329
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1 // Formatting library for C++ - optional OS-specific functionality
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2 //
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3 // Copyright (c) 2012 - 2016, Victor Zverovich
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4 // All rights reserved.
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5 //
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6 // For the license information refer to format.h.
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7
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8 // Disable bogus MSVC warnings.
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9 #if !defined(_CRT_SECURE_NO_WARNINGS) && defined(_MSC_VER)
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10 # define _CRT_SECURE_NO_WARNINGS
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11 #endif
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12
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13 #include "fmt/os.h"
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14
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15 #include <climits>
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16
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17 #if FMT_USE_FCNTL
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18 # include <sys/stat.h>
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19 # include <sys/types.h>
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20
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21 # ifdef _WRS_KERNEL // VxWorks7 kernel
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22 # include <ioLib.h> // getpagesize
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23 # endif
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24
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25 # ifndef _WIN32
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26 # include <unistd.h>
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27 # else
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28 # ifndef WIN32_LEAN_AND_MEAN
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29 # define WIN32_LEAN_AND_MEAN
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30 # endif
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31 # include <io.h>
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32
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33 # ifndef S_IRUSR
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34 # define S_IRUSR _S_IREAD
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35 # endif
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36 # ifndef S_IWUSR
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37 # define S_IWUSR _S_IWRITE
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38 # endif
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39 # ifndef S_IRGRP
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40 # define S_IRGRP 0
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41 # endif
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42 # ifndef S_IWGRP
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43 # define S_IWGRP 0
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44 # endif
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45 # ifndef S_IROTH
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46 # define S_IROTH 0
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47 # endif
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48 # ifndef S_IWOTH
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49 # define S_IWOTH 0
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50 # endif
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51 # endif // _WIN32
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52 #endif // FMT_USE_FCNTL
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53
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54 #ifdef _WIN32
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55 # include <windows.h>
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56 #endif
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57
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58 namespace {
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59 #ifdef _WIN32
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60 // Return type of read and write functions.
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61 using rwresult = int;
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62
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63 // On Windows the count argument to read and write is unsigned, so convert
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64 // it from size_t preventing integer overflow.
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65 inline unsigned convert_rwcount(std::size_t count) {
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66 return count <= UINT_MAX ? static_cast<unsigned>(count) : UINT_MAX;
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67 }
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68 #elif FMT_USE_FCNTL
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69 // Return type of read and write functions.
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70 using rwresult = ssize_t;
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71
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72 inline std::size_t convert_rwcount(std::size_t count) { return count; }
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73 #endif
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74 } // namespace
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75
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76 FMT_BEGIN_NAMESPACE
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77
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78 #ifdef _WIN32
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79 namespace detail {
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80
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81 class system_message {
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82 system_message(const system_message&) = delete;
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83 void operator=(const system_message&) = delete;
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84
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85 unsigned long result_;
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86 wchar_t* message_;
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87
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88 static bool is_whitespace(wchar_t c) noexcept {
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89 return c == L' ' || c == L'\n' || c == L'\r' || c == L'\t' || c == L'\0';
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90 }
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91
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92 public:
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93 explicit system_message(unsigned long error_code)
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94 : result_(0), message_(nullptr) {
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95 result_ = FormatMessageW(
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96 FORMAT_MESSAGE_ALLOCATE_BUFFER | FORMAT_MESSAGE_FROM_SYSTEM |
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97 FORMAT_MESSAGE_IGNORE_INSERTS,
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98 nullptr, error_code, MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT),
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99 reinterpret_cast<wchar_t*>(&message_), 0, nullptr);
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100 if (result_ != 0) {
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101 while (result_ != 0 && is_whitespace(message_[result_ - 1])) {
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102 --result_;
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103 }
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104 }
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105 }
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106 ~system_message() { LocalFree(message_); }
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107 explicit operator bool() const noexcept { return result_ != 0; }
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108 operator basic_string_view<wchar_t>() const noexcept {
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109 return basic_string_view<wchar_t>(message_, result_);
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110 }
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111 };
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112
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113 class utf8_system_category final : public std::error_category {
