398 lines
10 KiB
C++
398 lines
10 KiB
C++
// -*- C++ -*-
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//===----------------------------------------------------------------------===//
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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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// UNSUPPORTED: c++98, c++03, c++11, c++14
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// <variant>
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// template <class ...Types> class variant;
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// variant& operator=(variant const&);
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#include <cassert>
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#include <string>
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#include <type_traits>
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#include <variant>
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#include "test_macros.h"
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struct NoCopy {
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NoCopy(const NoCopy &) = delete;
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NoCopy &operator=(const NoCopy &) = default;
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};
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struct NothrowCopy {
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NothrowCopy(const NothrowCopy &) noexcept = default;
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NothrowCopy &operator=(const NothrowCopy &) noexcept = default;
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};
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struct CopyOnly {
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CopyOnly(const CopyOnly &) = default;
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CopyOnly(CopyOnly &&) = delete;
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CopyOnly &operator=(const CopyOnly &) = default;
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CopyOnly &operator=(CopyOnly &&) = delete;
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};
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struct MoveOnly {
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MoveOnly(const MoveOnly &) = delete;
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MoveOnly(MoveOnly &&) = default;
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MoveOnly &operator=(const MoveOnly &) = default;
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};
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struct MoveOnlyNT {
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MoveOnlyNT(const MoveOnlyNT &) = delete;
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MoveOnlyNT(MoveOnlyNT &&) {}
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MoveOnlyNT &operator=(const MoveOnlyNT &) = default;
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};
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struct CopyAssign {
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static int alive;
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static int copy_construct;
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static int copy_assign;
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static int move_construct;
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static int move_assign;
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static void reset() {
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copy_construct = copy_assign = move_construct = move_assign = alive = 0;
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}
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CopyAssign(int v) : value(v) { ++alive; }
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CopyAssign(const CopyAssign &o) : value(o.value) {
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++alive;
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++copy_construct;
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}
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CopyAssign(CopyAssign &&o) : value(o.value) {
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o.value = -1;
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++alive;
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++move_construct;
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}
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CopyAssign &operator=(const CopyAssign &o) {
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value = o.value;
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++copy_assign;
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return *this;
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}
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CopyAssign &operator=(CopyAssign &&o) {
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value = o.value;
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o.value = -1;
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++move_assign;
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return *this;
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}
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~CopyAssign() { --alive; }
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int value;
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};
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int CopyAssign::alive = 0;
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int CopyAssign::copy_construct = 0;
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int CopyAssign::copy_assign = 0;
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int CopyAssign::move_construct = 0;
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int CopyAssign::move_assign = 0;
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struct CopyMaybeThrows {
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CopyMaybeThrows(const CopyMaybeThrows &);
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CopyMaybeThrows &operator=(const CopyMaybeThrows &);
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};
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struct CopyDoesThrow {
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CopyDoesThrow(const CopyDoesThrow &) noexcept(false);
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CopyDoesThrow &operator=(const CopyDoesThrow &) noexcept(false);
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};
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#ifndef TEST_HAS_NO_EXCEPTIONS
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struct CopyThrows {
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CopyThrows() = default;
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CopyThrows(const CopyThrows &) { throw 42; }
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CopyThrows &operator=(const CopyThrows &) { throw 42; }
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};
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struct MoveThrows {
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static int alive;
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MoveThrows() { ++alive; }
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MoveThrows(const MoveThrows &) { ++alive; }
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MoveThrows(MoveThrows &&) { throw 42; }
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MoveThrows &operator=(const MoveThrows &) { return *this; }
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MoveThrows &operator=(MoveThrows &&) { throw 42; }
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~MoveThrows() { --alive; }
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};
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int MoveThrows::alive = 0;
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struct MakeEmptyT {
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static int alive;
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MakeEmptyT() { ++alive; }
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MakeEmptyT(const MakeEmptyT &) {
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++alive;
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// Don't throw from the copy constructor since variant's assignment
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// operator performs a copy before committing to the assignment.
