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Unified Diff: pkg/analyzer/lib/src/generated/element.dart

Issue 189803004: Translate private Java members to private Dart members. (Closed) Base URL: https://dart.googlecode.com/svn/branches/bleeding_edge/dart
Patch Set: Tweaks Created 6 years, 9 months ago
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Index: pkg/analyzer/lib/src/generated/element.dart
diff --git a/pkg/analyzer/lib/src/generated/element.dart b/pkg/analyzer/lib/src/generated/element.dart
index 9e13d8666852ddf92af0b14ad57cf588c1920f59..e66201676f296fa1c5cfebee07e00f07d336a56c 100644
--- a/pkg/analyzer/lib/src/generated/element.dart
+++ b/pkg/analyzer/lib/src/generated/element.dart
@@ -2536,7 +2536,7 @@ class ClassElementImpl extends ElementImpl implements ClassElement {
List<InterfaceType> get allSupertypes {
List<InterfaceType> list = new List<InterfaceType>();
- collectAllSupertypes(list);
+ _collectAllSupertypes(list);
return new List.from(list);
}
@@ -2684,7 +2684,7 @@ class ClassElementImpl extends ElementImpl implements ClassElement {
bool get isAbstract => hasModifier(Modifier.ABSTRACT);
- bool get isOrInheritsProxy => safeIsOrInheritsProxy(this, new Set<ClassElement>());
+ bool get isOrInheritsProxy => _safeIsOrInheritsProxy(this, new Set<ClassElement>());
bool get isProxy {
for (ElementAnnotation annotation in metadata) {
@@ -2918,7 +2918,7 @@ class ClassElementImpl extends ElementImpl implements ClassElement {
}
}
- void collectAllSupertypes(List<InterfaceType> supertypes) {
+ void _collectAllSupertypes(List<InterfaceType> supertypes) {
List<InterfaceType> typesToVisit = new List<InterfaceType>();
List<ClassElement> visitedClasses = new List<ClassElement>();
typesToVisit.add(this.type);
@@ -2947,25 +2947,25 @@ class ClassElementImpl extends ElementImpl implements ClassElement {
}
}
- bool safeIsOrInheritsProxy(ClassElement classElt, Set<ClassElement> visitedClassElts) {
+ bool _safeIsOrInheritsProxy(ClassElement classElt, Set<ClassElement> visitedClassElts) {
if (visitedClassElts.contains(classElt)) {
return false;
}
visitedClassElts.add(classElt);
if (classElt.isProxy) {
return true;
- } else if (classElt.supertype != null && safeIsOrInheritsProxy(classElt.supertype.element, visitedClassElts)) {
+ } else if (classElt.supertype != null && _safeIsOrInheritsProxy(classElt.supertype.element, visitedClassElts)) {
return true;
}
List<InterfaceType> supertypes = classElt.interfaces;
for (int i = 0; i < supertypes.length; i++) {
- if (safeIsOrInheritsProxy(supertypes[i].element, visitedClassElts)) {
+ if (_safeIsOrInheritsProxy(supertypes[i].element, visitedClassElts)) {
return true;
}
}
supertypes = classElt.mixins;
for (int i = 0; i < supertypes.length; i++) {
- if (safeIsOrInheritsProxy(supertypes[i].element, visitedClassElts)) {
+ if (_safeIsOrInheritsProxy(supertypes[i].element, visitedClassElts)) {
return true;
}
}
@@ -3202,7 +3202,7 @@ class CompilationUnitElementImpl extends ElementImpl implements CompilationUnitE
* @param element the [Element] to get toolkit objects for
* @return the associated toolkit objects, may be empty, but not `null`
*/
- List<ToolkitObjectElement> getToolkitObjects(Element element) {
+ List<ToolkitObjectElement> _getToolkitObjects(Element element) {
List<ToolkitObjectElement> objects = _toolkitObjects[element];
if (objects != null) {
return objects;
@@ -3216,7 +3216,7 @@ class CompilationUnitElementImpl extends ElementImpl implements CompilationUnitE
* @param element the [Element] to associate toolkit objects with
* @param objects the toolkit objects to associate
*/
- void setToolkitObjects(Element element, List<ToolkitObjectElement> objects) {
+ void _setToolkitObjects(Element element, List<ToolkitObjectElement> objects) {
_toolkitObjects[element] = objects;
}
}
@@ -3868,7 +3868,7 @@ class ElementLocationImpl implements ElementLocation {
* @param encoding the encoded form of a location
*/
ElementLocationImpl.con2(String encoding) {
- this._components = decode(encoding);
+ this._components = _decode(encoding);
}
bool operator ==(Object object) {
