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			548 lines
		
	
	
		
			15 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			548 lines
		
	
	
		
			15 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
// Formatting library for C++ - tests of the OS-specific functionality
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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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#include "fmt/os.h"
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#include <cstdlib>  // std::exit
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#include <cstring>
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#include <memory>
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#include "gtest-extra.h"
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#include "util.h"
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using fmt::buffered_file;
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using testing::HasSubstr;
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using wstring_view = fmt::basic_string_view<wchar_t>;
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#ifdef _WIN32
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#  include <windows.h>
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TEST(util_test, utf16_to_utf8) {
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  auto s = std::string("ёжик");
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  fmt::detail::utf16_to_utf8 u(L"\x0451\x0436\x0438\x043A");
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  EXPECT_EQ(s, u.str());
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  EXPECT_EQ(s.size(), u.size());
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}
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TEST(util_test, utf16_to_utf8_empty_string) {
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  std::string s = "";
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  fmt::detail::utf16_to_utf8 u(L"");
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  EXPECT_EQ(s, u.str());
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  EXPECT_EQ(s.size(), u.size());
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}
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template <typename Converter, typename Char>
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void check_utf_conversion_error(const char* message,
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                                fmt::basic_string_view<Char> str =
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                                    fmt::basic_string_view<Char>(nullptr, 1)) {
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  fmt::memory_buffer out;
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  fmt::detail::format_windows_error(out, ERROR_INVALID_PARAMETER, message);
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  auto error = std::system_error(std::error_code());
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  try {
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    (Converter)(str);
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  } catch (const std::system_error& e) {
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    error = e;
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  }
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  EXPECT_EQ(ERROR_INVALID_PARAMETER, error.code().value());
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  EXPECT_THAT(error.what(), HasSubstr(fmt::to_string(out)));
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}
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TEST(util_test, utf16_to_utf8_error) {
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  check_utf_conversion_error<fmt::detail::utf16_to_utf8, wchar_t>(
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      "cannot convert string from UTF-16 to UTF-8");
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}
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TEST(util_test, utf16_to_utf8_convert) {
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  fmt::detail::utf16_to_utf8 u;
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  EXPECT_EQ(ERROR_INVALID_PARAMETER, u.convert(wstring_view(nullptr, 1)));
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  EXPECT_EQ(ERROR_INVALID_PARAMETER,
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            u.convert(wstring_view(L"foo", INT_MAX + 1u)));
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}
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TEST(os_test, format_std_error_code) {
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  EXPECT_EQ("generic:42",
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            fmt::format(FMT_STRING("{0}"),
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                        std::error_code(42, std::generic_category())));
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  EXPECT_EQ("system:42",
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            fmt::format(FMT_STRING("{0}"),
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                        std::error_code(42, fmt::system_category())));
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  EXPECT_EQ("system:-42",
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            fmt::format(FMT_STRING("{0}"),
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                        std::error_code(-42, fmt::system_category())));
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}
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TEST(os_test, format_windows_error) {
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  LPWSTR message = nullptr;
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  auto result = FormatMessageW(
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      FORMAT_MESSAGE_ALLOCATE_BUFFER | FORMAT_MESSAGE_FROM_SYSTEM |
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          FORMAT_MESSAGE_IGNORE_INSERTS,
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      nullptr, ERROR_FILE_EXISTS, MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT),
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      reinterpret_cast<LPWSTR>(&message), 0, nullptr);
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  fmt::detail::utf16_to_utf8 utf8_message(wstring_view(message, result - 2));
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  LocalFree(message);
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  fmt::memory_buffer actual_message;
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  fmt::detail::format_windows_error(actual_message, ERROR_FILE_EXISTS, "test");
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  EXPECT_EQ(fmt::format("test: {}", utf8_message.str()),
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            fmt::to_string(actual_message));
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  actual_message.resize(0);
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}
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TEST(os_test, format_long_windows_error) {
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  LPWSTR message = nullptr;
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  // this error code is not available on all Windows platforms and
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  // Windows SDKs, so do not fail the test if the error string cannot
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  // be retrieved.
