774 lines
24 KiB
Dart
774 lines
24 KiB
Dart
// Copyright (c) 2015, 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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library analyzer.task.model;
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import 'dart:collection';
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import 'dart:developer';
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import 'package:analyzer/src/generated/engine.dart';
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import 'package:analyzer/src/generated/error.dart' show AnalysisError;
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import 'package:analyzer/src/generated/java_engine.dart';
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import 'package:analyzer/src/generated/source.dart';
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import 'package:analyzer/src/generated/utilities_general.dart';
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import 'package:analyzer/src/task/driver.dart';
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import 'package:analyzer/src/task/model.dart';
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/**
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* A function that converts the given [key] and [value] into a [TaskInput].
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*/
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typedef TaskInput<E> BinaryFunction<K, V, E>(K key, V value);
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/**
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* A function that takes an analysis [context] and an analysis [target] and
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* returns an analysis task. Such functions are passed to a [TaskDescriptor] to
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* be used to create the described task.
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*/
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typedef AnalysisTask BuildTask(AnalysisContext context, AnalysisTarget target);
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/**
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* A function that takes the target for which a task will produce results and
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* returns a map from input names to descriptions of the analysis results needed
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* by the task in order for the task to be performed. Such functions are passed
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* to a [TaskDescriptor] to be used to determine the inputs needed by the task.
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*/
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typedef Map<String, TaskInput> CreateTaskInputs(AnalysisTarget target);
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/**
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* A function that takes the target for which a task will produce results and
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* returns an indication of how suitable the task is for the target. Such
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* functions are passed to a [TaskDescriptor] to be used to determine their
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* suitability for computing results.
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*/
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typedef TaskSuitability SuitabilityFor(AnalysisTarget target);
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/**
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* A function that converts an object of the type [B] into a [TaskInput].
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* This is used, for example, by a [ListTaskInput] to create task inputs
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* for each value in a list of values.
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*/
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typedef TaskInput<E> UnaryFunction<B, E>(B object);
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/**
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* An [AnalysisTarget] wrapper for an [AnalysisContext].
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*/
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class AnalysisContextTarget implements AnalysisTarget {
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static final AnalysisContextTarget request = new AnalysisContextTarget(null);
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final AnalysisContext context;
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AnalysisContextTarget(this.context);
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@override
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Source get source => null;
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}
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/**
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* An object with which an analysis result can be associated.
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*
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* Clients may implement this class when creating new kinds of targets.
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* Instances of this type are used in hashed data structures, so subtypes are
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* required to correctly implement [==] and [hashCode].
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*/
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abstract class AnalysisTarget {
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/**
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* Return the source associated with this target, or `null` if this target is
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* not associated with a source.
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*/
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Source get source;
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}
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/**
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* An object used to compute one or more analysis results associated with a
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* single target.
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*
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* Clients must extend this class when creating new tasks.
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*/
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abstract class AnalysisTask {
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/**
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* A queue storing the last 10 task descriptions for diagnostic purposes.
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*/
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static final LimitedQueue<String> LAST_TASKS = new LimitedQueue<String>(10);
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/**
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* A table mapping the types of analysis tasks to the number of times each
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* kind of task has been performed.
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*/
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static final Map<Type, int> countMap = new HashMap<Type, int>();
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/**
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* A table mapping the types of analysis tasks to user tags used to collect
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* timing data for the Observatory.
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*/
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static Map<Type, UserTag> tagMap = new HashMap<Type, UserTag>();
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/**
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* A table mapping the types of analysis tasks to stopwatches used to compute
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* how much time was spent executing each kind of task.
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*/
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static final Map<Type, Stopwatch> stopwatchMap =
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new HashMap<Type, Stopwatch>();
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/**
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* The context in which the task is to be performed.
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*/
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final AnalysisContext context;
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/**
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* The target for which result values are being produced.
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*/
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final AnalysisTarget target;
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/**
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* A table mapping input names to input values.
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*/
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Map<String, dynamic> inputs;
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/**
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* A table mapping result descriptors whose values are produced by this task
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* to the values that were produced.