@@ -3889,10 +3889,10 @@ class ElementLocationImpl implements ElementLocation {
return false;
}
}
- if (length > 1 && !equalSourceComponents(_components[1], otherComponents[1])) {
+ if (length > 1 && !_equalSourceComponents(_components[1], otherComponents[1])) {
return false;
}
- if (length > 0 && !equalSourceComponents(_components[0], otherComponents[0])) {
+ if (length > 0 && !_equalSourceComponents(_components[0], otherComponents[0])) {
return false;
}
return true;
@@ -3912,7 +3912,7 @@ class ElementLocationImpl implements ElementLocation {
if (i > 0) {
builder.appendChar(_SEPARATOR_CHAR);
}
- encode(builder, _components[i]);
+ _encode(builder, _components[i]);
}
return builder.toString();
}
@@ -3923,7 +3923,7 @@ class ElementLocationImpl implements ElementLocation {
String component = _components[i];
int componentHash;
if (i <= 1) {
- componentHash = hashSourceComponent(component);
+ componentHash = _hashSourceComponent(component);
} else {
componentHash = component.hashCode;
}
@@ -3940,7 +3940,7 @@ class ElementLocationImpl implements ElementLocation {
* @param encoding the encoded form of a location
* @return the components that were encoded
*/
- List<String> decode(String encoding) {
+ List<String> _decode(String encoding) {
List<String> components = new List<String>();
JavaStringBuilder builder = new JavaStringBuilder();
int index = 0;
@@ -3973,7 +3973,7 @@ class ElementLocationImpl implements ElementLocation {
* @param builder the builder to which the encoded component is to be appended
* @param component the component to be appended to the builder
*/
- void encode(JavaStringBuilder builder, String component) {
+ void _encode(JavaStringBuilder builder, String component) {
int length = component.length;
for (int i = 0; i < length; i++) {
int currentChar = component.codeUnitAt(i);
@@ -3992,7 +3992,7 @@ class ElementLocationImpl implements ElementLocation {
* @param right the right component being compared
* @return `true` if the given components are equal when the source type's are ignored
*/
- bool equalSourceComponents(String left, String right) {
+ bool _equalSourceComponents(String left, String right) {
// TODO(brianwilkerson) This method can go away when sources no longer have a URI kind.
if (left == null) {
return right == null;
@@ -4015,7 +4015,7 @@ class ElementLocationImpl implements ElementLocation {
* @param sourceComponent the component to compute a hash code
* @return the hash code of the given encoded source component
*/
- int hashSourceComponent(String sourceComponent) {
+ int _hashSourceComponent(String sourceComponent) {
// TODO(brianwilkerson) This method can go away when sources no longer have a URI kind.
if (sourceComponent.length <= 1) {
return sourceComponent.hashCode;
@@ -4908,7 +4908,7 @@ class LibraryElementImpl extends ElementImpl implements LibraryElement {
* @param timeStamp the time stamp to check against
* @param visitedLibraries the set of visited libraries
*/
- static bool safeIsUpToDate(LibraryElement library, int timeStamp, Set<LibraryElement> visitedLibraries) {
+ static bool _safeIsUpToDate(LibraryElement library, int timeStamp, Set<LibraryElement> visitedLibraries) {
if (!visitedLibraries.contains(library)) {
visitedLibraries.add(library);
AnalysisContext context = library.context;
@@ -4924,13 +4924,13 @@ class LibraryElementImpl extends ElementImpl implements LibraryElement {
}
// Check the imported libraries.
for (LibraryElement importedLibrary in library.importedLibraries) {
- if (!safeIsUpToDate(importedLibrary, timeStamp, visitedLibraries)) {
+ if (!_safeIsUpToDate(importedLibrary, timeStamp, visitedLibraries)) {
return false;
}
}
// Check the exported libraries.
for (LibraryElement exportedLibrary in library.exportedLibraries) {
- if (!safeIsUpToDate(exportedLibrary, timeStamp, visitedLibraries)) {
+ if (!_safeIsUpToDate(exportedLibrary, timeStamp, visitedLibraries)) {
return false;
}
}
@@ -4972,7 +4972,7 @@ class LibraryElementImpl extends ElementImpl implements LibraryElement {
/**
* Is `true` if this library is created for Angular analysis.
