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comparison src/fftw-3.3.3/dft/scalar/codelets/n1_25.c @ 10:37bf6b4a2645
Add FFTW3
author | Chris Cannam |
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date | Wed, 20 Mar 2013 15:35:50 +0000 |
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9:c0fb53affa76 | 10:37bf6b4a2645 |
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1 /* | |
2 * Copyright (c) 2003, 2007-11 Matteo Frigo | |
3 * Copyright (c) 2003, 2007-11 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 Sun Nov 25 07:35:46 EST 2012 */ | |
23 | |
24 #include "codelet-dft.h" | |
25 | |
26 #ifdef HAVE_FMA | |
27 | |
28 /* Generated by: ../../../genfft/gen_notw.native -fma -reorder-insns -schedule-for-pipeline -compact -variables 4 -pipeline-latency 4 -n 25 -name n1_25 -include n.h */ | |
29 | |
30 /* | |
31 * This function contains 352 FP additions, 268 FP multiplications, | |
32 * (or, 84 additions, 0 multiplications, 268 fused multiply/add), | |
33 * 164 stack variables, 47 constants, and 100 memory accesses | |
34 */ | |
35 #include "n.h" | |
36 | |
37 static void n1_25(const R *ri, const R *ii, R *ro, R *io, stride is, stride os, INT v, INT ivs, INT ovs) | |
38 { | |
39 DK(KP803003575, +0.803003575438660414833440593570376004635464850); | |
40 DK(KP554608978, +0.554608978404018097464974850792216217022558774); | |
41 DK(KP248028675, +0.248028675328619457762448260696444630363259177); | |
42 DK(KP726211448, +0.726211448929902658173535992263577167607493062); | |
43 DK(KP525970792, +0.525970792408939708442463226536226366643874659); | |
44 DK(KP992114701, +0.992114701314477831049793042785778521453036709); | |
45 DK(KP851038619, +0.851038619207379630836264138867114231259902550); | |
46 DK(KP912575812, +0.912575812670962425556968549836277086778922727); | |
47 DK(KP912018591, +0.912018591466481957908415381764119056233607330); | |
48 DK(KP943557151, +0.943557151597354104399655195398983005179443399); | |
49 DK(KP614372930, +0.614372930789563808870829930444362096004872855); | |
50 DK(KP621716863, +0.621716863012209892444754556304102309693593202); | |
51 DK(KP994076283, +0.994076283785401014123185814696322018529298887); | |
52 DK(KP734762448, +0.734762448793050413546343770063151342619912334); | |
53 DK(KP772036680, +0.772036680810363904029489473607579825330539880); | |
54 DK(KP126329378, +0.126329378446108174786050455341811215027378105); | |
55 DK(KP827271945, +0.827271945972475634034355757144307982555673741); | |
56 DK(KP949179823, +0.949179823508441261575555465843363271711583843); | |
57 DK(KP860541664, +0.860541664367944677098261680920518816412804187); | |
58 DK(KP557913902, +0.557913902031834264187699648465567037992437152); | |
59 DK(KP249506682, +0.249506682107067890488084201715862638334226305); | |
60 DK(KP681693190, +0.681693190061530575150324149145440022633095390); | |
61 DK(KP560319534, +0.560319534973832390111614715371676131169633784); | |
62 DK(KP998026728, +0.998026728428271561952336806863450553336905220); | |
63 DK(KP906616052, +0.906616052148196230441134447086066874408359177); | |
64 DK(KP968479752, +0.968479752739016373193524836781420152702090879); | |
65 DK(KP845997307, +0.845997307939530944175097360758058292389769300); | |
66 DK(KP470564281, +0.470564281212251493087595091036643380879947982); | |
67 DK(KP062914667, +0.062914667253649757225485955897349402364686947); | |
68 DK(KP921177326, +0.921177326965143320250447435415066029359282231); | |
69 DK(KP833417178, +0.833417178328688677408962550243238843138996060); | |
70 DK(KP541454447, +0.541454447536312777046285590082819509052033189); | |
71 DK(KP242145790, +0.242145790282157779872542093866183953459003101); | |
72 DK(KP683113946, +0.683113946453479238701949862233725244439656928); | |
73 DK(KP559154169, +0.559154169276087864842202529084232643714075927); | |
74 DK(KP968583161, +0.968583161128631119490168375464735813836012403); | |
75 DK(KP904730450, +0.904730450839922351881287709692877908104763647); | |
76 DK(KP831864738, +0.831864738706457140726048799369896829771167132); | |
77 DK(KP871714437, +0.871714437527667770979999223229522602943903653); | |
78 DK(KP939062505, +0.939062505817492352556001843133229685779824606); | |
79 DK(KP549754652, +0.549754652192770074288023275540779861653779767); | |
80 DK(KP634619297, +0.634619297544148100711287640319130485732531031); | |
81 DK(KP256756360, +0.256756360367726783319498520922669048172391148); | |
82 DK(KP951056516, +0.951056516295153572116439333379382143405698634); | |
83 DK(KP559016994, +0.559016994374947424102293417182819058860154590); | |
84 DK(KP250000000, +0.250000000000000000000000000000000000000000000); | |
85 DK(KP618033988, +0.618033988749894848204586834365638117720309180); | |
86 { | |
87 INT i; | |
88 for (i = v; i > 0; i = i - 1, ri = ri + ivs, ii = ii + ivs, ro = ro + ovs, io = io + ovs, MAKE_VOLATILE_STRIDE(100, is), MAKE_VOLATILE_STRIDE(100, os)) { | |
89 E T3Y, T3U, T3W, T42, T44, T3X, T3R, T3V, T3Z, T43; | |
90 { | |
91 E T4Q, T1U, T9, T3b, T45, T3e, T46, T1D, T4P, T1R, Ts, T1K, T18, T1E, T4z; | |
92 E T5f, T3z, T22, T4s, T5b, T3C, T2o, T3D, T2h, T4p, T5c, T4w, T5e, T3A, T29; | |
93 E T2z, T2y, TL, T1L, T1r, T1F, T4a, T57, T3v, T2x, T4k, T55, T3s, T2T, T2D; | |
94 E T4c, T3t, T2M, T4h, T54, T1v, T1C, T1Q; | |
95 { | |
96 E T1, T2, T3, T5, T6; | |
97 T1 = ri[0]; | |
98 T2 = ri[WS(is, 5)]; | |
