| [658] | 1 | #ifndef BZ_ARRAYSLICING_CC | 
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|  | 2 | #define BZ_ARRAYSLICING_CC | 
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|  | 3 |  | 
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|  | 4 | #ifndef BZ_ARRAY_H | 
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|  | 5 | #error <blitz/array/slicing.cc> must be included via <blitz/array.h> | 
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|  | 6 | #endif | 
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|  | 7 |  | 
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|  | 8 | BZ_NAMESPACE(blitz) | 
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|  | 9 |  | 
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|  | 10 | /* | 
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|  | 11 | * These routines make the array a view of a portion of another array. | 
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|  | 12 | * They all work by first referencing the other array, and then slicing. | 
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|  | 13 | */ | 
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|  | 14 |  | 
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|  | 15 | template<class P_numtype, int N_rank> | 
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|  | 16 | void Array<P_numtype, N_rank>::constructSubarray( | 
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|  | 17 | Array<T_numtype, N_rank>& array, const RectDomain<N_rank>& subdomain) | 
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|  | 18 | { | 
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|  | 19 | reference(array); | 
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|  | 20 | for (int i=0; i < N_rank; ++i) | 
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|  | 21 | slice(i, subdomain[i]); | 
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|  | 22 | } | 
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|  | 23 |  | 
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|  | 24 | template<class P_numtype, int N_rank> | 
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|  | 25 | void Array<P_numtype, N_rank>::constructSubarray( | 
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|  | 26 | Array<T_numtype, N_rank>& array, Range r0) | 
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|  | 27 | { | 
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|  | 28 | reference(array); | 
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|  | 29 | slice(0, r0); | 
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|  | 30 | } | 
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|  | 31 |  | 
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|  | 32 | template<class P_numtype, int N_rank> | 
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|  | 33 | void Array<P_numtype, N_rank>::constructSubarray( | 
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|  | 34 | Array<T_numtype, N_rank>& array, Range r0, Range r1) | 
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|  | 35 | { | 
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|  | 36 | reference(array); | 
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|  | 37 | slice(0, r0); | 
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|  | 38 | slice(1, r1); | 
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|  | 39 | } | 
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|  | 40 |  | 
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|  | 41 | template<class P_numtype, int N_rank> | 
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|  | 42 | void Array<P_numtype, N_rank>::constructSubarray( | 
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|  | 43 | Array<T_numtype, N_rank>& array, Range r0, Range r1, Range r2) | 
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|  | 44 | { | 
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|  | 45 | reference(array); | 
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|  | 46 | slice(0, r0); | 
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|  | 47 | slice(1, r1); | 
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|  | 48 | slice(2, r2); | 
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|  | 49 | } | 
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|  | 50 |  | 
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|  | 51 | template<class P_numtype, int N_rank> | 
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|  | 52 | void Array<P_numtype, N_rank>::constructSubarray( | 
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|  | 53 | Array<T_numtype, N_rank>& array, Range r0, Range r1, Range r2, Range r3) | 
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|  | 54 | { | 
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|  | 55 | reference(array); | 
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|  | 56 | slice(0, r0); | 
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|  | 57 | slice(1, r1); | 
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|  | 58 | slice(2, r2); | 
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|  | 59 | slice(3, r3); | 
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|  | 60 | } | 
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|  | 61 |  | 
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|  | 62 | template<class P_numtype, int N_rank> | 
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|  | 63 | void Array<P_numtype, N_rank>::constructSubarray( | 
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|  | 64 | Array<T_numtype, N_rank>& array, Range r0, Range r1, Range r2, Range r3, | 
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|  | 65 | Range r4) | 
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|  | 66 | { | 
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|  | 67 | reference(array); | 
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|  | 68 | slice(0, r0); | 
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|  | 69 | slice(1, r1); | 
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|  | 70 | slice(2, r2); | 
