source: src/AST/SymbolTable.cpp@ 1958fec

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 1958fec was 3e5dd913, checked in by Fangren Yu <f37yu@…>, 5 years ago

reimplement function type and eliminate deep copy

  • Property mode set to 100644
File size: 27.5 KB
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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// SymbolTable.cpp --
8//
9// Author : Aaron B. Moss
10// Created On : Wed May 29 11:00:00 2019
11// Last Modified By : Aaron B. Moss
12// Last Modified On : Wed May 29 11:00:00 2019
13// Update Count : 1
14//
15
16#include "SymbolTable.hpp"
17
18#include <cassert>
19
20#include "Decl.hpp"
21#include "Expr.hpp"
22#include "Type.hpp"
23#include "CodeGen/OperatorTable.h" // for isCtorDtorAssign
24#include "Common/SemanticError.h"
25#include "Common/Stats/Counter.h"
26#include "GenPoly/GenPoly.h"
27#include "InitTweak/InitTweak.h"
28#include "ResolvExpr/Cost.h"
29#include "ResolvExpr/typeops.h"
30#include "SymTab/Mangler.h"
31
32namespace ast {
33
34// Statistics block
35namespace {
36 static inline auto stats() {
37 using namespace Stats::Counters;
38 static auto group = build<CounterGroup>("Indexers");
39 static struct {
40 SimpleCounter * count;
41 AverageCounter<double> * size;
42 SimpleCounter * new_scopes;
43 SimpleCounter * lazy_scopes;
44 AverageCounter<double> * avg_scope_depth;
45 MaxCounter<size_t> * max_scope_depth;
46 SimpleCounter * add_calls;
47 SimpleCounter * lookup_calls;
48 SimpleCounter * map_lookups;
49 SimpleCounter * map_mutations;
50 } ret = {
51 .count = build<SimpleCounter>("Count", group),
52 .size = build<AverageCounter<double>>("Average Size", group),
53 .new_scopes = build<SimpleCounter>("Scopes", group),
54 .lazy_scopes = build<SimpleCounter>("Lazy Scopes", group),
55 .avg_scope_depth = build<AverageCounter<double>>("Average Scope", group),
56 .max_scope_depth = build<MaxCounter<size_t>>("Max Scope", group),
57 .add_calls = build<SimpleCounter>("Add Calls", group),
58 .lookup_calls = build<SimpleCounter>("Lookup Calls", group),
59 .map_lookups = build<SimpleCounter>("Map Lookups", group),
60 .map_mutations = build<SimpleCounter>("Map Mutations", group)
61 };
62 return ret;
63 }
64}
65
66Expr * SymbolTable::IdData::combine( const CodeLocation & loc, ResolvExpr::Cost & cost ) const {
67 Expr * ret = ( baseExpr ) ?
68 (Expr *)new MemberExpr{ loc, id, referenceToRvalueConversion( baseExpr, cost ) } :
69 (Expr *)new VariableExpr{ loc, id };
70 if ( deleter ) { ret = new DeletedExpr{ loc, ret, deleter }; }
71 return ret;
72}
73
74SymbolTable::SymbolTable()
75: idTable(), typeTable(), structTable(), enumTable(), unionTable(), traitTable(),
76 prevScope(), scope( 0 ), repScope( 0 ) { ++*stats().count; }
77
78SymbolTable::~SymbolTable() { stats().size->push( idTable ? idTable->size() : 0 ); }
79
80void SymbolTable::enterScope() {
81 ++scope;
82
83 ++*stats().new_scopes;
84 stats().avg_scope_depth->push( scope );
85 stats().max_scope_depth->push( scope );
86}
87
88void SymbolTable::leaveScope() {
89 if ( repScope == scope ) {
90 Ptr prev = prevScope; // make sure prevScope stays live
91 *this = std::move(*prevScope); // replace with previous scope
92 }
93
94 --scope;
95}
96
97SymbolTable::SpecialFunctionKind SymbolTable::getSpecialFunctionKind(const std::string & name) {
98 if (name == "?{}") return CTOR;
99 if (name == "^?{}") return DTOR;
100 if (name == "?=?") return ASSIGN;
101 return NUMBER_OF_KINDS;
102}
103
