001    /*
002     * Copyright 2010-2015 JetBrains s.r.o.
003     *
004     * Licensed under the Apache License, Version 2.0 (the "License");
005     * you may not use this file except in compliance with the License.
006     * You may obtain a copy of the License at
007     *
008     * http://www.apache.org/licenses/LICENSE-2.0
009     *
010     * Unless required by applicable law or agreed to in writing, software
011     * distributed under the License is distributed on an "AS IS" BASIS,
012     * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
013     * See the License for the specific language governing permissions and
014     * limitations under the License.
015     */
016    
017    package org.jetbrains.kotlin.codegen;
018    
019    import com.intellij.openapi.progress.ProcessCanceledException;
020    import com.intellij.psi.PsiElement;
021    import kotlin.Unit;
022    import kotlin.jvm.functions.Function0;
023    import kotlin.jvm.functions.Function1;
024    import org.jetbrains.annotations.NotNull;
025    import org.jetbrains.annotations.Nullable;
026    import org.jetbrains.kotlin.backend.common.CodegenUtil;
027    import org.jetbrains.kotlin.codegen.context.*;
028    import org.jetbrains.kotlin.codegen.inline.*;
029    import org.jetbrains.kotlin.codegen.state.GenerationState;
030    import org.jetbrains.kotlin.codegen.state.JetTypeMapper;
031    import org.jetbrains.kotlin.descriptors.*;
032    import org.jetbrains.kotlin.descriptors.annotations.Annotations;
033    import org.jetbrains.kotlin.descriptors.impl.SimpleFunctionDescriptorImpl;
034    import org.jetbrains.kotlin.fileClasses.FileClasses;
035    import org.jetbrains.kotlin.fileClasses.JvmFileClassesProvider;
036    import org.jetbrains.kotlin.load.java.JavaVisibilities;
037    import org.jetbrains.kotlin.load.java.JvmAbi;
038    import org.jetbrains.kotlin.name.Name;
039    import org.jetbrains.kotlin.name.SpecialNames;
040    import org.jetbrains.kotlin.psi.*;
041    import org.jetbrains.kotlin.resolve.*;
042    import org.jetbrains.kotlin.resolve.annotations.AnnotationUtilKt;
043    import org.jetbrains.kotlin.resolve.constants.ConstantValue;
044    import org.jetbrains.kotlin.resolve.constants.evaluate.ConstantExpressionEvaluator;
045    import org.jetbrains.kotlin.resolve.descriptorUtil.DescriptorUtilsKt;
046    import org.jetbrains.kotlin.resolve.jvm.AsmTypes;
047    import org.jetbrains.kotlin.resolve.jvm.diagnostics.JvmDeclarationOriginKt;
048    import org.jetbrains.kotlin.resolve.jvm.jvmSignature.JvmMethodSignature;
049    import org.jetbrains.kotlin.resolve.scopes.receivers.ReceiverValue;
050    import org.jetbrains.kotlin.resolve.scopes.receivers.TransientReceiver;
051    import org.jetbrains.kotlin.resolve.source.KotlinSourceElementKt;
052    import org.jetbrains.kotlin.storage.LockBasedStorageManager;
053    import org.jetbrains.kotlin.storage.NotNullLazyValue;
054    import org.jetbrains.kotlin.types.ErrorUtils;
055    import org.jetbrains.kotlin.types.KotlinType;
056    import org.jetbrains.org.objectweb.asm.Label;
057    import org.jetbrains.org.objectweb.asm.MethodVisitor;
058    import org.jetbrains.org.objectweb.asm.Type;
059    import org.jetbrains.org.objectweb.asm.commons.InstructionAdapter;
060    import org.jetbrains.org.objectweb.asm.commons.Method;
061    
062    import java.util.*;
063    
064    import static org.jetbrains.kotlin.codegen.AsmUtil.calculateInnerClassAccessFlags;
065    import static org.jetbrains.kotlin.codegen.AsmUtil.isPrimitive;
066    import static org.jetbrains.kotlin.descriptors.CallableMemberDescriptor.Kind.SYNTHESIZED;
067    import static org.jetbrains.kotlin.resolve.BindingContext.VARIABLE;
068    import static org.jetbrains.kotlin.resolve.DescriptorUtils.isCompanionObject;
069    import static org.jetbrains.kotlin.resolve.DescriptorUtils.isStaticDeclaration;
070    import static org.jetbrains.kotlin.resolve.jvm.AsmTypes.*;
071    import static org.jetbrains.kotlin.resolve.jvm.diagnostics.JvmDeclarationOrigin.NO_ORIGIN;
072    import static org.jetbrains.kotlin.resolve.jvm.diagnostics.JvmDeclarationOriginKt.Synthetic;
073    import static org.jetbrains.org.objectweb.asm.Opcodes.*;
074    
075    public abstract class MemberCodegen<T extends KtElement/* TODO: & JetDeclarationContainer*/> {
076        protected final GenerationState state;
077        protected final T element;
078        protected final FieldOwnerContext context;
079        protected final ClassBuilder v;
080        protected final FunctionCodegen functionCodegen;
081        protected final PropertyCodegen propertyCodegen;
082        protected final JetTypeMapper typeMapper;
