cannam@167
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1 /*
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cannam@167
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2 * Copyright (c) 2003, 2007-14 Matteo Frigo
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cannam@167
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3 * Copyright (c) 2003, 2007-14 Massachusetts Institute of Technology
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cannam@167
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4 *
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cannam@167
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5 * This program is free software; you can redistribute it and/or modify
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cannam@167
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6 * it under the terms of the GNU General Public License as published by
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cannam@167
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7 * the Free Software Foundation; either version 2 of the License, or
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cannam@167
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8 * (at your option) any later version.
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cannam@167
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9 *
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cannam@167
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10 * This program is distributed in the hope that it will be useful,
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cannam@167
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11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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cannam@167
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12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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cannam@167
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13 * GNU General Public License for more details.
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cannam@167
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14 *
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cannam@167
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15 * You should have received a copy of the GNU General Public License
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cannam@167
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16 * along with this program; if not, write to the Free Software
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cannam@167
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17 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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cannam@167
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18 *
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cannam@167
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19 */
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cannam@167
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20
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cannam@167
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21 /* This file was automatically generated --- DO NOT EDIT */
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cannam@167
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22 /* Generated on Thu May 24 08:07:28 EDT 2018 */
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cannam@167
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23
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cannam@167
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24 #include "rdft/codelet-rdft.h"
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cannam@167
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25
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cannam@167
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26 #if defined(ARCH_PREFERS_FMA) || defined(ISA_EXTENSION_PREFERS_FMA)
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cannam@167
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27
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cannam@167
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28 /* Generated by: ../../../genfft/gen_r2cb.native -fma -compact -variables 4 -pipeline-latency 4 -sign 1 -n 13 -name r2cb_13 -include rdft/scalar/r2cb.h */
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cannam@167
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29
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cannam@167
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30 /*
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cannam@167
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31 * This function contains 76 FP additions, 58 FP multiplications,
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cannam@167
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32 * (or, 18 additions, 0 multiplications, 58 fused multiply/add),
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cannam@167
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33 * 63 stack variables, 26 constants, and 26 memory accesses
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cannam@167
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34 */
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cannam@167
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35 #include "rdft/scalar/r2cb.h"
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cannam@167
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36
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cannam@167
