| [04124c4] | 1 | //
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 | 2 | // Cforall Version 1.0.0 Copyright (C) 2019 University of Waterloo
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 | 3 | //
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 | 4 | // The contents of this file are covered under the licence agreement in the
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 | 5 | // file "LICENCE" distributed with Cforall.
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 | 6 | //
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 | 7 | // Pass.impl.hpp --
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 | 8 | //
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 | 9 | // Author           : Thierry Delisle
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 | 10 | // Created On       : Thu May 09 15::37::05 2019
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 | 11 | // Last Modified By :
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 | 12 | // Last Modified On :
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 | 13 | // Update Count     :
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 | 14 | //
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 | 15 | 
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| [f47f887] | 16 | #pragma once
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 | 17 | // IWYU pragma: private, include "Pass.hpp"
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 | 18 | 
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| [c15085d] | 19 | #include "Common/Stats/Heap.h"
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| [f47f887] | 20 | namespace ast {
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| [26e6d88] | 21 |         template<typename core_t> class Pass;
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 | 22 |         class TranslationUnit;
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 | 23 |         struct PureVisitor;
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 | 24 |         template<typename node_t> node_t * deepCopy( const node_t * );
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| [cad9edb] | 25 | }
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| [d3aa64f1] | 26 | 
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| [cad9edb] | 27 | namespace ast::__pass {
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| [4ec9513] | 28 | 
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| [26e6d88] | 29 | typedef std::function<void( void * )> cleanup_func_t;
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 | 30 | typedef std::function<void( cleanup_func_t, void * )> at_cleanup_t;
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| [f47f887] | 31 | 
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| [26e6d88] | 32 | // boolean reference that may be null
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 | 33 | // either refers to a boolean value or is null and returns true
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 | 34 | class bool_ref {
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 | 35 | public:
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 | 36 |         bool_ref() = default;
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 | 37 |         ~bool_ref() = default;
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| [f47f887] | 38 | 
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| [26e6d88] | 39 |         operator bool() { return m_ref ? *m_ref : true; }
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 | 40 |         bool operator=( bool val ) { assert(m_ref); return *m_ref = val; }
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| [f47f887] | 41 | 
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| [26e6d88] | 42 | private:
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| [f47f887] | 43 | 
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| [26e6d88] | 44 |         friend class visit_children_guard;
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| [f47f887] | 45 | 
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| [26e6d88] | 46 |         bool * set( bool * val ) {
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 | 47 |                 bool * prev = m_ref;
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 | 48 |                 m_ref = val;
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 | 49 |                 return prev;
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 | 50 |         }
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| [f47f887] | 51 | 
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| [26e6d88] | 52 |         bool * m_ref = nullptr;
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 | 53 | };
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 | 54 | 
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 | 55 | // Implementation of the guard value
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 | 56 | // Created inside the visit scope
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 | 57 | class guard_value {
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 | 58 | public:
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 | 59 |         /// Push onto the cleanup
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 | 60 |         guard_value( at_cleanup_t * at_cleanup ) {
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 | 61 |                 if( at_cleanup ) {
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 | 62 |                         *at_cleanup = [this]( cleanup_func_t && func, void* val ) {
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 | 63 |                                 push( std::move( func ), val );
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 | 64 |                         };
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| [04124c4] | 65 |                 }
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| [26e6d88] | 66 |         }
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| [f47f887] | 67 | 
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| [26e6d88] | 68 |         ~guard_value() {
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 | 69 |                 while( !cleanups.empty() ) {
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 | 70 |                         auto& cleanup = cleanups.top();
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 | 71 |                         cleanup.func( cleanup.val );
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 | 72 |                         cleanups.pop();
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| [04124c4] | 73 |                 }
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| [26e6d88] | 74 |         }
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| [f47f887] | 75 | 
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| [26e6d88] | 76 |         void push( cleanup_func_t && func, void* val ) {
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 | 77 |                 cleanups.emplace( std::move(func), val );
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 | 78 |         }
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| [f47f887] | 79 | 
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| [26e6d88] | 80 | private:
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 | 81 |         struct cleanup_t {
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 | 82 |                 cleanup_func_t func;
