2 * msvcrt.dll math functions
4 * Copyright 2000 Jon Griffiths
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2.1 of the License, or (at your option) any later version.
11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
23 #define __USE_ISOC9X 1
24 #define __USE_ISOC99 1
32 #include "wine/debug.h"
34 WINE_DEFAULT_DEBUG_CHANNEL(msvcrt
);
37 #ifndef finite /* Could be a macro */
39 #define finite(x) isfinite(x)
41 #define finite(x) (!isnan(x)) /* At least catch some cases */
50 typedef int (*MSVCRT_matherr_func
)(struct MSVCRT__exception
*);
52 static MSVCRT_matherr_func MSVCRT_default_matherr_func
= NULL
;
54 /*********************************************************************
55 * MSVCRT_acos (MSVCRT.@)
57 double CDECL
MSVCRT_acos( double x
)
59 if (x
< -1.0 || x
> 1.0 || !finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
60 /* glibc implements acos() as the FPU equivalent of atan2(sqrt(1 - x ^ 2), x).
61 * asin() uses a similar construction. This is bad because as x gets nearer to
62 * 1 the error in the expression "1 - x^2" can get relatively large due to
63 * cancellation. The sqrt() makes things worse. A safer way to calculate
64 * acos() is to use atan2(sqrt((1 - x) * (1 + x)), x). */
65 return atan2(sqrt((1 - x
) * (1 + x
)), x
);
68 /*********************************************************************
69 * MSVCRT_asin (MSVCRT.@)
71 double CDECL
MSVCRT_asin( double x
)
73 if (x
< -1.0 || x
> 1.0 || !finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
74 return atan2(x
, sqrt((1 - x
) * (1 + x
)));
77 /*********************************************************************
78 * MSVCRT_atan (MSVCRT.@)
80 double CDECL
MSVCRT_atan( double x
)
82 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
86 /*********************************************************************
87 * MSVCRT_atan2 (MSVCRT.@)
89 double CDECL
MSVCRT_atan2( double x
, double y
)
91 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
95 /*********************************************************************
96 * MSVCRT_cos (MSVCRT.@)
98 double CDECL
MSVCRT_cos( double x
)
100 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
104 /*********************************************************************
105 * MSVCRT_cosh (MSVCRT.@)
107 double CDECL
MSVCRT_cosh( double x
)
109 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
113 /*********************************************************************
114 * MSVCRT_exp (MSVCRT.@)
116 double CDECL
MSVCRT_exp( double x
)
118 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
122 /*********************************************************************
123 * MSVCRT_fmod (MSVCRT.@)
125 double CDECL
MSVCRT_fmod( double x
, double y
)
127 if (!finite(x
) || !finite(y
)) *MSVCRT__errno() = MSVCRT_EDOM
;
131 /*********************************************************************
132 * MSVCRT_log (MSVCRT.@)
134 double CDECL
MSVCRT_log( double x
)
136 if (x
< 0.0 || !finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
137 if (x
== 0.0) *MSVCRT__errno() = MSVCRT_ERANGE
;
141 /*********************************************************************
142 * MSVCRT_log10 (MSVCRT.@)
144 double CDECL
MSVCRT_log10( double x
)
146 if (x
< 0.0 || !finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
147 if (x
== 0.0) *MSVCRT__errno() = MSVCRT_ERANGE
;
151 /*********************************************************************
152 * MSVCRT_pow (MSVCRT.@)
154 double CDECL
MSVCRT_pow( double x
, double y
)
156 /* FIXME: If x < 0 and y is not integral, set EDOM */
158 if (!finite(z
)) *MSVCRT__errno() = MSVCRT_EDOM
;
162 /*********************************************************************
163 * MSVCRT_sin (MSVCRT.@)
165 double CDECL
MSVCRT_sin( double x
)
167 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
