decl.c: Remove unused header files.
[gcc.git] / gcc / c-family / c-cppbuiltin.c
1 /* Define builtin-in macros for the C family front ends.
2 Copyright (C) 2002-2015 Free Software Foundation, Inc.
3
4 This file is part of GCC.
5
6 GCC is free software; you can redistribute it and/or modify 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.
10
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.
15
16 You should have received a copy of the GNU General Public License
17 along with GCC; see the file COPYING3. If not see
18 <http://www.gnu.org/licenses/>. */
19
20 #include "config.h"
21 #include "system.h"
22 #include "coretypes.h"
23 #include "target.h"
24 #include "c-common.h"
25 #include "tm_p.h" /* For TARGET_CPU_CPP_BUILTINS & friends. */
26 #include "stringpool.h"
27 #include "stor-layout.h"
28 #include "flags.h"
29 #include "c-pragma.h"
30 #include "output.h" /* For user_label_prefix. */
31 #include "debug.h" /* For dwarf2out_do_cfi_asm. */
32 #include "common/common-target.h"
33 #include "cpp-id-data.h"
34 #include "cppbuiltin.h"
35
36 #ifndef TARGET_OS_CPP_BUILTINS
37 # define TARGET_OS_CPP_BUILTINS()
38 #endif
39
40 #ifndef TARGET_OBJFMT_CPP_BUILTINS
41 # define TARGET_OBJFMT_CPP_BUILTINS()
42 #endif
43
44 #ifndef REGISTER_PREFIX
45 #define REGISTER_PREFIX ""
46 #endif
47
48 /* Non-static as some targets don't use it. */
49 static void builtin_define_with_hex_fp_value (const char *, tree,
50 int, const char *,
51 const char *,
52 const char *);
53 static void builtin_define_stdint_macros (void);
54 static void builtin_define_constants (const char *, tree);
55 static void builtin_define_type_max (const char *, tree);
56 static void builtin_define_type_minmax (const char *, const char *, tree);
57 static void builtin_define_float_constants (const char *,
58 const char *,
59 const char *,
60 const char *,
61 tree);
62
63 /* Return true if MODE provides a fast multiply/add (FMA) builtin function.
64 Originally this function used the fma optab, but that doesn't work with
65 -save-temps, so just rely on the HAVE_fma macros for the standard floating
66 point types. */
67
68 static bool
69 mode_has_fma (machine_mode mode)
70 {
71 switch (mode)
72 {
73 #ifdef HAVE_fmasf4
74 case SFmode:
75 return !!HAVE_fmasf4;
76 #endif
77
78 #ifdef HAVE_fmadf4
79 case DFmode:
80 return !!HAVE_fmadf4;
81 #endif
82
83 #ifdef HAVE_fmaxf4
84 case XFmode:
85 return !!HAVE_fmaxf4;
86 #endif
87
88 #ifdef HAVE_fmatf4
89 case TFmode:
90 return !!HAVE_fmatf4;
91 #endif
92
93 default:
94 break;
95 }
96
97 return false;
98 }
99
100 /* Define NAME with value TYPE size_unit. */
101 void
102 builtin_define_type_sizeof (const char *name, tree type)
103 {
104 builtin_define_with_int_value (name,
105 tree_to_uhwi (TYPE_SIZE_UNIT (type)));
106 }
107
108 /* Define the float.h constants for TYPE using NAME_PREFIX, FP_SUFFIX,
109 and FP_CAST. */
110 static void
111 builtin_define_float_constants (const char *name_prefix,
112 const char *fp_suffix,
113 const char *fp_cast,
114 const char *fma_suffix,
115 tree type)
116 {
117 /* Used to convert radix-based values to base 10 values in several cases.
118
119 In the max_exp -> max_10_exp conversion for 128-bit IEEE, we need at
120 least 6 significant digits for correct results. Using the fraction
121 formed by (log(2)*1e6)/(log(10)*1e6) overflows a 32-bit integer as an
122 intermediate; perhaps someone can find a better approximation, in the
123 mean time, I suspect using doubles won't harm the bootstrap here. */
124
125 const double log10_2 = .30102999566398119521;
126 double log10_b;
127 const struct real_format *fmt;
128 const struct real_format *ldfmt;
129
130 char name[64], buf[128];
131 int dig, min_10_exp, max_10_exp;
132 int decimal_dig;
133 int type_decimal_dig;
134
135 fmt = REAL_MODE_FORMAT (TYPE_MODE (type));
136 gcc_assert (fmt->b != 10);
137 ldfmt = REAL_MODE_FORMAT (TYPE_MODE (long_double_type_node));
138 gcc_assert (ldfmt->b != 10);
139
140 /* The radix of the exponent representation. */
141 if (type == float_type_node)
142 builtin_define_with_int_value ("__FLT_RADIX__", fmt->b);
143 log10_b = log10_2;
144
145 /* The number of radix digits, p, in the floating-point significand. */
146 sprintf (name, "__%s_MANT_DIG__", name_prefix);
147 builtin_define_with_int_value (name, fmt->p);
148
149 /* The number of decimal digits, q, such that any floating-point number
150 with q decimal digits can be rounded into a floating-point number with
151 p radix b digits and back again without change to the q decimal digits,
152
153 p log10 b if b is a power of 10
154 floor((p - 1) log10 b) otherwise
155 */
156 dig = (fmt->p - 1) * log10_b;
157 sprintf (name, "__%s_DIG__", name_prefix);
158 builtin_define_with_int_value (name, dig);
159
160 /* The minimum negative int x such that b**(x-1) is a normalized float. */
161 sprintf (name, "__%s_MIN_EXP__", name_prefix);
162 sprintf (buf, "(%d)", fmt->emin);
163 builtin_define_with_value (name, buf, 0);
164
165 /* The minimum negative int x such that 10**x is a normalized float,
166
167 ceil (log10 (b ** (emin - 1)))
168 = ceil (log10 (b) * (emin - 1))
169
170 Recall that emin is negative, so the integer truncation calculates
171 the ceiling, not the floor, in this case. */
172 min_10_exp = (fmt->emin - 1) * log10_b;
173 sprintf (name, "__%s_MIN_10_EXP__", name_prefix);
174 sprintf (buf, "(%d)", min_10_exp);
175 builtin_define_with_value (name, buf, 0);
176
177 /* The maximum int x such that b**(x-1) is a representable float. */
178 sprintf (name, "__%s_MAX_EXP__", name_prefix);
179 builtin_define_with_int_value (name, fmt->emax);
180
181 /* The maximum int x such that 10**x is in the range of representable
182 finite floating-point numbers,
183
184 floor (log10((1 - b**-p) * b**emax))
185 = floor (log10(1 - b**-p) + log10(b**emax))
186 = floor (log10(1 - b**-p) + log10(b)*emax)
187
188 The safest thing to do here is to just compute this number. But since
189 we don't link cc1 with libm, we cannot. We could implement log10 here
190 a series expansion, but that seems too much effort because:
191
192 Note that the first term, for all extant p, is a number exceedingly close
193 to zero, but slightly negative. Note that the second term is an integer
194 scaling an irrational number, and that because of the floor we are only
195 interested in its integral portion.
196
197 In order for the first term to have any effect on the integral portion
198 of the second term, the second term has to be exceedingly close to an
199 integer itself (e.g. 123.000000000001 or something). Getting a result
200 that close to an integer requires that the irrational multiplicand have
201 a long series of zeros in its expansion, which doesn't occur in the
202 first 20 digits or so of log10(b).
203
204 Hand-waving aside, crunching all of the sets of constants above by hand
205 does not yield a case for which the first term is significant, which
206 in the end is all that matters. */
207 max_10_exp = fmt->emax * log10_b;
208 sprintf (name, "__%s_MAX_10_EXP__", name_prefix);
209 builtin_define_with_int_value (name, max_10_exp);
210
211 /* The number of decimal digits, n, such that any floating-point number
212 can be rounded to n decimal digits and back again without change to
213 the value.
214
215 p * log10(b) if b is a power of 10
216 ceil(1 + p * log10(b)) otherwise
217
218 The only macro we care about is this number for the widest supported
219 floating type, but we want this value for rendering constants below. */
220 {
221 double d_decimal_dig
222 = 1 + (fmt->p < ldfmt->p ? ldfmt->p : fmt->p) * log10_b;
223 decimal_dig = d_decimal_dig;
224 if (decimal_dig < d_decimal_dig)
225 decimal_dig++;
226 }
227 /* Similar, for this type rather than long double. */
228 {
229 double type_d_decimal_dig = 1 + fmt->p * log10_b;
230 type_decimal_dig = type_d_decimal_dig;
231 if (type_decimal_dig < type_d_decimal_dig)
232 type_decimal_dig++;
233 }
234 if (type == long_double_type_node)
235 builtin_define_with_int_value ("__DECIMAL_DIG__", decimal_dig);
236 else
237 {
238 sprintf (name, "__%s_DECIMAL_DIG__", name_prefix);
239 builtin_define_with_int_value (name, type_decimal_dig);
240 }
241
242 /* Since, for the supported formats, B is always a power of 2, we
243 construct the following numbers directly as a hexadecimal
244 constants. */
245 get_max_float (fmt, buf, sizeof (buf));
246
247 sprintf (name, "__%s_MAX__", name_prefix);
248 builtin_define_with_hex_fp_value (name, type, decimal_dig, buf, fp_suffix, fp_cast);
249
250 /* The minimum normalized positive floating-point number,
251 b**(emin-1). */
252 sprintf (name, "__%s_MIN__", name_prefix);
253 sprintf (buf, "0x1p%d", fmt->emin - 1);
254 builtin_define_with_hex_fp_value (name, type, decimal_dig, buf, fp_suffix, fp_cast);
255
256 /* The difference between 1 and the least value greater than 1 that is
257 representable in the given floating point type, b**(1-p). */
258 sprintf (name, "__%s_EPSILON__", name_prefix);
259 if (fmt->pnan < fmt->p)
260 /* This is an IBM extended double format, so 1.0 + any double is
261 representable precisely. */
262 sprintf (buf, "0x1p%d", fmt->emin - fmt->p);
263 else
264 sprintf (buf, "0x1p%d", 1 - fmt->p);
265 builtin_define_with_hex_fp_value (name, type, decimal_dig, buf, fp_suffix, fp_cast);
266
267 /* For C++ std::numeric_limits<T>::denorm_min and C11 *_TRUE_MIN.