*/
- bool _isAngularHtml2 = false;
+ bool _isAngularHtml = false;
/**
* Initialize a newly created library element to have the given name.
@@ -5083,7 +5083,7 @@ class LibraryElementImpl extends ElementImpl implements LibraryElement {
List<LibraryElement> get visibleLibraries {
Set<LibraryElement> visibleLibraries = new Set();
- addVisibleLibraries(visibleLibraries, false);
+ _addVisibleLibraries(visibleLibraries, false);
return new List.from(visibleLibraries);
}
@@ -5091,7 +5091,7 @@ class LibraryElementImpl extends ElementImpl implements LibraryElement {
int get hashCode => _definingCompilationUnit.hashCode;
- bool get isAngularHtml => _isAngularHtml2;
+ bool get isAngularHtml => _isAngularHtml;
bool get isBrowserApplication => entryPoint != null && isOrImportsBrowserLibrary;
@@ -5101,14 +5101,14 @@ class LibraryElementImpl extends ElementImpl implements LibraryElement {
bool isUpToDate(int timeStamp) {
Set<LibraryElement> visitedLibraries = new Set();
- return safeIsUpToDate(this, timeStamp, visitedLibraries);
+ return _safeIsUpToDate(this, timeStamp, visitedLibraries);
}
/**
* Specifies if this library is created for Angular analysis.
*/
void set angularHtml(bool isAngularHtml) {
- this._isAngularHtml2 = isAngularHtml;
+ this._isAngularHtml = isAngularHtml;
}
/**
@@ -5184,7 +5184,7 @@ class LibraryElementImpl extends ElementImpl implements LibraryElement {
/**
* Recursively fills set of visible libraries for [getVisibleElementsLibraries].
*/
- void addVisibleLibraries(Set<LibraryElement> visibleLibraries, bool includeExports) {
+ void _addVisibleLibraries(Set<LibraryElement> visibleLibraries, bool includeExports) {
// maybe already processed
if (!visibleLibraries.add(this)) {
return;
@@ -5193,7 +5193,7 @@ class LibraryElementImpl extends ElementImpl implements LibraryElement {
for (ImportElement importElement in _imports) {
LibraryElement importedLibrary = importElement.importedLibrary;
if (importedLibrary != null) {
- (importedLibrary as LibraryElementImpl).addVisibleLibraries(visibleLibraries, true);
+ (importedLibrary as LibraryElementImpl)._addVisibleLibraries(visibleLibraries, true);
}
}
// add exported libraries
@@ -5201,7 +5201,7 @@ class LibraryElementImpl extends ElementImpl implements LibraryElement {
for (ExportElement exportElement in _exports) {
LibraryElement exportedLibrary = exportElement.exportedLibrary;
if (exportedLibrary != null) {
- (exportedLibrary as LibraryElementImpl).addVisibleLibraries(visibleLibraries, true);
+ (exportedLibrary as LibraryElementImpl)._addVisibleLibraries(visibleLibraries, true);
}
}
}
@@ -5283,7 +5283,7 @@ class LocalVariableElementImpl extends VariableElementImpl implements LocalVaria
if (unit == null) {
return ToolkitObjectElement.EMPTY_ARRAY;
}
- return unit.getToolkitObjects(this);
+ return unit._getToolkitObjects(this);
}
SourceRange get visibleRange {
@@ -5321,7 +5321,7 @@ class LocalVariableElementImpl extends VariableElementImpl implements LocalVaria
if (unit == null) {
return;
}
- unit.setToolkitObjects(this, toolkitObjects);
+ unit._setToolkitObjects(this, toolkitObjects);
}
/**
@@ -5517,7 +5517,7 @@ class MultiplyDefinedElementImpl implements MultiplyDefinedElement {
* @param secondElement the second element that conflicts
*/
static Element fromElements(AnalysisContext context, Element firstElement, Element secondElement) {
- List<Element> conflictingElements = computeConflictingElements(firstElement, secondElement);
+ List<Element> conflictingElements = _computeConflictingElements(firstElement, secondElement);
int length = conflictingElements.length;
if (length == 0) {
return null;