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*/
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Map<ResultDescriptor, dynamic> outputs =
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new HashMap<ResultDescriptor, dynamic>();
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/**
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* The exception that was thrown while performing this task, or `null` if the
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* task completed successfully.
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*/
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CaughtException caughtException;
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/**
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* If a dependency cycle was found while computing the inputs for the task,
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* the set of [WorkItem]s contained in the cycle (if there are overlapping
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* cycles, this is the set of all [WorkItem]s in the entire strongly
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* connected component). Otherwise, `null`.
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*/
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List<WorkItem> dependencyCycle;
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/**
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* Initialize a newly created task to perform analysis within the given
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* [context] in order to produce results for the given [target].
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*/
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AnalysisTask(this.context, this.target);
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/**
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* Return a textual description of this task.
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*/
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String get description;
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/**
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* Return the descriptor that describes this task.
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*/
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TaskDescriptor get descriptor;
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/**
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* Indicates whether the task is capable of handling dependency cycles. A
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* task that overrides this getter to return `true` must be prepared for the
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* possibility that it will be invoked with a non-`null` value of
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* [dependencyCycle], and with not all of its inputs computed.
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*/
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bool get handlesDependencyCycles => false;
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/**
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* Return the value of the input with the given [name], or `null` if the input
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* value is not defined.
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*/
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Object getOptionalInput(String name) {
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if (inputs == null || !inputs.containsKey(name)) {
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return null;
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}
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return inputs[name];
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}
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/**
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* Return the value of the input with the given [name]. Throw an exception if
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* the input value is not defined.
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*/
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Object/*=E*/ getRequiredInput/*<E>*/(String name) {
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if (inputs == null || !inputs.containsKey(name)) {
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throw new AnalysisException("Could not $description: missing $name");
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}
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return inputs[name] as Object/*=E*/;
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}
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/**
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* Return the source associated with the target. Throw an exception if
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* the target is not associated with a source.
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*/
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Source getRequiredSource() {
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Source source = target.source;
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if (source == null) {
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throw new AnalysisException("Could not $description: missing source");
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}
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return source;
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}
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/**
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* Perform this analysis task, protected by an exception handler.
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*
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* This method should throw an [AnalysisException] if an exception occurs
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* while performing the task. If other kinds of exceptions are thrown they
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* will be wrapped in an [AnalysisException].
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*
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* If no exception is thrown, this method must fully populate the [outputs]
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* map (have a key/value pair for each result that this task is expected to
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* produce).
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*/
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void internalPerform();
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/**
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* Perform this analysis task. When this method returns, either the [outputs]
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* map should be fully populated (have a key/value pair for each result that
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* this task is expected to produce) or the [caughtException] should be set.
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*
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* Clients may not override this method.
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*/
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void perform() {
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try {
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_safelyPerform();
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} on AnalysisException catch (exception, stackTrace) {
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caughtException = new CaughtException(exception, stackTrace);
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AnalysisEngine.instance.logger
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.logError("Task failed: $description", caughtException);
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}
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}
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@override
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String toString() => description;
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/**
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* Given a strongly connected component, find and return a list of
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* [TargetedResult]s that describes a cyclic path within the cycle. Returns
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* null if no cyclic path is found.
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*/
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List<TargetedResult> _findCyclicPath(List<WorkItem> cycle) {
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WorkItem findInCycle(AnalysisTarget target, ResultDescriptor descriptor) {
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for (WorkItem item in cycle) {
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if (target == item.target && descriptor == item.spawningResult) {
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return item;
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}
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}
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return null;
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}
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HashSet<WorkItem> active = new HashSet<WorkItem>();
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List<TargetedResult> path = null;
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bool traverse(WorkItem item) {
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if (!active.add(item)) {
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// We've found a cycle
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path = <TargetedResult>[];
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return true;
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}
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for (TargetedResult result in item.inputTargetedResults) {
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WorkItem item = findInCycle(result.target, result.result);
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// Ignore edges that leave the cycle.
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if (item != null) {
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if (traverse(item)) {
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// This edge is in a cycle (or leads to a cycle) so add it to the
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// path
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path.add(result);
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return true;
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}
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}
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}
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// There was no cycle.
