Coverage Report

Created: 2023-09-25 07:08

/src/fftw3/rdft/scalar/r2cb/hb_25.c
Line
Count
Source (jump to first uncovered line)
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 Mon Sep 25 07:07:06 UTC 2023 */
23
24
#include "rdft/codelet-rdft.h"
25
26
#if defined(ARCH_PREFERS_FMA) || defined(ISA_EXTENSION_PREFERS_FMA)
27
28
/* Generated by: ../../../genfft/gen_hc2hc.native -fma -compact -variables 4 -pipeline-latency 4 -sign 1 -n 25 -dif -name hb_25 -include rdft/scalar/hb.h */
29
30
/*
31
 * This function contains 400 FP additions, 364 FP multiplications,
32
 * (or, 84 additions, 48 multiplications, 316 fused multiply/add),
33
 * 158 stack variables, 47 constants, and 100 memory accesses
34
 */
35
#include "rdft/scalar/hb.h"
36
37
static void hb_25(R *cr, R *ci, const R *W, stride rs, INT mb, INT me, INT ms)
38
{
39
     DK(KP921177326, +0.921177326965143320250447435415066029359282231);
40
     DK(KP833417178, +0.833417178328688677408962550243238843138996060);
41
     DK(KP541454447, +0.541454447536312777046285590082819509052033189);
42
     DK(KP968583161, +0.968583161128631119490168375464735813836012403);
43
     DK(KP242145790, +0.242145790282157779872542093866183953459003101);
44
     DK(KP904730450, +0.904730450839922351881287709692877908104763647);
45
     DK(KP683113946, +0.683113946453479238701949862233725244439656928);
46
     DK(KP559154169, +0.559154169276087864842202529084232643714075927);
47
     DK(KP831864738, +0.831864738706457140726048799369896829771167132);
48
     DK(KP871714437, +0.871714437527667770979999223229522602943903653);
49
     DK(KP803003575, +0.803003575438660414833440593570376004635464850);
50
     DK(KP554608978, +0.554608978404018097464974850792216217022558774);
51
     DK(KP992114701, +0.992114701314477831049793042785778521453036709);
52
     DK(KP248028675, +0.248028675328619457762448260696444630363259177);
53
     DK(KP851038619, +0.851038619207379630836264138867114231259902550);
54
     DK(KP525970792, +0.525970792408939708442463226536226366643874659);
55
     DK(KP726211448, +0.726211448929902658173535992263577167607493062);
56
     DK(KP912018591, +0.912018591466481957908415381764119056233607330);
57
     DK(KP912575812, +0.912575812670962425556968549836277086778922727);
58
     DK(KP943557151, +0.943557151597354104399655195398983005179443399);
59
     DK(KP994076283, +0.994076283785401014123185814696322018529298887);
60
     DK(KP614372930, +0.614372930789563808870829930444362096004872855);
61
     DK(KP621716863, +0.621716863012209892444754556304102309693593202);
62
     DK(KP772036680, +0.772036680810363904029489473607579825330539880);
63
     DK(KP734762448, +0.734762448793050413546343770063151342619912334);
64
     DK(KP860541664, +0.860541664367944677098261680920518816412804187);
65
     DK(KP949179823, +0.949179823508441261575555465843363271711583843);
66
     DK(KP557913902, +0.557913902031834264187699648465567037992437152);
67
     DK(KP249506682, +0.249506682107067890488084201715862638334226305);
68
     DK(KP998026728, +0.998026728428271561952336806863450553336905220);
69
     DK(KP906616052, +0.906616052148196230441134447086066874408359177);
70
     DK(KP560319534, +0.560319534973832390111614715371676131169633784);
71
     DK(KP681693190, +0.681693190061530575150324149145440022633095390);
72
     DK(KP845997307, +0.845997307939530944175097360758058292389769300);
73
     DK(KP968479752, +0.968479752739016373193524836781420152702090879);
74
     DK(KP062914667, +0.062914667253649757225485955897349402364686947);
75
     DK(KP827271945, +0.827271945972475634034355757144307982555673741);
76
     DK(KP126329378, +0.126329378446108174786050455341811215027378105);
77
     DK(KP470564281, +0.470564281212251493087595091036643380879947982);
78
     DK(KP634619297, +0.634619297544148100711287640319130485732531031);
79
     DK(KP256756360, +0.256756360367726783319498520922669048172391148);
80
     DK(KP939062505, +0.939062505817492352556001843133229685779824606);
81
     DK(KP549754652, +0.549754652192770074288023275540779861653779767);
82
     DK(KP951056516, +0.951056516295153572116439333379382143405698634);
83
     DK(KP559016994, +0.559016994374947424102293417182819058860154590);
84
     DK(KP250000000, +0.250000000000000000000000000000000000000000000);
85
     DK(KP618033988, +0.618033988749894848204586834365638117720309180);
86
     {
87
    INT m;
88
    for (m = mb, W = W + ((mb - 1) * 48); m < me; m = m + 1, cr = cr + ms, ci = ci - ms, W = W + 48, MAKE_VOLATILE_STRIDE(50, rs)) {
89
         E T9, T3E, T1F, T6e, T6d, T3B, T6f, T2k, T6U, T4k, T5u, T19, T1G, T1s, T1H;
90
         E Ti, Tr, Ts, TB, TK, TL, TM, T5X, T7i, T64, T77, T2z, T4D, T3p, T4u;
91
         E T5Q, T7h, T63, T74, T2O, T4E, T3q, T4x, T3j, T4G, T3t, T4n, T5B, T7f, T66;
92
         E T70, T34, T4H, T3s, T4q, T5I, T7e, T67, T6X;
93
         {
94
        E T1, T1x, T8, T3D, T2f, T3C, T1E, T3A, T2h, T2i, T3z;
95
        T1 = cr[0];
96
        T1x = ci[WS(rs, 24)];
97
        {
98
       E T2, T3, T4, T5, T6, T7;
99
       T2 = cr[WS(rs, 5)];
100
       T3 = ci[WS(rs, 4)];
101
       T4 = T2 + T3;
102
       T5 = cr[WS(rs, 10)];
103
       T6 = ci[WS(rs, 9)];
104
       T7 = T5 + T6;
105
       T8 = T4 + T7;
106
       T3D = T5 - T6;
107
       T2f = T4 - T7;
108
       T3C = T2 - T3;
109
        }
110
        {
111
       E T1y, T1z, T1A, T1B, T1C, T1D;
112
       T1y = ci[WS(rs, 19)];
113
       T1z = cr[WS(rs, 20)];
114
       T1A = T1y - T1z;
115
       T1B = ci[WS(rs, 14)];
116
       T1C = cr[WS(rs, 15)];
117
       T1D = T1B - T1C;
118
       T1E = T1A + T1D;
119
       T3A = T1A - T1D;
120
       T2h = T1y + T1z;
121
       T2i = T1B + T1C;
122
        }
123
        T9 = T1 + T8;
124
        T3E = FMA(KP618033988, T3D, T3C);
125
        T1F = T1x + T1E;
126
        T6e = FNMS(KP618033988, T3C, T3D);
127
        T3z = FNMS(KP250000000, T1E, T1x);
128
        T6d = FNMS(KP559016994, T3A, T3z);
129
        T3B = FMA(KP559016994, T3A, T3z);
130
        T6f = FNMS(KP951056516, T6e, T6d);
131
        {
132
       E T2j, T5t, T2g, T5s, T2e;
133
       T2j = FMA(KP618033988, T2i, T2h);
134
       T5t = FNMS(KP618033988, T2h, T2i);
135
       T2e = FNMS(KP250000000, T8, T1);
136
       T2g = FMA(KP559016994, T2f, T2e);
137
       T5s = FNMS(KP559016994, T2f, T2e);
138
       T2k = FNMS(KP951056516, T2j, T2g);
139
       T6U = FNMS(KP951056516, T5t, T5s);
140
       T4k = FMA(KP951056516, T2j, T2g);
141
       T5u = FMA(KP951056516, T5t, T5s);
142
        }
143
         }
144
         {
145
        E Ta, T2m, T5V, T2x, Th, T2l, TC, T36, T5w, T3h, TJ, T35, Tj, T2F, T5L;
146
        E T2I, Tq, T2H, T1j, T3a, T5z, T3d, T1q, T3c, TR, T2q, T5S, T2t, TY, T2s;
147
        E T10, T2B, T5O, T2M, T17, T2A, T1a, T2V, T5G, T2Y, T1h, T2X, Tt, T2R, T5D;
148
        E T32, TA, T2Q;
149
        {
150
       E Tg, T2w, Td, T2v;
151
       Ta = cr[WS(rs, 1)];
152
       {
153
            E Te, Tf, Tb, Tc;
154
            Te = cr[WS(rs, 11)];
155
            Tf = ci[WS(rs, 8)];
156
            Tg = Te + Tf;
157
            T2w = Tf - Te;
158
            Tb = cr[WS(rs, 6)];
159
            Tc = ci[WS(rs, 3)];
160
            Td = Tb + Tc;
161
            T2v = Tb - Tc;
162
       }
163
       T2m = Td - Tg;
164
       T5V = FMA(KP618033988, T2v, T2w);
165
       T2x = FNMS(KP618033988, T2w, T2v);
166
       Th = Td + Tg;
167
       T2l = FNMS(KP250000000, Th, Ta);
168
        }
169
        {
170
       E TI, T3g, TF, T3f;
171