99 T3 = ri[WS(is, 20)]; | |
100 T5 = ri[WS(is, 10)]; | |
101 T6 = ri[WS(is, 15)]; | |
102 { | |
103 E T3a, T3c, T1y, T1z, T1A, T39, T4, T1S, T1B, T3d; | |
104 T1v = ii[0]; | |
105 T4 = T2 + T3; | |
106 T1S = T2 - T3; | |
107 { | |
108 E T7, T1T, T8, T1w, T1x; | |
109 T7 = T5 + T6; | |
110 T1T = T5 - T6; | |
111 T1w = ii[WS(is, 5)]; | |
112 T1x = ii[WS(is, 20)]; | |
113 T4Q = FNMS(KP618033988, T1S, T1T); | |
114 T1U = FMA(KP618033988, T1T, T1S); | |
115 T8 = T4 + T7; | |
116 T3a = T4 - T7; | |
117 T3c = T1w - T1x; | |
118 T1y = T1w + T1x; | |
119 T1z = ii[WS(is, 10)]; | |
120 T1A = ii[WS(is, 15)]; | |
121 T39 = FNMS(KP250000000, T8, T1); | |
122 T9 = T1 + T8; | |
123 } | |
124 T1B = T1z + T1A; | |
125 T3d = T1z - T1A; | |
126 T3b = FMA(KP559016994, T3a, T39); | |
127 T45 = FNMS(KP559016994, T3a, T39); | |
128 T3e = FMA(KP618033988, T3d, T3c); | |
129 T46 = FNMS(KP618033988, T3c, T3d); | |
130 T1C = T1y + T1B; | |
131 T1Q = T1y - T1B; | |
132 } | |
133 } | |
134 { | |
135 E T24, T23, T28, T4v; | |
136 { | |
137 E Ta, TQ, Tj, TZ, T1Z, T20, Th, T26, T27, T1X, TX, T2l, T2m, Tq, T2c; | |
138 E T2e, T12, T15, T2f, T1P, TT, TW; | |
139 Ta = ri[WS(is, 1)]; | |
140 T1P = FNMS(KP250000000, T1C, T1v); | |
141 T1D = T1v + T1C; | |
142 TQ = ii[WS(is, 1)]; | |
143 Tj = ri[WS(is, 4)]; | |
144 T4P = FNMS(KP559016994, T1Q, T1P); | |
145 T1R = FMA(KP559016994, T1Q, T1P); | |
146 TZ = ii[WS(is, 4)]; | |
147 { | |
148 E Tb, Tc, Te, Tf; | |
149 Tb = ri[WS(is, 6)]; | |
150 Tc = ri[WS(is, 21)]; | |
151 Te = ri[WS(is, 11)]; | |
152 Tf = ri[WS(is, 16)]; | |
153 { | |
154 E TR, Td, Tg, TS, TU, TV; | |
155 TR = ii[WS(is, 6)]; | |
156 T1Z = Tc - Tb; | |
157 Td = Tb + Tc; | |
158 T20 = Tf - Te; | |
159 Tg = Te + Tf; | |
160 TS = ii[WS(is, 21)]; | |
161 TU = ii[WS(is, 11)]; | |
162 TV = ii[WS(is, 16)]; | |
163 Th = Td + Tg; | |
164 T24 = Td - Tg; | |
165 T26 = TR - TS; | |
166 TT = TR + TS; | |
167 TW = TU + TV; | |
168 T27 = TV - TU; | |
169 } | |
170 } | |
171 { | |
172 E Tk, Tl, Tn, To; | |
173 Tk = ri[WS(is, 9)]; | |
174 T1X = TT - TW; | |
175 TX = TT + TW; | |
176 Tl = ri[WS(is, 24)]; | |
177 Tn = ri[WS(is, 14)]; | |
178 To = ri[WS(is, 19)]; | |
179 { | |
180 E T10, Tm, Tp, T11, T13, T14; | |
181 T10 = ii[WS(is, 9)]; | |
182 T2l = Tl - Tk; | |
183 Tm = Tk + Tl; | |
184 T2m = To - Tn; | |
185 Tp = Tn + To; | |
186 T11 = ii[WS(is, 24)]; | |
187 T13 = ii[WS(is, 14)]; | |
188 T14 = ii[WS(is, 19)]; | |
189 Tq = Tm + Tp; | |
190 T2c = Tm - Tp; | |
191 T2e = T11 - T10; | |
192 T12 = T10 + T11; | |
193 T15 = T13 + T14; | |
194 T2f = T14 - T13; | |
195 } | |
196 } | |
197 { | |
198 E T2j, T2b, T1W, T21, T4y, T2i; | |
199 { | |
200 E Ti, T16, Tr, TY, T17; | |
201 T23 = FNMS(KP250000000, Th, Ta); | |
202 Ti = Ta + Th; | |
203 T2j = T15 - T12; | |
204 T16 = T12 + T15; | |
205 Tr = Tj + Tq; | |
206 T2b = FMS(KP250000000, Tq, Tj); | |
207 T1W = FNMS(KP250000000, TX, TQ); | |
208 TY = TQ + TX; | |
209 T21 = FMA(KP618033988, T20, T1Z); | |
210 T4y = FNMS(KP618033988, T1Z, T20); | |
211 T2i = FNMS(KP250000000, T16, TZ); | |
212 T17 = TZ + T16; | |
213 Ts = Ti + Tr; | |
214 T1K = Ti - Tr; | |
215 T18 = TY - T17; | |
216 T1E = TY + T17; | |
217 } | |
218 { | |
219 E T2n, T4r, T4x, T1Y; | |
220 T2n = FMA(KP618033988, T2m, T2l); | |
221 T4r = FNMS(KP618033988, T2l, T2m); | |
222 T4x = FNMS(KP559016994, T1X, T1W); | |
223 T1Y = FMA(KP559016994, T1X, T1W); | |
224 { | |
225 E T4o, T2g, T2d, T4n, T4q, T2k; | |
226 T4o = FNMS(KP618033988, T2e, T2f); | |
227 T2g = FMA(KP618033988, T2f, T2e); | |
228 T4z = FMA(KP951056516, T4y, T4x); | |
229 T5f = FNMS(KP951056516, T4y, T4x); | |
230 T3z = FNMS(KP951056516, T21, T1Y); | |
231 T22 = FMA(KP951056516, T21, T1Y); | |
232 T4q = FMA(KP559016994, T2j, T2i); | |
233 T2k = FNMS(KP559016994, T2j, T2i); | |
234 T4s = FMA(KP951056516, T4r, T4q); | |
235 T5b = FNMS(KP951056516, T4r, T4q); | |
236 T3C = FNMS(KP951056516, T2n, T2k); | |
237 T2o = FMA(KP951056516, T2n, T2k); | |
238 T2d = FNMS(KP559016994, T2c, T2b); | |
239 T4n = FMA(KP559016994, T2c, T2b); | |
240 T28 = FNMS(KP618033988, T27, T26); | |
241 T4v = FMA(KP618033988, T26, T27); | |
242 T3D = FNMS(KP951056516, T2g, T2d); | |
243 T2h = FMA(KP951056516, T2g, T2d); | |
244 T4p = FMA(KP951056516, T4o, T4n); | |
245 T5c = FNMS(KP951056516, T4o, T4n); | |
246 } | |
247 } | |
248 } | |
249 } | |
250 { | |
251 E Tt, T19, TC, T1i, T2u, T2v, TA, T2B, T2C, T2s, T1g, T2J, T2K, TJ, T2O; | |
252 E T2Q, T1l, T1o, T2R; | |
253 { | |
254 E T4u, T25, T1c, T1f; | |
255 Tt = ri[WS(is, 2)]; | |
256 T19 = ii[WS(is, 2)]; | |
257 TC = ri[WS(is, 3)]; | |
258 T4u = FNMS(KP559016994, T24, T23); | |
259 T25 = FMA(KP559016994, T24, T23); | |
260 T1i = ii[WS(is, 3)]; | |
261 { | |
262 E Tu, Tv, Tx, Ty; | |
263 Tu = ri[WS(is, 7)]; | |
264 T4w = FNMS(KP951056516, T4v, T4u); | |
265 T5e = FMA(KP951056516, T4v, T4u); | |
266 T3A = FNMS(KP951056516, T28, T25); | |
267 T29 = FMA(KP951056516, T28, T25); | |
268 Tv = ri[WS(is, 22)]; | |
269 Tx = ri[WS(is, 12)]; | |
270 Ty = ri[WS(is, 17)]; | |
271 { | |
272 E T1a, Tw, Tz, T1b, T1d, T1e; | |
273 T1a = ii[WS(is, 7)]; | |
274 T2u = Tv - Tu; | |
275 Tw = Tu + Tv; | |
276 T2v = Ty - Tx; | |
277 Tz = Tx + Ty; | |
278 T1b = ii[WS(is, 22)]; | |
279 T1d = ii[WS(is, 12)]; | |
280 T1e = ii[WS(is, 17)]; | |
281 TA = Tw + Tz; | |
282 T2z = Tz - Tw; | |
283 T2B = T1b - T1a; | |
284 T1c = T1a + T1b; | |