@@ -5534,7 +5534,7 @@ class MultiplyDefinedElementImpl implements MultiplyDefinedElement {
* @param elements the list to which the element(s) are to be added
* @param element the element(s) to be added
*/
- static void add(Set<Element> elements, Element element) {
+ static void _add(Set<Element> elements, Element element) {
if (element is MultiplyDefinedElementImpl) {
for (Element conflictingElement in element.conflictingElements) {
elements.add(conflictingElement);
@@ -5553,10 +5553,10 @@ class MultiplyDefinedElementImpl implements MultiplyDefinedElement {
* @param secondElement the second element to be included
* @return an array containing all of the conflicting elements
*/
- static List<Element> computeConflictingElements(Element firstElement, Element secondElement) {
+ static List<Element> _computeConflictingElements(Element firstElement, Element secondElement) {
Set<Element> elements = new Set<Element>();
- add(elements, firstElement);
- add(elements, secondElement);
+ _add(elements, firstElement);
+ _add(elements, secondElement);
return new List.from(elements);
}
@@ -7604,7 +7604,7 @@ class FunctionTypeImpl extends TypeImpl implements FunctionType {
* @return `true` if all of the name/type pairs in the first map are equal to the
* corresponding name/type pairs in the second map
*/
- static bool equals2(Map<String, Type2> firstTypes, Map<String, Type2> secondTypes, Set<ElementPair> visitedElementPairs) {
+ static bool _equals(Map<String, Type2> firstTypes, Map<String, Type2> secondTypes, Set<ElementPair> visitedElementPairs) {
if (secondTypes.length != firstTypes.length) {
return false;
}
@@ -7845,7 +7845,7 @@ class FunctionTypeImpl extends TypeImpl implements FunctionType {
return false;
} else if (t.normalParameterTypes.length > 0) {
for (int i = 0; i < tTypes.length; i++) {
- if (!(tTypes[i] as TypeImpl).isMoreSpecificThan3(sTypes[i], withDynamic, visitedTypePairs)) {
+ if (!(tTypes[i] as TypeImpl).isMoreSpecificThan2(sTypes[i], withDynamic, visitedTypePairs)) {
return false;
}
}
@@ -7865,7 +7865,7 @@ class FunctionTypeImpl extends TypeImpl implements FunctionType {
if (typeT == null) {
return false;
}
- if (!(typeT as TypeImpl).isMoreSpecificThan3(entryS.getValue(), withDynamic, visitedTypePairs)) {
+ if (!(typeT as TypeImpl).isMoreSpecificThan2(entryS.getValue(), withDynamic, visitedTypePairs)) {
return false;
}
}
@@ -7884,7 +7884,7 @@ class FunctionTypeImpl extends TypeImpl implements FunctionType {
if (tOpTypes.length == 0 && sOpTypes.length == 0) {
// No positional arguments, don't copy contents to new array
for (int i = 0; i < sTypes.length; i++) {
- if (!(tTypes[i] as TypeImpl).isMoreSpecificThan3(sTypes[i], withDynamic, visitedTypePairs)) {
+ if (!(tTypes[i] as TypeImpl).isMoreSpecificThan2(sTypes[i], withDynamic, visitedTypePairs)) {
return false;
}
}
@@ -7906,7 +7906,7 @@ class FunctionTypeImpl extends TypeImpl implements FunctionType {
sAllTypes[i] = sOpTypes[j];
}
for (int i = 0; i < sAllTypes.length; i++) {
- if (!(tAllTypes[i] as TypeImpl).isMoreSpecificThan3(sAllTypes[i], withDynamic, visitedTypePairs)) {
+ if (!(tAllTypes[i] as TypeImpl).isMoreSpecificThan2(sAllTypes[i], withDynamic, visitedTypePairs)) {
return false;
}
}
@@ -7914,10 +7914,10 @@ class FunctionTypeImpl extends TypeImpl implements FunctionType {
}
Type2 tRetType = t.returnType;
Type2 sRetType = s.returnType;
- return sRetType.isVoid || (tRetType as TypeImpl).isMoreSpecificThan3(sRetType, withDynamic, visitedTypePairs);
+ return sRetType.isVoid || (tRetType as TypeImpl).isMoreSpecificThan2(sRetType, withDynamic, visitedTypePairs);
}
- bool isAssignableTo(Type2 type) => isSubtypeOf3(type, new Set<TypeImpl_TypePair>());
