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@ -13,6 +13,7 @@
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#include <catch2/internal/catch_meta.hpp>
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#include <catch2/internal/catch_compare_traits.hpp>
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#include <catch2/internal/catch_test_failure_exception.hpp>
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#include <catch2/internal/catch_logical_traits.hpp>
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#include <type_traits>
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#include <iosfwd>
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@ -168,19 +169,20 @@ namespace Catch {
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template < \
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typename RhsT, \
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std::enable_if_t< \
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Detail::is_##id##_comparable<LhsT, RhsT>::value && \
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!std::is_arithmetic<std::remove_reference_t<RhsT>>::value, \
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Detail::conjunction<Detail::is_##id##_comparable<LhsT, RhsT>, \
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Detail::negation<std::is_arithmetic< \
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std::remove_reference_t<RhsT>>>>::value, \
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int> = 0> \
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friend auto operator op( ExprLhs&& lhs, RhsT&& rhs ) \
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->BinaryExpr<LhsT, RhsT const&> { \
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return { \
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static_cast<bool>( lhs.m_lhs op rhs ), lhs.m_lhs, #op##_sr, rhs }; \
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} \
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template < \
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typename RhsT, \
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std::enable_if_t<Detail::is_##id##_comparable<LhsT, RhsT>::value && \
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std::is_arithmetic<RhsT>::value, \
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int> = 0> \
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template <typename RhsT, \
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std::enable_if_t<Detail::conjunction< \
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Detail::is_##id##_comparable<LhsT, RhsT>, \
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std::is_arithmetic<RhsT>>::value, \
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int> = 0> \
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friend auto operator op( ExprLhs&& lhs, RhsT rhs ) \
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->BinaryExpr<LhsT, RhsT> { \
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return { \
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@ -188,59 +190,58 @@ namespace Catch {
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} \
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template < \
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typename RhsT, \
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std::enable_if_t<!Detail::is_##id##_comparable<LhsT, RhsT>::value && \
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Detail::is_eq_0_comparable<LhsT>:: \
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value && /* We allow long because we want \
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`ptr op NULL to be accepted */ \
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( std::is_same<RhsT, int>::value || \
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std::is_same<RhsT, long>::value ), \
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int> = 0> \
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std::enable_if_t< \
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Detail::conjunction< \
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Detail::negation<Detail::is_##id##_comparable<LhsT, RhsT>>, \
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Detail::is_eq_0_comparable<LhsT>, \
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Detail::disjunction<std::is_same<RhsT, int>, \
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/* On some platforms `NULL` is a long */ \
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std::is_same<RhsT, long>>>::value, \
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int> = 0> \
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friend auto operator op( ExprLhs&& lhs, RhsT rhs ) \
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->BinaryExpr<LhsT, RhsT> { \
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if ( rhs != 0 ) { \
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throw_test_failure_exception(); \
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} \
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if ( rhs != 0 ) { throw_test_failure_exception(); } \
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return { \
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static_cast<bool>( lhs.m_lhs op 0 ), lhs.m_lhs, #op##_sr, rhs }; \
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} \
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template < \
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typename RhsT, \
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std::enable_if_t<!Detail::is_##id##_comparable<LhsT, RhsT>::value && \
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Detail::is_eq_0_comparable<RhsT>:: \
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value && /* We allow long because we want \
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`ptr op NULL` to be accepted */ \
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( std::is_same<LhsT, int>::value || \
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std::is_same<LhsT, long>::value ), \
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int> = 0> \
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std::enable_if_t< \
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Detail::conjunction< \
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Detail::negation<Detail::is_##id##_comparable<LhsT, RhsT>>, \
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Detail::is_eq_0_comparable<RhsT>, \
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Detail::disjunction<std::is_same<LhsT, int>, \
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/* On some platforms `NULL` is a long */ \
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std::is_same<LhsT, long>>>::value, \
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int> = 0> \
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friend auto operator op( ExprLhs&& lhs, RhsT rhs ) \
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->BinaryExpr<LhsT, RhsT> { \
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if ( lhs.m_lhs != 0 ) { \
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throw_test_failure_exception(); \
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} \
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if ( lhs.m_lhs != 0 ) { throw_test_failure_exception(); } \
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return { static_cast<bool>( 0 op rhs ), lhs.m_lhs, #op##_sr, rhs }; \
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}
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CATCH_INTERNAL_DEFINE_EXPRESSION_EQUALITY_OPERATOR( eq, == )
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CATCH_INTERNAL_DEFINE_EXPRESSION_EQUALITY_OPERATOR( ne, != )
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#undef CATCH_INTERNAL_DEFINE_EXPRESSION_EQUALITY_OPERATOR
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#undef CATCH_INTERNAL_DEFINE_EXPRESSION_EQUALITY_OPERATOR
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#define CATCH_INTERNAL_DEFINE_EXPRESSION_COMPARISON_OPERATOR( id, op ) \
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#define CATCH_INTERNAL_DEFINE_EXPRESSION_COMPARISON_OPERATOR( id, op ) \
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template < \
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typename RhsT, \
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std::enable_if_t< \
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Detail::is_##id##_comparable<LhsT, RhsT>::value && \
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!std::is_arithmetic<std::remove_reference_t<RhsT>>::value, \
