned int dest_align = get_pointer_alignment (dest);
3119 rtx dest_mem, src_mem, len_rtx;
3121 /* If either SRC or DEST is not a pointer type, don't do this
3122 operation in-line. */
3123 if (dest_align == 0 || src_align == 0)
3124 return NULL_RTX;
3126 /* If LEN is not constant, call the normal function. */
3127 if (! tree_fits_uhwi_p (len))
3128 return NULL_RTX;
3130 len_rtx = expand_normal (len);
3131 src_str = c_getstr (src);
3133 /* If SRC is a string constant and block move would be done
3134 by pieces, we can avoid loading the string from memory
3135 and only stored the computed constants. */
3136 if (src_str
3137 && CONST_INT_P (len_rtx)
3138 && (unsigned HOST_WIDE_INT) INTVAL (len_rtx) <= strlen (src_str) + 1
3139 && can_store_by_pieces (INTVAL (len_rtx), builtin_memcpy_read_str,
3140 CONST_CAST (char *, src_str),
3141 dest_align, false))
3143 dest_mem = get_memory_rtx (dest, len);
3144 set_mem_align (dest_mem, dest_align);
3145 dest_mem = store_by_pieces (dest_mem, INTVAL (len_rtx),
3146 builtin_memcpy_read_str,
3147 CONST_CAST (char *, src_str),
3148 dest_align, false, endp);
3149 dest_mem = force_operand (XEXP (dest_mem, 0), NULL_RTX);
3150 dest_mem = convert_memory_address (ptr_mode, dest_mem);
3151 return dest_mem;
3154 if (CONST_INT_P (len_rtx)
3155 && can_move_by_pieces (INTVAL (len_rtx),
3156 MIN (dest_align, src_align)))
3158 dest_mem = get_memory_rtx (dest, len);
3159 set_mem_align (dest_mem, dest_align);
3160 src_mem = get_memory_rtx (src, len);
3161 set_mem_align (src_mem, src_align);
3162 dest_mem = move_by_pieces (dest_mem, src_mem, INTVAL (len_rtx),
3163 MIN (dest_align, src_align), endp);
3164 dest_mem = force_operand (XEXP (dest_mem, 0), NULL_RTX);
3165 dest_mem = convert_memory_address (ptr_mode, dest_mem);
3166 return dest_mem;
3169 return NULL_RTX;
3173 /* Expand into a movstr instruction, if one is available. Return NULL_RTX if
3174 we failed, the caller should emit a normal call, otherwise try to
3175 get the result in TARGET, if convenient. If ENDP is 0 return the
3176 destination pointer, if ENDP is 1 return the end pointer ala
3177 mempcpy, and if ENDP is 2 return the end pointer minus one ala
3178 stpcpy. */
3180 static rtx
3181 expand_movstr (tree dest, tree src, rtx target, int endp)
3183 struct expand_operand ops[3];
3184 rtx dest_mem;
3185 rtx src_mem;
3187 if (!targetm.have_movstr ())
3188 return NULL_RTX;
3190 dest_mem = get_memory_rtx (dest, NULL);
3191 src_mem = get_memory_rtx (src, NULL);
3192 if (!endp)
3194 target = force_reg (Pmode, XEXP (dest_mem, 0));
3195 dest_mem = replace_equiv_address (dest_mem, target);
3198 create_output_operand (&ops[0], endp ? target : NULL_RTX, Pmode);
3199 create_fixed_operand (&ops[1], dest_mem);
3200 create_fixed_operand (&ops[2], src_mem);
3201 if (!maybe_expand_insn (targetm.code_for_movstr, 3, ops))
3202 return NULL_RTX;
3204 if (endp && target != const0_rtx)
3206 target = ops[0].value;
3207 /* movstr is supposed to set end to the address of the NUL
3208 terminator. If the caller requested a mempcpy-like return value,
3209 adjust it. */
3210 if (endp == 1)
3212 rtx tem = plus_constant (GET_MODE (target),
3213 gen_lowpart (GET_MODE (target), target), 1);
3214 emit_move_insn (target, force_operand (tem, NULL_RTX));
3217 return target;
3220 /* Expand expression EXP, which is a call to the strcpy builtin. Return
3221 NULL_RTX if we failed the caller should emit a normal call, otherwise
3222 try to get the result in TARGET, if convenient (and in mode MODE if that's
3223 convenient). */
3225 static rtx
3226 expand_builtin_strcpy (tree exp, rtx target)
3228 if (validate_arglist (exp, POINTER_TYPE, POINTER_TYPE, VOID_TYPE))
3230 tree dest = CALL_EXPR_ARG (exp, 0);
3231 tree src = CALL_EXPR_ARG (exp, 1);
3232 return expand_builtin_strcpy_args (dest, src, target);
3234 return NULL_RTX;
3237 /* Helper function to do the actual work for expand_builtin_strcpy. The
3238 arguments to the builtin_strcpy call DEST and SRC are broken out
3239 so that this can also be called without constructing an actual CALL_EXPR.
3240 The other arguments and return value are the same as for
3241 expand_builtin_strcpy. */
3243 static rtx
3244 expand_builtin_strcpy_args (tree dest, tree src, rtx target)
3246 return expand_movstr (dest, src, target, /*endp=*/0);
3249 /* Expand a call EXP to the stpcpy builtin.
3250 Return NULL_RTX if we failed the caller should emit a normal call,
3251 otherwise try to get the result in TARGET, if convenient (and in
3252 mode MODE if that's convenient). */
3254 static rtx
3255 expand_builtin_stpcpy (tree exp, rtx target, machine_mode mode)
3257 tree dst, src;
3258 location_t loc = EXPR_LOCATION (exp);
3260 if (!validate_arglist (exp, POINTER_TYPE, POINTER_TYPE, VOID_TYPE))
3261 return NULL_RTX;
3263 dst = CALL_EXPR_ARG (exp, 0);
3264 src = CALL_EXPR_ARG (exp, 1);
3266 /* If return value is ignored, transform stpcpy into strcpy. */
3267 if (target == const0_rtx && builtin_decl_implicit (BUILT_IN_STRCPY))
3269 tree fn = builtin_decl_implicit (BUILT_IN_STRCPY);
3270 tree result = build_call_nofold_loc (loc, fn, 2, dst, src);
3271 return expand_expr (result, target, mode, EXPAND_NORMAL);
3273 else
3275 tree len, lenp1;
3276 rtx ret;
3278 /* Ensure we get an actual string whose length can be evaluated at
3279 compile-time, not an expression containing a string. This is
3280 because the latter will potentially produce pessimized code
3281 when used to produce the return value. */
3282 if (! c_getstr (src) || ! (len = c_strlen (src, 0)))
3283 return expand_movstr (dst, src, target, /*endp=*/2);
3285 lenp1 = size_binop_loc (loc, PLUS_EXPR, len, ssize_int (1));
3286 ret = expand_builtin_mempcpy_args (dst, src, lenp1,
3287 target, mode, /*endp=*/2,
3288 exp);
3290 if (ret)
3291 return ret;
3293 if (TREE_CODE (len) == INTEGER_CST)
3295 rtx len_rtx = expand_normal (len);
3297 if (CONST_INT_P (len_rtx))
3299 ret = expand_builtin_strcpy_args (dst, src, target);
3301 if (ret)
3303 if (! target)
3305 if (mode != VOIDmode)
3306 target = gen_reg_rtx (mode);
3307 else
3308 target = gen_reg_rtx (GET_MODE (ret));
3310 if (GET_MODE (target) != GET_MODE (ret))
3311 ret = gen_lowpart (GET_MODE (target), ret);
3313 ret = plus_constant (GET_MODE (ret), ret, INTVAL (len_rtx));
3314 ret = emit_move_insn (target, force_operand (ret, NULL_RTX));
3315 gcc_assert (ret);
3317 return target;
3322 return expand_movstr (dst, src, target, /*endp=*/2);
3326 /* Callback routine for store_by_pieces. Read GET_MODE_BITSIZE (MODE)
3327 bytes from constant string DATA + OFFSET and return it as target
3328 constant. */
3331 builtin_strncpy_read_str (void *data, HOST_WIDE_INT offset,
3332 machine_mode mode)
3334 const char *str = (const char *) data;
3336 if ((unsigned HOST_WIDE_INT) offset > strlen (str))
3337 return const0_rtx;
3339 return c_readstr (str + offset, mode);
3342 /* Expand expression EXP, which is a call to the strncpy builtin. Return
3343 NULL_RTX if we failed the caller should emit a normal call. */
3345 static rtx
3346 expand_builtin_strncpy (tree exp, rtx target)
3348 location_t loc = EXPR_LOCATION (exp);
3350 if (validate_arglist (exp,
3351 POINTER_TYPE, POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
3353 tree dest = CALL_EXPR_ARG (exp, 0);
3354 tree src = CALL_EXPR_ARG (exp, 1);
3355 tree len = CALL_EXPR_ARG (exp, 2);
3356 tree slen = c_strlen (src, 1);
3358 /* We must be passed a constant len and src parameter. */
3359 if (!tree_fits_uhwi_p (len) || !slen || !tree_fits_uhwi_p (slen))
3360 return NULL_RTX;
3362 slen = size_binop_loc (loc, PLUS_EXPR, slen, ssize_int (1));
3364 /* We're required to pad with trailing zeros if the requested
3365 len is greater than strlen(s2)+1. In that case try to
3366 use store_by_pieces, if it fails, punt. */
3367 if (tree_int_cst_lt (slen, len))
3369 unsigned int dest_align = get_pointer_alignment (dest);
3370 const char *p = c_getstr (src);
3371 rtx dest_mem;
3373 if (!p || dest_align == 0 || !tree_fits_uhwi_p (len)
3374 || !can_store_by_pieces (tree_to_uhwi (len),
3375 builtin_strncpy_read_str,
3376 CONST_CAST (char *, p),
3377 dest_align, false))
3378 return NULL_RTX;
3380 dest_mem = get_memory_rtx (dest, len);
3381 store_by_pieces (dest_mem, tree_to_uhwi (len),
3382 builtin_strncpy_read_str,
3383 CONST_CAST (char *, p), dest_align, false, 0);
3384 dest_mem = force_operand (XEXP (dest_mem, 0), target);
3385 dest_mem = convert_memory_address (ptr_mode, dest_mem);
3386 return dest_mem;
3389 return NULL_RTX;
3392 /* Callback routine for store_by_pieces. Read GET_MODE_BITSIZE (MODE)
3393 bytes from constant string DATA + OFFSET and return it as target
3394 constant. */
3397 builtin_memset_read_str (void *data, HOST_WIDE_INT offset ATTRIBUTE_UNUSED,
3398 machine_mode mode)
3400 const char *c = (const char *) data;
3401 char *p = XALLOCAVEC (char, GET_MODE_SIZE (mode));
3403 memset (p, *c, GET_MODE_SIZE (mode));
3405 return c_readstr (p, mode);
3408 /* Callback routine for store_by_pieces. Return the RTL of a register
3409 containing GET_MODE_SIZE (MODE) consecutive copies of the unsigned
3410 char value given in the RTL register data. For example, if mode is
3411 4 bytes wide, return the RTL for 0x01010101*data. */
3413 static rtx
3414 builtin_memset_gen_str (void *data, HOST_WIDE_INT offset ATTRIBUTE_UNUSED,
3415 machine_mode mode)
3417 rtx target, coeff;
3418 size_t size;
3419 char *p;
3421 size = GET_MODE_SIZE (mode);
3422 if (size == 1)
3423 return (rtx) data;
3425 p = XALLOCAVEC (char, size);
3426 memset (p, 1, size);
3427 coeff = c_readstr (p, mode);
3429 target = convert_to_mode (mode, (rtx) data, 1);
3430 target = expand_mult (mode, target, coeff, NULL_RTX, 1);
3431 return force_reg (mode, target);
3434 /* Expand expression EXP, which is a call to the memset builtin. Return
3435 NULL_RTX if we failed the caller should emit a normal call, otherwise
3436 try to get the result in TARGET, if convenient (and in mode MODE if that's
3437 convenient). */
3439 static rtx
3440 expand_builtin_memset (tree exp, rtx target, machine_mode mode)
3442 if (!validate_arglist (exp,
3443 POINTER_TYPE, INTEGER_TYPE, INTEGER_TYPE, VOID_TYPE))
3444 return NULL_RTX;
3445 else
3447 tree dest = CALL_EXPR_ARG (exp, 0);
3448 tree val = CALL_EXPR_ARG (exp, 1);
3449 tree len = CALL_EXPR_ARG (exp, 2);
3450 return expand_builtin_memset_args (dest, val, len, target, mode, exp);
3454 /* Expand expression EXP, which is an instrumented call to the memset builtin.
3455 Return NULL_RTX if we failed the caller should emit a normal call, otherwise
3456 try to get the result in TARGET, if convenient (and in mode MODE if that's
3457 convenient). */
3459 static rtx
3460 expand_builtin_memset_with_bounds (tree exp, rtx target, machine_mode mode)
3462 if (!validate_arglist (exp,
3463 POINTER_TYPE, POINTER_BOUNDS_TYPE,
3464 INTEGER_TYPE, INTEGER_TYPE, VOID_TYPE))
3465 return NULL_RTX;
3466 else
3468 tree dest = CALL_EXPR_ARG (exp, 0);
3469 tree val = CALL_EXPR_ARG (exp, 2);
3470 tree len = CALL_EXPR_ARG (exp, 3);
3471 rtx res = expand_builtin_memset_args (dest, val, len, target, mode, exp);
3473 /* Return src bounds with the result. */
3474 if (res)
3476 rtx bnd = force_reg (targetm.chkp_bound_mode (),
3477 expand_normal (CALL_EXPR_ARG (exp, 1)));
3478 res = chkp_join_splitted_slot (res, bnd);
3480 return res;
3484 /* Helper function to do the actual work for expand_builtin_memset. The
3485 arguments to the builtin_memset call DEST, VAL, and LEN are broken out
3486 so that this can also be called without constructing an actual CALL_EXPR.
3487 The other arguments and return value are the same as for
3488 expand_builtin_memset. */
3490 static rtx
3491 expand_builtin_memset_args (tree dest, tree val, tree len,
3492 rtx target, machine_mode mode, tree orig_exp)
3494 tree fndecl, fn;
3495 enum built_in_function fcode;
3496 machine_mode val_mode;
3497 char c;
3498 unsigned int dest_align;
3499 rtx dest_mem, dest_addr, len_rtx;
3500 HOST_WIDE_INT expected_size = -1;
3501 unsigned int expected_align = 0;
3502 unsigned HOST_WIDE_INT min_size;
3503 unsigned HOST_WIDE_INT max_size;
3504 unsigned HOST_WIDE_INT probable_max_size;
3506 dest_align = get_pointer_alignment (dest);
3508 /* If DEST is not a pointer type, don't do this operation in-line. */
3509 if (dest_align == 0)
3510 return NULL_RTX;
3512 if (currently_expanding_gimple_stmt)
3513 stringop_block_profile (currently_expanding_gimple_stmt,
3514 &expected_align, &expected_size);
3516 if (expected_align < dest_align)
3517 expected_align = dest_align;
3519 /* If the LEN parameter is zero, return DEST. */
3520 if (integer_zerop (len))
3522 /* Evaluate and ignore VAL in case it has side-effects. */
3523 expand_expr (val, const0_rtx, VOIDmode, EXPAND_NORMAL);
3524 return expand_expr (dest, target, mode, EXPAND_NORMAL);
3527 /* Stabilize the arguments in case we fail. */
3528 dest = builtin_save_expr (dest);
3529 val = builtin_save_expr (val);
3530 len = builtin_save_expr (len);
3532 len_rtx = expand_normal (len);
3533 determine_block_size (len, len_rtx, &min_size, &max_size,
3534 &probable_max_size);
3535 dest_mem = get_memory_rtx (dest, len);
3536 val_mode = TYPE_MODE (unsigned_char_type_node);
3538 if (TREE_CODE (val) != INTEGER_CST)
3540 rtx val_rtx;
3542 val_rtx = expand_normal (val);
3543 val_rtx = convert_to_mode (val_mode, val_rtx, 0);
3545 /* Assume that we can memset by pieces if we can store
3546 * the coefficients by pieces (in the required modes).
3547 * We can't pass builtin_memset_gen_str as that emits RTL. */
3548 c = 1;
3549 if (tree_fits_uhwi_p (len)
3550 && can_store_by_pieces (tree_to_uhwi (len),
3551 builtin_memset_read_str, &c, dest_align,
3552 true))
3554 val_rtx = force_reg (val_mode, val_rtx);
3555 store_by_pieces (dest_mem, tree_to_uhwi (len),
3556 builtin_memset_gen_str, val_rtx, dest_align,
3557 true, 0);
3559 else if (!set_storage_via_setmem (dest_mem, len_rtx, val_rtx,
3560 dest_align, expected_align,
3561 expected_size, min_size, max_size,
3562 probable_max_size))
3563 goto do_libcall;
3565 dest_mem = force_operand (XEXP (dest_mem, 0), NULL_RTX);
3566 dest_mem = convert_memory_address (ptr_mode, dest_mem);
3567 return dest_mem;
3570 if (target_char_cast (val, &c))
3571 goto do_libcall;
3573 if (c)
3575 if (tree_fits_uhwi_p (len)
3576 && can_store_by_pieces (tree_to_uhwi (len),
3577 builtin_memset_read_str, &c, dest_align,
3578 true))
3579 store_by_pieces (dest_mem, tree_to_uhwi (len),
3580 builtin_memset_read_str, &c, dest_align, true, 0);
3581 else if (!set_storage_via_setmem (dest_mem, len_rtx,
3582 gen_int_mode (c, val_mode),
3583 dest_align, expected_align,
3584 expected_size, min_size, max_size,
3585 probable_max_size))
3586 goto do_libcall;
3588 dest_mem = force_operand (XEXP (dest_mem, 0), NULL_RTX);
3589 dest_mem = convert_memory_address (ptr_mode, dest_mem);
3590 return dest_mem;
3593 set_mem_align (dest_mem, dest_align);
3594 dest_addr = clear_storage_hints (dest_mem, len_rtx,
3595 CALL_EXPR_TAILCALL (orig_exp)
3596 ? BLOCK_OP_TAILCALL : BLOCK_OP_NORMAL,
3597 expected_align, expected_size,
3598 min_size, max_size,
3599 probable_max_size);
3601 if (dest_addr == 0)
3603 dest_addr = force_operand (XEXP (dest_mem, 0), NULL_RTX);
3604 dest_addr = convert_memory_address (ptr_mode, dest_addr);
3607 return dest_addr;
3609 do_libcall:
3610 fndecl = get_callee_fndecl (orig_exp);
3611 fcode = DECL_FUNCTION_CODE (fndecl);
3612 if (fcode == BUILT_IN_MEMSET
3613 || fcode == BUILT_IN_CHKP_MEMSET_NOBND_NOCHK_CHKP)
3614 fn = build_call_nofold_loc (EXPR_LOCATION (orig_exp), fndecl, 3,
3615 dest, val, len);
3616 else if (fcode == BUILT_IN_BZERO)
3617 fn = build_call_nofold_loc (EXPR_LOCATION (orig_exp), fndecl, 2,
3618 dest, len);
3619 else
3620 gcc_unreachable ();
3621 gcc_assert (TREE_CODE (fn) == CALL_EXPR);
3622 CALL_EXPR_TAILCALL (fn) = CALL_EXPR_TAILCALL (orig_exp);
3623 return expand_call (fn, target, target == const0_rtx);
3626 /* Expand expression EXP, which is a call to the bzero builtin. Return
3627 NULL_RTX if we failed the caller should emit a normal call. */
3629 static rtx
3630 expand_builtin_bzero (tree exp)
3632 tree dest, size;
3633 location_t loc = EXPR_LOCATION (exp);
3635 if (!validate_arglist (exp, POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
3636 return NULL_RTX;
3638 dest = CALL_EXPR_ARG (exp, 0);
3639 size = CALL_EXPR_ARG (exp, 1);
3641 /* New argument list transforming bzero(ptr x, int y) to
3642 memset(ptr x, int 0, size_t y). This is done this way
3643 so that if it isn't expanded inline, we fallback to
3644 calling bzero instead of memset. */
3646 return expand_builtin_memset_args (dest, integer_zero_node,
3647 fold_convert_loc (loc,
3648 size_type_node, size),
3649 const0_rtx, VOIDmode, exp);
3652 /* Try to expand cmpstr operation ICODE with the given operands.
3653 Return the result rtx on success, otherwise return null. */
3655 static rtx
3656 expand_cmpstr (insn_code icode, rtx target, rtx arg1_rtx, rtx arg2_rtx,
3657 HOST_WIDE_INT align)
3659 machine_mode insn_mode = insn_data[icode].operand[0].mode;
3661 if (target && (!REG_P (target) || HARD_REGISTER_P (target)))
3662 target = NULL_RTX;
3664 struct expand_operand ops[4];
3665 create_output_operand (&ops[0], target, insn_mode);
3666 create_fixed_operand (&ops[1], arg1_rtx);
3667 create_fixed_operand (&ops[2], arg2_rtx);
3668 create_integer_operand (&ops[3], align);
3669 if (maybe_expand_insn (icode, 4, ops))
3670 return ops[0].value;
3671 return NULL_RTX;
3674 /* Try to expand cmpstrn or cmpmem operation ICODE with the given operands.
3675 ARG3_TYPE is the type of ARG3_RTX. Return the result rtx on success,
3676 otherwise return null. */
3678 static rtx
3679 expand_cmpstrn_or_cmpmem (insn_code icode, rtx target, rtx arg1_rtx,
3680 rtx arg2_rtx, tree arg3_type, rtx arg3_rtx,
3681 HOST_WIDE_INT align)
3683 machine_mode insn_mode = insn_data[icode].operand[0].mode;
3685 if (target && (!REG_P (target) || HARD_REGISTER_P (target)))
3686 target = NULL_RTX;
3688 struct expand_operand ops[5];
3689 create_output_operand (&ops[0], target, insn_mode);
3690 create_fixed_operand (&ops[1], arg1_rtx);
3691 create_fixed_operand (&ops[2], arg2_rtx);
3692 create_convert_operand_from (&ops[3], arg3_rtx, TYPE_MODE (arg3_type),
3693 TYPE_UNSIGNED (arg3_type));
3694 create_integer_operand (&ops[4], align);
3695 if (maybe_expand_insn (icode, 5, ops))
3696 return ops[0].value;
3697 return NULL_RTX;
3700 /* Expand expression EXP, which is a call to the memcmp built-in function.
3701 Return NULL_RTX if we failed and the caller should emit a normal call,
3702 otherwise try to get the result in TARGET, if convenient. */
3704 static rtx
3705 expand_builtin_memcmp (tree exp, rtx target)
3707 if (!validate_arglist (exp,
3708 POINTER_TYPE, POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
3709 return NULL_RTX;
3711 /* Note: The cmpstrnsi pattern, if it exists, is not suitable for
3712 implementing memcmp because it will stop if it encounters two
3713 zero bytes. */
3714 insn_code icode = direct_optab_handler (cmpmem_optab, SImode);
3715 if (icode == CODE_FOR_nothing)
3716 return NULL_RTX;
3718 tree arg1 = CALL_EXPR_ARG (exp, 0);
3719 tree arg2 = CALL_EXPR_ARG (exp, 1);
3720 tree len = CALL_EXPR_ARG (exp, 2);
3722 unsigned int arg1_align = get_pointer_alignment (arg1) / BITS_PER_UNIT;
3723 unsigned int arg2_align = get_pointer_alignment (arg2) / BITS_PER_UNIT;
3725 /* If we don't have POINTER_TYPE, call the function. */
3726 if (arg1_align == 0 || arg2_align == 0)
3727 return NULL_RTX;
3729 machine_mode mode = TYPE_MODE (TREE_TYPE (exp));
3730 location_t loc = EXPR_LOCATION (exp);
3731 rtx arg1_rtx = get_memory_rtx (arg1, len);
3732 rtx arg2_rtx = get_memory_rtx (arg2, len);
3733 rtx arg3_rtx = expand_normal (fold_convert_loc (loc, sizetype, len));
3735 /* Set MEM_SIZE as appropriate. */
3736 if (CONST_INT_P (arg3_rtx))
3738 set_mem_size (arg1_rtx, INTVAL (arg3_rtx));
3739 set_mem_size (arg2_rtx, INTVAL (arg3_rtx));
3742 rtx result = expand_cmpstrn_or_cmpmem (icode, target, arg1_rtx, arg2_rtx,
3743 TREE_TYPE (len), arg3_rtx,
3744 MIN (arg1_align, arg2_align));
3745 if (result)
3747 /* Return the value in the proper mode for this function. */
3748 if (GET_MODE (result) == mode)
3749 return result;
3751 if (target != 0)
3753 convert_move (target, result, 0);
3754 return target;
3757 return convert_to_mode (mode, result, 0);
3760 result = target;
3761 if (! (result != 0
3762 && REG_P (result) && GET_MODE (result) == mode
3763 && REGNO (result) >= FIRST_PSEUDO_REGISTER))
3764 result = gen_reg_rtx (mode);
3766 emit_library_call_value (memcmp_libfunc, result, LCT_PURE,
3767 TYPE_MODE (integer_type_node), 3,
3768 XEXP (arg1_rtx, 0), Pmode,
3769 XEXP (arg2_rtx, 0), Pmode,
3770 convert_to_mode (TYPE_MODE (sizetype), arg3_rtx,
3771 TYPE_UNSIGNED (sizetype)),
3772 TYPE_MODE (sizetype));
3773 return result;
3776 /* Expand expression EXP, which is a call to the strcmp builtin. Return NULL_RTX
3777 if we failed the caller should emit a normal call, otherwise try to get
3778 the result in TARGET, if convenient. */
3780 static rtx
3781 expand_builtin_strcmp (tree exp, ATTRIBUTE_UNUSED rtx target)
3783 if (!validate_arglist (exp, POINTER_TYPE, POINTER_TYPE, VOID_TYPE))
3784 return NULL_RTX;
3786 insn_code cmpstr_icode = direct_optab_handler (cmpstr_optab, SImode);
3787 insn_code cmpstrn_icode = direct_optab_handler (cmpstrn_optab, SImode);
3788 if (cmpstr_icode != CODE_FOR_nothing || cmpstrn_icode != CODE_FOR_nothing)
3790 rtx arg1_rtx, arg2_rtx;
3791 tree fndecl, fn;
3792 tree arg1 = CALL_EXPR_ARG (exp, 0);
3793 tree arg2 = CALL_EXPR_ARG (exp, 1);
3794 rtx result = NULL_RTX;
3796 unsigned int arg1_align = get_pointer_alignment (arg1) / BITS_PER_UNIT;
3797 unsigned int arg2_align = get_pointer_alignment (arg2) / BITS_PER_UNIT;
3799 /* If we don't have POINTER_TYPE, call the function. */
3800 if (arg1_align == 0 || arg2_align == 0)
3801 return NULL_RTX;
3803 /* Stabilize the arguments in case gen_cmpstr(n)si fail. */
3804 arg1 = builtin_save_expr (arg1);
3805 arg2 = builtin_save_expr (arg2);
3807 arg1_rtx = get_memory_rtx (arg1, NULL);
3808 arg2_rtx = get_memory_rtx (arg2, NULL);
3810 /* Try to call cmpstrsi. */
3811 if (cmpstr_icode != CODE_FOR_nothing)
3812 result = expand_cmpstr (cmpstr_icode, target, arg1_rtx, arg2_rtx,
3813 MIN (arg1_align, arg2_align));
3815 /* Try to determine at least one length and call cmpstrnsi. */
3816 if (!result && cmpstrn_icode != CODE_FOR_nothing)
3818 tree len;
3819 rtx arg3_rtx;
3821 tree len1 = c_strlen (arg1, 1);
3822 tree len2 = c_strlen (arg2, 1);
3824 if (len1)
3825 len1 = size_binop (PLUS_EXPR, ssize_int (1), len1);
3826 if (len2)
3827 len2 = size_binop (PLUS_EXPR, ssize_int (1), len2);
3829 /* If we don't have a constant length for the first, use the length
3830 of the second, if we know it. We don't require a constant for
3831 this case; some cost analysis could be done if both are available
3832 but neither is constant. For now, assume they're equally cheap,
3833 unless one has side effects. If both strings have constant lengths,
3834 use the smaller. */
3836 if (!len1)
3837 len = len2;
3838 else if (!len2)
3839 len = len1;
3840 else if (TREE_SIDE_EFFECTS (len1))
3841 len = len2;
3842 else if (TREE_SIDE_EFFECTS (len2))
3843 len = len1;
3844 else if (TREE_CODE (len1) != INTEGER_CST)
3845 len = len2;
3846 else if (TREE_CODE (len2) != INTEGER_CST)
3847 len = len1;
3848 else if (tree_int_cst_lt (len1, len2))
3849 len = len1;
3850 else
3851 len = len2;
3853 /* If both arguments have side effects, we cannot optimize. */
3854 if (len && !TREE_SIDE_EFFECTS (len))
3856 arg3_rtx = expand_normal (len);
3857 result = expand_cmpstrn_or_cmpmem
3858 (cmpstrn_icode, target, arg1_rtx, arg2_rtx, TREE_TYPE (len),
3859 arg3_rtx, MIN (arg1_align, arg2_align));
3863 if (result)
3865 /* Return the value in the proper mode for this function. */
3866 machine_mode mode = TYPE_MODE (TREE_TYPE (exp));
3867 if (GET_MODE (result) == mode)
3868 return result;
3869 if (target == 0)
3870 return convert_to_mode (mode, result, 0);
3871 convert_move (target, result, 0);
3872 return target;
3875 /* Expand the library call ourselves using a stabilized argument
3876 list to avoid re-evaluating the function's arguments twice. */
3877 fndecl = get_callee_fndecl (exp);
3878 fn = build_call_nofold_loc (EXPR_LOCATION (exp), fndecl, 2, arg1, arg2);
3879 gcc_assert (TREE_CODE (fn) == CALL_EXPR);
3880 CALL_EXPR_TAILCALL (fn) = CALL_EXPR_TAILCALL (exp);
3881 return expand_call (fn, target, target == const0_rtx);
3883 return NULL_RTX;
3886 /* Expand expression EXP, which is a call to the strncmp builtin. Return
3887 NULL_RTX if we failed the caller should emit a normal call, otherwise try to get
3888 the result in TARGET, if convenient. */
3890 static rtx
3891 expand_builtin_strncmp (tree exp, ATTRIBUTE_UNUSED rtx target,
3892 ATTRIBUTE_UNUSED machine_mode mode)
3894 location_t loc ATTRIBUTE_UNUSED = EXPR_LOCATION (exp);
3896 if (!validate_arglist (exp,
3897 POINTER_TYPE, POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
3898 return NULL_RTX;
3900 /* If c_strlen can determine an expression for one of the string
3901 lengths, and it doesn't have side effects, then emit cmpstrnsi
3902 using length MIN(strlen(string)+1, arg3). */
3903 insn_code cmpstrn_icode = direct_optab_handler (cmpstrn_optab, SImode);
3904 if (cmpstrn_icode != CODE_FOR_nothing)
3906 tree len, len1, len2;
3907 rtx arg1_rtx, arg2_rtx, arg3_rtx;
3908 rtx result;
3909 tree fndecl, fn;
3910 tree arg1 = CALL_EXPR_ARG (exp, 0);
3911 tree arg2 = CALL_EXPR_ARG (exp, 1);
3912 tree arg3 = CALL_EXPR_ARG (exp, 2);
3914 unsigned int arg1_align = get_pointer_alignment (arg1) / BITS_PER_UNIT;
3915 unsigned int arg2_align = get_pointer_alignment (arg2) / BITS_PER_UNIT;
3917 len1 = c_strlen (arg1, 1);
3918 len2 = c_strlen (arg2, 1);
3920 if (len1)
3921 len1 = size_binop_loc (loc, PLUS_EXPR, ssize_int (1), len1);
3922 if (len2)
3923 len2 = size_binop_loc (loc, PLUS_EXPR, ssize_int (1), len2);
3925 /* If we don't have a constant length for the first, use the length
3926 of the second, if we know it. We don't require a constant for
3927 this case; some cost analysis could be done if both are available
3928 but neither is constant. For now, assume they're equally cheap,
3929 unless one has side effects. If both strings have constant lengths,
3930 use the smaller. */
3932 if (!len1)
3933 len = len2;
3934 else if (!len2)
3935 len = len1;
3936 else if (TREE_SIDE_EFFECTS (len1))
3937 len = len2;
3938 else if (TREE_SIDE_EFFECTS (len2))
3939 len = len1;
3940 else if (TREE_CODE (len1) != INTEGER_CST)
3941 len = len2;
3942 else if (TREE_CODE (len2) != INTEGER_CST)
3943 len = len1;
3944 else if (tree_int_cst_lt (len1, len2))
3945 len = len1;
3946 else
3947 len = len2;
3949 /* If both arguments have side effects, we cannot optimize. */
3950 if (!len || TREE_SIDE_EFFECTS (len))
3951 return NULL_RTX;
3953 /* The actual new length parameter is MIN(len,arg3). */
3954 len = fold_build2_loc (loc, MIN_EXPR, TREE_TYPE (len), len,
3955 fold_convert_loc (loc, TREE_TYPE (len), arg3));
3957 /* If we don't have POINTER_TYPE, call the function. */
3958 if (arg1_align == 0 || arg2_align == 0)
3959 return NULL_RTX;
3961 /* Stabilize the arguments in case gen_cmpstrnsi fails. */
3962 arg1 = builtin_save_expr (arg1);
3963 arg2 = builtin_save_expr (arg2);
3964 len = builtin_save_expr (len);
3966 arg1_rtx = get_memory_rtx (arg1, len);
3967 arg2_rtx = get_memory_rtx (arg2, len);
3968 arg3_rtx = expand_normal (len);
3969 result = expand_cmpstrn_or_cmpmem (cmpstrn_icode, target, arg1_rtx,
3970 arg2_rtx, TREE_TYPE (len), arg3_rtx,
3971 MIN (arg1_align, arg2_align));
3972 if (result)
3974 /* Return the value in the proper mode for this function. */
3975 mode = TYPE_MODE (TREE_TYPE (exp));
3976 if (GET_MODE (result) == mode)
3977 return result;
3978 if (target == 0)
3979 return convert_to_mode (mode, result, 0);
3980 convert_move (target, result, 0);
3981 return target;
3984 /* Expand the library call ourselves using a stabilized argument
3985 list to avoid re-evaluating the function's arguments twice. */
3986 fndecl = get_callee_fndecl (exp);
3987 fn = build_call_nofold_loc (EXPR_LOCATION (exp), fndecl, 3,
3988 arg1, arg2, len);
3989 gcc_assert (TREE_CODE (fn) == CALL_EXPR);
3990 CALL_EXPR_TAILCALL (fn) = CALL_EXPR_TAILCALL (exp);
3991 return expand_call (fn, target, target == const0_rtx);
3993 return NULL_RTX;
3996 /* Expand a call to __builtin_saveregs, generating the result in TARGET,
3997 if that's convenient. */
4000 expand_builtin_saveregs (void)
4002 rtx val;
4003 rtx_insn *seq;
4005 /* Don't do __builtin_saveregs more than once in a function.