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 | 83 |                 void * val;
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| [f47f887] | 84 | 
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| [26e6d88] | 85 |                 cleanup_t( cleanup_func_t&& func, void * val ) : func(func), val(val) {}
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| [04124c4] | 86 |         };
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| [f47f887] | 87 | 
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| [26e6d88] | 88 |         std::stack< cleanup_t, std::vector<cleanup_t> > cleanups;
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 | 89 | };
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| [04124c4] | 90 | 
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| [26e6d88] | 91 | // Guard structure implementation for whether or not children should be visited
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 | 92 | class visit_children_guard {
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 | 93 | public:
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| [dff6452] | 94 | 
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| [26e6d88] | 95 |         visit_children_guard( bool_ref * ref )
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 | 96 |                 : m_val ( true )
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 | 97 |                 , m_prev( ref ? ref->set( &m_val ) : nullptr )
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 | 98 |                 , m_ref ( ref )
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 | 99 |         {}
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| [dff6452] | 100 | 
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| [26e6d88] | 101 |         ~visit_children_guard() {
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 | 102 |                 if( m_ref ) {
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 | 103 |                         m_ref->set( m_prev );
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 | 104 |                 }
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 | 105 |         }
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| [eb211bf] | 106 | 
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| [26e6d88] | 107 |         operator bool() { return m_val; }
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 | 108 | 
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 | 109 | private:
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 | 110 |         bool       m_val;
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 | 111 |         bool     * m_prev;
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 | 112 |         bool_ref * m_ref;
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 | 113 | };
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 | 114 | 
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 | 115 | /// "Short hand" to check if this is a valid previsit function
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 | 116 | /// Mostly used to make the static_assert look (and print) prettier
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 | 117 | template<typename core_t, typename node_t>
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 | 118 | struct is_valid_previsit {
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 | 119 |         using ret_t = decltype( std::declval<core_t*>()->previsit( std::declval<const node_t *>() ) );
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 | 120 | 
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 | 121 |         static constexpr bool value = std::is_void< ret_t >::value ||
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 | 122 |                 std::is_base_of<const node_t, typename std::remove_pointer<ret_t>::type >::value;
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 | 123 | };
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 | 124 | 
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 | 125 | /// The result is a single node.
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 | 126 | template< typename node_t >
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 | 127 | struct result1 {
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 | 128 |         bool differs = false;
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 | 129 |         const node_t * value = nullptr;
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 | 130 | 
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 | 131 |         template< typename object_t, typename super_t, typename field_t >
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 | 132 |         void apply( object_t *, field_t super_t::* field );
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 | 133 | };
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 | 134 | 
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 | 135 | /// The result is a container of statements.
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 | 136 | template< template<class...> class container_t >
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 | 137 | struct resultNstmt {
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 | 138 |         /// The delta/change on a single node.
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 | 139 |         struct delta {
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 | 140 |                 ptr<Stmt> new_val;
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 | 141 |                 ssize_t old_idx;
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 | 142 |                 bool is_old;
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 | 143 | 
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 | 144 |                 delta(const Stmt * s, ssize_t i, bool old) :
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 | 145 |                         new_val(s), old_idx(i), is_old(old) {}
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| [eb211bf] | 146 |         };
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 | 147 | 
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| [26e6d88] | 148 |         bool differs = false;
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 | 149 |         container_t< delta > values;
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| [eb211bf] | 150 | 
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| [26e6d88] | 151 |         template< typename object_t, typename super_t, typename field_t >
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 | 152 |         void apply( object_t *, field_t super_t::* field );
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| [eb211bf] | 153 | 
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| [26e6d88] | 154 |         template< template<class...> class incontainer_t >
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 | 155 |         void take_all( incontainer_t<ptr<Stmt>> * stmts );
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| [eb211bf] | 156 | 
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| [26e6d88] | 157 |         template< template<class...> class incontainer_t >
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 | 158 |         void take_all( incontainer_t<ptr<Decl>> * decls );
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 | 159 | };
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| [eb211bf] | 160 | 
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| [26e6d88] | 161 | /// The result is a container of nodes.