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}
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MakeEmptyT(MakeEmptyT &&) { throw 42; }
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MakeEmptyT &operator=(const MakeEmptyT &) { throw 42; }
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MakeEmptyT &operator=(MakeEmptyT &&) { throw 42; }
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~MakeEmptyT() { --alive; }
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};
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int MakeEmptyT::alive = 0;
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template <class Variant> void makeEmpty(Variant &v) {
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Variant v2(std::in_place_type<MakeEmptyT>);
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try {
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v = v2;
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assert(false);
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} catch (...) {
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assert(v.valueless_by_exception());
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}
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}
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#endif // TEST_HAS_NO_EXCEPTIONS
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void test_copy_assignment_not_noexcept() {
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{
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using V = std::variant<CopyMaybeThrows>;
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static_assert(!std::is_nothrow_copy_assignable<V>::value, "");
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}
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{
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using V = std::variant<int, CopyDoesThrow>;
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static_assert(!std::is_nothrow_copy_assignable<V>::value, "");
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}
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}
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void test_copy_assignment_sfinae() {
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{
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using V = std::variant<int, long>;
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static_assert(std::is_copy_assignable<V>::value, "");
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}
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{
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// variant only provides copy assignment when both the copy and move
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// constructors are well formed
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using V = std::variant<int, CopyOnly>;
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static_assert(!std::is_copy_assignable<V>::value, "");
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}
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{
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using V = std::variant<int, NoCopy>;
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static_assert(!std::is_copy_assignable<V>::value, "");
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}
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{
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using V = std::variant<int, MoveOnly>;
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static_assert(!std::is_copy_assignable<V>::value, "");
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}
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{
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using V = std::variant<int, MoveOnlyNT>;
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static_assert(!std::is_copy_assignable<V>::value, "");
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}
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}
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void test_copy_assignment_empty_empty() {
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#ifndef TEST_HAS_NO_EXCEPTIONS
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using MET = MakeEmptyT;
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{
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using V = std::variant<int, long, MET>;
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V v1(std::in_place_index<0>);
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makeEmpty(v1);
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V v2(std::in_place_index<0>);
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makeEmpty(v2);
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V &vref = (v1 = v2);
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assert(&vref == &v1);
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assert(v1.valueless_by_exception());
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assert(v1.index() == std::variant_npos);
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}
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#endif
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}
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void test_copy_assignment_non_empty_empty() {
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#ifndef TEST_HAS_NO_EXCEPTIONS
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using MET = MakeEmptyT;
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{
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using V = std::variant<int, MET>;
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V v1(std::in_place_index<0>, 42);
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V v2(std::in_place_index<0>);
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makeEmpty(v2);
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V &vref = (v1 = v2);
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assert(&vref == &v1);
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assert(v1.valueless_by_exception());
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assert(v1.index() == std::variant_npos);
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}
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{
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using V = std::variant<int, MET, std::string>;
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V v1(std::in_place_index<2>, "hello");
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V v2(std::in_place_index<0>);
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makeEmpty(v2);
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V &vref = (v1 = v2);
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assert(&vref == &v1);
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assert(v1.valueless_by_exception());
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assert(v1.index() == std::variant_npos);
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}
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#endif
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}
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void test_copy_assignment_empty_non_empty() {
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#ifndef TEST_HAS_NO_EXCEPTIONS
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using MET = MakeEmptyT;
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{
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using V = std::variant<int, MET>;
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V v1(std::in_place_index<0>);
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makeEmpty(v1);
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V v2(std::in_place_index<0>, 42);
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V &vref = (v1 = v2);
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assert(&vref == &v1);
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assert(v1.index() == 0);
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assert(std::get<0>(v1) == 42);
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}
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{
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using V = std::variant<int, MET, std::string>;
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V v1(std::in_place_index<0>);
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makeEmpty(v1);
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V v2(std::in_place_type<std::string>, "hello");
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V &vref = (v1 = v2);
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assert(&vref == &v1);
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assert(v1.index() == 2);
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assert(std::get<2>(v1) == "hello");
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}
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#endif
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}
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void test_copy_assignment_same_index() {
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{
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using V = std::variant<int>;
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V v1(43);
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V v2(42);
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V &vref = (v1 = v2);
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assert(&vref == &v1);
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assert(v1.index() == 0);
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assert(std::get<0>(v1) == 42);
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}
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{
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using V = std::variant<int, long, unsigned>;
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V v1(43l);
