1 | //
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2 | // Cforall Version 1.0.0 Copyright (C) 2015 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 | // FixInit.cc --
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8 | //
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9 | // Author : Rob Schluntz
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10 | // Created On : Wed Jan 13 16:29:30 2016
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11 | // Last Modified By : Peter A. Buhr
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12 | // Last Modified On : Wed Feb 13 18:15:56 2019
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13 | // Update Count : 76
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14 | //
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15 | #include "FixInit.h"
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16 |
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17 | #include <stddef.h> // for NULL
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18 | #include <algorithm> // for set_difference, copy_if
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19 | #include <cassert> // for assert, strict_dynamic_cast
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20 | #include <iostream> // for operator<<, ostream, basic_ost...
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21 | #include <iterator> // for insert_iterator, back_inserter
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22 | #include <list> // for _List_iterator, list, list<>::...
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23 | #include <map> // for _Rb_tree_iterator, _Rb_tree_co...
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24 | #include <memory> // for allocator_traits<>::value_type
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25 | #include <set> // for set, set<>::value_type
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26 | #include <unordered_map> // for unordered_map, unordered_map<>...
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27 | #include <unordered_set> // for unordered_set
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28 | #include <utility> // for pair
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29 |
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30 | #include "CodeGen/GenType.h" // for genPrettyType
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31 | #include "CodeGen/OperatorTable.h"
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32 | #include "Common/PassVisitor.h" // for PassVisitor, WithStmtsToAdd
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33 | #include "Common/SemanticError.h" // for SemanticError
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34 | #include "Common/UniqueName.h" // for UniqueName
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35 | #include "Common/utility.h" // for CodeLocation, ValueGuard, toSt...
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36 | #include "FixGlobalInit.h" // for fixGlobalInit
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37 | #include "GenInit.h" // for genCtorDtor
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38 | #include "GenPoly/GenPoly.h" // for getFunctionType
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39 | #include "InitTweak.h" // for getFunctionName, getCallArg
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40 | #include "Parser/LinkageSpec.h" // for C, Spec, Cforall, isBuiltin
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41 | #include "ResolvExpr/Resolver.h" // for findVoidExpression
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42 | #include "ResolvExpr/typeops.h" // for typesCompatible
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43 | #include "SymTab/Autogen.h" // for genImplicitCall
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44 | #include "SymTab/Indexer.h" // for Indexer
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45 | #include "SymTab/Mangler.h" // for Mangler
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46 | #include "SynTree/Attribute.h" // for Attribute
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47 | #include "SynTree/Constant.h" // for Constant
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48 | #include "SynTree/Declaration.h" // for ObjectDecl, FunctionDecl, Decl...
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49 | #include "SynTree/Expression.h" // for UniqueExpr, VariableExpr, Unty...
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50 | #include "SynTree/Initializer.h" // for ConstructorInit, SingleInit
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51 | #include "SynTree/Label.h" // for Label, operator<
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52 | #include "SynTree/Mutator.h" // for mutateAll, Mutator, maybeMutate
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53 | #include "SynTree/Statement.h" // for ExprStmt, CompoundStmt, Branch...
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54 | #include "SynTree/Type.h" // for Type, Type::StorageClasses
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55 | #include "SynTree/TypeSubstitution.h" // for TypeSubstitution, operator<<
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56 | #include "SynTree/Visitor.h" // for acceptAll, maybeAccept
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57 |
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58 | bool ctordtorp = false; // print all debug
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59 | bool ctorp = false; // print ctor debug
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60 | bool cpctorp = false; // print copy ctor debug
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61 | bool dtorp = false; // print dtor debug
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62 | #define PRINT( text ) if ( ctordtorp ) { text }
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63 | #define CP_CTOR_PRINT( text ) if ( ctordtorp || cpctorp ) { text }
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64 | #define DTOR_PRINT( text ) if ( ctordtorp || dtorp ) { text }
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65 |
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66 | namespace InitTweak {
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67 | namespace {
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68 | typedef std::unordered_map< int, int > UnqCount;
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69 |
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70 | struct SelfAssignChecker {
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71 | void previsit( ApplicationExpr * appExpr );
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72 | };
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73 |
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74 | struct InsertImplicitCalls : public WithConstTypeSubstitution {
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75 | /// wrap function application expressions as ImplicitCopyCtorExpr nodes so that it is easy to identify which
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76 | /// function calls need their parameters to be copy constructed
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77 | static void insert( std::list< Declaration * > & translationUnit );
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78 |
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79 | Expression * postmutate( ApplicationExpr * appExpr );
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80 | };
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81 |
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82 | struct ResolveCopyCtors final : public WithIndexer, public WithShortCircuiting, public WithTypeSubstitution {
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83 | /// generate temporary ObjectDecls for each argument and return value of each ImplicitCopyCtorExpr,
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84 | /// generate/resolve copy construction expressions for each, and generate/resolve destructors for both
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85 | /// arguments and return value temporaries
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86 | static void resolveImplicitCalls( std::list< Declaration * > & translationUnit, UnqCount & unqCount );
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87 |
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88 | ResolveCopyCtors( UnqCount & unqCount ) : unqCount( unqCount ) {}
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89 |
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90 | void postvisit( ImplicitCopyCtorExpr * impCpCtorExpr );
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91 | void postvisit( StmtExpr * stmtExpr );
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92 | void previsit( UniqueExpr * unqExpr );
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93 | void postvisit( UniqueExpr * unqExpr );
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94 |
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95 | /// create and resolve ctor/dtor expression: fname(var, [cpArg])
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96 | Expression * makeCtorDtor( const std::string & fname, ObjectDecl * var, Expression * cpArg = NULL );
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97 | /// true if type does not need to be copy constructed to ensure correctness
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98 | bool skipCopyConstruct( Type * type );
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99 | void copyConstructArg( Expression *& arg, ImplicitCopyCtorExpr * impCpCtorExpr, Type * formal );
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100 | void destructRet( ObjectDecl * ret, ImplicitCopyCtorExpr * impCpCtorExpr );
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101 |
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102 | UnqCount & unqCount; // count the number of times each unique expr ID appears
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103 | std::unordered_set< int > vars;
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104 | };
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105 |
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106 | /// collects constructed object decls - used as a base class
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107 | struct ObjDeclCollector : public WithGuards, public WithShortCircuiting {
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108 | // use ordered data structure to maintain ordering for set_difference and for consistent error messages
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109 | typedef std::list< ObjectDecl * > ObjectSet;
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110 | void previsit( CompoundStmt *compoundStmt );
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111 | void previsit( DeclStmt *stmt );
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112 |
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113 | // don't go into other functions
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114 | void previsit( FunctionDecl * ) { visit_children = false; }
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115 |
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116 | protected:
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117 | ObjectSet curVars;
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118 | };
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119 |
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120 | // debug
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121 | template<typename ObjectSet>
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122 | struct PrintSet {
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123 | PrintSet( const ObjectSet & objs ) : objs( objs ) {}
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124 | const ObjectSet & objs;
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125 | };
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126 | template<typename ObjectSet>
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127 | PrintSet<ObjectSet> printSet( const ObjectSet & objs ) { return PrintSet<ObjectSet>( objs ); }
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128 | template<typename ObjectSet>
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129 | std::ostream & operator<<( std::ostream & out, const PrintSet<ObjectSet> & set) {
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130 | out << "{ ";
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131 | for ( ObjectDecl * obj : set.objs ) {
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132 | out << obj->get_name() << ", " ;
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133 | } // for
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134 | out << " }";
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135 | return out;
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136 | }
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137 |
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138 | struct LabelFinder final : public ObjDeclCollector {
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139 | typedef std::map< Label, ObjectSet > LabelMap;
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140 | // map of Label -> live variables at that label
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141 | LabelMap vars;
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142 |
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143 | typedef ObjDeclCollector Parent;
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144 | using Parent::previsit;
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145 | void previsit( Statement * stmt );
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146 |
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147 | void previsit( CompoundStmt *compoundStmt );
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148 | void previsit( DeclStmt *stmt );
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149 | };
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150 |
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151 | struct InsertDtors final : public ObjDeclCollector, public WithStmtsToAdd {
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152 | /// insert destructor calls at the appropriate places. must happen before CtorInit nodes are removed
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153 | /// (currently by FixInit)
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154 | static void insert( std::list< Declaration * > & translationUnit );
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155 |
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156 | typedef std::list< ObjectDecl * > OrderedDecls;
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157 | typedef std::list< OrderedDecls > OrderedDeclsStack;
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158 |
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159 | InsertDtors( PassVisitor<LabelFinder> & finder ) : finder( finder ), labelVars( finder.pass.vars ) {}
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160 |
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161 | typedef ObjDeclCollector Parent;
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162 | using Parent::previsit;
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163 |
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164 | void previsit( ObjectDecl * objDecl );
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165 | void previsit( FunctionDecl * funcDecl );
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166 |
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167 | void previsit( CompoundStmt * compoundStmt );
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168 | void postvisit( CompoundStmt * compoundStmt );
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169 | void previsit( ReturnStmt * returnStmt );
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170 | void previsit( BranchStmt * stmt );
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171 | private:
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172 | void handleGoto( BranchStmt * stmt );
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173 |
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174 | PassVisitor<LabelFinder> & finder;
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175 | LabelFinder::LabelMap & labelVars;
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176 | OrderedDeclsStack reverseDeclOrder;
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177 | };
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178 |
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179 | class FixInit : public WithStmtsToAdd {
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180 | public:
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181 | /// expand each object declaration to use its constructor after it is declared.
