c-cppbuiltin.c (TARGET_OS_CPP_BUILTINS, [...]): Default here.
[gcc.git] / gcc / c-cppbuiltin.c
1 /* Define builtin-in macros for the C family front ends.
2 Copyright (C) 2002, 2003 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 2, 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 COPYING. If not, write to the Free
18 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
19 02111-1307, USA. */
20
21 #include "config.h"
22 #include "system.h"
23 #include "coretypes.h"
24 #include "tm.h"
25 #include "tree.h"
26 #include "flags.h"
27 #include "real.h"
28 #include "c-common.h"
29 #include "c-pragma.h"
30 #include "output.h"
31 #include "except.h" /* For USING_SJLJ_EXCEPTIONS. */
32 #include "toplev.h"
33 #include "tm_p.h" /* Target prototypes. */
34
35 #ifndef TARGET_OS_CPP_BUILTINS
36 # define TARGET_OS_CPP_BUILTINS()
37 #endif
38
39 #ifndef TARGET_OBJFMT_CPP_BUILTINS
40 # define TARGET_OBJFMT_CPP_BUILTINS()
41 #endif
42
43 #ifndef REGISTER_PREFIX
44 #define REGISTER_PREFIX ""
45 #endif
46
47 /* Non-static as some targets don't use it. */
48 void builtin_define_std PARAMS ((const char *)) ATTRIBUTE_UNUSED;
49 static void builtin_define_with_value_n PARAMS ((const char *, const char *,
50 size_t));
51 static void builtin_define_with_int_value PARAMS ((const char *,
52 HOST_WIDE_INT));
53 static void builtin_define_with_hex_fp_value PARAMS ((const char *, tree,
54 int, const char *,
55 const char *));
56 static void builtin_define_type_max PARAMS ((const char *, tree, int));
57 static void builtin_define_type_precision PARAMS ((const char *, tree));
58 static void builtin_define_float_constants PARAMS ((const char *,
59 const char *, tree));
60 static void define__GNUC__ PARAMS ((void));
61
62 /* Define NAME with value TYPE precision. */
63 static void
64 builtin_define_type_precision (name, type)
65 const char *name;
66 tree type;
67 {
68 builtin_define_with_int_value (name, TYPE_PRECISION (type));
69 }
70
71 /* Define the float.h constants for TYPE using NAME_PREFIX and FP_SUFFIX. */
72 static void
73 builtin_define_float_constants (name_prefix, fp_suffix, type)
74 const char *name_prefix;
75 const char *fp_suffix;
76 tree type;
77 {
78 /* Used to convert radix-based values to base 10 values in several cases.
79
80 In the max_exp -> max_10_exp conversion for 128-bit IEEE, we need at
81 least 6 significant digits for correct results. Using the fraction
82 formed by (log(2)*1e6)/(log(10)*1e6) overflows a 32-bit integer as an
83 intermediate; perhaps someone can find a better approximation, in the
84 mean time, I suspect using doubles won't harm the bootstrap here. */
85
86 const double log10_2 = .30102999566398119521;
87 double log10_b;
88 const struct real_format *fmt;
89
90 char name[64], buf[128];
91 int dig, min_10_exp, max_10_exp;
92 int decimal_dig;
93
94 fmt = real_format_for_mode[TYPE_MODE (type) - QFmode];
95
96 /* The radix of the exponent representation. */
97 if (type == float_type_node)
98 builtin_define_with_int_value ("__FLT_RADIX__", fmt->b);
99 log10_b = log10_2 * fmt->log2_b;
100
101 /* The number of radix digits, p, in the floating-point significand. */
