/usr/include/freehdl/std-standard.hh is in libfreehdl0-dev 0.0.8-2.2ubuntu2.
This file is owned by root:root, with mode 0o644.
The actual contents of the file can be viewed below.
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 | #ifndef FREEHDL_STD_STANDARD_H
#define FREEHDL_STD_STANDARD_H
#include <float.h>
#include <limits.h>
#include <freehdl/std-vhdl-types.hh>
/* ***************************************************************
* Predefined VHDL types
* *************************************************************** */
/** Enum info class of predefined VHDL type CHARACTER */
class L3std_Q8standard_I9character : public enum_info_base {
static const char *values[256]; //={"'0'", "'1'"};
public:
L3std_Q8standard_I9character() : enum_info_base(0, 255, values) {};
static const char **get_values() { return values; }
static int low() { return 0; }
static int high() { return 255; }
static int left() { return 0; }
static int right() { return 255; }
};
extern L3std_Q8standard_I9character L3std_Q8standard_I9character_INFO;
#define character enumeration
/** Enum info class of predefined VHDL type BIT */
class L3std_Q8standard_I3bit : public enum_info_base {
static const char *values[2]; //={"'0'", "'1'"};
public:
L3std_Q8standard_I3bit() : enum_info_base(0, 1, values) {};
static const char **get_values() { return values; }
static int low() { return 0; }
static int high() { return 1; }
static int left() { return 0; }
static int right() { return 1; }
};
extern L3std_Q8standard_I3bit L3std_Q8standard_I3bit_INFO;
#define bit enumeration
/** Enum info class of predefined VHDL type BOOLEAN */
class L3std_Q8standard_I7boolean : public enum_info_base {
static const char *values[2]; //={"'0'", "'1'"};
public:
L3std_Q8standard_I7boolean() : enum_info_base(0, 1, values) {};
static const char **get_values() { return values; }
static int low() { return 0; }
static int high() { return 1; }
static int left() { return 0; }
static int right() { return 1; }
};
extern L3std_Q8standard_I7boolean L3std_Q8standard_I7boolean_INFO;
#define L3std_Q8standard_T7boolean boolean_enum_type
#define boolean enumeration
/** Enum info class of predefined VHDL type severity_level */
class L3std_Q8standard_I14severity_level : public enum_info_base {
static const char *values[4];
public:
L3std_Q8standard_I14severity_level() : enum_info_base(0, 3, values) {};
static const char **get_values() { return values; }
static int low() { return 0; }
static int high() { return 3; }
static int left() { return 0; }
static int right() { return 3; }
};
extern L3std_Q8standard_I14severity_level L3std_Q8standard_I14severity_level_INFO;
#define severity_level enumeration
/** Integer info class of predefined VHDL INTEGER type */
class L3std_Q8standard_I7integer : public integer_info_base {
public:
static integer low() { return INT_MIN+1; };
static integer high() { return INT_MAX; }
static integer left() { return INT_MIN+1; }
static integer right() { return INT_MAX; }
L3std_Q8standard_I7integer() :
integer_info_base(left(), right(), low(), high()) {};
};
extern L3std_Q8standard_I7integer L3std_Q8standard_I7integer_INFO;
/** Integer info class of predefined VHDL NATURAL type */
class L3std_Q8standard_I7natural : public integer_info_base {
public:
static integer low() { return 0; };
static integer high() { return INT_MAX; }
static integer left() { return 0; }
static integer right() { return INT_MAX; }
L3std_Q8standard_I7natural() :
integer_info_base(left(), right(), low(), high()) {};
};
extern L3std_Q8standard_I7natural L3std_Q8standard_I7natural_INFO;
#define natural integer
/** Integer info class of predefined VHDL POSITIVE type */
class L3std_Q8standard_I8positive : public integer_info_base {
public:
static integer low() { return 1; };
static integer high() { return INT_MAX; }
static integer left() { return 1; }
static integer right() { return INT_MAX; }
L3std_Q8standard_I8positive() :
integer_info_base(left(), right(), low(), high()) {};
};
extern L3std_Q8standard_I8positive L3std_Q8standard_I8positive_INFO;
#define positive integer
/** Floatig point info class of predefined VHDL REAL type */
class L3std_Q8standard_I4real : public float_info_base {
public:
static floatingpoint low() { return -DBL_MAX; };
static floatingpoint high() { return DBL_MAX; }
static floatingpoint left() { return -DBL_MAX; }
static floatingpoint right() { return DBL_MAX; }
L3std_Q8standard_I4real() :
float_info_base(left(), right(), low(), high()) {};
};
extern L3std_Q8standard_I4real L3std_Q8standard_I4real_INFO;
#define real floatingpoint
#ifndef __LONG_LONG_MAX__
#define __LONG_LONG_MAX__ 9223372036854775807LL
#endif
#ifndef LONG_LONG_MIN
#define LONG_LONG_MIN (-__LONG_LONG_MAX__-1)
#endif
#ifndef LONG_LONG_MAX
#define LONG_LONG_MAX __LONG_LONG_MAX__
#endif
/** Physical point info class of predefined VHDL TIME type */
class L3std_Q8standard_I4time : public physical_info_base {
public:
const static long unit_count = 7;
const static char *units[7];
const static physical scale[7];
static physical low() { return LONG_LONG_MIN; };
static physical high() { return LONG_LONG_MAX; }
static physical left() { return LONG_LONG_MIN; }
static physical right() { return LONG_LONG_MAX; }
L3std_Q8standard_I4time() :
physical_info_base(left(), right(), low(), high(), units, scale, unit_count) {};
};
extern L3std_Q8standard_I4time L3std_Q8standard_I4time_INFO;
#define L3std_Q8standard_T4time physical_type<L3std_Q8standard_I4time>
// Just to save some typing
#define vtime physical
/** Predefined array type bit_vector */
extern array_info L3std_Q8standard_I10bit_vector_INFO;
#define L3std_Q8standard_T10bit_vector array_type<bit>
// Just to save some typing
#define vbit_vector L3std_Q8standard_T10bit_vector
/** Predefined array type string */
extern array_info L3std_Q8standard_I6string_INFO;
#define L3std_Q8standard_T6string array_type<character>
// Just to save some typing
#define vstring L3std_Q8standard_T6string
extern void report (const vstring&, severity_level);
extern void report (severity_level);
extern lint attribute_value (type_info_interface *, const vstring &);
extern vstring attribute_image (type_info_interface *, const void *);
// Predefined function "now"
extern vtime L3std_Q8standard_Y3now_i303();
/******************************************************
* Some definitions which are used by the kernel only
******************************************************/
#ifdef KERNEL
// Min severity level of assert or report messages that will cause the
// simulator to stop execution
extern severity_level exit_severity_level;
// Convert simulation time to string
inline string time_to_string (const physical t)
{
lint tval = t < 0? -t : t;
int i = 0;
if (tval != 0) {
for (i=1; i < L3std_Q8standard_I4time::unit_count; i++)
if (tval % L3std_Q8standard_I4time::scale[i] != 0) { i--; break; }
tval = tval / L3std_Q8standard_I4time::scale[i];
}
return to_string (lint (t < 0? -1 : 1) * tval) + " " + L3std_Q8standard_I4time::units[i];
}
#endif
/******************************************************
* End of kernel only definitions
******************************************************/
#endif
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