6294171508
Change-Id: I83bf6513b1acd9faedb14f1bf44e32df76dd8528 Reviewed-on: https://dart-review.googlesource.com/c/82164 Reviewed-by: Brian Wilkerson <brianwilkerson@google.com> Commit-Queue: Dan Rubel <danrubel@google.com>
480 lines
14 KiB
Dart
480 lines
14 KiB
Dart
// Copyright (c) 2018, 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 'dart:collection';
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import 'dart:convert' hide JsonDecoder;
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import 'package:analysis_server_client/src/protocol/protocol_base.dart';
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import 'package:analysis_server_client/src/protocol/protocol_generated.dart';
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import 'package:analysis_server_client/src/protocol/protocol_common.dart';
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final Map<String, RefactoringKind> REQUEST_ID_REFACTORING_KINDS =
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new HashMap<String, RefactoringKind>();
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/**
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* Adds the given [sourceEdits] to the list in [sourceFileEdit].
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*/
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void addAllEditsForSource(
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SourceFileEdit sourceFileEdit, Iterable<SourceEdit> edits) {
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edits.forEach(sourceFileEdit.add);
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}
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/**
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* Adds the given [sourceEdit] to the list in [sourceFileEdit].
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*/
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void addEditForSource(SourceFileEdit sourceFileEdit, SourceEdit sourceEdit) {
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List<SourceEdit> edits = sourceFileEdit.edits;
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int index = 0;
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while (index < edits.length && edits[index].offset > sourceEdit.offset) {
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index++;
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}
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edits.insert(index, sourceEdit);
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}
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/**
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* Adds [edit] to the [FileEdit] for the given [file].
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*/
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void addEditToSourceChange(
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SourceChange change, String file, int fileStamp, SourceEdit edit) {
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SourceFileEdit fileEdit = change.getFileEdit(file);
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if (fileEdit == null) {
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fileEdit = new SourceFileEdit(file, fileStamp);
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change.addFileEdit(fileEdit);
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}
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fileEdit.add(edit);
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}
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/**
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* Get the result of applying the edit to the given [code]. Access via
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* SourceEdit.apply().
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*/
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String applyEdit(String code, SourceEdit edit) {
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if (edit.length < 0) {
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throw new RangeError('length is negative');
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}
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return code.replaceRange(edit.offset, edit.end, edit.replacement);
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}
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/**
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* Get the result of applying a set of [edits] to the given [code]. Edits
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* are applied in the order they appear in [edits]. Access via
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* SourceEdit.applySequence().
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*/
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String applySequenceOfEdits(String code, Iterable<SourceEdit> edits) {
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edits.forEach((SourceEdit edit) {
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code = edit.apply(code);
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});
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return code;
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}
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/**
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* Returns the [FileEdit] for the given [file], maybe `null`.
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*/
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SourceFileEdit getChangeFileEdit(SourceChange change, String file) {
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for (SourceFileEdit fileEdit in change.edits) {
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if (fileEdit.file == file) {
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return fileEdit;
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}
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}
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return null;
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}
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/**
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* Compare the lists [listA] and [listB], using [itemEqual] to compare
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* list elements.
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*/
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bool listEqual<T1, T2>(
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List<T1> listA, List<T2> listB, bool itemEqual(T1 a, T2 b)) {
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if (listA == null) {
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return listB == null;
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}
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if (listB == null) {
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return false;
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}
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if (listA.length != listB.length) {
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return false;
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}
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for (int i = 0; i < listA.length; i++) {
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if (!itemEqual(listA[i], listB[i])) {
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return false;
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}
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}
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return true;
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}
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/**
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* Compare the maps [mapA] and [mapB], using [valueEqual] to compare map
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* values.
