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			544 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			544 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| // Tests of the C++ interface to POSIX functions that require mocks
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| //
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| // Copyright (c) 2012 - present, Victor Zverovich
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| // All rights reserved.
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| //
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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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| #ifdef _MSC_VER
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| #  define _CRT_SECURE_NO_WARNINGS
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| #endif
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| 
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| #include "posix-mock.h"
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| #include "../src/posix.cc"
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| 
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| #include <errno.h>
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| #include <fcntl.h>
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| #include <climits>
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| #include <memory>
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| 
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| #ifdef _WIN32
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| #  include <io.h>
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| #  undef max
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| #  undef ERROR
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| #endif
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| 
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| #include "gmock.h"
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| #include "gtest-extra.h"
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| #include "util.h"
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| 
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| using fmt::buffered_file;
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| using fmt::error_code;
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| using fmt::file;
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| 
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| using testing::_;
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| using testing::Return;
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| using testing::StrEq;
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| 
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| namespace {
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| int open_count;
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| int close_count;
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| int dup_count;
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| int dup2_count;
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| int fdopen_count;
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| int read_count;
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| int write_count;
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| int pipe_count;
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| int fopen_count;
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| int fclose_count;
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| int fileno_count;
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| std::size_t read_nbyte;
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| std::size_t write_nbyte;
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| bool sysconf_error;
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| 
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| enum FStatSimulation { NONE, MAX_SIZE, ERROR } fstat_sim;
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| }  // namespace
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| 
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| #define EMULATE_EINTR(func, error_result) \
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|   if (func##_count != 0) {                \
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|     if (func##_count++ != 3) {            \
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|       errno = EINTR;                      \
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|       return error_result;                \
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|     }                                     \
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|   }
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| 
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| #ifndef _MSC_VER
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| int test::open(const char* path, int oflag, int mode) {
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|   EMULATE_EINTR(open, -1);
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|   return ::open(path, oflag, mode);
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| }
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| #else
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| errno_t test::sopen_s(int* pfh, const char* filename, int oflag, int shflag,
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|                       int pmode) {
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|   EMULATE_EINTR(open, EINTR);
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|   return _sopen_s(pfh, filename, oflag, shflag, pmode);
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| }
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| #endif
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| 
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| #ifndef _WIN32
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| 
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| long test::sysconf(int name) {
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|   long result = ::sysconf(name);
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|   if (!sysconf_error) return result;
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|   // Simulate an error.
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|   errno = EINVAL;
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|   return -1;
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| }
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| 
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| static off_t max_file_size() { return std::numeric_limits<off_t>::max(); }
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| 
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| int test::fstat(int fd, struct stat* buf) {
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|   int result = ::fstat(fd, buf);
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|   if (fstat_sim == MAX_SIZE) buf->st_size = max_file_size();
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|   return result;
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| }
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| 
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| #else
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| 
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| static LONGLONG max_file_size() { return std::numeric_limits<LONGLONG>::max(); }
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| 
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| DWORD test::GetFileSize(HANDLE hFile, LPDWORD lpFileSizeHigh) {
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|   if (fstat_sim == ERROR) {
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|     SetLastError(ERROR_ACCESS_DENIED);
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|     return INVALID_FILE_SIZE;
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|   }
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|   if (fstat_sim == MAX_SIZE) {
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|     DWORD max = std::numeric_limits<DWORD>::max();
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|     *lpFileSizeHigh = max >> 1;
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|     return max;
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|   }
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|   return ::GetFileSize(hFile, lpFileSizeHigh);
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| }
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| 
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| #endif
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| 
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| int test::close(int fildes) {
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|   // Close the file first because close shouldn't be retried.
