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1 /*
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2 * Copyright (c) 2003, 2007-11 Matteo Frigo
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3 * Copyright (c) 2003, 2007-11 Massachusetts Institute of Technology
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4 *
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5 * This program is free software; you can redistribute it and/or modify
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6 * it under the terms of the GNU General Public License as published by
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7 * the Free Software Foundation; either version 2 of the License, or
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8 * (at your option) any later version.
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9 *
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10 * This program is distributed in the hope that it will be useful,
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11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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13 * GNU General Public License for more details.
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14 *
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15 * You should have received a copy of the GNU General Public License
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16 * along with this program; if not, write to the Free Software
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17 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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18 *
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19 */
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20
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21 /* This file was automatically generated --- DO NOT EDIT */
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22 /* Generated on Sun Nov 25 07:35:44 EST 2012 */
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23
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24 #include "codelet-dft.h"
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25
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26 #ifdef HAVE_FMA
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27
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28 /* Generated by: ../../../genfft/gen_notw.native -fma -reorder-insns -schedule-for-pipeline -compact -variables 4 -pipeline-latency 4 -n 16 -name n1_16 -include n.h */
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29
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30 /*
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31 * This function contains 144 FP additions, 40 FP multiplications,
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32 * (or, 104 additions, 0 multiplications, 40 fused multiply/add),
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33 * 82 stack variables, 3 constants, and 64 memory accesses
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34 */
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35 #include "n.h"
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36
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37 static void n1_16(const R *ri, const R *ii, R *ro, R *io, stride is, stride os, INT v, INT ivs, INT ovs)
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38 {
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39 DK(KP923879532, +0.923879532511286756128183189396788286822416626);
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40 DK(KP414213562, +0.414213562373095048801688724209698078569671875);
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41 DK(KP707106781, +0.707106781186547524400844362104849039284835938);
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42 {
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43 INT i;
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44 for (i = v; i > 0; i = i - 1, ri = ri + ivs, ii = ii + ivs, ro = ro + ovs, io = io + ovs, MAKE_VOLATILE_STRIDE(64, is), MAKE_VOLATILE_STRIDE(64, os)) {
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45 E T1z, T1L, T1M, T1N, T1P, T1J, T1K, T1G, T1O, T1Q;
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46 {
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47 E T1l, T1H, T1R, T7, T1x, TN, TC, T25, T1E, T1b, T1Z, Tt, T2h, T22, T1D;
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48 E T1g, T1n, TQ, Te, T26, TT, T1m, TJ, T1S, Tj, T11, Ti, T1V, TZ, Tk;
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49 E T12, T13;
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50 {
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51 E Tq, T1c, Tp, T20, T1a, Tr, T1d, T1e;
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52 {