4006 Save the result of the first call and reuse it. */
4007 if (saveregs_value != 0)
4008 return saveregs_value;
4010 /* When this function is called, it means that registers must be
4011 saved on entry to this function. So we migrate the call to the
4012 first insn of this function. */
4014 start_sequence ();
4016 /* Do whatever the machine needs done in this case. */
4017 val = targetm.calls.expand_builtin_saveregs ();
4019 seq = get_insns ();
4020 end_sequence ();
4022 saveregs_value = val;
4024 /* Put the insns after the NOTE that starts the function. If this
4025 is inside a start_sequence, make the outer-level insn chain current, so
4026 the code is placed at the start of the function. */
4027 push_topmost_sequence ();
4028 emit_insn_after (seq, entry_of_function ());
4029 pop_topmost_sequence ();
4031 return val;
4034 /* Expand a call to __builtin_next_arg. */
4036 static rtx
4037 expand_builtin_next_arg (void)
4039 /* Checking arguments is already done in fold_builtin_next_arg
4040 that must be called before this function. */
4041 return expand_binop (ptr_mode, add_optab,
4042 crtl->args.internal_arg_pointer,
4043 crtl->args.arg_offset_rtx,
4044 NULL_RTX, 0, OPTAB_LIB_WIDEN);
4047 /* Make it easier for the backends by protecting the valist argument
4048 from multiple evaluations. */
4050 static tree
4051 stabilize_va_list_loc (location_t loc, tree valist, int needs_lvalue)
4053 tree vatype = targetm.canonical_va_list_type (TREE_TYPE (valist));
4055 /* The current way of determining the type of valist is completely
4056 bogus. We should have the information on the va builtin instead. */
4057 if (!vatype)
4058 vatype = targetm.fn_abi_va_list (cfun->decl);
4060 if (TREE_CODE (vatype) == ARRAY_TYPE)
4062 if (TREE_SIDE_EFFECTS (valist))
4063 valist = save_expr (valist);
4065 /* For this case, the backends will be expecting a pointer to
4066 vatype, but it's possible we've actually been given an array
4067 (an actual TARGET_CANONICAL_VA_LIST_TYPE (valist)).
4068 So fix it. */
4069 if (TREE_CODE (TREE_TYPE (valist)) == ARRAY_TYPE)
4071 tree p1 = build_pointer_type (TREE_TYPE (vatype));
4072 valist = build_fold_addr_expr_with_type_loc (loc, valist, p1);
4075 else
4077 tree pt = build_pointer_type (vatype);
4079 if (! needs_lvalue)
4081 if (! TREE_SIDE_EFFECTS (valist))
4082 return valist;
4084 valist = fold_build1_loc (loc, ADDR_EXPR, pt, valist);
4085 TREE_SIDE_EFFECTS (valist) = 1;
4088 if (TREE_SIDE_EFFECTS (valist))
4089 valist = save_expr (valist);
4090 valist = fold_build2_loc (loc, MEM_REF,
4091 vatype, valist, build_int_cst (pt, 0));
4094 return valist;
4097 /* The "standard" definition of va_list is void*. */
4099 tree
4100 std_build_builtin_va_list (void)
4102 return ptr_type_node;
4105 /* The "standard" abi va_list is va_list_type_node. */
4107 tree
4108 std_fn_abi_va_list (tree fndecl ATTRIBUTE_UNUSED)
4110 return va_list_type_node;
4113 /* The "standard" type of va_list is va_list_type_node. */
4115 tree
4116 std_canonical_va_list_type (tree type)
4118 tree wtype, htype;
4120 if (INDIRECT_REF_P (type))
4121 type = TREE_TYPE (type);
4122 else if (POINTER_TYPE_P (type) && POINTER_TYPE_P (TREE_TYPE (type)))
4123 type = TREE_TYPE (type);
4124 wtype = va_list_type_node;
4125 htype = type;
4126 /* Treat structure va_list types. */
4127 if (TREE_CODE (wtype) == RECORD_TYPE && POINTER_TYPE_P (htype))
4128 htype = TREE_TYPE (htype);
4129 else if (TREE_CODE (wtype) == ARRAY_TYPE)
4131 /* If va_list is an array type, the argument may have decayed
4132 to a pointer type, e.g. by being passed to another function.
4133 In that case, unwrap both types so that we can compare the
4134 underlying records. */
4135 if (TREE_CODE (htype) == ARRAY_TYPE
4136 || POINTER_TYPE_P (htype))
4138 wtype = TREE_TYPE (wtype);
4139 htype = TREE_TYPE (htype);
4142 if (TYPE_MAIN_VARIANT (wtype) == TYPE_MAIN_VARIANT (htype))
4143 return va_list_type_node;
4145 return NULL_TREE;
4148 /* The "standard" implementation of va_start: just assign `nextarg' to
4149 the variable. */
4151 void
4152 std_expand_builtin_va_start (tree valist, rtx nextarg)
4154 rtx va_r = expand_expr (valist, NULL_RTX, VOIDmode, EXPAND_WRITE);
4155 convert_move (va_r, nextarg, 0);
4157 /* We do not have any valid bounds for the pointer, so
4158 just store zero bounds for it. */
4159 if (chkp_function_instrumented_p (current_function_decl))
4160 chkp_expand_bounds_reset_for_mem (valist,
4161 make_tree (TREE_TYPE (valist),
4162 nextarg));
4165 /* Expand EXP, a call to __builtin_va_start. */
4167 static rtx
4168 expand_builtin_va_start (tree exp)
4170 rtx nextarg;
4171 tree valist;
4172 location_t loc = EXPR_LOCATION (exp);
4174 if (call_expr_nargs (exp) < 2)
4176 error_at (loc, "too few arguments to function %<va_start%>");
4177 return const0_rtx;
4180 if (fold_builtin_next_arg (exp, true))
4181 return const0_rtx;
4183 nextarg = expand_builtin_next_arg ();
4184 valist = stabilize_va_list_loc (loc, CALL_EXPR_ARG (exp, 0), 1);
4186 if (targetm.expand_builtin_va_start)
4187 targetm.expand_builtin_va_start (valist, nextarg);
4188 else
4189 std_expand_builtin_va_start (valist, nextarg);
4191 return const0_rtx;
4194 /* Expand EXP, a call to __builtin_va_end. */
4196 static rtx
4197 expand_builtin_va_end (tree exp)
4199 tree valist = CALL_EXPR_ARG (exp, 0);
4201 /* Evaluate for side effects, if needed. I hate macros that don't
4202 do that. */
4203 if (TREE_SIDE_EFFECTS (valist))
4204 expand_expr (valist, const0_rtx, VOIDmode, EXPAND_NORMAL);
4206 return const0_rtx;
4209 /* Expand EXP, a call to __builtin_va_copy. We do this as a
4210 builtin rather than just as an assignment in stdarg.h because of the
4211 nastiness of array-type va_list types. */
4213 static rtx
4214 expand_builtin_va_copy (tree exp)
4216 tree dst, src, t;
4217 location_t loc = EXPR_LOCATION (exp);
4219 dst = CALL_EXPR_ARG (exp, 0);
4220 src = CALL_EXPR_ARG (exp, 1);
4222 dst = stabilize_va_list_loc (loc, dst, 1);
4223 src = stabilize_va_list_loc (loc, src, 0);
4225 gcc_assert (cfun != NULL && cfun->decl != NULL_TREE);
4227 if (TREE_CODE (targetm.fn_abi_va_list (cfun->decl)) != ARRAY_TYPE)
4229 t = build2 (MODIFY_EXPR, targetm.fn_abi_va_list (cfun->decl), dst, src);
4230 TREE_SIDE_EFFECTS (t) = 1;
4231 expand_expr (t, const0_rtx, VOIDmode, EXPAND_NORMAL);
4233 else
4235 rtx dstb, srcb, size;
4237 /* Evaluate to pointers. */
4238 dstb = expand_expr (dst, NULL_RTX, Pmode, EXPAND_NORMAL);
4239 srcb = expand_expr (src, NULL_RTX, Pmode, EXPAND_NORMAL);
4240 size = expand_expr (TYPE_SIZE_UNIT (targetm.fn_abi_va_list (cfun->decl)),
4241 NULL_RTX, VOIDmode, EXPAND_NORMAL);
4243 dstb = convert_memory_address (Pmode, dstb);
4244 srcb = convert_memory_address (Pmode, srcb);
4246 /* "Dereference" to BLKmode memories. */
4247 dstb = gen_rtx_MEM (BLKmode, dstb);
4248 set_mem_alias_set (dstb, get_alias_set (TREE_TYPE (TREE_TYPE (dst))));
4249 set_mem_align (dstb, TYPE_ALIGN (targetm.fn_abi_va_list (cfun->decl)));
4250 srcb = gen_rtx_MEM (BLKmode, srcb);
4251 set_mem_alias_set (srcb, get_alias_set (TREE_TYPE (TREE_TYPE (src))));
4252 set_mem_align (srcb, TYPE_ALIGN (targetm.fn_abi_va_list (cfun->decl)));
4254 /* Copy. */
4255 emit_block_move (dstb, srcb, size, BLOCK_OP_NORMAL);
4258 return const0_rtx;
4261 /* Expand a call to one of the builtin functions __builtin_frame_address or
4262 __builtin_return_address. */
4264 static rtx
4265 expand_builtin_frame_address (tree fndecl, tree exp)
4267 /* The argument must be a nonnegative integer constant.
4268 It counts the number of frames to scan up the stack.
4269 The value is either the frame pointer value or the return
4270 address saved in that frame. */
4271 if (call_expr_nargs (exp) == 0)
4272 /* Warning about missing arg was already issued. */
4273 return const0_rtx;
4274 else if (! tree_fits_uhwi_p (CALL_EXPR_ARG (exp, 0)))
4276 error ("invalid argument to %qD", fndecl);
4277 return const0_rtx;
4279 else
4281 /* Number of frames to scan up the stack. */
4282 unsigned HOST_WIDE_INT count = tree_to_uhwi (CALL_EXPR_ARG (exp, 0));
4284 rtx tem = expand_builtin_return_addr (DECL_FUNCTION_CODE (fndecl), count);
4286 /* Some ports cannot access arbitrary stack frames. */
4287 if (tem == NULL)
4289 warning (0, "unsupported argument to %qD", fndecl);
4290 return const0_rtx;
4293 if (count)
4295 /* Warn since no effort is made to ensure that any frame
4296 beyond the current one exists or can be safely reached. */
4297 warning (OPT_Wframe_address, "calling %qD with "
4298 "a nonzero argument is unsafe", fndecl);
4301 /* For __builtin_frame_address, return what we've got. */
4302 if (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_FRAME_ADDRESS)
4303 return tem;
4305 if (!REG_P (tem)
4306 && ! CONSTANT_P (tem))
4307 tem = copy_addr_to_reg (tem);
4308 return tem;
4312 /* Expand EXP, a call to the alloca builtin. Return NULL_RTX if we
4313 failed and the caller should emit a normal call. CANNOT_ACCUMULATE
4314 is the same as for allocate_dynamic_stack_space. */
4316 static rtx
4317 expand_builtin_alloca (tree exp, bool cannot_accumulate)
4319 rtx op0;
4320 rtx result;
4321 bool valid_arglist;
4322 unsigned int align;
4323 bool alloca_with_align = (DECL_FUNCTION_CODE (get_callee_fndecl (exp))
4324 == BUILT_IN_ALLOCA_WITH_ALIGN);
4326 valid_arglist
4327 = (alloca_with_align
4328 ? validate_arglist (exp, INTEGER_TYPE, INTEGER_TYPE, VOID_TYPE)
4329 : validate_arglist (exp, INTEGER_TYPE, VOID_TYPE));
4331 if (!valid_arglist)
4332 return NULL_RTX;
4334 /* Compute the argument. */
4335 op0 = expand_normal (CALL_EXPR_ARG (exp, 0));
4337 /* Compute the alignment. */
4338 align = (alloca_with_align
4339 ? TREE_INT_CST_LOW (CALL_EXPR_ARG (exp, 1))
4340 : BIGGEST_ALIGNMENT);
4342 /* Allocate the desired space. */
4343 result = allocate_dynamic_stack_space (op0, 0, align, cannot_accumulate);
4344 result = convert_memory_address (ptr_mode, result);
4346 return result;
4349 /* Expand a call to bswap builtin in EXP.
4350 Return NULL_RTX if a normal call should be emitted rather than expanding the
4351 function in-line. If convenient, the result should be placed in TARGET.
4352 SUBTARGET may be used as the target for computing one of EXP's operands. */
4354 static rtx
4355 expand_builtin_bswap (machine_mode target_mode, tree exp, rtx target,
4356 rtx subtarget)
4358 tree arg;
4359 rtx op0;
4361 if (!validate_arglist (exp, INTEGER_TYPE, VOID_TYPE))
4362 return NULL_RTX;
4364 arg = CALL_EXPR_ARG (exp, 0);
4365 op0 = expand_expr (arg,
4366 subtarget && GET_MODE (subtarget) == target_mode
4367 ? subtarget : NULL_RTX,
4368 target_mode, EXPAND_NORMAL);
4369 if (GET_MODE (op0) != target_mode)
4370 op0 = convert_to_mode (target_mode, op0, 1);
4372 target = expand_unop (target_mode, bswap_optab, op0, target, 1);
4374 gcc_assert (target);
4376 return convert_to_mode (target_mode, target, 1);
4379 /* Expand a call to a unary builtin in EXP.
4380 Return NULL_RTX if a normal call should be emitted rather than expanding the
4381 function in-line. If convenient, the result should be placed in TARGET.
4382 SUBTARGET may be used as the target for computing one of EXP's operands. */
4384 static rtx
4385 expand_builtin_unop (machine_mode target_mode, tree exp, rtx target,
4386 rtx subtarget, optab op_optab)
4388 rtx op0;
4390 if (!validate_arglist (exp, INTEGER_TYPE, VOID_TYPE))
4391 return NULL_RTX;
4393 /* Compute the argument. */
4394 op0 = expand_expr (CALL_EXPR_ARG (exp, 0),
4395 (subtarget
4396 && (TYPE_MODE (TREE_TYPE (CALL_EXPR_ARG (exp, 0)))
4397 == GET_MODE (subtarget))) ? subtarget : NULL_RTX,
4398 VOIDmode, EXPAND_NORMAL);
4399 /* Compute op, into TARGET if possible.
4400 Set TARGET to wherever the result comes back. */
4401 target = expand_unop (TYPE_MODE (TREE_TYPE (CALL_EXPR_ARG (exp, 0))),
4402 op_optab, op0, target, op_optab != clrsb_optab);
4403 gcc_assert (target);
4405 return convert_to_mode (target_mode, target, 0);
4408 /* Expand a call to __builtin_expect. We just return our argument
4409 as the builtin_expect semantic should've been already executed by
4410 tree branch prediction pass. */
4412 static rtx
4413 expand_builtin_expect (tree exp, rtx target)
4415 tree arg;
4417 if (call_expr_nargs (exp) < 2)
4418 return const0_rtx;
4419 arg = CALL_EXPR_ARG (exp, 0);
4421 target = expand_expr (arg, target, VOIDmode, EXPAND_NORMAL);
4422 /* When guessing was done, the hints should be already stripped away. */
4423 gcc_assert (!flag_guess_branch_prob
4424 || optimize == 0 || seen_error ());
4425 return target;
4428 /* Expand a call to __builtin_assume_aligned. We just return our first
4429 argument as the builtin_assume_aligned semantic should've been already
4430 executed by CCP. */
4432 static rtx
4433 expand_builtin_assume_aligned (tree exp, rtx target)
4435 if (call_expr_nargs (exp) < 2)
4436 return const0_rtx;
4437 target = expand_expr (CALL_EXPR_ARG (exp, 0), target, VOIDmode,
4438 EXPAND_NORMAL);
4439 gcc_assert (!TREE_SIDE_EFFECTS (CALL_EXPR_ARG (exp, 1))
4440 && (call_expr_nargs (exp) < 3
4441 || !TREE_SIDE_EFFECTS (CALL_EXPR_ARG (exp, 2))));
4442 return target;
4445 void
4446 expand_builtin_trap (void)
4448 if (targetm.have_trap ())
4450 rtx_insn *insn = emit_insn (targetm.gen_trap ());
4451 /* For trap insns when not accumulating outgoing args force
4452 REG_ARGS_SIZE note to prevent crossjumping of calls with
4453 different args sizes. */
4454 if (!ACCUMULATE_OUTGOING_ARGS)
4455 add_reg_note (insn, REG_ARGS_SIZE, GEN_INT (stack_pointer_delta));
4457 else
4458 emit_library_call (abort_libfunc, LCT_NORETURN, VOIDmode, 0);
4459 emit_barrier ();
4462 /* Expand a call to __builtin_unreachable. We do nothing except emit
4463 a barrier saying that control flow will not pass here.
4465 It is the responsibility of the program being compiled to ensure
4466 that control flow does never reach __builtin_unreachable. */
4467 static void
4468 expand_builtin_unreachable (void)
4470 emit_barrier ();
4473 /* Expand EXP, a call to fabs, fabsf or fabsl.
4474 Return NULL_RTX if a normal call should be emitted rather than expanding
4475 the function inline. If convenient, the result should be placed
4476 in TARGET. SUBTARGET may be used as the target for computing
4477 the operand. */
4479 static rtx
4480 expand_builtin_fabs (tree exp, rtx target, rtx subtarget)
4482 machine_mode mode;
4483 tree arg;
4484 rtx op0;
4486 if (!validate_arglist (exp, REAL_TYPE, VOID_TYPE))
4487 return NULL_RTX;
4489 arg = CALL_EXPR_ARG (exp, 0);
4490 CALL_EXPR_ARG (exp, 0) = arg = builtin_save_expr (arg);
4491 mode = TYPE_MODE (TREE_TYPE (arg));
4492 op0 = expand_expr (arg, subtarget, VOIDmode, EXPAND_NORMAL);
4493 return expand_abs (mode, op0, target, 0, safe_from_p (target, arg, 1));
4496 /* Expand EXP, a call to copysign, copysignf, or copysignl.
4497 Return NULL is a normal call should be emitted rather than expanding the
4498 function inline. If convenient, the result should be placed in TARGET.
4499 SUBTARGET may be used as the target for computing the operand. */
4501 static rtx
4502 expand_builtin_copysign (tree exp, rtx target, rtx subtarget)
4504 rtx op0, op1;
4505 tree arg;
4507 if (!validate_arglist (exp, REAL_TYPE, REAL_TYPE, VOID_TYPE))
4508 return NULL_RTX;
4510 arg = CALL_EXPR_ARG (exp, 0);
4511 op0 = expand_expr (arg, subtarget, VOIDmode, EXPAND_NORMAL);
4513 arg = CALL_EXPR_ARG (exp, 1);
4514 op1 = expand_normal (arg);
4516 return expand_copysign (op0, op1, target);
4519 /* Expand a call to __builtin___clear_cache. */
4521 static rtx
4522 expand_builtin___clear_cache (tree exp)
4524 if (!targetm.code_for_clear_cache)
4526 #ifdef CLEAR_INSN_CACHE
4527 /* There is no "clear_cache" insn, and __clear_cache() in libgcc
4528 does something. Just do the default expansion to a call to
4529 __clear_cache(). */
4530 return NULL_RTX;
4531 #else
4532 /* There is no "clear_cache" insn, and __clear_cache() in libgcc
4533 does nothing. There is no need to call it. Do nothing. */
4534 return const0_rtx;
4535 #endif /* CLEAR_INSN_CACHE */
4538 /* We have a "clear_cache" insn, and it will handle everything. */
4539 tree begin, end;
4540 rtx begin_rtx, end_rtx;
4542 /* We must not expand to a library call. If we did, any
4543 fallback library function in libgcc that might contain a call to
4544 __builtin___clear_cache() would recurse infinitely. */
4545 if (!validate_arglist (exp, POINTER_TYPE, POINTER_TYPE, VOID_TYPE))
4547 error ("both arguments to %<__builtin___clear_cache%> must be pointers");
4548 return const0_rtx;
4551 if (targetm.have_clear_cache ())
4553 struct expand_operand ops[2];
4555 begin = CALL_EXPR_ARG (exp, 0);
4556 begin_rtx = expand_expr (begin, NULL_RTX, Pmode, EXPAND_NORMAL);
4558 end = CALL_EXPR_ARG (exp, 1);
4559 end_rtx = expand_expr (end, NULL_RTX, Pmode, EXPAND_NORMAL);
4561 create_address_operand (&ops[0], begin_rtx);
4562 create_address_operand (&ops[1], end_rtx);
4563 if (maybe_expand_insn (targetm.code_for_clear_cache, 2, ops))
4564 return const0_rtx;
4566 return const0_rtx;
4569 /* Given a trampoline address, make sure it satisfies TRAMPOLINE_ALIGNMENT. */
4571 static rtx
4572 round_trampoline_addr (rtx tramp)
4574 rtx temp, addend, mask;
4576 /* If we don't need too much alignment, we'll have been guaranteed
4577 proper alignment by get_trampoline_type. */
4578 if (TRAMPOLINE_ALIGNMENT <= STACK_BOUNDARY)
4579 return tramp;
4581 /* Round address up to desired boundary. */
4582 temp = gen_reg_rtx (Pmode);
4583 addend = gen_int_mode (TRAMPOLINE_ALIGNMENT / BITS_PER_UNIT - 1, Pmode);
4584 mask = gen_int_mode (-TRAMPOLINE_ALIGNMENT / BITS_PER_UNIT, Pmode);
4586 temp = expand_simple_binop (Pmode, PLUS, tramp, addend,
4587 temp, 0, OPTAB_LIB_WIDEN);
4588 tramp = expand_simple_binop (Pmode, AND, temp, mask,
4589 temp, 0, OPTAB_LIB_WIDEN);
4591 return tramp;
4594 static rtx
4595 expand_builtin_init_trampoline (tree exp, bool onstack)
4597 tree t_tramp, t_func, t_chain;
4598 rtx m_tramp, r_tramp, r_chain, tmp;
4600 if (!validate_arglist (exp, POINTER_TYPE, POINTER_TYPE,
4601 POINTER_TYPE, VOID_TYPE))
4602 return NULL_RTX;
4604 t_tramp = CALL_EXPR_ARG (exp, 0);
4605 t_func = CALL_EXPR_ARG (exp, 1);
4606 t_chain = CALL_EXPR_ARG (exp, 2);
4608 r_tramp = expand_normal (t_tramp);
4609 m_tramp = gen_rtx_MEM (BLKmode, r_tramp);
4610 MEM_NOTRAP_P (m_tramp) = 1;
4612 /* If ONSTACK, the TRAMP argument should be the address of a field
4613 within the local function's FRAME decl. Either way, let's see if
4614 we can fill in the MEM_ATTRs for this memory. */
4615 if (TREE_CODE (t_tramp) == ADDR_EXPR)
4616 set_mem_attributes (m_tramp, TREE_OPERAND (t_tramp, 0), true);
4618 /* Creator of a heap trampoline is responsible for making sure the
4619 address is aligned to at least STACK_BOUNDARY. Normally malloc
4620 will ensure this anyhow. */
4621 tmp = round_trampoline_addr (r_tramp);
4622 if (tmp != r_tramp)
4624 m_tramp = change_address (m_tramp, BLKmode, tmp);
4625 set_mem_align (m_tramp, TRAMPOLINE_ALIGNMENT);
4626 set_mem_size (m_tramp, TRAMPOLINE_SIZE);
4629 /* The FUNC argument should be the address of the nested function.
4630 Extract the actual function decl to pass to the hook. */
4631 gcc_assert (TREE_CODE (t_func) == ADDR_EXPR);
4632 t_func = TREE_OPERAND (t_func, 0);
4633 gcc_assert (TREE_CODE (t_func) == FUNCTION_DECL);
4635 r_chain = expand_normal (t_chain);
4637 /* Generate insns to initialize the trampoline. */
4638 targetm.calls.trampoline_init (m_tramp, t_func, r_chain);
4640 if (onstack)
4642 trampolines_created = 1;
4644 warning_at (DECL_SOURCE_LOCATION (t_func), OPT_Wtrampolines,
4645 "trampoline generated for nested function %qD", t_func);
4648 return const0_rtx;
4651 static rtx
4652 expand_builtin_adjust_trampoline (tree exp)
4654 rtx tramp;
4656 if (!validate_arglist (exp, POINTER_TYPE, VOID_TYPE))
4657 return NULL_RTX;
4659 tramp = expand_normal (CALL_EXPR_ARG (exp, 0));
4660 tramp = round_trampoline_addr (tramp);
4661 if (targetm.calls.trampoline_adjust_address)
4662 tramp = targetm.calls.trampoline_adjust_address (tramp);
4664 return tramp;
4667 /* Expand the call EXP to the built-in signbit, signbitf or signbitl
4668 function. The function first checks whether the back end provides
4669 an insn to implement signbit for the respective mode. If not, it
4670 checks whether the floating point format of the value is such that
4671 the sign bit can be extracted. If that is not the case, error out.
4672 EXP is the expression that is a call to the builtin function; if
4673 convenient, the result should be placed in TARGET. */
4674 static rtx
4675 expand_builtin_signbit (tree exp, rtx target)
4677 const struct real_format *fmt;
4678 machine_mode fmode, imode, rmode;
4679 tree arg;
4680 int word, bitpos;
4681 enum insn_code icode;
4682 rtx temp;
4683 location_t loc = EXPR_LOCATION (exp);
4685 if (!validate_arglist (exp, REAL_TYPE, VOID_TYPE))
4686 return NULL_RTX;
4688 arg = CALL_EXPR_ARG (exp, 0);
4689 fmode = TYPE_MODE (TREE_TYPE (arg));
4690 rmode = TYPE_MODE (TREE_TYPE (exp));
4691 fmt = REAL_MODE_FORMAT (fmode);
4693 arg = builtin_save_expr (arg);
4695 /* Expand the argument yielding a RTX expression. */
4696 temp = expand_normal (arg);
4698 /* Check if the back end provides an insn that handles signbit for the
4699 argument's mode. */
4700 icode = optab_handler (signbit_optab, fmode);
4701 if (icode != CODE_FOR_nothing)
4703 rtx_insn *last = get_last_insn ();
4704 target = gen_reg_rtx (TYPE_MODE (TREE_TYPE (exp)));
4705 if (maybe_emit_unop_insn (icode, target, temp, UNKNOWN))
4706 return target;
4707 delete_insns_since (last);
4710 /* For floating point formats without a sign bit, implement signbit
4711 as "ARG < 0.0". */
4712 bitpos = fmt->signbit_ro;
4713 if (bitpos < 0)
4715 /* But we can't do this if the format supports signed zero. */
4716 gcc_assert (!fmt->has_signed_zero || !HONOR_SIGNED_ZEROS (fmode));
4718 arg = fold_build2_loc (loc, LT_EXPR, TREE_TYPE (exp), arg,
4719 build_real (TREE_TYPE (arg), dconst0));
4720 return expand_expr (arg, target, VOIDmode, EXPAND_NORMAL);
4723 if (GET_MODE_SIZE (fmode) <= UNITS_PER_WORD)
4725 imode = int_mode_for_mode (fmode);
4726 gcc_assert (imode != BLKmode);
4727 temp = gen_lowpart (imode, temp);
4729 else
4731 imode = word_mode;
4732 /* Handle targets with different FP word orders. */
4733 if (FLOAT_WORDS_BIG_ENDIAN)
4734 word = (GET_MODE_BITSIZE (fmode) - bitpos) / BITS_PER_WORD;
4735 else
4736 word = bitpos / BITS_PER_WORD;
4737 temp = operand_subword_force (temp, word, fmode);
4738 bitpos = bitpos % BITS_PER_WORD;
4741 /* Force the intermediate word_mode (or narrower) result into a
4742 register. This avoids attempting to create paradoxical SUBREGs
4743 of floating point modes below. */
4744 temp = force_reg (imode, temp);
4746 /* If the bitpos is within the "result mode" lowpart, the operation
4747 can be implement with a single bitwise AND. Otherwise, we need
4748 a right shift and an AND. */
4750 if (bitpos < GET_MODE_BITSIZE (rmode))
4752 wide_int mask = wi::set_bit_in_zero (bitpos, GET_MODE_PRECISION (rmode));
4754 if (GET_MODE_SIZE (imode) > GET_MODE_SIZE (rmode))
4755 temp = gen_lowpart (rmode, temp);
4756 temp = expand_binop (rmode, and_optab, temp,
4757 immed_wide_int_const (mask, rmode),
4758 NULL_RTX, 1, OPTAB_LIB_WIDEN);
4760 else
4762 /* Perform a logical right shift to place the signbit in the least
4763 significant bit, then truncate the result to the desired mode
4764 and mask just this bit. */
4765 temp = expand_shift (RSHIFT_EXPR, imode, temp, bitpos, NULL_RTX, 1);
4766 temp = gen_lowpart (rmode, temp);
4767 temp = expand_binop (rmode, and_optab, temp, const1_rtx,
4768 NULL_RTX, 1, OPTAB_LIB_WIDEN);
4771 return temp;
4774 /* Expand fork or exec calls. TARGET is the desired target of the
4775 call. EXP is the call. FN is the
4776 identificator of the actual function. IGNORE is nonzero if the
4777 value is to be ignored. */
4779 static rtx
4780 expand_builtin_fork_or_exec (tree fn, tree exp, rtx target, int ignore)
4782 tree id, decl;
4783 tree call;
4785 /* If we are not profiling, just call the function. */
4786 if (!profile_arc_flag)
4787 return NULL_RTX;
4789 /* Otherwise call the wrapper. This should be equivalent for the rest of
4790 compiler, so the code does not diverge, and the wrapper may run the
4791 code necessary for keeping the profiling sane. */
4793 switch (DECL_FUNCTION_CODE (fn))
4795 case BUILT_IN_FORK:
4796 id = get_identifier ("__gcov_fork");
4797 break;
4799 case BUILT_IN_EXECL:
4800 id = get_identifier ("__gcov_execl");
4801 break;
4803 case BUILT_IN_EXECV:
4804 id = get_identifier ("__gcov_execv");
4805 break;
4807 case BUILT_IN_EXECLP:
4808 id = get_identifier ("__gcov_execlp");
4809 break;
4811 case BUILT_IN_EXECLE:
4812 id = get_identifier ("__gcov_execle");
4813 break;
4815 case BUILT_IN_EXECVP:
4816 id = get_identifier ("__gcov_execvp");
4817 break;
4819 case BUILT_IN_EXECVE:
4820 id = get_identifier ("__gcov_execve");
4821 break;
4823 default:
4824 gcc_unreachable ();
4827 decl = build_decl (DECL_SOURCE_LOCATION (fn),
4828 FUNCTION_DECL, id, TREE_TYPE (fn));
4829 DECL_EXTERNAL (decl) = 1;
4830 TREE_PUBLIC (decl) = 1;
4831 DECL_ARTIFICIAL (decl) = 1;
4832 TREE_NOTHROW (decl) = 1;
4833 DECL_VISIBILITY (decl) = VISIBILITY_DEFAULT;
4834 DECL_VISIBILITY_SPECIFIED (decl) = 1;
4835 call = rewrite_call_expr (EXPR_LOCATION (exp), exp, 0, decl, 0);
4836 return expand_call (call, target, ignore);
4841 /* Reconstitute a mode for a __sync intrinsic operation. Since the type of
4842 the pointer in these functions is void*, the tree optimizers may remove
4843 casts. The mode computed in expand_builtin isn't reliable either, due
4844 to __sync_bool_compare_and_swap.
4846 FCODE_DIFF should be fcode - base, where base is the FOO_1 code for the
4847 group of builtins. This gives us log2 of the mode size. */
4849 static inline machine_mode
4850 get_builtin_sync_mode (int fcode_diff)
4852 /* The size is not negotiable, so ask not to get BLKmode in return
4853 if the target indicates that a smaller size would be better. */
4854 return mode_for_size (BITS_PER_UNIT << fcode_diff, MODE_INT, 0);
4857 /* Expand the memory expression LOC and return the appropriate memory operand
4858 for the builtin_sync operations. */
4860 static rtx
4861 get_builtin_sync_mem (tree loc, machine_mode mode)
4863 rtx addr, mem;
4865 addr = expand_expr (loc, NULL_RTX, ptr_mode, EXPAND_SUM);
4866 addr = convert_memory_address (Pmode, addr);
4868 /* Note that we explicitly do not want any alias information for this
4869 memory, so that we kill all other live memories. Otherwise we don't
4870 satisfy the full barrier semantics of the intrinsic. */
4871 mem = validize_mem (gen_rtx_MEM (mode, addr));
4873 /* The alignment needs to be at least according to that of the mode. */
4874 set_mem_align (mem, MAX (GET_MODE_ALIGNMENT (mode),
4875 get_pointer_alignment (loc)));
4876 set_mem_alias_set (mem, ALIAS_SET_MEMORY_BARRIER);
4877 MEM_VOLATILE_P (mem) = 1;
4879 return mem;
4882 /* Make sure an argument is in the right mode.