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  int provisioning_not_allowed = 0x80284013L;  // TBS_E_PROVISIONING_NOT_ALLOWED
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  auto result = FormatMessageW(
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      FORMAT_MESSAGE_ALLOCATE_BUFFER | FORMAT_MESSAGE_FROM_SYSTEM |
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          FORMAT_MESSAGE_IGNORE_INSERTS,
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      nullptr, static_cast<DWORD>(provisioning_not_allowed),
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      MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT),
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      reinterpret_cast<LPWSTR>(&message), 0, nullptr);
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  if (result == 0) {
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    LocalFree(message);
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    return;
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  }
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  fmt::detail::utf16_to_utf8 utf8_message(wstring_view(message, result - 2));
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  LocalFree(message);
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  fmt::memory_buffer actual_message;
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  fmt::detail::format_windows_error(actual_message, provisioning_not_allowed,
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                                    "test");
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  EXPECT_EQ(fmt::format("test: {}", utf8_message.str()),
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            fmt::to_string(actual_message));
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}
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TEST(os_test, windows_error) {
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  auto error = std::system_error(std::error_code());
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  try {
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    throw fmt::windows_error(ERROR_FILE_EXISTS, "test {}", "error");
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  } catch (const std::system_error& e) {
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    error = e;
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  }
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  fmt::memory_buffer message;
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  fmt::detail::format_windows_error(message, ERROR_FILE_EXISTS, "test error");
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  EXPECT_THAT(error.what(), HasSubstr(to_string(message)));
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  EXPECT_EQ(ERROR_FILE_EXISTS, error.code().value());
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}
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TEST(os_test, report_windows_error) {
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  fmt::memory_buffer out;
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  fmt::detail::format_windows_error(out, ERROR_FILE_EXISTS, "test error");
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  out.push_back('\n');
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  EXPECT_WRITE(stderr,
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               fmt::report_windows_error(ERROR_FILE_EXISTS, "test error"),
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               fmt::to_string(out));
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}
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#endif  // _WIN32
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#if FMT_USE_FCNTL
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using fmt::file;
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bool isclosed(int fd) {
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  char buffer;
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  auto result = std::streamsize();
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  SUPPRESS_ASSERT(result = FMT_POSIX(read(fd, &buffer, 1)));
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  return result == -1 && errno == EBADF;
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}
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// Opens a file for reading.
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file open_file() {
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  file read_end, write_end;
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  file::pipe(read_end, write_end);
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  write_end.write(file_content, std::strlen(file_content));
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  write_end.close();
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  return read_end;
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}
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// Attempts to write a string to a file.
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void write(file& f, fmt::string_view s) {
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  size_t num_chars_left = s.size();
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  const char* ptr = s.data();
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  do {
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    size_t count = f.write(ptr, num_chars_left);
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    ptr += count;
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    // We can't write more than size_t bytes since num_chars_left
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    // has type size_t.
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    num_chars_left -= count;
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  } while (num_chars_left != 0);
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}
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TEST(buffered_file_test, default_ctor) {
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  auto f = buffered_file();
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  EXPECT_TRUE(f.get() == nullptr);
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}
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TEST(buffered_file_test, move_ctor) {
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  buffered_file bf = open_buffered_file();
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  FILE* fp = bf.get();
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  EXPECT_TRUE(fp != nullptr);
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  buffered_file bf2(std::move(bf));
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  EXPECT_EQ(fp, bf2.get());
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  EXPECT_TRUE(bf.get() == nullptr);
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}
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TEST(buffered_file_test, move_assignment) {
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  buffered_file bf = open_buffered_file();
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  FILE* fp = bf.get();
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  EXPECT_TRUE(fp != nullptr);
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  buffered_file bf2;
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  bf2 = std::move(bf);
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  EXPECT_EQ(fp, bf2.get());
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  EXPECT_TRUE(bf.get() == nullptr);
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}
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TEST(buffered_file_test, move_assignment_closes_file) {
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  buffered_file bf = open_buffered_file();
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  buffered_file bf2 = open_buffered_file();
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  int old_fd = bf2.descriptor();
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  bf2 = std::move(bf);
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  EXPECT_TRUE(isclosed(old_fd));
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}
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TEST(buffered_file_test, move_from_temporary_in_ctor) {
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  FILE* fp = nullptr;
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  buffered_file f = open_buffered_file(&fp);
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  EXPECT_EQ(fp, f.get());
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}
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TEST(buffered_file_test, move_from_temporary_in_assignment) {
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  FILE* fp = nullptr;
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  auto f = buffered_file();
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  f = open_buffered_file(&fp);
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  EXPECT_EQ(fp, f.get());
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}
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TEST(buffered_file_test, move_from_temporary_in_assignment_closes_file) {
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  buffered_file f = open_buffered_file();
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  int old_fd = f.descriptor();
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  f = open_buffered_file();
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  EXPECT_TRUE(isclosed(old_fd));
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}
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TEST(buffered_file_test, close_file_in_dtor) {
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  int fd = 0;
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  {
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    buffered_file f = open_buffered_file();
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    fd = f.descriptor();
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  }
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  EXPECT_TRUE(isclosed(fd));
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}
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TEST(buffered_file_test, close_error_in_dtor) {
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  auto f =
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      std::unique_ptr<buffered_file>(new buffered_file(open_buffered_file()));
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  EXPECT_WRITE(
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      stderr,
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      {
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        // The close function must be called inside EXPECT_WRITE,
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        // otherwise the system may recycle closed file descriptor when
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        // redirecting the output in EXPECT_STDERR and the second close
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        // will break output redirection.
