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| 1 // Copyright 2014 the V8 project authors. All rights reserved. |
| 2 // Use of this source code is governed by a BSD-style license that can be |
| 3 // found in the LICENSE file. |
| 4 |
| 5 // ==================================================== |
| 6 // Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved. |
| 7 // |
| 8 // Developed at SunSoft, a Sun Microsystems, Inc. business. |
| 9 // Permission to use, copy, modify, and distribute this |
| 10 // software is freely granted, provided that this notice |
| 11 // is preserved. |
| 12 // ==================================================== |
| 13 // |
| 14 // The following is adapted from fdlibm (http://www.netlib.org/fdlibm). |
| 15 |
| 16 #include "v8.h" |
| 17 |
| 18 #include "double.h" |
| 19 #include "rempio2.h" |
| 20 |
| 21 |
| 22 namespace v8 { |
| 23 namespace internal { |
| 24 |
| 25 /* |
| 26 * Table of constants for 2/pi, 396 Hex digits (476 decimal) of 2/pi |
| 27 */ |
| 28 static const int two_over_pi[] = { 0xA2F983, 0x6E4E44, 0x1529FC, 0x2757D1, |
| 29 0xF534DD, 0xC0DB62, 0x95993C, 0x439041, 0xFE5163, 0xABDEBB, 0xC561B7, |
| 30 0x246E3A, 0x424DD2, 0xE00649, 0x2EEA09, 0xD1921C, 0xFE1DEB, 0x1CB129, |
| 31 0xA73EE8, 0x8235F5, 0x2EBB44, 0x84E99C, 0x7026B4, 0x5F7E41, 0x3991D6, |
| 32 0x398353, 0x39F49C, 0x845F8B, 0xBDF928, 0x3B1FF8, 0x97FFDE, 0x05980F, |
| 33 0xEF2F11, 0x8B5A0A, 0x6D1F6D, 0x367ECF, 0x27CB09, 0xB74F46, 0x3F669E, |
| 34 0x5FEA2D, 0x7527BA, 0xC7EBE5, 0xF17B3D, 0x0739F7, 0x8A5292, 0xEA6BFB, |
| 35 0x5FB11F, 0x8D5D08, 0x560330, 0x46FC7B, 0x6BABF0, 0xCFBC20, 0x9AF436, |
| 36 0x1DA9E3, 0x91615E, 0xE61B08, 0x659985, 0x5F14A0, 0x68408D, 0xFFD880, |
| 37 0x4D7327, 0x310606, 0x1556CA, 0x73A8C9, 0x60E27B, 0xC08C6B }; |
| 38 |
| 39 static const double zero = 0.00000000000000000000e+00; |
| 40 static const double two24 = 1.67772160000000000000e+07; |
| 41 |
| 42 static const double PIo2[] = { |
| 43 1.57079625129699707031e+00, // 0x3FF921FB, 0x40000000 |
| 44 7.54978941586159635335e-08, // 0x3E74442D, 0x00000000 |
| 45 5.39030252995776476554e-15, // 0x3CF84698, 0x80000000 |
| 46 3.28200341580791294123e-22, // 0x3B78CC51, 0x60000000 |
| 47 1.27065575308067607349e-29, // 0x39F01B83, 0x80000000 |
| 48 1.22933308981111328932e-36, // 0x387A2520, 0x40000000 |
| 49 2.73370053816464559624e-44, // 0x36E38222, 0x80000000 |
| 50 2.16741683877804819444e-51 // 0x3569F31D, 0x00000000 |
| 51 }; |
| 52 |
| 53 static const double one = 1.0; |
| 54 static const double twon24 = 5.96046447753906250000e-08; |
| 55 |
| 56 int __kernel_rem_pio2(double* x, double* y, int e0, int nx) { |
| 57 static const int32_t jk = 3; |
| 58 double fw; |
| 59 int32_t jx = nx - 1; |
| 60 int32_t jv = (e0 - 3) / 24; |
| 61 if (jv < 0) jv = 0; |
| 62 int32_t q0 = e0 - 24 * (jv + 1); |
| 63 int32_t m = jx + jk; |
| 64 |
| 65 double f[10]; |
| 66 for (int i = 0, j = jv - jx; i <= m; i++, j++) { |
| 67 f[i] = (j < 0) ? zero : static_cast<double>(two_over_pi[j]); |
| 68 } |
| 69 |
| 70 double q[10]; |
| 71 for (int i = 0; i <= jk; i++) { |
| 72 fw = 0.0; |
| 73 for (int j = 0; j <= jx; j++) fw += x[j] * f[jx + i - j]; |
| 74 q[i] = fw; |
| 75 } |
| 76 |
| 77 int32_t jz = jk; |
| 78 |
| 79 recompute: |
| 80 |
| 81 int32_t iq[10]; |
| 82 double z = q[jz]; |
| 83 for (int i = 0, j = jz; j > 0; i++, j--) { |
| 84 fw = static_cast<double>(static_cast<int32_t>(twon24 * z)); |
| 85 iq[i] = static_cast<int32_t>(z - two24 * fw); |
| 86 z = q[j - 1] + fw; |
| 87 } |
| 88 |
| 89 z = scalbn(z, q0); |
