1 /*
2  * Copyright (c) 2003, 2007-14 Matteo Frigo
3  * Copyright (c) 2003, 2007-14 Massachusetts Institute of Technology
4  *
5  * This program is free software; you can redistribute it and/or modify
6  * it under the terms of the GNU General Public License as published by
7  * the Free Software Foundation; either version 2 of the License, or
8  * (at your option) any later version.
9  *
10  * This program is distributed in the hope that it will be useful,
11  * but WITHOUT ANY WARRANTY; without even the implied warranty of
12  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13  * GNU General Public License for more details.
14  *
15  * You should have received a copy of the GNU General Public License
16  * along with this program; if not, write to the Free Software
17  * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA  02110-1301  USA
18  *
19  */
20 
21 /* This file was automatically generated --- DO NOT EDIT */
22 /* Generated on Thu Dec 10 07:04:46 EST 2020 */
23 
24 #include "dft/codelet-dft.h"
25 
26 #if defined(ARCH_PREFERS_FMA) || defined(ISA_EXTENSION_PREFERS_FMA)
27 
28 /* Generated by: ../../../genfft/gen_notw_c.native -fma -simd -compact -variables 4 -pipeline-latency 8 -sign 1 -n 32 -name n1bv_32 -include dft/simd/n1b.h */
29 
30 /*
31  * This function contains 186 FP additions, 98 FP multiplications,
32  * (or, 88 additions, 0 multiplications, 98 fused multiply/add),
33  * 58 stack variables, 7 constants, and 64 memory accesses
34  */
35 #include "dft/simd/n1b.h"
36 
n1bv_32(const R * ri,const R * ii,R * ro,R * io,stride is,stride os,INT v,INT ivs,INT ovs)37 static void n1bv_32(const R *ri, const R *ii, R *ro, R *io, stride is, stride os, INT v, INT ivs, INT ovs)
38 {
39      DVK(KP980785280, +0.980785280403230449126182236134239036973933731);
40      DVK(KP198912367, +0.198912367379658006911597622644676228597850501);
41      DVK(KP831469612, +0.831469612302545237078788377617905756738560812);
42      DVK(KP668178637, +0.668178637919298919997757686523080761552472251);
43      DVK(KP923879532, +0.923879532511286756128183189396788286822416626);
44      DVK(KP414213562, +0.414213562373095048801688724209698078569671875);
45      DVK(KP707106781, +0.707106781186547524400844362104849039284835938);
46      {
47 	  INT i;
48 	  const R *xi;
49 	  R *xo;
50 	  xi = ii;
51 	  xo = io;
52 	  for (i = v; i > 0; i = i - VL, xi = xi + (VL * ivs), xo = xo + (VL * ovs), MAKE_VOLATILE_STRIDE(64, is), MAKE_VOLATILE_STRIDE(64, os)) {
53 	       V T1T, T1W, T2K, T2x, T16, T1A, Tb, T1p, TT, T1v, TY, T1w, T27, T2a, T2b;
54 	       V T2H, T2O, TC, T1s, TH, T1t, T20, T23, T24, T2E, T2N, T2g, T2j, Tq, T1B;
55 	       V T19, T1q, T2A, T2L;
56 	       {
57 		    V T3, T1R, T14, T1S, T6, T1U, T9, T1V, T15, Ta;
58 		    {
59 			 V T1, T2, T12, T13;
60 			 T1 = LD(&(xi[0]), ivs, &(xi[0]));
61 			 T2 = LD(&(xi[WS(is, 16)]), ivs, &(xi[0]));
62 			 T3 = VSUB(T1, T2);
63 			 T1R = VADD(T1, T2);
64 			 T12 = LD(&(xi[WS(is, 8)]), ivs, &(xi[0]));
65 			 T13 = LD(&(xi[WS(is, 24)]), ivs, &(xi[0]));
66 			 T14 = VSUB(T12, T13);
67 			 T1S = VADD(T12, T13);
68 		    }
69 		    {
70 			 V T4, T5, T7, T8;
71 			 T4 = LD(&(xi[WS(is, 4)]), ivs, &(xi[0]));
72 			 T5 = LD(&(xi[WS(is, 20)]), ivs, &(xi[0]));
73 			 T6 = VSUB(T4, T5);
74 			 T1U = VADD(T4, T5);
75 			 T7 = LD(&(xi[WS(is, 28)]), ivs, &(xi[0]));
76 			 T8 = LD(&(xi[WS(is, 12)]), ivs, &(xi[0]));
77 			 T9 = VSUB(T7, T8);
78 			 T1V = VADD(T7, T8);
