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., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
22 #include "msvcrt/errno.h"
25 #define __USE_ISOC9X 1
26 #define __USE_ISOC99 1
32 #include "msvcrt/stdlib.h"
34 #include "wine/debug.h"
36 WINE_DEFAULT_DEBUG_CHANNEL(msvcrt
);
39 #ifndef finite /* Could be a macro */
41 #define finite(x) isfinite(x)
43 #define finite(x) (!isnan(x)) /* At least catch some cases */
52 /* fpclass constants */
53 #define _FPCLASS_SNAN 1
54 #define _FPCLASS_QNAN 2
55 #define _FPCLASS_NINF 4
57 #define _FPCLASS_ND 16
58 #define _FPCLASS_NZ 32
59 #define _FPCLASS_PZ 64
60 #define _FPCLASS_PD 128
61 #define _FPCLASS_PN 256
62 #define _FPCLASS_PINF 512
64 /* _statusfp bit flags */
65 #define _SW_INEXACT 0x1
66 #define _SW_UNDERFLOW 0x2
67 #define _SW_OVERFLOW 0x4
68 #define _SW_ZERODIVIDE 0x8
69 #define _SW_INVALID 0x10
70 #define _SW_DENORMAL 0x80000
72 /* _controlfp masks and bitflags - x86 only so far*/
74 #define _MCW_EM 0x8001f
75 #define _EM_INEXACT 0x1
76 #define _EM_UNDERFLOW 0x2
77 #define _EM_OVERFLOW 0x4
78 #define _EM_ZERODIVIDE 0x8
79 #define _EM_INVALID 0x10
83 #define _RC_DOWN 0x100
85 #define _RC_CHOP 0x300
87 #define _MCW_PC 0x30000
89 #define _PC_53 0x10000
90 #define _PC_24 0x20000
92 #define _MCW_IC 0x40000
93 #define _IC_AFFINE 0x40000
94 #define _IC_PROJECTIVE 0x0
96 #define _EM_DENORMAL 0x80000
99 typedef struct __MSVCRT_complex
105 typedef struct __MSVCRT_exception
115 typedef int (*MSVCRT_matherr_func
)(MSVCRT_exception
*);
117 static MSVCRT_matherr_func MSVCRT_default_matherr_func
= NULL
;
119 #if defined(__GNUC__) && defined(__i386__)
121 #define FPU_DOUBLE(var) double var; \
122 __asm__ __volatile__( "fstpl %0;fwait" : "=m" (var) : )
123 #define FPU_DOUBLES(var1,var2) double var1,var2; \
124 __asm__ __volatile__( "fstpl %0;fwait" : "=m" (var2) : ); \
125 __asm__ __volatile__( "fstpl %0;fwait" : "=m" (var1) : )
127 /*********************************************************************
133 if (x
< -1.0 || x
> 1.0 || !finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
137 /*********************************************************************
143 if (x
< -1.0 || x
> 1.0 || !finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
147 /*********************************************************************
153 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
157 /*********************************************************************
158 * _CIatan2 (MSVCRT.@)
160 double _CIatan2(void)
163 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
167 /*********************************************************************
173 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
177 /*********************************************************************
183 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
187 /*********************************************************************
193 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
197 /*********************************************************************
203 if (!finite(x
) || !finite(y
)) *MSVCRT__errno() = MSVCRT_EDOM
;
207 /*********************************************************************
213 if (x
< 0.0 || !finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
214 if (x
== 0.0) *MSVCRT__errno() = MSVCRT_ERANGE
;
218 /*********************************************************************
219 * _CIlog10 (MSVCRT.@)
221 double _CIlog10(void)
224 if (x
< 0.0 || !finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
225 if (x
== 0.0) *MSVCRT__errno() = MSVCRT_ERANGE
;
229 /*********************************************************************
236 /* FIXME: If x < 0 and y is not integral, set EDOM */
238 if (!finite(z
)) *MSVCRT__errno() = MSVCRT_EDOM
;
242 /*********************************************************************
248 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
252 /*********************************************************************
258 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
262 /*********************************************************************
268 if (x
