fenv.c revision 1.11 1 1.11 riastrad /* $NetBSD: fenv.c,v 1.11 2024/02/20 03:53:48 riastradh Exp $ */
2 1.1 joerg
3 1.1 joerg /*-
4 1.1 joerg * Copyright (c) 2004-2005 David Schultz <das (at) FreeBSD.ORG>
5 1.1 joerg * All rights reserved.
6 1.1 joerg *
7 1.1 joerg * Redistribution and use in source and binary forms, with or without
8 1.1 joerg * modification, are permitted provided that the following conditions
9 1.1 joerg * are met:
10 1.1 joerg * 1. Redistributions of source code must retain the above copyright
11 1.1 joerg * notice, this list of conditions and the following disclaimer.
12 1.1 joerg * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 joerg * notice, this list of conditions and the following disclaimer in the
14 1.1 joerg * documentation and/or other materials provided with the distribution.
15 1.1 joerg *
16 1.1 joerg * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17 1.1 joerg * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18 1.1 joerg * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19 1.1 joerg * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20 1.1 joerg * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21 1.1 joerg * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22 1.1 joerg * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23 1.1 joerg * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24 1.1 joerg * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25 1.1 joerg * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26 1.1 joerg * SUCH DAMAGE.
27 1.1 joerg */
28 1.1 joerg
29 1.1 joerg #include <sys/cdefs.h>
30 1.11 riastrad __RCSID("$NetBSD: fenv.c,v 1.11 2024/02/20 03:53:48 riastradh Exp $");
31 1.7 chs
32 1.7 chs #include "namespace.h"
33 1.1 joerg
34 1.1 joerg #include <assert.h>
35 1.1 joerg #include <fenv.h>
36 1.1 joerg #include <stddef.h>
37 1.1 joerg #include <string.h>
38 1.1 joerg
39 1.7 chs #ifdef __weak_alias
40 1.7 chs __weak_alias(feclearexcept,_feclearexcept)
41 1.7 chs __weak_alias(fedisableexcept,_fedisableexcept)
42 1.7 chs __weak_alias(feenableexcept,_feenableexcept)
43 1.7 chs __weak_alias(fegetenv,_fegetenv)
44 1.7 chs __weak_alias(fegetexcept,_fegetexcept)
45 1.7 chs __weak_alias(fegetexceptflag,_fegetexceptflag)
46 1.7 chs __weak_alias(fegetround,_fegetround)
47 1.7 chs __weak_alias(feholdexcept,_feholdexcept)
48 1.7 chs __weak_alias(feraiseexcept,_feraiseexcept)
49 1.7 chs __weak_alias(fesetenv,_fesetenv)
50 1.7 chs __weak_alias(fesetexceptflag,_fesetexceptflag)
51 1.7 chs __weak_alias(fesetround,_fesetround)
52 1.7 chs __weak_alias(fetestexcept,_fetestexcept)
53 1.7 chs __weak_alias(feupdateenv,_feupdateenv)
54 1.7 chs #endif
55 1.7 chs
56 1.1 joerg /* Load x87 Control Word */
57 1.1 joerg #define __fldcw(__cw) __asm__ __volatile__ \
58 1.1 joerg ("fldcw %0" : : "m" (__cw))
59 1.1 joerg
60 1.1 joerg /* No-Wait Store Control Word */
61 1.1 joerg #define __fnstcw(__cw) __asm__ __volatile__ \
62 1.1 joerg ("fnstcw %0" : "=m" (*(__cw)))