104std::vector<SymbolTable::IdData> SymbolTable::lookupId( const std::string &id ) const {
105 static Stats::Counters::CounterGroup * name_lookup_stats = Stats::Counters::build<Stats::Counters::CounterGroup>("Name Lookup Stats");
106 static std::map<std::string, Stats::Counters::SimpleCounter *> lookups_by_name;
107 static std::map<std::string, Stats::Counters::SimpleCounter *> candidates_by_name;
108
109 SpecialFunctionKind kind = getSpecialFunctionKind(id);
110 if (kind != NUMBER_OF_KINDS) return specialLookupId(kind);
111
112 ++*stats().lookup_calls;
113 if ( ! idTable ) return {};
114
115 ++*stats().map_lookups;
116 auto decls = idTable->find( id );
117 if ( decls == idTable->end() ) return {};
118
119 std::vector<IdData> out;
120 for ( auto decl : *(decls->second) ) {
121 out.push_back( decl.second );
122 }
123
124 if (Stats::Counters::enabled) {
125 if (! lookups_by_name.count(id)) {
126 // leaks some strings, but it is because Counters do not hold them
127 auto lookupCounterName = new std::string(id + "%count");
128 auto candidatesCounterName = new std::string(id + "%candidate");
129 lookups_by_name.emplace(id, new Stats::Counters::SimpleCounter(lookupCounterName->c_str(), name_lookup_stats));
130 candidates_by_name.emplace(id, new Stats::Counters::SimpleCounter(candidatesCounterName->c_str(), name_lookup_stats));
131 }
132 (*lookups_by_name[id]) ++;
133 *candidates_by_name[id] += out.size();
134 }
135
136 return out;
137}
138
139std::vector<SymbolTable::IdData> SymbolTable::specialLookupId( SymbolTable::SpecialFunctionKind kind, const std::string & otypeKey ) const {
140 static Stats::Counters::CounterGroup * special_stats = Stats::Counters::build<Stats::Counters::CounterGroup>("Special Lookups");
141 static Stats::Counters::SimpleCounter * stat_counts[3] = {
142 Stats::Counters::build<Stats::Counters::SimpleCounter>("constructor - count", special_stats),
143 Stats::Counters::build<Stats::Counters::SimpleCounter>("destructor - count", special_stats),
144 Stats::Counters::build<Stats::Counters::SimpleCounter>("assignment - count", special_stats)
145 };
146
147 static Stats::Counters::SimpleCounter * stat_candidates[3] = {
148 Stats::Counters::build<Stats::Counters::SimpleCounter>("constructor - candidates", special_stats),
149 Stats::Counters::build<Stats::Counters::SimpleCounter>("destructor - candidates", special_stats),
150 Stats::Counters::build<Stats::Counters::SimpleCounter>("assignment - candidates", special_stats)
151 };
152
153 static Stats::Counters::SimpleCounter * num_lookup_with_key
154 = Stats::Counters::build<Stats::Counters::SimpleCounter>("keyed lookups", special_stats);
155 static Stats::Counters::SimpleCounter * num_lookup_without_key
156 = Stats::Counters::build<Stats::Counters::SimpleCounter>("unkeyed lookups", special_stats);
157
158 assert (kind != NUMBER_OF_KINDS);
159 ++*stats().lookup_calls;
160 if ( ! specialFunctionTable[kind] ) return {};
161
162 std::vector<IdData> out;
163
164 if (otypeKey.empty()) { // returns everything
165 ++*num_lookup_without_key;
166 for (auto & table : *specialFunctionTable[kind]) {
167 for (auto & decl : *table.second) {
168 out.push_back(decl.second);
169 }
170 }
171 }
172 else {
173 ++*num_lookup_with_key;
174 ++*stats().map_lookups;
175 auto decls = specialFunctionTable[kind]->find(otypeKey);
176 if (decls == specialFunctionTable[kind]->end()) return {};
177
178 for (auto decl : *(decls->second)) {
179 out.push_back(decl.second);
180 }
181 }
182
183 ++*stat_counts[kind];
