| [221] | 1 | /***********************************************************************
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 | 2 |  * promote.h   Arithmetic type promotion trait class
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 | 3 |  * Author: Todd Veldhuizen         (tveldhui@seurat.uwaterloo.ca)
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 | 4 |  *
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 | 5 |  * Copyright (C) 1997,1998 Todd Veldhuizen <tveldhui@seurat.uwaterloo.ca>
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 | 6 |  *
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 | 7 |  * This program is free software; you can redistribute it and/or
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 | 8 |  * modify it under the terms of the GNU General Public License
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 | 9 |  * as published by the Free Software Foundation; either version 2
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 | 10 |  * of the License, or (at your option) any later version.
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 | 11 |  *
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 | 12 |  * This program is distributed in the hope that it will be useful,
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 | 13 |  * but WITHOUT ANY WARRANTY; without even the implied warranty of
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 | 14 |  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 | 15 |  * GNU General Public License for more details.
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 | 16 |  *
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 | 17 |  * Suggestions:          blitz-suggest@cybervision.com
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 | 18 |  * Bugs:                 blitz-bugs@cybervision.com
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 | 19 |  *
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 | 20 |  * For more information, please see the Blitz++ Home Page:
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 | 21 |  *    http://seurat.uwaterloo.ca/blitz/
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 | 22 |  *
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 | 23 |  ***************************************************************************
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 | 24 |  */
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 | 25 | 
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 | 26 | #ifndef BZ_PROMOTE_H
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 | 27 | #define BZ_PROMOTE_H
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 | 28 | 
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 | 29 | #include <blitz/blitz.h>
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 | 30 | 
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 | 31 | BZ_NAMESPACE(blitz)
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 | 32 | 
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 | 33 | #ifdef BZ_TEMPLATE_QUALIFIED_RETURN_TYPE
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 | 34 |     #define BZ_PROMOTE(A,B) _bz_typename promote_trait<A,B>::T_promote
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 | 35 | #else
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 | 36 |     #define BZ_PROMOTE(A,B) A
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 | 37 | #endif
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 | 38 | 
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 | 39 | #if defined(BZ_PARTIAL_SPECIALIZATION) && !defined(BZ_DISABLE_NEW_PROMOTE)
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 | 40 | 
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 | 41 | /*
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 | 42 |  * This compiler supports partial specialization, so type promotion
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 | 43 |  * can be done the elegant way.  This implementation is after ideas
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 | 44 |  * by Jean-Louis Leroy.
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 | 45 |  */
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 | 46 | 
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 | 47 | template<class T>
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 | 48 | struct precision_trait {
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 | 49 |     enum { precisionRank = 0,
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 | 50 |            knowPrecisionRank = 0 };
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 | 51 | };
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 | 52 | 
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 | 53 | #define BZ_DECLARE_PRECISION(T,rank)          \
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 | 54 |     template<>                                \
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 | 55 |     struct precision_trait<T> {               \
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 | 56 |         enum { precisionRank = rank,          \
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 | 57 |            knowPrecisionRank = 1 };           \
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 | 58 |     };
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 | 59 | 
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 | 60 | BZ_DECLARE_PRECISION(int,100)
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 | 61 | BZ_DECLARE_PRECISION(unsigned int,200)
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 | 62 | BZ_DECLARE_PRECISION(long,300)
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 | 63 | BZ_DECLARE_PRECISION(unsigned long,400)
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 | 64 | BZ_DECLARE_PRECISION(float,500)
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 | 65 | BZ_DECLARE_PRECISION(double,600)
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 | 66 | BZ_DECLARE_PRECISION(long double,700)
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 | 67 | 
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 | 68 | #ifdef BZ_HAVE_COMPLEX
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 | 69 | BZ_DECLARE_PRECISION(complex<float>,800)
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 | 70 | BZ_DECLARE_PRECISION(complex<double>,900)
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 | 71 | BZ_DECLARE_PRECISION(complex<long double>,1000)
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 | 72 | #endif
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 | 73 | 
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 | 74 | template<class T>
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 | 75 | struct autopromote_trait {
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 | 76 |     typedef T T_numtype;
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 | 77 | };
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 | 78 | 
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 | 79 | #define BZ_DECLARE_AUTOPROMOTE(T1,T2)     \
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 | 80 |     template<>                            \
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 | 81 |     struct autopromote_trait<T1> {        \
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 | 82 |       typedef T2 T_numtype;               \
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 | 83 |     };
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 | 84 | 
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 | 85 | // These are the odd cases where small integer types
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 | 86 | // are automatically promoted to int or unsigned int for
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 | 87 | // arithmetic.