79 		    }
80 		    T1T = VADD(T1R, T1S);
81 		    T1W = VADD(T1U, T1V);
82 		    T2K = VSUB(T1U, T1V);
83 		    T2x = VSUB(T1R, T1S);
84 		    T15 = VSUB(T6, T9);
85 		    T16 = VFMA(LDK(KP707106781), T15, T14);
86 		    T1A = VFNMS(LDK(KP707106781), T15, T14);
87 		    Ta = VADD(T6, T9);
88 		    Tb = VFMA(LDK(KP707106781), Ta, T3);
89 		    T1p = VFNMS(LDK(KP707106781), Ta, T3);
90 	       }
91 	       {
92 		    V TL, T25, TW, T26, TO, T28, TR, T29;
93 		    {
94 			 V TJ, TK, TU, TV;
95 			 TJ = LD(&(xi[WS(is, 31)]), ivs, &(xi[WS(is, 1)]));
96 			 TK = LD(&(xi[WS(is, 15)]), ivs, &(xi[WS(is, 1)]));
97 			 TL = VSUB(TJ, TK);
98 			 T25 = VADD(TJ, TK);
99 			 TU = LD(&(xi[WS(is, 23)]), ivs, &(xi[WS(is, 1)]));
100 			 TV = LD(&(xi[WS(is, 7)]), ivs, &(xi[WS(is, 1)]));
101 			 TW = VSUB(TU, TV);
102 			 T26 = VADD(TV, TU);
103 		    }
104 		    {
105 			 V TM, TN, TP, TQ;
106 			 TM = LD(&(xi[WS(is, 3)]), ivs, &(xi[WS(is, 1)]));
107 			 TN = LD(&(xi[WS(is, 19)]), ivs, &(xi[WS(is, 1)]));
108 			 TO = VSUB(TM, TN);
109 			 T28 = VADD(TM, TN);
110 			 TP = LD(&(xi[WS(is, 27)]), ivs, &(xi[WS(is, 1)]));
111 			 TQ = LD(&(xi[WS(is, 11)]), ivs, &(xi[WS(is, 1)]));
112 			 TR = VSUB(TP, TQ);
113 			 T29 = VADD(TP, TQ);
114 		    }
115 		    {
116 			 V TS, TX, T2F, T2G;
117 			 TS = VADD(TO, TR);
118 			 TT = VFMA(LDK(KP707106781), TS, TL);
119 			 T1v = VFNMS(LDK(KP707106781), TS, TL);
120 			 TX = VSUB(TR, TO);
121 			 TY = VFMA(LDK(KP707106781), TX, TW);
122 			 T1w = VFNMS(LDK(KP707106781), TX, TW);
123 			 T27 = VADD(T25, T26);
124 			 T2a = VADD(T28, T29);
125 			 T2b = VSUB(T27, T2a);
126 			 T2F = VSUB(T25, T26);
127 			 T2G = VSUB(T29, T28);
128 			 T2H = VFNMS(LDK(KP414213562), T2G, T2F);
129 			 T2O = VFMA(LDK(KP414213562), T2F, T2G);
130 		    }
131 	       }
132 	       {
133 		    V Tu, T1Y, TF, T1Z, Tx, T21, TA, T22;
134 		    {
135 			 V Ts, Tt, TD, TE;
136 			 Ts = LD(&(xi[WS(is, 1)]), ivs, &(xi[WS(is, 1)]));
137 			 Tt = LD(&(xi[WS(is, 17)]), ivs, &(xi[WS(is, 1)]));
138 			 Tu = VSUB(Ts, Tt);
139 			 T1Y = VADD(Ts, Tt);
140 			 TD = LD(&(xi[WS(is, 9)]), ivs, &(xi[WS(is, 1)]));
141 			 TE = LD(&(xi[WS(is, 25)]), ivs, &(xi[WS(is, 1)]));
142 			 TF = VSUB(TD, TE);
143 			 T1Z = VADD(TD, TE);
144 		    }
145 		    {
146 			 V Tv, Tw, Ty, Tz;
147 			 Tv = LD(&(xi[WS(is, 5)]), ivs, &(xi[WS(is, 1)]));
148 			 Tw = LD(&(xi[WS(is, 21)]), ivs, &(xi[WS(is, 1)]));
149 			 Tx = VSUB(Tv, Tw);
150 			 T21 = VADD(Tv, Tw);
151 			 Ty = LD(&(xi[WS(is, 29)]), ivs, &(xi[WS(is, 1)]));
152 			 Tz = LD(&(xi[WS(is, 13)]), ivs, &(xi[WS(is, 1)]));
153 			 TA = VSUB(Ty, Tz);
154 			 T22 = VADD(Ty, Tz);
155 		    }
156 		    {
157 			 V TB, TG, T2C, T2D;
158 			 TB = VADD(Tx, TA);
159 			 TC = VFMA(LDK(KP707106781), TB, Tu);
160 			 T1s = VFNMS(LDK(KP707106781), TB, Tu);
161 			 TG = VSUB(Tx, TA);
162 			 TH = VFMA(LDK(KP707106781), TG, TF);
163 			 T1t = VFNMS(LDK(KP707106781), TG, TF);
164 			 T20 = VADD(T1Y, T1Z);
165 			 T23 = VADD(T21, T22);
166 			 T24 = VSUB(T20, T23);
167 			 T2C = VSUB(T1Y, T1Z);
168 			 T2D = VSUB(T21, T22);
169 			 T2E = VFNMS(LDK(KP414213562), T2D, T2C);
170 			 T2N = VFMA(LDK(KP414213562), T2C, T2D);
171 		    }
172 	       }
173 	       {
174 		    V Te, T2e, To, T2i, Th, T2f, Tl, T2h, Ti, Tp;
175 		    {
176 			 V Tc, Td, Tm, Tn;
177 			 Tc = LD(&(xi[WS(is, 2)]), ivs, &(xi[0]));
178 			 Td = LD(&(xi[WS(is, 18)]), ivs, &(xi[0]));
179 			 Te = VSUB(Tc, Td);
