annotate fft/fftw/fftw-3.3.4/dft/simd/common/q1bv_8.c @ 40:223f770b5341 kissfft-double tip

Try a double-precision kissfft
author Chris Cannam
date Wed, 07 Sep 2016 10:40:32 +0100
parents 26056e866c29
children
rev   line source
Chris@19 1 /*
Chris@19 2 * Copyright (c) 2003, 2007-14 Matteo Frigo
Chris@19 3 * Copyright (c) 2003, 2007-14 Massachusetts Institute of Technology
Chris@19 4 *
Chris@19 5 * This program is free software; you can redistribute it and/or modify
Chris@19 6 * it under the terms of the GNU General Public License as published by
Chris@19 7 * the Free Software Foundation; either version 2 of the License, or
Chris@19 8 * (at your option) any later version.
Chris@19 9 *
Chris@19 10 * This program is distributed in the hope that it will be useful,
Chris@19 11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
Chris@19 12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
Chris@19 13 * GNU General Public License for more details.
Chris@19 14 *
Chris@19 15 * You should have received a copy of the GNU General Public License
Chris@19 16 * along with this program; if not, write to the Free Software
Chris@19 17 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
Chris@19 18 *
Chris@19 19 */
Chris@19 20
Chris@19 21 /* This file was automatically generated --- DO NOT EDIT */
Chris@19 22 /* Generated on Tue Mar 4 13:47:59 EST 2014 */
Chris@19 23
Chris@19 24 #include "codelet-dft.h"
Chris@19 25
Chris@19 26 #ifdef HAVE_FMA
Chris@19 27
Chris@19 28 /* Generated by: ../../../genfft/gen_twidsq_c.native -fma -reorder-insns -schedule-for-pipeline -simd -compact -variables 4 -pipeline-latency 8 -n 8 -dif -name q1bv_8 -include q1b.h -sign 1 */
Chris@19 29
Chris@19 30 /*
Chris@19 31 * This function contains 264 FP additions, 192 FP multiplications,
Chris@19 32 * (or, 184 additions, 112 multiplications, 80 fused multiply/add),
Chris@19 33 * 121 stack variables, 1 constants, and 128 memory accesses
Chris@19 34 */
Chris@19 35 #include "q1b.h"
Chris@19 36
Chris@19 37 static void q1bv_8(R *ri, R *ii, const R *W, stride rs, stride vs, INT mb, INT me, INT ms)
Chris@19 38 {
Chris@19 39 DVK(KP707106781, +0.707106781186547524400844362104849039284835938);
Chris@19 40 {
Chris@19 41 INT m;
Chris@19 42 R *x;
Chris@19 43 x = ii;
Chris@19 44 for (m = mb, W = W + (mb * ((TWVL / VL) * 14)); m < me; m = m + VL, x = x + (VL * ms), W = W + (TWVL * 14), MAKE_VOLATILE_STRIDE(16, rs), MAKE_VOLATILE_STRIDE(16, vs)) {
Chris@19 45 V T42, T43, T1U, T1V, T2Y, T2Z, TT, TS, T45, T44;
Chris@19 46 {
Chris@19 47 V T3, Te, T1E, T1P, Tv, Tp, T26, T20, T2b, T2m, T3M, T2x, T2D, T3X, TA;
Chris@19 48 V TL, T48, T4e, T17, T12, TW, T1i, T2I, T1z, T1t, T2T, T3f, T3q, T34, T3a;
Chris@19 49 V T3H, T3B, Ts, Tw, Tf, Ta, T23, T27, T1Q, T1L, T2A, T2E, T2n, T2i, T4b;
Chris@19 50 V T4f, T3Y, T3T, TZ, T13, TM, TH, T35, T2L, T3j, T1w, T1A, T1j, T1e, T36;
Chris@19 51 V T2O, T3C, T3i, T3k;
Chris@19 52 {
Chris@19 53 V T3d, T32, T3e, T3o, T3p, T33;
Chris@19 54 {
Chris@19 55 V T2v, T2w, T3V, T46, T3W;
Chris@19 56 {
Chris@19 57 V T1, T2, Tc, Td, T1C, T1D, T1N, T1O;
Chris@19 58 T1 = LD(&(x[0]), ms, &(x[0]));
Chris@19 59 T2 = LD(&(x[WS(rs, 4)]), ms, &(x[0]));
Chris@19 60 Tc = LD(&(x[WS(rs, 2)]), ms, &(x[0]));
Chris@19 61 Td = LD(&(x[WS(rs, 6)]), ms, &(x[0]));
Chris@19 62 T1C = LD(&(x[WS(vs, 3)]), ms, &(x[WS(vs, 3)]));
Chris@19 63 T1D = LD(&(x[WS(vs, 3) + WS(rs, 4)]), ms, &(x[WS(vs, 3)]));
Chris@19 64 T1N = LD(&(x[WS(vs, 3) + WS(rs, 2)]), ms, &(x[WS(vs, 3)]));
Chris@19 65 T1O = LD(&(x[WS(vs, 3) + WS(rs, 6)]), ms, &(x[WS(vs, 3)]));
Chris@19 66 {
Chris@19 67 V T29, T1Y, T1Z, T2a, T2k, T2l, Tn, To, T3K, T3L;
Chris@19 68 T29 = LD(&(x[WS(vs, 4)]), ms, &(x[WS(vs, 4)]));
Chris@19 69 T3 = VSUB(T1, T2);
Chris@19 70 Tn = VADD(T1, T2);
Chris@19 71 Te = VSUB(Tc, Td);
Chris@19 72 To = VADD(Tc, Td);
Chris@19 73 T1E = VSUB(T1C, T1D);
Chris@19 74 T1Y = VADD(T1C, T1D);
Chris@19 75 T1P = VSUB(T1N, T1O);
Chris@19 76 T1Z = VADD(T1N, T1O);
Chris@19 77 T2a = LD(&(x[WS(vs, 4) + WS(rs, 4)]), ms, &(x[WS(vs, 4)]));
Chris@19 78 T2k = LD(&(x[WS(vs, 4) + WS(rs, 2)]), ms, &(x[WS(vs, 4)]));
Chris@19 79 T2l = LD(&(x[WS(vs, 4) + WS(rs, 6)]), ms, &(x[WS(vs, 4)]));
Chris@19 80 Tv = VADD(Tn, To);
Chris@19 81 Tp = VSUB(Tn, To);
Chris@19 82 T3K = LD(&(x[WS(vs, 7)]), ms, &(x[WS(vs, 7)]));
Chris@19 83 T3L = LD(&(x[WS(vs, 7) + WS(rs, 4)]), ms, &(x[WS(vs, 7)]));
Chris@19 84 T26 = VADD(T1Y, T1Z);
Chris@19 85 T20 = VSUB(T1Y, T1Z);
Chris@19 86 T2v = VADD(T29, T2a);
Chris@19 87 T2b = VSUB(T29, T2a);
Chris@19 88 T2w = VADD(T2k, T2l);
Chris@19 89 T2m = VSUB(T2k, T2l);
Chris@19 90 T3V = LD(&(x[WS(vs, 7) + WS(rs, 2)]), ms, &(x[WS(vs, 7)]));
Chris@19 91 T46 = VADD(T3K, T3L);
Chris@19 92 T3M = VSUB(T3K, T3L);
Chris@19 93 T3W = LD(&(x[WS(vs, 7) + WS(rs, 6)]), ms, &(x[WS(vs, 7)]));
Chris@19 94 }
Chris@19 95 }
Chris@19 96 {
Chris@19 97 V T15, TU, T16, T1g, TV, T1h;
Chris@19 98 {
Chris@19 99 V Ty, Tz, TJ, TK, T47;
Chris@19 100 Ty = LD(&(x[WS(vs, 1)]), ms, &(x[WS(vs, 1)]));
Chris@19 101 Tz = LD(&(x[WS(vs, 1) + WS(rs, 4)]), ms, &(x[WS(vs, 1)]));
Chris@19 102 TJ = LD(&(x[WS(vs, 1) + WS(rs, 2)]), ms, &(x[WS(vs, 1)]));
Chris@19 103 T2x = VSUB(T2v, T2w);
Chris@19 104 T2D = VADD(T2v, T2w);
Chris@19 105 TK = LD(&(x[WS(vs, 1) + WS(rs, 6)]), ms, &(x[WS(vs, 1)]));
Chris@19 106 T47 = VADD(T3V, T3W);
Chris@19 107 T3X = VSUB(T3V, T3W);
Chris@19 108 T15 = LD(&(x[WS(vs, 2)]), ms, &(x[WS(vs, 2)]));
Chris@19 109 TA = VSUB(Ty, Tz);
Chris@19 110 TU = VADD(Ty, Tz);
Chris@19 111 T16 = LD(&(x[WS(vs, 2) + WS(rs, 4)]), ms, &(x[WS(vs, 2)]));
Chris@19 112 T1g = LD(&(x[WS(vs, 2) + WS(rs, 2)]), ms, &(x[WS(vs, 2)]));
Chris@19 113 TL = VSUB(TJ, TK);
Chris@19 114 TV = VADD(TJ, TK);
Chris@19 115 T48 = VSUB(T46, T47);
Chris@19 116 T4e = VADD(T46, T47);
Chris@19 117 T1h = LD(&(x[WS(vs, 2) + WS(rs, 6)]), ms, &(x[WS(vs, 2)]));
Chris@19 118 }
Chris@19 119 {
Chris@19 120 V T2G, T1r, T2H, T2R, T1s, T2S;