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 | 88 | BZ_DECLARE_AUTOPROMOTE(bool, int)
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 | 89 | BZ_DECLARE_AUTOPROMOTE(char, int)
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 | 90 | BZ_DECLARE_AUTOPROMOTE(unsigned char, int)
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 | 91 | BZ_DECLARE_AUTOPROMOTE(short int, int)
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 | 92 | BZ_DECLARE_AUTOPROMOTE(short unsigned int, unsigned int)
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 | 93 | 
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 | 94 | template<class T1, class T2, int promoteToT1>
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 | 95 | struct _bz_promote2 {
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 | 96 |     typedef T1 T_promote;
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 | 97 | };
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 | 98 | 
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 | 99 | template<class T1, class T2>
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 | 100 | struct _bz_promote2<T1,T2,0> {
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 | 101 |     typedef T2 T_promote;
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 | 102 | };
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 | 103 | 
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 | 104 | template<class T1_orig, class T2_orig>
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 | 105 | struct promote_trait {
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 | 106 |     // Handle promotion of small integers to int/unsigned int
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 | 107 |     typedef _bz_typename autopromote_trait<T1_orig>::T_numtype T1;
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 | 108 |     typedef _bz_typename autopromote_trait<T2_orig>::T_numtype T2;
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 | 109 | 
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 | 110 |     // True if T1 is higher ranked
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 | 111 |     enum {
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 | 112 |       T1IsBetter =
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 | 113 |         BZ_ENUM_CAST(precision_trait<T1>::precisionRank) >
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 | 114 |           BZ_ENUM_CAST(precision_trait<T2>::precisionRank),
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 | 115 | 
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 | 116 |     // True if we know ranks for both T1 and T2
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 | 117 |       knowBothRanks =
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 | 118 |         BZ_ENUM_CAST(precision_trait<T1>::knowPrecisionRank)
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 | 119 |       && BZ_ENUM_CAST(precision_trait<T2>::knowPrecisionRank),
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 | 120 | 
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 | 121 |     // True if we know T1 but not T2
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 | 122 |       knowT1butNotT2 =  BZ_ENUM_CAST(precision_trait<T1>::knowPrecisionRank)
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 | 123 |         && !(BZ_ENUM_CAST(precision_trait<T2>::knowPrecisionRank)),
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 | 124 | 
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 | 125 |     // True if we know T2 but not T1
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 | 126 |       knowT2butNotT1 =  BZ_ENUM_CAST(precision_trait<T2>::knowPrecisionRank)
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 | 127 |         && !(BZ_ENUM_CAST(precision_trait<T1>::knowPrecisionRank)),
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 | 128 | 
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 | 129 |     // True if T1 is bigger than T2
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 | 130 |       T1IsLarger = sizeof(T1) >= sizeof(T2),
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 | 131 | 
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 | 132 |     // We know T1 but not T2: true
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 | 133 |     // We know T2 but not T1: false
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 | 134 |     // Otherwise, if T1 is bigger than T2: true
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 | 135 |       defaultPromotion = knowT1butNotT2 ? _bz_false : 
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 | 136 |          (knowT2butNotT1 ? _bz_true : T1IsLarger)
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 | 137 |     };
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 | 138 | 
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 | 139 |     // If we have both ranks, then use them.
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 | 140 |     // If we have only one rank, then use the unknown type.
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 | 141 |     // If we have neither rank, then promote to the larger type.
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 | 142 | 
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 | 143 |     enum {
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 | 144 |       promoteToT1 = (BZ_ENUM_CAST(knowBothRanks) ? BZ_ENUM_CAST(T1IsBetter)
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 | 145 |         : BZ_ENUM_CAST(defaultPromotion)) ? 1 : 0
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 | 146 |     };
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 | 147 | 
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 | 148 |     typedef typename _bz_promote2<T1,T2,promoteToT1>::T_promote T_promote;
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 | 149 | };
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 | 150 | 
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 | 151 | #else  // !BZ_PARTIAL_SPECIALIZATION
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 | 152 | 
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 | 153 |   // No partial specialization -- have to do it the ugly way.
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 | 154 |   #include <blitz/promote-old.h>
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 | 155 | 
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 | 156 | #endif // !BZ_PARTIAL_SPECIALIZATION
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 | 157 | 
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 | 158 | BZ_NAMESPACE_END
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 | 159 | 
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 | 160 | #endif // BZ_PROMOTE_H
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