1*05a0b428SJohn Marino /* e_rem_pio2f.c -- float version of e_rem_pio2.c 2*05a0b428SJohn Marino * Conversion to float by Ian Lance Taylor, Cygnus Support, ian@cygnus.com. 3*05a0b428SJohn Marino */ 4*05a0b428SJohn Marino 5*05a0b428SJohn Marino /* 6*05a0b428SJohn Marino * ==================================================== 7*05a0b428SJohn Marino * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved. 8*05a0b428SJohn Marino * 9*05a0b428SJohn Marino * Developed at SunPro, a Sun Microsystems, Inc. business. 10*05a0b428SJohn Marino * Permission to use, copy, modify, and distribute this 11*05a0b428SJohn Marino * software is freely granted, provided that this notice 12*05a0b428SJohn Marino * is preserved. 13*05a0b428SJohn Marino * ==================================================== 14*05a0b428SJohn Marino */ 15*05a0b428SJohn Marino 16*05a0b428SJohn Marino /* __ieee754_rem_pio2f(x,y) 17*05a0b428SJohn Marino * 18*05a0b428SJohn Marino * return the remainder of x rem pi/2 in y[0]+y[1] 19*05a0b428SJohn Marino * use __kernel_rem_pio2f() 20*05a0b428SJohn Marino */ 21*05a0b428SJohn Marino 22*05a0b428SJohn Marino #include "math.h" 23*05a0b428SJohn Marino #include "math_private.h" 24*05a0b428SJohn Marino 25*05a0b428SJohn Marino /* 26*05a0b428SJohn Marino * Table of constants for 2/pi, 396 Hex digits (476 decimal) of 2/pi 27*05a0b428SJohn Marino */ 28*05a0b428SJohn Marino static const int32_t two_over_pi[] = { 29*05a0b428SJohn Marino 0xA2, 0xF9, 0x83, 0x6E, 0x4E, 0x44, 0x15, 0x29, 0xFC, 30*05a0b428SJohn Marino 0x27, 0x57, 0xD1, 0xF5, 0x34, 0xDD, 0xC0, 0xDB, 0x62, 31*05a0b428SJohn Marino 0x95, 0x99, 0x3C, 0x43, 0x90, 0x41, 0xFE, 0x51, 0x63, 32*05a0b428SJohn Marino 0xAB, 0xDE, 0xBB, 0xC5, 0x61, 0xB7, 0x24, 0x6E, 0x3A, 33*05a0b428SJohn Marino 0x42, 0x4D, 0xD2, 0xE0, 0x06, 0x49, 0x2E, 0xEA, 0x09, 34*05a0b428SJohn Marino 0xD1, 0x92, 0x1C, 0xFE, 0x1D, 0xEB, 0x1C, 0xB1, 0x29, 35*05a0b428SJohn Marino 0xA7, 0x3E, 0xE8, 0x82, 0x35, 0xF5, 0x2E, 0xBB, 0x44, 36*05a0b428SJohn Marino 0x84, 0xE9, 0x9C, 0x70, 0x26, 0xB4, 0x5F, 0x7E, 0x41, 37*05a0b428SJohn Marino 0x39, 0x91, 0xD6, 0x39, 0x83, 0x53, 0x39, 0xF4, 0x9C, 38*05a0b428SJohn Marino 0x84, 0x5F, 0x8B, 0xBD, 0xF9, 0x28, 0x3B, 0x1F, 0xF8, 39*05a0b428SJohn Marino 0x97, 0xFF, 0xDE, 0x05, 0x98, 0x0F, 0xEF, 0x2F, 0x11, 40*05a0b428SJohn Marino 0x8B, 0x5A, 0x0A, 0x6D, 0x1F, 0x6D, 0x36, 0x7E, 0xCF, 41*05a0b428SJohn Marino 0x27, 0xCB, 