001    /*
002     * Copyright 2010-2016 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.resolve;
018    
019    import com.google.common.collect.ImmutableMap;
020    import com.intellij.psi.PsiElement;
021    import org.jetbrains.annotations.NotNull;
022    import org.jetbrains.annotations.Nullable;
023    import org.jetbrains.annotations.ReadOnly;
024    import org.jetbrains.annotations.TestOnly;
025    import org.jetbrains.kotlin.cfg.TailRecursionKind;
026    import org.jetbrains.kotlin.descriptors.*;
027    import org.jetbrains.kotlin.descriptors.annotations.AnnotationDescriptor;
028    import org.jetbrains.kotlin.name.FqName;
029    import org.jetbrains.kotlin.name.FqNameUnsafe;
030    import org.jetbrains.kotlin.psi.*;
031    import org.jetbrains.kotlin.resolve.calls.inference.ConstraintSystemCompleter;
032    import org.jetbrains.kotlin.resolve.calls.model.ResolvedCall;
033    import org.jetbrains.kotlin.resolve.calls.smartcasts.DataFlowInfo;
034    import org.jetbrains.kotlin.resolve.constants.CompileTimeConstant;
035    import org.jetbrains.kotlin.resolve.diagnostics.Diagnostics;
036    import org.jetbrains.kotlin.resolve.scopes.LexicalScope;
037    import org.jetbrains.kotlin.resolve.scopes.receivers.Qualifier;
038    import org.jetbrains.kotlin.types.DeferredType;
039    import org.jetbrains.kotlin.types.KotlinType;
040    import org.jetbrains.kotlin.types.expressions.CaptureKind;
041    import org.jetbrains.kotlin.types.expressions.KotlinTypeInfo;
042    import org.jetbrains.kotlin.types.expressions.PreliminaryDeclarationVisitor;
043    import org.jetbrains.kotlin.util.Box;
044    import org.jetbrains.kotlin.util.slicedMap.*;
045    
046    import java.util.Collection;
047    import java.util.Collections;
048    
049    import static org.jetbrains.kotlin.util.slicedMap.RewritePolicy.DO_NOTHING;
050    
051    public interface BindingContext {
052        BindingContext EMPTY = new BindingContext() {
053            @NotNull
054            @Override
055            public Diagnostics getDiagnostics() {
056                return Diagnostics.Companion.getEMPTY();
057            }
058    
059            @Override
060            public <K, V> V get(ReadOnlySlice<K, V> slice, K key) {
061                return null;
062            }
063    
064            @NotNull
065            @Override
066            public <K, V> Collection<K> getKeys(WritableSlice<K, V> slice) {
067                return Collections.emptyList();
068            }
069    
070            @NotNull
071            @TestOnly
072            @Override
073            public <K, V> ImmutableMap<K, V> getSliceContents(@NotNull ReadOnlySlice<K, V> slice) {
074                return ImmutableMap.of();
075            }
076    
077            @Nullable
078            @Override
079            public KotlinType getType(@NotNull KtExpression expression) {
080                return null;
081            }
082    
083            @Override
084            public void addOwnDataTo(@NotNull BindingTrace trace, boolean commitDiagnostics) {
085                // Do nothing
086            }
087        };
088    
089        WritableSlice<KtAnnotationEntry, AnnotationDescriptor> ANNOTATION = Slices.createSimpleSlice();
090    
091        WritableSlice<KtExpression, CompileTimeConstant<?>> COMPILE_TIME_VALUE = Slices.createSimpleSlice();
092    
093        WritableSlice<KtTypeReference, KotlinType> TYPE = Slices.createSimpleSlice();
094        WritableSlice<KtExpression, KotlinTypeInfo> EXPRESSION_TYPE_INFO = new BasicWritableSlice<KtExpression, KotlinTypeInfo>(DO_NOTHING);
095        WritableSlice<KtExpression, KotlinType> EXPECTED_EXPRESSION_TYPE = new BasicWritableSlice<KtExpression, KotlinType>(DO_NOTHING);
096        WritableSlice<KtFunction, KotlinType> EXPECTED_RETURN_TYPE = new BasicWritableSlice<KtFunction, KotlinType>(DO_NOTHING);
097        WritableSlice<KtExpression, DataFlowInfo> DATAFLOW_INFO_AFTER_CONDITION = Slices.createSimpleSlice();
098    
099        /**
100         * A qualifier corresponds to a receiver expression (if any). For 'A.B' qualifier is recorded for 'A'.