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114 public:
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115 const char* name() const noexcept override { return "system"; }
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116 std::string message(int error_code) const override {
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117 auto&& msg = system_message(error_code);
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118 if (msg) {
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119 auto utf8_message = to_utf8<wchar_t>();
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120 if (utf8_message.convert(msg)) {
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121 return utf8_message.str();
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122 }
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123 }
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124 return "unknown error";
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125 }
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126 };
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127
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128 } // namespace detail
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129
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130 FMT_API const std::error_category& system_category() noexcept {
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131 static const detail::utf8_system_category category;
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132 return category;
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133 }
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134
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135 std::system_error vwindows_error(int err_code, string_view format_str,
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136 format_args args) {
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137 auto ec = std::error_code(err_code, system_category());
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138 return std::system_error(ec, vformat(format_str, args));
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139 }
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140
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141 void detail::format_windows_error(detail::buffer<char>& out, int error_code,
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142 const char* message) noexcept {
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143 FMT_TRY {
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144 auto&& msg = system_message(error_code);
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145 if (msg) {
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146 auto utf8_message = to_utf8<wchar_t>();
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147 if (utf8_message.convert(msg)) {
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148 fmt::format_to(appender(out), FMT_STRING("{}: {}"), message,
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149 string_view(utf8_message));
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150 return;
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151 }
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152 }
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153 }
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154 FMT_CATCH(...) {}
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155 format_error_code(out, error_code, message);
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156 }
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157
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158 void report_windows_error(int error_code, const char* message) noexcept {
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159 report_error(detail::format_windows_error, error_code, message);
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160 }
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161 #endif // _WIN32
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162
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163 buffered_file::~buffered_file() noexcept {
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164 if (file_ && FMT_SYSTEM(fclose(file_)) != 0)
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165 report_system_error(errno, "cannot close file");
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166 }
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167
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168 buffered_file::buffered_file(cstring_view filename, cstring_view mode) {
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169 FMT_RETRY_VAL(file_, FMT_SYSTEM(fopen(filename.c_str(), mode.c_str())),
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170 nullptr);
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171 if (!file_)
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172 FMT_THROW(system_error(errno, FMT_STRING("cannot open file {}"),
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173 filename.c_str()));
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174 }
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175
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176 void buffered_file::close() {
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177 if (!file_) return;
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178 int result = FMT_SYSTEM(fclose(file_));
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179 file_ = nullptr;
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180 if (result != 0)
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181 FMT_THROW(system_error(errno, FMT_STRING("cannot close file")));
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182 }
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183
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184 int buffered_file::descriptor() const {
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185 #if !defined(fileno)
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186 int fd = FMT_POSIX_CALL(fileno(file_));
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187 #elif defined(FMT_HAS_SYSTEM)
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188 // fileno is a macro on OpenBSD so we cannot use FMT_POSIX_CALL.
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189 # define FMT_DISABLE_MACRO
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190 int fd = FMT_SYSTEM(fileno FMT_DISABLE_MACRO(file_));
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191 #else
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192 int fd = fileno(file_);
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193 #endif
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194 if (fd == -1)
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195 FMT_THROW(system_error(errno, FMT_STRING("cannot get file descriptor")));
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196 return fd;
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197 }
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198
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199 #if FMT_USE_FCNTL
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200 # ifdef _WIN32
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201 using mode_t = int;
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202 # endif
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203 constexpr mode_t default_open_mode =
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204 S_IRUSR | S_IWUSR | S_IRGRP | S_IWGRP | S_IROTH | S_IWOTH;
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205
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206 file::file(cstring_view path, int oflag) {
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207 # if defined(_WIN32) && !defined(__MINGW32__)
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208 fd_ = -1;
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209 auto converted = detail::utf8_to_utf16(string_view(path.c_str()));
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210 *this = file::open_windows_file(converted.c_str(), oflag);
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211 # else
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212 FMT_RETRY(fd_, FMT_POSIX_CALL(open(path.c_str(), oflag, default_open_mode)));
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213 if (fd_ == -1)
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214 FMT_THROW(
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215 system_error(errno, FMT_STRING("cannot open file {}"), path.c_str()));
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216 # endif
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217 }
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218
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219 file::~file() noexcept {
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220 // Don't retry close in case of EINTR!