4883 EXP is the tree argument.
4884 MODE is the mode it should be in. */
4886 static rtx
4887 expand_expr_force_mode (tree exp, machine_mode mode)
4889 rtx val;
4890 machine_mode old_mode;
4892 val = expand_expr (exp, NULL_RTX, mode, EXPAND_NORMAL);
4893 /* If VAL is promoted to a wider mode, convert it back to MODE. Take care
4894 of CONST_INTs, where we know the old_mode only from the call argument. */
4896 old_mode = GET_MODE (val);
4897 if (old_mode == VOIDmode)
4898 old_mode = TYPE_MODE (TREE_TYPE (exp));
4899 val = convert_modes (mode, old_mode, val, 1);
4900 return val;
4904 /* Expand the __sync_xxx_and_fetch and __sync_fetch_and_xxx intrinsics.
4905 EXP is the CALL_EXPR. CODE is the rtx code
4906 that corresponds to the arithmetic or logical operation from the name;
4907 an exception here is that NOT actually means NAND. TARGET is an optional
4908 place for us to store the results; AFTER is true if this is the
4909 fetch_and_xxx form. */
4911 static rtx
4912 expand_builtin_sync_operation (machine_mode mode, tree exp,
4913 enum rtx_code code, bool after,
4914 rtx target)
4916 rtx val, mem;
4917 location_t loc = EXPR_LOCATION (exp);
4919 if (code == NOT && warn_sync_nand)
4921 tree fndecl = get_callee_fndecl (exp);
4922 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
4924 static bool warned_f_a_n, warned_n_a_f;
4926 switch (fcode)
4928 case BUILT_IN_SYNC_FETCH_AND_NAND_1:
4929 case BUILT_IN_SYNC_FETCH_AND_NAND_2:
4930 case BUILT_IN_SYNC_FETCH_AND_NAND_4:
4931 case BUILT_IN_SYNC_FETCH_AND_NAND_8:
4932 case BUILT_IN_SYNC_FETCH_AND_NAND_16:
4933 if (warned_f_a_n)
4934 break;
4936 fndecl = builtin_decl_implicit (BUILT_IN_SYNC_FETCH_AND_NAND_N);
4937 inform (loc, "%qD changed semantics in GCC 4.4", fndecl);
4938 warned_f_a_n = true;
4939 break;
4941 case BUILT_IN_SYNC_NAND_AND_FETCH_1:
4942 case BUILT_IN_SYNC_NAND_AND_FETCH_2:
4943 case BUILT_IN_SYNC_NAND_AND_FETCH_4:
4944 case BUILT_IN_SYNC_NAND_AND_FETCH_8:
4945 case BUILT_IN_SYNC_NAND_AND_FETCH_16:
4946 if (warned_n_a_f)
4947 break;
4949 fndecl = builtin_decl_implicit (BUILT_IN_SYNC_NAND_AND_FETCH_N);
4950 inform (loc, "%qD changed semantics in GCC 4.4", fndecl);
4951 warned_n_a_f = true;
4952 break;
4954 default:
4955 gcc_unreachable ();
4959 /* Expand the operands. */
4960 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
4961 val = expand_expr_force_mode (CALL_EXPR_ARG (exp, 1), mode);
4963 return expand_atomic_fetch_op (target, mem, val, code, MEMMODEL_SYNC_SEQ_CST,
4964 after);
4967 /* Expand the __sync_val_compare_and_swap and __sync_bool_compare_and_swap
4968 intrinsics. EXP is the CALL_EXPR. IS_BOOL is
4969 true if this is the boolean form. TARGET is a place for us to store the
4970 results; this is NOT optional if IS_BOOL is true. */
4972 static rtx
4973 expand_builtin_compare_and_swap (machine_mode mode, tree exp,
4974 bool is_bool, rtx target)
4976 rtx old_val, new_val, mem;
4977 rtx *pbool, *poval;
4979 /* Expand the operands. */
4980 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
4981 old_val = expand_expr_force_mode (CALL_EXPR_ARG (exp, 1), mode);
4982 new_val = expand_expr_force_mode (CALL_EXPR_ARG (exp, 2), mode);
4984 pbool = poval = NULL;
4985 if (target != const0_rtx)
4987 if (is_bool)
4988 pbool = &target;
4989 else
4990 poval = &target;
4992 if (!expand_atomic_compare_and_swap (pbool, poval, mem, old_val, new_val,
4993 false, MEMMODEL_SYNC_SEQ_CST,
4994 MEMMODEL_SYNC_SEQ_CST))
4995 return NULL_RTX;
4997 return target;
5000 /* Expand the __sync_lock_test_and_set intrinsic. Note that the most
5001 general form is actually an atomic exchange, and some targets only
5002 support a reduced form with the second argument being a constant 1.
5003 EXP is the CALL_EXPR; TARGET is an optional place for us to store
5004 the results. */
5006 static rtx
5007 expand_builtin_sync_lock_test_and_set (machine_mode mode, tree exp,
5008 rtx target)
5010 rtx val, mem;
5012 /* Expand the operands. */
5013 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5014 val = expand_expr_force_mode (CALL_EXPR_ARG (exp, 1), mode);
5016 return expand_sync_lock_test_and_set (target, mem, val);
5019 /* Expand the __sync_lock_release intrinsic. EXP is the CALL_EXPR. */
5021 static void
5022 expand_builtin_sync_lock_release (machine_mode mode, tree exp)
5024 rtx mem;
5026 /* Expand the operands. */
5027 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5029 expand_atomic_store (mem, const0_rtx, MEMMODEL_SYNC_RELEASE, true);
5032 /* Given an integer representing an ``enum memmodel'', verify its
5033 correctness and return the memory model enum. */
5035 static enum memmodel
5036 get_memmodel (tree exp)
5038 rtx op;
5039 unsigned HOST_WIDE_INT val;
5040 source_location loc
5041 = expansion_point_location_if_in_system_header (input_location);
5043 /* If the parameter is not a constant, it's a run time value so we'll just
5044 convert it to MEMMODEL_SEQ_CST to avoid annoying runtime checking. */
5045 if (TREE_CODE (exp) != INTEGER_CST)
5046 return MEMMODEL_SEQ_CST;
5048 op = expand_normal (exp);
5050 val = INTVAL (op);
5051 if (targetm.memmodel_check)
5052 val = targetm.memmodel_check (val);
5053 else if (val & ~MEMMODEL_MASK)
5055 warning_at (loc, OPT_Winvalid_memory_model,
5056 "unknown architecture specifier in memory model to builtin");
5057 return MEMMODEL_SEQ_CST;
5060 /* Should never see a user explicit SYNC memodel model, so >= LAST works. */
5061 if (memmodel_base (val) >= MEMMODEL_LAST)
5063 warning_at (loc, OPT_Winvalid_memory_model,
5064 "invalid memory model argument to builtin");
5065 return MEMMODEL_SEQ_CST;
5068 /* Workaround for Bugzilla 59448. GCC doesn't track consume properly, so
5069 be conservative and promote consume to acquire. */
5070 if (val == MEMMODEL_CONSUME)
5071 val = MEMMODEL_ACQUIRE;
5073 return (enum memmodel) val;
5076 /* Expand the __atomic_exchange intrinsic:
5077 TYPE __atomic_exchange (TYPE *object, TYPE desired, enum memmodel)
5078 EXP is the CALL_EXPR.
5079 TARGET is an optional place for us to store the results. */
5081 static rtx
5082 expand_builtin_atomic_exchange (machine_mode mode, tree exp, rtx target)
5084 rtx val, mem;
5085 enum memmodel model;
5087 model = get_memmodel (CALL_EXPR_ARG (exp, 2));
5089 if (!flag_inline_atomics)
5090 return NULL_RTX;
5092 /* Expand the operands. */
5093 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5094 val = expand_expr_force_mode (CALL_EXPR_ARG (exp, 1), mode);
5096 return expand_atomic_exchange (target, mem, val, model);
5099 /* Expand the __atomic_compare_exchange intrinsic:
5100 bool __atomic_compare_exchange (TYPE *object, TYPE *expect,
5101 TYPE desired, BOOL weak,
5102 enum memmodel success,
5103 enum memmodel failure)
5104 EXP is the CALL_EXPR.
5105 TARGET is an optional place for us to store the results. */
5107 static rtx
5108 expand_builtin_atomic_compare_exchange (machine_mode mode, tree exp,
5109 rtx target)
5111 rtx expect, desired, mem, oldval;
5112 rtx_code_label *label;
5113 enum memmodel success, failure;
5114 tree weak;
5115 bool is_weak;
5116 source_location loc
5117 = expansion_point_location_if_in_system_header (input_location);
5119 success = get_memmodel (CALL_EXPR_ARG (exp, 4));
5120 failure = get_memmodel (CALL_EXPR_ARG (exp, 5));
5122 if (failure > success)
5124 warning_at (loc, OPT_Winvalid_memory_model,
5125 "failure memory model cannot be stronger than success "
5126 "memory model for %<__atomic_compare_exchange%>");
5127 success = MEMMODEL_SEQ_CST;
5130 if (is_mm_release (failure) || is_mm_acq_rel (failure))
5132 warning_at (loc, OPT_Winvalid_memory_model,
5133 "invalid failure memory model for "
5134 "%<__atomic_compare_exchange%>");
5135 failure = MEMMODEL_SEQ_CST;
5136 success = MEMMODEL_SEQ_CST;
5140 if (!flag_inline_atomics)
5141 return NULL_RTX;
5143 /* Expand the operands. */
5144 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5146 expect = expand_normal (CALL_EXPR_ARG (exp, 1));
5147 expect = convert_memory_address (Pmode, expect);
5148 expect = gen_rtx_MEM (mode, expect);
5149 desired = expand_expr_force_mode (CALL_EXPR_ARG (exp, 2), mode);
5151 weak = CALL_EXPR_ARG (exp, 3);
5152 is_weak = false;
5153 if (tree_fits_shwi_p (weak) && tree_to_shwi (weak) != 0)
5154 is_weak = true;
5156 if (target == const0_rtx)
5157 target = NULL;
5159 /* Lest the rtl backend create a race condition with an imporoper store
5160 to memory, always create a new pseudo for OLDVAL. */
5161 oldval = NULL;
5163 if (!expand_atomic_compare_and_swap (&target, &oldval, mem, expect, desired,
5164 is_weak, success, failure))
5165 return NULL_RTX;
5167 /* Conditionally store back to EXPECT, lest we create a race condition
5168 with an improper store to memory. */
5169 /* ??? With a rearrangement of atomics at the gimple level, we can handle
5170 the normal case where EXPECT is totally private, i.e. a register. At
5171 which point the store can be unconditional. */
5172 label = gen_label_rtx ();
5173 emit_cmp_and_jump_insns (target, const0_rtx, NE, NULL,
5174 GET_MODE (target), 1, label);
5175 emit_move_insn (expect, oldval);
5176 emit_label (label);
5178 return target;
5181 /* Expand the __atomic_load intrinsic:
5182 TYPE __atomic_load (TYPE *object, enum memmodel)
5183 EXP is the CALL_EXPR.
5184 TARGET is an optional place for us to store the results. */
5186 static rtx
5187 expand_builtin_atomic_load (machine_mode mode, tree exp, rtx target)
5189 rtx mem;
5190 enum memmodel model;
5192 model = get_memmodel (CALL_EXPR_ARG (exp, 1));
5193 if (is_mm_release (model) || is_mm_acq_rel (model))
5195 source_location loc
5196 = expansion_point_location_if_in_system_header (input_location);
5197 warning_at (loc, OPT_Winvalid_memory_model,
5198 "invalid memory model for %<__atomic_load%>");
5199 model = MEMMODEL_SEQ_CST;
5202 if (!flag_inline_atomics)
5203 return NULL_RTX;
5205 /* Expand the operand. */
5206 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5208 return expand_atomic_load (target, mem, model);
5212 /* Expand the __atomic_store intrinsic:
5213 void __atomic_store (TYPE *object, TYPE desired, enum memmodel)
5214 EXP is the CALL_EXPR.
5215 TARGET is an optional place for us to store the results. */
5217 static rtx
5218 expand_builtin_atomic_store (machine_mode mode, tree exp)
5220 rtx mem, val;
5221 enum memmodel model;
5223 model = get_memmodel (CALL_EXPR_ARG (exp, 2));
5224 if (!(is_mm_relaxed (model) || is_mm_seq_cst (model)
5225 || is_mm_release (model)))
5227 source_location loc
5228 = expansion_point_location_if_in_system_header (input_location);
5229 warning_at (loc, OPT_Winvalid_memory_model,
5230 "invalid memory model for %<__atomic_store%>");
5231 model = MEMMODEL_SEQ_CST;
5234 if (!flag_inline_atomics)
5235 return NULL_RTX;
5237 /* Expand the operands. */
5238 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5239 val = expand_expr_force_mode (CALL_EXPR_ARG (exp, 1), mode);
5241 return expand_atomic_store (mem, val, model, false);
5244 /* Expand the __atomic_fetch_XXX intrinsic:
5245 TYPE __atomic_fetch_XXX (TYPE *object, TYPE val, enum memmodel)
5246 EXP is the CALL_EXPR.
5247 TARGET is an optional place for us to store the results.
5248 CODE is the operation, PLUS, MINUS, ADD, XOR, or IOR.
5249 FETCH_AFTER is true if returning the result of the operation.
5250 FETCH_AFTER is false if returning the value before the operation.
5251 IGNORE is true if the result is not used.
5252 EXT_CALL is the correct builtin for an external call if this cannot be
5253 resolved to an instruction sequence. */
5255 static rtx
5256 expand_builtin_atomic_fetch_op (machine_mode mode, tree exp, rtx target,
5257 enum rtx_code code, bool fetch_after,
5258 bool ignore, enum built_in_function ext_call)
5260 rtx val, mem, ret;
5261 enum memmodel model;
5262 tree fndecl;
5263 tree addr;
5265 model = get_memmodel (CALL_EXPR_ARG (exp, 2));
5267 /* Expand the operands. */
5268 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5269 val = expand_expr_force_mode (CALL_EXPR_ARG (exp, 1), mode);
5271 /* Only try generating instructions if inlining is turned on. */
5272 if (flag_inline_atomics)
5274 ret = expand_atomic_fetch_op (target, mem, val, code, model, fetch_after);
5275 if (ret)
5276 return ret;
5279 /* Return if a different routine isn't needed for the library call. */
5280 if (ext_call == BUILT_IN_NONE)
5281 return NULL_RTX;
5283 /* Change the call to the specified function. */
5284 fndecl = get_callee_fndecl (exp);
5285 addr = CALL_EXPR_FN (exp);
5286 STRIP_NOPS (addr);
5288 gcc_assert (TREE_OPERAND (addr, 0) == fndecl);
5289 TREE_OPERAND (addr, 0) = builtin_decl_explicit (ext_call);
5291 /* Expand the call here so we can emit trailing code. */
5292 ret = expand_call (exp, target, ignore);
5294 /* Replace the original function just in case it matters. */
5295 TREE_OPERAND (addr, 0) = fndecl;
5297 /* Then issue the arithmetic correction to return the right result. */
5298 if (!ignore)
5300 if (code == NOT)
5302 ret = expand_simple_binop (mode, AND, ret, val, NULL_RTX, true,
5303 OPTAB_LIB_WIDEN);
5304 ret = expand_simple_unop (mode, NOT, ret, target, true);
5306 else
5307 ret = expand_simple_binop (mode, code, ret, val, target, true,
5308 OPTAB_LIB_WIDEN);
5310 return ret;
5313 /* Expand IFN_ATOMIC_BIT_TEST_AND_* internal function. */
5315 void
5316 expand_ifn_atomic_bit_test_and (gcall *call)
5318 tree ptr = gimple_call_arg (call, 0);
5319 tree bit = gimple_call_arg (call, 1);
5320 tree flag = gimple_call_arg (call, 2);
5321 tree lhs = gimple_call_lhs (call);
5322 enum memmodel model = MEMMODEL_SYNC_SEQ_CST;
5323 machine_mode mode = TYPE_MODE (TREE_TYPE (flag));
5324 enum rtx_code code;
5325 optab optab;
5326 struct expand_operand ops[5];
5328 gcc_assert (flag_inline_atomics);
5330 if (gimple_call_num_args (call) == 4)
5331 model = get_memmodel (gimple_call_arg (call, 3));
5333 rtx mem = get_builtin_sync_mem (ptr, mode);
5334 rtx val = expand_expr_force_mode (bit, mode);
5336 switch (gimple_call_internal_fn (call))
5338 case IFN_ATOMIC_BIT_TEST_AND_SET:
5339 code = IOR;
5340 optab = atomic_bit_test_and_set_optab;
5341 break;
5342 case IFN_ATOMIC_BIT_TEST_AND_COMPLEMENT:
5343 code = XOR;
5344 optab = atomic_bit_test_and_complement_optab;
5345 break;
5346 case IFN_ATOMIC_BIT_TEST_AND_RESET:
5347 code = AND;
5348 optab = atomic_bit_test_and_reset_optab;
5349 break;
5350 default:
5351 gcc_unreachable ();
5354 if (lhs == NULL_TREE)
5356 val = expand_simple_binop (mode, ASHIFT, const1_rtx,
5357 val, NULL_RTX, true, OPTAB_DIRECT);
5358 if (code == AND)
5359 val = expand_simple_unop (mode, NOT, val, NULL_RTX, true);
5360 expand_atomic_fetch_op (const0_rtx, mem, val, code, model, false);
5361 return;
5364 rtx target = expand_expr (lhs, NULL_RTX, VOIDmode, EXPAND_WRITE);
5365 enum insn_code icode = direct_optab_handler (optab, mode);
5366 gcc_assert (icode != CODE_FOR_nothing);
5367 create_output_operand (&ops[0], target, mode);
5368 create_fixed_operand (&ops[1], mem);
5369 create_convert_operand_to (&ops[2], val, mode, true);
5370 create_integer_operand (&ops[3], model);
5371 create_integer_operand (&ops[4], integer_onep (flag));
5372 if (maybe_expand_insn (icode, 5, ops))
5373 return;
5375 rtx bitval = val;
5376 val = expand_simple_binop (mode, ASHIFT, const1_rtx,
5377 val, NULL_RTX, true, OPTAB_DIRECT);
5378 rtx maskval = val;
5379 if (code == AND)
5380 val = expand_simple_unop (mode, NOT, val, NULL_RTX, true);
5381 rtx result = expand_atomic_fetch_op (gen_reg_rtx (mode), mem, val,
5382 code, model, false);
5383 if (integer_onep (flag))
5385 result = expand_simple_binop (mode, ASHIFTRT, result, bitval,
5386 NULL_RTX, true, OPTAB_DIRECT);
5387 result = expand_simple_binop (mode, AND, result, const1_rtx, target,
5388 true, OPTAB_DIRECT);
5390 else
5391 result = expand_simple_binop (mode, AND, result, maskval, target, true,
5392 OPTAB_DIRECT);
5393 if (result != target)
5394 emit_move_insn (target, result);
5397 /* Expand an atomic clear operation.
5398 void _atomic_clear (BOOL *obj, enum memmodel)
5399 EXP is the call expression. */
5401 static rtx
5402 expand_builtin_atomic_clear (tree exp)
5404 machine_mode mode;
5405 rtx mem, ret;
5406 enum memmodel model;
5408 mode = mode_for_size (BOOL_TYPE_SIZE, MODE_INT, 0);
5409 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5410 model = get_memmodel (CALL_EXPR_ARG (exp, 1));
5412 if (is_mm_consume (model) || is_mm_acquire (model) || is_mm_acq_rel (model))
5414 source_location loc
5415 = expansion_point_location_if_in_system_header (input_location);
5416 warning_at (loc, OPT_Winvalid_memory_model,
5417 "invalid memory model for %<__atomic_store%>");
5418 model = MEMMODEL_SEQ_CST;
5421 /* Try issuing an __atomic_store, and allow fallback to __sync_lock_release.
5422 Failing that, a store is issued by __atomic_store. The only way this can
5423 fail is if the bool type is larger than a word size. Unlikely, but
5424 handle it anyway for completeness. Assume a single threaded model since
5425 there is no atomic support in this case, and no barriers are required. */
5426 ret = expand_atomic_store (mem, const0_rtx, model, true);
5427 if (!ret)
5428 emit_move_insn (mem, const0_rtx);
5429 return const0_rtx;
5432 /* Expand an atomic test_and_set operation.
5433 bool _atomic_test_and_set (BOOL *obj, enum memmodel)
5434 EXP is the call expression. */
5436 static rtx
5437 expand_builtin_atomic_test_and_set (tree exp, rtx target)
5439 rtx mem;
5440 enum memmodel model;
5441 machine_mode mode;
5443 mode = mode_for_size (BOOL_TYPE_SIZE, MODE_INT, 0);
5444 mem = get_builtin_sync_mem (CALL_EXPR_ARG (exp, 0), mode);
5445 model = get_memmodel (CALL_EXPR_ARG (exp, 1));
5447 return expand_atomic_test_and_set (target, mem, model);
5451 /* Return true if (optional) argument ARG1 of size ARG0 is always lock free on
5452 this architecture. If ARG1 is NULL, use typical alignment for size ARG0. */
5454 static tree
5455 fold_builtin_atomic_always_lock_free (tree arg0, tree arg1)
5457 int size;
5458 machine_mode mode;
5459 unsigned int mode_align, type_align;
5461 if (TREE_CODE (arg0) != INTEGER_CST)
5462 return NULL_TREE;
5464 size = INTVAL (expand_normal (arg0)) * BITS_PER_UNIT;
5465 mode = mode_for_size (size, MODE_INT, 0);
5466 mode_align = GET_MODE_ALIGNMENT (mode);
5468 if (TREE_CODE (arg1) == INTEGER_CST)
5470 unsigned HOST_WIDE_INT val = UINTVAL (expand_normal (arg1));
5472 /* Either this argument is null, or it's a fake pointer encoding
5473 the alignment of the object. */
5474 val = val & -val;
5475 val *= BITS_PER_UNIT;
5477 if (val == 0 || mode_align < val)
5478 type_align = mode_align;
5479 else
5480 type_align = val;
5482 else
5484 tree ttype = TREE_TYPE (arg1);
5486 /* This function is usually invoked and folded immediately by the front
5487 end before anything else has a chance to look at it. The pointer
5488 parameter at this point is usually cast to a void *, so check for that
5489 and look past the cast. */
5490 if (CONVERT_EXPR_P (arg1) && POINTER_TYPE_P (ttype)
5491 && VOID_TYPE_P (TREE_TYPE (ttype)))
5492 arg1 = TREE_OPERAND (arg1, 0);
5494 ttype = TREE_TYPE (arg1);
5495 gcc_assert (POINTER_TYPE_P (ttype));
5497 /* Get the underlying type of the object. */
5498 ttype = TREE_TYPE (ttype);
5499 type_align = TYPE_ALIGN (ttype);
5502 /* If the object has smaller alignment, the lock free routines cannot
5503 be used. */
5504 if (type_align < mode_align)
5505 return boolean_false_node;
5507 /* Check if a compare_and_swap pattern exists for the mode which represents
5508 the required size. The pattern is not allowed to fail, so the existence
5509 of the pattern indicates support is present. */
5510 if (can_compare_and_swap_p (mode, true))
5511 return boolean_true_node;
5512 else
5513 return boolean_false_node;
5516 /* Return true if the parameters to call EXP represent an object which will
5517 always generate lock free instructions. The first argument represents the
5518 size of the object, and the second parameter is a pointer to the object
5519 itself. If NULL is passed for the object, then the result is based on
5520 typical alignment for an object of the specified size. Otherwise return
5521 false. */
5523 static rtx
5524 expand_builtin_atomic_always_lock_free (tree exp)
5526 tree size;
5527 tree arg0 = CALL_EXPR_ARG (exp, 0);
5528 tree arg1 = CALL_EXPR_ARG (exp, 1);
5530 if (TREE_CODE (arg0) != INTEGER_CST)
5532 error ("non-constant argument 1 to __atomic_always_lock_free");
5533 return const0_rtx;
5536 size = fold_builtin_atomic_always_lock_free (arg0, arg1);
5537 if (size == boolean_true_node)
5538 return const1_rtx;
5539 return const0_rtx;
5542 /* Return a one or zero if it can be determined that object ARG1 of size ARG
5543 is lock free on this architecture. */
5545 static tree
5546 fold_builtin_atomic_is_lock_free (tree arg0, tree arg1)
5548 if (!flag_inline_atomics)
5549 return NULL_TREE;
5551 /* If it isn't always lock free, don't generate a result. */
5552 if (fold_builtin_atomic_always_lock_free (arg0, arg1) == boolean_true_node)
5553 return boolean_true_node;
5555 return NULL_TREE;
5558 /* Return true if the parameters to call EXP represent an object which will
5559 always generate lock free instructions. The first argument represents the
5560 size of the object, and the second parameter is a pointer to the object
5561 itself. If NULL is passed for the object, then the result is based on
5562 typical alignment for an object of the specified size. Otherwise return
5563 NULL*/
5565 static rtx
5566 expand_builtin_atomic_is_lock_free (tree exp)
5568 tree size;
5569 tree arg0 = CALL_EXPR_ARG (exp, 0);
5570 tree arg1 = CALL_EXPR_ARG (exp, 1);
5572 if (!INTEGRAL_TYPE_P (TREE_TYPE (arg0)))
5574 error ("non-integer argument 1 to __atomic_is_lock_free");
5575 return NULL_RTX;
5578 if (!flag_inline_atomics)
5579 return NULL_RTX;
5581 /* If the value is known at compile time, return the RTX for it. */
5582 size = fold_builtin_atomic_is_lock_free (arg0, arg1);
5583 if (size == boolean_true_node)
5584 return const1_rtx;
5586 return NULL_RTX;
5589 /* Expand the __atomic_thread_fence intrinsic:
5590 void __atomic_thread_fence (enum memmodel)
5591 EXP is the CALL_EXPR. */
5593 static void
5594 expand_builtin_atomic_thread_fence (tree exp)
5596 enum memmodel model = get_memmodel (CALL_EXPR_ARG (exp, 0));
5597 expand_mem_thread_fence (model);
5600 /* Expand the __atomic_signal_fence intrinsic:
5601 void __atomic_signal_fence (enum memmodel)
5602 EXP is the CALL_EXPR. */
5604 static void
5605 expand_builtin_atomic_signal_fence (tree exp)
5607 enum memmodel model = get_memmodel (CALL_EXPR_ARG (exp, 0));
5608 expand_mem_signal_fence (model);
5611 /* Expand the __sync_synchronize intrinsic. */
5613 static void
5614 expand_builtin_sync_synchronize (void)
5616 expand_mem_thread_fence (MEMMODEL_SYNC_SEQ_CST);
5619 static rtx
5620 expand_builtin_thread_pointer (tree exp, rtx target)
5622 enum insn_code icode;
5623 if (!validate_arglist (exp, VOID_TYPE))
5624 return const0_rtx;
5625 icode = direct_optab_handler (get_thread_pointer_optab, Pmode);
5626 if (icode != CODE_FOR_nothing)
5628 struct expand_operand op;
5629 /* If the target is not sutitable then create a new target. */
5630 if (target == NULL_RTX
5631 || !REG_P (target)
5632 || GET_MODE (target) != Pmode)
5633 target = gen_reg_rtx (Pmode);
5634 create_output_operand (&op, target, Pmode);
5635 expand_insn (icode, 1, &op);
5636 return target;
5638 error ("__builtin_thread_pointer is not supported on this target");
5639 return const0_rtx;
5642 static void
5643 expand_builtin_set_thread_pointer (tree exp)
5645 enum insn_code icode;
5646 if (!validate_arglist (exp, POINTER_TYPE, VOID_TYPE))
5647 return;
5648 icode = direct_optab_handler (set_thread_pointer_optab, Pmode);
5649 if (icode != CODE_FOR_nothing)
5651 struct expand_operand op;
5652 rtx val = expand_expr (CALL_EXPR_ARG (exp, 0), NULL_RTX,
5653 Pmode, EXPAND_NORMAL);
5654 create_input_operand (&op, val, Pmode);
5655 expand_insn (icode, 1, &op);
5656 return;
5658 error ("__builtin_set_thread_pointer is not supported on this target");
5662 /* Emit code to restore the current value of stack. */
5664 static void
5665 expand_stack_restore (tree var)
5667 rtx_insn *prev;
5668 rtx sa = expand_normal (var);
5670 sa = convert_memory_address (Pmode, sa);
5672 prev = get_last_insn ();
5673 emit_stack_restore (SAVE_BLOCK, sa);
5675 record_new_stack_level ();
5677 fixup_args_size_notes (prev, get_last_insn (), 0);
5680 /* Emit code to save the current value of stack. */
5682 static rtx
5683 expand_stack_save (void)
5685 rtx ret = NULL_RTX;
5687 emit_stack_save (SAVE_BLOCK, &ret);
5688 return ret;
5692 /* Expand an expression EXP that calls a built-in function,
5693 with result going to TARGET if that's convenient
5694 (and in mode MODE if that's convenient).
5695 SUBTARGET may be used as the target for computing one of EXP's operands.
5696 IGNORE is nonzero if the value is to be ignored. */
5699 expand_builtin (tree exp, rtx target, rtx subtarget, machine_mode mode,
5700 int ignore)
5702 tree fndecl = get_callee_fndecl (exp);
5703 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
5704 machine_mode target_mode = TYPE_MODE (TREE_TYPE (exp));
5705 int flags;
5707 if (DECL_BUILT_IN_CLASS (fndecl) == BUILT_IN_MD)
5708 return targetm.expand_builtin (exp, target, subtarget, mode, ignore);
5710 /* When ASan is enabled, we don't want to expand some memory/string
5711 builtins and rely on libsanitizer's hooks. This allows us to avoid
5712 redundant checks and be sure, that possible overflow will be detected
5713 by ASan. */
5715 if ((flag_sanitize & SANITIZE_ADDRESS) && asan_intercepted_p (fcode))
5716 return expand_call (exp, target, ignore);
5718 /* When not optimizing, generate calls to library functions for a certain
5719 set of builtins. */
5720 if (!optimize
5721 && !called_as_built_in (fndecl)
5722 && fcode != BUILT_IN_FORK
5723 && fcode != BUILT_IN_EXECL
5724 && fcode != BUILT_IN_EXECV
5725 && fcode != BUILT_IN_EXECLP
5726 && fcode != BUILT_IN_EXECLE
5727 && fcode != BUILT_IN_EXECVP
5728 && fcode != BUILT_IN_EXECVE
5729 && fcode != BUILT_IN_ALLOCA
5730 && fcode != BUILT_IN_ALLOCA_WITH_ALIGN
5731 && fcode != BUILT_IN_FREE
5732 && fcode != BUILT_IN_CHKP_SET_PTR_BOUNDS
5733 && fcode != BUILT_IN_CHKP_INIT_PTR_BOUNDS
5734 && fcode != BUILT_IN_CHKP_NULL_PTR_BOUNDS
5735 && fcode != BUILT_IN_CHKP_COPY_PTR_BOUNDS
5736 && fcode != BUILT_IN_CHKP_NARROW_PTR_BOUNDS
5737 && fcode != BUILT_IN_CHKP_STORE_PTR_BOUNDS
5738 && fcode != BUILT_IN_CHKP_CHECK_PTR_LBOUNDS
5739 && fcode != BUILT_IN_CHKP_CHECK_PTR_UBOUNDS
5740 && fcode != BUILT_IN_CHKP_CHECK_PTR_BOUNDS
5741 && fcode != BUILT_IN_CHKP_GET_PTR_LBOUND
5742 && fcode != BUILT_IN_CHKP_GET_PTR_UBOUND
5743 && fcode != BUILT_IN_CHKP_BNDRET)
5744 return expand_call (exp, target, ignore);
5746 /* The built-in function expanders test for target == const0_rtx
5747 to determine whether the function's result will be ignored. */
5748 if (ignore)
5749 target = const0_rtx;
5751 /* If the result of a pure or const built-in function is ignored, and
5752 none of its arguments are volatile, we can avoid expanding the
5753 built-in call and just evaluate the arguments for side-effects. */
5754 if (target == const0_rtx
5755 && ((flags = flags_from_decl_or_type (fndecl)) & (ECF_CONST | ECF_PURE))
5756 && !(flags & ECF_LOOPING_CONST_OR_PURE))
5758 bool volatilep = false;
5759 tree arg;
5760 call_expr_arg_iterator iter;
5762 FOR_EACH_CALL_EXPR_ARG (arg, iter, exp)
5763 if (TREE_THIS_VOLATILE (arg))
5765 volatilep = true;
5766 break;
5769 if (! volatilep)
5771 FOR_EACH_CALL_EXPR_ARG (arg, iter, exp)
5772 expand_expr (arg, const0_rtx, VOIDmode, EXPAND_NORMAL);
5773 return const0_rtx;
5777 /* expand_builtin_with_bounds is supposed to be used for
5778 instrumented builtin calls. */
5779 gcc_assert (!CALL_WITH_BOUNDS_P (exp));
5781 switch (fcode)
5783 CASE_FLT_FN (BUILT_IN_FABS):
5784 case BUILT_IN_FABSD32:
5785 case BUILT_IN_FABSD64:
5786 case BUILT_IN_FABSD128:
5787 target = expand_builtin_fabs (exp, target, subtarget);
5788 if (target)
5789 return target;
5790 break;
5792 CASE_FLT_FN (BUILT_IN_COPYSIGN):
5793 target = expand_builtin_copysign (exp, target, subtarget);
5794 if (target)
5795 return target;
5796 break;
5798 /* Just do a normal library call if we were unable to fold
5799 the values. */
5800 CASE_FLT_FN (BUILT_IN_CABS):
5801 break;
5803 CASE_FLT_FN (BUILT_IN_FMA):
5804 target = expand_builtin_mathfn_ternary (exp, target, subtarget);
5805 if (target)
5806 return target;
5807 break;
5809 CASE_FLT_FN (BUILT_IN_ILOGB):
5810 if (! flag_unsafe_math_optimizations)
5811 break;
5812 CASE_FLT_FN (BUILT_IN_ISINF):
5813 CASE_FLT_FN (BUILT_IN_FINITE):
5814 case BUILT_IN_ISFINITE:
5815 case BUILT_IN_ISNORMAL:
5816 target = expand_builtin_interclass_mathfn (exp, target);
5817 if (target)
5818 return target;
5819 break;
5821 CASE_FLT_FN (BUILT_IN_ICEIL):
5822 CASE_FLT_FN (BUILT_IN_LCEIL):
5823 CASE_FLT_FN (BUILT_IN_LLCEIL):
5824 CASE_FLT_FN (BUILT_IN_LFLOOR):
5825 CASE_FLT_FN (BUILT_IN_IFLOOR):
5826 CASE_FLT_FN (BUILT_IN_LLFLOOR):
5827 target = expand_builtin_int_roundingfn (exp, target);
5828 if (target)
5829 return target;
5830 break;
5832 CASE_FLT_FN (BUILT_IN_IRINT):
5833 CASE_FLT_FN (BUILT_IN_LRINT):
5834 CASE_FLT_FN (BUILT_IN_LLRINT):
5835 CASE_FLT_FN (BUILT_IN_IROUND):
5836 CASE_FLT_FN (BUILT_IN_LROUND):
5837 CASE_FLT_FN (BUILT_IN_LLROUND):
5838 target = expand_builtin_int_roundingfn_2 (exp, target);
5839 if (target)
5840 return target;
5841 break;
5843 CASE_FLT_FN (BUILT_IN_POWI):
5844 target = expand_builtin_powi (exp, target);
5845 if (target)
5846 return target;
5847 break;
5849 CASE_FLT_FN (BUILT_IN_CEXPI):
5850 target = expand_builtin_cexpi (exp, target);
5851 gcc_assert (target);
5852 return target;
5854 CASE_FLT_FN (BUILT_IN_SIN):
5855 CASE_FLT_FN (BUILT_IN_COS):
5856 if (! flag_unsafe_math_optimizations)
5857 break;
5858 target = expand_builtin_mathfn_3 (exp, target, subtarget);
5859 if (target)
5860 return target;
5861 break;
5863 CASE_FLT_FN (BUILT_IN_SINCOS):
5864 if (! flag_unsafe_math_optimizations)
5865 break;
5866 target = expand_builtin_sincos (exp);
5867 if (target)
5868 return target;
5869 break;
5871 case BUILT_IN_APPLY_ARGS:
5872 return expand_builtin_apply_args ();
5874 /* __builtin_apply (FUNCTION, ARGUMENTS, ARGSIZE) invokes
5875 FUNCTION with a copy of the parameters described by
5876 ARGUMENTS, and ARGSIZE. It returns a block of memory
5877 allocated on the stack into which is stored all the registers
5878 that might possibly be used for returning the result of a
5879 function. ARGUMENTS is the value returned by
5880 __builtin_apply_args. ARGSIZE is the number of bytes of
5881 arguments that must be copied. ??? How should this value be
5882 computed? We'll also need a safe worst case value for varargs
5883 functions. */
5884 case BUILT_IN_APPLY:
5885 if (!validate_arglist (exp, POINTER_TYPE,
5886 POINTER_TYPE, INTEGER_TYPE, VOID_TYPE)
5887 && !validate_arglist (exp, REFERENCE_TYPE,
5888 POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
5889 return const0_rtx;
5890 else
5892 rtx ops[3];
5894 ops[0] = expand_normal (CALL_EXPR_ARG (exp, 0));
5895 ops[1] = expand_normal (CALL_EXPR_ARG (exp, 1));
5896 ops[2] = expand_normal (CALL_EXPR_ARG (exp, 2));
5898 return expand_builtin_apply (ops[0], ops[1], ops[2]);
5901 /* __builtin_return (RESULT) causes the function to return the
5902 value described by RESULT. RESULT is address of the block of
5903 memory returned by __builtin_apply. */
5904 case BUILT_IN_RETURN:
5905 if (validate_arglist (exp, POINTER_TYPE, VOID_TYPE))
5906 expand_builtin_return (expand_normal (CALL_EXPR_ARG (exp, 0)));
5907 return const0_rtx;
5909 case BUILT_IN_SAVEREGS:
5910 return expand_builtin_saveregs ();
5912 case BUILT_IN_VA_ARG_PACK:
5913 /* All valid uses of __builtin_va_arg_pack () are removed during
5914 inlining. */
5915 error ("%Kinvalid use of %<__builtin_va_arg_pack ()%>", exp);
5916 return const0_rtx;
5918 case BUILT_IN_VA_ARG_PACK_LEN:
5919 /* All valid uses of __builtin_va_arg_pack_len () are removed during
5920 inlining. */
5921 error ("%Kinvalid use of %<__builtin_va_arg_pack_len ()%>", exp);
5922 return const0_rtx;
5924 /* Return the address of the first anonymous stack arg. */
5925 case BUILT_IN_NEXT_ARG:
5926 if (fold_builtin_next_arg (exp, false))
5927 return const0_rtx;
5928 return expand_builtin_next_arg ();
5930 case BUILT_IN_CLEAR_CACHE:
5931 target = expand_builtin___clear_cache (exp);
5932 if (target)
5933 return target;
5934 break;
5936 case BUILT_IN_CLASSIFY_TYPE:
5937 return expand_builtin_classify_type (exp);
5939 case BUILT_IN_CONSTANT_P:
5940 return const0_rtx;
5942 case BUILT_IN_FRAME_ADDRESS:
5943 case BUILT_IN_RETURN_ADDRESS:
5944 return expand_builtin_frame_address (fndecl, exp);
5946 /* Returns the address of the area where the structure is returned.
