source: src/GenPoly/Lvalue.cc@ 3f3bfe5a

ADT arm-eh ast-experimental enum forall-pointer-decay jacob/cs343-translation new-ast new-ast-unique-expr pthread-emulation qualifiedEnum
Last change on this file since 3f3bfe5a was b4f8808, checked in by Andrew Beach <ajbeach@…>, 6 years ago

Removed lvalue from types in the old ast.

  • Property mode set to 100644
File size: 23.2 KB
RevLine 
[51587aa]1//
2// Cforall Version 1.0.0 Copyright (C) 2015 University of Waterloo
3//
4// The contents of this file are covered under the licence agreement in the
5// file "LICENCE" distributed with Cforall.
6//
[906e24d]7// Lvalue.cc --
[51587aa]8//
9// Author : Richard C. Bilson
10// Created On : Mon May 18 07:44:20 2015
[01aeade]11// Last Modified By : Peter A. Buhr
[615a096]12// Last Modified On : Fri Mar 17 09:11:18 2017
13// Update Count : 5
[51587aa]14//
[51b73452]15
[e3e16bc]16#include <cassert> // for strict_dynamic_cast
[08fc48f]17#include <string> // for string
[51b73452]18
[8135d4c]19#include "Common/PassVisitor.h"
[08fc48f]20#include "GenPoly.h" // for isPolyType
[51b73452]21#include "Lvalue.h"
22
[2bfc6b2]23#include "InitTweak/InitTweak.h"
[08fc48f]24#include "Parser/LinkageSpec.h" // for Spec, isBuiltin, Intrinsic
25#include "ResolvExpr/TypeEnvironment.h" // for AssertionSet, OpenVarSet
26#include "ResolvExpr/Unify.h" // for unify
[51b73452]27#include "ResolvExpr/typeops.h"
[08fc48f]28#include "SymTab/Indexer.h" // for Indexer
29#include "SynTree/Declaration.h" // for Declaration, FunctionDecl
30#include "SynTree/Expression.h" // for Expression, ConditionalExpr
31#include "SynTree/Mutator.h" // for mutateAll, Mutator
32#include "SynTree/Statement.h" // for ReturnStmt, Statement (ptr o...
33#include "SynTree/Type.h" // for PointerType, Type, FunctionType
34#include "SynTree/Visitor.h" // for Visitor, acceptAll
[2bfc6b2]35#include "Validate/FindSpecialDecls.h" // for dereferenceOperator
[1d776fd]36
[cb43451]37#if 0
38#define PRINT(x) x
39#else
40#define PRINT(x)
41#endif
42
[51b73452]43namespace GenPoly {
[01aeade]44 namespace {
[9a34b5a]45 // TODO: fold this into the general createDeref function??
46 Expression * mkDeref( Expression * arg ) {
[2bfc6b2]47 if ( Validate::dereferenceOperator ) {
[a9b1b0c]48 // note: reference depth can be arbitrarily deep here, so peel off the outermost pointer/reference, not just pointer because they are effecitvely equivalent in this pass
[2bfc6b2]49 VariableExpr * deref = new VariableExpr( Validate::dereferenceOperator );
[0690350]50 deref->result = new PointerType( Type::Qualifiers(), deref->result );
51 Type * base = InitTweak::getPointerBase( arg->result );
52 assertf( base, "expected pointer type in dereference (type was %s)", toString( arg->result ).c_str() );
[9a34b5a]53 ApplicationExpr * ret = new ApplicationExpr( deref, { arg } );
[0690350]54 delete ret->result;
55 ret->result = base->clone();
[9a34b5a]56 return ret;
57 } else {
58 return UntypedExpr::createDeref( arg );
59 }
60 }
61
[31cb252]62 struct ReferenceConversions final : public WithStmtsToAdd {
[1d776fd]63 Expression * postmutate( CastExpr * castExpr );
[8a6cf7e]64 Expression * postmutate( AddressExpr * addrExpr );
[01aeade]65 };
66
[1d776fd]67 /// Intrinsic functions that take reference parameters don't REALLY take reference parameters -- their reference arguments must always be implicitly dereferenced.