63 1.1 joerg
64 1.1 joerg /* No-Wait Store Status Word */
65 1.1 joerg #define __fnstsw(__sw) __asm__ __volatile__ \
66 1.1 joerg ("fnstsw %0" : "=am" (*(__sw)))
67 1.1 joerg
68 1.1 joerg /* No-Wait Clear Exception Flags */
69 1.1 joerg #define __fnclex() __asm__ __volatile__ \
70 1.1 joerg ("fnclex")
71 1.1 joerg
72 1.1 joerg /* Load x87 Environment */
73 1.1 joerg #define __fldenv(__env) __asm__ __volatile__ \
74 1.1 joerg ("fldenv %0" : : "m" (__env))
75 1.1 joerg
76 1.1 joerg /* No-Wait Store x87 environment */
77 1.1 joerg #define __fnstenv(__env) __asm__ __volatile__ \
78 1.1 joerg ("fnstenv %0" : "=m" (*(__env)))
79 1.1 joerg
80 1.4 riastrad /* Check for and handle pending unmasked x87 pending FPU exceptions */
81 1.4 riastrad #define __fwait(__env) __asm__ __volatile__ \
82 1.4 riastrad ("fwait")
83 1.4 riastrad
84 1.1 joerg /* Load the MXCSR register */
85 1.1 joerg #define __ldmxcsr(__mxcsr) __asm__ __volatile__ \
86 1.1 joerg ("ldmxcsr %0" : : "m" (__mxcsr))
87 1.1 joerg
88 1.1 joerg /* Store the MXCSR register state */
89 1.1 joerg #define __stmxcsr(__mxcsr) __asm__ __volatile__ \
90 1.1 joerg ("stmxcsr %0" : "=m" (*(__mxcsr)))
91 1.1 joerg
92 1.1 joerg /*
93 1.1 joerg * The following constant represents the default floating-point environment
94 1.1 joerg * (that is, the one installed at program startup) and has type pointer to
95 1.1 joerg * const-qualified fenv_t.
96 1.1 joerg *
97 1.1 joerg * It can be used as an argument to the functions within the <fenv.h> header
98 1.1 joerg * that manage the floating-point environment, namely fesetenv() and
99 1.1 joerg * feupdateenv().
100 1.1 joerg *
101 1.1 joerg * x87 fpu registers are 16bit wide. The upper bits, 31-16, are marked as
102 1.1 joerg * RESERVED. We provide a partial floating-point environment, where we
103 1.1 joerg * define only the lower bits. The reserved bits are extracted and set by
104 1.1 joerg * the consumers of FE_DFL_ENV, during runtime.
105 1.1 joerg */
106 1.1 joerg fenv_t __fe_dfl_env = {
107 1.1 joerg {
108 1.1 joerg __NetBSD_NPXCW__, /* Control word register */
109 1.1 joerg 0x00000000, /* Status word register */
110 1.1 joerg 0x0000ffff, /* Tag word register */
111 1.1 joerg {
112 1.1 joerg 0x00000000,
113 1.1 joerg 0x00000000,
114 1.1 joerg 0x00000000,
115 1.1 joerg 0x00000000,
116 1.1 joerg },
117 1.1 joerg },
118 1.1 joerg __INITIAL_MXCSR__ /* MXCSR register */
119 1.1 joerg };
120 1.1 joerg #define FE_DFL_ENV ((const fenv_t *) &__fe_dfl_env)
121 1.1 joerg
122 1.6 joerg static void __init_libm(void) __attribute__ ((constructor, used));
123 1.6 joerg
124 1.6 joerg static void __init_libm(void)
125 1.6 joerg {
126 1.6 joerg uint16_t control;
127 1.6 joerg
128 1.6 joerg __fnstcw(&control);
129 1.6 joerg __fe_dfl_env.x87.control = control;
130 1.6 joerg }
131 1.6 joerg
132 1.1 joerg
133 1.1 joerg /*
134 1.1 joerg * The feclearexcept() function clears the supported floating-point exceptions
135 1.1 joerg * represented by `excepts'.