184 *stat_candidates[kind] += out.size();
185
186 return out;
187}
188
189const NamedTypeDecl * SymbolTable::lookupType( const std::string &id ) const {
190 ++*stats().lookup_calls;
191 if ( ! typeTable ) return nullptr;
192 ++*stats().map_lookups;
193 auto it = typeTable->find( id );
194 return it == typeTable->end() ? nullptr : it->second.decl;
195}
196
197const StructDecl * SymbolTable::lookupStruct( const std::string &id ) const {
198 ++*stats().lookup_calls;
199 if ( ! structTable ) return nullptr;
200 ++*stats().map_lookups;
201 auto it = structTable->find( id );
202 return it == structTable->end() ? nullptr : it->second.decl;
203}
204
205const EnumDecl * SymbolTable::lookupEnum( const std::string &id ) const {
206 ++*stats().lookup_calls;
207 if ( ! enumTable ) return nullptr;
208 ++*stats().map_lookups;
209 auto it = enumTable->find( id );
210 return it == enumTable->end() ? nullptr : it->second.decl;
211}
212
213const UnionDecl * SymbolTable::lookupUnion( const std::string &id ) const {
214 ++*stats().lookup_calls;
215 if ( ! unionTable ) return nullptr;
216 ++*stats().map_lookups;
217 auto it = unionTable->find( id );
218 return it == unionTable->end() ? nullptr : it->second.decl;
219}
220
221const TraitDecl * SymbolTable::lookupTrait( const std::string &id ) const {
222 ++*stats().lookup_calls;
223 if ( ! traitTable ) return nullptr;
224 ++*stats().map_lookups;
225 auto it = traitTable->find( id );
226 return it == traitTable->end() ? nullptr : it->second.decl;
227}
228
229const NamedTypeDecl * SymbolTable::globalLookupType( const std::string &id ) const {
230 return atScope( 0 )->lookupType( id );
231}
232
233const StructDecl * SymbolTable::globalLookupStruct( const std::string &id ) const {
234 return atScope( 0 )->lookupStruct( id );
235}
236
237const UnionDecl * SymbolTable::globalLookupUnion( const std::string &id ) const {
238 return atScope( 0 )->lookupUnion( id );
239}
240
241const EnumDecl * SymbolTable::globalLookupEnum( const std::string &id ) const {
242 return atScope( 0 )->lookupEnum( id );
243}
244
245void SymbolTable::addId( const DeclWithType * decl, const Expr * baseExpr ) {
246 // default handling of conflicts is to raise an error
247 addId( decl, OnConflict::error(), baseExpr, decl->isDeleted ? decl : nullptr );
248}
249
250void SymbolTable::addDeletedId( const DeclWithType * decl, const Decl * deleter ) {
251 // default handling of conflicts is to raise an error
252 addId( decl, OnConflict::error(), nullptr, deleter );
253}
254
255namespace {
256 /// true if redeclaration conflict between two types
257 bool addedTypeConflicts( const NamedTypeDecl * existing, const NamedTypeDecl * added ) {
258 if ( existing->base == nullptr ) {
259 return false;
260 } else if ( added->base == nullptr ) {
261 return true;
262 } else {
263 // typedef redeclarations are errors only if types are different
264 if ( ! ResolvExpr::typesCompatible( existing->base, added->base, SymbolTable{} ) ) {
265 SemanticError( added->location, "redeclaration of " + added->name );
266 }
267 }
268 // does not need to be added to the table if both existing and added have a base that are
269 // the same
270 return true;
271 }
272
273 /// true if redeclaration conflict between two aggregate declarations
274 bool addedDeclConflicts( const AggregateDecl * existing, const AggregateDecl * added ) {
275 if ( ! existing->body ) {
276 return false;
277 } else if ( added->body ) {
278 SemanticError( added, "redeclaration of " );
279 }
280 return true;
281 }
282}
283