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|  | 71 | slice(3, r3); | 
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|  | 72 | slice(4, r4); | 
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|  | 73 | } | 
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|  | 74 |  | 
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|  | 75 | template<class P_numtype, int N_rank> | 
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|  | 76 | void Array<P_numtype, N_rank>::constructSubarray( | 
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|  | 77 | Array<T_numtype, N_rank>& array, Range r0, Range r1, Range r2, Range r3, | 
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|  | 78 | Range r4, Range r5) | 
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|  | 79 | { | 
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|  | 80 | reference(array); | 
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|  | 81 | slice(0, r0); | 
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|  | 82 | slice(1, r1); | 
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|  | 83 | slice(2, r2); | 
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|  | 84 | slice(3, r3); | 
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|  | 85 | slice(4, r4); | 
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|  | 86 | slice(5, r5); | 
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|  | 87 | } | 
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|  | 88 |  | 
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|  | 89 | template<class P_numtype, int N_rank> | 
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|  | 90 | void Array<P_numtype, N_rank>::constructSubarray( | 
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|  | 91 | Array<T_numtype, N_rank>& array, Range r0, Range r1, Range r2, Range r3, | 
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|  | 92 | Range r4, Range r5, Range r6) | 
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|  | 93 | { | 
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|  | 94 | reference(array); | 
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|  | 95 | slice(0, r0); | 
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|  | 96 | slice(1, r1); | 
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|  | 97 | slice(2, r2); | 
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|  | 98 | slice(3, r3); | 
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|  | 99 | slice(4, r4); | 
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|  | 100 | slice(5, r5); | 
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|  | 101 | slice(6, r6); | 
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|  | 102 | } | 
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|  | 103 |  | 
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|  | 104 | template<class P_numtype, int N_rank> | 
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|  | 105 | void Array<P_numtype, N_rank>::constructSubarray( | 
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|  | 106 | Array<T_numtype, N_rank>& array, Range r0, Range r1, Range r2, Range r3, | 
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|  | 107 | Range r4, Range r5, Range r6, Range r7) | 
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|  | 108 | { | 
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|  | 109 | reference(array); | 
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|  | 110 | slice(0, r0); | 
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|  | 111 | slice(1, r1); | 
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|  | 112 | slice(2, r2); | 
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|  | 113 | slice(3, r3); | 
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|  | 114 | slice(4, r4); | 
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|  | 115 | slice(5, r5); | 
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|  | 116 | slice(6, r6); | 
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|  | 117 | slice(7, r7); | 
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|  | 118 | } | 
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|  | 119 |  | 
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|  | 120 | template<class P_numtype, int N_rank> | 
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|  | 121 | void Array<P_numtype, N_rank>::constructSubarray( | 
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|  | 122 | Array<T_numtype, N_rank>& array, Range r0, Range r1, Range r2, Range r3, | 
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|  | 123 | Range r4, Range r5, Range r6, Range r7, Range r8) | 
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|  | 124 | { | 
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|  | 125 | reference(array); | 
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|  | 126 | slice(0, r0); | 
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|  | 127 | slice(1, r1); | 
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|  | 128 | slice(2, r2); | 
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|  | 129 | slice(3, r3); | 
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|  | 130 | slice(4, r4); | 
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|  | 131 | slice(5, r5); | 
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|  | 132 | slice(6, r6); | 
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|  | 133 | slice(7, r7); | 
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|  | 134 | slice(8, r8); | 
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|  | 135 | } | 
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|  | 136 |  | 
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|  | 137 | template<class P_numtype, int N_rank> | 
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|  | 138 | void Array<P_numtype, N_rank>::constructSubarray( | 
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|  | 139 | Array<T_numtype, N_rank>& array, Range r0, Range r1, Range r2, Range r3, | 
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|  | 140 | Range r4, Range r5, Range r6, Range r7, Range r8, Range r9) | 