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|   int result = ::FMT_POSIX(close(fildes));
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|   EMULATE_EINTR(close, -1);
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|   return result;
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| }
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| 
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| int test::dup(int fildes) {
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|   EMULATE_EINTR(dup, -1);
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|   return ::FMT_POSIX(dup(fildes));
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| }
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| 
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| int test::dup2(int fildes, int fildes2) {
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|   EMULATE_EINTR(dup2, -1);
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|   return ::FMT_POSIX(dup2(fildes, fildes2));
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| }
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| 
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| FILE* test::fdopen(int fildes, const char* mode) {
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|   EMULATE_EINTR(fdopen, FMT_NULL);
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|   return ::FMT_POSIX(fdopen(fildes, mode));
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| }
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| 
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| test::ssize_t test::read(int fildes, void* buf, test::size_t nbyte) {
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|   read_nbyte = nbyte;
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|   EMULATE_EINTR(read, -1);
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|   return ::FMT_POSIX(read(fildes, buf, nbyte));
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| }
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| 
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| test::ssize_t test::write(int fildes, const void* buf, test::size_t nbyte) {
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|   write_nbyte = nbyte;
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|   EMULATE_EINTR(write, -1);
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|   return ::FMT_POSIX(write(fildes, buf, nbyte));
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| }
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| 
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| #ifndef _WIN32
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| int test::pipe(int fildes[2]) {
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|   EMULATE_EINTR(pipe, -1);
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|   return ::pipe(fildes);
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| }
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| #else
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| int test::pipe(int* pfds, unsigned psize, int textmode) {
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|   EMULATE_EINTR(pipe, -1);
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|   return _pipe(pfds, psize, textmode);
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| }
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| #endif
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| 
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| FILE* test::fopen(const char* filename, const char* mode) {
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|   EMULATE_EINTR(fopen, FMT_NULL);
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|   return ::fopen(filename, mode);
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| }
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| 
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| int test::fclose(FILE* stream) {
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|   EMULATE_EINTR(fclose, EOF);
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|   return ::fclose(stream);
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| }
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| 
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| int(test::fileno)(FILE* stream) {
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|   EMULATE_EINTR(fileno, -1);
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| #ifdef fileno
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|   return FMT_POSIX(fileno(stream));
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| #else
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|   return ::FMT_POSIX(fileno(stream));
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| #endif
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| }
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| 
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| #ifndef _WIN32
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| #  define EXPECT_RETRY(statement, func, message) \
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|     func##_count = 1;                            \
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|     statement;                                   \
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|     EXPECT_EQ(4, func##_count);                  \
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|     func##_count = 0;
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| #  define EXPECT_EQ_POSIX(expected, actual) EXPECT_EQ(expected, actual)
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| #else
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| #  define EXPECT_RETRY(statement, func, message)    \
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|     func##_count = 1;                               \
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|     EXPECT_SYSTEM_ERROR(statement, EINTR, message); \
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|     func##_count = 0;
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| #  define EXPECT_EQ_POSIX(expected, actual)
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| #endif
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| 
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| static void write_file(fmt::cstring_view filename, fmt::string_view content) {
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|   fmt::buffered_file f(filename, "w");
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|   f.print("{}", content);
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| }
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| 
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| TEST(UtilTest, GetPageSize) {
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| #ifdef _WIN32
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|   SYSTEM_INFO si = {};
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|   GetSystemInfo(&si);
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|   EXPECT_EQ(si.dwPageSize, fmt::getpagesize());
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| #else
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|   EXPECT_EQ(sysconf(_SC_PAGESIZE), fmt::getpagesize());
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|   sysconf_error = true;
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|   EXPECT_SYSTEM_ERROR(fmt::getpagesize(), EINVAL,
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|                       "cannot get memory page size");
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|   sysconf_error = false;
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| #endif
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| }
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| 
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| TEST(FileTest, OpenRetry) {
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|   write_file("test", "there must be something here");
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|   std::unique_ptr<file> f{FMT_NULL};
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|   EXPECT_RETRY(f.reset(new file("test", file::RDONLY)), open,
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|                "cannot open file test");
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| #ifndef _WIN32
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|   char c = 0;
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|   f->read(&c, 1);
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| #endif
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| }
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| 
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| TEST(FileTest, CloseNoRetryInDtor) {
