1 /* Definitions of floating-point access for GNU compiler.
2 Copyright (C) 1989, 1991, 1994, 1996, 1997, 1998, 1999,
3 2000, 2002, 2003 Free Software Foundation, Inc.
5 This file is part of GCC.
7 GCC is free software; you can redistribute it and/or modify it under
8 the terms of the GNU General Public License as published by the Free
9 Software Foundation; either version 2, or (at your option) any later
12 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
13 WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING. If not, write to the Free
19 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
27 /* An expanded form of the represented number. */
29 /* Enumerate the special cases of numbers that we encounter. */
30 enum real_value_class
{
37 #define SIGNIFICAND_BITS (128 + HOST_BITS_PER_LONG)
38 #define EXP_BITS (32 - 5)
39 #define MAX_EXP ((1 << (EXP_BITS - 1)) - 1)
40 #define SIGSZ (SIGNIFICAND_BITS / HOST_BITS_PER_LONG)
41 #define SIG_MSB ((unsigned long)1 << (HOST_BITS_PER_LONG - 1))
43 struct real_value
GTY(())
45 ENUM_BITFIELD (real_value_class
) class : 2;
46 unsigned int sign
: 1;
47 unsigned int signalling
: 1;
48 unsigned int canonical
: 1;
49 signed int exp
: EXP_BITS
;
50 unsigned long sig
[SIGSZ
];
53 /* Various headers condition prototypes on #ifdef REAL_VALUE_TYPE, so it
54 needs to be a macro. We do need to continue to have a structure tag
55 so that other headers can forward declare it. */
56 #define REAL_VALUE_TYPE struct real_value
58 /* We store a REAL_VALUE_TYPE into an rtx, and we do this by putting it in
59 consecutive "w" slots. Moreover, we've got to compute the number of "w"
60 slots at preprocessor time, which means we can't use sizeof. Guess. */
62 #define REAL_VALUE_TYPE_SIZE (SIGNIFICAND_BITS + 32)
64 (REAL_VALUE_TYPE_SIZE/HOST_BITS_PER_WIDE_INT \
65 + (REAL_VALUE_TYPE_SIZE%HOST_BITS_PER_WIDE_INT ? 1 : 0)) /* round up */
67 /* Verify the guess. */
68 extern char test_real_width
69 [sizeof(REAL_VALUE_TYPE
) <= REAL_WIDTH
*sizeof(HOST_WIDE_INT
) ? 1 : -1];
71 /* Calculate the format for CONST_DOUBLE. We need as many slots as
72 are necessary to overlay a REAL_VALUE_TYPE on them. This could be
73 as many as four (32-bit HOST_WIDE_INT, 128-bit REAL_VALUE_TYPE).
75 A number of places assume that there are always at least two 'w'
76 slots in a CONST_DOUBLE, so we provide them even if one would suffice. */
79 # define CONST_DOUBLE_FORMAT "ww"
82 # define CONST_DOUBLE_FORMAT "ww"
85 # define CONST_DOUBLE_FORMAT "www"
88 # define CONST_DOUBLE_FORMAT "wwww"
91 # define CONST_DOUBLE_FORMAT "wwwww"
94 # define CONST_DOUBLE_FORMAT "wwwwww"
96 #error "REAL_WIDTH > 6 not supported"
105 /* Describes the properties of the specific target format in use. */
108 /* Move to and from the target bytes. */
109 void (*encode
) PARAMS ((const struct real_format
*, long *,
110 const REAL_VALUE_TYPE
*));
111 void (*decode
) PARAMS ((const struct real_format
*, REAL_VALUE_TYPE
*,
114 /* The radix of the exponent and digits of the significand. */
120 /* Size of the significand in digits of radix B. */
123 /* Size of the significant of a NaN, in digits of radix B. */
126 /* The minimum negative integer, x, such that b**(x-1) is normalized. */
129 /* The maximum integer, x, such that b**(x-1) is representable. */
132 /* The bit position of the sign bit, or -1 for a complex encoding. */
135 /* Properties of the format. */
139 bool has_signed_zero
;
144 /* The target format used for each floating floating point mode.
