annotate src/fftw-3.3.3/dft/simd/common/n2bv_12.c @ 104:19297782190a

Ranlib
author Chris Cannam <cannam@all-day-breakfast.com>
date Mon, 25 Mar 2013 16:27:30 +0000
parents 89f5e221ed7b
children
rev   line source
cannam@95 1 /*
cannam@95 2 * Copyright (c) 2003, 2007-11 Matteo Frigo
cannam@95 3 * Copyright (c) 2003, 2007-11 Massachusetts Institute of Technology
cannam@95 4 *
cannam@95 5 * This program is free software; you can redistribute it and/or modify
cannam@95 6 * it under the terms of the GNU General Public License as published by
cannam@95 7 * the Free Software Foundation; either version 2 of the License, or
cannam@95 8 * (at your option) any later version.
cannam@95 9 *
cannam@95 10 * This program is distributed in the hope that it will be useful,
cannam@95 11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
cannam@95 12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
cannam@95 13 * GNU General Public License for more details.
cannam@95 14 *
cannam@95 15 * You should have received a copy of the GNU General Public License
cannam@95 16 * along with this program; if not, write to the Free Software
cannam@95 17 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
cannam@95 18 *
cannam@95 19 */
cannam@95 20
cannam@95 21 /* This file was automatically generated --- DO NOT EDIT */
cannam@95 22 /* Generated on Sun Nov 25 07:37:30 EST 2012 */
cannam@95 23
cannam@95 24 #include "codelet-dft.h"
cannam@95 25
cannam@95 26 #ifdef HAVE_FMA
cannam@95 27
cannam@95 28 /* Generated by: ../../../genfft/gen_notw_c.native -fma -reorder-insns -schedule-for-pipeline -simd -compact -variables 4 -pipeline-latency 8 -sign 1 -n 12 -name n2bv_12 -with-ostride 2 -include n2b.h -store-multiple 2 */
cannam@95 29
cannam@95 30 /*
cannam@95 31 * This function contains 48 FP additions, 20 FP multiplications,
cannam@95 32 * (or, 30 additions, 2 multiplications, 18 fused multiply/add),
cannam@95 33 * 61 stack variables, 2 constants, and 30 memory accesses
cannam@95 34 */
cannam@95 35 #include "n2b.h"
cannam@95 36
cannam@95 37 static void n2bv_12(const R *ri, const R *ii, R *ro, R *io, stride is, stride os, INT v, INT ivs, INT ovs)
cannam@95 38 {
cannam@95 39 DVK(KP866025403, +0.866025403784438646763723170752936183471402627);
cannam@95 40 DVK(KP500000000, +0.500000000000000000000000000000000000000000000);
cannam@95 41 {
cannam@95 42 INT i;
cannam@95 43 const R *xi;
cannam@95 44 R *xo;
cannam@95 45 xi = ii;
cannam@95 46 xo = io;