083        protected final BindingContext bindingContext;
084        protected final JvmFileClassesProvider fileClassesProvider;
085        private final MemberCodegen<?> parentCodegen;
086        private final ReifiedTypeParametersUsages reifiedTypeParametersUsages = new ReifiedTypeParametersUsages();
087        protected final Collection<ClassDescriptor> innerClasses = new LinkedHashSet<ClassDescriptor>();
088    
089        protected ExpressionCodegen clInit;
090        private NameGenerator inlineNameGenerator;
091    
092        private SourceMapper sourceMapper;
093        private final ConstantExpressionEvaluator constantExpressionEvaluator;
094    
095        public MemberCodegen(
096                @NotNull GenerationState state,
097                @Nullable MemberCodegen<?> parentCodegen,
098                @NotNull FieldOwnerContext context,
099                T element,
100                @NotNull ClassBuilder builder
101        ) {
102            this.state = state;
103            this.typeMapper = state.getTypeMapper();
104            this.bindingContext = state.getBindingContext();
105            this.fileClassesProvider = state.getFileClassesProvider();
106            this.element = element;
107            this.context = context;
108            this.v = builder;
109            this.functionCodegen = new FunctionCodegen(context, v, state, this);
110            this.propertyCodegen = new PropertyCodegen(context, v, functionCodegen, this);
111            this.parentCodegen = parentCodegen;
112            this.constantExpressionEvaluator = new ConstantExpressionEvaluator(state.getModule().getBuiltIns());
113        }
114    
115        protected MemberCodegen(@NotNull MemberCodegen<T> wrapped, T declaration, FieldOwnerContext codegenContext) {
116            this(wrapped.state, wrapped.getParentCodegen(), codegenContext, declaration, wrapped.v);
117        }
118    
119        public void generate() {
120            generateDeclaration();
121    
122            generateBody();
123    
124            generateSyntheticParts();
125    
126            if (state.getClassBuilderMode() == ClassBuilderMode.FULL) {
127                generateKotlinAnnotation();
128            }
129    
130            done();
131        }
132    
133        protected abstract void generateDeclaration();
134    
135        protected abstract void generateBody();
136    
137        protected void generateSyntheticParts() {
138        }
139    
140        protected abstract void generateKotlinAnnotation();
141    
142        @Nullable
143        protected ClassDescriptor classForInnerClassRecord() {
144            return null;
145        }
146    
147        public static void markLineNumberForDescriptor(@Nullable ClassDescriptor declarationDescriptor, @NotNull InstructionAdapter v) {
148            if (declarationDescriptor == null) {
149                return;
150            }
151    
152            PsiElement classElement = DescriptorToSourceUtils.getSourceFromDescriptor(declarationDescriptor);
153            if (classElement != null) {
154                markLineNumberForElement(classElement, v);
155            }
156        }
157    
158        public static void markLineNumberForElement(@NotNull PsiElement element, @NotNull InstructionAdapter v) {
159            Integer lineNumber = CodegenUtil.getLineNumberForElement(element, false);
160            if (lineNumber != null) {
161                Label label = new Label();
162                v.visitLabel(label);
163                v.visitLineNumber(lineNumber, label);
164            }
165        }
166    
167        protected void done() {
168            if (clInit != null) {
169                clInit.v.visitInsn(RETURN);
170                FunctionCodegen.endVisit(clInit.v, "static initializer", element);
171            }
172    
173            writeInnerClasses();
174    
175            if (sourceMapper != null) {
176                SourceMapper.Companion.flushToClassBuilder(sourceMapper, v);
177            }
178    
179            v.done();
180        }
181    
182        public void genFunctionOrProperty(@NotNull KtDeclaration functionOrProperty) {
183            if (functionOrProperty instanceof KtNamedFunction) {
184                try {
185                    functionCodegen.gen((KtNamedFunction) functionOrProperty);
186                }
187                catch (ProcessCanceledException e) {
188                    throw e;
189                }
190                catch (CompilationException e) {
191                    throw e;
192                }
193                catch (Exception e) {
