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authordim <dim@FreeBSD.org>2017-09-26 19:56:36 +0000
committerLuiz Souza <luiz@netgate.com>2018-02-21 15:12:19 -0300
commit1dcd2e8d24b295bc73e513acec2ed1514bb66be4 (patch)
tree4bd13a34c251e980e1a6b13584ca1f63b0dfe670 /contrib/libc++/include/functional
parentf45541ca2a56a1ba1202f94c080b04e96c1fa239 (diff)
downloadFreeBSD-src-1dcd2e8d24b295bc73e513acec2ed1514bb66be4.zip
FreeBSD-src-1dcd2e8d24b295bc73e513acec2ed1514bb66be4.tar.gz
Merge clang, llvm, lld, lldb, compiler-rt and libc++ 5.0.0 release.
MFC r309126 (by emaste): Correct lld llvm-tblgen dependency file name MFC r309169: Get rid of separate Subversion mergeinfo properties for llvm-dwarfdump and llvm-lto. The mergeinfo confuses Subversion enormously, and these directories will just use the mergeinfo for llvm itself. MFC r312765: Pull in r276136 from upstream llvm trunk (by Wei Mi): Use ValueOffsetPair to enhance value reuse during SCEV expansion. In D12090, the ExprValueMap was added to reuse existing value during SCEV expansion. However, const folding and sext/zext distribution can make the reuse still difficult. A simplified case is: suppose we know S1 expands to V1 in ExprValueMap, and S1 = S2 + C_a S3 = S2 + C_b where C_a and C_b are different SCEVConstants. Then we'd like to expand S3 as V1 - C_a + C_b instead of expanding S2 literally. It is helpful when S2 is a complex SCEV expr and S2 has no entry in ExprValueMap, which is usually caused by the fact that S3 is generated from S1 after const folding. In order to do that, we represent ExprValueMap as a mapping from SCEV to ValueOffsetPair. We will save both S1->{V1, 0} and S2->{V1, C_a} into the ExprValueMap when we create SCEV for V1. When S3 is expanded, it will first expand S2 to V1 - C_a because of S2->{V1, C_a} in the map, then expand S3 to V1 - C_a + C_b. Differential Revision: https://reviews.llvm.org/D21313 This should fix assertion failures when building OpenCV >= 3.1. PR: 215649 MFC r312831: Revert r312765 for now, since it causes assertions when building lang/spidermonkey24. Reported by: antoine PR: 215649 MFC r316511 (by jhb): Add an implementation of __ffssi2() derived from __ffsdi2(). Newer versions of GCC include an __ffssi2() symbol in libgcc and the compiler can emit calls to it in generated code. This is true for at least GCC 6.2 when compiling world for mips and mips64. Reviewed by: jmallett, dim Sponsored by: DARPA / AFRL Differential Revision: https://reviews.freebsd.org/D10086 MFC r318601 (by adrian): [libcompiler-rt] add bswapdi2/bswapsi2 This is required for mips gcc 6.3 userland to build/run. Reviewed by: emaste, dim Approved by: emaste Differential Revision: https://reviews.freebsd.org/D10838 MFC r318884 (by emaste): lldb: map TRAP_CAP to a trace trap In the absense of a more specific handler for TRAP_CAP (generated by ENOTCAPABLE or ECAPMODE while in capability mode) treat it as a trace trap. Example usage (testing the bug in PR219173): % proccontrol -m trapcap lldb usr.bin/hexdump/obj/hexdump -- -Cv -s 1 /bin/ls ... (lldb) run Process 12980 launching Process 12980 launched: '.../usr.bin/hexdump/obj/hexdump' (x86_64) Process 12980 stopped * thread #1, stop reason = trace frame #0: 0x0000004b80c65f1a libc.so.7`__sys_lseek + 10 ... In the future we should have LLDB control the trapcap procctl itself (as it does with ASLR), as well as report a specific stop reason. This change eliminates an assertion failure from LLDB for now. MFC r319796: Remove a few unneeded files from libllvm, libclang and liblldb. MFC r319885 (by emaste): lld: ELF: Fix ICF crash on absolute symbol relocations. If two sections contained relocations to