private static HierarchicalMethodSignatureImpl copy(HierarchicalMethodSignature hi) { HierarchicalMethodSignatureImpl hierarchicalMethodSignature = new HierarchicalMethodSignatureImpl(hi); for (HierarchicalMethodSignature his : hi.getSuperSignatures()) { hierarchicalMethodSignature.addSuperSignature(copy(his)); } return hierarchicalMethodSignature; }
private static void mergeSupers( final HierarchicalMethodSignatureImpl existing, final HierarchicalMethodSignature superSignature) { for (HierarchicalMethodSignature existingSuper : existing.getSuperSignatures()) { if (existingSuper.getMethod() == superSignature.getMethod()) { for (HierarchicalMethodSignature signature : superSignature.getSuperSignatures()) { mergeSupers((HierarchicalMethodSignatureImpl) existingSuper, signature); } return; } } if (existing.getMethod() == superSignature.getMethod()) { List<HierarchicalMethodSignature> existingSupers = existing.getSuperSignatures(); for (HierarchicalMethodSignature supers : superSignature.getSuperSignatures()) { if (!existingSupers.contains(supers)) existing.addSuperSignature(copy(supers)); } } else { HierarchicalMethodSignatureImpl copy = copy(superSignature); existing.addSuperSignature(copy); } }
// uses hierarchy signature tree if available, traverses class structure by itself otherwise public static boolean processDirectSuperMethodsSmart( @NotNull PsiMethod method, @NotNull Processor<PsiMethod> superMethodProcessor) { // boolean old = PsiSuperMethodUtil.isSuperMethod(method, superMethod); PsiClass aClass = method.getContainingClass(); if (aClass == null) return false; if (!canHaveSuperMethod(method, true, false)) return false; Map<MethodSignature, HierarchicalMethodSignature> cachedMap = SIGNATURES_KEY.getCachedValueOrNull(aClass); if (cachedMap != null) { HierarchicalMethodSignature signature = cachedMap.get(method.getSignature(PsiSubstitutor.EMPTY)); if (signature != null) { List<HierarchicalMethodSignature> superSignatures = signature.getSuperSignatures(); for (HierarchicalMethodSignature superSignature : superSignatures) { if (!superMethodProcessor.process(superSignature.getMethod())) return false; } return true; } } PsiClassType[] directSupers = aClass.getSuperTypes(); for (PsiClassType directSuper : directSupers) { PsiClassType.ClassResolveResult resolveResult = directSuper.resolveGenerics(); if (resolveResult.getSubstitutor() != PsiSubstitutor.EMPTY) { // generics break; } PsiClass directSuperClass = resolveResult.getElement(); if (directSuperClass == null) continue; PsiMethod[] candidates = directSuperClass.findMethodsBySignature(method, false); for (PsiMethod candidate : candidates) { if (PsiUtil.canBeOverriden(candidate)) { if (!superMethodProcessor.process(candidate)) return false; } } return true; } List<HierarchicalMethodSignature> superSignatures = method.getHierarchicalMethodSignature().getSuperSignatures(); for (HierarchicalMethodSignature superSignature : superSignatures) { if (!superMethodProcessor.process(superSignature.getMethod())) return false; } return true; }
// uses hierarchy signature tree if available, traverses class structure by itself otherwise public static boolean isSuperMethodSmart( @NotNull PsiMethod method, @NotNull PsiMethod superMethod) { // boolean old = PsiSuperMethodUtil.isSuperMethod(method, superMethod); if (method == superMethod) return false; PsiClass aClass = method.getContainingClass(); PsiClass superClass = superMethod.getContainingClass(); if (aClass == null || superClass == null || superClass == aClass) return false; if (!canHaveSuperMethod(method, true, false)) return false; PsiMethod[] superMethods = null; Map<MethodSignature, HierarchicalMethodSignature> cachedMap = SIGNATURES_KEY.getCachedValueOrNull(aClass); if (cachedMap != null) { HierarchicalMethodSignature signature = cachedMap.get(method.getSignature(PsiSubstitutor.EMPTY)); if (signature != null) { superMethods = MethodSignatureUtil.convertMethodSignaturesToMethods(signature.getSuperSignatures()); } } if (superMethods == null) { PsiClassType[] directSupers = aClass.getSuperTypes(); List<PsiMethod> found = null; boolean canceled = false; for (PsiClassType directSuper : directSupers) { PsiClassType.ClassResolveResult resolveResult = directSuper.resolveGenerics(); if (resolveResult.getSubstitutor() != PsiSubstitutor.EMPTY) { // generics canceled = true; break; } PsiClass directSuperClass = resolveResult.getElement(); if (directSuperClass == null) continue; PsiMethod[] candidates = directSuperClass.findMethodsBySignature(method, false); if (candidates.length != 0) { if (found == null) found = new ArrayList<PsiMethod>(); for (PsiMethod candidate : candidates) { if (PsiUtil.canBeOverriden(candidate)) found.add(candidate); } } } superMethods = canceled ? null : found == null ? PsiMethod.EMPTY_ARRAY : found.toArray(new PsiMethod[found.size()]); } if (superMethods == null) { superMethods = MethodSignatureUtil.convertMethodSignaturesToMethods( method.getHierarchicalMethodSignature().getSuperSignatures()); } for (PsiMethod superCandidate : superMethods) { if (superMethod.equals(superCandidate) || isSuperMethodSmart(superCandidate, superMethod)) return true; } return false; }