285 T1f = T1d + T1e; | |
286 T2C = T1d - T1e; | |
287 } | |
288 } | |
289 { | |
290 E TD, TE, TG, TH; | |
291 TD = ri[WS(is, 8)]; | |
292 T2s = T1f - T1c; | |
293 T1g = T1c + T1f; | |
294 TE = ri[WS(is, 23)]; | |
295 TG = ri[WS(is, 13)]; | |
296 TH = ri[WS(is, 18)]; | |
297 { | |
298 E T1j, TF, TI, T1k, T1m, T1n; | |
299 T1j = ii[WS(is, 8)]; | |
300 T2J = TD - TE; | |
301 TF = TD + TE; | |
302 T2K = TG - TH; | |
303 TI = TG + TH; | |
304 T1k = ii[WS(is, 23)]; | |
305 T1m = ii[WS(is, 13)]; | |
306 T1n = ii[WS(is, 18)]; | |
307 TJ = TF + TI; | |
308 T2O = TI - TF; | |
309 T2Q = T1k - T1j; | |
310 T1l = T1j + T1k; | |
311 T1o = T1m + T1n; | |
312 T2R = T1n - T1m; | |
313 } | |
314 } | |
315 } | |
316 { | |
317 E T2H, T2N, T2r, T2w, T49, T2G; | |
318 { | |
319 E TB, T1p, TK, T1h, T1q; | |
320 T2y = FNMS(KP250000000, TA, Tt); | |
321 TB = Tt + TA; | |
322 T2H = T1o - T1l; | |
323 T1p = T1l + T1o; | |
324 TK = TC + TJ; | |
325 T2N = FNMS(KP250000000, TJ, TC); | |
326 T2r = FNMS(KP250000000, T1g, T19); | |
327 T1h = T19 + T1g; | |
328 T2w = FMA(KP618033988, T2v, T2u); | |
329 T49 = FNMS(KP618033988, T2u, T2v); | |
330 T2G = FNMS(KP250000000, T1p, T1i); | |
331 T1q = T1i + T1p; | |
332 TL = TB + TK; | |
333 T1L = TB - TK; | |
334 T1r = T1h - T1q; | |
335 T1F = T1h + T1q; | |
336 } | |
337 { | |
338 E T2S, T4j, T48, T2t; | |
339 T2S = FMA(KP618033988, T2R, T2Q); | |
340 T4j = FNMS(KP618033988, T2Q, T2R); | |
341 T48 = FMA(KP559016994, T2s, T2r); | |
342 T2t = FNMS(KP559016994, T2s, T2r); | |
343 { | |
344 E T4g, T2L, T2I, T4f, T4i, T2P; | |
345 T4g = FNMS(KP618033988, T2J, T2K); | |
346 T2L = FMA(KP618033988, T2K, T2J); | |
347 T4a = FMA(KP951056516, T49, T48); | |
348 T57 = FNMS(KP951056516, T49, T48); | |
349 T3v = FNMS(KP951056516, T2w, T2t); | |
350 T2x = FMA(KP951056516, T2w, T2t); | |
351 T4i = FMA(KP559016994, T2O, T2N); | |
352 T2P = FNMS(KP559016994, T2O, T2N); | |
353 T4k = FNMS(KP951056516, T4j, T4i); | |
354 T55 = FMA(KP951056516, T4j, T4i); | |
355 T3s = FMA(KP951056516, T2S, T2P); | |
356 T2T = FNMS(KP951056516, T2S, T2P); | |
357 T2I = FNMS(KP559016994, T2H, T2G); | |
358 T4f = FMA(KP559016994, T2H, T2G); | |
359 T2D = FNMS(KP618033988, T2C, T2B); | |
360 T4c = FMA(KP618033988, T2B, T2C); | |
361 T3t = FMA(KP951056516, T2L, T2I); | |
362 T2M = FNMS(KP951056516, T2L, T2I); | |
363 T4h = FNMS(KP951056516, T4g, T4f); | |
364 T54 = FMA(KP951056516, T4g, T4f); | |
365 } | |
366 } | |
367 } | |
368 } | |
369 } | |
370 { | |
371 E T4d, T58, T3w, T3H, T3r, T3k, T36, T38, T3o, T3q, T3j, T2Z, T37; | |
372 { | |
373 E T2E, T1s, T1u, TP, T1t; | |
374 { | |
375 E TM, TO, TN, T4b, T2A; | |
376 TM = Ts + TL; | |
377 TO = Ts - TL; | |
378 T4b = FMA(KP559016994, T2z, T2y); | |
379 T2A = FNMS(KP559016994, T2z, T2y); | |
380 TN = FNMS(KP250000000, TM, T9); | |
381 T4d = FMA(KP951056516, T4c, T4b); | |
382 T58 = FNMS(KP951056516, T4c, T4b); | |
383 T3w = FMA(KP951056516, T2D, T2A); | |
384 T2E = FNMS(KP951056516, T2D, T2A); | |
385 T1s = FMA(KP618033988, T1r, T18); | |
386 T1u = FNMS(KP618033988, T18, T1r); | |
387 ro[0] = T9 + TM; | |
388 TP = FMA(KP559016994, TO, TN); | |
389 T1t = FNMS(KP559016994, TO, TN); | |
390 } | |
391 { | |
392 E T1J, T1N, T1M, T1O, T1G, T1I, T1H; | |
393 T1G = T1E + T1F; | |
394 T1I = T1E - T1F; | |
395 ro[WS(os, 15)] = FMA(KP951056516, T1u, T1t); | |
396 ro[WS(os, 10)] = FNMS(KP951056516, T1u, T1t); | |
397 ro[WS(os, 5)] = FMA(KP951056516, T1s, TP); | |
398 ro[WS(os, 20)] = FNMS(KP951056516, T1s, TP); | |
399 T1H = FNMS(KP250000000, T1G, T1D); | |
400 io[0] = T1D + T1G; | |
401 T1J = FMA(KP559016994, T1I, T1H); | |
402 T1N = FNMS(KP559016994, T1I, T1H); | |
403 T1M = FMA(KP618033988, T1L, T1K); | |
404 T1O = FNMS(KP618033988, T1K, T1L); | |
405 { | |
406 E T1V, T3f, T3m, T3n, T2W, T2Y, T32, T3g, T3h, T35, T3i, T2X; | |
407 T3H = FMA(KP951056516, T1U, T1R); | |
408 T1V = FNMS(KP951056516, T1U, T1R); | |
409 T3f = FMA(KP951056516, T3e, T3b); | |
410 T3r = FNMS(KP951056516, T3e, T3b); | |
411 io[WS(os, 15)] = FNMS(KP951056516, T1O, T1N); | |
412 io[WS(os, 10)] = FMA(KP951056516, T1O, T1N); | |
413 io[WS(os, 20)] = FMA(KP951056516, T1M, T1J); | |
414 io[WS(os, 5)] = FNMS(KP951056516, T1M, T1J); | |
415 { | |
416 E T30, T2a, T2p, T31, T33, T2F, T2U, T34, T2q, T2V; | |
417 T30 = FMA(KP256756360, T22, T29); | |
418 T2a = FNMS(KP256756360, T29, T22); | |
419 T2p = FMA(KP634619297, T2o, T2h); | |
420 T31 = FNMS(KP634619297, T2h, T2o); | |
421 T33 = FMA(KP549754652, T2x, T2E); | |
422 T2F = FNMS(KP549754652, T2E, T2x); | |
423 T2U = FNMS(KP939062505, T2T, T2M); | |
424 T34 = FMA(KP939062505, T2M, T2T); | |
425 T3m = FNMS(KP871714437, T2p, T2a); | |
426 T2q = FMA(KP871714437, T2p, T2a); | |
427 T3n = FNMS(KP831864738, T2U, T2F); | |
428 T2V = FMA(KP831864738, T2U, T2F); | |
429 T2W = FMA(KP904730450, T2V, T2q); | |
430 T2Y = FNMS(KP904730450, T2V, T2q); | |
431 T32 = FNMS(KP871714437, T31, T30); | |
432 T3g = FMA(KP871714437, T31, T30); | |
433 T3h = FMA(KP831864738, T34, T33); | |
434 T35 = FNMS(KP831864738, T34, T33); | |
435 } | |
436 io[WS(os, 1)] = FMA(KP968583161, T2W, T1V); | |
437 T3i = FMA(KP904730450, T3h, T3g); | |
438 T3k = FNMS(KP904730450, T3h, T3g); | |
439 T36 = FMA(KP559154169, T35, T32); | |
440 T38 = FNMS(KP683113946, T32, T35); | |
441 ro[WS(os, 1)] = FMA(KP968583161, T3i, T3f); | |
