source: src/InitTweak/GenInit.cc@ 361bf01

ADT arm-eh ast-experimental enum forall-pointer-decay jacob/cs343-translation new-ast-unique-expr pthread-emulation qualifiedEnum
Last change on this file since 361bf01 was 5465377c, checked in by Fangren Yu <f37yu@…>, 5 years ago

fix array_dim problem in old ast

  • Property mode set to 100644
File size: 20.6 KB
RevLine 
[51587aa]1//
2// Cforall Version 1.0.0 Copyright (C) 2015 University of Waterloo
3//
4// The contents of this file are covered under the licence agreement in the
5// file "LICENCE" distributed with Cforall.
6//
[a0fdbd5]7// GenInit.cc --
[51587aa]8//
[cf16f94]9// Author : Rob Schluntz
[51587aa]10// Created On : Mon May 18 07:44:20 2015
[3a5131ed]11// Last Modified By : Peter A. Buhr
[07de76b]12// Last Modified On : Fri Dec 13 23:15:10 2019
13// Update Count : 184
[51587aa]14//
[8ca3a72]15#include "GenInit.h"
16
[2bfc6b2]17#include <stddef.h> // for NULL
18#include <algorithm> // for any_of
19#include <cassert> // for assert, strict_dynamic_cast, assertf
[b8524ca]20#include <deque>
[2bfc6b2]21#include <iterator> // for back_inserter, inserter, back_inse...
22#include <list> // for _List_iterator, list
[8ca3a72]23
[b8524ca]24#include "AST/Decl.hpp"
25#include "AST/Init.hpp"
26#include "AST/Node.hpp"
27#include "AST/Stmt.hpp"
[16ba4a6f]28#include "CompilationState.h"
[8135d4c]29#include "CodeGen/OperatorTable.h"
[2bfc6b2]30#include "Common/PassVisitor.h" // for PassVisitor, WithGuards, WithShort...
31#include "Common/SemanticError.h" // for SemanticError
32#include "Common/UniqueName.h" // for UniqueName
33#include "Common/utility.h" // for ValueGuard, maybeClone
34#include "GenPoly/GenPoly.h" // for getFunctionType, isPolyType
35#include "GenPoly/ScopedSet.h" // for ScopedSet, ScopedSet<>::const_iter...
36#include "InitTweak.h" // for isConstExpr, InitExpander, checkIn...
[fdd0509]37#include "ResolvExpr/Resolver.h"
[2bfc6b2]38#include "SymTab/Autogen.h" // for genImplicitCall
39#include "SymTab/Mangler.h" // for Mangler
[07de76b]40#include "SynTree/LinkageSpec.h" // for isOverridable, C
[2bfc6b2]41#include "SynTree/Declaration.h" // for ObjectDecl, DeclarationWithType
42#include "SynTree/Expression.h" // for VariableExpr, UntypedExpr, Address...
43#include "SynTree/Initializer.h" // for ConstructorInit, SingleInit, Initi...
44#include "SynTree/Label.h" // for Label
45#include "SynTree/Mutator.h" // for mutateAll
46#include "SynTree/Statement.h" // for CompoundStmt, ImplicitCtorDtorStmt
47#include "SynTree/Type.h" // for Type, ArrayType, Type::Qualifiers
48#include "SynTree/Visitor.h" // for acceptAll, maybeAccept
49#include "Tuples/Tuples.h" // for maybeImpure
50#include "Validate/FindSpecialDecls.h" // for SizeType
[42e2ad7]51
52namespace InitTweak {
[a08ba92]53 namespace {
54 const std::list<Label> noLabels;
[5b40f30]55 const std::list<Expression *> noDesignators;
[a08ba92]56 }
[1e9d87b]57
[d24d4e1]58 struct ReturnFixer : public WithStmtsToAdd, public WithGuards {
[a0fdbd5]59 /// consistently allocates a temporary variable for the return value
60 /// of a function so that anything which the resolver decides can be constructed
[02c7d04]61 /// into the return type of a function can be returned.
