| 1 | //
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| 2 | // Cforall Version 1.0.0 Copyright (C) 2016 University of Waterloo
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| 3 | //
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| 4 | // The contents of this file are covered under the licence agreement in the
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| 5 | // file "LICENCE" distributed with Cforall.
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| 6 | //
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| 7 | // stdlib --
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| 8 | //
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| 9 | // Author           : Peter A. Buhr
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| 10 | // Created On       : Thu Jan 28 17:12:35 2016
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| 11 | // Last Modified By : Peter A. Buhr
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| 12 | // Last Modified On : Tue Jan  2 12:21:04 2018
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| 13 | // Update Count     : 292
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| 14 | //
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| 15 | 
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| 16 | #pragma once
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| 17 | 
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| 18 | //#define _XOPEN_SOURCE 600                                                             // posix_memalign, *rand48
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| 19 | #include <stdlib.h>                                                                             // strto*, *abs
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| 20 | 
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| 21 | //---------------------------------------
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| 22 | 
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| 23 | #ifndef EXIT_FAILURE
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| 24 | #define EXIT_FAILURE    1                                                               // failing exit status
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| 25 | #define EXIT_SUCCESS    0                                                               // successful exit status
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| 26 | #endif // ! EXIT_FAILURE
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| 27 | 
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| 28 | //---------------------------------------
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| 29 | 
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| 30 | // allocation, non-array types
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| 31 | static inline forall( dtype T | sized(T) ) T * malloc( void ) {
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| 32 |         // printf( "* malloc\n" );
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| 33 |         return (T *)(void *)malloc( (size_t)sizeof(T) );        // C malloc
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| 34 | } // malloc
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| 35 | 
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| 36 | // static inline forall( dtype T | sized(T) ) T & malloc( void ) {
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| 37 | //      int & p = *(T *)(void *)malloc( (size_t)sizeof(T) ); // C malloc
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| 38 | //      printf( "& malloc %p\n", &p );
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| 39 | //      return p;
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| 40 | // //   return (T &)*(T *)(void *)malloc( (size_t)sizeof(T) ); // C malloc
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| 41 | // } // malloc
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| 42 | 
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| 43 | extern "C" { void * calloc( size_t dim, size_t size ); } // default C routine
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| 44 | static inline forall( dtype T | sized(T) ) T * calloc( size_t dim ) {
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| 45 |         //printf( "X2\n" );
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| 46 |         return (T *)(void *)calloc( dim, sizeof(T) );           // C cmalloc
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| 47 | }
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| 48 | 
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| 49 | extern "C" { void * realloc( void * ptr, size_t size ); } // default C routine for void *
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| 50 | static inline forall( dtype T | sized(T) ) T * realloc( T * ptr, size_t size ) {
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| 51 |         //printf( "X3\n" );
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| 52 |         return (T *)(void *)realloc( (void *)ptr, size );
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| 53 | }
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| 54 | 
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| 55 | extern "C" { void * memalign( size_t align, size_t size ); } // use default C routine for void *
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| 56 | static inline forall( dtype T | sized(T) ) T * memalign( size_t align ) {
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| 57 |         //printf( "X4\n" );
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| 58 |         return (T *)memalign( align, sizeof(T) );
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| 59 | } // memalign
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| 60 | 
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| 61 | static inline forall( dtype T | sized(T) ) T * aligned_alloc( size_t align ) {
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| 62 |         //printf( "X5\n" );
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| 63 |         return (T *)memalign( align, sizeof(T) );
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| 64 | } // aligned_alloc
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| 65 | 
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| 66 | extern "C" { int posix_memalign( void ** ptr, size_t align, size_t size ); } // use default C routine for void *
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| 67 | static inline forall( dtype T | sized(T) ) int posix_memalign( T ** ptr, size_t align ) {
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| 68 |         //printf( "X6\n" );
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| 69 |         return posix_memalign( (void **)ptr, align, sizeof(T) );
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| 70 | } // posix_memalign
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| 71 | 
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| 72 | 
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| 73 | extern "C" { void * memset( void * dest, int c, size_t size ); } // use default C routine for void *
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| 74 | 
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| 75 | static inline forall( dtype T | sized(T) ) T * alloc( void ) {
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| 76 |         //printf( "X7\n" );
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| 77 |         return (T *)(void *)malloc( (size_t)sizeof(T) );        // C malloc
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| 78 | } // alloc
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| 79 | static inline forall( dtype T | sized(T) ) T * alloc( char fill ) {
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| 80 |         //printf( "X8\n" );