171 /*********************************************************************
172 * MSVCRT_sinh (MSVCRT.@)
174 double CDECL
MSVCRT_sinh( double x
)
176 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
180 /*********************************************************************
181 * MSVCRT_sqrt (MSVCRT.@)
183 double CDECL
MSVCRT_sqrt( double x
)
185 if (x
< 0.0 || !finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
189 /*********************************************************************
190 * MSVCRT_tan (MSVCRT.@)
192 double CDECL
MSVCRT_tan( double x
)
194 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
198 /*********************************************************************
199 * MSVCRT_tanh (MSVCRT.@)
201 double CDECL
MSVCRT_tanh( double x
)
203 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
208 #if defined(__GNUC__) && defined(__i386__)
210 #define FPU_DOUBLE(var) double var; \
211 __asm__ __volatile__( "fstpl %0;fwait" : "=m" (var) : )
212 #define FPU_DOUBLES(var1,var2) double var1,var2; \
213 __asm__ __volatile__( "fstpl %0;fwait" : "=m" (var2) : ); \
214 __asm__ __volatile__( "fstpl %0;fwait" : "=m" (var1) : )
216 /*********************************************************************
219 double CDECL
_CIacos(void)
222 return MSVCRT_acos(x
);
225 /*********************************************************************
228 double CDECL
_CIasin(void)
231 return MSVCRT_asin(x
);
234 /*********************************************************************
237 double CDECL
_CIatan(void)
240 return MSVCRT_atan(x
);
243 /*********************************************************************
244 * _CIatan2 (MSVCRT.@)
246 double CDECL
_CIatan2(void)
249 return MSVCRT_atan2(x
,y
);
252 /*********************************************************************
255 double CDECL
_CIcos(void)
258 return MSVCRT_cos(x
);
261 /*********************************************************************
264 double CDECL
_CIcosh(void)
267 return MSVCRT_cosh(x
);
270 /*********************************************************************
273 double CDECL
_CIexp(void)
276 return MSVCRT_exp(x
);
279 /*********************************************************************
282 double CDECL
_CIfmod(void)
285 return MSVCRT_fmod(x
,y
);
288 /*********************************************************************
291 double CDECL
_CIlog(void)
294 return MSVCRT_log(x
);
297 /*********************************************************************
298 * _CIlog10 (MSVCRT.@)
300 double CDECL
_CIlog10(void)
303 return MSVCRT_log10(x
);
306 /*********************************************************************
309 double CDECL
_CIpow(void)
312 return MSVCRT_pow(x
,y
);
315 /*********************************************************************
318 double CDECL
_CIsin(void)
321 return MSVCRT_sin(x
);
324 /*********************************************************************
327 double CDECL
_CIsinh(void)
330 return MSVCRT_sinh(x
);
333 /*********************************************************************
336 double CDECL
_CIsqrt(void)
339 return MSVCRT_sqrt(x
);
342 /*********************************************************************
345 double CDECL
_CItan(void)
348 return MSVCRT_tan(x
);
351 /*********************************************************************
354 double CDECL
_CItanh(void)
357 return MSVCRT_tanh(x
);
360 #else /* defined(__GNUC__) && defined(__i386__) */
362 /* The above cannot be called on non x86 platforms, stub them for linking */
364 #define IX86_ONLY(func) double func(void) { return 0.0; }
383 #endif /* defined(__GNUC__) && defined(__i386__) */
385 /*********************************************************************
386 * _fpclass (MSVCRT.@)
388 int CDECL
_fpclass(double num
)
390 #if defined(HAVE_FPCLASS) || defined(fpclass)
391 switch (fpclass( num
))
394 case FP_SNAN