136 1.1 joerg */
137 1.1 joerg int
138 1.1 joerg feclearexcept(int excepts)
139 1.1 joerg {
140 1.1 joerg fenv_t fenv;
141 1.1 joerg int ex;
142 1.1 joerg
143 1.1 joerg _DIAGASSERT((excepts & ~FE_ALL_EXCEPT) == 0);
144 1.1 joerg
145 1.1 joerg ex = excepts & FE_ALL_EXCEPT;
146 1.1 joerg
147 1.1 joerg /* Store the current x87 floating-point environment */
148 1.1 joerg __fnstenv(&fenv);
149 1.1 joerg
150 1.1 joerg /* Clear the requested floating-point exceptions */
151 1.1 joerg fenv.x87.status &= ~ex;
152 1.1 joerg
153 1.8 andvar /* Load the x87 floating-point environment */
154 1.1 joerg __fldenv(fenv);
155 1.1 joerg
156 1.1 joerg /* Same for SSE environment */
157 1.1 joerg __stmxcsr(&fenv.mxcsr);
158 1.1 joerg fenv.mxcsr &= ~ex;
159 1.1 joerg __ldmxcsr(fenv.mxcsr);
160 1.1 joerg
161 1.1 joerg /* Success */
162 1.1 joerg return (0);
163 1.1 joerg }
164 1.1 joerg
165 1.1 joerg /*
166 1.1 joerg * The fegetexceptflag() function stores an implementation-defined
167 1.1 joerg * representation of the states of the floating-point status flags indicated by
168 1.1 joerg * the argument excepts in the object pointed to by the argument flagp.
169 1.1 joerg */
170 1.1 joerg int
171 1.1 joerg fegetexceptflag(fexcept_t *flagp, int excepts)
172 1.1 joerg {
173 1.1 joerg uint32_t mxcsr;
174 1.1 joerg uint16_t x87_status;
175 1.1 joerg int ex;
176 1.1 joerg
177 1.1 joerg _DIAGASSERT(flagp != NULL);
178 1.1 joerg _DIAGASSERT((excepts & ~FE_ALL_EXCEPT) == 0);
179 1.1 joerg
180 1.1 joerg ex = excepts & FE_ALL_EXCEPT;
181 1.1 joerg
182 1.1 joerg /* Store the current x87 status register */
183 1.1 joerg __fnstsw(&x87_status);
184 1.1 joerg
185 1.1 joerg /* Store the MXCSR register */
186 1.1 joerg __stmxcsr(&mxcsr);
187 1.1 joerg
188 1.1 joerg /* Store the results in flagp */
189 1.1 joerg *flagp = (x87_status | mxcsr) & ex;
190 1.1 joerg
191 1.1 joerg /* Success */
192 1.1 joerg return (0);
193 1.1 joerg }
194 1.1 joerg
195 1.1 joerg /*
196 1.1 joerg * The feraiseexcept() function raises the supported floating-point exceptions
197 1.1 joerg * represented by the argument `excepts'.
198 1.1 joerg *
199 1.1 joerg * The standard explicitly allows us to execute an instruction that has the
200 1.1 joerg * exception as a side effect, but we choose to manipulate the status register
201 1.1 joerg * directly.
202 1.1 joerg *
203 1.1 joerg * The validation of input is being deferred to fesetexceptflag().
204 1.1 joerg */
205 1.1 joerg int
206 1.1 joerg feraiseexcept(int excepts)
207 1.1 joerg {
208 1.1 joerg int ex;
209 1.1 joerg
210 1.1 joerg _DIAGASSERT((excepts & ~FE_ALL_EXCEPT) == 0);
211 1.1 joerg
212 1.1 joerg ex = excepts & FE_ALL_EXCEPT;
213 1.5 christos fesetexceptflag((unsigned int *)&ex, ex);
214 1.4 riastrad __fwait();
215 1.1 joerg
216 1.1 joerg /* Success */
217 1.1 joerg return (0);
218 1.1 joerg }
219 1.1 joerg
220 1.1 joerg /*
221 1.1 joerg * This function sets the floating-point status flags indicated by the argument
222 1.1 joerg * `excepts' to the states stored in the object pointed to by `flagp'. It does
223 1.1 joerg * NOT raise any floating-point exceptions, but only sets the state of the flags.
