source: src/InitTweak/InitTweak.cc@ 0aedb01

ADT arm-eh ast-experimental enum forall-pointer-decay jacob/cs343-translation jenkins-sandbox new-ast new-ast-unique-expr pthread-emulation qualifiedEnum
Last change on this file since 0aedb01 was d908563, checked in by Thierry Delisle <tdelisle@…>, 6 years ago

Merge branch 'master' into cleanup-dtors

  • Property mode set to 100644
File size: 30.9 KB
RevLine 
[d180746]1#include <algorithm> // for find, all_of
[e3e16bc]2#include <cassert> // for assertf, assert, strict_dynamic_cast
[d180746]3#include <iostream> // for ostream, cerr, endl
4#include <iterator> // for back_insert_iterator, back_inserter
5#include <memory> // for __shared_ptr
6
[9b4f329]7#include "AST/Expr.hpp"
8#include "AST/Stmt.hpp"
[9e1d485]9#include "AST/Type.hpp"
[fd236ed]10#include "Common/PassVisitor.h"
[d180746]11#include "Common/SemanticError.h" // for SemanticError
12#include "Common/UniqueName.h" // for UniqueName
13#include "Common/utility.h" // for toString, deleteAll, maybeClone
14#include "GenPoly/GenPoly.h" // for getFunctionType
[2b46a13]15#include "InitTweak.h"
[d180746]16#include "Parser/LinkageSpec.h" // for Spec, isBuiltin, Intrinsic
17#include "ResolvExpr/typeops.h" // for typesCompatibleIgnoreQualifiers
[f5c3b6c]18#include "SymTab/Autogen.h"
[d180746]19#include "SymTab/Indexer.h" // for Indexer
20#include "SynTree/Attribute.h" // for Attribute
21#include "SynTree/Constant.h" // for Constant
22#include "SynTree/Declaration.h" // for ObjectDecl, DeclarationWithType
23#include "SynTree/Expression.h" // for Expression, UntypedExpr, Applicati...
24#include "SynTree/Initializer.h" // for Initializer, ListInit, Designation
[ba3706f]25#include "SynTree/Label.h" // for Label
[d180746]26#include "SynTree/Statement.h" // for CompoundStmt, ExprStmt, BranchStmt
27#include "SynTree/Type.h" // for FunctionType, ArrayType, PointerType
28#include "SynTree/Visitor.h" // for Visitor, maybeAccept
[29bc63e]29#include "Tuples/Tuples.h" // for Tuples::isTtype
[d180746]30
[2b46a13]31namespace InitTweak {
[64071c2]32 namespace {
[1fbeebd]33 struct HasDesignations : public WithShortCircuiting {
[64071c2]34 bool hasDesignations = false;
[fd236ed]35
36 void previsit( BaseSyntaxNode * ) {
37 // short circuit if we already know there are designations
38 if ( hasDesignations ) visit_children = false;
39 }
40
41 void previsit( Designation * des ) {
42 // short circuit if we already know there are designations
43 if ( hasDesignations ) visit_children = false;
44 else if ( ! des->get_designators().empty() ) {
45 hasDesignations = true;
46 visit_children = false;
47 }
[64071c2]48 }
49 };
[2b46a13]50
[ef3d798]51 struct InitDepthChecker : public WithGuards {
[dcd73d1]52 bool depthOkay = true;
53 Type * type;
54 int curDepth = 0, maxDepth = 0;
55 InitDepthChecker( Type * type ) : type( type ) {
56 Type * t = type;
57 while ( ArrayType * at = dynamic_cast< ArrayType * >( t ) ) {
58 maxDepth++;
59 t = at->get_base();
60 }
61 maxDepth++;
62 }
[ef3d798]63 void previsit( ListInit * ) {
[dcd73d1]64 curDepth++;
[ef3d798]65 GuardAction( [this]() { curDepth--; } );
[dcd73d1]66 if ( curDepth > maxDepth ) depthOkay = false;
67 }
68 };
69
[c3f551b]70 struct InitFlattener : public WithShortCircuiting {
71 void previsit( SingleInit * singleInit ) {
72 visit_children = false;
73 argList.push_back( singleInit->value->clone() );
74 }
[64071c2]75 std::list< Expression * > argList;
76 };
[2b46a13]77
[64071c2]78 }
[2b46a13]79
[64071c2]80 std::list< Expression * > makeInitList( Initializer * init ) {
[c3f551b]81 PassVisitor<InitFlattener> flattener;
[4d2434a]82 maybeAccept( init, flattener );
[c3f551b]83 return flattener.pass.argList;
[64071c2]84 }
[2b46a13]85
[64071c2]86 bool isDesignated( Initializer * init ) {
[fd236ed]87 PassVisitor<HasDesignations> finder;
[64071c2]88 maybeAccept( init, finder );
[fd236ed]89 return finder.pass.hasDesignations;
[dcd73d1]90 }
91
92 bool checkInitDepth( ObjectDecl * objDecl ) {
[ef3d798]93 PassVisitor<InitDepthChecker> checker( objDecl->type );
94 maybeAccept( objDecl->init, checker );
95 return checker.pass.depthOkay;
[64071c2]96 }
[2b46a13]97
[39f84a4]98 class InitExpander::ExpanderImpl {
99 public:
[3351cc0]100 virtual ~ExpanderImpl() = default;
[39f84a4]101 virtual std::list< Expression * > next( std::list< Expression * > & indices ) = 0;
[4d2434a]102 virtual Statement * buildListInit( UntypedExpr * callExpr, std::list< Expression * > & indices ) = 0;
[39f84a4]103 };
104
105 class InitImpl : public InitExpander::ExpanderImpl {
106 public:
[4d2434a]107 InitImpl( Initializer * init ) : init( init ) {}
[bd41764]108 virtual ~InitImpl() = default;
[39f84a4]109
[7e003011]110 virtual std::list< Expression * > next( __attribute((unused)) std::list< Expression * > & indices ) {
[39f84a4]111 // this is wrong, but just a placeholder for now