< 0.0 || !finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
272 /*********************************************************************
278 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
282 /*********************************************************************
288 if (!finite(x
)) *MSVCRT__errno() = MSVCRT_EDOM
;
292 #else /* defined(__GNUC__) && defined(__i386__) */
294 /* The above cannot be called on non x86 platforms, stub them for linking */
296 #define IX86_ONLY(func) double func(void) { return 0.0; }
315 #endif /* defined(__GNUC__) && defined(__i386__) */
317 /*********************************************************************
318 * _fpclass (MSVCRT.@)
320 int _fpclass(double num
)
322 #if defined(HAVE_FPCLASS) || defined(fpclass)
323 switch (fpclass( num
))
325 case FP_SNAN
: return _FPCLASS_SNAN
;
326 case FP_QNAN
: return _FPCLASS_QNAN
;
327 case FP_NINF
: return _FPCLASS_NINF
;
328 case FP_PINF
: return _FPCLASS_PINF
;
329 case FP_NDENORM
: return _FPCLASS_ND
;
330 case FP_PDENORM
: return _FPCLASS_PD
;
331 case FP_NZERO
: return _FPCLASS_NZ
;
332 case FP_PZERO
: return _FPCLASS_PZ
;
333 case FP_NNORM
: return _FPCLASS_NN
;
334 case FP_PNORM
: return _FPCLASS_PN
;
337 #elif defined (fpclassify)
338 switch (fpclassify( num
))
340 case FP_NAN
: return _FPCLASS_QNAN
;
341 case FP_INFINITE
: return signbit(num
) ? _FPCLASS_NINF
: _FPCLASS_PINF
;
342 case FP_SUBNORMAL
: return signbit(num
) ?_FPCLASS_ND
: _FPCLASS_PD
;
343 case FP_ZERO
: return signbit(num
) ? _FPCLASS_NZ
: _FPCLASS_PZ
;
345 return signbit(num
) ? _FPCLASS_NN
: _FPCLASS_PN
;
348 return _FPCLASS_QNAN
;
349 return num
== 0.0 ? _FPCLASS_PZ
: (num
< 0 ? _FPCLASS_NN
: _FPCLASS_PN
);
353 /*********************************************************************
356 unsigned int _rotl(unsigned int num
, int shift
)
359 return (num
<< shift
) | (num
>> (32-shift
));
362 /*********************************************************************
365 double _logb(double num
)
367 if (!finite(num
)) *MSVCRT__errno() = MSVCRT_EDOM
;
371 /*********************************************************************
374 unsigned long _lrotl(unsigned long num
, int shift
)
377 return (num
<< shift
) | (num
>> (32-shift
));
380 /*********************************************************************
383 unsigned long _lrotr(unsigned long num
, int shift
)
386 return (num
>> shift
) | (num
<< (32-shift
));
389 /*********************************************************************
392 unsigned int _rotr(unsigned int num
, int shift
)
395 return (num
>> shift
) | (num
<< (32-shift
));
398 /*********************************************************************
401 double _scalb(double num
, long power
)
403 /* Note - Can't forward directly as libc expects y as double */
404 double dblpower
= (double)power
;
405 if (!finite(num
)) *MSVCRT__errno() = MSVCRT_EDOM
;
406 return scalb(num
, dblpower
);
409 /*********************************************************************
410 * _matherr (MSVCRT.@)
412 int _matherr(MSVCRT_exception
*e
)
415 TRACE("(%p = %d, %s, %g %g %g)\n",e
, e
->type
, e
->name
, e
->arg1
, e
->arg2
,
419 if (MSVCRT_default_matherr_func
)
420 return MSVCRT_default_matherr_func(e
);
421 ERR(":Unhandled math error!\n");
425 /*********************************************************************
426 * __setusermatherr (MSVCRT.@)
428 void MSVCRT___setusermatherr(MSVCRT_matherr_func func
)
430 MSVCRT_default_matherr_func
= func
;
431 TRACE(":new matherr handler %p\n", func
);
434 /**********************************************************************
435 * _statusfp (MSVCRT.@)
437 unsigned int _statusfp(void)
439 unsigned int retVal
= 0;
440 #if defined(__GNUC__) && defined(__i386__)
443 __asm__
__volatile__( "fstsw %0" : "=m" (fpword
) : );
444 if (fpword
& 0x1) retVal
|= _SW_INVALID
;
445 if (fpword
& 0x2) retVal
|= _SW_DENORMAL
;
446 if (fpword
& 0x4) retVal
|= _SW_ZERODIVIDE
;
447 if (fpword
& 0x8) retVal
|= _SW_OVERFLOW
;
448 if (fpword
& 0x10) retVal
|= _SW_UNDERFLOW
;
449 if (fpword
& 0x20) retVal
|= _SW_INEXACT
;
451 FIXME(":Not implemented!\n");