224 1.1 joerg */
225 1.1 joerg int
226 1.1 joerg fesetexceptflag(const fexcept_t *flagp, int excepts)
227 1.1 joerg {
228 1.1 joerg fenv_t fenv;
229 1.1 joerg int ex;
230 1.1 joerg
231 1.1 joerg _DIAGASSERT(flagp != NULL);
232 1.1 joerg _DIAGASSERT((excepts & ~FE_ALL_EXCEPT) == 0);
233 1.1 joerg
234 1.1 joerg ex = excepts & FE_ALL_EXCEPT;
235 1.1 joerg
236 1.1 joerg /* Store the current x87 floating-point environment */
237 1.1 joerg __fnstenv(&fenv);
238 1.1 joerg
239 1.1 joerg /* Set the requested status flags */
240 1.1 joerg fenv.x87.status |= *flagp & ex;
241 1.1 joerg
242 1.8 andvar /* Load the x87 floating-point environment */
243 1.1 joerg __fldenv(fenv);
244 1.1 joerg
245 1.1 joerg /* Same for SSE environment */
246 1.1 joerg __stmxcsr(&fenv.mxcsr);
247 1.1 joerg fenv.mxcsr |= *flagp & ex;
248 1.1 joerg __ldmxcsr(fenv.mxcsr);
249 1.1 joerg
250 1.1 joerg /* Success */
251 1.1 joerg return (0);
252 1.1 joerg }
253 1.1 joerg
254 1.1 joerg /*
255 1.1 joerg * The fetestexcept() function determines which of a specified subset of the
256 1.1 joerg * floating-point exception flags are currently set. The `excepts' argument
257 1.1 joerg * specifies the floating-point status flags to be queried.
258 1.1 joerg */
259 1.1 joerg int
260 1.1 joerg fetestexcept(int excepts)
261 1.1 joerg {
262 1.1 joerg uint32_t mxcsr;
263 1.1 joerg uint16_t status;
264 1.1 joerg int ex;
265 1.1 joerg
266 1.1 joerg _DIAGASSERT((excepts & ~FE_ALL_EXCEPT) == 0);
267 1.1 joerg
268 1.1 joerg ex = excepts & FE_ALL_EXCEPT;
269 1.1 joerg
270 1.1 joerg __fnstsw(&status);
271 1.1 joerg __stmxcsr(&mxcsr);
272 1.1 joerg
273 1.11 riastrad return ((status | mxcsr) & ex);
274 1.1 joerg }
275 1.1 joerg
276 1.1 joerg /*
277 1.1 joerg * The fegetround() function gets the current rounding direction.
278 1.1 joerg */
279 1.1 joerg int
280 1.1 joerg fegetround(void)
281 1.1 joerg {
282 1.1 joerg uint32_t mxcsr;
283 1.1 joerg uint16_t control;
284 1.1 joerg
285 1.1 joerg /*
286 1.1 joerg * We check both the x87 floating-point unit _and_ the SSE unit.
287 1.1 joerg * Normally, those two must agree with respect to each other. If they
288 1.1 joerg * don't, it's not our fault and the result is non-determinable, in
289 1.1 joerg * which case POSIX says that a negative value should be returned.
290 1.1 joerg */
291 1.1 joerg __fnstcw(&control);
292 1.1 joerg __stmxcsr(&mxcsr);
293 1.1 joerg
294 1.1 joerg if ((control & _X87_ROUNDING_MASK)
295 1.1 joerg != ((mxcsr & _SSE_ROUNDING_MASK) >> 3)) {
296 1.1 joerg return (-1);
297 1.1 joerg }
298 1.1 joerg
299 1.1 joerg return (control & _X87_ROUNDING_MASK);
300 1.1 joerg }
301 1.1 joerg
302 1.1 joerg /*
303 1.1 joerg * The fesetround() function establishes the rounding direction represented by
304 1.1 joerg * its argument `round'. If the argument is not equal to the value of a rounding
305 1.1 joerg * direction macro, the rounding direction is not changed.
