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Detect safe strerror variants using function overloading instead of macros
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parent
b8c36498f2
commit
341b98c6e2
86
format.cc
86
format.cc
@ -85,6 +85,15 @@ using fmt::internal::Arg;
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# pragma warning(disable: 4702) // unreachable code
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# pragma warning(disable: 4702) // unreachable code
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#endif
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#endif
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// Dummy implementations of strerror_r and strerror_s called if corresponding
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// system functions are not available.
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static fmt::internal::None<void> strerror_r(int, char *, ...) {
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return fmt::internal::None<void>();
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}
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static fmt::internal::None<void> strerror_s(char *, std::size_t, ...) {
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return fmt::internal::None<void>();
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}
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namespace {
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namespace {
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#ifndef _MSC_VER
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#ifndef _MSC_VER
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@ -141,35 +150,54 @@ typedef void (*FormatFunc)(fmt::Writer &, int, fmt::StringRef);
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int safe_strerror(
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int safe_strerror(
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int error_code, char *&buffer, std::size_t buffer_size) FMT_NOEXCEPT {
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int error_code, char *&buffer, std::size_t buffer_size) FMT_NOEXCEPT {
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assert(buffer != 0 && buffer_size != 0);
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assert(buffer != 0 && buffer_size != 0);
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int result = 0;
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#if ((_POSIX_C_SOURCE >= 200112L || _XOPEN_SOURCE >= 600) && !_GNU_SOURCE) || __ANDROID__
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// strerror result handler.
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// XSI-compliant version of strerror_r.
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class StrError {
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result = strerror_r(error_code, buffer, buffer_size);
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private:
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if (result != 0)
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int error_code_;
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result = errno;
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char *&buffer_;
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#elif _GNU_SOURCE
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std::size_t buffer_size_;
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// GNU-specific version of strerror_r.
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char *message = strerror_r(error_code, buffer, buffer_size);
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// Handle the result of XSI-compliant version of strerror_r.
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// If the buffer is full then the message is probably truncated.
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int handle(int result) {
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if (message == buffer && strlen(buffer) == buffer_size - 1)
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return result != 0 ? errno : result;
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result = ERANGE;
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}
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buffer = message;
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#elif __MINGW32__
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// Handle the result of GNU-specific version of strerror_r.
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errno = 0;
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int handle(char *message) {
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(void)buffer_size;
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// If the buffer is full then the message is probably truncated.
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buffer = strerror(error_code);
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if (message == buffer_ && strlen(buffer_) == buffer_size_ - 1)
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result = errno;
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return ERANGE;
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#elif _WIN32
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buffer_ = message;
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result = strerror_s(buffer, buffer_size, error_code);
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return 0;
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// If the buffer is full then the message is probably truncated.
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}
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if (result == 0 && std::strlen(buffer) == buffer_size - 1)
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result = ERANGE;
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// Handle the case when strerror_r is not available.
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#else
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int handle(fmt::internal::None<void>) {
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result = strerror_r(error_code, buffer, buffer_size);
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return fallback(strerror_s(buffer_, buffer_size_, error_code_));
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if (result == -1)
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}
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result = errno; // glibc versions before 2.13 return result in errno.
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#endif
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// Fallback to strerror_s when strerror_r is not available.
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return result;
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int fallback(int result) {
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// If the buffer is full then the message is probably truncated.
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return result == 0 && strlen(buffer_) == buffer_size_ - 1 ?
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ERANGE : result;
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}
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// Fallback to strerror if strerror_r and strerror_s are not available.
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int fallback(fmt::internal::None<void>) {
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errno = 0;
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buffer_ = strerror(error_code_);
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return errno;
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}
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public:
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StrError(int error_code, char *&buffer, std::size_t buffer_size)
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: error_code_(error_code), buffer_(buffer), buffer_size_(buffer_size) {}
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int run() { return handle(strerror_r(error_code_, buffer_, buffer_size_)); }
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};
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return StrError(error_code, buffer, buffer_size).run();
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}
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}
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void format_error_code(fmt::Writer &out, int error_code,
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void format_error_code(fmt::Writer &out, int error_code,
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