source: src/SymTab/Indexer.cc@ dbc733e

ADT aaron-thesis arm-eh ast-experimental cleanup-dtors deferred_resn demangler enum forall-pointer-decay jacob/cs343-translation jenkins-sandbox new-ast new-ast-unique-expr new-env no_list persistent-indexer pthread-emulation qualifiedEnum resolv-new with_gc
Last change on this file since dbc733e was 5809461, checked in by Rob Schluntz <rschlunt@…>, 8 years ago

Fix handling of GCC label address and computed goto

  • Property mode set to 100644
File size: 35.7 KB
Line 
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//
7// Indexer.cc --
8//
9// Author : Richard C. Bilson
10// Created On : Sun May 17 21:37:33 2015
11// Last Modified By : Peter A. Buhr
12// Last Modified On : Thu Aug 17 16:08:40 2017
13// Update Count : 20
14//
15
16#include "Indexer.h"
17
18#include <cassert> // for assert, safe_dynamic_cast
19#include <iostream> // for operator<<, basic_ostream, ostream
20#include <string> // for string, operator<<, operator!=
21#include <unordered_map> // for operator!=, unordered_map<>::const...
22#include <unordered_set> // for unordered_set
23#include <utility> // for pair, make_pair, move
24
25#include "CodeGen/OperatorTable.h" // for isCtorDtor, isCtorDtorAssign
26#include "Common/SemanticError.h" // for SemanticError
27#include "Common/utility.h" // for cloneAll
28#include "InitTweak/InitTweak.h" // for isConstructor, isCopyFunction, isC...
29#include "Mangler.h" // for Mangler
30#include "Parser/LinkageSpec.h" // for isMangled, isOverridable, Spec
31#include "ResolvExpr/typeops.h" // for typesCompatible
32#include "SynTree/Constant.h" // for Constant
33#include "SynTree/Declaration.h" // for DeclarationWithType, FunctionDecl
34#include "SynTree/Expression.h" // for Expression, ImplicitCopyCtorExpr
35#include "SynTree/Initializer.h" // for Initializer
36#include "SynTree/Statement.h" // for CompoundStmt, Statement, ForStmt (...
37#include "SynTree/Type.h" // for Type, StructInstType, UnionInstType
38
39#define debugPrint(x) if ( doDebug ) { std::cout << x; }
40
41namespace SymTab {
42 struct NewScope {
43 NewScope( SymTab::Indexer & indexer ) : indexer( indexer ) { indexer.enterScope(); }
44 ~NewScope() { indexer.leaveScope(); }
45 SymTab::Indexer & indexer;
46 };
47
48 template< typename TreeType, typename VisitorType >
49 inline void acceptNewScope( TreeType *tree, VisitorType &visitor ) {
50 visitor.enterScope();
51 maybeAccept( tree, visitor );
52 visitor.leaveScope();
53 }
54
55 typedef std::unordered_map< std::string, DeclarationWithType* > MangleTable;
56 typedef std::unordered_map< std::string, MangleTable > IdTable;
57 typedef std::unordered_map< std::string, NamedTypeDecl* > TypeTable;
58 typedef std::unordered_map< std::string, StructDecl* > StructTable;
59 typedef std::unordered_map< std::string, EnumDecl* > EnumTable;
60 typedef std::unordered_map< std::string, UnionDecl* > UnionTable;
61 typedef std::unordered_map< std::string, TraitDecl* > TraitTable;
62
63 void dump( const IdTable &table, std::ostream &os ) {
64 for ( IdTable::const_iterator id = table.begin(); id != table.end(); ++id ) {
65 for ( MangleTable::const_iterator mangle = id->second.begin(); mangle != id->second.end(); ++mangle ) {
66 os << mangle->second << std::endl;
67 }
68 }
69 }
70
71 template< typename Decl >
72 void dump( const std::unordered_map< std::string, Decl* > &table, std::ostream &os ) {
73 for ( typename std::unordered_map< std::string, Decl* >::const_iterator it = table.begin(); it != table.end(); ++it ) {
74 os << it->second << std::endl;
75 } // for
76 }
77
78 struct Indexer::Impl {
79 Impl( unsigned long _scope ) : refCount(1), scope( _scope ), size( 0 ), base(),
80 idTable(), typeTable(), structTable(), enumTable(), unionTable(), traitTable() {}
81 Impl( unsigned long _scope, Indexer &&_base ) : refCount(1), scope( _scope ), size( 0 ), base( _base ),
82 idTable(), typeTable(), structTable(), enumTable(), unionTable(), traitTable() {}
83 unsigned long refCount; ///< Number of references to these tables
84 unsigned long scope; ///< Scope these tables are associated with
85 unsigned long size; ///< Number of elements stored in this table
86 const Indexer base; ///< Base indexer this extends
87
88 IdTable idTable; ///< Identifier namespace
89 TypeTable typeTable; ///< Type namespace
90 StructTable structTable; ///< Struct namespace
91 EnumTable enumTable; ///< Enum namespace
92 UnionTable unionTable; ///< Union namespace
93 TraitTable traitTable; ///< Trait namespace
94 };
95
96 Indexer::Impl *Indexer::newRef( Indexer::Impl *toClone ) {
97 if ( ! toClone ) return 0;
98
99 // shorten the search chain by skipping empty links