102 sprintf (name, "__%s_MANT_DIG__", name_prefix);
103 builtin_define_with_int_value (name, fmt->p);
104
105 /* The number of decimal digits, q, such that any floating-point number
106 with q decimal digits can be rounded into a floating-point number with
107 p radix b digits and back again without change to the q decimal digits,
108
109 p log10 b if b is a power of 10
110 floor((p - 1) log10 b) otherwise
111 */
112 dig = (fmt->p - 1) * log10_b;
113 sprintf (name, "__%s_DIG__", name_prefix);
114 builtin_define_with_int_value (name, dig);
115
116 /* The minimum negative int x such that b**(x-1) is a normalized float. */
117 sprintf (name, "__%s_MIN_EXP__", name_prefix);
118 sprintf (buf, "(%d)", fmt->emin);
119 builtin_define_with_value (name, buf, 0);
120
121 /* The minimum negative int x such that 10**x is a normalized float,
122
123 ceil (log10 (b ** (emin - 1)))
124 = ceil (log10 (b) * (emin - 1))
125
126 Recall that emin is negative, so the integer truncation calculates
127 the ceiling, not the floor, in this case. */
128 min_10_exp = (fmt->emin - 1) * log10_b;
129 sprintf (name, "__%s_MIN_10_EXP__", name_prefix);
130 sprintf (buf, "(%d)", min_10_exp);
131 builtin_define_with_value (name, buf, 0);
132
133 /* The maximum int x such that b**(x-1) is a representable float. */
134 sprintf (name, "__%s_MAX_EXP__", name_prefix);
135 builtin_define_with_int_value (name, fmt->emax);
136
137 /* The maximum int x such that 10**x is in the range of representable
138 finite floating-point numbers,
139
140 floor (log10((1 - b**-p) * b**emax))
141 = floor (log10(1 - b**-p) + log10(b**emax))
142 = floor (log10(1 - b**-p) + log10(b)*emax)
143
144 The safest thing to do here is to just compute this number. But since
145 we don't link cc1 with libm, we cannot. We could implement log10 here
146 a series expansion, but that seems too much effort because:
147
148 Note that the first term, for all extant p, is a number exceedingly close
149 to zero, but slightly negative. Note that the second term is an integer
150 scaling an irrational number, and that because of the floor we are only
151 interested in its integral portion.
152
153 In order for the first term to have any effect on the integral portion
154 of the second term, the second term has to be exceedingly close to an
155 integer itself (e.g. 123.000000000001 or something). Getting a result
156 that close to an integer requires that the irrational multiplicand have
157 a long series of zeros in its expansion, which doesn't occur in the
158 first 20 digits or so of log10(b).
159
160 Hand-waving aside, crunching all of the sets of constants above by hand
161 does not yield a case for which the first term is significant, which
162 in the end is all that matters. */
163 max_10_exp = fmt->emax * log10_b;
164 sprintf (name, "__%s_MAX_10_EXP__", name_prefix);
165 builtin_define_with_int_value (name, max_10_exp);
166
167 /* The number of decimal digits, n, such that any floating-point number
168 can be rounded to n decimal digits and back again without change to
169 the value.