194                    throw new CompilationException("Failed to generate function " + functionOrProperty.getName(), e, functionOrProperty);
195                }
196            }
197            else if (functionOrProperty instanceof KtProperty) {
198                try {
199                    propertyCodegen.gen((KtProperty) functionOrProperty);
200                }
201                catch (ProcessCanceledException e) {
202                    throw e;
203                }
204                catch (CompilationException e) {
205                    throw e;
206                }
207                catch (Exception e) {
208                    throw new CompilationException("Failed to generate property " + functionOrProperty.getName(), e, functionOrProperty);
209                }
210            }
211            else {
212                throw new IllegalArgumentException("Unknown parameter: " + functionOrProperty);
213            }
214        }
215    
216        public static void genClassOrObject(
217                @NotNull CodegenContext parentContext,
218                @NotNull KtClassOrObject aClass,
219                @NotNull GenerationState state,
220                @Nullable MemberCodegen<?> parentCodegen
221        ) {
222            ClassDescriptor descriptor = state.getBindingContext().get(BindingContext.CLASS, aClass);
223    
224            if (descriptor == null || ErrorUtils.isError(descriptor)) {
225                badDescriptor(descriptor, state.getClassBuilderMode());
226                return;
227            }
228    
229            if (descriptor.getName().equals(SpecialNames.NO_NAME_PROVIDED)) {
230                badDescriptor(descriptor, state.getClassBuilderMode());
231            }
232    
233            Type classType = state.getTypeMapper().mapClass(descriptor);
234            ClassBuilder classBuilder = state.getFactory().newVisitor(JvmDeclarationOriginKt.OtherOrigin(aClass, descriptor), classType, aClass.getContainingFile());
235            ClassContext classContext = parentContext.intoClass(descriptor, OwnerKind.IMPLEMENTATION, state);
236            new ImplementationBodyCodegen(aClass, classContext, classBuilder, state, parentCodegen, false).generate();
237        }
238    
239        private static void badDescriptor(ClassDescriptor descriptor, ClassBuilderMode mode) {
240            if (mode != ClassBuilderMode.LIGHT_CLASSES) {
241                throw new IllegalStateException("Generating bad descriptor in ClassBuilderMode = " + mode + ": " + descriptor);
242            }
243        }
244    
245        public void genClassOrObject(KtClassOrObject aClass) {
246            genClassOrObject(context, aClass, state, this);
247        }
248    
249        private void writeInnerClasses() {
250            // JVMS7 (4.7.6): a nested class or interface member will have InnerClasses information
251            // for each enclosing class and for each immediate member
252            ClassDescriptor classDescriptor = classForInnerClassRecord();
253            if (classDescriptor != null) {
254                if (parentCodegen != null) {
255                    parentCodegen.innerClasses.add(classDescriptor);
256                }
257    
258                for (MemberCodegen<?> codegen = this; codegen != null; codegen = codegen.getParentCodegen()) {
259                    ClassDescriptor outerClass = codegen.classForInnerClassRecord();
260                    if (outerClass != null) {
261                        innerClasses.add(outerClass);
262                    }
263                }
264            }
265    
266            for (ClassDescriptor innerClass : innerClasses) {
267                writeInnerClass(innerClass);
268            }
269        }
270    
271        private void writeInnerClass(@NotNull ClassDescriptor innerClass) {
272            DeclarationDescriptor containing = innerClass.getContainingDeclaration();
273            String outerClassInternalName = null;
274            if (containing instanceof ClassDescriptor) {
275                outerClassInternalName = typeMapper.mapClass((ClassDescriptor) containing).getInternalName();
276            }
277            String innerName = innerClass.getName().isSpecial() ? null : innerClass.getName().asString();
278            String innerClassInternalName = typeMapper.mapClass(innerClass).getInternalName();
279            v.visitInnerClass(innerClassInternalName, outerClassInternalName, innerName, calculateInnerClassAccessFlags(innerClass));
280        }
281    
282        protected void writeOuterClassAndEnclosingMethod() {
283            CodegenContext context = this.context.getParentContext();