       TC = cr[WS(rs, 3)];
172
       {
173
            E TG, TH, TD, TE;
174
            TG = ci[WS(rs, 11)];
175
            TH = ci[WS(rs, 6)];
176
            TI = TG + TH;
177
            T3g = TG - TH;
178
            TD = cr[WS(rs, 8)];
179
            TE = ci[WS(rs, 1)];
180
            TF = TD + TE;
181
            T3f = TD - TE;
182
       }
183
       T36 = TI - TF;
184
       T5w = FNMS(KP618033988, T3f, T3g);
185
       T3h = FMA(KP618033988, T3g, T3f);
186
       TJ = TF + TI;
187
       T35 = FNMS(KP250000000, TJ, TC);
188
        }
189
        {
190
       E Tp, T2E, Tm, T2D;
191
       Tj = cr[WS(rs, 4)];
192
       {
193
            E Tn, To, Tk, Tl;
194
            Tn = ci[WS(rs, 10)];
195
            To = ci[WS(rs, 5)];
196
            Tp = Tn + To;
197
            T2E = To - Tn;
198
            Tk = cr[WS(rs, 9)];
199
            Tl = ci[0];
200
            Tm = Tk + Tl;
201
            T2D = Tl - Tk;
202
       }
203
       T2F = FMA(KP618033988, T2E, T2D);
204
       T5L = FNMS(KP618033988, T2D, T2E);
205
       T2I = Tm - Tp;
206
       Tq = Tm + Tp;
207
       T2H = FMS(KP250000000, Tq, Tj);
208
        }
209
        {
210
       E T1p, T39, T1m, T38;
211
       T1j = ci[WS(rs, 21)];
212
       {
213
            E T1n, T1o, T1k, T1l;
214
            T1n = cr[WS(rs, 13)];
215
            T1o = cr[WS(rs, 18)];
216
            T1p = T1n + T1o;
217
            T39 = T1o - T1n;
218
            T1k = ci[WS(rs, 16)];
219
            T1l = cr[WS(rs, 23)];
220
            T1m = T1k - T1l;
221
            T38 = T1k + T1l;
222
       }
223
       T3a = FMA(KP618033988, T39, T38);
224
       T5z = FNMS(KP618033988, T38, T39);
225
       T3d = T1m + T1p;
226
       T1q = T1m - T1p;
227
       T3c = FMS(KP250000000, T1q, T1j);
228
        }
229
        {
230
       E TX, T2p, TU, T2o;
231
       TR = ci[WS(rs, 23)];
232
       {
233
            E TV, TW, TS, TT;
234
            TV = ci[WS(rs, 13)];
235
            TW = cr[WS(rs, 16)];
236
            TX = TV - TW;
237
            T2p = TV + TW;
238
            TS = ci[WS(rs, 18)];
239
            TT = cr[WS(rs, 21)];
240
            TU = TS - TT;
241
            T2o = TS + TT;
242
       }
243
       T2q = FMA(KP618033988, T2p, T2o);
244
       T5S = FNMS(KP618033988, T2o, T2p);
245
       T2t = TU - TX;
246
       TY = TU + TX;
247
       T2s = FNMS(KP250000000, TY, TR);
248
        }
249
        {
250
       E T16, T2L, T13, T2K;
251
       T10 = ci[WS(rs, 20)];
252
       {
253
            E T14, T15, T11, T12;
254
            T14 = cr[WS(rs, 14)];
255
            T15 = cr[WS(rs, 19)];
256
            T16 = T14 + T15;
257
            T2L = T15 - T14;
258
            T11 = ci[WS(rs, 15)];
259
            T12 = cr[WS(rs, 24)];
260
            T13 = T11 - T12;
261
            T2K = T11 + T12;
262
       }
263
       T2B = T13 + T16;
264
       T5O = FNMS(KP618033988, T2K, T2L);
265
       T2M = FMA(KP618033988, T2L, T2K);
266
       T17 = T13 - T16;
267
       T2A = FMS(KP250000000, T17, T10);
268
        }
269
        {
270
       E T1d, T2T, T1g, T2U;
271
       T1a = ci[WS(rs, 22)];
272
       {
273
            E T1b, T1c, T1e, T1f;
274
            T1b = ci[WS(rs, 17)];
275
            T1c = cr[WS(rs, 22)];
276
            T1d = T1b - T1c;
277
            T2T = T1b + T1c;
278
            T1e = ci[WS(rs, 12)];
279
            T1f = cr[WS(rs, 17)];
280
            T1g = T1e - T1f;
281
            T2U = T1e + T1f;
282
       }
283
       T2V = FMA(KP618033988, T2U, T2T);
284
       T5G = FNMS(KP618033988, T2T, T2U);
285
       T2Y = T1d - T1g;
286
       T1h = T1d + T1g;
287
       T2X = FMS(KP250000000, T1h, T1a);
288
        }
289
        {
290
       E Tw, T30, Tz, T31;
291
       Tt = cr[WS(rs, 2)];
292
       {
293
            E Tu, Tv, Tx, Ty;
294
            Tu = cr[WS(rs, 7)];
295
            Tv = ci[WS(rs, 2)];
296
            Tw = Tu + Tv;
297
            T30 = Tu - Tv;
298
            Tx = cr[WS(rs, 12)];
299
            Ty = ci[WS(rs, 7)];
300
            Tz = Tx + Ty;
301
            T31 = Ty - Tx;
302
       }
303
       T2R = Tz - Tw;
304
       T5D = FMA(KP618033988, T30, T31);
305
       T32 = FNMS(KP618033988, T31, T30);
306
       TA = Tw + Tz;
307
       T2Q = FNMS(KP250000000, TA, Tt);
308
        }
309
        {
310
       E TZ, T18, T1i, T1r;
311
       TZ = TR + TY;
312
       T18 = T10 + T17;
313
       T19 = TZ - T18;
314
       T1G = TZ + T18;
315
       T1i = T1a + T1h;
316
       T1r = T1j + T1q;
317
       T1s = T1i - T1r;
318
       T1H = T1i + T1r;
319
        }
320
        Ti = Ta + Th;
321
        Tr = Tj + Tq;
322
        Ts = Ti + Tr;
323
        TB = Tt + TA;
324
        TK = TC + TJ;
325
        TL = TB + TK;
326
        TM = Ts + TL;
327
        {
328
       E T5T, T75, T5W, T76, T5R, T5U;
329
       T5R = FNMS(KP559016994, T2m, T2l);
330
       T5T = FMA(KP951056516, T5S, T5R);
331
       T75 = FNMS(KP951056516, T5S, T5R);
332
       T5U = FNMS(KP559016994, T2t, T2s);
333
       T5W = FMA(KP951056516, T5V, T5U);
334
       T76 = FNMS(KP951056516, T5V, T5U);
335
       T5X = FNMS(KP549754652, T5W, T5T);
336
       T7i = FMA(KP939062505, T75, T76);
337
       T64 = FMA(KP549754652, T5T, T5W);
338
       T77 = FNMS(KP939062505, T76, T75);
339
        }
340
        {
341
       E T2r, T4t, T2y, T4s, T2n, T2u;
342
       T2n = FMA(KP559016994, T2m, T2l);
343
       T2r = FNMS(KP951056516, T2q, T2n);
344
       T4t = FMA(KP951056516, T2q, T2n);
345
       T2u = FMA(KP559016994, T2t, T2s);
346
       T2y = FMA(KP951056516, T2x, T2u);
347
       T4s = FNMS(KP951056516, T2x, T2u);
348
       T2z = FNMS(KP256756360, T2y, T2r);
349
       T4D = FMA(KP634619297, T4s, T4t);
350
       T3p = FMA(KP256756360, T2r, T2y);
351
       T4u = FNMS(KP634619297, T4t, T4s);
352
        }
353
        {
354
       E T5M, T73, T5P, T72, T5K, T5N;
355
       T5K = FMA(KP559016994, T2B, T2A);
356
       T5M = FNMS(KP951056516, T5L, T5K);
357
       T73 = FMA(KP951056516, T5L, T5K);
358
       T5N = FMA(KP559016994, T2I, T2H);
359
       T5P = FNMS(KP951056516, T5O, T5N);
360
       T72 = FMA(KP951056516, T5O, T5N);
361
       T5Q = FMA(KP470564281, T5P, T5M);
362
       T7h = FNMS(KP126329378, T72, T73);
363
       T63 = FNMS(KP470564281, T5M, T5P);
364
       T74 = FMA(KP126329378, T73, T72);
365
        }
366
        {
367
       E T2G, T4v, T2N, T4w, T2C, T2J;
368
       T2C = FNMS(KP559016994, T2B, T2A);
369
       T2G = FMA(KP951056516, T2F, T2C);
370
       T4v = FNMS(KP951056516, T2F, T2C);
371
       T2J = FNMS(KP559016994, T2I, T2H);
372
       T2N = FMA(KP951056516, T2M, T2J);
373
       T4w = FNMS(KP951056516, T2M, T2J);
374
       T2O = FNMS(KP634619297, T2N, T2G);
375
       T4E = FMA(KP827271945, T4v, T4w);
376
       T3q = FMA(KP634619297, T2G, T2N);
377
       T4x = FNMS(KP827271945, T4w, T4v);
378
        }
379
        {
380
       E T3b, T4l, T3i, T4m, T37, T3e;
381
       T37 = FNMS(KP559016994, T36, T35);
382
       T3b = FNMS(KP951056516, T3a, T37);
383
       T4l = FMA(KP951056516, T3a, T37);
384
       T3e = FNMS(KP559016994, T3d, T3c);
385
       T3i = FNMS(KP951056516, T3h, T3e);
386
       T4m = FMA(KP951056516, T3h, T3e);
387
       T3j = FMA(KP939062505, T3i, T3b);
388
       T4G = FMA(KP126329378, T4l, T4m);
389
       T3t = FNMS(KP939062505, T3b, T3i);
390
       T4n = FNMS(KP126329378, T4m, T4l);
391
        }
392
        {
393
       E T5x, T6Y, T5A, T6Z, T5v, T5y;
394
       T5v = FMA(KP559016994, T3d, T3c);
395