[a0fdbd5]62 static void makeReturnTemp( std::list< Declaration * > &translationUnit );
[02c7d04]63
[7b6ca2e]64 void premutate( FunctionDecl *functionDecl );
65 void premutate( ReturnStmt * returnStmt );
[1e9d87b]66
67 protected:
[c6976ba]68 FunctionType * ftype = nullptr;
[cf16f94]69 std::string funcName;
70 };
[42e2ad7]71
[22bc276]72 struct CtorDtor : public WithGuards, public WithShortCircuiting, public WithVisitorRef<CtorDtor> {
[02c7d04]73 /// create constructor and destructor statements for object declarations.
[5f98ce5]74 /// the actual call statements will be added in after the resolver has run
75 /// so that the initializer expression is only removed if a constructor is found
76 /// and the same destructor call is inserted in all of the appropriate locations.
[02c7d04]77 static void generateCtorDtor( std::list< Declaration * > &translationUnit );
[974906e2]78
[d24d4e1]79 void previsit( ObjectDecl * );
80 void previsit( FunctionDecl *functionDecl );
81
[5f98ce5]82 // should not traverse into any of these declarations to find objects
83 // that need to be constructed or destructed
[d24d4e1]84 void previsit( StructDecl *aggregateDecl );
[aec3e6b]85 void previsit( AggregateDecl * ) { visit_children = false; }
86 void previsit( NamedTypeDecl * ) { visit_children = false; }
[22bc276]87 void previsit( FunctionType * ) { visit_children = false; }
[db4ecc5]88
[d24d4e1]89 void previsit( CompoundStmt * compoundStmt );
[1ba88a0]90
91 private:
92 // set of mangled type names for which a constructor or destructor exists in the current scope.
93 // these types require a ConstructorInit node to be generated, anything else is a POD type and thus
94 // should not have a ConstructorInit generated.
95
[bfd4974]96 ManagedTypes managedTypes;
[1ba88a0]97 bool inFunction = false;
[974906e2]98 };
99
[fdd0509]100 struct HoistArrayDimension final : public WithDeclsToAdd, public WithShortCircuiting, public WithGuards, public WithIndexer {
[5f98ce5]101 /// hoist dimension from array types in object declaration so that it uses a single
102 /// const variable of type size_t, so that side effecting array dimensions are only
103 /// computed once.
104 static void hoistArrayDimension( std::list< Declaration * > & translationUnit );
105
[22bc276]106 void premutate( ObjectDecl * objectDecl );
107 DeclarationWithType * postmutate( ObjectDecl * objectDecl );
108 void premutate( FunctionDecl *functionDecl );
[5f98ce5]109 // should not traverse into any of these declarations to find objects
110 // that need to be constructed or destructed
[22bc276]111 void premutate( AggregateDecl * ) { visit_children = false; }
112 void premutate( NamedTypeDecl * ) { visit_children = false; }
113 void premutate( FunctionType * ) { visit_children = false; }
[5f98ce5]114
[fdd0509]115 // need this so that enumerators are added to the indexer, due to premutate(AggregateDecl *)
116 void premutate( EnumDecl * ) {}
117
[5f98ce5]118 void hoist( Type * type );
119
[68fe077a]120 Type::StorageClasses storageClasses;
[40e636a]121 bool inFunction = false;
[5f98ce5]122 };
123
[a0fdbd5]124 void genInit( std::list< Declaration * > & translationUnit ) {
[5f98ce5]125 HoistArrayDimension::hoistArrayDimension( translationUnit );
[16ba4a6f]126 fixReturnStatements( translationUnit );
127
128 if (!useNewAST) {
129 CtorDtor::generateCtorDtor( translationUnit );