5947 0 otherwise. */
5948 case BUILT_IN_AGGREGATE_INCOMING_ADDRESS:
5949 if (call_expr_nargs (exp) != 0
5950 || ! AGGREGATE_TYPE_P (TREE_TYPE (TREE_TYPE (current_function_decl)))
5951 || !MEM_P (DECL_RTL (DECL_RESULT (current_function_decl))))
5952 return const0_rtx;
5953 else
5954 return XEXP (DECL_RTL (DECL_RESULT (current_function_decl)), 0);
5956 case BUILT_IN_ALLOCA:
5957 case BUILT_IN_ALLOCA_WITH_ALIGN:
5958 /* If the allocation stems from the declaration of a variable-sized
5959 object, it cannot accumulate. */
5960 target = expand_builtin_alloca (exp, CALL_ALLOCA_FOR_VAR_P (exp));
5961 if (target)
5962 return target;
5963 break;
5965 case BUILT_IN_STACK_SAVE:
5966 return expand_stack_save ();
5968 case BUILT_IN_STACK_RESTORE:
5969 expand_stack_restore (CALL_EXPR_ARG (exp, 0));
5970 return const0_rtx;
5972 case BUILT_IN_BSWAP16:
5973 case BUILT_IN_BSWAP32:
5974 case BUILT_IN_BSWAP64:
5975 target = expand_builtin_bswap (target_mode, exp, target, subtarget);
5976 if (target)
5977 return target;
5978 break;
5980 CASE_INT_FN (BUILT_IN_FFS):
5981 target = expand_builtin_unop (target_mode, exp, target,
5982 subtarget, ffs_optab);
5983 if (target)
5984 return target;
5985 break;
5987 CASE_INT_FN (BUILT_IN_CLZ):
5988 target = expand_builtin_unop (target_mode, exp, target,
5989 subtarget, clz_optab);
5990 if (target)
5991 return target;
5992 break;
5994 CASE_INT_FN (BUILT_IN_CTZ):
5995 target = expand_builtin_unop (target_mode, exp, target,
5996 subtarget, ctz_optab);
5997 if (target)
5998 return target;
5999 break;
6001 CASE_INT_FN (BUILT_IN_CLRSB):
6002 target = expand_builtin_unop (target_mode, exp, target,
6003 subtarget, clrsb_optab);
6004 if (target)
6005 return target;
6006 break;
6008 CASE_INT_FN (BUILT_IN_POPCOUNT):
6009 target = expand_builtin_unop (target_mode, exp, target,
6010 subtarget, popcount_optab);
6011 if (target)
6012 return target;
6013 break;
6015 CASE_INT_FN (BUILT_IN_PARITY):
6016 target = expand_builtin_unop (target_mode, exp, target,
6017 subtarget, parity_optab);
6018 if (target)
6019 return target;
6020 break;
6022 case BUILT_IN_STRLEN:
6023 target = expand_builtin_strlen (exp, target, target_mode);
6024 if (target)
6025 return target;
6026 break;
6028 case BUILT_IN_STRCPY:
6029 target = expand_builtin_strcpy (exp, target);
6030 if (target)
6031 return target;
6032 break;
6034 case BUILT_IN_STRNCPY:
6035 target = expand_builtin_strncpy (exp, target);
6036 if (target)
6037 return target;
6038 break;
6040 case BUILT_IN_STPCPY:
6041 target = expand_builtin_stpcpy (exp, target, mode);
6042 if (target)
6043 return target;
6044 break;
6046 case BUILT_IN_MEMCPY:
6047 target = expand_builtin_memcpy (exp, target);
6048 if (target)
6049 return target;
6050 break;
6052 case BUILT_IN_MEMPCPY:
6053 target = expand_builtin_mempcpy (exp, target, mode);
6054 if (target)
6055 return target;
6056 break;
6058 case BUILT_IN_MEMSET:
6059 target = expand_builtin_memset (exp, target, mode);
6060 if (target)
6061 return target;
6062 break;
6064 case BUILT_IN_BZERO:
6065 target = expand_builtin_bzero (exp);
6066 if (target)
6067 return target;
6068 break;
6070 case BUILT_IN_STRCMP:
6071 target = expand_builtin_strcmp (exp, target);
6072 if (target)
6073 return target;
6074 break;
6076 case BUILT_IN_STRNCMP:
6077 target = expand_builtin_strncmp (exp, target, mode);
6078 if (target)
6079 return target;
6080 break;
6082 case BUILT_IN_BCMP:
6083 case BUILT_IN_MEMCMP:
6084 target = expand_builtin_memcmp (exp, target);
6085 if (target)
6086 return target;
6087 break;
6089 case BUILT_IN_SETJMP:
6090 /* This should have been lowered to the builtins below. */
6091 gcc_unreachable ();
6093 case BUILT_IN_SETJMP_SETUP:
6094 /* __builtin_setjmp_setup is passed a pointer to an array of five words
6095 and the receiver label. */
6096 if (validate_arglist (exp, POINTER_TYPE, POINTER_TYPE, VOID_TYPE))
6098 rtx buf_addr = expand_expr (CALL_EXPR_ARG (exp, 0), subtarget,
6099 VOIDmode, EXPAND_NORMAL);
6100 tree label = TREE_OPERAND (CALL_EXPR_ARG (exp, 1), 0);
6101 rtx_insn *label_r = label_rtx (label);
6103 /* This is copied from the handling of non-local gotos. */
6104 expand_builtin_setjmp_setup (buf_addr, label_r);
6105 nonlocal_goto_handler_labels
6106 = gen_rtx_INSN_LIST (VOIDmode, label_r,
6107 nonlocal_goto_handler_labels);
6108 /* ??? Do not let expand_label treat us as such since we would
6109 not want to be both on the list of non-local labels and on
6110 the list of forced labels. */
6111 FORCED_LABEL (label) = 0;
6112 return const0_rtx;
6114 break;
6116 case BUILT_IN_SETJMP_RECEIVER:
6117 /* __builtin_setjmp_receiver is passed the receiver label. */
6118 if (validate_arglist (exp, POINTER_TYPE, VOID_TYPE))
6120 tree label = TREE_OPERAND (CALL_EXPR_ARG (exp, 0), 0);
6121 rtx_insn *label_r = label_rtx (label);
6123 expand_builtin_setjmp_receiver (label_r);
6124 return const0_rtx;
6126 break;
6128 /* __builtin_longjmp is passed a pointer to an array of five words.
6129 It's similar to the C library longjmp function but works with
6130 __builtin_setjmp above. */
6131 case BUILT_IN_LONGJMP:
6132 if (validate_arglist (exp, POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
6134 rtx buf_addr = expand_expr (CALL_EXPR_ARG (exp, 0), subtarget,
6135 VOIDmode, EXPAND_NORMAL);
6136 rtx value = expand_normal (CALL_EXPR_ARG (exp, 1));
6138 if (value != const1_rtx)
6140 error ("%<__builtin_longjmp%> second argument must be 1");
6141 return const0_rtx;
6144 expand_builtin_longjmp (buf_addr, value);
6145 return const0_rtx;
6147 break;
6149 case BUILT_IN_NONLOCAL_GOTO:
6150 target = expand_builtin_nonlocal_goto (exp);
6151 if (target)
6152 return target;
6153 break;
6155 /* This updates the setjmp buffer that is its argument with the value
6156 of the current stack pointer. */
6157 case BUILT_IN_UPDATE_SETJMP_BUF:
6158 if (validate_arglist (exp, POINTER_TYPE, VOID_TYPE))
6160 rtx buf_addr
6161 = expand_normal (CALL_EXPR_ARG (exp, 0));
6163 expand_builtin_update_setjmp_buf (buf_addr);
6164 return const0_rtx;
6166 break;
6168 case BUILT_IN_TRAP:
6169 expand_builtin_trap ();
6170 return const0_rtx;
6172 case BUILT_IN_UNREACHABLE:
6173 expand_builtin_unreachable ();
6174 return const0_rtx;
6176 CASE_FLT_FN (BUILT_IN_SIGNBIT):
6177 case BUILT_IN_SIGNBITD32:
6178 case BUILT_IN_SIGNBITD64:
6179 case BUILT_IN_SIGNBITD128:
6180 target = expand_builtin_signbit (exp, target);
6181 if (target)
6182 return target;
6183 break;
6185 /* Various hooks for the DWARF 2 __throw routine. */
6186 case BUILT_IN_UNWIND_INIT:
6187 expand_builtin_unwind_init ();
6188 return const0_rtx;
6189 case BUILT_IN_DWARF_CFA:
6190 return virtual_cfa_rtx;
6191 #ifdef DWARF2_UNWIND_INFO
6192 case BUILT_IN_DWARF_SP_COLUMN:
6193 return expand_builtin_dwarf_sp_column ();
6194 case BUILT_IN_INIT_DWARF_REG_SIZES:
6195 expand_builtin_init_dwarf_reg_sizes (CALL_EXPR_ARG (exp, 0));
6196 return const0_rtx;
6197 #endif
6198 case BUILT_IN_FROB_RETURN_ADDR:
6199 return expand_builtin_frob_return_addr (CALL_EXPR_ARG (exp, 0));
6200 case BUILT_IN_EXTRACT_RETURN_ADDR:
6201 return expand_builtin_extract_return_addr (CALL_EXPR_ARG (exp, 0));
6202 case BUILT_IN_EH_RETURN:
6203 expand_builtin_eh_return (CALL_EXPR_ARG (exp, 0),
6204 CALL_EXPR_ARG (exp, 1));
6205 return const0_rtx;
6206 case BUILT_IN_EH_RETURN_DATA_REGNO:
6207 return expand_builtin_eh_return_data_regno (exp);
6208 case BUILT_IN_EXTEND_POINTER:
6209 return expand_builtin_extend_pointer (CALL_EXPR_ARG (exp, 0));
6210 case BUILT_IN_EH_POINTER:
6211 return expand_builtin_eh_pointer (exp);
6212 case BUILT_IN_EH_FILTER:
6213 return expand_builtin_eh_filter (exp);
6214 case BUILT_IN_EH_COPY_VALUES:
6215 return expand_builtin_eh_copy_values (exp);
6217 case BUILT_IN_VA_START:
6218 return expand_builtin_va_start (exp);
6219 case BUILT_IN_VA_END:
6220 return expand_builtin_va_end (exp);
6221 case BUILT_IN_VA_COPY:
6222 return expand_builtin_va_copy (exp);
6223 case BUILT_IN_EXPECT:
6224 return expand_builtin_expect (exp, target);
6225 case BUILT_IN_ASSUME_ALIGNED:
6226 return expand_builtin_assume_aligned (exp, target);
6227 case BUILT_IN_PREFETCH:
6228 expand_builtin_prefetch (exp);
6229 return const0_rtx;
6231 case BUILT_IN_INIT_TRAMPOLINE:
6232 return expand_builtin_init_trampoline (exp, true);
6233 case BUILT_IN_INIT_HEAP_TRAMPOLINE:
6234 return expand_builtin_init_trampoline (exp, false);
6235 case BUILT_IN_ADJUST_TRAMPOLINE:
6236 return expand_builtin_adjust_trampoline (exp);
6238 case BUILT_IN_FORK:
6239 case BUILT_IN_EXECL:
6240 case BUILT_IN_EXECV:
6241 case BUILT_IN_EXECLP:
6242 case BUILT_IN_EXECLE:
6243 case BUILT_IN_EXECVP:
6244 case BUILT_IN_EXECVE:
6245 target = expand_builtin_fork_or_exec (fndecl, exp, target, ignore);
6246 if (target)
6247 return target;
6248 break;
6250 case BUILT_IN_SYNC_FETCH_AND_ADD_1:
6251 case BUILT_IN_SYNC_FETCH_AND_ADD_2:
6252 case BUILT_IN_SYNC_FETCH_AND_ADD_4:
6253 case BUILT_IN_SYNC_FETCH_AND_ADD_8:
6254 case BUILT_IN_SYNC_FETCH_AND_ADD_16:
6255 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_FETCH_AND_ADD_1);
6256 target = expand_builtin_sync_operation (mode, exp, PLUS, false, target);
6257 if (target)
6258 return target;
6259 break;
6261 case BUILT_IN_SYNC_FETCH_AND_SUB_1:
6262 case BUILT_IN_SYNC_FETCH_AND_SUB_2:
6263 case BUILT_IN_SYNC_FETCH_AND_SUB_4:
6264 case BUILT_IN_SYNC_FETCH_AND_SUB_8:
6265 case BUILT_IN_SYNC_FETCH_AND_SUB_16:
6266 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_FETCH_AND_SUB_1);
6267 target = expand_builtin_sync_operation (mode, exp, MINUS, false, target);
6268 if (target)
6269 return target;
6270 break;
6272 case BUILT_IN_SYNC_FETCH_AND_OR_1:
6273 case BUILT_IN_SYNC_FETCH_AND_OR_2:
6274 case BUILT_IN_SYNC_FETCH_AND_OR_4:
6275 case BUILT_IN_SYNC_FETCH_AND_OR_8:
6276 case BUILT_IN_SYNC_FETCH_AND_OR_16:
6277 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_FETCH_AND_OR_1);
6278 target = expand_builtin_sync_operation (mode, exp, IOR, false, target);
6279 if (target)
6280 return target;
6281 break;
6283 case BUILT_IN_SYNC_FETCH_AND_AND_1:
6284 case BUILT_IN_SYNC_FETCH_AND_AND_2:
6285 case BUILT_IN_SYNC_FETCH_AND_AND_4:
6286 case BUILT_IN_SYNC_FETCH_AND_AND_8:
6287 case BUILT_IN_SYNC_FETCH_AND_AND_16:
6288 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_FETCH_AND_AND_1);
6289 target = expand_builtin_sync_operation (mode, exp, AND, false, target);
6290 if (target)
6291 return target;
6292 break;
6294 case BUILT_IN_SYNC_FETCH_AND_XOR_1:
6295 case BUILT_IN_SYNC_FETCH_AND_XOR_2:
6296 case BUILT_IN_SYNC_FETCH_AND_XOR_4:
6297 case BUILT_IN_SYNC_FETCH_AND_XOR_8:
6298 case BUILT_IN_SYNC_FETCH_AND_XOR_16:
6299 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_FETCH_AND_XOR_1);
6300 target = expand_builtin_sync_operation (mode, exp, XOR, false, target);
6301 if (target)
6302 return target;
6303 break;
6305 case BUILT_IN_SYNC_FETCH_AND_NAND_1:
6306 case BUILT_IN_SYNC_FETCH_AND_NAND_2:
6307 case BUILT_IN_SYNC_FETCH_AND_NAND_4:
6308 case BUILT_IN_SYNC_FETCH_AND_NAND_8:
6309 case BUILT_IN_SYNC_FETCH_AND_NAND_16:
6310 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_FETCH_AND_NAND_1);
6311 target = expand_builtin_sync_operation (mode, exp, NOT, false, target);
6312 if (target)
6313 return target;
6314 break;
6316 case BUILT_IN_SYNC_ADD_AND_FETCH_1:
6317 case BUILT_IN_SYNC_ADD_AND_FETCH_2:
6318 case BUILT_IN_SYNC_ADD_AND_FETCH_4:
6319 case BUILT_IN_SYNC_ADD_AND_FETCH_8:
6320 case BUILT_IN_SYNC_ADD_AND_FETCH_16:
6321 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_ADD_AND_FETCH_1);
6322 target = expand_builtin_sync_operation (mode, exp, PLUS, true, target);
6323 if (target)
6324 return target;
6325 break;
6327 case BUILT_IN_SYNC_SUB_AND_FETCH_1:
6328 case BUILT_IN_SYNC_SUB_AND_FETCH_2:
6329 case BUILT_IN_SYNC_SUB_AND_FETCH_4:
6330 case BUILT_IN_SYNC_SUB_AND_FETCH_8:
6331 case BUILT_IN_SYNC_SUB_AND_FETCH_16:
6332 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_SUB_AND_FETCH_1);
6333 target = expand_builtin_sync_operation (mode, exp, MINUS, true, target);
6334 if (target)
6335 return target;
6336 break;
6338 case BUILT_IN_SYNC_OR_AND_FETCH_1:
6339 case BUILT_IN_SYNC_OR_AND_FETCH_2:
6340 case BUILT_IN_SYNC_OR_AND_FETCH_4:
6341 case BUILT_IN_SYNC_OR_AND_FETCH_8:
6342 case BUILT_IN_SYNC_OR_AND_FETCH_16:
6343 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_OR_AND_FETCH_1);
6344 target = expand_builtin_sync_operation (mode, exp, IOR, true, target);
6345 if (target)
6346 return target;
6347 break;
6349 case BUILT_IN_SYNC_AND_AND_FETCH_1:
6350 case BUILT_IN_SYNC_AND_AND_FETCH_2:
6351 case BUILT_IN_SYNC_AND_AND_FETCH_4:
6352 case BUILT_IN_SYNC_AND_AND_FETCH_8:
6353 case BUILT_IN_SYNC_AND_AND_FETCH_16:
6354 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_AND_AND_FETCH_1);
6355 target = expand_builtin_sync_operation (mode, exp, AND, true, target);
6356 if (target)
6357 return target;
6358 break;
6360 case BUILT_IN_SYNC_XOR_AND_FETCH_1:
6361 case BUILT_IN_SYNC_XOR_AND_FETCH_2:
6362 case BUILT_IN_SYNC_XOR_AND_FETCH_4:
6363 case BUILT_IN_SYNC_XOR_AND_FETCH_8:
6364 case BUILT_IN_SYNC_XOR_AND_FETCH_16:
6365 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_XOR_AND_FETCH_1);
6366 target = expand_builtin_sync_operation (mode, exp, XOR, true, target);
6367 if (target)
6368 return target;
6369 break;
6371 case BUILT_IN_SYNC_NAND_AND_FETCH_1:
6372 case BUILT_IN_SYNC_NAND_AND_FETCH_2:
6373 case BUILT_IN_SYNC_NAND_AND_FETCH_4:
6374 case BUILT_IN_SYNC_NAND_AND_FETCH_8:
6375 case BUILT_IN_SYNC_NAND_AND_FETCH_16:
6376 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_NAND_AND_FETCH_1);
6377 target = expand_builtin_sync_operation (mode, exp, NOT, true, target);
6378 if (target)
6379 return target;
6380 break;
6382 case BUILT_IN_SYNC_BOOL_COMPARE_AND_SWAP_1:
6383 case BUILT_IN_SYNC_BOOL_COMPARE_AND_SWAP_2:
6384 case BUILT_IN_SYNC_BOOL_COMPARE_AND_SWAP_4:
6385 case BUILT_IN_SYNC_BOOL_COMPARE_AND_SWAP_8:
6386 case BUILT_IN_SYNC_BOOL_COMPARE_AND_SWAP_16:
6387 if (mode == VOIDmode)
6388 mode = TYPE_MODE (boolean_type_node);
6389 if (!target || !register_operand (target, mode))
6390 target = gen_reg_rtx (mode);
6392 mode = get_builtin_sync_mode
6393 (fcode - BUILT_IN_SYNC_BOOL_COMPARE_AND_SWAP_1);
6394 target = expand_builtin_compare_and_swap (mode, exp, true, target);
6395 if (target)
6396 return target;
6397 break;
6399 case BUILT_IN_SYNC_VAL_COMPARE_AND_SWAP_1:
6400 case BUILT_IN_SYNC_VAL_COMPARE_AND_SWAP_2:
6401 case BUILT_IN_SYNC_VAL_COMPARE_AND_SWAP_4:
6402 case BUILT_IN_SYNC_VAL_COMPARE_AND_SWAP_8:
6403 case BUILT_IN_SYNC_VAL_COMPARE_AND_SWAP_16:
6404 mode = get_builtin_sync_mode
6405 (fcode - BUILT_IN_SYNC_VAL_COMPARE_AND_SWAP_1);
6406 target = expand_builtin_compare_and_swap (mode, exp, false, target);
6407 if (target)
6408 return target;
6409 break;
6411 case BUILT_IN_SYNC_LOCK_TEST_AND_SET_1:
6412 case BUILT_IN_SYNC_LOCK_TEST_AND_SET_2:
6413 case BUILT_IN_SYNC_LOCK_TEST_AND_SET_4:
6414 case BUILT_IN_SYNC_LOCK_TEST_AND_SET_8:
6415 case BUILT_IN_SYNC_LOCK_TEST_AND_SET_16:
6416 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_LOCK_TEST_AND_SET_1);
6417 target = expand_builtin_sync_lock_test_and_set (mode, exp, target);
6418 if (target)
6419 return target;
6420 break;
6422 case BUILT_IN_SYNC_LOCK_RELEASE_1:
6423 case BUILT_IN_SYNC_LOCK_RELEASE_2:
6424 case BUILT_IN_SYNC_LOCK_RELEASE_4:
6425 case BUILT_IN_SYNC_LOCK_RELEASE_8:
6426 case BUILT_IN_SYNC_LOCK_RELEASE_16:
6427 mode = get_builtin_sync_mode (fcode - BUILT_IN_SYNC_LOCK_RELEASE_1);
6428 expand_builtin_sync_lock_release (mode, exp);
6429 return const0_rtx;
6431 case BUILT_IN_SYNC_SYNCHRONIZE:
6432 expand_builtin_sync_synchronize ();
6433 return const0_rtx;
6435 case BUILT_IN_ATOMIC_EXCHANGE_1:
6436 case BUILT_IN_ATOMIC_EXCHANGE_2:
6437 case BUILT_IN_ATOMIC_EXCHANGE_4:
6438 case BUILT_IN_ATOMIC_EXCHANGE_8:
6439 case BUILT_IN_ATOMIC_EXCHANGE_16:
6440 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_EXCHANGE_1);
6441 target = expand_builtin_atomic_exchange (mode, exp, target);
6442 if (target)
6443 return target;
6444 break;
6446 case BUILT_IN_ATOMIC_COMPARE_EXCHANGE_1:
6447 case BUILT_IN_ATOMIC_COMPARE_EXCHANGE_2:
6448 case BUILT_IN_ATOMIC_COMPARE_EXCHANGE_4:
6449 case BUILT_IN_ATOMIC_COMPARE_EXCHANGE_8:
6450 case BUILT_IN_ATOMIC_COMPARE_EXCHANGE_16:
6452 unsigned int nargs, z;
6453 vec<tree, va_gc> *vec;
6455 mode =
6456 get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_COMPARE_EXCHANGE_1);
6457 target = expand_builtin_atomic_compare_exchange (mode, exp, target);
6458 if (target)
6459 return target;
6461 /* If this is turned into an external library call, the weak parameter
6462 must be dropped to match the expected parameter list. */
6463 nargs = call_expr_nargs (exp);
6464 vec_alloc (vec, nargs - 1);
6465 for (z = 0; z < 3; z++)
6466 vec->quick_push (CALL_EXPR_ARG (exp, z));
6467 /* Skip the boolean weak parameter. */
6468 for (z = 4; z < 6; z++)
6469 vec->quick_push (CALL_EXPR_ARG (exp, z));
6470 exp = build_call_vec (TREE_TYPE (exp), CALL_EXPR_FN (exp), vec);
6471 break;
6474 case BUILT_IN_ATOMIC_LOAD_1:
6475 case BUILT_IN_ATOMIC_LOAD_2:
6476 case BUILT_IN_ATOMIC_LOAD_4:
6477 case BUILT_IN_ATOMIC_LOAD_8:
6478 case BUILT_IN_ATOMIC_LOAD_16:
6479 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_LOAD_1);
6480 target = expand_builtin_atomic_load (mode, exp, target);
6481 if (target)
6482 return target;
6483 break;
6485 case BUILT_IN_ATOMIC_STORE_1:
6486 case BUILT_IN_ATOMIC_STORE_2:
6487 case BUILT_IN_ATOMIC_STORE_4:
6488 case BUILT_IN_ATOMIC_STORE_8:
6489 case BUILT_IN_ATOMIC_STORE_16:
6490 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_STORE_1);
6491 target = expand_builtin_atomic_store (mode, exp);
6492 if (target)
6493 return const0_rtx;
6494 break;
6496 case BUILT_IN_ATOMIC_ADD_FETCH_1:
6497 case BUILT_IN_ATOMIC_ADD_FETCH_2:
6498 case BUILT_IN_ATOMIC_ADD_FETCH_4:
6499 case BUILT_IN_ATOMIC_ADD_FETCH_8:
6500 case BUILT_IN_ATOMIC_ADD_FETCH_16:
6502 enum built_in_function lib;
6503 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_ADD_FETCH_1);
6504 lib = (enum built_in_function)((int)BUILT_IN_ATOMIC_FETCH_ADD_1 +
6505 (fcode - BUILT_IN_ATOMIC_ADD_FETCH_1));
6506 target = expand_builtin_atomic_fetch_op (mode, exp, target, PLUS, true,
6507 ignore, lib);
6508 if (target)
6509 return target;
6510 break;
6512 case BUILT_IN_ATOMIC_SUB_FETCH_1:
6513 case BUILT_IN_ATOMIC_SUB_FETCH_2:
6514 case BUILT_IN_ATOMIC_SUB_FETCH_4:
6515 case BUILT_IN_ATOMIC_SUB_FETCH_8:
6516 case BUILT_IN_ATOMIC_SUB_FETCH_16:
6518 enum built_in_function lib;
6519 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_SUB_FETCH_1);
6520 lib = (enum built_in_function)((int)BUILT_IN_ATOMIC_FETCH_SUB_1 +
6521 (fcode - BUILT_IN_ATOMIC_SUB_FETCH_1));
6522 target = expand_builtin_atomic_fetch_op (mode, exp, target, MINUS, true,
6523 ignore, lib);
6524 if (target)
6525 return target;
6526 break;
6528 case BUILT_IN_ATOMIC_AND_FETCH_1:
6529 case BUILT_IN_ATOMIC_AND_FETCH_2:
6530 case BUILT_IN_ATOMIC_AND_FETCH_4:
6531 case BUILT_IN_ATOMIC_AND_FETCH_8:
6532 case BUILT_IN_ATOMIC_AND_FETCH_16:
6534 enum built_in_function lib;
6535 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_AND_FETCH_1);
6536 lib = (enum built_in_function)((int)BUILT_IN_ATOMIC_FETCH_AND_1 +
6537 (fcode - BUILT_IN_ATOMIC_AND_FETCH_1));
6538 target = expand_builtin_atomic_fetch_op (mode, exp, target, AND, true,
6539 ignore, lib);
6540 if (target)
6541 return target;
6542 break;
6544 case BUILT_IN_ATOMIC_NAND_FETCH_1:
6545 case BUILT_IN_ATOMIC_NAND_FETCH_2:
6546 case BUILT_IN_ATOMIC_NAND_FETCH_4:
6547 case BUILT_IN_ATOMIC_NAND_FETCH_8:
6548 case BUILT_IN_ATOMIC_NAND_FETCH_16:
6550 enum built_in_function lib;
6551 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_NAND_FETCH_1);
6552 lib = (enum built_in_function)((int)BUILT_IN_ATOMIC_FETCH_NAND_1 +
6553 (fcode - BUILT_IN_ATOMIC_NAND_FETCH_1));
6554 target = expand_builtin_atomic_fetch_op (mode, exp, target, NOT, true,
6555 ignore, lib);
6556 if (target)
6557 return target;
6558 break;
6560 case BUILT_IN_ATOMIC_XOR_FETCH_1:
6561 case BUILT_IN_ATOMIC_XOR_FETCH_2:
6562 case BUILT_IN_ATOMIC_XOR_FETCH_4:
6563 case BUILT_IN_ATOMIC_XOR_FETCH_8:
6564 case BUILT_IN_ATOMIC_XOR_FETCH_16:
6566 enum built_in_function lib;
6567 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_XOR_FETCH_1);
6568 lib = (enum built_in_function)((int)BUILT_IN_ATOMIC_FETCH_XOR_1 +
6569 (fcode - BUILT_IN_ATOMIC_XOR_FETCH_1));
6570 target = expand_builtin_atomic_fetch_op (mode, exp, target, XOR, true,
6571 ignore, lib);
6572 if (target)
6573 return target;
6574 break;
6576 case BUILT_IN_ATOMIC_OR_FETCH_1:
6577 case BUILT_IN_ATOMIC_OR_FETCH_2:
6578 case BUILT_IN_ATOMIC_OR_FETCH_4:
6579 case BUILT_IN_ATOMIC_OR_FETCH_8:
6580 case BUILT_IN_ATOMIC_OR_FETCH_16:
6582 enum built_in_function lib;
6583 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_OR_FETCH_1);
6584 lib = (enum built_in_function)((int)BUILT_IN_ATOMIC_FETCH_OR_1 +
6585 (fcode - BUILT_IN_ATOMIC_OR_FETCH_1));
6586 target = expand_builtin_atomic_fetch_op (mode, exp, target, IOR, true,
6587 ignore, lib);
6588 if (target)
6589 return target;
6590 break;
6592 case BUILT_IN_ATOMIC_FETCH_ADD_1:
6593 case BUILT_IN_ATOMIC_FETCH_ADD_2:
6594 case BUILT_IN_ATOMIC_FETCH_ADD_4:
6595 case BUILT_IN_ATOMIC_FETCH_ADD_8:
6596 case BUILT_IN_ATOMIC_FETCH_ADD_16:
6597 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_FETCH_ADD_1);
6598 target = expand_builtin_atomic_fetch_op (mode, exp, target, PLUS, false,
6599 ignore, BUILT_IN_NONE);
6600 if (target)
6601 return target;
6602 break;
6604 case BUILT_IN_ATOMIC_FETCH_SUB_1:
6605 case BUILT_IN_ATOMIC_FETCH_SUB_2:
6606 case BUILT_IN_ATOMIC_FETCH_SUB_4:
6607 case BUILT_IN_ATOMIC_FETCH_SUB_8:
6608 case BUILT_IN_ATOMIC_FETCH_SUB_16:
6609 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_FETCH_SUB_1);
6610 target = expand_builtin_atomic_fetch_op (mode, exp, target, MINUS, false,
6611 ignore, BUILT_IN_NONE);
6612 if (target)
6613 return target;
6614 break;
6616 case BUILT_IN_ATOMIC_FETCH_AND_1:
6617 case BUILT_IN_ATOMIC_FETCH_AND_2:
6618 case BUILT_IN_ATOMIC_FETCH_AND_4:
6619 case BUILT_IN_ATOMIC_FETCH_AND_8:
6620 case BUILT_IN_ATOMIC_FETCH_AND_16:
6621 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_FETCH_AND_1);
6622 target = expand_builtin_atomic_fetch_op (mode, exp, target, AND, false,
6623 ignore, BUILT_IN_NONE);
6624 if (target)
6625 return target;
6626 break;
6628 case BUILT_IN_ATOMIC_FETCH_NAND_1:
6629 case BUILT_IN_ATOMIC_FETCH_NAND_2:
6630 case BUILT_IN_ATOMIC_FETCH_NAND_4:
6631 case BUILT_IN_ATOMIC_FETCH_NAND_8:
6632 case BUILT_IN_ATOMIC_FETCH_NAND_16:
6633 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_FETCH_NAND_1);
6634 target = expand_builtin_atomic_fetch_op (mode, exp, target, NOT, false,
6635 ignore, BUILT_IN_NONE);
6636 if (target)
6637 return target;
6638 break;
6640 case BUILT_IN_ATOMIC_FETCH_XOR_1:
6641 case BUILT_IN_ATOMIC_FETCH_XOR_2:
6642 case BUILT_IN_ATOMIC_FETCH_XOR_4:
6643 case BUILT_IN_ATOMIC_FETCH_XOR_8:
6644 case BUILT_IN_ATOMIC_FETCH_XOR_16:
6645 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_FETCH_XOR_1);
6646 target = expand_builtin_atomic_fetch_op (mode, exp, target, XOR, false,
6647 ignore, BUILT_IN_NONE);
6648 if (target)
6649 return target;
6650 break;
6652 case BUILT_IN_ATOMIC_FETCH_OR_1:
6653 case BUILT_IN_ATOMIC_FETCH_OR_2:
6654 case BUILT_IN_ATOMIC_FETCH_OR_4:
6655 case BUILT_IN_ATOMIC_FETCH_OR_8:
6656 case BUILT_IN_ATOMIC_FETCH_OR_16:
6657 mode = get_builtin_sync_mode (fcode - BUILT_IN_ATOMIC_FETCH_OR_1);
6658 target = expand_builtin_atomic_fetch_op (mode, exp, target, IOR, false,
6659 ignore, BUILT_IN_NONE);
6660 if (target)
6661 return target;
6662 break;
6664 case BUILT_IN_ATOMIC_TEST_AND_SET:
6665 return expand_builtin_atomic_test_and_set (exp, target);
6667 case BUILT_IN_ATOMIC_CLEAR:
6668 return expand_builtin_atomic_clear (exp);
6670 case BUILT_IN_ATOMIC_ALWAYS_LOCK_FREE:
6671 return expand_builtin_atomic_always_lock_free (exp);
6673 case BUILT_IN_ATOMIC_IS_LOCK_FREE:
6674 target = expand_builtin_atomic_is_lock_free (exp);
6675 if (target)
6676 return target;
6677 break;
6679 case BUILT_IN_ATOMIC_THREAD_FENCE:
6680 expand_builtin_atomic_thread_fence (exp);
6681 return const0_rtx;
6683 case BUILT_IN_ATOMIC_SIGNAL_FENCE:
6684 expand_builtin_atomic_signal_fence (exp);
6685 return const0_rtx;
6687 case BUILT_IN_OBJECT_SIZE:
6688 return expand_builtin_object_size (exp);
6690 case BUILT_IN_MEMCPY_CHK:
6691 case BUILT_IN_MEMPCPY_CHK:
6692 case BUILT_IN_MEMMOVE_CHK:
6693 case BUILT_IN_MEMSET_CHK:
6694 target = expand_builtin_memory_chk (exp, target, mode, fcode);
6695 if (target)
6696 return target;
6697 break;
6699 case BUILT_IN_STRCPY_CHK:
6700 case BUILT_IN_STPCPY_CHK:
6701 case BUILT_IN_STRNCPY_CHK:
6702 case BUILT_IN_STPNCPY_CHK:
6703 case BUILT_IN_STRCAT_CHK:
6704 case BUILT_IN_STRNCAT_CHK:
6705 case BUILT_IN_SNPRINTF_CHK:
6706 case BUILT_IN_VSNPRINTF_CHK:
6707 maybe_emit_chk_warning (exp, fcode);
6708 break;
6710 case BUILT_IN_SPRINTF_CHK:
6711 case BUILT_IN_VSPRINTF_CHK:
6712 maybe_emit_sprintf_chk_warning (exp, fcode);
6713 break;
6715 case BUILT_IN_FREE:
6716 if (warn_free_nonheap_object)
6717 maybe_emit_free_warning (exp);
6718 break;
6720 case BUILT_IN_THREAD_POINTER:
6721 return expand_builtin_thread_pointer (exp, target);
6723 case BUILT_IN_SET_THREAD_POINTER:
6724 expand_builtin_set_thread_pointer (exp);
6725 return const0_rtx;
6727 case BUILT_IN_CILK_DETACH:
6728 expand_builtin_cilk_detach (exp);
6729 return const0_rtx;
6731 case BUILT_IN_CILK_POP_FRAME:
6732 expand_builtin_cilk_pop_frame (exp);
6733 return const0_rtx;
6735 case BUILT_IN_CHKP_INIT_PTR_BOUNDS:
6736 case BUILT_IN_CHKP_NULL_PTR_BOUNDS:
6737 case BUILT_IN_CHKP_COPY_PTR_BOUNDS:
6738 case BUILT_IN_CHKP_CHECK_PTR_LBOUNDS:
6739 case BUILT_IN_CHKP_CHECK_PTR_UBOUNDS:
6740 case BUILT_IN_CHKP_CHECK_PTR_BOUNDS:
6741 case BUILT_IN_CHKP_SET_PTR_BOUNDS:
6742 case BUILT_IN_CHKP_NARROW_PTR_BOUNDS:
6743 case BUILT_IN_CHKP_STORE_PTR_BOUNDS:
6744 case BUILT_IN_CHKP_GET_PTR_LBOUND:
6745 case BUILT_IN_CHKP_GET_PTR_UBOUND:
6746 /* We allow user CHKP builtins if Pointer Bounds
6747 Checker is off. */
6748 if (!chkp_function_instrumented_p (current_function_decl))
6750 if (fcode == BUILT_IN_CHKP_SET_PTR_BOUNDS
6751 || fcode == BUILT_IN_CHKP_NARROW_PTR_BOUNDS
6752 || fcode == BUILT_IN_CHKP_INIT_PTR_BOUNDS
6753 || fcode == BUILT_IN_CHKP_NULL_PTR_BOUNDS
6754 || fcode == BUILT_IN_CHKP_COPY_PTR_BOUNDS)
6755 return expand_normal (CALL_EXPR_ARG (exp, 0));
6756 else if (fcode == BUILT_IN_CHKP_GET_PTR_LBOUND)
6757 return expand_normal (size_zero_node);
6758 else if (fcode == BUILT_IN_CHKP_GET_PTR_UBOUND)
6759 return expand_normal (size_int (-1));
6760 else
6761 return const0_rtx;
6763 /* FALLTHROUGH */
6765 case BUILT_IN_CHKP_BNDMK:
6766 case BUILT_IN_CHKP_BNDSTX:
6767 case BUILT_IN_CHKP_BNDCL:
6768 case BUILT_IN_CHKP_BNDCU:
6769 case BUILT_IN_CHKP_BNDLDX:
6770 case BUILT_IN_CHKP_BNDRET:
6771 case BUILT_IN_CHKP_INTERSECT:
6772 case BUILT_IN_CHKP_NARROW:
6773 case BUILT_IN_CHKP_EXTRACT_LOWER:
6774 case BUILT_IN_CHKP_EXTRACT_UPPER:
6775 /* Software implementation of Pointer Bounds Checker is NYI.
