annotate src/fftw-3.3.5/rdft/scalar/r2cf/hc2cfdft2_20.c @ 168:ceec0dd9ec9c

Replace these with versions built using an older toolset (so as to avoid ABI compatibilities when linking on Ubuntu 14.04 for packaging purposes)
author Chris Cannam <cannam@all-day-breakfast.com>
date Fri, 07 Feb 2020 11:51:13 +0000
parents 7867fa7e1b6b
children
rev   line source
cannam@127 1 /*
cannam@127 2 * Copyright (c) 2003, 2007-14 Matteo Frigo
cannam@127 3 * Copyright (c) 2003, 2007-14 Massachusetts Institute of Technology
cannam@127 4 *
cannam@127 5 * This program is free software; you can redistribute it and/or modify
cannam@127 6 * it under the terms of the GNU General Public License as published by
cannam@127 7 * the Free Software Foundation; either version 2 of the License, or
cannam@127 8 * (at your option) any later version.
cannam@127 9 *
cannam@127 10 * This program is distributed in the hope that it will be useful,
cannam@127 11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
cannam@127 12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
cannam@127 13 * GNU General Public License for more details.
cannam@127 14 *
cannam@127 15 * You should have received a copy of the GNU General Public License
cannam@127 16 * along with this program; if not, write to the Free Software
cannam@127 17 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
cannam@127 18 *
cannam@127 19 */
cannam@127 20
cannam@127 21 /* This file was automatically generated --- DO NOT EDIT */
cannam@127 22 /* Generated on Sat Jul 30 16:49:01 EDT 2016 */
cannam@127 23
cannam@127 24 #include "codelet-rdft.h"
cannam@127 25
cannam@127 26 #ifdef HAVE_FMA
cannam@127 27
cannam@127 28 /* Generated by: ../../../genfft/gen_hc2cdft.native -fma -reorder-insns -schedule-for-pipeline -compact -variables 4 -pipeline-latency 4 -twiddle-log3 -precompute-twiddles -n 20 -dit -name hc2cfdft2_20 -include hc2cf.h */
cannam@127 29
cannam@127 30 /*
cannam@127 31 * This function contains 316 FP additions, 238 FP multiplications,
cannam@127 32 * (or, 176 additions, 98 multiplications, 140 fused multiply/add),
cannam@127 33 * 180 stack variables, 5 constants, and 80 memory accesses
cannam@127 34 */
cannam@127 35 #include "hc2cf.h"
cannam@127 36
cannam@127 37 static void hc2cfdft2_20(R *Rp, R *Ip, R *Rm, R *Im, const R *W, stride rs, INT mb, INT me, INT ms)
cannam@127 38 {
cannam@127 39 DK(KP951056516, +0.951056516295153572116439333379382143405698634);
cannam@127 40 DK(KP559016994, +0.559016994374947424102293417182819058860154590);
cannam@127 41 DK(KP250000000, +0.250000000000000000000000000000000000000000000);
cannam@127 42 DK(KP500000000, +0.500000000000000000000000000000000000000000000);
cannam@127 43 DK(KP618033988, +0.618033988749894848204586834365638117720309180);
cannam@127 44 {
cannam@127 45 INT m;
cannam@127 46 for (m = mb, W = W + ((mb - 1) * 8); m < me; m = m + 1, Rp = Rp + ms, Ip = Ip + ms, Rm = Rm - ms, Im = Im - ms, W = W + 8, MAKE_VOLATILE_STRIDE(80, rs)) {
cannam@127 47 E T5h, T5C, T5E, T5y, T5w, T5x, T5D, T5z;
cannam@127 48 {
cannam@127 49 E Tm, Tq, Tn, T1, T6, Tg, Tp, Tb, T1i, TU, Tr, TW, Tx, T2B, T1A;
cannam@127 50 E T1u, T2y, T33, T26, T1o, T30, T22, TD, T1Q, T2a, T2e, T2V, T2R, TG, T1V;
cannam@127 51 E TV, TH, TN, T2t, T12, T2p;
cannam@127 52 {
cannam@127 53 E Tw, To, T29, T1h, T1n, T2d, TC, T2U;
cannam@127 54 Tm = W[0];
cannam@127 55 Tq = W[3];
cannam@127 56 Tn = W[2];
cannam@127 57 T1 = W[6];
cannam@127 58 T6 = W[7];
cannam@127 59 Tw = Tm * Tq;
cannam@127 60 To = Tm * Tn;
cannam@127 61 T29 = Tm * T1;
cannam@127 62 T1h = Tn * T1;
cannam@127 63 T1n = Tn * T6;
cannam@127 64 T2d = Tm * T6;
cannam@127 65 Tg = W[5];
cannam@127 66 Tp = W[1];
cannam@127 67 Tb = W[4];
cannam@127 68 {
cannam@127 69 E T21, T25, T1t, T1z;
cannam@127 70 T1i = FMA(Tq, T6, T1h);
cannam@127 71 T25 = Tm * Tg;
cannam@127 72 T1z = Tn * Tg;
cannam@127 73 TU = FMA(Tp, Tq, To);
cannam@127 74 Tr = FNMS(Tp, Tq, To);
cannam@127 75 TW = FNMS(Tp, Tn, Tw);
cannam@127 76 Tx = FMA(Tp, Tn, Tw);
cannam@127 77 T1t = Tn * Tb;
cannam@127 78 T21 = Tm * Tb;
cannam@127 79 T2B = FMA(Tq, Tb, T1z);
cannam@127 80 T1A = FNMS(Tq, Tb, T1z);
cannam@127 81 TC = Tr * Tb;
cannam@127 82 T1u = FMA(Tq, Tg, T1t);
cannam@127 83 T2y = FNMS(Tq, Tg, T1t);
cannam@127 84 T33 = FMA(Tp, Tb, T25);
cannam@127 85 T26 = FNMS(Tp, Tb, T25);
cannam@127 86 T1o = FNMS(Tq, T1, T1n);
cannam@127 87 T30 = FNMS(Tp, Tg, T21);
cannam@127 88 T22 = FMA(Tp, Tg, T21);
cannam@127 89 }
cannam@127 90 TD = FMA(Tx, Tg, TC);
cannam@127 91 T1Q = FNMS(Tx, Tg, TC);
cannam@127 92 T2a = FMA(Tp, T6, T29);
cannam@127 93 T2e = FNMS(Tp, T1, T2d);
cannam@127 94 T2U = Tr * T6;
cannam@127 95 {
cannam@127 96 E T2Q, TE, TM, TF;
cannam@127 97 T2Q = Tr * T1;
cannam@127 98 TF = Tr * Tg;
cannam@127 99 T2V = FNMS(Tx, T1, T2U);
cannam@127 100 T2R = FMA(Tx, T6, T2Q);
cannam@127 101 TG = FNMS(Tx, Tb, TF);
cannam@127 102 T1V = FMA(Tx, Tb, TF);
cannam@127 103 TE = TD * T1;
cannam@127 104 TM = TD * T6;
cannam@127 105 TV = TU * Tb;
cannam@127 106 TH = FMA(TG, T6, TE);
cannam@127 107 TN = FNMS(TG, T1, TM);
cannam@127 108 T2t = TU * T1;
cannam@127 109 T12 = TU * Tg;
cannam@127 110 T2p = TU * T6;
cannam@127 111 }
cannam@127 112 }
cannam@127 113 {
cannam@127 114 E T36, T3Q, T5f, T4D, T5g, T2Y, T4E, T3P, T5R, T5k, T39, TT, T3T, T3m, T49;
cannam@127 115 E T4X, T5T, T5r, T3c, T2i, T3W, T3B, T4o, T4U, T5U, T5u, T3d, T2J, T3X, T3I;
cannam@127 116 E T4v, T4V, T5Q, T5n, T3a, T1G, T3U, T3t, T4g, T4Y;
cannam@127 117 {
cannam@127 118 E T13, T2m, T2q, T2u, T2f, T9, T2O, TA, T2c, T4k, T3i, T5, T2Z, T1e, T2G;