absolute symbols with the same value we would crash when trying to access their sections. Add a check that both symbols point to sections before accessing their sections, and treat absolute symbols as equal if their values are equal. Obtained from: LLD commit r292578 MFC r319918: Revert r319796 for now, it can cause undefined references when linking in some circumstances. Reported by: Shawn Webb <shawn.webb@hardenedbsd.org> MFC r319957 (by emaste): lld: Add armelf emulation mode Obtained from: LLD r305375 MFC r321369: Upgrade our copies of clang, llvm, lld, lldb, compiler-rt and libc++ to 5.0.0 (trunk r308421). Upstream has branched for the 5.0.0 release, which should be in about a month. Please report bugs and regressions, so we can get them into the release. Please note that from 3.5.0 onwards, clang, llvm and lldb require C++11 support to build; see UPDATING for more information. MFC r321420: Add a few more object files to liblldb, which should solve errors when linking the lldb executable in some cases. In particular, when the -ffunction-sections -fdata-sections options are turned off, or ineffective. Reported by: Shawn Webb, Mark Millard MFC r321433: Cleanup stale Options.inc files from the previous libllvm build for clang 4.0.0. Otherwise, these can get included before the two newly generated ones (which are different) for clang 5.0.0. Reported by: Mark Millard MFC r321439 (by bdrewery): Move llvm Options.inc hack from r321433 for NO_CLEAN to lib/clang/libllvm. The files are only ever generated to .OBJDIR, not to WORLDTMP (as a sysroot) and are only ever included from a compilation. So using a beforebuild target here removes the file before the compilation tries to include it. MFC r321664: Pull in r308891 from upstream llvm trunk (by Benjamin Kramer): [CodeGenPrepare] Cut off FindAllMemoryUses if there are too many uses. This avoids excessive compile time. The case I'm looking at is Function.cpp from an old version of LLVM that still had the giant memcmp string matcher in it. Before r308322 this compiled in about 2 minutes, after it, clang takes infinite* time to compile it. With this patch we're at 5 min, which is still bad but this is a pathological case. The cut off at 20 uses was chosen by looking at other cut-offs in LLVM for user scanning. It's probably too high, but does the job and is very unlikely to regress anything. Fixes PR33900. * I'm impatient and aborted after 15 minutes, on the bug report it was killed after 2h. Pull in r308986 from upstream llvm trunk (by Simon Pilgrim): [X86][CGP] Reduce memcmp() expansion to 2 load pairs (PR33914) D35067/rL308322 attempted to support up to 4 load pairs for memcmp inlining which resulted in regressions for some optimized libc memcmp implementations (PR33914). Until we can match these more optimal cases, this patch reduces the memcmp expansion to a maximum of 2 load pairs (which matches what we do for -Os). This patch should be considered for the 5.0.0 release branch as well Differential Revision: https://reviews.llvm.org/D35830 These fix a hang (or extremely long compile time) when building older LLVM ports. Reported by: antoine PR: 219139 MFC r321719: Pull in r309503 from upstream clang trunk (by Richard Smith): PR33902: Invalidate line number cache when adding more text to existing buffer. This led to crashes as the line number cache would report a bogus line number for a line of code, and we'd try to find a nonexistent column within the line when printing diagnostics. This fixes an assertion when building the graphics/champlain port. Reported by: antoine, kwm PR: 219139 MFC r321723: Upgrade our copies of clang, llvm, lld and lldb to r309439 