+ bool isAssignableTo(Type2 type) => isSubtypeOf2(type, new Set<TypeImpl_TypePair>());
FunctionTypeImpl substitute3(List<Type2> argumentTypes) => substitute2(argumentTypes, typeArguments);
@@ -8019,7 +8019,7 @@ class FunctionTypeImpl extends TypeImpl implements FunctionType {
return elementPair.firstElt == elementPair.secondElt;
}
// Compute the result
- bool result = TypeImpl.equalArrays(normalParameterTypes, otherType.normalParameterTypes, visitedElementPairs) && TypeImpl.equalArrays(optionalParameterTypes, otherType.optionalParameterTypes, visitedElementPairs) && equals2(namedParameterTypes, otherType.namedParameterTypes, visitedElementPairs) && (returnType as TypeImpl).internalEquals(otherType.returnType, visitedElementPairs);
+ bool result = TypeImpl.equalArrays(normalParameterTypes, otherType.normalParameterTypes, visitedElementPairs) && TypeImpl.equalArrays(optionalParameterTypes, otherType.optionalParameterTypes, visitedElementPairs) && _equals(namedParameterTypes, otherType.namedParameterTypes, visitedElementPairs) && (returnType as TypeImpl).internalEquals(otherType.returnType, visitedElementPairs);
// Remove the pair from our visited pairs list
visitedElementPairs.remove(elementPair);
// Return the result
@@ -8161,7 +8161,7 @@ class InterfaceTypeImpl extends TypeImpl implements InterfaceType {
* @return the computed longest inheritance path to Object
* @see InterfaceType#getLeastUpperBound(Type)
*/
- static int computeLongestInheritancePathToObject(InterfaceType type) => computeLongestInheritancePathToObject2(type, 0, new Set<ClassElement>());
+ static int computeLongestInheritancePathToObject(InterfaceType type) => _computeLongestInheritancePathToObject(type, 0, new Set<ClassElement>());
/**
* Returns the set of all superinterfaces of the passed [Type].
@@ -8170,7 +8170,7 @@ class InterfaceTypeImpl extends TypeImpl implements InterfaceType {
* @return the [Set] of superinterfaces of the passed [Type]
* @see #getLeastUpperBound(Type)
*/
- static Set<InterfaceType> computeSuperinterfaceSet(InterfaceType type) => computeSuperinterfaceSet2(type, new Set<InterfaceType>());
+ static Set<InterfaceType> computeSuperinterfaceSet(InterfaceType type) => _computeSuperinterfaceSet(type, new Set<InterfaceType>());
/**
* This method computes the longest inheritance path from some passed [Type] to Object. This
@@ -8185,7 +8185,7 @@ class InterfaceTypeImpl extends TypeImpl implements InterfaceType {
* @see #computeLongestInheritancePathToObject(Type)
* @see #getLeastUpperBound(Type)
*/
- static int computeLongestInheritancePathToObject2(InterfaceType type, int depth, Set<ClassElement> visitedClasses) {
+ static int _computeLongestInheritancePathToObject(InterfaceType type, int depth, Set<ClassElement> visitedClasses) {
ClassElement classElement = type.element;
// Object case
if (classElement.supertype == null || visitedClasses.contains(classElement)) {
@@ -8200,7 +8200,7 @@ class InterfaceTypeImpl extends TypeImpl implements InterfaceType {
// loop through each of the superinterfaces recursively calling this method and keeping track
// of the longest path to return
for (InterfaceType superinterface in superinterfaces) {
- pathLength = computeLongestInheritancePathToObject2(superinterface, depth + 1, visitedClasses);
+ pathLength = _computeLongestInheritancePathToObject(superinterface, depth + 1, visitedClasses);
if (pathLength > longestPath) {
longestPath = pathLength;
}
@@ -8209,7 +8209,7 @@ class InterfaceTypeImpl extends TypeImpl implements InterfaceType {
// finally, perform this same check on the super type
// TODO(brianwilkerson) Does this also need to add in the number of mixin classes?