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        FMT_POSIX(close(f->descriptor()));
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        SUPPRESS_ASSERT(f.reset(nullptr));
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      },
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      system_error_message(EBADF, "cannot close file") + "\n");
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}
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TEST(buffered_file_test, close) {
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  buffered_file f = open_buffered_file();
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  int fd = f.descriptor();
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  f.close();
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  EXPECT_TRUE(f.get() == nullptr);
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  EXPECT_TRUE(isclosed(fd));
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}
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TEST(buffered_file_test, close_error) {
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  buffered_file f = open_buffered_file();
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  FMT_POSIX(close(f.descriptor()));
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  EXPECT_SYSTEM_ERROR_NOASSERT(f.close(), EBADF, "cannot close file");
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  EXPECT_TRUE(f.get() == nullptr);
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}
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TEST(buffered_file_test, descriptor) {
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  auto f = open_buffered_file();
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  EXPECT_TRUE(f.descriptor() != -1);
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  file copy = file::dup(f.descriptor());
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  EXPECT_READ(copy, file_content);
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}
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TEST(ostream_test, move) {
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  fmt::ostream out = fmt::output_file("test-file");
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  fmt::ostream moved(std::move(out));
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  moved.print("hello");
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}
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TEST(ostream_test, move_while_holding_data) {
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  {
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    fmt::ostream out = fmt::output_file("test-file");
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    out.print("Hello, ");
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    fmt::ostream moved(std::move(out));
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    moved.print("world!\n");
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  }
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  {
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    file in("test-file", file::RDONLY);
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    EXPECT_READ(in, "Hello, world!\n");
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  }
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}
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TEST(ostream_test, print) {
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  fmt::ostream out = fmt::output_file("test-file");
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  out.print("The answer is {}.\n",
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            fmt::join(std::initializer_list<int>{42}, ", "));
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  out.close();
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  file in("test-file", file::RDONLY);
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  EXPECT_READ(in, "The answer is 42.\n");
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}
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TEST(ostream_test, buffer_boundary) {
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  auto str = std::string(4096, 'x');
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  fmt::ostream out = fmt::output_file("test-file");
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  out.print("{}", str);
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  out.print("{}", str);
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  out.close();
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  file in("test-file", file::RDONLY);
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  EXPECT_READ(in, str + str);
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}
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TEST(ostream_test, buffer_size) {
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  fmt::ostream out = fmt::output_file("test-file", fmt::buffer_size = 1);
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  out.print("{}", "foo");
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  out.close();
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  file in("test-file", file::RDONLY);
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  EXPECT_READ(in, "foo");
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}
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TEST(ostream_test, truncate) {
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  {
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    fmt::ostream out = fmt::output_file("test-file");
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    out.print("0123456789");
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  }
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  {
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    fmt::ostream out = fmt::output_file("test-file");
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    out.print("foo");
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  }
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  file in("test-file", file::RDONLY);
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  EXPECT_EQ("foo", read(in, 4));
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}
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TEST(ostream_test, flush) {
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  auto out = fmt::output_file("test-file");
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  out.print("x");
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  out.flush();
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  auto in = fmt::file("test-file", file::RDONLY);
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  EXPECT_READ(in, "x");
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}
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TEST(file_test, default_ctor) {
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  file f;
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  EXPECT_EQ(-1, f.descriptor());
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}
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TEST(file_test, open_buffered_file_in_ctor) {
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  FILE* fp = safe_fopen("test-file", "w");
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  std::fputs(file_content, fp);
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  std::fclose(fp);
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  file f("test-file", file::RDONLY);
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  // Check if the file is open by reading one character from it.
