import 'dart:async';
import 'package:args/args.dart';
import 'package:args/command_runner.dart';
import 'package:meta/meta.dart';
import 'package:quiver/strings.dart';
import '../application_package.dart';
import '../base/common.dart';
import '../base/context.dart';
import '../base/file_system.dart';
import '../base/io.dart' as io;
import '../base/terminal.dart';
import '../base/time.dart';
import '../base/user_messages.dart';
import '../base/utils.dart';
import '../build_info.dart';
import '../bundle.dart' as bundle;
import '../cache.dart';
import '../dart/package_map.dart';
import '../dart/pub.dart';
import '../device.dart';
import '../doctor.dart';
import '../features.dart';
import '../globals.dart';
import '../project.dart';
import '../reporting/reporting.dart';
import 'flutter_command_runner.dart';
export '../cache.dart' show DevelopmentArtifact;
enum ExitStatus {
success,
warning,
fail,
}
class FlutterCommandResult {
const FlutterCommandResult(
this.exitStatus, {
this.timingLabelParts,
this.endTimeOverride,
});
final ExitStatus exitStatus;
final List<String> timingLabelParts;
final DateTime endTimeOverride;
@override
String toString() {
switch (exitStatus) {
case ExitStatus.success:
return 'success';
case ExitStatus.warning:
return 'warning';
case ExitStatus.fail:
return 'fail';
default:
assert(false);
return null;
}
}
}
class FlutterOptions {
static const String kExtraFrontEndOptions = 'extra-front-end-options';
static const String kExtraGenSnapshotOptions = 'extra-gen-snapshot-options';
static const String kEnableExperiment = 'enable-experiment';
static const String kFileSystemRoot = 'filesystem-root';
static const String kFileSystemScheme = 'filesystem-scheme';
}
abstract class FlutterCommand extends Command<void> {
static FlutterCommand get current => context.get<FlutterCommand>();
static const String observatoryPortOption = 'observatory-port';
static const String ipv6Flag = 'ipv6';
@override
ArgParser get argParser => _argParser;
final ArgParser _argParser = ArgParser(
allowTrailingOptions: false,
usageLineLength: outputPreferences.wrapText ? outputPreferences.wrapColumn : null,
);
@override
FlutterCommandRunner get runner => super.runner;
bool _requiresPubspecYaml = false;
bool _usesTargetOption = false;
bool _usesPubOption = false;
bool _usesPortOption = false;
bool _usesIpv6Flag = false;
bool get shouldRunPub => _usesPubOption && argResults['pub'];
bool get shouldUpdateCache => true;
BuildMode _defaultBuildMode;
void requiresPubspecYaml() {
_requiresPubspecYaml = true;
}
void usesTargetOption() {
argParser.addOption('target',
abbr: 't',
defaultsTo: bundle.defaultMainPath,
help: 'The main entry-point file of the application, as run on the device.\n'
'If the --target option is omitted, but a file name is provided on '
'the command line, then that is used instead.',
valueHelp: 'path');
_usesTargetOption = true;
}
String get targetFile {
if (argResults.wasParsed('target'))
return argResults['target'];
else if (argResults.rest.isNotEmpty)
return argResults.rest.first;
else
return bundle.defaultMainPath;
}
void usesPubOption() {
argParser.addFlag('pub',
defaultsTo: true,
help: 'Whether to run "flutter pub get" before executing this command.');
_usesPubOption = true;
}
void usesFilesystemOptions({ @required bool hide }) {
argParser
..addOption('output-dill',
hide: hide,
help: 'Specify the path to frontend server output kernel file.',
)
..addMultiOption(FlutterOptions.kFileSystemRoot,
hide: hide,
help: 'Specify the path, that is used as root in a virtual file system\n'
'for compilation. Input file name should be specified as Uri in\n'
'filesystem-scheme scheme. Use only in Dart 2 mode.\n'
'Requires --output-dill option to be explicitly specified.\n',
)
..addOption(FlutterOptions.kFileSystemScheme,
defaultsTo: 'org-dartlang-root',
hide: hide,
help: 'Specify the scheme that is used for virtual file system used in\n'
'compilation. See more details on filesystem-root option.\n',
);
}
void usesPortOptions() {
argParser.addOption(observatoryPortOption,
help: 'Listen to the given port for an observatory debugger connection.\n'
'Specifying port 0 (the default) will find a random free port.',
);
_usesPortOption = true;
}
int get observatoryPort {