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 | 162 | template< template<class...> class container_t, typename node_t >
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 | 163 | struct resultN {
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 | 164 |         bool differs = false;
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 | 165 |         container_t<ptr<node_t>> values;
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| [0b8bf27] | 166 | 
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| [26e6d88] | 167 |         template< typename object_t, typename super_t, typename field_t >
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 | 168 |         void apply( object_t *, field_t super_t::* field );
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 | 169 | };
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| [e4b6cf78] | 170 | 
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| [26e6d88] | 171 | /// Used by previsit implementation
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 | 172 | /// We need to reassign the result to 'node', unless the function
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 | 173 | /// returns void, then we just leave 'node' unchanged
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 | 174 | template<bool is_void>
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 | 175 | struct __assign;
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| [e4b6cf78] | 176 | 
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| [26e6d88] | 177 | template<>
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 | 178 | struct __assign<true> {
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| [7ff3e522] | 179 |         template<typename core_t, typename node_t>
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| [26e6d88] | 180 |         static inline void result( core_t & core, const node_t * & node ) {
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 | 181 |                 core.previsit( node );
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| [04124c4] | 182 |         }
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| [26e6d88] | 183 | };
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| [04124c4] | 184 | 
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| [26e6d88] | 185 | template<>
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 | 186 | struct __assign<false> {
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| [7ff3e522] | 187 |         template<typename core_t, typename node_t>
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| [26e6d88] | 188 |         static inline void result( core_t & core, const node_t * & node ) {
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 | 189 |                 node = core.previsit( node );
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 | 190 |                 assertf(node, "Previsit must not return NULL");
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 | 191 |         }
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 | 192 | };
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| [04124c4] | 193 | 
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| [26e6d88] | 194 | /// Used by postvisit implementation
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 | 195 | /// We need to return the result unless the function
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 | 196 | /// returns void, then we just return the original node
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 | 197 | template<bool is_void>
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 | 198 | struct __return;
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 | 199 | 
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 | 200 | template<>
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 | 201 | struct __return<true> {
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| [7ff3e522] | 202 |         template<typename core_t, typename node_t>
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| [26e6d88] | 203 |         static inline const node_t * result( core_t & core, const node_t * & node ) {
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 | 204 |                 core.postvisit( node );
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 | 205 |                 return node;
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| [04124c4] | 206 |         }
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| [26e6d88] | 207 | };
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| [04124c4] | 208 | 
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| [26e6d88] | 209 | template<>
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 | 210 | struct __return<false> {
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| [7ff3e522] | 211 |         template<typename core_t, typename node_t>
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| [26e6d88] | 212 |         static inline auto result( core_t & core, const node_t * & node ) {
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 | 213 |                 return core.postvisit( node );
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| [c15085d] | 214 |         }
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| [26e6d88] | 215 | };
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 | 216 | 
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 | 217 | //-------------------------------------------------------------------------------------------------------------------------------------------------------------------------
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 | 218 | // Deep magic (a.k.a template meta programming) to make the templated visitor work
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 | 219 | // Basically the goal is to make 2 previsit
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 | 220 | // 1 - Use when a pass implements a valid previsit. This uses overloading which means the any overload of
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 | 221 | //     'pass.previsit( node )' that compiles will be used for that node for that type
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 | 222 | //     This requires that this option only compile for passes that actually define an appropriate visit.
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 | 223 | //     SFINAE will make sure the compilation errors in this function don't halt the build.
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 | 224 | //     See http://en.cppreference.com/w/cpp/language/sfinae for details on SFINAE
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 | 225 | // 2 - Since the first implementation might not be specilizable, the second implementation exists and does nothing.
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 | 226 | //     This is needed only to eliminate the need for passes to specify any kind of handlers.
