ec0447db5d
Change-Id: I04a89cc922e0046dee4d7e9f964f272cfc60a055 Reviewed-on: https://dart-review.googlesource.com/c/sdk/+/99320 Reviewed-by: Konstantin Shcheglov <scheglov@google.com> Commit-Queue: Brian Wilkerson <brianwilkerson@google.com>
507 lines
15 KiB
Dart
507 lines
15 KiB
Dart
// Copyright (c) 2014, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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import 'package:analyzer/dart/ast/ast.dart' show AstNode, SimpleIdentifier;
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import 'package:analyzer/dart/element/element.dart';
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import 'package:analyzer/dart/element/type.dart';
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import 'package:analyzer/error/error.dart';
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import 'package:analyzer/error/listener.dart';
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import 'package:analyzer/exception/exception.dart';
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import 'package:analyzer/file_system/memory_file_system.dart';
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import 'package:analyzer/src/dart/ast/utilities.dart';
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import 'package:analyzer/src/generated/engine.dart';
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import 'package:analyzer/src/generated/java_engine.dart';
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import 'package:analyzer/src/generated/parser.dart';
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import 'package:analyzer/src/generated/source.dart';
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import 'package:test/test.dart';
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import 'analysis_context_factory.dart';
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/// The class `EngineTestCase` defines utility methods for making assertions.
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class EngineTestCase {
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/// Return `true` if the fasta parser is being used.
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bool get usingFastaParser => Parser.useFasta;
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/// Assert that the given collection of [elements] has the same number of
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/// elements as the number of specified [names], and that for each specified
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/// name, a corresponding element can be found in the given collection with
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/// that name.
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void assertNamedElements(List<Element> elements, List<String> names) {
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for (String elemName in names) {
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bool found = false;
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for (Element elem in elements) {
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if (elem.name == elemName) {
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found = true;
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break;
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}
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}
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if (!found) {
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StringBuffer buffer = new StringBuffer();
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buffer.write("Expected element named: ");
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buffer.write(elemName);
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buffer.write("\n but found: ");
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for (Element elem in elements) {
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buffer.write(elem.name);
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buffer.write(", ");
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}
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fail(buffer.toString());
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}
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}
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expect(elements, hasLength(names.length));
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}
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AnalysisContext createAnalysisContext() {
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return AnalysisContextFactory.contextWithCore(
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resourceProvider: new MemoryResourceProvider());
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}
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/// Return the getter in the given [type] with the given [name]. Inherited
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/// getters are ignored.
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PropertyAccessorElement getGetter(InterfaceType type, String getterName) {
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for (PropertyAccessorElement accessor in type.element.accessors) {
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if (accessor.isGetter && accessor.name == getterName) {
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return accessor;
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}
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}
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fail("Could not find getter named $getterName in ${type.displayName}");
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}
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/// Return the method in the given [type] with the given [name]. Inherited
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/// methods are ignored.
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MethodElement getMethod(InterfaceType type, String methodName) {
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for (MethodElement method in type.element.methods) {
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if (method.name == methodName) {
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return method;
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}
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}
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fail("Could not find method named $methodName in ${type.displayName}");
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}
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void setUp() {}
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void tearDown() {}
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/// Return the [AstNode] with requested type at offset of the [prefix].
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static AstNode findNode(
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AstNode root, String code, String prefix, Predicate<AstNode> predicate) {
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int offset = code.indexOf(prefix);
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if (offset == -1) {
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throw new ArgumentError("Not found '$prefix'.");
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}
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AstNode node = new NodeLocator(offset).searchWithin(root);
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return node.thisOrAncestorMatching(predicate);
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}
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/// Find the [SimpleIdentifier] with at offset of the [prefix].
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static SimpleIdentifier findSimpleIdentifier(
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AstNode root, String code, String prefix) {
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int offset = code.indexOf(prefix);
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if (offset == -1) {
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throw new ArgumentError("Not found '$prefix'.");
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}
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return new NodeLocator(offset).searchWithin(root);
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}
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}
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/// A description of an error that is expected to be reported.