268 The minimum denormalized positive floating-point number, b**(emin-p).
269 The minimum normalized positive floating-point number for formats
270 that don't support denormals. */
271 sprintf (name, "__%s_DENORM_MIN__", name_prefix);
272 sprintf (buf, "0x1p%d", fmt->emin - (fmt->has_denorm ? fmt->p : 1));
273 builtin_define_with_hex_fp_value (name, type, decimal_dig,
274 buf, fp_suffix, fp_cast);
275
276 sprintf (name, "__%s_HAS_DENORM__", name_prefix);
277 builtin_define_with_value (name, fmt->has_denorm ? "1" : "0", 0);
278
279 /* For C++ std::numeric_limits<T>::has_infinity. */
280 sprintf (name, "__%s_HAS_INFINITY__", name_prefix);
281 builtin_define_with_int_value (name,
282 MODE_HAS_INFINITIES (TYPE_MODE (type)));
283 /* For C++ std::numeric_limits<T>::has_quiet_NaN. We do not have a
284 predicate to distinguish a target that has both quiet and
285 signalling NaNs from a target that has only quiet NaNs or only
286 signalling NaNs, so we assume that a target that has any kind of
287 NaN has quiet NaNs. */
288 sprintf (name, "__%s_HAS_QUIET_NAN__", name_prefix);
289 builtin_define_with_int_value (name, MODE_HAS_NANS (TYPE_MODE (type)));
290
291 /* Note whether we have fast FMA. */
292 if (mode_has_fma (TYPE_MODE (type)))
293 {
294 sprintf (name, "__FP_FAST_FMA%s", fma_suffix);
295 builtin_define_with_int_value (name, 1);
296 }
297 }
298
299 /* Define __DECx__ constants for TYPE using NAME_PREFIX and SUFFIX. */
300 static void
301 builtin_define_decimal_float_constants (const char *name_prefix,
302 const char *suffix,
303 tree type)
304 {
305 const struct real_format *fmt;
306 char name[64], buf[128], *p;
307 int digits;
308
309 fmt = REAL_MODE_FORMAT (TYPE_MODE (type));
310
311 /* The number of radix digits, p, in the significand. */
312 sprintf (name, "__%s_MANT_DIG__", name_prefix);
313 builtin_define_with_int_value (name, fmt->p);
314
315 /* The minimum negative int x such that b**(x-1) is a normalized float. */
316 sprintf (name, "__%s_MIN_EXP__", name_prefix);
317 sprintf (buf, "(%d)", fmt->emin);
318 builtin_define_with_value (name, buf, 0);
319
320 /* The maximum int x such that b**(x-1) is a representable float. */
321 sprintf (name, "__%s_MAX_EXP__", name_prefix);
322 builtin_define_with_int_value (name, fmt->emax);
323
324 /* Compute the minimum representable value. */
325 sprintf (name, "__%s_MIN__", name_prefix);
326 sprintf (buf, "1E%d%s", fmt->emin - 1, suffix);
327 builtin_define_with_value (name, buf, 0);
328
329 /* Compute the maximum representable value. */
330 sprintf (name, "__%s_MAX__", name_prefix);
331 p = buf;
332 for (digits = fmt->p; digits; digits--)
333 {
334 *p++ = '9';
335 if (digits == fmt->p)
336 *p++ = '.';
337 }
338 *p = 0;
339 /* fmt->p plus 1, to account for the decimal point and fmt->emax
340 minus 1 because the digits are nines, not 1.0. */
341 sprintf (&buf[fmt->p + 1], "E%d%s", fmt->emax - 1, suffix);
342 builtin_define_with_value (name, buf, 0);
343
344 /* Compute epsilon (the difference between 1 and least value greater
345 than 1 representable). */
346 sprintf (name, "__%s_EPSILON__", name_prefix);
347 sprintf (buf, "1E-%d%s", fmt->p - 1, suffix);
348 builtin_define_with_value (name, buf, 0);
349
350 /* Minimum subnormal positive decimal value. */
351 sprintf (name, "__%s_SUBNORMAL_MIN__", name_prefix);
352 p = buf;
353 for (digits = fmt->p; digits > 1; digits--)
354 {
355 *p++ = '0';
356 if (digits == fmt->p)
357 *p++ = '.';
358 }
359 *p = 0;
360 sprintf (&buf[fmt->p], "1E%d%s", fmt->emin - 1, suffix);
361 builtin_define_with_value (name, buf, 0);
362 }
363
364 /* Define fixed-point constants for TYPE using NAME_PREFIX and SUFFIX. */
365
366 static void
367 builtin_define_fixed_point_constants (const char *name_prefix,
368 const char *suffix,
369 tree type)
370 {
371 char name[64], buf[256], *new_buf;
372 int i, mod;
373
374 sprintf (name, "__%s_FBIT__", name_prefix);
375 builtin_define_with_int_value (name, TYPE_FBIT (type));
376
377 sprintf (name, "__%s_IBIT__", name_prefix);
378 builtin_define_with_int_value (name, TYPE_IBIT (type));
379
380 /* If there is no suffix, defines are for fixed-point modes.
381 We just return. */
382 if (strcmp (suffix, "") == 0)
383 return;
384
385 if (TYPE_UNSIGNED (type))
386 {
387 sprintf (name, "__%s_MIN__", name_prefix);
388 sprintf (buf, "0.0%s", suffix);
389 builtin_define_with_value (name, buf, 0);
390 }
391 else
392 {
393 sprintf (name, "__%s_MIN__", name_prefix);
394 if (ALL_ACCUM_MODE_P (TYPE_MODE (type)))
395 sprintf (buf, "(-0X1P%d%s-0X1P%d%s)", TYPE_IBIT (type) - 1, suffix,
396 TYPE_IBIT (type) - 1, suffix);
397 else
398 sprintf (buf, "(-0.5%s-0.5%s)", suffix, suffix);
399 builtin_define_with_value (name, buf, 0);
400 }
401
402 sprintf (name, "__%s_MAX__", name_prefix);
403 sprintf (buf, "0X");
404 new_buf = buf + 2;
405 mod = (TYPE_FBIT (type) + TYPE_IBIT (type)) % 4;
406 if (mod)
407 sprintf (new_buf++, "%x", (1 << mod) - 1);
408 for (i = 0; i < (TYPE_FBIT (type) + TYPE_IBIT (type)) / 4; i++)
409 sprintf (new_buf++, "F");
410 sprintf (new_buf, "P-%d%s", TYPE_FBIT (type), suffix);
411 builtin_define_with_value (name, buf, 0);
412
413 sprintf (name, "__%s_EPSILON__", name_prefix);
414 sprintf (buf, "0x1P-%d%s", TYPE_FBIT (type), suffix);
415 builtin_define_with_value (name, buf, 0);
416 }
417
418 /* Define macros used by <stdint.h>. */
419 static void
420 builtin_define_stdint_macros (void)
421 {
422 builtin_define_type_max ("__INTMAX_MAX__", intmax_type_node);
423 builtin_define_constants ("__INTMAX_C", intmax_type_node);
424 builtin_define_type_max ("__UINTMAX_MAX__", uintmax_type_node);
425 builtin_define_constants ("__UINTMAX_C", uintmax_type_node);
426 if (sig_atomic_type_node)
427 builtin_define_type_minmax ("__SIG_ATOMIC_MIN__", "__SIG_ATOMIC_MAX__",
428 sig_atomic_type_node);
429 if (int8_type_node)
430 builtin_define_type_max ("__INT8_MAX__", int8_type_node);
431 if (int16_type_node)
432 builtin_define_type_max ("__INT16_MAX__", int16_type_node);
433 if (int32_type_node)
434 builtin_define_type_max ("__INT32_MAX__", int32_type_node);
435 if (int64_type_node)
436 builtin_define_type_max ("__INT64_MAX__", int64_type_node);
437 if (uint8_type_node)
438 builtin_define_type_max ("__UINT8_MAX__", uint8_type_node);
439 if (c_uint16_type_node)
440 builtin_define_type_max ("__UINT16_MAX__", c_uint16_type_node);