456 /*********************************************************************
457 * _clearfp (MSVCRT.@)
459 unsigned int _clearfp(void)
461 unsigned int retVal
= _statusfp();
462 #if defined(__GNUC__) && defined(__i386__)
463 __asm__
__volatile__( "fnclex" );
465 FIXME(":Not Implemented\n");
470 /*********************************************************************
473 double MSVCRT_ldexp(double num
, long exp
)
475 double z
= ldexp(num
,exp
);
478 *MSVCRT__errno() = MSVCRT_ERANGE
;
479 else if (z
== 0 && signbit(z
))
480 z
= 0.0; /* Convert -0 -> +0 */
484 /*********************************************************************
487 double _cabs(MSVCRT_complex num
)
489 return sqrt(num
.real
* num
.real
+ num
.imaginary
* num
.imaginary
);
492 /*********************************************************************
493 * _chgsign (MSVCRT.@)
495 double _chgsign(double num
)
497 /* FIXME: +-infinity,Nan not tested */
501 /*********************************************************************
502 * _control87 (MSVCRT.@)
504 unsigned int _control87(unsigned int newval
, unsigned int mask
)
506 #if defined(__GNUC__) && defined(__i386__)
507 unsigned int fpword
= 0;
508 unsigned int flags
= 0;
510 TRACE("(%08x, %08x): Called\n", newval
, mask
);
512 /* Get fp control word */
513 __asm__
__volatile__( "fstcw %0" : "=m" (fpword
) : );
515 TRACE("Control word before : %08x\n", fpword
);
517 /* Convert into mask constants */
518 if (fpword
& 0x1) flags
|= _EM_INVALID
;
519 if (fpword
& 0x2) flags
|= _EM_DENORMAL
;
520 if (fpword
& 0x4) flags
|= _EM_ZERODIVIDE
;
521 if (fpword
& 0x8) flags
|= _EM_OVERFLOW
;
522 if (fpword
& 0x10) flags
|= _EM_UNDERFLOW
;
523 if (fpword
& 0x20) flags
|= _EM_INEXACT
;
524 switch(fpword
& 0xC00) {
525 case 0xC00: flags
|= _RC_UP
|_RC_DOWN
; break;
526 case 0x800: flags
|= _RC_UP
; break;
527 case 0x400: flags
|= _RC_DOWN
; break;
529 switch(fpword
& 0x300) {
530 case 0x0: flags
|= _PC_24
; break;
531 case 0x200: flags
|= _PC_53
; break;
532 case 0x300: flags
|= _PC_64
; break;
534 if (fpword
& 0x1000) flags
|= _IC_AFFINE
;
536 /* Mask with parameters */
537 flags
= (flags
& ~mask
) | (newval
& mask
);
539 /* Convert (masked) value back to fp word */
541 if (flags
& _EM_INVALID
) fpword
|= 0x1;
542 if (flags
& _EM_DENORMAL
) fpword
|= 0x2;
543 if (flags
& _EM_ZERODIVIDE
) fpword
|= 0x4;
544 if (flags
& _EM_OVERFLOW
) fpword
|= 0x8;
545 if (flags
& _EM_UNDERFLOW
) fpword
|= 0x10;
546 if (flags
& _EM_INEXACT
) fpword
|= 0x20;
547 switch(flags
& (_RC_UP
| _RC_DOWN
)) {
548 case _RC_UP
|_RC_DOWN
: fpword
|= 0xC00; break;
549 case _RC_UP
: fpword
|= 0x800; break;
550 case _RC_DOWN
: fpword
|= 0x400; break;
552 switch (flags
& (_PC_24
| _PC_53
)) {
553 case _PC_64
: fpword
|= 0x300; break;
554 case _PC_53
: fpword
|= 0x200; break;
555 case _PC_24
: fpword
|= 0x0; break;
557 if (flags
& _IC_AFFINE
) fpword
|= 0x1000;
559 TRACE("Control word after : %08x\n", fpword
);
561 /* Put fp control word */
562 __asm__
__volatile__( "fldcw %0" : : "m" (fpword
) );
566 FIXME(":Not Implemented!\n");
571 /*********************************************************************
572 * _controlfp (MSVCRT.@)
574 unsigned int _controlfp(unsigned int newval
, unsigned int mask
)
577 return _control87( newval
, mask
& ~_EM_DENORMAL
);
579 FIXME(":Not Implemented!\n");
584 /*********************************************************************
585 * _copysign (MSVCRT.@)
587 double _copysign(double num
, double sign
)
589 /* FIXME: Behaviour for Nan/Inf? */
591 return num
< 0.0 ? num
: -num
;
592 return num
< 0.0 ? -num
: num
;
595 /*********************************************************************
598 int _finite(double num
)
600 return (finite(num
)?1:0); /* See comment for _isnan() */
603 /*********************************************************************
604 * _fpreset (MSVCRT.@)
608 #if defined(__GNUC__) && defined(__i386__)
609 __asm__
__volatile__( "fninit" );
611 FIXME(":Not Implemented!\n");
615 /*********************************************************************
618 INT
_isnan(double num
)
620 /* Some implementations return -1 for true(glibc), msvcrt/crtdll return 1.