180 			 T2e = VADD(Tc, Td);
181 			 Tm = LD(&(xi[WS(is, 22)]), ivs, &(xi[0]));
182 			 Tn = LD(&(xi[WS(is, 6)]), ivs, &(xi[0]));
183 			 To = VSUB(Tm, Tn);
184 			 T2i = VADD(Tn, Tm);
185 		    }
186 		    {
187 			 V Tf, Tg, Tj, Tk;
188 			 Tf = LD(&(xi[WS(is, 10)]), ivs, &(xi[0]));
189 			 Tg = LD(&(xi[WS(is, 26)]), ivs, &(xi[0]));
190 			 Th = VSUB(Tf, Tg);
191 			 T2f = VADD(Tf, Tg);
192 			 Tj = LD(&(xi[WS(is, 30)]), ivs, &(xi[0]));
193 			 Tk = LD(&(xi[WS(is, 14)]), ivs, &(xi[0]));
194 			 Tl = VSUB(Tj, Tk);
195 			 T2h = VADD(Tj, Tk);
196 		    }
197 		    T2g = VADD(T2e, T2f);
198 		    T2j = VADD(T2h, T2i);
199 		    Ti = VFNMS(LDK(KP414213562), Th, Te);
200 		    Tp = VFNMS(LDK(KP414213562), To, Tl);
201 		    Tq = VADD(Ti, Tp);
202 		    T1B = VSUB(Ti, Tp);
203 		    {
204 			 V T17, T18, T2y, T2z;
205 			 T17 = VFMA(LDK(KP414213562), Te, Th);
206 			 T18 = VFMA(LDK(KP414213562), Tl, To);
207 			 T19 = VSUB(T17, T18);
208 			 T1q = VADD(T17, T18);
209 			 T2y = VSUB(T2e, T2f);
210 			 T2z = VSUB(T2h, T2i);
211 			 T2A = VADD(T2y, T2z);
212 			 T2L = VSUB(T2y, T2z);
213 		    }
214 	       }
215 	       {
216 		    V T2d, T2n, T2m, T2o;
217 		    {
218 			 V T1X, T2c, T2k, T2l;
219 			 T1X = VSUB(T1T, T1W);
220 			 T2c = VADD(T24, T2b);
221 			 T2d = VFNMS(LDK(KP707106781), T2c, T1X);
222 			 T2n = VFMA(LDK(KP707106781), T2c, T1X);
223 			 T2k = VSUB(T2g, T2j);
224 			 T2l = VSUB(T24, T2b);
225 			 T2m = VFNMS(LDK(KP707106781), T2l, T2k);
226 			 T2o = VFMA(LDK(KP707106781), T2l, T2k);
227 		    }
228 		    ST(&(xo[WS(os, 12)]), VFNMSI(T2m, T2d), ovs, &(xo[0]));
229 		    ST(&(xo[WS(os, 28)]), VFNMSI(T2o, T2n), ovs, &(xo[0]));
230 		    ST(&(xo[WS(os, 20)]), VFMAI(T2m, T2d), ovs, &(xo[0]));
231 		    ST(&(xo[WS(os, 4)]), VFMAI(T2o, T2n), ovs, &(xo[0]));
232 	       }
233 	       {
234 		    V T2r, T2v, T2u, T2w;
235 		    {
236 			 V T2p, T2q, T2s, T2t;
237 			 T2p = VADD(T1T, T1W);
238 			 T2q = VADD(T2g, T2j);
239 			 T2r = VSUB(T2p, T2q);
240 			 T2v = VADD(T2p, T2q);
241 			 T2s = VADD(T20, T23);
242 			 T2t = VADD(T27, T2a);
243 			 T2u = VSUB(T2s, T2t);
244 			 T2w = VADD(T2s, T2t);
245 		    }
246 		    ST(&(xo[WS(os, 24)]), VFNMSI(T2u, T2r), ovs, &(xo[0]));
247 		    ST(&(xo[0]), VADD(T2v, T2w), ovs, &(xo[0]));
248 		    ST(&(xo[WS(os, 8)]), VFMAI(T2u, T2r), ovs, &(xo[0]));
249 		    ST(&(xo[WS(os, 16)]), VSUB(T2v, T2w), ovs, &(xo[0]));
250 	       }
251 	       {
252 		    V T2V, T2Z, T2Y, T30;
253 		    {
254 			 V T2T, T2U, T2W, T2X;
255 			 T2T = VFNMS(LDK(KP707106781), T2A, T2x);
256 			 T2U = VADD(T2N, T2O);
257 			 T2V = VFNMS(LDK(KP923879532), T2U, T2T);
258 			 T2Z = VFMA(LDK(KP923879532), T2U, T2T);
259 			 T2W = VFNMS(LDK(KP707106781), T2L, T2K);
260 			 T2X = VSUB(T2E, T2H);
261 			 T2Y = VFMA(LDK(KP923879532), T2X, T2W);
262 			 T30 = VFNMS(LDK(KP923879532), T2X, T2W);
263 		    }
264 		    ST(&(xo[WS(os, 10)]), VFMAI(T2Y, T2V), ovs, &(xo[0]));
265 		    ST(&(xo[WS(os, 26)]), VFMAI(T30, T2Z), ovs, &(xo[0]));
266 		    ST(&(xo[WS(os, 22)]), VFNMSI(T2Y, T2V), ovs, &(xo[0]));
267 		    ST(&(xo[WS(os, 6)]), VFNMSI(T30, T2Z), ovs, &(xo[0]));
268 	       }
269 	       {
270 		    V T2J, T2R, T2Q, T2S;
271 		    {
272 			 V T2B, T2I, T2M, T2P;
273 			 T2B = VFMA(LDK(KP707106781), T2A, T2x);
274 			 T2I = VADD(T2E, T2H);
275 			 T2J = VFNMS(LDK(KP923879532), T2I, T2B);
276 			 T2R = VFMA(LDK(KP923879532), T2I, T2B);
277 			 T2M = VFMA(LDK(KP707106781), T2L, T2K);
