The set of #ifdefs used to handle the two incompatible variants of strerror_r were not complete (they didn't handle newlib appropriately). Rather than attempting to make the ifdefs more complex, make them unnecessary by choosing which behavior to use dependent upon the return type. Reviewers: waltl Differential Revision: https://reviews.llvm.org/D34294 llvm-svn: 308528
298 lines
6.9 KiB
C++
298 lines
6.9 KiB
C++
//===---------------------- system_error.cpp ------------------------------===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is dual licensed under the MIT and the University of Illinois Open
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// Source Licenses. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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#include "__config"
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#define _LIBCPP_BUILDING_SYSTEM_ERROR
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#include "system_error"
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#include "include/config_elast.h"
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#include "cerrno"
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#include "cstring"
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#include "cstdio"
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#include "cstdlib"
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#include "string"
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#include "string.h"
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#include "__debug"
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#if defined(__ANDROID__)
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#include <android/api-level.h>
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#endif
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_LIBCPP_BEGIN_NAMESPACE_STD
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// class error_category
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#if defined(_LIBCPP_DEPRECATED_ABI_LEGACY_LIBRARY_DEFINITIONS_FOR_INLINE_FUNCTIONS)
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error_category::error_category() _NOEXCEPT
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{
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}
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#endif
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error_category::~error_category() _NOEXCEPT
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{
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}
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error_condition
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error_category::default_error_condition(int ev) const _NOEXCEPT
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{
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return error_condition(ev, *this);
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}
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bool
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error_category::equivalent(int code, const error_condition& condition) const _NOEXCEPT
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{
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return default_error_condition(code) == condition;
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}
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bool
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error_category::equivalent(const error_code& code, int condition) const _NOEXCEPT
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{
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return *this == code.category() && code.value() == condition;
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}
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#if !defined(_LIBCPP_HAS_NO_THREADS)
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namespace {
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// GLIBC also uses 1024 as the maximum buffer size internally.
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constexpr size_t strerror_buff_size = 1024;
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string do_strerror_r(int ev);
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#if defined(_LIBCPP_MSVCRT_LIKE)
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string do_strerror_r(int ev) {
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char buffer[strerror_buff_size];
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if (::strerror_s(buffer, strerror_buff_size, ev) == 0)
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return string(buffer);
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std::snprintf(buffer, strerror_buff_size, "unknown error %d", ev);
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return string(buffer);
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}
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#else
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// Only one of the two following functions will be used, depending on
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// the return type of strerror_r:
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// For the GNU variant, a char* return value:
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__attribute__((unused)) const char *
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handle_strerror_r_return(char *strerror_return, char *buffer) {
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// GNU always returns a string pointer in its return value. The
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// string might point to either the input buffer, or a static
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// buffer, but we don't care which.
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return strerror_return;
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}
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// For the POSIX variant: an int return value.
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__attribute__((unused)) const char *
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handle_strerror_r_return(int strerror_return, char *buffer) {
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// The POSIX variant either:
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// - fills in the provided buffer and returns 0
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// - returns a positive error value, or
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// - returns -1 and fills in errno with an error value.
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if (strerror_return == 0)
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return buffer;
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// Only handle EINVAL. Other errors abort.
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int new_errno = strerror_return == -1 ? errno : strerror_return;
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if (new_errno == EINVAL)
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return "";
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_LIBCPP_ASSERT(new_errno == ERANGE, "unexpected error from ::strerror_r");
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// FIXME maybe? 'strerror_buff_size' is likely to exceed the
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// maximum error size so ERANGE shouldn't be returned.
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std::abort();
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}
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// This function handles both GNU and POSIX variants, dispatching to
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// one of the two above functions.
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string do_strerror_r(int ev) {
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char buffer[strerror_buff_size];
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// Preserve errno around the call. (The C++ standard requires that
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// system_error functions not modify errno).
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const int old_errno = errno;
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const char *error_message = handle_strerror_r_return(
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::strerror_r(ev, buffer, strerror_buff_size), buffer);
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// If we didn't get any message, print one now.