0x09, 0xB7, 0x4F, 0x46, 0x3F, 0x66, 0x9E, 42*05a0b428SJohn Marino 0x5F, 0xEA, 0x2D, 0x75, 0x27, 0xBA, 0xC7, 0xEB, 0xE5, 43*05a0b428SJohn Marino 0xF1, 0x7B, 0x3D, 0x07, 0x39, 0xF7, 0x8A, 0x52, 0x92, 44*05a0b428SJohn Marino 0xEA, 0x6B, 0xFB, 0x5F, 0xB1, 0x1F, 0x8D, 0x5D, 0x08, 45*05a0b428SJohn Marino 0x56, 0x03, 0x30, 0x46, 0xFC, 0x7B, 0x6B, 0xAB, 0xF0, 46*05a0b428SJohn Marino 0xCF, 0xBC, 0x20, 0x9A, 0xF4, 0x36, 0x1D, 0xA9, 0xE3, 47*05a0b428SJohn Marino 0x91, 0x61, 0x5E, 0xE6, 0x1B, 0x08, 0x65, 0x99, 0x85, 48*05a0b428SJohn Marino 0x5F, 0x14, 0xA0, 0x68, 0x40, 0x8D, 0xFF, 0xD8, 0x80, 49*05a0b428SJohn Marino 0x4D, 0x73, 0x27, 0x31, 0x06, 0x06, 0x15, 0x56, 0xCA, 50*05a0b428SJohn Marino 0x73, 0xA8, 0xC9, 0x60, 0xE2, 0x7B, 0xC0, 0x8C, 0x6B, 51*05a0b428SJohn Marino }; 52*05a0b428SJohn Marino 53*05a0b428SJohn Marino /* This array is like the one in e_rem_pio2.c, but the numbers are 54*05a0b428SJohn Marino single precision and the last 8 bits are forced to 0. */ 55*05a0b428SJohn Marino static const int32_t npio2_hw[] = { 56*05a0b428SJohn Marino 0x3fc90f00, 0x40490f00, 0x4096cb00, 0x40c90f00, 0x40fb5300, 0x4116cb00, 57*05a0b428SJohn Marino 0x412fed00, 0x41490f00, 0x41623100, 0x417b5300, 0x418a3a00, 0x4196cb00, 58*05a0b428SJohn Marino 0x41a35c00, 0x41afed00, 0x41bc7e00, 0x41c90f00, 0x41d5a000, 0x41e23100, 59*05a0b428SJohn Marino 0x41eec200, 0x41fb5300, 0x4203f200, 0x420a3a00, 0x42108300, 0x4216cb00, 60*05a0b428SJohn Marino 0x421d1400, 0x42235c00, 0x4229a500, 0x422fed00, 0x42363600, 0x423c7e00, 61*05a0b428SJohn Marino 0x4242c700, 0x42490f00 62*05a0b428SJohn Marino }; 63*05a0b428SJohn Marino 64*05a0b428SJohn Marino /* 65*05a0b428SJohn Marino * invpio2: 24 bits of 2/pi 66*05a0b428SJohn Marino * pio2_1: first 17 bit of pi/2 67*05a0b428SJohn Marino * pio2_1t: pi/2 - pio2_1 68*05a0b428SJohn Marino * pio2_2: second 17 bit of pi/2 69*05a0b428SJohn Marino * pio2_2t: pi/2 - (pio2_1+pio2_2) 70*05a0b428SJohn Marino * pio2_3: third 17 bit of pi/2 71*05a0b428SJohn Marino * pio2_3t: pi/2 - (pio2_1+pio2_2+pio2_3) 72*05a0b428SJohn Marino */ 73*05a0b428SJohn Marino 74*05a0b428SJohn Marino static const float 75*05a0b428SJohn Marino zero = 0.0000000000e+00, /* 0x00000000 */ 76*05a0b428SJohn Marino half = 5.0000000000e-01, /* 0x3f000000 */ 77*05a0b428SJohn Marino two8 = 2.5600000000e+02, /* 0x43800000 */ 78*05a0b428SJohn Marino invpio2 = 6.3661980629e-01, /* 0x3f22f984 */ 