6776 Target support is required. */
6777 error ("Your target platform does not support -fcheck-pointer-bounds");
6778 break;
6780 case BUILT_IN_ACC_ON_DEVICE:
6781 /* Do library call, if we failed to expand the builtin when
6782 folding. */
6783 break;
6785 default: /* just do library call, if unknown builtin */
6786 break;
6789 /* The switch statement above can drop through to cause the function
6790 to be called normally. */
6791 return expand_call (exp, target, ignore);
6794 /* Similar to expand_builtin but is used for instrumented calls. */
6797 expand_builtin_with_bounds (tree exp, rtx target,
6798 rtx subtarget ATTRIBUTE_UNUSED,
6799 machine_mode mode, int ignore)
6801 tree fndecl = get_callee_fndecl (exp);
6802 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
6804 gcc_assert (CALL_WITH_BOUNDS_P (exp));
6806 if (DECL_BUILT_IN_CLASS (fndecl) == BUILT_IN_MD)
6807 return targetm.expand_builtin (exp, target, subtarget, mode, ignore);
6809 gcc_assert (fcode > BEGIN_CHKP_BUILTINS
6810 && fcode < END_CHKP_BUILTINS);
6812 switch (fcode)
6814 case BUILT_IN_CHKP_MEMCPY_NOBND_NOCHK_CHKP:
6815 target = expand_builtin_memcpy_with_bounds (exp, target);
6816 if (target)
6817 return target;
6818 break;
6820 case BUILT_IN_CHKP_MEMPCPY_NOBND_NOCHK_CHKP:
6821 target = expand_builtin_mempcpy_with_bounds (exp, target, mode);
6822 if (target)
6823 return target;
6824 break;
6826 case BUILT_IN_CHKP_MEMSET_NOBND_NOCHK_CHKP:
6827 target = expand_builtin_memset_with_bounds (exp, target, mode);
6828 if (target)
6829 return target;
6830 break;
6832 default:
6833 break;
6836 /* The switch statement above can drop through to cause the function
6837 to be called normally. */
6838 return expand_call (exp, target, ignore);
6841 /* Determine whether a tree node represents a call to a built-in
6842 function. If the tree T is a call to a built-in function with
6843 the right number of arguments of the appropriate types, return
6844 the DECL_FUNCTION_CODE of the call, e.g. BUILT_IN_SQRT.
6845 Otherwise the return value is END_BUILTINS. */
6847 enum built_in_function
6848 builtin_mathfn_code (const_tree t)
6850 const_tree fndecl, arg, parmlist;
6851 const_tree argtype, parmtype;
6852 const_call_expr_arg_iterator iter;
6854 if (TREE_CODE (t) != CALL_EXPR
6855 || TREE_CODE (CALL_EXPR_FN (t)) != ADDR_EXPR)
6856 return END_BUILTINS;
6858 fndecl = get_callee_fndecl (t);
6859 if (fndecl == NULL_TREE
6860 || TREE_CODE (fndecl) != FUNCTION_DECL
6861 || ! DECL_BUILT_IN (fndecl)
6862 || DECL_BUILT_IN_CLASS (fndecl) == BUILT_IN_MD)
6863 return END_BUILTINS;
6865 parmlist = TYPE_ARG_TYPES (TREE_TYPE (fndecl));
6866 init_const_call_expr_arg_iterator (t, &iter);
6867 for (; parmlist; parmlist = TREE_CHAIN (parmlist))
6869 /* If a function doesn't take a variable number of arguments,
6870 the last element in the list will have type `void'. */
6871 parmtype = TREE_VALUE (parmlist);
6872 if (VOID_TYPE_P (parmtype))
6874 if (more_const_call_expr_args_p (&iter))
6875 return END_BUILTINS;
6876 return DECL_FUNCTION_CODE (fndecl);
6879 if (! more_const_call_expr_args_p (&iter))
6880 return END_BUILTINS;
6882 arg = next_const_call_expr_arg (&iter);
6883 argtype = TREE_TYPE (arg);
6885 if (SCALAR_FLOAT_TYPE_P (parmtype))
6887 if (! SCALAR_FLOAT_TYPE_P (argtype))
6888 return END_BUILTINS;
6890 else if (COMPLEX_FLOAT_TYPE_P (parmtype))
6892 if (! COMPLEX_FLOAT_TYPE_P (argtype))
6893 return END_BUILTINS;
6895 else if (POINTER_TYPE_P (parmtype))
6897 if (! POINTER_TYPE_P (argtype))
6898 return END_BUILTINS;
6900 else if (INTEGRAL_TYPE_P (parmtype))
6902 if (! INTEGRAL_TYPE_P (argtype))
6903 return END_BUILTINS;
6905 else
6906 return END_BUILTINS;
6909 /* Variable-length argument list. */
6910 return DECL_FUNCTION_CODE (fndecl);
6913 /* Fold a call to __builtin_constant_p, if we know its argument ARG will
6914 evaluate to a constant. */
6916 static tree
6917 fold_builtin_constant_p (tree arg)
6919 /* We return 1 for a numeric type that's known to be a constant
6920 value at compile-time or for an aggregate type that's a
6921 literal constant. */
6922 STRIP_NOPS (arg);
6924 /* If we know this is a constant, emit the constant of one. */
6925 if (CONSTANT_CLASS_P (arg)
6926 || (TREE_CODE (arg) == CONSTRUCTOR
6927 && TREE_CONSTANT (arg)))
6928 return integer_one_node;
6929 if (TREE_CODE (arg) == ADDR_EXPR)
6931 tree op = TREE_OPERAND (arg, 0);
6932 if (TREE_CODE (op) == STRING_CST
6933 || (TREE_CODE (op) == ARRAY_REF
6934 && integer_zerop (TREE_OPERAND (op, 1))
6935 && TREE_CODE (TREE_OPERAND (op, 0)) == STRING_CST))
6936 return integer_one_node;
6939 /* If this expression has side effects, show we don't know it to be a
6940 constant. Likewise if it's a pointer or aggregate type since in
6941 those case we only want literals, since those are only optimized
6942 when generating RTL, not later.
6943 And finally, if we are compiling an initializer, not code, we
6944 need to return a definite result now; there's not going to be any
6945 more optimization done. */
6946 if (TREE_SIDE_EFFECTS (arg)
6947 || AGGREGATE_TYPE_P (TREE_TYPE (arg))
6948 || POINTER_TYPE_P (TREE_TYPE (arg))
6949 || cfun == 0
6950 || folding_initializer
6951 || force_folding_builtin_constant_p)
6952 return integer_zero_node;
6954 return NULL_TREE;
6957 /* Create builtin_expect with PRED and EXPECTED as its arguments and
6958 return it as a truthvalue. */
6960 static tree
6961 build_builtin_expect_predicate (location_t loc, tree pred, tree expected,
6962 tree predictor)
6964 tree fn, arg_types, pred_type, expected_type, call_expr, ret_type;
6966 fn = builtin_decl_explicit (BUILT_IN_EXPECT);
6967 arg_types = TYPE_ARG_TYPES (TREE_TYPE (fn));
6968 ret_type = TREE_TYPE (TREE_TYPE (fn));
6969 pred_type = TREE_VALUE (arg_types);
6970 expected_type = TREE_VALUE (TREE_CHAIN (arg_types));
6972 pred = fold_convert_loc (loc, pred_type, pred);
6973 expected = fold_convert_loc (loc, expected_type, expected);
6974 call_expr = build_call_expr_loc (loc, fn, predictor ? 3 : 2, pred, expected,
6975 predictor);
6977 return build2 (NE_EXPR, TREE_TYPE (pred), call_expr,
6978 build_int_cst (ret_type, 0));
6981 /* Fold a call to builtin_expect with arguments ARG0 and ARG1. Return
6982 NULL_TREE if no simplification is possible. */
6984 tree
6985 fold_builtin_expect (location_t loc, tree arg0, tree arg1, tree arg2)
6987 tree inner, fndecl, inner_arg0;
6988 enum tree_code code;
6990 /* Distribute the expected value over short-circuiting operators.
6991 See through the cast from truthvalue_type_node to long. */
6992 inner_arg0 = arg0;
6993 while (CONVERT_EXPR_P (inner_arg0)
6994 && INTEGRAL_TYPE_P (TREE_TYPE (inner_arg0))
6995 && INTEGRAL_TYPE_P (TREE_TYPE (TREE_OPERAND (inner_arg0, 0))))
6996 inner_arg0 = TREE_OPERAND (inner_arg0, 0);
6998 /* If this is a builtin_expect within a builtin_expect keep the
6999 inner one. See through a comparison against a constant. It
7000 might have been added to create a thruthvalue. */
7001 inner = inner_arg0;
7003 if (COMPARISON_CLASS_P (inner)
7004 && TREE_CODE (TREE_OPERAND (inner, 1)) == INTEGER_CST)
7005 inner = TREE_OPERAND (inner, 0);
7007 if (TREE_CODE (inner) == CALL_EXPR
7008 && (fndecl = get_callee_fndecl (inner))
7009 && DECL_BUILT_IN_CLASS (fndecl) == BUILT_IN_NORMAL
7010 && DECL_FUNCTION_CODE (fndecl) == BUILT_IN_EXPECT)
7011 return arg0;
7013 inner = inner_arg0;
7014 code = TREE_CODE (inner);
7015 if (code == TRUTH_ANDIF_EXPR || code == TRUTH_ORIF_EXPR)
7017 tree op0 = TREE_OPERAND (inner, 0);
7018 tree op1 = TREE_OPERAND (inner, 1);
7020 op0 = build_builtin_expect_predicate (loc, op0, arg1, arg2);
7021 op1 = build_builtin_expect_predicate (loc, op1, arg1, arg2);
7022 inner = build2 (code, TREE_TYPE (inner), op0, op1);
7024 return fold_convert_loc (loc, TREE_TYPE (arg0), inner);
7027 /* If the argument isn't invariant then there's nothing else we can do. */
7028 if (!TREE_CONSTANT (inner_arg0))
7029 return NULL_TREE;
7031 /* If we expect that a comparison against the argument will fold to
7032 a constant return the constant. In practice, this means a true
7033 constant or the address of a non-weak symbol. */
7034 inner = inner_arg0;
7035 STRIP_NOPS (inner);
7036 if (TREE_CODE (inner) == ADDR_EXPR)
7040 inner = TREE_OPERAND (inner, 0);
7042 while (TREE_CODE (inner) == COMPONENT_REF
7043 || TREE_CODE (inner) == ARRAY_REF);
7044 if ((TREE_CODE (inner) == VAR_DECL
7045 || TREE_CODE (inner) == FUNCTION_DECL)
7046 && DECL_WEAK (inner))
7047 return NULL_TREE;
7050 /* Otherwise, ARG0 already has the proper type for the return value. */
7051 return arg0;
7054 /* Fold a call to __builtin_classify_type with argument ARG. */
7056 static tree
7057 fold_builtin_classify_type (tree arg)
7059 if (arg == 0)
7060 return build_int_cst (integer_type_node, no_type_class);
7062 return build_int_cst (integer_type_node, type_to_class (TREE_TYPE (arg)));
7065 /* Fold a call to __builtin_strlen with argument ARG. */
7067 static tree
7068 fold_builtin_strlen (location_t loc, tree type, tree arg)
7070 if (!validate_arg (arg, POINTER_TYPE))
7071 return NULL_TREE;
7072 else
7074 tree len = c_strlen (arg, 0);
7076 if (len)
7077 return fold_convert_loc (loc, type, len);
7079 return NULL_TREE;
7083 /* Fold a call to __builtin_inf or __builtin_huge_val. */
7085 static tree
7086 fold_builtin_inf (location_t loc, tree type, int warn)
7088 REAL_VALUE_TYPE real;
7090 /* __builtin_inff is intended to be usable to define INFINITY on all
7091 targets. If an infinity is not available, INFINITY expands "to a
7092 positive constant of type float that overflows at translation
7093 time", footnote "In this case, using INFINITY will violate the
7094 constraint in 6.4.4 and thus require a diagnostic." (C99 7.12#4).
7095 Thus we pedwarn to ensure this constraint violation is
7096 diagnosed. */
7097 if (!MODE_HAS_INFINITIES (TYPE_MODE (type)) && warn)
7098 pedwarn (loc, 0, "target format does not support infinity");
7100 real_inf (&real);
7101 return build_real (type, real);
7104 /* Fold function call to builtin sincos, sincosf, or sincosl. Return
7105 NULL_TREE if no simplification can be made. */
7107 static tree
7108 fold_builtin_sincos (location_t loc,
7109 tree arg0, tree arg1, tree arg2)
7111 tree type;
7112 tree fndecl, call = NULL_TREE;
7114 if (!validate_arg (arg0, REAL_TYPE)
7115 || !validate_arg (arg1, POINTER_TYPE)
7116 || !validate_arg (arg2, POINTER_TYPE))
7117 return NULL_TREE;
7119 type = TREE_TYPE (arg0);
7121 /* Calculate the result when the argument is a constant. */
7122 built_in_function fn = mathfn_built_in_2 (type, CFN_BUILT_IN_CEXPI);
7123 if (fn == END_BUILTINS)
7124 return NULL_TREE;
7126 /* Canonicalize sincos to cexpi. */
7127 if (TREE_CODE (arg0) == REAL_CST)
7129 tree complex_type = build_complex_type (type);
7130 call = fold_const_call (as_combined_fn (fn), complex_type, arg0);
7132 if (!call)
7134 if (!targetm.libc_has_function (function_c99_math_complex)
7135 || !builtin_decl_implicit_p (fn))
7136 return NULL_TREE;
7137 fndecl = builtin_decl_explicit (fn);
7138 call = build_call_expr_loc (loc, fndecl, 1, arg0);
7139 call = builtin_save_expr (call);
7142 return build2 (COMPOUND_EXPR, void_type_node,
7143 build2 (MODIFY_EXPR, void_type_node,
7144 build_fold_indirect_ref_loc (loc, arg1),
7145 fold_build1_loc (loc, IMAGPART_EXPR, type, call)),
7146 build2 (MODIFY_EXPR, void_type_node,
7147 build_fold_indirect_ref_loc (loc, arg2),
7148 fold_build1_loc (loc, REALPART_EXPR, type, call)));
7151 /* Fold function call to builtin memchr. ARG1, ARG2 and LEN are the
7152 arguments to the call, and TYPE is its return type.
7153 Return NULL_TREE if no simplification can be made. */
7155 static tree
7156 fold_builtin_memchr (location_t loc, tree arg1, tree arg2, tree len, tree type)
7158 if (!validate_arg (arg1, POINTER_TYPE)
7159 || !validate_arg (arg2, INTEGER_TYPE)
7160 || !validate_arg (len, INTEGER_TYPE))
7161 return NULL_TREE;
7162 else
7164 const char *p1;
7166 if (TREE_CODE (arg2) != INTEGER_CST
7167 || !tree_fits_uhwi_p (len))
7168 return NULL_TREE;
7170 p1 = c_getstr (arg1);
7171 if (p1 && compare_tree_int (len, strlen (p1) + 1) <= 0)
7173 char c;
7174 const char *r;
7175 tree tem;
7177 if (target_char_cast (arg2, &c))
7178 return NULL_TREE;
7180 r = (const char *) memchr (p1, c, tree_to_uhwi (len));
7182 if (r == NULL)
7183 return build_int_cst (TREE_TYPE (arg1), 0);
7185 tem = fold_build_pointer_plus_hwi_loc (loc, arg1, r - p1);
7186 return fold_convert_loc (loc, type, tem);
7188 return NULL_TREE;
7192 /* Fold function call to builtin memcmp with arguments ARG1 and ARG2.
7193 Return NULL_TREE if no simplification can be made. */
7195 static tree
7196 fold_builtin_memcmp (location_t loc, tree arg1, tree arg2, tree len)
7198 if (!validate_arg (arg1, POINTER_TYPE)
7199 || !validate_arg (arg2, POINTER_TYPE)
7200 || !validate_arg (len, INTEGER_TYPE))
7201 return NULL_TREE;
7203 /* If the LEN parameter is zero, return zero. */
7204 if (integer_zerop (len))
7205 return omit_two_operands_loc (loc, integer_type_node, integer_zero_node,
7206 arg1, arg2);
7208 /* If ARG1 and ARG2 are the same (and not volatile), return zero. */
7209 if (operand_equal_p (arg1, arg2, 0))
7210 return omit_one_operand_loc (loc, integer_type_node, integer_zero_node, len);
7212 /* If len parameter is one, return an expression corresponding to
7213 (*(const unsigned char*)arg1 - (const unsigned char*)arg2). */
7214 if (tree_fits_uhwi_p (len) && tree_to_uhwi (len) == 1)
7216 tree cst_uchar_node = build_type_variant (unsigned_char_type_node, 1, 0);
7217 tree cst_uchar_ptr_node
7218 = build_pointer_type_for_mode (cst_uchar_node, ptr_mode, true);
7220 tree ind1
7221 = fold_convert_loc (loc, integer_type_node,
7222 build1 (INDIRECT_REF, cst_uchar_node,
7223 fold_convert_loc (loc,
7224 cst_uchar_ptr_node,
7225 arg1)));
7226 tree ind2
7227 = fold_convert_loc (loc, integer_type_node,
7228 build1 (INDIRECT_REF, cst_uchar_node,
7229 fold_convert_loc (loc,
7230 cst_uchar_ptr_node,
7231 arg2)));
7232 return fold_build2_loc (loc, MINUS_EXPR, integer_type_node, ind1, ind2);
7235 return NULL_TREE;
7238 /* Fold function call to builtin strcmp with arguments ARG1 and ARG2.
7239 Return NULL_TREE if no simplification can be made. */
7241 static tree
7242 fold_builtin_strcmp (location_t loc, tree arg1, tree arg2)
7244 if (!validate_arg (arg1, POINTER_TYPE)
7245 || !validate_arg (arg2, POINTER_TYPE))
7246 return NULL_TREE;
7248 /* If ARG1 and ARG2 are the same (and not volatile), return zero. */
7249 if (operand_equal_p (arg1, arg2, 0))
7250 return integer_zero_node;
7252 /* If the second arg is "", return *(const unsigned char*)arg1. */
7253 const char *p2 = c_getstr (arg2);
7254 if (p2 && *p2 == '\0')
7256 tree cst_uchar_node = build_type_variant (unsigned_char_type_node, 1, 0);
7257 tree cst_uchar_ptr_node
7258 = build_pointer_type_for_mode (cst_uchar_node, ptr_mode, true);
7260 return fold_convert_loc (loc, integer_type_node,
7261 build1 (INDIRECT_REF, cst_uchar_node,
7262 fold_convert_loc (loc,
7263 cst_uchar_ptr_node,
7264 arg1)));
7267 /* If the first arg is "", return -*(const unsigned char*)arg2. */
7268 const char *p1 = c_getstr (arg1);
7269 if (p1 && *p1 == '\0')
7271 tree cst_uchar_node = build_type_variant (unsigned_char_type_node, 1, 0);
7272 tree cst_uchar_ptr_node
7273 = build_pointer_type_for_mode (cst_uchar_node, ptr_mode, true);
7275 tree temp
7276 = fold_convert_loc (loc, integer_type_node,
7277 build1 (INDIRECT_REF, cst_uchar_node,
7278 fold_convert_loc (loc,
7279 cst_uchar_ptr_node,
7280 arg2)));
7281 return fold_build1_loc (loc, NEGATE_EXPR, integer_type_node, temp);
7284 return NULL_TREE;
7287 /* Fold function call to builtin strncmp with arguments ARG1, ARG2, and LEN.
7288 Return NULL_TREE if no simplification can be made. */
7290 static tree
7291 fold_builtin_strncmp (location_t loc, tree arg1, tree arg2, tree len)
7293 if (!validate_arg (arg1, POINTER_TYPE)
7294 || !validate_arg (arg2, POINTER_TYPE)
7295 || !validate_arg (len, INTEGER_TYPE))
7296 return NULL_TREE;
7298 /* If the LEN parameter is zero, return zero. */
7299 if (integer_zerop (len))
7300 return omit_two_operands_loc (loc, integer_type_node, integer_zero_node,
7301 arg1, arg2);
7303 /* If ARG1 and ARG2 are the same (and not volatile), return zero. */
7304 if (operand_equal_p (arg1, arg2, 0))
7305 return omit_one_operand_loc (loc, integer_type_node, integer_zero_node, len);
7307 /* If the second arg is "", and the length is greater than zero,
7308 return *(const unsigned char*)arg1. */
7309 const char *p2 = c_getstr (arg2);
7310 if (p2 && *p2 == '\0'
7311 && TREE_CODE (len) == INTEGER_CST
7312 && tree_int_cst_sgn (len) == 1)
7314 tree cst_uchar_node = build_type_variant (unsigned_char_type_node, 1, 0);
7315 tree cst_uchar_ptr_node
7316 = build_pointer_type_for_mode (cst_uchar_node, ptr_mode, true);
7318 return fold_convert_loc (loc, integer_type_node,
7319 build1 (INDIRECT_REF, cst_uchar_node,
7320 fold_convert_loc (loc,
7321 cst_uchar_ptr_node,
7322 arg1)));
7325 /* If the first arg is "", and the length is greater than zero,
7326 return -*(const unsigned char*)arg2. */
7327 const char *p1 = c_getstr (arg1);
7328 if (p1 && *p1 == '\0'
7329 && TREE_CODE (len) == INTEGER_CST
7330 && tree_int_cst_sgn (len) == 1)
7332 tree cst_uchar_node = build_type_variant (unsigned_char_type_node, 1, 0);
7333 tree cst_uchar_ptr_node
7334 = build_pointer_type_for_mode (cst_uchar_node, ptr_mode, true);
7336 tree temp = fold_convert_loc (loc, integer_type_node,
7337 build1 (INDIRECT_REF, cst_uchar_node,
7338 fold_convert_loc (loc,
7339 cst_uchar_ptr_node,
7340 arg2)));
7341 return fold_build1_loc (loc, NEGATE_EXPR, integer_type_node, temp);
7344 /* If len parameter is one, return an expression corresponding to
7345 (*(const unsigned char*)arg1 - (const unsigned char*)arg2). */
7346 if (tree_fits_uhwi_p (len) && tree_to_uhwi (len) == 1)
7348 tree cst_uchar_node = build_type_variant (unsigned_char_type_node, 1, 0);
7349 tree cst_uchar_ptr_node
7350 = build_pointer_type_for_mode (cst_uchar_node, ptr_mode, true);
7352 tree ind1 = fold_convert_loc (loc, integer_type_node,
7353 build1 (INDIRECT_REF, cst_uchar_node,
7354 fold_convert_loc (loc,
7355 cst_uchar_ptr_node,
7356 arg1)));
7357 tree ind2 = fold_convert_loc (loc, integer_type_node,
7358 build1 (INDIRECT_REF, cst_uchar_node,
7359 fold_convert_loc (loc,
7360 cst_uchar_ptr_node,
7361 arg2)));
7362 return fold_build2_loc (loc, MINUS_EXPR, integer_type_node, ind1, ind2);
7365 return NULL_TREE;
7368 /* Fold a call to builtin isascii with argument ARG. */
7370 static tree
7371 fold_builtin_isascii (location_t loc, tree arg)
7373 if (!validate_arg (arg, INTEGER_TYPE))
7374 return NULL_TREE;
7375 else
7377 /* Transform isascii(c) -> ((c & ~0x7f) == 0). */
7378 arg = fold_build2 (BIT_AND_EXPR, integer_type_node, arg,
7379 build_int_cst (integer_type_node,
7380 ~ (unsigned HOST_WIDE_INT) 0x7f));
7381 return fold_build2_loc (loc, EQ_EXPR, integer_type_node,
7382 arg, integer_zero_node);
7386 /* Fold a call to builtin toascii with argument ARG. */
7388 static tree
7389 fold_builtin_toascii (location_t loc, tree arg)
7391 if (!validate_arg (arg, INTEGER_TYPE))
7392 return NULL_TREE;
7394 /* Transform toascii(c) -> (c & 0x7f). */
7395 return fold_build2_loc (loc, BIT_AND_EXPR, integer_type_node, arg,
7396 build_int_cst (integer_type_node, 0x7f));
7399 /* Fold a call to builtin isdigit with argument ARG. */
7401 static tree
7402 fold_builtin_isdigit (location_t loc, tree arg)
7404 if (!validate_arg (arg, INTEGER_TYPE))
7405 return NULL_TREE;
7406 else
7408 /* Transform isdigit(c) -> (unsigned)(c) - '0' <= 9. */
7409 /* According to the C standard, isdigit is unaffected by locale.