284void SymbolTable::addType( const NamedTypeDecl * decl ) {
285 ++*stats().add_calls;
286 const std::string &id = decl->name;
287
288 if ( ! typeTable ) {
289 typeTable = TypeTable::new_ptr();
290 } else {
291 ++*stats().map_lookups;
292 auto existing = typeTable->find( id );
293 if ( existing != typeTable->end()
294 && existing->second.scope == scope
295 && addedTypeConflicts( existing->second.decl, decl ) ) return;
296 }
297
298 lazyInitScope();
299 ++*stats().map_mutations;
300 typeTable = typeTable->set( id, scoped<NamedTypeDecl>{ decl, scope } );
301}
302
303void SymbolTable::addStruct( const std::string &id ) {
304 addStruct( new StructDecl( CodeLocation{}, id ) );
305}
306
307void SymbolTable::addStruct( const StructDecl * decl ) {
308 ++*stats().add_calls;
309 const std::string &id = decl->name;
310
311 if ( ! structTable ) {
312 structTable = StructTable::new_ptr();
313 } else {
314 ++*stats().map_lookups;
315 auto existing = structTable->find( id );
316 if ( existing != structTable->end()
317 && existing->second.scope == scope
318 && addedDeclConflicts( existing->second.decl, decl ) ) return;
319 }
320
321 lazyInitScope();
322 ++*stats().map_mutations;
323 structTable = structTable->set( id, scoped<StructDecl>{ decl, scope } );
324}
325
326void SymbolTable::addEnum( const EnumDecl *decl ) {
327 ++*stats().add_calls;
328 const std::string &id = decl->name;
329
330 if ( ! enumTable ) {
331 enumTable = EnumTable::new_ptr();
332 } else {
333 ++*stats().map_lookups;
334 auto existing = enumTable->find( id );
335 if ( existing != enumTable->end()
336 && existing->second.scope == scope
337 && addedDeclConflicts( existing->second.decl, decl ) ) return;
338 }
339
340 lazyInitScope();
341 ++*stats().map_mutations;
342 enumTable = enumTable->set( id, scoped<EnumDecl>{ decl, scope } );
343}
344
345void SymbolTable::addUnion( const std::string &id ) {
346 addUnion( new UnionDecl( CodeLocation{}, id ) );
347}
348
349void SymbolTable::addUnion( const UnionDecl * decl ) {
350 ++*stats().add_calls;
351 const std::string &id = decl->name;
352
353 if ( ! unionTable ) {
354 unionTable = UnionTable::new_ptr();
355 } else {
356 ++*stats().map_lookups;
357 auto existing = unionTable->find( id );
358 if ( existing != unionTable->end()
359 && existing->second.scope == scope
360 && addedDeclConflicts( existing->second.decl, decl ) ) return;
361 }
362
363 lazyInitScope();
364 ++*stats().map_mutations;
365 unionTable = unionTable->set( id, scoped<UnionDecl>{ decl, scope } );
366}
367
368void SymbolTable::addTrait( const TraitDecl * decl ) {
369 ++*stats().add_calls;
370 const std::string &id = decl->name;
371
372 if ( ! traitTable ) {
373 traitTable = TraitTable::new_ptr();
374 } else {
375 ++*stats().map_lookups;
376 auto existing = traitTable->find( id );
377 if ( existing != traitTable->end()
378 && existing->second.scope == scope
379 && addedDeclConflicts( existing->second.decl, decl ) ) return;
380 }
381
382 lazyInitScope();
383 ++*stats().map_mutations;
384 traitTable = traitTable->set( id, scoped<TraitDecl>{ decl, scope } );
385}
386
387
388void SymbolTable::addWith( const std::vector< ptr<Expr> > & withExprs, const Decl * withStmt ) {
389 for ( const Expr * expr : withExprs ) {
390 if ( ! expr->result ) continue;
391 const Type * resTy = expr->result->stripReferences();
392 auto aggrType = dynamic_cast< const BaseInstType * >( resTy );
393 assertf( aggrType, "WithStmt expr has non-aggregate type: %s",
394 toString( expr->result ).c_str() );