from the upstream release_50 branch. This is just after upstream's 5.0.0-rc1. MFC r322320: Upgrade our copies of clang, llvm and libc++ to r310316 from the upstream release_50 branch. MFC r322326 (by emaste): lldb: Make i386-*-freebsd expression work on JIT path * Enable i386 ABI creation for freebsd * Added an extra argument in ABISysV_i386::PrepareTrivialCall for mmap syscall * Unlike linux, the last argument of mmap is actually 64-bit(off_t). This requires us to push an additional word for the higher order bits. * Prior to this change, ktrace dump will show mmap failures due to invalid argument coming from the 6th mmap argument. Submitted by: Karnajit Wangkhem Differential Revision: https://reviews.llvm.org/D34776 MFC r322360 (by emaste): lldb: Report inferior signals as signals, not exceptions, on FreeBSD This is the FreeBSD equivalent of LLVM r238549. This serves 2 purposes: * LLDB should handle inferior process signals SIGSEGV/SIGILL/SIGBUS/ SIGFPE the way it is suppose to be handled. Prior to this fix these signals will neither create a coredump, nor exit from the debugger or work for signal handling scenario. * eInvalidCrashReason need not report "unknown crash reason" if we have a valid si_signo llvm.org/pr23699 Patch by Karnajit Wangkhem Differential Revision: https://reviews.llvm.org/D35223 Submitted by: Karnajit Wangkhem Obtained from: LLVM r310591 MFC r322474 (by emaste): lld: Add `-z muldefs` option. Obtained from: LLVM r310757 MFC r322740: Upgrade our copies of clang, llvm, lld and libc++ to r311219 from the upstream release_50 branch. MFC r322855: Upgrade our copies of clang, llvm, lldb and compiler-rt to r311606 from the upstream release_50 branch. As of this version, lib/msun's trig test should also work correctly again (see bug 220989 for more information). PR: 220989 MFC r323112: Upgrade our copies of clang, llvm, lldb and compiler-rt to r312293 from the upstream release_50 branch. This corresponds to 5.0.0 rc4. As of this version, the cad/stepcode port should now compile in a more reasonable time on i386 (see bug 221836 for more information). PR: 221836 MFC r323245: Upgrade our copies of clang, llvm, lld, lldb, compiler-rt and libc++ to 5.0.0 release (upstream r312559). Release notes for llvm, clang and lld will be available here soon: <http://releases.llvm.org/5.0.0/docs/ReleaseNotes.html> <http://releases.llvm.org/5.0.0/tools/clang/docs/ReleaseNotes.html> <http://releases.llvm.org/5.0.0/tools/lld/docs/ReleaseNotes.html> Relnotes: yes (cherry picked from commit 12cd91cf4c6b96a24427c0de5374916f2808d263)
Diffstat (limited to 'contrib/libc++/include/functional')
-rw-r--r--contrib/libc++/include/functional321
1 files changed, 45 insertions, 276 deletions
diff --git a/contrib/libc++/include/functional b/contrib/libc++/include/functional
index 4f8ec65..83a2e5a 100644
--- a/contrib/libc++/include/functional
+++ b/contrib/libc++/include/functional
@@ -235,7 +235,7 @@ namespace placeholders {
}
template <class Operation>
-class binder1st
+class binder1st // deprecated in C++11, removed in C++17
: public unary_function<typename Operation::second_argument_type,
typename Operation::result_type>
{
@@ -249,10 +249,10 @@ public:
};
template <class Operation, class T>
-binder1st<Operation> bind1st(const Operation& op, const T& x);
+binder1st<Operation> bind1st(const Operation& op, const T& x); // deprecated in C++11, removed in C++17
template <class Operation>
-class binder2nd
+class binder2nd // deprecated in C++11, removed in C++17
: public unary_function<typename Operation::first_argument_type,
typename Operation::result_type>
{
@@ -266,9 +266,9 @@ public:
};
template <class Operation, class T>