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182 | static void fixInitializers( std::list< Declaration * > &translationUnit );
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183 |
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184 | DeclarationWithType * postmutate( ObjectDecl *objDecl );
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185 |
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186 | std::list< Declaration * > staticDtorDecls;
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187 | };
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188 |
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189 | class FixCopyCtors final : public WithStmtsToAdd, public WithShortCircuiting, public WithVisitorRef<FixCopyCtors>, public WithConstTypeSubstitution {
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190 | public:
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191 | FixCopyCtors( UnqCount & unqCount ) : unqCount( unqCount ){}
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192 | /// expand ImplicitCopyCtorExpr nodes into the temporary declarations, copy constructors, call expression,
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193 | /// and destructors
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194 | static void fixCopyCtors( std::list< Declaration * > &translationUnit, UnqCount & unqCount );
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195 |
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196 | Expression * postmutate( ImplicitCopyCtorExpr * impCpCtorExpr );
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197 | void premutate( StmtExpr * stmtExpr );
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198 | void premutate( UniqueExpr * unqExpr );
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199 |
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200 | UnqCount & unqCount;
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201 | };
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202 |
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203 | struct GenStructMemberCalls final : public WithGuards, public WithShortCircuiting, public WithIndexer, public WithVisitorRef<GenStructMemberCalls> {
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204 | /// generate default/copy ctor and dtor calls for user-defined struct ctor/dtors
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205 | /// for any member that is missing a corresponding ctor/dtor call.
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206 | /// error if a member is used before constructed
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207 | static void generate( std::list< Declaration * > & translationUnit );
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208 |
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209 | void premutate( FunctionDecl * funcDecl );
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210 | DeclarationWithType * postmutate( FunctionDecl * funcDecl );
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211 |
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212 | void premutate( MemberExpr * memberExpr );
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213 | void premutate( ApplicationExpr * appExpr );
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214 |
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215 | /// Note: this post mutate used to be in a separate visitor. If this pass breaks, one place to examine is whether it is
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216 | /// okay for this part of the recursion to occur alongside the rest.
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217 | Expression * postmutate( UntypedExpr * expr );
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218 |
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219 | SemanticErrorException errors;
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220 | private:
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221 | template< typename... Params >
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222 | void emit( CodeLocation, const Params &... params );
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223 |
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224 | FunctionDecl * function = nullptr;
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225 | std::set< DeclarationWithType * > unhandled;
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226 | std::map< DeclarationWithType *, CodeLocation > usedUninit;
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227 | ObjectDecl * thisParam = nullptr;
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228 | bool isCtor = false; // true if current function is a constructor
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229 | StructDecl * structDecl = nullptr;
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230 | };
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231 |
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232 | struct FixCtorExprs final : public WithDeclsToAdd, public WithIndexer {
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233 | /// expands ConstructorExpr nodes into comma expressions, using a temporary for the first argument
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234 | static void fix( std::list< Declaration * > & translationUnit );
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235 |
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236 | Expression * postmutate( ConstructorExpr * ctorExpr );
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237 | };
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238 | } // namespace
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239 |
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240 | void fix( std::list< Declaration * > & translationUnit, bool inLibrary ) {
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241 | PassVisitor<SelfAssignChecker> checker;
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242 | acceptAll( translationUnit, checker );
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243 |
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244 | // fixes ConstructorInit for global variables. should happen before fixInitializers.
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245 | InitTweak::fixGlobalInit( translationUnit, inLibrary );
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246 |
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247 | UnqCount unqCount;
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248 |
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249 | InsertImplicitCalls::insert( translationUnit );
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250 | ResolveCopyCtors::resolveImplicitCalls( translationUnit, unqCount );
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251 | InsertDtors::insert( translationUnit );
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252 | FixInit::fixInitializers( translationUnit );
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253 |
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254 | // FixCopyCtors must happen after FixInit, so that destructors are placed correctly
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255 | FixCopyCtors::fixCopyCtors( translationUnit, unqCount );
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256 |
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257 | GenStructMemberCalls::generate( translationUnit );
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258 |
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259 | // xxx - ctor expansion currently has to be after FixCopyCtors, because there is currently a
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260 | // hack in the way untyped assignments are generated, where the first argument cannot have
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261 | // its address taken because of the way codegeneration handles UntypedExpr vs. ApplicationExpr.
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262 | // Thus such assignment exprs must never pushed through expression resolution (and thus should
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263 | // not go through the FixCopyCtors pass), otherwise they will fail -- guaranteed.
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264 | // Also needs to happen after GenStructMemberCalls, since otherwise member constructors exprs
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265 | // don't look right, and a member can be constructed more than once.
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266 | FixCtorExprs::fix( translationUnit );
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267 | }
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268 |
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269 | namespace {
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270 | void InsertImplicitCalls::insert( std::list< Declaration * > & translationUnit ) {
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271 | PassVisitor<InsertImplicitCalls> inserter;
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272 | mutateAll( translationUnit, inserter );
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273 | }
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274 |
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275 | void ResolveCopyCtors::resolveImplicitCalls( std::list< Declaration * > & translationUnit, UnqCount & unqCount ) {
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276 | PassVisitor<ResolveCopyCtors> resolver( unqCount );
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277 | acceptAll( translationUnit, resolver );
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278 | }
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279 |
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280 | void FixInit::fixInitializers( std::list< Declaration * > & translationUnit ) {
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281 | PassVisitor<FixInit> fixer;
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282 |
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283 | // can't use mutateAll, because need to insert declarations at top-level
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284 | // can't use DeclMutator, because sometimes need to insert IfStmt, etc.
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285 | SemanticErrorException errors;
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286 | for ( std::list< Declaration * >::iterator i = translationUnit.begin(); i != translationUnit.end(); ++i ) {
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287 | try {
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288 | maybeMutate( *i, fixer );
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289 | translationUnit.splice( i, fixer.pass.staticDtorDecls );
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290 | } catch( SemanticErrorException &e ) {
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291 | errors.append( e );
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292 | } // try
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293 | } // for
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294 | if ( ! errors.isEmpty() ) {
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295 | throw errors;
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296 | } // if
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297 | }
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298 |
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299 | void InsertDtors::insert( std::list< Declaration * > & translationUnit ) {
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300 | PassVisitor<LabelFinder> finder;
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301 | PassVisitor<InsertDtors> inserter( finder );
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302 | acceptAll( translationUnit, inserter );
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303 | }
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304 |
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305 | void FixCopyCtors::fixCopyCtors( std::list< Declaration * > & translationUnit, UnqCount & unqCount ) {
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306 | PassVisitor<FixCopyCtors> fixer( unqCount );
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307 | mutateAll( translationUnit, fixer );
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308 | }
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309 |
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310 | void GenStructMemberCalls::generate( std::list< Declaration * > & translationUnit ) {
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311 | PassVisitor<GenStructMemberCalls> warner;
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312 | mutateAll( translationUnit, warner );
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313 | }
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314 |
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315 | void FixCtorExprs::fix( std::list< Declaration * > & translationUnit ) {
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316 | PassVisitor<FixCtorExprs> fixer;
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317 | mutateAll( translationUnit, fixer );
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318 | }
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319 |
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320 | namespace {
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321 | // Relatively simple structural comparison for expressions, needed to determine
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322 | // if two expressions are "the same" (used to determine if self assignment occurs)
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323 | struct StructuralChecker {
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324 | Expression * stripCasts( Expression * expr ) {
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325 | // this might be too permissive. It's possible that only particular casts are relevant.