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 | 227 | //     The second implementation only works because it has a lower priority. This is due to the bogus last parameter.
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 | 228 | //     The second implementation takes a long while the first takes an int. Since the caller always passes an literal 0
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 | 229 | //     the first implementation takes priority in regards to overloading.
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 | 230 | //-------------------------------------------------------------------------------------------------------------------------------------------------------------------------
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 | 231 | // PreVisit : may mutate the pointer passed in if the node is mutated in the previsit call
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 | 232 | template<typename core_t, typename node_t>
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 | 233 | static inline auto previsit( core_t & core, const node_t * & node, int ) -> decltype( core.previsit( node ), void() ) {
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 | 234 |         static_assert(
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 | 235 |                 is_valid_previsit<core_t, node_t>::value,
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 | 236 |                 "Previsit may not change the type of the node. It must return its paremeter or void."
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 | 237 |         );
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 | 238 | 
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 | 239 |         __assign<
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 | 240 |                 std::is_void<
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 | 241 |                         decltype( core.previsit( node ) )
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 | 242 |                 >::value
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 | 243 |         >::result( core, node );
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 | 244 | }
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| [c15085d] | 245 | 
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| [26e6d88] | 246 | template<typename core_t, typename node_t>
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 | 247 | static inline auto previsit( core_t &, const node_t *, long ) {}
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 | 248 | 
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 | 249 | // PostVisit : never mutates the passed pointer but may return a different node
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 | 250 | template<typename core_t, typename node_t>
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 | 251 | static inline auto postvisit( core_t & core, const node_t * node, int ) ->
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 | 252 |         decltype( core.postvisit( node ), node->accept( *(Visitor*)nullptr ) )
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 | 253 | {
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 | 254 |         return __return<
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 | 255 |                 std::is_void<
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 | 256 |                         decltype( core.postvisit( node ) )
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 | 257 |                 >::value
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 | 258 |         >::result( core, node );
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 | 259 | }
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| [c15085d] | 260 | 
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| [26e6d88] | 261 | template<typename core_t, typename node_t>
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 | 262 | static inline const node_t * postvisit( core_t &, const node_t * node, long ) { return node; }
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 | 263 | 
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 | 264 | //-------------------------------------------------------------------------------------------------------------------------------------------------------------------------
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 | 265 | // Deep magic (a.k.a template meta programming) continued
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 | 266 | // To make the templated visitor be more expressive, we allow 'accessories' : classes/structs the implementation can inherit
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 | 267 | // from in order to get extra functionallity for example
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 | 268 | // class ErrorChecker : WithShortCircuiting { ... };
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 | 269 | // Pass<ErrorChecker> checker;
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 | 270 | // this would define a pass that uses the templated visitor with the additionnal feature that it has short circuiting
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 | 271 | // Note that in all cases the accessories are not required but guarantee the requirements of the feature is matched
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 | 272 | //-------------------------------------------------------------------------------------------------------------------------------------------------------------------------
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 | 273 | // For several accessories, the feature is enabled by detecting that a specific field is present
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 | 274 | // Use a macro the encapsulate the logic of detecting a particular field
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 | 275 | // The type is not strictly enforced but does match the accessory
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 | 276 | #define FIELD_PTR( name, default_type ) \
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 | 277 | template< typename core_t > \