441 if (c_uint32_type_node)
442 builtin_define_type_max ("__UINT32_MAX__", c_uint32_type_node);
443 if (c_uint64_type_node)
444 builtin_define_type_max ("__UINT64_MAX__", c_uint64_type_node);
445 if (int_least8_type_node)
446 {
447 builtin_define_type_max ("__INT_LEAST8_MAX__", int_least8_type_node);
448 builtin_define_constants ("__INT8_C", int_least8_type_node);
449 }
450 if (int_least16_type_node)
451 {
452 builtin_define_type_max ("__INT_LEAST16_MAX__", int_least16_type_node);
453 builtin_define_constants ("__INT16_C", int_least16_type_node);
454 }
455 if (int_least32_type_node)
456 {
457 builtin_define_type_max ("__INT_LEAST32_MAX__", int_least32_type_node);
458 builtin_define_constants ("__INT32_C", int_least32_type_node);
459 }
460 if (int_least64_type_node)
461 {
462 builtin_define_type_max ("__INT_LEAST64_MAX__", int_least64_type_node);
463 builtin_define_constants ("__INT64_C", int_least64_type_node);
464 }
465 if (uint_least8_type_node)
466 {
467 builtin_define_type_max ("__UINT_LEAST8_MAX__", uint_least8_type_node);
468 builtin_define_constants ("__UINT8_C", uint_least8_type_node);
469 }
470 if (uint_least16_type_node)
471 {
472 builtin_define_type_max ("__UINT_LEAST16_MAX__", uint_least16_type_node);
473 builtin_define_constants ("__UINT16_C", uint_least16_type_node);
474 }
475 if (uint_least32_type_node)
476 {
477 builtin_define_type_max ("__UINT_LEAST32_MAX__", uint_least32_type_node);
478 builtin_define_constants ("__UINT32_C", uint_least32_type_node);
479 }
480 if (uint_least64_type_node)
481 {
482 builtin_define_type_max ("__UINT_LEAST64_MAX__", uint_least64_type_node);
483 builtin_define_constants ("__UINT64_C", uint_least64_type_node);
484 }
485 if (int_fast8_type_node)
486 builtin_define_type_max ("__INT_FAST8_MAX__", int_fast8_type_node);
487 if (int_fast16_type_node)
488 builtin_define_type_max ("__INT_FAST16_MAX__", int_fast16_type_node);
489 if (int_fast32_type_node)
490 builtin_define_type_max ("__INT_FAST32_MAX__", int_fast32_type_node);
491 if (int_fast64_type_node)
492 builtin_define_type_max ("__INT_FAST64_MAX__", int_fast64_type_node);
493 if (uint_fast8_type_node)
494 builtin_define_type_max ("__UINT_FAST8_MAX__", uint_fast8_type_node);
495 if (uint_fast16_type_node)
496 builtin_define_type_max ("__UINT_FAST16_MAX__", uint_fast16_type_node);
497 if (uint_fast32_type_node)
498 builtin_define_type_max ("__UINT_FAST32_MAX__", uint_fast32_type_node);
499 if (uint_fast64_type_node)
500 builtin_define_type_max ("__UINT_FAST64_MAX__", uint_fast64_type_node);
501 if (intptr_type_node)
502 builtin_define_type_max ("__INTPTR_MAX__", intptr_type_node);
503 if (uintptr_type_node)
504 builtin_define_type_max ("__UINTPTR_MAX__", uintptr_type_node);
505 }
506
507 /* Adjust the optimization macros when a #pragma GCC optimization is done to
508 reflect the current level. */
509 void
510 c_cpp_builtins_optimize_pragma (cpp_reader *pfile, tree prev_tree,
511 tree cur_tree)
512 {
513 struct cl_optimization *prev = TREE_OPTIMIZATION (prev_tree);
514 struct cl_optimization *cur = TREE_OPTIMIZATION (cur_tree);
515 bool prev_fast_math;
516 bool cur_fast_math;
517
518 /* -undef turns off target-specific built-ins. */
519 if (flag_undef)
520 return;
521
522 /* Other target-independent built-ins determined by command-line
523 options. */
524 if (!prev->x_optimize_size && cur->x_optimize_size)
525 cpp_define (pfile, "__OPTIMIZE_SIZE__");
526 else if (prev->x_optimize_size && !cur->x_optimize_size)
527 cpp_undef (pfile, "__OPTIMIZE_SIZE__");
528
529 if (!prev->x_optimize && cur->x_optimize)
530 cpp_define (pfile, "__OPTIMIZE__");
531 else if (prev->x_optimize && !cur->x_optimize)
532 cpp_undef (pfile, "__OPTIMIZE__");
533
534 prev_fast_math = fast_math_flags_struct_set_p (prev);
535 cur_fast_math = fast_math_flags_struct_set_p (cur);
536 if (!prev_fast_math && cur_fast_math)
537 cpp_define (pfile, "__FAST_MATH__");
538 else if (prev_fast_math && !cur_fast_math)
539 cpp_undef (pfile, "__FAST_MATH__");
540
541 if (!prev->x_flag_signaling_nans && cur->x_flag_signaling_nans)
542 cpp_define (pfile, "__SUPPORT_SNAN__");
543 else if (prev->x_flag_signaling_nans && !cur->x_flag_signaling_nans)
544 cpp_undef (pfile, "__SUPPORT_SNAN__");
545
546 if (!prev->x_flag_errno_math && cur->x_flag_errno_math)
547 cpp_undef (pfile, "__NO_MATH_ERRNO__");
548 else if (prev->x_flag_errno_math && !cur->x_flag_errno_math)
549 cpp_define (pfile, "__NO_MATH_ERRNO__");
550
551 if (!prev->x_flag_finite_math_only && cur->x_flag_finite_math_only)
552 {
553 cpp_undef (pfile, "__FINITE_MATH_ONLY__");
554 cpp_define (pfile, "__FINITE_MATH_ONLY__=1");
555 }
556 else if (prev->x_flag_finite_math_only && !cur->x_flag_finite_math_only)
557 {
558 cpp_undef (pfile, "__FINITE_MATH_ONLY__");
559 cpp_define (pfile, "__FINITE_MATH_ONLY__=0");
560 }
561 }
562
563
564 /* This function will emit cpp macros to indicate the presence of various lock
565 free atomic operations. */
566
567 static void
568 cpp_atomic_builtins (cpp_reader *pfile)
569 {
570 /* Set a flag for each size of object that compare and swap exists for up to
571 a 16 byte object. */
572 #define SWAP_LIMIT 17
573 bool have_swap[SWAP_LIMIT];
574 unsigned int psize;
575
576 /* Clear the map of sizes compare_and swap exists for. */
577 memset (have_swap, 0, sizeof (have_swap));
578
579 /* Tell source code if the compiler makes sync_compare_and_swap
580 builtins available. */
581 #ifndef HAVE_sync_compare_and_swapqi
582 #define HAVE_sync_compare_and_swapqi 0
583 #endif
584 #ifndef HAVE_atomic_compare_and_swapqi
585 #define HAVE_atomic_compare_and_swapqi 0
586 #endif
587
588 if (HAVE_sync_compare_and_swapqi || HAVE_atomic_compare_and_swapqi)
589 {
590 cpp_define (pfile, "__GCC_HAVE_SYNC_COMPARE_AND_SWAP_1");
591 have_swap[1] = true;
592 }
593
594 #ifndef HAVE_sync_compare_and_swaphi
595 #define HAVE_sync_compare_and_swaphi 0
596 #endif
597 #ifndef HAVE_atomic_compare_and_swaphi
598 #define HAVE_atomic_compare_and_swaphi 0
599 #endif
600 if (HAVE_sync_compare_and_swaphi || HAVE_atomic_compare_and_swaphi)
601 {
602 cpp_define (pfile, "__GCC_HAVE_SYNC_COMPARE_AND_SWAP_2");
603 have_swap[2] = true;
604 }
605
606 #ifndef HAVE_sync_compare_and_swapsi
607 #define HAVE_sync_compare_and_swapsi 0
608 #endif
609 #ifndef HAVE_atomic_compare_and_swapsi