101         */
102        WritableSlice<KtExpression, Qualifier> QUALIFIER = new BasicWritableSlice<KtExpression, Qualifier>(DO_NOTHING);
103    
104        WritableSlice<KtSuperExpression, KotlinType> THIS_TYPE_FOR_SUPER_EXPRESSION =
105                new BasicWritableSlice<KtSuperExpression, KotlinType>(DO_NOTHING);
106    
107        WritableSlice<KtReferenceExpression, DeclarationDescriptor> REFERENCE_TARGET =
108                new BasicWritableSlice<KtReferenceExpression, DeclarationDescriptor>(DO_NOTHING);
109        // if 'A' really means 'A.Companion' then this slice stores class descriptor for A, REFERENCE_TARGET stores descriptor Companion in this case
110        WritableSlice<KtReferenceExpression, ClassDescriptor> SHORT_REFERENCE_TO_COMPANION_OBJECT =
111                new BasicWritableSlice<KtReferenceExpression, ClassDescriptor>(DO_NOTHING);
112    
113        WritableSlice<Call, ResolvedCall<?>> RESOLVED_CALL = new BasicWritableSlice<Call, ResolvedCall<?>>(DO_NOTHING);
114        WritableSlice<Call, TailRecursionKind> TAIL_RECURSION_CALL = Slices.createSimpleSlice();
115        WritableSlice<KtElement, ConstraintSystemCompleter> CONSTRAINT_SYSTEM_COMPLETER = new BasicWritableSlice<KtElement, ConstraintSystemCompleter>(DO_NOTHING);
116        WritableSlice<KtElement, Call> CALL = new BasicWritableSlice<KtElement, Call>(DO_NOTHING);
117    
118        WritableSlice<KtExpression, Collection<? extends DeclarationDescriptor>> AMBIGUOUS_REFERENCE_TARGET =
119                new BasicWritableSlice<KtExpression, Collection<? extends DeclarationDescriptor>>(DO_NOTHING);
120    
121        WritableSlice<KtExpression, ResolvedCall<FunctionDescriptor>> LOOP_RANGE_ITERATOR_RESOLVED_CALL = Slices.createSimpleSlice();
122    
123        WritableSlice<KtExpression, ResolvedCall<FunctionDescriptor>> LOOP_RANGE_HAS_NEXT_RESOLVED_CALL = Slices.createSimpleSlice();
124        WritableSlice<KtExpression, ResolvedCall<FunctionDescriptor>> LOOP_RANGE_NEXT_RESOLVED_CALL = Slices.createSimpleSlice();
125    
126        WritableSlice<PropertyAccessorDescriptor, ResolvedCall<FunctionDescriptor>> DELEGATED_PROPERTY_RESOLVED_CALL = Slices.createSimpleSlice();
127        WritableSlice<PropertyAccessorDescriptor, Call> DELEGATED_PROPERTY_CALL = Slices.createSimpleSlice();
128    
129        WritableSlice<PropertyDescriptor, ResolvedCall<FunctionDescriptor>> DELEGATED_PROPERTY_PD_RESOLVED_CALL = Slices.createSimpleSlice();
130    
131        WritableSlice<KtDestructuringDeclarationEntry, ResolvedCall<FunctionDescriptor>> COMPONENT_RESOLVED_CALL = Slices.createSimpleSlice();
132    
133        WritableSlice<KtExpression, ResolvedCall<FunctionDescriptor>> INDEXED_LVALUE_GET = Slices.createSimpleSlice();
134        WritableSlice<KtExpression, ResolvedCall<FunctionDescriptor>> INDEXED_LVALUE_SET = Slices.createSimpleSlice();
135    
136        WritableSlice<KtExpression, KotlinType> SMARTCAST = Slices.createSimpleSlice();
137        WritableSlice<KtExpression, Boolean> SMARTCAST_NULL = Slices.createSimpleSlice();
138        WritableSlice<KtExpression, KotlinType> IMPLICIT_RECEIVER_SMARTCAST = Slices.createSimpleSlice();
139    
140        WritableSlice<KtWhenExpression, Boolean> EXHAUSTIVE_WHEN = Slices.createSimpleSlice();
141        WritableSlice<KtWhenExpression, Boolean> IMPLICIT_EXHAUSTIVE_WHEN = Slices.createSimpleSlice();
142    
143        WritableSlice<KtElement, LexicalScope> LEXICAL_SCOPE = Slices.createSimpleSlice();
144    
145        WritableSlice<ScriptDescriptor, LexicalScope> SCRIPT_SCOPE = Slices.createSimpleSlice();
146    
147        WritableSlice<KtExpression, Boolean> VARIABLE_REASSIGNMENT = Slices.createSimpleSetSlice();
148        WritableSlice<ValueParameterDescriptor, Boolean> AUTO_CREATED_IT = Slices.createSimpleSetSlice();
