1 | /////////////////////////////////////////////////////////////////////////// |
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2 | // |
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3 | // Copyright (c) 2002, Industrial Light & Magic, a division of Lucas |
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4 | // Digital Ltd. LLC |
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5 | // |
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6 | // All rights reserved. |
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7 | // |
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8 | // Redistribution and use in source and binary forms, with or without |
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9 | // modification, are permitted provided that the following conditions are |
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10 | // met: |
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11 | // * Redistributions of source code must retain the above copyright |
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12 | // notice, this list of conditions and the following disclaimer. |
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13 | // * Redistributions in binary form must reproduce the above |
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14 | // copyright notice, this list of conditions and the following disclaimer |
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15 | // in the documentation and/or other materials provided with the |
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16 | // distribution. |
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17 | // * Neither the name of Industrial Light & Magic nor the names of |
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18 | // its contributors may be used to endorse or promote products derived |
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19 | // from this software without specific prior written permission. |
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20 | // |
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21 | // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS |
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22 | // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT |
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23 | // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR |
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24 | // A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT |
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25 | // OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, |
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26 | // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT |
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27 | // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, |
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28 | // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY |
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29 | // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT |
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30 | // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE |
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31 | // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
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32 | // |
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33 | /////////////////////////////////////////////////////////////////////////// |
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34 | |
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35 | |
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36 | |
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37 | #ifndef INCLUDED_IMATHLIMITS_H |
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38 | #define INCLUDED_IMATHLIMITS_H |
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39 | |
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40 | //---------------------------------------------------------------- |
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41 | // |
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42 | // Limitations of the basic C++ numerical data types |
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43 | // |
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44 | //---------------------------------------------------------------- |
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45 | |
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46 | #include <float.h> |
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47 | #include <limits.h> |
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48 | |
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49 | //------------------------------------------ |
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50 | // In Windows, min and max are macros. Yay. |
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51 | //------------------------------------------ |
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52 | |
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53 | #ifdef PLATFORM_WINDOWS |
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54 | #ifdef min |
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55 | #undef min |
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56 | #endif |
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57 | #ifdef max |
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58 | #undef max |
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59 | #endif |
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60 | #endif |
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61 | |
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62 | namespace Imath { |
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63 | |
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64 | |
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65 | //----------------------------------------------------------------- |
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66 | // |
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67 | // Template class limits<T> returns information about the limits |
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68 | // of numerical data type T: |
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69 | // |
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70 | // min() largest possible negative value of type T |
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71 | // |
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72 | // max() largest possible positive value of type T |
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73 | // |
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74 | // smallest() smallest possible positive value of type T |
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75 | // |
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76 | // epsilon() smallest possible e of type T, for which |
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77 | // 1 + e != 1 |
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78 | // |
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79 | // isIntegral() returns true if T is an integral type |
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80 | // |
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81 | // isSigned() returns true if T is signed |
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82 | // |
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83 | // Class limits<T> is useful to implement template classes or |
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84 | // functions which depend on the limits of a numerical type |
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85 | // which is not known in advance; for example: |
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86 | // |
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87 | // template <class T> max (T x[], int n) |
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88 | // { |
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89 | // T m = limits<T>::min(); |
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90 | // |
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91 | // for (int i = 0; i < n; i++) |
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92 | // if (m < x[i]) |
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93 | // m = x[i]; |
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94 | // |
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95 | // return m; |
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96 | // } |
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97 | // |
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98 | // Class limits<T> has been implemented for the following types: |
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99 | // |
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100 | // char, signed char, unsigned char |
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101 | // short, unsigned short |
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102 | // int, unsigned int |
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103 | // long, unsigned long |
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104 | // float |
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105 | // double |
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106 | // long double |
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107 | // |
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108 | // Class limits<T> has only static member functions, all of which |
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109 | // are implemented as inlines. No objects of type limits<T> are |
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110 | // ever created. |
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111 | // |
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112 | //----------------------------------------------------------------- |
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113 | |
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114 | |
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115 | template <class T> struct limits |
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116 | { |
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117 | static T min(); |
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118 | static T max(); |
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119 | static T smallest(); |
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120 | static T epsilon(); |
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121 | static bool isIntegral(); |
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122 | static bool isSigned(); |
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123 | }; |
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124 | |
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125 | |
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126 | //--------------- |
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127 | // Implementation |
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128 | //--------------- |
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129 | |
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130 | template <> |
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131 | struct limits <char> |
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132 | { |