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 | 278 | static inline auto name( core_t & core, int ) -> decltype( &core.name ) { return &core.name; } \
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 | 279 | \
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 | 280 | template< typename core_t > \
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 | 281 | static inline default_type * name( core_t &, long ) { return nullptr; }
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 | 282 | 
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 | 283 | // List of fields and their expected types
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 | 284 | FIELD_PTR( typeSubs, const ast::TypeSubstitution * )
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 | 285 | FIELD_PTR( stmtsToAddBefore, std::list< ast::ptr< ast::Stmt > > )
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 | 286 | FIELD_PTR( stmtsToAddAfter , std::list< ast::ptr< ast::Stmt > > )
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 | 287 | FIELD_PTR( declsToAddBefore, std::list< ast::ptr< ast::Decl > > )
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 | 288 | FIELD_PTR( declsToAddAfter , std::list< ast::ptr< ast::Decl > > )
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 | 289 | FIELD_PTR( visit_children, __pass::bool_ref )
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 | 290 | FIELD_PTR( at_cleanup, __pass::at_cleanup_t )
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 | 291 | FIELD_PTR( visitor, ast::Pass<core_t> * const )
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 | 292 | 
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 | 293 | // Remove the macro to make sure we don't clash
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 | 294 | #undef FIELD_PTR
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 | 295 | 
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 | 296 | template< typename core_t >
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 | 297 | static inline auto beginTrace(core_t &, int) -> decltype( core_t::traceId, void() ) {
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 | 298 |         // Stats::Heap::stacktrace_push(core_t::traceId);
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 | 299 | }
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| [c15085d] | 300 | 
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| [26e6d88] | 301 | template< typename core_t >
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 | 302 | static inline auto endTrace(core_t &, int) -> decltype( core_t::traceId, void() ) {
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 | 303 |         // Stats::Heap::stacktrace_pop();
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 | 304 | }
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| [c15085d] | 305 | 
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| [26e6d88] | 306 | template< typename core_t >
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 | 307 | static void beginTrace(core_t &, long) {}
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| [0dd9a5e] | 308 | 
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| [26e6d88] | 309 | template< typename core_t >
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 | 310 | static void endTrace(core_t &, long) {}
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| [0dd9a5e] | 311 | 
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| [26e6d88] | 312 | // Allows visitor to handle an error on top-level declarations, and possibly suppress the error.
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 | 313 | // If on_error() returns false, the error will be ignored. By default, it returns true.
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| [0dd9a5e] | 314 | 
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| [26e6d88] | 315 | template< typename core_t >
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 | 316 | static bool on_error (core_t &, ptr<Decl> &, long) { return true; }
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| [95e5018] | 317 | 
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| [26e6d88] | 318 | template< typename core_t >
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 | 319 | static auto on_error (core_t & core, ptr<Decl> & decl, int) -> decltype(core.on_error(decl)) {
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 | 320 |         return core.on_error(decl);
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 | 321 | }
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| [a9762dc] | 322 | 
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| [26e6d88] | 323 | template< typename core_t, typename node_t >
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 | 324 | static auto make_location_guard( core_t & core, node_t * node, int )
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 | 325 |                 -> decltype( node->location, ValueGuardPtr<const CodeLocation *>( &core.location ) ) {
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 | 326 |         ValueGuardPtr<const CodeLocation *> guard( &core.location );
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 | 327 |         core.location = &node->location;
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 | 328 |         return guard;
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 | 329 | }
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| [f47f887] | 330 | 
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| [26e6d88] | 331 | template< typename core_t, typename node_t >
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 | 332 | static auto make_location_guard( core_t &, node_t *, long ) -> int {
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 | 333 |         return 0;
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 | 334 | }
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| [f47f887] | 335 | 
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| [26e6d88] | 336 | // Another feature of the templated visitor is that it calls beginScope()/endScope() for compound statement.