149    
150        /**
151         * Has type of current expression has been already resolved
152         */
153        WritableSlice<KtExpression, Boolean> PROCESSED = Slices.createSimpleSetSlice();
154        WritableSlice<KtElement, Boolean> USED_AS_EXPRESSION = Slices.createSimpleSetSlice();
155        WritableSlice<KtElement, Boolean> USED_AS_RESULT_OF_LAMBDA = Slices.createSimpleSetSlice();
156        WritableSlice<KtElement, Boolean> UNREACHABLE_CODE = Slices.createSimpleSetSlice();
157    
158        WritableSlice<VariableDescriptor, CaptureKind> CAPTURED_IN_CLOSURE = new BasicWritableSlice<VariableDescriptor, CaptureKind>(DO_NOTHING);
159        WritableSlice<KtDeclaration, PreliminaryDeclarationVisitor> PRELIMINARY_VISITOR = new BasicWritableSlice<KtDeclaration, PreliminaryDeclarationVisitor>(DO_NOTHING);
160    
161        WritableSlice<Box<DeferredType>, Boolean> DEFERRED_TYPE = Slices.createCollectiveSetSlice();
162    
163        WritableSlice<PropertyDescriptor, Boolean> BACKING_FIELD_REQUIRED = new SetSlice<PropertyDescriptor>(DO_NOTHING) {
164            @Override
165            public Boolean computeValue(
166                    SlicedMap map,
167                    PropertyDescriptor propertyDescriptor,
168                    Boolean backingFieldRequired,
169                    boolean valueNotFound
170            ) {
171                if (propertyDescriptor.getKind() != CallableMemberDescriptor.Kind.DECLARATION) {
172                    return false;
173                }
174                backingFieldRequired = valueNotFound ? false : backingFieldRequired;
175                PsiElement declarationPsiElement = DescriptorToSourceUtils.descriptorToDeclaration(propertyDescriptor);
176                if (declarationPsiElement instanceof KtParameter) {
177                    KtParameter jetParameter = (KtParameter) declarationPsiElement;
178                    return jetParameter.hasValOrVar() ||
179                           backingFieldRequired; // this part is unused because we do not allow access to constructor parameters in member bodies
180                }
181                if (propertyDescriptor.getModality() == Modality.ABSTRACT) return false;
182                if (declarationPsiElement instanceof KtProperty &&
183                    ((KtProperty) declarationPsiElement).hasDelegate()) return false;
184                PropertyGetterDescriptor getter = propertyDescriptor.getGetter();
185                PropertySetterDescriptor setter = propertyDescriptor.getSetter();
186    
187                if (getter == null) return true;
188                if (propertyDescriptor.isVar() && setter == null) return true;
189                if (setter != null && !DescriptorPsiUtilsKt.hasBody(setter) && setter.getModality() != Modality.ABSTRACT) return true;
190                if (!DescriptorPsiUtilsKt.hasBody(getter) && getter.getModality() != Modality.ABSTRACT) return true;
191    
192                return backingFieldRequired;
193            }
194        };
195        WritableSlice<PropertyDescriptor, Boolean> IS_UNINITIALIZED = Slices.createSimpleSetSlice();
196    
197        WritableSlice<KtLambdaExpression, Boolean> BLOCK = new SetSlice<KtLambdaExpression>(DO_NOTHING) {
198            @Override
199            public Boolean computeValue(SlicedMap map, KtLambdaExpression expression, Boolean isBlock, boolean valueNotFound) {
200                isBlock = valueNotFound ? false : isBlock;
201                return isBlock && !expression.getFunctionLiteral().hasParameterSpecification();
202            }
203        };
204    
205        WritableSlice<PsiElement, ClassDescriptor> CLASS = Slices.createSimpleSlice();