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|  | 141 | { | 
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|  | 142 | reference(array); | 
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|  | 143 | slice(0, r0); | 
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|  | 144 | slice(1, r1); | 
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|  | 145 | slice(2, r2); | 
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|  | 146 | slice(3, r3); | 
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|  | 147 | slice(4, r4); | 
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|  | 148 | slice(5, r5); | 
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|  | 149 | slice(6, r6); | 
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|  | 150 | slice(7, r7); | 
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|  | 151 | slice(8, r8); | 
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|  | 152 | slice(9, r9); | 
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|  | 153 | } | 
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|  | 154 |  | 
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|  | 155 | template<class P_numtype, int N_rank> | 
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|  | 156 | void Array<P_numtype, N_rank>::constructSubarray( | 
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|  | 157 | Array<T_numtype, N_rank>& array, Range r0, Range r1, Range r2, Range r3, | 
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|  | 158 | Range r4, Range r5, Range r6, Range r7, Range r8, Range r9, Range r10) | 
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|  | 159 | { | 
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|  | 160 | reference(array); | 
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|  | 161 | slice(0, r0); | 
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|  | 162 | slice(1, r1); | 
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|  | 163 | slice(2, r2); | 
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|  | 164 | slice(3, r3); | 
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|  | 165 | slice(4, r4); | 
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|  | 166 | slice(5, r5); | 
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|  | 167 | slice(6, r6); | 
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|  | 168 | slice(7, r7); | 
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|  | 169 | slice(8, r8); | 
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|  | 170 | slice(9, r9); | 
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|  | 171 | slice(10, r10); | 
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|  | 172 | } | 
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|  | 173 |  | 
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|  | 174 | /* | 
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|  | 175 | * This member template is used to implement operator() with any | 
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|  | 176 | * combination of int and Range parameters.  There's room for up | 
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|  | 177 | * to 11 parameters, but any unused parameters have no effect. | 
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|  | 178 | */ | 
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|  | 179 | template<class P_numtype, int N_rank> template<int N_rank2, class R0, | 
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|  | 180 | class R1, class R2, class R3, class R4, class R5, class R6, class R7, | 
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|  | 181 | class R8, class R9, class R10> | 
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|  | 182 | void Array<P_numtype, N_rank>::constructSlice(Array<T_numtype, N_rank2>& array, | 
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|  | 183 | R0 r0, R1 r1, R2 r2, R3 r3, R4 r4, R5 r5, R6 r6, R7 r7, R8 r8, R9 r9, | 
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|  | 184 | R10 r10) | 
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|  | 185 | { | 
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|  | 186 | MemoryBlockReference<P_numtype>::changeBlock(array, array.zeroOffset()); | 
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|  | 187 | data_ = array.dataZero(); | 
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|  | 188 |  | 
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|  | 189 | int setRank = 0; | 
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|  | 190 |  | 
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|  | 191 | TinyVector<int, N_rank2> rankMap; | 
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|  | 192 |  | 
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|  | 193 | slice(setRank, r0, array, rankMap, 0); | 
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|  | 194 | slice(setRank, r1, array, rankMap, 1); | 
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|  | 195 | slice(setRank, r2, array, rankMap, 2); | 
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|  | 196 | slice(setRank, r3, array, rankMap, 3); | 
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|  | 197 | slice(setRank, r4, array, rankMap, 4); | 
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|  | 198 | slice(setRank, r5, array, rankMap, 5); | 
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|  | 199 | slice(setRank, r6, array, rankMap, 6); | 
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|  | 200 | slice(setRank, r7, array, rankMap, 7); | 
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|  | 201 | slice(setRank, r8, array, rankMap, 8); | 
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|  | 202 | slice(setRank, r9, array, rankMap, 9); | 
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|  | 203 | slice(setRank, r10, array, rankMap, 10); | 
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|  | 204 |  | 
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|  | 205 | // Redo the ordering_ array to account for dimensions which | 
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|  | 206 | // have been sliced away. | 