cannam@127 119 E T1O, T2W, TQ, T2C, T1Y, T3v, T27, Tj, T1l, T2v, T3g, T1m, T1D, T2n, T1x;
cannam@127 120 E T2k, T3E, T4c, T2l, T1y, T10, T31, T16, T34, T32, T11, T4B, T3p, T4A, T1T;
cannam@127 121 E T3n, T1b, T2A, T4q, T1U, Te, Tf, T24, T4i, T1r, T4a, T3C, T2s, T43, Tv;
cannam@127 122 E T3L, T2N, T45, TL, T3N, T2T, T2E, T1K;
cannam@127 123 {
cannam@127 124 E T2j, TX, T1B, T1C;
cannam@127 125 {
cannam@127 126 E T1c, T1d, T1M, T1N;
cannam@127 127 {
cannam@127 128 E T2, T3, T7, T8;
cannam@127 129 T7 = Rp[WS(rs, 9)];
cannam@127 130 T8 = Rm[WS(rs, 9)];
cannam@127 131 T2 = Ip[WS(rs, 9)];
cannam@127 132 T2j = FMA(TW, Tg, TV);
cannam@127 133 TX = FNMS(TW, Tg, TV);
cannam@127 134 T13 = FMA(TW, Tb, T12);
cannam@127 135 T2m = FNMS(TW, Tb, T12);
cannam@127 136 T2q = FNMS(TW, T1, T2p);
cannam@127 137 T2u = FMA(TW, T6, T2t);
cannam@127 138 T2f = T7 + T8;
cannam@127 139 T9 = T7 - T8;
cannam@127 140 T3 = Im[WS(rs, 9)];
cannam@127 141 {
cannam@127 142 E Ty, Tz, T2b, T4;
cannam@127 143 Ty = Rp[WS(rs, 2)];
cannam@127 144 Tz = Rm[WS(rs, 2)];
cannam@127 145 T1c = Ip[0];
cannam@127 146 T2b = T2 - T3;
cannam@127 147 T4 = T2 + T3;
cannam@127 148 T2O = Ty - Tz;
cannam@127 149 TA = Ty + Tz;
cannam@127 150 T2c = T2a * T2b;
cannam@127 151 T4k = T2e * T2b;
cannam@127 152 T3i = T6 * T4;
cannam@127 153 T5 = T1 * T4;
cannam@127 154 T1d = Im[0];
cannam@127 155 T1M = Rp[WS(rs, 1)];
cannam@127 156 T1N = Rm[WS(rs, 1)];
cannam@127 157 }
cannam@127 158 }
cannam@127 159 {
cannam@127 160 E TO, TP, T1W, T1X;
cannam@127 161 TO = Rp[WS(rs, 7)];
cannam@127 162 T2Z = T1c - T1d;
cannam@127 163 T1e = T1c + T1d;
cannam@127 164 T2G = T1M + T1N;
cannam@127 165 T1O = T1M - T1N;
cannam@127 166 TP = Rm[WS(rs, 7)];
cannam@127 167 T1W = Rm[WS(rs, 6)];
cannam@127 168 T1X = Rp[WS(rs, 6)];
cannam@127 169 {
cannam@127 170 E Th, Ti, T1j, T1k;
cannam@127 171 Th = Rm[WS(rs, 4)];
cannam@127 172 T2W = TO - TP;
cannam@127 173 TQ = TO + TP;
cannam@127 174 T2C = T1X + T1W;
cannam@127 175 T1Y = T1W - T1X;
cannam@127 176 Ti = Rp[WS(rs, 4)];
cannam@127 177 T1j = Ip[WS(rs, 8)];
cannam@127 178 T1k = Im[WS(rs, 8)];
cannam@127 179 T3v = T1Q * T1Y;
cannam@127 180 T27 = Ti + Th;
cannam@127 181 Tj = Th - Ti;
cannam@127 182 T1l = T1j - T1k;
cannam@127 183 T2v = T1j + T1k;
cannam@127 184 T1B = Rp[WS(rs, 3)];
cannam@127 185 T3g = Tb * Tj;
cannam@127 186 T1m = T1i * T1l;
cannam@127 187 T1C = Rm[WS(rs, 3)];
cannam@127 188 }
cannam@127 189 }
cannam@127 190 }
cannam@127 191 {
cannam@127 192 E T18, T19, T1R, T1S;
cannam@127 193 {
cannam@127 194 E TY, TZ, T1v, T1w, T14, T15;
cannam@127 195 T1v = Ip[WS(rs, 3)];
cannam@127 196 T1w = Im[WS(rs, 3)];
cannam@127 197 TY = Ip[WS(rs, 5)];
cannam@127 198 T1D = T1B + T1C;
cannam@127 199 T2n = T1B - T1C;
cannam@127 200 T1x = T1v - T1w;
cannam@127 201 T2k = T1v + T1w;
cannam@127 202 T3E = T2j * T2n;
cannam@127 203 T4c = T1u * T1D;
cannam@127 204 T2l = T2j * T2k;
cannam@127 205 T1y = T1u * T1x;
cannam@127 206 TZ = Im[WS(rs, 5)];
cannam@127 207 T14 = Rp[WS(rs, 5)];
cannam@127 208 T15 = Rm[WS(rs, 5)];
cannam@127 209 T18 = Rm[0];
cannam@127 210 T10 = TY + TZ;
cannam@127 211 T31 = TY - TZ;
cannam@127 212 T16 = T14 - T15;
cannam@127 213 T34 = T14 + T15;
cannam@127 214 T32 = T30 * T31;
cannam@127 215 T11 = TX * T10;
cannam@127 216 T4B = T30 * T34;
cannam@127 217 T3p = TX * T16;
cannam@127 218 T19 = Rp[0];
cannam@127 219 T1R = Ip[WS(rs, 6)];
cannam@127 220 T1S = Im[WS(rs, 6)];
cannam@127 221 }
cannam@127 222 {
cannam@127 223 E T2r, T23, T1p, T1q;
cannam@127 224 {
cannam@127 225 E Tc, T1a, T2z, Td;
cannam@127 226 Tc = Ip[WS(rs, 4)];
cannam@127 227 T1a = T18 - T19;
cannam@127 228 T4A = T19 + T18;
cannam@127 229 T1T = T1R + T1S;
cannam@127 230 T2z = T1R - T1S;
cannam@127 231 Td = Im[WS(rs, 4)];
cannam@127 232 T3n = Tm * T1a;
cannam@127 233 T1b = Tp * T1a;
cannam@127 234 T2A = T2y * T2z;
cannam@127 235 T4q = T2B * T2z;
cannam@127 236 T1U = T1Q * T1T;
cannam@127 237 T23 = Tc - Td;
cannam@127 238 Te = Tc + Td;
cannam@127 239 }
cannam@127 240 T1p = Rp[WS(rs, 8)];
cannam@127 241 T1q = Rm[WS(rs, 8)];
cannam@127 242 Tf = Tb * Te;
cannam@127 243 T24 = T22 * T23;
cannam@127 244 T4i = T26 * T23;
cannam@127 245 T1r = T1p + T1q;
cannam@127 246 T2r = T1q - T1p;
cannam@127 247 {
cannam@127 248 E T2M, Tu, Ts, Tt;
cannam@127 249 Ts = Ip[WS(rs, 2)];
cannam@127 250 Tt = Im[WS(rs, 2)];
cannam@127 251 T4a = T1i * T1r;
cannam@127 252 T3C = T2u * T2r;
cannam@127 253 T2s = T2q * T2r;
cannam@127 254 T2M = Ts + Tt;
cannam@127 255 Tu = Ts - Tt;
cannam@127 256 {
cannam@127 257 E T2S, TK, TI, TJ, T1I, T1J;
cannam@127 258 TI = Ip[WS(rs, 7)];
cannam@127 259 TJ = Im[WS(rs, 7)];
cannam@127 260 T43 = Tx * Tu;
cannam@127 261 Tv = Tr * Tu;
cannam@127 262 T3L = TG * T2M;
cannam@127 263 T2N = TD * T2M;
cannam@127 264 T2S = TI + TJ;
cannam@127 265 TK = TI - TJ;
cannam@127 266 T1I = Ip[WS(rs, 1)];
cannam@127 267 T1J = Im[WS(rs, 1)];
cannam@127 268 T45 = TN * TK;
cannam@127 269 TL = TH * TK;
cannam@127 270 T3N = T2V * T2S;
cannam@127 271 T2T = T2R * T2S;
cannam@127 272 T2E = T1I - T1J;
cannam@127 273 T1K = T1I + T1J;
cannam@127 274 }
cannam@127 275 }
cannam@127 276 }
cannam@127 277 }
cannam@127 278 }
cannam@127 279 {
cannam@127 280 E T3x, T1L, T2F, T4s, T2P, T2X, T3M, T3O, T35, T4C;
cannam@127 281 T35 = FNMS(T33, T34, T32);
cannam@127 282 T4C = FMA(T33, T31, T4B);
cannam@127 283 T3x = Tq * T1K;
cannam@127 284 T1L = Tn * T1K;
cannam@127 285 T2F = TU * T2E;
cannam@127 286 T4s = TW * T2E;
cannam@127 287 T36 = T2Z - T35;
cannam@127 288 T3Q = T35 + T2Z;
cannam@127 289 T5f = T4A + T4C;
cannam@127 290 T4D = T4A - T4C;
cannam@127 291 T2P = FNMS(TG, T2O, T2N);
cannam@127 292 T2X = FNMS(T2V, T2W, T2T);