442 T2X = FNMS(KP242145790, T2W, T1V); | |
443 T3o = FMA(KP559154169, T3n, T3m); | |
444 T3q = FNMS(KP683113946, T3m, T3n); | |
445 T3j = FNMS(KP242145790, T3i, T3f); | |
446 T2Z = FMA(KP541454447, T2Y, T2X); | |
447 T37 = FNMS(KP541454447, T2Y, T2X); | |
448 } | |
449 } | |
450 } | |
451 { | |
452 E T47, T4R, T5A, T5w, T5y, T5E, T5G, T5z, T5t, T5x; | |
453 { | |
454 E T53, T5j, T5u, T5v, T5i, T5D, T5m, T5p, T5C, T3p, T3l, T5s, T5q, T5r; | |
455 T47 = FMA(KP951056516, T46, T45); | |
456 T53 = FNMS(KP951056516, T46, T45); | |
457 T3p = FNMS(KP541454447, T3k, T3j); | |
458 T3l = FMA(KP541454447, T3k, T3j); | |
459 io[WS(os, 16)] = FNMS(KP833417178, T38, T37); | |
460 io[WS(os, 11)] = FMA(KP833417178, T38, T37); | |
461 io[WS(os, 21)] = FMA(KP921177326, T36, T2Z); | |
462 io[WS(os, 6)] = FNMS(KP921177326, T36, T2Z); | |
463 ro[WS(os, 11)] = FNMS(KP833417178, T3q, T3p); | |
464 ro[WS(os, 16)] = FMA(KP833417178, T3q, T3p); | |
465 ro[WS(os, 21)] = FNMS(KP921177326, T3o, T3l); | |
466 ro[WS(os, 6)] = FMA(KP921177326, T3o, T3l); | |
467 T5j = FMA(KP951056516, T4Q, T4P); | |
468 T4R = FNMS(KP951056516, T4Q, T4P); | |
469 { | |
470 E T5k, T56, T59, T5l, T5n, T5d, T5g, T5o, T5a, T5h; | |
471 T5k = FNMS(KP062914667, T54, T55); | |
472 T56 = FMA(KP062914667, T55, T54); | |
473 T59 = FMA(KP634619297, T58, T57); | |
474 T5l = FNMS(KP634619297, T57, T58); | |
475 T5n = FNMS(KP470564281, T5b, T5c); | |
476 T5d = FMA(KP470564281, T5c, T5b); | |
477 T5g = FMA(KP549754652, T5f, T5e); | |
478 T5o = FNMS(KP549754652, T5e, T5f); | |
479 T5u = FNMS(KP845997307, T59, T56); | |
480 T5a = FMA(KP845997307, T59, T56); | |
481 T5v = FNMS(KP968479752, T5g, T5d); | |
482 T5h = FMA(KP968479752, T5g, T5d); | |
483 T5i = FMA(KP906616052, T5h, T5a); | |
484 T5A = FNMS(KP906616052, T5h, T5a); | |
485 T5D = FNMS(KP845997307, T5l, T5k); | |
486 T5m = FMA(KP845997307, T5l, T5k); | |
487 T5p = FMA(KP968479752, T5o, T5n); | |
488 T5C = FNMS(KP968479752, T5o, T5n); | |
489 } | |
490 ro[WS(os, 2)] = FMA(KP998026728, T5i, T53); | |
491 T5s = FMA(KP906616052, T5p, T5m); | |
492 T5q = FNMS(KP906616052, T5p, T5m); | |
493 T5w = FNMS(KP560319534, T5v, T5u); | |
494 T5y = FMA(KP681693190, T5u, T5v); | |
495 T5E = FNMS(KP681693190, T5D, T5C); | |
496 T5G = FMA(KP560319534, T5C, T5D); | |
497 T5r = FMA(KP249506682, T5q, T5j); | |
498 io[WS(os, 2)] = FNMS(KP998026728, T5q, T5j); | |
499 T5z = FNMS(KP249506682, T5i, T53); | |
500 T5t = FNMS(KP557913902, T5s, T5r); | |
501 T5x = FMA(KP557913902, T5s, T5r); | |
502 } | |
503 { | |
504 E T4W, T4M, T4O, T50, T52, T4V, T4F, T4N; | |
505 { | |
506 E T4Y, T4Z, T4C, T4E, T4I, T4T, T4S, T4L, T5F, T5B, T4U, T4D; | |
507 T5F = FMA(KP557913902, T5A, T5z); | |
508 T5B = FNMS(KP557913902, T5A, T5z); | |
509 io[WS(os, 7)] = FMA(KP860541664, T5y, T5x); | |
510 io[WS(os, 22)] = FNMS(KP860541664, T5y, T5x); | |
511 io[WS(os, 17)] = FMA(KP949179823, T5w, T5t); | |
512 io[WS(os, 12)] = FNMS(KP949179823, T5w, T5t); | |
513 ro[WS(os, 12)] = FNMS(KP949179823, T5G, T5F); | |
514 ro[WS(os, 17)] = FMA(KP949179823, T5G, T5F); | |
515 ro[WS(os, 7)] = FNMS(KP860541664, T5E, T5B); | |
516 ro[WS(os, 22)] = FMA(KP860541664, T5E, T5B); | |
517 { | |
518 E T4J, T4e, T4l, T4K, T4G, T4t, T4A, T4H, T4m, T4B; | |
519 T4J = FNMS(KP062914667, T4a, T4d); | |
520 T4e = FMA(KP062914667, T4d, T4a); | |
521 T4l = FNMS(KP827271945, T4k, T4h); | |
522 T4K = FMA(KP827271945, T4h, T4k); | |
523 T4G = FNMS(KP126329378, T4p, T4s); | |
524 T4t = FMA(KP126329378, T4s, T4p); | |
525 T4A = FMA(KP939062505, T4z, T4w); | |
526 T4H = FNMS(KP939062505, T4w, T4z); | |
527 T4Y = FNMS(KP772036680, T4l, T4e); | |
528 T4m = FMA(KP772036680, T4l, T4e); | |
529 T4Z = FNMS(KP734762448, T4A, T4t); | |
530 T4B = FMA(KP734762448, T4A, T4t); | |
531 T4C = FMA(KP994076283, T4B, T4m); | |
532 T4E = FNMS(KP994076283, T4B, T4m); | |
533 T4I = FMA(KP734762448, T4H, T4G); | |
534 T4T = FNMS(KP734762448, T4H, T4G); | |
535 T4S = FMA(KP772036680, T4K, T4J); | |
536 T4L = FNMS(KP772036680, T4K, T4J); | |
537 } | |
538 ro[WS(os, 3)] = FMA(KP998026728, T4C, T47); | |
539 T4U = FMA(KP994076283, T4T, T4S); | |
540 T4W = FNMS(KP994076283, T4T, T4S); | |
541 T4M = FNMS(KP621716863, T4L, T4I); | |
542 T4O = FMA(KP614372930, T4I, T4L); | |
543 io[WS(os, 3)] = FNMS(KP998026728, T4U, T4R); | |
544 T4D = FNMS(KP249506682, T4C, T47); | |
545 T50 = FMA(KP614372930, T4Z, T4Y); | |
546 T52 = FNMS(KP621716863, T4Y, T4Z); | |
547 T4V = FMA(KP249506682, T4U, T4R); | |
548 T4F = FNMS(KP557913902, T4E, T4D); | |
549 T4N = FMA(KP557913902, T4E, T4D); | |
550 } | |
551 { | |
552 E T3S, T3T, T3G, T41, T3K, T3N, T40, T51, T4X, T3Q, T3O, T3P; | |
553 T51 = FMA(KP557913902, T4W, T4V); | |
554 T4X = FNMS(KP557913902, T4W, T4V); | |
555 ro[WS(os, 18)] = FNMS(KP949179823, T4O, T4N); | |
556 ro[WS(os, 13)] = FMA(KP949179823, T4O, T4N); | |
557 ro[WS(os, 8)] = FMA(KP943557151, T4M, T4F); | |
558 ro[WS(os, 23)] = FNMS(KP943557151, T4M, T4F); | |
559 io[WS(os, 8)] = FMA(KP943557151, T52, T51); | |
560 io[WS(os, 23)] = FNMS(KP943557151, T52, T51); | |
561 io[WS(os, 18)] = FNMS(KP949179823, T50, T4X); | |
562 io[WS(os, 13)] = FMA(KP949179823, T50, T4X); | |
563 { | |
564 E T3I, T3u, T3x, T3J, T3L, T3B, T3E, T3M, T3y, T3F; | |
565 T3I = FMA(KP126329378, T3s, T3t); | |
566 T3u = FNMS(KP126329378, T3t, T3s); | |
567 T3x = FNMS(KP470564281, T3w, T3v); | |