284            while (context instanceof MethodContext && ((MethodContext) context).isInliningLambda()) {
285                // If this is a lambda which will be inlined, skip its MethodContext and enclosing ClosureContext
286                //noinspection ConstantConditions
287                context = context.getParentContext().getParentContext();
288            }
289            assert context != null : "Outermost context can't be null: " + this.context;
290    
291            Type enclosingAsmType = computeOuterClass(context);
292            if (enclosingAsmType != null) {
293                Method method = computeEnclosingMethod(context);
294    
295                v.visitOuterClass(
296                        enclosingAsmType.getInternalName(),
297                        method == null ? null : method.getName(),
298                        method == null ? null : method.getDescriptor()
299                );
300            }
301        }
302    
303        @Nullable
304        private Type computeOuterClass(@NotNull CodegenContext<?> context) {
305            CodegenContext<? extends ClassOrPackageFragmentDescriptor> outermost = context.getClassOrPackageParentContext();
306            if (outermost instanceof ClassContext) {
307                return typeMapper.mapType(((ClassContext) outermost).getContextDescriptor());
308            }
309            else if (outermost instanceof DelegatingFacadeContext || outermost instanceof DelegatingToPartContext) {
310                Type implementationOwnerType = CodegenContextUtil.getImplementationOwnerClassType(outermost);
311                if (implementationOwnerType != null) {
312                    return implementationOwnerType;
313                }
314                else {
315                    return FileClasses.getFileClassType(fileClassesProvider, element.getContainingKtFile());
316                }
317            }
318    
319            return null;
320        }
321    
322        @Nullable
323        private Method computeEnclosingMethod(@NotNull CodegenContext context) {
324            if (context instanceof MethodContext) {
325                Method method = typeMapper.mapSignature(((MethodContext) context).getFunctionDescriptor()).getAsmMethod();
326                if (!method.getName().equals("<clinit>")) {
327                    return method;
328                }
329            }
330            return null;
331        }
332    
333        @NotNull
334        public NameGenerator getInlineNameGenerator() {
335            if (inlineNameGenerator == null) {
336                String prefix = InlineCodegenUtil.getInlineName(context, typeMapper, fileClassesProvider);
337                inlineNameGenerator = new NameGenerator(prefix);
338            }
339            return inlineNameGenerator;
340        }
341    
342        @NotNull
343        protected ExpressionCodegen createOrGetClInitCodegen() {
344            DeclarationDescriptor descriptor = context.getContextDescriptor();
345            if (clInit == null) {
346                MethodVisitor mv = v.newMethod(JvmDeclarationOriginKt.OtherOrigin(descriptor), ACC_STATIC, "<clinit>", "()V", null, null);
347                SimpleFunctionDescriptorImpl clInit =
348                        SimpleFunctionDescriptorImpl.create(descriptor, Annotations.Companion.getEMPTY(), Name.special("<clinit>"), SYNTHESIZED,
349                                                            KotlinSourceElementKt.toSourceElement(element));
350                clInit.initialize(null, null, Collections.<TypeParameterDescriptor>emptyList(),
351                                  Collections.<ValueParameterDescriptor>emptyList(),
352                                  DescriptorUtilsKt.getModule(descriptor).getBuiltIns().getUnitType(),
353                                  null, Visibilities.PRIVATE);
354    
355                this.clInit = new ExpressionCodegen(mv, new FrameMap(), Type.VOID_TYPE, context.intoFunction(clInit), state, this);
356            }
357            return clInit;
358        }
359    
360        protected void generateInitializers(@NotNull Function0<ExpressionCodegen> createCodegen) {
361            NotNullLazyValue<ExpressionCodegen> codegen = LockBasedStorageManager.NO_LOCKS.createLazyValue(createCodegen);
362            for (KtDeclaration declaration : ((KtDeclarationContainer) element).getDeclarations()) {
363                if (declaration instanceof KtProperty) {
364                    if (shouldInitializeProperty((KtProperty) declaration)) {
365                        initializeProperty(codegen.invoke(), (KtProperty) declaration);
366                    }
367                }