170
171 p * log10(b) if b is a power of 10
172 ceil(1 + p * log10(b)) otherwise
173
174 The only macro we care about is this number for the widest supported
175 floating type, but we want this value for rendering constants below. */
176 {
177 double d_decimal_dig = 1 + fmt->p * log10_b;
178 decimal_dig = d_decimal_dig;
179 if (decimal_dig < d_decimal_dig)
180 decimal_dig++;
181 }
182 if (type == long_double_type_node)
183 builtin_define_with_int_value ("__DECIMAL_DIG__", decimal_dig);
184
185 /* Since, for the supported formats, B is always a power of 2, we
186 construct the following numbers directly as a hexadecimal
187 constants. */
188
189 /* The maximum representable finite floating-point number,
190 (1 - b**-p) * b**emax */
191 {
192 int i, n;
193 char *p;
194
195 strcpy (buf, "0x0.");
196 n = fmt->p * fmt->log2_b;
197 for (i = 0, p = buf + 4; i + 3 < n; i += 4)
198 *p++ = 'f';
199 if (i < n)
200 *p++ = "08ce"[n - i];
201 sprintf (p, "p%d", fmt->emax * fmt->log2_b);
202 }
203 sprintf (name, "__%s_MAX__", name_prefix);
204 builtin_define_with_hex_fp_value (name, type, decimal_dig, buf, fp_suffix);
205
206 /* The minimum normalized positive floating-point number,
207 b**(emin-1). */
208 sprintf (name, "__%s_MIN__", name_prefix);
209 sprintf (buf, "0x1p%d", (fmt->emin - 1) * fmt->log2_b);
210 builtin_define_with_hex_fp_value (name, type, decimal_dig, buf, fp_suffix);
211
212 /* The difference between 1 and the least value greater than 1 that is
213 representable in the given floating point type, b**(1-p). */
214 sprintf (name, "__%s_EPSILON__", name_prefix);
215 sprintf (buf, "0x1p%d", (1 - fmt->p) * fmt->log2_b);
216 builtin_define_with_hex_fp_value (name, type, decimal_dig, buf, fp_suffix);
217
218 /* For C++ std::numeric_limits<T>::denorm_min. The minimum denormalized
219 positive floating-point number, b**(emin-p). Zero for formats that
220 don't support denormals. */
221 sprintf (name, "__%s_DENORM_MIN__", name_prefix);
222 if (fmt->has_denorm)
223 {
224 sprintf (buf, "0x1p%d", (fmt->emin - fmt->p) * fmt->log2_b);
225 builtin_define_with_hex_fp_value (name, type, decimal_dig,
226 buf, fp_suffix);
227 }
228 else
229 {
230 sprintf (buf, "0.0%s", fp_suffix);
231 builtin_define_with_value (name, buf, 0);
232 }
233
234 /* For C++ std::numeric_limits<T>::has_infinity. */
235 sprintf (name, "__%s_HAS_INFINITY__", name_prefix);
236 builtin_define_with_int_value (name,
237 MODE_HAS_INFINITIES (TYPE_MODE (type)));
238 /* For C++ std::numeric_limits<T>::has_quiet_NaN. We do not have a
239 predicate to distinguish a target that has both quiet and
240 signalling NaNs from a target that has only quiet NaNs or only
241 signalling NaNs, so we assume that a target that has any kind of
242 NaN has quiet NaNs. */
243 sprintf (name, "__%s_HAS_QUIET_NAN__", name_prefix);
244 builtin_define_with_int_value (name, MODE_HAS_NANS (TYPE_MODE (type)));
245 }
246
247 /* Define __GNUC__, __GNUC_MINOR__ and __GNUC_PATCHLEVEL__. */
248 static void
249 define__GNUC__ ()
250 {
251 /* The format of the version string, enforced below, is
252 ([^0-9]*-)?[0-9]+[.][0-9]+([.][0-9]+)?([- ].*)? */
253 const char *q, *v = version_string;
254
255 while (*v && ! ISDIGIT (*v))
256 v++;
257 if (!*v || (v > version_string && v[-1] != '-'))
258 abort ();
259
260 q = v;
261 while (ISDIGIT (*v))
262 v++;
263 builtin_define_with_value_n ("__GNUC__", q, v - q);
264 if (c_language == clk_cplusplus)
265 builtin_define_with_value_n ("__GNUG__", q, v - q);
266
267 if (*v != '.' || !ISDIGIT (v[1]))
268 abort ();
269 q = ++v;
270 while (ISDIGIT (*v))
271 v++;
272 builtin_define_with_value_n ("__GNUC_MINOR__", q, v - q);
273
274 if (*v == '.')