568 T3J = FMA(KP470564281, T3v, T3w); | |
569 T3L = FNMS(KP634619297, T3z, T3A); | |
570 T3B = FMA(KP634619297, T3A, T3z); | |
571 T3E = FNMS(KP827271945, T3D, T3C); | |
572 T3M = FMA(KP827271945, T3C, T3D); | |
573 T3S = FMA(KP912018591, T3x, T3u); | |
574 T3y = FNMS(KP912018591, T3x, T3u); | |
575 T3T = FMA(KP912575812, T3E, T3B); | |
576 T3F = FNMS(KP912575812, T3E, T3B); | |
577 T3G = FNMS(KP851038619, T3F, T3y); | |
578 T3Y = FMA(KP851038619, T3F, T3y); | |
579 T41 = FNMS(KP912018591, T3J, T3I); | |
580 T3K = FMA(KP912018591, T3J, T3I); | |
581 T3N = FMA(KP912575812, T3M, T3L); | |
582 T40 = FNMS(KP912575812, T3M, T3L); | |
583 } | |
584 ro[WS(os, 4)] = FNMS(KP992114701, T3G, T3r); | |
585 T3Q = FNMS(KP851038619, T3N, T3K); | |
586 T3O = FMA(KP851038619, T3N, T3K); | |
587 T3U = FNMS(KP525970792, T3T, T3S); | |
588 T3W = FMA(KP726211448, T3S, T3T); | |
589 T42 = FNMS(KP726211448, T41, T40); | |
590 T44 = FMA(KP525970792, T40, T41); | |
591 T3P = FMA(KP248028675, T3O, T3H); | |
592 io[WS(os, 4)] = FNMS(KP992114701, T3O, T3H); | |
593 T3X = FMA(KP248028675, T3G, T3r); | |
594 T3R = FNMS(KP554608978, T3Q, T3P); | |
595 T3V = FMA(KP554608978, T3Q, T3P); | |
596 } | |
597 } | |
598 } | |
599 } | |
600 } | |
601 T3Z = FMA(KP554608978, T3Y, T3X); | |
602 T43 = FNMS(KP554608978, T3Y, T3X); | |
603 io[WS(os, 9)] = FNMS(KP803003575, T3W, T3V); | |
604 io[WS(os, 24)] = FMA(KP803003575, T3W, T3V); | |
605 io[WS(os, 19)] = FNMS(KP943557151, T3U, T3R); | |
606 io[WS(os, 14)] = FMA(KP943557151, T3U, T3R); | |
607 ro[WS(os, 14)] = FNMS(KP943557151, T44, T43); | |
608 ro[WS(os, 19)] = FMA(KP943557151, T44, T43); | |
609 ro[WS(os, 24)] = FMA(KP803003575, T42, T3Z); | |
610 ro[WS(os, 9)] = FNMS(KP803003575, T42, T3Z); | |
611 } | |
612 } | |
613 } | |
614 | |
615 static const kdft_desc desc = { 25, "n1_25", {84, 0, 268, 0}, &GENUS, 0, 0, 0, 0 }; | |
616 | |
617 void X(codelet_n1_25) (planner *p) { | |
618 X(kdft_register) (p, n1_25, &desc); | |
619 } | |
620 | |
621 #else /* HAVE_FMA */ | |
622 | |
623 /* Generated by: ../../../genfft/gen_notw.native -compact -variables 4 -pipeline-latency 4 -n 25 -name n1_25 -include n.h */ | |
624 | |
625 /* | |
626 * This function contains 352 FP additions, 184 FP multiplications, | |
627 * (or, 260 additions, 92 multiplications, 92 fused multiply/add), | |
628 * 101 stack variables, 20 constants, and 100 memory accesses | |
629 */ | |
630 #include "n.h" | |
631 | |
632 static void n1_25(const R *ri, const R *ii, R *ro, R *io, stride is, stride os, INT v, INT ivs, INT ovs) | |
633 { | |
634 DK(KP425779291, +0.425779291565072648862502445744251703979973042); | |
635 DK(KP904827052, +0.904827052466019527713668647932697593970413911); | |
636 DK(KP637423989, +0.637423989748689710176712811676016195434917298); | |
637 DK(KP770513242, +0.770513242775789230803009636396177847271667672); | |
638 DK(KP998026728, +0.998026728428271561952336806863450553336905220); | |
639 DK(KP062790519, +0.062790519529313376076178224565631133122484832); | |
640 DK(KP992114701, +0.992114701314477831049793042785778521453036709); | |
641 DK(KP125333233, +0.125333233564304245373118759816508793942918247); | |
642 DK(KP684547105, +0.684547105928688673732283357621209269889519233); | |
643 DK(KP728968627, +0.728968627421411523146730319055259111372571664); | |
644 DK(KP481753674, +0.481753674101715274987191502872129653528542010); | |
645 DK(KP876306680, +0.876306680043863587308115903922062583399064238); | |
646 DK(KP844327925, +0.844327925502015078548558063966681505381659241); | |
647 DK(KP535826794, +0.535826794978996618271308767867639978063575346); | |
648 DK(KP248689887, +0.248689887164854788242283746006447968417567406); | |
649 DK(KP968583161, +0.968583161128631119490168375464735813836012403); | |
650 DK(KP250000000, +0.250000000000000000000000000000000000000000000); | |
651 DK(KP559016994, +0.559016994374947424102293417182819058860154590); | |
652 DK(KP587785252, +0.587785252292473129168705954639072768597652438); | |
653 DK(KP951056516, +0.951056516295153572116439333379382143405698634); | |
654 { | |
655 INT i; | |
656 for (i = v; i > 0; i = i - 1, ri = ri + ivs, ii = ii + ivs, ro = ro + ovs, io = io + ovs, MAKE_VOLATILE_STRIDE(100, is), MAKE_VOLATILE_STRIDE(100, os)) { | |
657 E T9, T4u, T2T, TP, T3H, TW, T5y, T3I, T2Q, T4v, Ti, Tr, Ts, T5m, T5n; | |
658 E T5v, T18, T4G, T34, T3M, T1G, T4J, T38, T3T, T1v, T4K, T37, T3W, T1j, T4H; | |
659 E T35, T3P, TB, TK, TL, T5p, T5q, T5w, T1T, T4N, T3c, T41, T2r, T4Q, T3e; | |
660 E T4b, T2g, T4R, T3f, T48, T24, T4O, T3b, T44; | |
661 { | |
662 E T1, T4, T7, T8, T2S, T2R, TN, TO; | |
663 T1 = ri[0]; | |
664 { | |
665 E T2, T3, T5, T6; | |
666 T2 = ri[WS(is, 5)]; | |
667 T3 = ri[WS(is, 20)]; | |
668 T4 = T2 + T3; | |
669 T5 = ri[WS(is, 10)]; | |
670 T6 = ri[WS(is, 15)]; | |
671 T7 = T5 + T6; | |
672 T8 = T4 + T7; | |
673 T2S = T5 - T6; | |
674 T2R = T2 - T3; | |
675 } | |
676 T9 = T1 + T8; | |
677 T4u = FNMS(KP587785252, T2R, KP951056516 * T2S); | |
678 T2T = FMA(KP951056516, T2R, KP587785252 * T2S); | |
679 TN = KP559016994 * (T4 - T7); | |
680 TO = FNMS(KP250000000, T8, T1); | |
681 TP = TN + TO; | |
682 T3H = TO - TN; | |
683 } | |
684 { | |
685 E T2N, T2K, T2L, TS, T2O, TV, T2M, T2P; | |
686 T2N = ii[0]; | |
687 { | |
688 E TQ, TR, TT, TU; | |
689 TQ = ii[WS(is, 5)]; | |
690 TR = ii[WS(is, 20)]; | |
691 T2K = TQ + TR; | |