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326 | while ( CastExpr * cast = dynamic_cast< CastExpr * >( expr ) ) {
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327 | expr = cast->arg;
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328 | }
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329 | return expr;
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330 | }
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331 |
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332 | void previsit( Expression * ) {
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333 | // anything else does not qualify
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334 | isSimilar = false;
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335 | }
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336 |
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337 | template<typename T>
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338 | T * cast( Expression * node ) {
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339 | // all expressions need to ignore casts, so this bit has been factored out
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340 | return dynamic_cast< T * >( stripCasts( node ) );
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341 | }
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342 |
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343 | // ignore casts
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344 | void previsit( CastExpr * ) {}
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345 |
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346 | void previsit( MemberExpr * memExpr ) {
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347 | if ( MemberExpr * otherMember = cast< MemberExpr >( other ) ) {
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348 | if ( otherMember->member == memExpr->member ) {
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349 | other = otherMember->aggregate;
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350 | return;
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351 | }
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352 | }
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353 | isSimilar = false;
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354 | }
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355 |
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356 | void previsit( VariableExpr * varExpr ) {
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357 | if ( VariableExpr * otherVar = cast< VariableExpr >( other ) ) {
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358 | if ( otherVar->var == varExpr->var ) {
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359 | return;
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360 | }
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361 | }
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362 | isSimilar = false;
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363 | }
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364 |
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365 | void previsit( AddressExpr * ) {
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366 | if ( AddressExpr * addrExpr = cast< AddressExpr >( other ) ) {
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367 | other = addrExpr->arg;
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368 | return;
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369 | }
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370 | isSimilar = false;
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371 | }
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372 |
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373 | Expression * other = nullptr;
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374 | bool isSimilar = true;
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375 | };
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376 |
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377 | bool structurallySimilar( Expression * e1, Expression * e2 ) {
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378 | PassVisitor<StructuralChecker> checker;
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379 | checker.pass.other = e2;
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380 | e1->accept( checker );
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381 | return checker.pass.isSimilar;
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382 | }
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383 | }
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384 |
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385 | void SelfAssignChecker::previsit( ApplicationExpr * appExpr ) {
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386 | DeclarationWithType * function = getFunction( appExpr );
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387 | if ( function->name == "?=?" ) { // doesn't use isAssignment, because ?+=?, etc. should not count as self-assignment
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388 | if ( appExpr->args.size() == 2 ) {
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389 | // check for structural similarity (same variable use, ignore casts, etc. - but does not look too deeply, anything looking like a function is off limits)
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390 | if ( structurallySimilar( appExpr->args.front(), appExpr->args.back() ) ) {
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391 | SemanticWarning( appExpr->location, Warning::SelfAssignment, toCString( appExpr->args.front() ) );
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392 | }
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393 | }
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394 | }
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395 | }
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396 |
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397 | Expression * InsertImplicitCalls::postmutate( ApplicationExpr * appExpr ) {
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398 | if ( VariableExpr * function = dynamic_cast< VariableExpr * > ( appExpr->get_function() ) ) {
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399 | if ( function->var->linkage.is_builtin ) {
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400 | // optimization: don't need to copy construct in order to call intrinsic functions
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401 | return appExpr;
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402 | } else if ( DeclarationWithType * funcDecl = dynamic_cast< DeclarationWithType * > ( function->get_var() ) ) {
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403 | FunctionType * ftype = dynamic_cast< FunctionType * >( GenPoly::getFunctionType( funcDecl->get_type() ) );
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404 | assertf( ftype, "Function call without function type: %s", toString( funcDecl ).c_str() );
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405 | if ( CodeGen::isConstructor( funcDecl->get_name() ) && ftype->parameters.size() == 2 ) {
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406 | Type * t1 = getPointerBase( ftype->parameters.front()->get_type() );
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407 | Type * t2 = ftype->parameters.back()->get_type();
|
---|
408 | assert( t1 );
|
---|
409 |
|
---|
410 | if ( ResolvExpr::typesCompatible( t1, t2, SymTab::Indexer() ) ) {
|
---|
411 | // optimization: don't need to copy construct in order to call a copy constructor
|
---|
412 | return appExpr;
|
---|
413 | } // if
|
---|
414 | } else if ( CodeGen::isDestructor( funcDecl->get_name() ) ) {
|
---|
415 | // correctness: never copy construct arguments to a destructor
|
---|
416 | return appExpr;
|
---|
417 | } // if
|
---|
418 | } // if
|
---|
419 | } // if
|
---|
420 | CP_CTOR_PRINT( std::cerr << "InsertImplicitCalls: adding a wrapper " << appExpr << std::endl; )
|
---|
421 |
|
---|
422 | // wrap each function call so that it is easy to identify nodes that have to be copy constructed
|
---|
423 | ImplicitCopyCtorExpr * expr = new ImplicitCopyCtorExpr( appExpr );
|
---|
424 | // Move the type substitution to the new top-level, if it is attached to the appExpr.
|
---|
425 | // Ensure it is not deleted with the ImplicitCopyCtorExpr by removing it before deletion.
|
---|
426 | // The substitution is needed to obtain the type of temporary variables so that copy constructor
|
---|
427 | // calls can be resolved.
|
---|
428 | assert( env );
|
---|
429 | std::swap( expr->env, appExpr->env );
|
---|
430 | return expr;
|
---|
431 | }
|
---|
432 |
|
---|
433 | bool ResolveCopyCtors::skipCopyConstruct( Type * type ) { return ! isConstructable( type ); }
|
---|
434 |
|
---|
435 | Expression * ResolveCopyCtors::makeCtorDtor( const std::string & fname, ObjectDecl * var, Expression * cpArg ) {
|
---|
436 | assert( var );
|
---|
437 | // arrays are not copy constructed, so this should always be an ExprStmt
|
---|
438 | ImplicitCtorDtorStmt * stmt = genCtorDtor( fname, var, cpArg );
|
---|
439 | assertf( stmt, "ResolveCopyCtors: genCtorDtor returned nullptr: %s / %s / %s", fname.c_str(), toString( var ).c_str(), toString( cpArg ).c_str() );
|
---|
440 | ExprStmt * exprStmt = strict_dynamic_cast< ExprStmt * >( stmt->callStmt );
|
---|
441 | Expression * resolved = exprStmt->expr;
|
---|
442 | exprStmt->expr = nullptr; // take ownership of expr
|
---|
443 |
|
---|
444 | // resolve copy constructor
|
---|
445 | // should only be one alternative for copy ctor and dtor expressions, since all arguments are fixed
|
---|
446 | // (VariableExpr and already resolved expression)
|
---|
447 | CP_CTOR_PRINT( std::cerr << "ResolvingCtorDtor " << resolved << std::endl; )
|
---|
448 | ResolvExpr::findVoidExpression( resolved, indexer );
|
---|
449 | assert( resolved );
|
---|
450 | if ( resolved->env ) {
|
---|
451 | // Extract useful information and discard new environments. Keeping them causes problems in PolyMutator passes.
|
---|
452 | env->add( *resolved->env );
|
---|
453 | delete resolved->env;
|
---|
454 | resolved->env = nullptr;
|
---|
455 | } // if
|
---|
456 | delete stmt;
|
---|
457 | if ( TupleAssignExpr * assign = dynamic_cast< TupleAssignExpr * >( resolved ) ) {
|
---|
458 | // fix newly generated StmtExpr
|
---|
459 | postvisit( assign->stmtExpr );
|
---|
460 | }
|
---|
461 | return resolved;
|
---|
462 | }
|
---|
463 |
|
---|
464 | void ResolveCopyCtors::copyConstructArg( Expression *& arg, ImplicitCopyCtorExpr * impCpCtorExpr, Type * formal ) {
|
---|
465 | static UniqueName tempNamer("_tmp_cp");
|
---|
466 | assert( env );
|
---|
467 | CP_CTOR_PRINT( std::cerr << "Type Substitution: " << *env << std::endl; )
|
---|
468 | assert( arg->result );
|
---|
469 | Type * result = arg->result;
|
---|
470 | if ( skipCopyConstruct( result ) ) return; // skip certain non-copyable types
|
---|
471 |
|
---|
472 | // type may involve type variables, so apply type substitution to get temporary variable's actual type,
|
---|
473 | // since result type may not be substituted (e.g., if the type does not appear in the parameter list)
|
---|
474 | // Use applyFree so that types bound in function pointers are not substituted, e.g. in forall(dtype T) void (*)(T).
|
---|
475 | env->applyFree( result );
|
---|
476 | ObjectDecl * tmp = ObjectDecl::newObject( "__tmp", result, nullptr );
|
---|
477 | tmp->get_type()->set_const( false );
|
---|
478 |
|
---|
479 | // create and resolve copy constructor
|
---|
480 | CP_CTOR_PRINT( std::cerr << "makeCtorDtor for an argument" << std::endl; )
|
---|
481 | Expression * cpCtor = makeCtorDtor( "?{}", tmp, arg );
|
---|
482 |
|
---|
483 | if ( ApplicationExpr * appExpr = dynamic_cast< ApplicationExpr * >( cpCtor ) ) {
|
---|
484 | // if the chosen constructor is intrinsic, the copy is unnecessary, so
|
---|
485 | // don't create the temporary and don't call the copy constructor
|
---|
486 | VariableExpr * function = strict_dynamic_cast< VariableExpr * >( appExpr->function );
|
---|
487 | if ( function->var->linkage == LinkageSpec::Intrinsic ) {
|
---|
488 | // arguments that need to be boxed need a temporary regardless of whether the copy constructor is intrinsic,
|
---|
489 | // so that the object isn't changed inside of the polymorphic function
|
---|
490 | if ( ! GenPoly::needsBoxing( formal, result, impCpCtorExpr->callExpr, env ) ) return;
|
---|
491 | }
|
---|
492 | }
|
---|
493 |
|
---|
494 | // set a unique name for the temporary once it's certain the call is necessary
|
---|
495 | tmp->name = tempNamer.newName();
|
---|
496 |
|
---|
497 | // replace argument to function call with temporary
|
---|
498 | arg = new CommaExpr( cpCtor, new VariableExpr( tmp ) );
|
---|
499 | impCpCtorExpr->tempDecls.push_back( tmp );
|
---|
500 | impCpCtorExpr->dtors.push_front( makeCtorDtor( "^?{}", tmp ) );
|
---|
501 | }
|
---|
502 |
|
---|
503 | void ResolveCopyCtors::destructRet( ObjectDecl * ret, ImplicitCopyCtorExpr * impCpCtorExpr ) {
|
---|
504 | impCpCtorExpr->get_dtors().push_front( makeCtorDtor( "^?{}", ret ) );
|
---|
505 | }
|
---|
506 |
|
---|
507 | void ResolveCopyCtors::postvisit( ImplicitCopyCtorExpr *impCpCtorExpr ) {
|
---|
508 | CP_CTOR_PRINT( std::cerr << "ResolveCopyCtors: " << impCpCtorExpr << std::endl; )
|
---|
509 |
|
---|
510 | ApplicationExpr * appExpr = impCpCtorExpr->callExpr;
|
---|
511 |
|
---|
512 | // take each argument and attempt to copy construct it.
|
---|
513 | FunctionType * ftype = GenPoly::getFunctionType( appExpr->function->result );
|
---|
514 | assert( ftype );
|
---|
515 | auto & params = ftype->parameters;
|
---|
516 | auto iter = params.begin();
|
---|
517 | for ( Expression * & arg : appExpr->args ) {
|
---|
518 | Type * formal = nullptr;
|
---|
519 | if ( iter != params.end() ) {
|
---|
520 | DeclarationWithType * param = *iter++;
|
---|
521 | formal = param->get_type();
|
---|
522 | }
|
---|
523 |
|
---|
524 | copyConstructArg( arg, impCpCtorExpr, formal );
|
---|
525 | } // for
|
---|
526 |
|
---|
527 | // each return value from the call needs to be connected with an ObjectDecl at the call site, which is
|
---|
528 | // initialized with the return value and is destructed later
|
---|
529 | // xxx - handle named return values?