368                else if (declaration instanceof KtAnonymousInitializer) {
369                    KtExpression body = ((KtAnonymousInitializer) declaration).getBody();
370                    if (body != null) {
371                        codegen.invoke().gen(body, Type.VOID_TYPE);
372                    }
373                }
374            }
375        }
376    
377        private void initializeProperty(@NotNull ExpressionCodegen codegen, @NotNull KtProperty property) {
378            PropertyDescriptor propertyDescriptor = (PropertyDescriptor) bindingContext.get(VARIABLE, property);
379            assert propertyDescriptor != null;
380    
381            KtExpression initializer = property.getDelegateExpressionOrInitializer();
382            assert initializer != null : "shouldInitializeProperty must return false if initializer is null";
383    
384            StackValue.Property propValue = codegen.intermediateValueForProperty(propertyDescriptor, true, false, null, true, StackValue.LOCAL_0);
385    
386            propValue.store(codegen.gen(initializer), codegen.v);
387        }
388    
389        private boolean shouldInitializeProperty(@NotNull KtProperty property) {
390            if (!property.hasDelegateExpressionOrInitializer()) return false;
391    
392            PropertyDescriptor propertyDescriptor = (PropertyDescriptor) bindingContext.get(VARIABLE, property);
393            assert propertyDescriptor != null;
394    
395            if (propertyDescriptor.isConst()) {
396                //const initializer always inlined
397                return false;
398            }
399    
400            KtExpression initializer = property.getInitializer();
401    
402            ConstantValue<?> initializerValue = computeInitializerValue(property, propertyDescriptor, initializer);
403            // we must write constant values for fields in light classes,
404            // because Java's completion for annotation arguments uses this information
405            if (initializerValue == null) return state.getClassBuilderMode() != ClassBuilderMode.LIGHT_CLASSES;
406    
407            //TODO: OPTIMIZATION: don't initialize static final fields
408            KotlinType jetType = getPropertyOrDelegateType(property, propertyDescriptor);
409            Type type = typeMapper.mapType(jetType);
410            return !skipDefaultValue(propertyDescriptor, initializerValue.getValue(), type);
411        }
412    
413        @Nullable
414        private ConstantValue<?> computeInitializerValue(
415                @NotNull KtProperty property,
416                @NotNull PropertyDescriptor propertyDescriptor,
417                @Nullable KtExpression initializer
418        ) {
419            if (property.isVar() && initializer != null) {
420                BindingTrace tempTrace = TemporaryBindingTrace.create(state.getBindingTrace(), "property initializer");
421                return constantExpressionEvaluator.evaluateToConstantValue(initializer, tempTrace, propertyDescriptor.getType());
422            }
423            return propertyDescriptor.getCompileTimeInitializer();
424        }
425    
426        @NotNull
427        private KotlinType getPropertyOrDelegateType(@NotNull KtProperty property, @NotNull PropertyDescriptor descriptor) {
428            KtExpression delegateExpression = property.getDelegateExpression();
429            if (delegateExpression != null) {
430                KotlinType delegateType = bindingContext.getType(delegateExpression);
431                assert delegateType != null : "Type of delegate expression should be recorded";
432                return delegateType;
433            }
434            return descriptor.getType();
435        }
436    
437        private static boolean skipDefaultValue(@NotNull PropertyDescriptor propertyDescriptor, Object value, @NotNull Type type) {
438            if (isPrimitive(type)) {
439                if (!propertyDescriptor.getType().isMarkedNullable() && value instanceof Number) {
440                    if (type == Type.INT_TYPE && ((Number) value).intValue() == 0) {
441                        return true;
442                    }
443                    if (type == Type.BYTE_TYPE && ((Number) value).byteValue() == 0) {
444                        return true;
445                    }
446                    if (type == Type.LONG_TYPE && ((Number) value).longValue() == 0L) {
447                        return true;
448                    }
449                    if (type == Type.SHORT_TYPE && ((Number) value).shortValue() == 0) {
450                        return true;
451                    }