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return false;
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}
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if (cycle.length > 0) {
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traverse(cycle[0]);
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}
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return path;
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}
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/**
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* Perform this analysis task, ensuring that all exceptions are wrapped in an
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* [AnalysisException].
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*
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* Clients may not override this method.
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*/
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void _safelyPerform() {
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try {
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//
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// Store task description for diagnostics.
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//
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LAST_TASKS.add(description);
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//
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// Report that this task is being performed.
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//
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String contextName = context.name;
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if (contextName == null) {
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contextName = 'unnamed';
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}
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AnalysisEngine.instance.instrumentationService
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.logAnalysisTask(contextName, this);
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//
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// Gather statistics on the performance of the task.
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//
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int count = countMap[runtimeType];
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countMap[runtimeType] = count == null ? 1 : count + 1;
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// UserTag tag = tagMap.putIfAbsent(
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// runtimeType, () => new UserTag(runtimeType.toString()));
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Stopwatch stopwatch = stopwatchMap[runtimeType];
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if (stopwatch == null) {
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stopwatch = new Stopwatch();
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stopwatchMap[runtimeType] = stopwatch;
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}
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// UserTag previousTag = tag.makeCurrent();
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// try {
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stopwatch.start();
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//
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// Actually perform the task.
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//
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try {
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if (dependencyCycle != null && !handlesDependencyCycles) {
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throw new InfiniteTaskLoopException(
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this, dependencyCycle, _findCyclicPath(dependencyCycle));
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}
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internalPerform();
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} finally {
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stopwatch.stop();
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}
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// } finally {
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// previousTag.makeCurrent();
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// }
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} on AnalysisException {
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rethrow;
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} catch (exception, stackTrace) {
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throw new AnalysisException(
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'Unexpected exception while performing $description',
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new CaughtException(exception, stackTrace));
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}
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}
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}
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/**
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* A description of a [List]-based analysis result that can be computed by an
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* [AnalysisTask].
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*
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* Clients may not extend, implement or mix-in this class.
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*/
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abstract class ListResultDescriptor<E> implements ResultDescriptor<List<E>> {
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/**
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* Initialize a newly created analysis result to have the given [name] and
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* [defaultValue]. If a [cachingPolicy] is provided, it will control how long
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* values associated with this result will remain in the cache.
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*/
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factory ListResultDescriptor(String name, List<E> defaultValue,
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{ResultCachingPolicy<List<E>> cachingPolicy}) =
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ListResultDescriptorImpl<E>;
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@override
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ListTaskInput<E> of(AnalysisTarget target, {bool flushOnAccess: false});
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}
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/**
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* A description of an input to an [AnalysisTask] that can be used to compute
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* that input.
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*
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* Clients may not extend, implement or mix-in this class.
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*/
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abstract class ListTaskInput<E> implements TaskInput<List<E>> {
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/**
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* Return a task input that can be used to compute a flatten list whose
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* elements are combined [subListResult]'s associated with those elements.
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*/
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ListTaskInput/*<V>*/ toFlattenListOf/*<V>*/(
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ListResultDescriptor/*<V>*/ subListResult);
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/**
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* Return a task input that can be used to compute a list whose elements are
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* the result of passing the elements of this input to the [mapper] function.
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*/
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ListTaskInput/*<V>*/ toList/*<V>*/(UnaryFunction<E, dynamic/*=V*/ > mapper);
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/**
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* Return a task input that can be used to compute a list whose elements are
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* [valueResult]'s associated with those elements.
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*/
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ListTaskInput/*<V>*/ toListOf/*<V>*/(ResultDescriptor/*<V>*/ valueResult);
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/**
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* Return a task input that can be used to compute a map whose keys are the
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* elements of this input and whose values are the result of passing the
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* corresponding key to the [mapper] function.
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*/
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MapTaskInput<E, dynamic/*=V*/ > toMap/*<V>*/(
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UnaryFunction<E, dynamic/*=V*/ > mapper);
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/**
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* Return a task input that can be used to compute a map whose keys are the
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* elements of this input and whose values are the [valueResult]'s associated
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* with those elements.