Chris@19 121 T2G = LD(&(x[WS(vs, 5)]), ms, &(x[WS(vs, 5)]));
Chris@19 122 T17 = VSUB(T15, T16);
Chris@19 123 T1r = VADD(T15, T16);
Chris@19 124 T2H = LD(&(x[WS(vs, 5) + WS(rs, 4)]), ms, &(x[WS(vs, 5)]));
Chris@19 125 T12 = VADD(TU, TV);
Chris@19 126 TW = VSUB(TU, TV);
Chris@19 127 T2R = LD(&(x[WS(vs, 5) + WS(rs, 2)]), ms, &(x[WS(vs, 5)]));
Chris@19 128 T1i = VSUB(T1g, T1h);
Chris@19 129 T1s = VADD(T1g, T1h);
Chris@19 130 T2S = LD(&(x[WS(vs, 5) + WS(rs, 6)]), ms, &(x[WS(vs, 5)]));
Chris@19 131 T3d = LD(&(x[WS(vs, 6)]), ms, &(x[WS(vs, 6)]));
Chris@19 132 T2I = VSUB(T2G, T2H);
Chris@19 133 T32 = VADD(T2G, T2H);
Chris@19 134 T3e = LD(&(x[WS(vs, 6) + WS(rs, 4)]), ms, &(x[WS(vs, 6)]));
Chris@19 135 T3o = LD(&(x[WS(vs, 6) + WS(rs, 2)]), ms, &(x[WS(vs, 6)]));
Chris@19 136 T3p = LD(&(x[WS(vs, 6) + WS(rs, 6)]), ms, &(x[WS(vs, 6)]));
Chris@19 137 T1z = VADD(T1r, T1s);
Chris@19 138 T1t = VSUB(T1r, T1s);
Chris@19 139 T33 = VADD(T2R, T2S);
Chris@19 140 T2T = VSUB(T2R, T2S);
Chris@19 141 }
Chris@19 142 }
Chris@19 143 }
Chris@19 144 {
Chris@19 145 V T2y, T2e, T3Q, T2z, T2h, T49, T3P, T3R;
Chris@19 146 {
Chris@19 147 V T6, Tq, T1I, Tr, T9, T21, T1H, T1J;
Chris@19 148 {
Chris@19 149 V T4, T3z, T3A, T5, T7, T8, T1F, T1G;
Chris@19 150 T4 = LD(&(x[WS(rs, 1)]), ms, &(x[WS(rs, 1)]));
Chris@19 151 T3f = VSUB(T3d, T3e);
Chris@19 152 T3z = VADD(T3d, T3e);
Chris@19 153 T3q = VSUB(T3o, T3p);
Chris@19 154 T3A = VADD(T3o, T3p);
Chris@19 155 T5 = LD(&(x[WS(rs, 5)]), ms, &(x[WS(rs, 1)]));
Chris@19 156 T7 = LD(&(x[WS(rs, 7)]), ms, &(x[WS(rs, 1)]));
Chris@19 157 T34 = VSUB(T32, T33);
Chris@19 158 T3a = VADD(T32, T33);
Chris@19 159 T8 = LD(&(x[WS(rs, 3)]), ms, &(x[WS(rs, 1)]));
Chris@19 160 T1F = LD(&(x[WS(vs, 3) + WS(rs, 1)]), ms, &(x[WS(vs, 3) + WS(rs, 1)]));
Chris@19 161 T1G = LD(&(x[WS(vs, 3) + WS(rs, 5)]), ms, &(x[WS(vs, 3) + WS(rs, 1)]));
Chris@19 162 T3H = VADD(T3z, T3A);
Chris@19 163 T3B = VSUB(T3z, T3A);
Chris@19 164 T6 = VSUB(T4, T5);
Chris@19 165 Tq = VADD(T4, T5);
Chris@19 166 T1I = LD(&(x[WS(vs, 3) + WS(rs, 7)]), ms, &(x[WS(vs, 3) + WS(rs, 1)]));
Chris@19 167 Tr = VADD(T7, T8);
Chris@19 168 T9 = VSUB(T7, T8);
Chris@19 169 T21 = VADD(T1F, T1G);
Chris@19 170 T1H = VSUB(T1F, T1G);
Chris@19 171 T1J = LD(&(x[WS(vs, 3) + WS(rs, 3)]), ms, &(x[WS(vs, 3) + WS(rs, 1)]));
Chris@19 172 }
Chris@19 173 {
Chris@19 174 V T2f, T22, T1K, T2g, T2c, T2d, T3N, T3O;
Chris@19 175 T2c = LD(&(x[WS(vs, 4) + WS(rs, 1)]), ms, &(x[WS(vs, 4) + WS(rs, 1)]));
Chris@19 176 T2d = LD(&(x[WS(vs, 4) + WS(rs, 5)]), ms, &(x[WS(vs, 4) + WS(rs, 1)]));
Chris@19 177 T2f = LD(&(x[WS(vs, 4) + WS(rs, 7)]), ms, &(x[WS(vs, 4) + WS(rs, 1)]));
Chris@19 178 Ts = VSUB(Tq, Tr);
Chris@19 179 Tw = VADD(Tq, Tr);
Chris@19 180 Tf = VSUB(T6, T9);
Chris@19 181 Ta = VADD(T6, T9);
Chris@19 182 T22 = VADD(T1I, T1J);
Chris@19 183 T1K = VSUB(T1I, T1J);
Chris@19 184 T2y = VADD(T2c, T2d);
Chris@19 185 T2e = VSUB(T2c, T2d);
Chris@19 186 T2g = LD(&(x[WS(vs, 4) + WS(rs, 3)]), ms, &(x[WS(vs, 4) + WS(rs, 1)]));
Chris@19 187 T3N = LD(&(x[WS(vs, 7) + WS(rs, 1)]), ms, &(x[WS(vs, 7) + WS(rs, 1)]));
Chris@19 188 T3O = LD(&(x[WS(vs, 7) + WS(rs, 5)]), ms, &(x[WS(vs, 7) + WS(rs, 1)]));
Chris@19 189 T3Q = LD(&(x[WS(vs, 7) + WS(rs, 7)]), ms, &(x[WS(vs, 7) + WS(rs, 1)]));
Chris@19 190 T23 = VSUB(T21, T22);
Chris@19 191 T27 = VADD(T21, T22);
Chris@19 192 T1Q = VSUB(T1H, T1K);
Chris@19 193 T1L = VADD(T1H, T1K);
Chris@19 194 T2z = VADD(T2f, T2g);
Chris@19 195 T2h = VSUB(T2f, T2g);
Chris@19 196 T49 = VADD(T3N, T3O);
Chris@19 197 T3P = VSUB(T3N, T3O);
Chris@19 198 T3R = LD(&(x[WS(vs, 7) + WS(rs, 3)]), ms, &(x[WS(vs, 7) + WS(rs, 1)]));
Chris@19 199 }
Chris@19 200 }
Chris@19 201 {
Chris@19 202 V TX, TD, T1b, TY, TG, T1u, T1a, T1c;
Chris@19 203 {
Chris@19 204 V TE, T4a, T3S, TF, TB, TC, T18, T19;
Chris@19 205 TB = LD(&(x[WS(vs, 1) + WS(rs, 1)]), ms, &(x[WS(vs, 1) + WS(rs, 1)]));
Chris@19 206 TC = LD(&(x[WS(vs, 1) + WS(rs, 5)]), ms, &(x[WS(vs, 1) + WS(rs, 1)]));
Chris@19 207 TE = LD(&(x[WS(vs, 1) + WS(rs, 7)]), ms, &(x[WS(vs, 1) + WS(rs, 1)]));
Chris@19 208 T2A = VSUB(T2y, T2z);
Chris@19 209 T2E = VADD(T2y, T2z);
Chris@19 210 T2n = VSUB(T2e, T2h);
Chris@19 211 T2i = VADD(T2e, T2h);
Chris@19 212 T4a = VADD(T3Q, T3R);
Chris@19 213 T3S = VSUB(T3Q, T3R);
Chris@19 214 TX = VADD(TB, TC);
Chris@19 215 TD = VSUB(TB, TC);
Chris@19 216 TF = LD(&(x[WS(vs, 1) + WS(rs, 3)]), ms, &(x[WS(vs, 1) + WS(rs, 1)]));
Chris@19 217 T18 = LD(&(x[WS(vs, 2) + WS(rs, 1)]), ms, &(x[WS(vs, 2) + WS(rs, 1)]));
Chris@19 218 T19 = LD(&(x[WS(vs, 2) + WS(rs, 5)]), ms, &(x[WS(vs, 2) + WS(rs, 1)]));
Chris@19 219 T1b = LD(&(x[WS(vs, 2) + WS(rs, 7)]), ms, &(x[WS(vs, 2) + WS(rs, 1)]));
Chris@19 220 T4b = VSUB(T49, T4a);
Chris@19 221 T4f = VADD(T49, T4a);
Chris@19 222 T3Y = VSUB(T3P, T3S);
Chris@19 223 T3T = VADD(T3P, T3S);
Chris@19 224 TY = VADD(TE, TF);
Chris@19 225 TG = VSUB(TE, TF);
Chris@19 226 T1u = VADD(T18, T19);
Chris@19 227 T1a = VSUB(T18, T19);
Chris@19 228 T1c = LD(&(x[WS(vs, 2) + WS(rs, 3)]), ms, &(x[WS(vs, 2) + WS(rs, 1)]));
Chris@19 229 }
Chris@19 230 {
Chris@19 231 V T2M, T1v, T1d, T2N, T2J, T2K, T3g, T3h;
Chris@19 232 T2J = LD(&(x[WS(vs, 5) + WS(rs, 1)]), ms, &(x[WS(vs, 5) + WS(rs, 1)]));
Chris@19 233 T2K = LD(&(x[WS(vs, 5) + WS(rs, 5)]), ms, &(x[WS(vs, 5) + WS(rs, 1)]));
Chris@19 234 T2M = LD(&(x[WS(vs, 5) + WS(rs, 7)]), ms, &(x[WS(vs, 5) + WS(rs, 1)]));
Chris@19 235 TZ = VSUB(TX, TY);
Chris@19 236 T13 = VADD(TX, TY);
Chris@19 237 TM = VSUB(TD, TG);
Chris@19 238 TH = VADD(TD, TG);
Chris@19 239 T1v = VADD(T1b, T1c);
Chris@19 240 T1d = VSUB(T1b, T1c);
Chris@19 241 T35 = VADD(T2J, T2K);
Chris@19 242 T2L = VSUB(T2J, T2K);
Chris@19 243 T2N = LD(&(x[WS(vs, 5) + WS(rs, 3)]), ms, &(x[WS(vs, 5) + WS(rs, 1)]));
Chris@19 244 T3g = LD(&(x[WS(vs, 6) + WS(rs, 1)]), ms, &(x[WS(vs, 6) + WS(rs, 1)]));
Chris@19 245 T3h = LD(&(x[WS(vs, 6) + WS(rs, 5)]), ms, &(x[WS(vs, 6) + WS(rs, 1)]));
Chris@19 246 T3j = LD(&(x[WS(vs, 6) + WS(rs, 7)]), ms, &(x[WS(vs, 6) + WS(rs, 1)]));