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 | 337 | // All passes which have such functions are assumed desire this behaviour
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 | 338 | // detect it using the same strategy
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 | 339 | namespace scope {
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 | 340 |         template<typename core_t>
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 | 341 |         static inline auto enter( core_t & core, int ) -> decltype( core.beginScope(), void() ) {
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 | 342 |                 core.beginScope();
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 | 343 |         }
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| [f47f887] | 344 | 
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| [26e6d88] | 345 |         template<typename core_t>
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 | 346 |         static inline void enter( core_t &, long ) {}
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| [f47f887] | 347 | 
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| [26e6d88] | 348 |         template<typename core_t>
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 | 349 |         static inline auto leave( core_t & core, int ) -> decltype( core.endScope(), void() ) {
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 | 350 |                 core.endScope();
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 | 351 |         }
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| [f47f887] | 352 | 
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| [26e6d88] | 353 |         template<typename core_t>
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 | 354 |         static inline void leave( core_t &, long ) {}
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 | 355 | } // namespace scope
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 | 356 | 
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 | 357 | // Certain passes desire an up to date symbol table automatically
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 | 358 | // detect the presence of a member name `symtab` and call all the members appropriately
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 | 359 | namespace symtab {
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 | 360 |         // Some simple scoping rules
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 | 361 |         template<typename core_t>
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 | 362 |         static inline auto enter( core_t & core, int ) -> decltype( core.symtab, void() ) {
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 | 363 |                 core.symtab.enterScope();
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 | 364 |         }
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| [f47f887] | 365 | 
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| [26e6d88] | 366 |         template<typename core_t>
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 | 367 |         static inline auto enter( core_t &, long ) {}
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 | 368 | 
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 | 369 |         template<typename core_t>
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 | 370 |         static inline auto leave( core_t & core, int ) -> decltype( core.symtab, void() ) {
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 | 371 |                 core.symtab.leaveScope();
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 | 372 |         }
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| [6d51bd7] | 373 | 
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| [26e6d88] | 374 |         template<typename core_t>
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 | 375 |         static inline auto leave( core_t &, long ) {}
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| [6d51bd7] | 376 | 
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| [26e6d88] | 377 |         // The symbol table has 2 kind of functions mostly, 1 argument and 2 arguments
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 | 378 |         // Create macro to condense these common patterns
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 | 379 |         #define SYMTAB_FUNC1( func, type ) \
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 | 380 |         template<typename core_t> \
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 | 381 |         static inline auto func( core_t & core, int, type arg ) -> decltype( core.symtab.func( arg ), void() ) {\
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 | 382 |                 core.symtab.func( arg ); \
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 | 383 |         } \
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 | 384 |         \
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 | 385 |         template<typename core_t> \
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 | 386 |         static inline void func( core_t &, long, type ) {}
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 | 387 | 
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 | 388 |         #define SYMTAB_FUNC2( func, type1, type2 ) \
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 | 389 |         template<typename core_t> \
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 | 390 |         static inline auto func( core_t & core, int, type1 arg1, type2 arg2 ) -> decltype( core.symtab.func( arg1, arg2 ), void () ) {\
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 | 391 |                 core.symtab.func( arg1, arg2 ); \
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 | 392 |         } \