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53 E T4, TL, T3, T1k, Ty, T5, Tz, TA;
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54 {
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55 E T1, T2, Tw, Tx;
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56 T1 = ri[0];
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57 T2 = ri[WS(is, 8)];
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58 Tw = ii[0];
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59 Tx = ii[WS(is, 8)];
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60 T4 = ri[WS(is, 4)];
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61 TL = T1 - T2;
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62 T3 = T1 + T2;
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63 T1k = Tw - Tx;
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64 Ty = Tw + Tx;
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65 T5 = ri[WS(is, 12)];
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66 Tz = ii[WS(is, 4)];
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67 TA = ii[WS(is, 12)];
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68 }
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69 {
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70 E Tn, To, T18, T19;
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71 Tn = ri[WS(is, 15)];
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72 {
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73 E T1j, T6, TM, TB;
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74 T1j = T4 - T5;
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75 T6 = T4 + T5;
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76 TM = Tz - TA;
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77 TB = Tz + TA;
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78 T1l = T1j + T1k;
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79 T1H = T1k - T1j;
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80 T1R = T3 - T6;
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81 T7 = T3 + T6;
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82 T1x = TL + TM;
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83 TN = TL - TM;
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84 TC = Ty + TB;
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85 T25 = Ty - TB;
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86 To = ri[WS(is, 7)];
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87 }
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88 T18 = ii[WS(is, 15)];
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89 T19 = ii[WS(is, 7)];
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90 Tq = ri[WS(is, 3)];
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91 T1c = Tn - To;
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92 Tp = Tn + To;
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93 T20 = T18 + T19;
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94 T1a = T18 - T19;
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95 Tr = ri[WS(is, 11)];
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96 T1d = ii[WS(is, 3)];
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97 T1e = ii[WS(is, 11)];
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98 }
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99 }
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100 {
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101 E Tb, TP, Ta, TO, TF, Tc, TG, TH;
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102 {
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103 E T8, T9, TD, TE;
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104 T8 = ri[WS(is, 2)];
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105 {
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106 E T17, Ts, T21, T1f;
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107 T17 = Tq - Tr;
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108 Ts = Tq + Tr;
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109 T21 = T1d + T1e;
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110 T1f = T1d - T1e;
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111 T1E = T1a - T17;
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112 T1b = T17 + T1a;
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113 T1Z = Tp - Ts;
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114 Tt = Tp + Ts;
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115 T2h = T20 + T21;
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116 T22 = T20 - T21;
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117 T1D = T1c + T1f;
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118 T1g = T1c - T1f;
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119 T9 = ri[WS(is, 10)];