if (!_usesPortOption || argResults['observatory-port'] == null) {
return null;
}
try {
return int.parse(argResults['observatory-port']);
} catch (error) {
throwToolExit('Invalid port for `--observatory-port`: $error');
}
return null;
}
void usesIpv6Flag() {
argParser.addFlag(ipv6Flag,
hide: true,
negatable: false,
help: 'Binds to IPv6 localhost instead of IPv4 when the flutter tool '
'forwards the host port to a device port. Not used when the '
'--debug-port flag is not set.',
);
_usesIpv6Flag = true;
}
bool get ipv6 => _usesIpv6Flag ? argResults['ipv6'] : null;
void usesBuildNumberOption() {
argParser.addOption('build-number',
help: 'An identifier used as an internal version number.\n'
'Each build must have a unique identifier to differentiate it from previous builds.\n'
'It is used to determine whether one build is more recent than another, with higher numbers indicating more recent build.\n'
'On Android it is used as \'versionCode\'.\n'
'On Xcode builds it is used as \'CFBundleVersion\'',
);
}
void usesBuildNameOption() {
argParser.addOption('build-name',
help: 'A "x.y.z" string used as the version number shown to users.\n'
'For each new version of your app, you will provide a version number to differentiate it from previous versions.\n'
'On Android it is used as \'versionName\'.\n'
'On Xcode builds it is used as \'CFBundleShortVersionString\'',
valueHelp: 'x.y.z');
}
void usesIsolateFilterOption({ @required bool hide }) {
argParser.addOption('isolate-filter',
defaultsTo: null,
hide: hide,
help: 'Restricts commands to a subset of the available isolates (running instances of Flutter).\n'
'Normally there\'s only one, but when adding Flutter to a pre-existing app it\'s possible to create multiple.');
}
void addBuildModeFlags({ bool defaultToRelease = true, bool verboseHelp = false }) {
defaultBuildMode = defaultToRelease ? BuildMode.release : BuildMode.debug;
argParser.addFlag('debug',
negatable: false,
help: 'Build a debug version of your app${defaultToRelease ? '' : ' (default mode)'}.');
argParser.addFlag('profile',
negatable: false,
help: 'Build a version of your app specialized for performance profiling.');
argParser.addFlag('release',
negatable: false,
help: 'Build a release version of your app${defaultToRelease ? ' (default mode)' : ''}.');
}
void usesFuchsiaOptions({ bool hide = false }) {
argParser.addOption(
'target-model',
help: 'Target model that determines what core libraries are available',
defaultsTo: 'flutter',
hide: hide,
allowed: const <String>['flutter', 'flutter_runner'],
);
argParser.addOption(
'module',
abbr: 'm',
hide: hide,
help: 'The name of the module (required if attaching to a fuchsia device)',
valueHelp: 'module-name',
);
}
set defaultBuildMode(BuildMode value) {
_defaultBuildMode = value;
}
BuildMode getBuildMode() {
final List<bool> modeFlags = <bool>[argResults['debug'], argResults['profile'], argResults['release']];
if (modeFlags.where((bool flag) => flag).length > 1)
throw UsageException('Only one of --debug, --profile, or --release can be specified.', null);
if (argResults['debug']) {
return BuildMode.debug;
}
if (argResults['profile']) {
return BuildMode.profile;
}
if (argResults['release']) {
return BuildMode.release;
}
return _defaultBuildMode;
}
void usesFlavorOption() {
argParser.addOption(
'flavor',
help: 'Build a custom app flavor as defined by platform-specific build setup.\n'
'Supports the use of product flavors in Android Gradle scripts, and '
'the use of custom Xcode schemes.',
);
}
void usesTrackWidgetCreation({ bool hasEffect = true, @required bool verboseHelp }) {
argParser.addFlag(
'track-widget-creation',
hide: !hasEffect && !verboseHelp,
defaultsTo: false,
help: 'Track widget creation locations. This enables features such as the widget inspector. '
'This parameter is only functional in debug mode (i.e. when compiling JIT, not AOT).',
);
}
BuildInfo getBuildInfo() {
final bool trackWidgetCreation = argParser.options.containsKey('track-widget-creation')
? argResults['track-widget-creation']
: false;
final String buildNumber = argParser.options.containsKey('build-number') && argResults['build-number'] != null
? argResults['build-number']
: null;
String extraFrontEndOptions =
argParser.options.containsKey(FlutterOptions.kExtraFrontEndOptions)