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37 static void r2cb_13(R *R0, R *R1, R *Cr, R *Ci, stride rs, stride csr, stride csi, INT v, INT ivs, INT ovs)
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cannam@167
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38 {
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cannam@167
|
39 DK(KP875502302, +0.875502302409147941146295545768755143177842006);
|
cannam@167
|
40 DK(KP1_040057143, +1.040057143777729238234261000998465604986476278);
|
cannam@167
|
41 DK(KP968287244, +0.968287244361984016049539446938120421179794516);
|
cannam@167
|
42 DK(KP1_150281458, +1.150281458948006242736771094910906776922003215);
|
cannam@167
|
43 DK(KP1_200954543, +1.200954543865330565851538506669526018704025697);
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cannam@167
|
44 DK(KP769338817, +0.769338817572980603471413688209101117038278899);
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cannam@167
|
45 DK(KP686558370, +0.686558370781754340655719594850823015421401653);
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cannam@167
|
46 DK(KP226109445, +0.226109445035782405468510155372505010481906348);
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cannam@167
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47 DK(KP1_033041561, +1.033041561246979445681802577138034271410067244);
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cannam@167
|
48 DK(KP581704778, +0.581704778510515730456870384989698884939833902);
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cannam@167
|
49 DK(KP1_007074065, +1.007074065727533254493747707736933954186697125);
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cannam@167
|
50 DK(KP600925212, +0.600925212577331548853203544578415991041882762);
|
cannam@167
|
51 DK(KP859542535, +0.859542535098774820163672132761689612766401925);
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cannam@167
|
52 DK(KP503537032, +0.503537032863766627246873853868466977093348562);
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cannam@167
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53 DK(KP522026385, +0.522026385161275033714027226654165028300441940);
|
cannam@167
|
54 DK(KP957805992, +0.957805992594665126462521754605754580515587217);
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cannam@167
|
55 DK(KP853480001, +0.853480001859823990758994934970528322872359049);
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cannam@167
|
56 DK(KP2_000000000, +2.000000000000000000000000000000000000000000000);
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cannam@167
|
57 DK(KP514918778, +0.514918778086315755491789696138117261566051239);
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cannam@167
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58 DK(KP301479260, +0.301479260047709873958013540496673347309208464);
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cannam@167
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59 DK(KP166666666, +0.166666666666666666666666666666666666666666667);
|
cannam@167
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60 DK(KP612264650, +0.612264650376756543746494474777125408779395514);
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cannam@167
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61 DK(KP302775637, +0.302775637731994646559610633735247973125648287);
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cannam@167
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62 DK(KP038632954, +0.038632954644348171955506895830342264440241080);
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cannam@167
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63 DK(KP866025403, +0.866025403784438646763723170752936183471402627);
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cannam@167
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64 DK(KP500000000, +0.500000000000000000000000000000000000000000000);
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cannam@167
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65 {
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cannam@167
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66 INT i;
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cannam@167
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67 for (i = v; i > 0; i = i - 1, R0 = R0 + ovs, R1 = R1 + ovs, Cr = Cr + ivs, Ci = Ci + ivs, MAKE_VOLATILE_STRIDE(52, rs), MAKE_VOLATILE_STRIDE(52, csr), MAKE_VOLATILE_STRIDE(52, csi)) {
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cannam@167
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68 E TG, TU, TN, T16, TJ, TV, T1, Tp, Tc, Td, Tg, Tj, Tk, Tm, Tn;
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cannam@167
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69 E To;
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cannam@167
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70 {
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cannam@167
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71 E Ts, Tv, Tw, TE, TB, TC, Tz, TD, TA, TF;
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cannam@167
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72 {
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cannam@167
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73 E Tt, Tu, Tx, Ty;
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cannam@167
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74 Ts = Ci[WS(csi, 5)];
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cannam@167
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75 Tt = Ci[WS(csi, 2)];
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cannam@167
