5f0de26d48
Change-Id: If099be4f71ba551df0dc3d69815ae6a9f55d1eba Reviewed-on: https://dart-review.googlesource.com/c/sdk/+/97781 Commit-Queue: Brian Wilkerson <brianwilkerson@google.com> Reviewed-by: Konstantin Shcheglov <scheglov@google.com>
276 lines
7.3 KiB
Dart
276 lines
7.3 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 'dart:async';
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import 'dart:collection';
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import 'dart:developer' show UserTag;
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import 'package:yaml/yaml.dart';
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/**
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* Test if the given [value] is `false` or the string "false" (case-insensitive).
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*/
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bool isFalse(Object value) =>
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value is bool ? !value : toLowerCase(value) == 'false';
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/**
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* Test if the given [value] is `true` or the string "true" (case-insensitive).
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*/
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bool isTrue(Object value) =>
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value is bool ? value : toLowerCase(value) == 'true';
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/**
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* Safely convert the given [value] to a bool value, or return `null` if the
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* value could not be converted.
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*/
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bool toBool(Object value) {
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if (value is YamlScalar) {
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value = (value as YamlScalar).value;
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}
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if (value is bool) {
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return value;
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}
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String string = toLowerCase(value);
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if (string == 'true') {
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return true;
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}
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if (string == 'false') {
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return false;
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}
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return null;
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}
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/**
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* Safely convert this [value] to lower case, returning `null` if [value] is
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* null.
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*/
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String toLowerCase(Object value) => value?.toString()?.toLowerCase();
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/**
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* Safely convert this [value] to upper case, returning `null` if [value] is
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* null.
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*/
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String toUpperCase(Object value) => value?.toString()?.toUpperCase();
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/// Jenkins hash function, optimized for small integers.
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///
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/// Static methods borrowed from sdk/lib/math/jenkins_smi_hash.dart. Non-static
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/// methods are an enhancement for the "front_end" package.
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///
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/// Where performance is critical, use [hash2], [hash3], or [hash4], or the
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/// pattern `finish(combine(combine(...combine(0, a), b)..., z))`, where a..z
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/// are hash codes to be combined.
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///
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/// For ease of use, you may also use this pattern:
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/// `(new JenkinsSmiHash()..add(a)..add(b)....add(z)).hashCode`, where a..z are
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/// the sub-objects whose hashes should be combined. This pattern performs the
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/// same operations as the performance critical variant, but allocates an extra
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/// object.
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class JenkinsSmiHash {
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/// Accumulates the hash code [value] into the running hash [hash].
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static int combine(int hash, int value) {
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hash = 0x1fffffff & (hash + value);
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hash = 0x1fffffff & (hash + ((0x0007ffff & hash) << 10));
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return hash ^ (hash >> 6);
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}
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/// Finalizes a running hash produced by [combine].
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static int finish(int hash) {
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hash = 0x1fffffff & (hash + ((0x03ffffff & hash) << 3));
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hash = hash ^ (hash >> 11);
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return 0x1fffffff & (hash + ((0x00003fff & hash) << 15));
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}
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/// Combines together two hash codes.
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static int hash2(a, b) => finish(combine(combine(0, a), b));
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/// Combines together three hash codes.
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static int hash3(a, b, c) => finish(combine(combine(combine(0, a), b), c));
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/// Combines together four hash codes.
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static int hash4(a, b, c, d) =>
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finish(combine(combine(combine(combine(0, a), b), c), d));
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int _hash = 0;
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/// Accumulates the object [o] into the hash.
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void add(Object o) {
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_hash = combine(_hash, o.hashCode);
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}
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/// Finalizes the hash and return the resulting hashcode.
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int get hashCode => finish(_hash);
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}
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/**
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* A simple limited queue.
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*/
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class LimitedQueue<E> extends ListQueue<E> {
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final int limit;
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/**
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* Create a queue with [limit] items.
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*/
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LimitedQueue(this.limit);
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@override
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void add(E o) {
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super.add(o);
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while (length > limit) {
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remove(first);
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}
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}
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}
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/**
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* Helper class for gathering performance statistics. This class is modeled on
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* the UserTag class in dart:developer so that it can interoperate easily with
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* it.