68 struct FixIntrinsicArgs final {
[8499c707]69 Expression * postmutate( ApplicationExpr * appExpr );
[1d776fd]70 };
71
[9aaac6e9]72 struct FixIntrinsicResult final : public WithGuards {
[8499c707]73 Expression * postmutate( ApplicationExpr * appExpr );
[9aaac6e9]74 void premutate( FunctionDecl * funcDecl );
75 bool inIntrinsic = false;
[8499c707]76 };
[1d776fd]77
78 /// Replace reference types with pointer types
79 struct ReferenceTypeElimination final {
80 Type * postmutate( ReferenceType * refType );
[01aeade]81 };
[b6fd751]82
83 /// GCC-like Generalized Lvalues (which have since been removed from GCC)
84 /// https://gcc.gnu.org/onlinedocs/gcc-3.4.6/gcc/Lvalues.html#Lvalues
85 /// Replaces &(a,b) with (a, &b), &(a ? b : c) with (a ? &b : &c)
[d335627]86 struct GeneralizedLvalue final : public WithVisitorRef<GeneralizedLvalue> {
[1d776fd]87 Expression * postmutate( AddressExpr * addressExpr );
[9236060]88 Expression * postmutate( MemberExpr * memExpr );
[acd7c5dd]89
90 template<typename Func>
91 Expression * applyTransformation( Expression * expr, Expression * arg, Func mkExpr );
[b6fd751]92 };
[cb43451]93
94 /// Removes redundant &*/*& pattern that this pass can generate
95 struct CollapseAddrDeref final {
96 Expression * postmutate( AddressExpr * addressExpr );
97 Expression * postmutate( ApplicationExpr * appExpr );
98 };
[8499c707]99
[a3323db1]100 struct AddrRef final : public WithGuards, public WithVisitorRef<AddrRef>, public WithShortCircuiting {
[8499c707]101 void premutate( AddressExpr * addrExpr );
102 Expression * postmutate( AddressExpr * addrExpr );
103 void premutate( Expression * expr );
[a3323db1]104 void premutate( ApplicationExpr * appExpr );
105 void premutate( SingleInit * init );
106
107 void handleNonAddr( Expression * );
[8499c707]108
109 bool first = true;
110 bool current = false;
111 int refDepth = 0;
[a3323db1]112 bool addCast = false;
[8499c707]113 };
[01aeade]114 } // namespace
115
[b0440b7]116 static bool referencesEliminated = false;
117 // used by UntypedExpr::createDeref to determine whether result type of dereference should be ReferenceType or value type.
118 bool referencesPermissable() {
119 return ! referencesEliminated;
120 }
121
[b1ccdfd]122 void convertLvalue( std::list< Declaration* > & translationUnit ) {
[1d776fd]123 PassVisitor<ReferenceConversions> refCvt;
124 PassVisitor<ReferenceTypeElimination> elim;
125 PassVisitor<GeneralizedLvalue> genLval;
126 PassVisitor<FixIntrinsicArgs> fixer;
[cb43451]127 PassVisitor<CollapseAddrDeref> collapser;
[8499c707]128 PassVisitor<AddrRef> addrRef;
129 PassVisitor<FixIntrinsicResult> intrinsicResults;
130 mutateAll( translationUnit, intrinsicResults );
131 mutateAll( translationUnit, addrRef );
[1d776fd]132 mutateAll( translationUnit, refCvt );
133 mutateAll( translationUnit, fixer );
[cb43451]134 mutateAll( translationUnit, collapser );
[8499c707]135 mutateAll( translationUnit, genLval );
[8a6cf7e]136 mutateAll( translationUnit, elim ); // last because other passes need reference types to work
[b0440b7]137
138 // from this point forward, no other pass should create reference types.