610 #define HAVE_atomic_compare_and_swapsi 0
611 #endif
612 if (HAVE_sync_compare_and_swapsi || HAVE_atomic_compare_and_swapsi)
613 {
614 cpp_define (pfile, "__GCC_HAVE_SYNC_COMPARE_AND_SWAP_4");
615 have_swap[4] = true;
616 }
617
618 #ifndef HAVE_sync_compare_and_swapdi
619 #define HAVE_sync_compare_and_swapdi 0
620 #endif
621 #ifndef HAVE_atomic_compare_and_swapdi
622 #define HAVE_atomic_compare_and_swapdi 0
623 #endif
624 if (HAVE_sync_compare_and_swapdi || HAVE_atomic_compare_and_swapdi)
625 {
626 cpp_define (pfile, "__GCC_HAVE_SYNC_COMPARE_AND_SWAP_8");
627 have_swap[8] = true;
628 }
629
630 #ifndef HAVE_sync_compare_and_swapti
631 #define HAVE_sync_compare_and_swapti 0
632 #endif
633 #ifndef HAVE_atomic_compare_and_swapti
634 #define HAVE_atomic_compare_and_swapti 0
635 #endif
636 if (HAVE_sync_compare_and_swapti || HAVE_atomic_compare_and_swapti)
637 {
638 cpp_define (pfile, "__GCC_HAVE_SYNC_COMPARE_AND_SWAP_16");
639 have_swap[16] = true;
640 }
641
642 /* Tell the source code about various types. These map to the C++11 and C11
643 macros where 2 indicates lock-free always, and 1 indicates sometimes
644 lock free. */
645 #define SIZEOF_NODE(T) (tree_to_uhwi (TYPE_SIZE_UNIT (T)))
646 #define SWAP_INDEX(T) ((SIZEOF_NODE (T) < SWAP_LIMIT) ? SIZEOF_NODE (T) : 0)
647 builtin_define_with_int_value ("__GCC_ATOMIC_BOOL_LOCK_FREE",
648 (have_swap[SWAP_INDEX (boolean_type_node)]? 2 : 1));
649 builtin_define_with_int_value ("__GCC_ATOMIC_CHAR_LOCK_FREE",
650 (have_swap[SWAP_INDEX (signed_char_type_node)]? 2 : 1));
651 builtin_define_with_int_value ("__GCC_ATOMIC_CHAR16_T_LOCK_FREE",
652 (have_swap[SWAP_INDEX (char16_type_node)]? 2 : 1));
653 builtin_define_with_int_value ("__GCC_ATOMIC_CHAR32_T_LOCK_FREE",
654 (have_swap[SWAP_INDEX (char32_type_node)]? 2 : 1));
655 builtin_define_with_int_value ("__GCC_ATOMIC_WCHAR_T_LOCK_FREE",
656 (have_swap[SWAP_INDEX (wchar_type_node)]? 2 : 1));
657 builtin_define_with_int_value ("__GCC_ATOMIC_SHORT_LOCK_FREE",
658 (have_swap[SWAP_INDEX (short_integer_type_node)]? 2 : 1));
659 builtin_define_with_int_value ("__GCC_ATOMIC_INT_LOCK_FREE",
660 (have_swap[SWAP_INDEX (integer_type_node)]? 2 : 1));
661 builtin_define_with_int_value ("__GCC_ATOMIC_LONG_LOCK_FREE",
662 (have_swap[SWAP_INDEX (long_integer_type_node)]? 2 : 1));
663 builtin_define_with_int_value ("__GCC_ATOMIC_LLONG_LOCK_FREE",
664 (have_swap[SWAP_INDEX (long_long_integer_type_node)]? 2 : 1));
665
666 /* If we're dealing with a "set" value that doesn't exactly correspond
667 to a boolean truth value, let the library work around that. */
668 builtin_define_with_int_value ("__GCC_ATOMIC_TEST_AND_SET_TRUEVAL",
669 targetm.atomic_test_and_set_trueval);
670
671 /* ptr_type_node can't be used here since ptr_mode is only set when
672 toplev calls backend_init which is not done with -E or pch. */
673 psize = POINTER_SIZE_UNITS;
674 if (psize >= SWAP_LIMIT)
675 psize = 0;
676 builtin_define_with_int_value ("__GCC_ATOMIC_POINTER_LOCK_FREE",
677 (have_swap[psize]? 2 : 1));
678 }
679
680 /* Return the value for __GCC_IEC_559. */
681 static int
682 cpp_iec_559_value (void)
683 {
684 /* The default is support for IEEE 754-2008. */
685 int ret = 2;
686
687 /* float and double must be binary32 and binary64. If they are but
688 with reversed NaN convention, at most IEEE 754-1985 is
689 supported. */
690 const struct real_format *ffmt
691 = REAL_MODE_FORMAT (TYPE_MODE (float_type_node));
692 const struct real_format *dfmt
693 = REAL_MODE_FORMAT (TYPE_MODE (double_type_node));
694 if (!ffmt->qnan_msb_set || !dfmt->qnan_msb_set)
695 ret = 1;
696 if (ffmt->b != 2
697 || ffmt->p != 24
698 || ffmt->pnan != 24
699 || ffmt->emin != -125
700 || ffmt->emax != 128
701 || ffmt->signbit_rw != 31
702 || ffmt->round_towards_zero
703 || !ffmt->has_sign_dependent_rounding
704 || !ffmt->has_nans
705 || !ffmt->has_inf
706 || !ffmt->has_denorm
707 || !ffmt->has_signed_zero
708 || dfmt->b != 2
709 || dfmt->p != 53
710 || dfmt->pnan != 53
711 || dfmt->emin != -1021
712 || dfmt->emax != 1024
713 || dfmt->signbit_rw != 63
714 || dfmt->round_towards_zero
715 || !dfmt->has_sign_dependent_rounding
716 || !dfmt->has_nans
717 || !dfmt->has_inf
718 || !dfmt->has_denorm
719 || !dfmt->has_signed_zero)
720 ret = 0;
721
722 /* In strict C standards conformance mode, consider unpredictable
723 excess precision to mean lack of IEEE 754 support. The same
724 applies to unpredictable contraction. For C++, and outside
725 strict conformance mode, do not consider these options to mean
726 lack of IEEE 754 support. */
727 if (flag_iso
728 && !c_dialect_cxx ()
729 && TARGET_FLT_EVAL_METHOD != 0
730 && flag_excess_precision_cmdline != EXCESS_PRECISION_STANDARD)
731 ret = 0;
732 if (flag_iso
733 && !c_dialect_cxx ()
734 && flag_fp_contract_mode == FP_CONTRACT_FAST)
735 ret = 0;
736
737 /* Various options are contrary to IEEE 754 semantics. */
738 if (flag_unsafe_math_optimizations
739 || flag_associative_math
740 || flag_reciprocal_math
741 || flag_finite_math_only
742 || !flag_signed_zeros
743 || flag_single_precision_constant)
744 ret = 0;
745
746 /* If the target does not support IEEE 754 exceptions and rounding
747 modes, consider IEEE 754 support to be absent. */
748 if (!targetm.float_exceptions_rounding_supported_p ())
749 ret = 0;
750
751 return ret;
752 }
753
754 /* Return the value for __GCC_IEC_559_COMPLEX. */
755 static int
756 cpp_iec_559_complex_value (void)
757 {
758 /* The value is no bigger than that of __GCC_IEC_559. */
759 int ret = cpp_iec_559_value ();
760
761 /* Some options are contrary to the required default state of the
762 CX_LIMITED_RANGE pragma. */
763 if (flag_complex_method != 2)
764 ret = 0;
765
766 return ret;
767 }
768
769 /* Hook that registers front end and target-specific built-ins. */
770 void
771 c_cpp_builtins (cpp_reader *pfile)
772 {
773 int i;
774
775 /* -undef turns off target-specific built-ins. */
776 if (flag_undef)
777 return;
778
779 define_language_independent_builtin_macros (pfile);
780
781 if (c_dialect_cxx ())
782 {
783 int major;
784 parse_basever (&major, NULL, NULL);
785 cpp_define_formatted (pfile, "__GNUG__=%d", major);
786 }
787
788 /* For stddef.h. They require macros defined in c-common.c. */
789 c_stddef_cpp_builtins ();
790
791 /* Set include test macros for all C/C++ (not for just C++11 etc.)