100 Indexer::Impl *ret = toClone->size == 0 ? toClone->base.tables : toClone;
101 if ( ret ) { ++ret->refCount; }
102
103 return ret;
104 }
105
106 void Indexer::deleteRef( Indexer::Impl *toFree ) {
107 if ( ! toFree ) return;
108
109 if ( --toFree->refCount == 0 ) delete toFree;
110 }
111
112 void Indexer::removeSpecialOverrides( const std::string &id, std::list< DeclarationWithType * > & out ) const {
113 // only need to perform this step for constructors, destructors, and assignment functions
114 if ( ! CodeGen::isCtorDtorAssign( id ) ) return;
115
116 // helpful data structure
117 struct ValueType {
118 struct DeclBall {
119 FunctionDecl * decl;
120 bool isUserDefinedFunc; // properties for this particular decl
121 bool isDefaultCtor;
122 bool isDtor;
123 bool isCopyFunc;
124 };
125 // properties for this type
126 bool existsUserDefinedFunc = false; // any user-defined function found
127 bool existsUserDefinedCtor = false; // any user-defined constructor found
128 bool existsUserDefinedDtor = false; // any user-defined destructor found
129 bool existsUserDefinedCopyFunc = false; // user-defined copy ctor found
130 bool existsUserDefinedDefaultCtor = false; // user-defined default ctor found
131 std::list< DeclBall > decls;
132
133 // another FunctionDecl for the current type was found - determine
134 // if it has special properties and update data structure accordingly
135 ValueType & operator+=( FunctionDecl * function ) {
136 bool isUserDefinedFunc = ! LinkageSpec::isOverridable( function->get_linkage() );
137 bool isDefaultCtor = InitTweak::isDefaultConstructor( function );
138 bool isDtor = InitTweak::isDestructor( function );
139 bool isCopyFunc = InitTweak::isCopyFunction( function, function->get_name() );
140 decls.push_back( DeclBall{ function, isUserDefinedFunc, isDefaultCtor, isDtor, isCopyFunc } );
141 existsUserDefinedFunc = existsUserDefinedFunc || isUserDefinedFunc;
142 existsUserDefinedCtor = existsUserDefinedCtor || (isUserDefinedFunc && CodeGen::isConstructor( function->get_name() ) );
143 existsUserDefinedDtor = existsUserDefinedDtor || (isUserDefinedFunc && isDtor);
144 existsUserDefinedCopyFunc = existsUserDefinedCopyFunc || (isUserDefinedFunc && isCopyFunc);
145 existsUserDefinedDefaultCtor = existsUserDefinedDefaultCtor || (isUserDefinedFunc && isDefaultCtor);
146 return *this;
147 }
148 }; // ValueType
149
150 std::list< DeclarationWithType * > copy;
151 copy.splice( copy.end(), out );
152
153 // organize discovered declarations by type
154 std::unordered_map< std::string, ValueType > funcMap;
155 for ( DeclarationWithType * decl : copy ) {
156 if ( FunctionDecl * function = dynamic_cast< FunctionDecl * >( decl ) ) {
157 std::list< DeclarationWithType * > & params = function->get_functionType()->get_parameters();
158 assert( ! params.empty() );
159 // use base type of pointer, so that qualifiers on the pointer type aren't considered.
160 Type * base = InitTweak::getPointerBase( params.front()->get_type() );
161 assert( base );
162 funcMap[ Mangler::mangle( base ) ] += function;
163 } else {
164 out.push_back( decl );
165 }
166 }
167
168 // if a type contains user defined ctor/dtor/assign, then special rules trigger, which determine
169 // the set of ctor/dtor/assign that are seen by the requester. In particular, if the user defines
170 // a default ctor, then the generated default ctor should never be seen, likewise for copy ctor
171 // and dtor. If the user defines any ctor/dtor, then no generated field ctors should be seen.
172 // If the user defines any ctor then the generated default ctor should not be seen (intrinsic default
173 // ctor must be overridden exactly).
174 for ( std::pair< const std::string, ValueType > & pair : funcMap ) {
175 ValueType & val = pair.second;
176 for ( ValueType::DeclBall ball : val.decls ) {
177 bool noUserDefinedFunc = ! val.existsUserDefinedFunc;
178 bool isUserDefinedFunc = ball.isUserDefinedFunc;
179 bool isAcceptableDefaultCtor = (! val.existsUserDefinedCtor || (! val.existsUserDefinedDefaultCtor && ball.decl->get_linkage() == LinkageSpec::Intrinsic)) && ball.isDefaultCtor; // allow default constructors only when no user-defined constructors exist, except in the case of intrinsics, which require exact overrides
180 bool isAcceptableCopyFunc = ! val.existsUserDefinedCopyFunc && ball.isCopyFunc; // handles copy ctor and assignment operator
181 bool isAcceptableDtor = ! val.existsUserDefinedDtor && ball.isDtor;
182 if ( noUserDefinedFunc || isUserDefinedFunc || isAcceptableDefaultCtor || isAcceptableCopyFunc || isAcceptableDtor ) {