395 const AggregateDecl * aggr = aggrType->aggr();
396 assertf( aggr, "WithStmt has null aggregate from type: %s",
397 toString( expr->result ).c_str() );
398
399 addMembers( aggr, expr, OnConflict::deleteWith( withStmt ) );
400 }
401}
402
403void SymbolTable::addIds( const std::vector< ptr<DeclWithType> > & decls ) {
404 for ( const DeclWithType * decl : decls ) { addId( decl ); }
405}
406
407void SymbolTable::addTypes( const std::vector< ptr<TypeDecl> > & tds ) {
408 for ( const TypeDecl * td : tds ) {
409 addType( td );
410 addIds( td->assertions );
411 }
412}
413
414
415void SymbolTable::addFunction( const FunctionDecl * func ) {
416 for (auto & td : func->type_params) {
417 addType(td);
418 }
419 for (auto & asst : func->assertions) {
420 addId(asst);
421 }
422 // addTypes( func->type->forall );
423 addIds( func->returns );
424 addIds( func->params );
425}
426
427
428void SymbolTable::lazyInitScope() {
429 // do nothing if already in represented scope
430 if ( repScope == scope ) return;
431
432 ++*stats().lazy_scopes;
433 // create rollback
434 prevScope = std::make_shared<SymbolTable>( *this );
435 // update repScope
436 repScope = scope;
437}
438
439const ast::SymbolTable * SymbolTable::atScope( unsigned long target ) const {
440 // by lazy construction, final symtab in list has repScope 0, cannot be > target
441 // otherwise, will find first scope representing the target
442 const SymbolTable * symtab = this;
443 while ( symtab->repScope > target ) {
444 symtab = symtab->prevScope.get();
445 }
446 return symtab;
447}
448
449namespace {
450 /// gets the base type of the first parameter; decl must be a ctor/dtor/assignment function
451 std::string getOtypeKey( const FunctionType * ftype, bool stripParams = true ) {
452 const auto & params = ftype->params;
453 assert( ! params.empty() );
454 // use base type of pointer, so that qualifiers on the pointer type aren't considered.
455 const Type * base = InitTweak::getPointerBase( params.front() );
456 assert( base );
457 if (stripParams) {
458 if (dynamic_cast<const PointerType *>(base)) return Mangle::Encoding::pointer;
459 return Mangle::mangle( base, Mangle::Type | Mangle::NoGenericParams );
460 }
461 else
462 return Mangle::mangle( base );
463 }
464
465 /// gets the declaration for the function acting on a type specified by otype key,
466 /// nullptr if none such
467 const FunctionDecl * getFunctionForOtype(
468 const DeclWithType * decl, const std::string & otypeKey ) {
469 auto func = dynamic_cast< const FunctionDecl * >( decl );
470 if ( ! func || otypeKey != getOtypeKey( func->type, false ) ) return nullptr;
471 return func;
472 }
473}
474
475bool SymbolTable::removeSpecialOverrides(
476 SymbolTable::IdData & data, SymbolTable::MangleTable::Ptr & mangleTable ) {
477 // if a type contains user defined ctor/dtor/assign, then special rules trigger, which
478 // determine the set of ctor/dtor/assign that can be used by the requester. In particular,
479 // if the user defines a default ctor, then the generated default ctor is unavailable,
480 // likewise for copy ctor and dtor. If the user defines any ctor/dtor, then no generated
481 // field ctors are available. If the user defines any ctor then the generated default ctor
482 // is unavailable (intrinsic default ctor must be overridden exactly). If the user defines
483 // anything that looks like a copy constructor, then the generated copy constructor is
484 // unavailable, and likewise for the assignment operator.