275 {
276 if (!ISDIGIT (v[1]))
277 abort ();
278 q = ++v;
279 while (ISDIGIT (*v))
280 v++;
281 builtin_define_with_value_n ("__GNUC_PATCHLEVEL__", q, v - q);
282 }
283 else
284 builtin_define_with_value_n ("__GNUC_PATCHLEVEL__", "0", 1);
285
286 if (*v && *v != ' ' && *v != '-')
287 abort ();
288 }
289
290 /* Hook that registers front end and target-specific built-ins. */
291 void
292 c_cpp_builtins (pfile)
293 cpp_reader *pfile;
294 {
295 /* -undef turns off target-specific built-ins. */
296 if (flag_undef)
297 return;
298
299 define__GNUC__ ();
300
301 /* For stddef.h. They require macros defined in c-common.c. */
302 c_stddef_cpp_builtins ();
303
304 if (c_language == clk_cplusplus)
305 {
306 if (SUPPORTS_ONE_ONLY)
307 cpp_define (pfile, "__GXX_WEAK__=1");
308 else
309 cpp_define (pfile, "__GXX_WEAK__=0");
310 if (flag_exceptions)
311 cpp_define (pfile, "__EXCEPTIONS");
312 if (warn_deprecated)
313 cpp_define (pfile, "__DEPRECATED");
314 }
315
316 /* represents the C++ ABI version, always defined so it can be used while
317 preprocessing C and assembler. */
318 cpp_define (pfile, "__GXX_ABI_VERSION=102");
319
320 /* libgcc needs to know this. */
321 if (USING_SJLJ_EXCEPTIONS)
322 cpp_define (pfile, "__USING_SJLJ_EXCEPTIONS__");
323
324 /* limits.h needs to know these. */
325 builtin_define_type_max ("__SCHAR_MAX__", signed_char_type_node, 0);
326 builtin_define_type_max ("__SHRT_MAX__", short_integer_type_node, 0);
327 builtin_define_type_max ("__INT_MAX__", integer_type_node, 0);
328 builtin_define_type_max ("__LONG_MAX__", long_integer_type_node, 1);
329 builtin_define_type_max ("__LONG_LONG_MAX__", long_long_integer_type_node, 2);
330 builtin_define_type_max ("__WCHAR_MAX__", wchar_type_node, 0);
331
332 builtin_define_type_precision ("__CHAR_BIT__", char_type_node);
333
334 /* float.h needs to know these. */
335
336 builtin_define_with_int_value ("__FLT_EVAL_METHOD__",
337 TARGET_FLT_EVAL_METHOD);
338
339 builtin_define_float_constants ("FLT", "F", float_type_node);
340 builtin_define_float_constants ("DBL", "", double_type_node);
341 builtin_define_float_constants ("LDBL", "L", long_double_type_node);
342
343 /* For use in assembly language. */
344 builtin_define_with_value ("__REGISTER_PREFIX__", REGISTER_PREFIX, 0);
345 builtin_define_with_value ("__USER_LABEL_PREFIX__", user_label_prefix, 0);
346
347 /* Misc. */
348 builtin_define_with_value ("__VERSION__", version_string, 1);
349
350 /* Definitions for LP64 model. */
351 if (TYPE_PRECISION (long_integer_type_node) == 64
352 && POINTER_SIZE == 64
353 && TYPE_PRECISION (integer_type_node) == 32)
354 {
355 cpp_define (pfile, "_LP64");
356 cpp_define (pfile, "__LP64__");
357 }
358
359 /* Other target-independent built-ins determined by command-line
360 options. */
361 if (optimize_size)
362 cpp_define (pfile, "__OPTIMIZE_SIZE__");
363 if (optimize)
364 cpp_define (pfile, "__OPTIMIZE__");
365
366 if (fast_math_flags_set_p ())
367 cpp_define (pfile, "__FAST_MATH__");
368 if (flag_really_no_inline)
369 cpp_define (pfile, "__NO_INLINE__");
370 if (flag_signaling_nans)
371 cpp_define (pfile, "__SUPPORT_SNAN__");
372 if (flag_finite_math_only)
373 cpp_define (pfile, "__FINITE_MATH_ONLY__=1");
374 else
375 cpp_define (pfile, "__FINITE_MATH_ONLY__=0");
376