306 1.1 joerg */
307 1.1 joerg int
308 1.1 joerg fesetround(int round)
309 1.1 joerg {
310 1.1 joerg uint32_t mxcsr;
311 1.1 joerg uint16_t control;
312 1.1 joerg
313 1.1 joerg /* Check whether requested rounding direction is supported */
314 1.1 joerg if (round & (~_X87_ROUNDING_MASK))
315 1.1 joerg return (-1);
316 1.1 joerg
317 1.1 joerg /* Store the current x87 control word register */
318 1.1 joerg __fnstcw(&control);
319 1.1 joerg
320 1.1 joerg /*
321 1.1 joerg * Set the rounding direction
322 1.1 joerg * Rounding Control is bits 10-11, so shift appropriately
323 1.1 joerg */
324 1.1 joerg control &= ~_X87_ROUNDING_MASK;
325 1.1 joerg control |= round;
326 1.1 joerg
327 1.1 joerg /* Load the x87 control word register */
328 1.1 joerg __fldcw(control);
329 1.1 joerg
330 1.1 joerg /*
331 1.1 joerg * Same for the SSE environment
332 1.1 joerg * Rounding Control is bits 13-14, so shift appropriately
333 1.1 joerg */
334 1.1 joerg __stmxcsr(&mxcsr);
335 1.1 joerg mxcsr &= ~_SSE_ROUNDING_MASK;
336 1.1 joerg mxcsr |= (round << _SSE_ROUND_SHIFT);
337 1.1 joerg __ldmxcsr(mxcsr);
338 1.1 joerg
339 1.1 joerg /* Success */
340 1.1 joerg return (0);
341 1.1 joerg }
342 1.1 joerg
343 1.1 joerg /*
344 1.1 joerg * The fegetenv() function attempts to store the current floating-point
345 1.1 joerg * environment in the object pointed to by envp.
346 1.1 joerg */
347 1.1 joerg int
348 1.1 joerg fegetenv(fenv_t *envp)
349 1.1 joerg {
350 1.1 joerg _DIAGASSERT(envp != NULL);
351 1.1 joerg
352 1.1 joerg /* Store the current x87 floating-point environment */
353 1.1 joerg __fnstenv(envp);
354 1.1 joerg
355 1.1 joerg /* Store the MXCSR register state */
356 1.1 joerg __stmxcsr(&envp->mxcsr);
357 1.1 joerg
358 1.1 joerg /*
359 1.1 joerg * When an FNSTENV instruction is executed, all pending exceptions are
360 1.1 joerg * essentially lost (either the x87 FPU status register is cleared or all
361 1.1 joerg * exceptions are masked).
362 1.1 joerg *
363 1.1 joerg * 8.6 X87 FPU EXCEPTION SYNCHRONIZATION -
364 1.9 andvar * Intel(R) 64 and IA-32 Architectures Software Developer's Manual - Vol 1
365 1.1 joerg *
366 1.1 joerg */
367 1.1 joerg __fldcw(envp->x87.control);
368 1.1 joerg
369 1.1 joerg /* Success */
370 1.1 joerg return (0);
371 1.1 joerg }
372 1.1 joerg
373 1.1 joerg /*
374 1.1 joerg * The feholdexcept() function saves the current floating-point environment
375 1.1 joerg * in the object pointed to by envp, clears the floating-point status flags, and
376 1.1 joerg * then installs a non-stop (continue on floating-point exceptions) mode, if
377 1.1 joerg * available, for all floating-point exceptions.
378 1.1 joerg */
379 1.1 joerg int
380 1.1 joerg feholdexcept(fenv_t *envp)
381 1.1 joerg {
382 1.1 joerg uint32_t mxcsr;
383 1.1 joerg
384 1.1 joerg _DIAGASSERT(envp != NULL);
385 1.1 joerg
386 1.1 joerg /* Store the current x87 floating-point environment */
387 1.1 joerg __fnstenv(envp);
388 1.1 joerg
389 1.1 joerg /* Clear all exception flags in FPU */
390 1.1 joerg __fnclex();
391 1.1 joerg
392 1.1 joerg /* Store the MXCSR register state */
393 1.1 joerg __stmxcsr(&envp->mxcsr);
394 1.1 joerg
395 1.1 joerg /* Clear exception flags in MXCSR XXX */
396 1.1 joerg mxcsr = envp->mxcsr;
397 1.1 joerg mxcsr &= ~FE_ALL_EXCEPT;
398 1.1 joerg
399 1.1 joerg /* Mask all exceptions */
400 1.1 joerg mxcsr |= FE_ALL_EXCEPT << _SSE_EMASK_SHIFT;
401 1.1 joerg
402 1.1 joerg __ldmxcsr(mxcsr);
403 1.1 joerg
404 1.1 joerg /* Success */
405 1.1 joerg return (0);
406 1.1 joerg }
407 1.1 joerg
408 1.1 joerg /*
409 1.1 joerg * The fesetenv() function attempts to establish the floating-point environment
410 1.1 joerg * represented by the object pointed to by envp. The argument `envp' points
411 1.1 joerg * to an object set by a call to fegetenv() or feholdexcept(), or equal a
412 1.1 joerg * floating-point environment macro. The fesetenv() function does not raise
413 1.1 joerg * floating-point exceptions, but only installs the state of the floating-point
414 1.1 joerg * status flags represented through its argument.