7410 However, it definitely is affected by the target character set. */
7411 unsigned HOST_WIDE_INT target_digit0
7412 = lang_hooks.to_target_charset ('0');
7414 if (target_digit0 == 0)
7415 return NULL_TREE;
7417 arg = fold_convert_loc (loc, unsigned_type_node, arg);
7418 arg = fold_build2 (MINUS_EXPR, unsigned_type_node, arg,
7419 build_int_cst (unsigned_type_node, target_digit0));
7420 return fold_build2_loc (loc, LE_EXPR, integer_type_node, arg,
7421 build_int_cst (unsigned_type_node, 9));
7425 /* Fold a call to fabs, fabsf or fabsl with argument ARG. */
7427 static tree
7428 fold_builtin_fabs (location_t loc, tree arg, tree type)
7430 if (!validate_arg (arg, REAL_TYPE))
7431 return NULL_TREE;
7433 arg = fold_convert_loc (loc, type, arg);
7434 return fold_build1_loc (loc, ABS_EXPR, type, arg);
7437 /* Fold a call to abs, labs, llabs or imaxabs with argument ARG. */
7439 static tree
7440 fold_builtin_abs (location_t loc, tree arg, tree type)
7442 if (!validate_arg (arg, INTEGER_TYPE))
7443 return NULL_TREE;
7445 arg = fold_convert_loc (loc, type, arg);
7446 return fold_build1_loc (loc, ABS_EXPR, type, arg);
7449 /* Fold a call to fma, fmaf, or fmal with arguments ARG[012]. */
7451 static tree
7452 fold_builtin_fma (location_t loc, tree arg0, tree arg1, tree arg2, tree type)
7454 /* ??? Only expand to FMA_EXPR if it's directly supported. */
7455 if (validate_arg (arg0, REAL_TYPE)
7456 && validate_arg (arg1, REAL_TYPE)
7457 && validate_arg (arg2, REAL_TYPE)
7458 && optab_handler (fma_optab, TYPE_MODE (type)) != CODE_FOR_nothing)
7459 return fold_build3_loc (loc, FMA_EXPR, type, arg0, arg1, arg2);
7461 return NULL_TREE;
7464 /* Fold a call to builtin carg(a+bi) -> atan2(b,a). */
7466 static tree
7467 fold_builtin_carg (location_t loc, tree arg, tree type)
7469 if (validate_arg (arg, COMPLEX_TYPE)
7470 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg))) == REAL_TYPE)
7472 tree atan2_fn = mathfn_built_in (type, BUILT_IN_ATAN2);
7474 if (atan2_fn)
7476 tree new_arg = builtin_save_expr (arg);
7477 tree r_arg = fold_build1_loc (loc, REALPART_EXPR, type, new_arg);
7478 tree i_arg = fold_build1_loc (loc, IMAGPART_EXPR, type, new_arg);
7479 return build_call_expr_loc (loc, atan2_fn, 2, i_arg, r_arg);
7483 return NULL_TREE;
7486 /* Fold a call to builtin frexp, we can assume the base is 2. */
7488 static tree
7489 fold_builtin_frexp (location_t loc, tree arg0, tree arg1, tree rettype)
7491 if (! validate_arg (arg0, REAL_TYPE) || ! validate_arg (arg1, POINTER_TYPE))
7492 return NULL_TREE;
7494 STRIP_NOPS (arg0);
7496 if (!(TREE_CODE (arg0) == REAL_CST && ! TREE_OVERFLOW (arg0)))
7497 return NULL_TREE;
7499 arg1 = build_fold_indirect_ref_loc (loc, arg1);
7501 /* Proceed if a valid pointer type was passed in. */
7502 if (TYPE_MAIN_VARIANT (TREE_TYPE (arg1)) == integer_type_node)
7504 const REAL_VALUE_TYPE *const value = TREE_REAL_CST_PTR (arg0);
7505 tree frac, exp;
7507 switch (value->cl)
7509 case rvc_zero:
7510 /* For +-0, return (*exp = 0, +-0). */
7511 exp = integer_zero_node;
7512 frac = arg0;
7513 break;
7514 case rvc_nan:
7515 case rvc_inf:
7516 /* For +-NaN or +-Inf, *exp is unspecified, return arg0. */
7517 return omit_one_operand_loc (loc, rettype, arg0, arg1);
7518 case rvc_normal:
7520 /* Since the frexp function always expects base 2, and in
7521 GCC normalized significands are already in the range
7522 [0.5, 1.0), we have exactly what frexp wants. */
7523 REAL_VALUE_TYPE frac_rvt = *value;
7524 SET_REAL_EXP (&frac_rvt, 0);
7525 frac = build_real (rettype, frac_rvt);
7526 exp = build_int_cst (integer_type_node, REAL_EXP (value));
7528 break;
7529 default:
7530 gcc_unreachable ();
7533 /* Create the COMPOUND_EXPR (*arg1 = trunc, frac). */
7534 arg1 = fold_build2_loc (loc, MODIFY_EXPR, rettype, arg1, exp);
7535 TREE_SIDE_EFFECTS (arg1) = 1;
7536 return fold_build2_loc (loc, COMPOUND_EXPR, rettype, arg1, frac);
7539 return NULL_TREE;
7542 /* Fold a call to builtin modf. */
7544 static tree
7545 fold_builtin_modf (location_t loc, tree arg0, tree arg1, tree rettype)
7547 if (! validate_arg (arg0, REAL_TYPE) || ! validate_arg (arg1, POINTER_TYPE))
7548 return NULL_TREE;
7550 STRIP_NOPS (arg0);
7552 if (!(TREE_CODE (arg0) == REAL_CST && ! TREE_OVERFLOW (arg0)))
7553 return NULL_TREE;
7555 arg1 = build_fold_indirect_ref_loc (loc, arg1);
7557 /* Proceed if a valid pointer type was passed in. */
7558 if (TYPE_MAIN_VARIANT (TREE_TYPE (arg1)) == TYPE_MAIN_VARIANT (rettype))
7560 const REAL_VALUE_TYPE *const value = TREE_REAL_CST_PTR (arg0);
7561 REAL_VALUE_TYPE trunc, frac;
7563 switch (value->cl)
7565 case rvc_nan:
7566 case rvc_zero:
7567 /* For +-NaN or +-0, return (*arg1 = arg0, arg0). */
7568 trunc = frac = *value;
7569 break;
7570 case rvc_inf:
7571 /* For +-Inf, return (*arg1 = arg0, +-0). */
7572 frac = dconst0;
7573 frac.sign = value->sign;
7574 trunc = *value;
7575 break;
7576 case rvc_normal:
7577 /* Return (*arg1 = trunc(arg0), arg0-trunc(arg0)). */
7578 real_trunc (&trunc, VOIDmode, value);
7579 real_arithmetic (&frac, MINUS_EXPR, value, &trunc);
7580 /* If the original number was negative and already
7581 integral, then the fractional part is -0.0. */
7582 if (value->sign && frac.cl == rvc_zero)
7583 frac.sign = value->sign;
7584 break;
7587 /* Create the COMPOUND_EXPR (*arg1 = trunc, frac). */
7588 arg1 = fold_build2_loc (loc, MODIFY_EXPR, rettype, arg1,
7589 build_real (rettype, trunc));
7590 TREE_SIDE_EFFECTS (arg1) = 1;
7591 return fold_build2_loc (loc, COMPOUND_EXPR, rettype, arg1,
7592 build_real (rettype, frac));
7595 return NULL_TREE;
7598 /* Given a location LOC, an interclass builtin function decl FNDECL
7599 and its single argument ARG, return an folded expression computing
7600 the same, or NULL_TREE if we either couldn't or didn't want to fold
7601 (the latter happen if there's an RTL instruction available). */
7603 static tree
7604 fold_builtin_interclass_mathfn (location_t loc, tree fndecl, tree arg)
7606 machine_mode mode;
7608 if (!validate_arg (arg, REAL_TYPE))
7609 return NULL_TREE;
7611 if (interclass_mathfn_icode (arg, fndecl) != CODE_FOR_nothing)
7612 return NULL_TREE;
7614 mode = TYPE_MODE (TREE_TYPE (arg));
7616 bool is_ibm_extended = MODE_COMPOSITE_P (mode);
7618 /* If there is no optab, try generic code. */
7619 switch (DECL_FUNCTION_CODE (fndecl))
7621 tree result;
7623 CASE_FLT_FN (BUILT_IN_ISINF):
7625 /* isinf(x) -> isgreater(fabs(x),DBL_MAX). */
7626 tree const isgr_fn = builtin_decl_explicit (BUILT_IN_ISGREATER);
7627 tree type = TREE_TYPE (arg);
7628 REAL_VALUE_TYPE r;
7629 char buf[128];
7631 if (is_ibm_extended)
7633 /* NaN and Inf are encoded in the high-order double value
7634 only. The low-order value is not significant. */
7635 type = double_type_node;
7636 mode = DFmode;
7637 arg = fold_build1_loc (loc, NOP_EXPR, type, arg);
7639 get_max_float (REAL_MODE_FORMAT (mode), buf, sizeof (buf));
7640 real_from_string (&r, buf);
7641 result = build_call_expr (isgr_fn, 2,
7642 fold_build1_loc (loc, ABS_EXPR, type, arg),
7643 build_real (type, r));
7644 return result;
7646 CASE_FLT_FN (BUILT_IN_FINITE):
7647 case BUILT_IN_ISFINITE:
7649 /* isfinite(x) -> islessequal(fabs(x),DBL_MAX). */
7650 tree const isle_fn = builtin_decl_explicit (BUILT_IN_ISLESSEQUAL);
7651 tree type = TREE_TYPE (arg);
7652 REAL_VALUE_TYPE r;
7653 char buf[128];
7655 if (is_ibm_extended)
7657 /* NaN and Inf are encoded in the high-order double value
7658 only. The low-order value is not significant. */
7659 type = double_type_node;
7660 mode = DFmode;
7661 arg = fold_build1_loc (loc, NOP_EXPR, type, arg);
7663 get_max_float (REAL_MODE_FORMAT (mode), buf, sizeof (buf));
7664 real_from_string (&r, buf);
7665 result = build_call_expr (isle_fn, 2,
7666 fold_build1_loc (loc, ABS_EXPR, type, arg),
7667 build_real (type, r));
7668 /*result = fold_build2_loc (loc, UNGT_EXPR,
7669 TREE_TYPE (TREE_TYPE (fndecl)),
7670 fold_build1_loc (loc, ABS_EXPR, type, arg),
7671 build_real (type, r));
7672 result = fold_build1_loc (loc, TRUTH_NOT_EXPR,
7673 TREE_TYPE (TREE_TYPE (fndecl)),
7674 result);*/
7675 return result;
7677 case BUILT_IN_ISNORMAL:
7679 /* isnormal(x) -> isgreaterequal(fabs(x),DBL_MIN) &
7680 islessequal(fabs(x),DBL_MAX). */
7681 tree const isle_fn = builtin_decl_explicit (BUILT_IN_ISLESSEQUAL);
7682 tree type = TREE_TYPE (arg);
7683 tree orig_arg, max_exp, min_exp;
7684 machine_mode orig_mode = mode;
7685 REAL_VALUE_TYPE rmax, rmin;
7686 char buf[128];
7688 orig_arg = arg = builtin_save_expr (arg);
7689 if (is_ibm_extended)
7691 /* Use double to test the normal range of IBM extended
7692 precision. Emin for IBM extended precision is
7693 different to emin for IEEE double, being 53 higher
7694 since the low double exponent is at least 53 lower
7695 than the high double exponent. */
7696 type = double_type_node;
7697 mode = DFmode;
7698 arg = fold_build1_loc (loc, NOP_EXPR, type, arg);
7700 arg = fold_build1_loc (loc, ABS_EXPR, type, arg);
7702 get_max_float (REAL_MODE_FORMAT (mode), buf, sizeof (buf));
7703 real_from_string (&rmax, buf);
7704 sprintf (buf, "0x1p%d", REAL_MODE_FORMAT (orig_mode)->emin - 1);
7705 real_from_string (&rmin, buf);
7706 max_exp = build_real (type, rmax);
7707 min_exp = build_real (type, rmin);
7709 max_exp = build_call_expr (isle_fn, 2, arg, max_exp);
7710 if (is_ibm_extended)
7712 /* Testing the high end of the range is done just using
7713 the high double, using the same test as isfinite().
7714 For the subnormal end of the range we first test the
7715 high double, then if its magnitude is equal to the
7716 limit of 0x1p-969, we test whether the low double is
7717 non-zero and opposite sign to the high double. */
7718 tree const islt_fn = builtin_decl_explicit (BUILT_IN_ISLESS);
7719 tree const isgt_fn = builtin_decl_explicit (BUILT_IN_ISGREATER);
7720 tree gt_min = build_call_expr (isgt_fn, 2, arg, min_exp);
7721 tree eq_min = fold_build2 (EQ_EXPR, integer_type_node,
7722 arg, min_exp);
7723 tree as_complex = build1 (VIEW_CONVERT_EXPR,
7724 complex_double_type_node, orig_arg);
7725 tree hi_dbl = build1 (REALPART_EXPR, type, as_complex);
7726 tree lo_dbl = build1 (IMAGPART_EXPR, type, as_complex);
7727 tree zero = build_real (type, dconst0);
7728 tree hilt = build_call_expr (islt_fn, 2, hi_dbl, zero);
7729 tree lolt = build_call_expr (islt_fn, 2, lo_dbl, zero);
7730 tree logt = build_call_expr (isgt_fn, 2, lo_dbl, zero);
7731 tree ok_lo = fold_build1 (TRUTH_NOT_EXPR, integer_type_node,
7732 fold_build3 (COND_EXPR,
7733 integer_type_node,
7734 hilt, logt, lolt));
7735 eq_min = fold_build2 (TRUTH_ANDIF_EXPR, integer_type_node,
7736 eq_min, ok_lo);
7737 min_exp = fold_build2 (TRUTH_ORIF_EXPR, integer_type_node,
7738 gt_min, eq_min);
7740 else
7742 tree const isge_fn
7743 = builtin_decl_explicit (BUILT_IN_ISGREATEREQUAL);
7744 min_exp = build_call_expr (isge_fn, 2, arg, min_exp);
7746 result = fold_build2 (BIT_AND_EXPR, integer_type_node,
7747 max_exp, min_exp);
7748 return result;
7750 default:
7751 break;
7754 return NULL_TREE;
7757 /* Fold a call to __builtin_isnan(), __builtin_isinf, __builtin_finite.
7758 ARG is the argument for the call. */
7760 static tree
7761 fold_builtin_classify (location_t loc, tree fndecl, tree arg, int builtin_index)
7763 tree type = TREE_TYPE (TREE_TYPE (fndecl));
7765 if (!validate_arg (arg, REAL_TYPE))
7766 return NULL_TREE;
7768 switch (builtin_index)
7770 case BUILT_IN_ISINF:
7771 if (!HONOR_INFINITIES (arg))
7772 return omit_one_operand_loc (loc, type, integer_zero_node, arg);
7774 return NULL_TREE;
7776 case BUILT_IN_ISINF_SIGN:
7778 /* isinf_sign(x) -> isinf(x) ? (signbit(x) ? -1 : 1) : 0 */
7779 /* In a boolean context, GCC will fold the inner COND_EXPR to
7780 1. So e.g. "if (isinf_sign(x))" would be folded to just
7781 "if (isinf(x) ? 1 : 0)" which becomes "if (isinf(x))". */
7782 tree signbit_fn = mathfn_built_in_1
7783 (TREE_TYPE (arg), CFN_BUILT_IN_SIGNBIT, 0);
7784 tree isinf_fn = builtin_decl_explicit (BUILT_IN_ISINF);
7785 tree tmp = NULL_TREE;
7787 arg = builtin_save_expr (arg);
7789 if (signbit_fn && isinf_fn)
7791 tree signbit_call = build_call_expr_loc (loc, signbit_fn, 1, arg);
7792 tree isinf_call = build_call_expr_loc (loc, isinf_fn, 1, arg);
7794 signbit_call = fold_build2_loc (loc, NE_EXPR, integer_type_node,
7795 signbit_call, integer_zero_node);
7796 isinf_call = fold_build2_loc (loc, NE_EXPR, integer_type_node,
7797 isinf_call, integer_zero_node);
7799 tmp = fold_build3_loc (loc, COND_EXPR, integer_type_node, signbit_call,
7800 integer_minus_one_node, integer_one_node);
7801 tmp = fold_build3_loc (loc, COND_EXPR, integer_type_node,
7802 isinf_call, tmp,
7803 integer_zero_node);
7806 return tmp;
7809 case BUILT_IN_ISFINITE:
7810 if (!HONOR_NANS (arg)
7811 && !HONOR_INFINITIES (arg))
7812 return omit_one_operand_loc (loc, type, integer_one_node, arg);
7814 return NULL_TREE;
7816 case BUILT_IN_ISNAN:
7817 if (!HONOR_NANS (arg))
7818 return omit_one_operand_loc (loc, type, integer_zero_node, arg);
7821 bool is_ibm_extended = MODE_COMPOSITE_P (TYPE_MODE (TREE_TYPE (arg)));
7822 if (is_ibm_extended)
7824 /* NaN and Inf are encoded in the high-order double value
7825 only. The low-order value is not significant. */
7826 arg = fold_build1_loc (loc, NOP_EXPR, double_type_node, arg);
7829 arg = builtin_save_expr (arg);
7830 return fold_build2_loc (loc, UNORDERED_EXPR, type, arg, arg);
7832 default:
7833 gcc_unreachable ();
7837 /* Fold a call to __builtin_fpclassify(int, int, int, int, int, ...).
7838 This builtin will generate code to return the appropriate floating
7839 point classification depending on the value of the floating point
7840 number passed in. The possible return values must be supplied as
7841 int arguments to the call in the following order: FP_NAN, FP_INFINITE,
7842 FP_NORMAL, FP_SUBNORMAL and FP_ZERO. The ellipses is for exactly
7843 one floating point argument which is "type generic". */
7845 static tree
7846 fold_builtin_fpclassify (location_t loc, tree *args, int nargs)
7848 tree fp_nan, fp_infinite, fp_normal, fp_subnormal, fp_zero,
7849 arg, type, res, tmp;
7850 machine_mode mode;
7851 REAL_VALUE_TYPE r;
7852 char buf[128];
7854 /* Verify the required arguments in the original call. */
7855 if (nargs != 6
7856 || !validate_arg (args[0], INTEGER_TYPE)
7857 || !validate_arg (args[1], INTEGER_TYPE)
7858 || !validate_arg (args[2], INTEGER_TYPE)
7859 || !validate_arg (args[3], INTEGER_TYPE)
7860 || !validate_arg (args[4], INTEGER_TYPE)
7861 || !validate_arg (args[5], REAL_TYPE))
7862 return NULL_TREE;
7864 fp_nan = args[0];
7865 fp_infinite = args[1];
7866 fp_normal = args[2];
7867 fp_subnormal = args[3];
7868 fp_zero = args[4];
7869 arg = args[5];
7870 type = TREE_TYPE (arg);
7871 mode = TYPE_MODE (type);
7872 arg = builtin_save_expr (fold_build1_loc (loc, ABS_EXPR, type, arg));
7874 /* fpclassify(x) ->
7875 isnan(x) ? FP_NAN :
7876 (fabs(x) == Inf ? FP_INFINITE :
7877 (fabs(x) >= DBL_MIN ? FP_NORMAL :
7878 (x == 0 ? FP_ZERO : FP_SUBNORMAL))). */
7880 tmp = fold_build2_loc (loc, EQ_EXPR, integer_type_node, arg,
7881 build_real (type, dconst0));
7882 res = fold_build3_loc (loc, COND_EXPR, integer_type_node,
7883 tmp, fp_zero, fp_subnormal);
7885 sprintf (buf, "0x1p%d", REAL_MODE_FORMAT (mode)->emin - 1);
7886 real_from_string (&r, buf);
7887 tmp = fold_build2_loc (loc, GE_EXPR, integer_type_node,
7888 arg, build_real (type, r));
7889 res = fold_build3_loc (loc, COND_EXPR, integer_type_node, tmp, fp_normal, res);
7891 if (HONOR_INFINITIES (mode))
7893 real_inf (&r);
7894 tmp = fold_build2_loc (loc, EQ_EXPR, integer_type_node, arg,
7895 build_real (type, r));
7896 res = fold_build3_loc (loc, COND_EXPR, integer_type_node, tmp,
7897 fp_infinite, res);
7900 if (HONOR_NANS (mode))
7902 tmp = fold_build2_loc (loc, ORDERED_EXPR, integer_type_node, arg, arg);
7903 res = fold_build3_loc (loc, COND_EXPR, integer_type_node, tmp, res, fp_nan);
7906 return res;
7909 /* Fold a call to an unordered comparison function such as
7910 __builtin_isgreater(). FNDECL is the FUNCTION_DECL for the function
7911 being called and ARG0 and ARG1 are the arguments for the call.
7912 UNORDERED_CODE and ORDERED_CODE are comparison codes that give
7913 the opposite of the desired result. UNORDERED_CODE is used
7914 for modes that can hold NaNs and ORDERED_CODE is used for
7915 the rest. */
7917 static tree
7918 fold_builtin_unordered_cmp (location_t loc, tree fndecl, tree arg0, tree arg1,
7919 enum tree_code unordered_code,
7920 enum tree_code ordered_code)
7922 tree type = TREE_TYPE (TREE_TYPE (fndecl));
7923 enum tree_code code;
7924 tree type0, type1;
7925 enum tree_code code0, code1;
7926 tree cmp_type = NULL_TREE;
7928 type0 = TREE_TYPE (arg0);
7929 type1 = TREE_TYPE (arg1);
7931 code0 = TREE_CODE (type0);
7932 code1 = TREE_CODE (type1);
7934 if (code0 == REAL_TYPE && code1 == REAL_TYPE)
7935 /* Choose the wider of two real types. */
7936 cmp_type = TYPE_PRECISION (type0) >= TYPE_PRECISION (type1)
7937 ? type0 : type1;
7938 else if (code0 == REAL_TYPE && code1 == INTEGER_TYPE)
7939 cmp_type = type0;
7940 else if (code0 == INTEGER_TYPE && code1 == REAL_TYPE)
7941 cmp_type = type1;
7943 arg0 = fold_convert_loc (loc, cmp_type, arg0);
7944 arg1 = fold_convert_loc (loc, cmp_type, arg1);
7946 if (unordered_code == UNORDERED_EXPR)
7948 if (!HONOR_NANS (arg0))
7949 return omit_two_operands_loc (loc, type, integer_zero_node, arg0, arg1);
7950 return fold_build2_loc (loc, UNORDERED_EXPR, type, arg0, arg1);
7953 code = HONOR_NANS (arg0) ? unordered_code : ordered_code;
7954 return fold_build1_loc (loc, TRUTH_NOT_EXPR, type,
7955 fold_build2_loc (loc, code, type, arg0, arg1));
7958 /* Fold __builtin_{,s,u}{add,sub,mul}{,l,ll}_overflow, either into normal
7959 arithmetics if it can never overflow, or into internal functions that
7960 return both result of arithmetics and overflowed boolean flag in
7961 a complex integer result, or some other check for overflow. */
7963 static tree
7964 fold_builtin_arith_overflow (location_t loc, enum built_in_function fcode,
7965 tree arg0, tree arg1, tree arg2)
7967 enum internal_fn ifn = IFN_LAST;
7968 tree type = TREE_TYPE (TREE_TYPE (arg2));
7969 tree mem_arg2 = build_fold_indirect_ref_loc (loc, arg2);
7970 switch (fcode)
7972 case BUILT_IN_ADD_OVERFLOW:
7973 case BUILT_IN_SADD_OVERFLOW:
7974 case BUILT_IN_SADDL_OVERFLOW:
7975 case BUILT_IN_SADDLL_OVERFLOW:
7976 case BUILT_IN_UADD_OVERFLOW:
7977 case BUILT_IN_UADDL_OVERFLOW:
7978 case BUILT_IN_UADDLL_OVERFLOW:
7979 ifn = IFN_ADD_OVERFLOW;
7980 break;
7981 case BUILT_IN_SUB_OVERFLOW:
7982 case BUILT_IN_SSUB_OVERFLOW:
7983 case BUILT_IN_SSUBL_OVERFLOW:
7984 case BUILT_IN_SSUBLL_OVERFLOW:
7985 case BUILT_IN_USUB_OVERFLOW:
7986 case BUILT_IN_USUBL_OVERFLOW:
7987 case BUILT_IN_USUBLL_OVERFLOW:
7988 ifn = IFN_SUB_OVERFLOW;
7989 break;
7990 case BUILT_IN_MUL_OVERFLOW:
7991 case BUILT_IN_SMUL_OVERFLOW:
7992 case BUILT_IN_SMULL_OVERFLOW:
7993 case BUILT_IN_SMULLL_OVERFLOW:
7994 case BUILT_IN_UMUL_OVERFLOW:
7995 case BUILT_IN_UMULL_OVERFLOW:
7996 case BUILT_IN_UMULLL_OVERFLOW:
7997 ifn = IFN_MUL_OVERFLOW;
7998 break;
7999 default:
8000 gcc_unreachable ();
8002 tree ctype = build_complex_type (type);
8003 tree call = build_call_expr_internal_loc (loc, ifn, ctype,
8004 2, arg0, arg1);
8005 tree tgt = save_expr (call);
8006 tree intres = build1_loc (loc, REALPART_EXPR, type, tgt);
8007 tree ovfres = build1_loc (loc, IMAGPART_EXPR, type, tgt);
8008 ovfres = fold_convert_loc (loc, boolean_type_node, ovfres);
8009 tree store
8010 = fold_build2_loc (loc, MODIFY_EXPR, void_type_node, mem_arg2, intres);
8011 return build2_loc (loc, COMPOUND_EXPR, boolean_type_node, store, ovfres);
8014 /* Fold a call to __builtin_FILE to a constant string. */
8016 static inline tree
8017 fold_builtin_FILE (location_t loc)
8019 if (const char *fname = LOCATION_FILE (loc))
8020 return build_string_literal (strlen (fname) + 1, fname);
8022 return build_string_literal (1, "");
8025 /* Fold a call to __builtin_FUNCTION to a constant string. */
8027 static inline tree
8028 fold_builtin_FUNCTION ()
8030 if (current_function_decl)
8032 const char *name = IDENTIFIER_POINTER (DECL_NAME (current_function_decl));
8033 return build_string_literal (strlen (name) + 1, name);
8036 return build_string_literal (1, "");
8039 /* Fold a call to __builtin_LINE to an integer constant. */
8041 static inline tree
8042 fold_builtin_LINE (location_t loc, tree type)
8044 return build_int_cst (type, LOCATION_LINE (loc));
8047 /* Fold a call to built-in function FNDECL with 0 arguments.
8048 This function returns NULL_TREE if no simplification was possible. */
8050 static tree
8051 fold_builtin_0 (location_t loc, tree fndecl)
8053 tree type = TREE_TYPE (TREE_TYPE (fndecl));
8054 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
8055 switch (fcode)
8057 case BUILT_IN_FILE:
8058 return fold_builtin_FILE (loc);
8060 case BUILT_IN_FUNCTION:
8061 return fold_builtin_FUNCTION ();
8063 case BUILT_IN_LINE:
8064 return fold_builtin_LINE (loc, type);
8066 CASE_FLT_FN (BUILT_IN_INF):
8067 case BUILT_IN_INFD32:
8068 case BUILT_IN_INFD64:
8069 case BUILT_IN_INFD128:
8070 return fold_builtin_inf (loc, type, true);
8072 CASE_FLT_FN (BUILT_IN_HUGE_VAL):
8073 return fold_builtin_inf (loc, type, false);
8075 case BUILT_IN_CLASSIFY_TYPE:
8076 return fold_builtin_classify_type (NULL_TREE);
8078 default:
8079 break;
8081 return NULL_TREE;
8084 /* Fold a call to built-in function FNDECL with 1 argument, ARG0.
8085 This function returns NULL_TREE if no simplification was possible. */
8087 static tree
8088 fold_builtin_1 (location_t loc, tree fndecl, tree arg0)
8090 tree type = TREE_TYPE (TREE_TYPE (fndecl));
8091 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
8093 if (TREE_CODE (arg0) == ERROR_MARK)
8094 return NULL_TREE;
8096 if (tree ret = fold_const_call (as_combined_fn (fcode), type, arg0))
8097 return ret;
8099 switch (fcode)
8101 case BUILT_IN_CONSTANT_P:
8103 tree val = fold_builtin_constant_p (arg0);
8105 /* Gimplification will pull the CALL_EXPR for the builtin out of
8106 an if condition. When not optimizing, we'll not CSE it back.
8107 To avoid link error types of regressions, return false now. */
8108 if (!val && !optimize)
8109 val = integer_zero_node;
8111 return val;
8114 case BUILT_IN_CLASSIFY_TYPE:
8115 return fold_builtin_classify_type (arg0);
8117 case BUILT_IN_STRLEN:
8118 return fold_builtin_strlen (loc, type, arg0);
8120 CASE_FLT_FN (BUILT_IN_FABS):
8121 case BUILT_IN_FABSD32:
8122 case BUILT_IN_FABSD64:
8123 case BUILT_IN_FABSD128:
8124 return fold_builtin_fabs (loc, arg0, type);
8126 case BUILT_IN_ABS:
8127 case BUILT_IN_LABS:
8128 case BUILT_IN_LLABS:
8129 case BUILT_IN_IMAXABS:
8130 return fold_builtin_abs (loc, arg0, type);
8132 CASE_FLT_FN (BUILT_IN_CONJ):
8133 if (validate_arg (arg0, COMPLEX_TYPE)
8134 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
8135 return fold_build1_loc (loc, CONJ_EXPR, type, arg0);
8136 break;
8138 CASE_FLT_FN (BUILT_IN_CREAL):
8139 if (validate_arg (arg0, COMPLEX_TYPE)
8140 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
8141 return non_lvalue_loc (loc, fold_build1_loc (loc, REALPART_EXPR, type, arg0));
8142 break;
8144 CASE_FLT_FN (BUILT_IN_CIMAG):
8145 if (validate_arg (arg0, COMPLEX_TYPE)
8146 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE)
8147 return non_lvalue_loc (loc, fold_build1_loc (loc, IMAGPART_EXPR, type, arg0));
8148 break;
8150 CASE_FLT_FN (BUILT_IN_CARG):
8151 return fold_builtin_carg (loc, arg0, type);
8153 case BUILT_IN_ISASCII:
8154 return fold_builtin_isascii (loc, arg0);
8156 case BUILT_IN_TOASCII:
8157 return fold_builtin_toascii (loc, arg0);
8159 case BUILT_IN_ISDIGIT:
8160 return fold_builtin_isdigit (loc, arg0);
8162 CASE_FLT_FN (BUILT_IN_FINITE):
8163 case BUILT_IN_FINITED32:
8164 case BUILT_IN_FINITED64:
8165 case BUILT_IN_FINITED128:
8166 case BUILT_IN_ISFINITE:
8168 tree ret = fold_builtin_classify (loc, fndecl, arg0, BUILT_IN_ISFINITE);
8169 if (ret)
8170 return ret;
8171 return fold_builtin_interclass_mathfn (loc, fndecl, arg0);
8174 CASE_FLT_FN (BUILT_IN_ISINF):
8175 case BUILT_IN_ISINFD32:
8176 case BUILT_IN_ISINFD64:
8177 case BUILT_IN_ISINFD128:
8179 tree ret = fold_builtin_classify (loc, fndecl, arg0, BUILT_IN_ISINF);
8180 if (ret)
8181 return ret;
8182 return fold_builtin_interclass_mathfn (loc, fndecl, arg0);
8185 case BUILT_IN_ISNORMAL:
8186 return fold_builtin_interclass_mathfn (loc, fndecl, arg0);
8188 case BUILT_IN_ISINF_SIGN:
8189 return fold_builtin_classify (loc, fndecl, arg0, BUILT_IN_ISINF_SIGN);
8191 CASE_FLT_FN (BUILT_IN_ISNAN):
8192 case BUILT_IN_ISNAND32:
8193 case BUILT_IN_ISNAND64:
8194 case BUILT_IN_ISNAND128:
8195 return fold_builtin_classify (loc, fndecl, arg0, BUILT_IN_ISNAN);
8197 case BUILT_IN_FREE:
8198 if (integer_zerop (arg0))
8199 return build_empty_stmt (loc);
8200 break;
8202 default:
8203 break;
8206 return NULL_TREE;
8210 /* Fold a call to built-in function FNDECL with 2 arguments, ARG0 and ARG1.
8211 This function returns NULL_TREE if no simplification was possible. */
8213 static tree
8214 fold_builtin_2 (location_t loc, tree fndecl, tree arg0, tree arg1)
8216 tree type = TREE_TYPE (TREE_TYPE (fndecl));
8217 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
8219 if (TREE_CODE (arg0) == ERROR_MARK
8220 || TREE_CODE (arg1) == ERROR_MARK)
8221 return NULL_TREE;
8223 if (tree ret = fold_const_call (as_combined_fn (fcode), type, arg0, arg1))
8224 return ret;
8226 switch (fcode)
8228 CASE_FLT_FN_REENT (BUILT_IN_GAMMA): /* GAMMA_R */
8229 CASE_FLT_FN_REENT (BUILT_IN_LGAMMA): /* LGAMMA_R */
8230 if (validate_arg (arg0, REAL_TYPE)
8231 && validate_arg (arg1, POINTER_TYPE))
8232 return do_mpfr_lgamma_r (arg0, arg1, type);
8233 break;
8235 CASE_FLT_FN (BUILT_IN_FREXP):
8236 return fold_builtin_frexp (loc, arg0, arg1, type);
8238 CASE_FLT_FN (BUILT_IN_MODF):
8239 return fold_builtin_modf (loc, arg0, arg1, type);
8241 case BUILT_IN_STRSTR:
8242 return fold_builtin_strstr (loc, arg0, arg1, type);
8244 case BUILT_IN_STRSPN:
8245 return fold_builtin_strspn (loc, arg0, arg1);
8247 case BUILT_IN_STRCSPN:
8248 return fold_builtin_strcspn (loc, arg0, arg1);
8250 case BUILT_IN_STRCHR:
8251 case BUILT_IN_INDEX:
8252 return fold_builtin_strchr (loc, arg0, arg1, type);
8254 case BUILT_IN_STRRCHR:
8255 case BUILT_IN_RINDEX:
8256 return fold_builtin_strrchr (loc, arg0, arg1, type);
8258 case BUILT_IN_STRCMP:
8259 return fold_builtin_strcmp (loc, arg0, arg1);
8261 case BUILT_IN_STRPBRK:
8262 return fold_builtin_strpbrk (loc, arg0, arg1, type);
8264 case BUILT_IN_EXPECT:
8265 return fold_builtin_expect (loc, arg0, arg1, NULL_TREE);
8267 case BUILT_IN_ISGREATER:
8268 return fold_builtin_unordered_cmp (loc, fndecl,
8269 arg0, arg1, UNLE_EXPR, LE_EXPR);
8270 case BUILT_IN_ISGREATEREQUAL:
8271 return fold_builtin_unordered_cmp (loc, fndecl,
8272 arg0, arg1, UNLT_EXPR, LT_EXPR);
8273 case BUILT_IN_ISLESS:
8274 return fold_builtin_unordered_cmp (loc, fndecl,
8275 arg0, arg1, UNGE_EXPR, GE_EXPR);
8276 case BUILT_IN_ISLESSEQUAL:
8277 return fold_builtin_unordered_cmp (loc, fndecl,
8278 arg0, arg1, UNGT_EXPR, GT_EXPR);
8279 case BUILT_IN_ISLESSGREATER:
8280 return fold_builtin_unordered_cmp (loc, fndecl,
8281 arg0, arg1, UNEQ_EXPR, EQ_EXPR);
8282 case BUILT_IN_ISUNORDERED:
8283 return fold_builtin_unordered_cmp (loc, fndecl,
8284 arg0, arg1, UNORDERED_EXPR,
8285 NOP_EXPR);
8287 /* We do the folding for va_start in the expander. */
8288 case BUILT_IN_VA_START:
8289 break;
8291 case BUILT_IN_OBJECT_SIZE:
8292 return fold_builtin_object_size (arg0, arg1);
8294 case BUILT_IN_ATOMIC_ALWAYS_LOCK_FREE:
8295 return fold_builtin_atomic_always_lock_free (arg0, arg1);
8297 case BUILT_IN_ATOMIC_IS_LOCK_FREE:
8298 return fold_builtin_atomic_is_lock_free (arg0, arg1);
8300 default:
8301 break;
8303 return NULL_TREE;
8306 /* Fold a call to built-in function FNDECL with 3 arguments, ARG0, ARG1,
8307 and ARG2.
