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// Compiler implementation of the D programming language |
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// Copyright (c) 1999-2008 by Digital Mars |
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// All Rights Reserved |
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// written by Walter Bright |
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// http://www.digitalmars.com |
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// License for redistribution is by either the Artistic License |
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// in artistic.txt, or the GNU General Public License in gnu.txt. |
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// See the included readme.txt for details. |
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|
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#include <stdio.h> |
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#include <assert.h> |
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| 12 |
|
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#include "root.h" |
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| 14 |
#include "aggregate.h" |
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#include "scope.h" |
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#include "mtype.h" |
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#include "declaration.h" |
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#include "module.h" |
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#include "id.h" |
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#include "expression.h" |
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#include "statement.h" |
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| 22 |
#include "init.h" |
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| 23 |
|
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|
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/******************************************* |
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| 26 |
* We need an opAssign for the struct if |
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| 27 |
* it has a destructor or a postblit. |
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* We need to generate one if a user-specified one does not exist. |
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*/ |
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|
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| 31 |
int StructDeclaration::needOpAssign() |
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{ |
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#define X 0 |
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| 34 |
if (X) printf("StructDeclaration::needOpAssign() %s\n", toChars()); |
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| 35 |
if (hasIdentityAssign) |
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goto Ldontneed; |
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| 37 |
|
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| 38 |
if (dtor || postblit) |
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goto Lneed; |
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| 40 |
|
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| 41 |
/* If any of the fields need an opAssign, then we |
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| 42 |
* need it too. |
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*/ |
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for (size_t i = 0; i < fields.dim; i++) |
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{ |
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Dsymbol *s = (Dsymbol *)fields.data[i]; |
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VarDeclaration *v = s->isVarDeclaration(); |
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assert(v && v->storage_class & STCfield); |
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Type *tv = v->type->toBasetype(); |
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while (tv->ty == Tsarray) |
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{ TypeSArray *ta = (TypeSArray *)tv; |
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tv = tv->nextOf()->toBasetype(); |
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} |
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if (tv->ty == Tstruct) |
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{ TypeStruct *ts = (TypeStruct *)tv; |
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| 56 |
StructDeclaration *sd = ts->sym; |
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if (sd->needOpAssign()) |
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goto Lneed; |
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} |
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| 60 |
} |
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Ldontneed: |
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if (X) printf("\tdontneed\n"); |
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return 0; |
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|
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Lneed: |
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if (X) printf("\tneed\n"); |
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return 1; |
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#undef X |
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} |
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|
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/****************************************** |
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* Build opAssign for struct. |
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* S* opAssign(S s) { ... } |
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*/ |
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|
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FuncDeclaration *StructDeclaration::buildOpAssign(Scope *sc) |
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{ |
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if (!needOpAssign()) |
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return NULL; |
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|
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//printf("StructDeclaration::buildOpAssign() %s\n", toChars()); |
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|
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FuncDeclaration *fop = NULL; |
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|
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Argument *param = new Argument(STCnodtor, type, Id::p, NULL); |
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Arguments *fparams = new Arguments; |
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fparams->push(param); |
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Type *ftype = new TypeFunction(fparams, handle, FALSE, LINKd); |
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|
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fop = new FuncDeclaration(0, 0, Id::assign, STCundefined, ftype); |
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|
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Expression *e = NULL; |
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if (postblit) |
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{ /* Swap: |
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* tmp = *this; *this = s; tmp.dtor(); |
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*/ |
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//printf("\tswap copy\n"); |
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Identifier *idtmp = Lexer::uniqueId("__tmp"); |
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VarDeclaration *tmp; |
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AssignExp *ec = NULL; |
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if (dtor) |
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{ |
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tmp = new VarDeclaration(0, type, idtmp, new VoidInitializer(0)); |
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tmp->noauto = 1; |