[4d2434a]112 // if ( ! flattened ) flatten( indices );
113 // return ! inits.empty() ? makeInitList( inits.front() ) : std::list< Expression * >();
114 return makeInitList( init );
[39f84a4]115 }
[4d2434a]116
117 virtual Statement * buildListInit( UntypedExpr * callExpr, std::list< Expression * > & indices );
[39f84a4]118 private:
[4d2434a]119 Initializer * init;
[39f84a4]120 };
121
122 class ExprImpl : public InitExpander::ExpanderImpl {
123 public:
124 ExprImpl( Expression * expr ) : arg( expr ) {}
[bd41764]125 virtual ~ExprImpl() { delete arg; }
[9b4c936]126
[39f84a4]127 virtual std::list< Expression * > next( std::list< Expression * > & indices ) {
128 std::list< Expression * > ret;
129 Expression * expr = maybeClone( arg );
130 if ( expr ) {
131 for ( std::list< Expression * >::reverse_iterator it = indices.rbegin(); it != indices.rend(); ++it ) {
132 // go through indices and layer on subscript exprs ?[?]
133 ++it;
134 UntypedExpr * subscriptExpr = new UntypedExpr( new NameExpr( "?[?]") );
135 subscriptExpr->get_args().push_back( expr );
136 subscriptExpr->get_args().push_back( (*it)->clone() );
137 expr = subscriptExpr;
138 }
139 ret.push_back( expr );
140 }
141 return ret;
142 }
[4d2434a]143
144 virtual Statement * buildListInit( UntypedExpr * callExpr, std::list< Expression * > & indices );
[39f84a4]145 private:
146 Expression * arg;
147 };
148
149 InitExpander::InitExpander( Initializer * init ) : expander( new InitImpl( init ) ) {}
150
151 InitExpander::InitExpander( Expression * expr ) : expander( new ExprImpl( expr ) ) {}
152
153 std::list< Expression * > InitExpander::operator*() {
154 return cur;
155 }
156
157 InitExpander & InitExpander::operator++() {
158 cur = expander->next( indices );
159 return *this;
160 }
161
162 // use array indices list to build switch statement
163 void InitExpander::addArrayIndex( Expression * index, Expression * dimension ) {
164 indices.push_back( index );
165 indices.push_back( dimension );
166 }
167
[4d2434a]168 void InitExpander::clearArrayIndices() {
[9b4c936]169 deleteAll( indices );
[4d2434a]170 indices.clear();
[1a5ad8c]171 }
172
173 bool InitExpander::addReference() {
174 bool added = false;
175 for ( Expression *& expr : cur ) {
176 expr = new AddressExpr( expr );
177 added = true;
178 }
179 return added;
[4d2434a]180 }
181
182 namespace {
[f9cebb5]183 /// given index i, dimension d, initializer init, and callExpr f, generates
184 /// if (i < d) f(..., init)
185 /// ++i;
186 /// so that only elements within the range of the array are constructed
[4d2434a]187 template< typename OutIterator >
[f9cebb5]188 void buildCallExpr( UntypedExpr * callExpr, Expression * index, Expression * dimension, Initializer * init, OutIterator out ) {
[4d2434a]189 UntypedExpr * cond = new UntypedExpr( new NameExpr( "?<?") );
190 cond->get_args().push_back( index->clone() );
191 cond->get_args().push_back( dimension->clone() );
192
193 std::list< Expression * > args = makeInitList( init );
194 callExpr->get_args().splice( callExpr->get_args().end(), args );
195
[ba3706f]196 *out++ = new IfStmt( cond, new ExprStmt( callExpr ), nullptr );
[4d2434a]197
198 UntypedExpr * increment = new UntypedExpr( new NameExpr( "++?" ) );
[175ad32b]199 increment->get_args().push_back( index->clone() );
[ba3706f]200 *out++ = new ExprStmt( increment );
[4d2434a]201 }
202
203 template< typename OutIterator >
204 void build( UntypedExpr * callExpr, InitExpander::IndexList::iterator idx, InitExpander::IndexList::iterator idxEnd, Initializer * init, OutIterator out ) {
205 if ( idx == idxEnd ) return;
206 Expression * index = *idx++;
207 assert( idx != idxEnd );
208 Expression * dimension = *idx++;
209
[f9cebb5]210 // xxx - may want to eventually issue a warning here if we can detect
211 // that the number of elements exceeds to dimension of the array
[4d2434a]212 if ( idx == idxEnd ) {
213 if ( ListInit * listInit = dynamic_cast< ListInit * >( init ) ) {
214 for ( Initializer * init : *listInit ) {
[f9cebb5]215 buildCallExpr( callExpr->clone(), index, dimension, init, out );
[4d2434a]216 }
217 } else {
[f9cebb5]218 buildCallExpr( callExpr->clone(), index, dimension, init, out );
[4d2434a]219 }
220 } else {
221 std::list< Statement * > branches;
222
223 unsigned long cond = 0;
224 ListInit * listInit = dynamic_cast< ListInit * >( init );
225 if ( ! listInit ) {
226 // xxx - this shouldn't be an error, but need a way to
227 // terminate without creating output, so should catch this error
[a16764a6]228 SemanticError( init->location, "unbalanced list initializers" );
[4d2434a]229 }
[f9cebb5]230
231 static UniqueName targetLabel( "L__autogen__" );
232 Label switchLabel( targetLabel.newName(), 0, std::list< Attribute * >{ new Attribute("unused") } );
[4d2434a]233 for ( Initializer * init : *listInit ) {