cannam@127 293 T3M = FMA(TD, T2O, T3L);
cannam@127 294 T3O = FMA(T2R, T2W, T3N);
cannam@127 295 {
cannam@127 296 E TB, T5j, Tl, T5i, T47, TR, T3h, T3j;
cannam@127 297 {
cannam@127 298 E Ta, Tk, T44, T46;
cannam@127 299 Ta = FNMS(T6, T9, T5);
cannam@127 300 T5g = T2P + T2X;
cannam@127 301 T2Y = T2P - T2X;
cannam@127 302 T4E = T3O - T3M;
cannam@127 303 T3P = T3M + T3O;
cannam@127 304 Tk = FMA(Tg, Tj, Tf);
cannam@127 305 T44 = FMA(Tr, TA, T43);
cannam@127 306 T46 = FMA(TH, TQ, T45);
cannam@127 307 TB = FNMS(Tx, TA, Tv);
cannam@127 308 T5j = Tk + Ta;
cannam@127 309 Tl = Ta - Tk;
cannam@127 310 T5i = T44 + T46;
cannam@127 311 T47 = T44 - T46;
cannam@127 312 TR = FNMS(TN, TQ, TL);
cannam@127 313 T3h = FNMS(Tg, Te, T3g);
cannam@127 314 T3j = FMA(T1, T9, T3i);
cannam@127 315 }
cannam@127 316 {
cannam@127 317 E T3l, T48, T3k, TS;
cannam@127 318 T5R = T5i - T5j;
cannam@127 319 T5k = T5i + T5j;
cannam@127 320 T3l = TB + TR;
cannam@127 321 TS = TB - TR;
cannam@127 322 T48 = T3h + T3j;
cannam@127 323 T3k = T3h - T3j;
cannam@127 324 T39 = TS + Tl;
cannam@127 325 TT = Tl - TS;
cannam@127 326 T3T = T3l + T3k;
cannam@127 327 T3m = T3k - T3l;
cannam@127 328 T49 = T47 + T48;
cannam@127 329 T4X = T47 - T48;
cannam@127 330 }
cannam@127 331 }
cannam@127 332 {
cannam@127 333 E T28, T5q, T20, T5p, T4m, T2g, T3w, T3y;
cannam@127 334 {
cannam@127 335 E T1P, T1Z, T4j, T4l;
cannam@127 336 T1P = FNMS(Tq, T1O, T1L);
cannam@127 337 T1Z = FMA(T1V, T1Y, T1U);
cannam@127 338 T4j = FMA(T22, T27, T4i);
cannam@127 339 T4l = FMA(T2a, T2f, T4k);
cannam@127 340 T28 = FNMS(T26, T27, T24);
cannam@127 341 T5q = T1Z + T1P;
cannam@127 342 T20 = T1P - T1Z;
cannam@127 343 T5p = T4j + T4l;
cannam@127 344 T4m = T4j - T4l;
cannam@127 345 T2g = FNMS(T2e, T2f, T2c);
cannam@127 346 T3w = FNMS(T1V, T1T, T3v);
cannam@127 347 T3y = FMA(Tn, T1O, T3x);
cannam@127 348 }
cannam@127 349 {
cannam@127 350 E T3A, T4n, T3z, T2h;
cannam@127 351 T5T = T5p - T5q;
cannam@127 352 T5r = T5p + T5q;
cannam@127 353 T3A = T28 + T2g;
cannam@127 354 T2h = T28 - T2g;
cannam@127 355 T4n = T3w + T3y;
cannam@127 356 T3z = T3w - T3y;
cannam@127 357 T3c = T2h + T20;
cannam@127 358 T2i = T20 - T2h;
cannam@127 359 T3W = T3A + T3z;
cannam@127 360 T3B = T3z - T3A;
cannam@127 361 T4o = T4m + T4n;
cannam@127 362 T4U = T4m - T4n;
cannam@127 363 }
cannam@127 364 }
cannam@127 365 {
cannam@127 366 E T2D, T5s, T2x, T5t, T4u, T2H, T3D, T3F;
cannam@127 367 {
cannam@127 368 E T2o, T2w, T4r, T4t;
cannam@127 369 T2o = FNMS(T2m, T2n, T2l);
cannam@127 370 T2w = FMA(T2u, T2v, T2s);
cannam@127 371 T4r = FMA(T2y, T2C, T4q);
cannam@127 372 T4t = FMA(TU, T2G, T4s);
cannam@127 373 T2D = FNMS(T2B, T2C, T2A);
cannam@127 374 T5s = T2w + T2o;
cannam@127 375 T2x = T2o - T2w;
cannam@127 376 T5t = T4r + T4t;
cannam@127 377 T4u = T4r - T4t;
cannam@127 378 T2H = FNMS(TW, T2G, T2F);
cannam@127 379 T3D = FNMS(T2q, T2v, T3C);
cannam@127 380 T3F = FMA(T2m, T2k, T3E);
cannam@127 381 }
cannam@127 382 {
cannam@127 383 E T3H, T4p, T3G, T2I;
cannam@127 384 T5U = T5t - T5s;
cannam@127 385 T5u = T5s + T5t;
cannam@127 386 T3H = T2D + T2H;
cannam@127 387 T2I = T2D - T2H;
cannam@127 388 T4p = T3D + T3F;
cannam@127 389 T3G = T3D - T3F;
cannam@127 390 T3d = T2x + T2I;
cannam@127 391 T2J = T2x - T2I;
cannam@127 392 T3X = T3G + T3H;
cannam@127 393 T3I = T3G - T3H;
cannam@127 394 T4v = T4p + T4u;
cannam@127 395 T4V = T4u - T4p;
cannam@127 396 }
cannam@127 397 }
cannam@127 398 {
cannam@127 399 E T1s, T5m, T1g, T5l, T4e, T1E, T3o, T3q;
cannam@127 400 {
cannam@127 401 E T17, T1f, T4b, T4d;
cannam@127 402 T17 = FNMS(T13, T16, T11);
cannam@127 403 T1f = FMA(Tm, T1e, T1b);
cannam@127 404 T4b = FMA(T1o, T1l, T4a);
cannam@127 405 T4d = FMA(T1A, T1x, T4c);
cannam@127 406 T1s = FNMS(T1o, T1r, T1m);
cannam@127 407 T5m = T17 + T1f;
cannam@127 408 T1g = T17 - T1f;
cannam@127 409 T5l = T4b + T4d;
cannam@127 410 T4e = T4b - T4d;
cannam@127 411 T1E = FNMS(T1A, T1D, T1y);
cannam@127 412 T3o = FNMS(Tp, T1e, T3n);
cannam@127 413 T3q = FMA(T13, T10, T3p);
cannam@127 414 }
cannam@127 415 {
cannam@127 416 E T3s, T4f, T3r, T1F;
cannam@127 417 T5Q = T5l - T5m;
cannam@127 418 T5n = T5l + T5m;
cannam@127 419 T3s = T1s + T1E;
cannam@127 420 T1F = T1s - T1E;
cannam@127 421 T4f = T3q + T3o;
cannam@127 422 T3r = T3o - T3q;
cannam@127 423 T3a = T1F + T1g;
cannam@127 424 T1G = T1g - T1F;
cannam@127 425 T3U = T3s + T3r;
cannam@127 426 T3t = T3r - T3s;
cannam@127 427 T4g = T4e + T4f;
cannam@127 428 T4Y = T4e - T4f;
cannam@127 429 }
cannam@127 430 }
cannam@127 431 }
cannam@127 432 }
cannam@127 433 {
cannam@127 434 E T4F, T4G, T4H, T4x, T4z, T41, T4O, T4Q, T40;
cannam@127 435 {
cannam@127 436 E T55, T38, T54, T50, T52, T53, T5e, T5c, T51, T4T;
cannam@127 437 {
cannam@127 438 E T4W, T37, T4Z, T1H, T5b, T5a, T2K, T2L, T4S, T4R;
cannam@127 439 T55 = T4U + T4V;
cannam@127 440 T4W = T4U - T4V;
cannam@127 441 T37 = T2Y + T36;
cannam@127 442 T38 = T36 - T2Y;
cannam@127 443 T54 = T4X + T4Y;
cannam@127 444 T4Z = T4X - T4Y;
cannam@127 445 T1H = TT + T1G;
cannam@127 446 T5b = T1G - TT;
cannam@127 447 T5a = T2J - T2i;
cannam@127 448 T2K = T2i + T2J;
cannam@127 449 T50 = FNMS(KP618033988, T4Z, T4W);
cannam@127 450 T52 = FMA(KP618033988, T4W, T4Z);
cannam@127 451 T2L = T1H + T2K;
cannam@127 452 T4S = T1H - T2K;
cannam@127 453 T53 = T4D - T4E;
cannam@127 454 T4F = T4D + T4E;
cannam@127 455 Im[WS(rs, 4)] = KP500000000 * (T2L - T37);
cannam@127 456 T4R = FMA(KP250000000, T2L, T37);
cannam@127 457 T5e = FMA(KP618033988, T5a, T5b);
cannam@127 458 T5c = FNMS(KP618033988, T5b, T5a);
cannam@127 459 T51 = FNMS(KP559016994, T4S, T4R);