InterfaceType supertype = classElement.supertype;
- pathLength = computeLongestInheritancePathToObject2(supertype, depth + 1, visitedClasses);
+ pathLength = _computeLongestInheritancePathToObject(supertype, depth + 1, visitedClasses);
if (pathLength > longestPath) {
longestPath = pathLength;
}
@@ -8229,20 +8229,20 @@ class InterfaceTypeImpl extends TypeImpl implements InterfaceType {
* @see #computeSuperinterfaceSet(Type)
* @see #getLeastUpperBound(Type)
*/
- static Set<InterfaceType> computeSuperinterfaceSet2(InterfaceType type, Set<InterfaceType> set) {
+ static Set<InterfaceType> _computeSuperinterfaceSet(InterfaceType type, Set<InterfaceType> set) {
Element element = type.element;
if (element != null && element is ClassElement) {
ClassElement classElement = element;
List<InterfaceType> superinterfaces = classElement.interfaces;
for (InterfaceType superinterface in superinterfaces) {
if (set.add(superinterface)) {
- computeSuperinterfaceSet2(superinterface, set);
+ _computeSuperinterfaceSet(superinterface, set);
}
}
InterfaceType supertype = classElement.supertype;
if (supertype != null) {
if (set.add(supertype)) {
- computeSuperinterfaceSet2(supertype, set);
+ _computeSuperinterfaceSet(supertype, set);
}
}
}
@@ -8260,7 +8260,7 @@ class InterfaceTypeImpl extends TypeImpl implements InterfaceType {
* @param second the second set of types to be intersected
* @return the intersection of the given sets of types
*/
- static List<InterfaceType> intersection(Set<InterfaceType> first, Set<InterfaceType> second) {
+ static List<InterfaceType> _intersection(Set<InterfaceType> first, Set<InterfaceType> second) {
Map<ClassElement, InterfaceType> firstMap = new Map<ClassElement, InterfaceType>();
for (InterfaceType firstType in first) {
firstMap[firstType.element] = firstType;
@@ -8269,7 +8269,7 @@ class InterfaceTypeImpl extends TypeImpl implements InterfaceType {
for (InterfaceType secondType in second) {
InterfaceType firstType = firstMap[secondType.element];
if (firstType != null) {
- result.add(leastUpperBound(firstType, secondType));
+ result.add(_leastUpperBound(firstType, secondType));
}
}
return new List.from(result);
@@ -8285,7 +8285,7 @@ class InterfaceTypeImpl extends TypeImpl implements InterfaceType {
* @param secondType the second type
* @return the "least upper bound" of the given types
*/
- static InterfaceType leastUpperBound(InterfaceType firstType, InterfaceType secondType) {
+ static InterfaceType _leastUpperBound(InterfaceType firstType, InterfaceType secondType) {
if (firstType == secondType) {
return firstType;
}
@@ -8416,7 +8416,7 @@ class InterfaceTypeImpl extends TypeImpl implements InterfaceType {
si.add(i);
sj.add(j);
// compute intersection, reference as set 's'
- List<InterfaceType> s = intersection(si, sj);
+ List<InterfaceType> s = _intersection(si, sj);
// for each element in Set s, compute the largest inheritance path to Object
List<int> depths = new List<int>.filled(s.length, 0);
int maxDepth = 0;
@@ -8727,7 +8727,7 @@ class InterfaceTypeImpl extends TypeImpl implements InterfaceType {
} else if (type is! InterfaceType) {
return false;
}
- return isMoreSpecificThan2(type as InterfaceType, new Set<ClassElement>(), withDynamic, visitedTypePairs);
+ return _isMoreSpecificThan(type as InterfaceType, new Set<ClassElement>(), withDynamic, visitedTypePairs);
}
bool internalIsSubtypeOf(Type2 type, Set<TypeImpl_TypePair> visitedTypePairs) {
@@ -8750,10 +8750,10 @@ class InterfaceTypeImpl extends TypeImpl implements InterfaceType {
} else if (this == type) {
return true;
}
- return isSubtypeOf2(type as InterfaceType, new Set<ClassElement>(), visitedTypePairs);
+ return _isSubtypeOf(type as InterfaceType, new Set<ClassElement>(), visitedTypePairs);
}
- bool isMoreSpecificThan2(InterfaceType s, Set<ClassElement> visitedClasses, bool withDynamic, Set<TypeImpl_TypePair> visitedTypePairs) {
+ bool _isMoreSpecificThan(InterfaceType s, Set<ClassElement> visitedClasses, bool withDynamic, Set<TypeImpl_TypePair> visitedTypePairs) {
//
// A type T is more specific than a type S, written T << S, if one of the following conditions
// is met:
@@ -8783,7 +8783,7 @@ class InterfaceTypeImpl extends TypeImpl implements InterfaceType {
return false;
}
for (int i = 0; i < tArguments.length; i++) {
- if (!(tArguments[i] as TypeImpl).isMoreSpecificThan3(sArguments[i], withDynamic, visitedTypePairs)) {
+ if (!(tArguments[i] as TypeImpl).isMoreSpecificThan2(sArguments[i], withDynamic, visitedTypePairs)) {
return false;
}
}
@@ -8801,23 +8801,23 @@ class InterfaceTypeImpl extends TypeImpl implements InterfaceType {
// Iterate over all of the types U that are more specific than T because they are direct
// supertypes of T and return true if any of them are more specific than S.