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221 // See http://linux.derkeiler.com/Mailing-Lists/Kernel/2005-09/3000.html
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222 if (fd_ != -1 && FMT_POSIX_CALL(close(fd_)) != 0)
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223 report_system_error(errno, "cannot close file");
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224 }
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225
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226 void file::close() {
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227 if (fd_ == -1) return;
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228 // Don't retry close in case of EINTR!
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229 // See http://linux.derkeiler.com/Mailing-Lists/Kernel/2005-09/3000.html
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230 int result = FMT_POSIX_CALL(close(fd_));
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231 fd_ = -1;
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232 if (result != 0)
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233 FMT_THROW(system_error(errno, FMT_STRING("cannot close file")));
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234 }
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235
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236 long long file::size() const {
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237 # ifdef _WIN32
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238 // Use GetFileSize instead of GetFileSizeEx for the case when _WIN32_WINNT
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239 // is less than 0x0500 as is the case with some default MinGW builds.
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240 // Both functions support large file sizes.
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241 DWORD size_upper = 0;
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242 HANDLE handle = reinterpret_cast<HANDLE>(_get_osfhandle(fd_));
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243 DWORD size_lower = FMT_SYSTEM(GetFileSize(handle, &size_upper));
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244 if (size_lower == INVALID_FILE_SIZE) {
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245 DWORD error = GetLastError();
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246 if (error != NO_ERROR)
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247 FMT_THROW(windows_error(GetLastError(), "cannot get file size"));
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248 }
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249 unsigned long long long_size = size_upper;
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250 return (long_size << sizeof(DWORD) * CHAR_BIT) | size_lower;
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251 # else
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252 using Stat = struct stat;
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253 Stat file_stat = Stat();
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254 if (FMT_POSIX_CALL(fstat(fd_, &file_stat)) == -1)
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255 FMT_THROW(system_error(errno, FMT_STRING("cannot get file attributes")));
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256 static_assert(sizeof(long long) >= sizeof(file_stat.st_size),
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257 "return type of file::size is not large enough");
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258 return file_stat.st_size;
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259 # endif
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260 }
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261
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262 std::size_t file::read(void* buffer, std::size_t count) {
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263 rwresult result = 0;
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264 FMT_RETRY(result, FMT_POSIX_CALL(read(fd_, buffer, convert_rwcount(count))));
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265 if (result < 0)
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266 FMT_THROW(system_error(errno, FMT_STRING("cannot read from file")));
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267 return detail::to_unsigned(result);
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268 }
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269
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270 std::size_t file::write(const void* buffer, std::size_t count) {
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271 rwresult result = 0;
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272 FMT_RETRY(result, FMT_POSIX_CALL(write(fd_, buffer, convert_rwcount(count))));
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273 if (result < 0)
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274 FMT_THROW(system_error(errno, FMT_STRING("cannot write to file")));
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275 return detail::to_unsigned(result);
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276 }
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277
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278 file file::dup(int fd) {
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279 // Don't retry as dup doesn't return EINTR.
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280 // http://pubs.opengroup.org/onlinepubs/009695399/functions/dup.html
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281 int new_fd = FMT_POSIX_CALL(dup(fd));
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282 if (new_fd == -1)
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283 FMT_THROW(system_error(
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284 errno, FMT_STRING("cannot duplicate file descriptor {}"), fd));
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285 return file(new_fd);
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286 }
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287
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288 void file::dup2(int fd) {
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289 int result = 0;
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290 FMT_RETRY(result, FMT_POSIX_CALL(dup2(fd_, fd)));
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291 if (result == -1) {
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292 FMT_THROW(system_error(
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293 errno, FMT_STRING("cannot duplicate file descriptor {} to {}"), fd_,
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294 fd));
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295 }
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296 }
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297
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298 void file::dup2(int fd, std::error_code& ec) noexcept {
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299 int result = 0;
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300 FMT_RETRY(result, FMT_POSIX_CALL(dup2(fd_, fd)));
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301 if (result == -1) ec = std::error_code(errno, std::generic_category());
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302 }
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303
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304 void file::pipe(file& read_end, file& write_end) {
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305 // Close the descriptors first to make sure that assignments don't throw
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306 // and there are no leaks.