|
---|
530 | Type * result = appExpr->result;
|
---|
531 | if ( ! result->isVoid() ) {
|
---|
532 | static UniqueName retNamer("_tmp_cp_ret");
|
---|
533 | result = result->clone();
|
---|
534 | env->apply( result );
|
---|
535 | ObjectDecl * ret = ObjectDecl::newObject( retNamer.newName(), result, nullptr );
|
---|
536 | ret->type->set_const( false );
|
---|
537 | impCpCtorExpr->returnDecls.push_back( ret );
|
---|
538 | CP_CTOR_PRINT( std::cerr << "makeCtorDtor for a return" << std::endl; )
|
---|
539 | if ( ! dynamic_cast< ReferenceType * >( result ) ) {
|
---|
540 | // destructing reference returns is bad because it can cause multiple destructor calls to the same object - the returned object is not a temporary
|
---|
541 | destructRet( ret, impCpCtorExpr );
|
---|
542 | }
|
---|
543 | } // for
|
---|
544 | CP_CTOR_PRINT( std::cerr << "after Resolving: " << impCpCtorExpr << std::endl; )
|
---|
545 | }
|
---|
546 |
|
---|
547 | void ResolveCopyCtors::postvisit( StmtExpr * stmtExpr ) {
|
---|
548 | assert( env );
|
---|
549 | assert( stmtExpr->get_result() );
|
---|
550 | Type * result = stmtExpr->get_result();
|
---|
551 | if ( ! result->isVoid() ) {
|
---|
552 | static UniqueName retNamer("_tmp_stmtexpr_ret");
|
---|
553 |
|
---|
554 | result = result->clone();
|
---|
555 | env->apply( result );
|
---|
556 | if ( ! InitTweak::isConstructable( result ) ) {
|
---|
557 | delete result;
|
---|
558 | return;
|
---|
559 | }
|
---|
560 |
|
---|
561 | // create variable that will hold the result of the stmt expr
|
---|
562 | ObjectDecl * ret = ObjectDecl::newObject( retNamer.newName(), result, nullptr );
|
---|
563 | ret->type->set_const( false );
|
---|
564 | stmtExpr->returnDecls.push_front( ret );
|
---|
565 |
|
---|
566 | // must have a non-empty body, otherwise it wouldn't have a result
|
---|
567 | CompoundStmt * body = stmtExpr->statements;
|
---|
568 | assert( ! body->get_kids().empty() );
|
---|
569 | // must be an ExprStmt, otherwise it wouldn't have a result
|
---|
570 | ExprStmt * last = strict_dynamic_cast< ExprStmt * >( body->get_kids().back() );
|
---|
571 | last->expr = makeCtorDtor( "?{}", ret, last->get_expr() );
|
---|
572 |
|
---|
573 | stmtExpr->dtors.push_front( makeCtorDtor( "^?{}", ret ) );
|
---|
574 | } // if
|
---|
575 | }
|
---|
576 |
|
---|
577 | void ResolveCopyCtors::previsit( UniqueExpr * unqExpr ) {
|
---|
578 | unqCount[ unqExpr->get_id() ]++; // count the number of unique expressions for each ID
|
---|
579 | if ( vars.count( unqExpr->get_id() ) ) {
|
---|
580 | // xxx - hack to prevent double-handling of unique exprs, otherwise too many temporary variables and destructors are generated
|
---|
581 | visit_children = false;
|
---|
582 | }
|
---|
583 | }
|
---|
584 |
|
---|
585 | // to prevent warnings (‘_unq0’ may be used uninitialized in this function),
|
---|
586 | // insert an appropriate zero initializer for UniqueExpr temporaries.
|
---|
587 | Initializer * makeInit( Type * t ) {
|
---|
588 | if ( StructInstType * inst = dynamic_cast< StructInstType * >( t ) ) {
|
---|
589 | // initizer for empty struct must be empty
|
---|
590 | if ( inst->baseStruct->members.empty() ) return new ListInit({});
|
---|
591 | } else if ( UnionInstType * inst = dynamic_cast< UnionInstType * >( t ) ) {
|
---|
592 | // initizer for empty union must be empty
|
---|
593 | if ( inst->baseUnion->members.empty() ) return new ListInit({});
|
---|
594 | }
|
---|
595 |
|
---|
596 | return new ListInit( { new SingleInit( new ConstantExpr( Constant::from_int( 0 ) ) ) } );
|
---|
597 | }
|
---|
598 |
|
---|
599 | void ResolveCopyCtors::postvisit( UniqueExpr * unqExpr ) {
|
---|
600 | if ( vars.count( unqExpr->get_id() ) ) {
|
---|
601 | // xxx - hack to prevent double-handling of unique exprs, otherwise too many temporary variables and destructors are generated
|
---|
602 | return;
|
---|
603 | }
|
---|
604 |
|
---|
605 | // it should never be necessary to wrap a void-returning expression in a UniqueExpr - if this assumption changes, this needs to be rethought
|
---|
606 | assert( unqExpr->get_result() );
|
---|
607 | if ( ImplicitCopyCtorExpr * impCpCtorExpr = dynamic_cast<ImplicitCopyCtorExpr*>( unqExpr->get_expr() ) ) {
|
---|
608 | // note the variable used as the result from the call
|
---|
609 | assert( impCpCtorExpr->get_result() && impCpCtorExpr->get_returnDecls().size() == 1 );
|
---|
610 | unqExpr->set_var( new VariableExpr( impCpCtorExpr->get_returnDecls().front() ) );
|
---|
611 | } else {
|
---|
612 | // expr isn't a call expr, so create a new temporary variable to use to hold the value of the unique expression
|
---|
613 | unqExpr->set_object( ObjectDecl::newObject( toString("_unq", unqExpr->get_id()), unqExpr->get_result()->clone(), makeInit( unqExpr->get_result() ) ) );
|
---|
614 | unqExpr->set_var( new VariableExpr( unqExpr->get_object() ) );
|
---|
615 | }
|
---|
616 | vars.insert( unqExpr->get_id() );
|
---|
617 | }
|
---|
618 |
|
---|
619 | Expression * FixCopyCtors::postmutate( ImplicitCopyCtorExpr * impCpCtorExpr ) {
|
---|
620 | CP_CTOR_PRINT( std::cerr << "FixCopyCtors: " << impCpCtorExpr << std::endl; )
|
---|
621 |
|
---|
622 | std::list< ObjectDecl * > & tempDecls = impCpCtorExpr->get_tempDecls();
|
---|
623 | std::list< ObjectDecl * > & returnDecls = impCpCtorExpr->get_returnDecls();
|
---|
624 | std::list< Expression * > & dtors = impCpCtorExpr->get_dtors();
|
---|
625 |
|
---|
626 | // add all temporary declarations and their constructors
|
---|
627 | for ( ObjectDecl * obj : tempDecls ) {
|
---|
628 | stmtsToAddBefore.push_back( new DeclStmt( obj ) );
|
---|
629 | } // for
|
---|
630 | for ( ObjectDecl * obj : returnDecls ) {
|
---|
631 | stmtsToAddBefore.push_back( new DeclStmt( obj ) );
|
---|
632 | } // for
|
---|
633 |
|
---|
634 | // add destructors after current statement
|
---|
635 | for ( Expression * dtor : dtors ) {
|
---|
636 | // take relevant bindings from environment
|
---|
637 | assert( ! dtor->env );
|
---|
638 | dtor->env = maybeClone( env );
|
---|
639 | stmtsToAddAfter.push_back( new ExprStmt( dtor ) );
|
---|
640 | } // for
|
---|
641 |
|
---|
642 | ObjectDecl * returnDecl = returnDecls.empty() ? nullptr : returnDecls.front();
|
---|
643 | Expression * callExpr = impCpCtorExpr->get_callExpr();
|
---|
644 |
|
---|
645 | CP_CTOR_PRINT( std::cerr << "Coming out the back..." << impCpCtorExpr << std::endl; )
|
---|
646 |
|
---|
647 | // detach fields from wrapper node so that it can be deleted without deleting too much
|
---|
648 | dtors.clear();
|
---|
649 | tempDecls.clear();
|
---|
650 | returnDecls.clear();
|
---|
651 | impCpCtorExpr->set_callExpr( nullptr );
|
---|
652 | std::swap( impCpCtorExpr->env, callExpr->env );
|
---|
653 | assert( impCpCtorExpr->env == nullptr );
|
---|
654 | delete impCpCtorExpr;
|
---|
655 |
|
---|
656 | if ( returnDecl ) {
|
---|
657 | ApplicationExpr * assign = createBitwiseAssignment( new VariableExpr( returnDecl ), callExpr );
|
---|
658 | Expression * retExpr = new CommaExpr( assign, new VariableExpr( returnDecl ) );
|
---|
659 | // move env from callExpr to retExpr
|
---|
660 | std::swap( retExpr->env, callExpr->env );
|
---|
661 | return retExpr;
|
---|
662 | } else {
|
---|
663 | return callExpr;
|
---|
664 | } // if
|
---|
665 | }
|
---|
666 |
|
---|
667 | void FixCopyCtors::premutate( StmtExpr * stmtExpr ) {
|
---|
668 | // function call temporaries should be placed at statement-level, rather than nested inside of a new statement expression,
|
---|
669 | // since temporaries can be shared across sub-expressions, e.g.
|
---|
670 | // [A, A] f();
|
---|
671 | // g([A] x, [A] y);
|
---|
672 | // g(f());
|
---|
673 | // f is executed once, so the return temporary is shared across the tuple constructors for x and y.