139 referencesEliminated = true;
[01aeade]140 }
141
[acd7c5dd]142 Expression * generalizedLvalue( Expression * expr ) {
[9236060]143 PassVisitor<GeneralizedLvalue> genLval;
[acd7c5dd]144 return expr->acceptMutator( genLval );
145 }
146
[01aeade]147 namespace {
[85b2300]148 // true for intrinsic function calls that return an lvalue in C
[1d776fd]149 bool isIntrinsicReference( Expression * expr ) {
[85b2300]150 // known intrinsic-reference prelude functions
151 static std::set<std::string> lvalueFunctions = { "*?", "?[?]" };
[8a6cf7e]152 if ( UntypedExpr * untyped = dynamic_cast< UntypedExpr * >( expr ) ) {
153 std::string fname = InitTweak::getFunctionName( untyped );
[85b2300]154 return lvalueFunctions.count(fname);
[1d776fd]155 } else if ( ApplicationExpr * appExpr = dynamic_cast< ApplicationExpr * > ( expr ) ) {
156 if ( DeclarationWithType * func = InitTweak::getFunction( appExpr ) ) {
[85b2300]157 return func->linkage == LinkageSpec::Intrinsic && lvalueFunctions.count(func->name);
[1d776fd]158 }
[ce8c12f]159 }
[1d776fd]160 return false;
[ce8c12f]161 }
162
[8499c707]163 Expression * FixIntrinsicResult::postmutate( ApplicationExpr * appExpr ) {
164 if ( isIntrinsicReference( appExpr ) ) {
165 // eliminate reference types from intrinsic applications - now they return lvalues
[c1ec14f]166 ReferenceType * result = strict_dynamic_cast< ReferenceType * >( appExpr->result );
167 appExpr->result = result->base->clone();
[9aaac6e9]168 if ( ! inIntrinsic ) {
169 // when not in an intrinsic function, add a cast to
170 // don't add cast when in an intrinsic function, since they already have the cast
171 Expression * ret = new CastExpr( appExpr, result );
[b1ccdfd]172 std::swap( ret->env, appExpr->env );
[9aaac6e9]173 return ret;
174 }
175 delete result;
[8499c707]176 }
177 return appExpr;
178 }
179
[9aaac6e9]180 void FixIntrinsicResult::premutate( FunctionDecl * funcDecl ) {
181 GuardValue( inIntrinsic );
[c1ec14f]182 inIntrinsic = funcDecl->linkage == LinkageSpec::Intrinsic;
[9aaac6e9]183 }
184
[1d776fd]185 Expression * FixIntrinsicArgs::postmutate( ApplicationExpr * appExpr ) {
[9a34b5a]186 // intrinsic functions don't really take reference-typed parameters, so they require an implicit dereference on their arguments.
[1d776fd]187 if ( DeclarationWithType * function = InitTweak::getFunction( appExpr ) ) {
[d335627]188 FunctionType * ftype = GenPoly::getFunctionType( function->get_type() );
189 assertf( ftype, "Function declaration does not have function type." );
190 // can be of differing lengths only when function is variadic
[b1ccdfd]191 assertf( ftype->parameters.size() == appExpr->args.size() || ftype->isVarArgs, "ApplicationExpr args do not match formal parameter type." );
[b0440b7]192
193
[d335627]194 unsigned int i = 0;
[b1ccdfd]195 const unsigned int end = ftype->parameters.size();
[0b73f0c]196
197 /// The for loop may eagerly dereference the iterators and fail on empty lists
198 if(i == end) { return appExpr; }
[b1ccdfd]199 for ( auto p : unsafe_group_iterate( appExpr->args, ftype->parameters ) ) {
[d335627]200 Expression *& arg = std::get<0>( p );
201 Type * formal = std::get<1>( p )->get_type();
202 PRINT(
203 std::cerr << "pair<0>: " << arg << std::endl;
[a9b1b0c]204 std::cerr << " -- " << arg->result << std::endl;
[d335627]205 std::cerr << "pair<1>: " << formal << std::endl;
206 )
207 if ( dynamic_cast<ReferenceType*>( formal ) ) {
[a9b1b0c]208 PRINT(
209 std::cerr << "===formal is reference" << std::endl;
210 )
211 // TODO: it's likely that the second condition should be ... && ! isIntrinsicReference( arg ), but this requires investigation.
