[51587aa] | 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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[11df881] | 7 | // GenInit.cc -- Generate initializers, and other stuff.
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[51587aa] | 8 | //
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[cf16f94] | 9 | // Author : Rob Schluntz
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[51587aa] | 10 | // Created On : Mon May 18 07:44:20 2015
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[a36eb2d] | 11 | // Last Modified By : Andrew Beach
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[148ba7d] | 12 | // Last Modified On : Mon Oct 25 13:53:00 2021
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| 13 | // Update Count : 186
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[51587aa] | 14 | //
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[8ca3a72] | 15 | #include "GenInit.h"
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| 16 |
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[2bfc6b2] | 17 | #include <stddef.h> // for NULL
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| 18 | #include <algorithm> // for any_of
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| 19 | #include <cassert> // for assert, strict_dynamic_cast, assertf
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[b8524ca] | 20 | #include <deque>
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[2bfc6b2] | 21 | #include <iterator> // for back_inserter, inserter, back_inse...
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| 22 | #include <list> // for _List_iterator, list
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[8ca3a72] | 23 |
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[b8524ca] | 24 | #include "AST/Decl.hpp"
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| 25 | #include "AST/Init.hpp"
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[a36eb2d] | 26 | #include "AST/Pass.hpp"
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[b8524ca] | 27 | #include "AST/Node.hpp"
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| 28 | #include "AST/Stmt.hpp"
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[16ba4a6f] | 29 | #include "CompilationState.h"
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[8135d4c] | 30 | #include "CodeGen/OperatorTable.h"
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[2bfc6b2] | 31 | #include "Common/SemanticError.h" // for SemanticError
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[9feb34b] | 32 | #include "Common/ToString.hpp" // for toCString
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[2bfc6b2] | 33 | #include "Common/UniqueName.h" // for UniqueName
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| 34 | #include "Common/utility.h" // for ValueGuard, maybeClone
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| 35 | #include "GenPoly/GenPoly.h" // for getFunctionType, isPolyType
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| 36 | #include "GenPoly/ScopedSet.h" // for ScopedSet, ScopedSet<>::const_iter...
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| 37 | #include "InitTweak.h" // for isConstExpr, InitExpander, checkIn...
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[fdd0509] | 38 | #include "ResolvExpr/Resolver.h"
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[fb4dc28] | 39 | #include "SymTab/GenImplicitCall.hpp" // for genImplicitCall
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[2bfc6b2] | 40 | #include "SymTab/Mangler.h" // for Mangler
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| 41 | #include "Tuples/Tuples.h" // for maybeImpure
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| 42 | #include "Validate/FindSpecialDecls.h" // for SizeType
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[42e2ad7] | 43 |
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| 44 | namespace InitTweak {
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[09867ec] | 45 |
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[a36eb2d] | 46 | namespace {
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| 47 |
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[f02f546] | 48 | // Outer pass finds declarations, for their type could wrap a type that needs hoisting
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[0bd3faf] | 49 | struct HoistArrayDimension_NoResolve final :
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[a36eb2d] | 50 | public ast::WithDeclsToAdd<>, public ast::WithShortCircuiting,
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[c600df1] | 51 | public ast::WithGuards, public ast::WithConstTranslationUnit,
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[0bd3faf] | 52 | public ast::WithVisitorRef<HoistArrayDimension_NoResolve>,
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[f02f546] | 53 | public ast::WithSymbolTableX<ast::SymbolTable::ErrorDetection::IgnoreErrors> {
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| 54 |
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| 55 | // Inner pass looks within a type, for a part that depends on an expression
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| 56 | struct HoistDimsFromTypes final :
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| 57 | public ast::WithShortCircuiting, public ast::WithGuards {
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| 58 |
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[0bd3faf] | 59 | HoistArrayDimension_NoResolve * outer;
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| 60 | HoistDimsFromTypes( HoistArrayDimension_NoResolve * outer ) : outer(outer) {}
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[f02f546] | 61 |
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| 62 | // Only intended for visiting through types.
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| 63 | // Tolerate, and short-circuit at, the dimension expression of an array type.
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| 64 | // (We'll operate on the dimension expression of an array type directly
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| 65 | // from the parent type, not by visiting through it)
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| 66 | // Look inside type exprs.