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*/
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bool mapEqual<K, V>(Map<K, V> mapA, Map<K, V> mapB, bool valueEqual(V a, V b)) {
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if (mapA == null) {
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return mapB == null;
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}
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if (mapB == null) {
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return false;
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}
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if (mapA.length != mapB.length) {
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return false;
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}
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for (var key in mapA.keys) {
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if (!mapB.containsKey(key)) {
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return false;
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}
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if (!valueEqual(mapA[key], mapB[key])) {
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return false;
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}
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}
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return true;
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}
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/**
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* Translate the input [map], applying [keyCallback] to all its keys, and
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* [valueCallback] to all its values.
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*/
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Map<KR, VR> mapMap<KP, VP, KR, VR>(Map<KP, VP> map,
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{KR keyCallback(KP key), VR valueCallback(VP value)}) {
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Map<KR, VR> result = new HashMap<KR, VR>();
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map.forEach((key, value) {
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KR resultKey;
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VR resultValue;
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if (keyCallback != null) {
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resultKey = keyCallback(key);
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} else {
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resultKey = key as KR;
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}
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if (valueCallback != null) {
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resultValue = valueCallback(value);
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} else {
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resultValue = value as VR;
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}
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result[resultKey] = resultValue;
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});
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return result;
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}
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RefactoringProblemSeverity maxRefactoringProblemSeverity(
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RefactoringProblemSeverity a, RefactoringProblemSeverity b) {
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if (b == null) {
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return a;
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}
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if (a == null) {
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return b;
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} else if (a == RefactoringProblemSeverity.INFO) {
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return b;
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} else if (a == RefactoringProblemSeverity.WARNING) {
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if (b == RefactoringProblemSeverity.ERROR ||
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b == RefactoringProblemSeverity.FATAL) {
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return b;
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}
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} else if (a == RefactoringProblemSeverity.ERROR) {
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if (b == RefactoringProblemSeverity.FATAL) {
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return b;
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}
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}
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return a;
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}
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/**
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* Create a [RefactoringFeedback] corresponding the given [kind].
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*/
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RefactoringFeedback refactoringFeedbackFromJson(
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JsonDecoder jsonDecoder, String jsonPath, Object json, Map feedbackJson) {
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RefactoringKind kind = jsonDecoder.refactoringKind;
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if (kind == RefactoringKind.EXTRACT_LOCAL_VARIABLE) {
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return new ExtractLocalVariableFeedback.fromJson(
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jsonDecoder, jsonPath, json);
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}
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if (kind == RefactoringKind.EXTRACT_METHOD) {
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return new ExtractMethodFeedback.fromJson(jsonDecoder, jsonPath, json);
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}
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if (kind == RefactoringKind.EXTRACT_WIDGET) {
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return new ExtractWidgetFeedback.fromJson(jsonDecoder, jsonPath, json);
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}
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if (kind == RefactoringKind.INLINE_LOCAL_VARIABLE) {
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return new InlineLocalVariableFeedback.fromJson(
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jsonDecoder, jsonPath, json);
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}
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if (kind == RefactoringKind.INLINE_METHOD) {
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return new InlineMethodFeedback.fromJson(jsonDecoder, jsonPath, json);
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}
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if (kind == RefactoringKind.RENAME) {
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return new RenameFeedback.fromJson(jsonDecoder, jsonPath, json);
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}
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return null;
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}
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/**
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* Create a [RefactoringOptions] corresponding the given [kind].