234 Expression * condition;
235 // check for designations
236 // if ( init-> ) {
237 condition = new ConstantExpr( Constant::from_ulong( cond ) );
238 ++cond;
239 // } else {
240 // condition = // ... take designation
241 // cond = // ... take designation+1
242 // }
243 std::list< Statement * > stmts;
244 build( callExpr, idx, idxEnd, init, back_inserter( stmts ) );
[ba3706f]245 stmts.push_back( new BranchStmt( switchLabel, BranchStmt::Break ) );
246 CaseStmt * caseStmt = new CaseStmt( condition, stmts );
[4d2434a]247 branches.push_back( caseStmt );
248 }
[ba3706f]249 *out++ = new SwitchStmt( index->clone(), branches );
250 *out++ = new NullStmt( { switchLabel } );
[4d2434a]251 }
252 }
253 }
254
255 // if array came with an initializer list: initialize each element
256 // may have more initializers than elements in the array - need to check at each index that
257 // we haven't exceeded size.
258 // may have fewer initializers than elements in the array - need to default construct
259 // remaining elements.
260 // To accomplish this, generate switch statement, consuming all of expander's elements
261 Statement * InitImpl::buildListInit( UntypedExpr * dst, std::list< Expression * > & indices ) {
[22bc276]262 if ( ! init ) return nullptr;
[ba3706f]263 CompoundStmt * block = new CompoundStmt();
[f9cebb5]264 build( dst, indices.begin(), indices.end(), init, back_inserter( block->get_kids() ) );
265 if ( block->get_kids().empty() ) {
266 delete block;
[22bc276]267 return nullptr;
[4d2434a]268 } else {
[22bc276]269 init = nullptr; // init was consumed in creating the list init
[f9cebb5]270 return block;
[4d2434a]271 }
[39f84a4]272 }
273
[22bc276]274 Statement * ExprImpl::buildListInit( UntypedExpr *, std::list< Expression * > & ) {
275 return nullptr;
[4d2434a]276 }
277
278 Statement * InitExpander::buildListInit( UntypedExpr * dst ) {
279 return expander->buildListInit( dst, indices );
280 }
281
[549c006]282 Type * getTypeofThis( FunctionType * ftype ) {
283 assertf( ftype, "getTypeofThis: nullptr ftype" );
284 ObjectDecl * thisParam = getParamThis( ftype );
[7fc7cdb]285 ReferenceType * refType = strict_dynamic_cast< ReferenceType * >( thisParam->type );
286 return refType->base;
287 }
288
[549c006]289 ObjectDecl * getParamThis( FunctionType * ftype ) {
290 assertf( ftype, "getParamThis: nullptr ftype" );
[7fc7cdb]291 auto & params = ftype->parameters;
[549c006]292 assertf( ! params.empty(), "getParamThis: ftype with 0 parameters: %s", toString( ftype ).c_str() );
[7fc7cdb]293 return strict_dynamic_cast< ObjectDecl * >( params.front() );
294 }
295
[22bc276]296 bool tryConstruct( DeclarationWithType * dwt ) {
297 ObjectDecl * objDecl = dynamic_cast< ObjectDecl * >( dwt );
298 if ( ! objDecl ) return false;
[df7a162]299 return (objDecl->get_init() == nullptr ||
[22bc276]300 ( objDecl->get_init() != nullptr && objDecl->get_init()->get_maybeConstructed() ))
301 && ! objDecl->get_storageClasses().is_extern
[29bc63e]302 && isConstructable( objDecl->type );
303 }
304
305 bool isConstructable( Type * type ) {
306 return ! dynamic_cast< VarArgsType * >( type ) && ! dynamic_cast< ReferenceType * >( type ) && ! dynamic_cast< FunctionType * >( type ) && ! Tuples::isTtype( type );
[64071c2]307 }
[2b46a13]308
[0a6aad4]309 struct CallFinder {
[4d2434a]310 CallFinder( const std::list< std::string > & names ) : names( names ) {}
311
[0a6aad4]312 void postvisit( ApplicationExpr * appExpr ) {
[4d2434a]313 handleCallExpr( appExpr );
314 }
315
[0a6aad4]316 void postvisit( UntypedExpr * untypedExpr ) {
[4d2434a]317 handleCallExpr( untypedExpr );
318 }
319
320 std::list< Expression * > * matches;
321 private:
322 const std::list< std::string > names;
323
324 template< typename CallExpr >
325 void handleCallExpr( CallExpr * expr ) {
326 std::string fname = getFunctionName( expr );
327 if ( std::find( names.begin(), names.end(), fname ) != names.end() ) {
328 matches->push_back( expr );
[cad355a]329 }
[64071c2]330 }
[4d2434a]331 };
332
333 void collectCtorDtorCalls( Statement * stmt, std::list< Expression * > & matches ) {
[0a6aad4]334 static PassVisitor<CallFinder> finder( std::list< std::string >{ "?{}", "^?{}" } );
335 finder.pass.matches = &matches;
[4d2434a]336 maybeAccept( stmt, finder );
[64071c2]337 }
[4d2434a]338
339 Expression * getCtorDtorCall( Statement * stmt ) {
340 std::list< Expression * > matches;
341 collectCtorDtorCalls( stmt, matches );
[20eacb7]342 assertf( matches.size() <= 1, "%zd constructor/destructors found in %s", matches.size(), toString( stmt ).c_str() );
[22bc276]343 return matches.size() == 1 ? matches.front() : nullptr;
[4d2434a]344 }
345
[aedfd91]346 namespace {
[599b386]347 DeclarationWithType * getCalledFunction( Expression * expr );
[d7aa12c]348 const ast::DeclWithType * getCalledFunction( const ast::Expr * expr );