130 }
[02c7d04]131 }
132
[8b11840]133 void fixReturnStatements( std::list< Declaration * > & translationUnit ) {
[7b6ca2e]134 PassVisitor<ReturnFixer> fixer;
[a0fdbd5]135 mutateAll( translationUnit, fixer );
[a08ba92]136 }
[42e2ad7]137
[7b6ca2e]138 void ReturnFixer::premutate( ReturnStmt *returnStmt ) {
[65660bd]139 std::list< DeclarationWithType * > & returnVals = ftype->get_returnVals();
[cf16f94]140 assert( returnVals.size() == 0 || returnVals.size() == 1 );
[c6976ba]141 // hands off if the function returns a reference - we don't want to allocate a temporary if a variable's address
[cf16f94]142 // is being returned
[bd7e609]143 if ( returnStmt->expr && returnVals.size() == 1 && isConstructable( returnVals.front()->get_type() ) ) {
[cce9429]144 // explicitly construct the return value using the return expression and the retVal object
[18ca28e]145 assertf( returnVals.front()->name != "", "Function %s has unnamed return value\n", funcName.c_str() );
[c6976ba]146
[bd7e609]147 ObjectDecl * retVal = strict_dynamic_cast< ObjectDecl * >( returnVals.front() );
148 if ( VariableExpr * varExpr = dynamic_cast< VariableExpr * >( returnStmt->expr ) ) {
149 // return statement has already been mutated - don't need to do it again
150 if ( varExpr->var == retVal ) return;
151 }
[9fe33947]152 Statement * stmt = genCtorDtor( "?{}", retVal, returnStmt->expr );
153 assertf( stmt, "ReturnFixer: genCtorDtor returned nullptr: %s / %s", toString( retVal ).c_str(), toString( returnStmt->expr ).c_str() );
154 stmtsToAddBefore.push_back( stmt );
[cf16f94]155
[cce9429]156 // return the retVal object
[18ca28e]157 returnStmt->expr = new VariableExpr( returnVals.front() );
[cf16f94]158 } // if
159 }
160
[7b6ca2e]161 void ReturnFixer::premutate( FunctionDecl *functionDecl ) {
[4eb31f2b]162 GuardValue( ftype );
163 GuardValue( funcName );
[1e9d87b]164
[22bc276]165 ftype = functionDecl->type;
166 funcName = functionDecl->name;
[cf16f94]167 }
[974906e2]168
[4d2434a]169 // precompute array dimension expression, because constructor generation may duplicate it,
170 // which would be incorrect if it is a side-effecting computation.
[5f98ce5]171 void HoistArrayDimension::hoistArrayDimension( std::list< Declaration * > & translationUnit ) {
[22bc276]172 PassVisitor<HoistArrayDimension> hoister;
173 mutateAll( translationUnit, hoister );
[5f98ce5]174 }
175
[22bc276]176 void HoistArrayDimension::premutate( ObjectDecl * objectDecl ) {
177 GuardValue( storageClasses );
[a7c90d4]178 storageClasses = objectDecl->get_storageClasses();
[22bc276]179 }
180
181 DeclarationWithType * HoistArrayDimension::postmutate( ObjectDecl * objectDecl ) {
[5f98ce5]182 hoist( objectDecl->get_type() );
[22bc276]183 return objectDecl;
[5f98ce5]184 }
185
186 void HoistArrayDimension::hoist( Type * type ) {
[40e636a]187 // if in function, generate const size_t var
[5f98ce5]188 static UniqueName dimensionName( "_array_dim" );
[40e636a]189
[a7c90d4]190 // C doesn't allow variable sized arrays at global scope or for static variables, so don't hoist dimension.
[f9cebb5]191 if ( ! inFunction ) return;
[08d5507b]192 if ( storageClasses.is_static ) return;
[f9cebb5]193
194 if ( ArrayType * arrayType = dynamic_cast< ArrayType * >( type ) ) {
[5f98ce5]195 if ( ! arrayType->get_dimension() ) return; // xxx - recursive call to hoist?