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| 81 |         T * ptr = (T *)(void *)malloc( (size_t)sizeof(T) );     // C malloc
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| 82 |     return (T *)memset( ptr, (int)fill, sizeof(T) );    // initial with fill value
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| 83 | } // alloc
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| 84 | 
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| 85 | static inline forall( dtype T | sized(T) ) T * alloc( size_t dim ) {
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| 86 |         //printf( "X9\n" );
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| 87 |         return (T *)(void *)malloc( dim * (size_t)sizeof(T) ); // C malloc
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| 88 | } // alloc
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| 89 | static inline forall( dtype T | sized(T) ) T * alloc( size_t dim, char fill ) {
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| 90 |         //printf( "X10\n" );
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| 91 |         T * ptr = (T *)(void *)malloc( dim * (size_t)sizeof(T) ); // C malloc
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| 92 |     return (T *)memset( ptr, (int)fill, dim * sizeof(T) );
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| 93 | } // alloc
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| 94 | 
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| 95 | static inline forall( dtype T | sized(T) ) T * alloc( T ptr[], size_t dim ) {
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| 96 |         //printf( "X11\n" );
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| 97 |         return (T *)(void *)realloc( (void *)ptr, dim * (size_t)sizeof(T) ); // C realloc
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| 98 | } // alloc
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| 99 | forall( dtype T | sized(T) ) T * alloc( T ptr[], size_t dim, char fill );
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| 100 | 
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| 101 | static inline forall( dtype T | sized(T) ) T * align_alloc( size_t align ) {
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| 102 |         //printf( "X13\n" );
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| 103 |         return (T *)memalign( align, sizeof(T) );
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| 104 | } // align_alloc
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| 105 | static inline forall( dtype T | sized(T) ) T * align_alloc( size_t align, char fill ) {
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| 106 |         //printf( "X14\n" );
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| 107 |     T * ptr = (T *)memalign( align, sizeof(T) );
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| 108 |     return (T *)memset( ptr, (int)fill, sizeof(T) );
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| 109 | } // align_alloc
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| 110 | 
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| 111 | static inline forall( dtype T | sized(T) ) T * align_alloc( size_t align, size_t dim ) {
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| 112 |         //printf( "X15\n" );
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| 113 |         return (T *)memalign( align, dim * sizeof(T) );
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| 114 | } // align_alloc
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| 115 | static inline forall( dtype T | sized(T) ) T * align_alloc( size_t align, size_t dim, char fill ) {
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| 116 |         //printf( "X16\n" );
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| 117 |     T * ptr = (T *)memalign( align, dim * sizeof(T) );
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| 118 |     return (T *)memset( ptr, (int)fill, dim * sizeof(T) );
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| 119 | } // align_alloc
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| 120 | 
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| 121 | 
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| 122 | // data, non-array types
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| 123 | static inline forall( dtype T | sized(T) ) T * memset( T * dest, char c ) {
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| 124 |         //printf( "X17\n" );
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| 125 |         return (T *)memset( dest, c, sizeof(T) );
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| 126 | } // memset
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| 127 | extern "C" { void * memcpy( void * dest, const void * src, size_t size ); } // use default C routine for void *
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| 128 | static inline forall( dtype T | sized(T) ) T * memcpy( T * dest, const T * src ) {
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| 129 |         //printf( "X18\n" );
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| 130 |         return (T *)memcpy( dest, src, sizeof(T) );
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| 131 | } // memcpy
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| 132 | 
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| 133 | // data, array types
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| 134 | static inline forall( dtype T | sized(T) ) T * memset( T dest[], size_t dim, char c ) {
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| 135 |         //printf( "X19\n" );
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| 136 |         return (T *)(void *)memset( dest, c, dim * sizeof(T) ); // C memset
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| 137 | } // memset
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| 138 | static inline forall( dtype T | sized(T) ) T * memcpy( T dest[], const T src[], size_t dim ) {
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| 139 |         //printf( "X20\n" );
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| 140 |         return (T *)(void *)memcpy( dest, src, dim * sizeof(T) ); // C memcpy
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| 141 | } // memcpy
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| 142 | 
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| 143 | // allocation/deallocation and constructor/destructor, non-array types
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| 144 | forall( dtype T | sized(T), ttype Params | { void ?{}( T &, Params ); } ) T * new( Params p );
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| 145 | forall( dtype T | sized(T) | { void ^?{}( T & ); } ) void delete( T * ptr );
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| 146 | forall( dtype T, ttype Params | sized(T) | { void ^?{}( T & ); void delete( Params ); } ) void delete( T * ptr, Params rest );
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| 147 | 
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| 148 | // allocation/deallocation and constructor/destructor, array types
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| 149 | forall( dtype T | sized(T), ttype Params | { void ?{}( T &, Params ); } ) T * anew( size_t dim, Params p );
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| 150 | forall( dtype T | sized(T) | { void ^?{}( T & ); } ) void adelete( size_t dim, T arr[] );
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| 151 | forall( dtype T | sized(T) | { void ^?{}( T & ); }, ttype Params | { void adelete( Params ); } ) void adelete( size_t dim, T arr[], Params rest );
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| 152 | 
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| 153 | //---------------------------------------
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| 154 | 