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class ExpectedError {
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/// An empty array of error descriptors used when no errors are expected.
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static List<ExpectedError> NO_ERRORS = <ExpectedError>[];
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/// The error code associated with the error.
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final ErrorCode code;
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/// The offset of the beginning of the error's region.
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final int offset;
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/// The offset of the beginning of the error's region.
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final int length;
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/// Initialize a newly created error description.
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ExpectedError(this.code, this.offset, this.length);
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/// Return `true` if the [error] matches this description of what it's
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/// expected to be.
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bool matches(AnalysisError error) {
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return error.offset == offset &&
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error.length == length &&
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error.errorCode == code;
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}
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}
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/// An error listener that collects all of the errors passed to it for later
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/// examination.
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class GatheringErrorListener implements AnalysisErrorListener {
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/// A flag indicating whether error ranges are to be compared when comparing
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/// expected and actual errors.
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final bool checkRanges;
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/// A list containing the errors that were collected.
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List<AnalysisError> _errors = <AnalysisError>[];
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/// A table mapping sources to the line information for the source.
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Map<Source, LineInfo> _lineInfoMap = <Source, LineInfo>{};
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/// Initialize a newly created error listener to collect errors.
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GatheringErrorListener({this.checkRanges = Parser.useFasta});
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/// Return the errors that were collected.
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List<AnalysisError> get errors => _errors;
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/// Return `true` if at least one error has been gathered.
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bool get hasErrors => _errors.length > 0;
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/// Add the given [errors] to this listener.
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void addAll(List<AnalysisError> errors) {
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for (AnalysisError error in errors) {
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onError(error);
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}
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}
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/// Add all of the errors recorded by the given [listener] to this listener.
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void addAll2(RecordingErrorListener listener) {
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addAll(listener.errors);
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}
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/// Assert that the number of errors that have been gathered matches the
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/// number of [expectedErrors] and that they have the expected error codes and
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/// locations. The order in which the errors were gathered is ignored.
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void assertErrors(List<ExpectedError> expectedErrors) {
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//
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// Match actual errors to expected errors.
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//
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List<AnalysisError> unmatchedActual = errors.toList();
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List<ExpectedError> unmatchedExpected = expectedErrors.toList();
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int actualIndex = 0;
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while (actualIndex < unmatchedActual.length) {
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bool matchFound = false;
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int expectedIndex = 0;
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while (expectedIndex < unmatchedExpected.length) {
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if (unmatchedExpected[expectedIndex]
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.matches(unmatchedActual[actualIndex])) {
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matchFound = true;
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unmatchedActual.removeAt(actualIndex);
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unmatchedExpected.removeAt(expectedIndex);
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break;
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}
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expectedIndex++;
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}
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if (!matchFound) {
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actualIndex++;
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}
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}
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//
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// Write the results.
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//
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StringBuffer buffer = new StringBuffer();
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if (unmatchedExpected.isNotEmpty) {
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buffer.writeln('Expected but did not find:');
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for (ExpectedError expected in unmatchedExpected) {
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buffer.write(' ');
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buffer.write(expected.code);
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buffer.write(' [');
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buffer.write(expected.offset);
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buffer.write(', ');
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buffer.write(expected.length);
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buffer.writeln(']');
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}
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}
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if (unmatchedActual.isNotEmpty) {
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if (buffer.isNotEmpty) {
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buffer.writeln();
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}
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buffer.writeln('Found but did not expect:');
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for (AnalysisError actual in unmatchedActual) {
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buffer.write(' ');
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buffer.write(actual.errorCode);
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buffer.write(' [');
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buffer.write(actual.offset);
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buffer.write(', ');
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buffer.write(actual.length);
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buffer.writeln(']');
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}
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}
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if (buffer.isNotEmpty) {
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errors.sort((first, second) => first.offset.compareTo(second.offset));
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buffer.writeln();
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buffer.writeln('To accept the current state, expect:');
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for (AnalysisError actual in errors) {
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buffer.write(' error(');
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buffer.write(actual.errorCode);
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buffer.write(', ');
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buffer.write(actual.offset);
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buffer.write(', ');
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buffer.write(actual.length);
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buffer.writeln('),');
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}
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fail(buffer.toString());
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}
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}
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/// Assert that the number of errors that have been gathered matches the
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/// number of [expectedErrorCodes] and that they have the expected error
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/// codes. The order in which the errors were gathered is ignored.