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*/
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abstract class PerformanceTag {
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/**
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* Return a list of all [PerformanceTag]s which have been created.
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*/
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static List<PerformanceTag> get all => _PerformanceTagImpl.all.toList();
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/**
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* Return the current [PerformanceTag] for the isolate.
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*/
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static PerformanceTag get current => _PerformanceTagImpl.current;
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/**
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* Return the [PerformanceTag] that is initially current. This is intended
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* to track time when the system is performing unknown operations.
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*/
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static PerformanceTag get unknown => _PerformanceTagImpl.unknown;
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/**
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* Create a [PerformanceTag] having the given [label]. A [UserTag] will also
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* be created, having the same [label], so that performance information can
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* be queried using the observatory.
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*/
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factory PerformanceTag(String label) = _PerformanceTagImpl;
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/**
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* Return the total number of milliseconds that this [PerformanceTag] has
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* been the current [PerformanceTag] for the isolate.
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*
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* This call is safe even if this [PerformanceTag] is current.
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*/
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int get elapsedMs;
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/**
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* Return the label for this [PerformanceTag].
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*/
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String get label;
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/**
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* Create a child tag of the current tag. The new tag's name will include the
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* parent's name.
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*/
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PerformanceTag createChild(String childTagName);
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/**
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* Make this the current tag for the isolate, and return the previous tag.
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*/
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PerformanceTag makeCurrent();
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/**
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* Make this the current tag for the isolate, run [f], and restore the
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* previous tag. Returns the result of invoking [f].
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*/
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E makeCurrentWhile<E>(E f());
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/**
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* Make this the current tag for the isolate, run [f], and restore the
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* previous tag. Returns the result of invoking [f].
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*/
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Future<E> makeCurrentWhileAsync<E>(Future<E> f());
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/**
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* Reset the total time tracked by all [PerformanceTag]s to zero.
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*/
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static void reset() {
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for (_PerformanceTagImpl tag in _PerformanceTagImpl.all) {
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tag.stopwatch.reset();
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}
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}
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}
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class _PerformanceTagImpl implements PerformanceTag {
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/**
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* The current performance tag for the isolate.
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*/
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static _PerformanceTagImpl current = unknown;
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static final _PerformanceTagImpl unknown = new _PerformanceTagImpl('unknown');
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/**
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* A list of all performance tags that have been created so far.
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*/
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static List<_PerformanceTagImpl> all = <_PerformanceTagImpl>[];
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/**
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* The [UserTag] associated with this [PerformanceTag].
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*/
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final UserTag userTag;
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/**
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* Stopwatch tracking the amount of time this [PerformanceTag] has been the
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* current tag for the isolate.
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*/
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final Stopwatch stopwatch;
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_PerformanceTagImpl(String label)
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: userTag = new UserTag(label),
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stopwatch = new Stopwatch() {
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all.add(this);
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}
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@override
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int get elapsedMs => stopwatch.elapsedMilliseconds;
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@override
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String get label => userTag.label;
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@override
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PerformanceTag createChild(String childTagName) {
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return new _PerformanceTagImpl('$label.$childTagName');
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}
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@override
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PerformanceTag makeCurrent() {
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if (identical(this, current)) {
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return current;
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}
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_PerformanceTagImpl previous = current;
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previous.stopwatch.stop();
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stopwatch.start();
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current = this;
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userTag.makeCurrent();
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return previous;
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}
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E makeCurrentWhile<E>(E f()) {
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PerformanceTag prevTag = makeCurrent();
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try {
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return f();
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} finally {
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prevTag.makeCurrent();
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}
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}
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@override
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Future<E> makeCurrentWhileAsync<E>(Future<E> f()) async {
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// TODO(brianwilkerson) Determine whether this await is necessary.
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await null;
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PerformanceTag prevTag = makeCurrent();
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try {
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return await f();
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} finally {
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prevTag.makeCurrent();
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}
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}
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}
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