196
[fdd0509]197 // need to resolve array dimensions in order to accurately determine if constexpr
[16ba4a6f]198 if (!useNewAST) {
199 ResolvExpr::findSingleExpression( arrayType->dimension, Validate::SizeType->clone(), indexer );
200 // array is variable-length when the dimension is not constexpr
201 arrayType->isVarLen = ! isConstExpr( arrayType->dimension );
202 }
[300d75b]203 // don't need to hoist dimension if it's definitely pure - only need to if there's potential for side effects.
[5465377c]204 // xxx - hoisting has no side effects anyways, so don't skip since we delay resolve
205 // still try to detect constant expressions
206 if ( ! Tuples::maybeImpure( arrayType->dimension ) ) return;
[5f98ce5]207
[2bfc6b2]208 ObjectDecl * arrayDimension = new ObjectDecl( dimensionName.newName(), storageClasses, LinkageSpec::C, 0, Validate::SizeType->clone(), new SingleInit( arrayType->get_dimension() ) );
[615a096]209 arrayDimension->get_type()->set_const( true );
[5f98ce5]210
211 arrayType->set_dimension( new VariableExpr( arrayDimension ) );
[22bc276]212 declsToAddBefore.push_back( arrayDimension );
[5f98ce5]213
214 hoist( arrayType->get_base() );
215 return;
216 }
217 }
[974906e2]218
[22bc276]219 void HoistArrayDimension::premutate( FunctionDecl * ) {
220 GuardValue( inFunction );
[fdd0509]221 inFunction = true;
[40e636a]222 }
223
[02c7d04]224 void CtorDtor::generateCtorDtor( std::list< Declaration * > & translationUnit ) {
[d24d4e1]225 PassVisitor<CtorDtor> ctordtor;
226 acceptAll( translationUnit, ctordtor );
[974906e2]227 }
228
[bfd4974]229 bool ManagedTypes::isManaged( Type * type ) const {
[22bc276]230 // references are never constructed
[c6976ba]231 if ( dynamic_cast< ReferenceType * >( type ) ) return false;
[0b465a5]232 // need to clear and reset qualifiers when determining if a type is managed
233 ValueGuard< Type::Qualifiers > qualifiers( type->get_qualifiers() );
234 type->get_qualifiers() = Type::Qualifiers();
[ac9ca96]235 if ( TupleType * tupleType = dynamic_cast< TupleType * > ( type ) ) {
236 // tuple is also managed if any of its components are managed
[22bc276]237 if ( std::any_of( tupleType->types.begin(), tupleType->types.end(), [&](Type * type) { return isManaged( type ); }) ) {
[ac9ca96]238 return true;
239 }
240 }
[30b65d8]241 // 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)
[e35f30a]242 return managedTypes.find( SymTab::Mangler::mangleConcrete( type ) ) != managedTypes.end() || GenPoly::isPolyType( type );
[65660bd]243 }
244
[bfd4974]245 bool ManagedTypes::isManaged( ObjectDecl * objDecl ) const {
[1ba88a0]246 Type * type = objDecl->get_type();
247 while ( ArrayType * at = dynamic_cast< ArrayType * >( type ) ) {
[be9aa0f]248 // must always construct VLAs with an initializer, since this is an error in C
249 if ( at->isVarLen && objDecl->init ) return true;
[1ba88a0]250 type = at->get_base();
251 }
[65660bd]252 return isManaged( type );
[1ba88a0]253 }
254
[16ba4a6f]255 // why is this not just on FunctionDecl?