Chris@19 247 T1w = VSUB(T1u, T1v);
Chris@19 248 T1A = VADD(T1u, T1v);
Chris@19 249 T1j = VSUB(T1a, T1d);
Chris@19 250 T1e = VADD(T1a, T1d);
Chris@19 251 T36 = VADD(T2M, T2N);
Chris@19 252 T2O = VSUB(T2M, T2N);
Chris@19 253 T3C = VADD(T3g, T3h);
Chris@19 254 T3i = VSUB(T3g, T3h);
Chris@19 255 T3k = LD(&(x[WS(vs, 6) + WS(rs, 3)]), ms, &(x[WS(vs, 6) + WS(rs, 1)]));
Chris@19 256 }
Chris@19 257 }
Chris@19 258 }
Chris@19 259 }
Chris@19 260 {
Chris@19 261 V T3b, T2U, T2P, T3I, T3r, T3m, T11, T25, T39, T4d;
Chris@19 262 {
Chris@19 263 V T37, T3E, T2B, T24;
Chris@19 264 {
Chris@19 265 V T3D, T3l, Tt, T4c;
Chris@19 266 ST(&(x[0]), VADD(Tv, Tw), ms, &(x[0]));
Chris@19 267 ST(&(x[WS(rs, 2)]), VADD(T1z, T1A), ms, &(x[0]));
Chris@19 268 ST(&(x[WS(rs, 7)]), VADD(T4e, T4f), ms, &(x[WS(rs, 1)]));
Chris@19 269 T37 = VSUB(T35, T36);
Chris@19 270 T3b = VADD(T35, T36);
Chris@19 271 T2U = VSUB(T2L, T2O);
Chris@19 272 T2P = VADD(T2L, T2O);
Chris@19 273 T3D = VADD(T3j, T3k);
Chris@19 274 T3l = VSUB(T3j, T3k);
Chris@19 275 ST(&(x[WS(rs, 4)]), VADD(T2D, T2E), ms, &(x[0]));
Chris@19 276 ST(&(x[WS(rs, 3)]), VADD(T26, T27), ms, &(x[WS(rs, 1)]));
Chris@19 277 ST(&(x[WS(rs, 1)]), VADD(T12, T13), ms, &(x[WS(rs, 1)]));
Chris@19 278 ST(&(x[WS(rs, 5)]), VADD(T3a, T3b), ms, &(x[WS(rs, 1)]));
Chris@19 279 Tt = BYTW(&(W[TWVL * 10]), VFNMSI(Ts, Tp));
Chris@19 280 T4c = BYTW(&(W[TWVL * 10]), VFNMSI(T4b, T48));
Chris@19 281 T3E = VSUB(T3C, T3D);
Chris@19 282 T3I = VADD(T3C, T3D);
Chris@19 283 T3r = VSUB(T3i, T3l);
Chris@19 284 T3m = VADD(T3i, T3l);
Chris@19 285 T2B = BYTW(&(W[TWVL * 10]), VFNMSI(T2A, T2x));
Chris@19 286 T24 = BYTW(&(W[TWVL * 10]), VFNMSI(T23, T20));
Chris@19 287 ST(&(x[WS(vs, 6)]), Tt, ms, &(x[WS(vs, 6)]));
Chris@19 288 ST(&(x[WS(vs, 6) + WS(rs, 7)]), T4c, ms, &(x[WS(vs, 6) + WS(rs, 1)]));
Chris@19 289 }
Chris@19 290 {
Chris@19 291 V T38, T1y, Tu, T10, T1x, T3F, T2C, T3G;
Chris@19 292 T10 = BYTW(&(W[TWVL * 10]), VFNMSI(TZ, TW));
Chris@19 293 ST(&(x[WS(rs, 6)]), VADD(T3H, T3I), ms, &(x[0]));
Chris@19 294 T1x = BYTW(&(W[TWVL * 10]), VFNMSI(T1w, T1t));
Chris@19 295 T3F = BYTW(&(W[TWVL * 10]), VFNMSI(T3E, T3B));
Chris@19 296 ST(&(x[WS(vs, 6) + WS(rs, 4)]), T2B, ms, &(x[WS(vs, 6)]));
Chris@19 297 ST(&(x[WS(vs, 6) + WS(rs, 3)]), T24, ms, &(x[WS(vs, 6) + WS(rs, 1)]));
Chris@19 298 T38 = BYTW(&(W[TWVL * 10]), VFNMSI(T37, T34));
Chris@19 299 T1y = BYTW(&(W[TWVL * 2]), VFMAI(T1w, T1t));
Chris@19 300 ST(&(x[WS(vs, 6) + WS(rs, 1)]), T10, ms, &(x[WS(vs, 6) + WS(rs, 1)]));
Chris@19 301 Tu = BYTW(&(W[TWVL * 2]), VFMAI(Ts, Tp));
Chris@19 302 ST(&(x[WS(vs, 6) + WS(rs, 2)]), T1x, ms, &(x[WS(vs, 6)]));
Chris@19 303 ST(&(x[WS(vs, 6) + WS(rs, 6)]), T3F, ms, &(x[WS(vs, 6)]));
Chris@19 304 T2C = BYTW(&(W[TWVL * 2]), VFMAI(T2A, T2x));
Chris@19 305 T3G = BYTW(&(W[TWVL * 2]), VFMAI(T3E, T3B));
Chris@19 306 ST(&(x[WS(vs, 6) + WS(rs, 5)]), T38, ms, &(x[WS(vs, 6) + WS(rs, 1)]));
Chris@19 307 ST(&(x[WS(vs, 2) + WS(rs, 2)]), T1y, ms, &(x[WS(vs, 2)]));
Chris@19 308 T11 = BYTW(&(W[TWVL * 2]), VFMAI(TZ, TW));
Chris@19 309 ST(&(x[WS(vs, 2)]), Tu, ms, &(x[WS(vs, 2)]));
Chris@19 310 T25 = BYTW(&(W[TWVL * 2]), VFMAI(T23, T20));
Chris@19 311 T39 = BYTW(&(W[TWVL * 2]), VFMAI(T37, T34));
Chris@19 312 ST(&(x[WS(vs, 2) + WS(rs, 4)]), T2C, ms, &(x[WS(vs, 2)]));
Chris@19 313 ST(&(x[WS(vs, 2) + WS(rs, 6)]), T3G, ms, &(x[WS(vs, 2)]));
Chris@19 314 T4d = BYTW(&(W[TWVL * 2]), VFMAI(T4b, T48));
Chris@19 315 }
Chris@19 316 }
Chris@19 317 {
Chris@19 318 V Tj, Tk, T2r, T2j, T2o, T2s, Ti, Th, T1M, T1R, T41, T40;
Chris@19 319 {
Chris@19 320 V T3c, T4g, T3J, T2F, Tx, T1B;
Chris@19 321 Tx = BYTW(&(W[TWVL * 6]), VSUB(Tv, Tw));
Chris@19 322 ST(&(x[WS(vs, 2) + WS(rs, 1)]), T11, ms, &(x[WS(vs, 2) + WS(rs, 1)]));
Chris@19 323 T1B = BYTW(&(W[TWVL * 6]), VSUB(T1z, T1A));
Chris@19 324 ST(&(x[WS(vs, 2) + WS(rs, 3)]), T25, ms, &(x[WS(vs, 2) + WS(rs, 1)]));
Chris@19 325 ST(&(x[WS(vs, 2) + WS(rs, 5)]), T39, ms, &(x[WS(vs, 2) + WS(rs, 1)]));
Chris@19 326 T3c = BYTW(&(W[TWVL * 6]), VSUB(T3a, T3b));
Chris@19 327 T4g = BYTW(&(W[TWVL * 6]), VSUB(T4e, T4f));
Chris@19 328 ST(&(x[WS(vs, 2) + WS(rs, 7)]), T4d, ms, &(x[WS(vs, 2) + WS(rs, 1)]));
Chris@19 329 ST(&(x[WS(vs, 4)]), Tx, ms, &(x[WS(vs, 4)]));
Chris@19 330 T3J = BYTW(&(W[TWVL * 6]), VSUB(T3H, T3I));
Chris@19 331 ST(&(x[WS(vs, 4) + WS(rs, 2)]), T1B, ms, &(x[WS(vs, 4)]));
Chris@19 332 T2F = BYTW(&(W[TWVL * 6]), VSUB(T2D, T2E));
Chris@19 333 {
Chris@19 334 V T14, Tb, Tg, T28, T3U, T3Z;
Chris@19 335 T28 = BYTW(&(W[TWVL * 6]), VSUB(T26, T27));
Chris@19 336 ST(&(x[WS(vs, 4) + WS(rs, 5)]), T3c, ms, &(x[WS(vs, 4) + WS(rs, 1)]));
Chris@19 337 ST(&(x[WS(vs, 4) + WS(rs, 7)]), T4g, ms, &(x[WS(vs, 4) + WS(rs, 1)]));
Chris@19 338 T14 = BYTW(&(W[TWVL * 6]), VSUB(T12, T13));
Chris@19 339 Tj = VFMA(LDK(KP707106781), Ta, T3);
Chris@19 340 Tb = VFNMS(LDK(KP707106781), Ta, T3);
Chris@19 341 ST(&(x[WS(vs, 4) + WS(rs, 6)]), T3J, ms, &(x[WS(vs, 4)]));
Chris@19 342 Tk = VFMA(LDK(KP707106781), Tf, Te);
Chris@19 343 Tg = VFNMS(LDK(KP707106781), Tf, Te);
Chris@19 344 ST(&(x[WS(vs, 4) + WS(rs, 4)]), T2F, ms, &(x[WS(vs, 4)]));
Chris@19 345 ST(&(x[WS(vs, 4) + WS(rs, 3)]), T28, ms, &(x[WS(vs, 4) + WS(rs, 1)]));
Chris@19 346 T3U = VFNMS(LDK(KP707106781), T3T, T3M);
Chris@19 347 T42 = VFMA(LDK(KP707106781), T3T, T3M);
Chris@19 348 T43 = VFMA(LDK(KP707106781), T3Y, T3X);
Chris@19 349 T3Z = VFNMS(LDK(KP707106781), T3Y, T3X);
Chris@19 350 ST(&(x[WS(vs, 4) + WS(rs, 1)]), T14, ms, &(x[WS(vs, 4) + WS(rs, 1)]));
Chris@19 351 T2r = VFMA(LDK(KP707106781), T2i, T2b);
Chris@19 352 T2j = VFNMS(LDK(KP707106781), T2i, T2b);
Chris@19 353 T2o = VFNMS(LDK(KP707106781), T2n, T2m);
Chris@19 354 T2s = VFMA(LDK(KP707106781), T2n, T2m);
Chris@19 355 Ti = BYTW(&(W[TWVL * 8]), VFMAI(Tg, Tb));
Chris@19 356 Th = BYTW(&(W[TWVL * 4]), VFNMSI(Tg, Tb));
Chris@19 357 T1U = VFMA(LDK(KP707106781), T1L, T1E);
Chris@19 358 T1M = VFNMS(LDK(KP707106781), T1L, T1E);