183 // decl conforms to the rules described above, so it should be seen by the requester
184 out.push_back( ball.decl );
185 }
186 }
187 }
188 }
189
190 void Indexer::makeWritable() {
191 if ( ! tables ) {
192 // create indexer if not yet set
193 tables = new Indexer::Impl( scope );
194 } else if ( tables->refCount > 1 || tables->scope != scope ) {
195 // make this indexer the base of a fresh indexer at the current scope
196 tables = new Indexer::Impl( scope, std::move( *this ) );
197 }
198 }
199
200 Indexer::Indexer( bool _doDebug ) : tables( 0 ), scope( 0 ), doDebug( _doDebug ) {}
201
202 Indexer::Indexer( const Indexer &that ) : tables( newRef( that.tables ) ), scope( that.scope ), doDebug( that.doDebug ) {}
203
204 Indexer::Indexer( Indexer &&that ) : tables( that.tables ), scope( that.scope ), doDebug( that.doDebug ) {
205 that.tables = 0;
206 }
207
208 Indexer::~Indexer() {
209 deleteRef( tables );
210 }
211
212 Indexer& Indexer::operator= ( const Indexer &that ) {
213 deleteRef( tables );
214
215 tables = newRef( that.tables );
216 scope = that.scope;
217 doDebug = that.doDebug;
218
219 return *this;
220 }
221
222 Indexer& Indexer::operator= ( Indexer &&that ) {
223 deleteRef( tables );
224
225 tables = that.tables;
226 scope = that.scope;
227 doDebug = that.doDebug;
228
229 that.tables = 0;
230
231 return *this;
232 }
233
234 void Indexer::visit( ObjectDecl *objectDecl ) {
235 enterScope();
236 maybeAccept( objectDecl->get_type(), *this );
237 leaveScope();
238 maybeAccept( objectDecl->get_init(), *this );
239 maybeAccept( objectDecl->get_bitfieldWidth(), *this );
240 if ( objectDecl->get_name() != "" ) {
241 debugPrint( "Adding object " << objectDecl->get_name() << std::endl );
242 addId( objectDecl );
243 } // if
244 }
245
246 void Indexer::visit( FunctionDecl *functionDecl ) {
247 if ( functionDecl->get_name() == "" ) return;
248 debugPrint( "Adding function " << functionDecl->get_name() << std::endl );
249 addId( functionDecl );
250 enterScope();
251 maybeAccept( functionDecl->get_functionType(), *this );
252 maybeAccept( functionDecl->get_statements(), *this );
253 leaveScope();
254 }
255
256
257// A NOTE ON THE ORDER OF TRAVERSAL
258//
259// Types and typedefs have their base types visited before they are added to the type table. This is ok, since there is
260// no such thing as a recursive type or typedef.
261//
262// typedef struct { T *x; } T; // never allowed
263//
264// for structs/unions, it is possible to have recursion, so the decl should be added as if it's incomplete to begin, the
265// members are traversed, and then the complete type should be added (assuming the type is completed by this particular
266// declaration).
267//
268// struct T { struct T *x; }; // allowed
269//
270// It is important to add the complete type to the symbol table *after* the members/base has been traversed, since that
271// traversal may modify the definition of the type and these modifications should be visible when the symbol table is
272// queried later in this pass.
273//
274// TODO: figure out whether recursive contexts are sensible/possible/reasonable.
275
276
277 void Indexer::visit( TypeDecl *typeDecl ) {
278 // see A NOTE ON THE ORDER OF TRAVERSAL, above
279 // note that assertions come after the type is added to the symtab, since they are not part of the type proper
280 // and may depend on the type itself
281 enterScope();
282 acceptAll( typeDecl->get_parameters(), *this );
283 maybeAccept( typeDecl->get_base(), *this );
284 leaveScope();
285 debugPrint( "Adding type " << typeDecl->get_name() << std::endl );
286 addType( typeDecl );
287 acceptAll( typeDecl->get_assertions(), *this );
288 acceptNewScope( typeDecl->get_init(), *this );
289 }
290
291 void Indexer::visit( TypedefDecl *typeDecl ) {
292 enterScope();
293 acceptAll( typeDecl->get_parameters(), *this );
294 maybeAccept( typeDecl->get_base(), *this );
295 leaveScope();
296 debugPrint( "Adding typedef " << typeDecl->get_name() << std::endl );
297 addType( typeDecl );
298 }
299
300 void Indexer::visit( StructDecl *aggregateDecl ) {
301 // make up a forward declaration and add it before processing the members
302 // needs to be on the heap because addStruct saves the pointer
303 StructDecl &fwdDecl = *new StructDecl( aggregateDecl->get_name() );
304 cloneAll( aggregateDecl->get_parameters(), fwdDecl.get_parameters() );
305 debugPrint( "Adding fwd decl for struct " << fwdDecl.get_name() << std::endl );
306 addStruct( &fwdDecl );
307
308 enterScope();
309 acceptAll( aggregateDecl->get_parameters(), *this );
310 acceptAll( aggregateDecl->get_members(), *this );
311 leaveScope();
312