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120 }
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121 TD = ii[WS(is, 2)];
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122 TE = ii[WS(is, 10)];
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123 Tb = ri[WS(is, 14)];
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124 TP = T8 - T9;
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125 Ta = T8 + T9;
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126 TO = TD - TE;
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127 TF = TD + TE;
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128 Tc = ri[WS(is, 6)];
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129 TG = ii[WS(is, 14)];
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130 TH = ii[WS(is, 6)];
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131 }
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132 {
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133 E TR, Td, TS, TI;
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134 T1n = TP + TO;
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135 TQ = TO - TP;
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136 TR = Tb - Tc;
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137 Td = Tb + Tc;
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138 TS = TG - TH;
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139 TI = TG + TH;
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140 Te = Ta + Td;
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141 T26 = Td - Ta;
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142 TT = TR + TS;
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143 T1m = TR - TS;
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144 TJ = TF + TI;
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145 T1S = TF - TI;
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146 }
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147 }
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148 {
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149 E Tg, Th, TX, TY;
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150 Tg = ri[WS(is, 1)];
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151 Th = ri[WS(is, 9)];
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152 TX = ii[WS(is, 1)];
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153 TY = ii[WS(is, 9)];
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154 Tj = ri[WS(is, 5)];
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155 T11 = Tg - Th;
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156 Ti = Tg + Th;
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157 T1V = TX + TY;
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158 TZ = TX - TY;
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159 Tk = ri[WS(is, 13)];
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160 T12 = ii[WS(is, 5)];
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161 T13 = ii[WS(is, 13)];
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162 }
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163 }
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164 {
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165 E T2f, T1B, T10, T1U, T1X, T1A, T15, Tv, TK, T2i;
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166 {
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167 E Tf, Tu, T2j, T2k, T2g;
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168 T2f = T7 - Te;
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169 Tf = T7 + Te;
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170 {
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171 E TW, Tl, T1W, T14, Tm;
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172 TW = Tj - Tk;
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173 Tl = Tj + Tk;
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174 T1W = T12 + T13;
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175 T14 = T12 - T13;
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176 T1B = TZ - TW;
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177 T10 = TW + TZ;
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178 T1U = Ti - Tl;
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179 Tm = Ti + Tl;
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180 T2g = T1V + T1W;
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181 T1X = T1V - T1W;
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182 T1A = T11 + T14;
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183 T15 = T11 - T14;
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184 Tu = Tm + Tt;
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185 Tv = Tt - Tm;
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186 }
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187 TK = TC - TJ;