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e = new DeclarationExp(0, tmp); |
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ec = new AssignExp(0, |
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new VarExp(0, tmp), |
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new PtrExp(0, new ThisExp(0))); |
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ec->op = TOKblit; |
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e = Expression::combine(e, ec); |
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} |
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ec = new AssignExp(0, |
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new PtrExp(0, new ThisExp(0)), |
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new IdentifierExp(0, Id::p)); |
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ec->op = TOKblit; |
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e = Expression::combine(e, ec); |
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if (dtor) |
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{ |
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/* Instead of running the destructor on s, run it |
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* on tmp. This avoids needing to copy tmp back in to s. |
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*/ |
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Expression *ec = new DotVarExp(0, new VarExp(0, tmp), dtor, 0); |
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ec = new CallExp(0, ec); |
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e = Expression::combine(e, ec); |
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} |
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} |
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else |
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{ /* Do memberwise copy |
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*/ |
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//printf("\tmemberwise copy\n"); |
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for (size_t i = 0; i < fields.dim; i++) |
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{ |
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Dsymbol *s = (Dsymbol *)fields.data[i]; |
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VarDeclaration *v = s->isVarDeclaration(); |
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assert(v && v->storage_class & STCfield); |
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// this.v = s.v; |
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AssignExp *ec = new AssignExp(0, |
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new DotVarExp(0, new ThisExp(0), v, 0), |
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new DotVarExp(0, new IdentifierExp(0, Id::p), v, 0)); |
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ec->op = TOKblit; |
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e = Expression::combine(e, ec); |
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} |
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} |
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Statement *s1 = new ExpStatement(0, e); |
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|
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/* Add: |
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* return this; |
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*/ |
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e = new ThisExp(0); |
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Statement *s2 = new ReturnStatement(0, e); |
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|
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fop->fbody = new CompoundStatement(0, s1, s2); |
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|
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members->push(fop); |
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fop->addMember(sc, this, 1); |
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|
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sc = sc->push(); |
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sc->stc = 0; |
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sc->linkage = LINKd; |
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|
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fop->semantic(sc); |
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|
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sc->pop(); |
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|
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//printf("-StructDeclaration::buildOpAssign() %s\n", toChars()); |
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|
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return fop; |
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} |
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|
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/******************************************* |
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* Build copy constructor for struct. |
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* Copy constructors are compiler generated only, and are only |
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* callable from the compiler. They are not user accessible. |
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* A copy constructor is: |
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* void cpctpr(ref S s) |
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* { |
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* *this = s; |
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* this.postBlit(); |
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* } |
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* This is done so: |
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* - postBlit() never sees uninitialized data |
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* - memcpy can be much more efficient than memberwise copy |
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* - no fields are overlooked |
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*/ |
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|
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FuncDeclaration *StructDeclaration::buildCpCtor(Scope *sc) |
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{ |
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//printf("StructDeclaration::buildCpCtor() %s\n", toChars()); |
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FuncDeclaration *fcp = NULL; |
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|
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/* Copy constructor is only necessary if there is a postblit function, |
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* otherwise the code generator will just do a bit copy. |
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*/ |
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if (postblit) |
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{ |
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//printf("generating cpctor\n"); |
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|
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Argument *param = new Argument(STCref, type, Id::p, NULL); |
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Arguments *fparams = new Arguments; |
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fparams->push(param); |
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Type *ftype = new TypeFunction(fparams, Type::tvoid, FALSE, LINKd); |
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|
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fcp = new FuncDeclaration(0, 0, Id::cpctor, STCundefined, ftype); |
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|
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// Build *this = p; |
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Expression *e = new ThisExp(0); |
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e = new PtrExp(0, e); |
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AssignExp *ea = new AssignExp(0, e, new IdentifierExp(0, Id::p)); |
