Mercurial > hg > sv-dependency-builds
comparison src/fftw-3.3.5/rdft/scalar/r2cf/hf_5.c @ 42:2cd0e3b3e1fd
Current fftw source
author | Chris Cannam |
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date | Tue, 18 Oct 2016 13:40:26 +0100 |
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41:481f5f8c5634 | 42:2cd0e3b3e1fd |
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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 Sat Jul 30 16:46:15 EDT 2016 */ | |
23 | |
24 #include "codelet-rdft.h" | |
25 | |
26 #ifdef HAVE_FMA | |
27 | |
28 /* Generated by: ../../../genfft/gen_hc2hc.native -fma -reorder-insns -schedule-for-pipeline -compact -variables 4 -pipeline-latency 4 -n 5 -dit -name hf_5 -include hf.h */ | |
29 | |
30 /* | |
31 * This function contains 40 FP additions, 34 FP multiplications, | |
32 * (or, 14 additions, 8 multiplications, 26 fused multiply/add), | |
33 * 43 stack variables, 4 constants, and 20 memory accesses | |
34 */ | |
35 #include "hf.h" | |
36 | |
37 static void hf_5(R *cr, R *ci, const R *W, stride rs, INT mb, INT me, INT ms) | |
38 { | |
39 DK(KP951056516, +0.951056516295153572116439333379382143405698634); | |
40 DK(KP559016994, +0.559016994374947424102293417182819058860154590); | |
41 DK(KP250000000, +0.250000000000000000000000000000000000000000000); | |
42 DK(KP618033988, +0.618033988749894848204586834365638117720309180); | |
43 { | |
44 INT m; | |
45 for (m = mb, W = W + ((mb - 1) * 8); m < me; m = m + 1, cr = cr + ms, ci = ci - ms, W = W + 8, MAKE_VOLATILE_STRIDE(10, rs)) { | |
46 E T1, TJ, TK, TA, TR, Te, TC, Tk, TE, Tq; | |
47 { | |
48 E Tg, Tj, Tm, TB, Th, Tp, Tl, Ti, To, TD, Tn; | |
49 T1 = cr[0]; | |
50 TJ = ci[0]; | |
51 { | |
52 E T9, Tc, Ty, Ta, Tb, Tx, T7, Tf, Tz, Td; | |
53 { | |
54 E T3, T6, T8, Tw, T4, T2, T5; | |
55 T3 = cr[WS(rs, 1)]; | |
56 T6 = ci[WS(rs, 1)]; | |
57 T2 = W[0]; | |
58 T9 = cr[WS(rs, 4)]; | |
59 Tc = ci[WS(rs, 4)]; | |
60 T8 = W[6]; | |
61 Tw = T2 * T6; | |
62 T4 = T2 * T3; | |
63 T5 = W[1]; | |
64 Ty = T8 * Tc; | |
65 Ta = T8 * T9; | |
66 Tb = W[7]; | |
67 Tx = FNMS(T5, T3, Tw); | |
68 T7 = FMA(T5, T6, T4); | |
69 } | |
70 Tg = cr[WS(rs, 2)]; | |
71 Tz = FNMS(Tb, T9, Ty); | |
72 Td = FMA(Tb, Tc, Ta); | |
73 Tj = ci[WS(rs, 2)]; | |
74 Tf = W[2]; | |
75 TK = Tx + Tz; | |
76 TA = Tx - Tz; | |
77 TR = Td - T7; | |
78 Te = T7 + Td; | |
79 Tm = cr[WS(rs, 3)]; | |
80 TB = Tf * Tj; | |
81 Th = Tf * Tg; | |
82 Tp = ci[WS(rs, 3)]; | |
83 Tl = W[4]; | |
84 Ti = W[3]; | |
85 To = W[5]; | |
86 } | |
87 TD = Tl * Tp; | |
88 Tn = Tl * Tm; | |