[599b386]349
350 template<typename CallExpr>
351 DeclarationWithType * handleDerefCalledFunction( CallExpr * expr ) {
352 // (*f)(x) => should get "f"
353 std::string name = getFunctionName( expr );
354 assertf( name == "*?", "Unexpected untyped expression: %s", name.c_str() );
[b128d3e]355 assertf( ! expr->get_args().empty(), "Cannot get called function from dereference with no arguments" );
[599b386]356 return getCalledFunction( expr->get_args().front() );
357 }
358
[d7aa12c]359 template<typename CallExpr>
360 const ast::DeclWithType * handleDerefCalledFunction( const CallExpr * expr ) {
361 // (*f)(x) => should get "f"
362 std::string name = getFunctionName( expr );
363 assertf( name == "*?", "Unexpected untyped expression: %s", name.c_str() );
364 assertf( ! expr->args.empty(), "Cannot get called function from dereference with no arguments" );
365 return getCalledFunction( expr->args.front() );
366 }
367
368
[ee1635c8]369 DeclarationWithType * getCalledFunction( Expression * expr ) {
370 assert( expr );
371 if ( VariableExpr * varExpr = dynamic_cast< VariableExpr * >( expr ) ) {
[6fc5c14]372 return varExpr->var;
[ee1635c8]373 } else if ( MemberExpr * memberExpr = dynamic_cast< MemberExpr * >( expr ) ) {
[6fc5c14]374 return memberExpr->member;
[ee1635c8]375 } else if ( CastExpr * castExpr = dynamic_cast< CastExpr * >( expr ) ) {
[6fc5c14]376 return getCalledFunction( castExpr->arg );
[599b386]377 } else if ( UntypedExpr * untypedExpr = dynamic_cast< UntypedExpr * >( expr ) ) {
378 return handleDerefCalledFunction( untypedExpr );
379 } else if ( ApplicationExpr * appExpr = dynamic_cast< ApplicationExpr * > ( expr ) ) {
380 return handleDerefCalledFunction( appExpr );
[f3b0a07]381 } else if ( AddressExpr * addrExpr = dynamic_cast< AddressExpr * >( expr ) ) {
[6fc5c14]382 return getCalledFunction( addrExpr->arg );
383 } else if ( CommaExpr * commaExpr = dynamic_cast< CommaExpr * >( expr ) ) {
384 return getCalledFunction( commaExpr->arg2 );
[ee1635c8]385 }
386 return nullptr;
[aedfd91]387 }
[d7aa12c]388
389 const ast::DeclWithType * getCalledFunction( const ast::Expr * expr ) {
390 assert( expr );
391 if ( const ast::VariableExpr * varExpr = dynamic_cast< const ast::VariableExpr * >( expr ) ) {
392 return varExpr->var;
393 } else if ( const ast::MemberExpr * memberExpr = dynamic_cast< const ast::MemberExpr * >( expr ) ) {
394 return memberExpr->member;
395 } else if ( const ast::CastExpr * castExpr = dynamic_cast< const ast::CastExpr * >( expr ) ) {
396 return getCalledFunction( castExpr->arg );
397 } else if ( const ast::UntypedExpr * untypedExpr = dynamic_cast< const ast::UntypedExpr * >( expr ) ) {
398 return handleDerefCalledFunction( untypedExpr );
399 } else if ( const ast::ApplicationExpr * appExpr = dynamic_cast< const ast::ApplicationExpr * > ( expr ) ) {
400 return handleDerefCalledFunction( appExpr );
401 } else if ( const ast::AddressExpr * addrExpr = dynamic_cast< const ast::AddressExpr * >( expr ) ) {
402 return getCalledFunction( addrExpr->arg );
403 } else if ( const ast::CommaExpr * commaExpr = dynamic_cast< const ast::CommaExpr * >( expr ) ) {
404 return getCalledFunction( commaExpr->arg2 );
405 }
406 return nullptr;
407 }
[aedfd91]408 }
[70f89d00]409
[b7b8674]410 DeclarationWithType * getFunction( Expression * expr ) {
411 if ( ApplicationExpr * appExpr = dynamic_cast< ApplicationExpr * >( expr ) ) {
412 return getCalledFunction( appExpr->get_function() );
413 } else if ( UntypedExpr * untyped = dynamic_cast< UntypedExpr * > ( expr ) ) {
414 return getCalledFunction( untyped->get_function() );
415 }
416 assertf( false, "getFunction received unknown expression: %s", toString( expr ).c_str() );
417 }
418
[d7aa12c]419 const ast::DeclWithType * getFunction( const ast::Expr * expr ) {
420 if ( const ast::ApplicationExpr * appExpr = dynamic_cast< const ast::ApplicationExpr * >( expr ) ) {
421 return getCalledFunction( appExpr->func );
422 } else if ( const ast::UntypedExpr * untyped = dynamic_cast< const ast::UntypedExpr * > ( expr ) ) {
423 return getCalledFunction( untyped->func );
424 }
425 assertf( false, "getFunction received unknown expression: %s", toString( expr ).c_str() );
426 }
427
[aedfd91]428 ApplicationExpr * isIntrinsicCallExpr( Expression * expr ) {
429 ApplicationExpr * appExpr = dynamic_cast< ApplicationExpr * >( expr );
[22bc276]430 if ( ! appExpr ) return nullptr;
[ee1635c8]431 DeclarationWithType * function = getCalledFunction( appExpr->get_function() );
[f3b0a07]432 assertf( function, "getCalledFunction returned nullptr: %s", toString( appExpr->get_function() ).c_str() );
[64071c2]433 // check for Intrinsic only - don't want to remove all overridable ctor/dtors because autogenerated ctor/dtor
434 // will call all member dtors, and some members may have a user defined dtor.