cannam@127 460 T4T = FMA(KP559016994, T4S, T4R);
cannam@127 461 }
cannam@127 462 {
cannam@127 463 E T3b, T4M, T4N, T3e, T3f;
cannam@127 464 {
cannam@127 465 E T4h, T58, T57, T4w, T56, T5d, T59;
cannam@127 466 T4G = T49 + T4g;
cannam@127 467 T4h = T49 - T4g;
cannam@127 468 T58 = T54 - T55;
cannam@127 469 T56 = T54 + T55;
cannam@127 470 Ip[WS(rs, 7)] = KP500000000 * (FMA(KP951056516, T50, T4T));
cannam@127 471 Ip[WS(rs, 3)] = KP500000000 * (FNMS(KP951056516, T50, T4T));
cannam@127 472 Im[WS(rs, 8)] = -(KP500000000 * (FNMS(KP951056516, T52, T51)));
cannam@127 473 Im[0] = -(KP500000000 * (FMA(KP951056516, T52, T51)));
cannam@127 474 Rm[WS(rs, 4)] = KP500000000 * (T53 + T56);
cannam@127 475 T57 = FNMS(KP250000000, T56, T53);
cannam@127 476 T4w = T4o - T4v;
cannam@127 477 T4H = T4o + T4v;
cannam@127 478 T3b = T39 + T3a;
cannam@127 479 T4M = T39 - T3a;
cannam@127 480 T5d = FMA(KP559016994, T58, T57);
cannam@127 481 T59 = FNMS(KP559016994, T58, T57);
cannam@127 482 T4x = FMA(KP618033988, T4w, T4h);
cannam@127 483 T4z = FNMS(KP618033988, T4h, T4w);
cannam@127 484 Rp[WS(rs, 7)] = KP500000000 * (FNMS(KP951056516, T5c, T59));
cannam@127 485 Rp[WS(rs, 3)] = KP500000000 * (FMA(KP951056516, T5c, T59));
cannam@127 486 Rm[0] = KP500000000 * (FNMS(KP951056516, T5e, T5d));
cannam@127 487 Rm[WS(rs, 8)] = KP500000000 * (FMA(KP951056516, T5e, T5d));
cannam@127 488 T4N = T3c - T3d;
cannam@127 489 T3e = T3c + T3d;
cannam@127 490 }
cannam@127 491 T3f = T3b + T3e;
cannam@127 492 T41 = T3b - T3e;
cannam@127 493 T4O = FMA(KP618033988, T4N, T4M);
cannam@127 494 T4Q = FNMS(KP618033988, T4M, T4N);
cannam@127 495 Ip[WS(rs, 5)] = KP500000000 * (T38 + T3f);
cannam@127 496 T40 = FNMS(KP250000000, T3f, T38);
cannam@127 497 }
cannam@127 498 }
cannam@127 499 {
cannam@127 500 E T3S, T5Z, T68, T6a, T64, T62;
cannam@127 501 {
cannam@127 502 E T60, T61, T5Y, T5W, T3R, T67, T66, T3K, T5O, T4K, T4J, T5N, T5X, T5P;
cannam@127 503 {
cannam@127 504 E T5S, T5V, T4y, T42, T4I;
cannam@127 505 T60 = T5R + T5Q;
cannam@127 506 T5S = T5Q - T5R;
cannam@127 507 T5V = T5T - T5U;
cannam@127 508 T61 = T5T + T5U;
cannam@127 509 T4y = FNMS(KP559016994, T41, T40);
cannam@127 510 T42 = FMA(KP559016994, T41, T40);
cannam@127 511 T4I = T4G + T4H;
cannam@127 512 T4K = T4G - T4H;
cannam@127 513 Ip[WS(rs, 9)] = KP500000000 * (FMA(KP951056516, T4x, T42));
cannam@127 514 Ip[WS(rs, 1)] = KP500000000 * (FNMS(KP951056516, T4x, T42));
cannam@127 515 Im[WS(rs, 6)] = -(KP500000000 * (FNMS(KP951056516, T4z, T4y)));
cannam@127 516 Im[WS(rs, 2)] = -(KP500000000 * (FMA(KP951056516, T4z, T4y)));
cannam@127 517 Rp[WS(rs, 5)] = KP500000000 * (T4F + T4I);
cannam@127 518 T4J = FNMS(KP250000000, T4I, T4F);
cannam@127 519 T5Y = FMA(KP618033988, T5S, T5V);
cannam@127 520 T5W = FNMS(KP618033988, T5V, T5S);
cannam@127 521 }
cannam@127 522 T3S = T3Q - T3P;
cannam@127 523 T3R = T3P + T3Q;
cannam@127 524 {
cannam@127 525 E T4L, T4P, T3u, T3J;
cannam@127 526 T4L = FMA(KP559016994, T4K, T4J);
cannam@127 527 T4P = FNMS(KP559016994, T4K, T4J);
cannam@127 528 T3u = T3m + T3t;
cannam@127 529 T67 = T3t - T3m;
cannam@127 530 T66 = T3I - T3B;
cannam@127 531 T3J = T3B + T3I;
cannam@127 532 Rp[WS(rs, 9)] = KP500000000 * (FNMS(KP951056516, T4O, T4L));
cannam@127 533 Rp[WS(rs, 1)] = KP500000000 * (FMA(KP951056516, T4O, T4L));
cannam@127 534 Rm[WS(rs, 2)] = KP500000000 * (FNMS(KP951056516, T4Q, T4P));
cannam@127 535 Rm[WS(rs, 6)] = KP500000000 * (FMA(KP951056516, T4Q, T4P));
cannam@127 536 T3K = T3u + T3J;
cannam@127 537 T5O = T3J - T3u;
cannam@127 538 }
cannam@127 539 Im[WS(rs, 9)] = KP500000000 * (T3K - T3R);
cannam@127 540 T5N = FMA(KP250000000, T3K, T3R);
cannam@127 541 T5Z = T5f - T5g;
cannam@127 542 T5h = T5f + T5g;
cannam@127 543 T68 = FNMS(KP618033988, T67, T66);
cannam@127 544 T6a = FMA(KP618033988, T66, T67);
cannam@127 545 T5X = FNMS(KP559016994, T5O, T5N);
cannam@127 546 T5P = FMA(KP559016994, T5O, T5N);
cannam@127 547 Im[WS(rs, 5)] = -(KP500000000 * (FNMS(KP951056516, T5W, T5P)));
cannam@127 548 Ip[WS(rs, 6)] = KP500000000 * (FMA(KP951056516, T5W, T5P));
cannam@127 549 Im[WS(rs, 1)] = -(KP500000000 * (FNMS(KP951056516, T5Y, T5X)));
cannam@127 550 Ip[WS(rs, 2)] = KP500000000 * (FMA(KP951056516, T5Y, T5X));
cannam@127 551 T64 = T60 - T61;
cannam@127 552 T62 = T60 + T61;
cannam@127 553 }
cannam@127 554 {
cannam@127 555 E T5o, T5v, T5M, T5K, T5A, T5B, T3Z, T5G, T5I, T5J, T63, T5F, T5L, T5H;
cannam@127 556 T5o = T5k + T5n;
cannam@127 557 T5I = T5k - T5n;
cannam@127 558 T5J = T5u - T5r;
cannam@127 559 T5v = T5r + T5u;
cannam@127 560 Rm[WS(rs, 9)] = KP500000000 * (T5Z + T62);
cannam@127 561 T63 = FNMS(KP250000000, T62, T5Z);
cannam@127 562 T5M = FMA(KP618033988, T5I, T5J);
cannam@127 563 T5K = FNMS(KP618033988, T5J, T5I);
cannam@127 564 {
cannam@127 565 E T65, T69, T3V, T3Y;
cannam@127 566 T65 = FNMS(KP559016994, T64, T63);
cannam@127 567 T69 = FMA(KP559016994, T64, T63);
cannam@127 568 T3V = T3T + T3U;
cannam@127 569 T5A = T3T - T3U;
cannam@127 570 T5B = T3W - T3X;
cannam@127 571 T3Y = T3W + T3X;
cannam@127 572 Rm[WS(rs, 1)] = KP500000000 * (FMA(KP951056516, T68, T65));
cannam@127 573 Rp[WS(rs, 2)] = KP500000000 * (FNMS(KP951056516, T68, T65));
cannam@127 574 Rm[WS(rs, 5)] = KP500000000 * (FNMS(KP951056516, T6a, T69));
cannam@127 575 Rp[WS(rs, 6)] = KP500000000 * (FMA(KP951056516, T6a, T69));
cannam@127 576 T3Z = T3V + T3Y;
cannam@127 577 T5G = T3V - T3Y;
cannam@127 578 }
cannam@127 579 Ip[0] = KP500000000 * (T3S + T3Z);
cannam@127 580 T5F = FNMS(KP250000000, T3Z, T3S);
cannam@127 581 T5C = FMA(KP618033988, T5B, T5A);