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Detail::conjunction<Detail::is_##id##_comparable<LhsT, RhsT>, \
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Detail::negation<std::is_arithmetic< \
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std::remove_reference_t<RhsT>>>>::value, \
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int> = 0> \
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friend auto operator op( ExprLhs&& lhs, RhsT&& rhs ) \
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->BinaryExpr<LhsT, RhsT const&> { \
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return { \
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static_cast<bool>( lhs.m_lhs op rhs ), lhs.m_lhs, #op##_sr, rhs }; \
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} \
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template < \
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typename RhsT, \
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std::enable_if_t<Detail::is_##id##_comparable<LhsT, RhsT>::value && \
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std::is_arithmetic<RhsT>::value, \
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int> = 0> \
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template <typename RhsT, \
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std::enable_if_t<Detail::conjunction< \
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Detail::is_##id##_comparable<LhsT, RhsT>, \
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std::is_arithmetic<RhsT>>::value, \
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int> = 0> \
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friend auto operator op( ExprLhs&& lhs, RhsT rhs ) \
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->BinaryExpr<LhsT, RhsT> { \
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return { \
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@ -248,29 +249,29 @@ namespace Catch {
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} \
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template < \
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typename RhsT, \
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std::enable_if_t<!Detail::is_##id##_comparable<LhsT, RhsT>::value && \
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Detail::is_##id##_0_comparable<LhsT>::value && \
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std::is_same<RhsT, int>::value, \
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int> = 0> \
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std::enable_if_t< \
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Detail::conjunction< \
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Detail::negation<Detail::is_##id##_comparable<LhsT, RhsT>>, \
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Detail::is_##id##_0_comparable<LhsT>, \
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std::is_same<RhsT, int>>::value, \
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int> = 0> \
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friend auto operator op( ExprLhs&& lhs, RhsT rhs ) \
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->BinaryExpr<LhsT, RhsT> { \
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if ( rhs != 0 ) { \
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throw_test_failure_exception(); \
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} \
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if ( rhs != 0 ) { throw_test_failure_exception(); } \
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return { \
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static_cast<bool>( lhs.m_lhs op 0 ), lhs.m_lhs, #op##_sr, rhs }; \
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} \
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template < \
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typename RhsT, \
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std::enable_if_t<!Detail::is_##id##_comparable<LhsT, RhsT>::value && \
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Detail::is_##id##_0_comparable<RhsT>::value && \
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std::is_same<LhsT, int>::value, \
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int> = 0> \
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std::enable_if_t< \
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Detail::conjunction< \
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Detail::negation<Detail::is_##id##_comparable<LhsT, RhsT>>, \
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Detail::is_##id##_0_comparable<RhsT>, \
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std::is_same<LhsT, int>>::value, \
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int> = 0> \
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friend auto operator op( ExprLhs&& lhs, RhsT rhs ) \
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->BinaryExpr<LhsT, RhsT> { \
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if ( lhs.m_lhs != 0 ) { \
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throw_test_failure_exception(); \
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} \
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if ( lhs.m_lhs != 0 ) { throw_test_failure_exception(); } \
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return { static_cast<bool>( 0 op rhs ), lhs.m_lhs, #op##_sr, rhs }; \
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}
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@ -279,7 +280,7 @@ namespace Catch {
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CATCH_INTERNAL_DEFINE_EXPRESSION_COMPARISON_OPERATOR( gt, > )
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CATCH_INTERNAL_DEFINE_EXPRESSION_COMPARISON_OPERATOR( ge, >= )
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#undef CATCH_INTERNAL_DEFINE_EXPRESSION_COMPARISON_OPERATOR
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#undef CATCH_INTERNAL_DEFINE_EXPRESSION_COMPARISON_OPERATOR
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#define CATCH_INTERNAL_DEFINE_EXPRESSION_OPERATOR(op) \
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@ -329,3 +329,29 @@ TEST_CASE( "#2555 - types that can only be compared with 0 literal (not int/long
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REQUIRE( TypeWithLit0Comparisons{} != 0 );
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REQUIRE_FALSE( 0 != TypeWithLit0Comparisons{} );
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}
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namespace {
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struct MultipleImplicitConstructors {
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MultipleImplicitConstructors( double ) {}
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MultipleImplicitConstructors( int64_t ) {}
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bool operator==( MultipleImplicitConstructors ) const { return true; }
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bool operator!=( MultipleImplicitConstructors ) const { return true; }
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bool operator<( MultipleImplicitConstructors ) const { return true; }
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bool operator<=( MultipleImplicitConstructors ) const { return true; }
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bool operator>( MultipleImplicitConstructors ) const { return true; }
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bool operator>=( MultipleImplicitConstructors ) const { return true; }
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};
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}
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TEST_CASE("#2571 - tests compile types that have multiple implicit constructors from lit 0",
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"[compilation][approvals]") {
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MultipleImplicitConstructors mic1( 0.0 );
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MultipleImplicitConstructors mic2( 0.0 );
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REQUIRE( mic1 == mic2 );
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REQUIRE( mic1 != mic2 );
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REQUIRE( mic1 < mic2 );
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REQUIRE( mic1 <= mic2 );
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REQUIRE( mic1 > mic2 );
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REQUIRE( mic1 >= mic2 );
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}
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