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76 Tu = Ci[WS(csi, 6)];
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cannam@167
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77 Tv = Tt + Tu;
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cannam@167
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78 Tw = FNMS(KP500000000, Tv, Ts);
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cannam@167
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79 TE = Tu - Tt;
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cannam@167
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80 TB = Ci[WS(csi, 1)];
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cannam@167
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81 Tx = Ci[WS(csi, 3)];
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cannam@167
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82 Ty = Ci[WS(csi, 4)];
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cannam@167
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83 TC = Tx - Ty;
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cannam@167
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84 Tz = Tx + Ty;
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cannam@167
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85 TD = FNMS(KP500000000, TC, TB);
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cannam@167
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86 }
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cannam@167
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87 TA = FMA(KP866025403, Tz, Tw);
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cannam@167
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88 TF = FMA(KP866025403, TE, TD);
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cannam@167
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89 TG = FNMS(KP038632954, TF, TA);
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cannam@167
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90 TU = FMA(KP038632954, TA, TF);
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cannam@167
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91 {
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cannam@167
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92 E TL, TM, TH, TI;
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cannam@167
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93 TL = Ts + Tv;
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cannam@167
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94 TM = TB + TC;
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cannam@167
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95 TN = FMA(KP302775637, TM, TL);
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cannam@167
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96 T16 = FNMS(KP302775637, TL, TM);
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cannam@167
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97 TH = FNMS(KP866025403, Tz, Tw);
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cannam@167
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98 TI = FNMS(KP866025403, TE, TD);
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cannam@167
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99 TJ = FNMS(KP612264650, TI, TH);
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cannam@167
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100 TV = FMA(KP612264650, TH, TI);
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cannam@167
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101 }
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cannam@167
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102 }
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cannam@167
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103 {
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cannam@167
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104 E Tb, Ti, Tf, T6, Th, Te;
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cannam@167
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105 T1 = Cr[0];
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cannam@167
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106 {
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cannam@167
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107 E T7, T8, T9, Ta;
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cannam@167
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108 T7 = Cr[WS(csr, 5)];
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cannam@167
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109 T8 = Cr[WS(csr, 2)];
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cannam@167
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110 T9 = Cr[WS(csr, 6)];
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cannam@167
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111 Ta = T8 + T9;
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cannam@167
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112 Tb = T7 + Ta;
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cannam@167
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113 Ti = FMS(KP500000000, Ta, T7);
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cannam@167
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114 Tf = T8 - T9;
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cannam@167
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115 }
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cannam@167
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116 {
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cannam@167