Chris@19 359 T1R = VFNMS(LDK(KP707106781), T1Q, T1P);
Chris@19 360 T1V = VFMA(LDK(KP707106781), T1Q, T1P);
Chris@19 361 T41 = BYTW(&(W[TWVL * 8]), VFMAI(T3Z, T3U));
Chris@19 362 T40 = BYTW(&(W[TWVL * 4]), VFNMSI(T3Z, T3U));
Chris@19 363 }
Chris@19 364 }
Chris@19 365 {
Chris@19 366 V TQ, TR, T1n, T1o, T3v, T3w;
Chris@19 367 {
Chris@19 368 V TI, TN, T1f, T1k, T3n, T3s;
Chris@19 369 {
Chris@19 370 V T1T, T1S, T2q, T2p;
Chris@19 371 TQ = VFMA(LDK(KP707106781), TH, TA);
Chris@19 372 TI = VFNMS(LDK(KP707106781), TH, TA);
Chris@19 373 T2q = BYTW(&(W[TWVL * 8]), VFMAI(T2o, T2j));
Chris@19 374 T2p = BYTW(&(W[TWVL * 4]), VFNMSI(T2o, T2j));
Chris@19 375 ST(&(x[WS(vs, 5)]), Ti, ms, &(x[WS(vs, 5)]));
Chris@19 376 ST(&(x[WS(vs, 3)]), Th, ms, &(x[WS(vs, 3)]));
Chris@19 377 T1T = BYTW(&(W[TWVL * 8]), VFMAI(T1R, T1M));
Chris@19 378 T1S = BYTW(&(W[TWVL * 4]), VFNMSI(T1R, T1M));
Chris@19 379 ST(&(x[WS(vs, 5) + WS(rs, 7)]), T41, ms, &(x[WS(vs, 5) + WS(rs, 1)]));
Chris@19 380 ST(&(x[WS(vs, 3) + WS(rs, 7)]), T40, ms, &(x[WS(vs, 3) + WS(rs, 1)]));
Chris@19 381 ST(&(x[WS(vs, 5) + WS(rs, 4)]), T2q, ms, &(x[WS(vs, 5)]));
Chris@19 382 ST(&(x[WS(vs, 3) + WS(rs, 4)]), T2p, ms, &(x[WS(vs, 3)]));
Chris@19 383 TN = VFNMS(LDK(KP707106781), TM, TL);
Chris@19 384 TR = VFMA(LDK(KP707106781), TM, TL);
Chris@19 385 T1n = VFMA(LDK(KP707106781), T1e, T17);
Chris@19 386 T1f = VFNMS(LDK(KP707106781), T1e, T17);
Chris@19 387 ST(&(x[WS(vs, 5) + WS(rs, 3)]), T1T, ms, &(x[WS(vs, 5) + WS(rs, 1)]));
Chris@19 388 ST(&(x[WS(vs, 3) + WS(rs, 3)]), T1S, ms, &(x[WS(vs, 3) + WS(rs, 1)]));
Chris@19 389 T1k = VFNMS(LDK(KP707106781), T1j, T1i);
Chris@19 390 T1o = VFMA(LDK(KP707106781), T1j, T1i);
Chris@19 391 T3v = VFMA(LDK(KP707106781), T3m, T3f);
Chris@19 392 T3n = VFNMS(LDK(KP707106781), T3m, T3f);
Chris@19 393 T3s = VFNMS(LDK(KP707106781), T3r, T3q);
Chris@19 394 T3w = VFMA(LDK(KP707106781), T3r, T3q);
Chris@19 395 }
Chris@19 396 {
Chris@19 397 V T2Q, TP, TO, T2V, T2X, T2W;
Chris@19 398 T2Y = VFMA(LDK(KP707106781), T2P, T2I);
Chris@19 399 T2Q = VFNMS(LDK(KP707106781), T2P, T2I);
Chris@19 400 TP = BYTW(&(W[TWVL * 8]), VFMAI(TN, TI));
Chris@19 401 TO = BYTW(&(W[TWVL * 4]), VFNMSI(TN, TI));
Chris@19 402 T2V = VFNMS(LDK(KP707106781), T2U, T2T);
Chris@19 403 T2Z = VFMA(LDK(KP707106781), T2U, T2T);
Chris@19 404 {
Chris@19 405 V T1m, T1l, T3u, T3t;
Chris@19 406 T1m = BYTW(&(W[TWVL * 8]), VFMAI(T1k, T1f));
Chris@19 407 T1l = BYTW(&(W[TWVL * 4]), VFNMSI(T1k, T1f));
Chris@19 408 T3u = BYTW(&(W[TWVL * 8]), VFMAI(T3s, T3n));
Chris@19 409 T3t = BYTW(&(W[TWVL * 4]), VFNMSI(T3s, T3n));
Chris@19 410 ST(&(x[WS(vs, 5) + WS(rs, 1)]), TP, ms, &(x[WS(vs, 5) + WS(rs, 1)]));
Chris@19 411 ST(&(x[WS(vs, 3) + WS(rs, 1)]), TO, ms, &(x[WS(vs, 3) + WS(rs, 1)]));
Chris@19 412 T2X = BYTW(&(W[TWVL * 8]), VFMAI(T2V, T2Q));
Chris@19 413 T2W = BYTW(&(W[TWVL * 4]), VFNMSI(T2V, T2Q));
Chris@19 414 ST(&(x[WS(vs, 5) + WS(rs, 2)]), T1m, ms, &(x[WS(vs, 5)]));
Chris@19 415 ST(&(x[WS(vs, 3) + WS(rs, 2)]), T1l, ms, &(x[WS(vs, 3)]));
Chris@19 416 ST(&(x[WS(vs, 5) + WS(rs, 6)]), T3u, ms, &(x[WS(vs, 5)]));
Chris@19 417 ST(&(x[WS(vs, 3) + WS(rs, 6)]), T3t, ms, &(x[WS(vs, 3)]));
Chris@19 418 }
Chris@19 419 ST(&(x[WS(vs, 5) + WS(rs, 5)]), T2X, ms, &(x[WS(vs, 5) + WS(rs, 1)]));
Chris@19 420 ST(&(x[WS(vs, 3) + WS(rs, 5)]), T2W, ms, &(x[WS(vs, 3) + WS(rs, 1)]));
Chris@19 421 }
Chris@19 422 }
Chris@19 423 {
Chris@19 424 V T3y, T3x, T1q, T1p;
Chris@19 425 T1q = BYTW(&(W[TWVL * 12]), VFNMSI(T1o, T1n));
Chris@19 426 T1p = BYTW(&(W[0]), VFMAI(T1o, T1n));
Chris@19 427 {
Chris@19 428 V Tm, Tl, T2u, T2t;
Chris@19 429 Tm = BYTW(&(W[TWVL * 12]), VFNMSI(Tk, Tj));
Chris@19 430 Tl = BYTW(&(W[0]), VFMAI(Tk, Tj));
Chris@19 431 T2u = BYTW(&(W[TWVL * 12]), VFNMSI(T2s, T2r));
Chris@19 432 T2t = BYTW(&(W[0]), VFMAI(T2s, T2r));
Chris@19 433 ST(&(x[WS(vs, 7) + WS(rs, 2)]), T1q, ms, &(x[WS(vs, 7)]));
Chris@19 434 ST(&(x[WS(vs, 1) + WS(rs, 2)]), T1p, ms, &(x[WS(vs, 1)]));
Chris@19 435 T3y = BYTW(&(W[TWVL * 12]), VFNMSI(T3w, T3v));
Chris@19 436 T3x = BYTW(&(W[0]), VFMAI(T3w, T3v));
Chris@19 437 ST(&(x[WS(vs, 7)]), Tm, ms, &(x[WS(vs, 7)]));
Chris@19 438 ST(&(x[WS(vs, 1)]), Tl, ms, &(x[WS(vs, 1)]));
Chris@19 439 ST(&(x[WS(vs, 7) + WS(rs, 4)]), T2u, ms, &(x[WS(vs, 7)]));
Chris@19 440 ST(&(x[WS(vs, 1) + WS(rs, 4)]), T2t, ms, &(x[WS(vs, 1)]));
Chris@19 441 }
Chris@19 442 ST(&(x[WS(vs, 7) + WS(rs, 6)]), T3y, ms, &(x[WS(vs, 7)]));
Chris@19 443 ST(&(x[WS(vs, 1) + WS(rs, 6)]), T3x, ms, &(x[WS(vs, 1)]));
Chris@19 444 TT = BYTW(&(W[TWVL * 12]), VFNMSI(TR, TQ));
Chris@19 445 TS = BYTW(&(W[0]), VFMAI(TR, TQ));
Chris@19 446 }
Chris@19 447 }
Chris@19 448 }
Chris@19 449 }
Chris@19 450 }
Chris@19 451 {
Chris@19 452 V T1X, T1W, T31, T30;
Chris@19 453 T1X = BYTW(&(W[TWVL * 12]), VFNMSI(T1V, T1U));
Chris@19 454 T1W = BYTW(&(W[0]), VFMAI(T1V, T1U));
Chris@19 455 T31 = BYTW(&(W[TWVL * 12]), VFNMSI(T2Z, T2Y));
Chris@19 456 T30 = BYTW(&(W[0]), VFMAI(T2Z, T2Y));
Chris@19 457 ST(&(x[WS(vs, 7) + WS(rs, 1)]), TT, ms, &(x[WS(vs, 7) + WS(rs, 1)]));
Chris@19 458 ST(&(x[WS(vs, 1) + WS(rs, 1)]), TS, ms, &(x[WS(vs, 1) + WS(rs, 1)]));
Chris@19 459 T45 = BYTW(&(W[TWVL * 12]), VFNMSI(T43, T42));
Chris@19 460 T44 = BYTW(&(W[0]), VFMAI(T43, T42));
Chris@19 461 ST(&(x[WS(vs, 7) + WS(rs, 3)]), T1X, ms, &(x[WS(vs, 7) + WS(rs, 1)]));
Chris@19 462 ST(&(x[WS(vs, 1) + WS(rs, 3)]), T1W, ms, &(x[WS(vs, 1) + WS(rs, 1)]));
Chris@19 463 ST(&(x[WS(vs, 7) + WS(rs, 5)]), T31, ms, &(x[WS(vs, 7) + WS(rs, 1)]));
Chris@19 464 ST(&(x[WS(vs, 1) + WS(rs, 5)]), T30, ms, &(x[WS(vs, 1) + WS(rs, 1)]));
Chris@19 465 }
Chris@19 466 ST(&(x[WS(vs, 7) + WS(rs, 7)]), T45, ms, &(x[WS(vs, 7) + WS(rs, 1)]));
Chris@19 467 ST(&(x[WS(vs, 1) + WS(rs, 7)]), T44, ms, &(x[WS(vs, 1) + WS(rs, 1)]));
Chris@19 468 }
Chris@19 469 }
Chris@19 470 VLEAVE();
Chris@19 471 }
Chris@19 472
Chris@19 473 static const tw_instr twinstr[] = {
Chris@19 474 VTW(0, 1),
Chris@19 475 VTW(0, 2),
