| [221] | 1 | /***************************************************************************
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 | 2 |  * blitz/applics.h      Applicative template classes
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 | 3 |  *
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 | 4 |  * $Id: applics.h,v 1.1.1.1 1999-04-09 17:58:58 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 1.5  1998/03/14 00:04:47  tveldhui
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 | 27 |  * 0.2-alpha-05
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 | 28 |  *
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 | 29 |  * Revision 1.4  1997/07/16 14:51:20  tveldhui
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 | 30 |  * Update: Alpha release 0.2 (Arrays)
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 | 31 |  *
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 | 32 |  * Revision 1.3  1997/01/24 14:42:00  tveldhui
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 | 33 |  * Periodic RCS update
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 | 34 |  *
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 | 35 |  * Revision 1.2  1997/01/13 22:19:58  tveldhui
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 | 36 |  * Periodic RCS update
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 | 37 |  *
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 | 38 |  *
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 | 39 |  */
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 | 40 | 
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 | 41 | #ifndef BZ_APPLICS_H
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 | 42 | #define BZ_APPLICS_H
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 | 43 | 
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 | 44 | #ifndef BZ_BLITZ_H
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 | 45 |  #include <blitz/blitz.h>
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 | 46 | #endif
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 | 47 | 
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 | 48 | #ifndef BZ_PROMOTE_H
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 | 49 |  #include <blitz/promote.h>
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 | 50 | #endif
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 | 51 | 
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 | 52 | #ifndef BZ_NUMTRAIT_H
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 | 53 |  #include <blitz/numtrait.h>
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 | 54 | #endif
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 | 55 | 
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 | 56 | BZ_NAMESPACE(blitz)
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 | 57 | 
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 | 58 | // These base classes are included for no other reason than to keep
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 | 59 | // the applicative templates clustered together in a graphical
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 | 60 | // class browser.
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 | 61 | class ApplicativeTemplatesBase { };
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 | 62 | class TwoOperandApplicativeTemplatesBase : public ApplicativeTemplatesBase { };
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 | 63 | class OneOperandApplicativeTemplatesBase : public ApplicativeTemplatesBase { };
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 | 64 | 
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 | 65 | template<class P_numtype1, class P_numtype2>
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 | 66 | class _bz_Add : public TwoOperandApplicativeTemplatesBase {
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 | 67 | public:
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 | 68 |     typedef P_numtype1 T_numtype1;
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 | 69 |     typedef P_numtype2 T_numtype2;
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 | 70 |     typedef BZ_PROMOTE(T_numtype1,T_numtype2) T_promote; 
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 | 71 |     typedef T_promote  T_numtype;
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 | 72 | 
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 | 73 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 74 |     { return x + y; }
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 | 75 | };
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 | 76 | 
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 | 77 | template<class P_numtype1, class P_numtype2>
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 | 78 | class _bz_Subtract : public TwoOperandApplicativeTemplatesBase {
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 | 79 | public:
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 | 80 |     typedef P_numtype1 T_numtype1;
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 | 81 |     typedef P_numtype2 T_numtype2;
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 | 82 |     typedef BZ_PROMOTE(T_numtype1,T_numtype2) T_promote;
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 | 83 |     typedef T_promote  T_numtype;
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 | 84 |  
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 | 85 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 86 |     { return x - y; }
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 | 87 | };
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 | 88 | 
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 | 89 | template<class P_numtype1, class P_numtype2>
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 | 90 | class _bz_Multiply : public TwoOperandApplicativeTemplatesBase {
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 | 91 | public:
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 | 92 |     typedef P_numtype1 T_numtype1;
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 | 93 |     typedef P_numtype2 T_numtype2;
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 | 94 |     typedef BZ_PROMOTE(T_numtype1,T_numtype2) T_promote;
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 | 95 |     typedef T_promote  T_numtype;
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 | 96 | 
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 | 97 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 98 |     { return x * y; }
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 | 99 | };
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 | 100 | 
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 | 101 | template<class P_numtype1, class P_numtype2>
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 | 102 | class _bz_Divide : public TwoOperandApplicativeTemplatesBase {