cannam@127 582 T5E = FNMS(KP618033988, T5A, T5B);
cannam@127 583 T5L = FNMS(KP559016994, T5G, T5F);
cannam@127 584 T5H = FMA(KP559016994, T5G, T5F);
cannam@127 585 Im[WS(rs, 3)] = -(KP500000000 * (FNMS(KP951056516, T5K, T5H)));
cannam@127 586 Ip[WS(rs, 4)] = KP500000000 * (FMA(KP951056516, T5K, T5H));
cannam@127 587 Im[WS(rs, 7)] = -(KP500000000 * (FNMS(KP951056516, T5M, T5L)));
cannam@127 588 Ip[WS(rs, 8)] = KP500000000 * (FMA(KP951056516, T5M, T5L));
cannam@127 589 T5y = T5o - T5v;
cannam@127 590 T5w = T5o + T5v;
cannam@127 591 }
cannam@127 592 }
cannam@127 593 }
cannam@127 594 }
cannam@127 595 }
cannam@127 596 Rp[0] = KP500000000 * (T5h + T5w);
cannam@127 597 T5x = FNMS(KP250000000, T5w, T5h);
cannam@127 598 T5D = FNMS(KP559016994, T5y, T5x);
cannam@127 599 T5z = FMA(KP559016994, T5y, T5x);
cannam@127 600 Rm[WS(rs, 3)] = KP500000000 * (FMA(KP951056516, T5C, T5z));
cannam@127 601 Rp[WS(rs, 4)] = KP500000000 * (FNMS(KP951056516, T5C, T5z));
cannam@127 602 Rm[WS(rs, 7)] = KP500000000 * (FNMS(KP951056516, T5E, T5D));
cannam@127 603 Rp[WS(rs, 8)] = KP500000000 * (FMA(KP951056516, T5E, T5D));
cannam@127 604 }
cannam@127 605 }
cannam@127 606 }
cannam@127 607
cannam@127 608 static const tw_instr twinstr[] = {
cannam@127 609 {TW_CEXP, 1, 1},
cannam@127 610 {TW_CEXP, 1, 3},
cannam@127 611 {TW_CEXP, 1, 9},
cannam@127 612 {TW_CEXP, 1, 19},
cannam@127 613 {TW_NEXT, 1, 0}
cannam@127 614 };
cannam@127 615
cannam@127 616 static const hc2c_desc desc = { 20, "hc2cfdft2_20", twinstr, &GENUS, {176, 98, 140, 0} };
cannam@127 617
cannam@127 618 void X(codelet_hc2cfdft2_20) (planner *p) {
cannam@127 619 X(khc2c_register) (p, hc2cfdft2_20, &desc, HC2C_VIA_DFT);
cannam@127 620 }
cannam@127 621 #else /* HAVE_FMA */
cannam@127 622
cannam@127 623 /* Generated by: ../../../genfft/gen_hc2cdft.native -compact -variables 4 -pipeline-latency 4 -twiddle-log3 -precompute-twiddles -n 20 -dit -name hc2cfdft2_20 -include hc2cf.h */
cannam@127 624
cannam@127 625 /*
cannam@127 626 * This function contains 316 FP additions, 180 FP multiplications,
cannam@127 627 * (or, 244 additions, 108 multiplications, 72 fused multiply/add),
cannam@127 628 * 134 stack variables, 5 constants, and 80 memory accesses
cannam@127 629 */
cannam@127 630 #include "hc2cf.h"
cannam@127 631
cannam@127 632 static void hc2cfdft2_20(R *Rp, R *Ip, R *Rm, R *Im, const R *W, stride rs, INT mb, INT me, INT ms)
cannam@127 633 {
cannam@127 634 DK(KP125000000, +0.125000000000000000000000000000000000000000000);
cannam@127 635 DK(KP500000000, +0.500000000000000000000000000000000000000000000);
cannam@127 636 DK(KP279508497, +0.279508497187473712051146708591409529430077295);
cannam@127 637 DK(KP293892626, +0.293892626146236564584352977319536384298826219);
cannam@127 638 DK(KP475528258, +0.475528258147576786058219666689691071702849317);
cannam@127 639 {
cannam@127 640 INT m;
cannam@127 641 for (m = mb, W = W + ((mb - 1) * 8); m < me; m = m + 1, Rp = Rp + ms, Ip = Ip + ms, Rm = Rm - ms, Im = Im - ms, W = W + 8, MAKE_VOLATILE_STRIDE(80, rs)) {
cannam@127 642 E T4, T7, Tm, To, Tq, Tu, T1I, T1G, T8, T5, Ta, T1u, T2u, Tg, T2s;
cannam@127 643 E T21, T1A, T1Z, T1O, T2I, T1K, T2G, Tw, TC, T2a, T2e, TH, TI, TJ, TX;
cannam@127 644 E T2D, TN, T2B, T26, T1n, TZ, T24, T1j;
cannam@127 645 {
cannam@127 646 E T9, T1y, Te, T1t, T6, T1z, Tf, T1s;
cannam@127 647 {
cannam@127 648 E Tn, Tt, Tp, Ts;
cannam@127 649 T4 = W[0];
cannam@127 650 T7 = W[1];
cannam@127 651 Tm = W[2];
cannam@127 652 To = W[3];
cannam@127 653 Tn = T4 * Tm;
cannam@127 654 Tt = T7 * Tm;
cannam@127 655 Tp = T7 * To;
cannam@127 656 Ts = T4 * To;
cannam@127 657 Tq = Tn - Tp;
cannam@127 658 Tu = Ts + Tt;
cannam@127 659 T1I = Ts - Tt;
cannam@127 660 T1G = Tn + Tp;
cannam@127 661 T8 = W[5];
cannam@127 662 T9 = T7 * T8;
cannam@127 663 T1y = Tm * T8;
cannam@127 664 Te = T4 * T8;
cannam@127 665 T1t = To * T8;
cannam@127 666 T5 = W[4];
cannam@127 667 T6 = T4 * T5;
cannam@127 668 T1z = To * T5;
cannam@127 669 Tf = T7 * T5;
cannam@127 670 T1s = Tm * T5;
cannam@127 671 }
cannam@127 672 Ta = T6 - T9;
cannam@127 673 T1u = T1s + T1t;
cannam@127 674 T2u = T1y + T1z;
cannam@127 675 Tg = Te + Tf;
cannam@127 676 T2s = T1s - T1t;
cannam@127 677 T21 = Te - Tf;
cannam@127 678 T1A = T1y - T1z;
cannam@127 679 T1Z = T6 + T9;
cannam@127 680 {
cannam@127 681 E T1M, T1N, T1H, T1J;
cannam@127 682 T1M = T1G * T8;
cannam@127 683 T1N = T1I * T5;
cannam@127 684 T1O = T1M + T1N;
cannam@127 685 T2I = T1M - T1N;
cannam@127 686 T1H = T1G * T5;
cannam@127 687 T1J = T1I * T8;
cannam@127 688 T1K = T1H - T1J;
cannam@127 689 T2G = T1H + T1J;
cannam@127 690 {
cannam@127 691 E Tr, Tv, TA, TB;
cannam@127 692 Tr = Tq * T5;
cannam@127 693 Tv = Tu * T8;
cannam@127 694 Tw = Tr + Tv;
cannam@127 695 TA = Tq * T8;
cannam@127 696 TB = Tu * T5;
cannam@127 697 TC = TA - TB;
cannam@127 698 T2a = Tr - Tv;
cannam@127 699 T2e = TA + TB;
cannam@127 700 TH = W[6];
cannam@127 701 TI = W[7];
cannam@127 702 TJ = FMA(Tq, TH, Tu * TI);
cannam@127 703 TX = FMA(Tw, TH, TC * TI);
cannam@127 704 T2D = FMA(T1G, TH, T1I * TI);
cannam@127 705 TN = FNMS(Tu, TH, Tq * TI);
cannam@127 706 T2B = FNMS(T1I, TH, T1G * TI);
cannam@127 707 T26 = FNMS(T7, TH, T4 * TI);
cannam@127 708 T1n = FNMS(To, TH, Tm * TI);
cannam@127 709 TZ = FNMS(TC, TH, Tw * TI);
cannam@127 710 T24 = FMA(T4, TH, T7 * TI);
cannam@127 711 T1j = FMA(Tm, TH, To * TI);
cannam@127 712 }
cannam@127 713 }
cannam@127 714 }
cannam@127 715 {
cannam@127 716 E Tl, T3n, T1i, T2Q, T47, T50, T4S, T5i, T2M, T2T, T4I, T5f, T4L, T5e, T4P;
cannam@127 717 E T5h, T2r, T2S, T1X, T2P, T31, T3u, T36, T3t, T3E, T4l, T3U, T4j, T3h, T3r;