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| 67 | void previsit( const ast::Node * ) {
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| 68 | assert( false && "unsupported node type" );
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| 69 | };
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| 70 | const ast::Expr * allowedExpr = nullptr;
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| 71 | void previsit( const ast::Type * ) {
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| 72 | GuardValue( allowedExpr ) = nullptr;
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| 73 | }
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| 74 | void previsit( const ast::ArrayType * t ) {
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| 75 | GuardValue( allowedExpr ) = t->dimension.get();
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| 76 | }
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| 77 | void previsit( const ast::PointerType * t ) {
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| 78 | GuardValue( allowedExpr ) = t->dimension.get();
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| 79 | }
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| 80 | void previsit( const ast::TypeofType * t ) {
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| 81 | GuardValue( allowedExpr ) = t->expr.get();
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| 82 | }
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| 83 | void previsit( const ast::Expr * e ) {
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| 84 | assert( e == allowedExpr &&
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| 85 | "only expecting to visit exprs that are dimension exprs or typeof(-) inner exprs" );
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[a36eb2d] | 86 |
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[f02f546] | 87 | // Skip the tolerated expressions
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| 88 | visit_children = false;
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| 89 | }
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| 90 | void previsit( const ast::TypeExpr * ) {}
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| 91 |
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| 92 | const ast::Type * postvisit(
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| 93 | const ast::ArrayType * arrayType ) {
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| 94 | static UniqueName dimensionName( "_array_dim" );
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| 95 |
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| 96 | if ( nullptr == arrayType->dimension ) { // if no dimension is given, don't presume to invent one
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| 97 | return arrayType;
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| 98 | }
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| 99 |
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| 100 | // find size_t; use it as the type for a dim expr
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| 101 | ast::ptr<ast::Type> dimType = outer->transUnit().global.sizeType;
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| 102 | assert( dimType );
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| 103 | add_qualifiers( dimType, ast::CV::Qualifiers( ast::CV::Const ) );
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| 104 |
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| 105 | // Special-case handling: leave the user's dimension expression alone
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| 106 | // - requires the user to have followed a careful convention
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| 107 | // - may apply to extremely simple applications, but only as windfall
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| 108 | // - users of advanced applications will be following the convention on purpose
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| 109 | // - CFA maintainers must protect the criteria against leaving too much alone
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| 110 |
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| 111 | // Actual leave-alone cases following are conservative approximations of "cannot vary"
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| 112 |
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| 113 | // Leave alone: literals and enum constants
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| 114 | if ( dynamic_cast< const ast::ConstantExpr * >( arrayType->dimension.get() ) ) {
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| 115 | return arrayType;
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| 116 | }
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| 117 |
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| 118 | // Leave alone: direct use of an object declared to be const
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| 119 | const ast::NameExpr * dimn = dynamic_cast< const ast::NameExpr * >( arrayType->dimension.get() );
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| 120 | if ( dimn ) {
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| 121 | std::vector<ast::SymbolTable::IdData> dimnDefs = outer->symtab.lookupId( dimn->name );
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| 122 | if ( dimnDefs.size() == 1 ) {
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| 123 | const ast::DeclWithType * dimnDef = dimnDefs[0].id.get();
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| 124 | assert( dimnDef && "symbol table binds a name to nothing" );
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| 125 | const ast::ObjectDecl * dimOb = dynamic_cast< const ast::ObjectDecl * >( dimnDef );
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| 126 | if( dimOb ) {
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| 127 | const ast::Type * dimTy = dimOb->type.get();
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| 128 | assert( dimTy && "object declaration bearing no type" );
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| 129 | // must not hoist some: size_t
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| 130 | // must hoist all: pointers and references
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| 131 | // the analysis is conservative; BasicType is a simple approximation
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| 132 | if ( dynamic_cast< const ast::BasicType * >( dimTy ) ||
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| 133 | dynamic_cast< const ast::SueInstType<ast::EnumDecl> * >( dimTy ) ) {
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| 134 | if ( dimTy->is_const() ) {
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| 135 | // The dimension is certainly re-evaluable, giving the same answer each time.
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| 136 | // Our user might be hoping to write the array type in multiple places, having them unify.
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| 137 | // Leave the type alone.
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| 138 |
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| 139 | // We believe the new criterion leaves less alone than the old criterion.
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| 140 | // Thus, the old criterion should have left the current case alone.
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| 141 | // Catch cases that weren't thought through.