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| 155 | static inline int strto( const char * sptr, char ** eptr, int base ) { return (int)strtol( sptr, eptr, base ); }
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| 156 | static inline unsigned int strto( const char * sptr, char ** eptr, int base ) { return (unsigned int)strtoul( sptr, eptr, base ); }
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| 157 | static inline long int strto( const char * sptr, char ** eptr, int base ) { return strtol( sptr, eptr, base ); }
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| 158 | static inline unsigned long int strto( const char * sptr, char ** eptr, int base ) { return strtoul( sptr, eptr, base ); }
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| 159 | static inline long long int strto( const char * sptr, char ** eptr, int base ) { return strtoll( sptr, eptr, base ); }
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| 160 | static inline unsigned long long int strto( const char * sptr, char ** eptr, int base ) { return strtoull( sptr, eptr, base ); }
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| 161 | 
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| 162 | static inline float strto( const char * sptr, char ** eptr ) { return strtof( sptr, eptr ); }
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| 163 | static inline double strto( const char * sptr, char ** eptr ) { return strtod( sptr, eptr ); }
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| 164 | static inline long double strto( const char * sptr, char ** eptr ) { return strtold( sptr, eptr ); }
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| 165 | 
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| 166 | float _Complex strto( const char * sptr, char ** eptr );
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| 167 | double _Complex strto( const char * sptr, char ** eptr );
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| 168 | long double _Complex strto( const char * sptr, char ** eptr );
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| 169 | 
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| 170 | static inline int ato( const char * sptr ) {return (int)strtol( sptr, 0, 10 ); }
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| 171 | static inline unsigned int ato( const char * sptr ) { return (unsigned int)strtoul( sptr, 0, 10 ); }
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| 172 | static inline long int ato( const char * sptr ) { return strtol( sptr, 0, 10 ); }
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| 173 | static inline unsigned long int ato( const char * sptr ) { return strtoul( sptr, 0, 10 ); }
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| 174 | static inline long long int ato( const char * sptr ) { return strtoll( sptr, 0, 10 ); }
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| 175 | static inline unsigned long long int ato( const char * sptr ) { return strtoull( sptr, 0, 10 ); }
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| 176 | 
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| 177 | static inline float ato( const char * sptr ) { return strtof( sptr, 0 ); }
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| 178 | static inline double ato( const char * sptr ) { return strtod( sptr, 0 ); }
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| 179 | static inline long double ato( const char * sptr ) { return strtold( sptr, 0 ); }
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| 180 | 
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| 181 | static inline float _Complex ato( const char * sptr ) { return strto( sptr, NULL ); }
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| 182 | static inline double _Complex ato( const char * sptr ) { return strto( sptr, NULL ); }
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| 183 | static inline long double _Complex ato( const char * sptr ) { return strto( sptr, NULL ); }
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| 184 | 
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| 185 | //---------------------------------------
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| 186 | 
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| 187 | forall( otype E | { int ?<?( E, E ); } )
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| 188 | E * bsearch( E key, const E * vals, size_t dim );
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| 189 | 
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| 190 | forall( otype E | { int ?<?( E, E ); } )
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| 191 | size_t bsearch( E key, const E * vals, size_t dim );
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| 192 | 
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| 193 | forall( otype K, otype E | { int ?<?( K, K ); K getKey( const E & ); } )
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| 194 | E * bsearch( K key, const E * vals, size_t dim );
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| 195 | 
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| 196 | forall( otype K, otype E | { int ?<?( K, K ); K getKey( const E & ); } )
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| 197 | size_t bsearch( K key, const E * vals, size_t dim );
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| 198 | 
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| 199 | 
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| 200 | forall( otype E | { int ?<?( E, E ); } )
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| 201 | E * bsearchl( E key, const E * vals, size_t dim );
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| 202 | 
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| 203 | forall( otype E | { int ?<?( E, E ); } )
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| 204 | size_t bsearchl( E key, const E * vals, size_t dim );
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| 205 | 
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| 206 | forall( otype K, otype E | { int ?<?( K, K ); K getKey( const E & ); } )
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| 207 | E * bsearchl( K key, const E * vals, size_t dim );
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| 208 | 
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| 209 | forall( otype K, otype E | { int ?<?( K, K ); K getKey( const E & ); } )
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| 210 | size_t bsearchl( K key, const E * vals, size_t dim );
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| 211 | 
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| 212 | 
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| 213 | forall( otype E | { int ?<?( E, E ); } )
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| 214 | E * bsearchu( E key, const E * vals, size_t dim );
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| 215 | 
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| 216 | forall( otype E | { int ?<?( E, E ); } )
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| 217 | size_t bsearchu( E key, const E * vals, size_t dim );
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| 218 | 
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| 219 | forall( otype K, otype E | { int ?<?( K, K ); K getKey( const E & ); } )
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| 220 | E * bsearchu( K key, const E * vals, size_t dim );
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| 221 | 
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| 222 | forall( otype K, otype E | { int ?<?( K, K ); K getKey( const E & ); } )
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| 223 | size_t bsearchu( K key, const E * vals, size_t dim );
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| 224 | 
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| 225 | 