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 | 103 | public:
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 | 104 |     typedef P_numtype1 T_numtype1;
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 | 105 |     typedef P_numtype2 T_numtype2;
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 | 106 |     typedef BZ_PROMOTE(T_numtype1,T_numtype2) T_promote;
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 | 107 |     typedef T_promote  T_numtype;
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 | 108 | 
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 | 109 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 110 |     { return x / y; }
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 | 111 | };
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 | 112 | 
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 | 113 | template<class P_numtype1, class P_numtype2>
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 | 114 | class _bz_Mod : public TwoOperandApplicativeTemplatesBase {
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 | 115 | public:
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 | 116 |     typedef P_numtype1 T_numtype1;
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 | 117 |     typedef P_numtype2 T_numtype2;
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 | 118 |     typedef BZ_PROMOTE(T_numtype1,T_numtype2) T_promote;
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 | 119 |     typedef T_promote  T_numtype;
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 | 120 | 
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 | 121 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 122 |     { return x % y; }
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 | 123 | };
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 | 124 | 
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 | 125 | template<class P_numtype1, class P_numtype2>
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 | 126 | class _bz_BitwiseXOR : public TwoOperandApplicativeTemplatesBase {
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 | 127 | public:
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 | 128 |     typedef P_numtype1 T_numtype1;
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 | 129 |     typedef P_numtype2 T_numtype2;
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 | 130 |     typedef BZ_PROMOTE(T_numtype1,T_numtype2) T_promote;
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 | 131 |     typedef T_promote  T_numtype;
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 | 132 | 
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 | 133 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 134 |     { return x ^ y; }
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 | 135 | };
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 | 136 | 
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 | 137 | template<class P_numtype1, class P_numtype2>
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 | 138 | class _bz_BitwiseAnd : public TwoOperandApplicativeTemplatesBase {
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 | 139 | public:
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 | 140 |     typedef P_numtype1 T_numtype1;
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 | 141 |     typedef P_numtype2 T_numtype2;
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 | 142 |     typedef BZ_PROMOTE(T_numtype1,T_numtype2) T_promote;
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 | 143 |     typedef T_promote  T_numtype;
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 | 144 | 
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 | 145 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 146 |     { return x & y; }
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 | 147 | };
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 | 148 | 
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 | 149 | template<class P_numtype1, class P_numtype2>
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 | 150 | class _bz_BitwiseOr : public TwoOperandApplicativeTemplatesBase {
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 | 151 | public:
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 | 152 |     typedef P_numtype1 T_numtype1;
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 | 153 |     typedef P_numtype2 T_numtype2;
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 | 154 |     typedef BZ_PROMOTE(T_numtype1,T_numtype2) T_promote;
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 | 155 |     typedef T_promote  T_numtype;
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 | 156 | 
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 | 157 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 158 |     { return x | y; }
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 | 159 | };
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 | 160 | 
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 | 161 | template<class P_numtype1, class P_numtype2>
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 | 162 | class _bz_ShiftRight : public TwoOperandApplicativeTemplatesBase {
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 | 163 | public:
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 | 164 |     typedef P_numtype1 T_numtype1;
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 | 165 |     typedef P_numtype2 T_numtype2;
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 | 166 |     typedef BZ_PROMOTE(T_numtype1,T_numtype2) T_promote;
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 | 167 |     typedef T_promote  T_numtype;
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 | 168 | 
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 | 169 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 170 |     { return x >> y; }
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 | 171 | };
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 | 172 | 
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 | 173 | template<class P_numtype1, class P_numtype2>
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 | 174 | class _bz_ShiftLeft : public TwoOperandApplicativeTemplatesBase {
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 | 175 | public:
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 | 176 |     typedef P_numtype1 T_numtype1;
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 | 177 |     typedef P_numtype2 T_numtype2;
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 | 178 |     typedef BZ_PROMOTE(T_numtype1,T_numtype2) T_promote;
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 | 179 |     typedef T_promote  T_numtype;
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 | 180 | 