313 debugPrint( "Adding struct " << aggregateDecl->get_name() << std::endl );
314 // this addition replaces the forward declaration
315 addStruct( aggregateDecl );
316 }
317
318 void Indexer::visit( UnionDecl *aggregateDecl ) {
319 // make up a forward declaration and add it before processing the members
320 UnionDecl fwdDecl( aggregateDecl->get_name() );
321 cloneAll( aggregateDecl->get_parameters(), fwdDecl.get_parameters() );
322 debugPrint( "Adding fwd decl for union " << fwdDecl.get_name() << std::endl );
323 addUnion( &fwdDecl );
324
325 enterScope();
326 acceptAll( aggregateDecl->get_parameters(), *this );
327 acceptAll( aggregateDecl->get_members(), *this );
328 leaveScope();
329
330 debugPrint( "Adding union " << aggregateDecl->get_name() << std::endl );
331 addUnion( aggregateDecl );
332 }
333
334 void Indexer::visit( EnumDecl *aggregateDecl ) {
335 debugPrint( "Adding enum " << aggregateDecl->get_name() << std::endl );
336 addEnum( aggregateDecl );
337 // unlike structs, contexts, and unions, enums inject their members into the global scope
338 acceptAll( aggregateDecl->get_members(), *this );
339 }
340
341 void Indexer::visit( TraitDecl *aggregateDecl ) {
342 enterScope();
343 acceptAll( aggregateDecl->get_parameters(), *this );
344 acceptAll( aggregateDecl->get_members(), *this );
345 leaveScope();
346
347 debugPrint( "Adding trait " << aggregateDecl->get_name() << std::endl );
348 addTrait( aggregateDecl );
349 }
350
351 void Indexer::visit( CompoundStmt *compoundStmt ) {
352 enterScope();
353 acceptAll( compoundStmt->get_kids(), *this );
354 leaveScope();
355 }
356
357 void Indexer::visit( IfStmt *ifStmt ) {
358 // for statements introduce a level of scope
359 enterScope();
360 Visitor::visit( ifStmt );
361 leaveScope();
362 }
363
364 void Indexer::visit( ForStmt *forStmt ) {
365 // for statements introduce a level of scope
366 enterScope();
367 Visitor::visit( forStmt );
368 leaveScope();
369 }
370
371 void Indexer::visit( CatchStmt *catchStmt ) {
372 // catch statements introduce a level of scope (for the caught exception)
373 enterScope();
374 Visitor::visit( catchStmt );
375 leaveScope();
376 }
377
378 void Indexer::visit( ApplicationExpr *applicationExpr ) {
379 acceptNewScope( applicationExpr->get_result(), *this );
380 maybeAccept( applicationExpr->get_function(), *this );
381 acceptAll( applicationExpr->get_args(), *this );
382 }
383
384 void Indexer::visit( UntypedExpr *untypedExpr ) {
385 acceptNewScope( untypedExpr->get_result(), *this );
386 acceptAll( untypedExpr->get_args(), *this );
387 }
388
389 void Indexer::visit( NameExpr *nameExpr ) {
390 acceptNewScope( nameExpr->get_result(), *this );
391 }
392
393 void Indexer::visit( AddressExpr *addressExpr ) {
394 acceptNewScope( addressExpr->get_result(), *this );
395 maybeAccept( addressExpr->get_arg(), *this );
396 }
397
398 void Indexer::visit( LabelAddressExpr *labAddressExpr ) {
399 acceptNewScope( labAddressExpr->get_result(), *this );
400 }
401
402 void Indexer::visit( CastExpr *castExpr ) {
403 acceptNewScope( castExpr->get_result(), *this );
404 maybeAccept( castExpr->get_arg(), *this );
405 }
406
407 void Indexer::visit( UntypedMemberExpr *memberExpr ) {
408 acceptNewScope( memberExpr->get_result(), *this );
409 maybeAccept( memberExpr->get_aggregate(), *this );
410 }
411
412 void Indexer::visit( MemberExpr *memberExpr ) {
413 acceptNewScope( memberExpr->get_result(), *this );
414 maybeAccept( memberExpr->get_aggregate(), *this );
415 }
416
417 void Indexer::visit( VariableExpr *variableExpr ) {
418 acceptNewScope( variableExpr->get_result(), *this );
419 }
420
421 void Indexer::visit( ConstantExpr *constantExpr ) {
422 acceptNewScope( constantExpr->get_result(), *this );
423 maybeAccept( constantExpr->get_constant(), *this );
424 }
425
426 void Indexer::visit( SizeofExpr *sizeofExpr ) {
427 acceptNewScope( sizeofExpr->get_result(), *this );
428 if ( sizeofExpr->get_isType() ) {
429 maybeAccept( sizeofExpr->get_type(), *this );
430 } else {
431 maybeAccept( sizeofExpr->get_expr(), *this );
432 }
433 }
434
435 void Indexer::visit( AlignofExpr *alignofExpr ) {
436 acceptNewScope( alignofExpr->get_result(), *this );
437 if ( alignofExpr->get_isType() ) {
438 maybeAccept( alignofExpr->get_type(), *this );
439 } else {
440 maybeAccept( alignofExpr->get_expr(), *this );
441 }
442 }
443
444 void Indexer::visit( UntypedOffsetofExpr *offsetofExpr ) {
445 acceptNewScope( offsetofExpr->get_result(), *this );
446 maybeAccept( offsetofExpr->get_type(), *this );
447 }
448
449 void Indexer::visit( OffsetofExpr *offsetofExpr ) {
450 acceptNewScope( offsetofExpr->get_result(), *this );