[22bc276]435 return function->get_linkage() == LinkageSpec::Intrinsic ? appExpr : nullptr;
[aedfd91]436 }
437
[a465caff]438 namespace {
439 template <typename Predicate>
440 bool allofCtorDtor( Statement * stmt, const Predicate & pred ) {
441 std::list< Expression * > callExprs;
442 collectCtorDtorCalls( stmt, callExprs );
443 // if ( callExprs.empty() ) return false; // xxx - do I still need this check?
444 return std::all_of( callExprs.begin(), callExprs.end(), pred);
445 }
446 }
447
[f9cebb5]448 bool isIntrinsicSingleArgCallStmt( Statement * stmt ) {
[a465caff]449 return allofCtorDtor( stmt, []( Expression * callExpr ){
[4d2434a]450 if ( ApplicationExpr * appExpr = isIntrinsicCallExpr( callExpr ) ) {
[f072892]451 FunctionType *funcType = GenPoly::getFunctionType( appExpr->function->result );
[4d2434a]452 assert( funcType );
453 return funcType->get_parameters().size() == 1;
454 }
455 return false;
456 });
[64071c2]457 }
[f1b1e4c]458
[a465caff]459 bool isIntrinsicCallStmt( Statement * stmt ) {
460 return allofCtorDtor( stmt, []( Expression * callExpr ) {
461 return isIntrinsicCallExpr( callExpr );
462 });
463 }
464
[64071c2]465 namespace {
466 template<typename CallExpr>
467 Expression *& callArg( CallExpr * callExpr, unsigned int pos ) {
[a61ad31]468 if ( pos >= callExpr->get_args().size() ) assertf( false, "getCallArg for argument that doesn't exist: (%u); %s.", pos, toString( callExpr ).c_str() );
[64071c2]469 for ( Expression *& arg : callExpr->get_args() ) {
470 if ( pos == 0 ) return arg;
471 pos--;
472 }
473 assert( false );
474 }
[9b4f329]475
[b5fed34]476 template<typename CallExpr>
477 const ast::Expr * callArg( const CallExpr * call, unsigned int pos ) {
478 if( pos >= call->args.size() ) {
479 assertf( false, "getCallArg for argument that doesn't exist: (%u); %s.",
480 pos, toString( call ).c_str() );
481 }
482 for ( const ast::Expr * arg : call->args ) {
483 if ( pos == 0 ) return arg;
484 --pos;
485 }
486 assert( false );
487 }
[64071c2]488 }
[f1b1e4c]489
[64071c2]490 Expression *& getCallArg( Expression * callExpr, unsigned int pos ) {
491 if ( ApplicationExpr * appExpr = dynamic_cast< ApplicationExpr * >( callExpr ) ) {
492 return callArg( appExpr, pos );
493 } else if ( UntypedExpr * untypedExpr = dynamic_cast< UntypedExpr * >( callExpr ) ) {
494 return callArg( untypedExpr, pos );
[f3b0a07]495 } else if ( TupleAssignExpr * tupleExpr = dynamic_cast< TupleAssignExpr * > ( callExpr ) ) {
496 std::list< Statement * > & stmts = tupleExpr->get_stmtExpr()->get_statements()->get_kids();
497 assertf( ! stmts.empty(), "TupleAssignExpr somehow has no statements." );
[e3e16bc]498 ExprStmt * stmt = strict_dynamic_cast< ExprStmt * >( stmts.back() );
499 TupleExpr * tuple = strict_dynamic_cast< TupleExpr * >( stmt->get_expr() );
[f3b0a07]500 assertf( ! tuple->get_exprs().empty(), "TupleAssignExpr somehow has empty tuple expr." );
501 return getCallArg( tuple->get_exprs().front(), pos );
[62a05d1]502 } else if ( ImplicitCopyCtorExpr * copyCtor = dynamic_cast< ImplicitCopyCtorExpr * >( callExpr ) ) {
503 return getCallArg( copyCtor->callExpr, pos );
[64071c2]504 } else {
[f3b0a07]505 assertf( false, "Unexpected expression type passed to getCallArg: %s", toString( callExpr ).c_str() );
[64071c2]506 }
507 }
[b5fed34]508
[9b4f329]509 const ast::Expr * getCallArg( const ast::Expr * call, unsigned pos ) {
[b5fed34]510 if ( auto app = dynamic_cast< const ast::ApplicationExpr * >( call ) ) {
511 return callArg( app, pos );
512 } else if ( auto untyped = dynamic_cast< const ast::UntypedExpr * >( call ) ) {
513 return callArg( untyped, pos );
514 } else if ( auto tupleAssn = dynamic_cast< const ast::TupleAssignExpr * >( call ) ) {
515 const std::list<ast::ptr<ast::Stmt>>& stmts = tupleAssn->stmtExpr->stmts->kids;
516 assertf( ! stmts.empty(), "TupleAssignExpr missing statements." );
517 auto stmt = strict_dynamic_cast< const ast::ExprStmt * >( stmts.back().get() );
518 auto tuple = strict_dynamic_cast< const ast::TupleExpr * >( stmt->expr.get() );
519 assertf( ! tuple->exprs.empty(), "TupleAssignExpr has empty tuple expr.");
520 return getCallArg( tuple->exprs.front(), pos );
521 } else if ( auto ctor = dynamic_cast< const ast::ImplicitCopyCtorExpr * >( call ) ) {
522 return getCallArg( ctor->callExpr, pos );
523 } else {