415 1.1 joerg */
416 1.1 joerg int
417 1.1 joerg fesetenv(const fenv_t *envp)
418 1.1 joerg {
419 1.1 joerg fenv_t fenv;
420 1.1 joerg
421 1.1 joerg _DIAGASSERT(envp != NULL);
422 1.1 joerg
423 1.1 joerg /* Store the x87 floating-point environment */
424 1.1 joerg memset(&fenv, 0, sizeof fenv);
425 1.1 joerg __fnstenv(&fenv);
426 1.1 joerg
427 1.1 joerg __fe_dfl_env.x87.control = (fenv.x87.control & 0xffff0000)
428 1.1 joerg | (__fe_dfl_env.x87.control & 0x0000ffff);
429 1.1 joerg __fe_dfl_env.x87.status = (fenv.x87.status & 0xffff0000)
430 1.1 joerg | (__fe_dfl_env.x87.status & 0x0000ffff);
431 1.1 joerg __fe_dfl_env.x87.tag = (fenv.x87.tag & 0xffff0000)
432 1.1 joerg | (__fe_dfl_env.x87.tag & 0x0000ffff);
433 1.1 joerg __fe_dfl_env.x87.others[3] = (fenv.x87.others[3] & 0xffff0000)
434 1.1 joerg | (__fe_dfl_env.x87.others[3] & 0x0000ffff);
435 1.1 joerg __fldenv(*envp);
436 1.1 joerg
437 1.1 joerg /* Store the MXCSR register */
438 1.1 joerg __ldmxcsr(envp->mxcsr);
439 1.1 joerg
440 1.1 joerg /* Success */
441 1.1 joerg return (0);
442 1.1 joerg }
443 1.1 joerg
444 1.1 joerg /*
445 1.1 joerg * The feupdateenv() function saves the currently raised floating-point
446 1.1 joerg * exceptions in its automatic storage, installs the floating-point environment
447 1.1 joerg * represented by the object pointed to by `envp', and then raises the saved
448 1.1 joerg * floating-point exceptions. The argument `envp' shall point to an object set
449 1.1 joerg * by a call to feholdexcept() or fegetenv(), or equal a floating-point
450 1.1 joerg * environment macro.