278 			 T2P = VSUB(T2N, T2O);
279 			 T2Q = VFNMS(LDK(KP923879532), T2P, T2M);
280 			 T2S = VFMA(LDK(KP923879532), T2P, T2M);
281 		    }
282 		    ST(&(xo[WS(os, 14)]), VFNMSI(T2Q, T2J), ovs, &(xo[0]));
283 		    ST(&(xo[WS(os, 2)]), VFMAI(T2S, T2R), ovs, &(xo[0]));
284 		    ST(&(xo[WS(os, 18)]), VFMAI(T2Q, T2J), ovs, &(xo[0]));
285 		    ST(&(xo[WS(os, 30)]), VFNMSI(T2S, T2R), ovs, &(xo[0]));
286 	       }
287 	       {
288 		    V T1r, T1C, T1M, T1J, T1F, T1K, T1y, T1N;
289 		    T1r = VFMA(LDK(KP923879532), T1q, T1p);
290 		    T1C = VFNMS(LDK(KP923879532), T1B, T1A);
291 		    T1M = VFMA(LDK(KP923879532), T1B, T1A);
292 		    T1J = VFNMS(LDK(KP923879532), T1q, T1p);
293 		    {
294 			 V T1D, T1E, T1u, T1x;
295 			 T1D = VFNMS(LDK(KP668178637), T1s, T1t);
296 			 T1E = VFNMS(LDK(KP668178637), T1v, T1w);
297 			 T1F = VSUB(T1D, T1E);
298 			 T1K = VADD(T1D, T1E);
299 			 T1u = VFMA(LDK(KP668178637), T1t, T1s);
300 			 T1x = VFMA(LDK(KP668178637), T1w, T1v);
301 			 T1y = VADD(T1u, T1x);
302 			 T1N = VSUB(T1u, T1x);
303 		    }
304 		    {
305 			 V T1z, T1G, T1P, T1Q;
306 			 T1z = VFNMS(LDK(KP831469612), T1y, T1r);
307 			 T1G = VFNMS(LDK(KP831469612), T1F, T1C);
308 			 ST(&(xo[WS(os, 19)]), VFNMSI(T1G, T1z), ovs, &(xo[WS(os, 1)]));
309 			 ST(&(xo[WS(os, 13)]), VFMAI(T1G, T1z), ovs, &(xo[WS(os, 1)]));
310 			 T1P = VFNMS(LDK(KP831469612), T1K, T1J);
311 			 T1Q = VFMA(LDK(KP831469612), T1N, T1M);
312 			 ST(&(xo[WS(os, 5)]), VFMAI(T1Q, T1P), ovs, &(xo[WS(os, 1)]));
313 			 ST(&(xo[WS(os, 27)]), VFNMSI(T1Q, T1P), ovs, &(xo[WS(os, 1)]));
314 		    }
315 		    {
316 			 V T1H, T1I, T1L, T1O;
317 			 T1H = VFMA(LDK(KP831469612), T1y, T1r);
318 			 T1I = VFMA(LDK(KP831469612), T1F, T1C);
319 			 ST(&(xo[WS(os, 3)]), VFNMSI(T1I, T1H), ovs, &(xo[WS(os, 1)]));
320 			 ST(&(xo[WS(os, 29)]), VFMAI(T1I, T1H), ovs, &(xo[WS(os, 1)]));
321 			 T1L = VFMA(LDK(KP831469612), T1K, T1J);
322 			 T1O = VFNMS(LDK(KP831469612), T1N, T1M);
323 			 ST(&(xo[WS(os, 11)]), VFNMSI(T1O, T1L), ovs, &(xo[WS(os, 1)]));
324 			 ST(&(xo[WS(os, 21)]), VFMAI(T1O, T1L), ovs, &(xo[WS(os, 1)]));
325 		    }
326 	       }
327 	       {
328 		    V Tr, T1a, T1k, T1h, T1d, T1i, T10, T1l;
329 		    Tr = VFMA(LDK(KP923879532), Tq, Tb);
330 		    T1a = VFMA(LDK(KP923879532), T19, T16);
331 		    T1k = VFNMS(LDK(KP923879532), T19, T16);
332 		    T1h = VFNMS(LDK(KP923879532), Tq, Tb);
333 		    {
334 			 V T1b, T1c, TI, TZ;
335 			 T1b = VFMA(LDK(KP198912367), TC, TH);
336 			 T1c = VFMA(LDK(KP198912367), TT, TY);
337 			 T1d = VSUB(T1b, T1c);
338 			 T1i = VADD(T1b, T1c);
339 			 TI = VFNMS(LDK(KP198912367), TH, TC);
340 			 TZ = VFNMS(LDK(KP198912367), TY, TT);
341 			 T10 = VADD(TI, TZ);
342 			 T1l = VSUB(TI, TZ);
343 		    }
344 		    {
345 			 V T11, T1e, T1n, T1o;
346 			 T11 = VFNMS(LDK(KP980785280), T10, Tr);
347 			 T1e = VFNMS(LDK(KP980785280), T1d, T1a);
348 			 ST(&(xo[WS(os, 15)]), VFNMSI(T1e, T11), ovs, &(xo[WS(os, 1)]));
349 			 ST(&(xo[WS(os, 17)]), VFMAI(T1e, T11), ovs, &(xo[WS(os, 1)]));
350 			 T1n = VFMA(LDK(KP980785280), T1i, T1h);
351 			 T1o = VFNMS(LDK(KP980785280), T1l, T1k);
352 			 ST(&(xo[WS(os, 7)]), VFNMSI(T1o, T1n), ovs, &(xo[WS(os, 1)]));
353 			 ST(&(xo[WS(os, 25)]), VFMAI(T1o, T1n), ovs, &(xo[WS(os, 1)]));
354 		    }
355 		    {
356 			 V T1f, T1g, T1j, T1m;
357 			 T1f = VFMA(LDK(KP980785280), T10, Tr);
358 			 T1g = VFMA(LDK(KP980785280), T1d, T1a);
