mirror of
https://github.com/geode-sdk/geode.git
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173 lines
6.8 KiB
C++
Executable file
173 lines
6.8 KiB
C++
Executable file
// Copyright (c) 2019-2022 Dr. Colin Hirsch and Daniel Frey
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// Please see LICENSE for license or visit https://github.com/taocpp/PEGTL/
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#ifndef TAO_PEGTL_MATCH_HPP
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#define TAO_PEGTL_MATCH_HPP
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#include <type_traits>
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#include "apply_mode.hpp"
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#include "config.hpp"
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#include "nothing.hpp"
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#include "require_apply.hpp"
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#include "require_apply0.hpp"
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#include "rewind_mode.hpp"
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#include "internal/has_apply.hpp"
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#include "internal/has_apply0.hpp"
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#include "internal/has_unwind.hpp"
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#include "internal/marker.hpp"
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#include "internal/missing_apply.hpp"
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#include "internal/missing_apply0.hpp"
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#include "internal/unwind_guard.hpp"
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#if defined( _MSC_VER )
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#pragma warning( push )
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#pragma warning( disable : 4702 )
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#endif
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namespace TAO_PEGTL_NAMESPACE
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{
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namespace internal
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{
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template< typename Rule,
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apply_mode A,
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rewind_mode M,
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template< typename... >
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class Action,
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template< typename... >
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class Control,
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typename ParseInput,
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typename... States >
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[[nodiscard]] static auto match_no_control( ParseInput& in, States&&... st )
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-> decltype( Rule::template match< A, M, Action, Control >( in, st... ) )
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{
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return Rule::template match< A, M, Action, Control >( in, st... );
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}
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template< typename Rule,
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apply_mode A,
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rewind_mode M,
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template< typename... >
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class Action,
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template< typename... >
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class Control,
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typename ParseInput,
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typename... States >
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[[nodiscard]] static auto match_no_control( ParseInput& in, States&&... /*unused*/ )
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-> decltype( Rule::match( in ) )
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{
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return Rule::match( in );
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}
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template< typename Rule,
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apply_mode A,
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rewind_mode M,
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template< typename... >
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class Action,
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template< typename... >
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class Control,
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typename ParseInput,
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typename... States >
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[[nodiscard]] auto match_control_unwind( ParseInput& in, States&&... st )
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{
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#if defined( __cpp_exceptions )
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if constexpr( has_unwind< Control< Rule >, void, const ParseInput&, States... > ) {
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unwind_guard ug( [ & ] {
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Control< Rule >::unwind( static_cast< const ParseInput& >( in ), st... );
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} );
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const auto result = match_no_control< Rule, A, M, Action, Control >( in, st... );
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ug.unwind.reset();
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return result;
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}
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else {
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return match_no_control< Rule, A, M, Action, Control >( in, st... );
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}
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#else
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return match_no_control< Rule, A, M, Action, Control >( in, st... );
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#endif
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}
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} // namespace internal
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template< typename Rule,
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apply_mode A,
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rewind_mode M,
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template< typename... >
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class Action,
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template< typename... >
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class Control,
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typename ParseInput,
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typename... States >
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[[nodiscard]] auto match( ParseInput& in, States&&... st )
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{
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if constexpr( !Control< Rule >::enable ) {
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return internal::match_no_control< Rule, A, M, Action, Control >( in, st... );
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}
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else {
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constexpr bool enable_action = ( A == apply_mode::action );
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using iterator_t = typename ParseInput::iterator_t;
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constexpr bool has_apply_void = enable_action && internal::has_apply< Control< Rule >, void, Action, const iterator_t&, const ParseInput&, States... >;
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constexpr bool has_apply_bool = enable_action && internal::has_apply< Control< Rule >, bool, Action, const iterator_t&, const ParseInput&, States... >;
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constexpr bool has_apply = has_apply_void || has_apply_bool;
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constexpr bool has_apply0_void = enable_action && internal::has_apply0< Control< Rule >, void, Action, const ParseInput&, States... >;
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constexpr bool has_apply0_bool = enable_action && internal::has_apply0< Control< Rule >, bool, Action, const ParseInput&, States... >;
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constexpr bool has_apply0 = has_apply0_void || has_apply0_bool;
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static_assert( !( has_apply && has_apply0 ), "both apply() and apply0() defined" );
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constexpr bool is_nothing = std::is_base_of_v< nothing< Rule >, Action< Rule > >;
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static_assert( !( has_apply && is_nothing ), "unexpected apply() defined" );
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static_assert( !( has_apply0 && is_nothing ), "unexpected apply0() defined" );
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if constexpr( !has_apply && std::is_base_of_v< require_apply, Action< Rule > > ) {
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internal::missing_apply< Control< Rule >, Action >( in, st... );
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}
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if constexpr( !has_apply0 && std::is_base_of_v< require_apply0, Action< Rule > > ) {
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internal::missing_apply0< Control< Rule >, Action >( in, st... );
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}
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constexpr bool validate_nothing = std::is_base_of_v< maybe_nothing, Action< void > >;
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constexpr bool is_maybe_nothing = std::is_base_of_v< maybe_nothing, Action< Rule > >;
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static_assert( !enable_action || !validate_nothing || is_nothing || is_maybe_nothing || has_apply || has_apply0, "either apply() or apply0() must be defined" );
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constexpr bool use_marker = has_apply || has_apply0_bool;
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auto m = in.template mark< ( use_marker ? rewind_mode::required : rewind_mode::dontcare ) >();
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Control< Rule >::start( static_cast< const ParseInput& >( in ), st... );
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auto result = internal::match_control_unwind< Rule, A, ( use_marker ? rewind_mode::active : M ), Action, Control >( in, st... );
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if( result ) {
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if constexpr( has_apply_void ) {
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Control< Rule >::template apply< Action >( m.iterator(), static_cast< const ParseInput& >( in ), st... );
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}
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else if constexpr( has_apply_bool ) {
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result = Control< Rule >::template apply< Action >( m.iterator(), static_cast< const ParseInput& >( in ), st... );
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}
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else if constexpr( has_apply0_void ) {
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Control< Rule >::template apply0< Action >( static_cast< const ParseInput& >( in ), st... );
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}
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else if constexpr( has_apply0_bool ) {
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result = Control< Rule >::template apply0< Action >( static_cast< const ParseInput& >( in ), st... );
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}
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}
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if( result ) {
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Control< Rule >::success( static_cast< const ParseInput& >( in ), st... );
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}
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else {
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Control< Rule >::failure( static_cast< const ParseInput& >( in ), st... );
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}
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(void)m( result );
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return result;
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}
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}
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} // namespace TAO_PEGTL_NAMESPACE
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#if defined( _MSC_VER )
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#pragma warning( pop )
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#endif
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#endif
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