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188 T2j = TC + TJ;
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189 T2k = T2g + T2h;
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190 T2i = T2g - T2h;
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191 ro[0] = Tf + Tu;
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192 ro[WS(os, 8)] = Tf - Tu;
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193 io[0] = T2j + T2k;
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194 io[WS(os, 8)] = T2j - T2k;
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195 }
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196 {
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197 E T29, T1T, T27, T2d, T2a, T2b, T28, T24, T1Y, T23;
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198 T29 = T1R - T1S;
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199 T1T = T1R + T1S;
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200 io[WS(os, 12)] = TK - Tv;
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201 io[WS(os, 4)] = Tv + TK;
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202 ro[WS(os, 4)] = T2f + T2i;
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203 ro[WS(os, 12)] = T2f - T2i;
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204 T27 = T25 - T26;
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205 T2d = T26 + T25;
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206 T2a = T1X - T1U;
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207 T1Y = T1U + T1X;
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208 T23 = T1Z - T22;
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209 T2b = T1Z + T22;
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210 T28 = T23 - T1Y;
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211 T24 = T1Y + T23;
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212 {
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213 E T1I, TV, T1v, T1y, T1t, T1s, T1r, T1p, T1q, T1i;
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214 {
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215 E T1o, T2e, T2c, TU, T16, T1h;
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216 T1I = TQ + TT;
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217 TU = TQ - TT;
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218 io[WS(os, 14)] = FNMS(KP707106781, T28, T27);
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219 io[WS(os, 6)] = FMA(KP707106781, T28, T27);
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220 ro[WS(os, 2)] = FMA(KP707106781, T24, T1T);
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221 ro[WS(os, 10)] = FNMS(KP707106781, T24, T1T);
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222 T2e = T2a + T2b;
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223 T2c = T2a - T2b;
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224 TV = FMA(KP707106781, TU, TN);
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225 T1v = FNMS(KP707106781, TU, TN);
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226 io[WS(os, 10)] = FNMS(KP707106781, T2e, T2d);
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227 io[WS(os, 2)] = FMA(KP707106781, T2e, T2d);
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228 ro[WS(os, 6)] = FMA(KP707106781, T2c, T29);
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229 ro[WS(os, 14)] = FNMS(KP707106781, T2c, T29);
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230 T1o = T1m - T1n;
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231 T1y = T1n + T1m;
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232 T1t = FNMS(KP414213562, T10, T15);
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233 T16 = FMA(KP414213562, T15, T10);
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234 T1h = FNMS(KP414213562, T1g, T1b);
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235 T1s = FMA(KP414213562, T1b, T1g);
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236 T1r = FMA(KP707106781, T1o, T1l);
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237 T1p = FNMS(KP707106781, T1o, T1l);
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238 T1q = T16 + T1h;
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239 T1i = T16 - T1h;
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240 }
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241 {
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242 E T1w, T1u, T1C, T1F;
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243 io[WS(os, 15)] = FMA(KP923879532, T1q, T1p);
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244 io[WS(os, 7)] = FNMS(KP923879532, T1q, T1p);
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245 ro[WS(os, 3)] = FMA(KP923879532, T1i, TV);