Chris@19 476 VTW(0, 3),
Chris@19 477 VTW(0, 4),
Chris@19 478 VTW(0, 5),
Chris@19 479 VTW(0, 6),
Chris@19 480 VTW(0, 7),
Chris@19 481 {TW_NEXT, VL, 0}
Chris@19 482 };
Chris@19 483
Chris@19 484 static const ct_desc desc = { 8, XSIMD_STRING("q1bv_8"), twinstr, &GENUS, {184, 112, 80, 0}, 0, 0, 0 };
Chris@19 485
Chris@19 486 void XSIMD(codelet_q1bv_8) (planner *p) {
Chris@19 487 X(kdft_difsq_register) (p, q1bv_8, &desc);
Chris@19 488 }
Chris@19 489 #else /* HAVE_FMA */
Chris@19 490
Chris@19 491 /* Generated by: ../../../genfft/gen_twidsq_c.native -simd -compact -variables 4 -pipeline-latency 8 -n 8 -dif -name q1bv_8 -include q1b.h -sign 1 */
Chris@19 492
Chris@19 493 /*
Chris@19 494 * This function contains 264 FP additions, 128 FP multiplications,
Chris@19 495 * (or, 264 additions, 128 multiplications, 0 fused multiply/add),
Chris@19 496 * 77 stack variables, 1 constants, and 128 memory accesses
Chris@19 497 */
Chris@19 498 #include "q1b.h"
Chris@19 499
Chris@19 500 static void q1bv_8(R *ri, R *ii, const R *W, stride rs, stride vs, INT mb, INT me, INT ms)
Chris@19 501 {
Chris@19 502 DVK(KP707106781, +0.707106781186547524400844362104849039284835938);
Chris@19 503 {
Chris@19 504 INT m;
Chris@19 505 R *x;
Chris@19 506 x = ii;
Chris@19 507 for (m = mb, W = W + (mb * ((TWVL / VL) * 14)); m < me; m = m + VL, x = x + (VL * ms), W = W + (TWVL * 14), MAKE_VOLATILE_STRIDE(16, rs), MAKE_VOLATILE_STRIDE(16, vs)) {
Chris@19 508 V Ta, Tv, Te, Tp, T1L, T26, T1P, T20, T2i, T2D, T2m, T2x, T3T, T4e, T3X;
Chris@19 509 V T48, TH, T12, TL, TW, T1e, T1z, T1i, T1t, T2P, T3a, T2T, T34, T3m, T3H;
Chris@19 510 V T3q, T3B, T7, Tw, Tf, Ts, T1I, T27, T1Q, T23, T2f, T2E, T2n, T2A, T3Q;
Chris@19 511 V T4f, T3Y, T4b, TE, T13, TM, TZ, T1b, T1A, T1j, T1w, T2M, T3b, T2U, T37;
Chris@19 512 V T3j, T3I, T3r, T3E, T28, T14;
Chris@19 513 {
Chris@19 514 V T8, T9, To, Tc, Td, Tn;
Chris@19 515 T8 = LD(&(x[WS(rs, 2)]), ms, &(x[0]));
Chris@19 516 T9 = LD(&(x[WS(rs, 6)]), ms, &(x[0]));
Chris@19 517 To = VADD(T8, T9);
Chris@19 518 Tc = LD(&(x[0]), ms, &(x[0]));
Chris@19 519 Td = LD(&(x[WS(rs, 4)]), ms, &(x[0]));
Chris@19 520 Tn = VADD(Tc, Td);
Chris@19 521 Ta = VSUB(T8, T9);
Chris@19 522 Tv = VADD(Tn, To);
Chris@19 523 Te = VSUB(Tc, Td);
Chris@19 524 Tp = VSUB(Tn, To);
Chris@19 525 }
Chris@19 526 {
Chris@19 527 V T1J, T1K, T1Z, T1N, T1O, T1Y;
Chris@19 528 T1J = LD(&(x[WS(vs, 3) + WS(rs, 2)]), ms, &(x[WS(vs, 3)]));
Chris@19 529 T1K = LD(&(x[WS(vs, 3) + WS(rs, 6)]), ms, &(x[WS(vs, 3)]));
Chris@19 530 T1Z = VADD(T1J, T1K);
Chris@19 531 T1N = LD(&(x[WS(vs, 3)]), ms, &(x[WS(vs, 3)]));
Chris@19 532 T1O = LD(&(x[WS(vs, 3) + WS(rs, 4)]), ms, &(x[WS(vs, 3)]));
Chris@19 533 T1Y = VADD(T1N, T1O);
Chris@19 534 T1L = VSUB(T1J, T1K);
Chris@19 535 T26 = VADD(T1Y, T1Z);
Chris@19 536 T1P = VSUB(T1N, T1O);
Chris@19 537 T20 = VSUB(T1Y, T1Z);
Chris@19 538 }
Chris@19 539 {
Chris@19 540 V T2g, T2h, T2w, T2k, T2l, T2v;
Chris@19 541 T2g = LD(&(x[WS(vs, 4) + WS(rs, 2)]), ms, &(x[WS(vs, 4)]));
Chris@19 542 T2h = LD(&(x[WS(vs, 4) + WS(rs, 6)]), ms, &(x[WS(vs, 4)]));
Chris@19 543 T2w = VADD(T2g, T2h);
Chris@19 544 T2k = LD(&(x[WS(vs, 4)]), ms, &(x[WS(vs, 4)]));
Chris@19 545 T2l = LD(&(x[WS(vs, 4) + WS(rs, 4)]), ms, &(x[WS(vs, 4)]));
Chris@19 546 T2v = VADD(T2k, T2l);
Chris@19 547 T2i = VSUB(T2g, T2h);
Chris@19 548 T2D = VADD(T2v, T2w);
Chris@19 549 T2m = VSUB(T2k, T2l);
Chris@19 550 T2x = VSUB(T2v, T2w);
Chris@19 551 }
Chris@19 552 {
Chris@19 553 V T3R, T3S, T47, T3V, T3W, T46;
Chris@19 554 T3R = LD(&(x[WS(vs, 7) + WS(rs, 2)]), ms, &(x[WS(vs, 7)]));
Chris@19 555 T3S = LD(&(x[WS(vs, 7) + WS(rs, 6)]), ms, &(x[WS(vs, 7)]));
Chris@19 556 T47 = VADD(T3R, T3S);
Chris@19 557 T3V = LD(&(x[WS(vs, 7)]), ms, &(x[WS(vs, 7)]));
Chris@19 558 T3W = LD(&(x[WS(vs, 7) + WS(rs, 4)]), ms, &(x[WS(vs, 7)]));
Chris@19 559 T46 = VADD(T3V, T3W);
Chris@19 560 T3T = VSUB(T3R, T3S);
Chris@19 561 T4e = VADD(T46, T47);
Chris@19 562 T3X = VSUB(T3V, T3W);
Chris@19 563 T48 = VSUB(T46, T47);
Chris@19 564 }
Chris@19 565 {
Chris@19 566 V TF, TG, TV, TJ, TK, TU;
Chris@19 567 TF = LD(&(x[WS(vs, 1) + WS(rs, 2)]), ms, &(x[WS(vs, 1)]));
Chris@19 568 TG = LD(&(x[WS(vs, 1) + WS(rs, 6)]), ms, &(x[WS(vs, 1)]));
Chris@19 569 TV = VADD(TF, TG);
Chris@19 570 TJ = LD(&(x[WS(vs, 1)]), ms, &(x[WS(vs, 1)]));
Chris@19 571 TK = LD(&(x[WS(vs, 1) + WS(rs, 4)]), ms, &(x[WS(vs, 1)]));
Chris@19 572 TU = VADD(TJ, TK);
Chris@19 573 TH = VSUB(TF, TG);
Chris@19 574 T12 = VADD(TU, TV);
Chris@19 575 TL = VSUB(TJ, TK);
Chris@19 576 TW = VSUB(TU, TV);
Chris@19 577 }
Chris@19 578 {
Chris@19 579 V T1c, T1d, T1s, T1g, T1h, T1r;
Chris@19 580 T1c = LD(&(x[WS(vs, 2) + WS(rs, 2)]), ms, &(x[WS(vs, 2)]));
Chris@19 581 T1d = LD(&(x[WS(vs, 2) + WS(rs, 6)]), ms, &(x[WS(vs, 2)]));
Chris@19 582 T1s = VADD(T1c, T1d);
Chris@19 583 T1g = LD(&(x[WS(vs, 2)]), ms, &(x[WS(vs, 2)]));
Chris@19 584 T1h = LD(&(x[WS(vs, 2) + WS(rs, 4)]), ms, &(x[WS(vs, 2)]));
Chris@19 585 T1r = VADD(T1g, T1h);
Chris@19 586 T1e = VSUB(T1c, T1d);
Chris@19 587 T1z = VADD(T1r, T1s);
Chris@19 588 T1i = VSUB(T1g, T1h);
Chris@19 589 T1t = VSUB(T1r, T1s);
Chris@19 590 }
Chris@19 591 {
Chris@19 592 V T2N, T2O, T33, T2R, T2S, T32;
Chris@19 593 T2N = LD(&(x[WS(vs, 5) + WS(rs, 2)]), ms, &(x[WS(vs, 5)]));
Chris@19 594 T2O = LD(&(x[WS(vs, 5) + WS(rs, 6)]), ms, &(x[WS(vs, 5)]));
Chris@19 595 T33 = VADD(T2N, T2O);
Chris@19 596 T2R = LD(&(x[WS(vs, 5)]), ms, &(x[WS(vs, 5)]));
Chris@19 597 T2S = LD(&(x[WS(vs, 5) + WS(rs, 4)]), ms, &(x[WS(vs, 5)]));
Chris@19 598 T32 = VADD(T2R, T2S);
Chris@19 599 T2P = VSUB(T2N, T2O);
Chris@19 600 T3a = VADD(T32, T33);
Chris@19 601 T2T = VSUB(T2R, T2S);
Chris@19 602 T34 = VSUB(T32, T33);
Chris@19 603 }
Chris@19 604 {
Chris@19 605 V T3k, T3l, T3A, T3o, T3p, T3z;
Chris@19 606 T3k = LD(&(x[WS(vs, 6) + WS(rs, 2)]), ms, &(x[WS(vs, 6)]));
Chris@19 607 T3l = LD(&(x[WS(vs, 6) + WS(rs, 6)]), ms, &(x[WS(vs, 6)]));
Chris@19 608 T3A = VADD(T3k, T3l);
