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238 lines
6.6 KiB
238 lines
6.6 KiB
/* |
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A C++ interface to POSIX functions. |
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Copyright (c) 2012 - 2016, Victor Zverovich |
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All rights reserved. |
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For the license information refer to format.h. |
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*/ |
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// Disable bogus MSVC warnings. |
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#ifndef _CRT_SECURE_NO_WARNINGS |
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# define _CRT_SECURE_NO_WARNINGS |
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#endif |
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#include "posix.h" |
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#include <limits.h> |
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#include <sys/types.h> |
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#include <sys/stat.h> |
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#ifndef _WIN32 |
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# include <unistd.h> |
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#else |
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# include <windows.h> |
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# include <io.h> |
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# define O_CREAT _O_CREAT |
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# define O_TRUNC _O_TRUNC |
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# ifndef S_IRUSR |
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# define S_IRUSR _S_IREAD |
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# endif |
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# ifndef S_IWUSR |
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# define S_IWUSR _S_IWRITE |
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# endif |
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# ifdef __MINGW32__ |
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# define _SH_DENYNO 0x40 |
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# endif |
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#endif // _WIN32 |
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#ifdef fileno |
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# undef fileno |
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#endif |
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namespace { |
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#ifdef _WIN32 |
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// Return type of read and write functions. |
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typedef int RWResult; |
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// On Windows the count argument to read and write is unsigned, so convert |
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// it from size_t preventing integer overflow. |
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inline unsigned convert_rwcount(std::size_t count) { |
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return count <= UINT_MAX ? static_cast<unsigned>(count) : UINT_MAX; |
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} |
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#else |
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// Return type of read and write functions. |
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typedef ssize_t RWResult; |
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inline std::size_t convert_rwcount(std::size_t count) { return count; } |
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#endif |
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} |
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fmt::BufferedFile::~BufferedFile() FMT_NOEXCEPT { |
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if (file_ && FMT_SYSTEM(fclose(file_)) != 0) |
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fmt::report_system_error(errno, "cannot close file"); |
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} |
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fmt::BufferedFile::BufferedFile( |
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fmt::CStringRef filename, fmt::CStringRef mode) { |
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FMT_RETRY_VAL(file_, FMT_SYSTEM(fopen(filename.c_str(), mode.c_str())), 0); |
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if (!file_) |
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FMT_THROW(SystemError(errno, "cannot open file {}", filename)); |
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} |
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void fmt::BufferedFile::close() { |
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if (!file_) |
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return; |
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int result = FMT_SYSTEM(fclose(file_)); |
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file_ = FMT_NULL; |
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if (result != 0) |
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FMT_THROW(SystemError(errno, "cannot close file")); |
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} |
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// A macro used to prevent expansion of fileno on broken versions of MinGW. |
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#define FMT_ARGS |
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int fmt::BufferedFile::fileno() const { |
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int fd = FMT_POSIX_CALL(fileno FMT_ARGS(file_)); |
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if (fd == -1) |
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FMT_THROW(SystemError(errno, "cannot get file descriptor")); |
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return fd; |
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} |
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fmt::File::File(fmt::CStringRef path, int oflag) { |
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int mode = S_IRUSR | S_IWUSR; |
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#if defined(_WIN32) && !defined(__MINGW32__) |
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fd_ = -1; |
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FMT_POSIX_CALL(sopen_s(&fd_, path.c_str(), oflag, _SH_DENYNO, mode)); |
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#else |
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FMT_RETRY(fd_, FMT_POSIX_CALL(open(path.c_str(), oflag, mode))); |
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#endif |
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if (fd_ == -1) |
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FMT_THROW(SystemError(errno, "cannot open file {}", path)); |
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} |
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fmt::File::~File() FMT_NOEXCEPT { |
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// Don't retry close in case of EINTR! |
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// See http://linux.derkeiler.com/Mailing-Lists/Kernel/2005-09/3000.html |
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if (fd_ != -1 && FMT_POSIX_CALL(close(fd_)) != 0) |
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fmt::report_system_error(errno, "cannot close file"); |
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} |
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void fmt::File::close() { |
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if (fd_ == -1) |
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return; |
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// Don't retry close in case of EINTR! |
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// See http://linux.derkeiler.com/Mailing-Lists/Kernel/2005-09/3000.html |
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int result = FMT_POSIX_CALL(close(fd_)); |
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fd_ = -1; |
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if (result != 0) |
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FMT_THROW(SystemError(errno, "cannot close file")); |
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} |
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fmt::LongLong fmt::File::size() const { |
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#ifdef _WIN32 |
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// Use GetFileSize instead of GetFileSizeEx for the case when _WIN32_WINNT |
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// is less than 0x0500 as is the case with some default MinGW builds. |