8308 This function returns NULL_TREE if no simplification was possible. */
8310 static tree
8311 fold_builtin_3 (location_t loc, tree fndecl,
8312 tree arg0, tree arg1, tree arg2)
8314 tree type = TREE_TYPE (TREE_TYPE (fndecl));
8315 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
8317 if (TREE_CODE (arg0) == ERROR_MARK
8318 || TREE_CODE (arg1) == ERROR_MARK
8319 || TREE_CODE (arg2) == ERROR_MARK)
8320 return NULL_TREE;
8322 if (tree ret = fold_const_call (as_combined_fn (fcode), type,
8323 arg0, arg1, arg2))
8324 return ret;
8326 switch (fcode)
8329 CASE_FLT_FN (BUILT_IN_SINCOS):
8330 return fold_builtin_sincos (loc, arg0, arg1, arg2);
8332 CASE_FLT_FN (BUILT_IN_FMA):
8333 return fold_builtin_fma (loc, arg0, arg1, arg2, type);
8335 CASE_FLT_FN (BUILT_IN_REMQUO):
8336 if (validate_arg (arg0, REAL_TYPE)
8337 && validate_arg (arg1, REAL_TYPE)
8338 && validate_arg (arg2, POINTER_TYPE))
8339 return do_mpfr_remquo (arg0, arg1, arg2);
8340 break;
8342 case BUILT_IN_STRNCMP:
8343 return fold_builtin_strncmp (loc, arg0, arg1, arg2);
8345 case BUILT_IN_MEMCHR:
8346 return fold_builtin_memchr (loc, arg0, arg1, arg2, type);
8348 case BUILT_IN_BCMP:
8349 case BUILT_IN_MEMCMP:
8350 return fold_builtin_memcmp (loc, arg0, arg1, arg2);;
8352 case BUILT_IN_EXPECT:
8353 return fold_builtin_expect (loc, arg0, arg1, arg2);
8355 case BUILT_IN_ADD_OVERFLOW:
8356 case BUILT_IN_SUB_OVERFLOW:
8357 case BUILT_IN_MUL_OVERFLOW:
8358 case BUILT_IN_SADD_OVERFLOW:
8359 case BUILT_IN_SADDL_OVERFLOW:
8360 case BUILT_IN_SADDLL_OVERFLOW:
8361 case BUILT_IN_SSUB_OVERFLOW:
8362 case BUILT_IN_SSUBL_OVERFLOW:
8363 case BUILT_IN_SSUBLL_OVERFLOW:
8364 case BUILT_IN_SMUL_OVERFLOW:
8365 case BUILT_IN_SMULL_OVERFLOW:
8366 case BUILT_IN_SMULLL_OVERFLOW:
8367 case BUILT_IN_UADD_OVERFLOW:
8368 case BUILT_IN_UADDL_OVERFLOW:
8369 case BUILT_IN_UADDLL_OVERFLOW:
8370 case BUILT_IN_USUB_OVERFLOW:
8371 case BUILT_IN_USUBL_OVERFLOW:
8372 case BUILT_IN_USUBLL_OVERFLOW:
8373 case BUILT_IN_UMUL_OVERFLOW:
8374 case BUILT_IN_UMULL_OVERFLOW:
8375 case BUILT_IN_UMULLL_OVERFLOW:
8376 return fold_builtin_arith_overflow (loc, fcode, arg0, arg1, arg2);
8378 default:
8379 break;
8381 return NULL_TREE;
8384 /* Fold a call to built-in function FNDECL. ARGS is an array of NARGS
8385 arguments. IGNORE is true if the result of the
8386 function call is ignored. This function returns NULL_TREE if no
8387 simplification was possible. */
8389 tree
8390 fold_builtin_n (location_t loc, tree fndecl, tree *args, int nargs, bool)
8392 tree ret = NULL_TREE;
8394 switch (nargs)
8396 case 0:
8397 ret = fold_builtin_0 (loc, fndecl);
8398 break;
8399 case 1:
8400 ret = fold_builtin_1 (loc, fndecl, args[0]);
8401 break;
8402 case 2:
8403 ret = fold_builtin_2 (loc, fndecl, args[0], args[1]);
8404 break;
8405 case 3:
8406 ret = fold_builtin_3 (loc, fndecl, args[0], args[1], args[2]);
8407 break;
8408 default:
8409 ret = fold_builtin_varargs (loc, fndecl, args, nargs);
8410 break;
8412 if (ret)
8414 ret = build1 (NOP_EXPR, TREE_TYPE (ret), ret);
8415 SET_EXPR_LOCATION (ret, loc);
8416 TREE_NO_WARNING (ret) = 1;
8417 return ret;
8419 return NULL_TREE;
8422 /* Construct a new CALL_EXPR to FNDECL using the tail of the argument
8423 list ARGS along with N new arguments in NEWARGS. SKIP is the number
8424 of arguments in ARGS to be omitted. OLDNARGS is the number of
8425 elements in ARGS. */
8427 static tree
8428 rewrite_call_expr_valist (location_t loc, int oldnargs, tree *args,
8429 int skip, tree fndecl, int n, va_list newargs)
8431 int nargs = oldnargs - skip + n;
8432 tree *buffer;
8434 if (n > 0)
8436 int i, j;
8438 buffer = XALLOCAVEC (tree, nargs);
8439 for (i = 0; i < n; i++)
8440 buffer[i] = va_arg (newargs, tree);
8441 for (j = skip; j < oldnargs; j++, i++)
8442 buffer[i] = args[j];
8444 else
8445 buffer = args + skip;
8447 return build_call_expr_loc_array (loc, fndecl, nargs, buffer);
8450 /* Return true if FNDECL shouldn't be folded right now.
8451 If a built-in function has an inline attribute always_inline
8452 wrapper, defer folding it after always_inline functions have
8453 been inlined, otherwise e.g. -D_FORTIFY_SOURCE checking
8454 might not be performed. */
8456 bool
8457 avoid_folding_inline_builtin (tree fndecl)
8459 return (DECL_DECLARED_INLINE_P (fndecl)
8460 && DECL_DISREGARD_INLINE_LIMITS (fndecl)
8461 && cfun
8462 && !cfun->always_inline_functions_inlined
8463 && lookup_attribute ("always_inline", DECL_ATTRIBUTES (fndecl)));
8466 /* A wrapper function for builtin folding that prevents warnings for
8467 "statement without effect" and the like, caused by removing the
8468 call node earlier than the warning is generated. */
8470 tree
8471 fold_call_expr (location_t loc, tree exp, bool ignore)
8473 tree ret = NULL_TREE;
8474 tree fndecl = get_callee_fndecl (exp);
8475 if (fndecl
8476 && TREE_CODE (fndecl) == FUNCTION_DECL
8477 && DECL_BUILT_IN (fndecl)
8478 /* If CALL_EXPR_VA_ARG_PACK is set, the arguments aren't finalized
8479 yet. Defer folding until we see all the arguments
8480 (after inlining). */
8481 && !CALL_EXPR_VA_ARG_PACK (exp))
8483 int nargs = call_expr_nargs (exp);
8485 /* Before gimplification CALL_EXPR_VA_ARG_PACK is not set, but
8486 instead last argument is __builtin_va_arg_pack (). Defer folding
8487 even in that case, until arguments are finalized. */
8488 if (nargs && TREE_CODE (CALL_EXPR_ARG (exp, nargs - 1)) == CALL_EXPR)
8490 tree fndecl2 = get_callee_fndecl (CALL_EXPR_ARG (exp, nargs - 1));
8491 if (fndecl2
8492 && TREE_CODE (fndecl2) == FUNCTION_DECL
8493 && DECL_BUILT_IN_CLASS (fndecl2) == BUILT_IN_NORMAL
8494 && DECL_FUNCTION_CODE (fndecl2) == BUILT_IN_VA_ARG_PACK)
8495 return NULL_TREE;
8498 if (avoid_folding_inline_builtin (fndecl))
8499 return NULL_TREE;
8501 if (DECL_BUILT_IN_CLASS (fndecl) == BUILT_IN_MD)
8502 return targetm.fold_builtin (fndecl, call_expr_nargs (exp),
8503 CALL_EXPR_ARGP (exp), ignore);
8504 else
8506 tree *args = CALL_EXPR_ARGP (exp);
8507 ret = fold_builtin_n (loc, fndecl, args, nargs, ignore);
8508 if (ret)
8509 return ret;
8512 return NULL_TREE;
8515 /* Fold a CALL_EXPR with type TYPE with FN as the function expression.
8516 N arguments are passed in the array ARGARRAY. Return a folded
8517 expression or NULL_TREE if no simplification was possible. */
8519 tree
8520 fold_builtin_call_array (location_t loc, tree,
8521 tree fn,
8522 int n,
8523 tree *argarray)
8525 if (TREE_CODE (fn) != ADDR_EXPR)
8526 return NULL_TREE;
8528 tree fndecl = TREE_OPERAND (fn, 0);
8529 if (TREE_CODE (fndecl) == FUNCTION_DECL
8530 && DECL_BUILT_IN (fndecl))
8532 /* If last argument is __builtin_va_arg_pack (), arguments to this
8533 function are not finalized yet. Defer folding until they are. */
8534 if (n && TREE_CODE (argarray[n - 1]) == CALL_EXPR)
8536 tree fndecl2 = get_callee_fndecl (argarray[n - 1]);
8537 if (fndecl2
8538 && TREE_CODE (fndecl2) == FUNCTION_DECL
8539 && DECL_BUILT_IN_CLASS (fndecl2) == BUILT_IN_NORMAL
8540 && DECL_FUNCTION_CODE (fndecl2) == BUILT_IN_VA_ARG_PACK)
8541 return NULL_TREE;
8543 if (avoid_folding_inline_builtin (fndecl))
8544 return NULL_TREE;
8545 if (DECL_BUILT_IN_CLASS (fndecl) == BUILT_IN_MD)
8546 return targetm.fold_builtin (fndecl, n, argarray, false);
8547 else
8548 return fold_builtin_n (loc, fndecl, argarray, n, false);
8551 return NULL_TREE;
8554 /* Construct a new CALL_EXPR using the tail of the argument list of EXP
8555 along with N new arguments specified as the "..." parameters. SKIP
8556 is the number of arguments in EXP to be omitted. This function is used
8557 to do varargs-to-varargs transformations. */
8559 static tree
8560 rewrite_call_expr (location_t loc, tree exp, int skip, tree fndecl, int n, ...)
8562 va_list ap;
8563 tree t;
8565 va_start (ap, n);
8566 t = rewrite_call_expr_valist (loc, call_expr_nargs (exp),
8567 CALL_EXPR_ARGP (exp), skip, fndecl, n, ap);
8568 va_end (ap);
8570 return t;
8573 /* Validate a single argument ARG against a tree code CODE representing
8574 a type. */
8576 static bool
8577 validate_arg (const_tree arg, enum tree_code code)
8579 if (!arg)
8580 return false;
8581 else if (code == POINTER_TYPE)
8582 return POINTER_TYPE_P (TREE_TYPE (arg));
8583 else if (code == INTEGER_TYPE)
8584 return INTEGRAL_TYPE_P (TREE_TYPE (arg));
8585 return code == TREE_CODE (TREE_TYPE (arg));
8588 /* This function validates the types of a function call argument list
8589 against a specified list of tree_codes. If the last specifier is a 0,
8590 that represents an ellipses, otherwise the last specifier must be a
8591 VOID_TYPE.
8593 This is the GIMPLE version of validate_arglist. Eventually we want to
8594 completely convert builtins.c to work from GIMPLEs and the tree based
8595 validate_arglist will then be removed. */
8597 bool
8598 validate_gimple_arglist (const gcall *call, ...)
8600 enum tree_code code;
8601 bool res = 0;
8602 va_list ap;
8603 const_tree arg;
8604 size_t i;
8606 va_start (ap, call);
8607 i = 0;
8611 code = (enum tree_code) va_arg (ap, int);
8612 switch (code)
8614 case 0:
8615 /* This signifies an ellipses, any further arguments are all ok. */
8616 res = true;
8617 goto end;
8618 case VOID_TYPE:
8619 /* This signifies an endlink, if no arguments remain, return
8620 true, otherwise return false. */
8621 res = (i == gimple_call_num_args (call));
8622 goto end;
8623 default:
8624 /* If no parameters remain or the parameter's code does not
8625 match the specified code, return false. Otherwise continue
8626 checking any remaining arguments. */
8627 arg = gimple_call_arg (call, i++);
8628 if (!validate_arg (arg, code))
8629 goto end;
8630 break;
8633 while (1);
8635 /* We need gotos here since we can only have one VA_CLOSE in a
8636 function. */
8637 end: ;
8638 va_end (ap);
8640 return res;
8643 /* Default target-specific builtin expander that does nothing. */
8646 default_expand_builtin (tree exp ATTRIBUTE_UNUSED,
8647 rtx target ATTRIBUTE_UNUSED,
8648 rtx subtarget ATTRIBUTE_UNUSED,
8649 machine_mode mode ATTRIBUTE_UNUSED,
8650 int ignore ATTRIBUTE_UNUSED)
8652 return NULL_RTX;
8655 /* Returns true is EXP represents data that would potentially reside
8656 in a readonly section. */
8658 bool
8659 readonly_data_expr (tree exp)
8661 STRIP_NOPS (exp);
8663 if (TREE_CODE (exp) != ADDR_EXPR)
8664 return false;
8666 exp = get_base_address (TREE_OPERAND (exp, 0));
8667 if (!exp)
8668 return false;
8670 /* Make sure we call decl_readonly_section only for trees it
8671 can handle (since it returns true for everything it doesn't
8672 understand). */
8673 if (TREE_CODE (exp) == STRING_CST
8674 || TREE_CODE (exp) == CONSTRUCTOR
8675 || (TREE_CODE (exp) == VAR_DECL && TREE_STATIC (exp)))
8676 return decl_readonly_section (exp, 0);
8677 else
8678 return false;
8681 /* Simplify a call to the strstr builtin. S1 and S2 are the arguments
8682 to the call, and TYPE is its return type.
8684 Return NULL_TREE if no simplification was possible, otherwise return the
8685 simplified form of the call as a tree.
8687 The simplified form may be a constant or other expression which
8688 computes the same value, but in a more efficient manner (including
8689 calls to other builtin functions).
8691 The call may contain arguments which need to be evaluated, but
8692 which are not useful to determine the result of the call. In
8693 this case we return a chain of COMPOUND_EXPRs. The LHS of each
8694 COMPOUND_EXPR will be an argument which must be evaluated.
8695 COMPOUND_EXPRs are chained through their RHS. The RHS of the last
8696 COMPOUND_EXPR in the chain will contain the tree for the simplified
8697 form of the builtin function call. */
8699 static tree
8700 fold_builtin_strstr (location_t loc, tree s1, tree s2, tree type)
8702 if (!validate_arg (s1, POINTER_TYPE)
8703 || !validate_arg (s2, POINTER_TYPE))
8704 return NULL_TREE;
8705 else
8707 tree fn;
8708 const char *p1, *p2;
8710 p2 = c_getstr (s2);
8711 if (p2 == NULL)
8712 return NULL_TREE;
8714 p1 = c_getstr (s1);
8715 if (p1 != NULL)
8717 const char *r = strstr (p1, p2);
8718 tree tem;
8720 if (r == NULL)
8721 return build_int_cst (TREE_TYPE (s1), 0);
8723 /* Return an offset into the constant string argument. */
8724 tem = fold_build_pointer_plus_hwi_loc (loc, s1, r - p1);
8725 return fold_convert_loc (loc, type, tem);
8728 /* The argument is const char *, and the result is char *, so we need
8729 a type conversion here to avoid a warning. */
8730 if (p2[0] == '\0')
8731 return fold_convert_loc (loc, type, s1);
8733 if (p2[1] != '\0')
8734 return NULL_TREE;
8736 fn = builtin_decl_implicit (BUILT_IN_STRCHR);
8737 if (!fn)
8738 return NULL_TREE;
8740 /* New argument list transforming strstr(s1, s2) to
8741 strchr(s1, s2[0]). */
8742 return build_call_expr_loc (loc, fn, 2, s1,
8743 build_int_cst (integer_type_node, p2[0]));
8747 /* Simplify a call to the strchr builtin. S1 and S2 are the arguments to
8748 the call, and TYPE is its return type.
8750 Return NULL_TREE if no simplification was possible, otherwise return the
8751 simplified form of the call as a tree.
8753 The simplified form may be a constant or other expression which
8754 computes the same value, but in a more efficient manner (including
8755 calls to other builtin functions).
8757 The call may contain arguments which need to be evaluated, but
8758 which are not useful to determine the result of the call. In
8759 this case we return a chain of COMPOUND_EXPRs. The LHS of each
8760 COMPOUND_EXPR will be an argument which must be evaluated.
8761 COMPOUND_EXPRs are chained through their RHS. The RHS of the last
8762 COMPOUND_EXPR in the chain will contain the tree for the simplified
8763 form of the builtin function call. */
8765 static tree
8766 fold_builtin_strchr (location_t loc, tree s1, tree s2, tree type)
8768 if (!validate_arg (s1, POINTER_TYPE)
8769 || !validate_arg (s2, INTEGER_TYPE))
8770 return NULL_TREE;
8771 else
8773 const char *p1;
8775 if (TREE_CODE (s2) != INTEGER_CST)
8776 return NULL_TREE;
8778 p1 = c_getstr (s1);
8779 if (p1 != NULL)
8781 char c;
8782 const char *r;
8783 tree tem;
8785 if (target_char_cast (s2, &c))
8786 return NULL_TREE;
8788 r = strchr (p1, c);
8790 if (r == NULL)
8791 return build_int_cst (TREE_TYPE (s1), 0);
8793 /* Return an offset into the constant string argument. */
8794 tem = fold_build_pointer_plus_hwi_loc (loc, s1, r - p1);
8795 return fold_convert_loc (loc, type, tem);
8797 return NULL_TREE;
8801 /* Simplify a call to the strrchr builtin. S1 and S2 are the arguments to
8802 the call, and TYPE is its return type.
8804 Return NULL_TREE if no simplification was possible, otherwise return the
8805 simplified form of the call as a tree.
8807 The simplified form may be a constant or other expression which
8808 computes the same value, but in a more efficient manner (including
8809 calls to other builtin functions).
8811 The call may contain arguments which need to be evaluated, but
8812 which are not useful to determine the result of the call. In
8813 this case we return a chain of COMPOUND_EXPRs. The LHS of each
8814 COMPOUND_EXPR will be an argument which must be evaluated.
8815 COMPOUND_EXPRs are chained through their RHS. The RHS of the last
8816 COMPOUND_EXPR in the chain will contain the tree for the simplified
8817 form of the builtin function call. */
8819 static tree
8820 fold_builtin_strrchr (location_t loc, tree s1, tree s2, tree type)
8822 if (!validate_arg (s1, POINTER_TYPE)
8823 || !validate_arg (s2, INTEGER_TYPE))
8824 return NULL_TREE;
8825 else
8827 tree fn;
8828 const char *p1;
8830 if (TREE_CODE (s2) != INTEGER_CST)
8831 return NULL_TREE;
8833 p1 = c_getstr (s1);
8834 if (p1 != NULL)
8836 char c;
8837 const char *r;
8838 tree tem;
8840 if (target_char_cast (s2, &c))
8841 return NULL_TREE;
8843 r = strrchr (p1, c);
8845 if (r == NULL)
8846 return build_int_cst (TREE_TYPE (s1), 0);
8848 /* Return an offset into the constant string argument. */
8849 tem = fold_build_pointer_plus_hwi_loc (loc, s1, r - p1);
8850 return fold_convert_loc (loc, type, tem);
8853 if (! integer_zerop (s2))
8854 return NULL_TREE;
8856 fn = builtin_decl_implicit (BUILT_IN_STRCHR);
8857 if (!fn)
8858 return NULL_TREE;
8860 /* Transform strrchr(s1, '\0') to strchr(s1, '\0'). */
8861 return build_call_expr_loc (loc, fn, 2, s1, s2);
8865 /* Simplify a call to the strpbrk builtin. S1 and S2 are the arguments
8866 to the call, and TYPE is its return type.
8868 Return NULL_TREE if no simplification was possible, otherwise return the
8869 simplified form of the call as a tree.
8871 The simplified form may be a constant or other expression which
8872 computes the same value, but in a more efficient manner (including
8873 calls to other builtin functions).
8875 The call may contain arguments which need to be evaluated, but
8876 which are not useful to determine the result of the call. In
8877 this case we return a chain of COMPOUND_EXPRs. The LHS of each
8878 COMPOUND_EXPR will be an argument which must be evaluated.
8879 COMPOUND_EXPRs are chained through their RHS. The RHS of the last
8880 COMPOUND_EXPR in the chain will contain the tree for the simplified
8881 form of the builtin function call. */
8883 static tree
8884 fold_builtin_strpbrk (location_t loc, tree s1, tree s2, tree type)
8886 if (!validate_arg (s1, POINTER_TYPE)
8887 || !validate_arg (s2, POINTER_TYPE))
8888 return NULL_TREE;
8889 else
8891 tree fn;
8892 const char *p1, *p2;
8894 p2 = c_getstr (s2);
8895 if (p2 == NULL)
8896 return NULL_TREE;
8898 p1 = c_getstr (s1);
8899 if (p1 != NULL)
8901 const char *r = strpbrk (p1, p2);
8902 tree tem;
8904 if (r == NULL)
8905 return build_int_cst (TREE_TYPE (s1), 0);
8907 /* Return an offset into the constant string argument. */
8908 tem = fold_build_pointer_plus_hwi_loc (loc, s1, r - p1);
8909 return fold_convert_loc (loc, type, tem);
8912 if (p2[0] == '\0')
8913 /* strpbrk(x, "") == NULL.
8914 Evaluate and ignore s1 in case it had side-effects. */
8915 return omit_one_operand_loc (loc, TREE_TYPE (s1), integer_zero_node, s1);
8917 if (p2[1] != '\0')
8918 return NULL_TREE; /* Really call strpbrk. */
8920 fn = builtin_decl_implicit (BUILT_IN_STRCHR);
8921 if (!fn)
8922 return NULL_TREE;
8924 /* New argument list transforming strpbrk(s1, s2) to
8925 strchr(s1, s2[0]). */
8926 return build_call_expr_loc (loc, fn, 2, s1,
8927 build_int_cst (integer_type_node, p2[0]));
8931 /* Simplify a call to the strspn builtin. S1 and S2 are the arguments
8932 to the call.
8934 Return NULL_TREE if no simplification was possible, otherwise return the
8935 simplified form of the call as a tree.
8937 The simplified form may be a constant or other expression which
8938 computes the same value, but in a more efficient manner (including
8939 calls to other builtin functions).
8941 The call may contain arguments which need to be evaluated, but
8942 which are not useful to determine the result of the call. In
8943 this case we return a chain of COMPOUND_EXPRs. The LHS of each
8944 COMPOUND_EXPR will be an argument which must be evaluated.
8945 COMPOUND_EXPRs are chained through their RHS. The RHS of the last
8946 COMPOUND_EXPR in the chain will contain the tree for the simplified
8947 form of the builtin function call. */
8949 static tree
8950 fold_builtin_strspn (location_t loc, tree s1, tree s2)
8952 if (!validate_arg (s1, POINTER_TYPE)
8953 || !validate_arg (s2, POINTER_TYPE))
8954 return NULL_TREE;
8955 else
8957 const char *p1 = c_getstr (s1), *p2 = c_getstr (s2);
8959 /* If either argument is "", return NULL_TREE. */
8960 if ((p1 && *p1 == '\0') || (p2 && *p2 == '\0'))
8961 /* Evaluate and ignore both arguments in case either one has
8962 side-effects. */
8963 return omit_two_operands_loc (loc, size_type_node, size_zero_node,
8964 s1, s2);
8965 return NULL_TREE;
8969 /* Simplify a call to the strcspn builtin. S1 and S2 are the arguments
8970 to the call.
8972 Return NULL_TREE if no simplification was possible, otherwise return the
8973 simplified form of the call as a tree.
8975 The simplified form may be a constant or other expression which
8976 computes the same value, but in a more efficient manner (including
8977 calls to other builtin functions).
8979 The call may contain arguments which need to be evaluated, but
8980 which are not useful to determine the result of the call. In
8981 this case we return a chain of COMPOUND_EXPRs. The LHS of each
8982 COMPOUND_EXPR will be an argument which must be evaluated.
8983 COMPOUND_EXPRs are chained through their RHS. The RHS of the last
8984 COMPOUND_EXPR in the chain will contain the tree for the simplified
8985 form of the builtin function call. */
8987 static tree
8988 fold_builtin_strcspn (location_t loc, tree s1, tree s2)
8990 if (!validate_arg (s1, POINTER_TYPE)
8991 || !validate_arg (s2, POINTER_TYPE))
8992 return NULL_TREE;
8993 else
8995 /* If the first argument is "", return NULL_TREE. */
8996 const char *p1 = c_getstr (s1);
8997 if (p1 && *p1 == '\0')
8999 /* Evaluate and ignore argument s2 in case it has
9000 side-effects. */
9001 return omit_one_operand_loc (loc, size_type_node,
9002 size_zero_node, s2);
9005 /* If the second argument is "", return __builtin_strlen(s1). */
9006 const char *p2 = c_getstr (s2);
9007 if (p2 && *p2 == '\0')
9009 tree fn = builtin_decl_implicit (BUILT_IN_STRLEN);
9011 /* If the replacement _DECL isn't initialized, don't do the
9012 transformation. */
9013 if (!fn)
9014 return NULL_TREE;
9016 return build_call_expr_loc (loc, fn, 1, s1);
9018 return NULL_TREE;
9022 /* Fold the next_arg or va_start call EXP. Returns true if there was an error
9023 produced. False otherwise. This is done so that we don't output the error
9024 or warning twice or three times. */
9026 bool
9027 fold_builtin_next_arg (tree exp, bool va_start_p)
9029 tree fntype = TREE_TYPE (current_function_decl);
9030 int nargs = call_expr_nargs (exp);
9031 tree arg;
9032 /* There is good chance the current input_location points inside the
9033 definition of the va_start macro (perhaps on the token for
9034 builtin) in a system header, so warnings will not be emitted.
9035 Use the location in real source code. */
9036 source_location current_location =
9037 linemap_unwind_to_first_non_reserved_loc (line_table, input_location,
9038 NULL);
9040 if (!stdarg_p (fntype))
9042 error ("%<va_start%> used in function with fixed args");
9043 return true;
9046 if (va_start_p)
9048 if (va_start_p && (nargs != 2))
9050 error ("wrong number of arguments to function %<va_start%>");
9051 return true;
9053 arg = CALL_EXPR_ARG (exp, 1);
9055 /* We use __builtin_va_start (ap, 0, 0) or __builtin_next_arg (0, 0)
9056 when we checked the arguments and if needed issued a warning. */
9057 else
9059 if (nargs == 0)
9061 /* Evidently an out of date version of <stdarg.h>; can't validate
9062 va_start's second argument, but can still work as intended. */
9063 warning_at (current_location,
9064 OPT_Wvarargs,
9065 "%<__builtin_next_arg%> called without an argument");
9066 return true;
9068 else if (nargs > 1)
9070 error ("wrong number of arguments to function %<__builtin_next_arg%>");
9071 return true;
9073 arg = CALL_EXPR_ARG (exp, 0);
9076 if (TREE_CODE (arg) == SSA_NAME)
9077 arg = SSA_NAME_VAR (arg);
9079 /* We destructively modify the call to be __builtin_va_start (ap, 0)
9080 or __builtin_next_arg (0) the first time we see it, after checking
9081 the arguments and if needed issuing a warning. */
9082 if (!integer_zerop (arg))
9084 tree last_parm = tree_last (DECL_ARGUMENTS (current_function_decl));
9086 /* Strip off all nops for the sake of the comparison. This
9087 is not quite the same as STRIP_NOPS. It does more.
9088 We must also strip off INDIRECT_EXPR for C++ reference
9089 parameters. */
9090 while (CONVERT_EXPR_P (arg)
9091 || TREE_CODE (arg) == INDIRECT_REF)
9092 arg = TREE_OPERAND (arg, 0);
9093 if (arg != last_parm)
9095 /* FIXME: Sometimes with the tree optimizers we can get the
9096 not the last argument even though the user used the last
9097 argument. We just warn and set the arg to be the last
9098 argument so that we will get wrong-code because of
9099 it. */
9100 warning_at (current_location,
9101 OPT_Wvarargs,
9102 "second parameter of %<va_start%> not last named argument");
9105 /* Undefined by C99 7.15.1.4p4 (va_start):
9106 "If the parameter parmN is declared with the register storage
9107 class, with a function or array type, or with a type that is
9108 not compatible with the type that results after application of
9109 the default argument promotions, the behavior is undefined."
9111 else if (DECL_REGISTER (arg))
9113 warning_at (current_location,
9114 OPT_Wvarargs,
9115 "undefined behavior when second parameter of "
9116 "%<va_start%> is declared with %<register%> storage");
9119 /* We want to verify the second parameter just once before the tree
9120 optimizers are run and then avoid keeping it in the tree,
9121 as otherwise we could warn even for correct code like:
9122 void foo (int i, ...)
9123 { va_list ap; i++; va_start (ap, i); va_end (ap); } */
9124 if (va_start_p)
9125 CALL_EXPR_ARG (exp, 1) = integer_zero_node;
9126 else
9127 CALL_EXPR_ARG (exp, 0) = integer_zero_node;
9129 return false;
9133 /* Expand a call EXP to __builtin_object_size. */
9135 static rtx
9136 expand_builtin_object_size (tree exp)
9138 tree ost;
9139 int object_size_type;
9140 tree fndecl = get_callee_fndecl (exp);
9142 if (!validate_arglist (exp, POINTER_TYPE, INTEGER_TYPE, VOID_TYPE))
9144 error ("%Kfirst argument of %D must be a pointer, second integer constant",
9145 exp, fndecl);
9146 expand_builtin_trap ();
9147 return const0_rtx;
9150 ost = CALL_EXPR_ARG (exp, 1);
9151 STRIP_NOPS (ost);
9153 if (TREE_CODE (ost) != INTEGER_CST
9154 || tree_int_cst_sgn (ost) < 0
9155 || compare_tree_int (ost, 3) > 0)
9157 error ("%Klast argument of %D is not integer constant between 0 and 3",
9158 exp, fndecl);
9159 expand_builtin_trap ();
9160 return const0_rtx;
9163 object_size_type = tree_to_shwi (ost);
9165 return object_size_type < 2 ? constm1_rtx : const0_rtx;
9168 /* Expand EXP, a call to the __mem{cpy,pcpy,move,set}_chk builtin.