: return MSVCRT__FPCLASS_SNAN
;
397 case FP_QNAN
: return MSVCRT__FPCLASS_QNAN
;
400 case FP_NINF
: return MSVCRT__FPCLASS_NINF
;
403 case FP_PINF
: return MSVCRT__FPCLASS_PINF
;
406 case FP_NDENORM
: return MSVCRT__FPCLASS_ND
;
409 case FP_PDENORM
: return MSVCRT__FPCLASS_PD
;
412 case FP_NZERO
: return MSVCRT__FPCLASS_NZ
;
415 case FP_PZERO
: return MSVCRT__FPCLASS_PZ
;
418 case FP_NNORM
: return MSVCRT__FPCLASS_NN
;
421 case FP_PNORM
: return MSVCRT__FPCLASS_PN
;
424 return MSVCRT__FPCLASS_PN
;
425 #elif defined (fpclassify)
426 switch (fpclassify( num
))
428 case FP_NAN
: return MSVCRT__FPCLASS_QNAN
;
429 case FP_INFINITE
: return signbit(num
) ? MSVCRT__FPCLASS_NINF
: MSVCRT__FPCLASS_PINF
;
430 case FP_SUBNORMAL
: return signbit(num
) ?MSVCRT__FPCLASS_ND
: MSVCRT__FPCLASS_PD
;
431 case FP_ZERO
: return signbit(num
) ? MSVCRT__FPCLASS_NZ
: MSVCRT__FPCLASS_PZ
;
433 return signbit(num
) ? MSVCRT__FPCLASS_NN
: MSVCRT__FPCLASS_PN
;
436 return MSVCRT__FPCLASS_QNAN
;
437 return num
== 0.0 ? MSVCRT__FPCLASS_PZ
: (num
< 0 ? MSVCRT__FPCLASS_NN
: MSVCRT__FPCLASS_PN
);
441 /*********************************************************************
444 unsigned int CDECL
_rotl(unsigned int num
, int shift
)
447 return (num
<< shift
) | (num
>> (32-shift
));
450 /*********************************************************************
453 double CDECL
_logb(double num
)
455 if (!finite(num
)) *MSVCRT__errno() = MSVCRT_EDOM
;
459 /*********************************************************************
462 unsigned long CDECL
_lrotl(unsigned long num
, int shift
)
465 return (num
<< shift
) | (num
>> (32-shift
));
468 /*********************************************************************
471 unsigned long CDECL
_lrotr(unsigned long num
, int shift
)
474 return (num
>> shift
) | (num
<< (32-shift
));
477 /*********************************************************************
480 unsigned int CDECL
_rotr(unsigned int num
, int shift
)
483 return (num
>> shift
) | (num
<< (32-shift
));
486 /*********************************************************************
489 double CDECL
_scalb(double num
, long power
)
491 /* Note - Can't forward directly as libc expects y as double */
492 double dblpower
= (double)power
;
493 if (!finite(num
)) *MSVCRT__errno() = MSVCRT_EDOM
;
494 return scalb(num
, dblpower
);
497 /*********************************************************************
500 double CDECL
_hypot(double x
, double y
)
502 /* FIXME: errno handling */
503 return hypot( x
, y
);
506 /*********************************************************************
509 double CDECL
MSVCRT_ceil( double x
)
514 /*********************************************************************
517 double CDECL
MSVCRT_floor( double x
)
522 /*********************************************************************
525 double CDECL
MSVCRT_fabs( double x
)
530 /*********************************************************************
533 double CDECL
MSVCRT_frexp( double x
, int *exp
)
535 return frexp( x
, exp
);
538 /*********************************************************************
541 double CDECL
MSVCRT_modf( double x
, double *iptr
)
543 return modf( x
, iptr
);
546 /*********************************************************************
547 * _matherr (MSVCRT.@)
549 int CDECL
MSVCRT__matherr(struct MSVCRT__exception
*e
)
552 TRACE("(%p = %d, %s, %g %g %g)\n",e
, e
->type
, e
->name
, e
->arg1
, e
->arg2
,
556 if (MSVCRT_default_matherr_func
)
557 return MSVCRT_default_matherr_func(e
);
558 ERR(":Unhandled math error!\n");
562 /*********************************************************************
563 * __setusermatherr (MSVCRT.@)
565 void CDECL
MSVCRT___setusermatherr(MSVCRT_matherr_func func
)
567 MSVCRT_default_matherr_func
= func
;
568 TRACE(":new matherr handler %p\n", func
);
571 /**********************************************************************