[207b496]212
[85b2300]213 if ( function->linkage != LinkageSpec::Intrinsic && isIntrinsicReference( arg ) ) {
[207b496]214 // needed for definition of prelude functions, etc.
[a9b1b0c]215 // if argument is dereference or array subscript, the result isn't REALLY a reference, but non-intrinsic functions expect a reference: take address
[a3323db1]216
217 // NOTE: previously, this condition fixed
218 // void f(int *&);
219 // int & x = ...;
220 // f(&x);
221 // But now this is taken care of by a reference cast added by AddrRef. Need to find a new
222 // example or remove this branch.
[207b496]223
[a9b1b0c]224 PRINT(
225 std::cerr << "===is intrinsic arg in non-intrinsic call - adding address" << std::endl;
226 )
227 arg = new AddressExpr( arg );
[da7fe39]228 // } else if ( function->get_linkage() == LinkageSpec::Intrinsic && InitTweak::getPointerBase( arg->result ) ) {
[85b2300]229 } else if ( function->linkage == LinkageSpec::Intrinsic && arg->result->referenceDepth() != 0 ) {
[a9b1b0c]230 // argument is a 'real' reference, but function expects a C lvalue: add a dereference to the reference-typed argument
231 PRINT(
232 std::cerr << "===is non-intrinsic arg in intrinsic call - adding deref to arg" << std::endl;
233 )
[b1ccdfd]234 Type * baseType = InitTweak::getPointerBase( arg->result );
235 assertf( baseType, "parameter is reference, arg must be pointer or reference: %s", toString( arg->result ).c_str() );
[d335627]236 PointerType * ptrType = new PointerType( Type::Qualifiers(), baseType->clone() );
[b1ccdfd]237 delete arg->result;
[207b496]238 arg->result = ptrType;
[d335627]239 arg = mkDeref( arg );
[207b496]240 // assertf( arg->result->referenceDepth() == 0, "Reference types should have been eliminated from intrinsic function calls, but weren't: %s", toCString( arg->result ) );
[1d776fd]241 }
242 }
[d335627]243 ++i;
[aaeacf4]244 if (i == end) break;
[baba5d8]245 }
[1d776fd]246 }
247 return appExpr;
[01aeade]248 }
249
[8499c707]250 // idea: &&&E: get outer &, inner &
[a3323db1]251 // at inner &, record depth D of reference type of argument of &
[8499c707]252 // at outer &, add D derefs.
[a3323db1]253 void AddrRef::handleNonAddr( Expression * ) {
254 // non-address-of: reset status variables:
255 // * current expr is NOT the first address-of expr in an address-of chain
256 // * next seen address-of expr IS the first in the chain.
[8499c707]257 GuardValue( current );
258 GuardValue( first );
259 current = false;
260 first = true;
261 }
262
[a3323db1]263 void AddrRef::premutate( Expression * expr ) {
264 handleNonAddr( expr );
265 GuardValue( addCast );
266 addCast = false;
267 }
268
[8135d4c]269 void AddrRef::premutate( AddressExpr * ) {
[8499c707]270 GuardValue( current );
271 GuardValue( first );
[a3323db1]272 current = first; // is this the first address-of in the chain?