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117 E T2, T3, T4, T5;
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cannam@167
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118 T2 = Cr[WS(csr, 1)];
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cannam@167
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119 T3 = Cr[WS(csr, 3)];
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cannam@167
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120 T4 = Cr[WS(csr, 4)];
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cannam@167
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121 T5 = T3 + T4;
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cannam@167
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122 T6 = T2 + T5;
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cannam@167
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123 Th = FNMS(KP500000000, T5, T2);
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cannam@167
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124 Te = T3 - T4;
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cannam@167
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125 }
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cannam@167
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126 Tp = T6 - Tb;
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cannam@167
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127 Tc = T6 + Tb;
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cannam@167
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128 Td = FNMS(KP166666666, Tc, T1);
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cannam@167
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129 Tg = Te + Tf;
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cannam@167
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130 Tj = Th - Ti;
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cannam@167
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131 Tk = FMA(KP301479260, Tj, Tg);
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cannam@167
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132 Tm = Th + Ti;
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cannam@167
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133 Tn = Te - Tf;
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cannam@167
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134 To = FNMS(KP514918778, Tn, Tm);
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cannam@167
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135 }
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cannam@167
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136 R0[0] = FMA(KP2_000000000, Tc, T1);
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cannam@167
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137 {
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cannam@167
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138 E TW, T14, TO, TS, T18, T1e, TR, T13, Tr, T1d, TZ, T19;
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cannam@167
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139 {
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cannam@167
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140 E TK, T17, TP, TQ;
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cannam@167
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141 TW = FMA(KP853480001, TV, TU);
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cannam@167
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142 T14 = FMA(KP853480001, TJ, TG);
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cannam@167
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143 TK = FNMS(KP853480001, TJ, TG);
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cannam@167
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144 TO = FMA(KP957805992, TN, TK);
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cannam@167
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145 TS = FNMS(KP522026385, TK, TN);
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cannam@167
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146 T17 = FNMS(KP853480001, TV, TU);
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cannam@167
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147 T18 = FNMS(KP522026385, T17, T16);
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cannam@167
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148 T1e = FMA(KP957805992, T16, T17);
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cannam@167
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149 TP = FNMS(KP503537032, Tk, Td);
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cannam@167
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150 TQ = FNMS(KP859542535, To, Tp);
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cannam@167
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151 TR = FMA(KP600925212, TQ, TP);
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cannam@167
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152 T13 = FNMS(KP600925212, TQ, TP);
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cannam@167
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153 {
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cannam@167
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154 E Tl, Tq, TX, TY;
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cannam@167
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155 Tl = FMA(KP1_007074065, Tk, Td);
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cannam@167
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156 Tq = FMA(KP581704778, Tp, To);