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  char buffer;
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  bool isopen = FMT_POSIX(read(f.descriptor(), &buffer, 1)) == 1;
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  ASSERT_TRUE(isopen);
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}
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TEST(file_test, open_buffered_file_error) {
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  EXPECT_SYSTEM_ERROR(file("nonexistent", file::RDONLY), ENOENT,
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                      "cannot open file nonexistent");
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}
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TEST(file_test, move_ctor) {
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  file f = open_file();
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  int fd = f.descriptor();
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  EXPECT_NE(-1, fd);
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  file f2(std::move(f));
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  EXPECT_EQ(fd, f2.descriptor());
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  EXPECT_EQ(-1, f.descriptor());
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}
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TEST(file_test, move_assignment) {
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  file f = open_file();
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  int fd = f.descriptor();
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  EXPECT_NE(-1, fd);
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  file f2;
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  f2 = std::move(f);
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  EXPECT_EQ(fd, f2.descriptor());
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  EXPECT_EQ(-1, f.descriptor());
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}
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TEST(file_test, move_assignment_closes_file) {
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  file f = open_file();
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  file f2 = open_file();
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  int old_fd = f2.descriptor();
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  f2 = std::move(f);
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  EXPECT_TRUE(isclosed(old_fd));
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}
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file open_buffered_file(int& fd) {
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  file f = open_file();
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  fd = f.descriptor();
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  return f;
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}
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TEST(file_test, move_from_temporary_in_ctor) {
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  int fd = 0xdead;
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  file f(open_buffered_file(fd));
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  EXPECT_EQ(fd, f.descriptor());
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}
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TEST(file_test, move_from_temporary_in_assignment) {
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  int fd = 0xdead;
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  file f;
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  f = open_buffered_file(fd);
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  EXPECT_EQ(fd, f.descriptor());
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}
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TEST(file_test, move_from_temporary_in_assignment_closes_file) {
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  int fd = 0xdead;
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  file f = open_file();
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  int old_fd = f.descriptor();
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  f = open_buffered_file(fd);
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  EXPECT_TRUE(isclosed(old_fd));
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}
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TEST(file_test, close_file_in_dtor) {
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  int fd = 0;
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  {
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    file f = open_file();
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    fd = f.descriptor();
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  }
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  EXPECT_TRUE(isclosed(fd));
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}
 | 
						|
 | 
						|
TEST(file_test, close_error_in_dtor) {
 | 
						|
  std::unique_ptr<file> f(new file(open_file()));
 | 
						|
  EXPECT_WRITE(
 | 
						|
      stderr,
 | 
						|
      {
 | 
						|
        // The close function must be called inside EXPECT_WRITE,
 | 
						|
        // otherwise the system may recycle closed file descriptor when
 | 
						|
        // redirecting the output in EXPECT_STDERR and the second close
 | 
						|
        // will break output redirection.
 | 
						|
        FMT_POSIX(close(f->descriptor()));
 | 
						|
        SUPPRESS_ASSERT(f.reset(nullptr));
 | 
						|
      },
 | 
						|
      system_error_message(EBADF, "cannot close file") + "\n");
 | 
						|
}
 | 
						|
 | 
						|
TEST(file_test, close) {
 | 
						|
  file f = open_file();
 | 
						|
  int fd = f.descriptor();
 | 
						|
  f.close();
 | 
						|
  EXPECT_EQ(-1, f.descriptor());
 | 
						|
  EXPECT_TRUE(isclosed(fd));
 | 
						|
}
 | 
						|
 | 
						|
TEST(file_test, close_error) {
 | 
						|
  file f = open_file();
 | 
						|
  FMT_POSIX(close(f.descriptor()));
 | 
						|
  EXPECT_SYSTEM_ERROR_NOASSERT(f.close(), EBADF, "cannot close file");
 | 
						|
  EXPECT_EQ(-1, f.descriptor());
 | 
						|
}
 | 
						|
 | 
						|
TEST(file_test, read) {
 | 
						|
  file f = open_file();
 | 
						|
  EXPECT_READ(f, file_content);
 | 
						|
}
 | 
						|
 | 
						|
TEST(file_test, read_error) {
 | 
						|
  file f("test-file", file::WRONLY);
 | 
						|
  char buf;
 | 
						|
  // We intentionally read from a file opened in the write-only mode to
 | 
						|
  // cause error.