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*/
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MapTaskInput<AnalysisTarget, dynamic/*=V*/ > toMapOf/*<V>*/(
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ResultDescriptor/*<V>*/ valueResult);
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}
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/**
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* A description of an input with a [Map] based values.
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*
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* Clients may not extend, implement or mix-in this class.
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*/
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abstract class MapTaskInput<K, V> implements TaskInput<Map<K, V>> {
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/**
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* [V] must be a [List].
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* Return a task input that can be used to compute a list whose elements are
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* the result of passing keys [K] and the corresponding elements of [V] to
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* the [mapper] function.
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*/
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TaskInput<List/*<E>*/ > toFlattenList/*<E>*/(
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BinaryFunction<K, dynamic /*element of V*/, dynamic/*=E*/ > mapper);
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}
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/**
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* A policy object that can compute sizes of results and provide the maximum
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* active and idle sizes that can be kept in the cache.
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*
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* All the [ResultDescriptor]s with the same [ResultCachingPolicy] instance
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* share the same total size in a cache.
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*
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* Clients may implement this class when implementing plugins.
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*/
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abstract class ResultCachingPolicy<T> {
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/**
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* Return the maximum total size of results that can be kept in the cache
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* while analysis is in progress.
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*/
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int get maxActiveSize;
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/**
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* Return the maximum total size of results that can be kept in the cache
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* while analysis is idle.
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*/
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int get maxIdleSize;
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/**
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* Return the size of the given [object].
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*/
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int measure(T object);
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}
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/**
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* A description of an analysis result that can be computed by an [AnalysisTask].
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*
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* Clients may not extend, implement or mix-in this class.
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*/
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abstract class ResultDescriptor<V> {
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/**
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* Initialize a newly created analysis result to have the given [name] and
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* [defaultValue].
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*
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* The given [cachingPolicy] is used to limit the total size of results
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* described by this descriptor. If no policy is specified, the results are
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* never evicted from the cache, and removed only when they are invalidated.
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*/
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factory ResultDescriptor(String name, V defaultValue,
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{ResultCachingPolicy<V> cachingPolicy}) = ResultDescriptorImpl<V>;
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/**
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* Return the caching policy for results described by this descriptor.
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*/
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ResultCachingPolicy<V> get cachingPolicy;
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/**
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* Return the default value for results described by this descriptor.
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*/
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V get defaultValue;
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/**
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* Return the name of this descriptor.
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*/
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String get name;
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/**
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* Return a task input that can be used to compute this result for the given
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* [target]. If [flushOnAccess] is `true` then the value of this result that
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* is associated with the [target] will be flushed when it is accessed.
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*/
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TaskInput<V> of(AnalysisTarget target, {bool flushOnAccess: false});
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}
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/**
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* A specification of the given [result] for the given [target].
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*
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* Clients may not extend, implement or mix-in this class.
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*/
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class TargetedResult {
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/**
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* An empty list of results.
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*/
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static final List<TargetedResult> EMPTY_LIST = const <TargetedResult>[];
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/**
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* The target with which the result is associated.
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*/
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final AnalysisTarget target;
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/**
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* The result associated with the target.
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*/
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final ResultDescriptor result;
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/**
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* Initialize a new targeted result.
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*/
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TargetedResult(this.target, this.result);
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@override
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int get hashCode {
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return JenkinsSmiHash.combine(target.hashCode, result.hashCode);
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}
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@override
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bool operator ==(other) {
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return other is TargetedResult &&
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other.target == target &&
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other.result == result;
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}
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@override
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String toString() => '$result for $target';
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}
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/**
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* A description of an [AnalysisTask].
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*
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* Clients may not extend, implement or mix-in this class.
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*/
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abstract class TaskDescriptor {
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/**
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* Initialize a newly created task descriptor to have the given [name] and to
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* describe a task that takes the inputs built using the given [inputBuilder],
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* and produces the given [results]. The [buildTask] function will be used to
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* create the instance of [AnalysisTask] being described. If provided, the
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* [isAppropriateFor] function will be used to determine whether the task can
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* be used on a specific target.