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246 ro[WS(os, 11)] = FNMS(KP923879532, T1i, TV);
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247 T1w = T1t + T1s;
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248 T1u = T1s - T1t;
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249 T1z = FMA(KP707106781, T1y, T1x);
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250 T1L = FNMS(KP707106781, T1y, T1x);
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251 ro[WS(os, 15)] = FMA(KP923879532, T1w, T1v);
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252 ro[WS(os, 7)] = FNMS(KP923879532, T1w, T1v);
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253 io[WS(os, 3)] = FMA(KP923879532, T1u, T1r);
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254 io[WS(os, 11)] = FNMS(KP923879532, T1u, T1r);
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255 T1M = FNMS(KP414213562, T1A, T1B);
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256 T1C = FMA(KP414213562, T1B, T1A);
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257 T1F = FNMS(KP414213562, T1E, T1D);
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258 T1N = FMA(KP414213562, T1D, T1E);
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259 T1P = FMA(KP707106781, T1I, T1H);
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260 T1J = FNMS(KP707106781, T1I, T1H);
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261 T1K = T1F - T1C;
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262 T1G = T1C + T1F;
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263 }
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264 }
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265 }
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266 }
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267 }
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268 io[WS(os, 5)] = FMA(KP923879532, T1K, T1J);
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269 io[WS(os, 13)] = FNMS(KP923879532, T1K, T1J);
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270 ro[WS(os, 1)] = FMA(KP923879532, T1G, T1z);
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271 ro[WS(os, 9)] = FNMS(KP923879532, T1G, T1z);
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272 T1O = T1M - T1N;
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273 T1Q = T1M + T1N;
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274 io[WS(os, 1)] = FMA(KP923879532, T1Q, T1P);
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275 io[WS(os, 9)] = FNMS(KP923879532, T1Q, T1P);
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276 ro[WS(os, 5)] = FMA(KP923879532, T1O, T1L);
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277 ro[WS(os, 13)] = FNMS(KP923879532, T1O, T1L);
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278 }
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279 }
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280 }
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281
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282 static const kdft_desc desc = { 16, "n1_16", {104, 0, 40, 0}, &GENUS, 0, 0, 0, 0 };
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283
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284 void X(codelet_n1_16) (planner *p) {
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285 X(kdft_register) (p, n1_16, &desc);
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286 }
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287
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288 #else /* HAVE_FMA */
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289
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290 /* Generated by: ../../../genfft/gen_notw.native -compact -variables 4 -pipeline-latency 4 -n 16 -name n1_16 -include n.h */
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291
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292 /*
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293 * This function contains 144 FP additions, 24 FP multiplications,
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294 * (or, 136 additions, 16 multiplications, 8 fused multiply/add),
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295 * 50 stack variables, 3 constants, and 64 memory accesses
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296 */
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297 #include "n.h"
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298
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299 static void n1_16(const R *ri, const R *ii, R *ro, R *io, stride is, stride os, INT v, INT ivs, INT ovs)
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300 {
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301 DK(KP382683432, +0.382683432365089771728459984030398866761344562);