273 first = false; // from here out, no longer possible for next address-of to be first in chain
274 if ( current ) { // this is the outermost address-of in a chain
[8499c707]275 GuardValue( refDepth );
[a3323db1]276 refDepth = 0; // set depth to 0 so that postmutate can find the innermost address-of easily
[8499c707]277 }
278 }
279
280 Expression * AddrRef::postmutate( AddressExpr * addrExpr ) {
[f74eb47]281 PRINT( std::cerr << "addr ref at " << addrExpr << std::endl; )
[8499c707]282 if ( refDepth == 0 ) {
[f74eb47]283 PRINT( std::cerr << "depth 0, get new depth..." << std::endl; )
[a3323db1]284 // this is the innermost address-of in a chain, record depth D
[b1ccdfd]285 if ( ! isIntrinsicReference( addrExpr->arg ) ) {
[8499c707]286 // try to avoid ?[?]
[a3323db1]287 // xxx - is this condition still necessary? intrinsicReferences should have a cast around them at this point, so I don't think this condition ever fires.
[b1ccdfd]288 refDepth = addrExpr->arg->result->referenceDepth();
[f74eb47]289 PRINT( std::cerr << "arg not intrinsic reference, new depth is: " << refDepth << std::endl; )
[a3323db1]290 } else {
291 assertf( false, "AddrRef : address-of should not have intrinsic reference argument: %s", toCString( addrExpr->arg ) );
[8499c707]292 }
293 }
[a3323db1]294 if ( current ) { // this is the outermost address-of in a chain
[f74eb47]295 PRINT( std::cerr << "current, depth is: " << refDepth << std::endl; )
[8499c707]296 Expression * ret = addrExpr;
297 while ( refDepth ) {
[a3323db1]298 // add one dereference for each
[8499c707]299 ret = mkDeref( ret );
300 refDepth--;
301 }
[a3323db1]302
[57acae0]303 // if addrExpr depth is 0, then the result is a pointer because the arg was depth 1 and not lvalue.
304 // This means the dereference result is not a reference, is lvalue, and one less pointer depth than
305 // the addrExpr. Thus the cast is meaningless.
306 // TODO: One thing to double check is whether it is possible for the types to differ outside of the single
307 // pointer level (i.e. can the base type of addrExpr differ from the type of addrExpr-arg?).
308 // If so then the cast might need to be added, conditional on a more sophisticated check.
309 if ( addCast && addrExpr->result->referenceDepth() != 0 ) {
310 PRINT( std::cerr << "adding cast to " << addrExpr->result << std::endl; )
[a3323db1]311 return new CastExpr( ret, addrExpr->result->clone() );
312 }
[8499c707]313 return ret;
314 }
[f74eb47]315 PRINT( std::cerr << "not current..." << std::endl; )
[8499c707]316 return addrExpr;
317 }
318
[a3323db1]319 void AddrRef::premutate( ApplicationExpr * appExpr ) {
320 visit_children = false;
321 GuardValue( addCast );
322 handleNonAddr( appExpr );
323 for ( Expression *& arg : appExpr->args ) {
324 // each argument with address-of requires a cast
325 addCast = true;
326 arg = arg->acceptMutator( *visitor );
327 }
328 }
329
330 void AddrRef::premutate( SingleInit * ) {
331 GuardValue( addCast );
332 // each initialization context with address-of requires a cast
333 addCast = true;
334 }
335
336
[8a6cf7e]337 Expression * ReferenceConversions::postmutate( AddressExpr * addrExpr ) {
338 // Inner expression may have been lvalue to reference conversion, which becomes an address expression.
339 // In this case, remove the outer address expression and return the argument.
340 // TODO: It's possible that this might catch too much and require a more sophisticated check.
341 return addrExpr;
342 }
343
[1d776fd]344 Expression * ReferenceConversions::postmutate( CastExpr * castExpr ) {
[9a34b5a]345 // xxx - is it possible to convert directly between reference types with a different base? E.g.,
346 // int x;
347 // (double&)x;
348 // At the moment, I am working off of the assumption that this is illegal, thus the cast becomes redundant
349 // after this pass, so trash the cast altogether. If that changes, care must be taken to insert the correct
350 // pointer casts in the right places.
351
[a4d188f]352 // Note: reference depth difference is the determining factor in what code is run, rather than whether something is
353 // reference type or not, since conversion still needs to occur when both types are references that differ in depth.