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|   file read_end, write_end;
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|   file::pipe(read_end, write_end);
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|   std::unique_ptr<file> f(new file(std::move(read_end)));
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|   int saved_close_count = 0;
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|   EXPECT_WRITE(stderr,
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|                {
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|                  close_count = 1;
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|                  f.reset(FMT_NULL);
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|                  saved_close_count = close_count;
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|                  close_count = 0;
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|                },
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|                format_system_error(EINTR, "cannot close file") + "\n");
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|   EXPECT_EQ(2, saved_close_count);
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| }
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| 
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| TEST(FileTest, CloseNoRetry) {
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|   file read_end, write_end;
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|   file::pipe(read_end, write_end);
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|   close_count = 1;
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|   EXPECT_SYSTEM_ERROR(read_end.close(), EINTR, "cannot close file");
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|   EXPECT_EQ(2, close_count);
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|   close_count = 0;
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| }
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| 
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| TEST(FileTest, Size) {
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|   std::string content = "top secret, destroy before reading";
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|   write_file("test", content);
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|   file f("test", file::RDONLY);
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|   EXPECT_GE(f.size(), 0);
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|   EXPECT_EQ(content.size(), static_cast<unsigned long long>(f.size()));
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| #ifdef _WIN32
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|   fmt::memory_buffer message;
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|   fmt::internal::format_windows_error(message, ERROR_ACCESS_DENIED,
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|                                       "cannot get file size");
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|   fstat_sim = ERROR;
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|   EXPECT_THROW_MSG(f.size(), fmt::windows_error, fmt::to_string(message));
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|   fstat_sim = NONE;
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| #else
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|   f.close();
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|   EXPECT_SYSTEM_ERROR(f.size(), EBADF, "cannot get file attributes");
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| #endif
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| }
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| 
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| TEST(FileTest, MaxSize) {
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|   write_file("test", "");
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|   file f("test", file::RDONLY);
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|   fstat_sim = MAX_SIZE;
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|   EXPECT_GE(f.size(), 0);
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|   EXPECT_EQ(max_file_size(), f.size());
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|   fstat_sim = NONE;
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| }
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| 
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| TEST(FileTest, ReadRetry) {
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|   file read_end, write_end;
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|   file::pipe(read_end, write_end);
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|   enum { SIZE = 4 };
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|   write_end.write("test", SIZE);
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|   write_end.close();
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|   char buffer[SIZE];
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|   std::size_t count = 0;
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|   EXPECT_RETRY(count = read_end.read(buffer, SIZE), read,
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|                "cannot read from file");
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|   EXPECT_EQ_POSIX(static_cast<std::streamsize>(SIZE), count);
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| }
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| 
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| TEST(FileTest, WriteRetry) {
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|   file read_end, write_end;
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|   file::pipe(read_end, write_end);
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|   enum { SIZE = 4 };
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|   std::size_t count = 0;
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|   EXPECT_RETRY(count = write_end.write("test", SIZE), write,
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|                "cannot write to file");
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|   write_end.close();
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| #ifndef _WIN32
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|   EXPECT_EQ(static_cast<std::streamsize>(SIZE), count);
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|   char buffer[SIZE + 1];
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|   read_end.read(buffer, SIZE);
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|   buffer[SIZE] = '\0';
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|   EXPECT_STREQ("test", buffer);
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| #endif
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| }
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| 
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| #ifdef _WIN32
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| TEST(FileTest, ConvertReadCount) {
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|   file read_end, write_end;
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|   file::pipe(read_end, write_end);
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|   char c;
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|   std::size_t size = UINT_MAX;
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|   if (sizeof(unsigned) != sizeof(std::size_t)) ++size;
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|   read_count = 1;
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|   read_nbyte = 0;
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|   EXPECT_THROW(read_end.read(&c, size), fmt::system_error);
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|   read_count = 0;
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|   EXPECT_EQ(UINT_MAX, read_nbyte);
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| }
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| 
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| TEST(FileTest, ConvertWriteCount) {
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|   file read_end, write_end;
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|   file::pipe(read_end, write_end);
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|   char c;
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|   std::size_t size = UINT_MAX;
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|   if (sizeof(unsigned) != sizeof(std::size_t)) ++size;
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|   write_count = 1;
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|   write_nbyte = 0;
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|   EXPECT_THROW(write_end.write(&c, size), fmt::system_error);