-binder2nd<Operation> bind2nd(const Operation& op, const T& x);
+binder2nd<Operation> bind2nd(const Operation& op, const T& x); // deprecated in C++11, removed in C++17
-template <class Arg, class Result>
+template <class Arg, class Result> // deprecated in C++11, removed in C++17
class pointer_to_unary_function : public unary_function<Arg, Result>
{
public:
@@ -277,9 +277,9 @@ public:
};
template <class Arg, class Result>
-pointer_to_unary_function<Arg,Result> ptr_fun(Result (*f)(Arg));
+pointer_to_unary_function<Arg,Result> ptr_fun(Result (*f)(Arg)); // deprecated in C++11, removed in C++17
-template <class Arg1, class Arg2, class Result>
+template <class Arg1, class Arg2, class Result> // deprecated in C++11, removed in C++17
class pointer_to_binary_function : public binary_function<Arg1, Arg2, Result>
{
public:
@@ -288,9 +288,9 @@ public:
};
template <class Arg1, class Arg2, class Result>
-pointer_to_binary_function<Arg1,Arg2,Result> ptr_fun(Result (*f)(Arg1,Arg2));
+pointer_to_binary_function<Arg1,Arg2,Result> ptr_fun(Result (*f)(Arg1,Arg2)); // deprecated in C++11, removed in C++17
-template<class S, class T>
+template<class S, class T> // deprecated in C++11, removed in C++17
class mem_fun_t : public unary_function<T*, S>
{
public:
@@ -299,18 +299,18 @@ public:
};
template<class S, class T, class A>
-class mem_fun1_t : public binary_function<T*, A, S>
+class mem_fun1_t : public binary_function<T*, A, S> // deprecated in C++11, removed in C++17
{
public:
explicit mem_fun1_t(S (T::*p)(A));
S operator()(T* p, A x) const;
};
-template<class S, class T> mem_fun_t<S,T> mem_fun(S (T::*f)());
-template<class S, class T, class A> mem_fun1_t<S,T,A> mem_fun(S (T::*f)(A));
+template<class S, class T> mem_fun_t<S,T> mem_fun(S (T::*f)()); // deprecated in C++11, removed in C++17
+template<class S, class T, class A> mem_fun1_t<S,T,A> mem_fun(S (T::*f)(A)); // deprecated in C++11, removed in C++17
template<class S, class T>
-class mem_fun_ref_t : public unary_function<T, S>
+class mem_fun_ref_t : public unary_function<T, S> // deprecated in C++11, removed in C++17
{
public:
explicit mem_fun_ref_t(S (T::*p)());
@@ -318,18 +318,18 @@ public:
};
template<class S, class T, class A>
-class mem_fun1_ref_t : public binary_function<T, A, S>
+class mem_fun1_ref_t : public binary_function<T, A, S> // deprecated in C++11, removed in C++17
{
public:
explicit mem_fun1_ref_t(S (T::*p)(A));
S operator()(T& p, A x) const;
};
-template<class S, class T> mem_fun_ref_t<S,T> mem_fun_ref(S (T::*f)());
-template<class S, class T, class A> mem_fun1_ref_t<S,T,A> mem_fun_ref(S (T::*f)(A));
+template<class S, class T> mem_fun_ref_t<S,T> mem_fun_ref(S (T::*f)()); // deprecated in C++11, removed in C++17
+template<class S, class T, class A> mem_fun1_ref_t<S,T,A> mem_fun_ref(S (T::*f)(A)); // deprecated in C++11, removed in C++17
template <class S, class T>
-class const_mem_fun_t : public unary_function<const T*, S>
+class const_mem_fun_t : public unary_function<const T*, S> // deprecated in C++11, removed in C++17
{
public:
explicit const_mem_fun_t(S (T::*p)() const);
@@ -337,18 +337,18 @@ public:
};
template <class S, class T, class A>
-class const_mem_fun1_t : public binary_function<const T*, A, S>
+class const_mem_fun1_t : public binary_function<const T*, A, S> // deprecated in C++11, removed in C++17
{
public:
explicit const_mem_fun1_t(S (T::*p)(A) const);
S operator()(const T* p, A x) const;
};
-template <class S, class T> const_mem_fun_t<S,T> mem_fun(S (T::*f)() const);
-template <class S, class T, class A> const_mem_fun1_t<S,T,A> mem_fun(S (T::*f)(A) const);
+template <class S, class T> const_mem_fun_t<S,T> mem_fun(S (T::*f)() const); // deprecated in C++11, removed in C++17