377 if (flag_iso)
378 cpp_define (pfile, "__STRICT_ANSI__");
379
380 if (!flag_signed_char)
381 cpp_define (pfile, "__CHAR_UNSIGNED__");
382
383 if (c_language == clk_cplusplus && TREE_UNSIGNED (wchar_type_node))
384 cpp_define (pfile, "__WCHAR_UNSIGNED__");
385
386 /* Make the choice of ObjC runtime visible to source code. */
387 if (flag_objc && flag_next_runtime)
388 cpp_define (pfile, "__NEXT_RUNTIME__");
389
390 /* A straightforward target hook doesn't work, because of problems
391 linking that hook's body when part of non-C front ends. */
392 # define preprocessing_asm_p() (cpp_get_options (pfile)->lang == CLK_ASM)
393 # define preprocessing_trad_p() (cpp_get_options (pfile)->traditional)
394 # define builtin_define(TXT) cpp_define (pfile, TXT)
395 # define builtin_assert(TXT) cpp_assert (pfile, TXT)
396 TARGET_CPU_CPP_BUILTINS ();
397 TARGET_OS_CPP_BUILTINS ();
398 TARGET_OBJFMT_CPP_BUILTINS ();
399 }
400
401 /* Pass an object-like macro. If it doesn't lie in the user's
402 namespace, defines it unconditionally. Otherwise define a version
403 with two leading underscores, and another version with two leading
404 and trailing underscores, and define the original only if an ISO
405 standard was not nominated.
406
407 e.g. passing "unix" defines "__unix", "__unix__" and possibly
408 "unix". Passing "_mips" defines "__mips", "__mips__" and possibly
409 "_mips". */
410 void
411 builtin_define_std (macro)
412 const char *macro;
413 {
414 size_t len = strlen (macro);
415 char *buff = alloca (len + 5);
416 char *p = buff + 2;
417 char *q = p + len;
418
419 /* prepend __ (or maybe just _) if in user's namespace. */
420 memcpy (p, macro, len + 1);
421 if (!( *p == '_' && (p[1] == '_' || ISUPPER (p[1]))))
422 {
423 if (*p != '_')
424 *--p = '_';
425 if (p[1] != '_')
426 *--p = '_';
427 }
428 cpp_define (parse_in, p);
429
430 /* If it was in user's namespace... */
431 if (p != buff + 2)
432 {
433 /* Define the macro with leading and following __. */
434 if (q[-1] != '_')
435 *q++ = '_';
436 if (q[-2] != '_')
437 *q++ = '_';
438 *q = '\0';
439 cpp_define (parse_in, p);
440
441 /* Finally, define the original macro if permitted. */
442 if (!flag_iso)
443 cpp_define (parse_in, macro);
444 }
445 }
446
447 /* Pass an object-like macro and a value to define it to. The third
448 parameter says whether or not to turn the value into a string
449 constant. */
450 void
451 builtin_define_with_value (macro, expansion, is_str)
452 const char *macro;
453 const char *expansion;
454 int is_str;
455 {
456 char *buf;
457 size_t mlen = strlen (macro);
458 size_t elen = strlen (expansion);
459 size_t extra = 2; /* space for an = and a NUL */
460
461 if (is_str)
462 extra += 2; /* space for two quote marks */
463
464 buf = alloca (mlen + elen + extra);
465 if (is_str)
466 sprintf (buf, "%s=\"%s\"", macro, expansion);
467 else
468 sprintf (buf, "%s=%s", macro, expansion);
469
470 cpp_define (parse_in, buf);
471 }
472
473 /* Pass an object-like macro and a value to define it to. The third
474 parameter is the length of the expansion. */
475 static void
476 builtin_define_with_value_n (macro, expansion, elen)
477 const char *macro;
478 const char *expansion;
479 size_t elen;
480 {
481 char *buf;
482 size_t mlen = strlen (macro);
483