206        WritableSlice<PsiElement, ScriptDescriptor> SCRIPT = Slices.createSimpleSlice();
207        WritableSlice<KtTypeParameter, TypeParameterDescriptor> TYPE_PARAMETER = Slices.createSimpleSlice();
208        /**
209         * @see BindingContextUtils#recordFunctionDeclarationToDescriptor(BindingTrace, PsiElement, SimpleFunctionDescriptor)}
210         */
211        WritableSlice<PsiElement, SimpleFunctionDescriptor> FUNCTION = Slices.createSimpleSlice();
212        WritableSlice<PsiElement, ConstructorDescriptor> CONSTRUCTOR = Slices.createSimpleSlice();
213        WritableSlice<ConstructorDescriptor, ResolvedCall<ConstructorDescriptor>> CONSTRUCTOR_RESOLVED_DELEGATION_CALL =
214                Slices.createSimpleSlice();
215        WritableSlice<PsiElement, VariableDescriptor> VARIABLE = Slices.createSimpleSlice();
216        WritableSlice<KtParameter, VariableDescriptor> VALUE_PARAMETER = Slices.createSimpleSlice();
217        WritableSlice<KtPropertyAccessor, PropertyAccessorDescriptor> PROPERTY_ACCESSOR = Slices.createSimpleSlice();
218        WritableSlice<PsiElement, PropertyDescriptor> PRIMARY_CONSTRUCTOR_PARAMETER = Slices.createSimpleSlice();
219    
220        WritableSlice[] DECLARATIONS_TO_DESCRIPTORS = new WritableSlice[] {
221                CLASS, TYPE_PARAMETER, FUNCTION, CONSTRUCTOR, VARIABLE, VALUE_PARAMETER, PROPERTY_ACCESSOR,
222                PRIMARY_CONSTRUCTOR_PARAMETER, SCRIPT
223        };
224    
225        @SuppressWarnings("unchecked")
226        ReadOnlySlice<PsiElement, DeclarationDescriptor> DECLARATION_TO_DESCRIPTOR =
227                Slices.<PsiElement, DeclarationDescriptor>sliceBuilder()
228                        .setFurtherLookupSlices(DECLARATIONS_TO_DESCRIPTORS)
229                        .build();
230    
231        WritableSlice<KtReferenceExpression, PsiElement> LABEL_TARGET = Slices.createSimpleSlice();
232        WritableSlice<KtReferenceExpression, Collection<? extends PsiElement>> AMBIGUOUS_LABEL_TARGET = Slices.createSimpleSlice();
233        WritableSlice<ValueParameterDescriptor, PropertyDescriptor> VALUE_PARAMETER_AS_PROPERTY = Slices.createSimpleSlice();
234    
235        WritableSlice<ValueParameterDescriptor, FunctionDescriptor> DATA_CLASS_COMPONENT_FUNCTION = Slices.createSimpleSlice();
236        WritableSlice<ClassDescriptor, FunctionDescriptor> DATA_CLASS_COPY_FUNCTION = Slices.createSimpleSlice();
237    
238        WritableSlice<FqNameUnsafe, ClassDescriptor> FQNAME_TO_CLASS_DESCRIPTOR =
239                new BasicWritableSlice<FqNameUnsafe, ClassDescriptor>(DO_NOTHING, true);
240        WritableSlice<KtFile, PackageFragmentDescriptor> FILE_TO_PACKAGE_FRAGMENT = Slices.createSimpleSlice();
241        WritableSlice<FqName, Collection<KtFile>> PACKAGE_TO_FILES = Slices.createSimpleSlice();
242    
243        @SuppressWarnings("UnusedDeclaration")
244        @Deprecated // This field is needed only for the side effects of its initializer
245                Void _static_initializer = BasicWritableSlice.initSliceDebugNames(BindingContext.class);
246    
247        @NotNull
248        Diagnostics getDiagnostics();
249    
250        @Nullable
251        <K, V> V get(ReadOnlySlice<K, V> slice, K key);
252    
253        // slice.isCollective() must be true
254        @NotNull
255        @ReadOnly
256        <K, V> Collection<K> getKeys(WritableSlice<K, V> slice);
257    
258        /** This method should be used only for debug and testing */
259        @TestOnly
260        @NotNull
261        <K, V> ImmutableMap<K, V> getSliceContents(@NotNull ReadOnlySlice<K, V> slice);
262    
263        @Nullable
264        KotlinType getType(@NotNull KtExpression expression);
265    
266        void addOwnDataTo(@NotNull BindingTrace trace, boolean commitDiagnostics);
267    }