89 TC = FNMS(Ti, Tg, TB); | |
90 Tk = FMA(Ti, Tj, Th); | |
91 TE = FNMS(To, Tm, TD); | |
92 Tq = FMA(To, Tp, Tn); | |
93 } | |
94 { | |
95 E TG, TI, TO, TS, TU, Tu, TN, Tt, TL, TF; | |
96 TL = TC + TE; | |
97 TF = TC - TE; | |
98 { | |
99 E Tr, TQ, TM, Ts; | |
100 Tr = Tk + Tq; | |
101 TQ = Tk - Tq; | |
102 TG = FMA(KP618033988, TF, TA); | |
103 TI = FNMS(KP618033988, TA, TF); | |
104 TO = TK - TL; | |
105 TM = TK + TL; | |
106 TS = FMA(KP618033988, TR, TQ); | |
107 TU = FNMS(KP618033988, TQ, TR); | |
108 Tu = Te - Tr; | |
109 Ts = Te + Tr; | |
110 ci[WS(rs, 4)] = TM + TJ; | |
111 TN = FNMS(KP250000000, TM, TJ); | |
112 cr[0] = T1 + Ts; | |
113 Tt = FNMS(KP250000000, Ts, T1); | |
114 } | |
115 { | |
116 E TT, TP, Tv, TH; | |
117 TT = FMA(KP559016994, TO, TN); | |
118 TP = FNMS(KP559016994, TO, TN); | |
119 Tv = FMA(KP559016994, Tu, Tt); | |
120 TH = FNMS(KP559016994, Tu, Tt); | |
121 ci[WS(rs, 2)] = FMA(KP951056516, TS, TP); | |
122 cr[WS(rs, 3)] = FMS(KP951056516, TS, TP); | |
123 ci[WS(rs, 3)] = FMA(KP951056516, TU, TT); | |
124 cr[WS(rs, 4)] = FMS(KP951056516, TU, TT); | |
125 ci[WS(rs, 1)] = FMA(KP951056516, TI, TH); | |
126 cr[WS(rs, 2)] = FNMS(KP951056516, TI, TH); | |
127 cr[WS(rs, 1)] = FMA(KP951056516, TG, Tv); | |
128 ci[0] = FNMS(KP951056516, TG, Tv); | |
129 } | |
130 } | |
131 } | |
132 } | |
133 } | |
134 | |
135 static const tw_instr twinstr[] = { | |
136 {TW_FULL, 1, 5}, | |
137 {TW_NEXT, 1, 0} | |
138 }; | |
139 | |
140 static const hc2hc_desc desc = { 5, "hf_5", twinstr, &GENUS, {14, 8, 26, 0} }; | |
141 | |
142 void X(codelet_hf_5) (planner *p) { | |
143 X(khc2hc_register) (p, hf_5, &desc); | |
144 } | |
145 #else /* HAVE_FMA */ | |
146 | |
147 /* Generated by: ../../../genfft/gen_hc2hc.native -compact -variables 4 -pipeline-latency 4 -n 5 -dit -name hf_5 -include hf.h */ | |
148 | |
149 /* | |
150 * This function contains 40 FP additions, 28 FP multiplications, | |
151 * (or, 26 additions, 14 multiplications, 14 fused multiply/add), | |
152 * 29 stack variables, 4 constants, and 20 memory accesses | |
153 */ | |
154 #include "hf.h" | |
155 | |
156 static void hf_5(R *cr, R *ci, const R *W, stride rs, INT mb, INT me, INT ms) | |
157 { | |
158 DK(KP250000000, +0.250000000000000000000000000000000000000000000); | |
159 DK(KP559016994, +0.559016994374947424102293417182819058860154590); | |
160 DK(KP587785252, +0.587785252292473129168705954639072768597652438); | |
161 DK(KP951056516, +0.951056516295153572116439333379382143405698634); | |
162 { | |
163 INT m; | |