452                    if (type == Type.DOUBLE_TYPE && ((Number) value).doubleValue() == 0d) {
453                        return true;
454                    }
455                    if (type == Type.FLOAT_TYPE && ((Number) value).floatValue() == 0f) {
456                        return true;
457                    }
458                }
459                if (type == Type.BOOLEAN_TYPE && value instanceof Boolean && !((Boolean) value)) {
460                    return true;
461                }
462                if (type == Type.CHAR_TYPE && value instanceof Character && ((Character) value) == 0) {
463                    return true;
464                }
465            }
466            else {
467                if (value == null) {
468                    return true;
469                }
470            }
471            return false;
472        }
473    
474        protected void generatePropertyMetadataArrayFieldIfNeeded(@NotNull Type thisAsmType) {
475            List<KtProperty> delegatedProperties = new ArrayList<KtProperty>();
476            for (KtDeclaration declaration : ((KtDeclarationContainer) element).getDeclarations()) {
477                if (declaration instanceof KtProperty) {
478                    KtProperty property = (KtProperty) declaration;
479                    if (property.hasDelegate()) {
480                        delegatedProperties.add(property);
481                    }
482                }
483            }
484            if (delegatedProperties.isEmpty()) return;
485    
486            v.newField(NO_ORIGIN, ACC_PRIVATE | ACC_STATIC | ACC_FINAL | ACC_SYNTHETIC, JvmAbi.DELEGATED_PROPERTIES_ARRAY_NAME,
487                       "[" + K_PROPERTY_TYPE, null, null);
488    
489            if (state.getClassBuilderMode() == ClassBuilderMode.LIGHT_CLASSES) return;
490    
491            InstructionAdapter iv = createOrGetClInitCodegen().v;
492            iv.iconst(delegatedProperties.size());
493            iv.newarray(K_PROPERTY_TYPE);
494    
495            for (int i = 0, size = delegatedProperties.size(); i < size; i++) {
496                PropertyDescriptor property =
497                        (PropertyDescriptor) BindingContextUtils.getNotNull(bindingContext, VARIABLE, delegatedProperties.get(i));
498    
499                iv.dup();
500                iv.iconst(i);
501    
502                StackValue value;
503                // TODO: remove this option and always generate PropertyReferenceNImpl creation
504                if ("true".equalsIgnoreCase(System.getProperty("kotlin.jvm.optimize.delegated.properties"))) {
505                    int receiverCount = (property.getDispatchReceiverParameter() != null ? 1 : 0) +
506                                        (property.getExtensionReceiverParameter() != null ? 1 : 0);
507                    Type implType = property.isVar() ? MUTABLE_PROPERTY_REFERENCE_IMPL[receiverCount] : PROPERTY_REFERENCE_IMPL[receiverCount];
508                    iv.anew(implType);
509                    iv.dup();
510                    // TODO: generate the container once and save to a local field instead
511                    ClosureCodegen.generateCallableReferenceDeclarationContainer(iv, property, state);
512                    iv.aconst(property.getName().asString());
513                    iv.aconst(PropertyReferenceCodegen.getPropertyReferenceSignature(property, state));
514                    iv.invokespecial(
515                            implType.getInternalName(), "<init>",
516                            Type.getMethodDescriptor(Type.VOID_TYPE, K_DECLARATION_CONTAINER_TYPE, JAVA_STRING_TYPE, JAVA_STRING_TYPE), false
517                    );
518                    value = StackValue.onStack(implType);
519                    Method wrapper = PropertyReferenceCodegen.getWrapperMethodForPropertyReference(property, receiverCount);
520                    iv.invokestatic(REFLECTION, wrapper.getName(), wrapper.getDescriptor(), false);
521                }
522                else {
523                    ReceiverParameterDescriptor dispatchReceiver = property.getDispatchReceiverParameter();
524    
525                    //noinspection ConstantConditions
526                    value = createOrGetClInitCodegen().generatePropertyReference(
527                            delegatedProperties.get(i).getDelegate(), property, property,
528                            dispatchReceiver != null ? new TransientReceiver(dispatchReceiver.getType()) : ReceiverValue.NO_RECEIVER
529                    );
530                }
531    
532                value.put(K_PROPERTY_TYPE, iv);
533    
534                iv.astore(K_PROPERTY_TYPE);
535            }
536    