|
---|
674 | // Explicitly mutating children instead of mutating the inner compound statment forces the temporaries to be added
|
---|
675 | // to the outer context, rather than inside of the statement expression.
|
---|
676 | visit_children = false;
|
---|
677 | std::list< Statement * > & stmts = stmtExpr->statements->get_kids();
|
---|
678 | for ( Statement *& stmt : stmts ) {
|
---|
679 | stmt = stmt->acceptMutator( *visitor );
|
---|
680 | } // for
|
---|
681 | assert( stmtExpr->result );
|
---|
682 | Type * result = stmtExpr->result;
|
---|
683 | if ( ! result->isVoid() ) {
|
---|
684 | for ( ObjectDecl * obj : stmtExpr->returnDecls ) {
|
---|
685 | stmtsToAddBefore.push_back( new DeclStmt( obj ) );
|
---|
686 | } // for
|
---|
687 | // add destructors after current statement
|
---|
688 | for ( Expression * dtor : stmtExpr->dtors ) {
|
---|
689 | stmtsToAddAfter.push_back( new ExprStmt( dtor ) );
|
---|
690 | } // for
|
---|
691 | // must have a non-empty body, otherwise it wouldn't have a result
|
---|
692 | assert( ! stmts.empty() );
|
---|
693 | assertf( ! stmtExpr->returnDecls.empty() || stmtExpr->dtors.empty(), "StmtExpr returns non-void, but no return decls: %s", toString( stmtExpr ).c_str() );
|
---|
694 | // if there is a return decl, add a use as the last statement; will not have return decl on non-constructable returns
|
---|
695 | if ( ! stmtExpr->returnDecls.empty() ) {
|
---|
696 | stmts.push_back( new ExprStmt( new VariableExpr( stmtExpr->returnDecls.front() ) ) );
|
---|
697 | }
|
---|
698 | stmtExpr->returnDecls.clear();
|
---|
699 | stmtExpr->dtors.clear();
|
---|
700 | }
|
---|
701 | assert( stmtExpr->returnDecls.empty() );
|
---|
702 | assert( stmtExpr->dtors.empty() );
|
---|
703 | }
|
---|
704 |
|
---|
705 | void FixCopyCtors::premutate( UniqueExpr * unqExpr ) {
|
---|
706 | visit_children = false;
|
---|
707 | unqCount[ unqExpr->get_id() ]--;
|
---|
708 | static std::unordered_map< int, std::list< Statement * > > dtors;
|
---|
709 | static std::unordered_map< int, UniqueExpr * > unqMap;
|
---|
710 | // has to be done to clean up ImplicitCopyCtorExpr nodes, even when this node was skipped in previous passes
|
---|
711 | if ( unqMap.count( unqExpr->get_id() ) ) {
|
---|
712 | // take data from other UniqueExpr to ensure consistency
|
---|
713 | delete unqExpr->get_expr();
|
---|
714 | unqExpr->set_expr( unqMap[unqExpr->get_id()]->get_expr()->clone() );
|
---|
715 | delete unqExpr->get_result();
|
---|
716 | unqExpr->set_result( maybeClone( unqExpr->get_expr()->get_result() ) );
|
---|
717 | if ( unqCount[ unqExpr->get_id() ] == 0 ) { // insert destructor after the last use of the unique expression
|
---|
718 | stmtsToAddAfter.splice( stmtsToAddAfter.end(), dtors[ unqExpr->get_id() ] );
|
---|
719 | }
|
---|
720 | return;
|
---|
721 | }
|
---|
722 | PassVisitor<FixCopyCtors> fixer( unqCount );
|
---|
723 | unqExpr->set_expr( unqExpr->get_expr()->acceptMutator( fixer ) ); // stmtexprs contained should not be separately fixed, so this must occur after the lookup
|
---|
724 | stmtsToAddBefore.splice( stmtsToAddBefore.end(), fixer.pass.stmtsToAddBefore );
|
---|
725 | unqMap[unqExpr->get_id()] = unqExpr;
|
---|
726 | if ( unqCount[ unqExpr->get_id() ] == 0 ) { // insert destructor after the last use of the unique expression
|
---|
727 | stmtsToAddAfter.splice( stmtsToAddAfter.end(), dtors[ unqExpr->get_id() ] );
|
---|
728 | } else { // remember dtors for last instance of unique expr
|
---|
729 | dtors[ unqExpr->get_id() ] = fixer.pass.stmtsToAddAfter;
|
---|
730 | }
|
---|
731 | return;
|
---|
732 | }
|
---|
733 |
|
---|
734 | DeclarationWithType * FixInit::postmutate( ObjectDecl *objDecl ) {
|
---|
735 | // since this removes the init field from objDecl, it must occur after children are mutated (i.e. postmutate)
|
---|
736 | if ( ConstructorInit * ctorInit = dynamic_cast< ConstructorInit * >( objDecl->get_init() ) ) {
|
---|
737 | // a decision should have been made by the resolver, so ctor and init are not both non-NULL
|
---|
738 | assert( ! ctorInit->get_ctor() || ! ctorInit->get_init() );
|
---|
739 | if ( Statement * ctor = ctorInit->get_ctor() ) {
|
---|
740 | if ( objDecl->get_storageClasses().is_static ) {
|
---|
741 | // originally wanted to take advantage of gcc nested functions, but
|
---|
742 | // we get memory errors with this approach. To remedy this, the static
|
---|
743 | // variable is hoisted when the destructor needs to be called.
|
---|
744 | //
|
---|
745 | // generate:
|
---|
746 | // static T __objName_static_varN;
|
---|
747 | // void __objName_dtor_atexitN() {
|
---|
748 | // __dtor__...;
|
---|
749 | // }
|
---|
750 | // int f(...) {
|
---|
751 | // ...
|
---|
752 | // static bool __objName_uninitialized = true;
|
---|
753 | // if (__objName_uninitialized) {
|
---|
754 | // __ctor(__objName);
|
---|
755 | // __objName_uninitialized = false;
|
---|
756 | // atexit(__objName_dtor_atexitN);
|
---|
757 | // }
|
---|
758 | // ...
|
---|
759 | // }
|
---|
760 |
|
---|
761 | static UniqueName dtorCallerNamer( "_dtor_atexit" );
|
---|
762 |
|
---|
763 | // static bool __objName_uninitialized = true
|
---|
764 | BasicType * boolType = new BasicType( Type::Qualifiers(), BasicType::Bool );
|
---|
765 | SingleInit * boolInitExpr = new SingleInit( new ConstantExpr( Constant::from_int( 1 ) ) );
|
---|
766 | ObjectDecl * isUninitializedVar = new ObjectDecl( objDecl->get_mangleName() + "_uninitialized", Type::StorageClasses( Type::Static ), LinkageSpec::Cforall, 0, boolType, boolInitExpr );
|
---|
767 | isUninitializedVar->fixUniqueId();
|
---|
768 |
|
---|
769 | // __objName_uninitialized = false;
|
---|
770 | UntypedExpr * setTrue = new UntypedExpr( new NameExpr( "?=?" ) );
|
---|
771 | setTrue->get_args().push_back( new VariableExpr( isUninitializedVar ) );
|
---|
772 | setTrue->get_args().push_back( new ConstantExpr( Constant::from_int( 0 ) ) );
|
---|
773 |
|
---|
774 | // generate body of if
|
---|
775 | CompoundStmt * initStmts = new CompoundStmt();
|
---|
776 | std::list< Statement * > & body = initStmts->get_kids();
|
---|
777 | body.push_back( ctor );
|
---|
778 | body.push_back( new ExprStmt( setTrue ) );
|
---|
779 |
|
---|
780 | // put it all together
|
---|
781 | IfStmt * ifStmt = new IfStmt( new VariableExpr( isUninitializedVar ), initStmts, 0 );
|
---|
782 | stmtsToAddAfter.push_back( new DeclStmt( isUninitializedVar ) );
|
---|
783 | stmtsToAddAfter.push_back( ifStmt );
|
---|
784 |
|
---|
785 | Statement * dtor = ctorInit->get_dtor();
|
---|
786 | objDecl->set_init( nullptr );
|
---|
787 | ctorInit->set_ctor( nullptr );
|
---|
788 | ctorInit->set_dtor( nullptr );
|
---|
789 | if ( dtor ) {
|
---|
790 | // if the object has a non-trivial destructor, have to
|
---|
791 | // hoist it and the object into the global space and
|
---|
792 | // call the destructor function with atexit.
|
---|
793 |
|
---|
794 | Statement * dtorStmt = dtor->clone();
|
---|
795 |
|
---|
796 | // void __objName_dtor_atexitN(...) {...}
|
---|
797 | FunctionDecl * dtorCaller = new FunctionDecl( objDecl->get_mangleName() + dtorCallerNamer.newName(), Type::StorageClasses( Type::Static ), LinkageSpec::C, new FunctionType( Type::Qualifiers(), false ), new CompoundStmt() );
|
---|
798 | dtorCaller->fixUniqueId();
|
---|
799 | dtorCaller->get_statements()->push_back( dtorStmt );
|
---|
800 |
|
---|
801 | // atexit(dtor_atexit);
|
---|
802 | UntypedExpr * callAtexit = new UntypedExpr( new NameExpr( "atexit" ) );
|
---|
803 | callAtexit->get_args().push_back( new VariableExpr( dtorCaller ) );
|
---|
804 |
|
---|
805 | body.push_back( new ExprStmt( callAtexit ) );
|
---|
806 |
|
---|
807 | // hoist variable and dtor caller decls to list of decls that will be added into global scope
|
---|
808 | staticDtorDecls.push_back( objDecl );
|
---|
809 | staticDtorDecls.push_back( dtorCaller );
|
---|
810 |
|
---|
811 | // need to rename object uniquely since it now appears
|
---|
812 | // at global scope and there could be multiple function-scoped
|
---|
813 | // static variables with the same name in different functions.