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|   write_count = 0;
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|   EXPECT_EQ(UINT_MAX, write_nbyte);
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| }
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| #endif
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| 
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| TEST(FileTest, DupNoRetry) {
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|   int stdout_fd = FMT_POSIX(fileno(stdout));
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|   dup_count = 1;
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|   EXPECT_SYSTEM_ERROR(
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|       file::dup(stdout_fd), EINTR,
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|       fmt::format("cannot duplicate file descriptor {}", stdout_fd));
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|   dup_count = 0;
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| }
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| 
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| TEST(FileTest, Dup2Retry) {
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|   int stdout_fd = FMT_POSIX(fileno(stdout));
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|   file f1 = file::dup(stdout_fd), f2 = file::dup(stdout_fd);
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|   EXPECT_RETRY(f1.dup2(f2.descriptor()), dup2,
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|                fmt::format("cannot duplicate file descriptor {} to {}",
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|                            f1.descriptor(), f2.descriptor()));
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| }
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| 
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| TEST(FileTest, Dup2NoExceptRetry) {
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|   int stdout_fd = FMT_POSIX(fileno(stdout));
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|   file f1 = file::dup(stdout_fd), f2 = file::dup(stdout_fd);
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|   error_code ec;
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|   dup2_count = 1;
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|   f1.dup2(f2.descriptor(), ec);
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| #ifndef _WIN32
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|   EXPECT_EQ(4, dup2_count);
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| #else
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|   EXPECT_EQ(EINTR, ec.get());
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| #endif
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|   dup2_count = 0;
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| }
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| 
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| TEST(FileTest, PipeNoRetry) {
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|   file read_end, write_end;
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|   pipe_count = 1;
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|   EXPECT_SYSTEM_ERROR(file::pipe(read_end, write_end), EINTR,
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|                       "cannot create pipe");
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|   pipe_count = 0;
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| }
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| 
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| TEST(FileTest, FdopenNoRetry) {
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|   file read_end, write_end;
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|   file::pipe(read_end, write_end);
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|   fdopen_count = 1;
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|   EXPECT_SYSTEM_ERROR(read_end.fdopen("r"), EINTR,
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|                       "cannot associate stream with file descriptor");
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|   fdopen_count = 0;
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| }
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| 
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| TEST(BufferedFileTest, OpenRetry) {
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|   write_file("test", "there must be something here");
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|   std::unique_ptr<buffered_file> f{FMT_NULL};
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|   EXPECT_RETRY(f.reset(new buffered_file("test", "r")), fopen,
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|                "cannot open file test");
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| #ifndef _WIN32
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|   char c = 0;
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|   if (fread(&c, 1, 1, f->get()) < 1)
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|     throw fmt::system_error(errno, "fread failed");
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| #endif
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| }
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| 
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| TEST(BufferedFileTest, CloseNoRetryInDtor) {
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|   file read_end, write_end;
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|   file::pipe(read_end, write_end);
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|   std::unique_ptr<buffered_file> f(new buffered_file(read_end.fdopen("r")));
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|   int saved_fclose_count = 0;
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|   EXPECT_WRITE(stderr,
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|                {
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|                  fclose_count = 1;
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|                  f.reset(FMT_NULL);
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|                  saved_fclose_count = fclose_count;
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|                  fclose_count = 0;
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|                },
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|                format_system_error(EINTR, "cannot close file") + "\n");
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|   EXPECT_EQ(2, saved_fclose_count);
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| }
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| 
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| TEST(BufferedFileTest, CloseNoRetry) {
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|   file read_end, write_end;
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|   file::pipe(read_end, write_end);
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|   buffered_file f = read_end.fdopen("r");
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|   fclose_count = 1;
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|   EXPECT_SYSTEM_ERROR(f.close(), EINTR, "cannot close file");
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|   EXPECT_EQ(2, fclose_count);
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|   fclose_count = 0;
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| }
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| 
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| TEST(BufferedFileTest, FilenoNoRetry) {
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|   file read_end, write_end;
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|   file::pipe(read_end, write_end);
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|   buffered_file f = read_end.fdopen("r");
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|   fileno_count = 1;
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|   EXPECT_SYSTEM_ERROR((f.fileno)(), EINTR, "cannot get file descriptor");
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|   EXPECT_EQ(2, fileno_count);
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|   fileno_count = 0;
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| }
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| 
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| struct TestMock {
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|   static TestMock* instance;
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| } * TestMock::instance;
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| 
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| TEST(ScopedMock, Scope) {