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ea->op = TOKblit; |
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Statement *s = new ExpStatement(0, ea); |
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|
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// Build postBlit(); |
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e = new VarExp(0, postblit, 0); |
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e = new CallExp(0, e); |
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|
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s = new CompoundStatement(0, s, new ExpStatement(0, e)); |
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fcp->fbody = s; |
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|
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members->push(fcp); |
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|
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sc = sc->push(); |
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sc->stc = 0; |
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sc->linkage = LINKd; |
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fcp->semantic(sc); |
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sc->pop(); |
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} |
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|
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return fcp; |
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} |
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|
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/***************************************** |
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* Create inclusive postblit for struct by aggregating |
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* all the postblits in postblits[] with the postblits for |
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* all the members. |
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* Note the close similarity with AggregateDeclaration::buildDtor(), |
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* and the ordering changes (runs forward instead of backwards). |
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*/ |
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|
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#if V2 |
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| 242 |
FuncDeclaration *StructDeclaration::buildPostBlit(Scope *sc) |
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{ |
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//printf("StructDeclaration::buildPostBlit() %s\n", toChars()); |
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Expression *e = NULL; |
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| 246 |
|
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| 247 |
for (size_t i = 0; i < fields.dim; i++) |
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{ |
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| 249 |
Dsymbol *s = (Dsymbol *)fields.data[i]; |
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VarDeclaration *v = s->isVarDeclaration(); |
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assert(v && v->storage_class & STCfield); |
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| 252 |
Type *tv = v->type->toBasetype(); |
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| 253 |
size_t dim = 1; |
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| 254 |
while (tv->ty == Tsarray) |
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{ TypeSArray *ta = (TypeSArray *)tv; |
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dim *= ((TypeSArray *)tv)->dim->toInteger(); |
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tv = tv->nextOf()->toBasetype(); |
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| 258 |
} |
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| 259 |
if (tv->ty == Tstruct) |
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| 260 |
{ TypeStruct *ts = (TypeStruct *)tv; |
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| 261 |
StructDeclaration *sd = ts->sym; |
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| 262 |
if (sd->postblit) |
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{ Expression *ex; |
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| 264 |
|
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// this.v |
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ex = new ThisExp(0); |
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ex = new DotVarExp(0, ex, v, 0); |
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| 268 |
|
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if (dim == 1) |
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{ // this.v.dtor() |
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ex = new DotVarExp(0, ex, sd->postblit, 0); |
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ex = new CallExp(0, ex); |
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| 273 |
} |
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| 274 |
else |
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| 275 |
{ |
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// Typeinfo.postblit(cast(void*)&this.v); |
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| 277 |
Expression *ea = new AddrExp(0, ex); |
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ea = new CastExp(0, ea, Type::tvoid->pointerTo()); |
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| 279 |
|
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| 280 |
Expression *et = v->type->getTypeInfo(sc); |
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et = new DotIdExp(0, et, Id::postblit); |
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| 282 |
|
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| 283 |
ex = new CallExp(0, et, ea); |
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| 284 |
} |
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| 285 |
e = Expression::combine(e, ex); // combine in forward order |
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| 286 |
} |
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| 287 |
} |
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| 288 |
} |
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| 289 |
|
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/* Build our own "postblit" which executes e |
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| 291 |
*/ |
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| 292 |
if (e) |
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{ //printf("Building __fieldPostBlit()\n"); |
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| 294 |
PostBlitDeclaration *dd = new PostBlitDeclaration(0, 0, Lexer::idPool("__fieldPostBlit")); |
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| 295 |
dd->fbody = new ExpStatement(0, e); |
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dtors.push(dd); |
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members->push(dd); |
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dd->semantic(sc); |
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| 299 |
} |
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| 300 |
|
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| 301 |
switch (postblits.dim) |
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| 302 |
{ |
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| 303 |
case 0: |
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| 304 |
return NULL; |
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| 305 |
|
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| 306 |
case 1: |
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| 307 |
return (FuncDeclaration *)postblits.data[0]; |
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| 308 |
|
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| 309 |
default: |
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| 310 |
e = NULL; |
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| 311 |
for (size_t i = 0; i < postblits.dim; i++) |
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| 312 |
{ FuncDeclaration *fd = (FuncDeclaration *)postblits.data[i]; |
