47e988b781
Change-Id: Iee3110f92ab0f24312ddd1eff407d2229f895321 Reviewed-on: https://dart-review.googlesource.com/c/89101 Reviewed-by: Konstantin Shcheglov <scheglov@google.com> Commit-Queue: Brian Wilkerson <brianwilkerson@google.com>
316 lines
9.7 KiB
Dart
316 lines
9.7 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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import 'dart:async';
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import 'dart:math' show max, sqrt;
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import 'package:logging/logging.dart';
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import '../../test/integration/support/integration_test_methods.dart';
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import '../../test/integration/support/integration_tests.dart';
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import 'operation.dart';
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final SPACE = ' '.codeUnitAt(0);
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void _printColumn(StringBuffer sb, String text, int keyLen,
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{bool rightJustified: false}) {
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if (!rightJustified) {
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sb.write(text);
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sb.write(',');
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}
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for (int i = text.length; i < keyLen; ++i) {
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sb.writeCharCode(SPACE);
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}
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if (rightJustified) {
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sb.write(text);
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sb.write(',');
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}
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sb.writeCharCode(SPACE);
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}
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/**
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* [Driver] launches and manages an instance of analysis server,
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* reads a stream of operations, sends requests to analysis server
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* based upon those operations, and evaluates the results.
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*/
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class Driver extends IntegrationTestMixin {
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/**
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* The amount of time to give the server to respond to a shutdown request
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* before forcibly terminating it.
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*/
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static const Duration SHUTDOWN_TIMEOUT = const Duration(seconds: 5);
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final Logger logger = new Logger('Driver');
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/**
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* The diagnostic port for Analysis Server or `null` if none.
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*/
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final int diagnosticPort;
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/**
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* A flag indicating whether the server is running.
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*/
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bool running = false;
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@override
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Server server;
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/**
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* The results collected while running analysis server.
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*/
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final Results results = new Results();
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/**
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* The [Completer] for [runComplete].
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*/
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Completer<Results> _runCompleter = new Completer<Results>();
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Driver({this.diagnosticPort});
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/**
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* Return a [Future] that completes with the [Results] of running
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* the analysis server once all operations have been performed.
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*/
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Future<Results> get runComplete => _runCompleter.future;
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/**
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* Perform the given operation.
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* Return a [Future] that completes when the next operation can be performed,
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* or `null` if the next operation can be performed immediately
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*/
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Future perform(Operation op) {
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return op.perform(this);
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}
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/**
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* Send a command to the server. An 'id' will be automatically assigned.
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* The returned [Future] will be completed when the server acknowledges the
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* command with a response. If the server acknowledges the command with a
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* normal (non-error) response, the future will be completed with the 'result'
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* field from the response. If the server acknowledges the command with an
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* error response, the future will be completed with an error.
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*/
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Future<Map<String, dynamic>> send(
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String method, Map<String, dynamic> params) {
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return server.send(method, params);
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}
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/**
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* Launch the analysis server.
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* Return a [Future] that completes when analysis server has started.
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*/
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Future startServer() async {
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logger.log(Level.FINE, 'starting server');
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initializeInttestMixin();
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server = new Server();
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Completer serverConnected = new Completer();
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onServerConnected.listen((_) {
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logger.log(Level.FINE, 'connected to server');
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serverConnected.complete();
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});
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running = true;
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return server
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.start(diagnosticPort: diagnosticPort /*profileServer: true*/)
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.then((params) {
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server.listenToOutput(dispatchNotification);
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server.exitCode.then((_) {
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logger.log(Level.FINE, 'server stopped');
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running = false;
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_resultsReady();
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});
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return serverConnected.future;
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});
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}
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/**
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* Shutdown the analysis server if it is running.
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*/
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Future stopServer([Duration timeout = SHUTDOWN_TIMEOUT]) async {
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if (running) {
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logger.log(Level.FINE, 'requesting server shutdown');
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// Give the server a short time to comply with the shutdown request; if it
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// doesn't exit, then forcibly terminate it.
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sendServerShutdown();
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await server.exitCode.timeout(timeout, onTimeout: () {
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return server.kill('server failed to exit');
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});
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}
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_resultsReady();
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}
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/**
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* If not already complete, signal the completer with the collected results.
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*/
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void _resultsReady() {
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if (!_runCompleter.isCompleted) {
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_runCompleter.complete(results);
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}
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}
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}
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/**
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* [Measurement] tracks elapsed time for a given operation.