       T5x = FMA(KP951056516, T5w, T5v);
396
       T6Y = FNMS(KP951056516, T5w, T5v);
397
       T5y = FMA(KP559016994, T36, T35);
398
       T5A = FMA(KP951056516, T5z, T5y);
399
       T6Z = FNMS(KP951056516, T5z, T5y);
400
       T5B = FMA(KP062914667, T5A, T5x);
401
       T7f = FMA(KP827271945, T6Y, T6Z);
402
       T66 = FNMS(KP062914667, T5x, T5A);
403
       T70 = FNMS(KP827271945, T6Z, T6Y);
404
        }
405
        {
406
       E T2W, T4p, T33, T4o, T2S, T2Z;
407
       T2S = FNMS(KP559016994, T2R, T2Q);
408
       T2W = FNMS(KP951056516, T2V, T2S);
409
       T4p = FMA(KP951056516, T2V, T2S);
410
       T2Z = FNMS(KP559016994, T2Y, T2X);
411
       T33 = FNMS(KP951056516, T32, T2Z);
412
       T4o = FMA(KP951056516, T32, T2Z);
413
       T34 = FMA(KP549754652, T33, T2W);
414
       T4H = FMA(KP470564281, T4o, T4p);
415
       T3s = FNMS(KP549754652, T2W, T33);
416
       T4q = FNMS(KP470564281, T4p, T4o);
417
        }
418
        {
419
       E T5E, T6V, T5H, T6W, T5C, T5F;
420
       T5C = FMA(KP559016994, T2Y, T2X);
421
       T5E = FNMS(KP951056516, T5D, T5C);
422
       T6V = FMA(KP951056516, T5D, T5C);
423
       T5F = FMA(KP559016994, T2R, T2Q);
424
       T5H = FMA(KP951056516, T5G, T5F);
425
       T6W = FNMS(KP951056516, T5G, T5F);
426
       T5I = FMA(KP634619297, T5H, T5E);
427
       T7e = FNMS(KP062914667, T6V, T6W);
428
       T67 = FNMS(KP634619297, T5E, T5H);
429
       T6X = FMA(KP062914667, T6W, T6V);
430
        }
431
         }
432
         cr[0] = T9 + TM;
433
         {
434
        E T1I, T1L, T23, T1O, T24, T1u, T28, T1S, T20;
435
        {
436
       E T1K, T1J, T1M, T1N;
437
       T1K = T1G - T1H;
438
       T1I = T1G + T1H;
439
       T1J = FNMS(KP250000000, T1I, T1F);
440
       T1L = FMA(KP559016994, T1K, T1J);
441
       T23 = FNMS(KP559016994, T1K, T1J);
442
       T1M = Ti - Tr;
443
       T1N = TB - TK;
444
       T1O = FMA(KP618033988, T1N, T1M);
445
       T24 = FNMS(KP618033988, T1M, T1N);
446
       {
447
            E T1t, T1Z, TQ, T1Y, TO, TP;
448
            T1t = FMA(KP618033988, T1s, T19);
449
            T1Z = FNMS(KP618033988, T19, T1s);
450
            TO = FNMS(KP250000000, TM, T9);
451
            TP = Ts - TL;
452
            TQ = FMA(KP559016994, TP, TO);
453
            T1Y = FNMS(KP559016994, TP, TO);
454
            T1u = FNMS(KP951056516, T1t, TQ);
455
            T28 = FNMS(KP951056516, T1Z, T1Y);
456
            T1S = FMA(KP951056516, T1t, TQ);
457
            T20 = FMA(KP951056516, T1Z, T1Y);
458
       }
459
        }
460
        ci[0] = T1F + T1I;
461
        {
462
       E T2b, T2a, T2c, T27, T29;
463
       T2b = FMA(KP951056516, T24, T23);
464
       T2a = W[29];
465
       T2c = T2a * T28;
466
       T27 = W[28];
467
       T29 = T27 * T28;
468
       cr[WS(rs, 15)] = FNMS(T2a, T2b, T29);
469
       ci[WS(rs, 15)] = FMA(T27, T2b, T2c);
470
        }
471
        {
472
       E T1P, T1w, T1Q, TN, T1v;
473
       T1P = FMA(KP951056516, T1O, T1L);
474
       T1w = W[9];
475
       T1Q = T1w * T1u;
476
       TN = W[8];
477
       T1v = TN * T1u;
478
       cr[WS(rs, 5)] = FNMS(T1w, T1P, T1v);
479
       ci[WS(rs, 5)] = FMA(TN, T1P, T1Q);
480
        }
481
        {
482
       E T1V, T1U, T1W, T1R, T1T;
483
       T1V = FNMS(KP951056516, T1O, T1L);
484
       T1U = W[39];
485
       T1W = T1U * T1S;
486
       T1R = W[38];
487
       T1T = T1R * T1S;
488
       cr[WS(rs, 20)] = FNMS(T1U, T1V, T1T);
489
       ci[WS(rs, 20)] = FMA(T1R, T1V, T1W);
490
        }
491
        {
492
       E T25, T22, T26, T1X, T21;
493
       T25 = FNMS(KP951056516, T24, T23);
494
       T22 = W[19];
495
       T26 = T22 * T20;
496
       T1X = W[18];
497
       T21 = T1X * T20;
498
       cr[WS(rs, 10)] = FNMS(T22, T25, T21);
499
       ci[WS(rs, 10)] = FMA(T1X, T25, T26);
500
        }
501
         }
502
         {
503
        E T69, T6z, T6o, T6E, T6O, T62, T6y, T6R, T6l, T6D;
504
        {
505
       E T65, T68, T6m, T6n;
506
       T65 = FMA(KP968479752, T64, T63);
507
       T68 = FNMS(KP845997307, T67, T66);
508
       T69 = FNMS(KP681693190, T68, T65);
509
       T6z = FMA(KP560319534, T65, T68);
510
       T6m = FNMS(KP968479752, T5X, T5Q);
511
       T6n = FNMS(KP845997307, T5I, T5B);
512
       T6o = FMA(KP681693190, T6n, T6m);
513
       T6E = FNMS(KP560319534, T6m, T6n);
514
        }
515
        {
516
       E T5Z, T61, T5J, T5Y, T60;
517
       T5J = FMA(KP845997307, T5I, T5B);
518
       T5Y = FMA(KP968479752, T5X, T5Q);
519
       T5Z = FMA(KP906616052, T5Y, T5J);
520
       T61 = FNMS(KP906616052, T5Y, T5J);
521
       T6O = FMA(KP998026728, T5Z, T5u);
522
       T60 = FNMS(KP249506682, T5Z, T5u);
523
       T62 = FNMS(KP557913902, T61, T60);
524
       T6y = FMA(KP557913902, T61, T60);
525
        }
526
        {
527
       E T6i, T6k, T6g, T6h, T6j;
528
       T6g = FMA(KP845997307, T67, T66);
529
       T6h = FNMS(KP968479752, T64, T63);
530
       T6i = FNMS(KP906616052, T6h, T6g);
531
       T6k = FMA(KP906616052, T6h, T6g);
532
       T6R = FMA(KP998026728, T6i, T6f);
533
       T6j = FNMS(KP249506682, T6i, T6f);
534
       T6l = FNMS(KP557913902, T6k, T6j);
535
       T6D = FMA(KP557913902, T6k, T6j);
536
        }
537
        {
538
       E T6P, T6S, T6N, T6Q;
539
       T6N = W[2];
540
       T6P = T6N * T6O;
541
       T6S = T6N * T6R;
542
       T6Q = W[3];
543
       cr[WS(rs, 2)] = FNMS(T6Q, T6R, T6P);
544
       ci[WS(rs, 2)] = FMA(T6Q, T6O, T6S);
545
        }
546
        {
547
       E T6I, T6L, T6J, T6M, T6H, T6K;
548
       T6I = FMA(KP949179823, T6z, T6y);
549
       T6L = FNMS(KP949179823, T6E, T6D);
550
       T6H = W[32];
551
       T6J = T6H * T6I;
552
       T6M = T6H * T6L;
553
       T6K = W[33];
554
       cr[WS(rs, 17)] = FNMS(T6K, T6L, T6J);
555
       ci[WS(rs, 17)] = FMA(T6K, T6I, T6M);
556
        }
557
        {
558
       E T6a, T6p, T6b, T6q, T5r, T6c;
559
       T6a = FNMS(KP860541664, T69, T62);
560
       T6p = FNMS(KP860541664, T6o, T6l);
561
       T5r = W[12];
562
       T6b = T5r * T6a;
563
       T6q = T5r * T6p;
564
       T6c = W[13];
565
       cr[WS(rs, 7)] = FNMS(T6c, T6p, T6b);
566
       ci[WS(rs, 7)] = FMA(T6c, T6a, T6q);
567
        }
568
        {
569
       E T6s, T6v, T6t, T6w, T6r, T6u;
570
       T6s = FMA(KP860541664, T69, T62);
571
       T6v = FMA(KP860541664, T6o, T6l);
572
       T6r = W[42];
573
       T6t = T6r * T6s;
574
       T6w = T6r * T6v;
575
       T6u = W[43];
576
       cr[WS(rs, 22)] = FNMS(T6u, T6v, T6t);
577
       ci[WS(rs, 22)] = FMA(T6u, T6s, T6w);
578
        }
579
        {
580
       E T6A, T6F, T6B, T6G, T6x, T6C;
581
       T6A = FNMS(KP949179823, T6z, T6y);
582
       T6F = FMA(KP949179823, T6E, T6D);
583
       T6x = W[22];
584
       T6B = T6x * T6A;
585
       T6G = T6x * T6F;
586
       T6C = W[23];
587
       cr[WS(rs, 12)] = FNMS(T6C, T6F, T6B);
588
       ci[WS(rs, 12)] = FMA(T6C, T6A, T6G);
589
        }
590
         }
591
         {
592
        E T7t, T7N, T7C, T7S, T7d, T7k, T7x, T7y, T7a, T7q, T7M, T7g, T7j;
593
        {
594
       E T7r, T7s, T7A, T7B;
595
       T7r = FNMS(KP734762448, T7i, T7h);
596
       T7s = FNMS(KP772036680, T7f, T7e);
597
       T7t = FNMS(KP621716863, T7s, T7r);
598
       T7N = FMA(KP614372930, T7r, T7s);
599
       T7A = FNMS(KP734762448, T77, T74);
600
       T7B = FNMS(KP772036680, T70, T6X);
601
       T7C = FNMS(KP621716863, T7B, T7A);
602
       T7S = FMA(KP614372930, T7A, T7B);
603
        }
604
        T7d = FMA(KP951056516, T6e, T6d);