145 Indexed by MODE - QFmode. */
146 extern const struct real_format
*real_format_for_mode
[TFmode
- QFmode
+ 1];
149 /* Declare functions in real.c. */
151 /* Binary or unary arithmetic on tree_code. */
152 extern void real_arithmetic
PARAMS ((REAL_VALUE_TYPE
*, int,
153 const REAL_VALUE_TYPE
*,
154 const REAL_VALUE_TYPE
*));
156 /* Compare reals by tree_code. */
157 extern bool real_compare
PARAMS ((int, const REAL_VALUE_TYPE
*,
158 const REAL_VALUE_TYPE
*));
160 /* Determine whether a floating-point value X is infinite. */
161 extern bool real_isinf
PARAMS ((const REAL_VALUE_TYPE
*));
163 /* Determine whether a floating-point value X is a NaN. */
164 extern bool real_isnan
PARAMS ((const REAL_VALUE_TYPE
*));
166 /* Determine whether a floating-point value X is negative. */
167 extern bool real_isneg
PARAMS ((const REAL_VALUE_TYPE
*));
169 /* Determine whether a floating-point value X is minus zero. */
170 extern bool real_isnegzero
PARAMS ((const REAL_VALUE_TYPE
*));
172 /* Compare two floating-point objects for bitwise identity. */
173 extern bool real_identical
PARAMS ((const REAL_VALUE_TYPE
*,
174 const REAL_VALUE_TYPE
*));
176 /* Extend or truncate to a new mode. */
177 extern void real_convert
PARAMS ((REAL_VALUE_TYPE
*,
179 const REAL_VALUE_TYPE
*));
181 /* Return true if truncating to NEW is exact. */
182 extern bool exact_real_truncate
PARAMS ((enum machine_mode
,
183 const REAL_VALUE_TYPE
*));
185 /* Render R as a decimal floating point constant. */
186 extern void real_to_decimal
PARAMS ((char *, const REAL_VALUE_TYPE
*,
187 size_t, size_t, int));
189 /* Render R as a hexadecimal floating point constant. */
190 extern void real_to_hexadecimal
PARAMS ((char *, const REAL_VALUE_TYPE
*,
191 size_t, size_t, int));
193 /* Render R as an integer. */
194 extern HOST_WIDE_INT real_to_integer
PARAMS ((const REAL_VALUE_TYPE
*));
195 extern void real_to_integer2
PARAMS ((HOST_WIDE_INT
*, HOST_WIDE_INT
*,
196 const REAL_VALUE_TYPE
*));
198 /* Initialize R from a decimal or hexadecimal string. */
199 extern void real_from_string
PARAMS ((REAL_VALUE_TYPE
*, const char *));
201 /* Initialize R from an integer pair HIGH/LOW. */
202 extern void real_from_integer
PARAMS ((REAL_VALUE_TYPE
*,
204 unsigned HOST_WIDE_INT
,
205 HOST_WIDE_INT
, int));
207 extern long real_to_target_fmt
PARAMS ((long *, const REAL_VALUE_TYPE
*,
208 const struct real_format
*));
209 extern long real_to_target
PARAMS ((long *, const REAL_VALUE_TYPE
*,
212 extern void real_from_target_fmt
PARAMS ((REAL_VALUE_TYPE
*, const long *,
213 const struct real_format
*));
214 extern void real_from_target
PARAMS ((REAL_VALUE_TYPE
*, const long *,
217 extern void real_inf
PARAMS ((REAL_VALUE_TYPE
*));
219 extern bool real_nan
PARAMS ((REAL_VALUE_TYPE
*, const char *,
220 int, enum machine_mode
));
222 extern void real_maxval
PARAMS ((REAL_VALUE_TYPE
*, int,
225 extern void real_2expN
PARAMS ((REAL_VALUE_TYPE
*, int));
227 extern unsigned int real_hash
PARAMS ((const REAL_VALUE_TYPE
*));
230 /* Target formats defined in real.c. */
231 extern const struct real_format ieee_single_format
;
232 extern const struct real_format mips_single_format
;
233 extern const struct real_format ieee_double_format
;
234 extern const struct real_format mips_double_format
;
235 extern const struct real_format ieee_extended_motorola_format
;
236 extern const struct real_format ieee_extended_intel_96_format
;
237 extern const struct real_format ieee_extended_intel_128_format
;
238 extern const struct real_format ibm_extended_format
;
239 extern const struct real_format mips_extended_format
;
240 extern const struct real_format ieee_quad_format
;
241 extern const struct real_format mips_quad_format
;
242 extern const struct real_format vax_f_format
;
243 extern const struct real_format vax_d_format
;
244 extern const struct real_format vax_g_format
;
245 extern const struct real_format i370_single_format
;
246 extern const struct real_format i370_double_format
;
247 extern const struct real_format c4x_single_format
;
248 extern const struct real_format c4x_extended_format
;
249 extern const struct real_format real_internal_format
;
252 /* ====================================================================== */