359 			 ST(&(xo[WS(os, 31)]), VFNMSI(T1g, T1f), ovs, &(xo[WS(os, 1)]));
360 			 ST(&(xo[WS(os, 1)]), VFMAI(T1g, T1f), ovs, &(xo[WS(os, 1)]));
361 			 T1j = VFNMS(LDK(KP980785280), T1i, T1h);
362 			 T1m = VFMA(LDK(KP980785280), T1l, T1k);
363 			 ST(&(xo[WS(os, 9)]), VFMAI(T1m, T1j), ovs, &(xo[WS(os, 1)]));
364 			 ST(&(xo[WS(os, 23)]), VFNMSI(T1m, T1j), ovs, &(xo[WS(os, 1)]));
365 		    }
366 	       }
367 	  }
368      }
369      VLEAVE();
370 }
371 
372 static const kdft_desc desc = { 32, XSIMD_STRING("n1bv_32"), { 88, 0, 98, 0 }, &GENUS, 0, 0, 0, 0 };
373 
XSIMD(codelet_n1bv_32)374 void XSIMD(codelet_n1bv_32) (planner *p) { X(kdft_register) (p, n1bv_32, &desc);
375 }
376 
377 #else
378 
379 /* Generated by: ../../../genfft/gen_notw_c.native -simd -compact -variables 4 -pipeline-latency 8 -sign 1 -n 32 -name n1bv_32 -include dft/simd/n1b.h */
380 
381 /*
382  * This function contains 186 FP additions, 42 FP multiplications,
383  * (or, 170 additions, 26 multiplications, 16 fused multiply/add),
384  * 58 stack variables, 7 constants, and 64 memory accesses
385  */
386 #include "dft/simd/n1b.h"
387 
n1bv_32(const R * ri,const R * ii,R * ro,R * io,stride is,stride os,INT v,INT ivs,INT ovs)388 static void n1bv_32(const R *ri, const R *ii, R *ro, R *io, stride is, stride os, INT v, INT ivs, INT ovs)
389 {
390      DVK(KP555570233, +0.555570233019602224742830813948532874374937191);
391      DVK(KP831469612, +0.831469612302545237078788377617905756738560812);
392      DVK(KP195090322, +0.195090322016128267848284868477022240927691618);
393      DVK(KP980785280, +0.980785280403230449126182236134239036973933731);
394      DVK(KP382683432, +0.382683432365089771728459984030398866761344562);
395      DVK(KP923879532, +0.923879532511286756128183189396788286822416626);
396      DVK(KP707106781, +0.707106781186547524400844362104849039284835938);
397      {
398 	  INT i;
399 	  const R *xi;
400 	  R *xo;
401 	  xi = ii;
402 	  xo = io;
403 	  for (i = v; i > 0; i = i - VL, xi = xi + (VL * ivs), xo = xo + (VL * ovs), MAKE_VOLATILE_STRIDE(64, is), MAKE_VOLATILE_STRIDE(64, os)) {
404 	       V T2f, T2k, T2N, T2M, T19, T1B, Tb, T1p, TT, T1v, TY, T1w, T2E, T2F, T2G;
405 	       V T24, T2o, TC, T1s, TH, T1t, T2B, T2C, T2D, T1X, T2n, T2I, T2J, Tq, T1A;
406 	       V T14, T1q, T2c, T2l;
407 	       {
408 		    V T3, T2i, T18, T2j, T6, T2d, T9, T2e, T15, Ta;
409 		    {
410 			 V T1, T2, T16, T17;
411 			 T1 = LD(&(xi[0]), ivs, &(xi[0]));
412 			 T2 = LD(&(xi[WS(is, 16)]), ivs, &(xi[0]));
413 			 T3 = VSUB(T1, T2);
414 			 T2i = VADD(T1, T2);
415 			 T16 = LD(&(xi[WS(is, 8)]), ivs, &(xi[0]));
416 			 T17 = LD(&(xi[WS(is, 24)]), ivs, &(xi[0]));
417 			 T18 = VSUB(T16, T17);
418 			 T2j = VADD(T16, T17);
419 		    }
420 		    {
421 			 V T4, T5, T7, T8;
422 			 T4 = LD(&(xi[WS(is, 4)]), ivs, &(xi[0]));
423 			 T5 = LD(&(xi[WS(is, 20)]), ivs, &(xi[0]));
424 			 T6 = VSUB(T4, T5);
425 			 T2d = VADD(T4, T5);
426 			 T7 = LD(&(xi[WS(is, 28)]), ivs, &(xi[0]));
427 			 T8 = LD(&(xi[WS(is, 12)]), ivs, &(xi[0]));
428 			 T9 = VSUB(T7, T8);
429 			 T2e = VADD(T7, T8);
430 		    }
431 		    T2f = VSUB(T2d, T2e);
432 		    T2k = VSUB(T2i, T2j);
433 		    T2N = VADD(T2d, T2e);
434 		    T2M = VADD(T2i, T2j);
435 		    T15 = VMUL(LDK(KP707106781), VSUB(T6, T9));
436 		    T19 = VSUB(T15, T18);
437 		    T1B = VADD(T18, T15);
438 		    Ta = VMUL(LDK(KP707106781), VADD(T6, T9));
439 		    Tb = VSUB(T3, Ta);
440 		    T1p = VADD(T3, Ta);
441 	       }