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 | 181 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 182 |     { return x << y; }
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 | 183 | };
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 | 184 | 
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 | 185 | template<class P_numtype1, class P_numtype2>
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 | 186 | class _bz_Greater : public TwoOperandApplicativeTemplatesBase {
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 | 187 | public:
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 | 188 |     typedef P_numtype1 T_numtype1;
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 | 189 |     typedef P_numtype2 T_numtype2;
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 | 190 |     typedef _bz_bool   T_promote;
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 | 191 |     typedef T_promote  T_numtype;
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 | 192 | 
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 | 193 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 194 |     { return x > y; }
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 | 195 | };
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 | 196 | 
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 | 197 | template<class P_numtype1, class P_numtype2>
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 | 198 | class _bz_Less : public TwoOperandApplicativeTemplatesBase {
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 | 199 | public:
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 | 200 |     typedef P_numtype1 T_numtype1;
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 | 201 |     typedef P_numtype2 T_numtype2;
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 | 202 |     typedef _bz_bool   T_promote;
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 | 203 |     typedef T_promote  T_numtype;
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 | 204 | 
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 | 205 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 206 |     { return x < y; }
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 | 207 | };
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 | 208 | 
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 | 209 | template<class P_numtype1, class P_numtype2>
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 | 210 | class _bz_GreaterOrEqual : public TwoOperandApplicativeTemplatesBase {
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 | 211 | public:
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 | 212 |     typedef P_numtype1 T_numtype1;
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 | 213 |     typedef P_numtype2 T_numtype2;
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 | 214 |     typedef _bz_bool   T_promote;
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 | 215 |     typedef T_promote  T_numtype;
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 | 216 | 
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 | 217 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 218 |     { return x >= y; }
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 | 219 | };
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 | 220 | 
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 | 221 | template<class P_numtype1, class P_numtype2>
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 | 222 | class _bz_LessOrEqual : public TwoOperandApplicativeTemplatesBase {
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 | 223 | public:
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 | 224 |     typedef P_numtype1 T_numtype1;
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 | 225 |     typedef P_numtype2 T_numtype2;
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 | 226 |     typedef _bz_bool   T_promote;
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 | 227 |     typedef T_promote  T_numtype;
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 | 228 | 
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 | 229 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 230 |     { return x <= y; }
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 | 231 | };
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 | 232 | 
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 | 233 | template<class P_numtype1, class P_numtype2>
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 | 234 | class _bz_Equal : public TwoOperandApplicativeTemplatesBase {
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 | 235 | public:
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 | 236 |     typedef P_numtype1 T_numtype1;
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 | 237 |     typedef P_numtype2 T_numtype2;
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 | 238 |     typedef _bz_bool   T_promote;
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 | 239 |     typedef T_promote  T_numtype;
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 | 240 | 
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 | 241 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 242 |     { return x == y; }
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 | 243 | };
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 | 244 | 
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 | 245 | template<class P_numtype1, class P_numtype2>
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 | 246 | class _bz_NotEqual : public TwoOperandApplicativeTemplatesBase {
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 | 247 | public:
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 | 248 |     typedef P_numtype1 T_numtype1;
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 | 249 |     typedef P_numtype2 T_numtype2;
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 | 250 |     typedef _bz_bool   T_promote;
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 | 251 |     typedef T_promote  T_numtype;
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 | 252 | 
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 | 253 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 254 |     { return x != y; }
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 | 255 | };
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 | 256 | 
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 | 257 | template<class P_numtype1, class P_numtype2>
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 | 258 | class _bz_LogicalAnd : public TwoOperandApplicativeTemplatesBase {
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 | 259 | public:
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 | 260 |     typedef P_numtype1 T_numtype1;
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 | 261 |     typedef P_numtype2 T_numtype2;
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 | 262 |     typedef _bz_bool   T_promote;