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 | 393 |         \
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 | 394 |         template<typename core_t> \
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 | 395 |         static inline void func( core_t &, long, type1, type2 ) {}
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 | 396 | 
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 | 397 |         SYMTAB_FUNC1( addId     , const DeclWithType *  );
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 | 398 |         SYMTAB_FUNC1( addType   , const NamedTypeDecl * );
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 | 399 |         SYMTAB_FUNC1( addStruct , const StructDecl *    );
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 | 400 |         SYMTAB_FUNC1( addEnum   , const EnumDecl *      );
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 | 401 |         SYMTAB_FUNC1( addUnion  , const UnionDecl *     );
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 | 402 |         SYMTAB_FUNC1( addTrait  , const TraitDecl *     );
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 | 403 |         SYMTAB_FUNC2( addWith   , const std::vector< ptr<Expr> > &, const Decl * );
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 | 404 | 
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 | 405 |         // A few extra functions have more complicated behaviour, they are hand written
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 | 406 |         template<typename core_t>
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 | 407 |         static inline auto addStructFwd( core_t & core, int, const ast::StructDecl * decl ) -> decltype( core.symtab.addStruct( decl ), void() ) {
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 | 408 |                 ast::StructDecl * fwd = new ast::StructDecl( decl->location, decl->name );
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 | 409 |                 for ( const auto & param : decl->params ) {
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 | 410 |                         fwd->params.push_back( deepCopy( param.get() ) );
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| [6d51bd7] | 411 |                 }
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| [26e6d88] | 412 |                 core.symtab.addStruct( fwd );
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 | 413 |         }
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| [6d51bd7] | 414 | 
 | 
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| [26e6d88] | 415 |         template<typename core_t>
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 | 416 |         static inline void addStructFwd( core_t &, long, const ast::StructDecl * ) {}
 | 
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| [6d51bd7] | 417 | 
 | 
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| [26e6d88] | 418 |         template<typename core_t>
 | 
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 | 419 |         static inline auto addUnionFwd( core_t & core, int, const ast::UnionDecl * decl ) -> decltype( core.symtab.addUnion( decl ), void() ) {
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 | 420 |                 ast::UnionDecl * fwd = new ast::UnionDecl( decl->location, decl->name );
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 | 421 |                 for ( const auto & param : decl->params ) {
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 | 422 |                         fwd->params.push_back( deepCopy( param.get() ) );
 | 
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| [6d51bd7] | 423 |                 }
 | 
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| [26e6d88] | 424 |                 core.symtab.addUnion( fwd );
 | 
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 | 425 |         }
 | 
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| [6d51bd7] | 426 | 
 | 
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| [26e6d88] | 427 |         template<typename core_t>
 | 
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 | 428 |         static inline void addUnionFwd( core_t &, long, const ast::UnionDecl * ) {}
 | 
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| [6d51bd7] | 429 | 
 | 
|---|
| [26e6d88] | 430 |         template<typename core_t>
 | 
|---|
 | 431 |         static inline auto addStruct( core_t & core, int, const std::string & str ) -> decltype( core.symtab.addStruct( str ), void() ) {
 | 
|---|
 | 432 |                 if ( ! core.symtab.lookupStruct( str ) ) {
 | 
|---|
 | 433 |                         core.symtab.addStruct( str );
 | 
|---|
| [6d51bd7] | 434 |                 }
 | 
|---|
| [26e6d88] | 435 |         }
 | 
|---|
| [6d51bd7] | 436 | 
 | 
|---|
| [26e6d88] | 437 |         template<typename core_t>
 | 
|---|
 | 438 |         static inline void addStruct( core_t &, long, const std::string & ) {}
 | 
|---|
 | 439 | 
 | 
|---|
 | 440 |         template<typename core_t>
 | 
|---|
 | 441 |         static inline auto addUnion( core_t & core, int, const std::string & str ) -> decltype( core.symtab.addUnion( str ), void() ) {
 | 
|---|
 | 442 |                 if ( ! core.symtab.lookupUnion( str ) ) {
 | 
|---|
 | 443 |                         core.symtab.addUnion( str );
 | 
|---|
| [e0e9a0b] | 444 |                 }
 | 
|---|
| [26e6d88] | 445 |         }
 | 
|---|
| [e0e9a0b] | 446 | 
 | 
|---|
| [26e6d88] | 447 |         template<typename core_t>
 | 
|---|
 | 448 |         static inline void addUnion( core_t &, long, const std::string & ) {}
 | 
|---|
 | 449 | 
 | 
|---|
 | 450 |         #undef SYMTAB_FUNC1
 | 
|---|
 | 451 |         #undef SYMTAB_FUNC2
 | 
|---|
 | 452 | } // namespace symtab
 | 
|---|
 | 453 | 
 | 
|---|
 | 454 | // Some passes need to mutate TypeDecl and properly update their pointing TypeInstType.