cannam@95 47 for (i = v; i > 0; i = i - VL, xi = xi + (VL * ivs), xo = xo + (VL * ovs), MAKE_VOLATILE_STRIDE(24, is), MAKE_VOLATILE_STRIDE(24, os)) {
cannam@95 48 V T1, T6, Tc, Th, Td, Te, Ti, Tz, T4, TA, T9, Tj, Tf, Tw;
cannam@95 49 {
cannam@95 50 V T2, T3, T7, T8;
cannam@95 51 T1 = LD(&(xi[0]), ivs, &(xi[0]));
cannam@95 52 T6 = LD(&(xi[WS(is, 6)]), ivs, &(xi[0]));
cannam@95 53 T2 = LD(&(xi[WS(is, 4)]), ivs, &(xi[0]));
cannam@95 54 T3 = LD(&(xi[WS(is, 8)]), ivs, &(xi[0]));
cannam@95 55 T7 = LD(&(xi[WS(is, 10)]), ivs, &(xi[0]));
cannam@95 56 T8 = LD(&(xi[WS(is, 2)]), ivs, &(xi[0]));
cannam@95 57 Tc = LD(&(xi[WS(is, 3)]), ivs, &(xi[WS(is, 1)]));
cannam@95 58 Th = LD(&(xi[WS(is, 9)]), ivs, &(xi[WS(is, 1)]));
cannam@95 59 Td = LD(&(xi[WS(is, 7)]), ivs, &(xi[WS(is, 1)]));
cannam@95 60 Te = LD(&(xi[WS(is, 11)]), ivs, &(xi[WS(is, 1)]));
cannam@95 61 Ti = LD(&(xi[WS(is, 1)]), ivs, &(xi[WS(is, 1)]));
cannam@95 62 Tz = VSUB(T2, T3);
cannam@95 63 T4 = VADD(T2, T3);
cannam@95 64 TA = VSUB(T7, T8);
cannam@95 65 T9 = VADD(T7, T8);
cannam@95 66 Tj = LD(&(xi[WS(is, 5)]), ivs, &(xi[WS(is, 1)]));
cannam@95 67 }
cannam@95 68 Tf = VADD(Td, Te);
cannam@95 69 Tw = VSUB(Td, Te);
cannam@95 70 {
cannam@95 71 V T5, Tp, TJ, TB, Ta, Tq, Tk, Tx, Tg, Ts;
cannam@95 72 T5 = VADD(T1, T4);
cannam@95 73 Tp = VFNMS(LDK(KP500000000), T4, T1);
cannam@95 74 TJ = VSUB(Tz, TA);
cannam@95 75 TB = VADD(Tz, TA);
cannam@95 76 Ta = VADD(T6, T9);
cannam@95 77 Tq = VFNMS(LDK(KP500000000), T9, T6);
cannam@95 78 Tk = VADD(Ti, Tj);
cannam@95 79 Tx = VSUB(Tj, Ti);
cannam@95 80 Tg = VADD(Tc, Tf);
cannam@95 81 Ts = VFNMS(LDK(KP500000000), Tf, Tc);
cannam@95 82 {
cannam@95 83 V Tr, TF, Tb, Tn, TG, Ty, Tl, Tt;
cannam@95 84 Tr = VADD(Tp, Tq);
cannam@95 85 TF = VSUB(Tp, Tq);
cannam@95 86 Tb = VSUB(T5, Ta);
cannam@95 87 Tn = VADD(T5, Ta);
cannam@95 88 TG = VADD(Tw, Tx);
cannam@95 89 Ty = VSUB(Tw, Tx);
cannam@95 90 Tl = VADD(Th, Tk);
cannam@95 91 Tt = VFNMS(LDK(KP500000000), Tk, Th);
cannam@95 92 {
cannam@95 93 V TC, TE, TH, TL, Tu, TI, Tm, To;
cannam@95 94 TC = VMUL(LDK(KP866025403), VSUB(Ty, TB));
cannam@95 95 TE = VMUL(LDK(KP866025403), VADD(TB, Ty));
cannam@95 96 TH = VFNMS(LDK(KP866025403), TG, TF);
cannam@95 97 TL = VFMA(LDK(KP866025403), TG, TF);
cannam@95 98 Tu = VADD(Ts, Tt);
cannam@95 99 TI = VSUB(Ts, Tt);
cannam@95 100 Tm = VSUB(Tg, Tl);
cannam@95 101 To = VADD(Tg, Tl);
cannam@95 102 {
cannam@95 103 V TK, TM, Tv, TD;
cannam@95 104 TK = VFMA(LDK(KP866025403), TJ, TI);
cannam@95 105 TM = VFNMS(LDK(KP866025403), TJ, TI);
cannam@95 106 Tv = VSUB(Tr, Tu);