605
        T7g = FMA(KP772036680, T7f, T7e);
606
        T7j = FMA(KP734762448, T7i, T7h);
607
        T7k = FMA(KP994076283, T7j, T7g);
608
        T7x = FNMS(KP249506682, T7k, T7d);
609
        T7y = FNMS(KP994076283, T7j, T7g);
610
        {
611
       E T79, T7p, T71, T78, T7o;
612
       T71 = FMA(KP772036680, T70, T6X);
613
       T78 = FMA(KP734762448, T77, T74);
614
       T79 = FMA(KP994076283, T78, T71);
615
       T7p = FNMS(KP994076283, T78, T71);
616
       T7a = FMA(KP998026728, T79, T6U);
617
       T7o = FNMS(KP249506682, T79, T6U);
618
       T7q = FNMS(KP557913902, T7p, T7o);
619
       T7M = FMA(KP557913902, T7p, T7o);
620
        }
621
        {
622
       E T7l, T7c, T7m, T6T, T7b;
623
       T7l = FMA(KP998026728, T7k, T7d);
624
       T7c = W[5];
625
       T7m = T7c * T7a;
626
       T6T = W[4];
627
       T7b = T6T * T7a;
628
       cr[WS(rs, 3)] = FNMS(T7c, T7l, T7b);
629
       ci[WS(rs, 3)] = FMA(T6T, T7l, T7m);
630
        }
631
        {
632
       E T7T, T7Z, T7V, T7X, T7Y, T80, T7L, T7P, T7Q, T7U, T7R, T7W, T7O;
633
       T7R = FMA(KP557913902, T7y, T7x);
634
       T7T = FNMS(KP949179823, T7S, T7R);
635
       T7Z = FMA(KP949179823, T7S, T7R);
636
       T7W = FNMS(KP949179823, T7N, T7M);
637
       T7V = W[34];
638
       T7X = T7V * T7W;
639
       T7Y = W[35];
640
       T80 = T7Y * T7W;
641
       T7O = FMA(KP949179823, T7N, T7M);
642
       T7L = W[24];
643
       T7P = T7L * T7O;
644
       T7Q = W[25];
645
       T7U = T7Q * T7O;
646
       cr[WS(rs, 13)] = FNMS(T7Q, T7T, T7P);
647
       ci[WS(rs, 13)] = FMA(T7L, T7T, T7U);
648
       cr[WS(rs, 18)] = FNMS(T7Y, T7Z, T7X);
649
       ci[WS(rs, 18)] = FMA(T7V, T7Z, T80);
650
        }
651
        {
652
       E T7D, T7J, T7F, T7H, T7I, T7K, T7n, T7v, T7w, T7E, T7z, T7G, T7u;
653
       T7z = FNMS(KP557913902, T7y, T7x);
654
       T7D = FNMS(KP943557151, T7C, T7z);
655
       T7J = FMA(KP943557151, T7C, T7z);
656
       T7G = FNMS(KP943557151, T7t, T7q);
657
       T7F = W[44];
658
       T7H = T7F * T7G;
659
       T7I = W[45];
660
       T7K = T7I * T7G;
661
       T7u = FMA(KP943557151, T7t, T7q);
662
       T7n = W[14];
663
       T7v = T7n * T7u;
664
       T7w = W[15];
665
       T7E = T7w * T7u;
666
       cr[WS(rs, 8)] = FNMS(T7w, T7D, T7v);
667
       ci[WS(rs, 8)] = FMA(T7n, T7D, T7E);
668
       cr[WS(rs, 23)] = FNMS(T7I, T7J, T7H);
669
       ci[WS(rs, 23)] = FMA(T7F, T7J, T7K);
670
        }
671
         }
672
         {
673
        E T4J, T57, T4W, T5c, T4N, T4Q, T4R, T4S, T5m, T4C, T56, T4O, T4P;
674
        {
675
       E T4F, T4I, T4U, T4V;
676
       T4F = FNMS(KP912575812, T4E, T4D);
677
       T4I = FNMS(KP912018591, T4H, T4G);
678
       T4J = FNMS(KP726211448, T4I, T4F);
679
       T57 = FMA(KP525970792, T4F, T4I);
680
       T4U = FNMS(KP912575812, T4x, T4u);
681
       T4V = FMA(KP912018591, T4q, T4n);
682
       T4W = FNMS(KP726211448, T4V, T4U);
683
       T5c = FMA(KP525970792, T4U, T4V);
684
        }
685
        T4N = FNMS(KP951056516, T3E, T3B);
686
        T4O = FMA(KP912018591, T4H, T4G);
687
        T4P = FMA(KP912575812, T4E, T4D);
688
        T4Q = FMA(KP851038619, T4P, T4O);
689
        T4R = FNMS(KP248028675, T4Q, T4N);
690
        T4S = FNMS(KP851038619, T4P, T4O);
691
        {
692
       E T4z, T4B, T4r, T4y, T4A;
693
       T4r = FNMS(KP912018591, T4q, T4n);
694
       T4y = FMA(KP912575812, T4x, T4u);
695
       T4z = FMA(KP851038619, T4y, T4r);
696
       T4B = FNMS(KP851038619, T4y, T4r);
697
       T5m = FNMS(KP992114701, T4z, T4k);
698
       T4A = FMA(KP248028675, T4z, T4k);
699
       T4C = FMA(KP554608978, T4B, T4A);
700
       T56 = FNMS(KP554608978, T4B, T4A);
701
        }
702
        {
703
       E T5p, T5o, T5q, T5l, T5n;
704
       T5p = FMA(KP992114701, T4Q, T4N);
705
       T5o = W[7];
706
       T5q = T5o * T5m;
707
       T5l = W[6];
708
       T5n = T5l * T5m;
709
       cr[WS(rs, 4)] = FNMS(T5o, T5p, T5n);
710
       ci[WS(rs, 4)] = FMA(T5l, T5p, T5q);
711
        }
712
        {
713
       E T5d, T5j, T5f, T5h, T5i, T5k, T55, T59, T5a, T5e, T5b, T5g, T58;
714
       T5b = FMA(KP554608978, T4S, T4R);
715
       T5d = FNMS(KP943557151, T5c, T5b);
716
       T5j = FMA(KP943557151, T5c, T5b);
717
       T5g = FMA(KP943557151, T57, T56);
718
       T5f = W[36];
719
       T5h = T5f * T5g;
720
       T5i = W[37];
721
       T5k = T5i * T5g;
722
       T58 = FNMS(KP943557151, T57, T56);
723
       T55 = W[26];
724
       T59 = T55 * T58;
725
       T5a = W[27];
726
       T5e = T5a * T58;
727
       cr[WS(rs, 14)] = FNMS(T5a, T5d, T59);
728
       ci[WS(rs, 14)] = FMA(T55, T5d, T5e);
729
       cr[WS(rs, 19)] = FNMS(T5i, T5j, T5h);
730
       ci[WS(rs, 19)] = FMA(T5f, T5j, T5k);
731
        }
732
        {
733
       E T4X, T53, T4Z, T51, T52, T54, T4j, T4L, T4M, T4Y, T4T, T50, T4K;
734
       T4T = FNMS(KP554608978, T4S, T4R);
735
       T4X = FNMS(KP803003575, T4W, T4T);
736
       T53 = FMA(KP803003575, T4W, T4T);
737
       T50 = FMA(KP803003575, T4J, T4C);
738
       T4Z = W[46];
739
       T51 = T4Z * T50;
740
       T52 = W[47];
741
       T54 = T52 * T50;
742
       T4K = FNMS(KP803003575, T4J, T4C);
743
       T4j = W[16];
744
       T4L = T4j * T4K;
745
       T4M = W[17];
746
       T4Y = T4M * T4K;
747
       cr[WS(rs, 9)] = FNMS(T4M, T4X, T4L);
748
       ci[WS(rs, 9)] = FMA(T4j, T4X, T4Y);
749
       cr[WS(rs, 24)] = FNMS(T52, T53, T51);
750
       ci[WS(rs, 24)] = FMA(T4Z, T53, T54);
751
        }
752
         }
753
         {
754
        E T3v, T3Z, T3O, T44, T3F, T3I, T3J, T3K, T4e, T3o, T3Y, T3G, T3H;
755
        {
756
       E T3r, T3u, T3M, T3N;
757
       T3r = FMA(KP871714437, T3q, T3p);
758
       T3u = FNMS(KP831864738, T3t, T3s);
759
       T3v = FNMS(KP559154169, T3u, T3r);
760
       T3Z = FMA(KP683113946, T3r, T3u);
761
       T3M = FNMS(KP871714437, T2O, T2z);
762
       T3N = FNMS(KP831864738, T3j, T34);
763
       T3O = FMA(KP559154169, T3N, T3M);
764
       T44 = FNMS(KP683113946, T3M, T3N);
765
        }
766
        T3F = FMA(KP951056516, T3E, T3B);
767
        T3G = FNMS(KP871714437, T3q, T3p);
768
        T3H = FMA(KP831864738, T3t, T3s);
769
        T3I = FNMS(KP904730450, T3H, T3G);
770
        T3J = FNMS(KP242145790, T3I, T3F);
771
        T3K = FMA(KP904730450, T3H, T3G);
772
        {
773
       E T3l, T3n, T2P, T3k, T3m;
774
       T2P = FMA(KP871714437, T2O, T2z);
775
       T3k = FMA(KP831864738, T3j, T34);
776
       T3l = FMA(KP904730450, T3k, T2P);
777
       T3n = FNMS(KP904730450, T3k, T2P);
778
       T4e = FMA(KP968583161, T3l, T2k);
779
       T3m = FNMS(KP242145790, T3l, T2k);
780
       T3o = FMA(KP541454447, T3n, T3m);
781
       T3Y = FNMS(KP541454447, T3n, T3m);
782
        }
783
        {
784
       E T4h, T4g, T4i, T4d, T4f;
785
       T4h = FMA(KP968583161, T3I, T3F);
786
       T4g = W[1];
787
       T4i = T4g * T4e;
788
       T4d = W[0];
789
       T4f = T4d * T4e;
790
       cr[WS(rs, 1)] = FNMS(T4g, T4h, T4f);
791
       ci[WS(rs, 1)] = FMA(T4d, T4h, T4i);
792
        }
793
        {
794
       E T45, T4b, T47, T49, T4a, T4c, T3X, T41, T42, T46, T43, T48, T40;
795
       T43 = FNMS(KP541454447, T3K, T3J);
796
       T45 = FNMS(KP833417178, T44, T43);
797
       T4b = FMA(KP833417178, T44, T43);
798
       T48 = FMA(KP833417178, T3Z, T3Y);
799
       T47 = W[30];
800
       T49 = T47 * T48;
801
       T4a = W[31];
802
       T4c = T4a * T48;
803
       T40 = FNMS(KP833417178, T3Z, T3Y);
804