442 	       {
443 		    V TL, T21, TW, T1Y, TO, T22, TS, T1Z;
444 		    {
445 			 V TJ, TK, TU, TV;
446 			 TJ = LD(&(xi[WS(is, 3)]), ivs, &(xi[WS(is, 1)]));
447 			 TK = LD(&(xi[WS(is, 19)]), ivs, &(xi[WS(is, 1)]));
448 			 TL = VSUB(TJ, TK);
449 			 T21 = VADD(TJ, TK);
450 			 TU = LD(&(xi[WS(is, 31)]), ivs, &(xi[WS(is, 1)]));
451 			 TV = LD(&(xi[WS(is, 15)]), ivs, &(xi[WS(is, 1)]));
452 			 TW = VSUB(TU, TV);
453 			 T1Y = VADD(TU, TV);
454 		    }
455 		    {
456 			 V TM, TN, TQ, TR;
457 			 TM = LD(&(xi[WS(is, 27)]), ivs, &(xi[WS(is, 1)]));
458 			 TN = LD(&(xi[WS(is, 11)]), ivs, &(xi[WS(is, 1)]));
459 			 TO = VSUB(TM, TN);
460 			 T22 = VADD(TM, TN);
461 			 TQ = LD(&(xi[WS(is, 7)]), ivs, &(xi[WS(is, 1)]));
462 			 TR = LD(&(xi[WS(is, 23)]), ivs, &(xi[WS(is, 1)]));
463 			 TS = VSUB(TQ, TR);
464 			 T1Z = VADD(TQ, TR);
465 		    }
466 		    {
467 			 V TP, TX, T20, T23;
468 			 TP = VMUL(LDK(KP707106781), VSUB(TL, TO));
469 			 TT = VSUB(TP, TS);
470 			 T1v = VADD(TS, TP);
471 			 TX = VMUL(LDK(KP707106781), VADD(TL, TO));
472 			 TY = VSUB(TW, TX);
473 			 T1w = VADD(TW, TX);
474 			 T2E = VADD(T1Y, T1Z);
475 			 T2F = VADD(T21, T22);
476 			 T2G = VSUB(T2E, T2F);
477 			 T20 = VSUB(T1Y, T1Z);
478 			 T23 = VSUB(T21, T22);
479 			 T24 = VFMA(LDK(KP923879532), T20, VMUL(LDK(KP382683432), T23));
480 			 T2o = VFNMS(LDK(KP382683432), T20, VMUL(LDK(KP923879532), T23));
481 		    }
482 	       }
483 	       {
484 		    V Tu, T1U, TF, T1R, Tx, T1V, TB, T1S;
485 		    {
486 			 V Ts, Tt, TD, TE;
487 			 Ts = LD(&(xi[WS(is, 5)]), ivs, &(xi[WS(is, 1)]));
488 			 Tt = LD(&(xi[WS(is, 21)]), ivs, &(xi[WS(is, 1)]));
489 			 Tu = VSUB(Ts, Tt);
490 			 T1U = VADD(Ts, Tt);
491 			 TD = LD(&(xi[WS(is, 1)]), ivs, &(xi[WS(is, 1)]));
492 			 TE = LD(&(xi[WS(is, 17)]), ivs, &(xi[WS(is, 1)]));
493 			 TF = VSUB(TD, TE);
494 			 T1R = VADD(TD, TE);
495 		    }
496 		    {
497 			 V Tv, Tw, Tz, TA;
498 			 Tv = LD(&(xi[WS(is, 29)]), ivs, &(xi[WS(is, 1)]));
499 			 Tw = LD(&(xi[WS(is, 13)]), ivs, &(xi[WS(is, 1)]));
500 			 Tx = VSUB(Tv, Tw);
501 			 T1V = VADD(Tv, Tw);
502 			 Tz = LD(&(xi[WS(is, 9)]), ivs, &(xi[WS(is, 1)]));
503 			 TA = LD(&(xi[WS(is, 25)]), ivs, &(xi[WS(is, 1)]));
504 			 TB = VSUB(Tz, TA);
505 			 T1S = VADD(Tz, TA);
506 		    }
507 		    {
508 			 V Ty, TG, T1T, T1W;
509 			 Ty = VMUL(LDK(KP707106781), VSUB(Tu, Tx));
510 			 TC = VSUB(Ty, TB);
511 			 T1s = VADD(TB, Ty);
512 			 TG = VMUL(LDK(KP707106781), VADD(Tu, Tx));
513 			 TH = VSUB(TF, TG);
514 			 T1t = VADD(TF, TG);
515 			 T2B = VADD(T1R, T1S);
516 			 T2C = VADD(T1U, T1V);
517 			 T2D = VSUB(T2B, T2C);
518 			 T1T = VSUB(T1R, T1S);
519 			 T1W = VSUB(T1U, T1V);
520 			 T1X = VFNMS(LDK(KP382683432), T1W, VMUL(LDK(KP923879532), T1T));
521 			 T2n = VFMA(LDK(KP382683432), T1T, VMUL(LDK(KP923879532), T1W));
522 		    }
523 	       }
524 	       {
525 		    V Te, T26, To, T29, Th, T27, Tl, T2a, Ti, Tp;
526 		    {
527 			 V Tc, Td, Tm, Tn;
528 			 Tc = LD(&(xi[WS(is, 2)]), ivs, &(xi[0]));
529 			 Td = LD(&(xi[WS(is, 18)]), ivs, &(xi[0]));
530 			 Te = VSUB(Tc, Td);
531 			 T26 = VADD(Tc, Td);
532 			 Tm = LD(&(xi[WS(is, 30)]), ivs, &(xi[0]));
533 			 Tn = LD(&(xi[WS(is, 14)]), ivs, &(xi[0]));
534 			 To = VSUB(Tm, Tn);
535 			 T29 = VADD(Tm, Tn);
536 		    }
537 		    {
538 			 V Tf, Tg, Tj, Tk;
539 			 Tf = LD(&(xi[WS(is, 10)]), ivs, &(xi[0]));
540 			 Tg = LD(&(xi[WS(is, 26)]), ivs, &(xi[0]));
541 			 Th = VSUB(Tf, Tg);