cannam@95 107 TD = VADD(Tr, Tu);
cannam@95 108 {
cannam@95 109 V TN, TO, TP, TQ;
cannam@95 110 TN = VADD(Tn, To);
cannam@95 111 STM2(&(xo[0]), TN, ovs, &(xo[0]));
cannam@95 112 TO = VSUB(Tn, To);
cannam@95 113 STM2(&(xo[12]), TO, ovs, &(xo[0]));
cannam@95 114 TP = VFMAI(Tm, Tb);
cannam@95 115 STM2(&(xo[18]), TP, ovs, &(xo[2]));
cannam@95 116 TQ = VFNMSI(Tm, Tb);
cannam@95 117 STM2(&(xo[6]), TQ, ovs, &(xo[2]));
cannam@95 118 {
cannam@95 119 V TR, TS, TT, TU;
cannam@95 120 TR = VFMAI(TM, TL);
cannam@95 121 STM2(&(xo[10]), TR, ovs, &(xo[2]));
cannam@95 122 TS = VFNMSI(TM, TL);
cannam@95 123 STM2(&(xo[14]), TS, ovs, &(xo[2]));
cannam@95 124 STN2(&(xo[12]), TO, TS, ovs);
cannam@95 125 TT = VFNMSI(TK, TH);
cannam@95 126 STM2(&(xo[22]), TT, ovs, &(xo[2]));
cannam@95 127 TU = VFMAI(TK, TH);
cannam@95 128 STM2(&(xo[2]), TU, ovs, &(xo[2]));
cannam@95 129 STN2(&(xo[0]), TN, TU, ovs);
cannam@95 130 {
cannam@95 131 V TV, TW, TX, TY;
cannam@95 132 TV = VFNMSI(TE, TD);
cannam@95 133 STM2(&(xo[16]), TV, ovs, &(xo[0]));
cannam@95 134 STN2(&(xo[16]), TV, TP, ovs);
cannam@95 135 TW = VFMAI(TE, TD);
cannam@95 136 STM2(&(xo[8]), TW, ovs, &(xo[0]));
cannam@95 137 STN2(&(xo[8]), TW, TR, ovs);
cannam@95 138 TX = VFMAI(TC, Tv);
cannam@95 139 STM2(&(xo[4]), TX, ovs, &(xo[0]));
cannam@95 140 STN2(&(xo[4]), TX, TQ, ovs);
cannam@95 141 TY = VFNMSI(TC, Tv);
cannam@95 142 STM2(&(xo[20]), TY, ovs, &(xo[0]));
cannam@95 143 STN2(&(xo[20]), TY, TT, ovs);
cannam@95 144 }
cannam@95 145 }
cannam@95 146 }
cannam@95 147 }
cannam@95 148 }
cannam@95 149 }
cannam@95 150 }
cannam@95 151 }
cannam@95 152 }
cannam@95 153 VLEAVE();
cannam@95 154 }
cannam@95 155
cannam@95 156 static const kdft_desc desc = { 12, XSIMD_STRING("n2bv_12"), {30, 2, 18, 0}, &GENUS, 0, 2, 0, 0 };
cannam@95 157
cannam@95 158 void XSIMD(codelet_n2bv_12) (planner *p) {
cannam@95 159 X(kdft_register) (p, n2bv_12, &desc);
cannam@95 160 }
cannam@95 161
cannam@95 162 #else /* HAVE_FMA */
cannam@95 163
cannam@95 164 /* Generated by: ../../../genfft/gen_notw_c.native -simd -compact -variables 4 -pipeline-latency 8 -sign 1 -n 12 -name n2bv_12 -with-ostride 2 -include n2b.h -store-multiple 2 */
cannam@95 165
cannam@95 166 /*
cannam@95 167 * This function contains 48 FP additions, 8 FP multiplications,
cannam@95 168 * (or, 44 additions, 4 multiplications, 4 fused multiply/add),
cannam@95 169 * 33 stack variables, 2 constants, and 30 memory accesses
cannam@95 170 */
cannam@95 171 #include "n2b.h"
cannam@95 172