572 * _statusfp (MSVCRT.@)
574 unsigned int CDECL
_statusfp(void)
576 unsigned int retVal
= 0;
577 #if defined(__GNUC__) && defined(__i386__)
580 __asm__
__volatile__( "fstsw %0" : "=m" (fpword
) : );
581 if (fpword
& 0x1) retVal
|= MSVCRT__SW_INVALID
;
582 if (fpword
& 0x2) retVal
|= MSVCRT__SW_DENORMAL
;
583 if (fpword
& 0x4) retVal
|= MSVCRT__SW_ZERODIVIDE
;
584 if (fpword
& 0x8) retVal
|= MSVCRT__SW_OVERFLOW
;
585 if (fpword
& 0x10) retVal
|= MSVCRT__SW_UNDERFLOW
;
586 if (fpword
& 0x20) retVal
|= MSVCRT__SW_INEXACT
;
588 FIXME(":Not implemented!\n");
593 /*********************************************************************
594 * _clearfp (MSVCRT.@)
596 unsigned int CDECL
_clearfp(void)
598 unsigned int retVal
= _statusfp();
599 #if defined(__GNUC__) && defined(__i386__)
600 __asm__
__volatile__( "fnclex" );
602 FIXME(":Not Implemented\n");
607 /*********************************************************************
608 * __fpecode (MSVCRT.@)
610 int * CDECL
__fpecode(void)
612 return &msvcrt_get_thread_data()->fpecode
;
615 /*********************************************************************
618 double CDECL
MSVCRT_ldexp(double num
, long exp
)
620 double z
= ldexp(num
,exp
);
623 *MSVCRT__errno() = MSVCRT_ERANGE
;
624 else if (z
== 0 && signbit(z
))
625 z
= 0.0; /* Convert -0 -> +0 */
629 /*********************************************************************
632 double CDECL
MSVCRT__cabs(struct MSVCRT__complex num
)
634 return sqrt(num
.x
* num
.x
+ num
.y
* num
.y
);
637 /*********************************************************************
638 * _chgsign (MSVCRT.@)
640 double CDECL
_chgsign(double num
)
642 /* FIXME: +-infinity,Nan not tested */
646 /*********************************************************************
647 * _control87 (MSVCRT.@)
649 unsigned int CDECL
_control87(unsigned int newval
, unsigned int mask
)
651 #if defined(__GNUC__) && defined(__i386__)
652 unsigned int fpword
= 0;
653 unsigned int flags
= 0;
655 TRACE("(%08x, %08x): Called\n", newval
, mask
);
657 /* Get fp control word */
658 __asm__
__volatile__( "fstcw %0" : "=m" (fpword
) : );
660 TRACE("Control word before : %08x\n", fpword
);
662 /* Convert into mask constants */
663 if (fpword
& 0x1) flags
|= MSVCRT__EM_INVALID
;
664 if (fpword
& 0x2) flags
|= MSVCRT__EM_DENORMAL
;
665 if (fpword
& 0x4) flags
|= MSVCRT__EM_ZERODIVIDE
;
666 if (fpword
& 0x8) flags
|= MSVCRT__EM_OVERFLOW
;
667 if (fpword
& 0x10) flags
|= MSVCRT__EM_UNDERFLOW
;
668 if (fpword
& 0x20) flags
|= MSVCRT__EM_INEXACT
;
669 switch(fpword
& 0xC00) {
670 case 0xC00: flags
|= MSVCRT__RC_UP
|MSVCRT__RC_DOWN
; break;
671 case 0x800: flags
|= MSVCRT__RC_UP
; break;
672 case 0x400: flags
|= MSVCRT__RC_DOWN
; break;
674 switch(fpword
& 0x300) {
675 case 0x0: flags
|= MSVCRT__PC_24
; break;
676 case 0x200: flags
|= MSVCRT__PC_53
; break;
677 case 0x300: flags
|= MSVCRT__PC_64
; break;
679 if (fpword
& 0x1000) flags
|= MSVCRT__IC_AFFINE
;
681 /* Mask with parameters */
682 flags
= (flags
& ~mask
) | (newval
& mask
);
684 /* Convert (masked) value back to fp word */
686 if (flags
& MSVCRT__EM_INVALID
) fpword
|= 0x1;
687 if (flags
& MSVCRT__EM_DENORMAL
) fpword
|= 0x2;
688 if (flags
& MSVCRT__EM_ZERODIVIDE
) fpword
|= 0x4;
689 if (flags
& MSVCRT__EM_OVERFLOW
) fpword
|= 0x8;
690 if (flags
& MSVCRT__EM_UNDERFLOW
) fpword
|= 0x10;
691 if (flags
& MSVCRT__EM_INEXACT
) fpword
|= 0x20;
692 switch(flags
& (MSVCRT__RC_UP
| MSVCRT__RC_DOWN
)) {
693 case MSVCRT__RC_UP
|MSVCRT__RC_DOWN
: fpword
|= 0xC00; break;
694 case MSVCRT__RC_UP
: fpword
|= 0x800; break;
695 case MSVCRT__RC_DOWN
: fpword
|= 0x400; break;
697 switch (flags
& (MSVCRT__PC_24
| MSVCRT__PC_53
)) {
698 case MSVCRT__PC_64
: fpword
|= 0x300; break;
699 case MSVCRT__PC_53
: fpword
|= 0x200; break;
700 case MSVCRT__PC_24
: fpword