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// Both functions support large file sizes. |
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DWORD size_upper = 0; |
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HANDLE handle = reinterpret_cast<HANDLE>(_get_osfhandle(fd_)); |
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DWORD size_lower = FMT_SYSTEM(GetFileSize(handle, &size_upper)); |
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if (size_lower == INVALID_FILE_SIZE) { |
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DWORD error = GetLastError(); |
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if (error != NO_ERROR) |
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FMT_THROW(WindowsError(GetLastError(), "cannot get file size")); |
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} |
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fmt::ULongLong long_size = size_upper; |
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return (long_size << sizeof(DWORD) * CHAR_BIT) | size_lower; |
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#else |
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typedef struct stat Stat; |
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Stat file_stat = Stat(); |
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if (FMT_POSIX_CALL(fstat(fd_, &file_stat)) == -1) |
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FMT_THROW(SystemError(errno, "cannot get file attributes")); |
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FMT_STATIC_ASSERT(sizeof(fmt::LongLong) >= sizeof(file_stat.st_size), |
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"return type of File::size is not large enough"); |
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return file_stat.st_size; |
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#endif |
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} |
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std::size_t fmt::File::read(void *buffer, std::size_t count) { |
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RWResult result = 0; |
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FMT_RETRY(result, FMT_POSIX_CALL(read(fd_, buffer, convert_rwcount(count)))); |
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if (result < 0) |
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FMT_THROW(SystemError(errno, "cannot read from file")); |
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return internal::to_unsigned(result); |
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} |
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std::size_t fmt::File::write(const void *buffer, std::size_t count) { |
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RWResult result = 0; |
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FMT_RETRY(result, FMT_POSIX_CALL(write(fd_, buffer, convert_rwcount(count)))); |
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if (result < 0) |
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FMT_THROW(SystemError(errno, "cannot write to file")); |
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return internal::to_unsigned(result); |
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} |
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fmt::File fmt::File::dup(int fd) { |
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// Don't retry as dup doesn't return EINTR. |
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// http://pubs.opengroup.org/onlinepubs/009695399/functions/dup.html |
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int new_fd = FMT_POSIX_CALL(dup(fd)); |
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if (new_fd == -1) |
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FMT_THROW(SystemError(errno, "cannot duplicate file descriptor {}", fd)); |
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return File(new_fd); |
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} |
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void fmt::File::dup2(int fd) { |
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int result = 0; |
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FMT_RETRY(result, FMT_POSIX_CALL(dup2(fd_, fd))); |
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if (result == -1) { |
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FMT_THROW(SystemError(errno, |
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"cannot duplicate file descriptor {} to {}", fd_, fd)); |
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} |
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} |
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void fmt::File::dup2(int fd, ErrorCode &ec) FMT_NOEXCEPT { |
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int result = 0; |
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FMT_RETRY(result, FMT_POSIX_CALL(dup2(fd_, fd))); |
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if (result == -1) |
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ec = ErrorCode(errno); |
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} |
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void fmt::File::pipe(File &read_end, File &write_end) { |
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// Close the descriptors first to make sure that assignments don't throw |
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// and there are no leaks. |
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read_end.close(); |
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write_end.close(); |
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int fds[2] = {}; |
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#ifdef _WIN32 |
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// Make the default pipe capacity same as on Linux 2.6.11+. |
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enum { DEFAULT_CAPACITY = 65536 }; |
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int result = FMT_POSIX_CALL(pipe(fds, DEFAULT_CAPACITY, _O_BINARY)); |
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#else |
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// Don't retry as the pipe function doesn't return EINTR. |
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// http://pubs.opengroup.org/onlinepubs/009696799/functions/pipe.html |
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int result = FMT_POSIX_CALL(pipe(fds)); |
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#endif |
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if (result != 0) |
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FMT_THROW(SystemError(errno, "cannot create pipe")); |
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// The following assignments don't throw because read_fd and write_fd |
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// are closed. |
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read_end = File(fds[0]); |
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write_end = File(fds[1]); |
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} |
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fmt::BufferedFile fmt::File::fdopen(const char *mode) { |
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// Don't retry as fdopen doesn't return EINTR. |
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FILE *f = FMT_POSIX_CALL(fdopen(fd_, mode)); |
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if (!f) |
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FMT_THROW(SystemError(errno, "cannot associate stream with file descriptor")); |
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BufferedFile file(f); |
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fd_ = -1; |
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return file; |
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} |
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long fmt::getpagesize() { |
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#ifdef _WIN32 |
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SYSTEM_INFO si; |
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GetSystemInfo(&si); |
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return si.dwPageSize; |
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#else |
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long size = FMT_POSIX_CALL(sysconf(_SC_PAGESIZE)); |
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if (size < 0) |
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FMT_THROW(SystemError(errno, "cannot get memory page size")); |
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return size; |
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#endif |
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}
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