[31cb252]354
355 Type * destType = castExpr->result;
356 Type * srcType = castExpr->arg->result;
[c9c9ac4f]357 assertf( destType, "Cast to no type in: %s", toCString( castExpr ) );
358 assertf( srcType, "Cast from no type in: %s", toCString( castExpr ) );
[31cb252]359 int depth1 = destType->referenceDepth();
360 int depth2 = srcType->referenceDepth();
361 int diff = depth1 - depth2;
362
[2d80111]363 if ( diff > 0 && ! castExpr->arg->get_lvalue() ) {
[31cb252]364 // rvalue to reference conversion -- introduce temporary
365 // know that reference depth of cast argument is 0, need to introduce n temporaries for reference depth of n, e.g.
366 // (int &&&)3;
367 // becomes
368 // int __ref_tmp_0 = 3;
369 // int & __ref_tmp_1 = _&_ref_tmp_0;
370 // int && __ref_tmp_2 = &__ref_tmp_1;
371 // &__ref_tmp_2;
[453b586]372 // the last & comes from the remaining reference conversion code
[2348881]373 SemanticWarning( castExpr->arg->location, Warning::RvalueToReferenceConversion, toCString( castExpr->arg ) );
[31cb252]374
375 static UniqueName tempNamer( "__ref_tmp_" );
376 ObjectDecl * temp = ObjectDecl::newObject( tempNamer.newName(), castExpr->arg->result->clone(), new SingleInit( castExpr->arg ) );
377 PRINT( std::cerr << "made temp: " << temp << std::endl; )
378 stmtsToAddBefore.push_back( new DeclStmt( temp ) );
[a4d188f]379 for ( int i = 0; i < depth1-1; i++ ) { // xxx - maybe this should be diff-1? check how this works with reference type for srcType
[31cb252]380 ObjectDecl * newTemp = ObjectDecl::newObject( tempNamer.newName(), new ReferenceType( Type::Qualifiers(), temp->type->clone() ), new SingleInit( new AddressExpr( new VariableExpr( temp ) ) ) );
381 PRINT( std::cerr << "made temp" << i << ": " << newTemp << std::endl; )
382 stmtsToAddBefore.push_back( new DeclStmt( newTemp ) );
383 temp = newTemp;
384 }
385 // update diff so that remaining code works out correctly
386 castExpr->arg = new VariableExpr( temp );
387 PRINT( std::cerr << "update cast to: " << castExpr << std::endl; )
388 srcType = castExpr->arg->result;
389 depth2 = srcType->referenceDepth();
390 diff = depth1 - depth2;
391 assert( diff == 1 );
392 }
[fc56cdbf]393
[a4d188f]394 // handle conversion between different depths
[31cb252]395 PRINT (
396 if ( depth1 || depth2 ) {
397 std::cerr << "destType: " << destType << " / srcType: " << srcType << std::endl;
398 std::cerr << "depth: " << depth1 << " / " << depth2 << std::endl;
399 }
400 )
401 if ( diff > 0 ) {
402 // conversion to type with more depth (e.g. int & -> int &&): add address-of for each level of difference
403 Expression * ret = castExpr->arg;
404 for ( int i = 0; i < diff; ++i ) {
405 ret = new AddressExpr( ret );
406 }
[2d80111]407 if ( castExpr->arg->get_lvalue() && ! ResolvExpr::typesCompatible( srcType, strict_dynamic_cast<ReferenceType *>( destType )->base, SymTab::Indexer() ) ) {
[31cb252]408 // must keep cast if cast-to type is different from the actual type
409 castExpr->arg = ret;
[1d776fd]410 return castExpr;
411 }
[31cb252]412 ret->env = castExpr->env;
413 delete ret->result;
414 ret->result = castExpr->result;
415 castExpr->env = nullptr;
416 castExpr->arg = nullptr;
417 castExpr->result = nullptr;
418 delete castExpr;
419 return ret;
420 } else if ( diff < 0 ) {
421 // conversion to type with less depth (e.g. int && -> int &): add dereferences for each level of difference
422 diff = -diff; // care only about magnitude now
[0690350]423 Expression * ret = castExpr->arg;
[31cb252]424 for ( int i = 0; i < diff; ++i ) {
[9191a8e]425 ret = mkDeref( ret );
[ba89e9b7]426 // xxx - try removing one reference here? actually, looks like mkDeref already does this, so more closely look at the types generated.