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*/
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RefactoringOptions refactoringOptionsFromJson(JsonDecoder jsonDecoder,
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String jsonPath, Object json, RefactoringKind kind) {
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if (kind == RefactoringKind.EXTRACT_LOCAL_VARIABLE) {
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return new ExtractLocalVariableOptions.fromJson(
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jsonDecoder, jsonPath, json);
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}
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if (kind == RefactoringKind.EXTRACT_METHOD) {
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return new ExtractMethodOptions.fromJson(jsonDecoder, jsonPath, json);
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}
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if (kind == RefactoringKind.EXTRACT_WIDGET) {
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return new ExtractWidgetOptions.fromJson(jsonDecoder, jsonPath, json);
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}
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if (kind == RefactoringKind.INLINE_METHOD) {
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return new InlineMethodOptions.fromJson(jsonDecoder, jsonPath, json);
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}
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if (kind == RefactoringKind.MOVE_FILE) {
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return new MoveFileOptions.fromJson(jsonDecoder, jsonPath, json);
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}
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if (kind == RefactoringKind.RENAME) {
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return new RenameOptions.fromJson(jsonDecoder, jsonPath, json);
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}
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return null;
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}
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/**
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* Type of callbacks used to decode parts of JSON objects. [jsonPath] is a
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* string describing the part of the JSON object being decoded, and [value] is
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* the part to decode.
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*/
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typedef E JsonDecoderCallback<E>(String jsonPath, Object value);
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/**
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* Instances of the class [HasToJson] implement [toJson] method that returns
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* a JSON presentation.
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*/
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abstract class HasToJson {
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/**
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* Returns a JSON presentation of the object.
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*/
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Map<String, Object> toJson();
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}
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/**
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* Base class for decoding JSON objects. The derived class must implement
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* error reporting logic.
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*/
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abstract class JsonDecoder {
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/**
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* Retrieve the RefactoringKind that should be assumed when decoding
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* refactoring feedback objects, or null if no refactoring feedback object is
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* expected to be encountered.
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*/
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RefactoringKind get refactoringKind;
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/**
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* Decode a JSON object that is expected to be a boolean. The strings "true"
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* and "false" are also accepted.
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*/
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bool decodeBool(String jsonPath, Object json) {
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if (json is bool) {
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return json;
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} else if (json == 'true') {
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return true;
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} else if (json == 'false') {
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return false;
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}
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throw mismatch(jsonPath, 'bool', json);
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}
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/**
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* Decode a JSON object that is expected to be an integer. A string
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* representation of an integer is also accepted.
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*/
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int decodeInt(String jsonPath, Object json) {
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if (json is int) {
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return json;
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} else if (json is String) {
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int value = int.tryParse(json);
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if (value == null) {
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throw mismatch(jsonPath, 'int', json);
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}
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return value;
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}
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throw mismatch(jsonPath, 'int', json);
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}
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/**
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* Decode a JSON object that is expected to be a List. The [decoder] is used
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* to decode the items in the list.
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*
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* The type parameter [E] is the expected type of the elements in the list.
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*/
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List<E> decodeList<E>(String jsonPath, Object json,
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[JsonDecoderCallback<E> decoder]) {
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if (json == null) {
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return <E>[];
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} else if (json is List) {
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List<E> result = <E>[];
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for (int i = 0; i < json.length; i++) {
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result.add(decoder('$jsonPath[$i]', json[i]));
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}
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return result;
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} else {
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throw mismatch(jsonPath, 'List', json);
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}
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}
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/**
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* Decode a JSON object that is expected to be a Map. [keyDecoder] is used
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* to decode the keys, and [valueDecoder] is used to decode the values.
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*/
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Map<K, V> decodeMap<K, V>(String jsonPath, Object jsonData,
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{JsonDecoderCallback<K> keyDecoder,
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JsonDecoderCallback<V> valueDecoder}) {
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if (jsonData == null) {
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return {};
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} else if (jsonData is Map) {
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Map<K, V> result = <K, V>{};
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jsonData.forEach((key, value) {
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K decodedKey;
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if (keyDecoder != null) {
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decodedKey = keyDecoder('$jsonPath.key', key);
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} else {
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decodedKey = key as K;
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}
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if (valueDecoder != null) {
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value = valueDecoder('$jsonPath[${json.encode(key)}]', value);
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}
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result[decodedKey] = value as V;
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});
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return result;
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} else {
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throw mismatch(jsonPath, 'Map', jsonData);
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}
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}
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/**
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* Decode a JSON object that is expected to be a string.