485
486 // only relevant on function declarations
487 const FunctionDecl * function = data.id.as< FunctionDecl >();
488 if ( ! function ) return true;
489 // only need to perform this check for constructors, destructors, and assignment functions
490 if ( ! CodeGen::isCtorDtorAssign( data.id->name ) ) return true;
491
492 // set up information for this type
493 bool dataIsUserDefinedFunc = ! function->linkage.is_overrideable;
494 bool dataIsCopyFunc = InitTweak::isCopyFunction( function );
495 std::string dataOtypeKey = getOtypeKey( function->type, false ); // requires exact match to override autogen
496
497 if ( dataIsUserDefinedFunc && dataIsCopyFunc ) {
498 // this is a user-defined copy function
499 // if this is the first such, delete/remove non-user-defined overloads as needed
500 std::vector< std::string > removed;
501 std::vector< MangleTable::value_type > deleted;
502 bool alreadyUserDefinedFunc = false;
503
504 for ( const auto& entry : *mangleTable ) {
505 // skip decls that aren't functions or are for the wrong type
506 const FunctionDecl * decl = getFunctionForOtype( entry.second.id, dataOtypeKey );
507 if ( ! decl ) continue;
508
509 bool isCopyFunc = InitTweak::isCopyFunction( decl );
510 if ( ! decl->linkage.is_overrideable ) {
511 // matching user-defined function
512 if ( isCopyFunc ) {
513 // mutation already performed, return early
514 return true;
515 } else {
516 // note that non-copy deletions already performed
517 alreadyUserDefinedFunc = true;
518 }
519 } else {
520 // non-user-defined function; mark for deletion/removal as appropriate
521 if ( isCopyFunc ) {
522 removed.push_back( entry.first );
523 } else if ( ! alreadyUserDefinedFunc ) {
524 deleted.push_back( entry );
525 }
526 }
527 }
528
529 // perform removals from mangle table, and deletions if necessary
530 for ( const auto& key : removed ) {
531 ++*stats().map_mutations;
532 mangleTable = mangleTable->erase( key );
533 }
534 if ( ! alreadyUserDefinedFunc ) for ( const auto& entry : deleted ) {
535 ++*stats().map_mutations;
536 mangleTable = mangleTable->set( entry.first, IdData{ entry.second, function } );
537 }
538 } else if ( dataIsUserDefinedFunc ) {
539 // this is a user-defined non-copy function
540 // if this is the first user-defined function, delete non-user-defined overloads
541 std::vector< MangleTable::value_type > deleted;
542
543 for ( const auto& entry : *mangleTable ) {
544 // skip decls that aren't functions or are for the wrong type
545 const FunctionDecl * decl = getFunctionForOtype( entry.second.id, dataOtypeKey );
546 if ( ! decl ) continue;
547
548 // exit early if already a matching user-defined function;
549 // earlier function will have mutated table
550 if ( ! decl->linkage.is_overrideable ) return true;
551
552 // skip mutating intrinsic functions
553 if ( decl->linkage == Linkage::Intrinsic ) continue;
554
555 // user-defined non-copy functions do not override copy functions
556 if ( InitTweak::isCopyFunction( decl ) ) continue;
557
558 // this function to be deleted after mangleTable iteration is complete
559 deleted.push_back( entry );
560 }
561
562 // mark deletions to update mangle table
563 // this needs to be a separate loop because of iterator invalidation
564 for ( const auto& entry : deleted ) {
565 ++*stats().map_mutations;
566 mangleTable = mangleTable->set( entry.first, IdData{ entry.second, function } );
567 }
568 } else if ( function->linkage != Linkage::Intrinsic ) {
569 // this is an overridable generated function
570 // if there already exists a matching user-defined function, delete this appropriately
571 for ( const auto& entry : *mangleTable ) {
572 // skip decls that aren't functions or are for the wrong type
573 const FunctionDecl * decl = getFunctionForOtype( entry.second.id, dataOtypeKey );
574 if ( ! decl ) continue;
575
576 // skip non-user-defined functions
577 if ( decl->linkage.is_overrideable ) continue;
578
579 if ( dataIsCopyFunc ) {
580 // remove current function if exists a user-defined copy function
581 // since the signatures for copy functions don't need to match exactly, using
582 // a delete statement is the wrong approach
583 if ( InitTweak::isCopyFunction( decl ) ) return false;
584 } else {
585 // mark current function deleted by first user-defined function found
586 data.deleter = decl;
587 return true;
588 }
589 }
590 }
591
592 // nothing (more) to fix, return true
593 return true;