692 TT = ii[WS(is, 10)]; | |
693 TU = ii[WS(is, 15)]; | |
694 T2L = TT + TU; | |
695 TS = TQ - TR; | |
696 T2O = T2K + T2L; | |
697 TV = TT - TU; | |
698 } | |
699 TW = FMA(KP951056516, TS, KP587785252 * TV); | |
700 T5y = T2N + T2O; | |
701 T3I = FNMS(KP587785252, TS, KP951056516 * TV); | |
702 T2M = KP559016994 * (T2K - T2L); | |
703 T2P = FNMS(KP250000000, T2O, T2N); | |
704 T2Q = T2M + T2P; | |
705 T4v = T2P - T2M; | |
706 } | |
707 { | |
708 E Ta, T1c, Tj, T1z, Th, T1h, TY, T1g, T13, T1d, T16, T1b, Tq, T1E, T1l; | |
709 E T1D, T1q, T1A, T1t, T1y; | |
710 Ta = ri[WS(is, 1)]; | |
711 T1c = ii[WS(is, 1)]; | |
712 Tj = ri[WS(is, 4)]; | |
713 T1z = ii[WS(is, 4)]; | |
714 { | |
715 E Tb, Tc, Td, Te, Tf, Tg; | |
716 Tb = ri[WS(is, 6)]; | |
717 Tc = ri[WS(is, 21)]; | |
718 Td = Tb + Tc; | |
719 Te = ri[WS(is, 11)]; | |
720 Tf = ri[WS(is, 16)]; | |
721 Tg = Te + Tf; | |
722 Th = Td + Tg; | |
723 T1h = Te - Tf; | |
724 TY = KP559016994 * (Td - Tg); | |
725 T1g = Tb - Tc; | |
726 } | |
727 { | |
728 E T11, T12, T19, T14, T15, T1a; | |
729 T11 = ii[WS(is, 6)]; | |
730 T12 = ii[WS(is, 21)]; | |
731 T19 = T11 + T12; | |
732 T14 = ii[WS(is, 11)]; | |
733 T15 = ii[WS(is, 16)]; | |
734 T1a = T14 + T15; | |
735 T13 = T11 - T12; | |
736 T1d = T19 + T1a; | |
737 T16 = T14 - T15; | |
738 T1b = KP559016994 * (T19 - T1a); | |
739 } | |
740 { | |
741 E Tk, Tl, Tm, Tn, To, Tp; | |
742 Tk = ri[WS(is, 9)]; | |
743 Tl = ri[WS(is, 24)]; | |
744 Tm = Tk + Tl; | |
745 Tn = ri[WS(is, 14)]; | |
746 To = ri[WS(is, 19)]; | |
747 Tp = Tn + To; | |
748 Tq = Tm + Tp; | |
749 T1E = Tn - To; | |
750 T1l = KP559016994 * (Tm - Tp); | |
751 T1D = Tk - Tl; | |
752 } | |
753 { | |
754 E T1o, T1p, T1w, T1r, T1s, T1x; | |
755 T1o = ii[WS(is, 9)]; | |
756 T1p = ii[WS(is, 24)]; | |
757 T1w = T1o + T1p; | |
758 T1r = ii[WS(is, 14)]; | |
759 T1s = ii[WS(is, 19)]; | |
760 T1x = T1r + T1s; | |
761 T1q = T1o - T1p; | |
762 T1A = T1w + T1x; | |
763 T1t = T1r - T1s; | |
764 T1y = KP559016994 * (T1w - T1x); | |
765 } | |
766 Ti = Ta + Th; | |
767 Tr = Tj + Tq; | |
768 Ts = Ti + Tr; | |
769 T5m = T1c + T1d; | |
770 T5n = T1z + T1A; | |
771 T5v = T5m + T5n; | |
772 { | |
773 E T17, T3L, T10, T3K, TZ; | |
774 T17 = FMA(KP951056516, T13, KP587785252 * T16); | |
775 T3L = FNMS(KP587785252, T13, KP951056516 * T16); | |
776 TZ = FNMS(KP250000000, Th, Ta); | |
777 T10 = TY + TZ; | |
778 T3K = TZ - TY; | |
779 T18 = T10 + T17; | |
780 T4G = T3K + T3L; | |
781 T34 = T10 - T17; | |
782 T3M = T3K - T3L; | |
783 } | |
784 { | |
785 E T1F, T3R, T1C, T3S, T1B; | |
786 T1F = FMA(KP951056516, T1D, KP587785252 * T1E); | |
787 T3R = FNMS(KP587785252, T1D, KP951056516 * T1E); | |
788 T1B = FNMS(KP250000000, T1A, T1z); | |
789 T1C = T1y + T1B; | |
790 T3S = T1B - T1y; | |
791 T1G = T1C - T1F; | |
792 T4J = T3S - T3R; | |
793 T38 = T1F + T1C; | |
794 T3T = T3R + T3S; | |
795 } | |
796 { | |
797 E T1u, T3V, T1n, T3U, T1m; | |
798 T1u = FMA(KP951056516, T1q, KP587785252 * T1t); | |
799 T3V = FNMS(KP587785252, T1q, KP951056516 * T1t); | |
800 T1m = FNMS(KP250000000, Tq, Tj); | |
801 T1n = T1l + T1m; | |
802 T3U = T1m - T1l; | |
803 T1v = T1n + T1u; | |
804 T4K = T3U + T3V; | |
805 T37 = T1n - T1u; | |
806 T3W = T3U - T3V; | |
807 } | |
808 { | |
809 E T1i, T3N, T1f, T3O, T1e; | |
810 T1i = FMA(KP951056516, T1g, KP587785252 * T1h); | |
811 T3N = FNMS(KP587785252, T1g, KP951056516 * T1h); | |
812 T1e = FNMS(KP250000000, T1d, T1c); | |
813 T1f = T1b + T1e; | |
814 T3O = T1e - T1b; | |
815 T1j = T1f - T1i; | |
816 T4H = T3O - T3N; | |
817 T35 = T1i + T1f; | |
818 T3P = T3N + T3O; | |
819 } | |
820 } | |
821 { | |
822 E Tt, T1X, TC, T2k, TA, T22, T1J, T21, T1O, T1Y, T1R, T1W, TJ, T2p, T26; | |
823 E T2o, T2b, T2l, T2e, T2j; | |
824 Tt = ri[WS(is, 2)]; | |
825 T1X = ii[WS(is, 2)]; | |
826 TC = ri[WS(is, 3)]; | |
827 T2k = ii[WS(is, 3)]; | |
828 { | |
829 E Tu, Tv, Tw, Tx, Ty, Tz; | |
830 Tu = ri[WS(is, 7)]; | |
831 Tv = ri[WS(is, 22)]; | |
832 Tw = Tu + Tv; | |
833 Tx = ri[WS(is, 12)]; | |
834 Ty = ri[WS(is, 17)]; | |
835 Tz = Tx + Ty; | |
836 TA = Tw + Tz; | |
837 T22 = Tx - Ty; | |
838 T1J = KP559016994 * (Tw - Tz); | |
839 T21 = Tu - Tv; | |
840 } | |
841 { | |
842 E T1M, T1N, T1U, T1P, T1Q, T1V; | |
843 T1M = ii[WS(is, 7)]; | |
844 T1N = ii[WS(is, 22)]; | |
845 T1U = T1M + T1N; | |
846 T1P = ii[WS(is, 12)]; | |
847 T1Q = ii[WS(is, 17)]; | |
848 T1V = T1P + T1Q; | |
849 T1O = T1M - T1N; | |
850 T1Y = T1U + T1V; | |
851 T1R = T1P - T1Q; | |
852 T1W = KP559016994 * (T1U - T1V); | |
853 } | |
854 { | |
855 E TD, TE, TF, TG, TH, TI; | |
856 TD = ri[WS(is, 8)]; | |
857 TE = ri[WS(is, 23)]; | |
858 TF = TD + TE; | |
859 TG = ri[WS(is, 13)]; | |
860 TH = ri[WS(is, 18)]; | |
861 TI = TG + TH; | |
862 TJ = TF + TI; | |
863 T2p = TG - TH; | |
864 T26 = KP559016994 * (TF - TI); | |
865 T2o = TD - TE; | |
866 } | |
867 { | |
868 E T29, T2a, T2h, T2c, T2d, T2i; | |
869 T29 = ii[WS(is, 8)]; | |
870 T2a = ii[WS(is, 23)]; | |
871 T2h = T29 + T2a; | |
872 T2c = ii[WS(is, 13)]; | |
873 T2d = ii[WS(is, 18)]; | |
874 T2i = T2c + T2d; | |
875 T2b = T29 - T2a; | |
876 T2l = T2h + T2i; | |
877 T2e = T2c - T2d; | |
878 T2j = KP559016994 * (T2h - T2i); | |
879 } | |
880 TB = Tt + TA; | |
881 TK = TC + TJ; | |
882 TL = TB + TK; | |
883 T5p = T1X + T1Y; | |
884 T5q = T2k + T2l; | |
885 T5w = T5p + T5q; | |
886 { | |