484 /* Space for an = and a NUL. */
485 buf = alloca (mlen + elen + 2);
486 memcpy (buf, macro, mlen);
487 buf[mlen] = '=';
488 memcpy (buf + mlen + 1, expansion, elen);
489 buf[mlen + elen + 1] = '\0';
490
491 cpp_define (parse_in, buf);
492 }
493
494 /* Pass an object-like macro and an integer value to define it to. */
495 static void
496 builtin_define_with_int_value (macro, value)
497 const char *macro;
498 HOST_WIDE_INT value;
499 {
500 char *buf;
501 size_t mlen = strlen (macro);
502 size_t vlen = 18;
503 size_t extra = 2; /* space for = and NUL. */
504
505 buf = alloca (mlen + vlen + extra);
506 memcpy (buf, macro, mlen);
507 buf[mlen] = '=';
508 sprintf (buf + mlen + 1, HOST_WIDE_INT_PRINT_DEC, value);
509
510 cpp_define (parse_in, buf);
511 }
512
513 /* Pass an object-like macro a hexadecimal floating-point value. */
514 static void
515 builtin_define_with_hex_fp_value (macro, type, digits, hex_str, fp_suffix)
516 const char *macro;
517 tree type ATTRIBUTE_UNUSED;
518 int digits;
519 const char *hex_str;
520 const char *fp_suffix;
521 {
522 REAL_VALUE_TYPE real;
523 char dec_str[64], buf[256];
524
525 /* Hex values are really cool and convenient, except that they're
526 not supported in strict ISO C90 mode. First, the "p-" sequence
527 is not valid as part of a preprocessor number. Second, we get a
528 pedwarn from the preprocessor, which has no context, so we can't
529 suppress the warning with __extension__.
530
531 So instead what we do is construct the number in hex (because
532 it's easy to get the exact correct value), parse it as a real,
533 then print it back out as decimal. */
534
535 real_from_string (&real, hex_str);
536 real_to_decimal (dec_str, &real, sizeof (dec_str), digits, 0);
537
538 sprintf (buf, "%s=%s%s", macro, dec_str, fp_suffix);
539 cpp_define (parse_in, buf);
540 }
541
542 /* Define MAX for TYPE based on the precision of the type. IS_LONG is
543 1 for type "long" and 2 for "long long". We have to handle
544 unsigned types, since wchar_t might be unsigned. */
545
546 static void
547 builtin_define_type_max (macro, type, is_long)
548 const char *macro;
549 tree type;
550 int is_long;
551 {
552 static const char *const values[]
553 = { "127", "255",
554 "32767", "65535",
555 "2147483647", "4294967295",
556 "9223372036854775807", "18446744073709551615",
557 "170141183460469231731687303715884105727",
558 "340282366920938463463374607431768211455" };
559 static const char *const suffixes[] = { "", "U", "L", "UL", "LL", "ULL" };
560
561 const char *value, *suffix;
562 char *buf;
563 size_t idx;
564
565 /* Pre-rendering the values mean we don't have to futz with printing a
566 multi-word decimal value. There are also a very limited number of
567 precisions that we support, so it's really a waste of time. */
568 switch (TYPE_PRECISION (type))
569 {
570 case 8: idx = 0; break;
571 case 16: idx = 2; break;
572 case 32: idx = 4; break;
573 case 64: idx = 6; break;
574 case 128: idx = 8; break;
575 default: abort ();
576 }
577
578 value = values[idx + TREE_UNSIGNED (type)];
579 suffix = suffixes[is_long * 2 + TREE_UNSIGNED (type)];
580
581 buf = alloca (strlen (macro) + 1 + strlen (value) + strlen (suffix) + 1);
582 sprintf (buf, "%s=%s%s", macro, value, suffix);
583
584 cpp_define (parse_in, buf);
585 }