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 | 263 |     typedef T_promote  T_numtype;
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 | 264 | 
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 | 265 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 266 |     { return x && y; }
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 | 267 | };
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 | 268 | 
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 | 269 | template<class P_numtype1, class P_numtype2>
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 | 270 | class _bz_LogicalOr : public TwoOperandApplicativeTemplatesBase {
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 | 271 | public:
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 | 272 |     typedef P_numtype1 T_numtype1;
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 | 273 |     typedef P_numtype2 T_numtype2;
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 | 274 |     typedef _bz_bool   T_promote;
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 | 275 |     typedef T_promote  T_numtype;
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 | 276 | 
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 | 277 |     static inline T_promote apply(P_numtype1 x, P_numtype2 y)
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 | 278 |     { return x || y; }
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 | 279 | };
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 | 280 | 
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 | 281 | template<class P_numtype_in, class P_numtype_out>
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 | 282 | class _bz_Cast : public OneOperandApplicativeTemplatesBase {
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 | 283 | public:
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 | 284 |     typedef P_numtype_in T_numtype1;
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 | 285 |     typedef P_numtype_out T_promote;
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 | 286 |     typedef T_promote     T_numtype;
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 | 287 | 
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 | 288 |     static inline P_numtype_out apply(P_numtype_in x)
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 | 289 |     { return P_numtype_out(x); }
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 | 290 | };
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 | 291 | 
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 | 292 | template<class P_numtype>
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 | 293 | class _bz_LogicalNot : public OneOperandApplicativeTemplatesBase {
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 | 294 | public:
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 | 295 |     typedef P_numtype     T_numtype1;
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 | 296 |     typedef _bz_bool      T_promote;
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 | 297 |     typedef T_promote     T_numtype;
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 | 298 | 
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 | 299 |     static inline P_numtype apply(P_numtype x)
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 | 300 |     { return !x; }
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 | 301 | };
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 | 302 | 
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 | 303 | template<class P_numtype>
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 | 304 | class _bz_BitwiseNot : public OneOperandApplicativeTemplatesBase {
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 | 305 | public:
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 | 306 |     typedef P_numtype     T_numtype1;
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 | 307 |     typedef T_numtype1    T_promote;
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 | 308 |     typedef T_promote     T_numtype;
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 | 309 | 
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 | 310 |     static inline P_numtype apply(P_numtype x)
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 | 311 |     { return ~x; }
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 | 312 | };
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 | 313 | 
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 | 314 | /*****************************************************************************
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 | 315 |  * Math Functions
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 | 316 |  *****************************************************************************/
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 | 317 | 
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 | 318 | // Applicative templates for these functions are defined in
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 | 319 | // <blitz/mathfunc.h>, which is included below:
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 | 320 | //
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 | 321 | // abs(i), labs(l)                     Absolute value
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 | 322 | // acos(d), acols(ld)                  Inverse cosine
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 | 323 | // acosh(d)                            Inverse hyperbolic cosine
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 | 324 | // asin(d), asinl(ld)                  Inverse sine
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 | 325 | // asinh(d)                            Inverse hyperbolic sine
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 | 326 | // atan(d), atanl(ld)                  Inverse tangent
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 | 327 | // atan2(d,d), atan2l(ld,ld)           Inverse tangent
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 | 328 | // atanh(d)                            Inverse hyperbolic tangent
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 | 329 | // cbrt(x)                             Cube root
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 | 330 | // ceil(d), ceill(ld)                  Smallest f-int not less than x
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 | 331 | // int class(d)                        Classification of x (FP_XXXXX)
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 | 332 | // cos(d), cosl(ld)                    Cosine
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 | 333 | // cosh(d), coshl(ld)                  Hyperbolic cosine
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 | 334 | // copysign(d,d)                       Return 1st arg with same sign as 2nd