 | 
|---|
 | 455 | // Detect the presence of a member name `subs` and call all members appropriately
 | 
|---|
 | 456 | namespace forall {
 | 
|---|
 | 457 |         // Some simple scoping rules
 | 
|---|
 | 458 |         template<typename core_t>
 | 
|---|
 | 459 |         static inline auto enter( core_t & core, int, const ast::FunctionType * type )
 | 
|---|
 | 460 |                         -> decltype( core.subs, void() ) {
 | 
|---|
 | 461 |                 if ( ! type->forall.empty() ) core.subs.beginScope();
 | 
|---|
 | 462 |         }
 | 
|---|
| [e0e9a0b] | 463 | 
 | 
|---|
| [26e6d88] | 464 |         template<typename core_t>
 | 
|---|
 | 465 |         static inline auto enter( core_t &, long, const ast::FunctionType * ) {}
 | 
|---|
| [e0e9a0b] | 466 | 
 | 
|---|
| [26e6d88] | 467 |         template<typename core_t>
 | 
|---|
 | 468 |         static inline auto leave( core_t & core, int, const ast::FunctionType * type )
 | 
|---|
 | 469 |                         -> decltype( core.subs, void() ) {
 | 
|---|
 | 470 |                 if ( ! type->forall.empty() ) { core.subs.endScope(); }
 | 
|---|
 | 471 |         }
 | 
|---|
| [e0e9a0b] | 472 | 
 | 
|---|
| [26e6d88] | 473 |         template<typename core_t>
 | 
|---|
 | 474 |         static inline auto leave( core_t &, long, const ast::FunctionType * ) {}
 | 
|---|
| [e0e9a0b] | 475 | 
 | 
|---|
| [26e6d88] | 476 |         // Replaces a TypeInstType's base TypeDecl according to the table
 | 
|---|
 | 477 |         template<typename core_t>
 | 
|---|
 | 478 |         static inline auto replace( core_t & core, int, const ast::TypeInstType *& inst )
 | 
|---|
 | 479 |                         -> decltype( core.subs, void() ) {
 | 
|---|
 | 480 |                 inst = ast::mutate_field(
 | 
|---|
 | 481 |                         inst, &ast::TypeInstType::base, core.subs.replace( inst->base ) );
 | 
|---|
 | 482 |         }
 | 
|---|
| [e6b42e7] | 483 | 
 | 
|---|
| [26e6d88] | 484 |         template<typename core_t>
 | 
|---|
 | 485 |         static inline auto replace( core_t &, long, const ast::TypeInstType *& ) {}
 | 
|---|
 | 486 | } // namespace forall
 | 
|---|
| [c600df1] | 487 | 
 | 
|---|
| [26e6d88] | 488 | // For passes that need access to the global context. Searches `translationUnit`
 | 
|---|
 | 489 | namespace translation_unit {
 | 
|---|
 | 490 |         template<typename core_t>
 | 
|---|
 | 491 |         static inline auto get_cptr( core_t & core, int )
 | 
|---|
 | 492 |                         -> decltype( &core.translationUnit ) {
 | 
|---|
 | 493 |                 return &core.translationUnit;
 | 
|---|
| [c600df1] | 494 |         }
 | 
|---|
 | 495 | 
 | 
|---|
| [26e6d88] | 496 |         template<typename core_t>
 | 
|---|
 | 497 |         static inline const TranslationUnit ** get_cptr( core_t &, long ) {
 | 
|---|
 | 498 |                 return nullptr;
 | 
|---|
 | 499 |         }
 | 
|---|
 | 500 | }
 | 
|---|
| [e6b42e7] | 501 | 
 | 
|---|
| [26e6d88] | 502 | // For passes, usually utility passes, that have a result.
 | 
|---|
 | 503 | namespace result {
 | 
|---|
 | 504 |         template<typename core_t>
 | 
|---|
 | 505 |         static inline auto get( core_t & core, char ) -> decltype( core.result() ) {
 | 
|---|
 | 506 |                 return core.result();
 | 
|---|
 | 507 |         }
 | 
|---|
| [e6b42e7] | 508 | 
 | 
|---|
| [26e6d88] | 509 |         template<typename core_t>
 | 
|---|
 | 510 |         static inline auto get( core_t & core, int ) -> decltype( core.result ) {
 | 
|---|
 | 511 |                 return core.result;
 | 
|---|
| [66a89e7] | 512 |         }
 | 
|---|
| [cad9edb] | 513 | 
 | 
|---|
| [26e6d88] | 514 |         template<typename core_t>
 | 
|---|
 | 515 |         static inline void get( core_t &, long ) {}
 | 
|---|
 | 516 | }
 | 
|---|
 | 517 | 
 | 
|---|
| [cad9edb] | 518 | } // namespace ast::__pass
 | 
|---|