792 The builtins __has_include__ and __has_include_next__ are defined
793 in libcpp. */
794 cpp_define (pfile, "__has_include(STR)=__has_include__(STR)");
795 cpp_define (pfile, "__has_include_next(STR)=__has_include_next__(STR)");
796
797 if (c_dialect_cxx ())
798 {
799 if (flag_weak && SUPPORTS_ONE_ONLY)
800 cpp_define (pfile, "__GXX_WEAK__=1");
801 else
802 cpp_define (pfile, "__GXX_WEAK__=0");
803
804 if (warn_deprecated)
805 cpp_define (pfile, "__DEPRECATED");
806
807 if (flag_rtti)
808 {
809 cpp_define (pfile, "__GXX_RTTI");
810 cpp_define (pfile, "__cpp_rtti=199711");
811 }
812
813 if (cxx_dialect >= cxx11)
814 cpp_define (pfile, "__GXX_EXPERIMENTAL_CXX0X__");
815
816 /* Binary literals have been allowed in g++ before C++11
817 and were standardized for C++14. */
818 if (!pedantic || cxx_dialect > cxx11)
819 cpp_define (pfile, "__cpp_binary_literals=201304");
820
821 /* Arrays of runtime bound were removed from C++14, but we still
822 support GNU VLAs. Let's define this macro to a low number
823 (corresponding to the initial test release of GNU C++) if we won't
824 complain about use of VLAs. */
825 if (c_dialect_cxx ()
826 && (pedantic ? warn_vla == 0 : warn_vla <= 0))
827 cpp_define (pfile, "__cpp_runtime_arrays=198712");
828
829 if (cxx_dialect >= cxx11)
830 {
831 /* Set feature test macros for C++11. */
832 if (cxx_dialect <= cxx14)
833 cpp_define (pfile, "__cpp_unicode_characters=200704");
834 cpp_define (pfile, "__cpp_raw_strings=200710");
835 cpp_define (pfile, "__cpp_unicode_literals=200710");
836 cpp_define (pfile, "__cpp_user_defined_literals=200809");
837 cpp_define (pfile, "__cpp_lambdas=200907");
838 if (cxx_dialect == cxx11)
839 cpp_define (pfile, "__cpp_constexpr=200704");
840 cpp_define (pfile, "__cpp_range_based_for=200907");
841 if (cxx_dialect <= cxx14)
842 cpp_define (pfile, "__cpp_static_assert=200410");
843 cpp_define (pfile, "__cpp_decltype=200707");
844 cpp_define (pfile, "__cpp_attributes=200809");
845 cpp_define (pfile, "__cpp_rvalue_reference=200610");
846 cpp_define (pfile, "__cpp_variadic_templates=200704");
847 cpp_define (pfile, "__cpp_initializer_lists=200806");
848 cpp_define (pfile, "__cpp_delegating_constructors=200604");
849 cpp_define (pfile, "__cpp_nsdmi=200809");
850 cpp_define (pfile, "__cpp_inheriting_constructors=200802");
851 cpp_define (pfile, "__cpp_ref_qualifiers=200710");
852 cpp_define (pfile, "__cpp_alias_templates=200704");
853 }
854 if (cxx_dialect > cxx11)
855 {
856 /* Set feature test macros for C++14. */
857 cpp_define (pfile, "__cpp_return_type_deduction=201304");
858 cpp_define (pfile, "__cpp_init_captures=201304");
859 cpp_define (pfile, "__cpp_generic_lambdas=201304");
860 cpp_define (pfile, "__cpp_constexpr=201304");
861 cpp_define (pfile, "__cpp_decltype_auto=201304");
862 cpp_define (pfile, "__cpp_aggregate_nsdmi=201304");
863 cpp_define (pfile, "__cpp_variable_templates=201304");
864 cpp_define (pfile, "__cpp_digit_separators=201309");
865 }
866 if (cxx_dialect > cxx14)
867 {
868 /* Set feature test macros for C++1z. */
869 cpp_define (pfile, "__cpp_unicode_characters=201411");
870 cpp_define (pfile, "__cpp_static_assert=201411");
871 cpp_define (pfile, "__cpp_namespace_attributes=201411");
872 cpp_define (pfile, "__cpp_enumerator_attributes=201411");
873 cpp_define (pfile, "__cpp_nested_namespace_definitions=201411");
874 cpp_define (pfile, "__cpp_fold_expressions=201411");
875 cpp_define (pfile, "__cpp_nontype_template_args=201411");
876 }
877 if (flag_concepts)
878 /* Use a value smaller than the 201507 specified in
879 the TS, since we don't yet support extended auto. */
880 cpp_define (pfile, "__cpp_concepts=201500");
881 if (flag_tm)
882 /* Use a value smaller than the 201505 specified in
883 the TS, since we don't yet support atomic_cancel. */
884 cpp_define (pfile, "__cpp_transactional_memory=210500");
885 if (flag_sized_deallocation)
886 cpp_define (pfile, "__cpp_sized_deallocation=201309");
887 }
888 /* Note that we define this for C as well, so that we know if
889 __attribute__((cleanup)) will interface with EH. */
890 if (flag_exceptions)
891 {
892 cpp_define (pfile, "__EXCEPTIONS");
893 if (c_dialect_cxx ())
894 cpp_define (pfile, "__cpp_exceptions=199711");
895 }
896
897 /* Represents the C++ ABI version, always defined so it can be used while
898 preprocessing C and assembler. */
899 if (flag_abi_version == 0)
900 /* We should have set this to something real in c_common_post_options. */
901 gcc_unreachable ();
902 else if (flag_abi_version == 1)
903 /* Due to a historical accident, this version had the value
904 "102". */
905 builtin_define_with_int_value ("__GXX_ABI_VERSION", 102);
906 else
907 /* Newer versions have values 1002, 1003, .... */
908 builtin_define_with_int_value ("__GXX_ABI_VERSION",
909 1000 + flag_abi_version);
910
911 /* libgcc needs to know this. */
912 if (targetm_common.except_unwind_info (&global_options) == UI_SJLJ)
913 cpp_define (pfile, "__USING_SJLJ_EXCEPTIONS__");
914
915 /* limits.h and stdint.h need to know these. */
916 builtin_define_type_max ("__SCHAR_MAX__", signed_char_type_node);
917 builtin_define_type_max ("__SHRT_MAX__", short_integer_type_node);
918 builtin_define_type_max ("__INT_MAX__", integer_type_node);
919 builtin_define_type_max ("__LONG_MAX__", long_integer_type_node);
920 builtin_define_type_max ("__LONG_LONG_MAX__", long_long_integer_type_node);
921 builtin_define_type_minmax ("__WCHAR_MIN__", "__WCHAR_MAX__",
922 underlying_wchar_type_node);
923 builtin_define_type_minmax ("__WINT_MIN__", "__WINT_MAX__", wint_type_node);
924 builtin_define_type_max ("__PTRDIFF_MAX__", ptrdiff_type_node);
925 builtin_define_type_max ("__SIZE_MAX__", size_type_node);
926
927 if (c_dialect_cxx ())
928 for (i = 0; i < NUM_INT_N_ENTS; i ++)
929 if (int_n_enabled_p[i])
930 {
931 char buf[35+20+20];
932
933 /* These are used to configure the C++ library. */
934
935 if (!flag_iso || int_n_data[i].bitsize == POINTER_SIZE)
936 {
937 sprintf (buf, "__GLIBCXX_TYPE_INT_N_%d=__int%d", i, int_n_data[i].bitsize);
938 cpp_define (parse_in, buf);
939
940 sprintf (buf, "__GLIBCXX_BITSIZE_INT_N_%d=%d", i, int_n_data[i].bitsize);
941 cpp_define (parse_in, buf);
942 }
943 }
944
945 /* stdint.h and the testsuite need to know these. */
946 builtin_define_stdint_macros ();
947
948 /* Provide information for library headers to determine whether to
949 define macros such as __STDC_IEC_559__ and
950 __STDC_IEC_559_COMPLEX__. */
951 builtin_define_with_int_value ("__GCC_IEC_559", cpp_iec_559_value ());
952 builtin_define_with_int_value ("__GCC_IEC_559_COMPLEX",
953 cpp_iec_559_complex_value ());
954
955 /* float.h needs to know this. */
956 builtin_define_with_int_value ("__FLT_EVAL_METHOD__",
957 TARGET_FLT_EVAL_METHOD);
958
959 /* And decfloat.h needs this. */
960 builtin_define_with_int_value ("__DEC_EVAL_METHOD__",
961 TARGET_DEC_EVAL_METHOD);
962
963 builtin_define_float_constants ("FLT", "F", "%s", "F", float_type_node);
964 /* Cast the double precision constants. This is needed when single
965 precision constants are specified or when pragma FLOAT_CONST_DECIMAL64
966 is used. The correct result is computed by the compiler when using
967 macros that include a cast. We use a different cast for C++ to avoid
968 problems with -Wold-style-cast. */
969 builtin_define_float_constants ("DBL", "L",
970 (c_dialect_cxx ()
971 ? "double(%s)"
972 : "((double)%s)"),
973 "", double_type_node);
974 builtin_define_float_constants ("LDBL", "L", "%s", "L",
975 long_double_type_node);
976
977 /* For decfloat.h. */
978 builtin_define_decimal_float_constants ("DEC32", "DF", dfloat32_type_node);
979 builtin_define_decimal_float_constants ("DEC64", "DD", dfloat64_type_node);
980 builtin_define_decimal_float_constants ("DEC128", "DL", dfloat128_type_node);
981
982 /* For fixed-point fibt, ibit, max, min, and epsilon. */
983 if (targetm.fixed_point_supported_p ())
984 {
985 builtin_define_fixed_point_constants ("SFRACT", "HR",
986 short_fract_type_node);
987 builtin_define_fixed_point_constants ("USFRACT", "UHR",
988 unsigned_short_fract_type_node);
989 builtin_define_fixed_point_constants ("FRACT", "R",
990 fract_type_node);
991 builtin_define_fixed_point_constants ("UFRACT", "UR",
992 unsigned_fract_type_node);
993 builtin_define_fixed_point_constants ("LFRACT", "LR",
994 long_fract_type_node);
995 builtin_define_fixed_point_constants ("ULFRACT", "ULR",
