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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
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22 /* plans for RDFT2 of rank >= 2 (multidimensional) */
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23
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24 #include "rdft.h"
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25 #include "dft.h"
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26
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27 typedef struct {
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28 solver super;
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29 int spltrnk;
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30 const int *buddies;
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31 int nbuddies;
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32 } S;
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33
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34 typedef struct {
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35 plan_dft super;
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36 plan *cldr, *cldc;
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37 const S *solver;
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38 } P;
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39
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40 static void apply_r2hc(const plan *ego_, R *r0, R *r1, R *cr, R *ci)
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41 {
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42 const P *ego = (const P *) ego_;
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43
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44 {
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45 plan_rdft2 *cldr = (plan_rdft2 *) ego->cldr;
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46 cldr->apply((plan *) cldr, r0, r1, cr, ci);
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47 }
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48
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49 {
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50 plan_dft *cldc = (plan_dft *) ego->cldc;
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51 cldc->apply((plan *) cldc, cr, ci, cr, ci);
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52 }
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53 }
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54
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55 static void apply_hc2r(const plan *ego_, R *r0, R *r1, R *cr, R *ci)
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56 {
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57 const P *ego = (const P *) ego_;
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58
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59 {
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60 plan_dft *cldc = (plan_dft *) ego->cldc;
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61 cldc->apply((plan *) cldc, ci, cr, ci, cr);
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62 }
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63
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64 {
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65 plan_rdft2 *cldr = (plan_rdft2 *) ego->cldr;
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66 cldr->apply((plan *) cldr, r0, r1, cr, ci);
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67 }
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68
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69 }
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70
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71 static void awake(plan *ego_, enum wakefulness wakefulness)
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72 {
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73 P *ego = (P *) ego_;
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74 X(plan_awake)(ego->cldr, wakefulness);
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75 X(plan_awake)(ego->cldc, wakefulness);
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76 }
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77
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78 static void destroy(plan *ego_)
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79 {
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80 P *ego = (P *) ego_;
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81 X(plan_destroy_internal)(ego->cldr);
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82 X(plan_destroy_internal)(ego->cldc);
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83 }
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84
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85 static void print(const plan *ego_, printer *p)
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86 {
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87 const P *ego = (const P *) ego_;
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88 const S *s = ego->solver;
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89 p->print(p, "(rdft2-rank>=2/%d%(%p%)%(%p%))",
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90 s->spltrnk, ego->cldr, ego->cldc);
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91 }
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92
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93 static int picksplit(const S *ego, const tensor *sz, int *rp)
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94 {
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95 A(sz->rnk > 1); /* cannot split rnk <= 1 */
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96 if (!X(pickdim)(ego->spltrnk, ego->buddies, ego->nbuddies, sz, 1, rp))
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97 return 0;
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98 *rp += 1; /* convert from dim. index to rank */
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99 if (*rp >= sz->rnk) /* split must reduce rank */
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100 return 0;
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101 return 1;
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102 }
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103
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104 static int applicable0(const solver *ego_, const problem *p_, int *rp,
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105 const planner *plnr)
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106 {
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107 const problem_rdft2 *p = (const problem_rdft2 *) p_;
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108 const S *ego = (const S *)ego_;
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109 return (1
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110 && FINITE_RNK(p->sz->rnk) && FINITE_RNK(p->vecsz->rnk)
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111
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112 /* FIXME: multidimensional R2HCII ? */
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113 && (p->kind == R2HC || p->kind == HC2R)
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114
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115 && p->sz->rnk >= 2
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116 && picksplit(ego, p->sz, rp)
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117 && (0
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118
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119 /* can work out-of-place, but HC2R destroys input */
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120 || (p->r0 != p->cr &&
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121 (p->kind == R2HC || !NO_DESTROY_INPUTP(plnr)))
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122
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123 /* FIXME: what are sufficient conditions for inplace? */
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124 || (p->r0 == p->cr))
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125 );
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126 }
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127
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128 /* TODO: revise this. */
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129 static int applicable(const solver *ego_, const problem *p_,
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130 const planner *plnr, int *rp)
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131 {
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132 const S *ego = (const S *)ego_;
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133