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133 | static char min() {return CHAR_MIN;} |
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134 | static char max() {return CHAR_MAX;} |
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135 | static char smallest() {return 1;} |
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136 | static char epsilon() {return 1;} |
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137 | static bool isIntegral() {return true;} |
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138 | static bool isSigned() {return (char) ~0 < 0;} |
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139 | }; |
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140 | |
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141 | template <> |
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142 | struct limits <signed char> |
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143 | { |
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144 | static signed char min() {return SCHAR_MIN;} |
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145 | static signed char max() {return SCHAR_MAX;} |
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146 | static signed char smallest() {return 1;} |
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147 | static signed char epsilon() {return 1;} |
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148 | static bool isIntegral() {return true;} |
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149 | static bool isSigned() {return true;} |
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150 | }; |
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151 | |
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152 | template <> |
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153 | struct limits <unsigned char> |
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154 | { |
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155 | static unsigned char min() {return 0;} |
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156 | static unsigned char max() {return UCHAR_MAX;} |
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157 | static unsigned char smallest() {return 1;} |
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158 | static unsigned char epsilon() {return 1;} |
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159 | static bool isIntegral() {return true;} |
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160 | static bool isSigned() {return false;} |
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161 | }; |
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162 | |
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163 | template <> |
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164 | struct limits <short> |
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165 | { |
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166 | static short min() {return SHRT_MIN;} |
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167 | static short max() {return SHRT_MAX;} |
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168 | static short smallest() {return 1;} |
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169 | static short epsilon() {return 1;} |
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170 | static bool isIntegral() {return true;} |
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171 | static bool isSigned() {return true;} |
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172 | }; |
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173 | |
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174 | template <> |
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175 | struct limits <unsigned short> |
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176 | { |
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177 | static unsigned short min() {return 0;} |
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178 | static unsigned short max() {return USHRT_MAX;} |
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179 | static unsigned short smallest() {return 1;} |
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180 | static unsigned short epsilon() {return 1;} |
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181 | static bool isIntegral() {return true;} |
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182 | static bool isSigned() {return false;} |
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183 | }; |
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184 | |
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185 | template <> |
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186 | struct limits <int> |
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187 | { |
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188 | static int min() {return INT_MIN;} |
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189 | static int max() {return INT_MAX;} |
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190 | static int smallest() {return 1;} |
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191 | static int epsilon() {return 1;} |
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192 | static bool isIntegral() {return true;} |
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193 | static bool isSigned() {return true;} |
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194 | }; |
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195 | |
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196 | template <> |
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197 | struct limits <unsigned int> |
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198 | { |
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199 | static unsigned int min() {return 0;} |
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200 | static unsigned int max() {return UINT_MAX;} |
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201 | static unsigned int smallest() {return 1;} |
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202 | static unsigned int epsilon() {return 1;} |
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203 | static bool isIntegral() {return true;} |
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204 | static bool isSigned() {return false;} |
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205 | }; |
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206 | |
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207 | template <> |
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208 | struct limits <long> |
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209 | { |
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210 | static long min() {return LONG_MIN;} |
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211 | static long max() {return LONG_MAX;} |
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212 | static long smallest() {return 1;} |
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213 | static long epsilon() {return 1;} |
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214 | static bool isIntegral() {return true;} |
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215 | static bool isSigned() {return true;} |
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216 | }; |
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217 | |
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218 | template <> |
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219 | struct limits <unsigned long> |
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220 | { |
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221 | static unsigned long min() {return 0;} |
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222 | static unsigned long max() {return ULONG_MAX;} |
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223 | static unsigned long smallest() {return 1;} |
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224 | static unsigned long epsilon() {return 1;} |
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225 | static bool isIntegral() {return true;} |
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226 | static bool isSigned() {return false;} |
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227 | }; |
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228 | |
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229 | template <> |
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230 | struct limits <float> |
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231 | { |
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232 | static float min() {return -FLT_MAX;} |
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233 | static float max() {return FLT_MAX;} |
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234 | static float smallest() {return FLT_MIN;} |
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235 | static float epsilon() {return FLT_EPSILON;} |
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236 | static bool isIntegral() {return false;} |
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237 | static bool isSigned() {return true;} |
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238 | }; |
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239 | |
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240 | template <> |
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241 | struct limits <double> |
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242 | { |
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243 | static double min() {return -DBL_MAX;} |
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244 | static double max() {return DBL_MAX;} |
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245 | static double smallest() {return DBL_MIN;} |
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246 | static double epsilon() {return DBL_EPSILON;} |
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247 | static bool isIntegral() {return false;} |
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248 | static bool isSigned() {return true;} |
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249 | }; |
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250 | |
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251 | template <> |
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252 | struct limits <long double> |
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253 | { |
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254 | static long double min() {return -LDBL_MAX;} |
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255 | static long double max() {return LDBL_MAX;} |
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256 | static long double smallest() {return LDBL_MIN;} |
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257 | static long double epsilon() {return LDBL_EPSILON;} |
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258 | static bool isIntegral() {return false;} |
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259 | static bool isSigned() {return true;} |
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260 | }; |
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261 | |
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262 | |
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263 | } // namespace Imath |
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264 | |
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265 | #endif |
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