542 			 T27 = VADD(Tf, Tg);
543 			 Tj = LD(&(xi[WS(is, 6)]), ivs, &(xi[0]));
544 			 Tk = LD(&(xi[WS(is, 22)]), ivs, &(xi[0]));
545 			 Tl = VSUB(Tj, Tk);
546 			 T2a = VADD(Tj, Tk);
547 		    }
548 		    T2I = VADD(T26, T27);
549 		    T2J = VADD(T29, T2a);
550 		    Ti = VFMA(LDK(KP382683432), Te, VMUL(LDK(KP923879532), Th));
551 		    Tp = VFNMS(LDK(KP382683432), To, VMUL(LDK(KP923879532), Tl));
552 		    Tq = VSUB(Ti, Tp);
553 		    T1A = VADD(Ti, Tp);
554 		    {
555 			 V T12, T13, T28, T2b;
556 			 T12 = VFNMS(LDK(KP382683432), Th, VMUL(LDK(KP923879532), Te));
557 			 T13 = VFMA(LDK(KP923879532), To, VMUL(LDK(KP382683432), Tl));
558 			 T14 = VSUB(T12, T13);
559 			 T1q = VADD(T12, T13);
560 			 T28 = VSUB(T26, T27);
561 			 T2b = VSUB(T29, T2a);
562 			 T2c = VMUL(LDK(KP707106781), VSUB(T28, T2b));
563 			 T2l = VMUL(LDK(KP707106781), VADD(T28, T2b));
564 		    }
565 	       }
566 	       {
567 		    V T2L, T2R, T2Q, T2S;
568 		    {
569 			 V T2H, T2K, T2O, T2P;
570 			 T2H = VMUL(LDK(KP707106781), VSUB(T2D, T2G));
571 			 T2K = VSUB(T2I, T2J);
572 			 T2L = VBYI(VSUB(T2H, T2K));
573 			 T2R = VBYI(VADD(T2K, T2H));
574 			 T2O = VSUB(T2M, T2N);
575 			 T2P = VMUL(LDK(KP707106781), VADD(T2D, T2G));
576 			 T2Q = VSUB(T2O, T2P);
577 			 T2S = VADD(T2O, T2P);
578 		    }
579 		    ST(&(xo[WS(os, 12)]), VADD(T2L, T2Q), ovs, &(xo[0]));
580 		    ST(&(xo[WS(os, 28)]), VSUB(T2S, T2R), ovs, &(xo[0]));
581 		    ST(&(xo[WS(os, 20)]), VSUB(T2Q, T2L), ovs, &(xo[0]));
582 		    ST(&(xo[WS(os, 4)]), VADD(T2R, T2S), ovs, &(xo[0]));
583 	       }
584 	       {
585 		    V T2h, T2r, T2q, T2s;
586 		    {
587 			 V T25, T2g, T2m, T2p;
588 			 T25 = VSUB(T1X, T24);
589 			 T2g = VSUB(T2c, T2f);
590 			 T2h = VBYI(VSUB(T25, T2g));
591 			 T2r = VBYI(VADD(T2g, T25));
592 			 T2m = VSUB(T2k, T2l);
593 			 T2p = VSUB(T2n, T2o);
594 			 T2q = VSUB(T2m, T2p);
595 			 T2s = VADD(T2m, T2p);
596 		    }
597 		    ST(&(xo[WS(os, 10)]), VADD(T2h, T2q), ovs, &(xo[0]));
598 		    ST(&(xo[WS(os, 26)]), VSUB(T2s, T2r), ovs, &(xo[0]));
599 		    ST(&(xo[WS(os, 22)]), VSUB(T2q, T2h), ovs, &(xo[0]));
600 		    ST(&(xo[WS(os, 6)]), VADD(T2r, T2s), ovs, &(xo[0]));
601 	       }
602 	       {
603 		    V T2V, T2Z, T2Y, T30;
604 		    {
605 			 V T2T, T2U, T2W, T2X;
606 			 T2T = VADD(T2M, T2N);
607 			 T2U = VADD(T2I, T2J);
608 			 T2V = VSUB(T2T, T2U);
609 			 T2Z = VADD(T2T, T2U);
610 			 T2W = VADD(T2B, T2C);
611 			 T2X = VADD(T2E, T2F);
612 			 T2Y = VBYI(VSUB(T2W, T2X));
613 			 T30 = VADD(T2W, T2X);
614 		    }
615 		    ST(&(xo[WS(os, 24)]), VSUB(T2V, T2Y), ovs, &(xo[0]));
616 		    ST(&(xo[0]), VADD(T2Z, T30), ovs, &(xo[0]));
617 		    ST(&(xo[WS(os, 8)]), VADD(T2V, T2Y), ovs, &(xo[0]));
618 		    ST(&(xo[WS(os, 16)]), VSUB(T2Z, T30), ovs, &(xo[0]));
619 	       }
620 	       {
621 		    V T2v, T2z, T2y, T2A;
622 		    {
623 			 V T2t, T2u, T2w, T2x;
624 			 T2t = VADD(T2k, T2l);
625 			 T2u = VADD(T1X, T24);
626 			 T2v = VADD(T2t, T2u);
627 			 T2z = VSUB(T2t, T2u);
628 			 T2w = VADD(T2f, T2c);
629 			 T2x = VADD(T2n, T2o);
630 			 T2y = VBYI(VADD(T2w, T2x));
631 			 T2A = VBYI(VSUB(T2x, T2w));
632 		    }
633 		    ST(&(xo[WS(os, 30)]), VSUB(T2v, T2y), ovs, &(xo[0]));
634 		    ST(&(xo[WS(os, 14)]), VADD(T2z, T2A), ovs, &(xo[0]));
635 		    ST(&(xo[WS(os, 2)]), VADD(T2v, T2y), ovs, &(xo[0]));
636 		    ST(&(xo[WS(os, 18)]), VSUB(T2z, T2A), ovs, &(xo[0]));
637 	       }
638 	       {