? argResults[FlutterOptions.kExtraFrontEndOptions]
: null;
if (argParser.options.containsKey(FlutterOptions.kEnableExperiment) &&
argResults[FlutterOptions.kEnableExperiment] != null) {
for (String expFlag in argResults[FlutterOptions.kEnableExperiment]) {
final String flag = '--enable-experiment=' + expFlag;
if (extraFrontEndOptions != null) {
extraFrontEndOptions += ',' + flag;
} else {
extraFrontEndOptions = flag;
}
}
}
return BuildInfo(getBuildMode(),
argParser.options.containsKey('flavor')
? argResults['flavor']
: null,
trackWidgetCreation: trackWidgetCreation,
extraFrontEndOptions: extraFrontEndOptions,
extraGenSnapshotOptions: argParser.options.containsKey(FlutterOptions.kExtraGenSnapshotOptions)
? argResults[FlutterOptions.kExtraGenSnapshotOptions]
: null,
fileSystemRoots: argParser.options.containsKey(FlutterOptions.kFileSystemRoot)
? argResults[FlutterOptions.kFileSystemRoot] : null,
fileSystemScheme: argParser.options.containsKey(FlutterOptions.kFileSystemScheme)
? argResults[FlutterOptions.kFileSystemScheme] : null,
buildNumber: buildNumber,
buildName: argParser.options.containsKey('build-name')
? argResults['build-name']
: null,
);
}
void setupApplicationPackages() {
applicationPackages ??= ApplicationPackageStore();
}
Future<String> get usagePath async {
if (parent is FlutterCommand) {
final FlutterCommand commandParent = parent;
final String path = await commandParent.usagePath;
return path == null ? null : '$path/$name';
} else {
return name;
}
}
Future<Map<CustomDimensions, String>> get usageValues async =>
const <CustomDimensions, String>{};
@override
Future<void> run() {
final DateTime startTime = systemClock.now();
return context.run<void>(
name: 'command',
overrides: <Type, Generator>{FlutterCommand: () => this},
body: () async {
if (flutterUsage.isFirstRun) {
flutterUsage.printWelcome();
}
final String commandPath = await usagePath;
FlutterCommandResult commandResult;
try {
commandResult = await verifyThenRunCommand(commandPath);
} on ToolExit {
commandResult = const FlutterCommandResult(ExitStatus.fail);
rethrow;
} finally {
final DateTime endTime = systemClock.now();
printTrace(userMessages.flutterElapsedTime(name, getElapsedAsMilliseconds(endTime.difference(startTime))));
_sendPostUsage(commandPath, commandResult, startTime, endTime);
}
},
);
}
void _sendPostUsage(String commandPath, FlutterCommandResult commandResult,
DateTime startTime, DateTime endTime) {
if (commandPath == null) {
return;
}
CommandResultEvent(commandPath, commandResult).send();
final List<String> labels = <String>[
if (commandResult?.exitStatus != null)
getEnumName(commandResult.exitStatus),
if (commandResult?.timingLabelParts?.isNotEmpty ?? false)
...commandResult.timingLabelParts,
];
final String label = labels
.where((String label) => !isBlank(label))
.join('-');
flutterUsage.sendTiming(
'flutter',
name,
(commandResult?.endTimeOverride ?? endTime).difference(startTime),
label: label == '' ? null : label,
);
}
@mustCallSuper
Future<FlutterCommandResult> verifyThenRunCommand(String commandPath) async {
await validateCommand();
if (shouldUpdateCache) {
await cache.updateAll(await requiredArtifacts);
}
if (shouldRunPub) {
await pubGet(context: PubContext.getVerifyContext(name));
final FlutterProject project = FlutterProject.current();
await project.ensureReadyForPlatformSpecificTooling(checkProjects: true);
}
setupApplicationPackages();
if (commandPath != null) {
final Map<CustomDimensions, String> additionalUsageValues =
<CustomDimensions, String>{
...?await usageValues,
CustomDimensions.commandHasTerminal: io.stdout.hasTerminal ? 'true' : 'false',
};
Usage.command(commandPath, parameters: additionalUsageValues);
}
return await runCommand();
}
Future<Set<DevelopmentArtifact>> get requiredArtifacts async => const <DevelopmentArtifact>{
DevelopmentArtifact.universal,
};
Future<FlutterCommandResult> runCommand();
Future<List<Device>> findAllTargetDevices() async {
if (!doctor.canLaunchAnything) {
printError(userMessages.flutterNoDevelopmentDevice);
return null;
}
List<Device> devices = await deviceManager.findTargetDevices(FlutterProject.current());
if (devices.isEmpty && deviceManager.hasSpecifiedDeviceId) {
printStatus(userMessages.flutterNoMatchingDevice(deviceManager.specifiedDeviceId));