887 E T1S, T40, T1L, T3Z, T1K; | |
888 T1S = FMA(KP951056516, T1O, KP587785252 * T1R); | |
889 T40 = FNMS(KP587785252, T1O, KP951056516 * T1R); | |
890 T1K = FNMS(KP250000000, TA, Tt); | |
891 T1L = T1J + T1K; | |
892 T3Z = T1K - T1J; | |
893 T1T = T1L + T1S; | |
894 T4N = T3Z + T40; | |
895 T3c = T1L - T1S; | |
896 T41 = T3Z - T40; | |
897 } | |
898 { | |
899 E T2q, T49, T2n, T4a, T2m; | |
900 T2q = FMA(KP951056516, T2o, KP587785252 * T2p); | |
901 T49 = FNMS(KP587785252, T2o, KP951056516 * T2p); | |
902 T2m = FNMS(KP250000000, T2l, T2k); | |
903 T2n = T2j + T2m; | |
904 T4a = T2m - T2j; | |
905 T2r = T2n - T2q; | |
906 T4Q = T4a - T49; | |
907 T3e = T2q + T2n; | |
908 T4b = T49 + T4a; | |
909 } | |
910 { | |
911 E T2f, T47, T28, T46, T27; | |
912 T2f = FMA(KP951056516, T2b, KP587785252 * T2e); | |
913 T47 = FNMS(KP587785252, T2b, KP951056516 * T2e); | |
914 T27 = FNMS(KP250000000, TJ, TC); | |
915 T28 = T26 + T27; | |
916 T46 = T27 - T26; | |
917 T2g = T28 + T2f; | |
918 T4R = T46 + T47; | |
919 T3f = T28 - T2f; | |
920 T48 = T46 - T47; | |
921 } | |
922 { | |
923 E T23, T42, T20, T43, T1Z; | |
924 T23 = FMA(KP951056516, T21, KP587785252 * T22); | |
925 T42 = FNMS(KP587785252, T21, KP951056516 * T22); | |
926 T1Z = FNMS(KP250000000, T1Y, T1X); | |
927 T20 = T1W + T1Z; | |
928 T43 = T1Z - T1W; | |
929 T24 = T20 - T23; | |
930 T4O = T43 - T42; | |
931 T3b = T23 + T20; | |
932 T44 = T42 + T43; | |
933 } | |
934 } | |
935 { | |
936 E T5j, TM, T5k, T5s, T5u, T5o, T5r, T5t, T5l; | |
937 T5j = KP559016994 * (Ts - TL); | |
938 TM = Ts + TL; | |
939 T5k = FNMS(KP250000000, TM, T9); | |
940 T5o = T5m - T5n; | |
941 T5r = T5p - T5q; | |
942 T5s = FMA(KP951056516, T5o, KP587785252 * T5r); | |
943 T5u = FNMS(KP587785252, T5o, KP951056516 * T5r); | |
944 ro[0] = T9 + TM; | |
945 T5t = T5k - T5j; | |
946 ro[WS(os, 10)] = T5t - T5u; | |
947 ro[WS(os, 15)] = T5t + T5u; | |
948 T5l = T5j + T5k; | |
949 ro[WS(os, 20)] = T5l - T5s; | |
950 ro[WS(os, 5)] = T5l + T5s; | |
951 } | |
952 { | |
953 E T5x, T5z, T5A, T5E, T5F, T5C, T5D, T5G, T5B; | |
954 T5x = KP559016994 * (T5v - T5w); | |
955 T5z = T5v + T5w; | |
956 T5A = FNMS(KP250000000, T5z, T5y); | |
957 T5C = Ti - Tr; | |
958 T5D = TB - TK; | |
959 T5E = FMA(KP951056516, T5C, KP587785252 * T5D); | |
960 T5F = FNMS(KP587785252, T5C, KP951056516 * T5D); | |
961 io[0] = T5y + T5z; | |
962 T5G = T5A - T5x; | |
963 io[WS(os, 10)] = T5F + T5G; | |
964 io[WS(os, 15)] = T5G - T5F; | |
965 T5B = T5x + T5A; | |
966 io[WS(os, 5)] = T5B - T5E; | |
967 io[WS(os, 20)] = T5E + T5B; | |
968 } | |
969 { | |
970 E TX, T2U, T2u, T2Z, T2v, T2Y, T2A, T2V, T2D, T2J; | |
971 TX = TP + TW; | |
972 T2U = T2Q - T2T; | |
973 { | |
974 E T1k, T1H, T1I, T25, T2s, T2t; | |
975 T1k = FMA(KP968583161, T18, KP248689887 * T1j); | |
976 T1H = FMA(KP535826794, T1v, KP844327925 * T1G); | |
977 T1I = T1k + T1H; | |
978 T25 = FMA(KP876306680, T1T, KP481753674 * T24); | |
979 T2s = FMA(KP728968627, T2g, KP684547105 * T2r); | |
980 T2t = T25 + T2s; | |
981 T2u = T1I + T2t; | |
982 T2Z = T25 - T2s; | |
983 T2v = KP559016994 * (T1I - T2t); | |
984 T2Y = T1k - T1H; | |
985 } | |
986 { | |
987 E T2y, T2z, T2H, T2B, T2C, T2I; | |
988 T2y = FNMS(KP248689887, T18, KP968583161 * T1j); | |
989 T2z = FNMS(KP844327925, T1v, KP535826794 * T1G); | |
990 T2H = T2y + T2z; | |
991 T2B = FNMS(KP481753674, T1T, KP876306680 * T24); | |
992 T2C = FNMS(KP684547105, T2g, KP728968627 * T2r); | |
993 T2I = T2B + T2C; | |
994 T2A = T2y - T2z; | |
995 T2V = T2H + T2I; | |
996 T2D = T2B - T2C; | |
997 T2J = KP559016994 * (T2H - T2I); | |
998 } | |
999 ro[WS(os, 1)] = TX + T2u; | |
1000 io[WS(os, 1)] = T2U + T2V; | |
1001 { | |
1002 E T2E, T2G, T2x, T2F, T2w; | |
1003 T2E = FMA(KP951056516, T2A, KP587785252 * T2D); | |
1004 T2G = FNMS(KP587785252, T2A, KP951056516 * T2D); | |
1005 T2w = FNMS(KP250000000, T2u, TX); | |
1006 T2x = T2v + T2w; | |
1007 T2F = T2w - T2v; | |
1008 ro[WS(os, 21)] = T2x - T2E; | |
1009 ro[WS(os, 16)] = T2F + T2G; | |
1010 ro[WS(os, 6)] = T2x + T2E; | |
1011 ro[WS(os, 11)] = T2F - T2G; | |
1012 } | |
1013 { | |
1014 E T30, T31, T2X, T32, T2W; | |
1015 T30 = FMA(KP951056516, T2Y, KP587785252 * T2Z); | |
1016 T31 = FNMS(KP587785252, T2Y, KP951056516 * T2Z); | |
1017 T2W = FNMS(KP250000000, T2V, T2U); | |
1018 T2X = T2J + T2W; | |
1019 T32 = T2W - T2J; | |
1020 io[WS(os, 6)] = T2X - T30; | |
1021 io[WS(os, 16)] = T32 - T31; | |
1022 io[WS(os, 21)] = T30 + T2X; | |
1023 io[WS(os, 11)] = T31 + T32; | |
1024 } | |
1025 } | |
1026 { | |
1027 E T4F, T52, T4U, T5b, T56, T57, T51, T5f, T53, T5e; | |
1028 T4F = T3H + T3I; | |
1029 T52 = T4v - T4u; | |
1030 { | |
1031 E T4I, T4L, T4M, T4P, T4S, T4T; | |
1032 T4I = FMA(KP728968627, T4G, KP684547105 * T4H); | |
1033 T4L = FNMS(KP992114701, T4K, KP125333233 * T4J); | |
1034 T4M = T4I + T4L; | |
1035 T4P = FMA(KP062790519, T4N, KP998026728 * T4O); | |
1036 T4S = FNMS(KP637423989, T4R, KP770513242 * T4Q); | |
1037 T4T = T4P + T4S; | |
1038 T4U = T4M + T4T; | |
1039 T5b = KP559016994 * (T4M - T4T); | |
1040 T56 = T4I - T4L; | |
1041 T57 = T4P - T4S; | |
1042 } | |
1043 { | |
1044 E T4V, T4W, T4X, T4Y, T4Z, T50; | |
1045 T4V = FNMS(KP684547105, T4G, KP728968627 * T4H); | |
1046 T4W = FMA(KP125333233, T4K, KP992114701 * T4J); | |
1047 T4X = T4V - T4W; | |
1048 T4Y = FNMS(KP998026728, T4N, KP062790519 * T4O); | |