InterfaceType supertype = superclass;
- if (supertype != null && (supertype as InterfaceTypeImpl).isMoreSpecificThan2(s, visitedClasses, withDynamic, visitedTypePairs)) {
+ if (supertype != null && (supertype as InterfaceTypeImpl)._isMoreSpecificThan(s, visitedClasses, withDynamic, visitedTypePairs)) {
return true;
}
for (InterfaceType interfaceType in interfaces) {
- if ((interfaceType as InterfaceTypeImpl).isMoreSpecificThan2(s, visitedClasses, withDynamic, visitedTypePairs)) {
+ if ((interfaceType as InterfaceTypeImpl)._isMoreSpecificThan(s, visitedClasses, withDynamic, visitedTypePairs)) {
return true;
}
}
for (InterfaceType mixinType in mixins) {
- if ((mixinType as InterfaceTypeImpl).isMoreSpecificThan2(s, visitedClasses, withDynamic, visitedTypePairs)) {
+ if ((mixinType as InterfaceTypeImpl)._isMoreSpecificThan(s, visitedClasses, withDynamic, visitedTypePairs)) {
return true;
}
}
return false;
}
- bool isSubtypeOf2(InterfaceType type, Set<ClassElement> visitedClasses, Set<TypeImpl_TypePair> visitedTypePairs) {
+ bool _isSubtypeOf(InterfaceType type, Set<ClassElement> visitedClasses, Set<TypeImpl_TypePair> visitedTypePairs) {
InterfaceType typeT = this;
InterfaceType typeS = type;
ClassElement elementT = element;
@@ -8840,7 +8840,7 @@ class InterfaceTypeImpl extends TypeImpl implements InterfaceType {
for (int i = 0; i < typeTArgs.length; i++) {
// Recursively call isSubtypeOf the type arguments and return false if the T argument is not
// a subtype of the S argument.
- if (!(typeTArgs[i] as TypeImpl).isSubtypeOf3(typeSArgs[i], visitedTypePairs)) {
+ if (!(typeTArgs[i] as TypeImpl).isSubtypeOf2(typeSArgs[i], visitedTypePairs)) {
return false;
}
}
@@ -8850,18 +8850,18 @@ class InterfaceTypeImpl extends TypeImpl implements InterfaceType {
}
InterfaceType supertype = superclass;
// The type is Object, return false.
- if (supertype != null && (supertype as InterfaceTypeImpl).isSubtypeOf2(typeS, visitedClasses, visitedTypePairs)) {
+ if (supertype != null && (supertype as InterfaceTypeImpl)._isSubtypeOf(typeS, visitedClasses, visitedTypePairs)) {
return true;
}
List<InterfaceType> interfaceTypes = interfaces;
for (InterfaceType interfaceType in interfaceTypes) {
- if ((interfaceType as InterfaceTypeImpl).isSubtypeOf2(typeS, visitedClasses, visitedTypePairs)) {
+ if ((interfaceType as InterfaceTypeImpl)._isSubtypeOf(typeS, visitedClasses, visitedTypePairs)) {
return true;
}
}
List<InterfaceType> mixinTypes = mixins;
for (InterfaceType mixinType in mixinTypes) {
- if ((mixinType as InterfaceTypeImpl).isSubtypeOf2(typeS, visitedClasses, visitedTypePairs)) {
+ if ((mixinType as InterfaceTypeImpl)._isSubtypeOf(typeS, visitedClasses, visitedTypePairs)) {
return true;
}
}
@@ -8954,7 +8954,7 @@ abstract class TypeImpl implements Type2 {
* @param visitedPairs the set of pairs of types used to prevent infinite loops
* @return `true` if this type is assignable to the given type
*/
- bool isAssignableTo2(Type2 type, Set<TypeImpl_TypePair> visitedTypePairs) => isSubtypeOf3(type, visitedTypePairs) || (type as TypeImpl).isSubtypeOf3(this, visitedTypePairs);
+ bool isAssignableTo2(Type2 type, Set<TypeImpl_TypePair> visitedTypePairs) => isSubtypeOf2(type, visitedTypePairs) || (type as TypeImpl).isSubtypeOf2(this, visitedTypePairs);
bool get isBottom => false;
@@ -8962,7 +8962,7 @@ abstract class TypeImpl implements Type2 {
bool get isDynamic => false;
- bool isMoreSpecificThan(Type2 type) => isMoreSpecificThan3(type, false, new Set<TypeImpl_TypePair>());
+ bool isMoreSpecificThan(Type2 type) => isMoreSpecificThan2(type, false, new Set<TypeImpl_TypePair>());
/**
* Return `true` if this type is more specific than the given type.