639 		    V T1r, T1C, T1M, T1K, T1F, T1N, T1y, T1J;
640 		    T1r = VSUB(T1p, T1q);
641 		    T1C = VSUB(T1A, T1B);
642 		    T1M = VADD(T1p, T1q);
643 		    T1K = VADD(T1B, T1A);
644 		    {
645 			 V T1D, T1E, T1u, T1x;
646 			 T1D = VFNMS(LDK(KP195090322), T1s, VMUL(LDK(KP980785280), T1t));
647 			 T1E = VFMA(LDK(KP195090322), T1v, VMUL(LDK(KP980785280), T1w));
648 			 T1F = VSUB(T1D, T1E);
649 			 T1N = VADD(T1D, T1E);
650 			 T1u = VFMA(LDK(KP980785280), T1s, VMUL(LDK(KP195090322), T1t));
651 			 T1x = VFNMS(LDK(KP195090322), T1w, VMUL(LDK(KP980785280), T1v));
652 			 T1y = VSUB(T1u, T1x);
653 			 T1J = VADD(T1u, T1x);
654 		    }
655 		    {
656 			 V T1z, T1G, T1P, T1Q;
657 			 T1z = VADD(T1r, T1y);
658 			 T1G = VBYI(VADD(T1C, T1F));
659 			 ST(&(xo[WS(os, 25)]), VSUB(T1z, T1G), ovs, &(xo[WS(os, 1)]));
660 			 ST(&(xo[WS(os, 7)]), VADD(T1z, T1G), ovs, &(xo[WS(os, 1)]));
661 			 T1P = VBYI(VADD(T1K, T1J));
662 			 T1Q = VADD(T1M, T1N);
663 			 ST(&(xo[WS(os, 1)]), VADD(T1P, T1Q), ovs, &(xo[WS(os, 1)]));
664 			 ST(&(xo[WS(os, 31)]), VSUB(T1Q, T1P), ovs, &(xo[WS(os, 1)]));
665 		    }
666 		    {
667 			 V T1H, T1I, T1L, T1O;
668 			 T1H = VSUB(T1r, T1y);
669 			 T1I = VBYI(VSUB(T1F, T1C));
670 			 ST(&(xo[WS(os, 23)]), VSUB(T1H, T1I), ovs, &(xo[WS(os, 1)]));
671 			 ST(&(xo[WS(os, 9)]), VADD(T1H, T1I), ovs, &(xo[WS(os, 1)]));
672 			 T1L = VBYI(VSUB(T1J, T1K));
673 			 T1O = VSUB(T1M, T1N);
674 			 ST(&(xo[WS(os, 15)]), VADD(T1L, T1O), ovs, &(xo[WS(os, 1)]));
675 			 ST(&(xo[WS(os, 17)]), VSUB(T1O, T1L), ovs, &(xo[WS(os, 1)]));
676 		    }
677 	       }
678 	       {
679 		    V Tr, T1a, T1k, T1i, T1d, T1l, T10, T1h;
680 		    Tr = VSUB(Tb, Tq);
681 		    T1a = VSUB(T14, T19);
682 		    T1k = VADD(Tb, Tq);
683 		    T1i = VADD(T19, T14);
684 		    {
685 			 V T1b, T1c, TI, TZ;
686 			 T1b = VFNMS(LDK(KP555570233), TC, VMUL(LDK(KP831469612), TH));
687 			 T1c = VFMA(LDK(KP555570233), TT, VMUL(LDK(KP831469612), TY));
688 			 T1d = VSUB(T1b, T1c);
689 			 T1l = VADD(T1b, T1c);
690 			 TI = VFMA(LDK(KP831469612), TC, VMUL(LDK(KP555570233), TH));
691 			 TZ = VFNMS(LDK(KP555570233), TY, VMUL(LDK(KP831469612), TT));
692 			 T10 = VSUB(TI, TZ);
693 			 T1h = VADD(TI, TZ);
694 		    }
695 		    {
696 			 V T11, T1e, T1n, T1o;
697 			 T11 = VADD(Tr, T10);
698 			 T1e = VBYI(VADD(T1a, T1d));
699 			 ST(&(xo[WS(os, 27)]), VSUB(T11, T1e), ovs, &(xo[WS(os, 1)]));
700 			 ST(&(xo[WS(os, 5)]), VADD(T11, T1e), ovs, &(xo[WS(os, 1)]));
701 			 T1n = VBYI(VADD(T1i, T1h));
702 			 T1o = VADD(T1k, T1l);
703 			 ST(&(xo[WS(os, 3)]), VADD(T1n, T1o), ovs, &(xo[WS(os, 1)]));
704 			 ST(&(xo[WS(os, 29)]), VSUB(T1o, T1n), ovs, &(xo[WS(os, 1)]));
705 		    }
706 		    {
707 			 V T1f, T1g, T1j, T1m;
708 			 T1f = VSUB(Tr, T10);
709 			 T1g = VBYI(VSUB(T1d, T1a));
710 			 ST(&(xo[WS(os, 21)]), VSUB(T1f, T1g), ovs, &(xo[WS(os, 1)]));
711 			 ST(&(xo[WS(os, 11)]), VADD(T1f, T1g), ovs, &(xo[WS(os, 1)]));
712 			 T1j = VBYI(VSUB(T1h, T1i));
713 			 T1m = VSUB(T1k, T1l);
714 			 ST(&(xo[WS(os, 13)]), VADD(T1j, T1m), ovs, &(xo[WS(os, 1)]));
715 			 ST(&(xo[WS(os, 19)]), VSUB(T1m, T1j), ovs, &(xo[WS(os, 1)]));
716 		    }
717 	       }
718 	  }
719      }
720      VLEAVE();
721 }
722 
723 static const kdft_desc desc = { 32, XSIMD_STRING("n1bv_32"), { 170, 26, 16, 0 }, &GENUS, 0, 0, 0, 0 };
724 
XSIMD(codelet_n1bv_32)725 void XSIMD(codelet_n1bv_32) (planner *p) { X(kdft_register) (p, n1bv_32, &desc);
726 }
727 
728 #endif
729