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|  | 207 | int j = 0; | 
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|  | 208 | for (int i=0; i < N_rank2; ++i) | 
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|  | 209 | { | 
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|  | 210 | if (rankMap[array.ordering(i)] != -1) | 
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|  | 211 | storage_.setOrdering(j++, rankMap[array.ordering(i)]); | 
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|  | 212 | } | 
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|  | 213 |  | 
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|  | 214 | calculateZeroOffset(); | 
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|  | 215 | } | 
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|  | 216 |  | 
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|  | 217 | /* | 
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|  | 218 | * This member template is also used in the implementation of | 
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|  | 219 | * operator() with any combination of int and Rank parameters. | 
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|  | 220 | * It's called by constructSlice(), above.  This version handles | 
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|  | 221 | * Range parameters. | 
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|  | 222 | */ | 
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|  | 223 | template<class T_numtype, int N_rank> template<int N_rank2> | 
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|  | 224 | void Array<T_numtype, N_rank>::slice(int& setRank, Range r, | 
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|  | 225 | Array<T_numtype,N_rank2>& array, TinyVector<int,N_rank2>& rankMap, | 
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|  | 226 | int sourceRank) | 
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|  | 227 | { | 
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|  | 228 | // NEEDS WORK: ordering will change completely when some ranks | 
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|  | 229 | // are deleted. | 
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|  | 230 |  | 
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|  | 231 | #ifdef BZ_DEBUG_SLICE | 
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|  | 232 | cout << "slice(" << setRank << ", [" << r.first(array.lbound(sourceRank)) | 
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|  | 233 | << ", " << r.last(array.ubound(sourceRank)) << "], Array<T," | 
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|  | 234 | << N_rank2 << ">, " << sourceRank << ")" << endl; | 
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|  | 235 | #endif | 
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|  | 236 |  | 
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|  | 237 | rankMap[sourceRank] = setRank; | 
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|  | 238 | length_[setRank] = array.length(sourceRank); | 
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|  | 239 | stride_[setRank] = array.stride(sourceRank); | 
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|  | 240 | storage_.setAscendingFlag(setRank, array.isRankStoredAscending(sourceRank)); | 
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|  | 241 | storage_.setBase(setRank, array.base(sourceRank)); | 
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|  | 242 | slice(setRank, r); | 
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|  | 243 | ++setRank; | 
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|  | 244 | } | 
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|  | 245 |  | 
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|  | 246 | /* | 
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|  | 247 | * This member template is also used in the implementation of | 
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|  | 248 | * operator() with any combination of int and Rank parameters. | 
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|  | 249 | * It's called by constructSlice(), above.  This version handles | 
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|  | 250 | * int parameters, which reduce the dimensionality by one. | 
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|  | 251 | */ | 
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|  | 252 | template<class T_numtype, int N_rank> template<int N_rank2> | 
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|  | 253 | void Array<T_numtype, N_rank>::slice(int& setRank, int i, | 
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|  | 254 | Array<T_numtype,N_rank2>& array, TinyVector<int,N_rank2>& rankMap, | 
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|  | 255 | int sourceRank) | 
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|  | 256 | { | 
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|  | 257 | #ifdef BZ_DEBUG_SLICE | 
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|  | 258 | cout << "slice(" << setRank << ", " << i | 
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|  | 259 | << ", Array<T," << N_rank2 << ">, " << sourceRank << ")" << endl; | 
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|  | 260 | cout << "Offset by " << (i * array.stride(sourceRank)) | 
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|  | 261 | << endl; | 
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|  | 262 | #endif | 
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|  | 263 | rankMap[sourceRank] = -1; | 
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|  | 264 | data_ += i * array.stride(sourceRank); | 
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|  | 265 | #ifdef BZ_DEBUG_SLICE | 
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|  | 266 | cout << "data_ = " << data_ << endl; | 
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|  | 267 | #endif | 
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|  | 268 | } | 
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|  | 269 |  | 
