1 | /***************************************************************************
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2 | * blitz/tiny/matvec.h TinyMatrix/TinyVector product metaprogram
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3 | *
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4 | * $Id: matvec.h,v 1.1.1.1 1999-11-26 16:37:08 ansari Exp $
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5 | *
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6 | * Copyright (C) 1997,1998 Todd Veldhuizen <tveldhui@seurat.uwaterloo.ca>
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7 | *
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8 | * This program is free software; you can redistribute it and/or
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9 | * modify it under the terms of the GNU General Public License
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10 | * as published by the Free Software Foundation; either version 2
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11 | * of the License, or (at your option) any later version.
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12 | *
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13 | * This program is distributed in the hope that it will be useful,
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14 | * but WITHOUT ANY WARRANTY; without even the implied warranty of
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15 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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16 | * GNU General Public License for more details.
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17 | *
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18 | * Suggestions: blitz-suggest@cybervision.com
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19 | * Bugs: blitz-bugs@cybervision.com
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20 | *
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21 | * For more information, please see the Blitz++ Home Page:
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22 | * http://seurat.uwaterloo.ca/blitz/
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23 | *
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24 | ***************************************************************************
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25 | * $Log: not supported by cvs2svn $
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26 | * Revision 1.1.1.1 1999/04/09 17:59:03 ansari
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27 | * Creation module DPC/Blitz (blitz 0.4) Reza 09/04/99
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28 | *
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29 | * Revision 1.3 1998/03/14 00:08:44 tveldhui
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30 | * 0.2-alpha-05
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31 | *
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32 | * Revision 1.2 1998/03/14 00:04:47 tveldhui
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33 | * 0.2-alpha-05
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34 | *
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35 | * Revision 1.1 1997/07/16 14:51:20 tveldhui
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36 | * Update: Alpha release 0.2 (Arrays)
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37 | *
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38 | */
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39 |
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40 | #ifndef BZ_META_MATVEC_H
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41 | #define BZ_META_MATVEC_H
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42 |
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43 | #ifndef BZ_BLITZ_H
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44 | #include <blitz/blitz.h>
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45 | #endif
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46 |
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47 | #ifndef BZ_VECEXPRWRAP_H
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48 | #include <blitz/vecexprwrap.h>
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49 | #endif
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50 |
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51 | #ifndef BZ_METAPROG_H
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52 | #include <blitz/meta/metaprog.h>
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53 | #endif
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54 |
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55 | BZ_NAMESPACE(blitz)
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56 |
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57 | // Forward declarations
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58 | template<int N_rows, int N_columns, int N_rowStride, int N_colStride,
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59 | int N_vecStride, int J>
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60 | class _bz_meta_matrixVectorProduct2;
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61 |
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62 |
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63 | template<class T_numtype1, class T_numtype2, int N_rows, int N_columns,
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64 | int N_rowStride, int N_colStride, int N_vecStride>
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65 | class _bz_tinyMatrixVectorProduct {
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66 | public:
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67 | typedef BZ_PROMOTE(T_numtype1, T_numtype2) T_numtype;
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68 |
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69 | _bz_tinyMatrixVectorProduct(const _bz_tinyMatrixVectorProduct<T_numtype1,
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70 | T_numtype2, N_rows, N_columns, N_rowStride, N_colStride,
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71 | N_vecStride>& z)
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72 | : matrix_(z.matrix_), vector_(z.vector_)
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73 | { }
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74 |
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75 | _bz_tinyMatrixVectorProduct(const T_numtype1* matrix,
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76 | const T_numtype2* vector)
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77 | : matrix_(matrix), vector_(vector)
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78 | { }
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79 |
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80 | T_numtype operator[](unsigned i) const
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81 | {
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82 | return _bz_meta_matrixVectorProduct2<N_rows, N_columns, N_rowStride,
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83 | N_colStride, N_vecStride, 0>::f(matrix_, vector_, i);
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84 | }
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85 |
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86 | T_numtype operator()(unsigned i) const
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87 | {
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88 | return _bz_meta_matrixVectorProduct2<N_rows, N_columns, N_rowStride,
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89 | N_colStride, N_vecStride, 0>::f(matrix_, vector_, i);
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90 | }
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91 |
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92 | enum {
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93 | _bz_staticLengthCount = 1,
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94 | _bz_dynamicLengthCount = 0,
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95 | _bz_staticLength = N_rows
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96 |
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97 | #ifdef BZ_HAVE_COSTS
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98 | ,
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99 | _bz_costPerEval = 2 * N_columns * costs::memoryAccess
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100 | + (N_columns-1) * costs::add
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101 | #endif