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| 313 |
Expression *ex = new ThisExp(0); |
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| 314 |
ex = new DotVarExp(0, ex, fd, 0); |
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| 315 |
ex = new CallExp(0, ex); |
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| 316 |
e = Expression::combine(e, ex); |
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| 317 |
} |
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| 318 |
PostBlitDeclaration *dd = new PostBlitDeclaration(0, 0, Lexer::idPool("__aggrPostBlit")); |
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| 319 |
dd->fbody = new ExpStatement(0, e); |
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| 320 |
members->push(dd); |
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| 321 |
dd->semantic(sc); |
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| 322 |
return dd; |
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| 323 |
} |
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| 324 |
} |
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| 325 |
|
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| 326 |
#endif |
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| 327 |
|
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| 328 |
/***************************************** |
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| 329 |
* Create inclusive destructor for struct/class by aggregating |
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| 330 |
* all the destructors in dtors[] with the destructors for |
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| 331 |
* all the members. |
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| 332 |
* Note the close similarity with StructDeclaration::buildPostBlit(), |
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| 333 |
* and the ordering changes (runs backward instead of forwards). |
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| 334 |
*/ |
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| 335 |
|
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| 336 |
FuncDeclaration *AggregateDeclaration::buildDtor(Scope *sc) |
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| 337 |
{ |
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| 338 |
//printf("AggregateDeclaration::buildDtor() %s\n", toChars()); |
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| 339 |
Expression *e = NULL; |
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| 340 |
|
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| 341 |
#if V2 |
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| 342 |
for (size_t i = 0; i < fields.dim; i++) |
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| 343 |
{ |
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| 344 |
Dsymbol *s = (Dsymbol *)fields.data[i]; |
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| 345 |
VarDeclaration *v = s->isVarDeclaration(); |
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| 346 |
assert(v && v->storage_class & STCfield); |
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| 347 |
Type *tv = v->type->toBasetype(); |
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| 348 |
size_t dim = 1; |
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| 349 |
while (tv->ty == Tsarray) |
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| 350 |
{ TypeSArray *ta = (TypeSArray *)tv; |
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| 351 |
dim *= ((TypeSArray *)tv)->dim->toInteger(); |
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| 352 |
tv = tv->nextOf()->toBasetype(); |
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| 353 |
} |
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| 354 |
if (tv->ty == Tstruct) |
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| 355 |
{ TypeStruct *ts = (TypeStruct *)tv; |
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| 356 |
StructDeclaration *sd = ts->sym; |
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| 357 |
if (sd->dtor) |
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| 358 |
{ Expression *ex; |
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| 359 |
|
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| 360 |
// this.v |
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| 361 |
ex = new ThisExp(0); |
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| 362 |
ex = new DotVarExp(0, ex, v, 0); |
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| 363 |
|
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| 364 |
if (dim == 1) |
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| 365 |
{ // this.v.dtor() |
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| 366 |
ex = new DotVarExp(0, ex, sd->dtor, 0); |
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| 367 |
ex = new CallExp(0, ex); |
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| 368 |
} |
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| 369 |
else |
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| 370 |
{ |
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| 371 |
// Typeinfo.destroy(cast(void*)&this.v); |
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| 372 |
Expression *ea = new AddrExp(0, ex); |
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| 373 |
ea = new CastExp(0, ea, Type::tvoid->pointerTo()); |
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| 374 |
|
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| 375 |
Expression *et = v->type->getTypeInfo(sc); |
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| 376 |
et = new DotIdExp(0, et, Id::destroy); |
|---|
| 377 |
|
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| 378 |
ex = new CallExp(0, et, ea); |
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| 379 |
} |
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| 380 |
e = Expression::combine(ex, e); // combine in reverse order |
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| 381 |
} |
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| 382 |
} |
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| 383 |
} |
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| 384 |
|
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| 385 |
/* Build our own "destructor" which executes e |
|---|
| 386 |
*/ |
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| 387 |
if (e) |
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| 388 |
{ //printf("Building __fieldDtor()\n"); |
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| 389 |
DtorDeclaration *dd = new DtorDeclaration(0, 0, Lexer::idPool("__fieldDtor")); |
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| 390 |
dd->fbody = new ExpStatement(0, e); |
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| 391 |
dtors.shift(dd); |
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| 392 |
members->push(dd); |
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| 393 |
dd->semantic(sc); |
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| 394 |
} |
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| 395 |
#endif |
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| 396 |
|
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| 397 |
switch (dtors.dim) |
|---|
| 398 |
{ |
|---|
| 399 |
case 0: |
|---|
| 400 |
return NULL; |
|---|
| 401 |
|
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| 402 |
case 1: |
|---|
| 403 |
return (FuncDeclaration *)dtors.data[0]; |
|---|
| 404 |
|
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| 405 |
default: |
|---|
| 406 |
e = NULL; |
|---|
| 407 |
for (size_t i = 0; i < dtors.dim; i++) |
|---|
| 408 |
{ FuncDeclaration *fd = (FuncDeclaration *)dtors.data[i]; |
|---|
| 409 |
Expression *ex = new ThisExp(0); |
|---|
| 410 |
ex = new DotVarExp(0, ex, fd, 0); |
|---|
| 411 |
ex = new CallExp(0, ex); |
|---|
| 412 |
e = Expression::combine(ex, e); |
|---|
| 413 |
} |
|---|
| 414 |
DtorDeclaration *dd = new DtorDeclaration(0, 0, Lexer::idPool("__aggrDtor")); |
|---|
| 415 |
dd->fbody = new ExpStatement(0, e); |
|---|
| 416 |
members->push(dd); |
|---|
| 417 |
dd->semantic(sc); |
|---|
| 418 |
return dd; |
|---|
| 419 |
} |
|---|
| 420 |
} |
|---|