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175 lines
5.4 KiB
C++
175 lines
5.4 KiB
C++
/*
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* Created by Phil on 11/5/2012.
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* Copyright 2012 Two Blue Cubes Ltd. All rights reserved.
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*
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* Distributed under the Boost Software License, Version 1.0. (See accompanying
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* file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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*/
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#ifndef TWOBLUECUBES_CATCH_EXPRESSION_LHS_HPP_INCLUDED
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#define TWOBLUECUBES_CATCH_EXPRESSION_LHS_HPP_INCLUDED
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#include "catch_result_builder.h"
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#include "catch_evaluate.hpp"
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#include "catch_tostring.h"
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namespace Catch {
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template<typename LhsT, Internal::Operator Op, typename RhsT>
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class BinaryExpression;
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template<typename ArgT, typename MatcherT>
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class MatchExpression;
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// Wraps the LHS of an expression and overloads comparison operators
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// for also capturing those and RHS (if any)
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template<typename T>
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class ExpressionLhs : public DecomposedExpression {
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public:
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ExpressionLhs( ResultBuilder& rb, T lhs ) : m_rb( rb ), m_lhs( lhs ) {}
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ExpressionLhs& operator = ( const ExpressionLhs& );
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template<typename RhsT>
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BinaryExpression<T, Internal::IsEqualTo, RhsT const&>
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operator == ( RhsT const& rhs ) {
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return captureExpression<Internal::IsEqualTo>( rhs );
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}
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template<typename RhsT>
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BinaryExpression<T, Internal::IsNotEqualTo, RhsT const&>
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operator != ( RhsT const& rhs ) {
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return captureExpression<Internal::IsNotEqualTo>( rhs );
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}
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template<typename RhsT>
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BinaryExpression<T, Internal::IsLessThan, RhsT const&>
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operator < ( RhsT const& rhs ) {
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return captureExpression<Internal::IsLessThan>( rhs );
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}
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template<typename RhsT>
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BinaryExpression<T, Internal::IsGreaterThan, RhsT const&>
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operator > ( RhsT const& rhs ) {
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return captureExpression<Internal::IsGreaterThan>( rhs );
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}
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template<typename RhsT>
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BinaryExpression<T, Internal::IsLessThanOrEqualTo, RhsT const&>
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operator <= ( RhsT const& rhs ) {
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return captureExpression<Internal::IsLessThanOrEqualTo>( rhs );
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}
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template<typename RhsT>
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BinaryExpression<T, Internal::IsGreaterThanOrEqualTo, RhsT const&>
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operator >= ( RhsT const& rhs ) {
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return captureExpression<Internal::IsGreaterThanOrEqualTo>( rhs );
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}
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BinaryExpression<T, Internal::IsEqualTo, bool> operator == ( bool rhs ) {
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return captureExpression<Internal::IsEqualTo>( rhs );
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}
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BinaryExpression<T, Internal::IsNotEqualTo, bool> operator != ( bool rhs ) {
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return captureExpression<Internal::IsNotEqualTo>( rhs );
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}
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void endExpression() {
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m_truthy = m_lhs ? true : false;
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m_rb
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.setResultType( m_truthy )
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.endExpression( *this );
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}
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virtual void reconstructExpression( std::string& dest ) const override {
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dest = Catch::toString( m_truthy );
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}
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private:
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template<Internal::Operator Op, typename RhsT>
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BinaryExpression<T, Op, RhsT&> captureExpression( RhsT& rhs ) const {
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return BinaryExpression<T, Op, RhsT&>( m_rb, m_lhs, rhs );
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}
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template<Internal::Operator Op>
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BinaryExpression<T, Op, bool> captureExpression( bool rhs ) const {
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return BinaryExpression<T, Op, bool>( m_rb, m_lhs, rhs );
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}
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private:
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ResultBuilder& m_rb;
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T m_lhs;
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bool m_truthy = false;
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};
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template<typename LhsT, Internal::Operator Op, typename RhsT>
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class BinaryExpression : public DecomposedExpression {
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public:
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BinaryExpression( ResultBuilder& rb, LhsT lhs, RhsT rhs )
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: m_rb( rb ), m_lhs( lhs ), m_rhs( rhs ) {}
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BinaryExpression& operator = ( BinaryExpression& );
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void endExpression() const {
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m_rb
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.setResultType( Internal::compare<Op>( m_lhs, m_rhs ) )
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.endExpression( *this );
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}
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virtual bool isBinaryExpression() const override {
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return true;
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}
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virtual void reconstructExpression( std::string& dest ) const override {
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std::string lhs = Catch::toString( m_lhs );
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std::string rhs = Catch::toString( m_rhs );
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char delim = lhs.size() + rhs.size() < 40 &&
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lhs.find('\n') == std::string::npos &&
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rhs.find('\n') == std::string::npos ? ' ' : '\n';
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dest.reserve( 7 + lhs.size() + rhs.size() );
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// 2 for spaces around operator
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// 2 for operator
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// 2 for parentheses (conditionally added later)
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// 1 for negation (conditionally added later)
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dest = lhs;
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dest += delim;
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dest += Internal::OperatorTraits<Op>::getName();
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dest += delim;
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dest += rhs;
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}
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private:
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ResultBuilder& m_rb;
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LhsT m_lhs;
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RhsT m_rhs;
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};
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template<typename ArgT, typename MatcherT>
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class MatchExpression : public DecomposedExpression {
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public:
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MatchExpression( ArgT arg, MatcherT matcher, char const* matcherString )
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: m_arg( arg ), m_matcher( matcher ), m_matcherString( matcherString ) {}
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virtual bool isBinaryExpression() const override {
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return true;
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}
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virtual void reconstructExpression( std::string& dest ) const override {
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std::string matcherAsString = m_matcher.toString();
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dest = Catch::toString( m_arg );
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dest += ' ';
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if( matcherAsString == Detail::unprintableString )
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dest += m_matcherString;
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else
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dest += matcherAsString;
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}
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private:
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ArgT m_arg;
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MatcherT m_matcher;
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char const* m_matcherString;
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};
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} // end namespace Catch
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#endif // TWOBLUECUBES_CATCH_EXPRESSION_LHS_HPP_INCLUDED
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