 | 
						|
  EXPECT_SYSTEM_ERROR(f.read(&buf, 1), EBADF, "cannot read from file");
 | 
						|
}
 | 
						|
 | 
						|
TEST(file_test, write) {
 | 
						|
  file read_end, write_end;
 | 
						|
  file::pipe(read_end, write_end);
 | 
						|
  write(write_end, "test");
 | 
						|
  write_end.close();
 | 
						|
  EXPECT_READ(read_end, "test");
 | 
						|
}
 | 
						|
 | 
						|
TEST(file_test, write_error) {
 | 
						|
  file f("test-file", file::RDONLY);
 | 
						|
  // We intentionally write to a file opened in the read-only mode to
 | 
						|
  // cause error.
 | 
						|
  EXPECT_SYSTEM_ERROR(f.write(" ", 1), EBADF, "cannot write to file");
 | 
						|
}
 | 
						|
 | 
						|
TEST(file_test, dup) {
 | 
						|
  file f = open_file();
 | 
						|
  file copy = file::dup(f.descriptor());
 | 
						|
  EXPECT_NE(f.descriptor(), copy.descriptor());
 | 
						|
  EXPECT_EQ(file_content, read(copy, std::strlen(file_content)));
 | 
						|
}
 | 
						|
 | 
						|
#  ifndef __COVERITY__
 | 
						|
TEST(file_test, dup_error) {
 | 
						|
  int value = -1;
 | 
						|
  EXPECT_SYSTEM_ERROR_NOASSERT(file::dup(value), EBADF,
 | 
						|
                               "cannot duplicate file descriptor -1");
 | 
						|
}
 | 
						|
#  endif
 | 
						|
 | 
						|
TEST(file_test, dup2) {
 | 
						|
  file f = open_file();
 | 
						|
  file copy = open_file();
 | 
						|
  f.dup2(copy.descriptor());
 | 
						|
  EXPECT_NE(f.descriptor(), copy.descriptor());
 | 
						|
  EXPECT_READ(copy, file_content);
 | 
						|
}
 | 
						|
 | 
						|
TEST(file_test, dup2_error) {
 | 
						|
  file f = open_file();
 | 
						|
  EXPECT_SYSTEM_ERROR_NOASSERT(
 | 
						|
      f.dup2(-1), EBADF,
 | 
						|
      fmt::format("cannot duplicate file descriptor {} to -1", f.descriptor()));
 | 
						|
}
 | 
						|
 | 
						|
TEST(file_test, dup2_noexcept) {
 | 
						|
  file f = open_file();
 | 
						|
  file copy = open_file();
 | 
						|
  std::error_code ec;
 | 
						|
  f.dup2(copy.descriptor(), ec);
 | 
						|
  EXPECT_EQ(ec.value(), 0);
 | 
						|
  EXPECT_NE(f.descriptor(), copy.descriptor());
 | 
						|
  EXPECT_READ(copy, file_content);
 | 
						|
}
 | 
						|
 | 
						|
TEST(file_test, dup2_noexcept_error) {
 | 
						|
  file f = open_file();
 | 
						|
  std::error_code ec;
 | 
						|
  SUPPRESS_ASSERT(f.dup2(-1, ec));
 | 
						|
  EXPECT_EQ(EBADF, ec.value());
 | 
						|
}
 | 
						|
 | 
						|
TEST(file_test, pipe) {
 | 
						|
  file read_end, write_end;
 | 
						|
  file::pipe(read_end, write_end);
 | 
						|
  EXPECT_NE(-1, read_end.descriptor());
 | 
						|
  EXPECT_NE(-1, write_end.descriptor());
 | 
						|
  write(write_end, "test");
 | 
						|
  EXPECT_READ(read_end, "test");
 | 
						|
}
 | 
						|
 | 
						|
TEST(file_test, fdopen) {
 | 
						|
  file read_end, write_end;
 | 
						|
  file::pipe(read_end, write_end);
 | 
						|
  int read_fd = read_end.descriptor();
 | 
						|
  EXPECT_EQ(read_fd, FMT_POSIX(fileno(read_end.fdopen("r").get())));
 | 
						|
}
 | 
						|
#endif  // FMT_USE_FCNTL
 |