594}
595
596namespace {
597 /// true iff the declaration represents a function
598 bool isFunction( const DeclWithType * decl ) {
599 return GenPoly::getFunctionType( decl->get_type() );
600 }
601
602 bool isObject( const DeclWithType * decl ) { return ! isFunction( decl ); }
603
604 /// true if the declaration represents a definition instead of a forward decl
605 bool isDefinition( const DeclWithType * decl ) {
606 if ( auto func = dynamic_cast< const FunctionDecl * >( decl ) ) {
607 // a function is a definition if it has a body
608 return func->stmts;
609 } else {
610 // an object is a definition if it is not marked extern
611 return ! decl->storage.is_extern;
612 }
613 }
614}
615
616bool SymbolTable::addedIdConflicts(
617 const SymbolTable::IdData & existing, const DeclWithType * added,
618 SymbolTable::OnConflict handleConflicts, const Decl * deleter ) {
619 // if we're giving the same name mangling to things of different types then there is something
620 // wrong
621 assert( (isObject( added ) && isObject( existing.id ) )
622 || ( isFunction( added ) && isFunction( existing.id ) ) );
623
624 if ( existing.id->linkage.is_overrideable ) {
625 // new definition shadows the autogenerated one, even at the same scope
626 return false;
627 } else if ( existing.id->linkage.is_mangled
628 || ResolvExpr::typesCompatible(
629 added->get_type(), existing.id->get_type(), SymbolTable{} ) ) {
630
631 // it is a conflict if one declaration is deleted and the other is not
632 if ( deleter && ! existing.deleter ) {
633 if ( handleConflicts.mode == OnConflict::Error ) {
634 SemanticError( added, "deletion of defined identifier " );
635 }
636 return true;
637 } else if ( ! deleter && existing.deleter ) {
638 if ( handleConflicts.mode == OnConflict::Error ) {
639 SemanticError( added, "definition of deleted identifier " );
640 }
641 return true;
642 }
643
644 // it is a conflict if both declarations are definitions
645 if ( isDefinition( added ) && isDefinition( existing.id ) ) {
646 if ( handleConflicts.mode == OnConflict::Error ) {
647 SemanticError( added,
648 isFunction( added ) ?
649 "duplicate function definition for " :
650 "duplicate object definition for " );
651 }
652 return true;
653 }
654 } else {
655 if ( handleConflicts.mode == OnConflict::Error ) {
656 SemanticError( added, "duplicate definition for " );
657 }
658 return true;
659 }
660
661 return true;
662}
663
664void SymbolTable::addId(
665 const DeclWithType * decl, SymbolTable::OnConflict handleConflicts, const Expr * baseExpr,
666 const Decl * deleter ) {
667 SpecialFunctionKind kind = getSpecialFunctionKind(decl->name);
668 if (kind == NUMBER_OF_KINDS) { // not a special decl
669 addId(decl, decl->name, idTable, handleConflicts, baseExpr, deleter);
670 }
671 else {
672 std::string key;
673 if (auto func = dynamic_cast<const FunctionDecl *>(decl)) {
674 key = getOtypeKey(func->type);
675 }
676 else if (auto obj = dynamic_cast<const ObjectDecl *>(decl)) {
677 key = getOtypeKey(obj->type.strict_as<PointerType>()->base.strict_as<FunctionType>());
678 }
679 else {
680 assertf(false, "special decl with non-function type");
681 }
682 addId(decl, key, specialFunctionTable[kind], handleConflicts, baseExpr, deleter);
683 }
684}
685
686void SymbolTable::addId(
687 const DeclWithType * decl, const std::string & lookupKey, IdTable::Ptr & table, SymbolTable::OnConflict handleConflicts, const Expr * baseExpr,
688 const Decl * deleter ) {
689 ++*stats().add_calls;
690 const std::string &name = decl->name;
691 if ( name == "" ) return;
692
693 std::string mangleName;
694 if ( decl->linkage.is_overrideable ) {
695 // mangle the name without including the appropriate suffix, so overridable routines
696 // are placed into the same "bucket" as their user defined versions.
697 mangleName = Mangle::mangle( decl, Mangle::Mode{ Mangle::NoOverrideable } );
698 } else {
699 mangleName = Mangle::mangle( decl );
700 }
701
702 // this ensures that no two declarations with the same unmangled name at the same scope
703 // both have C linkage
704 if ( decl->linkage.is_mangled ) {
705 // Check that a Cforall declaration doesn't override any C declaration
706 if ( hasCompatibleCDecl( name, mangleName ) ) {
707 SemanticError( decl, "Cforall declaration hides C function " );
708 }
709 } else {
710 // NOTE: only correct if name mangling is completely isomorphic to C
711 // type-compatibility, which it may not be.