1049 T4Z = FMA(KP770513242, T4R, KP637423989 * T4Q); | |
1050 T50 = T4Y - T4Z; | |
1051 T51 = KP559016994 * (T4X - T50); | |
1052 T5f = T4Y + T4Z; | |
1053 T53 = T4X + T50; | |
1054 T5e = T4V + T4W; | |
1055 } | |
1056 ro[WS(os, 3)] = T4F + T4U; | |
1057 io[WS(os, 3)] = T52 + T53; | |
1058 { | |
1059 E T58, T59, T55, T5a, T54; | |
1060 T58 = FMA(KP951056516, T56, KP587785252 * T57); | |
1061 T59 = FNMS(KP587785252, T56, KP951056516 * T57); | |
1062 T54 = FNMS(KP250000000, T53, T52); | |
1063 T55 = T51 + T54; | |
1064 T5a = T54 - T51; | |
1065 io[WS(os, 8)] = T55 - T58; | |
1066 io[WS(os, 18)] = T5a - T59; | |
1067 io[WS(os, 23)] = T58 + T55; | |
1068 io[WS(os, 13)] = T59 + T5a; | |
1069 } | |
1070 { | |
1071 E T5g, T5i, T5d, T5h, T5c; | |
1072 T5g = FMA(KP951056516, T5e, KP587785252 * T5f); | |
1073 T5i = FNMS(KP587785252, T5e, KP951056516 * T5f); | |
1074 T5c = FNMS(KP250000000, T4U, T4F); | |
1075 T5d = T5b + T5c; | |
1076 T5h = T5c - T5b; | |
1077 ro[WS(os, 23)] = T5d - T5g; | |
1078 ro[WS(os, 18)] = T5h + T5i; | |
1079 ro[WS(os, 8)] = T5d + T5g; | |
1080 ro[WS(os, 13)] = T5h - T5i; | |
1081 } | |
1082 } | |
1083 { | |
1084 E T3J, T4w, T4e, T4B, T4f, T4A, T4k, T4x, T4n, T4t; | |
1085 T3J = T3H - T3I; | |
1086 T4w = T4u + T4v; | |
1087 { | |
1088 E T3Q, T3X, T3Y, T45, T4c, T4d; | |
1089 T3Q = FMA(KP876306680, T3M, KP481753674 * T3P); | |
1090 T3X = FNMS(KP425779291, T3W, KP904827052 * T3T); | |
1091 T3Y = T3Q + T3X; | |
1092 T45 = FMA(KP535826794, T41, KP844327925 * T44); | |
1093 T4c = FMA(KP062790519, T48, KP998026728 * T4b); | |
1094 T4d = T45 + T4c; | |
1095 T4e = T3Y + T4d; | |
1096 T4B = T45 - T4c; | |
1097 T4f = KP559016994 * (T3Y - T4d); | |
1098 T4A = T3Q - T3X; | |
1099 } | |
1100 { | |
1101 E T4i, T4j, T4r, T4l, T4m, T4s; | |
1102 T4i = FNMS(KP481753674, T3M, KP876306680 * T3P); | |
1103 T4j = FMA(KP904827052, T3W, KP425779291 * T3T); | |
1104 T4r = T4i - T4j; | |
1105 T4l = FNMS(KP844327925, T41, KP535826794 * T44); | |
1106 T4m = FNMS(KP998026728, T48, KP062790519 * T4b); | |
1107 T4s = T4l + T4m; | |
1108 T4k = T4i + T4j; | |
1109 T4x = T4r + T4s; | |
1110 T4n = T4l - T4m; | |
1111 T4t = KP559016994 * (T4r - T4s); | |
1112 } | |
1113 ro[WS(os, 2)] = T3J + T4e; | |
1114 io[WS(os, 2)] = T4w + T4x; | |
1115 { | |
1116 E T4o, T4q, T4h, T4p, T4g; | |
1117 T4o = FMA(KP951056516, T4k, KP587785252 * T4n); | |
1118 T4q = FNMS(KP587785252, T4k, KP951056516 * T4n); | |
1119 T4g = FNMS(KP250000000, T4e, T3J); | |
1120 T4h = T4f + T4g; | |
1121 T4p = T4g - T4f; | |
1122 ro[WS(os, 22)] = T4h - T4o; | |
1123 ro[WS(os, 17)] = T4p + T4q; | |
1124 ro[WS(os, 7)] = T4h + T4o; | |
1125 ro[WS(os, 12)] = T4p - T4q; | |
1126 } | |
1127 { | |
1128 E T4C, T4D, T4z, T4E, T4y; | |
1129 T4C = FMA(KP951056516, T4A, KP587785252 * T4B); | |
1130 T4D = FNMS(KP587785252, T4A, KP951056516 * T4B); | |
1131 T4y = FNMS(KP250000000, T4x, T4w); | |
1132 T4z = T4t + T4y; | |
1133 T4E = T4y - T4t; | |
1134 io[WS(os, 7)] = T4z - T4C; | |
1135 io[WS(os, 17)] = T4E - T4D; | |
1136 io[WS(os, 22)] = T4C + T4z; | |
1137 io[WS(os, 12)] = T4D + T4E; | |
1138 } | |
1139 } | |
1140 { | |
1141 E T33, T3j, T3i, T3z, T3r, T3s, T3q, T3D, T3v, T3C; | |
1142 T33 = TP - TW; | |
1143 T3j = T2T + T2Q; | |
1144 { | |
1145 E T36, T39, T3a, T3d, T3g, T3h; | |
1146 T36 = FMA(KP535826794, T34, KP844327925 * T35); | |
1147 T39 = FMA(KP637423989, T37, KP770513242 * T38); | |
1148 T3a = T36 - T39; | |
1149 T3d = FNMS(KP425779291, T3c, KP904827052 * T3b); | |
1150 T3g = FNMS(KP992114701, T3f, KP125333233 * T3e); | |
1151 T3h = T3d + T3g; | |
1152 T3i = T3a + T3h; | |
1153 T3z = KP559016994 * (T3a - T3h); | |
1154 T3r = T3d - T3g; | |
1155 T3s = T36 + T39; | |
1156 } | |
1157 { | |
1158 E T3k, T3l, T3m, T3n, T3o, T3p; | |
1159 T3k = FNMS(KP844327925, T34, KP535826794 * T35); | |
1160 T3l = FNMS(KP637423989, T38, KP770513242 * T37); | |
1161 T3m = T3k + T3l; | |
1162 T3n = FMA(KP904827052, T3c, KP425779291 * T3b); | |
1163 T3o = FMA(KP125333233, T3f, KP992114701 * T3e); | |
1164 T3p = T3n + T3o; | |
1165 T3q = T3m - T3p; | |
1166 T3D = T3o - T3n; | |
1167 T3v = KP559016994 * (T3m + T3p); | |
1168 T3C = T3k - T3l; | |
1169 } | |
1170 ro[WS(os, 4)] = T33 + T3i; | |
1171 io[WS(os, 4)] = T3j + T3q; | |
1172 { | |
1173 E T3t, T3y, T3w, T3x, T3u; | |
1174 T3t = FNMS(KP587785252, T3s, KP951056516 * T3r); | |
1175 T3y = FMA(KP951056516, T3s, KP587785252 * T3r); | |
1176 T3u = FNMS(KP250000000, T3q, T3j); | |
1177 T3w = T3u - T3v; | |
1178 T3x = T3u + T3v; | |
1179 io[WS(os, 14)] = T3t + T3w; | |
1180 io[WS(os, 24)] = T3y + T3x; | |
1181 io[WS(os, 19)] = T3w - T3t; | |
1182 io[WS(os, 9)] = T3x - T3y; | |
1183 } | |
1184 { | |
1185 E T3E, T3G, T3B, T3F, T3A; | |
1186 T3E = FMA(KP951056516, T3C, KP587785252 * T3D); | |
1187 T3G = FNMS(KP587785252, T3C, KP951056516 * T3D); | |
1188 T3A = FNMS(KP250000000, T3i, T33); | |
1189 T3B = T3z + T3A; | |
1190 T3F = T3A - T3z; | |
1191 ro[WS(os, 24)] = T3B - T3E; | |
1192 ro[WS(os, 19)] = T3F + T3G; | |
1193 ro[WS(os, 9)] = T3B + T3E; | |
1194 ro[WS(os, 14)] = T3F - T3G; | |
1195 } | |
1196 } | |
1197 } | |
1198 } | |
1199 } | |
1200 | |
1201 static const kdft_desc desc = { 25, "n1_25", {260, 92, 92, 0}, &GENUS, 0, 0, 0, 0 }; | |
1202 | |
1203 void X(codelet_n1_25) (planner *p) { | |
1204 X(kdft_register) (p, n1_25, &desc); | |
1205 } | |
1206 | |
1207 #endif /* HAVE_FMA */ |