Chris@19 609 T3o = LD(&(x[WS(vs, 6)]), ms, &(x[WS(vs, 6)]));
Chris@19 610 T3p = LD(&(x[WS(vs, 6) + WS(rs, 4)]), ms, &(x[WS(vs, 6)]));
Chris@19 611 T3z = VADD(T3o, T3p);
Chris@19 612 T3m = VSUB(T3k, T3l);
Chris@19 613 T3H = VADD(T3z, T3A);
Chris@19 614 T3q = VSUB(T3o, T3p);
Chris@19 615 T3B = VSUB(T3z, T3A);
Chris@19 616 }
Chris@19 617 {
Chris@19 618 V T3, Tq, T6, Tr;
Chris@19 619 {
Chris@19 620 V T1, T2, T4, T5;
Chris@19 621 T1 = LD(&(x[WS(rs, 1)]), ms, &(x[WS(rs, 1)]));
Chris@19 622 T2 = LD(&(x[WS(rs, 5)]), ms, &(x[WS(rs, 1)]));
Chris@19 623 T3 = VSUB(T1, T2);
Chris@19 624 Tq = VADD(T1, T2);
Chris@19 625 T4 = LD(&(x[WS(rs, 7)]), ms, &(x[WS(rs, 1)]));
Chris@19 626 T5 = LD(&(x[WS(rs, 3)]), ms, &(x[WS(rs, 1)]));
Chris@19 627 T6 = VSUB(T4, T5);
Chris@19 628 Tr = VADD(T4, T5);
Chris@19 629 }
Chris@19 630 T7 = VMUL(LDK(KP707106781), VSUB(T3, T6));
Chris@19 631 Tw = VADD(Tq, Tr);
Chris@19 632 Tf = VMUL(LDK(KP707106781), VADD(T3, T6));
Chris@19 633 Ts = VBYI(VSUB(Tq, Tr));
Chris@19 634 }
Chris@19 635 {
Chris@19 636 V T1E, T21, T1H, T22;
Chris@19 637 {
Chris@19 638 V T1C, T1D, T1F, T1G;
Chris@19 639 T1C = LD(&(x[WS(vs, 3) + WS(rs, 1)]), ms, &(x[WS(vs, 3) + WS(rs, 1)]));
Chris@19 640 T1D = LD(&(x[WS(vs, 3) + WS(rs, 5)]), ms, &(x[WS(vs, 3) + WS(rs, 1)]));
Chris@19 641 T1E = VSUB(T1C, T1D);
Chris@19 642 T21 = VADD(T1C, T1D);
Chris@19 643 T1F = LD(&(x[WS(vs, 3) + WS(rs, 7)]), ms, &(x[WS(vs, 3) + WS(rs, 1)]));
Chris@19 644 T1G = LD(&(x[WS(vs, 3) + WS(rs, 3)]), ms, &(x[WS(vs, 3) + WS(rs, 1)]));
Chris@19 645 T1H = VSUB(T1F, T1G);
Chris@19 646 T22 = VADD(T1F, T1G);
Chris@19 647 }
Chris@19 648 T1I = VMUL(LDK(KP707106781), VSUB(T1E, T1H));
Chris@19 649 T27 = VADD(T21, T22);
Chris@19 650 T1Q = VMUL(LDK(KP707106781), VADD(T1E, T1H));
Chris@19 651 T23 = VBYI(VSUB(T21, T22));
Chris@19 652 }
Chris@19 653 {
Chris@19 654 V T2b, T2y, T2e, T2z;
Chris@19 655 {
Chris@19 656 V T29, T2a, T2c, T2d;
Chris@19 657 T29 = LD(&(x[WS(vs, 4) + WS(rs, 1)]), ms, &(x[WS(vs, 4) + WS(rs, 1)]));
Chris@19 658 T2a = LD(&(x[WS(vs, 4) + WS(rs, 5)]), ms, &(x[WS(vs, 4) + WS(rs, 1)]));
Chris@19 659 T2b = VSUB(T29, T2a);
Chris@19 660 T2y = VADD(T29, T2a);
Chris@19 661 T2c = LD(&(x[WS(vs, 4) + WS(rs, 7)]), ms, &(x[WS(vs, 4) + WS(rs, 1)]));
Chris@19 662 T2d = LD(&(x[WS(vs, 4) + WS(rs, 3)]), ms, &(x[WS(vs, 4) + WS(rs, 1)]));
Chris@19 663 T2e = VSUB(T2c, T2d);
Chris@19 664 T2z = VADD(T2c, T2d);
Chris@19 665 }
Chris@19 666 T2f = VMUL(LDK(KP707106781), VSUB(T2b, T2e));
Chris@19 667 T2E = VADD(T2y, T2z);
Chris@19 668 T2n = VMUL(LDK(KP707106781), VADD(T2b, T2e));
Chris@19 669 T2A = VBYI(VSUB(T2y, T2z));
Chris@19 670 }
Chris@19 671 {
Chris@19 672 V T3M, T49, T3P, T4a;
Chris@19 673 {
Chris@19 674 V T3K, T3L, T3N, T3O;
Chris@19 675 T3K = LD(&(x[WS(vs, 7) + WS(rs, 1)]), ms, &(x[WS(vs, 7) + WS(rs, 1)]));
Chris@19 676 T3L = LD(&(x[WS(vs, 7) + WS(rs, 5)]), ms, &(x[WS(vs, 7) + WS(rs, 1)]));
Chris@19 677 T3M = VSUB(T3K, T3L);
Chris@19 678 T49 = VADD(T3K, T3L);
Chris@19 679 T3N = LD(&(x[WS(vs, 7) + WS(rs, 7)]), ms, &(x[WS(vs, 7) + WS(rs, 1)]));
Chris@19 680 T3O = LD(&(x[WS(vs, 7) + WS(rs, 3)]), ms, &(x[WS(vs, 7) + WS(rs, 1)]));
Chris@19 681 T3P = VSUB(T3N, T3O);
Chris@19 682 T4a = VADD(T3N, T3O);
Chris@19 683 }
Chris@19 684 T3Q = VMUL(LDK(KP707106781), VSUB(T3M, T3P));
Chris@19 685 T4f = VADD(T49, T4a);
Chris@19 686 T3Y = VMUL(LDK(KP707106781), VADD(T3M, T3P));
Chris@19 687 T4b = VBYI(VSUB(T49, T4a));
Chris@19 688 }
Chris@19 689 {
Chris@19 690 V TA, TX, TD, TY;
Chris@19 691 {
Chris@19 692 V Ty, Tz, TB, TC;
Chris@19 693 Ty = LD(&(x[WS(vs, 1) + WS(rs, 1)]), ms, &(x[WS(vs, 1) + WS(rs, 1)]));
Chris@19 694 Tz = LD(&(x[WS(vs, 1) + WS(rs, 5)]), ms, &(x[WS(vs, 1) + WS(rs, 1)]));
Chris@19 695 TA = VSUB(Ty, Tz);
Chris@19 696 TX = VADD(Ty, Tz);
Chris@19 697 TB = LD(&(x[WS(vs, 1) + WS(rs, 7)]), ms, &(x[WS(vs, 1) + WS(rs, 1)]));
Chris@19 698 TC = LD(&(x[WS(vs, 1) + WS(rs, 3)]), ms, &(x[WS(vs, 1) + WS(rs, 1)]));
Chris@19 699 TD = VSUB(TB, TC);
Chris@19 700 TY = VADD(TB, TC);
Chris@19 701 }
Chris@19 702 TE = VMUL(LDK(KP707106781), VSUB(TA, TD));
Chris@19 703 T13 = VADD(TX, TY);
Chris@19 704 TM = VMUL(LDK(KP707106781), VADD(TA, TD));
Chris@19 705 TZ = VBYI(VSUB(TX, TY));
Chris@19 706 }
Chris@19 707 {
Chris@19 708 V T17, T1u, T1a, T1v;
Chris@19 709 {
Chris@19 710 V T15, T16, T18, T19;
Chris@19 711 T15 = LD(&(x[WS(vs, 2) + WS(rs, 1)]), ms, &(x[WS(vs, 2) + WS(rs, 1)]));
Chris@19 712 T16 = LD(&(x[WS(vs, 2) + WS(rs, 5)]), ms, &(x[WS(vs, 2) + WS(rs, 1)]));
Chris@19 713 T17 = VSUB(T15, T16);
Chris@19 714 T1u = VADD(T15, T16);
Chris@19 715 T18 = LD(&(x[WS(vs, 2) + WS(rs, 7)]), ms, &(x[WS(vs, 2) + WS(rs, 1)]));
Chris@19 716 T19 = LD(&(x[WS(vs, 2) + WS(rs, 3)]), ms, &(x[WS(vs, 2) + WS(rs, 1)]));
Chris@19 717 T1a = VSUB(T18, T19);
Chris@19 718 T1v = VADD(T18, T19);
Chris@19 719 }
Chris@19 720 T1b = VMUL(LDK(KP707106781), VSUB(T17, T1a));
Chris@19 721 T1A = VADD(T1u, T1v);
Chris@19 722 T1j = VMUL(LDK(KP707106781), VADD(T17, T1a));
Chris@19 723 T1w = VBYI(VSUB(T1u, T1v));
Chris@19 724 }
Chris@19 725 {
Chris@19 726 V T2I, T35, T2L, T36;
Chris@19 727 {
Chris@19 728 V T2G, T2H, T2J, T2K;
Chris@19 729 T2G = LD(&(x[WS(vs, 5) + WS(rs, 1)]), ms, &(x[WS(vs, 5) + WS(rs, 1)]));
Chris@19 730 T2H = LD(&(x[WS(vs, 5) + WS(rs, 5)]), ms, &(x[WS(vs, 5) + WS(rs, 1)]));
Chris@19 731 T2I = VSUB(T2G, T2H);
Chris@19 732 T35 = VADD(T2G, T2H);
Chris@19 733 T2J = LD(&(x[WS(vs, 5) + WS(rs, 7)]), ms, &(x[WS(vs, 5) + WS(rs, 1)]));
Chris@19 734 T2K = LD(&(x[WS(vs, 5) + WS(rs, 3)]), ms, &(x[WS(vs, 5) + WS(rs, 1)]));
Chris@19 735 T2L = VSUB(T2J, T2K);
Chris@19 736 T36 = VADD(T2J, T2K);
Chris@19 737 }
Chris@19 738 T2M = VMUL(LDK(KP707106781), VSUB(T2I, T2L));
Chris@19 739 T3b = VADD(T35, T36);
Chris@19 740 T2U = VMUL(LDK(KP707106781), VADD(T2I, T2L));
Chris@19 741 T37 = VBYI(VSUB(T35, T36));
Chris@19 742 }
Chris@19 743 {
Chris@19 744 V T3f, T3C, T3i, T3D;
Chris@19 745 {
Chris@19 746 V T3d, T3e, T3g, T3h;