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|  | 270 | /* | 
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|  | 271 | * After calling slice(int rank, Range r), the array refers only to the | 
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|  | 272 | * Range r of the original array. | 
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|  | 273 | * e.g. Array<int,1> x(100); | 
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|  | 274 | *      x.slice(firstRank, Range(25,50)); | 
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|  | 275 | *      x = 0;       // Sets elements 25..50 of the original array to 0 | 
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|  | 276 | */ | 
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|  | 277 | template<class P_numtype, int N_rank> | 
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|  | 278 | void Array<P_numtype, N_rank>::slice(int rank, Range r) | 
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|  | 279 | { | 
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|  | 280 | BZPRECONDITION((rank >= 0) && (rank < N_rank)); | 
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|  | 281 |  | 
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|  | 282 | int first = r.first(lbound(rank)); | 
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|  | 283 | int last  = r.last(ubound(rank)); | 
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|  | 284 | int stride = r.stride(); | 
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|  | 285 |  | 
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|  | 286 | #ifdef BZ_DEBUG_SLICE | 
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|  | 287 | cout << "slice(" << rank << ", Range):" << endl | 
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|  | 288 | << "first = " << first << " last = " << last << "stride = " << stride | 
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|  | 289 | << endl << "length_[rank] = " << length_[rank] << endl; | 
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|  | 290 | #endif | 
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|  | 291 |  | 
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|  | 292 | BZPRECHECK( | 
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|  | 293 | ((first <= last) && (stride > 0) | 
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|  | 294 | || (first >= last) && (stride < 0)) | 
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|  | 295 | && (unsigned(first - base(rank)) < length_[rank]) | 
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|  | 296 | && (unsigned(last - base(rank)) < length_[rank]), | 
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|  | 297 | "Bad array slice: Range(" << first << ", " << last << ", " | 
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|  | 298 | << stride << ").  Array is Range(" << lbound(rank) << ", " | 
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|  | 299 | << ubound(rank) << ")"); | 
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|  | 300 |  | 
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|  | 301 | // Will the storage be non-contiguous? | 
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|  | 302 | // (1) Slice in the minor dimension and the range does not span | 
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|  | 303 | //     the entire index interval (NB: non-unit strides are possible) | 
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|  | 304 | // (2) Slice in a middle dimension and the range is not Range::all() | 
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|  | 305 |  | 
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|  | 306 | // Note: this code ignores a few weird cases that would hopefully come | 
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|  | 307 | // up rarely, e.g. slicing the array 0..99,0..99 with | 
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|  | 308 | // Range::all() and Range(1,99,2).  This preserves contiguous | 
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|  | 309 | // storage, but the contiguousStorage_ flag will still be set | 
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|  | 310 | // false.  This isn't a serious problem -- array operations will | 
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|  | 311 | // just be a tad slower in this situation. | 
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|  | 312 | if (isMinorRank(rank) && | 
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|  | 313 | ((first != base(rank)) || (last != base(rank) + length_[rank] - 1))) | 
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|  | 314 | storageContiguous_ = _bz_false; | 
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|  | 315 |  | 
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|  | 316 | if ((ordering(rank) != N_rank-1) && (stride != 1)) | 
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|  | 317 | storageContiguous_ = _bz_false; | 
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|  | 318 |  | 
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|  | 319 | length_[rank] = (last - first) / stride + 1; | 
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|  | 320 |  | 
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|  | 321 | int offset = (first - base(rank)) * stride_[rank]; | 
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|  | 322 | data_ += offset; | 
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|  | 323 | zeroOffset_ -= offset; | 
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|  | 324 |  | 
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|  | 325 | stride_[rank] *= stride; | 
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|  | 326 | } | 
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|  | 327 |  | 
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|  | 328 | BZ_NAMESPACE_END | 
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|  | 329 |  | 
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|  | 330 | #endif // BZ_ARRAYSLICING_CC | 
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