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| 142 | assert( !Tuples::maybeImpure( arrayType->dimension ) );
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| 143 |
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| 144 | return arrayType;
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| 145 | }
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| 146 | };
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| 147 | }
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| 148 | }
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| 149 | }
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| 150 |
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| 151 | // Leave alone: any sizeof expression (answer cannot vary during current lexical scope)
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| 152 | const ast::SizeofExpr * sz = dynamic_cast< const ast::SizeofExpr * >( arrayType->dimension.get() );
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| 153 | if ( sz ) {
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| 154 | return arrayType;
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| 155 | }
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| 156 |
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| 157 | // General-case handling: change the array-type's dim expr (hoist the user-given content out of the type)
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| 158 | // - always safe
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| 159 | // - user-unnoticeable in common applications (benign noise in -CFA output)
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| 160 | // - may annoy a responsible user of advanced applications (but they can work around)
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| 161 | // - protects against misusing advanced features
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| 162 | //
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| 163 | // The hoist, by example, is:
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| 164 | // FROM USER: float a[ rand() ];
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| 165 | // TO GCC: const size_t __len_of_a = rand(); float a[ __len_of_a ];
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| 166 |
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| 167 | ast::ObjectDecl * arrayDimension = new ast::ObjectDecl(
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| 168 | arrayType->dimension->location,
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| 169 | dimensionName.newName(),
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| 170 | dimType,
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| 171 | new ast::SingleInit(
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| 172 | arrayType->dimension->location,
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| 173 | arrayType->dimension
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| 174 | )
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| 175 | );
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| 176 |
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| 177 | ast::ArrayType * mutType = ast::mutate( arrayType );
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| 178 | mutType->dimension = new ast::VariableExpr(
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| 179 | arrayDimension->location, arrayDimension );
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| 180 | outer->declsToAddBefore.push_back( arrayDimension );
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| 181 |
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| 182 | return mutType;
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| 183 | } // postvisit( const ast::ArrayType * )
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| 184 | }; // struct HoistDimsFromTypes
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[a36eb2d] | 185 |
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| 186 | ast::Storage::Classes storageClasses;
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[f02f546] | 187 | void previsit(
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| 188 | const ast::ObjectDecl * decl ) {
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| 189 | GuardValue( storageClasses ) = decl->storage;
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[a36eb2d] | 190 | }
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| 191 |
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[f02f546] | 192 | const ast::DeclWithType * postvisit(
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| 193 | const ast::ObjectDecl * objectDecl ) {
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[a36eb2d] | 194 |
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[f02f546] | 195 | if ( !isInFunction() || storageClasses.is_static ) {
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| 196 | return objectDecl;
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[a36eb2d] | 197 | }
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| 198 |
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[f02f546] | 199 | const ast::Type * mid = objectDecl->type;
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[a36eb2d] | 200 |
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[f02f546] | 201 | ast::Pass<HoistDimsFromTypes> hoist{this};
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| 202 | const ast::Type * result = mid->accept( hoist );
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[a36eb2d] | 203 |
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[f02f546] | 204 | return mutate_field( objectDecl, &ast::ObjectDecl::type, result );
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[a36eb2d] | 205 | }
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[f02f546] | 206 | };
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| 207 |
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[0bd3faf] | 208 | struct ReturnFixer final :
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[fc134a48] | 209 | public ast::WithStmtsToAdd<>, ast::WithGuards, ast::WithShortCircuiting {
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[a36eb2d] | 210 | void previsit( const ast::FunctionDecl * decl );
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| 211 | const ast::ReturnStmt * previsit( const ast::ReturnStmt * stmt );
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| 212 | private:
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| 213 | const ast::FunctionDecl * funcDecl = nullptr;
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| 214 | };
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| 215 |
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[0bd3faf] | 216 | void ReturnFixer::previsit( const ast::FunctionDecl * decl ) {
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[fc134a48] | 217 | if (decl->linkage == ast::Linkage::Intrinsic) visit_children = false;
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[148ba7d] | 218 | GuardValue( funcDecl ) = decl;
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[a36eb2d] | 219 | }
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| 220 |
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[0bd3faf] | 221 | const ast::ReturnStmt * ReturnFixer::previsit(
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[a36eb2d] | 222 | const ast::ReturnStmt * stmt ) {
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| 223 | auto & returns = funcDecl->returns;
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| 224 | assert( returns.size() < 2 );
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| 225 | // Hands off if the function returns a reference.
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| 226 | // Don't allocate a temporary if the address is returned.
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| 227 | if ( stmt->expr && 1 == returns.size() ) {
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| 228 | ast::ptr<ast::DeclWithType> retDecl = returns.front();
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| 229 | if ( isConstructable( retDecl->get_type() ) ) {
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| 230 | // Explicitly construct the return value using the return
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| 231 | // expression and the retVal object.