+template <class S, class T, class A> const_mem_fun1_t<S,T,A> mem_fun(S (T::*f)(A) const); // deprecated in C++11, removed in C++17
template <class S, class T>
-class const_mem_fun_ref_t : public unary_function<T, S>
+class const_mem_fun_ref_t : public unary_function<T, S> // deprecated in C++11, removed in C++17
{
public:
explicit const_mem_fun_ref_t(S (T::*p)() const);
@@ -356,15 +356,15 @@ public:
};
template <class S, class T, class A>
-class const_mem_fun1_ref_t : public binary_function<T, A, S>
+class const_mem_fun1_ref_t : public binary_function<T, A, S> // deprecated in C++11, removed in C++17
{
public:
explicit const_mem_fun1_ref_t(S (T::*p)(A) const);
S operator()(const T& p, A x) const;
};
-template <class S, class T> const_mem_fun_ref_t<S,T> mem_fun_ref(S (T::*f)() const);
-template <class S, class T, class A> const_mem_fun1_ref_t<S,T,A> mem_fun_ref(S (T::*f)(A) const);
+template <class S, class T> const_mem_fun_ref_t<S,T> mem_fun_ref(S (T::*f)() const); // deprecated in C++11, removed in C++17
+template <class S, class T, class A> const_mem_fun1_ref_t<S,T,A> mem_fun_ref(S (T::*f)(A) const); // deprecated in C++11, removed in C++17
template<class R, class T> unspecified mem_fn(R T::*);
@@ -470,6 +470,7 @@ template <> struct hash<double>;
template <> struct hash<long double>;
template<class T> struct hash<T*>;
+template <> struct hash<nullptr_t>; // C++17
} // std
@@ -485,6 +486,7 @@ POLICY: For non-variadic implementations, the number of arguments is limited
#include <exception>
#include <memory>
#include <tuple>
+#include <utility>
#include <__functional_base>
@@ -1018,6 +1020,7 @@ inline _LIBCPP_CONSTEXPR_AFTER_CXX11 _LIBCPP_INLINE_VISIBILITY
binary_negate<_Predicate>
not2(const _Predicate& __pred) {return binary_negate<_Predicate>(__pred);}
+#if _LIBCPP_STD_VER <= 14 || defined(_LIBCPP_ENABLE_CXX17_REMOVED_BINDERS)
template <class __Operation>
class _LIBCPP_TEMPLATE_VIS binder1st
: public unary_function<typename __Operation::second_argument_type,
@@ -1242,6 +1245,7 @@ inline _LIBCPP_INLINE_VISIBILITY
const_mem_fun1_ref_t<_Sp,_Tp,_Ap>
mem_fun_ref(_Sp (_Tp::*__f)(_Ap) const)
{return const_mem_fun1_ref_t<_Sp,_Tp,_Ap>(__f);}
+#endif
////////////////////////////////////////////////////////////////////////////////
// MEMFUN
@@ -1260,7 +1264,7 @@ private:
public:
_LIBCPP_INLINE_VISIBILITY __mem_fn(type __f) _NOEXCEPT : __f_(__f) {}
-#ifndef _LIBCPP_HAS_NO_VARIADICS
+#ifndef _LIBCPP_CXX03_LANG
// invoke
template <class... _ArgTypes>
_LIBCPP_INLINE_VISIBILITY
@@ -1387,6 +1391,12 @@ mem_fn(_Rp _Tp::* __pm) _NOEXCEPT
class _LIBCPP_EXCEPTION_ABI bad_function_call
: public exception
{
+#ifdef _LIBCPP_ABI_BAD_FUNCTION_CALL_KEY_FUNCTION
+public:
+ virtual ~bad_function_call() _NOEXCEPT;
+
+ virtual const char* what() const _NOEXCEPT;
+#endif
};
_LIBCPP_NORETURN inline _LIBCPP_ALWAYS_INLINE
@@ -1444,7 +1454,7 @@ bool __not_null(function<_Fp> const& __f) { return !!__f; }
} // namespace __function
-#ifndef _LIBCPP_HAS_NO_VARIADICS
+#ifndef _LIBCPP_CXX03_LANG
namespace __function {
@@ -1931,8 +1941,8 @@ _Tp*
function<_Rp(_ArgTypes...)>::target() _NOEXCEPT
{
if (__f_ == 0)
- return (_Tp*)0;
- return (_Tp*)__f_->target(typeid(_Tp));
+ return nullptr;
+ return (_Tp*) const_cast<void *>(__f_->target(typeid(_Tp)));
}
template<class _Rp, class ..._ArgTypes>
@@ -1941,7 +1951,7 @@ const _Tp*
function<_Rp(_ArgTypes...)>::target() const _NOEXCEPT
{
if (__f_ == 0)
- return (const _Tp*)0;
+ return nullptr;
return (const _Tp*)__f_->target(typeid(_Tp));
}
@@ -1973,7 +1983,7 @@ void
swap(function<_Rp(_ArgTypes...)>& __x, function<_Rp(_ArgTypes...)>& __y) _NOEXCEPT
{return __x.swap(__y);}