451 maybeAccept( offsetofExpr->get_type(), *this );
452 maybeAccept( offsetofExpr->get_member(), *this );
453 }
454
455 void Indexer::visit( OffsetPackExpr *offsetPackExpr ) {
456 acceptNewScope( offsetPackExpr->get_result(), *this );
457 maybeAccept( offsetPackExpr->get_type(), *this );
458 }
459
460 void Indexer::visit( AttrExpr *attrExpr ) {
461 acceptNewScope( attrExpr->get_result(), *this );
462 if ( attrExpr->get_isType() ) {
463 maybeAccept( attrExpr->get_type(), *this );
464 } else {
465 maybeAccept( attrExpr->get_expr(), *this );
466 }
467 }
468
469 void Indexer::visit( LogicalExpr *logicalExpr ) {
470 acceptNewScope( logicalExpr->get_result(), *this );
471 maybeAccept( logicalExpr->get_arg1(), *this );
472 maybeAccept( logicalExpr->get_arg2(), *this );
473 }
474
475 void Indexer::visit( ConditionalExpr *conditionalExpr ) {
476 acceptNewScope( conditionalExpr->get_result(), *this );
477 maybeAccept( conditionalExpr->get_arg1(), *this );
478 maybeAccept( conditionalExpr->get_arg2(), *this );
479 maybeAccept( conditionalExpr->get_arg3(), *this );
480 }
481
482 void Indexer::visit( CommaExpr *commaExpr ) {
483 acceptNewScope( commaExpr->get_result(), *this );
484 maybeAccept( commaExpr->get_arg1(), *this );
485 maybeAccept( commaExpr->get_arg2(), *this );
486 }
487
488 void Indexer::visit( TypeExpr *typeExpr ) {
489 acceptNewScope( typeExpr->get_result(), *this );
490 maybeAccept( typeExpr->get_type(), *this );
491 }
492
493 void Indexer::visit( AsmExpr *asmExpr ) {
494 maybeAccept( asmExpr->get_inout(), *this );
495 maybeAccept( asmExpr->get_constraint(), *this );
496 maybeAccept( asmExpr->get_operand(), *this );
497 }
498
499 void Indexer::visit( ImplicitCopyCtorExpr *impCpCtorExpr ) {
500 acceptNewScope( impCpCtorExpr->get_result(), *this );
501 maybeAccept( impCpCtorExpr->get_callExpr(), *this );
502 acceptAll( impCpCtorExpr->get_tempDecls(), *this );
503 acceptAll( impCpCtorExpr->get_returnDecls(), *this );
504 acceptAll( impCpCtorExpr->get_dtors(), *this );
505 }
506
507 void Indexer::visit( ConstructorExpr * ctorExpr ) {
508 acceptNewScope( ctorExpr->get_result(), *this );
509 maybeAccept( ctorExpr->get_callExpr(), *this );
510 }
511
512 void Indexer::visit( CompoundLiteralExpr *compLitExpr ) {
513 acceptNewScope( compLitExpr->get_result(), *this );
514 maybeAccept( compLitExpr->get_initializer(), *this );
515 }
516
517 void Indexer::visit( RangeExpr *rangeExpr ) {
518 maybeAccept( rangeExpr->get_low(), *this );
519 maybeAccept( rangeExpr->get_high(), *this );
520 }
521
522 void Indexer::visit( UntypedTupleExpr *tupleExpr ) {
523 acceptNewScope( tupleExpr->get_result(), *this );
524 acceptAll( tupleExpr->get_exprs(), *this );
525 }
526
527 void Indexer::visit( TupleExpr *tupleExpr ) {
528 acceptNewScope( tupleExpr->get_result(), *this );
529 acceptAll( tupleExpr->get_exprs(), *this );
530 }
531
532 void Indexer::visit( TupleIndexExpr *tupleExpr ) {
533 acceptNewScope( tupleExpr->get_result(), *this );
534 maybeAccept( tupleExpr->get_tuple(), *this );
535 }
536
537 void Indexer::visit( TupleAssignExpr *tupleExpr ) {
538 acceptNewScope( tupleExpr->get_result(), *this );
539 maybeAccept( tupleExpr->get_stmtExpr(), *this );
540 }
541
542 void Indexer::visit( StmtExpr *stmtExpr ) {
543 acceptNewScope( stmtExpr->get_result(), *this );
544 maybeAccept( stmtExpr->get_statements(), *this );
545 acceptAll( stmtExpr->get_returnDecls(), *this );
546 acceptAll( stmtExpr->get_dtors(), *this );
547 }
548
549 void Indexer::visit( UniqueExpr *uniqueExpr ) {
550 acceptNewScope( uniqueExpr->get_result(), *this );
551 maybeAccept( uniqueExpr->get_expr(), *this );
552 }
553
554
555 void Indexer::visit( TraitInstType *traitInst ) {
556 acceptAll( traitInst->get_parameters(), *this );
557 }
558
559 void Indexer::visit( StructInstType *structInst ) {
560 if ( ! lookupStruct( structInst->get_name() ) ) {
561 debugPrint( "Adding struct " << structInst->get_name() << " from implicit forward declaration" << std::endl );
562 addStruct( structInst->get_name() );
563 }
564 enterScope();
565 acceptAll( structInst->get_parameters(), *this );
566 leaveScope();
567 }
568
569 void Indexer::visit( UnionInstType *unionInst ) {
570 if ( ! lookupUnion( unionInst->get_name() ) ) {
571 debugPrint( "Adding union " << unionInst->get_name() << " from implicit forward declaration" << std::endl );
572 addUnion( unionInst->get_name() );
573 }
574 enterScope();
575 acceptAll( unionInst->get_parameters(), *this );
576 leaveScope();
577 }
578
579 void Indexer::lookupId( const std::string &id, std::list< DeclarationWithType* > &out ) const {
580 std::unordered_set< std::string > foundMangleNames;