524 assertf( false, "Unexpected expression type passed to getCallArg: %s",
525 toString( call ).c_str() );
526 }
[9b4f329]527 }
[f1b1e4c]528
[64071c2]529 namespace {
[599b386]530 std::string funcName( Expression * func );
[d7aa12c]531 std::string funcName( const ast::Expr * func );
[599b386]532
533 template<typename CallExpr>
534 std::string handleDerefName( CallExpr * expr ) {
535 // (*f)(x) => should get name "f"
536 std::string name = getFunctionName( expr );
537 assertf( name == "*?", "Unexpected untyped expression: %s", name.c_str() );
[b128d3e]538 assertf( ! expr->get_args().empty(), "Cannot get function name from dereference with no arguments" );
[599b386]539 return funcName( expr->get_args().front() );
540 }
541
[d7aa12c]542 template<typename CallExpr>
543 std::string handleDerefName( const CallExpr * expr ) {
544 // (*f)(x) => should get name "f"
545 std::string name = getFunctionName( expr );
546 assertf( name == "*?", "Unexpected untyped expression: %s", name.c_str() );
547 assertf( ! expr->args.empty(), "Cannot get function name from dereference with no arguments" );
548 return funcName( expr->args.front() );
549 }
550
[c738ca4]551 std::string funcName( Expression * func ) {
[64071c2]552 if ( NameExpr * nameExpr = dynamic_cast< NameExpr * >( func ) ) {
553 return nameExpr->get_name();
554 } else if ( VariableExpr * varExpr = dynamic_cast< VariableExpr * >( func ) ) {
555 return varExpr->get_var()->get_name();
[c738ca4]556 } else if ( CastExpr * castExpr = dynamic_cast< CastExpr * >( func ) ) {
557 return funcName( castExpr->get_arg() );
[ee1635c8]558 } else if ( MemberExpr * memberExpr = dynamic_cast< MemberExpr * >( func ) ) {
559 return memberExpr->get_member()->get_name();
[96a10cdd]560 } else if ( UntypedMemberExpr * memberExpr = dynamic_cast< UntypedMemberExpr * > ( func ) ) {
[fd782b2]561 return funcName( memberExpr->get_member() );
[599b386]562 } else if ( UntypedExpr * untypedExpr = dynamic_cast< UntypedExpr * >( func ) ) {
563 return handleDerefName( untypedExpr );
564 } else if ( ApplicationExpr * appExpr = dynamic_cast< ApplicationExpr * >( func ) ) {
565 return handleDerefName( appExpr );
[19a9822]566 } else if ( ConstructorExpr * ctorExpr = dynamic_cast< ConstructorExpr * >( func ) ) {
567 return funcName( getCallArg( ctorExpr->get_callExpr(), 0 ) );
[64071c2]568 } else {
[19a9822]569 assertf( false, "Unexpected expression type being called as a function in call expression: %s", toString( func ).c_str() );
[64071c2]570 }
571 }
[d7aa12c]572
573 std::string funcName( const ast::Expr * func ) {
574 if ( const ast::NameExpr * nameExpr = dynamic_cast< const ast::NameExpr * >( func ) ) {
575 return nameExpr->name;
576 } else if ( const ast::VariableExpr * varExpr = dynamic_cast< const ast::VariableExpr * >( func ) ) {
577 return varExpr->var->name;
578 } else if ( const ast::CastExpr * castExpr = dynamic_cast< const ast::CastExpr * >( func ) ) {
579 return funcName( castExpr->arg );
580 } else if ( const ast::MemberExpr * memberExpr = dynamic_cast< const ast::MemberExpr * >( func ) ) {
581 return memberExpr->member->name;
582 } else if ( const ast::UntypedMemberExpr * memberExpr = dynamic_cast< const ast::UntypedMemberExpr * > ( func ) ) {
583 return funcName( memberExpr->member );
584 } else if ( const ast::UntypedExpr * untypedExpr = dynamic_cast< const ast::UntypedExpr * >( func ) ) {
585 return handleDerefName( untypedExpr );
586 } else if ( const ast::ApplicationExpr * appExpr = dynamic_cast< const ast::ApplicationExpr * >( func ) ) {
587 return handleDerefName( appExpr );
588 } else if ( const ast::ConstructorExpr * ctorExpr = dynamic_cast< const ast::ConstructorExpr * >( func ) ) {
589 return funcName( getCallArg( ctorExpr->callExpr, 0 ) );
590 } else {
591 assertf( false, "Unexpected expression type being called as a function in call expression: %s", toString( func ).c_str() );
592 }
593 }
[64071c2]594 }
[70f89d00]595
[64071c2]596 std::string getFunctionName( Expression * expr ) {
[599b386]597 // there's some unforunate overlap here with getCalledFunction. Ideally this would be able to use getCalledFunction and
598 // return the name of the DeclarationWithType, but this needs to work for NameExpr and UntypedMemberExpr, where getCalledFunction
599 // can't possibly do anything reasonable.