996 unsigned_long_fract_type_node);
997 builtin_define_fixed_point_constants ("LLFRACT", "LLR",
998 long_long_fract_type_node);
999 builtin_define_fixed_point_constants ("ULLFRACT", "ULLR",
1000 unsigned_long_long_fract_type_node);
1001 builtin_define_fixed_point_constants ("SACCUM", "HK",
1002 short_accum_type_node);
1003 builtin_define_fixed_point_constants ("USACCUM", "UHK",
1004 unsigned_short_accum_type_node);
1005 builtin_define_fixed_point_constants ("ACCUM", "K",
1006 accum_type_node);
1007 builtin_define_fixed_point_constants ("UACCUM", "UK",
1008 unsigned_accum_type_node);
1009 builtin_define_fixed_point_constants ("LACCUM", "LK",
1010 long_accum_type_node);
1011 builtin_define_fixed_point_constants ("ULACCUM", "ULK",
1012 unsigned_long_accum_type_node);
1013 builtin_define_fixed_point_constants ("LLACCUM", "LLK",
1014 long_long_accum_type_node);
1015 builtin_define_fixed_point_constants ("ULLACCUM", "ULLK",
1016 unsigned_long_long_accum_type_node);
1017
1018 builtin_define_fixed_point_constants ("QQ", "", qq_type_node);
1019 builtin_define_fixed_point_constants ("HQ", "", hq_type_node);
1020 builtin_define_fixed_point_constants ("SQ", "", sq_type_node);
1021 builtin_define_fixed_point_constants ("DQ", "", dq_type_node);
1022 builtin_define_fixed_point_constants ("TQ", "", tq_type_node);
1023 builtin_define_fixed_point_constants ("UQQ", "", uqq_type_node);
1024 builtin_define_fixed_point_constants ("UHQ", "", uhq_type_node);
1025 builtin_define_fixed_point_constants ("USQ", "", usq_type_node);
1026 builtin_define_fixed_point_constants ("UDQ", "", udq_type_node);
1027 builtin_define_fixed_point_constants ("UTQ", "", utq_type_node);
1028 builtin_define_fixed_point_constants ("HA", "", ha_type_node);
1029 builtin_define_fixed_point_constants ("SA", "", sa_type_node);
1030 builtin_define_fixed_point_constants ("DA", "", da_type_node);
1031 builtin_define_fixed_point_constants ("TA", "", ta_type_node);
1032 builtin_define_fixed_point_constants ("UHA", "", uha_type_node);
1033 builtin_define_fixed_point_constants ("USA", "", usa_type_node);
1034 builtin_define_fixed_point_constants ("UDA", "", uda_type_node);
1035 builtin_define_fixed_point_constants ("UTA", "", uta_type_node);
1036 }
1037
1038 /* For libgcc-internal use only. */
1039 if (flag_building_libgcc)
1040 {
1041 /* Properties of floating-point modes for libgcc2.c. */
1042 for (machine_mode mode = GET_CLASS_NARROWEST_MODE (MODE_FLOAT);
1043 mode != VOIDmode;
1044 mode = GET_MODE_WIDER_MODE (mode))
1045 {
1046 const char *name = GET_MODE_NAME (mode);
1047 char *macro_name
1048 = (char *) alloca (strlen (name)
1049 + sizeof ("__LIBGCC__MANT_DIG__"));
1050 sprintf (macro_name, "__LIBGCC_%s_MANT_DIG__", name);
1051 builtin_define_with_int_value (macro_name,
1052 REAL_MODE_FORMAT (mode)->p);
1053 if (!targetm.scalar_mode_supported_p (mode)
1054 || !targetm.libgcc_floating_mode_supported_p (mode))
1055 continue;
1056 macro_name = (char *) alloca (strlen (name)
1057 + sizeof ("__LIBGCC_HAS__MODE__"));
1058 sprintf (macro_name, "__LIBGCC_HAS_%s_MODE__", name);
1059 cpp_define (pfile, macro_name);
1060 macro_name = (char *) alloca (strlen (name)
1061 + sizeof ("__LIBGCC__FUNC_EXT__"));
1062 sprintf (macro_name, "__LIBGCC_%s_FUNC_EXT__", name);
1063 const char *suffix;
1064 if (mode == TYPE_MODE (double_type_node))
1065 suffix = "";
1066 else if (mode == TYPE_MODE (float_type_node))
1067 suffix = "f";
1068 else if (mode == TYPE_MODE (long_double_type_node))
1069 suffix = "l";
1070 /* ??? The following assumes the built-in functions (defined
1071 in target-specific code) match the suffixes used for
1072 constants. Because in fact such functions are not
1073 defined for the 'w' suffix, 'l' is used there
1074 instead. */
1075 else if (mode == targetm.c.mode_for_suffix ('q'))
1076 suffix = "q";
1077 else if (mode == targetm.c.mode_for_suffix ('w'))
1078 suffix = "l";
1079 else
1080 gcc_unreachable ();
1081 builtin_define_with_value (macro_name, suffix, 0);
1082 bool excess_precision = false;
1083 if (TARGET_FLT_EVAL_METHOD != 0
1084 && mode != TYPE_MODE (long_double_type_node)
1085 && (mode == TYPE_MODE (float_type_node)
1086 || mode == TYPE_MODE (double_type_node)))
1087 switch (TARGET_FLT_EVAL_METHOD)
1088 {
1089 case -1:
1090 case 2:
1091 excess_precision = true;
1092 break;
1093
1094 case 1:
1095 excess_precision = mode == TYPE_MODE (float_type_node);
1096 break;
1097
1098 default:
1099 gcc_unreachable ();
1100 }
1101 macro_name = (char *) alloca (strlen (name)
1102 + sizeof ("__LIBGCC__EXCESS_"
1103 "PRECISION__"));
1104 sprintf (macro_name, "__LIBGCC_%s_EXCESS_PRECISION__", name);
1105 builtin_define_with_int_value (macro_name, excess_precision);
1106 }
1107
1108 /* For libgcc crtstuff.c and libgcc2.c. */
1109 builtin_define_with_int_value ("__LIBGCC_EH_TABLES_CAN_BE_READ_ONLY__",
1110 EH_TABLES_CAN_BE_READ_ONLY);
1111 #ifdef EH_FRAME_SECTION_NAME
1112 builtin_define_with_value ("__LIBGCC_EH_FRAME_SECTION_NAME__",
1113 EH_FRAME_SECTION_NAME, 1);
1114 #endif
1115 #ifdef JCR_SECTION_NAME
1116 builtin_define_with_value ("__LIBGCC_JCR_SECTION_NAME__",
1117 JCR_SECTION_NAME, 1);
1118 #endif
1119 #ifdef CTORS_SECTION_ASM_OP
1120 builtin_define_with_value ("__LIBGCC_CTORS_SECTION_ASM_OP__",
1121 CTORS_SECTION_ASM_OP, 1);
1122 #endif
1123 #ifdef DTORS_SECTION_ASM_OP
1124 builtin_define_with_value ("__LIBGCC_DTORS_SECTION_ASM_OP__",
1125 DTORS_SECTION_ASM_OP, 1);
1126 #endif
1127 #ifdef TEXT_SECTION_ASM_OP
1128 builtin_define_with_value ("__LIBGCC_TEXT_SECTION_ASM_OP__",
1129 TEXT_SECTION_ASM_OP, 1);
1130 #endif
1131 #ifdef INIT_SECTION_ASM_OP
1132 builtin_define_with_value ("__LIBGCC_INIT_SECTION_ASM_OP__",
1133 INIT_SECTION_ASM_OP, 1);
1134 #endif
1135 #ifdef INIT_ARRAY_SECTION_ASM_OP
1136 /* Despite the name of this target macro, the expansion is not
1137 actually used, and may be empty rather than a string
1138 constant. */
1139 cpp_define (pfile, "__LIBGCC_INIT_ARRAY_SECTION_ASM_OP__");
1140 #endif
1141
1142 /* For libgcc enable-execute-stack.c. */
1143 builtin_define_with_int_value ("__LIBGCC_TRAMPOLINE_SIZE__",
1144 TRAMPOLINE_SIZE);
1145
1146 /* For libgcc generic-morestack.c and unwinder code. */
1147 if (STACK_GROWS_DOWNWARD)
1148 cpp_define (pfile, "__LIBGCC_STACK_GROWS_DOWNWARD__");
1149
1150 /* For libgcc unwinder code. */
1151 #ifdef DONT_USE_BUILTIN_SETJMP
1152 cpp_define (pfile, "__LIBGCC_DONT_USE_BUILTIN_SETJMP__");
1153 #endif
1154 #ifdef DWARF_ALT_FRAME_RETURN_COLUMN
1155 builtin_define_with_int_value ("__LIBGCC_DWARF_ALT_FRAME_RETURN_COLUMN__",
1156 DWARF_ALT_FRAME_RETURN_COLUMN);
1157 #endif
1158 builtin_define_with_int_value ("__LIBGCC_DWARF_FRAME_REGISTERS__",
1159 DWARF_FRAME_REGISTERS);
1160 #ifdef EH_RETURN_STACKADJ_RTX
1161 cpp_define (pfile, "__LIBGCC_EH_RETURN_STACKADJ_RTX__");
1162 #endif
1163 #ifdef JMP_BUF_SIZE
1164 builtin_define_with_int_value ("__LIBGCC_JMP_BUF_SIZE__",
1165 JMP_BUF_SIZE);
1166 #endif
1167 builtin_define_with_int_value ("__LIBGCC_STACK_POINTER_REGNUM__",
1168 STACK_POINTER_REGNUM);
1169
1170 /* For libgcov. */
1171 builtin_define_with_int_value ("__LIBGCC_VTABLE_USES_DESCRIPTORS__",
1172 TARGET_VTABLE_USES_DESCRIPTORS);
1173 }
1174
1175 /* For use in assembly language. */
1176 builtin_define_with_value ("__REGISTER_PREFIX__", REGISTER_PREFIX, 0);
1177 builtin_define_with_value ("__USER_LABEL_PREFIX__", user_label_prefix, 0);
1178
1179 /* Misc. */
1180 if (flag_gnu89_inline)
1181 cpp_define (pfile, "__GNUC_GNU_INLINE__");
1182 else
1183 cpp_define (pfile, "__GNUC_STDC_INLINE__");
1184
1185 if (flag_no_inline)
1186 cpp_define (pfile, "__NO_INLINE__");
1187
1188 if (flag_iso)
1189 cpp_define (pfile, "__STRICT_ANSI__");
1190
1191 if (!flag_signed_char)
1192 cpp_define (pfile, "__CHAR_UNSIGNED__");
1193
1194 if (c_dialect_cxx () && TYPE_UNSIGNED (wchar_type_node))
1195 cpp_define (pfile, "__WCHAR_UNSIGNED__");
1196
1197 cpp_atomic_builtins (pfile);
1198
1199 #ifdef DWARF2_UNWIND_INFO
1200 if (dwarf2out_do_cfi_asm ())
1201 cpp_define (pfile, "__GCC_HAVE_DWARF2_CFI_ASM");
1202 #endif
1203
1204 /* Make the choice of ObjC runtime visible to source code. */
1205 if (c_dialect_objc () && flag_next_runtime)
1206 cpp_define (pfile, "__NEXT_RUNTIME__");
1207
1208 /* Show the availability of some target pragmas. */
1209 cpp_define (pfile, "__PRAGMA_REDEFINE_EXTNAME");
1210
1211 /* Make the choice of the stack protector runtime visible to source code.