621 * Do the same, as the result may be used in calculations
623 return isnan(num
) ? 1 : 0;
626 /*********************************************************************
629 double _y0(double num
)
632 if (!finite(num
)) *MSVCRT__errno() = MSVCRT_EDOM
;
634 if (_fpclass(retval
) == _FPCLASS_NINF
)
636 *MSVCRT__errno() = MSVCRT_EDOM
;
642 /*********************************************************************
645 double _y1(double num
)
648 if (!finite(num
)) *MSVCRT__errno() = MSVCRT_EDOM
;
650 if (_fpclass(retval
) == _FPCLASS_NINF
)
652 *MSVCRT__errno() = MSVCRT_EDOM
;
658 /*********************************************************************
661 double _yn(int order
, double num
)
664 if (!finite(num
)) *MSVCRT__errno() = MSVCRT_EDOM
;
665 retval
= yn(order
,num
);
666 if (_fpclass(retval
) == _FPCLASS_NINF
)
668 *MSVCRT__errno() = MSVCRT_EDOM
;
674 /*********************************************************************
675 * _nextafter (MSVCRT.@)
677 double _nextafter(double num
, double next
)
680 if (!finite(num
) || !finite(next
)) *MSVCRT__errno() = MSVCRT_EDOM
;
681 retval
= nextafter(num
,next
);
685 /*********************************************************************
688 char *_ecvt( double number
, int ndigits
, int *decpt
, int *sign
)
690 MSVCRT_thread_data
*data
= msvcrt_get_thread_data();
693 if (!data
->efcvt_buffer
)
694 data
->efcvt_buffer
= MSVCRT_malloc( 80 ); /* ought to be enough */
696 snprintf(data
->efcvt_buffer
, 80, "%.*e", ndigits
/* FIXME wrong */, number
);
697 *sign
= (number
< 0);
698 dec
= strchr(data
->efcvt_buffer
, '.');
699 *decpt
= (dec
) ? dec
- data
->efcvt_buffer
: -1;
700 return data
->efcvt_buffer
;
703 /***********************************************************************
706 char *_fcvt( double number
, int ndigits
, int *decpt
, int *sign
)
708 MSVCRT_thread_data
*data
= msvcrt_get_thread_data();
711 if (!data
->efcvt_buffer
)
712 data
->efcvt_buffer
= MSVCRT_malloc( 80 ); /* ought to be enough */
714 snprintf(data
->efcvt_buffer
, 80, "%.*e", ndigits
, number
);
715 *sign
= (number
< 0);
716 dec
= strchr(data
->efcvt_buffer
, '.');
717 *decpt
= (dec
) ? dec
- data
->efcvt_buffer
: -1;
718 return data
->efcvt_buffer
;
721 /***********************************************************************
724 * FIXME: uses both E and F.
726 char *_gcvt( double number
, int ndigit
, char *buff
)
728 sprintf(buff
, "%.*E", ndigit
, number
);
732 #include <stdlib.h> /* div_t, ldiv_t */
734 /*********************************************************************
737 * [i386] Windows binary compatible - returns the struct in eax/edx.
740 LONGLONG
MSVCRT_div(int num
, int denom
)
743 div_t dt
= div(num
,denom
);
744 retval
= ((LONGLONG
)dt
.rem
<< 32) | dt
.quot
;
748 /*********************************************************************
751 * [!i386] Non-x86 can't run win32 apps so we don't need binary compatibility
753 MSVCRT_div_t
MSVCRT_div(int num
, int denom
)
755 div_t dt
= div(num
,denom
);
763 #endif /* ifdef __i386__ */
766 /*********************************************************************
769 * [i386] Windows binary compatible - returns the struct in eax/edx.
772 ULONGLONG
MSVCRT_ldiv(long num
, long denom
)
775 ldiv_t ldt
= ldiv(num
,denom
);
776 retval
= ((ULONGLONG
)ldt
.rem
<< 32) | (ULONG
)ldt
.quot
;
780 /*********************************************************************
783 * [!i386] Non-x86 can't run win32 apps so we don't need binary compatibility
785 MSVCRT_ldiv_t
MSVCRT_ldiv(long num
, long denom
)
787 ldiv_t result
= ldiv(num
,denom
);
790 ret
.quot
= result
.quot
;
791 ret
.rem
= result
.rem
;
795 #endif /* ifdef __i386__ */
797 /***********************************************************************
798 * _adj_fdiv_m16i (MSVCRT.@)
800 * This function is likely to have the wrong number of arguments.