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cannam@167
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157 Tr = FMA(KP1_033041561, Tq, Tl);
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cannam@167
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158 T1d = FNMS(KP1_033041561, Tq, Tl);
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cannam@167
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159 TX = FNMS(KP226109445, Tg, Tj);
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cannam@167
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160 TY = FMA(KP686558370, Tm, Tn);
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cannam@167
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161 TZ = FNMS(KP769338817, TY, TX);
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cannam@167
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162 T19 = FMA(KP769338817, TY, TX);
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cannam@167
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163 }
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cannam@167
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164 }
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cannam@167
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165 R1[0] = FNMS(KP1_200954543, TO, Tr);
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cannam@167
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166 R1[WS(rs, 2)] = FNMS(KP1_200954543, T1e, T1d);
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cannam@167
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167 R0[WS(rs, 4)] = FMA(KP1_200954543, T1e, T1d);
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cannam@167
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168 R0[WS(rs, 6)] = FMA(KP1_200954543, TO, Tr);
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cannam@167
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169 {
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cannam@167
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170 E TT, T10, T15, T1a;
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cannam@167
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171 TT = FNMS(KP1_150281458, TS, TR);
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cannam@167
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172 T10 = FNMS(KP968287244, TZ, TW);
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cannam@167
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173 R1[WS(rs, 1)] = FNMS(KP1_040057143, T10, TT);
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cannam@167
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174 R1[WS(rs, 4)] = FMA(KP1_040057143, T10, TT);
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cannam@167
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175 T15 = FMA(KP1_040057143, T14, T13);
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cannam@167
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176 T1a = FNMS(KP875502302, T19, T18);
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cannam@167
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177 R0[WS(rs, 1)] = FNMS(KP1_150281458, T1a, T15);
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cannam@167
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178 R1[WS(rs, 3)] = FMA(KP1_150281458, T1a, T15);
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cannam@167
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179 }
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cannam@167
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180 {
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cannam@167
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181 E T1b, T1c, T11, T12;
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cannam@167
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182 T1b = FNMS(KP1_040057143, T14, T13);
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cannam@167
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183 T1c = FMA(KP875502302, T19, T18);
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cannam@167
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184 R0[WS(rs, 3)] = FNMS(KP1_150281458, T1c, T1b);
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cannam@167
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185 R1[WS(rs, 5)] = FMA(KP1_150281458, T1c, T1b);
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cannam@167
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186 T11 = FMA(KP1_150281458, TS, TR);
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cannam@167
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187 T12 = FMA(KP968287244, TZ, TW);
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cannam@167
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188 R0[WS(rs, 2)] = FNMS(KP1_040057143, T12, T11);
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cannam@167
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189 R0[WS(rs, 5)] = FMA(KP1_040057143, T12, T11);
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cannam@167
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190 }
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cannam@167
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191 }
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cannam@167
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192 }
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cannam@167
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193 }
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cannam@167
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194 }