1212 The macro names and values here were chosen for compatibility with an
1213 earlier implementation, i.e. ProPolice. */
1214 if (flag_stack_protect == 4)
1215 cpp_define (pfile, "__SSP_EXPLICIT__=4");
1216 if (flag_stack_protect == 3)
1217 cpp_define (pfile, "__SSP_STRONG__=3");
1218 if (flag_stack_protect == 2)
1219 cpp_define (pfile, "__SSP_ALL__=2");
1220 else if (flag_stack_protect == 1)
1221 cpp_define (pfile, "__SSP__=1");
1222
1223 if (flag_openacc)
1224 cpp_define (pfile, "_OPENACC=201306");
1225
1226 if (flag_openmp)
1227 cpp_define (pfile, "_OPENMP=201511");
1228
1229 for (i = 0; i < NUM_INT_N_ENTS; i ++)
1230 if (int_n_enabled_p[i])
1231 {
1232 char buf[15+20];
1233 sprintf(buf, "__SIZEOF_INT%d__", int_n_data[i].bitsize);
1234 builtin_define_type_sizeof (buf,
1235 int_n_trees[i].signed_type);
1236 }
1237 builtin_define_type_sizeof ("__SIZEOF_WCHAR_T__", wchar_type_node);
1238 builtin_define_type_sizeof ("__SIZEOF_WINT_T__", wint_type_node);
1239 builtin_define_type_sizeof ("__SIZEOF_PTRDIFF_T__",
1240 unsigned_ptrdiff_type_node);
1241
1242 /* A straightforward target hook doesn't work, because of problems
1243 linking that hook's body when part of non-C front ends. */
1244 # define preprocessing_asm_p() (cpp_get_options (pfile)->lang == CLK_ASM)
1245 # define preprocessing_trad_p() (cpp_get_options (pfile)->traditional)
1246 # define builtin_define(TXT) cpp_define (pfile, TXT)
1247 # define builtin_assert(TXT) cpp_assert (pfile, TXT)
1248 TARGET_CPU_CPP_BUILTINS ();
1249 TARGET_OS_CPP_BUILTINS ();
1250 TARGET_OBJFMT_CPP_BUILTINS ();
1251
1252 /* Support the __declspec keyword by turning them into attributes.
1253 Note that the current way we do this may result in a collision
1254 with predefined attributes later on. This can be solved by using
1255 one attribute, say __declspec__, and passing args to it. The
1256 problem with that approach is that args are not accumulated: each
1257 new appearance would clobber any existing args. */
1258 if (TARGET_DECLSPEC)
1259 builtin_define ("__declspec(x)=__attribute__((x))");
1260
1261 /* If decimal floating point is supported, tell the user if the
1262 alternate format (BID) is used instead of the standard (DPD)
1263 format. */
1264 if (ENABLE_DECIMAL_FLOAT && ENABLE_DECIMAL_BID_FORMAT)
1265 cpp_define (pfile, "__DECIMAL_BID_FORMAT__");
1266 }
1267
1268 /* Pass an object-like macro. If it doesn't lie in the user's
1269 namespace, defines it unconditionally. Otherwise define a version
1270 with two leading underscores, and another version with two leading
1271 and trailing underscores, and define the original only if an ISO
1272 standard was not nominated.
1273
1274 e.g. passing "unix" defines "__unix", "__unix__" and possibly
1275 "unix". Passing "_mips" defines "__mips", "__mips__" and possibly
1276 "_mips". */
1277 void
1278 builtin_define_std (const char *macro)
1279 {
1280 size_t len = strlen (macro);
1281 char *buff = (char *) alloca (len + 5);
1282 char *p = buff + 2;
1283 char *q = p + len;
1284
1285 /* prepend __ (or maybe just _) if in user's namespace. */
1286 memcpy (p, macro, len + 1);
1287 if (!( *p == '_' && (p[1] == '_' || ISUPPER (p[1]))))
1288 {
1289 if (*p != '_')
1290 *--p = '_';
1291 if (p[1] != '_')
1292 *--p = '_';
1293 }
1294 cpp_define (parse_in, p);
1295
1296 /* If it was in user's namespace... */
1297 if (p != buff + 2)
1298 {
1299 /* Define the macro with leading and following __. */
1300 if (q[-1] != '_')
1301 *q++ = '_';
1302 if (q[-2] != '_')
1303 *q++ = '_';
1304 *q = '\0';
1305 cpp_define (parse_in, p);
1306
1307 /* Finally, define the original macro if permitted. */
1308 if (!flag_iso)
1309 cpp_define (parse_in, macro);
1310 }
1311 }
1312
1313 /* Pass an object-like macro and a value to define it to. The third
1314 parameter says whether or not to turn the value into a string
1315 constant. */
1316 void
1317 builtin_define_with_value (const char *macro, const char *expansion, int is_str)
1318 {
1319 char *buf;
1320 size_t mlen = strlen (macro);
1321 size_t elen = strlen (expansion);
1322 size_t extra = 2; /* space for an = and a NUL */
1323
1324 if (is_str)
1325 {
1326 char *quoted_expansion = (char *) alloca (elen * 4 + 1);
1327 const char *p;
1328 char *q;
1329 extra += 2; /* space for two quote marks */
1330 for (p = expansion, q = quoted_expansion; *p; p++)
1331 {
1332 switch (*p)
1333 {
1334 case '\n':
1335 *q++ = '\\';
1336 *q++ = 'n';
1337 break;
1338
1339 case '\t':
1340 *q++ = '\\';
1341 *q++ = 't';
1342 break;
1343
1344 case '\\':
1345 *q++ = '\\';
1346 *q++ = '\\';
1347 break;
1348
1349 case '"':
1350 *q++ = '\\';
1351 *q++ = '"';
1352 break;
1353
1354 default:
1355 if (ISPRINT ((unsigned char) *p))
1356 *q++ = *p;
1357 else
1358 {
1359 sprintf (q, "\\%03o", (unsigned char) *p);
1360 q += 4;
1361 }
1362 }
1363 }
1364 *q = '\0';
1365 expansion = quoted_expansion;
1366 elen = q - expansion;
1367 }
1368
1369 buf = (char *) alloca (mlen + elen + extra);
1370 if (is_str)
1371 sprintf (buf, "%s=\"%s\"", macro, expansion);
1372 else
1373 sprintf (buf, "%s=%s", macro, expansion);
1374
1375 cpp_define (parse_in, buf);
1376 }
1377
1378
1379 /* Pass an object-like macro and an integer value to define it to. */
1380 void
1381 builtin_define_with_int_value (const char *macro, HOST_WIDE_INT value)
1382 {
1383 char *buf;
1384 size_t mlen = strlen (macro);
1385 size_t vlen = 18;
1386 size_t extra = 2; /* space for = and NUL. */
1387
1388 buf = (char *) alloca (mlen + vlen + extra);
1389 memcpy (buf, macro, mlen);
1390 buf[mlen] = '=';
1391 sprintf (buf + mlen + 1, HOST_WIDE_INT_PRINT_DEC, value);
1392
1393 cpp_define (parse_in, buf);
1394 }
1395
1396 /* builtin_define_with_hex_fp_value is very expensive, so the following
1397 array and function allows it to be done lazily when __DBL_MAX__
1398 etc. is first used. */
1399
1400 struct GTY(()) lazy_hex_fp_value_struct
1401 {
1402 const char *hex_str;
1403 cpp_macro *macro;
1404 machine_mode mode;
1405 int digits;
1406 const char *fp_suffix;
1407 };
1408 static GTY(()) struct lazy_hex_fp_value_struct lazy_hex_fp_values[12];
1409 static GTY(()) int lazy_hex_fp_value_count;
1410
1411 static bool
1412 lazy_hex_fp_value (cpp_reader *pfile ATTRIBUTE_UNUSED,
1413 cpp_hashnode *node)
1414 {
1415 REAL_VALUE_TYPE real;
1416 char dec_str[64], buf1[256];
1417 unsigned int idx;
1418 if (node->value.builtin < BT_FIRST_USER
1419 || (int) node->value.builtin >= BT_FIRST_USER + lazy_hex_fp_value_count)
1420 return false;
1421
1422 idx = node->value.builtin - BT_FIRST_USER;
1423 real_from_string (&real, lazy_hex_fp_values[idx].hex_str);
1424 real_to_decimal_for_mode (dec_str, &real, sizeof (dec_str),
1425 lazy_hex_fp_values[idx].digits, 0,
1426 lazy_hex_fp_values[idx].mode);
1427
1428 sprintf (buf1, "%s%s", dec_str, lazy_hex_fp_values[idx].fp_suffix);
1429 node->flags &= ~(NODE_BUILTIN | NODE_USED);
1430 node->value.macro = lazy_hex_fp_values[idx].macro;
1431 for (idx = 0; idx < node->value.macro->count; idx++)