164 for (m = mb, W = W + ((mb - 1) * 8); m < me; m = m + 1, cr = cr + ms, ci = ci - ms, W = W + 8, MAKE_VOLATILE_STRIDE(10, rs)) { | |
165 E T1, TE, Tu, Tx, TC, TB, TF, TG, TH, Tc, Tn, To; | |
166 T1 = cr[0]; | |
167 TE = ci[0]; | |
168 { | |
169 E T6, Ts, Tm, Tw, Tb, Tt, Th, Tv; | |
170 { | |
171 E T3, T5, T2, T4; | |
172 T3 = cr[WS(rs, 1)]; | |
173 T5 = ci[WS(rs, 1)]; | |
174 T2 = W[0]; | |
175 T4 = W[1]; | |
176 T6 = FMA(T2, T3, T4 * T5); | |
177 Ts = FNMS(T4, T3, T2 * T5); | |
178 } | |
179 { | |
180 E Tj, Tl, Ti, Tk; | |
181 Tj = cr[WS(rs, 3)]; | |
182 Tl = ci[WS(rs, 3)]; | |
183 Ti = W[4]; | |
184 Tk = W[5]; | |
185 Tm = FMA(Ti, Tj, Tk * Tl); | |
186 Tw = FNMS(Tk, Tj, Ti * Tl); | |
187 } | |
188 { | |
189 E T8, Ta, T7, T9; | |
190 T8 = cr[WS(rs, 4)]; | |
191 Ta = ci[WS(rs, 4)]; | |
192 T7 = W[6]; | |
193 T9 = W[7]; | |
194 Tb = FMA(T7, T8, T9 * Ta); | |
195 Tt = FNMS(T9, T8, T7 * Ta); | |
196 } | |
197 { | |
198 E Te, Tg, Td, Tf; | |
199 Te = cr[WS(rs, 2)]; | |
200 Tg = ci[WS(rs, 2)]; | |
201 Td = W[2]; | |
202 Tf = W[3]; | |
203 Th = FMA(Td, Te, Tf * Tg); | |
204 Tv = FNMS(Tf, Te, Td * Tg); | |
205 } | |
206 Tu = Ts - Tt; | |
207 Tx = Tv - Tw; | |
208 TC = Th - Tm; | |
209 TB = Tb - T6; | |
210 TF = Ts + Tt; | |
211 TG = Tv + Tw; | |
212 TH = TF + TG; | |
213 Tc = T6 + Tb; | |
214 Tn = Th + Tm; | |
215 To = Tc + Tn; | |
216 } | |
217 cr[0] = T1 + To; | |
218 { | |
219 E Ty, TA, Tr, Tz, Tp, Tq; | |
220 Ty = FMA(KP951056516, Tu, KP587785252 * Tx); | |
221 TA = FNMS(KP587785252, Tu, KP951056516 * Tx); | |
222 Tp = KP559016994 * (Tc - Tn); | |
223 Tq = FNMS(KP250000000, To, T1); | |
224 Tr = Tp + Tq; | |
225 Tz = Tq - Tp; | |
226 ci[0] = Tr - Ty; | |
227 ci[WS(rs, 1)] = Tz + TA; | |
228 cr[WS(rs, 1)] = Tr + Ty; | |
229 cr[WS(rs, 2)] = Tz - TA; | |
230 } | |
231 ci[WS(rs, 4)] = TH + TE; | |
232 { | |
233 E TD, TL, TK, TM, TI, TJ; | |
234 TD = FMA(KP587785252, TB, KP951056516 * TC); | |
235 TL = FNMS(KP587785252, TC, KP951056516 * TB); | |
236 TI = FNMS(KP250000000, TH, TE); | |
237 TJ = KP559016994 * (TF - TG); | |
238 TK = TI - TJ; | |
239 TM = TJ + TI; | |
240 cr[WS(rs, 3)] = TD - TK; | |
241 ci[WS(rs, 3)] = TL + TM; | |
242 ci[WS(rs, 2)] = TD + TK; | |
243 cr[WS(rs, 4)] = TL - TM; | |
244 } | |
245 } | |
246 } | |
247 } | |
248 | |
249 static const tw_instr twinstr[] = { | |
250 {TW_FULL, 1, 5}, | |
251 {TW_NEXT, 1, 0} | |
252 }; | |
253 | |
254 static const hc2hc_desc desc = { 5, "hf_5", twinstr, &GENUS, {26, 14, 14, 0} }; | |
255 | |
256 void X(codelet_hf_5) (planner *p) { | |
257 X(khc2hc_register) (p, hf_5, &desc); | |
258 } | |
259 #endif /* HAVE_FMA */ |