cannam@127 718 E T3J, T4m, T3c, T3q, T3P, T4i, TS, T51, T3m, T48;
cannam@127 719 {
cannam@127 720 E T3, T45, T1V, T3f, Tz, TF, TW, T3A, TM, TQ, T11, T3B, Td, Tj, T1Q;
cannam@127 721 E T3e, T19, T3L, T23, T39, T2p, T3S, T2z, T34, T1E, T3G, T2K, T2Y, T1g, T3M;
cannam@127 722 E T28, T3a, T2i, T3R, T2w, T33, T1r, T3F, T2F, T2X, T4N, T4O;
cannam@127 723 {
cannam@127 724 E T1, T2, T1R, T1S, T1T, T1U;
cannam@127 725 T1 = Ip[0];
cannam@127 726 T2 = Im[0];
cannam@127 727 T1R = T1 + T2;
cannam@127 728 T1S = Rp[0];
cannam@127 729 T1T = Rm[0];
cannam@127 730 T1U = T1S - T1T;
cannam@127 731 T3 = T1 - T2;
cannam@127 732 T45 = T1S + T1T;
cannam@127 733 T1V = FNMS(T7, T1U, T4 * T1R);
cannam@127 734 T3f = FMA(T4, T1U, T7 * T1R);
cannam@127 735 }
cannam@127 736 {
cannam@127 737 E Tx, Ty, TU, TD, TE, TV;
cannam@127 738 Tx = Ip[WS(rs, 2)];
cannam@127 739 Ty = Im[WS(rs, 2)];
cannam@127 740 TU = Tx - Ty;
cannam@127 741 TD = Rp[WS(rs, 2)];
cannam@127 742 TE = Rm[WS(rs, 2)];
cannam@127 743 TV = TD + TE;
cannam@127 744 Tz = Tx + Ty;
cannam@127 745 TF = TD - TE;
cannam@127 746 TW = FNMS(Tu, TV, Tq * TU);
cannam@127 747 T3A = FMA(Tu, TU, Tq * TV);
cannam@127 748 }
cannam@127 749 {
cannam@127 750 E TK, TL, TY, TO, TP, T10;
cannam@127 751 TK = Ip[WS(rs, 7)];
cannam@127 752 TL = Im[WS(rs, 7)];
cannam@127 753 TY = TK - TL;
cannam@127 754 TO = Rp[WS(rs, 7)];
cannam@127 755 TP = Rm[WS(rs, 7)];
cannam@127 756 T10 = TO + TP;
cannam@127 757 TM = TK + TL;
cannam@127 758 TQ = TO - TP;
cannam@127 759 T11 = FNMS(TZ, T10, TX * TY);
cannam@127 760 T3B = FMA(TZ, TY, TX * T10);
cannam@127 761 }
cannam@127 762 {
cannam@127 763 E Tb, Tc, T1L, Th, Ti, T1P;
cannam@127 764 Tb = Ip[WS(rs, 5)];
cannam@127 765 Tc = Im[WS(rs, 5)];
cannam@127 766 T1L = Tb + Tc;
cannam@127 767 Th = Rp[WS(rs, 5)];
cannam@127 768 Ti = Rm[WS(rs, 5)];
cannam@127 769 T1P = Th - Ti;
cannam@127 770 Td = Tb - Tc;
cannam@127 771 Tj = Th + Ti;
cannam@127 772 T1Q = FNMS(T1O, T1P, T1K * T1L);
cannam@127 773 T3e = FMA(T1K, T1P, T1O * T1L);
cannam@127 774 }
cannam@127 775 {
cannam@127 776 E T15, T20, T18, T22;
cannam@127 777 {
cannam@127 778 E T13, T14, T16, T17;
cannam@127 779 T13 = Ip[WS(rs, 4)];
cannam@127 780 T14 = Im[WS(rs, 4)];
cannam@127 781 T15 = T13 + T14;
cannam@127 782 T20 = T13 - T14;
cannam@127 783 T16 = Rp[WS(rs, 4)];
cannam@127 784 T17 = Rm[WS(rs, 4)];
cannam@127 785 T18 = T16 - T17;
cannam@127 786 T22 = T16 + T17;
cannam@127 787 }
cannam@127 788 T19 = FNMS(T8, T18, T5 * T15);
cannam@127 789 T3L = FMA(T21, T20, T1Z * T22);
cannam@127 790 T23 = FNMS(T21, T22, T1Z * T20);
cannam@127 791 T39 = FMA(T8, T15, T5 * T18);
cannam@127 792 }
cannam@127 793 {
cannam@127 794 E T2l, T2x, T2o, T2y;
cannam@127 795 {
cannam@127 796 E T2j, T2k, T2m, T2n;
cannam@127 797 T2j = Ip[WS(rs, 1)];
cannam@127 798 T2k = Im[WS(rs, 1)];
cannam@127 799 T2l = T2j + T2k;
cannam@127 800 T2x = T2j - T2k;
cannam@127 801 T2m = Rp[WS(rs, 1)];
cannam@127 802 T2n = Rm[WS(rs, 1)];
cannam@127 803 T2o = T2m - T2n;
cannam@127 804 T2y = T2m + T2n;
cannam@127 805 }
cannam@127 806 T2p = FNMS(To, T2o, Tm * T2l);
cannam@127 807 T3S = FMA(T1I, T2x, T1G * T2y);
cannam@127 808 T2z = FNMS(T1I, T2y, T1G * T2x);
cannam@127 809 T34 = FMA(To, T2l, Tm * T2o);
cannam@127 810 }
cannam@127 811 {
cannam@127 812 E T1x, T2H, T1D, T2J;
cannam@127 813 {
cannam@127 814 E T1v, T1w, T1B, T1C;
cannam@127 815 T1v = Ip[WS(rs, 3)];
cannam@127 816 T1w = Im[WS(rs, 3)];
cannam@127 817 T1x = T1v - T1w;
cannam@127 818 T2H = T1v + T1w;
cannam@127 819 T1B = Rp[WS(rs, 3)];
cannam@127 820 T1C = Rm[WS(rs, 3)];
cannam@127 821 T1D = T1B + T1C;
cannam@127 822 T2J = T1B - T1C;
cannam@127 823 }
cannam@127 824 T1E = FNMS(T1A, T1D, T1u * T1x);
cannam@127 825 T3G = FMA(T1u, T1D, T1A * T1x);
cannam@127 826 T2K = FNMS(T2I, T2J, T2G * T2H);
cannam@127 827 T2Y = FMA(T2G, T2J, T2I * T2H);
cannam@127 828 }
cannam@127 829 {
cannam@127 830 E T1c, T25, T1f, T27;
cannam@127 831 {
cannam@127 832 E T1a, T1b, T1d, T1e;
cannam@127 833 T1a = Ip[WS(rs, 9)];
cannam@127 834 T1b = Im[WS(rs, 9)];
cannam@127 835 T1c = T1a + T1b;
cannam@127 836 T25 = T1a - T1b;
cannam@127 837 T1d = Rp[WS(rs, 9)];
cannam@127 838 T1e = Rm[WS(rs, 9)];
cannam@127 839 T1f = T1d - T1e;
cannam@127 840 T27 = T1d + T1e;
cannam@127 841 }
cannam@127 842 T1g = FNMS(TI, T1f, TH * T1c);
cannam@127 843 T3M = FMA(T26, T25, T24 * T27);
cannam@127 844 T28 = FNMS(T26, T27, T24 * T25);
cannam@127 845 T3a = FMA(TI, T1c, TH * T1f);
cannam@127 846 }
cannam@127 847 {
cannam@127 848 E T2d, T2t, T2h, T2v;
cannam@127 849 {
cannam@127 850 E T2b, T2c, T2f, T2g;
cannam@127 851 T2b = Ip[WS(rs, 6)];
cannam@127 852 T2c = Im[WS(rs, 6)];
cannam@127 853 T2d = T2b + T2c;
cannam@127 854 T2t = T2b - T2c;
cannam@127 855 T2f = Rp[WS(rs, 6)];
cannam@127 856 T2g = Rm[WS(rs, 6)];
cannam@127 857 T2h = T2f - T2g;
cannam@127 858 T2v = T2f + T2g;
cannam@127 859 }
cannam@127 860 T2i = FNMS(T2e, T2h, T2a * T2d);
cannam@127 861 T3R = FMA(T2u, T2t, T2s * T2v);
cannam@127 862 T2w = FNMS(T2u, T2v, T2s * T2t);
cannam@127 863 T33 = FMA(T2e, T2d, T2a * T2h);
cannam@127 864 }
cannam@127 865 {
cannam@127 866 E T1m, T2E, T1q, T2C;
cannam@127 867 {
cannam@127 868 E T1k, T1l, T1o, T1p;
cannam@127 869 T1k = Ip[WS(rs, 8)];
cannam@127 870 T1l = Im[WS(rs, 8)];
cannam@127 871 T1m = T1k - T1l;
cannam@127 872 T2E = T1k + T1l;
cannam@127 873 T1o = Rp[WS(rs, 8)];
cannam@127 874 T1p = Rm[WS(rs, 8)];
cannam@127 875 T1q = T1o + T1p;
cannam@127 876 T2C = T1p - T1o;
cannam@127 877 }
cannam@127 878 T1r = FNMS(T1n, T1q, T1j * T1m);
cannam@127 879 T3F = FMA(T1j, T1q, T1n * T1m);
cannam@127 880 T2F = FMA(T2B, T2C, T2D * T2E);