581
582 Indexer::Impl *searchTables = tables;
583 while ( searchTables ) {
584
585 IdTable::const_iterator decls = searchTables->idTable.find( id );
586 if ( decls != searchTables->idTable.end() ) {
587 const MangleTable &mangleTable = decls->second;
588 for ( MangleTable::const_iterator decl = mangleTable.begin(); decl != mangleTable.end(); ++decl ) {
589 // mark the mangled name as found, skipping this insertion if a declaration for that name has already been found
590 if ( foundMangleNames.insert( decl->first ).second == false ) continue;
591
592 out.push_back( decl->second );
593 }
594 }
595
596 // get declarations from base indexers
597 searchTables = searchTables->base.tables;
598 }
599
600 // some special functions, e.g. constructors and destructors
601 // remove autogenerated functions when they are defined so that
602 // they can never be matched
603 removeSpecialOverrides( id, out );
604 }
605
606 NamedTypeDecl *Indexer::lookupType( const std::string &id ) const {
607 if ( ! tables ) return 0;
608
609 TypeTable::const_iterator ret = tables->typeTable.find( id );
610 return ret != tables->typeTable.end() ? ret->second : tables->base.lookupType( id );
611 }
612
613 StructDecl *Indexer::lookupStruct( const std::string &id ) const {
614 if ( ! tables ) return 0;
615
616 StructTable::const_iterator ret = tables->structTable.find( id );
617 return ret != tables->structTable.end() ? ret->second : tables->base.lookupStruct( id );
618 }
619
620 EnumDecl *Indexer::lookupEnum( const std::string &id ) const {
621 if ( ! tables ) return 0;
622
623 EnumTable::const_iterator ret = tables->enumTable.find( id );
624 return ret != tables->enumTable.end() ? ret->second : tables->base.lookupEnum( id );
625 }
626
627 UnionDecl *Indexer::lookupUnion( const std::string &id ) const {
628 if ( ! tables ) return 0;
629
630 UnionTable::const_iterator ret = tables->unionTable.find( id );
631 return ret != tables->unionTable.end() ? ret->second : tables->base.lookupUnion( id );
632 }
633
634 TraitDecl *Indexer::lookupTrait( const std::string &id ) const {
635 if ( ! tables ) return 0;
636
637 TraitTable::const_iterator ret = tables->traitTable.find( id );
638 return ret != tables->traitTable.end() ? ret->second : tables->base.lookupTrait( id );
639 }
640
641 DeclarationWithType *Indexer::lookupIdAtScope( const std::string &id, const std::string &mangleName, unsigned long scope ) const {
642 if ( ! tables ) return 0;
643 if ( tables->scope < scope ) return 0;
644
645 IdTable::const_iterator decls = tables->idTable.find( id );
646 if ( decls != tables->idTable.end() ) {
647 const MangleTable &mangleTable = decls->second;
648 MangleTable::const_iterator decl = mangleTable.find( mangleName );
649 if ( decl != mangleTable.end() ) return decl->second;
650 }
651
652 return tables->base.lookupIdAtScope( id, mangleName, scope );
653 }
654
655 bool Indexer::hasIncompatibleCDecl( const std::string &id, const std::string &mangleName, unsigned long scope ) const {
656 if ( ! tables ) return false;
657 if ( tables->scope < scope ) return false;
658
659 IdTable::const_iterator decls = tables->idTable.find( id );
660 if ( decls != tables->idTable.end() ) {
661 const MangleTable &mangleTable = decls->second;
662 for ( MangleTable::const_iterator decl = mangleTable.begin(); decl != mangleTable.end(); ++decl ) {
663 // check for C decls with the same name, skipping those with a compatible type (by mangleName)
664 if ( ! LinkageSpec::isMangled( decl->second->get_linkage() ) && decl->first != mangleName ) return true;
665 }
666 }
667
668 return tables->base.hasIncompatibleCDecl( id, mangleName, scope );
669 }
670
671 bool Indexer::hasCompatibleCDecl( const std::string &id, const std::string &mangleName, unsigned long scope ) const {
672 if ( ! tables ) return false;
673 if ( tables->scope < scope ) return false;
674
675 IdTable::const_iterator decls = tables->idTable.find( id );
676 if ( decls != tables->idTable.end() ) {
677 const MangleTable &mangleTable = decls->second;
678 for ( MangleTable::const_iterator decl = mangleTable.begin(); decl != mangleTable.end(); ++decl ) {
679 // check for C decls with the same name, skipping
680 // those with an incompatible type (by mangleName)
681 if ( ! LinkageSpec::isMangled( decl->second->get_linkage() ) && decl->first == mangleName ) return true;
682 }
683 }
684
685 return tables->base.hasCompatibleCDecl( id, mangleName, scope );
686 }
687
688 NamedTypeDecl *Indexer::lookupTypeAtScope( const std::string &id, unsigned long scope ) const {
689 if ( ! tables ) return 0;
690 if ( tables->scope < scope ) return 0;
691