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302 DK(KP923879532, +0.923879532511286756128183189396788286822416626);
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303 DK(KP707106781, +0.707106781186547524400844362104849039284835938);
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304 {
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305 INT i;
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306 for (i = v; i > 0; i = i - 1, ri = ri + ivs, ii = ii + ivs, ro = ro + ovs, io = io + ovs, MAKE_VOLATILE_STRIDE(64, is), MAKE_VOLATILE_STRIDE(64, os)) {
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307 E T7, T1R, T25, TC, TN, T1x, T1H, T1l, Tt, T22, T2h, T1b, T1g, T1E, T1Z;
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308 E T1D, Te, T1S, T26, TJ, TQ, T1m, T1n, TT, Tm, T1X, T2g, T10, T15, T1B;
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Chris@10
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309 E T1U, T1A;
|
Chris@10
|
310 {
|
Chris@10
|
311 E T3, TL, Ty, T1k, T6, T1j, TB, TM;
|
Chris@10
|
312 {
|
Chris@10
|
313 E T1, T2, Tw, Tx;
|
Chris@10
|
314 T1 = ri[0];
|
Chris@10
|
315 T2 = ri[WS(is, 8)];
|
Chris@10
|
316 T3 = T1 + T2;
|
Chris@10
|
317 TL = T1 - T2;
|
Chris@10
|
318 Tw = ii[0];
|
Chris@10
|
319 Tx = ii[WS(is, 8)];
|
Chris@10
|
320 Ty = Tw + Tx;
|
Chris@10
|
321 T1k = Tw - Tx;
|
Chris@10
|
322 }
|
Chris@10
|
323 {
|
Chris@10
|
324 E T4, T5, Tz, TA;
|
Chris@10
|
325 T4 = ri[WS(is, 4)];
|
Chris@10
|
326 T5 = ri[WS(is, 12)];
|
Chris@10
|
327 T6 = T4 + T5;
|
Chris@10
|
328 T1j = T4 - T5;
|
Chris@10
|
329 Tz = ii[WS(is, 4)];
|
Chris@10
|
330 TA = ii[WS(is, 12)];
|
Chris@10
|
331 TB = Tz + TA;
|
Chris@10
|
332 TM = Tz - TA;
|
Chris@10
|
333 }
|
Chris@10
|
334 T7 = T3 + T6;
|
Chris@10
|
335 T1R = T3 - T6;
|
Chris@10
|
336 T25 = Ty - TB;
|
Chris@10
|
337 TC = Ty + TB;
|
Chris@10
|
338 TN = TL - TM;
|
Chris@10
|
339 T1x = TL + TM;
|
Chris@10
|
340 T1H = T1k - T1j;
|
Chris@10
|
341 T1l = T1j + T1k;
|
Chris@10
|
342 }
|
Chris@10
|
343 {
|
Chris@10
|
344 E Tp, T17, T1f, T20, Ts, T1c, T1a, T21;
|
Chris@10
|
345 {
|
Chris@10
|
346 E Tn, To, T1d, T1e;
|
Chris@10
|
347 Tn = ri[WS(is, 15)];
|
Chris@10
|
348 To = ri[WS(is, 7)];
|
Chris@10
|
349 Tp = Tn + To;
|
Chris@10
|
350 T17 = Tn - To;
|
Chris@10
|
351 T1d = ii[WS(is, 15)];
|
Chris@10
|
352 T1e = ii[WS(is, 7)];
|
Chris@10
|
353 T1f = T1d - T1e;
|
Chris@10
|
354 T20 = T1d + T1e;
|
Chris@10
|
355 }
|
Chris@10
|
356 {
|
Chris@10
|
357 E Tq, Tr, T18, T19;
|
Chris@10
|
358 Tq = ri[WS(is, 3)];
|
Chris@10
|
359 Tr = ri[WS(is, 11)];
|
Chris@10
|
360 Ts = Tq + Tr;
|
Chris@10
|
361 T1c = Tq - Tr;
|
Chris@10
|
362 T18 = ii[WS(is, 3)];
|
Chris@10
|
363 T19 = ii[WS(is, 11)];
|
Chris@10
|
364 T1a = T18 - T19;
|
Chris@10
|
365 T21 = T18 + T19;
|
Chris@10
|
366 }
|
Chris@10
|
367 Tt = Tp + Ts;
|
Chris@10
|
368 T22 = T20 - T21;
|
Chris@10
|
369 T2h = T20 + T21;
|
Chris@10
|
370 T1b = T17 - T1a;
|
Chris@10
|
371 T1g = T1c + T1f;
|
Chris@10
|
372 T1E = T1f - T1c;
|
Chris@10
|
373 T1Z = Tp - Ts;
|
Chris@10
|
374 T1D = T17 + T1a;
|
Chris@10
|
375 }
|
Chris@10
|
376 {
|
Chris@10
|
377 E Ta, TP, TF, TO, Td, TR, TI, TS;
|
Chris@10
|
378 {
|
Chris@10
|
379 E T8, T9, TD, TE;
|
Chris@10
|
380 T8 = ri[WS(is, 2)];
|
Chris@10
|
381 T9 = ri[WS(is, 10)];
|
Chris@10
|
382 Ta = T8 + T9;
|
Chris@10
|
383 TP = T8 - T9;
|
Chris@10
|
384 TD = ii[WS(is, 2)];
|
Chris@10
|
385 TE = ii[WS(is, 10)];
|
Chris@10
|
386 TF = TD + TE;
|
Chris@10
|
387 TO = TD - TE;
|
Chris@10
|
388 }
|
Chris@10
|
389 {
|
Chris@10
|
390 E Tb, Tc, TG, TH;
|
Chris@10
|
391 Tb = ri[WS(is, 14)];
|
Chris@10
|
392 Tc = ri[WS(is, 6)];
|
Chris@10
|
393 Td = Tb + Tc;
|
Chris@10
|
394 TR = Tb - Tc;
|
Chris@10
|
395 TG = ii[WS(is, 14)];
|
Chris@10
|
396 TH = ii[WS(is, 6)];
|
Chris@10
|
397 TI = TG + TH;
|
Chris@10
|
398 TS = TG - TH;
|
Chris@10
|
399 }
|
Chris@10
|
400 Te = Ta + Td;
|
Chris@10
|
401 T1S = TF - TI;
|
Chris@10
|
402 T26 = Td - Ta;
|
Chris@10
|
403 TJ = TF + TI;
|
Chris@10
|
404 TQ = TO - TP;
|
Chris@10
|
405 T1m = TR - TS;
|
Chris@10
|
406 T1n = TP + TO;
|
Chris@10
|
407 TT = TR + TS;
|
Chris@10
|
408 }
|
Chris@10
|
409 {
|
Chris@10
|
410 E Ti, T11, TZ, T1V, Tl, TW, T14, T1W;
|
Chris@10
|
411 {
|
Chris@10
|
412 E Tg, Th, TX, TY;
|
Chris@10
|
413 Tg = ri[WS(is, 1)];
|
Chris@10
|
414 Th = ri[WS(is, 9)];
|
Chris@10
|
415 Ti = Tg + Th;
|
Chris@10
|
416 T11 = Tg - Th;
|
Chris@10
|
417 TX = ii[WS(is, 1)];
|
Chris@10
|
418 TY = ii[WS(is, 9)];
|
Chris@10
|
419 TZ = TX - TY;
|
Chris@10
|
420 T1V = TX + TY;
|
Chris@10
|
421 }
|
Chris@10
|
422 {
|
Chris@10
|
423 E Tj, Tk, T12, T13;
|
Chris@10
|
424 Tj = ri[WS(is, 5)];
|
Chris@10
|
425 Tk = ri[WS(is, 13)];
|
Chris@10
|
426 Tl = Tj + Tk;
|
Chris@10
|
427 TW = Tj - Tk;
|
Chris@10
|
428 T12 = ii[WS(is, 5)];
|
Chris@10
|
429 T13 = ii[WS(is, 13)];