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void assertErrorsWithCodes(
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[List<ErrorCode> expectedErrorCodes = const <ErrorCode>[]]) {
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StringBuffer buffer = new StringBuffer();
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//
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// Compute the expected number of each type of error.
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//
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Map<ErrorCode, int> expectedCounts = <ErrorCode, int>{};
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for (ErrorCode code in expectedErrorCodes) {
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int count = expectedCounts[code];
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if (count == null) {
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count = 1;
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} else {
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count = count + 1;
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}
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expectedCounts[code] = count;
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}
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//
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// Compute the actual number of each type of error.
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//
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Map<ErrorCode, List<AnalysisError>> errorsByCode =
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<ErrorCode, List<AnalysisError>>{};
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for (AnalysisError error in _errors) {
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errorsByCode
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.putIfAbsent(error.errorCode, () => <AnalysisError>[])
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.add(error);
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}
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//
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// Compare the expected and actual number of each type of error.
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//
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expectedCounts.forEach((ErrorCode code, int expectedCount) {
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int actualCount;
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List<AnalysisError> list = errorsByCode.remove(code);
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if (list == null) {
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actualCount = 0;
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} else {
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actualCount = list.length;
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}
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if (actualCount != expectedCount) {
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if (buffer.length == 0) {
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buffer.write("Expected ");
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} else {
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buffer.write("; ");
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}
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buffer.write(expectedCount);
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buffer.write(" errors of type ");
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buffer.write(code.uniqueName);
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buffer.write(", found ");
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buffer.write(actualCount);
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}
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});
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//
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// Check that there are no more errors in the actual-errors map,
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// otherwise record message.
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//
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errorsByCode.forEach((ErrorCode code, List<AnalysisError> actualErrors) {
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int actualCount = actualErrors.length;
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if (buffer.length == 0) {
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buffer.write("Expected ");
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} else {
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buffer.write("; ");
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}
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buffer.write("0 errors of type ");
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buffer.write(code.uniqueName);
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buffer.write(", found ");
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buffer.write(actualCount);
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buffer.write(" (");
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for (int i = 0; i < actualErrors.length; i++) {
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AnalysisError error = actualErrors[i];
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if (i > 0) {
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buffer.write(", ");
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}
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buffer.write(error.offset);
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}
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buffer.write(")");
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});
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if (buffer.length > 0) {
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fail(buffer.toString());
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}
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}
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/// Assert that the number of errors that have been gathered matches the
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/// number of [expectedSeverities] and that there are the same number of
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/// errors and warnings as specified by the argument. The order in which the
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/// errors were gathered is ignored.
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void assertErrorsWithSeverities(List<ErrorSeverity> expectedSeverities) {
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int expectedErrorCount = 0;
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int expectedWarningCount = 0;
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for (ErrorSeverity severity in expectedSeverities) {
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if (severity == ErrorSeverity.ERROR) {
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expectedErrorCount++;
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} else {
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expectedWarningCount++;
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}
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}
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int actualErrorCount = 0;
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int actualWarningCount = 0;
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for (AnalysisError error in _errors) {
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if (error.errorCode.errorSeverity == ErrorSeverity.ERROR) {
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actualErrorCount++;
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} else {
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actualWarningCount++;
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}
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}
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if (expectedErrorCount != actualErrorCount ||
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expectedWarningCount != actualWarningCount) {
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fail("Expected $expectedErrorCount errors "
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"and $expectedWarningCount warnings, "
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"found $actualErrorCount errors "
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"and $actualWarningCount warnings");
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}
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}
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/// Assert that no errors have been gathered.