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*/
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String decodeString(String jsonPath, Object json) {
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if (json is String) {
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return json;
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} else {
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throw mismatch(jsonPath, 'String', json);
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}
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}
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/**
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* Decode a JSON object that is expected to be one of several choices,
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* where the choices are disambiguated by the contents of the field [field].
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* [decoders] is a map from each possible string in the field to the decoder
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* that should be used to decode the JSON object.
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*/
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Object decodeUnion(String jsonPath, Map jsonData, String field,
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Map<String, JsonDecoderCallback> decoders) {
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if (jsonData is Map) {
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if (!jsonData.containsKey(field)) {
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throw missingKey(jsonPath, field);
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}
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var disambiguatorPath = '$jsonPath[${json.encode(field)}]';
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String disambiguator = decodeString(disambiguatorPath, jsonData[field]);
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if (!decoders.containsKey(disambiguator)) {
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throw mismatch(
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disambiguatorPath, 'One of: ${decoders.keys.toList()}', jsonData);
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}
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return decoders[disambiguator](jsonPath, jsonData);
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} else {
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throw mismatch(jsonPath, 'Map', jsonData);
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}
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}
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/**
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* Create an exception to throw if the JSON object at [jsonPath] fails to
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* match the API definition of [expected].
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*/
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dynamic mismatch(String jsonPath, String expected, [Object actual]);
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/**
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* Create an exception to throw if the JSON object at [jsonPath] is missing
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* the key [key].
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*/
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dynamic missingKey(String jsonPath, String key);
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}
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/**
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* JsonDecoder for decoding requests. Errors are reporting by throwing a
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* [RequestFailure].
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*/
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class RequestDecoder extends JsonDecoder {
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/**
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* The request being deserialized.
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*/
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final Request _request;
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RequestDecoder(this._request);
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RefactoringKind get refactoringKind {
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// Refactoring feedback objects should never appear in requests.
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return null;
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}
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@override
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dynamic mismatch(String jsonPath, String expected, [Object actual]) {
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StringBuffer buffer = new StringBuffer();
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buffer.write('Expected to be ');
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buffer.write(expected);
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if (actual != null) {
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buffer.write('; found "');
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buffer.write(json.encode(actual));
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buffer.write('"');
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}
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return new RequestFailure(
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new Response.invalidParameter(_request, jsonPath, buffer.toString()));
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}
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@override
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dynamic missingKey(String jsonPath, String key) {
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return new RequestFailure(new Response.invalidParameter(
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_request, jsonPath, 'Expected to contain key ${json.encode(key)}'));
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}
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}
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abstract class RequestParams implements HasToJson {
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/**
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* Return a request whose parameters are taken from this object and that has
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* the given [id].
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*/
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Request toRequest(String id);
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}
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/**
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* JsonDecoder for decoding responses from the server. This is intended to be
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* used only for testing. Errors are reported using bare [Exception] objects.
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*/
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class ResponseDecoder extends JsonDecoder {
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final RefactoringKind refactoringKind;
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ResponseDecoder(this.refactoringKind);
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@override
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dynamic mismatch(String jsonPath, String expected, [Object actual]) {
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StringBuffer buffer = new StringBuffer();
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buffer.write('Expected ');
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buffer.write(expected);
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if (actual != null) {
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buffer.write(' found "');
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buffer.write(json.encode(actual));
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buffer.write('"');
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}
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buffer.write(' at ');
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buffer.write(jsonPath);
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return new Exception(buffer.toString());
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}
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@override
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dynamic missingKey(String jsonPath, String key) {
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return new Exception('Missing key $key at $jsonPath');
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}
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}
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/**
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* The result data associated with a response.
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*/
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abstract class ResponseResult implements HasToJson {
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/**
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* Return a response whose result data is this object for the request with the
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* given [id].
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*/
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Response toResponse(String id);
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}
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