       T3X = W[20];
805
       T41 = T3X * T40;
806
       T42 = W[21];
807
       T46 = T42 * T40;
808
       cr[WS(rs, 11)] = FNMS(T42, T45, T41);
809
       ci[WS(rs, 11)] = FMA(T3X, T45, T46);
810
       cr[WS(rs, 16)] = FNMS(T4a, T4b, T49);
811
       ci[WS(rs, 16)] = FMA(T47, T4b, T4c);
812
        }
813
        {
814
       E T3P, T3V, T3R, T3T, T3U, T3W, T2d, T3x, T3y, T3Q, T3L, T3S, T3w;
815
       T3L = FMA(KP541454447, T3K, T3J);
816
       T3P = FMA(KP921177326, T3O, T3L);
817
       T3V = FNMS(KP921177326, T3O, T3L);
818
       T3S = FMA(KP921177326, T3v, T3o);
819
       T3R = W[40];
820
       T3T = T3R * T3S;
821
       T3U = W[41];
822
       T3W = T3U * T3S;
823
       T3w = FNMS(KP921177326, T3v, T3o);
824
       T2d = W[10];
825
       T3x = T2d * T3w;
826
       T3y = W[11];
827
       T3Q = T3y * T3w;
828
       cr[WS(rs, 6)] = FNMS(T3y, T3P, T3x);
829
       ci[WS(rs, 6)] = FMA(T2d, T3P, T3Q);
830
       cr[WS(rs, 21)] = FNMS(T3U, T3V, T3T);
831
       ci[WS(rs, 21)] = FMA(T3R, T3V, T3W);
832
        }
833
         }
834
    }
835
     }
836
}
837
838
static const tw_instr twinstr[] = {
839
     { TW_FULL, 1, 25 },
840
     { TW_NEXT, 1, 0 }
841
};
842
843
static const hc2hc_desc desc = { 25, "hb_25", twinstr, &GENUS, { 84, 48, 316, 0 } };
844
845
void X(codelet_hb_25) (planner *p) {
846
     X(khc2hc_register) (p, hb_25, &desc);
847
}
848
#else
849
850
/* Generated by: ../../../genfft/gen_hc2hc.native -compact -variables 4 -pipeline-latency 4 -sign 1 -n 25 -dif -name hb_25 -include rdft/scalar/hb.h */
851
852
/*
853
 * This function contains 400 FP additions, 280 FP multiplications,
854
 * (or, 260 additions, 140 multiplications, 140 fused multiply/add),
855
 * 107 stack variables, 20 constants, and 100 memory accesses
856
 */
857
#include "rdft/scalar/hb.h"
858
859
static void hb_25(R *cr, R *ci, const R *W, stride rs, INT mb, INT me, INT ms)
860
0
{
861
0
     DK(KP998026728, +0.998026728428271561952336806863450553336905220);
862
0
     DK(KP062790519, +0.062790519529313376076178224565631133122484832);
863
0
     DK(KP992114701, +0.992114701314477831049793042785778521453036709);
864
0
     DK(KP125333233, +0.125333233564304245373118759816508793942918247);
865
0
     DK(KP425779291, +0.425779291565072648862502445744251703979973042);
866
0
     DK(KP904827052, +0.904827052466019527713668647932697593970413911);
867
0
     DK(KP248689887, +0.248689887164854788242283746006447968417567406);
868
0
     DK(KP968583161, +0.968583161128631119490168375464735813836012403);
869
0
     DK(KP770513242, +0.770513242775789230803009636396177847271667672);
870
0
     DK(KP637423989, +0.637423989748689710176712811676016195434917298);
871
0
     DK(KP844327925, +0.844327925502015078548558063966681505381659241);
872
0
     DK(KP535826794, +0.535826794978996618271308767867639978063575346);
873
0
     DK(KP684547105, +0.684547105928688673732283357621209269889519233);
874
0
     DK(KP728968627, +0.728968627421411523146730319055259111372571664);
875
0
     DK(KP481753674, +0.481753674101715274987191502872129653528542010);
876
0
     DK(KP876306680, +0.876306680043863587308115903922062583399064238);
877
0
     DK(KP559016994, +0.559016994374947424102293417182819058860154590);
878
0
     DK(KP250000000, +0.250000000000000000000000000000000000000000000);
879
0
     DK(KP587785252, +0.587785252292473129168705954639072768597652438);
880
0
     DK(KP951056516, +0.951056516295153572116439333379382143405698634);
881
0
     {
882
0
    INT m;
883
0
    for (m = mb, W = W + ((mb - 1) * 48); m < me; m = m + 1, cr = cr + ms, ci = ci - ms, W = W + 48, MAKE_VOLATILE_STRIDE(50, rs)) {
884
0
         E T9, T5Q, T3y, T39, T5v, Ti, Tr, Ts, TZ, T18, T1z, T2k, T4l, T3h, T44;
885
0
         E T5d, T6C, T5C, T6o, T56, T6B, T5B, T6l, T2z, T4m, T3i, T47, T1K, T5w, T3c;
886
0
         E T3B, T5R, TB, TK, TL, T1i, T1r, T1A, T2P, T4o, T3k, T4b, T5s, T6F, T5F;
887
0
         E T6v, T5l, T6E, T5E, T6s, T34, T4p, T3l, T4e;
888
0
         {
889
0
        E T1, T4, T7, T8, T3x, T3w, T37, T38;
890
0
        T1 = cr[0];
891
0
        {
892
0
       E T2, T3, T5, T6;
893
0
       T2 = cr[WS(rs, 5)];
894
0
       T3 = ci[WS(rs, 4)];
895
0
       T4 = T2 + T3;
896
0
       T5 = cr[WS(rs, 10)];
897
0
       T6 = ci[WS(rs, 9)];
898
0
       T7 = T5 + T6;
899
0
       T8 = T4 + T7;
900
0
       T3x = T5 - T6;
901
0
       T3w = T2 - T3;
902
0
        }
903
0
        T9 = T1 + T8;
904
0
        T5Q = FMA(KP951056516, T3w, KP587785252 * T3x);
905
0
        T3y = FNMS(KP951056516, T3x, KP587785252 * T3w);
906
0
        T37 = FNMS(KP250000000, T8, T1);
907
0
        T38 = KP559016994 * (T4 - T7);
908
0
        T39 = T37 - T38;
909
0
        T5v = T38 + T37;
910
0
         }
911
0
         {
912
0
        E Ta, T27, T53, T2f, Th, T26, T10, T2p, T58, T2x, T17, T2o, Tj, T2n, T5a;
913
0
        E T2t, Tq, T2s, TR, T2b, T51, T2h, TY, T2g;
914
0
        {
915
0
       E Tg, T2e, Td, T2d;
916
0
       Ta = cr[WS(rs, 1)];
917
0
       {
918
0
            E Te, Tf, Tb, Tc;
919
0
            Te = cr[WS(rs, 11)];
920
0
            Tf = ci[WS(rs, 8)];
921
0
            Tg = Te + Tf;
922
0
            T2e = Te - Tf;
923
0
            Tb = cr[WS(rs, 6)];
924
0
            Tc = ci[WS(rs, 3)];
925
0
            Td = Tb + Tc;
926
0
            T2d = Tb - Tc;
927
0
       }
928
0
       T27 = KP559016994 * (Td - Tg);
929
0
       T53 = FMA(KP951056516, T2d, KP587785252 * T2e);
930
0
       T2f = FNMS(KP951056516, T2e, KP587785252 * T2d);
931
0
       Th = Td + Tg;
932
0
       T26 = FNMS(KP250000000, Th, Ta);
933
0
        }
934
0
        {
935
0
       E T16, T2w, T13, T2v;
936
0
       T10 = ci[WS(rs, 20)];
937
0
       {
938
0
            E T14, T15, T11, T12;
939
0
            T14 = cr[WS(rs, 14)];
940
0
            T15 = cr[WS(rs, 19)];
941
0
            T16 = T14 + T15;
942
0
            T2w = T15 - T14;
943
0
            T11 = ci[WS(rs, 15)];
944
0
            T12 = cr[WS(rs, 24)];
945
0
            T13 = T11 - T12;
946
0
            T2v = T11 + T12;
947
0
       }
948
0
       T2p = KP559016994 * (T13 + T16);
949
0
       T58 = FMA(KP951056516, T2v, KP587785252 * T2w);
950
0
       T2x = FNMS(KP951056516, T2w, KP587785252 * T2v);
951
0
       T17 = T13 - T16;
952
0
       T2o = FNMS(KP250000000, T17, T10);
953
0
        }
954
0
        {
955
0
       E Tp, T2m, Tm, T2l;
956
0
       Tj = cr[WS(rs, 4)];
957
0
       {
958
0
            E Tn, To, Tk, Tl;
959
0
            Tn = ci[WS(rs, 10)];
960
0
            To = ci[WS(rs, 5)];
961
0
            Tp = Tn + To;
962
0
            T2m = Tn - To;
963
0
            Tk = cr[WS(rs, 9)];
964
0
            Tl = ci[0];
965
0
            Tm = Tk + Tl;
966
0
            T2l = Tk - Tl;
967
0
       }
968
0
       T2n = FNMS(KP951056516, T2m, KP587785252 * T2l);
969
0
       T5a = FMA(KP951056516, T2l, KP587785252 * T2m);
970
0
       T2t = KP559016994 * (Tm - Tp);
971
0
       Tq = Tm + Tp;
972
0
       T2s = FNMS(KP250000000, Tq, Tj);
973
0
        }
974
0
        {
975
0
       E TX, T2a, TU, T29;
976
0
       TR = ci[WS(rs, 23)];
977
0
       {
978
0
            E TV, TW, TS, TT;
979
0
            TV = ci[WS(rs, 13)];
980
0
            TW = cr[WS(rs, 16)];
981
0
            TX = TV - TW;
982
0
            T2a = TV + TW;
983
0
            TS = ci[WS(rs, 18)];
984
0
            TT = cr[WS(rs, 21)];
985
0
            TU = TS - TT;
986
0
            T29 = TS + TT;
987
0
       }
988
0
       T2b = FNMS(KP951056516, T2a, KP587785252 * T29);