cannam@127 881 T2X = FNMS(T2B, T2E, T2D * T2C);
cannam@127 882 }
cannam@127 883 {
cannam@127 884 E Tk, T12, T1h, T46;
cannam@127 885 Tk = FNMS(Tg, Tj, Ta * Td);
cannam@127 886 Tl = T3 - Tk;
cannam@127 887 T3n = Tk + T3;
cannam@127 888 T12 = TW - T11;
cannam@127 889 T1h = T19 - T1g;
cannam@127 890 T1i = T12 - T1h;
cannam@127 891 T2Q = T12 + T1h;
cannam@127 892 T46 = FMA(Ta, Tj, Tg * Td);
cannam@127 893 T47 = T45 - T46;
cannam@127 894 T50 = T45 + T46;
cannam@127 895 {
cannam@127 896 E T4Q, T4R, T2A, T2L;
cannam@127 897 T4Q = T2F + T2K;
cannam@127 898 T4R = T3R + T3S;
cannam@127 899 T4S = T4Q + T4R;
cannam@127 900 T5i = T4R - T4Q;
cannam@127 901 T2A = T2w - T2z;
cannam@127 902 T2L = T2F - T2K;
cannam@127 903 T2M = T2A - T2L;
cannam@127 904 T2T = T2L + T2A;
cannam@127 905 }
cannam@127 906 }
cannam@127 907 {
cannam@127 908 E T4G, T4H, T4J, T4K;
cannam@127 909 T4G = T3A + T3B;
cannam@127 910 T4H = T19 + T1g;
cannam@127 911 T4I = T4G + T4H;
cannam@127 912 T5f = T4G - T4H;
cannam@127 913 T4J = T3F + T3G;
cannam@127 914 T4K = T1Q + T1V;
cannam@127 915 T4L = T4J + T4K;
cannam@127 916 T5e = T4J - T4K;
cannam@127 917 }
cannam@127 918 T4N = T3L + T3M;
cannam@127 919 T4O = T2i + T2p;
cannam@127 920 T4P = T4N + T4O;
cannam@127 921 T5h = T4N - T4O;
cannam@127 922 {
cannam@127 923 E T29, T2q, T1F, T1W;
cannam@127 924 T29 = T23 - T28;
cannam@127 925 T2q = T2i - T2p;
cannam@127 926 T2r = T29 - T2q;
cannam@127 927 T2S = T29 + T2q;
cannam@127 928 T1F = T1r - T1E;
cannam@127 929 T1W = T1Q - T1V;
cannam@127 930 T1X = T1F + T1W;
cannam@127 931 T2P = T1W - T1F;
cannam@127 932 }
cannam@127 933 {
cannam@127 934 E T3C, T3D, T3N, T3O;
cannam@127 935 {
cannam@127 936 E T2Z, T30, T32, T35;
cannam@127 937 T2Z = T2X - T2Y;
cannam@127 938 T30 = T2w + T2z;
cannam@127 939 T31 = T2Z - T30;
cannam@127 940 T3u = T2Z + T30;
cannam@127 941 T32 = T23 + T28;
cannam@127 942 T35 = T33 + T34;
cannam@127 943 T36 = T32 + T35;
cannam@127 944 T3t = T32 - T35;
cannam@127 945 }
cannam@127 946 T3C = T3A - T3B;
cannam@127 947 T3D = T3a - T39;
cannam@127 948 T3E = T3C + T3D;
cannam@127 949 T4l = T3C - T3D;
cannam@127 950 {
cannam@127 951 E T3Q, T3T, T3d, T3g;
cannam@127 952 T3Q = T2X + T2Y;
cannam@127 953 T3T = T3R - T3S;
cannam@127 954 T3U = T3Q + T3T;
cannam@127 955 T4j = T3T - T3Q;
cannam@127 956 T3d = T1r + T1E;
cannam@127 957 T3g = T3e + T3f;
cannam@127 958 T3h = T3d + T3g;
cannam@127 959 T3r = T3d - T3g;
cannam@127 960 }
cannam@127 961 {
cannam@127 962 E T3H, T3I, T38, T3b;
cannam@127 963 T3H = T3F - T3G;
cannam@127 964 T3I = T3e - T3f;
cannam@127 965 T3J = T3H + T3I;
cannam@127 966 T4m = T3H - T3I;
cannam@127 967 T38 = TW + T11;
cannam@127 968 T3b = T39 + T3a;
cannam@127 969 T3c = T38 + T3b;
cannam@127 970 T3q = T38 - T3b;
cannam@127 971 }
cannam@127 972 T3N = T3L - T3M;
cannam@127 973 T3O = T34 - T33;
cannam@127 974 T3P = T3N + T3O;
cannam@127 975 T4i = T3N - T3O;
cannam@127 976 {
cannam@127 977 E TG, TR, T3k, T3l;
cannam@127 978 TG = FNMS(TC, TF, Tw * Tz);
cannam@127 979 TR = FNMS(TN, TQ, TJ * TM);
cannam@127 980 TS = TG - TR;
cannam@127 981 T51 = TG + TR;
cannam@127 982 T3k = FMA(TC, Tz, Tw * TF);
cannam@127 983 T3l = FMA(TN, TM, TJ * TQ);
cannam@127 984 T3m = T3k + T3l;
cannam@127 985 T48 = T3l - T3k;
cannam@127 986 }
cannam@127 987 }
cannam@127 988 }
cannam@127 989 {
cannam@127 990 E T3W, T3Y, TT, T2O, T3x, T3y, T3X, T3z;
cannam@127 991 {
cannam@127 992 E T3K, T3V, T1Y, T2N;
cannam@127 993 T3K = T3E - T3J;
cannam@127 994 T3V = T3P - T3U;
cannam@127 995 T3W = FMA(KP475528258, T3K, KP293892626 * T3V);
cannam@127 996 T3Y = FNMS(KP293892626, T3K, KP475528258 * T3V);
cannam@127 997 TT = Tl - TS;
cannam@127 998 T1Y = T1i + T1X;
cannam@127 999 T2N = T2r + T2M;
cannam@127 1000 T2O = T1Y + T2N;
cannam@127 1001 T3x = KP279508497 * (T1Y - T2N);
cannam@127 1002 T3y = FNMS(KP125000000, T2O, KP500000000 * TT);
cannam@127 1003 }
cannam@127 1004 Ip[WS(rs, 5)] = KP500000000 * (TT + T2O);
cannam@127 1005 T3X = T3x - T3y;
cannam@127 1006 Im[WS(rs, 2)] = T3X - T3Y;
cannam@127 1007 Im[WS(rs, 6)] = T3X + T3Y;
cannam@127 1008 T3z = T3x + T3y;
cannam@127 1009 Ip[WS(rs, 1)] = T3z - T3W;
cannam@127 1010 Ip[WS(rs, 9)] = T3z + T3W;
cannam@127 1011 }
cannam@127 1012 {
cannam@127 1013 E T41, T4d, T49, T4a, T44, T4b, T4e, T4c;
cannam@127 1014 {
cannam@127 1015 E T3Z, T40, T42, T43;
cannam@127 1016 T3Z = T1i - T1X;
cannam@127 1017 T40 = T2r - T2M;
cannam@127 1018 T41 = FMA(KP475528258, T3Z, KP293892626 * T40);
cannam@127 1019 T4d = FNMS(KP293892626, T3Z, KP475528258 * T40);
cannam@127 1020 T49 = T47 + T48;
cannam@127 1021 T42 = T3E + T3J;
cannam@127 1022 T43 = T3P + T3U;
cannam@127 1023 T4a = T42 + T43;
cannam@127 1024 T44 = KP279508497 * (T42 - T43);
cannam@127 1025 T4b = FNMS(KP125000000, T4a, KP500000000 * T49);
cannam@127 1026 }
cannam@127 1027 Rp[WS(rs, 5)] = KP500000000 * (T49 + T4a);
cannam@127 1028 T4e = T4b - T44;
cannam@127 1029 Rm[WS(rs, 6)] = T4d + T4e;
cannam@127 1030 Rm[WS(rs, 2)] = T4e - T4d;
cannam@127 1031 T4c = T44 + T4b;
cannam@127 1032 Rp[WS(rs, 1)] = T41 + T4c;
cannam@127 1033 Rp[WS(rs, 9)] = T4c - T41;
cannam@127 1034 }
cannam@127 1035 {
cannam@127 1036 E T4o, T4q, T2W, T2V, T4f, T4g, T4p, T4h;
cannam@127 1037 {
cannam@127 1038 E T4k, T4n, T2R, T2U;
cannam@127 1039 T4k = T4i - T4j;
cannam@127 1040 T4n = T4l - T4m;
cannam@127 1041 T4o = FNMS(KP293892626, T4n, KP475528258 * T4k);
cannam@127 1042 T4q = FMA(KP475528258, T4n, KP293892626 * T4k);
cannam@127 1043 T2W = TS + Tl;
cannam@127 1044 T2R = T2P - T2Q;
cannam@127 1045 T2U = T2S + T2T;
cannam@127 1046 T2V = T2R - T2U;
cannam@127 1047 T4f = FMA(KP500000000, T2W, KP125000000 * T2V);