cannam@95 173 static void n2bv_12(const R *ri, const R *ii, R *ro, R *io, stride is, stride os, INT v, INT ivs, INT ovs)
cannam@95 174 {
cannam@95 175 DVK(KP866025403, +0.866025403784438646763723170752936183471402627);
cannam@95 176 DVK(KP500000000, +0.500000000000000000000000000000000000000000000);
cannam@95 177 {
cannam@95 178 INT i;
cannam@95 179 const R *xi;
cannam@95 180 R *xo;
cannam@95 181 xi = ii;
cannam@95 182 xo = io;
cannam@95 183 for (i = v; i > 0; i = i - VL, xi = xi + (VL * ivs), xo = xo + (VL * ovs), MAKE_VOLATILE_STRIDE(24, is), MAKE_VOLATILE_STRIDE(24, os)) {
cannam@95 184 V T5, Ta, TG, TF, Ty, Tm, Ti, Tp, TJ, TI, Tx, Ts;
cannam@95 185 {
cannam@95 186 V T1, T6, T4, Tk, T9, Tl;
cannam@95 187 T1 = LD(&(xi[0]), ivs, &(xi[0]));
cannam@95 188 T6 = LD(&(xi[WS(is, 6)]), ivs, &(xi[0]));
cannam@95 189 {
cannam@95 190 V T2, T3, T7, T8;
cannam@95 191 T2 = LD(&(xi[WS(is, 4)]), ivs, &(xi[0]));
cannam@95 192 T3 = LD(&(xi[WS(is, 8)]), ivs, &(xi[0]));
cannam@95 193 T4 = VADD(T2, T3);
cannam@95 194 Tk = VSUB(T2, T3);
cannam@95 195 T7 = LD(&(xi[WS(is, 10)]), ivs, &(xi[0]));
cannam@95 196 T8 = LD(&(xi[WS(is, 2)]), ivs, &(xi[0]));
cannam@95 197 T9 = VADD(T7, T8);
cannam@95 198 Tl = VSUB(T7, T8);
cannam@95 199 }
cannam@95 200 T5 = VFNMS(LDK(KP500000000), T4, T1);
cannam@95 201 Ta = VFNMS(LDK(KP500000000), T9, T6);
cannam@95 202 TG = VADD(T6, T9);
cannam@95 203 TF = VADD(T1, T4);
cannam@95 204 Ty = VADD(Tk, Tl);
cannam@95 205 Tm = VMUL(LDK(KP866025403), VSUB(Tk, Tl));
cannam@95 206 }
cannam@95 207 {
cannam@95 208 V Tn, Tq, Te, To, Th, Tr;
cannam@95 209 Tn = LD(&(xi[WS(is, 3)]), ivs, &(xi[WS(is, 1)]));
cannam@95 210 Tq = LD(&(xi[WS(is, 9)]), ivs, &(xi[WS(is, 1)]));
cannam@95 211 {
cannam@95 212 V Tc, Td, Tf, Tg;
cannam@95 213 Tc = LD(&(xi[WS(is, 7)]), ivs, &(xi[WS(is, 1)]));
cannam@95 214 Td = LD(&(xi[WS(is, 11)]), ivs, &(xi[WS(is, 1)]));
cannam@95 215 Te = VSUB(Tc, Td);
cannam@95 216 To = VADD(Tc, Td);
cannam@95 217 Tf = LD(&(xi[WS(is, 1)]), ivs, &(xi[WS(is, 1)]));
cannam@95 218 Tg = LD(&(xi[WS(is, 5)]), ivs, &(xi[WS(is, 1)]));
cannam@95 219 Th = VSUB(Tf, Tg);
cannam@95 220 Tr = VADD(Tf, Tg);
cannam@95 221 }
cannam@95 222 Ti = VMUL(LDK(KP866025403), VSUB(Te, Th));
cannam@95 223 Tp = VFNMS(LDK(KP500000000), To, Tn);
cannam@95 224 TJ = VADD(Tq, Tr);
cannam@95 225 TI = VADD(Tn, To);
cannam@95 226 Tx = VADD(Te, Th);
cannam@95 227 Ts = VFNMS(LDK(KP500000000), Tr, Tq);
cannam@95 228 }
cannam@95 229 {
cannam@95 230 V TN, TO, TP, TQ, TR, TS;
cannam@95 231 {
cannam@95 232 V TH, TK, TL, TM;