989
0
       T51 = FMA(KP951056516, T29, KP587785252 * T2a);
990
0
       T2h = KP559016994 * (TU - TX);
991
0
       TY = TU + TX;
992
0
       T2g = FNMS(KP250000000, TY, TR);
993
0
        }
994
0
        Ti = Ta + Th;
995
0
        Tr = Tj + Tq;
996
0
        Ts = Ti + Tr;
997
0
        TZ = TR + TY;
998
0
        T18 = T10 + T17;
999
0
        T1z = TZ + T18;
1000
0
        {
1001
0
       E T2c, T42, T2j, T43, T28, T2i;
1002
0
       T28 = T26 - T27;
1003
0
       T2c = T28 - T2b;
1004
0
       T42 = T28 + T2b;
1005
0
       T2i = T2g - T2h;
1006
0
       T2j = T2f + T2i;
1007
0
       T43 = T2i - T2f;
1008
0
       T2k = FNMS(KP481753674, T2j, KP876306680 * T2c);
1009
0
       T4l = FMA(KP728968627, T43, KP684547105 * T42);
1010
0
       T3h = FMA(KP876306680, T2j, KP481753674 * T2c);
1011
0
       T44 = FNMS(KP684547105, T43, KP728968627 * T42);
1012
0
        }
1013
0
        {
1014
0
       E T59, T6n, T5c, T6m, T57, T5b;
1015
0
       T57 = T2t + T2s;
1016
0
       T59 = T57 - T58;
1017
0
       T6n = T57 + T58;
1018
0
       T5b = T2o + T2p;
1019
0
       T5c = T5a + T5b;
1020
0
       T6m = T5b - T5a;
1021
0
       T5d = FNMS(KP844327925, T5c, KP535826794 * T59);
1022
0
       T6C = FMA(KP637423989, T6m, KP770513242 * T6n);
1023
0
       T5C = FMA(KP535826794, T5c, KP844327925 * T59);
1024
0
       T6o = FNMS(KP637423989, T6n, KP770513242 * T6m);
1025
0
        }
1026
0
        {
1027
0
       E T52, T6j, T55, T6k, T50, T54;
1028
0
       T50 = T27 + T26;
1029
0
       T52 = T50 - T51;
1030
0
       T6j = T50 + T51;
1031
0
       T54 = T2h + T2g;
1032
0
       T55 = T53 + T54;
1033
0
       T6k = T54 - T53;
1034
0
       T56 = FNMS(KP248689887, T55, KP968583161 * T52);
1035
0
       T6B = FMA(KP535826794, T6k, KP844327925 * T6j);
1036
0
       T5B = FMA(KP968583161, T55, KP248689887 * T52);
1037
0
       T6l = FNMS(KP844327925, T6k, KP535826794 * T6j);
1038
0
        }
1039
0
        {
1040
0
       E T2r, T45, T2y, T46, T2q, T2u;
1041
0
       T2q = T2o - T2p;
1042
0
       T2r = T2n + T2q;
1043
0
       T45 = T2q - T2n;
1044
0
       T2u = T2s - T2t;
1045
0
       T2y = T2u - T2x;
1046
0
       T46 = T2u + T2x;
1047
0
       T2z = FMA(KP904827052, T2r, KP425779291 * T2y);
1048
0
       T4m = FNMS(KP992114701, T45, KP125333233 * T46);
1049
0
       T3i = FNMS(KP425779291, T2r, KP904827052 * T2y);
1050
0
       T47 = FMA(KP125333233, T45, KP992114701 * T46);
1051
0
        }
1052
0
         }
1053
0
         {
1054
0
        E T1C, T1F, T1I, T1J, T3b, T3a, T3z, T3A;
1055
0
        T1C = ci[WS(rs, 24)];
1056
0
        {
1057
0
       E T1D, T1E, T1G, T1H;
1058
0
       T1D = ci[WS(rs, 19)];
1059
0
       T1E = cr[WS(rs, 20)];
1060
0
       T1F = T1D - T1E;
1061
0
       T1G = ci[WS(rs, 14)];
1062
0
       T1H = cr[WS(rs, 15)];
1063
0
       T1I = T1G - T1H;
1064
0
       T1J = T1F + T1I;
1065
0
       T3b = T1G + T1H;
1066
0
       T3a = T1D + T1E;
1067
0
        }
1068
0
        T1K = T1C + T1J;
1069
0
        T5w = FMA(KP951056516, T3a, KP587785252 * T3b);
1070
0
        T3c = FNMS(KP951056516, T3b, KP587785252 * T3a);
1071
0
        T3z = FNMS(KP250000000, T1J, T1C);
1072
0
        T3A = KP559016994 * (T1F - T1I);
1073
0
        T3B = T3z - T3A;
1074
0
        T5R = T3A + T3z;
1075
0
         }
1076
0
         {
1077
0
        E Tt, T2C, T5i, T2K, TA, T2B, T1a, T2G, T5g, T2M, T1h, T2L, TC, T2R, T5p;
1078
0
        E T2Z, TJ, T2Q, T1j, T2V, T5n, T31, T1q, T30;
1079
0
        {
1080
0
       E Tw, T2I, Tz, T2J;
1081
0
       Tt = cr[WS(rs, 2)];
1082
0
       {
1083
0
            E Tu, Tv, Tx, Ty;
1084
0
            Tu = cr[WS(rs, 7)];
1085
0
            Tv = ci[WS(rs, 2)];
1086
0
            Tw = Tu + Tv;
1087
0
            T2I = Tu - Tv;
1088
0
            Tx = cr[WS(rs, 12)];
1089
0
            Ty = ci[WS(rs, 7)];
1090
0
            Tz = Tx + Ty;
1091
0
            T2J = Tx - Ty;
1092
0
       }
1093
0
       T2C = KP559016994 * (Tw - Tz);
1094
0
       T5i = FMA(KP951056516, T2I, KP587785252 * T2J);
1095
0
       T2K = FNMS(KP951056516, T2J, KP587785252 * T2I);
1096
0
       TA = Tw + Tz;
1097
0
       T2B = FNMS(KP250000000, TA, Tt);
1098
0
        }
1099
0
        {
1100
0
       E T1d, T2E, T1g, T2F;
1101
0
       T1a = ci[WS(rs, 22)];
1102
0
       {
1103
0
            E T1b, T1c, T1e, T1f;
1104
0
            T1b = ci[WS(rs, 17)];
1105
0
            T1c = cr[WS(rs, 22)];
1106
0
            T1d = T1b - T1c;
1107
0
            T2E = T1b + T1c;
1108
0
            T1e = ci[WS(rs, 12)];
1109
0
            T1f = cr[WS(rs, 17)];
1110
0
            T1g = T1e - T1f;
1111
0
            T2F = T1e + T1f;
1112
0
       }
1113
0
       T2G = FNMS(KP951056516, T2F, KP587785252 * T2E);
1114
0
       T5g = FMA(KP951056516, T2E, KP587785252 * T2F);
1115
0
       T2M = KP559016994 * (T1d - T1g);
1116
0
       T1h = T1d + T1g;
1117
0
       T2L = FNMS(KP250000000, T1h, T1a);
1118
0
        }
1119
0
        {
1120
0
       E TI, T2Y, TF, T2X;
1121
0
       TC = cr[WS(rs, 3)];
1122
0
       {
1123
0
            E TG, TH, TD, TE;
1124
0
            TG = ci[WS(rs, 11)];
1125
0
            TH = ci[WS(rs, 6)];
1126
0
            TI = TG + TH;
1127
0
            T2Y = TG - TH;
1128
0
            TD = cr[WS(rs, 8)];
1129
0
            TE = ci[WS(rs, 1)];
1130
0
            TF = TD + TE;
1131
0
            T2X = TD - TE;
1132
0
       }
1133
0
       T2R = KP559016994 * (TF - TI);
1134
0
       T5p = FMA(KP951056516, T2X, KP587785252 * T2Y);
1135
0
       T2Z = FNMS(KP951056516, T2Y, KP587785252 * T2X);
1136
0
       TJ = TF + TI;
1137
0
       T2Q = FNMS(KP250000000, TJ, TC);
1138
0
        }
1139
0
        {
1140
0
       E T1p, T2U, T1m, T2T;
1141
0
       T1j = ci[WS(rs, 21)];
1142
0
       {
1143
0
            E T1n, T1o, T1k, T1l;
1144
0
            T1n = cr[WS(rs, 13)];
1145
0
            T1o = cr[WS(rs, 18)];
1146
0
            T1p = T1n + T1o;
1147
0
            T2U = T1o - T1n;
1148
0
            T1k = ci[WS(rs, 16)];
1149
0
            T1l = cr[WS(rs, 23)];
1150
0
            T1m = T1k - T1l;
1151
0
            T2T = T1k + T1l;
1152
0
       }
1153
0
       T2V = FNMS(KP951056516, T2U, KP587785252 * T2T);
1154
0
       T5n = FMA(KP951056516, T2T, KP587785252 * T2U);
1155
0
       T31 = KP559016994 * (T1m + T1p);
1156
0
       T1q = T1m - T1p;
1157
0
       T30 = FNMS(KP250000000, T1q, T1j);
1158
0
        }
1159
0
        TB = Tt + TA;
1160
0
        TK = TC + TJ;
1161
0
        TL = TB + TK;
1162
0
        T1i = T1a + T1h;
1163
0
        T1r = T1j + T1q;
1164
0
        T1A = T1i + T1r;
1165
0
        {
1166
0
       E T2H, T49, T2O, T4a, T2D, T2N;
1167
0
       T2D = T2B - T2C;
1168
0
       T2H = T2D - T2G;
1169
0
       T49 = T2D + T2G;
1170
0
       T2N = T2L - T2M;
1171
0
       T2O = T2K + T2N;
1172
0
       T4a = T2N - T2K;
1173
0
       T2P = FNMS(KP844327925, T2O, KP535826794 * T2H);
1174
0
       T4o = FMA(KP062790519, T4a, KP998026728 * T49);
1175
0
       T3k = FMA(KP535826794, T2O, KP844327925 * T2H);
1176
0
       T4b = FNMS(KP998026728, T4a, KP062790519 * T49);
1177
0
        }
1178
0
        {
1179
0
       E T5o, T6u, T5r, T6t, T5m, T5q;
1180
0
       T5m = T2R + T2Q;
1181
0
       T5o = T5m - T5n;
1182
0
       T6u = T5m + T5n;
1183
0
       T5q = T30 + T31;
1184
0
       T5r = T5p + T5q;
1185
0
       T6t = T5q - T5p;
1186
0
       T5s = FNMS(KP684547105, T5r, KP728968627 * T5o);
1187
0
       T6F = FNMS(KP992114701, T6t, KP125333233 * T6u);
1188
0
       T5F = FMA(KP728968627, T5r, KP684547105 * T5o);