Chris@19 747 T3d = LD(&(x[WS(vs, 6) + WS(rs, 1)]), ms, &(x[WS(vs, 6) + WS(rs, 1)]));
Chris@19 748 T3e = LD(&(x[WS(vs, 6) + WS(rs, 5)]), ms, &(x[WS(vs, 6) + WS(rs, 1)]));
Chris@19 749 T3f = VSUB(T3d, T3e);
Chris@19 750 T3C = VADD(T3d, T3e);
Chris@19 751 T3g = LD(&(x[WS(vs, 6) + WS(rs, 7)]), ms, &(x[WS(vs, 6) + WS(rs, 1)]));
Chris@19 752 T3h = LD(&(x[WS(vs, 6) + WS(rs, 3)]), ms, &(x[WS(vs, 6) + WS(rs, 1)]));
Chris@19 753 T3i = VSUB(T3g, T3h);
Chris@19 754 T3D = VADD(T3g, T3h);
Chris@19 755 }
Chris@19 756 T3j = VMUL(LDK(KP707106781), VSUB(T3f, T3i));
Chris@19 757 T3I = VADD(T3C, T3D);
Chris@19 758 T3r = VMUL(LDK(KP707106781), VADD(T3f, T3i));
Chris@19 759 T3E = VBYI(VSUB(T3C, T3D));
Chris@19 760 }
Chris@19 761 ST(&(x[0]), VADD(Tv, Tw), ms, &(x[0]));
Chris@19 762 ST(&(x[WS(rs, 2)]), VADD(T1z, T1A), ms, &(x[0]));
Chris@19 763 ST(&(x[WS(rs, 5)]), VADD(T3a, T3b), ms, &(x[WS(rs, 1)]));
Chris@19 764 ST(&(x[WS(rs, 7)]), VADD(T4e, T4f), ms, &(x[WS(rs, 1)]));
Chris@19 765 ST(&(x[WS(rs, 6)]), VADD(T3H, T3I), ms, &(x[0]));
Chris@19 766 ST(&(x[WS(rs, 4)]), VADD(T2D, T2E), ms, &(x[0]));
Chris@19 767 {
Chris@19 768 V Tt, T4c, T2B, T24;
Chris@19 769 ST(&(x[WS(rs, 3)]), VADD(T26, T27), ms, &(x[WS(rs, 1)]));
Chris@19 770 ST(&(x[WS(rs, 1)]), VADD(T12, T13), ms, &(x[WS(rs, 1)]));
Chris@19 771 Tt = BYTW(&(W[TWVL * 10]), VSUB(Tp, Ts));
Chris@19 772 ST(&(x[WS(vs, 6)]), Tt, ms, &(x[WS(vs, 6)]));
Chris@19 773 T4c = BYTW(&(W[TWVL * 10]), VSUB(T48, T4b));
Chris@19 774 ST(&(x[WS(vs, 6) + WS(rs, 7)]), T4c, ms, &(x[WS(vs, 6) + WS(rs, 1)]));
Chris@19 775 T2B = BYTW(&(W[TWVL * 10]), VSUB(T2x, T2A));
Chris@19 776 ST(&(x[WS(vs, 6) + WS(rs, 4)]), T2B, ms, &(x[WS(vs, 6)]));
Chris@19 777 T24 = BYTW(&(W[TWVL * 10]), VSUB(T20, T23));
Chris@19 778 ST(&(x[WS(vs, 6) + WS(rs, 3)]), T24, ms, &(x[WS(vs, 6) + WS(rs, 1)]));
Chris@19 779 }
Chris@19 780 {
Chris@19 781 V T10, T1x, T3F, T38, T1y, Tu;
Chris@19 782 T10 = BYTW(&(W[TWVL * 10]), VSUB(TW, TZ));
Chris@19 783 ST(&(x[WS(vs, 6) + WS(rs, 1)]), T10, ms, &(x[WS(vs, 6) + WS(rs, 1)]));
Chris@19 784 T1x = BYTW(&(W[TWVL * 10]), VSUB(T1t, T1w));
Chris@19 785 ST(&(x[WS(vs, 6) + WS(rs, 2)]), T1x, ms, &(x[WS(vs, 6)]));
Chris@19 786 T3F = BYTW(&(W[TWVL * 10]), VSUB(T3B, T3E));
Chris@19 787 ST(&(x[WS(vs, 6) + WS(rs, 6)]), T3F, ms, &(x[WS(vs, 6)]));
Chris@19 788 T38 = BYTW(&(W[TWVL * 10]), VSUB(T34, T37));
Chris@19 789 ST(&(x[WS(vs, 6) + WS(rs, 5)]), T38, ms, &(x[WS(vs, 6) + WS(rs, 1)]));
Chris@19 790 T1y = BYTW(&(W[TWVL * 2]), VADD(T1t, T1w));
Chris@19 791 ST(&(x[WS(vs, 2) + WS(rs, 2)]), T1y, ms, &(x[WS(vs, 2)]));
Chris@19 792 Tu = BYTW(&(W[TWVL * 2]), VADD(Tp, Ts));
Chris@19 793 ST(&(x[WS(vs, 2)]), Tu, ms, &(x[WS(vs, 2)]));
Chris@19 794 }
Chris@19 795 {
Chris@19 796 V T2C, T3G, T11, T25, T39, T4d;
Chris@19 797 T2C = BYTW(&(W[TWVL * 2]), VADD(T2x, T2A));
Chris@19 798 ST(&(x[WS(vs, 2) + WS(rs, 4)]), T2C, ms, &(x[WS(vs, 2)]));
Chris@19 799 T3G = BYTW(&(W[TWVL * 2]), VADD(T3B, T3E));
Chris@19 800 ST(&(x[WS(vs, 2) + WS(rs, 6)]), T3G, ms, &(x[WS(vs, 2)]));
Chris@19 801 T11 = BYTW(&(W[TWVL * 2]), VADD(TW, TZ));
Chris@19 802 ST(&(x[WS(vs, 2) + WS(rs, 1)]), T11, ms, &(x[WS(vs, 2) + WS(rs, 1)]));
Chris@19 803 T25 = BYTW(&(W[TWVL * 2]), VADD(T20, T23));
Chris@19 804 ST(&(x[WS(vs, 2) + WS(rs, 3)]), T25, ms, &(x[WS(vs, 2) + WS(rs, 1)]));
Chris@19 805 T39 = BYTW(&(W[TWVL * 2]), VADD(T34, T37));
Chris@19 806 ST(&(x[WS(vs, 2) + WS(rs, 5)]), T39, ms, &(x[WS(vs, 2) + WS(rs, 1)]));
Chris@19 807 T4d = BYTW(&(W[TWVL * 2]), VADD(T48, T4b));
Chris@19 808 ST(&(x[WS(vs, 2) + WS(rs, 7)]), T4d, ms, &(x[WS(vs, 2) + WS(rs, 1)]));
Chris@19 809 }
Chris@19 810 {
Chris@19 811 V Tx, T1B, T3c, T4g, T3J, T2F;
Chris@19 812 Tx = BYTW(&(W[TWVL * 6]), VSUB(Tv, Tw));
Chris@19 813 ST(&(x[WS(vs, 4)]), Tx, ms, &(x[WS(vs, 4)]));
Chris@19 814 T1B = BYTW(&(W[TWVL * 6]), VSUB(T1z, T1A));
Chris@19 815 ST(&(x[WS(vs, 4) + WS(rs, 2)]), T1B, ms, &(x[WS(vs, 4)]));
Chris@19 816 T3c = BYTW(&(W[TWVL * 6]), VSUB(T3a, T3b));
Chris@19 817 ST(&(x[WS(vs, 4) + WS(rs, 5)]), T3c, ms, &(x[WS(vs, 4) + WS(rs, 1)]));
Chris@19 818 T4g = BYTW(&(W[TWVL * 6]), VSUB(T4e, T4f));
Chris@19 819 ST(&(x[WS(vs, 4) + WS(rs, 7)]), T4g, ms, &(x[WS(vs, 4) + WS(rs, 1)]));
Chris@19 820 T3J = BYTW(&(W[TWVL * 6]), VSUB(T3H, T3I));
Chris@19 821 ST(&(x[WS(vs, 4) + WS(rs, 6)]), T3J, ms, &(x[WS(vs, 4)]));
Chris@19 822 T2F = BYTW(&(W[TWVL * 6]), VSUB(T2D, T2E));
Chris@19 823 ST(&(x[WS(vs, 4) + WS(rs, 4)]), T2F, ms, &(x[WS(vs, 4)]));
Chris@19 824 }
Chris@19 825 T28 = BYTW(&(W[TWVL * 6]), VSUB(T26, T27));
Chris@19 826 ST(&(x[WS(vs, 4) + WS(rs, 3)]), T28, ms, &(x[WS(vs, 4) + WS(rs, 1)]));
Chris@19 827 T14 = BYTW(&(W[TWVL * 6]), VSUB(T12, T13));
Chris@19 828 ST(&(x[WS(vs, 4) + WS(rs, 1)]), T14, ms, &(x[WS(vs, 4) + WS(rs, 1)]));
Chris@19 829 {
Chris@19 830 V Th, Ti, Tb, Tg;
Chris@19 831 Tb = VBYI(VSUB(T7, Ta));
Chris@19 832 Tg = VSUB(Te, Tf);
Chris@19 833 Th = BYTW(&(W[TWVL * 4]), VADD(Tb, Tg));
Chris@19 834 Ti = BYTW(&(W[TWVL * 8]), VSUB(Tg, Tb));
Chris@19 835 ST(&(x[WS(vs, 3)]), Th, ms, &(x[WS(vs, 3)]));
Chris@19 836 ST(&(x[WS(vs, 5)]), Ti, ms, &(x[WS(vs, 5)]));
Chris@19 837 }
Chris@19 838 {
Chris@19 839 V T40, T41, T3U, T3Z;
Chris@19 840 T3U = VBYI(VSUB(T3Q, T3T));
Chris@19 841 T3Z = VSUB(T3X, T3Y);
Chris@19 842 T40 = BYTW(&(W[TWVL * 4]), VADD(T3U, T3Z));
Chris@19 843 T41 = BYTW(&(W[TWVL * 8]), VSUB(T3Z, T3U));
Chris@19 844 ST(&(x[WS(vs, 3) + WS(rs, 7)]), T40, ms, &(x[WS(vs, 3) + WS(rs, 1)]));
Chris@19 845 ST(&(x[WS(vs, 5) + WS(rs, 7)]), T41, ms, &(x[WS(vs, 5) + WS(rs, 1)]));
Chris@19 846 }
Chris@19 847 {
Chris@19 848 V T2p, T2q, T2j, T2o;
Chris@19 849 T2j = VBYI(VSUB(T2f, T2i));
Chris@19 850 T2o = VSUB(T2m, T2n);
Chris@19 851 T2p = BYTW(&(W[TWVL * 4]), VADD(T2j, T2o));
Chris@19 852 T2q = BYTW(&(W[TWVL * 8]), VSUB(T2o, T2j));
Chris@19 853 ST(&(x[WS(vs, 3) + WS(rs, 4)]), T2p, ms, &(x[WS(vs, 3)]));
Chris@19 854 ST(&(x[WS(vs, 5) + WS(rs, 4)]), T2q, ms, &(x[WS(vs, 5)]));
Chris@19 855 }
