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00059 static char *rcs_id = "$Source: /home/bos/bk/kpro64-pending/libm/SCCS/s.vsin.c $ $Revision: 1.5 $";
00060
00061 #include "libm.h"
00062
00063 #if defined(mips) && !defined(__GNUC__)
00064 extern void vsin(double *, double *, long, long, long);
00065
00066 #pragma weak vsin = __vsin
00067 #endif
00068
00069 #if defined(BUILD_OS_DARWIN)
00070 extern void __vsin( double *x, double *y, long count, long stridex,
00071 long stridey );
00072 #pragma weak vsin
00073 void vsin( double *x, double *y, long count, long stridex, long stridey ) {
00074 __vsin(x, y, count, stridex, stridey);
00075 }
00076 #elif defined(__GNUC__)
00077 extern void __vsin(double *, double *, long, long, long);
00078 void vsin() __attribute__ ((weak, alias ("__vsin")));
00079 #endif
00080
00081 static const du rpiby2 =
00082 {D(0x3fe45f30, 0x6dc9c883)};
00083
00084 static const du piby2hi =
00085 {D(0x3ff921fb, 0x54400000)};
00086
00087 static const du piby2lo =
00088 {D(0x3dd0b461, 0x1a600000)};
00089
00090 static const du piby2tiny =
00091 {D(0x3ba3198a, 0x2e037073)};
00092
00093 static const du Twopm30 =
00094 {D(0x3e100000, 0x00000000)};
00095
00096 static const du Twop19xpi =
00097 {D(0x413921fb, 0x54442d18)};
00098
00099
00100
00101 static const du P[] =
00102 {
00103 {D(0x3ff00000, 0x00000000)},
00104 {D(0xbfc55555, 0x55555548)},
00105 {D(0x3f811111, 0x1110f7d0)},
00106 {D(0xbf2a01a0, 0x19bfdf03)},
00107 {D(0x3ec71de3, 0x567d4896)},
00108 {D(0xbe5ae5e5, 0xa9291691)},
00109 {D(0x3de5d8fd, 0x1fcf0ec1)},
00110 };
00111
00112
00113
00114 static const du Q[] =
00115 {
00116 {D(0x3ff00000, 0x00000000)},
00117 {D(0xbfdfffff, 0xffffff96)},
00118 {D(0x3fa55555, 0x5554f0ab)},
00119 {D(0xbf56c16c, 0x1640aaca)},
00120 {D(0x3efa019f, 0x81cb6a1d)},
00121 {D(0xbe927df4, 0x609cb202)},
00122 {D(0x3e21b8b9, 0x947ab5c8)},
00123 };
00124
00125 static const du Qnan =
00126 {D(QNANHI, QNANLO)};
00127
00128
00129
00130
00131
00132
00133
00134
00135
00136
00137
00138 void
00139 __vsin( double *x, double *y, long count, long stridex, long stridey )
00140 {
00141 long i;
00142 int n;
00143 double dx, arg;
00144 double w;
00145 double xsq;
00146 double result;
00147 double *p;
00148 double dn;
00149
00150
00151
00152 for ( i=0; i<count; i++ )
00153 {
00154 #ifdef _PREFETCH
00155 #pragma prefetch_ref=*(x+8)
00156 #pragma prefetch_ref=*(y+8)
00157 #endif
00158
00159 arg = *x;
00160
00161 dx = arg;
00162
00163 if ( arg != arg )
00164 dx = 0.0;
00165
00166
00167
00168 if ( fabs(arg) > Twop19xpi.d )
00169 dx = 0.0;
00170
00171
00172
00173 w = dx;
00174
00175 if ( fabs(arg) < Twopm30.d )
00176 w = 0.0;
00177
00178 dn = w*rpiby2.d;
00179
00180 n = ROUND(dn);
00181 dn = n;
00182
00183 dx = dx - dn*piby2hi.d;
00184 dx = dx - dn*piby2lo.d;
00185 dx = dx - dn*piby2tiny.d;
00186
00187 w = dx;
00188
00189 if ( fabs(dx) < Twopm30.d )
00190 w = 0.0;
00191
00192 p = (double *)&P[0].d;
00193
00194
00195
00196
00197
00198
00199
00200
00201
00202
00203 if ( n&1 )
00204 {
00205 p = (double *)&Q[0].d;
00206 dx = 1.0;
00207 }
00208
00209 xsq = w*w;
00210
00211 result = (((((p[6]*xsq + p[5])*xsq + p[4])*xsq
00212 + p[3])*xsq + p[2])*xsq + p[1])*(xsq*dx) + dx;
00213
00214 if ( n&2 )
00215 result = -result;
00216
00217 if ( arg != arg )
00218 result = Qnan.d;
00219
00220 *y = result;
00221
00222 x += stridex;
00223 y += stridey;
00224 }
00225 }
00226