712 if ( hasIncompatibleCDecl( name, mangleName ) ) {
713 SemanticError( decl, "conflicting overload of C function " );
714 }
715 }
716
717 // ensure tables exist and add identifier
718 MangleTable::Ptr mangleTable;
719 if ( ! table ) {
720 table = IdTable::new_ptr();
721 mangleTable = MangleTable::new_ptr();
722 } else {
723 ++*stats().map_lookups;
724 auto decls = table->find( lookupKey );
725 if ( decls == table->end() ) {
726 mangleTable = MangleTable::new_ptr();
727 } else {
728 mangleTable = decls->second;
729 // skip in-scope repeat declarations of same identifier
730 ++*stats().map_lookups;
731 auto existing = mangleTable->find( mangleName );
732 if ( existing != mangleTable->end()
733 && existing->second.scope == scope
734 && existing->second.id ) {
735 if ( addedIdConflicts( existing->second, decl, handleConflicts, deleter ) ) {
736 if ( handleConflicts.mode == OnConflict::Delete ) {
737 // set delete expression for conflicting identifier
738 lazyInitScope();
739 *stats().map_mutations += 2;
740 table = table->set(
741 lookupKey,
742 mangleTable->set(
743 mangleName,
744 IdData{ existing->second, handleConflicts.deleter } ) );
745 }
746 return;
747 }
748 }
749 }
750 }
751
752 // add/overwrite with new identifier
753 lazyInitScope();
754 IdData data{ decl, baseExpr, deleter, scope };
755 // Ensure that auto-generated ctor/dtor/assignment are deleted if necessary
756 if (table != idTable) { // adding to special table
757 if ( ! removeSpecialOverrides( data, mangleTable ) ) return;
758 }
759 *stats().map_mutations += 2;
760 table = table->set( lookupKey, mangleTable->set( mangleName, std::move(data) ) );
761}
762
763void SymbolTable::addMembers(
764 const AggregateDecl * aggr, const Expr * expr, SymbolTable::OnConflict handleConflicts ) {
765 for ( const Decl * decl : aggr->members ) {
766 if ( auto dwt = dynamic_cast< const DeclWithType * >( decl ) ) {
767 addId( dwt, handleConflicts, expr );
768 if ( dwt->name == "" ) {
769 const Type * t = dwt->get_type()->stripReferences();
770 if ( auto rty = dynamic_cast<const BaseInstType *>( t ) ) {
771 if ( ! dynamic_cast<const StructInstType *>(rty)
772 && ! dynamic_cast<const UnionInstType *>(rty) ) continue;
773 ResolvExpr::Cost cost = ResolvExpr::Cost::zero;
774 const Expr * base = ResolvExpr::referenceToRvalueConversion( expr, cost );
775 addMembers(
776 rty->aggr(), new MemberExpr{ base->location, dwt, base }, handleConflicts );
777 }
778 }
779 }
780 }
781}
782
783bool SymbolTable::hasCompatibleCDecl( const std::string &id, const std::string &mangleName ) const {
784 if ( ! idTable ) return false;
785
786 ++*stats().map_lookups;
787 auto decls = idTable->find( id );
788 if ( decls == idTable->end() ) return false;
789
790 for ( auto decl : *(decls->second) ) {
791 // skip other scopes (hidden by this decl)
792 if ( decl.second.scope != scope ) continue;
793 // check for C decl with compatible type (by mangleName)
794 if ( ! decl.second.id->linkage.is_mangled && decl.first == mangleName ) return true;
795 }
796
797 return false;
798}
799
800bool SymbolTable::hasIncompatibleCDecl( const std::string &id, const std::string &mangleName ) const {
801 if ( ! idTable ) return false;
802
803 ++*stats().map_lookups;
804 auto decls = idTable->find( id );
805 if ( decls == idTable->end() ) return false;
806
807 for ( auto decl : *(decls->second) ) {
808 // skip other scopes (hidden by this decl)
809 if ( decl.second.scope != scope ) continue;
810 // check for C decl with incompatible type (by manglename)
811 if ( ! decl.second.id->linkage.is_mangled && decl.first != mangleName ) return true;
812 }
813
814 return false;
815}
816
817}
818
819// Local Variables: //
820// tab-width: 4 //
821// mode: c++ //
822// compile-command: "make install" //
823// End: //
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