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cannam@167
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195
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cannam@167
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196 static const kr2c_desc desc = { 13, "r2cb_13", {18, 0, 58, 0}, &GENUS };
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cannam@167
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197
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cannam@167
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198 void X(codelet_r2cb_13) (planner *p) {
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cannam@167
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199 X(kr2c_register) (p, r2cb_13, &desc);
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cannam@167
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200 }
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cannam@167
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201
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cannam@167
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202 #else
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cannam@167
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203
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cannam@167
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204 /* Generated by: ../../../genfft/gen_r2cb.native -compact -variables 4 -pipeline-latency 4 -sign 1 -n 13 -name r2cb_13 -include rdft/scalar/r2cb.h */
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cannam@167
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205
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cannam@167
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206 /*
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cannam@167
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207 * This function contains 76 FP additions, 35 FP multiplications,
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cannam@167
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208 * (or, 56 additions, 15 multiplications, 20 fused multiply/add),
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cannam@167
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209 * 56 stack variables, 19 constants, and 26 memory accesses
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cannam@167
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210 */
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cannam@167
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211 #include "rdft/scalar/r2cb.h"
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cannam@167
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212
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cannam@167
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213 static void r2cb_13(R *R0, R *R1, R *Cr, R *Ci, stride rs, stride csr, stride csi, INT v, INT ivs, INT ovs)
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cannam@167
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214 {
|
cannam@167
|
215 DK(KP1_007074065, +1.007074065727533254493747707736933954186697125);
|
cannam@167
|
216 DK(KP227708958, +0.227708958111581597949308691735310621069285120);
|
cannam@167
|
217 DK(KP531932498, +0.531932498429674575175042127684371897596660533);
|
cannam@167
|
218 DK(KP774781170, +0.774781170935234584261351932853525703557550433);
|
cannam@167
|
219 DK(KP265966249, +0.265966249214837287587521063842185948798330267);
|
cannam@167
|
220 DK(KP516520780, +0.516520780623489722840901288569017135705033622);
|
cannam@167
|
221 DK(KP151805972, +0.151805972074387731966205794490207080712856746);
|
cannam@167
|
222 DK(KP503537032, +0.503537032863766627246873853868466977093348562);
|
cannam@167
|
223 DK(KP166666666, +0.166666666666666666666666666666666666666666667);
|
cannam@167
|
224 DK(KP600925212, +0.600925212577331548853203544578415991041882762);
|
cannam@167
|
225 DK(KP500000000, +0.500000000000000000000000000000000000000000000);
|
cannam@167
|
226 DK(KP256247671, +0.256247671582936600958684654061725059144125175);
|
cannam@167
|
227 DK(KP156891391, +0.156891391051584611046832726756003269660212636);
|
cannam@167
|
228 DK(KP348277202, +0.348277202304271810011321589858529485233929352);
|
cannam@167
|
229 DK(KP1_150281458, +1.150281458948006242736771094910906776922003215);
|
cannam@167
|
230 DK(KP300238635, +0.300238635966332641462884626667381504676006424);
|
cannam@167
|
231 DK(KP011599105, +0.011599105605768290721655456654083252189827041);
|
cannam@167
|
232 DK(KP1_732050807, +1.732050807568877293527446341505872366942805254);
|
cannam@167
|
233 DK(KP2_000000000, +2.000000000000000000000000000000000000000000000);
|
cannam@167
|
234 {
|
cannam@167
|
235 INT i;
|
cannam@167
|
236 for (i = v; i > 0; i = i - 1, R0 = R0 + ovs, R1 = R1 + ovs, Cr = Cr + ivs, Ci = Ci + ivs, MAKE_VOLATILE_STRIDE(52, rs), MAKE_VOLATILE_STRIDE(52, csr), MAKE_VOLATILE_STRIDE(52, csi)) {
|
cannam@167
|
237 E TG, TS, TR, T15, TJ, TT, T1, Tm, Tc, Td, Tg, Tj, Tk, Tn, To;
|
cannam@167
|
238 E Tp;
|
cannam@167
|
239 {
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cannam@167
|
240 E Ts, Tv, Tw, TE, TC, TB, Tz, TD, TA, TF;
|
cannam@167
|
241 {
|
cannam@167
|
242 E Tt, Tu, Tx, Ty;
|
cannam@167
|
243 Ts = Ci[WS(csi, 1)];
|
cannam@167
|
244 Tt = Ci[WS(csi, 3)];
|
cannam@167
|
245 Tu = Ci[WS(csi, 4)];
|
cannam@167
|
246 Tv = Tt - Tu;
|
cannam@167
|
247 Tw = FMS(KP2_000000000, Ts, Tv);
|
cannam@167
|
248 TE = KP1_732050807 * (Tt + Tu);
|
cannam@167
|
249 TC = Ci[WS(csi, 5)];
|
cannam@167
|
250 Tx = Ci[WS(csi, 6)];
|
cannam@167
|
251 Ty = Ci[WS(csi, 2)];
|
cannam@167
|
252 TB = Tx + Ty;