1432 if (node->value.macro->exp.tokens[idx].type == CPP_NUMBER)
1433 break;
1434 gcc_assert (idx < node->value.macro->count);
1435 node->value.macro->exp.tokens[idx].val.str.len = strlen (buf1);
1436 node->value.macro->exp.tokens[idx].val.str.text
1437 = (const unsigned char *) ggc_strdup (buf1);
1438 return true;
1439 }
1440
1441 /* Pass an object-like macro a hexadecimal floating-point value. */
1442 static void
1443 builtin_define_with_hex_fp_value (const char *macro,
1444 tree type, int digits,
1445 const char *hex_str,
1446 const char *fp_suffix,
1447 const char *fp_cast)
1448 {
1449 REAL_VALUE_TYPE real;
1450 char dec_str[64], buf1[256], buf2[256];
1451
1452 /* This is very expensive, so if possible expand them lazily. */
1453 if (lazy_hex_fp_value_count < 12
1454 && flag_dump_macros == 0
1455 && !cpp_get_options (parse_in)->traditional)
1456 {
1457 struct cpp_hashnode *node;
1458 if (lazy_hex_fp_value_count == 0)
1459 cpp_get_callbacks (parse_in)->user_builtin_macro = lazy_hex_fp_value;
1460 sprintf (buf2, fp_cast, "1.1");
1461 sprintf (buf1, "%s=%s", macro, buf2);
1462 cpp_define (parse_in, buf1);
1463 node = C_CPP_HASHNODE (get_identifier (macro));
1464 lazy_hex_fp_values[lazy_hex_fp_value_count].hex_str
1465 = ggc_strdup (hex_str);
1466 lazy_hex_fp_values[lazy_hex_fp_value_count].mode = TYPE_MODE (type);
1467 lazy_hex_fp_values[lazy_hex_fp_value_count].digits = digits;
1468 lazy_hex_fp_values[lazy_hex_fp_value_count].fp_suffix = fp_suffix;
1469 lazy_hex_fp_values[lazy_hex_fp_value_count].macro = node->value.macro;
1470 node->flags |= NODE_BUILTIN;
1471 node->value.builtin
1472 = (enum cpp_builtin_type) (BT_FIRST_USER + lazy_hex_fp_value_count);
1473 lazy_hex_fp_value_count++;
1474 return;
1475 }
1476
1477 /* Hex values are really cool and convenient, except that they're
1478 not supported in strict ISO C90 mode. First, the "p-" sequence
1479 is not valid as part of a preprocessor number. Second, we get a
1480 pedwarn from the preprocessor, which has no context, so we can't
1481 suppress the warning with __extension__.
1482
1483 So instead what we do is construct the number in hex (because
1484 it's easy to get the exact correct value), parse it as a real,
1485 then print it back out as decimal. */
1486
1487 real_from_string (&real, hex_str);
1488 real_to_decimal_for_mode (dec_str, &real, sizeof (dec_str), digits, 0,
1489 TYPE_MODE (type));
1490
1491 /* Assemble the macro in the following fashion
1492 macro = fp_cast [dec_str fp_suffix] */
1493 sprintf (buf1, "%s%s", dec_str, fp_suffix);
1494 sprintf (buf2, fp_cast, buf1);
1495 sprintf (buf1, "%s=%s", macro, buf2);
1496
1497 cpp_define (parse_in, buf1);
1498 }
1499
1500 /* Return a string constant for the suffix for a value of type TYPE
1501 promoted according to the integer promotions. The type must be one
1502 of the standard integer type nodes. */
1503
1504 static const char *
1505 type_suffix (tree type)
1506 {
1507 static const char *const suffixes[] = { "", "U", "L", "UL", "LL", "ULL" };
1508 int unsigned_suffix;
1509 int is_long;
1510 int tp = TYPE_PRECISION (type);
1511
1512 if (type == long_long_integer_type_node
1513 || type == long_long_unsigned_type_node
1514 || tp > TYPE_PRECISION (long_integer_type_node))
1515 is_long = 2;
1516 else if (type == long_integer_type_node
1517 || type == long_unsigned_type_node
1518 || tp > TYPE_PRECISION (integer_type_node))
1519 is_long = 1;
1520 else if (type == integer_type_node
1521 || type == unsigned_type_node
1522 || type == short_integer_type_node
1523 || type == short_unsigned_type_node
1524 || type == signed_char_type_node
1525 || type == unsigned_char_type_node
1526 /* ??? "char" is not a signed or unsigned integer type and
1527 so is not permitted for the standard typedefs, but some
1528 systems use it anyway. */
1529 || type == char_type_node)
1530 is_long = 0;
1531 else
1532 gcc_unreachable ();
1533
1534 unsigned_suffix = TYPE_UNSIGNED (type);
1535 if (TYPE_PRECISION (type) < TYPE_PRECISION (integer_type_node))
1536 unsigned_suffix = 0;
1537 return suffixes[is_long * 2 + unsigned_suffix];
1538 }
1539
1540 /* Define MACRO as a <stdint.h> constant-suffix macro for TYPE. */
1541 static void
1542 builtin_define_constants (const char *macro, tree type)
1543 {
1544 const char *suffix;
1545 char *buf;
1546
1547 suffix = type_suffix (type);
1548
1549 if (suffix[0] == 0)
1550 {
1551 buf = (char *) alloca (strlen (macro) + 6);
1552 sprintf (buf, "%s(c)=c", macro);
1553 }
1554 else
1555 {
1556 buf = (char *) alloca (strlen (macro) + 9 + strlen (suffix) + 1);
1557 sprintf (buf, "%s(c)=c ## %s", macro, suffix);
1558 }
1559
1560 cpp_define (parse_in, buf);
1561 }
1562
1563 /* Define MAX for TYPE based on the precision of the type. */
1564
1565 static void
1566 builtin_define_type_max (const char *macro, tree type)
1567 {
1568 builtin_define_type_minmax (NULL, macro, type);
1569 }
1570
1571 /* Given a value with COUNT LSBs set, fill BUF with a hexidecimal
1572 representation of that value. For example, a COUNT of 10 would
1573 return "0x3ff". */
1574
1575 static void
1576 print_bits_of_hex (char *buf, int bufsz, int count)
1577 {
1578 gcc_assert (bufsz > 3);
1579 *buf++ = '0';
1580 *buf++ = 'x';
1581 bufsz -= 2;
1582
1583 gcc_assert (count > 0);
1584
1585 switch (count % 4) {
1586 case 0:
1587 break;
1588 case 1:
1589 *buf++ = '1';
1590 bufsz --;
1591 count -= 1;
1592 break;
1593 case 2:
1594 *buf++ = '3';
1595 bufsz --;
1596 count -= 2;
1597 break;
1598 case 3:
1599 *buf++ = '7';
1600 bufsz --;
1601 count -= 3;
1602 break;
1603 }
1604 while (count >= 4)
1605 {
1606 gcc_assert (bufsz > 1);
1607 *buf++ = 'f';
1608 bufsz --;
1609 count -= 4;
1610 }
1611 gcc_assert (bufsz > 0);
1612 *buf++ = 0;
1613 }
1614
1615 /* Define MIN_MACRO (if not NULL) and MAX_MACRO for TYPE based on the
1616 precision of the type. */
1617
1618 static void
1619 builtin_define_type_minmax (const char *min_macro, const char *max_macro,
1620 tree type)
1621 {
1622 #define PBOH_SZ (MAX_BITSIZE_MODE_ANY_INT/4+4)
1623 char value[PBOH_SZ];
1624
1625 const char *suffix;
1626 char *buf;
1627 int bits;
1628
1629 bits = TYPE_PRECISION (type) + (TYPE_UNSIGNED (type) ? 0 : -1);
1630
1631 print_bits_of_hex (value, PBOH_SZ, bits);
1632
1633 suffix = type_suffix (type);
1634
1635 buf = (char *) alloca (strlen (max_macro) + 1 + strlen (value)
1636 + strlen (suffix) + 1);
1637 sprintf (buf, "%s=%s%s", max_macro, value, suffix);
1638
1639 cpp_define (parse_in, buf);
1640
1641 if (min_macro)
1642 {
1643 if (TYPE_UNSIGNED (type))
1644 {
1645 buf = (char *) alloca (strlen (min_macro) + 2 + strlen (suffix) + 1);
1646 sprintf (buf, "%s=0%s", min_macro, suffix);
1647 }
1648 else
1649 {
1650 buf = (char *) alloca (strlen (min_macro) + 3
1651 + strlen (max_macro) + 6);
1652 sprintf (buf, "%s=(-%s - 1)", min_macro, max_macro);
1653 }
1654 cpp_define (parse_in, buf);
1655 }
1656 }
1657
1658 #include "gt-c-family-c-cppbuiltin.h"