[bfd4974]256 void ManagedTypes::handleDWT( DeclarationWithType * dwt ) {
[1ba88a0]257 // if this function is a user-defined constructor or destructor, mark down the type as "managed"
[bff227f]258 if ( ! LinkageSpec::isOverridable( dwt->get_linkage() ) && CodeGen::isCtorDtor( dwt->get_name() ) ) {
[1ba88a0]259 std::list< DeclarationWithType * > & params = GenPoly::getFunctionType( dwt->get_type() )->get_parameters();
260 assert( ! params.empty() );
[ce8c12f]261 Type * type = InitTweak::getPointerBase( params.front()->get_type() );
262 assert( type );
[e35f30a]263 managedTypes.insert( SymTab::Mangler::mangleConcrete( type ) );
[1ba88a0]264 }
265 }
266
[bfd4974]267 void ManagedTypes::handleStruct( StructDecl * aggregateDecl ) {
268 // don't construct members, but need to take note if there is a managed member,
269 // because that means that this type is also managed
270 for ( Declaration * member : aggregateDecl->get_members() ) {
271 if ( ObjectDecl * field = dynamic_cast< ObjectDecl * >( member ) ) {
272 if ( isManaged( field ) ) {
[e35f30a]273 // generic parameters should not play a role in determining whether a generic type is constructed - construct all generic types, so that
274 // polymorphic constructors make generic types managed types
[bfd4974]275 StructInstType inst( Type::Qualifiers(), aggregateDecl );
[e35f30a]276 managedTypes.insert( SymTab::Mangler::mangleConcrete( &inst ) );
[bfd4974]277 break;
278 }
279 }
280 }
281 }
282
283 void ManagedTypes::beginScope() { managedTypes.beginScope(); }
284 void ManagedTypes::endScope() { managedTypes.endScope(); }
285
[16ba4a6f]286 bool ManagedTypes_new::isManaged( const ast::Type * type ) const {
287 // references are never constructed
288 if ( dynamic_cast< const ast::ReferenceType * >( type ) ) return false;
289 if ( auto tupleType = dynamic_cast< const ast::TupleType * > ( type ) ) {
290 // tuple is also managed if any of its components are managed
291 for (auto & component : tupleType->types) {
292 if (isManaged(component)) return true;
293 }
294 }
295 // need to clear and reset qualifiers when determining if a type is managed
296 // ValueGuard< Type::Qualifiers > qualifiers( type->get_qualifiers() );
297 auto tmp = shallowCopy(type);
298 tmp->qualifiers = {};
299 // delete tmp at return
300 ast::ptr<ast::Type> guard = tmp;
301 // 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)
302 return managedTypes.find( Mangle::mangle( tmp, {Mangle::NoOverrideable | Mangle::NoGenericParams | Mangle::Type} ) ) != managedTypes.end() || GenPoly::isPolyType( tmp );
303 }
304
305 bool ManagedTypes_new::isManaged( const ast::ObjectDecl * objDecl ) const {
306 const ast::Type * type = objDecl->type;
307 while ( auto at = dynamic_cast< const ast::ArrayType * >( type ) ) {
308 // must always construct VLAs with an initializer, since this is an error in C
309 if ( at->isVarLen && objDecl->init ) return true;
310 type = at->base;
311 }
312 return isManaged( type );
313 }
314
315 void ManagedTypes_new::handleDWT( const ast::DeclWithType * dwt ) {
316 // if this function is a user-defined constructor or destructor, mark down the type as "managed"
317 if ( ! dwt->linkage.is_overrideable && CodeGen::isCtorDtor( dwt->name ) ) {
318 auto & params = GenPoly::getFunctionType( dwt->get_type())->params;
319 assert( ! params.empty() );
320 // Type * type = InitTweak::getPointerBase( params.front() );
321 // assert( type );
322 managedTypes.insert( Mangle::mangle( params.front(), {Mangle::NoOverrideable | Mangle::NoGenericParams | Mangle::Type} ) );
323 }
324 }
325
326 void ManagedTypes_new::handleStruct( const ast::StructDecl * aggregateDecl ) {
327 // don't construct members, but need to take note if there is a managed member,
328 // because that means that this type is also managed