1189
0
       T6v = FMA(KP125333233, T6t, KP992114701 * T6u);
1190
0
        }
1191
0
        {
1192
0
       E T5h, T6r, T5k, T6q, T5f, T5j;
1193
0
       T5f = T2C + T2B;
1194
0
       T5h = T5f - T5g;
1195
0
       T6r = T5f + T5g;
1196
0
       T5j = T2M + T2L;
1197
0
       T5k = T5i + T5j;
1198
0
       T6q = T5j - T5i;
1199
0
       T5l = FNMS(KP481753674, T5k, KP876306680 * T5h);
1200
0
       T6E = FNMS(KP425779291, T6q, KP904827052 * T6r);
1201
0
       T5E = FMA(KP876306680, T5k, KP481753674 * T5h);
1202
0
       T6s = FMA(KP904827052, T6q, KP425779291 * T6r);
1203
0
        }
1204
0
        {
1205
0
       E T2W, T4d, T33, T4c, T2S, T32;
1206
0
       T2S = T2Q - T2R;
1207
0
       T2W = T2S - T2V;
1208
0
       T4d = T2S + T2V;
1209
0
       T32 = T30 - T31;
1210
0
       T33 = T2Z + T32;
1211
0
       T4c = T32 - T2Z;
1212
0
       T34 = FNMS(KP998026728, T33, KP062790519 * T2W);
1213
0
       T4p = FNMS(KP637423989, T4c, KP770513242 * T4d);
1214
0
       T3l = FMA(KP062790519, T33, KP998026728 * T2W);
1215
0
       T4e = FMA(KP770513242, T4c, KP637423989 * T4d);
1216
0
        }
1217
0
         }
1218
0
         {
1219
0
        E TM, TQ, T1U, T1L, T1N, T1Z, T1t, T1V, T1y, T1Y;
1220
0
        {
1221
0
       E TO, TP, T1B, T1M;
1222
0
       TO = KP559016994 * (Ts - TL);
1223
0
       TM = Ts + TL;
1224
0
       TP = FNMS(KP250000000, TM, T9);
1225
0
       TQ = TO + TP;
1226
0
       T1U = TP - TO;
1227
0
       T1B = KP559016994 * (T1z - T1A);
1228
0
       T1L = T1z + T1A;
1229
0
       T1M = FNMS(KP250000000, T1L, T1K);
1230
0
       T1N = T1B + T1M;
1231
0
       T1Z = T1M - T1B;
1232
0
        }
1233
0
        {
1234
0
       E T19, T1s, T1w, T1x;
1235
0
       T19 = TZ - T18;
1236
0
       T1s = T1i - T1r;
1237
0
       T1t = FMA(KP951056516, T19, KP587785252 * T1s);
1238
0
       T1V = FNMS(KP951056516, T1s, KP587785252 * T19);
1239
0
       T1w = Ti - Tr;
1240
0
       T1x = TB - TK;
1241
0
       T1y = FMA(KP951056516, T1w, KP587785252 * T1x);
1242
0
       T1Y = FNMS(KP951056516, T1x, KP587785252 * T1w);
1243
0
        }
1244
0
        cr[0] = T9 + TM;
1245
0
        ci[0] = T1K + T1L;
1246
0
        {
1247
0
       E T1u, T1O, TN, T1v;
1248
0
       T1u = TQ - T1t;
1249
0
       T1O = T1y + T1N;
1250
0
       TN = W[8];
1251
0
       T1v = W[9];
1252
0
       cr[WS(rs, 5)] = FNMS(T1v, T1O, TN * T1u);
1253
0
       ci[WS(rs, 5)] = FMA(T1v, T1u, TN * T1O);
1254
0
        }
1255
0
        {
1256
0
       E T22, T24, T21, T23;
1257
0
       T22 = T1U + T1V;
1258
0
       T24 = T1Z - T1Y;
1259
0
       T21 = W[28];
1260
0
       T23 = W[29];
1261
0
       cr[WS(rs, 15)] = FNMS(T23, T24, T21 * T22);
1262
0
       ci[WS(rs, 15)] = FMA(T23, T22, T21 * T24);
1263
0
        }
1264
0
        {
1265
0
       E T1W, T20, T1T, T1X;
1266
0
       T1W = T1U - T1V;
1267
0
       T20 = T1Y + T1Z;
1268
0
       T1T = W[18];
1269
0
       T1X = W[19];
1270
0
       cr[WS(rs, 10)] = FNMS(T1X, T20, T1T * T1W);
1271
0
       ci[WS(rs, 10)] = FMA(T1X, T1W, T1T * T20);
1272
0
        }
1273
0
        {
1274
0
       E T1Q, T1S, T1P, T1R;
1275
0
       T1Q = TQ + T1t;
1276
0
       T1S = T1N - T1y;
1277
0
       T1P = W[38];
1278
0
       T1R = W[39];
1279
0
       cr[WS(rs, 20)] = FNMS(T1R, T1S, T1P * T1Q);
1280
0
       ci[WS(rs, 20)] = FMA(T1R, T1Q, T1P * T1S);
1281
0
        }
1282
0
         }
1283
0
         {
1284
0
        E T6H, T71, T6M, T74, T6i, T6x, T6y, T6z, T6Q, T6R, T6P, T6S;
1285
0
        {
1286
0
       E T6D, T6G, T6K, T6L;
1287
0
       T6D = T6B + T6C;
1288
0
       T6G = T6E - T6F;
1289
0
       T6H = FMA(KP951056516, T6D, KP587785252 * T6G);
1290
0
       T71 = FNMS(KP951056516, T6G, KP587785252 * T6D);
1291
0
       T6K = T6l - T6o;
1292
0
       T6L = T6v - T6s;
1293
0
       T6M = FMA(KP951056516, T6K, KP587785252 * T6L);
1294
0
       T74 = FNMS(KP951056516, T6L, KP587785252 * T6K);
1295
0
        }
1296
0
        {
1297
0
       E T6p, T6w, T6N, T6O;
1298
0
       T6i = T5v + T5w;
1299
0
       T6p = T6l + T6o;
1300
0
       T6w = T6s + T6v;
1301
0
       T6x = T6p - T6w;
1302
0
       T6y = FNMS(KP250000000, T6x, T6i);
1303
0
       T6z = KP559016994 * (T6p + T6w);
1304
0
       T6Q = T5R - T5Q;
1305
0
       T6N = T6B - T6C;
1306
0
       T6O = T6E + T6F;
1307
0
       T6R = T6N + T6O;
1308
0
       T6P = KP559016994 * (T6N - T6O);
1309
0
       T6S = FNMS(KP250000000, T6R, T6Q);
1310
0
        }
1311
0
        {
1312
0
       E T7c, T7e, T7b, T7d;
1313
0
       T7c = T6i + T6x;
1314
0
       T7e = T6Q + T6R;
1315
0
       T7b = W[6];
1316
0
       T7d = W[7];
1317
0
       cr[WS(rs, 4)] = FNMS(T7d, T7e, T7b * T7c);
1318
0
       ci[WS(rs, 4)] = FMA(T7d, T7c, T7b * T7e);
1319
0
        }
1320
0
        {
1321
0
       E T72, T78, T76, T7a, T70, T75;
1322
0
       T70 = T6y - T6z;
1323
0
       T72 = T70 - T71;
1324
0
       T78 = T70 + T71;
1325
0
       T75 = T6S - T6P;
1326
0
       T76 = T74 + T75;
1327
0
       T7a = T75 - T74;
1328
0
       {
1329
0
            E T6Z, T73, T77, T79;
1330
0
            T6Z = W[26];
1331
0
            T73 = W[27];
1332
0
            cr[WS(rs, 14)] = FNMS(T73, T76, T6Z * T72);
1333
0
            ci[WS(rs, 14)] = FMA(T73, T72, T6Z * T76);
1334
0
            T77 = W[36];
1335
0
            T79 = W[37];
1336
0
            cr[WS(rs, 19)] = FNMS(T79, T7a, T77 * T78);
1337
0
            ci[WS(rs, 19)] = FMA(T79, T78, T77 * T7a);
1338
0
       }
1339
0
        }
1340
0
        {
1341
0
       E T6I, T6W, T6U, T6Y, T6A, T6T;
1342
0
       T6A = T6y + T6z;
1343
0
       T6I = T6A - T6H;
1344
0
       T6W = T6A + T6H;
1345
0
       T6T = T6P + T6S;
1346
0
       T6U = T6M + T6T;
1347
0
       T6Y = T6T - T6M;
1348
0
       {
1349
0
            E T6h, T6J, T6V, T6X;
1350
0
            T6h = W[16];
1351
0
            T6J = W[17];
1352
0
            cr[WS(rs, 9)] = FNMS(T6J, T6U, T6h * T6I);
1353
0
            ci[WS(rs, 9)] = FMA(T6J, T6I, T6h * T6U);
1354
0
            T6V = W[46];
1355
0
            T6X = W[47];
1356
0
            cr[WS(rs, 24)] = FNMS(T6X, T6Y, T6V * T6W);
1357
0
            ci[WS(rs, 24)] = FMA(T6X, T6W, T6V * T6Y);
1358
0
       }
1359
0
        }
1360
0
         }
1361
0
         {
1362
0
        E T3n, T3N, T3s, T3Q, T3d, T3e, T36, T3f, T3C, T3D, T3v, T3E;
1363
0
        {
1364
0
       E T3j, T3m, T3q, T3r;
1365
0
       T3j = T3h - T3i;
1366
0
       T3m = T3k - T3l;
1367
0
       T3n = FMA(KP951056516, T3j, KP587785252 * T3m);
1368
0
       T3N = FNMS(KP951056516, T3m, KP587785252 * T3j);
1369
0
       T3q = T2k + T2z;
1370
0
       T3r = T2P - T34;
1371
0
       T3s = FMA(KP951056516, T3q, KP587785252 * T3r);
1372
0
       T3Q = FNMS(KP951056516, T3r, KP587785252 * T3q);
1373
0
        }
1374
0
        {
1375
0
       E T2A, T35, T3t, T3u;
1376
0
       T3d = T39 - T3c;
1377
0
       T2A = T2k - T2z;
1378
0
       T35 = T2P + T34;
1379
0
       T3e = T2A + T35;
1380
0
       T36 = KP559016994 * (T2A - T35);
1381
0
       T3f = FNMS(KP250000000, T3e, T3d);
1382
0
       T3C = T3y + T3B;
1383
0
       T3t = T3h + T3i;
1384
0
       T3u = T3k + T3l;
1385
0
       T3D = T3t + T3u;
1386
0
       T3v = KP559016994 * (T3t - T3u);
1387
0
       T3E = FNMS(KP250000000, T3D, T3C);
1388
0
        }
1389
0
        {
1390
0
       E T3Y, T40, T3X, T3Z;
1391
0
       T3Y = T3d + T3e;
1392
0
       T40 = T3C + T3D;
1393
0
       T3X = W[2];
1394
0
       T3Z = W[3];
1395
0
       cr[WS(rs, 2)] = FNMS(T3Z, T40, T3X * T3Y);
1396
0