-#else // _LIBCPP_HAS_NO_VARIADICS
+#else // _LIBCPP_CXX03_LANG
#include <__functional_03>
@@ -2037,7 +2047,7 @@ struct __is_placeholder<placeholders::__ph<_Np> >
: public integral_constant<int, _Np> {};
-#ifndef _LIBCPP_HAS_NO_VARIADICS
+#ifndef _LIBCPP_CXX03_LANG
template <class _Tp, class _Uj>
inline _LIBCPP_INLINE_VISIBILITY
@@ -2214,7 +2224,7 @@ typename __bind_return<_Fp, _BoundArgs, _Args>::type
__apply_functor(_Fp& __f, _BoundArgs& __bound_args, __tuple_indices<_Indx...>,
_Args&& __args)
{
- return __invoke(__f, __mu(_VSTD::get<_Indx>(__bound_args), __args)...);
+ return _VSTD::__invoke(__f, _VSTD::__mu(_VSTD::get<_Indx>(__bound_args), __args)...);
}
template<class _Fp, class ..._BoundArgs>
@@ -2247,7 +2257,7 @@ public:
typename __bind_return<_Fd, _Td, tuple<_Args&&...> >::type
operator()(_Args&& ...__args)
{
- return __apply_functor(__f_, __bound_args_, __indices(),
+ return _VSTD::__apply_functor(__f_, __bound_args_, __indices(),
tuple<_Args&&...>(_VSTD::forward<_Args>(__args)...));
}
@@ -2256,7 +2266,7 @@ public:
typename __bind_return<const _Fd, const _Td, tuple<_Args&&...> >::type
operator()(_Args&& ...__args) const
{
- return __apply_functor(__f_, __bound_args_, __indices(),
+ return _VSTD::__apply_functor(__f_, __bound_args_, __indices(),
tuple<_Args&&...>(_VSTD::forward<_Args>(__args)...));
}
};
@@ -2337,248 +2347,7 @@ bind(_Fp&& __f, _BoundArgs&&... __bound_args)
return type(_VSTD::forward<_Fp>(__f), _VSTD::forward<_BoundArgs>(__bound_args)...);
}
-#endif // _LIBCPP_HAS_NO_VARIADICS
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<bool>
- : public unary_function<bool, size_t>
-{
- _LIBCPP_INLINE_VISIBILITY
- size_t operator()(bool __v) const _NOEXCEPT {return static_cast<size_t>(__v);}
-};
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<char>
- : public unary_function<char, size_t>
-{
- _LIBCPP_INLINE_VISIBILITY
- size_t operator()(char __v) const _NOEXCEPT {return static_cast<size_t>(__v);}
-};
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<signed char>
- : public unary_function<signed char, size_t>
-{
- _LIBCPP_INLINE_VISIBILITY
- size_t operator()(signed char __v) const _NOEXCEPT {return static_cast<size_t>(__v);}
-};
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<unsigned char>
- : public unary_function<unsigned char, size_t>
-{
- _LIBCPP_INLINE_VISIBILITY
- size_t operator()(unsigned char __v) const _NOEXCEPT {return static_cast<size_t>(__v);}
-};
-
-#ifndef _LIBCPP_HAS_NO_UNICODE_CHARS
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<char16_t>
- : public unary_function<char16_t, size_t>
-{
- _LIBCPP_INLINE_VISIBILITY
- size_t operator()(char16_t __v) const _NOEXCEPT {return static_cast<size_t>(__v);}
-};
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<char32_t>
- : public unary_function<char32_t, size_t>
-{
- _LIBCPP_INLINE_VISIBILITY
- size_t operator()(char32_t __v) const _NOEXCEPT {return static_cast<size_t>(__v);}
-};
-
-#endif // _LIBCPP_HAS_NO_UNICODE_CHARS
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<wchar_t>
- : public unary_function<wchar_t, size_t>
-{
- _LIBCPP_INLINE_VISIBILITY
- size_t operator()(wchar_t __v) const _NOEXCEPT {return static_cast<size_t>(__v);}
-};
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<short>
- : public unary_function<short, size_t>
-{
- _LIBCPP_INLINE_VISIBILITY
- size_t operator()(short __v) const _NOEXCEPT {return static_cast<size_t>(__v);}
-};
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<unsigned short>
- : public unary_function<unsigned short, size_t>
-{
- _LIBCPP_INLINE_VISIBILITY
- size_t operator()(unsigned short __v) const _NOEXCEPT {return static_cast<size_t>(__v);}
-};