| 90 z -= 8.0 * std::floor(z * 0.125); |
| 91 int32_t n = static_cast<int32_t>(z); |
| 92 z -= static_cast<double>(n); |
| 93 int32_t ih = 0; |
| 94 if (q0 > 0) { |
| 95 int32_t i = (iq[jz - 1] >> (24 - q0)); |
| 96 n += i; |
| 97 iq[jz - 1] -= i << (24 - q0); |
| 98 ih = iq[jz - 1] >> (23 - q0); |
| 99 } else if (q0 == 0) { |
| 100 ih = iq[jz - 1] >> 23; |
| 101 } else if (z >= 0.5) { |
| 102 ih = 2; |
| 103 } |
| 104 |
| 105 if (ih > 0) { |
| 106 n += 1; |
| 107 int32_t carry = 0; |
| 108 for (int i = 0; i < jz; i++) { |
| 109 int32_t j = iq[i]; |
| 110 if (carry == 0) { |
| 111 if (j != 0) { |
| 112 carry = 1; |
| 113 iq[i] = 0x1000000 - j; |
| 114 } |
| 115 } else { |
| 116 iq[i] = 0xffffff - j; |
| 117 } |
| 118 } |
| 119 if (q0 == 1) { |
| 120 iq[jz - 1] &= 0x7fffff; |
| 121 } else if (q0 == 2) { |
| 122 iq[jz - 1] &= 0x3fffff; |
| 123 } |
| 124 if (ih == 2) { |
| 125 z = one - z; |
| 126 if (carry != 0) z -= scalbn(one, q0); |
| 127 } |
| 128 } |
| 129 |
| 130 if (z == zero) { |
| 131 int32_t j = 0; |
| 132 for (int i = jz - 1; i >= jk; i--) j |= iq[i]; |
| 133 if (j == 0) { |
| 134 int32_t k = 1; |
| 135 while (iq[jk - k] == 0) k++; |
| 136 for (int i = jz + 1; i <= jz + k; i++) { |
| 137 f[jx + i] = static_cast<double>(two_over_pi[jv + i]); |
| 138 for (j = 0, fw = 0.0; j <= jx; j++) fw += x[j] * f[jx + i - j]; |
| 139 q[i] = fw; |
| 140 } |
| 141 jz += k; |
| 142 goto recompute; |
| 143 } |
| 144 } |
| 145 |
| 146 if (z == 0.0) { |
| 147 jz -= 1; |
| 148 q0 -= 24; |
| 149 while (iq[jz] == 0) { |
| 150 jz--; |
| 151 q0 -= 24; |
| 152 } |
| 153 } else { |
| 154 z = scalbn(z, -q0); |
| 155 if (z >= two24) { |
| 156 fw = static_cast<double>(static_cast<int32_t>(twon24 * z)); |
| 157 iq[jz] = static_cast<int32_t>(z - two24 * fw); |
| 158 jz += 1; |
| 159 q0 += 24; |
| 160 iq[jz] = static_cast<int32_t>(fw); |
| 161 } else { |
| 162 iq[jz] = static_cast<int32_t>(z); |
| 163 } |
| 164 } |
| 165 |
| 166 fw = scalbn(one, q0); |
| 167 for (int i = jz; i >= 0; i--) { |
| 168 q[i] = fw * static_cast<double>(iq[i]); |
| 169 fw *= twon24; |
| 170 } |
| 171 |
| 172 double fq[10]; |
| 173 for (int i = jz; i >= 0; i--) { |
| 174 fw = 0.0; |
| 175 for (int k = 0; k <= jk && k <= jz - i; k++) fw += PIo2[k] * q[i + k]; |
| 176 fq[jz - i] = fw; |
| 177 } |
| 178 |
| 179 fw = 0.0; |
| 180 for (int i = jz; i >= 0; i--) fw += fq[i]; |
| 181 y[0] = (ih == 0) ? fw : -fw; |
| 182 fw = fq[0] - fw; |
| 183 for (int i = 1; i <= jz; i++) fw += fq[i]; |
| 184 y[1] = (ih == 0) ? fw : -fw; |
| 185 return n & 7; |
| 186 } |
| 187 |
| 188 |
| 189 int rempio2(double x, double* y) { |
| 190 int32_t hx = static_cast<int32_t>(double_to_uint64(x) >> 32); |
| 191 int32_t ix = hx & 0x7fffffff; |
| 192 |
| 193 ASSERT(ix > 0x413921fb); // Handling of lower ix has been omitted. |
| 194 |
| 195 int32_t e0 = (ix >> 20) - 1046; |
| 196 uint64_t zi = double_to_uint64(x) & 0xFFFFFFFFu; |
| 197 zi |= static_cast<uint64_t>(ix - (e0 << 20)) << 32; |
| 198 double z = uint64_to_double(zi); |
| 199 |
| 200 double tx[3]; |
| 201 for (int i = 0; i < 2; i++) { |
| 202 tx[i] = static_cast<double>(static_cast<int32_t>(z)); |
| 203 z = (z - tx[i]) * two24; |
| 204 } |
| 205 tx[2] = z; |
| 206 |
| 207 int nx = 3; |
| 208 while (tx[nx - 1] == zero) nx--; |
| 209 int n = __kernel_rem_pio2(tx, y, e0, nx); |
| 210 if (hx < 0) { |
| 211 y[0] = -y[0]; |
| 212 y[1] = -y[1]; |
| 213 return -n; |
| 214 } |
| 215 return n; |
| 216 } |
| 217 |
| 218 } } // namespace v8::internal |
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