Chris@19 856 {
Chris@19 857 V T1S, T1T, T1M, T1R;
Chris@19 858 T1M = VBYI(VSUB(T1I, T1L));
Chris@19 859 T1R = VSUB(T1P, T1Q);
Chris@19 860 T1S = BYTW(&(W[TWVL * 4]), VADD(T1M, T1R));
Chris@19 861 T1T = BYTW(&(W[TWVL * 8]), VSUB(T1R, T1M));
Chris@19 862 ST(&(x[WS(vs, 3) + WS(rs, 3)]), T1S, ms, &(x[WS(vs, 3) + WS(rs, 1)]));
Chris@19 863 ST(&(x[WS(vs, 5) + WS(rs, 3)]), T1T, ms, &(x[WS(vs, 5) + WS(rs, 1)]));
Chris@19 864 }
Chris@19 865 {
Chris@19 866 V TO, TP, TI, TN;
Chris@19 867 TI = VBYI(VSUB(TE, TH));
Chris@19 868 TN = VSUB(TL, TM);
Chris@19 869 TO = BYTW(&(W[TWVL * 4]), VADD(TI, TN));
Chris@19 870 TP = BYTW(&(W[TWVL * 8]), VSUB(TN, TI));
Chris@19 871 ST(&(x[WS(vs, 3) + WS(rs, 1)]), TO, ms, &(x[WS(vs, 3) + WS(rs, 1)]));
Chris@19 872 ST(&(x[WS(vs, 5) + WS(rs, 1)]), TP, ms, &(x[WS(vs, 5) + WS(rs, 1)]));
Chris@19 873 }
Chris@19 874 {
Chris@19 875 V T1l, T1m, T1f, T1k;
Chris@19 876 T1f = VBYI(VSUB(T1b, T1e));
Chris@19 877 T1k = VSUB(T1i, T1j);
Chris@19 878 T1l = BYTW(&(W[TWVL * 4]), VADD(T1f, T1k));
Chris@19 879 T1m = BYTW(&(W[TWVL * 8]), VSUB(T1k, T1f));
Chris@19 880 ST(&(x[WS(vs, 3) + WS(rs, 2)]), T1l, ms, &(x[WS(vs, 3)]));
Chris@19 881 ST(&(x[WS(vs, 5) + WS(rs, 2)]), T1m, ms, &(x[WS(vs, 5)]));
Chris@19 882 }
Chris@19 883 {
Chris@19 884 V T3t, T3u, T3n, T3s;
Chris@19 885 T3n = VBYI(VSUB(T3j, T3m));
Chris@19 886 T3s = VSUB(T3q, T3r);
Chris@19 887 T3t = BYTW(&(W[TWVL * 4]), VADD(T3n, T3s));
Chris@19 888 T3u = BYTW(&(W[TWVL * 8]), VSUB(T3s, T3n));
Chris@19 889 ST(&(x[WS(vs, 3) + WS(rs, 6)]), T3t, ms, &(x[WS(vs, 3)]));
Chris@19 890 ST(&(x[WS(vs, 5) + WS(rs, 6)]), T3u, ms, &(x[WS(vs, 5)]));
Chris@19 891 }
Chris@19 892 {
Chris@19 893 V T2W, T2X, T2Q, T2V;
Chris@19 894 T2Q = VBYI(VSUB(T2M, T2P));
Chris@19 895 T2V = VSUB(T2T, T2U);
Chris@19 896 T2W = BYTW(&(W[TWVL * 4]), VADD(T2Q, T2V));
Chris@19 897 T2X = BYTW(&(W[TWVL * 8]), VSUB(T2V, T2Q));
Chris@19 898 ST(&(x[WS(vs, 3) + WS(rs, 5)]), T2W, ms, &(x[WS(vs, 3) + WS(rs, 1)]));
Chris@19 899 ST(&(x[WS(vs, 5) + WS(rs, 5)]), T2X, ms, &(x[WS(vs, 5) + WS(rs, 1)]));
Chris@19 900 }
Chris@19 901 {
Chris@19 902 V T1p, T1q, T1n, T1o;
Chris@19 903 T1n = VBYI(VADD(T1e, T1b));
Chris@19 904 T1o = VADD(T1i, T1j);
Chris@19 905 T1p = BYTW(&(W[0]), VADD(T1n, T1o));
Chris@19 906 T1q = BYTW(&(W[TWVL * 12]), VSUB(T1o, T1n));
Chris@19 907 ST(&(x[WS(vs, 1) + WS(rs, 2)]), T1p, ms, &(x[WS(vs, 1)]));
Chris@19 908 ST(&(x[WS(vs, 7) + WS(rs, 2)]), T1q, ms, &(x[WS(vs, 7)]));
Chris@19 909 }
Chris@19 910 {
Chris@19 911 V Tl, Tm, Tj, Tk;
Chris@19 912 Tj = VBYI(VADD(Ta, T7));
Chris@19 913 Tk = VADD(Te, Tf);
Chris@19 914 Tl = BYTW(&(W[0]), VADD(Tj, Tk));
Chris@19 915 Tm = BYTW(&(W[TWVL * 12]), VSUB(Tk, Tj));
Chris@19 916 ST(&(x[WS(vs, 1)]), Tl, ms, &(x[WS(vs, 1)]));
Chris@19 917 ST(&(x[WS(vs, 7)]), Tm, ms, &(x[WS(vs, 7)]));
Chris@19 918 }
Chris@19 919 {
Chris@19 920 V T2t, T2u, T2r, T2s;
Chris@19 921 T2r = VBYI(VADD(T2i, T2f));
Chris@19 922 T2s = VADD(T2m, T2n);
Chris@19 923 T2t = BYTW(&(W[0]), VADD(T2r, T2s));
Chris@19 924 T2u = BYTW(&(W[TWVL * 12]), VSUB(T2s, T2r));
Chris@19 925 ST(&(x[WS(vs, 1) + WS(rs, 4)]), T2t, ms, &(x[WS(vs, 1)]));
Chris@19 926 ST(&(x[WS(vs, 7) + WS(rs, 4)]), T2u, ms, &(x[WS(vs, 7)]));
Chris@19 927 }
Chris@19 928 {
Chris@19 929 V T3x, T3y, T3v, T3w;
Chris@19 930 T3v = VBYI(VADD(T3m, T3j));
Chris@19 931 T3w = VADD(T3q, T3r);
Chris@19 932 T3x = BYTW(&(W[0]), VADD(T3v, T3w));
Chris@19 933 T3y = BYTW(&(W[TWVL * 12]), VSUB(T3w, T3v));
Chris@19 934 ST(&(x[WS(vs, 1) + WS(rs, 6)]), T3x, ms, &(x[WS(vs, 1)]));
Chris@19 935 ST(&(x[WS(vs, 7) + WS(rs, 6)]), T3y, ms, &(x[WS(vs, 7)]));
Chris@19 936 }
Chris@19 937 {
Chris@19 938 V TS, TT, TQ, TR;
Chris@19 939 TQ = VBYI(VADD(TH, TE));
Chris@19 940 TR = VADD(TL, TM);
Chris@19 941 TS = BYTW(&(W[0]), VADD(TQ, TR));
Chris@19 942 TT = BYTW(&(W[TWVL * 12]), VSUB(TR, TQ));
Chris@19 943 ST(&(x[WS(vs, 1) + WS(rs, 1)]), TS, ms, &(x[WS(vs, 1) + WS(rs, 1)]));
Chris@19 944 ST(&(x[WS(vs, 7) + WS(rs, 1)]), TT, ms, &(x[WS(vs, 7) + WS(rs, 1)]));
Chris@19 945 }
Chris@19 946 {
Chris@19 947 V T1W, T1X, T1U, T1V;
Chris@19 948 T1U = VBYI(VADD(T1L, T1I));
Chris@19 949 T1V = VADD(T1P, T1Q);
Chris@19 950 T1W = BYTW(&(W[0]), VADD(T1U, T1V));
Chris@19 951 T1X = BYTW(&(W[TWVL * 12]), VSUB(T1V, T1U));
Chris@19 952 ST(&(x[WS(vs, 1) + WS(rs, 3)]), T1W, ms, &(x[WS(vs, 1) + WS(rs, 1)]));
Chris@19 953 ST(&(x[WS(vs, 7) + WS(rs, 3)]), T1X, ms, &(x[WS(vs, 7) + WS(rs, 1)]));
Chris@19 954 }
Chris@19 955 {
Chris@19 956 V T30, T31, T2Y, T2Z;
Chris@19 957 T2Y = VBYI(VADD(T2P, T2M));
Chris@19 958 T2Z = VADD(T2T, T2U);
Chris@19 959 T30 = BYTW(&(W[0]), VADD(T2Y, T2Z));
Chris@19 960 T31 = BYTW(&(W[TWVL * 12]), VSUB(T2Z, T2Y));
Chris@19 961 ST(&(x[WS(vs, 1) + WS(rs, 5)]), T30, ms, &(x[WS(vs, 1) + WS(rs, 1)]));
Chris@19 962 ST(&(x[WS(vs, 7) + WS(rs, 5)]), T31, ms, &(x[WS(vs, 7) + WS(rs, 1)]));
Chris@19 963 }
Chris@19 964 {
Chris@19 965 V T44, T45, T42, T43;
Chris@19 966 T42 = VBYI(VADD(T3T, T3Q));
Chris@19 967 T43 = VADD(T3X, T3Y);
Chris@19 968 T44 = BYTW(&(W[0]), VADD(T42, T43));
Chris@19 969 T45 = BYTW(&(W[TWVL * 12]), VSUB(T43, T42));
Chris@19 970 ST(&(x[WS(vs, 1) + WS(rs, 7)]), T44, ms, &(x[WS(vs, 1) + WS(rs, 1)]));
Chris@19 971 ST(&(x[WS(vs, 7) + WS(rs, 7)]), T45, ms, &(x[WS(vs, 7) + WS(rs, 1)]));
Chris@19 972 }
Chris@19 973 }
Chris@19 974 }
Chris@19 975 VLEAVE();
Chris@19 976 }
Chris@19 977
Chris@19 978 static const tw_instr twinstr[] = {
Chris@19 979 VTW(0, 1),
Chris@19 980 VTW(0, 2),
Chris@19 981 VTW(0, 3),
Chris@19 982 VTW(0, 4),
Chris@19 983 VTW(0, 5),
Chris@19 984 VTW(0, 6),
Chris@19 985 VTW(0, 7),
Chris@19 986 {TW_NEXT, VL, 0}
Chris@19 987 };
Chris@19 988
Chris@19 989 static const ct_desc desc = { 8, XSIMD_STRING("q1bv_8"), twinstr, &GENUS, {264, 128, 0, 0}, 0, 0, 0 };
Chris@19 990
Chris@19 991 void XSIMD(codelet_q1bv_8) (planner *p) {
Chris@19 992 X(kdft_difsq_register) (p, q1bv_8, &desc);
Chris@19 993 }
Chris@19 994 #endif /* HAVE_FMA */