[64071c2]600 if ( ApplicationExpr * appExpr = dynamic_cast< ApplicationExpr * >( expr ) ) {
[c738ca4]601 return funcName( appExpr->get_function() );
[64071c2]602 } else if ( UntypedExpr * untypedExpr = dynamic_cast< UntypedExpr * > ( expr ) ) {
[c738ca4]603 return funcName( untypedExpr->get_function() );
[64071c2]604 } else {
[c738ca4]605 std::cerr << expr << std::endl;
[d1969a6]606 assertf( false, "Unexpected expression type passed to getFunctionName" );
[64071c2]607 }
608 }
[10a7775]609
[d7aa12c]610 std::string getFunctionName( const ast::Expr * expr ) {
611 // there's some unforunate overlap here with getCalledFunction. Ideally this would be able to use getCalledFunction and
612 // return the name of the DeclarationWithType, but this needs to work for NameExpr and UntypedMemberExpr, where getCalledFunction
613 // can't possibly do anything reasonable.
614 if ( const ast::ApplicationExpr * appExpr = dynamic_cast< const ast::ApplicationExpr * >( expr ) ) {
615 return funcName( appExpr->func );
616 } else if ( const ast::UntypedExpr * untypedExpr = dynamic_cast< const ast::UntypedExpr * > ( expr ) ) {
617 return funcName( untypedExpr->func );
618 } else {
619 std::cerr << expr << std::endl;
620 assertf( false, "Unexpected expression type passed to getFunctionName" );
621 }
622 }
623
[64071c2]624 Type * getPointerBase( Type * type ) {
625 if ( PointerType * ptrType = dynamic_cast< PointerType * >( type ) ) {
626 return ptrType->get_base();
627 } else if ( ArrayType * arrayType = dynamic_cast< ArrayType * >( type ) ) {
628 return arrayType->get_base();
[ce8c12f]629 } else if ( ReferenceType * refType = dynamic_cast< ReferenceType * >( type ) ) {
630 return refType->get_base();
[64071c2]631 } else {
[22bc276]632 return nullptr;
[64071c2]633 }
634 }
[9e1d485]635 const ast::Type* getPointerBase( const ast::Type* t ) {
[b5fed34]636 if ( const auto * p = dynamic_cast< const ast::PointerType * >( t ) ) {
637 return p->base;
638 } else if ( const auto * a = dynamic_cast< const ast::ArrayType * >( t ) ) {
639 return a->base;
640 } else if ( const auto * r = dynamic_cast< const ast::ReferenceType * >( t ) ) {
641 return r->base;
642 } else return nullptr;
[9e1d485]643 }
[10a7775]644
[64071c2]645 Type * isPointerType( Type * type ) {
646 if ( getPointerBase( type ) ) return type;
[22bc276]647 else return nullptr;
[64071c2]648 }
[40e636a]649
[f5c3b6c]650 ApplicationExpr * createBitwiseAssignment( Expression * dst, Expression * src ) {
651 static FunctionDecl * assign = nullptr;
652 if ( ! assign ) {
653 // temporary? Generate a fake assignment operator to represent bitwise assignments.
654 // This operator could easily exist as a real function, but it's tricky because nothing should resolve to this function.