79*05a0b428SJohn Marino pio2_1 = 1.5707855225e+00, /* 0x3fc90f80 */ 80*05a0b428SJohn Marino pio2_1t = 1.0804334124e-05, /* 0x37354443 */ 81*05a0b428SJohn Marino pio2_2 = 1.0804273188e-05, /* 0x37354400 */ 82*05a0b428SJohn Marino pio2_2t = 6.0770999344e-11, /* 0x2e85a308 */ 83*05a0b428SJohn Marino pio2_3 = 6.0770943833e-11, /* 0x2e85a300 */ 84*05a0b428SJohn Marino pio2_3t = 6.1232342629e-17; /* 0x248d3132 */ 85*05a0b428SJohn Marino 86*05a0b428SJohn Marino int32_t 87*05a0b428SJohn Marino __ieee754_rem_pio2f(float x, float *y) 88*05a0b428SJohn Marino { 89*05a0b428SJohn Marino float z,w,t,r,fn; 90*05a0b428SJohn Marino float tx[3]; 91*05a0b428SJohn Marino int32_t e0,i,j,nx,n,ix,hx; 92*05a0b428SJohn Marino 93*05a0b428SJohn Marino GET_FLOAT_WORD(hx,x); 94*05a0b428SJohn Marino ix = hx&0x7fffffff; 95*05a0b428SJohn Marino if(ix<=0x3f490fd8) /* |x| ~<= pi/4 , no need for reduction */ 96*05a0b428SJohn Marino {y[0] = x; y[1] = 0; return 0;} 97*05a0b428SJohn Marino if(ix<0x4016cbe4) { /* |x| < 3pi/4, special case with n=+-1 */ 98*05a0b428SJohn Marino if(hx>0) { 99*05a0b428SJohn Marino z = x - pio2_1; 100*05a0b428SJohn Marino if((ix&0xfffffff0)!=0x3fc90fd0) { /* 24+24 bit pi OK */ 101*05a0b428SJohn Marino y[0] = z - pio2_1t; 102*05a0b428SJohn Marino y[1] = (z-y[0])-pio2_1t; 103*05a0b428SJohn Marino } else { /* near pi/2, use 24+24+24 bit pi */ 104*05a0b428SJohn Marino z -= pio2_2; 105*05a0b428SJohn Marino y[0] = z - pio2_2t; 106*05a0b428SJohn Marino y[1] = (z-y[0])-pio2_2t; 107*05a0b428SJohn Marino } 108*05a0b428SJohn Marino return 1; 109*05a0b428SJohn Marino } else { /* negative x */ 110*05a0b428SJohn Marino z = x + pio2_1; 111*05a0b428SJohn Marino if((ix&0xfffffff0)!=0x3fc90fd0) { /* 24+24 bit pi OK */ 112*05a0b428SJohn Marino y[0] = z + pio2_1t; 113*05a0b428SJohn Marino y[1] = (z-y[0])+pio2_1t; 114*05a0b428SJohn Marino } else { /* near pi/2, use 24+24+24 bit pi */ 115*05a0b428SJohn Marino z += pio2_2; 116*05a0b428SJohn Marino y[0] = z + pio2_2t; 117*05a0b428SJohn Marino y[1] = (z-y[0])+pio2_2t; 118*05a0b428SJohn Marino } 119*05a0b428SJohn Marino return -1; 120*05a0b428SJohn Marino } 121*05a0b428SJohn Marino } 122*05a0b428SJohn Marino if(ix<=0x43490f80) { /* |x| ~<= 2^7*(pi/2), medium size */ 123*05a0b428SJohn Marino t = fabsf(x); 124*05a0b428SJohn Marino n = (int32_t) (t*invpio2+half); 125*05a0b428SJohn Marino fn = (float)n; 126*05a0b428SJohn Marino r = t-fn*pio2_1; 127*05a0b428SJohn Marino w = fn*pio2_1t; /* 1st round good to 40 bit */ 128*05a0b428SJohn Marino if(n<32&&(ix&0xffffff00)!