|= 0x0; break;
702 if (flags
& MSVCRT__IC_AFFINE
) fpword
|= 0x1000;
704 TRACE("Control word after : %08x\n", fpword
);
706 /* Put fp control word */
707 __asm__
__volatile__( "fldcw %0" : : "m" (fpword
) );
711 FIXME(":Not Implemented!\n");
716 /*********************************************************************
717 * _controlfp (MSVCRT.@)
719 unsigned int CDECL
_controlfp(unsigned int newval
, unsigned int mask
)
722 return _control87( newval
, mask
& ~MSVCRT__EM_DENORMAL
);
724 FIXME(":Not Implemented!\n");
729 /*********************************************************************
730 * _copysign (MSVCRT.@)
732 double CDECL
_copysign(double num
, double sign
)
734 /* FIXME: Behaviour for Nan/Inf? */
736 return num
< 0.0 ? num
: -num
;
737 return num
< 0.0 ? -num
: num
;
740 /*********************************************************************
743 int CDECL
_finite(double num
)
745 return (finite(num
)?1:0); /* See comment for _isnan() */
748 /*********************************************************************
749 * _fpreset (MSVCRT.@)
751 void CDECL
_fpreset(void)
753 #if defined(__GNUC__) && defined(__i386__)
754 __asm__
__volatile__( "fninit" );
756 FIXME(":Not Implemented!\n");
760 /*********************************************************************
763 INT CDECL
_isnan(double num
)
765 /* Some implementations return -1 for true(glibc), msvcrt/crtdll return 1.
766 * Do the same, as the result may be used in calculations
768 return isnan(num
) ? 1 : 0;
771 /*********************************************************************
774 double CDECL
_j0(double num
)
776 /* FIXME: errno handling */
780 /*********************************************************************
783 double CDECL
_j1(double num
)
785 /* FIXME: errno handling */
789 /*********************************************************************
792 double CDECL
_jn(int n
, double num
)
794 /* FIXME: errno handling */
798 /*********************************************************************
801 double CDECL
_y0(double num
)
804 if (!finite(num
)) *MSVCRT__errno() = MSVCRT_EDOM
;
806 if (_fpclass(retval
) == MSVCRT__FPCLASS_NINF
)
808 *MSVCRT__errno() = MSVCRT_EDOM
;
814 /*********************************************************************
817 double CDECL
_y1(double num
)
820 if (!finite(num
)) *MSVCRT__errno() = MSVCRT_EDOM
;
822 if (_fpclass(retval
) == MSVCRT__FPCLASS_NINF
)
824 *MSVCRT__errno() = MSVCRT_EDOM
;
830 /*********************************************************************
833 double CDECL
_yn(int order
, double num
)
836 if (!finite(num
)) *MSVCRT__errno() = MSVCRT_EDOM
;
837 retval
= yn(order
,num
);
838 if (_fpclass(retval
) == MSVCRT__FPCLASS_NINF
)
840 *MSVCRT__errno() = MSVCRT_EDOM
;
846 /*********************************************************************
847 * _nextafter (MSVCRT.@)
849 double CDECL
_nextafter(double num
, double next
)
852 if (!finite(num
) || !finite(next
)) *MSVCRT__errno() = MSVCRT_EDOM
;
853 retval
= nextafter(num
,next
);
857 /*********************************************************************
860 char * CDECL
_ecvt( double number
, int ndigits
, int *decpt
, int *sign
)
862 thread_data_t
*data
= msvcrt_get_thread_data();
865 if (!data
->efcvt_buffer
)
866 data
->efcvt_buffer
= MSVCRT_malloc( 80 ); /* ought to be enough */
868 snprintf(data
->efcvt_buffer
, 80, "%.*e", ndigits
/* FIXME wrong */, number
);
869 *sign
= (number
< 0);
870 dec
= strchr(data
->efcvt_buffer
, '.');
871 *decpt
= (dec
) ? dec
- data
->efcvt_buffer
: -1;
872 return data
->efcvt_buffer
;
875 /***********************************************************************
878 char * CDECL
_fcvt( double number
, int ndigits
, int *decpt
, int *sign
)
880 thread_data_t
*data
= msvcrt_get_thread_data();
881 int stop
, dec1
, dec2
;
882 char *ptr1
, *ptr2
, *first
;
883 char buf