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| 232 | assertf( "" != retDecl->name,
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| 233 | "Function %s has unnamed return value.\n",
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| 234 | funcDecl->name.c_str() );
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| 235 |
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| 236 | auto retVal = retDecl.strict_as<ast::ObjectDecl>();
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| 237 | if ( auto varExpr = stmt->expr.as<ast::VariableExpr>() ) {
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| 238 | // Check if the return statement is already set up.
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| 239 | if ( varExpr->var == retVal ) return stmt;
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| 240 | }
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[4e2f1b2] | 241 | const ast::Stmt * ctorStmt = genCtorDtor(
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[a36eb2d] | 242 | retVal->location, "?{}", retVal, stmt->expr );
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| 243 | assertf( ctorStmt,
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[4ec9513] | 244 | "ReturnFixer: genCtorDtor returned nullptr: %s / %s",
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[a36eb2d] | 245 | toString( retVal ).c_str(),
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| 246 | toString( stmt->expr ).c_str() );
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[4ec9513] | 247 | stmtsToAddBefore.push_back( ctorStmt );
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[a36eb2d] | 248 |
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| 249 | // Return the retVal object.
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| 250 | ast::ReturnStmt * mutStmt = ast::mutate( stmt );
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| 251 | mutStmt->expr = new ast::VariableExpr(
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| 252 | stmt->location, retDecl );
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| 253 | return mutStmt;
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| 254 | }
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| 255 | }
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| 256 | return stmt;
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| 257 | }
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| 258 |
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| 259 | } // namespace
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| 260 |
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[8984003] | 261 | void genInit( ast::TranslationUnit & transUnit ) {
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| 262 | ast::Pass<HoistArrayDimension_NoResolve>::run( transUnit );
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| 263 | ast::Pass<ReturnFixer>::run( transUnit );
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| 264 | }
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| 265 |
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| 266 | void fixReturnStatements( ast::TranslationUnit & transUnit ) {
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| 267 | ast::Pass<ReturnFixer>::run( transUnit );
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| 268 | }
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| 269 |
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| 270 | bool ManagedTypes::isManaged( const ast::Type * type ) const {
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| 271 | // references are never constructed
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| 272 | if ( dynamic_cast< const ast::ReferenceType * >( type ) ) return false;
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| 273 | if ( auto tupleType = dynamic_cast< const ast::TupleType * > ( type ) ) {
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| 274 | // tuple is also managed if any of its components are managed
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| 275 | for (auto & component : tupleType->types) {
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| 276 | if (isManaged(component)) return true;
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[16ba4a6f] | 277 | }
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| 278 | }
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[8984003] | 279 | // need to clear and reset qualifiers when determining if a type is managed
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| 280 | // ValueGuard< Type::Qualifiers > qualifiers( type->get_qualifiers() );
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| 281 | auto tmp = shallowCopy(type);
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| 282 | tmp->qualifiers = {};
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| 283 | // delete tmp at return
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| 284 | ast::ptr<ast::Type> guard = tmp;
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| 285 | // a type is managed if it appears in the map of known managed types, or if it contains any polymorphism (is a type variable or generic type containing a type variable)
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| 286 | return managedTypes.find( Mangle::mangle( tmp, {Mangle::NoOverrideable | Mangle::NoGenericParams | Mangle::Type} ) ) != managedTypes.end() || GenPoly::isPolyType( tmp );
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| 287 | }
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| 288 |
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| 289 | bool ManagedTypes::isManaged( const ast::ObjectDecl * objDecl ) const {
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| 290 | const ast::Type * type = objDecl->type;
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| 291 | while ( auto at = dynamic_cast< const ast::ArrayType * >( type ) ) {
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| 292 | // must always construct VLAs with an initializer, since this is an error in C
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| 293 | if ( at->isVarLen && objDecl->init ) return true;
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| 294 | type = at->base;
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[16ba4a6f] | 295 | }
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[8984003] | 296 | return isManaged( type );
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| 297 | }
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| 298 |
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| 299 | void ManagedTypes::handleDWT( const ast::DeclWithType * dwt ) {
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| 300 | // if this function is a user-defined constructor or destructor, mark down the type as "managed"
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| 301 | if ( ! dwt->linkage.is_overrideable && CodeGen::isCtorDtor( dwt->name ) ) {