692 TypeTable::const_iterator ret = tables->typeTable.find( id );
693 return ret != tables->typeTable.end() ? ret->second : tables->base.lookupTypeAtScope( id, scope );
694 }
695
696 StructDecl *Indexer::lookupStructAtScope( const std::string &id, unsigned long scope ) const {
697 if ( ! tables ) return 0;
698 if ( tables->scope < scope ) return 0;
699
700 StructTable::const_iterator ret = tables->structTable.find( id );
701 return ret != tables->structTable.end() ? ret->second : tables->base.lookupStructAtScope( id, scope );
702 }
703
704 EnumDecl *Indexer::lookupEnumAtScope( const std::string &id, unsigned long scope ) const {
705 if ( ! tables ) return 0;
706 if ( tables->scope < scope ) return 0;
707
708 EnumTable::const_iterator ret = tables->enumTable.find( id );
709 return ret != tables->enumTable.end() ? ret->second : tables->base.lookupEnumAtScope( id, scope );
710 }
711
712 UnionDecl *Indexer::lookupUnionAtScope( const std::string &id, unsigned long scope ) const {
713 if ( ! tables ) return 0;
714 if ( tables->scope < scope ) return 0;
715
716 UnionTable::const_iterator ret = tables->unionTable.find( id );
717 return ret != tables->unionTable.end() ? ret->second : tables->base.lookupUnionAtScope( id, scope );
718 }
719
720 TraitDecl *Indexer::lookupTraitAtScope( const std::string &id, unsigned long scope ) const {
721 if ( ! tables ) return 0;
722 if ( tables->scope < scope ) return 0;
723
724 TraitTable::const_iterator ret = tables->traitTable.find( id );
725 return ret != tables->traitTable.end() ? ret->second : tables->base.lookupTraitAtScope( id, scope );
726 }
727
728 bool addedIdConflicts( DeclarationWithType *existing, DeclarationWithType *added ) {
729 // if we're giving the same name mangling to things of different types then there is something wrong
730 assert( (dynamic_cast<ObjectDecl*>( added ) && dynamic_cast<ObjectDecl*>( existing ) )
731 || (dynamic_cast<FunctionDecl*>( added ) && dynamic_cast<FunctionDecl*>( existing ) ) );
732
733 if ( LinkageSpec::isOverridable( existing->get_linkage() ) ) {
734 // new definition shadows the autogenerated one, even at the same scope
735 return false;
736 } else if ( LinkageSpec::isMangled( added->get_linkage() ) || ResolvExpr::typesCompatible( added->get_type(), existing->get_type(), Indexer() ) ) {
737 // typesCompatible doesn't really do the right thing here. When checking compatibility of function types,
738 // we should ignore outermost pointer qualifiers, except _Atomic?
739 FunctionDecl *newentry = dynamic_cast< FunctionDecl* >( added );
740 FunctionDecl *oldentry = dynamic_cast< FunctionDecl* >( existing );
741 if ( newentry && oldentry ) {
742 if ( newentry->get_statements() && oldentry->get_statements() ) {
743 throw SemanticError( "duplicate function definition for ", added );
744 } // if
745 } else {
746 // two objects with the same mangled name defined in the same scope.
747 // both objects must be marked extern or both must be intrinsic for this to be okay
748 // xxx - perhaps it's actually if either is intrinsic then this is okay?
749 // might also need to be same storage class?
750 ObjectDecl *newobj = dynamic_cast< ObjectDecl* >( added );
751 ObjectDecl *oldobj = dynamic_cast< ObjectDecl* >( existing );
752 if ( ! newobj->get_storageClasses().is_extern && ! oldobj->get_storageClasses().is_extern ) {
753 throw SemanticError( "duplicate object definition for ", added );
754 } // if
755 } // if
756 } else {
757 throw SemanticError( "duplicate definition for ", added );
758 } // if
759
760 return true;
761 }
762
763 void Indexer::addId( DeclarationWithType *decl ) {
764 makeWritable();
765
766 const std::string &name = decl->get_name();
767 std::string mangleName;
768 if ( LinkageSpec::isOverridable( decl->get_linkage() ) ) {
769 // mangle the name without including the appropriate suffix, so overridable routines are placed into the
770 // same "bucket" as their user defined versions.
771 mangleName = Mangler::mangle( decl, false );
772 } else {
773 mangleName = Mangler::mangle( decl );
774 } // if
775
776 // this ensures that no two declarations with the same unmangled name at the same scope both have C linkage
777 if ( ! LinkageSpec::isMangled( decl->get_linkage() ) ) {
778 // NOTE this is broken in Richard's original code in such a way that it never triggers (it
779 // doesn't check decls that have the same manglename, and all C-linkage decls are defined to
780 // have their name as their manglename, hence the error can never trigger).
781 // The code here is closer to correct, but name mangling would have to be completely
782 // isomorphic to C type-compatibility, which it may not be.