655 TypeDecl * td = new TypeDecl( "T", noStorageClasses, nullptr, TypeDecl::Dtype, true );
656 assign = new FunctionDecl( "?=?", noStorageClasses, LinkageSpec::Intrinsic, SymTab::genAssignType( new TypeInstType( noQualifiers, td->name, td ) ), nullptr );
657 }
658 if ( dynamic_cast< ReferenceType * >( dst->result ) ) {
[5002738]659 for (int depth = dst->result->referenceDepth(); depth > 0; depth--) {
660 dst = new AddressExpr( dst );
661 }
[f5c3b6c]662 } else {
663 dst = new CastExpr( dst, new ReferenceType( noQualifiers, dst->result->clone() ) );
664 }
665 if ( dynamic_cast< ReferenceType * >( src->result ) ) {
[5002738]666 for (int depth = src->result->referenceDepth(); depth > 0; depth--) {
667 src = new AddressExpr( src );
668 }
[ba89e9b7]669 // src = new CastExpr( src, new ReferenceType( noQualifiers, src->result->stripReferences()->clone() ) );
[f5c3b6c]670 }
671 return new ApplicationExpr( VariableExpr::functionPointer( assign ), { dst, src } );
672 }
673
[c5f3c68]674 struct ConstExprChecker : public WithShortCircuiting {
675 // most expressions are not const expr
676 void previsit( Expression * ) { isConstExpr = false; visit_children = false; }
[40e636a]677
[c5f3c68]678 void previsit( AddressExpr *addressExpr ) {
679 visit_children = false;
[65dc863]680
[1ba88a0]681 // address of a variable or member expression is constexpr
682 Expression * arg = addressExpr->get_arg();
683 if ( ! dynamic_cast< NameExpr * >( arg) && ! dynamic_cast< VariableExpr * >( arg ) && ! dynamic_cast< MemberExpr * >( arg ) && ! dynamic_cast< UntypedMemberExpr * >( arg ) ) isConstExpr = false;
684 }
[c5f3c68]685
686 // these expressions may be const expr, depending on their children
687 void previsit( SizeofExpr * ) {}
688 void previsit( AlignofExpr * ) {}
689 void previsit( UntypedOffsetofExpr * ) {}
690 void previsit( OffsetofExpr * ) {}
691 void previsit( OffsetPackExpr * ) {}
692 void previsit( AttrExpr * ) {}
693 void previsit( CommaExpr * ) {}
694 void previsit( LogicalExpr * ) {}
695 void previsit( ConditionalExpr * ) {}
696 void previsit( CastExpr * ) {}
697 void previsit( ConstantExpr * ) {}
698
[caab997]699 void previsit( VariableExpr * varExpr ) {
700 visit_children = false;
701
702 if ( EnumInstType * inst = dynamic_cast< EnumInstType * >( varExpr->result ) ) {
703 long long int value;
704 if ( inst->baseEnum->valueOf( varExpr->var, value ) ) {
705 // enumerators are const expr
706 return;
707 }
708 }
709 isConstExpr = false;
710 }
711
[c5f3c68]712 bool isConstExpr = true;
[40e636a]713 };
714
715 bool isConstExpr( Expression * expr ) {
716 if ( expr ) {
[c5f3c68]717 PassVisitor<ConstExprChecker> checker;
[40e636a]718 expr->accept( checker );
[c5f3c68]719 return checker.pass.isConstExpr;
[40e636a]720 }
721 return true;
722 }
723
724 bool isConstExpr( Initializer * init ) {
725 if ( init ) {
[c5f3c68]726 PassVisitor<ConstExprChecker> checker;
[40e636a]727 init->accept( checker );
[c5f3c68]728 return checker.pass.isConstExpr;
[40e636a]729 } // if
730 // for all intents and purposes, no initializer means const expr
731 return true;
732 }
733
[79970ed]734 bool isConstructor( const std::string & str ) { return str == "?{}"; }
735 bool isDestructor( const std::string & str ) { return str == "^?{}"; }
[ee1635c8]736 bool isAssignment( const std::string & str ) { return str == "?=?"; }
[79970ed]737 bool isCtorDtor( const std::string & str ) { return isConstructor( str ) || isDestructor( str ); }
[ee1635c8]738 bool isCtorDtorAssign( const std::string & str ) { return isCtorDtor( str ) || isAssignment( str ); }
[4d4882a]739
[ee1635c8]740 FunctionDecl * isCopyFunction( Declaration * decl, const std::string & fname ) {
[4d4882a]741 FunctionDecl * function = dynamic_cast< FunctionDecl * >( decl );
[0a267c1]742 if ( ! function ) return nullptr;
743 if ( function->name != fname ) return nullptr;
744 FunctionType * ftype = function->type;
745 if ( ftype->parameters.size() != 2 ) return nullptr;
[4d4882a]746
[ce8c12f]747 Type * t1 = getPointerBase( ftype->get_parameters().front()->get_type() );
[0a267c1]748 Type * t2 = ftype->parameters.back()->get_type();
[ce8c12f]749 assert( t1 );
[4d4882a]750
[ce8c12f]751 if ( ResolvExpr::typesCompatibleIgnoreQualifiers( t1, t2, SymTab::Indexer() ) ) {
[4d4882a]752 return function;
753 } else {
[ee1635c8]754 return nullptr;
[4d4882a]755 }
756 }
[ee1635c8]757
[207c7e1d]758 FunctionDecl * isAssignment( Declaration * decl ) {
759 return isCopyFunction( decl, "?=?" );
760 }
761 FunctionDecl * isDestructor( Declaration * decl ) {
762 if ( isDestructor( decl->get_name() ) ) {
763 return dynamic_cast< FunctionDecl * >( decl );
764 }
765 return nullptr;
766 }
767 FunctionDecl * isDefaultConstructor( Declaration * decl ) {
[0a267c1]768 if ( isConstructor( decl->name ) ) {
[207c7e1d]769 if ( FunctionDecl * func = dynamic_cast< FunctionDecl * >( decl ) ) {
[0a267c1]770 if ( func->type->parameters.size() == 1 ) {
[207c7e1d]771 return func;
772 }
773 }
774 }
775 return nullptr;
776 }
[ee1635c8]777 FunctionDecl * isCopyConstructor( Declaration * decl ) {
778 return isCopyFunction( decl, "?{}" );
779 }
[2b46a13]780}
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