[9191a8e]427 }
[31cb252]428 if ( ! ResolvExpr::typesCompatibleIgnoreQualifiers( destType->stripReferences(), srcType->stripReferences(), SymTab::Indexer() ) ) {
[8a6cf7e]429 // must keep cast if types are different
[0690350]430 castExpr->arg = ret;
[31cb252]431 return castExpr;
[8a6cf7e]432 }
[31cb252]433 ret->env = castExpr->env;
434 delete ret->result;
435 ret->result = castExpr->result;
[b4f8808]436 assert( ret->get_lvalue() ); // ensure result is lvalue
[31cb252]437 castExpr->env = nullptr;
438 castExpr->arg = nullptr;
439 castExpr->result = nullptr;
440 delete castExpr;
[9191a8e]441 return ret;
[31cb252]442 } else {
443 assert( diff == 0 );
444 // conversion between references of the same depth
[70a5acf]445 if ( ResolvExpr::typesCompatible( castExpr->result, castExpr->arg->result, SymTab::Indexer() ) && castExpr->isGenerated ) {
446 // Remove useless generated casts
447 PRINT(
448 std::cerr << "types are compatible, removing cast: " << castExpr << std::endl;
449 std::cerr << "-- " << castExpr->result << std::endl;
450 std::cerr << "-- " << castExpr->arg->result << std::endl;
451 )
452 Expression * ret = castExpr->arg;
453 castExpr->arg = nullptr;
454 std::swap( castExpr->env, ret->env );
455 delete castExpr;
456 return ret;
457 }
[31cb252]458 return castExpr;
[1d776fd]459 }
[01aeade]460 }
[b6fd751]461
[1d776fd]462 Type * ReferenceTypeElimination::postmutate( ReferenceType * refType ) {
[b1ccdfd]463 Type * base = refType->base;
[8a6cf7e]464 Type::Qualifiers qualifiers = refType->get_qualifiers();
[b1ccdfd]465 refType->base = nullptr;
[1d776fd]466 delete refType;
[8a6cf7e]467 return new PointerType( qualifiers, base );
[ce8c12f]468 }
469
[acd7c5dd]470 template<typename Func>
471 Expression * GeneralizedLvalue::applyTransformation( Expression * expr, Expression * arg, Func mkExpr ) {
472 if ( CommaExpr * commaExpr = dynamic_cast< CommaExpr * >( arg ) ) {
[b1ccdfd]473 Expression * arg1 = commaExpr->arg1->clone();
474 Expression * arg2 = commaExpr->arg2->clone();
[9236060]475 Expression * ret = new CommaExpr( arg1, mkExpr( arg2 )->acceptMutator( *visitor ) );
[b1ccdfd]476 ret->env = expr->env;
477 expr->env = nullptr;
[acd7c5dd]478 delete expr;
[8499c707]479 return ret;
[acd7c5dd]480 } else if ( ConditionalExpr * condExpr = dynamic_cast< ConditionalExpr * >( arg ) ) {
[b1ccdfd]481 Expression * arg1 = condExpr->arg1->clone();
482 Expression * arg2 = condExpr->arg2->clone();
483 Expression * arg3 = condExpr->arg3->clone();
[9236060]484 ConditionalExpr * ret = new ConditionalExpr( arg1, mkExpr( arg2 )->acceptMutator( *visitor ), mkExpr( arg3 )->acceptMutator( *visitor ) );
[b1ccdfd]485 ret->env = expr->env;
486 expr->env = nullptr;
[acd7c5dd]487 delete expr;
488
489 // conditional expr type may not be either of the argument types, need to unify
490 using namespace ResolvExpr;
491 Type* commonType = nullptr;
492 TypeEnvironment newEnv;
493 AssertionSet needAssertions, haveAssertions;