|
---|
814 | // Note: it isn't sufficient to modify only the mangleName, because
|
---|
815 | // then subsequent Indexer passes can choke on seeing the object's name
|
---|
816 | // if another object has the same name and type. An unfortunate side-effect
|
---|
817 | // of renaming the object is that subsequent NameExprs may fail to resolve,
|
---|
818 | // but there shouldn't be any remaining past this point.
|
---|
819 | static UniqueName staticNamer( "_static_var" );
|
---|
820 | objDecl->set_name( objDecl->get_name() + staticNamer.newName() );
|
---|
821 | objDecl->set_mangleName( SymTab::Mangler::mangle( objDecl ) );
|
---|
822 |
|
---|
823 | // xxx - temporary hack: need to return a declaration, but want to hoist the current object out of this scope
|
---|
824 | // create a new object which is never used
|
---|
825 | static UniqueName dummyNamer( "_dummy" );
|
---|
826 | ObjectDecl * dummy = new ObjectDecl( dummyNamer.newName(), Type::StorageClasses( Type::Static ), LinkageSpec::Cforall, 0, new PointerType( Type::Qualifiers(), new VoidType( Type::Qualifiers() ) ), 0, std::list< Attribute * >{ new Attribute("unused") } );
|
---|
827 | delete ctorInit;
|
---|
828 | return dummy;
|
---|
829 | }
|
---|
830 | } else {
|
---|
831 | ImplicitCtorDtorStmt * implicit = strict_dynamic_cast< ImplicitCtorDtorStmt * > ( ctor );
|
---|
832 | ExprStmt * ctorStmt = dynamic_cast< ExprStmt * >( implicit->callStmt );
|
---|
833 | ApplicationExpr * ctorCall = nullptr;
|
---|
834 | if ( ctorStmt && (ctorCall = isIntrinsicCallExpr( ctorStmt->expr )) && ctorCall->get_args().size() == 2 ) {
|
---|
835 | // clean up intrinsic copy constructor calls by making them into SingleInits
|
---|
836 | Expression * ctorArg = ctorCall->args.back();
|
---|
837 | std::swap( ctorArg->env, ctorCall->env );
|
---|
838 | objDecl->init = new SingleInit( ctorArg );
|
---|
839 |
|
---|
840 | ctorCall->args.pop_back();
|
---|
841 | } else {
|
---|
842 | stmtsToAddAfter.push_back( ctor );
|
---|
843 | objDecl->init = nullptr;
|
---|
844 | ctorInit->ctor = nullptr;
|
---|
845 | }
|
---|
846 | } // if
|
---|
847 | } else if ( Initializer * init = ctorInit->init ) {
|
---|
848 | objDecl->init = init;
|
---|
849 | ctorInit->init = nullptr;
|
---|
850 | } else {
|
---|
851 | // no constructor and no initializer, which is okay
|
---|
852 | objDecl->init = nullptr;
|
---|
853 | } // if
|
---|
854 | delete ctorInit;
|
---|
855 | } // if
|
---|
856 | return objDecl;
|
---|
857 | }
|
---|
858 |
|
---|
859 | void ObjDeclCollector::previsit( CompoundStmt * ) {
|
---|
860 | GuardValue( curVars );
|
---|
861 | }
|
---|
862 |
|
---|
863 | void ObjDeclCollector::previsit( DeclStmt * stmt ) {
|
---|
864 | // keep track of all variables currently in scope
|
---|
865 | if ( ObjectDecl * objDecl = dynamic_cast< ObjectDecl * > ( stmt->get_decl() ) ) {
|
---|
866 | curVars.push_back( objDecl );
|
---|
867 | } // if
|
---|
868 | }
|
---|
869 |
|
---|
870 | void LabelFinder::previsit( Statement * stmt ) {
|
---|
871 | // for each label, remember the variables in scope at that label.
|
---|
872 | for ( Label l : stmt->get_labels() ) {
|
---|
873 | vars[l] = curVars;
|
---|
874 | } // for
|
---|
875 | }
|
---|
876 |
|
---|
877 | void LabelFinder::previsit( CompoundStmt * stmt ) {
|
---|
878 | previsit( (Statement *)stmt );
|
---|
879 | Parent::previsit( stmt );
|
---|
880 | }
|
---|
881 |
|
---|
882 | void LabelFinder::previsit( DeclStmt * stmt ) {
|
---|
883 | previsit( (Statement *)stmt );
|
---|
884 | Parent::previsit( stmt );
|
---|
885 | }
|
---|
886 |
|
---|
887 |
|
---|
888 | template<typename Iterator, typename OutputIterator>
|
---|
889 | void insertDtors( Iterator begin, Iterator end, OutputIterator out ) {
|
---|
890 | for ( Iterator it = begin ; it != end ; ++it ) {
|
---|
891 | // extract destructor statement from the object decl and insert it into the output. Note that this is
|
---|
892 | // only called on lists of non-static objects with implicit non-intrinsic dtors, so if the user manually
|
---|
893 | // calls an intrinsic dtor then the call must (and will) still be generated since the argument may
|
---|
894 | // contain side effects.
|
---|
895 | ObjectDecl * objDecl = *it;
|
---|
896 | ConstructorInit * ctorInit = dynamic_cast< ConstructorInit * >( objDecl->get_init() );
|
---|
897 | assert( ctorInit && ctorInit->get_dtor() );
|
---|
898 | *out++ = ctorInit->get_dtor()->clone();
|
---|
899 | } // for
|
---|
900 | }
|
---|
901 |
|
---|
902 | void InsertDtors::previsit( ObjectDecl * objDecl ) {
|
---|
903 | // remember non-static destructed objects so that their destructors can be inserted later
|
---|
904 | if ( ! objDecl->get_storageClasses().is_static ) {
|
---|
905 | if ( ConstructorInit * ctorInit = dynamic_cast< ConstructorInit * >( objDecl->get_init() ) ) {
|
---|
906 | // a decision should have been made by the resolver, so ctor and init are not both non-NULL
|
---|
907 | assert( ! ctorInit->get_ctor() || ! ctorInit->get_init() );
|
---|
908 | Statement * dtor = ctorInit->get_dtor();
|
---|
909 | // don't need to call intrinsic dtor, because it does nothing, but
|
---|
910 | // non-intrinsic dtors must be called
|
---|
911 | if ( dtor && ! isIntrinsicSingleArgCallStmt( dtor ) ) {
|
---|
912 | // set dtor location to the object's location for error messages
|
---|
913 | ctorInit->dtor->location = objDecl->location;
|
---|
914 | reverseDeclOrder.front().push_front( objDecl );
|
---|
915 | } // if
|
---|
916 | } // if
|
---|
917 | } // if
|
---|
918 | }
|
---|
919 |
|
---|
920 | void InsertDtors::previsit( FunctionDecl * funcDecl ) {
|
---|
921 | // each function needs to have its own set of labels
|
---|
922 | GuardValue( labelVars );
|
---|
923 | labelVars.clear();
|
---|
924 | // LabelFinder does not recurse into FunctionDecl, so need to visit
|
---|
925 | // its children manually.
|
---|
926 | maybeAccept( funcDecl->type, finder );
|
---|
927 | maybeAccept( funcDecl->statements, finder );
|
---|
928 |
|
---|
929 | // all labels for this function have been collected, insert destructors as appropriate via implicit recursion.
|
---|
930 | }
|
---|
931 |
|
---|
932 | void InsertDtors::previsit( CompoundStmt * compoundStmt ) {
|
---|
933 | // visit statements - this will also populate reverseDeclOrder list. don't want to dump all destructors
|
---|
934 | // when block is left, just the destructors associated with variables defined in this block, so push a new
|
---|
935 | // list to the top of the stack so that we can differentiate scopes
|
---|
936 | reverseDeclOrder.push_front( OrderedDecls() );
|
---|
937 | Parent::previsit( compoundStmt );
|
---|
938 | }
|
---|
939 |
|
---|
940 | void InsertDtors::postvisit( CompoundStmt * compoundStmt ) {
|
---|
941 | // add destructors for the current scope that we're exiting, unless the last statement is a return, which
|
---|
942 | // causes unreachable code warnings
|
---|
943 | std::list< Statement * > & statements = compoundStmt->get_kids();
|
---|
944 | if ( ! statements.empty() && ! dynamic_cast< ReturnStmt * >( statements.back() ) ) {
|
---|
945 | insertDtors( reverseDeclOrder.front().begin(), reverseDeclOrder.front().end(), back_inserter( statements ) );
|
---|
946 | }
|
---|
947 | reverseDeclOrder.pop_front();
|
---|
948 | }
|
---|
949 |
|
---|
950 | void InsertDtors::previsit( ReturnStmt * ) {
|
---|
951 | // return exits all scopes, so dump destructors for all scopes
|
---|
952 | for ( OrderedDecls & od : reverseDeclOrder ) {
|
---|
953 | insertDtors( od.begin(), od.end(), back_inserter( stmtsToAddBefore ) );
|
---|
954 | } // for
|
---|
955 | }
|
---|
956 |
|
---|
957 | // Handle break/continue/goto in the same manner as C++. Basic idea: any objects that are in scope at the
|
---|
958 | // BranchStmt but not at the labelled (target) statement must be destructed. If there are any objects in scope
|
---|
959 | // at the target location but not at the BranchStmt then those objects would be uninitialized so notify the user
|
---|
960 | // of the error. See C++ Reference 6.6 Jump Statements for details.