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V v2(42l);
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V &vref = (v1 = v2);
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assert(&vref == &v1);
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assert(v1.index() == 1);
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assert(std::get<1>(v1) == 42);
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}
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{
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using V = std::variant<int, CopyAssign, unsigned>;
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V v1(std::in_place_type<CopyAssign>, 43);
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V v2(std::in_place_type<CopyAssign>, 42);
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CopyAssign::reset();
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V &vref = (v1 = v2);
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assert(&vref == &v1);
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assert(v1.index() == 1);
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assert(std::get<1>(v1).value == 42);
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assert(CopyAssign::copy_construct == 0);
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assert(CopyAssign::move_construct == 0);
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assert(CopyAssign::copy_assign == 1);
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}
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#ifndef TEST_HAS_NO_EXCEPTIONS
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using MET = MakeEmptyT;
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{
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using V = std::variant<int, MET, std::string>;
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V v1(std::in_place_type<MET>);
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MET &mref = std::get<1>(v1);
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V v2(std::in_place_type<MET>);
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try {
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v1 = v2;
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assert(false);
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} catch (...) {
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}
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assert(v1.index() == 1);
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assert(&std::get<1>(v1) == &mref);
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}
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#endif
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}
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void test_copy_assignment_different_index() {
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{
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using V = std::variant<int, long, unsigned>;
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V v1(43);
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V v2(42l);
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V &vref = (v1 = v2);
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assert(&vref == &v1);
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assert(v1.index() == 1);
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assert(std::get<1>(v1) == 42);
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}
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{
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using V = std::variant<int, CopyAssign, unsigned>;
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CopyAssign::reset();
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V v1(std::in_place_type<unsigned>, 43);
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V v2(std::in_place_type<CopyAssign>, 42);
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assert(CopyAssign::copy_construct == 0);
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assert(CopyAssign::move_construct == 0);
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assert(CopyAssign::alive == 1);
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V &vref = (v1 = v2);
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assert(&vref == &v1);
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assert(v1.index() == 1);
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assert(std::get<1>(v1).value == 42);
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assert(CopyAssign::alive == 2);
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assert(CopyAssign::copy_construct == 1);
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assert(CopyAssign::move_construct == 1);
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assert(CopyAssign::copy_assign == 0);
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}
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#ifndef TEST_HAS_NO_EXCEPTIONS
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{
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// Test that if copy construction throws then original value is
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// unchanged.
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using V = std::variant<int, CopyThrows, std::string>;
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V v1(std::in_place_type<std::string>, "hello");
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V v2(std::in_place_type<CopyThrows>);
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try {
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v1 = v2;
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assert(false);
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} catch (...) { /* ... */
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}
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assert(v1.index() == 2);
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assert(std::get<2>(v1) == "hello");
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}
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{
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// Test that if move construction throws then the variant is left
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// valueless by exception.
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using V = std::variant<int, MoveThrows, std::string>;
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V v1(std::in_place_type<std::string>, "hello");
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V v2(std::in_place_type<MoveThrows>);
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assert(MoveThrows::alive == 1);
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try {
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v1 = v2;
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assert(false);
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} catch (...) { /* ... */
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}
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assert(v1.valueless_by_exception());
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assert(v2.index() == 1);
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assert(MoveThrows::alive == 1);
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}
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{
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using V = std::variant<int, CopyThrows, std::string>;
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V v1(std::in_place_type<CopyThrows>);
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V v2(std::in_place_type<std::string>, "hello");
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V &vref = (v1 = v2);
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assert(&vref == &v1);
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assert(v1.index() == 2);
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assert(std::get<2>(v1) == "hello");
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assert(v2.index() == 2);
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assert(std::get<2>(v2) == "hello");
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}
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{
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using V = std::variant<int, MoveThrows, std::string>;
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V v1(std::in_place_type<MoveThrows>);
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V v2(std::in_place_type<std::string>, "hello");
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V &vref = (v1 = v2);
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assert(&vref == &v1);
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assert(v1.index() == 2);
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assert(std::get<2>(v1) == "hello");
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assert(v2.index() == 2);
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assert(std::get<2>(v2) == "hello");
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}
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#endif
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}
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int main() {
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test_copy_assignment_empty_empty();
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test_copy_assignment_non_empty_empty();
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test_copy_assignment_empty_non_empty();
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test_copy_assignment_same_index();
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test_copy_assignment_different_index();
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test_copy_assignment_sfinae();
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test_copy_assignment_not_noexcept();
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}
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