return null;
} else if (devices.isEmpty && deviceManager.hasSpecifiedAllDevices) {
printStatus(userMessages.flutterNoDevicesFound);
return null;
} else if (devices.isEmpty) {
printStatus(userMessages.flutterNoSupportedDevices);
return null;
} else if (devices.length > 1 && !deviceManager.hasSpecifiedAllDevices) {
if (deviceManager.hasSpecifiedDeviceId) {
printStatus(userMessages.flutterFoundSpecifiedDevices(devices.length, deviceManager.specifiedDeviceId));
} else {
printStatus(userMessages.flutterSpecifyDeviceWithAllOption);
devices = await deviceManager.getAllConnectedDevices().toList();
}
printStatus('');
await Device.printDevices(devices);
return null;
}
return devices;
}
Future<Device> findTargetDevice() async {
List<Device> deviceList = await findAllTargetDevices();
if (deviceList == null)
return null;
if (deviceList.length > 1) {
printStatus(userMessages.flutterSpecifyDevice);
deviceList = await deviceManager.getAllConnectedDevices().toList();
printStatus('');
await Device.printDevices(deviceList);
return null;
}
return deviceList.single;
}
void printNoConnectedDevices() {
printStatus(userMessages.flutterNoConnectedDevices);
}
@protected
@mustCallSuper
Future<void> validateCommand() async {
if (_requiresPubspecYaml && !PackageMap.isUsingCustomPackagesPath) {
if (!fs.isFileSync('pubspec.yaml')) {
throw ToolExit(userMessages.flutterNoPubspec);
}
if (fs.isFileSync('flutter.yaml')) {
throw ToolExit(userMessages.flutterMergeYamlFiles);
}
if (parent?.name != 'pub' && !(_usesPubOption && argResults['pub'])) {
final String error = PackageMap(PackageMap.globalPackagesPath).checkValid();
if (error != null)
throw ToolExit(error);
}
}
if (_usesTargetOption) {
final String targetPath = targetFile;
if (!fs.isFileSync(targetPath))
throw ToolExit(userMessages.flutterTargetFileMissing(targetPath));
}
}
ApplicationPackageStore applicationPackages;
}
mixin DeviceBasedDevelopmentArtifacts on FlutterCommand {
@override
Future<Set<DevelopmentArtifact>> get requiredArtifacts async {
final List<Device> devices = await deviceManager.getDevices().toList();
if (devices.isEmpty) {
return super.requiredArtifacts;
}
final Set<DevelopmentArtifact> artifacts = <DevelopmentArtifact>{
DevelopmentArtifact.universal,
};
for (Device device in devices) {
final TargetPlatform targetPlatform = await device.targetPlatform;
final DevelopmentArtifact developmentArtifact = _artifactFromTargetPlatform(targetPlatform);
if (developmentArtifact != null) {
artifacts.add(developmentArtifact);
}
}
return artifacts;
}
}
mixin TargetPlatformBasedDevelopmentArtifacts on FlutterCommand {
@override
Future<Set<DevelopmentArtifact>> get requiredArtifacts async {
final String rawTargetPlatform = argResults['target-platform'];
final TargetPlatform targetPlatform = getTargetPlatformForName(rawTargetPlatform);
if (targetPlatform == null) {
return super.requiredArtifacts;
}
final Set<DevelopmentArtifact> artifacts = <DevelopmentArtifact>{
DevelopmentArtifact.universal,
};
final DevelopmentArtifact developmentArtifact = _artifactFromTargetPlatform(targetPlatform);
if (developmentArtifact != null) {
artifacts.add(developmentArtifact);
}
return artifacts;
}
}
DevelopmentArtifact _artifactFromTargetPlatform(TargetPlatform targetPlatform) {
switch (targetPlatform) {
case TargetPlatform.android_arm:
case TargetPlatform.android_arm64:
case TargetPlatform.android_x64:
case TargetPlatform.android_x86:
return DevelopmentArtifact.android;
case TargetPlatform.web_javascript:
return DevelopmentArtifact.web;
case TargetPlatform.ios:
return DevelopmentArtifact.iOS;
case TargetPlatform.darwin_x64:
if (featureFlags.isMacOSEnabled) {
return DevelopmentArtifact.macOS;
}
return null;
case TargetPlatform.windows_x64:
if (featureFlags.isWindowsEnabled) {
return DevelopmentArtifact.windows;
}
return null;
case TargetPlatform.linux_x64:
if (featureFlags.isLinuxEnabled) {
return DevelopmentArtifact.linux;
}
return null;
case TargetPlatform.fuchsia:
case TargetPlatform.tester:
return null;
}
return null;
}
abstract class FastFlutterCommand extends FlutterCommand {
@override
Future<void> run() {
return context.run<void>(
name: 'command',
overrides: <Type, Generator>{FlutterCommand: () => this},
body: runCommand,
);
}
}