494 OpenVarSet openVars;
[b1ccdfd]495 unify( ret->arg2->result, ret->arg3->result, newEnv, needAssertions, haveAssertions, openVars, SymTab::Indexer(), commonType );
496 ret->result = commonType ? commonType : ret->arg2->result->clone();
[8499c707]497 return ret;
[b6fd751]498 }
[acd7c5dd]499 return expr;
500 }
501
[9236060]502 Expression * GeneralizedLvalue::postmutate( MemberExpr * memExpr ) {
[b1ccdfd]503 return applyTransformation( memExpr, memExpr->aggregate, [=]( Expression * aggr ) { return new MemberExpr( memExpr->member, aggr ); } );
[acd7c5dd]504 }
505
[9236060]506 Expression * GeneralizedLvalue::postmutate( AddressExpr * addrExpr ) {
[b1ccdfd]507 return applyTransformation( addrExpr, addrExpr->arg, []( Expression * arg ) { return new AddressExpr( arg ); } );
[b6fd751]508 }
[cb43451]509
[8499c707]510 Expression * CollapseAddrDeref::postmutate( AddressExpr * addrExpr ) {
[b1ccdfd]511 Expression * arg = addrExpr->arg;
[cb43451]512 if ( isIntrinsicReference( arg ) ) {
513 std::string fname = InitTweak::getFunctionName( arg );
514 if ( fname == "*?" ) {
515 Expression *& arg0 = InitTweak::getCallArg( arg, 0 );
516 Expression * ret = arg0;
[b1ccdfd]517 ret->set_env( addrExpr->env );
[cb43451]518 arg0 = nullptr;
[b1ccdfd]519 addrExpr->env = nullptr;
[8499c707]520 delete addrExpr;
[cb43451]521 return ret;
522 }
[bf7b6015]523 } else if ( CastExpr * castExpr = dynamic_cast< CastExpr * > ( arg ) ) {
524 // need to move cast to pointer type out a level since address of pointer
525 // is not valid C code (can be introduced in prior passes, e.g., InstantiateGeneric)
526 if ( InitTweak::getPointerBase( castExpr->result ) ) {
527 addrExpr->arg = castExpr->arg;
528 castExpr->arg = addrExpr;
529 castExpr->result = new PointerType( Type::Qualifiers(), castExpr->result );
530 return castExpr;
531 }
[cb43451]532 }
[8499c707]533 return addrExpr;
[cb43451]534 }
535
536 Expression * CollapseAddrDeref::postmutate( ApplicationExpr * appExpr ) {
537 if ( isIntrinsicReference( appExpr ) ) {
538 std::string fname = InitTweak::getFunctionName( appExpr );
539 if ( fname == "*?" ) {
540 Expression * arg = InitTweak::getCallArg( appExpr, 0 );
541 // xxx - this isn't right, because it can remove casts that should be there...
542 // while ( CastExpr * castExpr = dynamic_cast< CastExpr * >( arg ) ) {
543 // arg = castExpr->get_arg();
544 // }
545 if ( AddressExpr * addrExpr = dynamic_cast< AddressExpr * >( arg ) ) {
[b1ccdfd]546 Expression * ret = addrExpr->arg;
547 ret->env = appExpr->env;
548 addrExpr->arg = nullptr;
549 appExpr->env = nullptr;
[cb43451]550 delete appExpr;
551 return ret;
552 }
553 }
554 }
555 return appExpr;
556 }
[01aeade]557 } // namespace
[51b73452]558} // namespace GenPoly
[01aeade]559
[51587aa]560// Local Variables: //
561// tab-width: 4 //
562// mode: c++ //
563// compile-command: "make install" //
564// End: //
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