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<int>
- : public unary_function<int, size_t>
-{
- _LIBCPP_INLINE_VISIBILITY
- size_t operator()(int __v) const _NOEXCEPT {return static_cast<size_t>(__v);}
-};
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<unsigned int>
- : public unary_function<unsigned int, size_t>
-{
- _LIBCPP_INLINE_VISIBILITY
- size_t operator()(unsigned int __v) const _NOEXCEPT {return static_cast<size_t>(__v);}
-};
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<long>
- : public unary_function<long, size_t>
-{
- _LIBCPP_INLINE_VISIBILITY
- size_t operator()(long __v) const _NOEXCEPT {return static_cast<size_t>(__v);}
-};
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<unsigned long>
- : public unary_function<unsigned long, size_t>
-{
- _LIBCPP_INLINE_VISIBILITY
- size_t operator()(unsigned long __v) const _NOEXCEPT {return static_cast<size_t>(__v);}
-};
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<long long>
- : public __scalar_hash<long long>
-{
-};
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<unsigned long long>
- : public __scalar_hash<unsigned long long>
-{
-};
-
-#ifndef _LIBCPP_HAS_NO_INT128
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<__int128_t>
- : public __scalar_hash<__int128_t>
-{
-};
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<__uint128_t>
- : public __scalar_hash<__uint128_t>
-{
-};
-
-#endif
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<float>
- : public __scalar_hash<float>
-{
- _LIBCPP_INLINE_VISIBILITY
- size_t operator()(float __v) const _NOEXCEPT
- {
- // -0.0 and 0.0 should return same hash
- if (__v == 0)
- return 0;
- return __scalar_hash<float>::operator()(__v);
- }
-};
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<double>
- : public __scalar_hash<double>
-{
- _LIBCPP_INLINE_VISIBILITY
- size_t operator()(double __v) const _NOEXCEPT
- {
- // -0.0 and 0.0 should return same hash
- if (__v == 0)
- return 0;
- return __scalar_hash<double>::operator()(__v);
- }
-};
-
-template <>
-struct _LIBCPP_TEMPLATE_VIS hash<long double>
- : public __scalar_hash<long double>
-{
- _LIBCPP_INLINE_VISIBILITY
- size_t operator()(long double __v) const _NOEXCEPT
- {
- // -0.0 and 0.0 should return same hash
- if (__v == 0)
- return 0;
-#if defined(__i386__)
- // Zero out padding bits
- union
- {
- long double __t;
- struct
- {
- size_t __a;
- size_t __b;
- size_t __c;
- size_t __d;
- } __s;
- } __u;
- __u.__s.__a = 0;
- __u.__s.__b = 0;
- __u.__s.__c = 0;
- __u.__s.__d = 0;
- __u.__t = __v;
- return __u.__s.__a ^ __u.__s.__b ^ __u.__s.__c ^ __u.__s.__d;
-#elif defined(__x86_64__)
- // Zero out padding bits
- union
- {
- long double __t;
- struct
- {
- size_t __a;
- size_t __b;
- } __s;
- } __u;
- __u.__s.__a = 0;
- __u.__s.__b = 0;
- __u.__t = __v;
- return __u.__s.__a ^ __u.__s.__b;
-#else
- return __scalar_hash<long double>::operator()(__v);
-#endif
- }
-};
-
-#if _LIBCPP_STD_VER > 11
-
-template <class _Tp, bool = is_enum<_Tp>::value>
-struct _LIBCPP_TEMPLATE_VIS __enum_hash
- : public unary_function<_Tp, size_t>
-{
- _LIBCPP_INLINE_VISIBILITY
- size_t operator()(_Tp __v) const _NOEXCEPT
- {
- typedef typename underlying_type<_Tp>::type type;
- return hash<type>{}(static_cast<type>(__v));
- }
-};
-template <class _Tp>
-struct _LIBCPP_TEMPLATE_VIS __enum_hash<_Tp, false> {
- __enum_hash() = delete;
- __enum_hash(__enum_hash const&) = delete;
- __enum_hash& operator=(__enum_hash const&) = delete;
-};
-
-template <class _Tp>
-struct _LIBCPP_TEMPLATE_VIS hash : public __enum_hash<_Tp>
-{
-};
-#endif
-
+#endif // _LIBCPP_CXX03_LANG
#if _LIBCPP_STD_VER > 14
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