[80]; /* ought to be enough */
885 if (!data
->efcvt_buffer
)
886 data
->efcvt_buffer
= MSVCRT_malloc( 80 ); /* ought to be enough */
894 snprintf(buf
, 80, "%.*f", ndigits
< 0 ? 0 : ndigits
, number
);
896 ptr2
= data
->efcvt_buffer
;
901 /* For numbers below the requested resolution, work out where
902 the decimal point will be rather than finding it in the string */
903 if (number
< 1.0 && number
> 0.0) {
904 dec2
= log10(number
+ 1e-10);
905 if (-dec2
<= ndigits
) dec2
= 0;
908 /* If requested digits is zero or less, we will need to truncate
909 * the returned string */
911 stop
= strlen(buf
) + ndigits
;
916 while (*ptr1
== '0') ptr1
++; /* Skip leading zeroes */
917 while (*ptr1
!= '\0' && *ptr1
!= '.') {
918 if (!first
) first
= ptr2
;
919 if ((ptr1
- buf
) < stop
) {
930 while (*ptr1
== '0') { /* Process leading zeroes */
935 while (*ptr1
!= '\0') {
936 if (!first
) first
= ptr2
;
943 /* We never found a non-zero digit, then our number is either
944 * smaller than the requested precision, or 0.0 */
949 first
= data
->efcvt_buffer
;
954 *decpt
= dec2
? dec2
: dec1
;
958 /***********************************************************************
961 * FIXME: uses both E and F.
963 char * CDECL
_gcvt( double number
, int ndigit
, char *buff
)
965 sprintf(buff
, "%.*E", ndigit
, number
);
969 #include <stdlib.h> /* div_t, ldiv_t */
971 /*********************************************************************
974 * [i386] Windows binary compatible - returns the struct in eax/edx.
977 unsigned __int64 CDECL
MSVCRT_div(int num
, int denom
)
979 div_t dt
= div(num
,denom
);
980 return ((unsigned __int64
)dt
.rem
<< 32) | (unsigned int)dt
.quot
;
983 /*********************************************************************
986 * [!i386] Non-x86 can't run win32 apps so we don't need binary compatibility
988 MSVCRT_div_t CDECL
MSVCRT_div(int num
, int denom
)
990 div_t dt
= div(num
,denom
);
998 #endif /* ifdef __i386__ */
1001 /*********************************************************************
1004 * [i386] Windows binary compatible - returns the struct in eax/edx.
1007 unsigned __int64 CDECL
MSVCRT_ldiv(long num
, long denom
)
1009 ldiv_t ldt
= ldiv(num
,denom
);
1010 return ((unsigned __int64
)ldt
.rem
<< 32) | (unsigned long)ldt
.quot
;
1013 /*********************************************************************
1016 * [!i386] Non-x86 can't run win32 apps so we don't need binary compatibility
1018 MSVCRT_ldiv_t CDECL
MSVCRT_ldiv(long num
, long denom
)
1020 ldiv_t result
= ldiv(num
,denom
);
1023 ret
.quot
= result
.quot
;
1024 ret
.rem
= result
.rem
;
1028 #endif /* ifdef __i386__ */
1030 /***********************************************************************
1031 * _adj_fdiv_m16i (MSVCRT.@)
1034 * I _think_ this function is intended to work around the Pentium
1037 void __stdcall
_adj_fdiv_m16i( short arg
)
1039 TRACE("(): stub\n");
1042 /***********************************************************************
1043 * _adj_fdiv_m32 (MSVCRT.@)
1046 * I _think_ this function is intended to work around the Pentium
1049 void __stdcall
_adj_fdiv_m32( unsigned int arg
)
1051 TRACE("(): stub\n");
1054 /***********************************************************************
1055 * _adj_fdiv_m32i (MSVCRT.@)
1058 * I _think_ this function is intended to work around the Pentium
1061 void __stdcall
_adj_fdiv_m32i( int arg
)
1063 TRACE("(): stub\n");
1066 /***********************************************************************
1067 * _adj_fdiv_m64 (MSVCRT.@)
1070 * I _think_ this function is intended to work around the Pentium
1073 void __stdcall
_adj_fdiv_m64( unsigned __int64 arg
)
1075 TRACE("(): stub\n");
1078 /***********************************************************************
1079 * _adj_fdiv_r (MSVCRT.@)
1081 * This function is likely to have the wrong number of arguments.