|
Chris@10
|
430 T14 = T12 - T13;
|
Chris@10
|
431 T1W = T12 + T13;
|
Chris@10
|
432 }
|
Chris@10
|
433 Tm = Ti + Tl;
|
Chris@10
|
434 T1X = T1V - T1W;
|
Chris@10
|
435 T2g = T1V + T1W;
|
Chris@10
|
436 T10 = TW + TZ;
|
Chris@10
|
437 T15 = T11 - T14;
|
Chris@10
|
438 T1B = T11 + T14;
|
Chris@10
|
439 T1U = Ti - Tl;
|
Chris@10
|
440 T1A = TZ - TW;
|
Chris@10
|
441 }
|
Chris@10
|
442 {
|
Chris@10
|
443 E Tf, Tu, T2j, T2k;
|
Chris@10
|
444 Tf = T7 + Te;
|
Chris@10
|
445 Tu = Tm + Tt;
|
Chris@10
|
446 ro[WS(os, 8)] = Tf - Tu;
|
Chris@10
|
447 ro[0] = Tf + Tu;
|
Chris@10
|
448 T2j = TC + TJ;
|
Chris@10
|
449 T2k = T2g + T2h;
|
Chris@10
|
450 io[WS(os, 8)] = T2j - T2k;
|
Chris@10
|
451 io[0] = T2j + T2k;
|
Chris@10
|
452 }
|
Chris@10
|
453 {
|
Chris@10
|
454 E Tv, TK, T2f, T2i;
|
Chris@10
|
455 Tv = Tt - Tm;
|
Chris@10
|
456 TK = TC - TJ;
|
Chris@10
|
457 io[WS(os, 4)] = Tv + TK;
|
Chris@10
|
458 io[WS(os, 12)] = TK - Tv;
|
Chris@10
|
459 T2f = T7 - Te;
|
Chris@10
|
460 T2i = T2g - T2h;
|
Chris@10
|
461 ro[WS(os, 12)] = T2f - T2i;
|
Chris@10
|
462 ro[WS(os, 4)] = T2f + T2i;
|
Chris@10
|
463 }
|
Chris@10
|
464 {
|
Chris@10
|
465 E T1T, T27, T24, T28, T1Y, T23;
|
Chris@10
|
466 T1T = T1R + T1S;
|
Chris@10
|
467 T27 = T25 - T26;
|
Chris@10
|
468 T1Y = T1U + T1X;
|
Chris@10
|
469 T23 = T1Z - T22;
|
Chris@10
|
470 T24 = KP707106781 * (T1Y + T23);
|
Chris@10
|
471 T28 = KP707106781 * (T23 - T1Y);
|
Chris@10
|
472 ro[WS(os, 10)] = T1T - T24;
|
Chris@10
|
473 io[WS(os, 6)] = T27 + T28;
|
Chris@10
|
474 ro[WS(os, 2)] = T1T + T24;
|
Chris@10
|
475 io[WS(os, 14)] = T27 - T28;
|
Chris@10
|
476 }
|
Chris@10
|
477 {
|
Chris@10
|
478 E T29, T2d, T2c, T2e, T2a, T2b;
|
Chris@10
|
479 T29 = T1R - T1S;
|
Chris@10
|
480 T2d = T26 + T25;
|
Chris@10
|
481 T2a = T1X - T1U;
|
Chris@10
|
482 T2b = T1Z + T22;
|
Chris@10
|
483 T2c = KP707106781 * (T2a - T2b);
|
Chris@10
|
484 T2e = KP707106781 * (T2a + T2b);
|
Chris@10
|
485 ro[WS(os, 14)] = T29 - T2c;
|
Chris@10
|
486 io[WS(os, 2)] = T2d + T2e;
|
Chris@10
|
487 ro[WS(os, 6)] = T29 + T2c;
|
Chris@10
|
488 io[WS(os, 10)] = T2d - T2e;
|
Chris@10
|
489 }
|
Chris@10
|
490 {
|
Chris@10
|
491 E TV, T1r, T1p, T1v, T1i, T1q, T1u, T1w, TU, T1o;
|
Chris@10
|
492 TU = KP707106781 * (TQ - TT);
|
Chris@10
|
493 TV = TN + TU;
|
Chris@10
|
494 T1r = TN - TU;
|
Chris@10
|
495 T1o = KP707106781 * (T1m - T1n);
|
Chris@10
|
496 T1p = T1l - T1o;
|
Chris@10
|
497 T1v = T1l + T1o;
|
Chris@10
|
498 {
|
Chris@10
|
499 E T16, T1h, T1s, T1t;
|
Chris@10
|
500 T16 = FMA(KP923879532, T10, KP382683432 * T15);
|
Chris@10
|
501 T1h = FNMS(KP923879532, T1g, KP382683432 * T1b);
|
Chris@10
|
502 T1i = T16 + T1h;
|
Chris@10
|
503 T1q = T1h - T16;
|
Chris@10
|
504 T1s = FNMS(KP923879532, T15, KP382683432 * T10);
|
Chris@10
|
505 T1t = FMA(KP382683432, T1g, KP923879532 * T1b);
|
Chris@10
|
506 T1u = T1s - T1t;
|
Chris@10
|
507 T1w = T1s + T1t;
|
Chris@10
|
508 }
|
Chris@10
|
509 ro[WS(os, 11)] = TV - T1i;
|
Chris@10
|
510 io[WS(os, 11)] = T1v - T1w;
|
Chris@10
|
511 ro[WS(os, 3)] = TV + T1i;
|
Chris@10
|
512 io[WS(os, 3)] = T1v + T1w;
|
Chris@10
|
513 io[WS(os, 15)] = T1p - T1q;
|
Chris@10
|
514 ro[WS(os, 15)] = T1r - T1u;
|
Chris@10
|
515 io[WS(os, 7)] = T1p + T1q;
|
Chris@10
|
516 ro[WS(os, 7)] = T1r + T1u;
|
Chris@10
|
517 }
|
Chris@10
|
518 {
|
Chris@10
|
519 E T1z, T1L, T1J, T1P, T1G, T1K, T1O, T1Q, T1y, T1I;
|
Chris@10
|
520 T1y = KP707106781 * (T1n + T1m);
|
Chris@10
|
521 T1z = T1x + T1y;
|
Chris@10
|
522 T1L = T1x - T1y;
|
Chris@10
|
523 T1I = KP707106781 * (TQ + TT);
|
Chris@10
|
524 T1J = T1H - T1I;
|
Chris@10
|
525 T1P = T1H + T1I;
|
Chris@10
|
526 {
|
Chris@10
|
527 E T1C, T1F, T1M, T1N;
|
Chris@10
|
528 T1C = FMA(KP382683432, T1A, KP923879532 * T1B);
|
Chris@10
|
529 T1F = FNMS(KP382683432, T1E, KP923879532 * T1D);
|
Chris@10
|
530 T1G = T1C + T1F;
|
Chris@10
|
531 T1K = T1F - T1C;
|
Chris@10
|
532 T1M = FNMS(KP382683432, T1B, KP923879532 * T1A);
|
Chris@10
|
533 T1N = FMA(KP923879532, T1E, KP382683432 * T1D);
|
Chris@10
|
534 T1O = T1M - T1N;
|
Chris@10
|
535 T1Q = T1M + T1N;
|
Chris@10
|
536 }
|
Chris@10
|
537 ro[WS(os, 9)] = T1z - T1G;
|
Chris@10
|
538 io[WS(os, 9)] = T1P - T1Q;
|
Chris@10
|
539 ro[WS(os, 1)] = T1z + T1G;
|
Chris@10
|
540 io[WS(os, 1)] = T1P + T1Q;
|
Chris@10
|
541 io[WS(os, 13)] = T1J - T1K;
|
Chris@10
|
542 ro[WS(os, 13)] = T1L - T1O;
|
Chris@10
|
543 io[WS(os, 5)] = T1J + T1K;
|
Chris@10
|
544 ro[WS(os, 5)] = T1L + T1O;
|
Chris@10
|
545 }
|
Chris@10
|
546 }
|
Chris@10
|
547 }
|
Chris@10
|
548 }
|
Chris@10
|
549
|
Chris@10
|
550 static const kdft_desc desc = { 16, "n1_16", {136, 16, 8, 0}, &GENUS, 0, 0, 0, 0 };
|
Chris@10
|
551
|
Chris@10
|
552 void X(codelet_n1_16) (planner *p) {
|
Chris@10
|
553 X(kdft_register) (p, n1_16, &desc);
|
Chris@10
|
554 }
|
Chris@10
|
555
|
Chris@10
|
556 #endif /* HAVE_FMA */
|