       ci[WS(rs, 2)] = FMA(T3Z, T3Y, T3X * T40);
1397
0
        }
1398
0
        {
1399
0
       E T3O, T3U, T3S, T3W, T3M, T3R;
1400
0
       T3M = T3f - T36;
1401
0
       T3O = T3M - T3N;
1402
0
       T3U = T3M + T3N;
1403
0
       T3R = T3E - T3v;
1404
0
       T3S = T3Q + T3R;
1405
0
       T3W = T3R - T3Q;
1406
0
       {
1407
0
            E T3L, T3P, T3T, T3V;
1408
0
            T3L = W[22];
1409
0
            T3P = W[23];
1410
0
            cr[WS(rs, 12)] = FNMS(T3P, T3S, T3L * T3O);
1411
0
            ci[WS(rs, 12)] = FMA(T3P, T3O, T3L * T3S);
1412
0
            T3T = W[32];
1413
0
            T3V = W[33];
1414
0
            cr[WS(rs, 17)] = FNMS(T3V, T3W, T3T * T3U);
1415
0
            ci[WS(rs, 17)] = FMA(T3V, T3U, T3T * T3W);
1416
0
       }
1417
0
        }
1418
0
        {
1419
0
       E T3o, T3I, T3G, T3K, T3g, T3F;
1420
0
       T3g = T36 + T3f;
1421
0
       T3o = T3g - T3n;
1422
0
       T3I = T3g + T3n;
1423
0
       T3F = T3v + T3E;
1424
0
       T3G = T3s + T3F;
1425
0
       T3K = T3F - T3s;
1426
0
       {
1427
0
            E T25, T3p, T3H, T3J;
1428
0
            T25 = W[12];
1429
0
            T3p = W[13];
1430
0
            cr[WS(rs, 7)] = FNMS(T3p, T3G, T25 * T3o);
1431
0
            ci[WS(rs, 7)] = FMA(T3p, T3o, T25 * T3G);
1432
0
            T3H = W[42];
1433
0
            T3J = W[43];
1434
0
            cr[WS(rs, 22)] = FNMS(T3J, T3K, T3H * T3I);
1435
0
            ci[WS(rs, 22)] = FMA(T3J, T3I, T3H * T3K);
1436
0
       }
1437
0
        }
1438
0
         }
1439
0
         {
1440
0
        E T4r, T4L, T4w, T4O, T4h, T4i, T4g, T4j, T4A, T4B, T4z, T4C;
1441
0
        {
1442
0
       E T4n, T4q, T4u, T4v;
1443
0
       T4n = T4l - T4m;
1444
0
       T4q = T4o - T4p;
1445
0
       T4r = FMA(KP951056516, T4n, KP587785252 * T4q);
1446
0
       T4L = FNMS(KP951056516, T4q, KP587785252 * T4n);
1447
0
       T4u = T44 + T47;
1448
0
       T4v = T4b + T4e;
1449
0
       T4w = FMA(KP951056516, T4u, KP587785252 * T4v);
1450
0
       T4O = FNMS(KP951056516, T4v, KP587785252 * T4u);
1451
0
        }
1452
0
        {
1453
0
       E T48, T4f, T4x, T4y;
1454
0
       T4h = T39 + T3c;
1455
0
       T48 = T44 - T47;
1456
0
       T4f = T4b - T4e;
1457
0
       T4i = T48 + T4f;
1458
0
       T4g = KP559016994 * (T48 - T4f);
1459
0
       T4j = FNMS(KP250000000, T4i, T4h);
1460
0
       T4A = T3B - T3y;
1461
0
       T4x = T4l + T4m;
1462
0
       T4y = T4o + T4p;
1463
0
       T4B = T4x + T4y;
1464
0
       T4z = KP559016994 * (T4x - T4y);
1465
0
       T4C = FNMS(KP250000000, T4B, T4A);
1466
0
        }
1467
0
        {
1468
0
       E T4W, T4Y, T4V, T4X;
1469
0
       T4W = T4h + T4i;
1470
0
       T4Y = T4A + T4B;
1471
0
       T4V = W[4];
1472
0
       T4X = W[5];
1473
0
       cr[WS(rs, 3)] = FNMS(T4X, T4Y, T4V * T4W);
1474
0
       ci[WS(rs, 3)] = FMA(T4X, T4W, T4V * T4Y);
1475
0
        }
1476
0
        {
1477
0
       E T4M, T4S, T4Q, T4U, T4K, T4P;
1478
0
       T4K = T4j - T4g;
1479
0
       T4M = T4K - T4L;
1480
0
       T4S = T4K + T4L;
1481
0
       T4P = T4C - T4z;
1482
0
       T4Q = T4O + T4P;
1483
0
       T4U = T4P - T4O;
1484
0
       {
1485
0
            E T4J, T4N, T4R, T4T;
1486
0
            T4J = W[24];
1487
0
            T4N = W[25];
1488
0
            cr[WS(rs, 13)] = FNMS(T4N, T4Q, T4J * T4M);
1489
0
            ci[WS(rs, 13)] = FMA(T4N, T4M, T4J * T4Q);
1490
0
            T4R = W[34];
1491
0
            T4T = W[35];
1492
0
            cr[WS(rs, 18)] = FNMS(T4T, T4U, T4R * T4S);
1493
0
            ci[WS(rs, 18)] = FMA(T4T, T4S, T4R * T4U);
1494
0
       }
1495
0
        }
1496
0
        {
1497
0
       E T4s, T4G, T4E, T4I, T4k, T4D;
1498
0
       T4k = T4g + T4j;
1499
0
       T4s = T4k - T4r;
1500
0
       T4G = T4k + T4r;
1501
0
       T4D = T4z + T4C;
1502
0
       T4E = T4w + T4D;
1503
0
       T4I = T4D - T4w;
1504
0
       {
1505
0
            E T41, T4t, T4F, T4H;
1506
0
            T41 = W[14];
1507
0
            T4t = W[15];
1508
0
            cr[WS(rs, 8)] = FNMS(T4t, T4E, T41 * T4s);
1509
0
            ci[WS(rs, 8)] = FMA(T4t, T4s, T41 * T4E);
1510
0
            T4F = W[44];
1511
0
            T4H = W[45];
1512
0
            cr[WS(rs, 23)] = FNMS(T4H, T4I, T4F * T4G);
1513
0
            ci[WS(rs, 23)] = FMA(T4H, T4G, T4F * T4I);
1514
0
       }
1515
0
        }
1516
0
         }
1517
0
         {
1518
0
        E T5H, T63, T5M, T66, T5x, T5y, T5u, T5z, T5S, T5T, T5P, T5U;
1519
0
        {
1520
0
       E T5D, T5G, T5K, T5L;
1521
0
       T5D = T5B - T5C;
1522
0
       T5G = T5E - T5F;
1523
0
       T5H = FMA(KP951056516, T5D, KP587785252 * T5G);
1524
0
       T63 = FNMS(KP951056516, T5G, KP587785252 * T5D);
1525
0
       T5K = T56 - T5d;
1526
0
       T5L = T5l - T5s;
1527
0
       T5M = FMA(KP951056516, T5K, KP587785252 * T5L);
1528
0
       T66 = FNMS(KP951056516, T5L, KP587785252 * T5K);
1529
0
        }
1530
0
        {
1531
0
       E T5e, T5t, T5N, T5O;
1532
0
       T5x = T5v - T5w;
1533
0
       T5e = T56 + T5d;
1534
0
       T5t = T5l + T5s;
1535
0
       T5y = T5e + T5t;
1536
0
       T5u = KP559016994 * (T5e - T5t);
1537
0
       T5z = FNMS(KP250000000, T5y, T5x);
1538
0
       T5S = T5Q + T5R;
1539
0
       T5N = T5B + T5C;
1540
0
       T5O = T5E + T5F;
1541
0
       T5T = T5N + T5O;
1542
0
       T5P = KP559016994 * (T5N - T5O);
1543
0
       T5U = FNMS(KP250000000, T5T, T5S);
1544
0
        }
1545
0
        {
1546
0
       E T6e, T6g, T6d, T6f;
1547
0
       T6e = T5x + T5y;
1548
0
       T6g = T5S + T5T;
1549
0
       T6d = W[0];
1550
0
       T6f = W[1];
1551
0
       cr[WS(rs, 1)] = FNMS(T6f, T6g, T6d * T6e);
1552
0
       ci[WS(rs, 1)] = FMA(T6f, T6e, T6d * T6g);
1553
0
        }
1554
0
        {
1555
0
       E T64, T6a, T68, T6c, T62, T67;
1556
0
       T62 = T5z - T5u;
1557
0
       T64 = T62 - T63;
1558
0
       T6a = T62 + T63;
1559
0
       T67 = T5U - T5P;
1560
0
       T68 = T66 + T67;
1561
0
       T6c = T67 - T66;
1562
0
       {
1563
0
            E T61, T65, T69, T6b;
1564
0
            T61 = W[20];
1565
0
            T65 = W[21];
1566
0
            cr[WS(rs, 11)] = FNMS(T65, T68, T61 * T64);
1567
0
            ci[WS(rs, 11)] = FMA(T65, T64, T61 * T68);
1568
0
            T69 = W[30];
1569
0
            T6b = W[31];
1570
0
            cr[WS(rs, 16)] = FNMS(T6b, T6c, T69 * T6a);
1571
0
            ci[WS(rs, 16)] = FMA(T6b, T6a, T69 * T6c);
1572
0
       }
1573
0
        }
1574
0
        {
1575
0
       E T5I, T5Y, T5W, T60, T5A, T5V;
1576
0
       T5A = T5u + T5z;
1577
0
       T5I = T5A - T5H;
1578
0
       T5Y = T5A + T5H;
1579
0
       T5V = T5P + T5U;
1580
0
       T5W = T5M + T5V;
1581
0
       T60 = T5V - T5M;
1582
0
       {
1583
0
            E T4Z, T5J, T5X, T5Z;
1584
0
            T4Z = W[10];
1585
0
            T5J = W[11];
1586
0
            cr[WS(rs, 6)] = FNMS(T5J, T5W, T4Z * T5I);
1587
0
            ci[WS(rs, 6)] = FMA(T5J, T5I, T4Z * T5W);
1588
0
            T5X = W[40];
1589
0
            T5Z = W[41];
1590
0
            cr[WS(rs, 21)] = FNMS(T5Z, T60, T5X * T5Y);
1591
0
            ci[WS(rs, 21)] = FMA(T5Z, T5Y, T5X * T60);
1592
0
       }
1593
0
        }
1594
0
         }
1595
0
    }
1596
0
     }
1597
0
}
1598
1599
static const tw_instr twinstr[] = {
1600
     { TW_FULL, 1, 25 },
1601
     { TW_NEXT, 1, 0 }
1602
};
1603
1604
static const hc2hc_desc desc = { 25, "hb_25", twinstr, &GENUS, { 260, 140, 140, 0 } };
1605
1606
1
void X(codelet_hb_25) (planner *p) {
1607
1
     X(khc2hc_register) (p, hb_25, &desc);
1608
1
}
1609
#endif