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134 if (!applicable0(ego_, p_, rp, plnr)) return 0;
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135
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136 if (NO_RANK_SPLITSP(plnr) && (ego->spltrnk != ego->buddies[0]))
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137 return 0;
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138
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139 if (NO_UGLYP(plnr)) {
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140 const problem_rdft2 *p = (const problem_rdft2 *) p_;
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141
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142 /* Heuristic: if the vector stride is greater than the transform
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143 size, don't use (prefer to do the vector loop first with a
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144 vrank-geq1 plan). */
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145 if (p->vecsz->rnk > 0 &&
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146 X(tensor_min_stride)(p->vecsz)
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147 > X(rdft2_tensor_max_index)(p->sz, p->kind))
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148 return 0;
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149 }
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150
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151 return 1;
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152 }
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153
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154 static plan *mkplan(const solver *ego_, const problem *p_, planner *plnr)
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155 {
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156 const S *ego = (const S *) ego_;
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157 const problem_rdft2 *p;
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158 P *pln;
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159 plan *cldr = 0, *cldc = 0;
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160 tensor *sz1, *sz2, *vecszi, *sz2i;
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161 int spltrnk;
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162 inplace_kind k;
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163 problem *cldp;
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164
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165 static const plan_adt padt = {
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166 X(rdft2_solve), awake, print, destroy
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167 };
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168
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169 if (!applicable(ego_, p_, plnr, &spltrnk))
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170 return (plan *) 0;
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171
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172 p = (const problem_rdft2 *) p_;
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173 X(tensor_split)(p->sz, &sz1, spltrnk, &sz2);
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174
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175 k = p->kind == R2HC ? INPLACE_OS : INPLACE_IS;
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176 vecszi = X(tensor_copy_inplace)(p->vecsz, k);
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177 sz2i = X(tensor_copy_inplace)(sz2, k);
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178
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179 /* complex data is ~half of real */
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180 sz2i->dims[sz2i->rnk - 1].n = sz2i->dims[sz2i->rnk - 1].n/2 + 1;
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181
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182 cldr = X(mkplan_d)(plnr,
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183 X(mkproblem_rdft2_d)(X(tensor_copy)(sz2),
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184 X(tensor_append)(p->vecsz, sz1),
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185 p->r0, p->r1,
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186 p->cr, p->ci, p->kind));
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187 if (!cldr) goto nada;
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188
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189 if (p->kind == R2HC)
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190 cldp = X(mkproblem_dft_d)(X(tensor_copy_inplace)(sz1, k),
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191 X(tensor_append)(vecszi, sz2i),
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192 p->cr, p->ci, p->cr, p->ci);
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193 else /* HC2R must swap re/im parts to get IDFT */
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194 cldp = X(mkproblem_dft_d)(X(tensor_copy_inplace)(sz1, k),
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195 X(tensor_append)(vecszi, sz2i),
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196 p->ci, p->cr, p->ci, p->cr);
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197 cldc = X(mkplan_d)(plnr, cldp);
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198 if (!cldc) goto nada;
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199
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200 pln = MKPLAN_RDFT2(P, &padt, p->kind == R2HC ? apply_r2hc : apply_hc2r);
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201
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202 pln->cldr = cldr;
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203 pln->cldc = cldc;
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204
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205 pln->solver = ego;
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206 X(ops_add)(&cldr->ops, &cldc->ops, &pln->super.super.ops);
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207
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208 X(tensor_destroy4)(sz2i, vecszi, sz2, sz1);
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209
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210 return &(pln->super.super);
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211
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212 nada:
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213 X(plan_destroy_internal)(cldr);
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214 X(plan_destroy_internal)(cldc);
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215 X(tensor_destroy4)(sz2i, vecszi, sz2, sz1);
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216 return (plan *) 0;
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217 }
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218
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219 static solver *mksolver(int spltrnk, const int *buddies, int nbuddies)
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220 {
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221 static const solver_adt sadt = { PROBLEM_RDFT2, mkplan, 0 };
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222 S *slv = MKSOLVER(S, &sadt);
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223 slv->spltrnk = spltrnk;
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224 slv->buddies = buddies;
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225 slv->nbuddies = nbuddies;
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226 return &(slv->super);
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227 }
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228
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229 void X(rdft2_rank_geq2_register)(planner *p)
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230 {
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231 int i;
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232 static const int buddies[] = { 1, 0, -2 };
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233
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234 const int nbuddies = (int)(sizeof(buddies) / sizeof(buddies[0]));
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235
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236 for (i = 0; i < nbuddies; ++i)
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237 REGISTER_SOLVER(p, mksolver(buddies[i], buddies, nbuddies));
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238
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239 /* FIXME: Should we try more buddies? See also dft/rank-geq2. */
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240 }
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