537            iv.putstatic(thisAsmType.getInternalName(), JvmAbi.DELEGATED_PROPERTIES_ARRAY_NAME, "[" + K_PROPERTY_TYPE);
538        }
539    
540        public String getClassName() {
541            return v.getThisName();
542        }
543    
544        @NotNull
545        public FieldOwnerContext<?> getContext() {
546            return context;
547        }
548    
549        @NotNull
550        public ReifiedTypeParametersUsages getReifiedTypeParametersUsages() {
551            return reifiedTypeParametersUsages;
552        }
553    
554        public MemberCodegen<?> getParentCodegen() {
555            return parentCodegen;
556        }
557    
558        @Override
559        public String toString() {
560            return context.toString();
561        }
562    
563        @NotNull
564        public SourceMapper getOrCreateSourceMapper() {
565            if (sourceMapper == null) {
566                sourceMapper = new DefaultSourceMapper(SourceInfo.Companion.createInfo(element, getClassName()), null);
567            }
568            return sourceMapper;
569        }
570    
571        protected void generateConstInstance(
572                @NotNull Type thisAsmType,
573                @NotNull Type fieldAsmType,
574                @NotNull Function1<InstructionAdapter, Unit> initialization
575        ) {
576            v.newField(JvmDeclarationOriginKt.OtherOrigin(element), ACC_STATIC | ACC_FINAL | ACC_PUBLIC, JvmAbi.INSTANCE_FIELD, fieldAsmType.getDescriptor(),
577                       null, null);
578    
579            if (state.getClassBuilderMode() == ClassBuilderMode.FULL) {
580                InstructionAdapter iv = createOrGetClInitCodegen().v;
581                iv.anew(thisAsmType);
582                iv.dup();
583                iv.invokespecial(thisAsmType.getInternalName(), "<init>", "()V", false);
584                initialization.invoke(iv);
585                iv.putstatic(thisAsmType.getInternalName(), JvmAbi.INSTANCE_FIELD, fieldAsmType.getDescriptor());
586            }
587        }
588    
589        protected void generateSyntheticAccessors() {
590            for (AccessorForCallableDescriptor<?> accessor : ((CodegenContext<?>) context).getAccessors()) {
591                generateSyntheticAccessor(accessor);
592            }
593        }
594    
595        private void generateSyntheticAccessor(@NotNull AccessorForCallableDescriptor<?> accessorForCallableDescriptor) {
596            if (accessorForCallableDescriptor instanceof FunctionDescriptor) {
597                final FunctionDescriptor accessor = (FunctionDescriptor) accessorForCallableDescriptor;
598                final FunctionDescriptor original = (FunctionDescriptor) accessorForCallableDescriptor.getCalleeDescriptor();
599                functionCodegen.generateMethod(
600                        Synthetic(null, original), accessor,
601                        new FunctionGenerationStrategy.CodegenBased<FunctionDescriptor>(state, accessor) {
602                            @Override
603                            public void doGenerateBody(@NotNull ExpressionCodegen codegen, @NotNull JvmMethodSignature signature) {
604                                markLineNumberForElement(element, codegen.v);
605    
606                                generateMethodCallTo(original, accessor, codegen.v).coerceTo(signature.getReturnType(), codegen.v);
607    
608                                codegen.v.areturn(signature.getReturnType());
609                            }
610                        }
611                );
612            }
613            else if (accessorForCallableDescriptor instanceof AccessorForPropertyDescriptor) {
614                final AccessorForPropertyDescriptor accessor = (AccessorForPropertyDescriptor) accessorForCallableDescriptor;
615                final PropertyDescriptor original = accessor.getCalleeDescriptor();
616    
617                class PropertyAccessorStrategy extends FunctionGenerationStrategy.CodegenBased<PropertyAccessorDescriptor> {
618                    public PropertyAccessorStrategy(@NotNull PropertyAccessorDescriptor callableDescriptor) {
619                        super(MemberCodegen.this.state, callableDescriptor);
620                    }
621    
622                    @Override
623                    public void doGenerateBody(@NotNull ExpressionCodegen codegen, @NotNull JvmMethodSignature signature) {
624                        boolean syntheticBackingField = accessor instanceof AccessorForPropertyBackingFieldFromLocal;
625                        boolean forceField = (AsmUtil.isPropertyWithBackingFieldInOuterClass(original) &&