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*/
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factory TaskDescriptor(String name, BuildTask buildTask,
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CreateTaskInputs inputBuilder, List<ResultDescriptor> results,
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{SuitabilityFor suitabilityFor}) = TaskDescriptorImpl;
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/**
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* Return the builder used to build the inputs to the task.
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*/
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CreateTaskInputs get createTaskInputs;
|
|
|
|
/**
|
|
* Return the name of the task being described.
|
|
*/
|
|
String get name;
|
|
|
|
/**
|
|
* Return a list of the analysis results that will be computed by this task.
|
|
*/
|
|
List<ResultDescriptor> get results;
|
|
|
|
/**
|
|
* Create and return a task that is described by this descriptor that can be
|
|
* used to compute results based on the given [inputs].
|
|
*/
|
|
AnalysisTask createTask(AnalysisContext context, AnalysisTarget target,
|
|
Map<String, dynamic> inputs);
|
|
|
|
/**
|
|
* Return an indication of how suitable this task is for the given [target].
|
|
*/
|
|
TaskSuitability suitabilityFor(AnalysisTarget target);
|
|
}
|
|
|
|
/**
|
|
* A description of an input to an [AnalysisTask] that can be used to compute
|
|
* that input.
|
|
*
|
|
* Clients may not extend, implement or mix-in this class.
|
|
*/
|
|
abstract class TaskInput<V> {
|
|
/**
|
|
* Create and return a builder that can be used to build this task input.
|
|
*/
|
|
TaskInputBuilder<V> createBuilder();
|
|
|
|
/**
|
|
* Return a task input that can be used to compute a list whose elements are
|
|
* the result of passing the result of this input to the [mapper] function.
|
|
*/
|
|
ListTaskInput/*<E>*/ mappedToList/*<E>*/(List/*<E>*/ mapper(V value));
|
|
}
|
|
|
|
/**
|
|
* An object used to build the value associated with a single [TaskInput].
|
|
*
|
|
* All builders work by requesting one or more results (each result being
|
|
* associated with a target). The interaction pattern is modeled after the class
|
|
* [Iterator], in which the method [moveNext] is invoked to move from one result
|
|
* request to the next. The getters [currentResult] and [currentTarget] are used
|
|
* to get the result and target of the current request. The value of the result
|
|
* must be supplied using the [currentValue] setter before [moveNext] can be
|
|
* invoked to move to the next request. When [moveNext] returns `false`,
|
|
* indicating that there are no more requests, the method [inputValue] can be
|
|
* used to access the value of the input that was built.
|
|
*
|
|
* Clients may not extend, implement or mix-in this class.
|
|
*/
|
|
abstract class TaskInputBuilder<V> {
|
|
/**
|
|
* Return the result that needs to be computed, or `null` if [moveNext] has
|
|
* not been invoked or if the last invocation of [moveNext] returned `false`.
|
|
*/
|
|
ResultDescriptor get currentResult;
|
|
|
|
/**
|
|
* Return the target for which the result needs to be computed, or `null` if
|
|
* [moveNext] has not been invoked or if the last invocation of [moveNext]
|
|
* returned `false`.
|
|
*/
|
|
AnalysisTarget get currentTarget;
|
|
|
|
/**
|
|
* Set the [value] that was computed for the current result.
|
|
*
|
|
* Throws a [StateError] if [moveNext] has not been invoked or if the last
|
|
* invocation of [moveNext] returned `false`.
|
|
*/
|
|
void set currentValue(Object value);
|
|
|
|
/**
|
|
* Return `true` if the value accessed by this input builder should be flushed
|
|
* from the cache at the time it is retrieved.
|
|
*/
|
|
bool get flushOnAccess;
|
|
|
|
/**
|
|
* Return the [value] that was computed by this builder.
|
|
*
|
|
* Throws a [StateError] if [moveNext] has not been invoked or if the last
|
|
* invocation of [moveNext] returned `true`.
|
|
*
|
|
* Returns `null` if no value could be computed due to a circular dependency.
|
|
*/
|
|
V get inputValue;
|
|
|
|
/**
|
|
* Record that no value is available for the current result, due to a
|
|
* circular dependency.