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102 |
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103 | };
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104 |
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105 | unsigned _bz_suggestLength() const
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106 | {
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107 | return N_rows;
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108 | }
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109 |
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110 | _bz_bool _bz_hasFastAccess() const
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111 | { return _bz_true; }
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112 |
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113 | T_numtype _bz_fastAccess(unsigned i) const
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114 | {
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115 | return _bz_meta_matrixVectorProduct2<N_rows, N_columns, N_rowStride,
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116 | N_colStride, N_vecStride, 0>::f(matrix_, vector_, i);
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117 | }
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118 |
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119 | unsigned length(unsigned recommendedLength) const
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120 | { return N_rows; }
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121 |
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122 | const T_numtype1* matrix() const
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123 | { return matrix_; }
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124 |
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125 | const T_numtype2* vector() const
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126 | { return vector_; }
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127 |
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128 | protected:
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129 | const T_numtype1* matrix_;
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130 | const T_numtype2* vector_;
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131 | };
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132 |
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133 | template<class T_numtype1, class T_numtype2, int N_rows, int N_columns>
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134 | inline _bz_VecExpr<_bz_tinyMatrixVectorProduct<T_numtype1, T_numtype2,
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135 | N_rows, N_columns, N_columns, 1, 1> >
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136 | product(const TinyMatrix<T_numtype1, N_rows, N_columns>& matrix,
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137 | const TinyVector<T_numtype2, N_columns>& vector)
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138 | {
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139 | typedef _bz_tinyMatrixVectorProduct<T_numtype1, T_numtype2, N_rows,
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140 | N_columns, N_columns, 1, 1> T_expr;
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141 | return _bz_VecExpr<T_expr>(T_expr(matrix.data(), vector.data()));
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142 | }
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143 |
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144 | // Template metaprogram for matrix-vector multiplication
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145 |
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146 | template<int N_rows, int N_columns, int N_rowStride, int N_colStride,
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147 | int N_vecStride, int J>
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148 | class _bz_meta_matrixVectorProduct2 {
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149 |
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150 | public:
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151 | enum { go = J < (N_columns-1) };
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152 |
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153 | template<class T_numtype1, class T_numtype2>
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154 | static inline BZ_PROMOTE(T_numtype1, T_numtype2)
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155 | f(const T_numtype1* matrix, const T_numtype2* vector, int i)
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156 | {
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157 | return matrix[i * N_rowStride + J * N_colStride]
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158 | * vector[J * N_vecStride]
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159 |
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160 | + _bz_meta_matrixVectorProduct2<N_rows * go, N_columns * go,
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161 | N_rowStride * go, N_colStride * go, N_vecStride * go, (J+1)*go>
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162 | ::f(matrix, vector, i);
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163 | }
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164 |
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165 | };
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166 |
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167 | template<>
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168 | class _bz_meta_matrixVectorProduct2<0,0,0,0,0,0> {
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169 | public:
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170 | static inline _bz_meta_nullOperand f(const void*, const void*, int)
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171 | { return _bz_meta_nullOperand(); }
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172 | };
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173 |
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174 | template<int N_rows, int N_columns, int N_rowStride, int N_colStride,
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175 | int N_vecStride, int I>
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176 | class _bz_meta_matrixVectorProduct {
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177 | public:
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178 | enum { go = I < (N_rows - 1) };
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179 |
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180 | template<class T_numtype1, class T_numtype2, class T_numtype3>
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181 | static inline void f(TinyVector<T_numtype3, N_rows>& result,
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182 | const T_numtype1* matrix, const T_numtype2* vector)
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183 | {
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184 | result[I] = _bz_meta_matrixVectorProduct2<N_rows, N_columns,
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185 | N_rowStride, N_colStride, N_vecStride, 0>::f(matrix,vector, I);
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186 |
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187 | _bz_meta_matrixVectorProduct<N_rows * go, N_columns * go,
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188 | N_rowStride * go, N_colStride * go, N_vecStride * go, (I+1)*go>
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189 | ::f(result, matrix, vector);
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190 | }
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191 | };
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192 |
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193 | template<>
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194 | class _bz_meta_matrixVectorProduct<0,0,0,0,0,0> {
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195 | public:
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196 | static inline void f(const _bz_tinyBase&, const void*, const void*)
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197 | { }
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198 | };
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199 |
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200 | BZ_NAMESPACE_END
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201 |
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202 | #endif // BZ_META_MATVEC_H
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203 |
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