|
---|
961 | void InsertDtors::handleGoto( BranchStmt * stmt ) {
|
---|
962 | // can't do anything for computed goto
|
---|
963 | if ( stmt->computedTarget ) return;
|
---|
964 |
|
---|
965 | assertf( stmt->get_target() != "", "BranchStmt missing a label: %s", toString( stmt ).c_str() );
|
---|
966 | // S_L = lvars = set of objects in scope at label definition
|
---|
967 | // S_G = curVars = set of objects in scope at goto statement
|
---|
968 | ObjectSet & lvars = labelVars[ stmt->get_target() ];
|
---|
969 |
|
---|
970 | DTOR_PRINT(
|
---|
971 | std::cerr << "at goto label: " << stmt->get_target().get_name() << std::endl;
|
---|
972 | std::cerr << "S_G = " << printSet( curVars ) << std::endl;
|
---|
973 | std::cerr << "S_L = " << printSet( lvars ) << std::endl;
|
---|
974 | )
|
---|
975 |
|
---|
976 | ObjectSet diff;
|
---|
977 | // S_L-S_G results in set of objects whose construction is skipped - it's an error if this set is non-empty
|
---|
978 | std::set_difference( lvars.begin(), lvars.end(), curVars.begin(), curVars.end(), std::inserter( diff, diff.begin() ) );
|
---|
979 | DTOR_PRINT(
|
---|
980 | std::cerr << "S_L-S_G = " << printSet( diff ) << std::endl;
|
---|
981 | )
|
---|
982 | if ( ! diff.empty() ) {
|
---|
983 | SemanticError( stmt, std::string("jump to label '") + stmt->get_target().get_name() + "' crosses initialization of " + (*diff.begin())->get_name() + " " );
|
---|
984 | } // if
|
---|
985 | // S_G-S_L results in set of objects that must be destructed
|
---|
986 | diff.clear();
|
---|
987 | std::set_difference( curVars.begin(), curVars.end(), lvars.begin(), lvars.end(), std::inserter( diff, diff.end() ) );
|
---|
988 | DTOR_PRINT(
|
---|
989 | std::cerr << "S_G-S_L = " << printSet( diff ) << std::endl;
|
---|
990 | )
|
---|
991 | if ( ! diff.empty() ) {
|
---|
992 | // create an auxilliary set for fast lookup -- can't make diff a set, because diff ordering should be consistent for error messages.
|
---|
993 | std::unordered_set<ObjectDecl *> needsDestructor( diff.begin(), diff.end() );
|
---|
994 |
|
---|
995 | // go through decl ordered list of objectdecl. for each element that occurs in diff, output destructor
|
---|
996 | OrderedDecls ordered;
|
---|
997 | for ( OrderedDecls & rdo : reverseDeclOrder ) {
|
---|
998 | // add elements from reverseDeclOrder into ordered if they occur in diff - it is key that this happens in reverse declaration order.
|
---|
999 | copy_if( rdo.begin(), rdo.end(), back_inserter( ordered ), [&]( ObjectDecl * objDecl ) { return needsDestructor.count( objDecl ); } );
|
---|
1000 | } // for
|
---|
1001 | insertDtors( ordered.begin(), ordered.end(), back_inserter( stmtsToAddBefore ) );
|
---|
1002 | } // if
|
---|
1003 | }
|
---|
1004 |
|
---|
1005 | void InsertDtors::previsit( BranchStmt * stmt ) {
|
---|
1006 | switch( stmt->get_type() ) {
|
---|
1007 | case BranchStmt::Continue:
|
---|
1008 | case BranchStmt::Break:
|
---|
1009 | // could optimize the break/continue case, because the S_L-S_G check is unnecessary (this set should
|
---|
1010 | // always be empty), but it serves as a small sanity check.
|
---|
1011 | case BranchStmt::Goto:
|
---|
1012 | handleGoto( stmt );
|
---|
1013 | break;
|
---|
1014 | default:
|
---|
1015 | assert( false );
|
---|
1016 | } // switch
|
---|
1017 | }
|
---|
1018 |
|
---|
1019 | bool checkWarnings( FunctionDecl * funcDecl ) {
|
---|
1020 | // only check for warnings if the current function is a user-defined
|
---|
1021 | // constructor or destructor
|
---|
1022 | if ( ! funcDecl ) return false;
|
---|
1023 | if ( ! funcDecl->get_statements() ) return false;
|
---|
1024 | return CodeGen::isCtorDtor( funcDecl->get_name() ) && ! LinkageSpec::isOverridable( funcDecl->get_linkage() );
|
---|
1025 | }
|
---|
1026 |
|
---|
1027 | void GenStructMemberCalls::premutate( FunctionDecl * funcDecl ) {
|
---|
1028 | GuardValue( function );
|
---|
1029 | GuardValue( unhandled );
|
---|
1030 | GuardValue( usedUninit );
|
---|
1031 | GuardValue( thisParam );
|
---|
1032 | GuardValue( isCtor );
|
---|
1033 | GuardValue( structDecl );
|
---|
1034 | errors = SemanticErrorException(); // clear previous errors
|
---|
1035 |
|
---|
1036 | // need to start with fresh sets
|
---|
1037 | unhandled.clear();
|
---|
1038 | usedUninit.clear();
|
---|
1039 |
|
---|
1040 | function = funcDecl;
|
---|
1041 | isCtor = CodeGen::isConstructor( function->get_name() );
|
---|
1042 | if ( checkWarnings( function ) ) {
|
---|
1043 | FunctionType * type = function->get_functionType();
|
---|
1044 | assert( ! type->get_parameters().empty() );
|
---|
1045 | thisParam = strict_dynamic_cast< ObjectDecl * >( type->get_parameters().front() );
|
---|
1046 | Type * thisType = getPointerBase( thisParam->get_type() );
|
---|
1047 | StructInstType * structType = dynamic_cast< StructInstType * >( thisType );
|
---|
1048 | if ( structType ) {
|
---|
1049 | structDecl = structType->get_baseStruct();
|
---|
1050 | for ( Declaration * member : structDecl->get_members() ) {
|
---|
1051 | if ( ObjectDecl * field = dynamic_cast< ObjectDecl * >( member ) ) {
|
---|
1052 | // record all of the struct type's members that need to be constructed or
|
---|
1053 | // destructed by the end of the function
|
---|
1054 | unhandled.insert( field );
|
---|
1055 | }
|
---|
1056 | }
|
---|
1057 | }
|
---|
1058 | }
|
---|
1059 | }
|
---|
1060 |
|
---|
1061 | DeclarationWithType * GenStructMemberCalls::postmutate( FunctionDecl * funcDecl ) {
|
---|
1062 | // remove the unhandled objects from usedUninit, because a call is inserted
|
---|
1063 | // to handle them - only objects that are later constructed are used uninitialized.
|
---|
1064 | std::map< DeclarationWithType *, CodeLocation > diff;
|
---|
1065 | // need the comparator since usedUninit and unhandled have different types
|
---|
1066 | struct comp_t {
|
---|
1067 | typedef decltype(usedUninit)::value_type usedUninit_t;
|
---|
1068 | typedef decltype(unhandled)::value_type unhandled_t;
|
---|
1069 | bool operator()(usedUninit_t x, unhandled_t y) { return x.first < y; }
|
---|
1070 | bool operator()(unhandled_t x, usedUninit_t y) { return x < y.first; }
|
---|
1071 | } comp;
|
---|
1072 | std::set_difference( usedUninit.begin(), usedUninit.end(), unhandled.begin(), unhandled.end(), std::inserter( diff, diff.begin() ), comp );
|
---|
1073 | for ( auto p : diff ) {
|
---|
1074 | DeclarationWithType * member = p.first;
|
---|
1075 | CodeLocation loc = p.second;
|
---|
1076 | // xxx - make error message better by also tracking the location that the object is constructed at?
|
---|
1077 | emit( loc, "in ", CodeGen::genPrettyType( function->get_functionType(), function->get_name() ), ", field ", member->get_name(), " used before being constructed" );
|
---|
1078 | }
|
---|
1079 |
|
---|
1080 | if ( ! unhandled.empty() ) {
|
---|
1081 | // need to explicitly re-add function parameters to the indexer in order to resolve copy constructors
|
---|
1082 | auto guard = makeFuncGuard( [this]() { indexer.enterScope(); }, [this]() { indexer.leaveScope(); } );
|
---|
1083 | indexer.addFunctionType( function->type );
|
---|
1084 |
|
---|
1085 | // need to iterate through members in reverse in order for
|
---|
1086 | // ctor/dtor statements to come out in the right order
|
---|
1087 | for ( Declaration * member : reverseIterate( structDecl->get_members() ) ) {
|
---|
1088 | DeclarationWithType * field = dynamic_cast< DeclarationWithType * >( member );
|
---|
1089 | // skip non-DWT members
|
---|
1090 | if ( ! field ) continue;
|
---|
1091 | // skip non-constructable members
|
---|
1092 | if ( ! tryConstruct( field ) ) continue;
|
---|
1093 | // skip handled members
|
---|
1094 | if ( ! unhandled.count( field ) ) continue;
|
---|
1095 |
|
---|
1096 | // insert and resolve default/copy constructor call for each field that's unhandled
|
---|
1097 | std::list< Statement * > stmt;
|
---|
1098 | Expression * arg2 = nullptr;
|
---|
1099 | if ( isCopyConstructor( function ) ) {
|
---|
1100 | // if copy ctor, need to pass second-param-of-this-function.field
|
---|
1101 | std::list< DeclarationWithType * > & params = function->get_functionType()->get_parameters();
|
---|
1102 | assert( params.size() == 2 );
|
---|
1103 | arg2 = new MemberExpr( field, new VariableExpr( params.back() ) );
|
---|
1104 | }
|
---|
1105 | InitExpander srcParam( arg2 );
|
---|
1106 | // cast away reference type and construct field.