|
|
*
|
|
* Throws a [StateError] if [moveNext] has not been invoked or if the last
|
|
* invocation of [moveNext] returned `false`.
|
|
*/
|
|
void currentValueNotAvailable();
|
|
|
|
/**
|
|
* Move to the next result that needs to be computed in order to build the
|
|
* inputs for a task. Return `true` if there is another result that needs to
|
|
* be computed, or `false` if the inputs have been computed.
|
|
*
|
|
* It is safe to invoke [moveNext] after it has returned `false`. In this case
|
|
* [moveNext] has no effect and will again return `false`.
|
|
*
|
|
* Throws a [StateError] if the value of the current result has not been
|
|
* provided using [currentValue].
|
|
*/
|
|
bool moveNext();
|
|
}
|
|
|
|
/**
|
|
* An indication of how suitable a task is for a given target.
|
|
*/
|
|
enum TaskSuitability { NONE, LOWEST, HIGHEST }
|
|
|
|
/**
|
|
* [WorkManager]s are used to drive analysis.
|
|
*
|
|
* They know specific of the targets and results they care about,
|
|
* so they can request analysis results in optimal order.
|
|
*
|
|
* Clients may implement this class when implementing plugins.
|
|
*/
|
|
abstract class WorkManager {
|
|
/**
|
|
* Notifies the manager about changes in the explicit source list.
|
|
*/
|
|
void applyChange(List<Source> addedSources, List<Source> changedSources,
|
|
List<Source> removedSources);
|
|
|
|
/**
|
|
* Notifies the managers that the given set of priority [targets] was set.
|
|
*/
|
|
void applyPriorityTargets(List<AnalysisTarget> targets);
|
|
|
|
/**
|
|
* Return a list of all of the errors associated with the given [source].
|
|
* The list of errors will be empty if the source is not known to the context
|
|
* or if there are no errors in the source. The errors contained in the list
|
|
* can be incomplete.
|
|
*/
|
|
List<AnalysisError> getErrors(Source source);
|
|
|
|
/**
|
|
* Return the next [TargetedResult] that this work manager wants to be
|
|
* computed, or `null` if this manager doesn't need any new results.
|
|
*
|
|
* Note, that it is not guaranteed that this result will be computed, it is
|
|
* up to the work manager to check whether the result is already computed
|
|
* (for example during the next [getNextResult] invocation) or computation
|
|
* of the same result should be requested again.
|
|
*/
|
|
TargetedResult getNextResult();
|
|
|
|
/**
|
|
* Return the priority if the next work order this work manager want to be
|
|
* computed. The [AnalysisDriver] will perform the work order with
|
|
* the highest priority.
|
|
*
|
|
* Even if the returned value is [WorkOrderPriority.NONE], it still does not
|
|
* guarantee that [getNextResult] will return not `null`.
|
|
*/
|
|
WorkOrderPriority getNextResultPriority();
|
|
|
|
/**
|
|
* Notifies the manager about analysis options changes.
|
|
*/
|
|
void onAnalysisOptionsChanged();
|
|
|
|
/**
|
|
* Notifies the manager about [SourceFactory] changes.
|
|
*/
|
|
void onSourceFactoryChanged();
|
|
|
|
/**
|
|
* Notifies the manager that the given [outputs] were produced for
|
|
* the given [target].
|
|
*/
|
|
void resultsComputed(
|
|
AnalysisTarget target, Map<ResultDescriptor, dynamic> outputs);
|
|
}
|
|
|
|
/**
|
|
* The priorities of work orders returned by [WorkManager]s.
|
|
*
|
|
* New priorities may be added with time, clients need to tolerate this.
|
|
*/
|
|
enum WorkOrderPriority {
|
|
/**
|
|
* Responding to an user's action.
|
|
*/
|
|
INTERACTIVE,
|
|
|
|
/**
|
|
* Computing information for priority sources.
|
|
*/
|
|
PRIORITY,
|
|
|
|
/**
|
|
* A work should be done, but without any special urgency.
|
|
*/
|
|
NORMAL,
|
|
|
|
/**
|
|
* Nothing to do.
|
|
*/
|
|
NONE
|
|
}
|