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void assertNoErrors() {
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assertErrors(ExpectedError.NO_ERRORS);
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}
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/// Return the line information associated with the given [source], or `null`
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/// if no line information has been associated with the source.
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LineInfo getLineInfo(Source source) => _lineInfoMap[source];
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/// Return `true` if an error with the given [errorCode] has been gathered.
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bool hasError(ErrorCode errorCode) {
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for (AnalysisError error in _errors) {
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if (identical(error.errorCode, errorCode)) {
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return true;
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}
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}
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return false;
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}
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@override
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void onError(AnalysisError error) {
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_errors.add(error);
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}
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/// Set the line information associated with the given [source] to the given
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/// list of [lineStarts].
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void setLineInfo(Source source, List<int> lineStarts) {
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_lineInfoMap[source] = new LineInfo(lineStarts);
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}
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}
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/// Instances of the class [TestLogger] implement a logger that can be used by
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/// tests.
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class TestLogger implements Logger {
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/// All logged messages.
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List<String> log = [];
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@override
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void logError(String message, [CaughtException exception]) {
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log.add("error: $message");
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}
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@override
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void logInformation(String message, [CaughtException exception]) {
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log.add("info: $message");
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}
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}
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class TestSource extends Source {
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String _name;
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String _contents;
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int _modificationStamp = 0;
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bool exists2 = true;
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/// A flag indicating whether an exception should be generated when an attempt
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/// is made to access the contents of this source.
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bool generateExceptionOnRead = false;
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/// The number of times that the contents of this source have been requested.
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int readCount = 0;
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TestSource([this._name = '/test.dart', this._contents]);
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TimestampedData<String> get contents {
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readCount++;
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if (generateExceptionOnRead) {
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String msg = "I/O Exception while getting the contents of " + _name;
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throw new Exception(msg);
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}
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return new TimestampedData<String>(0, _contents);
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}
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String get encoding => _name;
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String get fullName {
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return _name;
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}
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int get hashCode => 0;
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bool get isInSystemLibrary {
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return false;
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}
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@override
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int get modificationStamp =>
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generateExceptionOnRead ? -1 : _modificationStamp;
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String get shortName {
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return _name;
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}
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Uri get uri => new Uri.file(_name);
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UriKind get uriKind {
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throw new UnsupportedError('uriKind');
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}
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bool operator ==(Object other) {
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if (other is TestSource) {
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return other._name == _name;
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}
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return false;
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}
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bool exists() => exists2;
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void getContentsToReceiver(Source_ContentReceiver receiver) {
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throw new UnsupportedError('getContentsToReceiver');
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}
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Source resolve(String uri) {
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throw new UnsupportedError('resolve');
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}
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void setContents(String value) {
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generateExceptionOnRead = false;
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_modificationStamp = new DateTime.now().millisecondsSinceEpoch;
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_contents = value;
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}
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@override
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String toString() => '$_name';
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}
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class TestSourceWithUri extends TestSource {
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final Uri uri;
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TestSourceWithUri(String path, this.uri, [String content])
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: super(path, content);
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String get encoding => uri.toString();
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UriKind get uriKind {
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if (uri == null) {
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return UriKind.FILE_URI;
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} else if (uri.scheme == 'dart') {
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return UriKind.DART_URI;
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} else if (uri.scheme == 'package') {
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return UriKind.PACKAGE_URI;
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}
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return UriKind.FILE_URI;
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}
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bool operator ==(Object other) {
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if (other is TestSource) {
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return other.uri == uri;
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}
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return false;
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}
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}
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