cannam@95 233 TH = VSUB(TF, TG);
cannam@95 234 TK = VBYI(VSUB(TI, TJ));
cannam@95 235 TN = VSUB(TH, TK);
cannam@95 236 STM2(&(xo[6]), TN, ovs, &(xo[2]));
cannam@95 237 TO = VADD(TH, TK);
cannam@95 238 STM2(&(xo[18]), TO, ovs, &(xo[2]));
cannam@95 239 TL = VADD(TF, TG);
cannam@95 240 TM = VADD(TI, TJ);
cannam@95 241 TP = VSUB(TL, TM);
cannam@95 242 STM2(&(xo[12]), TP, ovs, &(xo[0]));
cannam@95 243 TQ = VADD(TL, TM);
cannam@95 244 STM2(&(xo[0]), TQ, ovs, &(xo[0]));
cannam@95 245 }
cannam@95 246 {
cannam@95 247 V Tj, Tv, Tu, Tw, Tb, Tt, TT, TU;
cannam@95 248 Tb = VSUB(T5, Ta);
cannam@95 249 Tj = VSUB(Tb, Ti);
cannam@95 250 Tv = VADD(Tb, Ti);
cannam@95 251 Tt = VSUB(Tp, Ts);
cannam@95 252 Tu = VBYI(VADD(Tm, Tt));
cannam@95 253 Tw = VBYI(VSUB(Tt, Tm));
cannam@95 254 TR = VSUB(Tj, Tu);
cannam@95 255 STM2(&(xo[22]), TR, ovs, &(xo[2]));
cannam@95 256 TS = VADD(Tv, Tw);
cannam@95 257 STM2(&(xo[10]), TS, ovs, &(xo[2]));
cannam@95 258 TT = VADD(Tj, Tu);
cannam@95 259 STM2(&(xo[2]), TT, ovs, &(xo[2]));
cannam@95 260 STN2(&(xo[0]), TQ, TT, ovs);
cannam@95 261 TU = VSUB(Tv, Tw);
cannam@95 262 STM2(&(xo[14]), TU, ovs, &(xo[2]));
cannam@95 263 STN2(&(xo[12]), TP, TU, ovs);
cannam@95 264 }
cannam@95 265 {
cannam@95 266 V Tz, TD, TC, TE, TA, TB;
cannam@95 267 Tz = VBYI(VMUL(LDK(KP866025403), VSUB(Tx, Ty)));
cannam@95 268 TD = VBYI(VMUL(LDK(KP866025403), VADD(Ty, Tx)));
cannam@95 269 TA = VADD(T5, Ta);
cannam@95 270 TB = VADD(Tp, Ts);
cannam@95 271 TC = VSUB(TA, TB);
cannam@95 272 TE = VADD(TA, TB);
cannam@95 273 {
cannam@95 274 V TV, TW, TX, TY;
cannam@95 275 TV = VADD(Tz, TC);
cannam@95 276 STM2(&(xo[4]), TV, ovs, &(xo[0]));
cannam@95 277 STN2(&(xo[4]), TV, TN, ovs);
cannam@95 278 TW = VSUB(TE, TD);
cannam@95 279 STM2(&(xo[16]), TW, ovs, &(xo[0]));
cannam@95 280 STN2(&(xo[16]), TW, TO, ovs);
cannam@95 281 TX = VSUB(TC, Tz);
cannam@95 282 STM2(&(xo[20]), TX, ovs, &(xo[0]));
cannam@95 283 STN2(&(xo[20]), TX, TR, ovs);
cannam@95 284 TY = VADD(TD, TE);
cannam@95 285 STM2(&(xo[8]), TY, ovs, &(xo[0]));
cannam@95 286 STN2(&(xo[8]), TY, TS, ovs);
cannam@95 287 }
cannam@95 288 }
cannam@95 289 }
cannam@95 290 }
cannam@95 291 }
cannam@95 292 VLEAVE();
cannam@95 293 }
cannam@95 294
cannam@95 295 static const kdft_desc desc = { 12, XSIMD_STRING("n2bv_12"), {44, 4, 4, 0}, &GENUS, 0, 2, 0, 0 };
cannam@95 296
cannam@95 297 void XSIMD(codelet_n2bv_12) (planner *p) {
cannam@95 298 X(kdft_register) (p, n2bv_12, &desc);
cannam@95 299 }
cannam@95 300
cannam@95 301 #endif /* HAVE_FMA */