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*/
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class Measurement {
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final String tag;
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final bool notification;
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final List<Duration> elapsedTimes = new List<Duration>();
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int errorCount = 0;
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int unexpectedResultCount = 0;
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Measurement(this.tag, this.notification);
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int get count => elapsedTimes.length;
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void printSummary(int keyLen) {
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int count = 0;
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Duration maxTime = elapsedTimes[0];
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Duration minTime = elapsedTimes[0];
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int totalTimeMicros = 0;
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for (Duration elapsed in elapsedTimes) {
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++count;
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int timeMicros = elapsed.inMicroseconds;
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maxTime = maxTime.compareTo(elapsed) > 0 ? maxTime : elapsed;
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minTime = minTime.compareTo(elapsed) < 0 ? minTime : elapsed;
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totalTimeMicros += timeMicros;
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}
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int meanTime = (totalTimeMicros / count).round();
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List<Duration> sorted = elapsedTimes.toList()..sort();
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Duration time90th = sorted[(sorted.length * 0.90).round() - 1];
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Duration time99th = sorted[(sorted.length * 0.99).round() - 1];
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int differenceFromMeanSquared = 0;
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for (Duration elapsed in elapsedTimes) {
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int timeMicros = elapsed.inMicroseconds;
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int differenceFromMean = timeMicros - meanTime;
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differenceFromMeanSquared += differenceFromMean * differenceFromMean;
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}
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double variance = differenceFromMeanSquared / count;
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int standardDeviation = sqrt(variance).round();
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StringBuffer sb = new StringBuffer();
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_printColumn(sb, tag, keyLen);
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_printColumn(sb, count.toString(), 6, rightJustified: true);
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_printColumn(sb, errorCount.toString(), 6, rightJustified: true);
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_printColumn(sb, unexpectedResultCount.toString(), 6, rightJustified: true);
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_printDuration(sb, new Duration(microseconds: meanTime));
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_printDuration(sb, time90th);
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_printDuration(sb, time99th);
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_printDuration(sb, new Duration(microseconds: standardDeviation));
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_printDuration(sb, minTime);
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_printDuration(sb, maxTime);
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_printDuration(sb, new Duration(microseconds: totalTimeMicros));
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print(sb.toString());
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}
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void record(bool success, Duration elapsed) {
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if (!success) {
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++errorCount;
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}
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elapsedTimes.add(elapsed);
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}
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void recordUnexpectedResults() {
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++unexpectedResultCount;
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}
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void _printDuration(StringBuffer sb, Duration duration) {
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_printColumn(sb, duration.inMilliseconds.toString(), 15,
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rightJustified: true);
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}
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}
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/**
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* [Results] contains information gathered by [Driver]
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* while running the analysis server
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*/
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class Results {
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Map<String, Measurement> measurements = new Map<String, Measurement>();
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/**
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* Display results on stdout.
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*/
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void printResults() {
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print('');
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print('==================================================================');
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print('');
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List<String> keys = measurements.keys.toList()..sort();
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int keyLen = keys.fold(0, (int len, String key) => max(len, key.length));
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_printGroupHeader('Request/Response', keyLen);
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int totalCount = 0;
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int totalErrorCount = 0;
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int totalUnexpectedResultCount = 0;
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for (String tag in keys) {
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Measurement m = measurements[tag];
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if (!m.notification) {
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m.printSummary(keyLen);
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totalCount += m.count;
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totalErrorCount += m.errorCount;
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totalUnexpectedResultCount += m.unexpectedResultCount;
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}
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}
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_printTotals(
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keyLen, totalCount, totalErrorCount, totalUnexpectedResultCount);
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print('');
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_printGroupHeader('Notifications', keyLen);
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for (String tag in keys) {
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Measurement m = measurements[tag];
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if (m.notification) {
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m.printSummary(keyLen);
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}
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}
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/// TODO(danrubel) *** print warnings if driver caches are not empty ****
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print('''
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(1) uxr = UneXpected Results or responses received from the server
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that do not match the recorded response for that request.
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(2) all times in milliseconds''');
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}
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/**
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* Record the elapsed time for the given operation.
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*/
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void record(String tag, Duration elapsed,
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{bool notification: false, bool success: true}) {
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Measurement measurement = measurements[tag];
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if (measurement == null) {
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measurement = new Measurement(tag, notification);
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measurements[tag] = measurement;
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}
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measurement.record(success, elapsed);
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}
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void recordUnexpectedResults(String tag) {
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measurements[tag].recordUnexpectedResults();
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}
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void _printGroupHeader(String groupName, int keyLen) {
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StringBuffer sb = new StringBuffer();
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_printColumn(sb, groupName, keyLen);
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_printColumn(sb, 'count', 6, rightJustified: true);
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_printColumn(sb, 'error', 6, rightJustified: true);
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_printColumn(sb, 'uxr(1)', 6, rightJustified: true);
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sb.write(' ');
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_printColumn(sb, 'mean(2)', 15);
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_printColumn(sb, '90th', 15);
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_printColumn(sb, '99th', 15);
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_printColumn(sb, 'std-dev', 15);
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_printColumn(sb, 'minimum', 15);
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_printColumn(sb, 'maximum', 15);
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_printColumn(sb, 'total', 15);
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print(sb.toString());
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}
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void _printTotals(int keyLen, int totalCount, int totalErrorCount,
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int totalUnexpectedResultCount) {
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StringBuffer sb = new StringBuffer();
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_printColumn(sb, 'Totals', keyLen);
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_printColumn(sb, totalCount.toString(), 6, rightJustified: true);
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_printColumn(sb, totalErrorCount.toString(), 6, rightJustified: true);
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_printColumn(sb, totalUnexpectedResultCount.toString(), 6,
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rightJustified: true);
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print(sb.toString());
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}
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}
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