|
---|
1107 | Expression * thisExpr = new CastExpr( new VariableExpr( thisParam ), thisParam->get_type()->stripReferences()->clone() );
|
---|
1108 | Expression * memberDest = new MemberExpr( field, thisExpr );
|
---|
1109 | SymTab::genImplicitCall( srcParam, memberDest, function->get_name(), back_inserter( stmt ), field, isCtor );
|
---|
1110 |
|
---|
1111 | assert( stmt.size() <= 1 );
|
---|
1112 | if ( stmt.size() == 1 ) {
|
---|
1113 | Statement * callStmt = stmt.front();
|
---|
1114 |
|
---|
1115 | try {
|
---|
1116 | callStmt->acceptMutator( *visitor );
|
---|
1117 | if ( isCtor ) {
|
---|
1118 | function->get_statements()->push_front( callStmt );
|
---|
1119 | } else {
|
---|
1120 | // destructor statements should be added at the end
|
---|
1121 | function->get_statements()->push_back( callStmt );
|
---|
1122 | }
|
---|
1123 | } catch ( SemanticErrorException & error ) {
|
---|
1124 | emit( funcDecl->location, "in ", CodeGen::genPrettyType( function->get_functionType(), function->get_name() ), ", field ", field->get_name(), " not explicitly ", isCtor ? "constructed" : "destructed", " and no ", isCtor ? "default constructor" : "destructor", " found" );
|
---|
1125 | }
|
---|
1126 | }
|
---|
1127 | }
|
---|
1128 | }
|
---|
1129 | if (! errors.isEmpty()) {
|
---|
1130 | throw errors;
|
---|
1131 | }
|
---|
1132 | return funcDecl;
|
---|
1133 | }
|
---|
1134 |
|
---|
1135 | /// true if expr is effectively just the 'this' parameter
|
---|
1136 | bool isThisExpression( Expression * expr, DeclarationWithType * thisParam ) {
|
---|
1137 | // TODO: there are more complicated ways to pass 'this' to a constructor, e.g. &*, *&, etc.
|
---|
1138 | if ( VariableExpr * varExpr = dynamic_cast< VariableExpr * >( expr ) ) {
|
---|
1139 | return varExpr->get_var() == thisParam;
|
---|
1140 | } else if ( CastExpr * castExpr = dynamic_cast< CastExpr * > ( expr ) ) {
|
---|
1141 | return isThisExpression( castExpr->get_arg(), thisParam );
|
---|
1142 | }
|
---|
1143 | return false;
|
---|
1144 | }
|
---|
1145 |
|
---|
1146 | /// returns a MemberExpr if expr is effectively just member access on the 'this' parameter, else nullptr
|
---|
1147 | MemberExpr * isThisMemberExpr( Expression * expr, DeclarationWithType * thisParam ) {
|
---|
1148 | if ( MemberExpr * memberExpr = dynamic_cast< MemberExpr * >( expr ) ) {
|
---|
1149 | if ( isThisExpression( memberExpr->get_aggregate(), thisParam ) ) {
|
---|
1150 | return memberExpr;
|
---|
1151 | }
|
---|
1152 | } else if ( CastExpr * castExpr = dynamic_cast< CastExpr * >( expr ) ) {
|
---|
1153 | return isThisMemberExpr( castExpr->get_arg(), thisParam );
|
---|
1154 | }
|
---|
1155 | return nullptr;
|
---|
1156 | }
|
---|
1157 |
|
---|
1158 | void GenStructMemberCalls::premutate( ApplicationExpr * appExpr ) {
|
---|
1159 | if ( ! checkWarnings( function ) ) {
|
---|
1160 | visit_children = false;
|
---|
1161 | return;
|
---|
1162 | }
|
---|
1163 |
|
---|
1164 | std::string fname = getFunctionName( appExpr );
|
---|
1165 | if ( fname == function->name ) {
|
---|
1166 | // call to same kind of function
|
---|
1167 | Expression * firstParam = appExpr->args.front();
|
---|
1168 |
|
---|
1169 | if ( isThisExpression( firstParam, thisParam ) ) {
|
---|
1170 | // if calling another constructor on thisParam, assume that function handles
|
---|
1171 | // all members - if it doesn't a warning will appear in that function.
|
---|
1172 | unhandled.clear();
|
---|
1173 | } else if ( MemberExpr * memberExpr = isThisMemberExpr( firstParam, thisParam ) ) {
|
---|
1174 | // if first parameter is a member expression on the this parameter,
|
---|
1175 | // then remove the member from unhandled set.
|
---|
1176 | if ( isThisExpression( memberExpr->aggregate, thisParam ) ) {
|
---|
1177 | unhandled.erase( memberExpr->member );
|
---|
1178 | }
|
---|
1179 | }
|
---|
1180 | }
|
---|
1181 | }
|
---|
1182 |
|
---|
1183 | void GenStructMemberCalls::premutate( MemberExpr * memberExpr ) {
|
---|
1184 | if ( ! checkWarnings( function ) || ! isCtor ) {
|
---|
1185 | visit_children = false;
|
---|
1186 | return;
|
---|
1187 | }
|
---|
1188 |
|
---|
1189 | if ( isThisExpression( memberExpr->get_aggregate(), thisParam ) ) {
|
---|
1190 | if ( unhandled.count( memberExpr->get_member() ) ) {
|
---|
1191 | // emit a warning because a member was used before it was constructed
|
---|
1192 | usedUninit.insert( { memberExpr->get_member(), memberExpr->location } );
|
---|
1193 | }
|
---|
1194 | }
|
---|
1195 | }
|
---|
1196 |
|
---|
1197 | template< typename Visitor, typename... Params >
|
---|
1198 | void error( Visitor & v, CodeLocation loc, const Params &... params ) {
|
---|
1199 | SemanticErrorException err( loc, toString( params... ) );
|
---|
1200 | v.errors.append( err );
|
---|
1201 | }
|
---|
1202 |
|
---|
1203 | template< typename... Params >
|
---|
1204 | void GenStructMemberCalls::emit( CodeLocation loc, const Params &... params ) {
|
---|
1205 | // toggle warnings vs. errors here.
|
---|
1206 | // warn( params... );
|
---|
1207 | error( *this, loc, params... );
|
---|
1208 | }
|
---|
1209 |
|
---|
1210 | Expression * GenStructMemberCalls::postmutate( UntypedExpr * untypedExpr ) {
|
---|
1211 | Expression * newExpr = untypedExpr;
|
---|
1212 | ResolvExpr::findVoidExpression( newExpr, indexer );
|
---|
1213 | return newExpr;
|
---|
1214 | }
|
---|
1215 |
|
---|
1216 | Expression * FixCtorExprs::postmutate( ConstructorExpr * ctorExpr ) {
|
---|
1217 | static UniqueName tempNamer( "_tmp_ctor_expr" );
|
---|
1218 | // xxx - is the size check necessary?
|
---|
1219 | assert( ctorExpr->result && ctorExpr->get_result()->size() == 1 );
|
---|
1220 |
|
---|
1221 | // xxx - this can be TupleAssignExpr now. Need to properly handle this case.
|
---|
1222 | ApplicationExpr * callExpr = strict_dynamic_cast< ApplicationExpr * > ( ctorExpr->get_callExpr() );
|
---|
1223 | TypeSubstitution * env = ctorExpr->get_env();
|
---|
1224 | ctorExpr->set_callExpr( nullptr );
|
---|
1225 | ctorExpr->set_env( nullptr );
|
---|
1226 |
|
---|
1227 | // xxx - ideally we would reuse the temporary generated from the copy constructor passes from within firstArg if it exists and not generate a temporary if it's unnecessary.
|
---|
1228 | ObjectDecl * tmp = ObjectDecl::newObject( tempNamer.newName(), callExpr->args.front()->result->clone(), nullptr );
|
---|
1229 | declsToAddBefore.push_back( tmp );
|
---|
1230 | delete ctorExpr;
|
---|
1231 |
|
---|
1232 | // build assignment and replace constructor's first argument with new temporary
|
---|
1233 | Expression *& firstArg = callExpr->get_args().front();
|
---|
1234 | Expression * assign = new UntypedExpr( new NameExpr( "?=?" ), { new AddressExpr( new VariableExpr( tmp ) ), new AddressExpr( firstArg ) } );
|
---|
1235 | firstArg = new VariableExpr( tmp );
|
---|
1236 |
|
---|
1237 | // resolve assignment and dispose of new env
|
---|
1238 | ResolvExpr::findVoidExpression( assign, indexer );
|
---|
1239 | delete assign->env;
|
---|
1240 | assign->env = nullptr;
|
---|
1241 |
|
---|
1242 | // for constructor expr:
|
---|
1243 | // T x;
|
---|
1244 | // x{};
|
---|
1245 | // results in:
|
---|
1246 | // T x;
|
---|
1247 | // T & tmp;
|
---|
1248 | // &tmp = &x, ?{}(tmp), tmp
|
---|
1249 | CommaExpr * commaExpr = new CommaExpr( assign, new CommaExpr( callExpr, new VariableExpr( tmp ) ) );
|
---|
1250 | commaExpr->set_env( env );
|
---|
1251 | return commaExpr;
|
---|
1252 | }
|
---|
1253 | } // namespace
|
---|
1254 | } // namespace InitTweak
|
---|
1255 |
|
---|
1256 | // Local Variables: //
|
---|
1257 | // tab-width: 4 //
|
---|
1258 | // mode: c++ //
|
---|
1259 | // compile-command: "make install" //
|
---|
1260 | // End: //
|
---|