329 for ( auto & member : aggregateDecl->members ) {
330 if ( auto field = member.as<ast::ObjectDecl>() ) {
331 if ( isManaged( field ) ) {
332 // generic parameters should not play a role in determining whether a generic type is constructed - construct all generic types, so that
333 // polymorphic constructors make generic types managed types
334 ast::StructInstType inst( aggregateDecl );
335 managedTypes.insert( Mangle::mangle( &inst, {Mangle::NoOverrideable | Mangle::NoGenericParams | Mangle::Type} ) );
336 break;
337 }
338 }
339 }
340 }
341
342 void ManagedTypes_new::beginScope() { managedTypes.beginScope(); }
343 void ManagedTypes_new::endScope() { managedTypes.endScope(); }
344
[092528b]345 ImplicitCtorDtorStmt * genCtorDtor( const std::string & fname, ObjectDecl * objDecl, Expression * arg ) {
346 // call into genImplicitCall from Autogen.h to generate calls to ctor/dtor
347 assertf( objDecl, "genCtorDtor passed null objDecl" );
348 std::list< Statement * > stmts;
[b8524ca]349 InitExpander_old srcParam( maybeClone( arg ) );
[092528b]350 SymTab::genImplicitCall( srcParam, new VariableExpr( objDecl ), fname, back_inserter( stmts ), objDecl );
351 assert( stmts.size() <= 1 );
[e3e16bc]352 return stmts.size() == 1 ? strict_dynamic_cast< ImplicitCtorDtorStmt * >( stmts.front() ) : nullptr;
[490fb92e]353
354 }
355
356 ast::ptr<ast::Stmt> genCtorDtor (const CodeLocation & loc, const std::string & fname, const ast::ObjectDecl * objDecl, const ast::Expr * arg) {
357 assertf(objDecl, "genCtorDtor passed null objDecl");
358 InitExpander_new srcParam(arg);
359 return SymTab::genImplicitCall(srcParam, new ast::VariableExpr(loc, objDecl), loc, fname, objDecl);
[092528b]360 }
361
[f0121d7]362 ConstructorInit * genCtorInit( ObjectDecl * objDecl ) {
363 // call into genImplicitCall from Autogen.h to generate calls to ctor/dtor
364 // for each constructable object
365 std::list< Statement * > ctor;
366 std::list< Statement * > dtor;
367
[b8524ca]368 InitExpander_old srcParam( objDecl->get_init() );
369 InitExpander_old nullParam( (Initializer *)NULL );
[f0121d7]370 SymTab::genImplicitCall( srcParam, new VariableExpr( objDecl ), "?{}", back_inserter( ctor ), objDecl );
371 SymTab::genImplicitCall( nullParam, new VariableExpr( objDecl ), "^?{}", front_inserter( dtor ), objDecl, false );
372
373 // Currently genImplicitCall produces a single Statement - a CompoundStmt
374 // which wraps everything that needs to happen. As such, it's technically
375 // possible to use a Statement ** in the above calls, but this is inherently
376 // unsafe, so instead we take the slightly less efficient route, but will be
377 // immediately informed if somehow the above assumption is broken. In this case,
378 // we could always wrap the list of statements at this point with a CompoundStmt,
379 // but it seems reasonable at the moment for this to be done by genImplicitCall
380 // itself. It is possible that genImplicitCall produces no statements (e.g. if
381 // an array type does not have a dimension). In this case, it's fine to ignore
382 // the object for the purposes of construction.
383 assert( ctor.size() == dtor.size() && ctor.size() <= 1 );
384 if ( ctor.size() == 1 ) {
385 // need to remember init expression, in case no ctors exist
386 // if ctor does exist, want to use ctor expression instead of init
387 // push this decision to the resolver
388 assert( dynamic_cast< ImplicitCtorDtorStmt * > ( ctor.front() ) && dynamic_cast< ImplicitCtorDtorStmt * > ( dtor.front() ) );
389 return new ConstructorInit( ctor.front(), dtor.front(), objDecl->get_init() );
390 }
391 return nullptr;
392 }
393
[d24d4e1]394 void CtorDtor::previsit( ObjectDecl * objDecl ) {
[bfd4974]395 managedTypes.handleDWT( objDecl );
[1ba88a0]396 // hands off if @=, extern, builtin, etc.