783 if ( hasIncompatibleCDecl( name, mangleName, scope ) ) {
784 throw SemanticError( "conflicting overload of C function ", decl );
785 }
786 } else {
787 // Check that a Cforall declaration doesn't overload any C declaration
788 if ( hasCompatibleCDecl( name, mangleName, scope ) ) {
789 throw SemanticError( "Cforall declaration hides C function ", decl );
790 }
791 }
792
793 // Skip repeat declarations of the same identifier
794 DeclarationWithType *existing = lookupIdAtScope( name, mangleName, scope );
795 if ( existing && addedIdConflicts( existing, decl ) ) return;
796
797 // add to indexer
798 tables->idTable[ name ][ mangleName ] = decl;
799 ++tables->size;
800 }
801
802 bool addedTypeConflicts( NamedTypeDecl *existing, NamedTypeDecl *added ) {
803 if ( existing->get_base() == 0 ) {
804 return false;
805 } else if ( added->get_base() == 0 ) {
806 return true;
807 } else {
808 throw SemanticError( "redeclaration of ", added );
809 }
810 }
811
812 void Indexer::addType( NamedTypeDecl *decl ) {
813 makeWritable();
814
815 const std::string &id = decl->get_name();
816 TypeTable::iterator existing = tables->typeTable.find( id );
817 if ( existing == tables->typeTable.end() ) {
818 NamedTypeDecl *parent = tables->base.lookupTypeAtScope( id, scope );
819 if ( ! parent || ! addedTypeConflicts( parent, decl ) ) {
820 tables->typeTable.insert( existing, std::make_pair( id, decl ) );
821 ++tables->size;
822 }
823 } else {
824 if ( ! addedTypeConflicts( existing->second, decl ) ) {
825 existing->second = decl;
826 }
827 }
828 }
829
830 bool addedDeclConflicts( AggregateDecl *existing, AggregateDecl *added ) {
831 if ( existing->get_members().empty() ) {
832 return false;
833 } else if ( ! added->get_members().empty() ) {
834 throw SemanticError( "redeclaration of ", added );
835 } // if
836 return true;
837 }
838
839 void Indexer::addStruct( const std::string &id ) {
840 addStruct( new StructDecl( id ) );
841 }
842
843 void Indexer::addStruct( StructDecl *decl ) {
844 makeWritable();
845
846 const std::string &id = decl->get_name();
847 StructTable::iterator existing = tables->structTable.find( id );
848 if ( existing == tables->structTable.end() ) {
849 StructDecl *parent = tables->base.lookupStructAtScope( id, scope );
850 if ( ! parent || ! addedDeclConflicts( parent, decl ) ) {
851 tables->structTable.insert( existing, std::make_pair( id, decl ) );
852 ++tables->size;
853 }
854 } else {
855 if ( ! addedDeclConflicts( existing->second, decl ) ) {
856 existing->second = decl;
857 }
858 }
859 }
860
861 void Indexer::addEnum( EnumDecl *decl ) {
862 makeWritable();
863
864 const std::string &id = decl->get_name();
865 EnumTable::iterator existing = tables->enumTable.find( id );
866 if ( existing == tables->enumTable.end() ) {
867 EnumDecl *parent = tables->base.lookupEnumAtScope( id, scope );
868 if ( ! parent || ! addedDeclConflicts( parent, decl ) ) {
869 tables->enumTable.insert( existing, std::make_pair( id, decl ) );
870 ++tables->size;
871 }
872 } else {
873 if ( ! addedDeclConflicts( existing->second, decl ) ) {
874 existing->second = decl;
875 }
876 }
877 }
878
879 void Indexer::addUnion( const std::string &id ) {
880 addUnion( new UnionDecl( id ) );
881 }
882
883 void Indexer::addUnion( UnionDecl *decl ) {
884 makeWritable();
885
886 const std::string &id = decl->get_name();
887 UnionTable::iterator existing = tables->unionTable.find( id );
888 if ( existing == tables->unionTable.end() ) {
889 UnionDecl *parent = tables->base.lookupUnionAtScope( id, scope );
890 if ( ! parent || ! addedDeclConflicts( parent, decl ) ) {
891 tables->unionTable.insert( existing, std::make_pair( id, decl ) );
892 ++tables->size;
893 }
894 } else {
895 if ( ! addedDeclConflicts( existing->second, decl ) ) {
896 existing->second = decl;
897 }
898 }
899 }
900
901 void Indexer::addTrait( TraitDecl *decl ) {
902 makeWritable();
903
904 const std::string &id = decl->get_name();
905 TraitTable::iterator existing = tables->traitTable.find( id );
906 if ( existing == tables->traitTable.end() ) {
907 TraitDecl *parent = tables->base.lookupTraitAtScope( id, scope );
908 if ( ! parent || ! addedDeclConflicts( parent, decl ) ) {
909 tables->traitTable.insert( existing, std::make_pair( id, decl ) );
910 ++tables->size;
911 }
912 } else {
913 if ( ! addedDeclConflicts( existing->second, decl ) ) {
914 existing->second = decl;
915 }
916 }
917 }
918
919 void Indexer::enterScope() {
920 ++scope;
921
922 if ( doDebug ) {
923 std::cout << "--- Entering scope " << scope << std::endl;
924 }
925 }
926
927 void Indexer::leaveScope() {
928 using std::cout;
929
930 assert( scope > 0 && "cannot leave initial scope" );
931 --scope;
932
933 while ( tables && tables->scope > scope ) {
934 if ( doDebug ) {
935 cout << "--- Leaving scope " << tables->scope << " containing" << std::endl;
936 dump( tables->idTable, cout );
937 dump( tables->typeTable, cout );
938 dump( tables->structTable, cout );
939 dump( tables->enumTable, cout );
940 dump( tables->unionTable, cout );
941 dump( tables->traitTable, cout );
942 }
943
944 // swap tables for base table until we find one at an appropriate scope
945 Indexer::Impl *base = newRef( tables->base.tables );
946 deleteRef( tables );
947 tables = base;
948 }
949 }
950
951 void Indexer::print( std::ostream &os, int indent ) const {
952 using std::cerr;
953
954 if ( tables ) {
955 os << "--- scope " << tables->scope << " ---" << std::endl;
956
957 os << "===idTable===" << std::endl;
958 dump( tables->idTable, os );
959 os << "===typeTable===" << std::endl;
960 dump( tables->typeTable, os );
961 os << "===structTable===" << std::endl;
962 dump( tables->structTable, os );
963 os << "===enumTable===" << std::endl;
964 dump( tables->enumTable, os );
965 os << "===unionTable===" << std::endl;
966 dump( tables->unionTable, os );
967 os << "===contextTable===" << std::endl;
968 dump( tables->traitTable, os );
969
970 tables->base.print( os, indent );
971 } else {
972 os << "--- end ---" << std::endl;
973 }
974
975 }
976} // namespace SymTab
977
978// Local Variables: //
979// tab-width: 4 //
980// mode: c++ //
981// compile-command: "make install" //
982// End: //
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