=npio2_hw[n-1]) { 129*05a0b428SJohn Marino y[0] = r-w; /* quick check no cancellation */ 130*05a0b428SJohn Marino } else { 131*05a0b428SJohn Marino u_int32_t high; 132*05a0b428SJohn Marino j = ix>>23; 133*05a0b428SJohn Marino y[0] = r-w; 134*05a0b428SJohn Marino GET_FLOAT_WORD(high,y[0]); 135*05a0b428SJohn Marino i = j-((high>>23)&0xff); 136*05a0b428SJohn Marino if(i>8) { /* 2nd iteration needed, good to 57 */ 137*05a0b428SJohn Marino t = r; 138*05a0b428SJohn Marino w = fn*pio2_2; 139*05a0b428SJohn Marino r = t-w; 140*05a0b428SJohn Marino w = fn*pio2_2t-((t-r)-w); 141*05a0b428SJohn Marino y[0] = r-w; 142*05a0b428SJohn Marino GET_FLOAT_WORD(high,y[0]); 143*05a0b428SJohn Marino i = j-((high>>23)&0xff); 144*05a0b428SJohn Marino if(i>25) { /* 3rd iteration need, 74 bits acc */ 145*05a0b428SJohn Marino t = r; /* will cover all possible cases */ 146*05a0b428SJohn Marino w = fn*pio2_3; 147*05a0b428SJohn Marino r = t-w; 148*05a0b428SJohn Marino w = fn*pio2_3t-((t-r)-w); 149*05a0b428SJohn Marino y[0] = r-w; 150*05a0b428SJohn Marino } 151*05a0b428SJohn Marino } 152*05a0b428SJohn Marino } 153*05a0b428SJohn Marino y[1] = (r-y[0])-w; 154*05a0b428SJohn Marino if(hx<0) {y[0] = -y[0]; y[1] = -y[1]; return -n;} 155*05a0b428SJohn Marino else return n; 156*05a0b428SJohn Marino } 157*05a0b428SJohn Marino /* 158*05a0b428SJohn Marino * all other (large) arguments 159*05a0b428SJohn Marino */ 160*05a0b428SJohn Marino if(ix>=0x7f800000) { /* x is inf or NaN */ 161*05a0b428SJohn Marino y[0]=y[1]=x-x; return 0; 162*05a0b428SJohn Marino } 163*05a0b428SJohn Marino /* set z = scalbn(|x|,ilogb(x)-7) */ 164*05a0b428SJohn Marino e0 = (ix>>23)-134; /* e0 = ilogb(z)-7; */ 165*05a0b428SJohn Marino SET_FLOAT_WORD(z, ix - ((int32_t)(e0<<23))); 166*05a0b428SJohn Marino for(i=0;i<2;i++) { 167*05a0b428SJohn Marino tx[i] = (float)((int32_t)(z)); 168*05a0b428SJohn Marino z = (z-tx[i])*two8; 169*05a0b428SJohn Marino } 170*05a0b428SJohn Marino tx[2] = z; 171*05a0b428SJohn Marino nx = 3; 172*05a0b428SJohn Marino while(tx[nx-1]==zero) nx--; /* skip zero term */ 173*05a0b428SJohn Marino n = __kernel_rem_pio2f(tx,y,e0,nx,2,two_over_pi); 174*05a0b428SJohn Marino if(hx<0) {y[0] = -y[0]; y[1] = -y[1]; return -n;} 175*05a0b428SJohn Marino return n; 176*05a0b428SJohn Marino } 177