cannam@127 1048 T4g = KP279508497 * (T2R + T2U);
cannam@127 1049 }
cannam@127 1050 Im[WS(rs, 4)] = KP500000000 * (T2V - T2W);
cannam@127 1051 T4p = T4g - T4f;
cannam@127 1052 Im[0] = T4p - T4q;
cannam@127 1053 Im[WS(rs, 8)] = T4p + T4q;
cannam@127 1054 T4h = T4f + T4g;
cannam@127 1055 Ip[WS(rs, 3)] = T4h - T4o;
cannam@127 1056 Ip[WS(rs, 7)] = T4h + T4o;
cannam@127 1057 }
cannam@127 1058 {
cannam@127 1059 E T4t, T4B, T4u, T4x, T4y, T4z, T4C, T4A;
cannam@127 1060 {
cannam@127 1061 E T4r, T4s, T4v, T4w;
cannam@127 1062 T4r = T2S - T2T;
cannam@127 1063 T4s = T2Q + T2P;
cannam@127 1064 T4t = FNMS(KP293892626, T4s, KP475528258 * T4r);
cannam@127 1065 T4B = FMA(KP475528258, T4s, KP293892626 * T4r);
cannam@127 1066 T4u = T47 - T48;
cannam@127 1067 T4v = T4l + T4m;
cannam@127 1068 T4w = T4i + T4j;
cannam@127 1069 T4x = T4v + T4w;
cannam@127 1070 T4y = FNMS(KP125000000, T4x, KP500000000 * T4u);
cannam@127 1071 T4z = KP279508497 * (T4v - T4w);
cannam@127 1072 }
cannam@127 1073 Rm[WS(rs, 4)] = KP500000000 * (T4u + T4x);
cannam@127 1074 T4C = T4z + T4y;
cannam@127 1075 Rm[WS(rs, 8)] = T4B + T4C;
cannam@127 1076 Rm[0] = T4C - T4B;
cannam@127 1077 T4A = T4y - T4z;
cannam@127 1078 Rp[WS(rs, 3)] = T4t + T4A;
cannam@127 1079 Rp[WS(rs, 7)] = T4A - T4t;
cannam@127 1080 }
cannam@127 1081 {
cannam@127 1082 E T5k, T5m, T3o, T3j, T5b, T5c, T5l, T5d;
cannam@127 1083 {
cannam@127 1084 E T5g, T5j, T37, T3i;
cannam@127 1085 T5g = T5e - T5f;
cannam@127 1086 T5j = T5h - T5i;
cannam@127 1087 T5k = FNMS(KP293892626, T5j, KP475528258 * T5g);
cannam@127 1088 T5m = FMA(KP293892626, T5g, KP475528258 * T5j);
cannam@127 1089 T3o = T3m + T3n;
cannam@127 1090 T37 = T31 - T36;
cannam@127 1091 T3i = T3c + T3h;
cannam@127 1092 T3j = T37 - T3i;
cannam@127 1093 T5b = FMA(KP500000000, T3o, KP125000000 * T3j);
cannam@127 1094 T5c = KP279508497 * (T3i + T37);
cannam@127 1095 }
cannam@127 1096 Im[WS(rs, 9)] = KP500000000 * (T3j - T3o);
cannam@127 1097 T5l = T5b - T5c;
cannam@127 1098 Ip[WS(rs, 2)] = T5l + T5m;
cannam@127 1099 Im[WS(rs, 1)] = T5m - T5l;
cannam@127 1100 T5d = T5b + T5c;
cannam@127 1101 Ip[WS(rs, 6)] = T5d + T5k;
cannam@127 1102 Im[WS(rs, 5)] = T5k - T5d;
cannam@127 1103 }
cannam@127 1104 {
cannam@127 1105 E T5w, T5x, T5n, T5q, T5r, T5s, T5y, T5t;
cannam@127 1106 {
cannam@127 1107 E T5u, T5v, T5o, T5p;
cannam@127 1108 T5u = T36 + T31;
cannam@127 1109 T5v = T3c - T3h;
cannam@127 1110 T5w = FNMS(KP293892626, T5v, KP475528258 * T5u);
cannam@127 1111 T5x = FMA(KP475528258, T5v, KP293892626 * T5u);
cannam@127 1112 T5n = T50 - T51;
cannam@127 1113 T5o = T5f + T5e;
cannam@127 1114 T5p = T5h + T5i;
cannam@127 1115 T5q = T5o + T5p;
cannam@127 1116 T5r = FNMS(KP125000000, T5q, KP500000000 * T5n);
cannam@127 1117 T5s = KP279508497 * (T5o - T5p);
cannam@127 1118 }
cannam@127 1119 Rm[WS(rs, 9)] = KP500000000 * (T5n + T5q);
cannam@127 1120 T5y = T5s + T5r;
cannam@127 1121 Rp[WS(rs, 6)] = T5x + T5y;
cannam@127 1122 Rm[WS(rs, 5)] = T5y - T5x;
cannam@127 1123 T5t = T5r - T5s;
cannam@127 1124 Rp[WS(rs, 2)] = T5t - T5w;
cannam@127 1125 Rm[WS(rs, 1)] = T5w + T5t;
cannam@127 1126 }
cannam@127 1127 {
cannam@127 1128 E T4U, T4W, T3p, T3w, T4D, T4E, T4V, T4F;
cannam@127 1129 {
cannam@127 1130 E T4M, T4T, T3s, T3v;
cannam@127 1131 T4M = T4I - T4L;
cannam@127 1132 T4T = T4P - T4S;
cannam@127 1133 T4U = FNMS(KP475528258, T4T, KP293892626 * T4M);
cannam@127 1134 T4W = FMA(KP475528258, T4M, KP293892626 * T4T);
cannam@127 1135 T3p = T3n - T3m;
cannam@127 1136 T3s = T3q + T3r;
cannam@127 1137 T3v = T3t + T3u;
cannam@127 1138 T3w = T3s + T3v;
cannam@127 1139 T4D = FNMS(KP125000000, T3w, KP500000000 * T3p);
cannam@127 1140 T4E = KP279508497 * (T3s - T3v);
cannam@127 1141 }
cannam@127 1142 Ip[0] = KP500000000 * (T3p + T3w);
cannam@127 1143 T4V = T4E + T4D;
cannam@127 1144 Ip[WS(rs, 4)] = T4V + T4W;
cannam@127 1145 Im[WS(rs, 3)] = T4W - T4V;
cannam@127 1146 T4F = T4D - T4E;
cannam@127 1147 Ip[WS(rs, 8)] = T4F + T4U;
cannam@127 1148 Im[WS(rs, 7)] = T4U - T4F;
cannam@127 1149 }
cannam@127 1150 {
cannam@127 1151 E T58, T59, T52, T53, T4Z, T54, T5a, T55;
cannam@127 1152 {
cannam@127 1153 E T56, T57, T4X, T4Y;
cannam@127 1154 T56 = T3q - T3r;
cannam@127 1155 T57 = T3t - T3u;
cannam@127 1156 T58 = FMA(KP475528258, T56, KP293892626 * T57);
cannam@127 1157 T59 = FNMS(KP293892626, T56, KP475528258 * T57);
cannam@127 1158 T52 = T50 + T51;
cannam@127 1159 T4X = T4I + T4L;
cannam@127 1160 T4Y = T4P + T4S;
cannam@127 1161 T53 = T4X + T4Y;
cannam@127 1162 T4Z = KP279508497 * (T4X - T4Y);
cannam@127 1163 T54 = FNMS(KP125000000, T53, KP500000000 * T52);
cannam@127 1164 }
cannam@127 1165 Rp[0] = KP500000000 * (T52 + T53);
cannam@127 1166 T5a = T54 - T4Z;
cannam@127 1167 Rp[WS(rs, 8)] = T59 + T5a;
cannam@127 1168 Rm[WS(rs, 7)] = T5a - T59;
cannam@127 1169 T55 = T4Z + T54;
cannam@127 1170 Rp[WS(rs, 4)] = T55 - T58;
cannam@127 1171 Rm[WS(rs, 3)] = T58 + T55;
cannam@127 1172 }
cannam@127 1173 }
cannam@127 1174 }
cannam@127 1175 }
cannam@127 1176 }
cannam@127 1177
cannam@127 1178 static const tw_instr twinstr[] = {
cannam@127 1179 {TW_CEXP, 1, 1},
cannam@127 1180 {TW_CEXP, 1, 3},
cannam@127 1181 {TW_CEXP, 1, 9},
cannam@127 1182 {TW_CEXP, 1, 19},
cannam@127 1183 {TW_NEXT, 1, 0}
cannam@127 1184 };
cannam@127 1185
cannam@127 1186 static const hc2c_desc desc = { 20, "hc2cfdft2_20", twinstr, &GENUS, {244, 108, 72, 0} };
cannam@127 1187
cannam@127 1188 void X(codelet_hc2cfdft2_20) (planner *p) {
cannam@127 1189 X(khc2c_register) (p, hc2cfdft2_20, &desc, HC2C_VIA_DFT);
cannam@127 1190 }
cannam@127 1191 #endif /* HAVE_FMA */