1084 * I _think_ this function is intended to work around the Pentium
1087 void _adj_fdiv_r(void)
1089 TRACE("(): stub\n");
1092 /***********************************************************************
1093 * _adj_fdivr_m16i (MSVCRT.@)
1096 * I _think_ this function is intended to work around the Pentium
1099 void __stdcall
_adj_fdivr_m16i( short arg
)
1101 TRACE("(): stub\n");
1104 /***********************************************************************
1105 * _adj_fdivr_m32 (MSVCRT.@)
1108 * I _think_ this function is intended to work around the Pentium
1111 void __stdcall
_adj_fdivr_m32( unsigned int arg
)
1113 TRACE("(): stub\n");
1116 /***********************************************************************
1117 * _adj_fdivr_m32i (MSVCRT.@)
1120 * I _think_ this function is intended to work around the Pentium
1123 void __stdcall
_adj_fdivr_m32i( int arg
)
1125 TRACE("(): stub\n");
1128 /***********************************************************************
1129 * _adj_fdivr_m64 (MSVCRT.@)
1132 * I _think_ this function is intended to work around the Pentium
1135 void __stdcall
_adj_fdivr_m64( unsigned __int64 arg
)
1137 TRACE("(): stub\n");
1140 /***********************************************************************
1141 * _adj_fpatan (MSVCRT.@)
1143 * This function is likely to have the wrong number of arguments.
1146 * I _think_ this function is intended to work around the Pentium
1149 void _adj_fpatan(void)
1151 TRACE("(): stub\n");
1154 /***********************************************************************
1155 * _adj_fprem (MSVCRT.@)
1157 * This function is likely to have the wrong number of arguments.
1160 * I _think_ this function is intended to work around the Pentium
1163 void _adj_fprem(void)
1165 TRACE("(): stub\n");
1168 /***********************************************************************
1169 * _adj_fprem1 (MSVCRT.@)
1171 * This function is likely to have the wrong number of arguments.
1174 * I _think_ this function is intended to work around the Pentium
1177 void _adj_fprem1(void)
1179 TRACE("(): stub\n");
1182 /***********************************************************************
1183 * _adj_fptan (MSVCRT.@)
1185 * This function is likely to have the wrong number of arguments.
1188 * I _think_ this function is intended to work around the Pentium
1191 void _adj_fptan(void)
1193 TRACE("(): stub\n");
1196 /***********************************************************************
1197 * _adjust_fdiv (MSVCRT.@)
1199 * I _think_ this function should be a variable indicating whether
1200 * Pentium fdiv bug safe code should be used.
1202 void _adjust_fdiv(void)
1204 TRACE("(): stub\n");
1207 /***********************************************************************
1208 * _safe_fdiv (MSVCRT.@)
1210 * This function is likely to have the wrong number of arguments.
1213 * I _think_ this function is intended to work around the Pentium
1216 void _safe_fdiv(void)
1218 TRACE("(): stub\n");
1221 /***********************************************************************
1222 * _safe_fdivr (MSVCRT.@)
1224 * This function is likely to have the wrong number of arguments.
1227 * I _think_ this function is intended to work around the Pentium
1230 void _safe_fdivr(void)
1232 TRACE("(): stub\n");
1235 /***********************************************************************
1236 * _safe_fprem (MSVCRT.@)
1238 * This function is likely to have the wrong number of arguments.
1241 * I _think_ this function is intended to work around the Pentium
1244 void _safe_fprem(void)
1246 TRACE("(): stub\n");
1249 /***********************************************************************
1250 * _safe_fprem1 (MSVCRT.@)
1253 * This function is likely to have the wrong number of arguments.
1256 * I _think_ this function is intended to work around the Pentium
1259 void _safe_fprem1(void)
1261 TRACE("(): stub\n");