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if (!error_message[0]) {
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std::snprintf(buffer, strerror_buff_size, "Unknown error %d", ev);
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error_message = buffer;
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}
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errno = old_errno;
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return string(error_message);
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}
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#endif
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} // end namespace
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#endif
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string
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__do_message::message(int ev) const
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{
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#if defined(_LIBCPP_HAS_NO_THREADS)
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return string(::strerror(ev));
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#else
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return do_strerror_r(ev);
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#endif
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}
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class _LIBCPP_HIDDEN __generic_error_category
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: public __do_message
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{
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public:
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virtual const char* name() const _NOEXCEPT;
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virtual string message(int ev) const;
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};
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const char*
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__generic_error_category::name() const _NOEXCEPT
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{
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return "generic";
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}
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string
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__generic_error_category::message(int ev) const
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{
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#ifdef _LIBCPP_ELAST
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if (ev > _LIBCPP_ELAST)
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return string("unspecified generic_category error");
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#endif // _LIBCPP_ELAST
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return __do_message::message(ev);
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}
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const error_category&
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generic_category() _NOEXCEPT
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{
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static __generic_error_category s;
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return s;
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}
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class _LIBCPP_HIDDEN __system_error_category
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: public __do_message
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{
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public:
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virtual const char* name() const _NOEXCEPT;
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virtual string message(int ev) const;
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virtual error_condition default_error_condition(int ev) const _NOEXCEPT;
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};
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const char*
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__system_error_category::name() const _NOEXCEPT
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{
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return "system";
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}
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string
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__system_error_category::message(int ev) const
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{
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#ifdef _LIBCPP_ELAST
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if (ev > _LIBCPP_ELAST)
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return string("unspecified system_category error");
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#endif // _LIBCPP_ELAST
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return __do_message::message(ev);
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}
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error_condition
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__system_error_category::default_error_condition(int ev) const _NOEXCEPT
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{
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#ifdef _LIBCPP_ELAST
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if (ev > _LIBCPP_ELAST)
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return error_condition(ev, system_category());
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#endif // _LIBCPP_ELAST
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return error_condition(ev, generic_category());
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}
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const error_category&
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system_category() _NOEXCEPT
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{
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static __system_error_category s;
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return s;
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}
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// error_condition
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string
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error_condition::message() const
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{
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return __cat_->message(__val_);
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}
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// error_code
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string
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error_code::message() const
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{
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return __cat_->message(__val_);
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}
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// system_error
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string
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system_error::__init(const error_code& ec, string what_arg)
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{
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if (ec)
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{
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if (!what_arg.empty())
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what_arg += ": ";
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what_arg += ec.message();
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}
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return what_arg;
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}
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system_error::system_error(error_code ec, const string& what_arg)
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: runtime_error(__init(ec, what_arg)),
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__ec_(ec)
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{
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}
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system_error::system_error(error_code ec, const char* what_arg)
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: runtime_error(__init(ec, what_arg)),
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__ec_(ec)
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{
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}
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system_error::system_error(error_code ec)
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: runtime_error(__init(ec, "")),
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__ec_(ec)
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{
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}
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system_error::system_error(int ev, const error_category& ecat, const string& what_arg)
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: runtime_error(__init(error_code(ev, ecat), what_arg)),
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__ec_(error_code(ev, ecat))
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{
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}
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system_error::system_error(int ev, const error_category& ecat, const char* what_arg)
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: runtime_error(__init(error_code(ev, ecat), what_arg)),
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__ec_(error_code(ev, ecat))
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{
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}
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system_error::system_error(int ev, const error_category& ecat)
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: runtime_error(__init(error_code(ev, ecat), "")),
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__ec_(error_code(ev, ecat))
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{
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}
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system_error::~system_error() _NOEXCEPT
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{
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}
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void
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__throw_system_error(int ev, const char* what_arg)
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{
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#ifndef _LIBCPP_NO_EXCEPTIONS
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throw system_error(error_code(ev, system_category()), what_arg);
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#else
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(void)ev;
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(void)what_arg;
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_VSTD::abort();
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#endif
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}
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_LIBCPP_END_NAMESPACE_STD
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