626                                              !isCompanionObject(accessor.getContainingDeclaration())) ||
627                                             syntheticBackingField ||
628                                             original.getVisibility() == JavaVisibilities.PROTECTED_STATIC_VISIBILITY;
629                        StackValue property = codegen.intermediateValueForProperty(
630                                original, forceField, syntheticBackingField, accessor.getSuperCallTarget(), true, StackValue.none()
631                        );
632    
633                        InstructionAdapter iv = codegen.v;
634    
635                        markLineNumberForElement(element, iv);
636    
637                        Type[] argTypes = signature.getAsmMethod().getArgumentTypes();
638                        for (int i = 0, reg = 0; i < argTypes.length; i++) {
639                            Type argType = argTypes[i];
640                            iv.load(reg, argType);
641                            //noinspection AssignmentToForLoopParameter
642                            reg += argType.getSize();
643                        }
644    
645                        if (callableDescriptor instanceof PropertyGetterDescriptor) {
646                            property.put(signature.getReturnType(), iv);
647                        }
648                        else {
649                            property.store(StackValue.onStack(property.type), iv, true);
650                        }
651    
652                        iv.areturn(signature.getReturnType());
653                    }
654                }
655    
656                if (accessor.isWithSyntheticGetterAccessor()) {
657                    PropertyGetterDescriptor getter = accessor.getGetter();
658                    assert getter != null;
659                    functionCodegen.generateMethod(Synthetic(null, original.getGetter() != null ? original.getGetter() : original),
660                                                   getter, new PropertyAccessorStrategy(getter));
661                }
662    
663                if (accessor.isVar() && accessor.isWithSyntheticSetterAccessor()) {
664                    PropertySetterDescriptor setter = accessor.getSetter();
665                    assert setter != null;
666    
667                    functionCodegen.generateMethod(Synthetic(null, original.getSetter() != null ? original.getSetter() : original),
668                                                   setter, new PropertyAccessorStrategy(setter));
669                }
670            }
671            else {
672                throw new UnsupportedOperationException();
673            }
674        }
675    
676        private StackValue generateMethodCallTo(
677                @NotNull FunctionDescriptor functionDescriptor,
678                @Nullable FunctionDescriptor accessorDescriptor,
679                @NotNull InstructionAdapter iv
680        ) {
681            CallableMethod callableMethod = typeMapper.mapToCallableMethod(
682                    functionDescriptor,
683                    accessorDescriptor instanceof AccessorForCallableDescriptor &&
684                    ((AccessorForCallableDescriptor) accessorDescriptor).getSuperCallTarget() != null
685            );
686    
687            boolean hasDispatchReceiver = !isStaticDeclaration(functionDescriptor);
688            int reg = hasDispatchReceiver ? 1 : 0;
689            boolean accessorIsConstructor = accessorDescriptor instanceof AccessorForConstructorDescriptor;
690            if (!accessorIsConstructor && functionDescriptor instanceof ConstructorDescriptor) {
691                iv.anew(callableMethod.getOwner());
692                iv.dup();
693                reg = 0;
694            }
695            else if (accessorIsConstructor || (accessorDescriptor != null && JetTypeMapper.isAccessor(accessorDescriptor) && hasDispatchReceiver)) {
696                if (!AnnotationUtilKt.isPlatformStaticInObjectOrClass(functionDescriptor)) {
697                    iv.load(0, OBJECT_TYPE);
698                }
699            }
700    
701            for (Type argType : callableMethod.getParameterTypes()) {
702                if (AsmTypes.DEFAULT_CONSTRUCTOR_MARKER.equals(argType)) {
703                    iv.aconst(null);
704                }
705                else {
706                    iv.load(reg, argType);
707                    reg += argType.getSize();
708                }
709            }
710    
711            callableMethod.genInvokeInstruction(iv);
712    
713            return StackValue.onStack(callableMethod.getReturnType());
714        }
715    }