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307 read_end.close();
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308 write_end.close();
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309 int fds[2] = {};
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310 # ifdef _WIN32
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311 // Make the default pipe capacity same as on Linux 2.6.11+.
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312 enum { DEFAULT_CAPACITY = 65536 };
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313 int result = FMT_POSIX_CALL(pipe(fds, DEFAULT_CAPACITY, _O_BINARY));
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314 # else
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315 // Don't retry as the pipe function doesn't return EINTR.
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316 // http://pubs.opengroup.org/onlinepubs/009696799/functions/pipe.html
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317 int result = FMT_POSIX_CALL(pipe(fds));
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318 # endif
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319 if (result != 0)
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320 FMT_THROW(system_error(errno, FMT_STRING("cannot create pipe")));
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321 // The following assignments don't throw because read_fd and write_fd
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322 // are closed.
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323 read_end = file(fds[0]);
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324 write_end = file(fds[1]);
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325 }
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326
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327 buffered_file file::fdopen(const char* mode) {
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328 // Don't retry as fdopen doesn't return EINTR.
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329 # if defined(__MINGW32__) && defined(_POSIX_)
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330 FILE* f = ::fdopen(fd_, mode);
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331 # else
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332 FILE* f = FMT_POSIX_CALL(fdopen(fd_, mode));
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333 # endif
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334 if (!f) {
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335 FMT_THROW(system_error(
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336 errno, FMT_STRING("cannot associate stream with file descriptor")));
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337 }
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338 buffered_file bf(f);
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339 fd_ = -1;
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340 return bf;
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341 }
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342
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343 # if defined(_WIN32) && !defined(__MINGW32__)
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344 file file::open_windows_file(wcstring_view path, int oflag) {
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345 int fd = -1;
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346 auto err = _wsopen_s(&fd, path.c_str(), oflag, _SH_DENYNO, default_open_mode);
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347 if (fd == -1) {
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348 FMT_THROW(system_error(err, FMT_STRING("cannot open file {}"),
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349 detail::to_utf8<wchar_t>(path.c_str()).c_str()));
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350 }
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351 return file(fd);
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352 }
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353 # endif
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354
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355 # if !defined(__MSDOS__)
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356 long getpagesize() {
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357 # ifdef _WIN32
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358 SYSTEM_INFO si;
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359 GetSystemInfo(&si);
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360 return si.dwPageSize;
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361 # else
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362 # ifdef _WRS_KERNEL
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363 long size = FMT_POSIX_CALL(getpagesize());
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364 # else
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365 long size = FMT_POSIX_CALL(sysconf(_SC_PAGESIZE));
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366 # endif
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367
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368 if (size < 0)
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369 FMT_THROW(system_error(errno, FMT_STRING("cannot get memory page size")));
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370 return size;
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371 # endif
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372 }
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373 # endif
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374
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375 namespace detail {
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376
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377 void file_buffer::grow(size_t) {
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378 if (this->size() == this->capacity()) flush();
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379 }
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380
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381 file_buffer::file_buffer(cstring_view path,
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382 const detail::ostream_params& params)
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383 : file_(path, params.oflag) {
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384 set(new char[params.buffer_size], params.buffer_size);
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385 }
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386
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387 file_buffer::file_buffer(file_buffer&& other)
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388 : detail::buffer<char>(other.data(), other.size(), other.capacity()),
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389 file_(std::move(other.file_)) {
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390 other.clear();
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391 other.set(nullptr, 0);
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392 }
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393
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394 file_buffer::~file_buffer() {
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395 flush();
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396 delete[] data();
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397 }
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398 } // namespace detail
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399
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400 ostream::~ostream() = default;
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401 #endif // FMT_USE_FCNTL
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402 FMT_END_NAMESPACE
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