451 1.1 joerg */
452 1.1 joerg int
453 1.1 joerg feupdateenv(const fenv_t *envp)
454 1.1 joerg {
455 1.1 joerg fenv_t fenv;
456 1.1 joerg uint32_t mxcsr;
457 1.1 joerg uint16_t sw;
458 1.1 joerg
459 1.1 joerg _DIAGASSERT(envp != NULL);
460 1.1 joerg
461 1.1 joerg /* Store the x87 floating-point environment */
462 1.1 joerg memset(&fenv, 0, sizeof(fenv));
463 1.1 joerg __fnstenv(&fenv);
464 1.1 joerg
465 1.1 joerg __fe_dfl_env.x87.control = (fenv.x87.control & 0xffff0000)
466 1.1 joerg | (__fe_dfl_env.x87.control & 0x0000ffff);
467 1.1 joerg __fe_dfl_env.x87.status = (fenv.x87.status & 0xffff0000)
468 1.1 joerg | (__fe_dfl_env.x87.status & 0x0000ffff);
469 1.1 joerg __fe_dfl_env.x87.tag = (fenv.x87.tag & 0xffff0000)
470 1.1 joerg | (__fe_dfl_env.x87.tag & 0x0000ffff);
471 1.1 joerg __fe_dfl_env.x87.others[3] = (fenv.x87.others[3] & 0xffff0000)
472 1.1 joerg | (__fe_dfl_env.x87.others[3] & 0x0000ffff);
473 1.1 joerg
474 1.1 joerg /* Store the x87 status register */
475 1.1 joerg __fnstsw(&sw);
476 1.1 joerg
477 1.1 joerg /* Store the MXCSR register */
478 1.1 joerg __stmxcsr(&mxcsr);
479 1.1 joerg
480 1.1 joerg /* Install new floating-point environment */
481 1.1 joerg fesetenv(envp);
482 1.1 joerg
483 1.1 joerg /* Raise any previously accumulated exceptions */
484 1.1 joerg feraiseexcept((sw | mxcsr) & FE_ALL_EXCEPT);
485 1.1 joerg
486 1.1 joerg /* Success */
487 1.1 joerg return (0);
488 1.1 joerg }
489 1.1 joerg
490 1.1 joerg /*
491 1.10 andvar * The following functions are extensions to the standard
492 1.1 joerg */
493 1.1 joerg int
494 1.1 joerg feenableexcept(int mask)
495 1.1 joerg {
496 1.1 joerg uint32_t mxcsr, omask;
497 1.1 joerg uint16_t control;
498 1.1 joerg
499 1.1 joerg _DIAGASSERT((mask & ~FE_ALL_EXCEPT) == 0);
500 1.1 joerg mask &= FE_ALL_EXCEPT;
501 1.1 joerg
502 1.1 joerg __fnstcw(&control);
503 1.1 joerg __stmxcsr(&mxcsr);
504 1.1 joerg
505 1.1 joerg omask = (control | mxcsr >> _SSE_EMASK_SHIFT) & FE_ALL_EXCEPT;
506 1.1 joerg control &= ~mask;
507 1.1 joerg __fldcw(control);
508 1.1 joerg
509 1.1 joerg mxcsr &= ~(mask << _SSE_EMASK_SHIFT);
510 1.1 joerg __ldmxcsr(mxcsr);
511 1.1 joerg
512 1.2 riastrad return (FE_ALL_EXCEPT & ~omask);
513 1.1 joerg
514 1.1 joerg }
515 1.1 joerg
516 1.1 joerg int
517 1.1 joerg fedisableexcept(int mask)
518 1.1 joerg {
519 1.1 joerg uint32_t mxcsr, omask;
520 1.1 joerg uint16_t control;
521 1.1 joerg
522 1.1 joerg _DIAGASSERT((mask & ~FE_ALL_EXCEPT) == 0);
523 1.1 joerg
524 1.1 joerg __fnstcw(&control);
525 1.1 joerg __stmxcsr(&mxcsr);
526 1.1 joerg
527 1.1 joerg omask = (control | mxcsr >> _SSE_EMASK_SHIFT) & FE_ALL_EXCEPT;
528 1.1 joerg control |= mask;
529 1.1 joerg __fldcw(control);
530 1.1 joerg
531 1.1 joerg mxcsr |= mask << _SSE_EMASK_SHIFT;
532 1.1 joerg __ldmxcsr(mxcsr);
533 1.1 joerg
534 1.2 riastrad return (FE_ALL_EXCEPT & ~omask);
535 1.1 joerg }
536 1.1 joerg
537 1.1 joerg int
538 1.1 joerg fegetexcept(void)
539 1.1 joerg {
540 1.1 joerg uint16_t control;
541 1.1 joerg
542 1.1 joerg /*
543 1.1 joerg * We assume that the masks for the x87 and the SSE unit are
544 1.1 joerg * the same.
545 1.1 joerg */
546 1.1 joerg __fnstcw(&control);
547 1.1 joerg
548 1.3 riastrad return (~control & FE_ALL_EXCEPT);
549 1.1 joerg }
550 1.1 joerg
551