|
cannam@167
|
253 Tz = KP1_732050807 * (Tx - Ty);
|
cannam@167
|
254 TD = FNMS(KP2_000000000, TC, TB);
|
cannam@167
|
255 }
|
cannam@167
|
256 TA = Tw + Tz;
|
cannam@167
|
257 TF = TD - TE;
|
cannam@167
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258 TG = FMA(KP011599105, TA, KP300238635 * TF);
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cannam@167
|
259 TS = FNMS(KP011599105, TF, KP300238635 * TA);
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cannam@167
|
260 {
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cannam@167
|
261 E TP, TQ, TH, TI;
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cannam@167
|
262 TP = Ts + Tv;
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cannam@167
|
263 TQ = TB + TC;
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cannam@167
|
264 TR = FNMS(KP348277202, TQ, KP1_150281458 * TP);
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cannam@167
|
265 T15 = FMA(KP348277202, TP, KP1_150281458 * TQ);
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cannam@167
|
266 TH = Tw - Tz;
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cannam@167
|
267 TI = TE + TD;
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cannam@167
|
268 TJ = FMA(KP156891391, TH, KP256247671 * TI);
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cannam@167
|
269 TT = FNMS(KP256247671, TH, KP156891391 * TI);
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cannam@167
|
270 }
|
cannam@167
|
271 }
|
cannam@167
|
272 {
|
cannam@167
|
273 E Tb, Ti, Tf, T6, Th, Te;
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cannam@167
|
274 T1 = Cr[0];
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cannam@167
|
275 {
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cannam@167
|
276 E T7, T8, T9, Ta;
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cannam@167
|
277 T7 = Cr[WS(csr, 5)];
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cannam@167
|
278 T8 = Cr[WS(csr, 2)];
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cannam@167
|
279 T9 = Cr[WS(csr, 6)];
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cannam@167
|
280 Ta = T8 + T9;
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cannam@167
|
281 Tb = T7 + Ta;
|
cannam@167
|
282 Ti = FNMS(KP500000000, Ta, T7);
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cannam@167
|
283 Tf = T8 - T9;
|
cannam@167
|
284 }
|
cannam@167
|
285 {
|
cannam@167
|
286 E T2, T3, T4, T5;
|
cannam@167
|
287 T2 = Cr[WS(csr, 1)];
|
cannam@167
|
288 T3 = Cr[WS(csr, 3)];
|
cannam@167
|
289 T4 = Cr[WS(csr, 4)];
|
cannam@167
|
290 T5 = T3 + T4;
|
cannam@167
|
291 T6 = T2 + T5;
|
cannam@167
|
292 Th = FNMS(KP500000000, T5, T2);
|
cannam@167
|
293 Te = T3 - T4;
|
cannam@167
|
294 }
|
cannam@167
|
295 Tm = KP600925212 * (T6 - Tb);
|
cannam@167
|
296 Tc = T6 + Tb;
|
cannam@167
|
297 Td = FNMS(KP166666666, Tc, T1);
|
cannam@167
|
298 Tg = Te + Tf;
|
cannam@167
|
299 Tj = Th + Ti;
|
cannam@167
|
300 Tk = FMA(KP503537032, Tg, KP151805972 * Tj);
|
cannam@167
|
301 Tn = Th - Ti;
|
cannam@167
|
302 To = Te - Tf;
|
cannam@167
|
303 Tp = FNMS(KP265966249, To, KP516520780 * Tn);
|
cannam@167
|
304 }
|
cannam@167
|
305 R0[0] = FMA(KP2_000000000, Tc, T1);
|
cannam@167
|
306 {
|
cannam@167
|
307 E TK, T1b, TV, T12, T16, T18, TO, T1a, Tr, T17, T11, T13;
|
cannam@167
|
308 {
|
cannam@167
|
309 E TU, T14, TM, TN;
|
cannam@167
|
310 TK = KP1_732050807 * (TG + TJ);
|
cannam@167
|
311 T1b = KP1_732050807 * (TS - TT);
|
cannam@167
|
312 TU = TS + TT;
|
cannam@167
|
313 TV = TR - TU;
|
cannam@167
|
314 T12 = FMA(KP2_000000000, TU, TR);
|
cannam@167
|
315 T14 = TG - TJ;
|
cannam@167
|
316 T16 = FMS(KP2_000000000, T14, T15);
|
cannam@167
|
317 T18 = T14 + T15;
|
cannam@167
|
318 TM = FMA(KP774781170, To, KP531932498 * Tn);
|
cannam@167
|
319 TN = FNMS(KP1_007074065, Tj, KP227708958 * Tg);
|
cannam@167
|
320 TO = TM - TN;
|
cannam@167
|
321 T1a = TM + TN;
|
cannam@167
|
322 {
|
cannam@167
|
323 E Tl, Tq, TZ, T10;
|
cannam@167
|
324 Tl = Td - Tk;
|
cannam@167
|
325 Tq = Tm - Tp;
|
cannam@167
|
326 Tr = Tl - Tq;
|
cannam@167
|
327 T17 = Tq + Tl;
|
cannam@167
|
328 TZ = FMA(KP2_000000000, Tk, Td);
|
cannam@167
|
329 T10 = FMA(KP2_000000000, Tp, Tm);
|
cannam@167
|
330 T11 = TZ - T10;
|
cannam@167
|
331 T13 = T10 + TZ;
|
cannam@167
|
332 }
|
cannam@167
|
333 }
|
cannam@167
|
334 R1[WS(rs, 2)] = T11 - T12;
|
cannam@167
|
335 R0[WS(rs, 6)] = T13 - T16;
|
cannam@167
|
336 R1[0] = T13 + T16;
|
cannam@167
|
337 R0[WS(rs, 4)] = T11 + T12;
|
cannam@167
|
338 {
|
cannam@167
|
339 E TL, TW, T19, T1c;
|
cannam@167
|
340 TL = Tr - TK;
|
cannam@167
|
341 TW = TO - TV;
|
cannam@167
|
342 R1[WS(rs, 3)] = TL - TW;
|
cannam@167
|
343 R0[WS(rs, 1)] = TL + TW;
|
cannam@167
|
344 T19 = T17 - T18;
|
cannam@167
|
345 T1c = T1a + T1b;
|
cannam@167
|
346 R1[WS(rs, 1)] = T19 - T1c;
|
cannam@167
|
347 R1[WS(rs, 4)] = T1c + T19;
|
cannam@167
|
348 }
|
cannam@167
|
349 {
|
cannam@167
|
350 E T1d, T1e, TX, TY;
|
cannam@167
|
351 T1d = T1a - T1b;
|
cannam@167
|
352 T1e = T17 + T18;
|
cannam@167
|
353 R0[WS(rs, 2)] = T1d + T1e;
|
cannam@167
|
354 R0[WS(rs, 5)] = T1e - T1d;
|
cannam@167
|
355 TX = Tr + TK;
|
cannam@167
|
356 TY = TO + TV;
|
cannam@167
|
357 R0[WS(rs, 3)] = TX - TY;
|
cannam@167
|
358 R1[WS(rs, 5)] = TX + TY;
|
cannam@167
|
359 }
|
cannam@167
|
360 }
|
cannam@167
|
361 }
|
cannam@167
|
362 }
|
cannam@167
|
363 }
|
cannam@167
|
364
|
cannam@167
|
365 static const kr2c_desc desc = { 13, "r2cb_13", {56, 15, 20, 0}, &GENUS };
|
cannam@167
|
366
|
cannam@167
|
367 void X(codelet_r2cb_13) (planner *p) {
|
cannam@167
|
368 X(kr2c_register) (p, r2cb_13, &desc);
|
cannam@167
|
369 }
|
cannam@167
|
370
|
cannam@167
|
371 #endif
|