[a4dd728]397 // even if unmanaged, try to construct global or static if initializer is not constexpr, since this is not legal C
[bfd4974]398 if ( tryConstruct( objDecl ) && ( managedTypes.isManaged( objDecl ) || ((! inFunction || objDecl->get_storageClasses().is_static ) && ! isConstExpr( objDecl->get_init() ) ) ) ) {
[1ba88a0]399 // constructed objects cannot be designated
[a16764a6]400 if ( isDesignated( objDecl->get_init() ) ) SemanticError( objDecl, "Cannot include designations in the initializer for a managed Object. If this is really what you want, then initialize with @=.\n" );
[dcd73d1]401 // constructed objects should not have initializers nested too deeply
[a16764a6]402 if ( ! checkInitDepth( objDecl ) ) SemanticError( objDecl, "Managed object's initializer is too deep " );
[1ba88a0]403
[f0121d7]404 objDecl->set_init( genCtorInit( objDecl ) );
[974906e2]405 }
406 }
407
[d24d4e1]408 void CtorDtor::previsit( FunctionDecl *functionDecl ) {
[22bc276]409 visit_children = false; // do not try and construct parameters or forall parameters
[d24d4e1]410 GuardValue( inFunction );
[1ba88a0]411 inFunction = true;
412
[bfd4974]413 managedTypes.handleDWT( functionDecl );
[1ba88a0]414
[d24d4e1]415 GuardScope( managedTypes );
[1ba88a0]416 // go through assertions and recursively add seen ctor/dtors
[8c49c0e]417 for ( auto & tyDecl : functionDecl->get_functionType()->get_forall() ) {
[1ba88a0]418 for ( DeclarationWithType *& assertion : tyDecl->get_assertions() ) {
[bfd4974]419 managedTypes.handleDWT( assertion );
[1ba88a0]420 }
421 }
422
[22bc276]423 maybeAccept( functionDecl->get_statements(), *visitor );
[02c7d04]424 }
[1ba88a0]425
[d24d4e1]426 void CtorDtor::previsit( StructDecl *aggregateDecl ) {
427 visit_children = false; // do not try to construct and destruct aggregate members
428
[bfd4974]429 managedTypes.handleStruct( aggregateDecl );
[1ba88a0]430 }
431
[22bc276]432 void CtorDtor::previsit( CompoundStmt * ) {
[d24d4e1]433 GuardScope( managedTypes );
[1ba88a0]434 }
[234b1cb]435
[b8524ca]436ast::ConstructorInit * genCtorInit( const CodeLocation & loc, const ast::ObjectDecl * objDecl ) {
437 // call into genImplicitCall from Autogen.h to generate calls to ctor/dtor for each
438 // constructable object
439 InitExpander_new srcParam{ objDecl->init }, nullParam{ (const ast::Init *)nullptr };
[16ba4a6f]440 ast::ptr< ast::Expr > dstParam = new ast::VariableExpr(loc, objDecl);
[b8524ca]441
442 ast::ptr< ast::Stmt > ctor = SymTab::genImplicitCall(
[16ba4a6f]443 srcParam, dstParam, loc, "?{}", objDecl );
[b8524ca]444 ast::ptr< ast::Stmt > dtor = SymTab::genImplicitCall(
[16ba4a6f]445 nullParam, dstParam, loc, "^?{}", objDecl,
[b8524ca]446 SymTab::LoopBackward );
447
448 // check that either both ctor and dtor are present, or neither
449 assert( (bool)ctor == (bool)dtor );
450
451 if ( ctor ) {
452 // need to remember init expression, in case no ctors exist. If ctor does exist, want to
453 // use ctor expression instead of init.
454 ctor.strict_as< ast::ImplicitCtorDtorStmt >();
455 dtor.strict_as< ast::ImplicitCtorDtorStmt >();
456
457 return new ast::ConstructorInit{ loc, ctor, dtor, objDecl->init };
458 }
459
[234b1cb]460 return nullptr;
461}
462
[42e2ad7]463} // namespace InitTweak
464
[51587aa]465// Local Variables: //
466// tab-width: 4 //
467// mode: c++ //
468// compile-command: "make install" //
469// End: //
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