803 * I _think_ this function is intended to work around the Pentium
806 void _adj_fdiv_m16i(void)
811 /***********************************************************************
812 * _adj_fdiv_m32 (MSVCRT.@)
814 * This function is likely to have the wrong number of arguments.
817 * I _think_ this function is intended to work around the Pentium
820 void _adj_fdiv_m32(void)
825 /***********************************************************************
826 * _adj_fdiv_m32i (MSVCRT.@)
828 * This function is likely to have the wrong number of arguments.
831 * I _think_ this function is intended to work around the Pentium
834 void _adj_fdiv_m32i(void)
839 /***********************************************************************
840 * _adj_fdiv_m64 (MSVCRT.@)
842 * This function is likely to have the wrong number of arguments.
845 * I _think_ this function is intended to work around the Pentium
848 void _adj_fdiv_m64(void)
853 /***********************************************************************
854 * _adj_fdiv_r (MSVCRT.@)
856 * This function is likely to have the wrong number of arguments.
859 * I _think_ this function is intended to work around the Pentium
862 void _adj_fdiv_r(void)
867 /***********************************************************************
868 * _adj_fdivr_m16i (MSVCRT.@)
870 * This function is likely to have the wrong number of arguments.
873 * I _think_ this function is intended to work around the Pentium
876 void _adj_fdivr_m16i(void)
881 /***********************************************************************
882 * _adj_fdivr_m32 (MSVCRT.@)
884 * This function is likely to have the wrong number of arguments.
887 * I _think_ this function is intended to work around the Pentium
890 void _adj_fdivr_m32(void)
895 /***********************************************************************
896 * _adj_fdivr_m32i (MSVCRT.@)
898 * This function is likely to have the wrong number of arguments.
901 * I _think_ this function is intended to work around the Pentium
904 void _adj_fdivr_m32i(void)
909 /***********************************************************************
910 * _adj_fdivr_m64 (MSVCRT.@)
912 * This function is likely to have the wrong number of arguments.
915 * I _think_ this function is intended to work around the Pentium
918 void _adj_fdivr_m64(void)
923 /***********************************************************************
924 * _adj_fpatan (MSVCRT.@)
926 * This function is likely to have the wrong number of arguments.
929 * I _think_ this function is intended to work around the Pentium
932 void _adj_fpatan(void)
937 /***********************************************************************
938 * _adj_fprem (MSVCRT.@)
940 * This function is likely to have the wrong number of arguments.
943 * I _think_ this function is intended to work around the Pentium
946 void _adj_fprem(void)
951 /***********************************************************************
952 * _adj_fprem1 (MSVCRT.@)
954 * This function is likely to have the wrong number of arguments.
957 * I _think_ this function is intended to work around the Pentium
960 void _adj_fprem1(void)
965 /***********************************************************************
966 * _adj_fptan (MSVCRT.@)
968 * This function is likely to have the wrong number of arguments.
971 * I _think_ this function is intended to work around the Pentium
974 void _adj_fptan(void)
979 /***********************************************************************
980 * _adjust_fdiv (MSVCRT.@)
982 * I _think_ this function should be a variable indicating whether
983 * Pentium fdiv bug safe code should be used.
985 void _adjust_fdiv(void)
990 /***********************************************************************
991 * _safe_fdiv (MSVCRT.@)
993 * This function is likely to have the wrong number of arguments.
996 * I _think_ this function is intended to work around the Pentium
999 void _safe_fdiv(void)
1001 TRACE("(): stub\n");
1004 /***********************************************************************
1005 * _safe_fdivr (MSVCRT.@)
1007 * This function is likely to have the wrong number of arguments.
1010 * I _think_ this function is intended to work around the Pentium
1013 void _safe_fdivr(void)
1015 TRACE("(): stub\n");
1018 /***********************************************************************
1019 * _safe_fprem (MSVCRT.@)
1021 * This function is likely to have the wrong number of arguments.
1024 * I _think_ this function is intended to work around the Pentium
1027 void _safe_fprem(void)
1029 TRACE("(): stub\n");
1032 /***********************************************************************
1033 * _safe_fprem1 (MSVCRT.@)
1036 * This function is likely to have the wrong number of arguments.
1039 * I _think_ this function is intended to work around the Pentium
1042 void _safe_fprem1(void)
1044 TRACE("(): stub\n");