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 | 335 | // drem(x,x)                           IEEE remainder
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 | 336 | // exp(d), expl(ld)                    Exponential
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 | 337 | // expm1(d)                            Exp(x)-1     
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 | 338 | // erf(d), erfl(ld)                    Error function
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 | 339 | // erfc(d), erfcl(ld)                  Complementary error function
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 | 340 | // fabs(d), fabsl(ld)                  Floating point absolute value
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 | 341 | // int finite(d)                       Nonzero if finite
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 | 342 | // floor(d), floor(ld)                 Largest f-int not greater than x
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 | 343 | // fmod(d,d), fmodl(ld,ld)             Floating point remainder
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 | 344 | // frexp(d, int* e)                    Break into mantissa/exponent  (*)
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 | 345 | // frexpl(ld, int* e)                  Break into mantissa/exponent  (*)
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 | 346 | // gammaFunc(d)                        Gamma function (** needs special 
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 | 347 | //                                     implementation using lgamma)
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 | 348 | // hypot(d,d)                          Hypotenuse: sqrt(x*x+y*y)
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 | 349 | // int ilogb(d)                        Integer unbiased exponent
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 | 350 | // int isnan(d)                        Nonzero if NaNS or NaNQ
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 | 351 | // int itrunc(d)                       Truncate and convert to integer
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 | 352 | // j0(d)                               Bessel function first kind, order 0
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 | 353 | // j1(d)                               Bessel function first kind, order 1
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 | 354 | // jn(int, double)                     Bessel function first kind, order i
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 | 355 | // ldexp(d,i), ldexpl(ld,i)            Compute d * 2^i
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 | 356 | // lgamma(d), lgammald(ld)             Log absolute gamma
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 | 357 | // log(d), logl(ld)                    Natural logarithm
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 | 358 | // logb(d)                             Unbiased exponent (IEEE)
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 | 359 | // log1p(d)                            Compute log(1 + x)
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 | 360 | // log10(d), log10l(ld)                Logarithm base 10
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 | 361 | // modf(d, int* i), modfl(ld, int* i)  Break into integral/fractional part
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 | 362 | // double nearest(double)              Nearest floating point integer
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 | 363 | // nextafter(d, d)                     Next representable neighbor of 1st
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 | 364 | //                                     in direction of 2nd
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 | 365 | // pow(d,d), pow(ld,ld)                Computes x ^ y
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 | 366 | // d remainder(d,d)                    IEEE remainder
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 | 367 | // d rint(d)                           Round to f-integer (depends on mode)
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 | 368 | // d rsqrt(d)                          Reciprocal square root
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 | 369 | // d scalb(d,d)                        Return x * (2^y)
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 | 370 | // sin(d), sinl(ld)                    Sine 
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 | 371 | // sinh(d), sinhl(ld)                  Hyperbolic sine
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 | 372 | // sqr(x)                              Return x * x
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 | 373 | // sqrt(d), sqrtl(ld)                  Square root
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 | 374 | // tan(d), tanl(ld)                    Tangent
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 | 375 | // tanh(d), tanhl(ld)                  Hyperbolic tangent
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 | 376 | // trunc(d)                            Nearest f-int in the direction of 0
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 | 377 | // unsigned uitrunc(d)                 Truncate and convert to unsigned
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 | 378 | // int unordered(d,d)                  Nonzero if comparison is unordered
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 | 379 | // y0(d)                               Bessel function 2nd kind, order 0
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 | 380 | // y1(d)                               Bessel function 2nd kind, order 1
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 | 381 | // yn(i,d)                             Bessel function 2nd kind, order d
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 | 382 | 
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 | 383 | 
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 | 384 | BZ_NAMESPACE_END
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 | 385 | 
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 | 386 | #ifndef BZ_MATHFUNC_H
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 | 387 |  #include <blitz/mathfunc.h>
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 | 388 | #endif
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 | 389 | 
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 | 390 | #ifndef BZ_MATHF2_H
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 | 391 |  #include <blitz/mathf2.h>
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 | 392 | #endif
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 | 393 | 
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 | 394 | #endif // BZ_APPLICS_H
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