private static Map<MethodSignature, HierarchicalMethodSignature> buildMethodHierarchy( PsiClass aClass, PsiSubstitutor substitutor, final boolean includePrivates, final Set<PsiClass> visited, boolean isInRawContext) { Map<MethodSignature, HierarchicalMethodSignature> result = new LinkedHashMap<MethodSignature, HierarchicalMethodSignature>(); final Map<MethodSignature, List<PsiMethod>> sameParameterErasureMethods = new THashMap<MethodSignature, List<PsiMethod>>( MethodSignatureUtil.METHOD_PARAMETERS_ERASURE_EQUALITY); Map<MethodSignature, HierarchicalMethodSignatureImpl> map = new THashMap<MethodSignature, HierarchicalMethodSignatureImpl>( new TObjectHashingStrategy<MethodSignature>() { @Override public int computeHashCode(MethodSignature signature) { return MethodSignatureUtil.METHOD_PARAMETERS_ERASURE_EQUALITY.computeHashCode( signature); } @Override public boolean equals(MethodSignature o1, MethodSignature o2) { if (!MethodSignatureUtil.METHOD_PARAMETERS_ERASURE_EQUALITY.equals(o1, o2)) return false; List<PsiMethod> list = sameParameterErasureMethods.get(o1); boolean toCheckReturnType = list != null && list.size() > 1; if (!toCheckReturnType) return true; PsiType returnType1 = ((MethodSignatureBackedByPsiMethod) o1).getMethod().getReturnType(); PsiType returnType2 = ((MethodSignatureBackedByPsiMethod) o2).getMethod().getReturnType(); if (returnType1 == null && returnType2 == null) return true; if (returnType1 == null || returnType2 == null) return false; PsiType erasure1 = TypeConversionUtil.erasure(o1.getSubstitutor().substitute(returnType1)); PsiType erasure2 = TypeConversionUtil.erasure(o2.getSubstitutor().substitute(returnType2)); return erasure1.equals(erasure2); } }); for (PsiMethod method : aClass.getMethods()) { if (!method.isValid()) { throw new PsiInvalidElementAccessException( method, "class.valid=" + aClass.isValid() + "; name=" + method.getName()); } if (!includePrivates && method.hasModifierProperty(PsiModifier.PRIVATE)) continue; final MethodSignatureBackedByPsiMethod signature = MethodSignatureBackedByPsiMethod.create(method, substitutor, isInRawContext); HierarchicalMethodSignatureImpl newH = new HierarchicalMethodSignatureImpl(signature); List<PsiMethod> list = sameParameterErasureMethods.get(signature); if (list == null) { list = new SmartList<PsiMethod>(); sameParameterErasureMethods.put(signature, list); } list.add(method); LOG.assertTrue(newH.getMethod().isValid()); result.put(signature, newH); map.put(signature, newH); } for (PsiClassType superType : aClass.getSuperTypes()) { PsiClassType.ClassResolveResult superTypeResolveResult = superType.resolveGenerics(); PsiClass superClass = superTypeResolveResult.getElement(); if (superClass == null) continue; if (!visited.add(superClass)) continue; // cyclic inheritance final PsiSubstitutor superSubstitutor = superTypeResolveResult.getSubstitutor(); PsiSubstitutor finalSubstitutor = obtainFinalSubstitutor(superClass, superSubstitutor, substitutor, isInRawContext); final boolean isInRawContextSuper = (isInRawContext || PsiUtil.isRawSubstitutor(superClass, superSubstitutor)) && superClass.getTypeParameters().length != 0; Map<MethodSignature, HierarchicalMethodSignature> superResult = buildMethodHierarchy(superClass, finalSubstitutor, false, visited, isInRawContextSuper); visited.remove(superClass); List<Pair<MethodSignature, HierarchicalMethodSignature>> flattened = new ArrayList<Pair<MethodSignature, HierarchicalMethodSignature>>(); for (Map.Entry<MethodSignature, HierarchicalMethodSignature> entry : superResult.entrySet()) { HierarchicalMethodSignature hms = entry.getValue(); MethodSignature signature = entry.getKey(); PsiClass containingClass = hms.getMethod().getContainingClass(); List<HierarchicalMethodSignature> supers = new ArrayList<HierarchicalMethodSignature>(hms.getSuperSignatures()); for (HierarchicalMethodSignature aSuper : supers) { PsiClass superContainingClass = aSuper.getMethod().getContainingClass(); if (containingClass != null && superContainingClass != null && !containingClass.isInheritor(superContainingClass, true)) { // methods must be inherited from unrelated classes, so flatten hierarchy here // class C implements SAM1, SAM2 { void methodimpl() {} } // hms.getSuperSignatures().remove(aSuper); flattened.add( new Pair<MethodSignature, HierarchicalMethodSignature>(signature, aSuper)); } } putInMap(aClass, result, map, hms, signature); } for (Pair<MethodSignature, HierarchicalMethodSignature> pair : flattened) { putInMap(aClass, result, map, pair.second, pair.first); } } for (Map.Entry<MethodSignature, HierarchicalMethodSignatureImpl> entry : map.entrySet()) { HierarchicalMethodSignatureImpl hierarchicalMethodSignature = entry.getValue(); MethodSignature methodSignature = entry.getKey(); if (result.get(methodSignature) == null && PsiUtil.isAccessible( aClass.getProject(), hierarchicalMethodSignature.getMethod(), aClass, aClass)) { LOG.assertTrue(hierarchicalMethodSignature.getMethod().isValid()); result.put(methodSignature, hierarchicalMethodSignature); } } return result; }