@@ -8976,7 +8976,7 @@ abstract class TypeImpl implements Type2 {
* @param visitedPairs the set of pairs of types used to prevent infinite loops
* @return `true` if this type is more specific than the given type
*/
- bool isMoreSpecificThan3(Type2 type, bool withDynamic, Set<TypeImpl_TypePair> visitedTypePairs) {
+ bool isMoreSpecificThan2(Type2 type, bool withDynamic, Set<TypeImpl_TypePair> visitedTypePairs) {
// If the visitedTypePairs already has the pair (this, type), return false
TypeImpl_TypePair typePair = new TypeImpl_TypePair(this, type);
if (!visitedTypePairs.add(typePair)) {
@@ -8989,7 +8989,7 @@ abstract class TypeImpl implements Type2 {
bool get isObject => false;
- bool isSubtypeOf(Type2 type) => isSubtypeOf3(type, new Set<TypeImpl_TypePair>());
+ bool isSubtypeOf(Type2 type) => isSubtypeOf2(type, new Set<TypeImpl_TypePair>());
/**
* Return `true` if this type is a subtype of the given type.
@@ -9002,7 +9002,7 @@ abstract class TypeImpl implements Type2 {
* @param visitedPairs the set of pairs of types used to prevent infinite loops
* @return `true` if this type is a subtype of the given type
*/
- bool isSubtypeOf3(Type2 type, Set<TypeImpl_TypePair> visitedTypePairs) {
+ bool isSubtypeOf2(Type2 type, Set<TypeImpl_TypePair> visitedTypePairs) {
// If the visitedTypePairs already has the pair (this, type), return false
TypeImpl_TypePair typePair = new TypeImpl_TypePair(this, type);
if (!visitedTypePairs.add(typePair)) {
@@ -9153,12 +9153,12 @@ class TypeParameterTypeImpl extends TypeImpl implements TypeParameterType {
if (s.isDynamic) {
return true;
}
- return isMoreSpecificThan4(s, new Set<Type2>(), withDynamic, visitedTypePairs);
+ return _isMoreSpecificThan(s, new Set<Type2>(), withDynamic, visitedTypePairs);
}
- bool internalIsSubtypeOf(Type2 type, Set<TypeImpl_TypePair> visitedTypePairs) => isMoreSpecificThan3(type, true, new Set<TypeImpl_TypePair>());
+ bool internalIsSubtypeOf(Type2 type, Set<TypeImpl_TypePair> visitedTypePairs) => isMoreSpecificThan2(type, true, new Set<TypeImpl_TypePair>());
- bool isMoreSpecificThan4(Type2 s, Set<Type2> visitedTypes, bool withDynamic, Set<TypeImpl_TypePair> visitedTypePairs) {
+ bool _isMoreSpecificThan(Type2 s, Set<Type2> visitedTypes, bool withDynamic, Set<TypeImpl_TypePair> visitedTypePairs) {
// T is a type parameter and S is the upper bound of T.
//
Type2 bound = element.bound;
@@ -9185,10 +9185,10 @@ class TypeParameterTypeImpl extends TypeImpl implements TypeParameterType {
}
visitedTypes.add(bound);
// Then check upper bound.
- return boundTypeParameter.isMoreSpecificThan4(s, visitedTypes, withDynamic, visitedTypePairs);
+ return boundTypeParameter._isMoreSpecificThan(s, visitedTypes, withDynamic, visitedTypePairs);
}
// Check interface type.
- return (bound as TypeImpl).isMoreSpecificThan3(s, withDynamic, visitedTypePairs);
+ return (bound as TypeImpl).isMoreSpecificThan2(s, withDynamic, visitedTypePairs);
}
}
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