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| 302 | auto & params = GenPoly::getFunctionType( dwt->get_type())->params;
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| 303 | assert( ! params.empty() );
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| 304 | // Type * type = InitTweak::getPointerBase( params.front() );
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| 305 | // assert( type );
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| 306 | managedTypes.insert( Mangle::mangle( params.front(), {Mangle::NoOverrideable | Mangle::NoGenericParams | Mangle::Type} ) );
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[16ba4a6f] | 307 | }
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[8984003] | 308 | }
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| 309 |
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| 310 | void ManagedTypes::handleStruct( const ast::StructDecl * aggregateDecl ) {
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| 311 | // don't construct members, but need to take note if there is a managed member,
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| 312 | // because that means that this type is also managed
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| 313 | for ( auto & member : aggregateDecl->members ) {
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| 314 | if ( auto field = member.as<ast::ObjectDecl>() ) {
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| 315 | if ( isManaged( field ) ) {
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| 316 | // generic parameters should not play a role in determining whether a generic type is constructed - construct all generic types, so that
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| 317 | // polymorphic constructors make generic types managed types
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| 318 | ast::StructInstType inst( aggregateDecl );
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| 319 | managedTypes.insert( Mangle::mangle( &inst, {Mangle::NoOverrideable | Mangle::NoGenericParams | Mangle::Type} ) );
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| 320 | break;
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[16ba4a6f] | 321 | }
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| 322 | }
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| 323 | }
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[8984003] | 324 | }
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[16ba4a6f] | 325 |
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[8984003] | 326 | void ManagedTypes::beginScope() { managedTypes.beginScope(); }
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| 327 | void ManagedTypes::endScope() { managedTypes.endScope(); }
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[16ba4a6f] | 328 |
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[4e2f1b2] | 329 | const ast::Stmt * genCtorDtor( const CodeLocation & loc, const std::string & fname, const ast::ObjectDecl * objDecl, const ast::Expr * arg ) {
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[8984003] | 330 | assertf(objDecl, "genCtorDtor passed null objDecl");
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| 331 | InitExpander srcParam(arg);
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| 332 | return SymTab::genImplicitCall(srcParam, new ast::VariableExpr(loc, objDecl), loc, fname, objDecl);
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| 333 | }
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[092528b] | 334 |
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[b8524ca] | 335 | ast::ConstructorInit * genCtorInit( const CodeLocation & loc, const ast::ObjectDecl * objDecl ) {
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[c19edd1] | 336 | // call into genImplicitCall from Autogen.h to generate calls to ctor/dtor for each
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[b8524ca] | 337 | // constructable object
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[0bd3faf] | 338 | InitExpander srcParam{ objDecl->init }, nullParam{ (const ast::Init *)nullptr };
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[16ba4a6f] | 339 | ast::ptr< ast::Expr > dstParam = new ast::VariableExpr(loc, objDecl);
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[c19edd1] | 340 |
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| 341 | ast::ptr< ast::Stmt > ctor = SymTab::genImplicitCall(
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[16ba4a6f] | 342 | srcParam, dstParam, loc, "?{}", objDecl );
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[c19edd1] | 343 | ast::ptr< ast::Stmt > dtor = SymTab::genImplicitCall(
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| 344 | nullParam, dstParam, loc, "^?{}", objDecl,
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[b8524ca] | 345 | SymTab::LoopBackward );
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[c19edd1] | 346 |
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[b8524ca] | 347 | // check that either both ctor and dtor are present, or neither
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| 348 | assert( (bool)ctor == (bool)dtor );
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| 349 |
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| 350 | if ( ctor ) {
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[c19edd1] | 351 | // need to remember init expression, in case no ctors exist. If ctor does exist, want to
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[b8524ca] | 352 | // use ctor expression instead of init.
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[c19edd1] | 353 | ctor.strict_as< ast::ImplicitCtorDtorStmt >();
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[b8524ca] | 354 | dtor.strict_as< ast::ImplicitCtorDtorStmt >();
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| 355 |
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| 356 | return new ast::ConstructorInit{ loc, ctor, dtor, objDecl->init };
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| 357 | }
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| 358 |
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[234b1cb] | 359 | return nullptr;
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| 360 | }
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| 361 |
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[42e2ad7] | 362 | } // namespace InitTweak
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| 363 |
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[51587aa] | 364 | // Local Variables: //
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| 365 | // tab-width: 4 //
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| 366 | // mode: c++ //
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| 367 | // compile-command: "make install" //
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| 368 | // End: //
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