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| 226 | forall( otype E | { int ?<?( E, E ); } )
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| 227 | void qsort( E * vals, size_t dim );
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| 228 | 
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| 229 | //---------------------------------------
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| 230 | 
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| 231 | [ int, int ] div( int num, int denom );
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| 232 | [ long int, long int ] div( long int num, long int denom );
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| 233 | [ long long int, long long int ] div( long long int num, long long int denom );
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| 234 | forall( otype T | { T ?/?( T, T ); T ?%?( T, T ); } )
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| 235 | [ T, T ] div( T num, T demon );
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| 236 | 
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| 237 | //---------------------------------------
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| 238 | 
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| 239 | static inline unsigned char abs( signed char v ) { return abs( (int)v ); }
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| 240 | extern "C" { int abs( int ); }                                                  // use default C routine for int
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| 241 | static inline unsigned long int abs( long int v ) { return labs( v ); }
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| 242 | static inline unsigned long long int abs( long long int v ) { return llabs( v ); }
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| 243 | 
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| 244 | extern "C" {
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| 245 | double fabs( double );
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| 246 | float fabsf( float );
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| 247 | long double fabsl( long double );
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| 248 | } // extern "C"
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| 249 | static inline float abs( float x ) { return fabsf( x ); }
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| 250 | static inline double abs( double x ) { return fabs( x ); }
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| 251 | static inline long double abs( long double x ) { return fabsl( x ); }
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| 252 | 
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| 253 | extern "C" {
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| 254 | double cabs( double _Complex );
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| 255 | float cabsf( float _Complex );
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| 256 | long double cabsl( long double _Complex );
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| 257 | } // extern "C"
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| 258 | static inline float abs( float _Complex x ) { return cabsf( x ); }
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| 259 | static inline double abs( double _Complex x ) { return cabs( x ); }
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| 260 | static inline long double abs( long double _Complex x ) { return cabsl( x ); }
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| 261 | 
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| 262 | forall( otype T | { void ?{}( T &, zero_t ); int ?<?( T, T ); T -?( T ); } )
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| 263 | T abs( T );
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| 264 | 
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| 265 | //---------------------------------------
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| 266 | 
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| 267 | extern "C" { void srandom( unsigned int seed ); }               // override C version
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| 268 | char random( void );
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| 269 | char random( char u );
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| 270 | char random( char l, char u );
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| 271 | int random( void );
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| 272 | int random( int u );
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| 273 | int random( int l, int u );
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| 274 | unsigned int random( void );
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| 275 | unsigned int random( unsigned int u );
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| 276 | unsigned int random( unsigned int l, unsigned int u );
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| 277 | extern "C" { long int random( void ); }                                 // override C version
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| 278 | long int random( long int u );
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| 279 | long int random( long int l, long int u );
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| 280 | unsigned long int random( void );
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| 281 | unsigned long int random( unsigned long int u );
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| 282 | unsigned long int random( unsigned long int l, unsigned long int u );
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| 283 | float random( void );
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| 284 | double random( void );
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| 285 | float _Complex random( void );
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| 286 | double _Complex random( void );
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| 287 | long double _Complex random( void );
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| 288 | 
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| 289 | //---------------------------------------
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| 290 | 
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| 291 | forall( otype T | { int ?<?( T, T ); } )
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| 292 | static inline T min( T t1, T t2 ) { return t1 < t2 ? t1 : t2; }
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| 293 | 
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| 294 | forall( otype T | { int ?>?( T, T ); } )
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| 295 | static inline T max( T t1, T t2 ) { return t1 > t2 ? t1 : t2; }
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| 296 | 
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| 297 | forall( otype T | { T min( T, T ); T max( T, T ); } )
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| 298 | static inline T clamp( T value, T min_val, T max_val ) { return max( min_val, min( value, max_val ) ); }
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| 299 | 
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| 300 | forall( otype T )
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| 301 | static inline void swap( T & v1, T & v2 ) { T temp = v1; v1 = v2; v2 = temp; }
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| 302 | 
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| 303 | // Local Variables: //
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| 304 | // mode: c //
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| 305 | // tab-width: 4 //
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| 306 | // End: //
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