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|   {
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|     ScopedMock<TestMock> mock;
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|     EXPECT_EQ(&mock, TestMock::instance);
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|     TestMock& copy = mock;
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|     static_cast<void>(copy);
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|   }
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|   EXPECT_EQ(FMT_NULL, TestMock::instance);
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| }
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| 
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| #ifdef FMT_LOCALE
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| 
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| typedef fmt::Locale::Type LocaleType;
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| 
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| struct LocaleMock {
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|   static LocaleMock* instance;
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|   MOCK_METHOD3(newlocale, LocaleType(int category_mask, const char* locale,
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|                                      LocaleType base));
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|   MOCK_METHOD1(freelocale, void(LocaleType locale));
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| 
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|   MOCK_METHOD3(strtod_l,
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|                double(const char* nptr, char** endptr, LocaleType locale));
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| } * LocaleMock::instance;
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| 
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| #  ifdef _MSC_VER
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| #    pragma warning(push)
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| #    pragma warning(disable : 4273)
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| 
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| _locale_t _create_locale(int category, const char* locale) {
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|   return LocaleMock::instance->newlocale(category, locale, 0);
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| }
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| 
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| void _free_locale(_locale_t locale) {
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|   LocaleMock::instance->freelocale(locale);
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| }
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| 
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| double _strtod_l(const char* nptr, char** endptr, _locale_t locale) {
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|   return LocaleMock::instance->strtod_l(nptr, endptr, locale);
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| }
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| #    pragma warning(pop)
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| #  endif
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| 
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| #  if defined(__THROW) && FMT_GCC_VERSION > 0 && FMT_GCC_VERSION <= 408
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| #    define FMT_LOCALE_THROW __THROW
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| #  else
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| #    define FMT_LOCALE_THROW
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| #  endif
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| 
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| LocaleType newlocale(int category_mask, const char* locale,
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|                      LocaleType base) FMT_LOCALE_THROW {
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|   return LocaleMock::instance->newlocale(category_mask, locale, base);
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| }
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| 
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| #  if defined(__APPLE__) || \
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|       (defined(__FreeBSD__) && __FreeBSD_version < 1200002)
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| typedef int FreeLocaleResult;
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| #  else
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| typedef void FreeLocaleResult;
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| #  endif
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| 
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| FreeLocaleResult freelocale(LocaleType locale) FMT_LOCALE_THROW {
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|   LocaleMock::instance->freelocale(locale);
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|   return FreeLocaleResult();
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| }
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| 
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| double strtod_l(const char* nptr, char** endptr,
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|                 LocaleType locale) FMT_LOCALE_THROW {
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|   return LocaleMock::instance->strtod_l(nptr, endptr, locale);
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| }
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| 
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| #  undef FMT_LOCALE_THROW
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| 
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| TEST(LocaleTest, LocaleMock) {
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|   ScopedMock<LocaleMock> mock;
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|   LocaleType locale = reinterpret_cast<LocaleType>(11);
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|   EXPECT_CALL(mock, newlocale(222, StrEq("foo"), locale));
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|   newlocale(222, "foo", locale);
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| }
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| 
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| TEST(LocaleTest, Locale) {
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| #  ifndef LC_NUMERIC_MASK
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|   enum { LC_NUMERIC_MASK = LC_NUMERIC };
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| #  endif
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|   ScopedMock<LocaleMock> mock;
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|   LocaleType impl = reinterpret_cast<LocaleType>(42);
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|   EXPECT_CALL(mock, newlocale(LC_NUMERIC_MASK, StrEq("C"), FMT_NULL))
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|       .WillOnce(Return(impl));
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|   EXPECT_CALL(mock, freelocale(impl));
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|   fmt::Locale locale;
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|   EXPECT_EQ(impl, locale.get());
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| }
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| 
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| TEST(LocaleTest, Strtod) {
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|   ScopedMock<LocaleMock> mock;
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|   EXPECT_CALL(mock, newlocale(_, _, _))
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|       .WillOnce(Return(reinterpret_cast<LocaleType>(42)));
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|   EXPECT_CALL(mock, freelocale(_));
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|   fmt::Locale locale;
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|   const char* str = "4.2";
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|   char end = 'x';
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|   EXPECT_CALL(mock, strtod_l(str, _, locale.get()))
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|       .WillOnce(testing::DoAll(testing::SetArgPointee<1>(&end), Return(777)));
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|   EXPECT_EQ(777, locale.strtod(str));
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|   EXPECT_EQ(&end, str);
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| }
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| 
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| #endif  // FMT_LOCALE
 |