9169 FCODE is the BUILT_IN_* to use.
9170 Return NULL_RTX if we failed; the caller should emit a normal call,
9171 otherwise try to get the result in TARGET, if convenient (and in
9172 mode MODE if that's convenient). */
9174 static rtx
9175 expand_builtin_memory_chk (tree exp, rtx target, machine_mode mode,
9176 enum built_in_function fcode)
9178 tree dest, src, len, size;
9180 if (!validate_arglist (exp,
9181 POINTER_TYPE,
9182 fcode == BUILT_IN_MEMSET_CHK
9183 ? INTEGER_TYPE : POINTER_TYPE,
9184 INTEGER_TYPE, INTEGER_TYPE, VOID_TYPE))
9185 return NULL_RTX;
9187 dest = CALL_EXPR_ARG (exp, 0);
9188 src = CALL_EXPR_ARG (exp, 1);
9189 len = CALL_EXPR_ARG (exp, 2);
9190 size = CALL_EXPR_ARG (exp, 3);
9192 if (! tree_fits_uhwi_p (size))
9193 return NULL_RTX;
9195 if (tree_fits_uhwi_p (len) || integer_all_onesp (size))
9197 tree fn;
9199 if (! integer_all_onesp (size) && tree_int_cst_lt (size, len))
9201 warning_at (tree_nonartificial_location (exp),
9202 0, "%Kcall to %D will always overflow destination buffer",
9203 exp, get_callee_fndecl (exp));
9204 return NULL_RTX;
9207 fn = NULL_TREE;
9208 /* If __builtin_mem{cpy,pcpy,move,set}_chk is used, assume
9209 mem{cpy,pcpy,move,set} is available. */
9210 switch (fcode)
9212 case BUILT_IN_MEMCPY_CHK:
9213 fn = builtin_decl_explicit (BUILT_IN_MEMCPY);
9214 break;
9215 case BUILT_IN_MEMPCPY_CHK:
9216 fn = builtin_decl_explicit (BUILT_IN_MEMPCPY);
9217 break;
9218 case BUILT_IN_MEMMOVE_CHK:
9219 fn = builtin_decl_explicit (BUILT_IN_MEMMOVE);
9220 break;
9221 case BUILT_IN_MEMSET_CHK:
9222 fn = builtin_decl_explicit (BUILT_IN_MEMSET);
9223 break;
9224 default:
9225 break;
9228 if (! fn)
9229 return NULL_RTX;
9231 fn = build_call_nofold_loc (EXPR_LOCATION (exp), fn, 3, dest, src, len);
9232 gcc_assert (TREE_CODE (fn) == CALL_EXPR);
9233 CALL_EXPR_TAILCALL (fn) = CALL_EXPR_TAILCALL (exp);
9234 return expand_expr (fn, target, mode, EXPAND_NORMAL);
9236 else if (fcode == BUILT_IN_MEMSET_CHK)
9237 return NULL_RTX;
9238 else
9240 unsigned int dest_align = get_pointer_alignment (dest);
9242 /* If DEST is not a pointer type, call the normal function. */
9243 if (dest_align == 0)
9244 return NULL_RTX;
9246 /* If SRC and DEST are the same (and not volatile), do nothing. */
9247 if (operand_equal_p (src, dest, 0))
9249 tree expr;
9251 if (fcode != BUILT_IN_MEMPCPY_CHK)
9253 /* Evaluate and ignore LEN in case it has side-effects. */
9254 expand_expr (len, const0_rtx, VOIDmode, EXPAND_NORMAL);
9255 return expand_expr (dest, target, mode, EXPAND_NORMAL);
9258 expr = fold_build_pointer_plus (dest, len);
9259 return expand_expr (expr, target, mode, EXPAND_NORMAL);
9262 /* __memmove_chk special case. */
9263 if (fcode == BUILT_IN_MEMMOVE_CHK)
9265 unsigned int src_align = get_pointer_alignment (src);
9267 if (src_align == 0)
9268 return NULL_RTX;
9270 /* If src is categorized for a readonly section we can use
9271 normal __memcpy_chk. */
9272 if (readonly_data_expr (src))
9274 tree fn = builtin_decl_explicit (BUILT_IN_MEMCPY_CHK);
9275 if (!fn)
9276 return NULL_RTX;
9277 fn = build_call_nofold_loc (EXPR_LOCATION (exp), fn, 4,
9278 dest, src, len, size);
9279 gcc_assert (TREE_CODE (fn) == CALL_EXPR);
9280 CALL_EXPR_TAILCALL (fn) = CALL_EXPR_TAILCALL (exp);
9281 return expand_expr (fn, target, mode, EXPAND_NORMAL);
9284 return NULL_RTX;
9288 /* Emit warning if a buffer overflow is detected at compile time. */
9290 static void
9291 maybe_emit_chk_warning (tree exp, enum built_in_function fcode)
9293 int is_strlen = 0;
9294 tree len, size;
9295 location_t loc = tree_nonartificial_location (exp);
9297 switch (fcode)
9299 case BUILT_IN_STRCPY_CHK:
9300 case BUILT_IN_STPCPY_CHK:
9301 /* For __strcat_chk the warning will be emitted only if overflowing
9302 by at least strlen (dest) + 1 bytes. */
9303 case BUILT_IN_STRCAT_CHK:
9304 len = CALL_EXPR_ARG (exp, 1);
9305 size = CALL_EXPR_ARG (exp, 2);
9306 is_strlen = 1;
9307 break;
9308 case BUILT_IN_STRNCAT_CHK:
9309 case BUILT_IN_STRNCPY_CHK:
9310 case BUILT_IN_STPNCPY_CHK:
9311 len = CALL_EXPR_ARG (exp, 2);
9312 size = CALL_EXPR_ARG (exp, 3);
9313 break;
9314 case BUILT_IN_SNPRINTF_CHK:
9315 case BUILT_IN_VSNPRINTF_CHK:
9316 len = CALL_EXPR_ARG (exp, 1);
9317 size = CALL_EXPR_ARG (exp, 3);
9318 break;
9319 default:
9320 gcc_unreachable ();
9323 if (!len || !size)
9324 return;
9326 if (! tree_fits_uhwi_p (size) || integer_all_onesp (size))
9327 return;
9329 if (is_strlen)
9331 len = c_strlen (len, 1);
9332 if (! len || ! tree_fits_uhwi_p (len) || tree_int_cst_lt (len, size))
9333 return;
9335 else if (fcode == BUILT_IN_STRNCAT_CHK)
9337 tree src = CALL_EXPR_ARG (exp, 1);
9338 if (! src || ! tree_fits_uhwi_p (len) || tree_int_cst_lt (len, size))
9339 return;
9340 src = c_strlen (src, 1);
9341 if (! src || ! tree_fits_uhwi_p (src))
9343 warning_at (loc, 0, "%Kcall to %D might overflow destination buffer",
9344 exp, get_callee_fndecl (exp));
9345 return;
9347 else if (tree_int_cst_lt (src, size))
9348 return;
9350 else if (! tree_fits_uhwi_p (len) || ! tree_int_cst_lt (size, len))
9351 return;
9353 warning_at (loc, 0, "%Kcall to %D will always overflow destination buffer",
9354 exp, get_callee_fndecl (exp));
9357 /* Emit warning if a buffer overflow is detected at compile time
9358 in __sprintf_chk/__vsprintf_chk calls. */
9360 static void
9361 maybe_emit_sprintf_chk_warning (tree exp, enum built_in_function fcode)
9363 tree size, len, fmt;
9364 const char *fmt_str;
9365 int nargs = call_expr_nargs (exp);
9367 /* Verify the required arguments in the original call. */
9369 if (nargs < 4)
9370 return;
9371 size = CALL_EXPR_ARG (exp, 2);
9372 fmt = CALL_EXPR_ARG (exp, 3);
9374 if (! tree_fits_uhwi_p (size) || integer_all_onesp (size))
9375 return;
9377 /* Check whether the format is a literal string constant. */
9378 fmt_str = c_getstr (fmt);
9379 if (fmt_str == NULL)
9380 return;
9382 if (!init_target_chars ())
9383 return;
9385 /* If the format doesn't contain % args or %%, we know its size. */
9386 if (strchr (fmt_str, target_percent) == 0)
9387 len = build_int_cstu (size_type_node, strlen (fmt_str));
9388 /* If the format is "%s" and first ... argument is a string literal,
9389 we know it too. */
9390 else if (fcode == BUILT_IN_SPRINTF_CHK
9391 && strcmp (fmt_str, target_percent_s) == 0)
9393 tree arg;
9395 if (nargs < 5)
9396 return;
9397 arg = CALL_EXPR_ARG (exp, 4);
9398 if (! POINTER_TYPE_P (TREE_TYPE (arg)))
9399 return;
9401 len = c_strlen (arg, 1);
9402 if (!len || ! tree_fits_uhwi_p (len))
9403 return;
9405 else
9406 return;
9408 if (! tree_int_cst_lt (len, size))
9409 warning_at (tree_nonartificial_location (exp),
9410 0, "%Kcall to %D will always overflow destination buffer",
9411 exp, get_callee_fndecl (exp));
9414 /* Emit warning if a free is called with address of a variable. */
9416 static void
9417 maybe_emit_free_warning (tree exp)
9419 tree arg = CALL_EXPR_ARG (exp, 0);
9421 STRIP_NOPS (arg);
9422 if (TREE_CODE (arg) != ADDR_EXPR)
9423 return;
9425 arg = get_base_address (TREE_OPERAND (arg, 0));
9426 if (arg == NULL || INDIRECT_REF_P (arg) || TREE_CODE (arg) == MEM_REF)
9427 return;
9429 if (SSA_VAR_P (arg))
9430 warning_at (tree_nonartificial_location (exp), OPT_Wfree_nonheap_object,
9431 "%Kattempt to free a non-heap object %qD", exp, arg);
9432 else
9433 warning_at (tree_nonartificial_location (exp), OPT_Wfree_nonheap_object,
9434 "%Kattempt to free a non-heap object", exp);
9437 /* Fold a call to __builtin_object_size with arguments PTR and OST,
9438 if possible. */
9440 static tree
9441 fold_builtin_object_size (tree ptr, tree ost)
9443 unsigned HOST_WIDE_INT bytes;
9444 int object_size_type;
9446 if (!validate_arg (ptr, POINTER_TYPE)
9447 || !validate_arg (ost, INTEGER_TYPE))
9448 return NULL_TREE;
9450 STRIP_NOPS (ost);
9452 if (TREE_CODE (ost) != INTEGER_CST
9453 || tree_int_cst_sgn (ost) < 0
9454 || compare_tree_int (ost, 3) > 0)
9455 return NULL_TREE;
9457 object_size_type = tree_to_shwi (ost);
9459 /* __builtin_object_size doesn't evaluate side-effects in its arguments;
9460 if there are any side-effects, it returns (size_t) -1 for types 0 and 1
9461 and (size_t) 0 for types 2 and 3. */
9462 if (TREE_SIDE_EFFECTS (ptr))
9463 return build_int_cst_type (size_type_node, object_size_type < 2 ? -1 : 0);
9465 if (TREE_CODE (ptr) == ADDR_EXPR)
9467 bytes = compute_builtin_object_size (ptr, object_size_type);
9468 if (wi::fits_to_tree_p (bytes, size_type_node))
9469 return build_int_cstu (size_type_node, bytes);
9471 else if (TREE_CODE (ptr) == SSA_NAME)
9473 /* If object size is not known yet, delay folding until
9474 later. Maybe subsequent passes will help determining
9475 it. */
9476 bytes = compute_builtin_object_size (ptr, object_size_type);
9477 if (bytes != (unsigned HOST_WIDE_INT) (object_size_type < 2 ? -1 : 0)
9478 && wi::fits_to_tree_p (bytes, size_type_node))
9479 return build_int_cstu (size_type_node, bytes);
9482 return NULL_TREE;
9485 /* Builtins with folding operations that operate on "..." arguments
9486 need special handling; we need to store the arguments in a convenient
9487 data structure before attempting any folding. Fortunately there are
9488 only a few builtins that fall into this category. FNDECL is the
9489 function, EXP is the CALL_EXPR for the call. */
9491 static tree
9492 fold_builtin_varargs (location_t loc, tree fndecl, tree *args, int nargs)
9494 enum built_in_function fcode = DECL_FUNCTION_CODE (fndecl);
9495 tree ret = NULL_TREE;
9497 switch (fcode)
9499 case BUILT_IN_FPCLASSIFY:
9500 ret = fold_builtin_fpclassify (loc, args, nargs);
9501 break;
9503 default:
9504 break;
9506 if (ret)
9508 ret = build1 (NOP_EXPR, TREE_TYPE (ret), ret);
9509 SET_EXPR_LOCATION (ret, loc);
9510 TREE_NO_WARNING (ret) = 1;
9511 return ret;
9513 return NULL_TREE;
9516 /* Initialize format string characters in the target charset. */
9518 bool
9519 init_target_chars (void)
9521 static bool init;
9522 if (!init)
9524 target_newline = lang_hooks.to_target_charset ('\n');
9525 target_percent = lang_hooks.to_target_charset ('%');
9526 target_c = lang_hooks.to_target_charset ('c');
9527 target_s = lang_hooks.to_target_charset ('s');
9528 if (target_newline == 0 || target_percent == 0 || target_c == 0
9529 || target_s == 0)
9530 return false;
9532 target_percent_c[0] = target_percent;
9533 target_percent_c[1] = target_c;
9534 target_percent_c[2] = '\0';
9536 target_percent_s[0] = target_percent;
9537 target_percent_s[1] = target_s;
9538 target_percent_s[2] = '\0';
9540 target_percent_s_newline[0] = target_percent;
9541 target_percent_s_newline[1] = target_s;
9542 target_percent_s_newline[2] = target_newline;
9543 target_percent_s_newline[3] = '\0';
9545 init = true;
9547 return true;
9550 /* Helper function for do_mpfr_arg*(). Ensure M is a normal number
9551 and no overflow/underflow occurred. INEXACT is true if M was not
9552 exactly calculated. TYPE is the tree type for the result. This
9553 function assumes that you cleared the MPFR flags and then
9554 calculated M to see if anything subsequently set a flag prior to
9555 entering this function. Return NULL_TREE if any checks fail. */
9557 static tree
9558 do_mpfr_ckconv (mpfr_srcptr m, tree type, int inexact)
9560 /* Proceed iff we get a normal number, i.e. not NaN or Inf and no
9561 overflow/underflow occurred. If -frounding-math, proceed iff the
9562 result of calling FUNC was exact. */
9563 if (mpfr_number_p (m) && !mpfr_overflow_p () && !mpfr_underflow_p ()
9564 && (!flag_rounding_math || !inexact))
9566 REAL_VALUE_TYPE rr;
9568 real_from_mpfr (&rr, m, type, GMP_RNDN);
9569 /* Proceed iff GCC's REAL_VALUE_TYPE can hold the MPFR value,
9570 check for overflow/underflow. If the REAL_VALUE_TYPE is zero
9571 but the mpft_t is not, then we underflowed in the
9572 conversion. */
9573 if (real_isfinite (&rr)
9574 && (rr.cl == rvc_zero) == (mpfr_zero_p (m) != 0))
9576 REAL_VALUE_TYPE rmode;
9578 real_convert (&rmode, TYPE_MODE (type), &rr);
9579 /* Proceed iff the specified mode can hold the value. */
9580 if (real_identical (&rmode, &rr))
9581 return build_real (type, rmode);
9584 return NULL_TREE;
9587 /* Helper function for do_mpc_arg*(). Ensure M is a normal complex
9588 number and no overflow/underflow occurred. INEXACT is true if M
9589 was not exactly calculated. TYPE is the tree type for the result.
9590 This function assumes that you cleared the MPFR flags and then
9591 calculated M to see if anything subsequently set a flag prior to
9592 entering this function. Return NULL_TREE if any checks fail, if
9593 FORCE_CONVERT is true, then bypass the checks. */
9595 static tree
9596 do_mpc_ckconv (mpc_srcptr m, tree type, int inexact, int force_convert)
9598 /* Proceed iff we get a normal number, i.e. not NaN or Inf and no
9599 overflow/underflow occurred. If -frounding-math, proceed iff the
9600 result of calling FUNC was exact. */
9601 if (force_convert
9602 || (mpfr_number_p (mpc_realref (m)) && mpfr_number_p (mpc_imagref (m))
9603 && !mpfr_overflow_p () && !mpfr_underflow_p ()
9604 && (!flag_rounding_math || !inexact)))
9606 REAL_VALUE_TYPE re, im;
9608 real_from_mpfr (&re, mpc_realref (m), TREE_TYPE (type), GMP_RNDN);
9609 real_from_mpfr (&im, mpc_imagref (m), TREE_TYPE (type), GMP_RNDN);
9610 /* Proceed iff GCC's REAL_VALUE_TYPE can hold the MPFR values,
9611 check for overflow/underflow. If the REAL_VALUE_TYPE is zero
9612 but the mpft_t is not, then we underflowed in the
9613 conversion. */
9614 if (force_convert
9615 || (real_isfinite (&re) && real_isfinite (&im)
9616 && (re.cl == rvc_zero) == (mpfr_zero_p (mpc_realref (m)) != 0)
9617 && (im.cl == rvc_zero) == (mpfr_zero_p (mpc_imagref (m)) != 0)))
9619 REAL_VALUE_TYPE re_mode, im_mode;
9621 real_convert (&re_mode, TYPE_MODE (TREE_TYPE (type)), &re);
9622 real_convert (&im_mode, TYPE_MODE (TREE_TYPE (type)), &im);
9623 /* Proceed iff the specified mode can hold the value. */
9624 if (force_convert
9625 || (real_identical (&re_mode, &re)
9626 && real_identical (&im_mode, &im)))
9627 return build_complex (type, build_real (TREE_TYPE (type), re_mode),
9628 build_real (TREE_TYPE (type), im_mode));
9631 return NULL_TREE;
9634 /* If arguments ARG0 and ARG1 are REAL_CSTs, call mpfr_remquo() to set
9635 the pointer *(ARG_QUO) and return the result. The type is taken
9636 from the type of ARG0 and is used for setting the precision of the
9637 calculation and results. */
9639 static tree
9640 do_mpfr_remquo (tree arg0, tree arg1, tree arg_quo)
9642 tree const type = TREE_TYPE (arg0);
9643 tree result = NULL_TREE;
9645 STRIP_NOPS (arg0);
9646 STRIP_NOPS (arg1);
9648 /* To proceed, MPFR must exactly represent the target floating point
9649 format, which only happens when the target base equals two. */
9650 if (REAL_MODE_FORMAT (TYPE_MODE (type))->b == 2
9651 && TREE_CODE (arg0) == REAL_CST && !TREE_OVERFLOW (arg0)
9652 && TREE_CODE (arg1) == REAL_CST && !TREE_OVERFLOW (arg1))
9654 const REAL_VALUE_TYPE *const ra0 = TREE_REAL_CST_PTR (arg0);
9655 const REAL_VALUE_TYPE *const ra1 = TREE_REAL_CST_PTR (arg1);
9657 if (real_isfinite (ra0) && real_isfinite (ra1))
9659 const struct real_format *fmt = REAL_MODE_FORMAT (TYPE_MODE (type));
9660 const int prec = fmt->p;
9661 const mp_rnd_t rnd = fmt->round_towards_zero? GMP_RNDZ : GMP_RNDN;
9662 tree result_rem;
9663 long integer_quo;
9664 mpfr_t m0, m1;
9666 mpfr_inits2 (prec, m0, m1, NULL);
9667 mpfr_from_real (m0, ra0, GMP_RNDN);
9668 mpfr_from_real (m1, ra1, GMP_RNDN);
9669 mpfr_clear_flags ();
9670 mpfr_remquo (m0, &integer_quo, m0, m1, rnd);
9671 /* Remquo is independent of the rounding mode, so pass
9672 inexact=0 to do_mpfr_ckconv(). */
9673 result_rem = do_mpfr_ckconv (m0, type, /*inexact=*/ 0);
9674 mpfr_clears (m0, m1, NULL);
9675 if (result_rem)
9677 /* MPFR calculates quo in the host's long so it may
9678 return more bits in quo than the target int can hold
9679 if sizeof(host long) > sizeof(target int). This can
9680 happen even for native compilers in LP64 mode. In
9681 these cases, modulo the quo value with the largest
9682 number that the target int can hold while leaving one
9683 bit for the sign. */
9684 if (sizeof (integer_quo) * CHAR_BIT > INT_TYPE_SIZE)
9685 integer_quo %= (long)(1UL << (INT_TYPE_SIZE - 1));
9687 /* Dereference the quo pointer argument. */
9688 arg_quo = build_fold_indirect_ref (arg_quo);
9689 /* Proceed iff a valid pointer type was passed in. */
9690 if (TYPE_MAIN_VARIANT (TREE_TYPE (arg_quo)) == integer_type_node)
9692 /* Set the value. */
9693 tree result_quo
9694 = fold_build2 (MODIFY_EXPR, TREE_TYPE (arg_quo), arg_quo,
9695 build_int_cst (TREE_TYPE (arg_quo),
9696 integer_quo));
9697 TREE_SIDE_EFFECTS (result_quo) = 1;
9698 /* Combine the quo assignment with the rem. */
9699 result = non_lvalue (fold_build2 (COMPOUND_EXPR, type,
9700 result_quo, result_rem));
9705 return result;
9708 /* If ARG is a REAL_CST, call mpfr_lgamma() on it and return the
9709 resulting value as a tree with type TYPE. The mpfr precision is
9710 set to the precision of TYPE. We assume that this mpfr function
9711 returns zero if the result could be calculated exactly within the
9712 requested precision. In addition, the integer pointer represented
9713 by ARG_SG will be dereferenced and set to the appropriate signgam
9714 (-1,1) value. */
9716 static tree
9717 do_mpfr_lgamma_r (tree arg, tree arg_sg, tree type)
9719 tree result = NULL_TREE;
9721 STRIP_NOPS (arg);
9723 /* To proceed, MPFR must exactly represent the target floating point
9724 format, which only happens when the target base equals two. Also
9725 verify ARG is a constant and that ARG_SG is an int pointer. */
9726 if (REAL_MODE_FORMAT (TYPE_MODE (type))->b == 2
9727 && TREE_CODE (arg) == REAL_CST && !TREE_OVERFLOW (arg)
9728 && TREE_CODE (TREE_TYPE (arg_sg)) == POINTER_TYPE
9729 && TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (arg_sg))) == integer_type_node)
9731 const REAL_VALUE_TYPE *const ra = TREE_REAL_CST_PTR (arg);
9733 /* In addition to NaN and Inf, the argument cannot be zero or a
9734 negative integer. */
9735 if (real_isfinite (ra)
9736 && ra->cl != rvc_zero
9737 && !(real_isneg (ra) && real_isinteger (ra, TYPE_MODE (type))))
9739 const struct real_format *fmt = REAL_MODE_FORMAT (TYPE_MODE (type));
9740 const int prec = fmt->p;
9741 const mp_rnd_t rnd = fmt->round_towards_zero? GMP_RNDZ : GMP_RNDN;
9742 int inexact, sg;
9743 mpfr_t m;
9744 tree result_lg;
9746 mpfr_init2 (m, prec);
9747 mpfr_from_real (m, ra, GMP_RNDN);
9748 mpfr_clear_flags ();
9749 inexact = mpfr_lgamma (m, &sg, m, rnd);
9750 result_lg = do_mpfr_ckconv (m, type, inexact);
9751 mpfr_clear (m);
9752 if (result_lg)
9754 tree result_sg;
9756 /* Dereference the arg_sg pointer argument. */
9757 arg_sg = build_fold_indirect_ref (arg_sg);
9758 /* Assign the signgam value into *arg_sg. */
9759 result_sg = fold_build2 (MODIFY_EXPR,
9760 TREE_TYPE (arg_sg), arg_sg,
9761 build_int_cst (TREE_TYPE (arg_sg), sg));
9762 TREE_SIDE_EFFECTS (result_sg) = 1;
9763 /* Combine the signgam assignment with the lgamma result. */
9764 result = non_lvalue (fold_build2 (COMPOUND_EXPR, type,
9765 result_sg, result_lg));
9770 return result;
9773 /* If arguments ARG0 and ARG1 are a COMPLEX_CST, call the two-argument
9774 mpc function FUNC on it and return the resulting value as a tree
9775 with type TYPE. The mpfr precision is set to the precision of
9776 TYPE. We assume that function FUNC returns zero if the result
9777 could be calculated exactly within the requested precision. If
9778 DO_NONFINITE is true, then fold expressions containing Inf or NaN
9779 in the arguments and/or results. */
9781 tree
9782 do_mpc_arg2 (tree arg0, tree arg1, tree type, int do_nonfinite,
9783 int (*func)(mpc_ptr, mpc_srcptr, mpc_srcptr, mpc_rnd_t))
9785 tree result = NULL_TREE;
9787 STRIP_NOPS (arg0);
9788 STRIP_NOPS (arg1);
9790 /* To proceed, MPFR must exactly represent the target floating point
9791 format, which only happens when the target base equals two. */
9792 if (TREE_CODE (arg0) == COMPLEX_CST && !TREE_OVERFLOW (arg0)
9793 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg0))) == REAL_TYPE
9794 && TREE_CODE (arg1) == COMPLEX_CST && !TREE_OVERFLOW (arg1)
9795 && TREE_CODE (TREE_TYPE (TREE_TYPE (arg1))) == REAL_TYPE
9796 && REAL_MODE_FORMAT (TYPE_MODE (TREE_TYPE (TREE_TYPE (arg0))))->b == 2)
9798 const REAL_VALUE_TYPE *const re0 = TREE_REAL_CST_PTR (TREE_REALPART (arg0));
9799 const REAL_VALUE_TYPE *const im0 = TREE_REAL_CST_PTR (TREE_IMAGPART (arg0));
9800 const REAL_VALUE_TYPE *const re1 = TREE_REAL_CST_PTR (TREE_REALPART (arg1));
9801 const REAL_VALUE_TYPE *const im1 = TREE_REAL_CST_PTR (TREE_IMAGPART (arg1));
9803 if (do_nonfinite
9804 || (real_isfinite (re0) && real_isfinite (im0)
9805 && real_isfinite (re1) && real_isfinite (im1)))
9807 const struct real_format *const fmt =
9808 REAL_MODE_FORMAT (TYPE_MODE (TREE_TYPE (type)));
9809 const int prec = fmt->p;
9810 const mp_rnd_t rnd = fmt->round_towards_zero ? GMP_RNDZ : GMP_RNDN;
9811 const mpc_rnd_t crnd = fmt->round_towards_zero ? MPC_RNDZZ : MPC_RNDNN;
9812 int inexact;
9813 mpc_t m0, m1;
9815 mpc_init2 (m0, prec);
9816 mpc_init2 (m1, prec);
9817 mpfr_from_real (mpc_realref (m0), re0, rnd);
9818 mpfr_from_real (mpc_imagref (m0), im0, rnd);
9819 mpfr_from_real (mpc_realref (m1), re1, rnd);
9820 mpfr_from_real (mpc_imagref (m1), im1, rnd);
9821 mpfr_clear_flags ();
9822 inexact = func (m0, m0, m1, crnd);
9823 result = do_mpc_ckconv (m0, type, inexact, do_nonfinite);
9824 mpc_clear (m0);
9825 mpc_clear (m1);
9829 return result;
9832 /* A wrapper function for builtin folding that prevents warnings for
9833 "statement without effect" and the like, caused by removing the
9834 call node earlier than the warning is generated. */
9836 tree
9837 fold_call_stmt (gcall *stmt, bool ignore)
9839 tree ret = NULL_TREE;
9840 tree fndecl = gimple_call_fndecl (stmt);
9841 location_t loc = gimple_location (stmt);
9842 if (fndecl
9843 && TREE_CODE (fndecl) == FUNCTION_DECL
9844 && DECL_BUILT_IN (fndecl)
9845 && !gimple_call_va_arg_pack_p (stmt))
9847 int nargs = gimple_call_num_args (stmt);
9848 tree *args = (nargs > 0
9849 ? gimple_call_arg_ptr (stmt, 0)
9850 : &error_mark_node);
9852 if (avoid_folding_inline_builtin (fndecl))
9853 return NULL_TREE;
9854 if (DECL_BUILT_IN_CLASS (fndecl) == BUILT_IN_MD)
9856 return targetm.fold_builtin (fndecl, nargs, args, ignore);
9858 else
9860 ret = fold_builtin_n (loc, fndecl, args, nargs, ignore);
9861 if (ret)
9863 /* Propagate location information from original call to
9864 expansion of builtin. Otherwise things like
9865 maybe_emit_chk_warning, that operate on the expansion
9866 of a builtin, will use the wrong location information. */
9867 if (gimple_has_location (stmt))
9869 tree realret = ret;
9870 if (TREE_CODE (ret) == NOP_EXPR)
9871 realret = TREE_OPERAND (ret, 0);
9872 if (CAN_HAVE_LOCATION_P (realret)
9873 && !EXPR_HAS_LOCATION (realret))
9874 SET_EXPR_LOCATION (realret, loc);
9875 return realret;
9877 return ret;
9881 return NULL_TREE;
9884 /* Look up the function in builtin_decl that corresponds to DECL
9885 and set ASMSPEC as its user assembler name. DECL must be a
9886 function decl that declares a builtin. */
9888 void
9889 set_builtin_user_assembler_name (tree decl, const char *asmspec)
9891 tree builtin;
9892 gcc_assert (TREE_CODE (decl) == FUNCTION_DECL
9893 && DECL_BUILT_IN_CLASS (decl) == BUILT_IN_NORMAL
9894 && asmspec != 0);
9896 builtin = builtin_decl_explicit (DECL_FUNCTION_CODE (decl));
9897 set_user_assembler_name (builtin, asmspec);
9898 switch (DECL_FUNCTION_CODE (decl))
9900 case BUILT_IN_MEMCPY:
9901 init_block_move_fn (asmspec);
9902 memcpy_libfunc = set_user_assembler_libfunc ("memcpy", asmspec);
9903 break;
9904 case BUILT_IN_MEMSET:
9905 init_block_clear_fn (asmspec);
9906 memset_libfunc = set_user_assembler_libfunc ("memset", asmspec);
9907 break;
9908 case BUILT_IN_MEMMOVE:
9909 memmove_libfunc = set_user_assembler_libfunc ("memmove", asmspec);
9910 break;
9911 case BUILT_IN_MEMCMP:
9912 memcmp_libfunc = set_user_assembler_libfunc ("memcmp", asmspec);
9913 break;
9914 case BUILT_IN_ABORT:
9915 abort_libfunc = set_user_assembler_libfunc ("abort", asmspec);
9916 break;
9917 case BUILT_IN_FFS:
9918 if (INT_TYPE_SIZE < BITS_PER_WORD)
9920 set_user_assembler_libfunc ("ffs", asmspec);
9921 set_optab_libfunc (ffs_optab, mode_for_size (INT_TYPE_SIZE,
9922 MODE_INT, 0), "ffs");
9924 break;
9925 default:
9926 break;
9930 /* Return true if DECL is a builtin that expands to a constant or similarly
9931 simple code. */
9932 bool
9933 is_simple_builtin (tree decl)
9935 if (decl && DECL_BUILT_IN_CLASS (decl) == BUILT_IN_NORMAL)
9936 switch (DECL_FUNCTION_CODE (decl))
9938 /* Builtins that expand to constants. */
9939 case BUILT_IN_CONSTANT_P:
9940 case BUILT_IN_EXPECT:
9941 case BUILT_IN_OBJECT_SIZE:
9942 case BUILT_IN_UNREACHABLE:
9943 /* Simple register moves or loads from stack. */
9944 case BUILT_IN_ASSUME_ALIGNED:
9945 case BUILT_IN_RETURN_ADDRESS:
9946 case BUILT_IN_EXTRACT_RETURN_ADDR:
9947 case BUILT_IN_FROB_RETURN_ADDR:
9948 case BUILT_IN_RETURN:
9949 case BUILT_IN_AGGREGATE_INCOMING_ADDRESS:
9950 case BUILT_IN_FRAME_ADDRESS:
9951 case BUILT_IN_VA_END:
9952 case BUILT_IN_STACK_SAVE:
9953 case BUILT_IN_STACK_RESTORE:
9954 /* Exception state returns or moves registers around. */
9955 case BUILT_IN_EH_FILTER:
9956 case BUILT_IN_EH_POINTER:
9957 case BUILT_IN_EH_COPY_VALUES:
9958 return true;
9960 default:
9961 return false;
9964 return false;
9967 /* Return true if DECL is a builtin that is not expensive, i.e., they are
9968 most probably expanded inline into reasonably simple code. This is a
9969 superset of is_simple_builtin. */
9970 bool
9971 is_inexpensive_builtin (tree decl)
9973 if (!decl)
9974 return false;
9975 else if (DECL_BUILT_IN_CLASS (decl) == BUILT_IN_MD)
9976 return true;
9977 else if (DECL_BUILT_IN_CLASS (decl) == BUILT_IN_NORMAL)
9978 switch (DECL_FUNCTION_CODE (decl))
9980 case BUILT_IN_ABS:
9981 case BUILT_IN_ALLOCA:
9982 case BUILT_IN_ALLOCA_WITH_ALIGN:
9983 case BUILT_IN_BSWAP16:
9984 case BUILT_IN_BSWAP32:
9985 case BUILT_IN_BSWAP64:
9986 case BUILT_IN_CLZ:
9987 case BUILT_IN_CLZIMAX:
9988 case BUILT_IN_CLZL:
9989 case BUILT_IN_CLZLL:
9990 case BUILT_IN_CTZ:
9991 case BUILT_IN_CTZIMAX:
9992 case BUILT_IN_CTZL:
9993 case BUILT_IN_CTZLL:
9994 case BUILT_IN_FFS:
9995 case BUILT_IN_FFSIMAX:
9996 case BUILT_IN_FFSL:
9997 case BUILT_IN_FFSLL:
9998 case BUILT_IN_IMAXABS:
9999 case BUILT_IN_FINITE:
10000 case BUILT_IN_FINITEF:
10001 case BUILT_IN_FINITEL:
10002 case BUILT_IN_FINITED32:
10003 case BUILT_IN_FINITED64:
10004 case BUILT_IN_FINITED128:
10005 case BUILT_IN_FPCLASSIFY:
10006 case BUILT_IN_ISFINITE:
10007 case BUILT_IN_ISINF_SIGN:
10008 case BUILT_IN_ISINF:
10009 case BUILT_IN_ISINFF:
10010 case BUILT_IN_ISINFL:
10011 case BUILT_IN_ISINFD32:
10012 case BUILT_IN_ISINFD64:
10013 case BUILT_IN_ISINFD128:
10014 case BUILT_IN_ISNAN:
10015 case BUILT_IN_ISNANF:
10016 case BUILT_IN_ISNANL:
10017 case BUILT_IN_ISNAND32:
10018 case BUILT_IN_ISNAND64:
10019 case BUILT_IN_ISNAND128:
10020 case BUILT_IN_ISNORMAL:
10021 case BUILT_IN_ISGREATER:
10022 case BUILT_IN_ISGREATEREQUAL:
10023 case BUILT_IN_ISLESS:
10024 case BUILT_IN_ISLESSEQUAL:
10025 case BUILT_IN_ISLESSGREATER:
10026 case BUILT_IN_ISUNORDERED:
10027 case BUILT_IN_VA_ARG_PACK:
10028 case BUILT_IN_VA_ARG_PACK_LEN:
10029 case BUILT_IN_VA_COPY:
10030 case BUILT_IN_TRAP:
10031 case BUILT_IN_SAVEREGS:
10032 case BUILT_IN_POPCOUNTL:
10033 case BUILT_IN_POPCOUNTLL:
10034 case BUILT_IN_POPCOUNTIMAX:
10035 case BUILT_IN_POPCOUNT:
10036 case BUILT_IN_PARITYL:
10037 case BUILT_IN_PARITYLL:
10038 case BUILT_IN_PARITYIMAX:
10039 case BUILT_IN_PARITY:
10040 case BUILT_IN_LABS:
10041 case BUILT_IN_LLABS:
10042 case BUILT_IN_PREFETCH:
10043 case BUILT_IN_ACC_ON_DEVICE:
10044 return true;
10046 default:
10047 return is_simple_builtin (decl);
10050 return false;