255 #define REAL_ARITHMETIC(value, code, d1, d2) \
256 real_arithmetic (&(value), code, &(d1), &(d2))
258 #define REAL_VALUES_IDENTICAL(x, y) real_identical (&(x), &(y))
259 #define REAL_VALUES_EQUAL(x, y) real_compare (EQ_EXPR, &(x), &(y))
260 #define REAL_VALUES_LESS(x, y) real_compare (LT_EXPR, &(x), &(y))
262 /* Determine whether a floating-point value X is infinite. */
263 #define REAL_VALUE_ISINF(x) real_isinf (&(x))
265 /* Determine whether a floating-point value X is a NaN. */
266 #define REAL_VALUE_ISNAN(x) real_isnan (&(x))
268 /* Determine whether a floating-point value X is negative. */
269 #define REAL_VALUE_NEGATIVE(x) real_isneg (&(x))
271 /* Determine whether a floating-point value X is minus zero. */
272 #define REAL_VALUE_MINUS_ZERO(x) real_isnegzero (&(x))
274 /* IN is a REAL_VALUE_TYPE. OUT is an array of longs. */
275 #define REAL_VALUE_TO_TARGET_LONG_DOUBLE(IN, OUT) \
276 real_to_target (OUT, &(IN), \
277 mode_for_size (LONG_DOUBLE_TYPE_SIZE, MODE_FLOAT, 0))
279 #define REAL_VALUE_TO_TARGET_DOUBLE(IN, OUT) \
280 real_to_target (OUT, &(IN), mode_for_size (64, MODE_FLOAT, 0))
282 /* IN is a REAL_VALUE_TYPE. OUT is a long. */
283 #define REAL_VALUE_TO_TARGET_SINGLE(IN, OUT) \
284 ((OUT) = real_to_target (NULL, &(IN), mode_for_size (32, MODE_FLOAT, 0)))
286 #define REAL_VALUE_FROM_INT(r, lo, hi, mode) \
287 real_from_integer (&(r), mode, lo, hi, 0)
289 #define REAL_VALUE_FROM_UNSIGNED_INT(r, lo, hi, mode) \
290 real_from_integer (&(r), mode, lo, hi, 1)
292 extern REAL_VALUE_TYPE real_value_truncate
PARAMS ((enum machine_mode
,
295 #define REAL_VALUE_TO_INT(plow, phigh, r) \
296 real_to_integer2 (plow, phigh, &(r))
298 extern REAL_VALUE_TYPE real_arithmetic2
PARAMS ((int, const REAL_VALUE_TYPE
*,
299 const REAL_VALUE_TYPE
*));
301 #define REAL_VALUE_NEGATE(X) \
302 real_arithmetic2 (NEGATE_EXPR, &(X), NULL)
304 #define REAL_VALUE_ABS(X) \
305 real_arithmetic2 (ABS_EXPR, &(X), NULL)
307 extern int significand_size
PARAMS ((enum machine_mode
));
309 extern REAL_VALUE_TYPE real_from_string2
PARAMS ((const char *,
312 #define REAL_VALUE_ATOF(s, m) \
313 real_from_string2 (s, m)
315 #define CONST_DOUBLE_ATOF(s, m) \
316 CONST_DOUBLE_FROM_REAL_VALUE (real_from_string2 (s, m), m)
318 #define REAL_VALUE_FIX(r) \
319 real_to_integer (&(r))
321 /* ??? Not quite right. */
322 #define REAL_VALUE_UNSIGNED_FIX(r) \
323 real_to_integer (&(r))
325 /* ??? These were added for Paranoia support. */
327 /* Return floor log2(R). */
328 extern int real_exponent
PARAMS ((const REAL_VALUE_TYPE
*));
330 /* R = A * 2**EXP. */
331 extern void real_ldexp
PARAMS ((REAL_VALUE_TYPE
*,
332 const REAL_VALUE_TYPE
*, int));
334 /* **** End of software floating point emulator interface macros **** */
336 /* Constant real values 0, 1, 2, -1, -2 and 0.5. */
338 extern REAL_VALUE_TYPE dconst0
;
339 extern REAL_VALUE_TYPE dconst1
;
340 extern REAL_VALUE_TYPE dconst2
;
341 extern REAL_VALUE_TYPE dconstm1
;
342 extern REAL_VALUE_TYPE dconstm2
;
343 extern REAL_VALUE_TYPE dconsthalf
;
345 /* Function to return a real value (not a tree node)
346 from a given integer constant. */
347 REAL_VALUE_TYPE real_value_from_int_cst
PARAMS ((union tree_node
*,
350 /* Given a CONST_DOUBLE in FROM, store into TO the value it represents. */
351 #define REAL_VALUE_FROM_CONST_DOUBLE(to, from) \
352 memcpy (&(to), &CONST_DOUBLE_LOW ((from)), sizeof (REAL_VALUE_TYPE))
354 /* Return a CONST_DOUBLE with value R and mode M. */
355 #define CONST_DOUBLE_FROM_REAL_VALUE(r, m) \
356 const_double_from_real_value (r, m)
357 extern rtx const_double_from_real_value
PARAMS ((REAL_VALUE_TYPE
,
360 /* Replace R by 1/R in the given machine mode, if the result is exact. */
361 extern bool exact_real_inverse
PARAMS ((enum machine_mode
, REAL_VALUE_TYPE
*));
363 /* In tree.c: wrap up a REAL_VALUE_TYPE in a tree node. */
364 extern tree build_real
PARAMS ((tree
, REAL_VALUE_TYPE
));
366 /* Calculate R as the square root of X in the given machine mode. */
367 extern bool real_sqrt
PARAMS ((REAL_VALUE_TYPE
*,
369 const REAL_VALUE_TYPE
*));
371 /* Calculate R as X raised to the integer exponent N in mode MODE. */
372 extern bool real_powi
PARAMS ((REAL_VALUE_TYPE
*,
374 const REAL_VALUE_TYPE
*,
377 #endif /* ! GCC_REAL_H */