305 lines
		
	
	
	
		
			9.5 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			305 lines
		
	
	
	
		
			9.5 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/*
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This file is part of Telegram Desktop,
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the official desktop version of Telegram messaging app, see https://telegram.org
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Telegram Desktop is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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It is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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In addition, as a special exception, the copyright holders give permission
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to link the code of portions of this program with the OpenSSL library.
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Full license: https://github.com/telegramdesktop/tdesktop/blob/master/LICENSE
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Copyright (c) 2014-2017 John Preston, https://desktop.telegram.org
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*/
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#include "calls/calls_instance.h"
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#include "mtproto/connection.h"
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#include "messenger.h"
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#include "auth_session.h"
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#include "apiwrap.h"
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#include "lang/lang_keys.h"
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#include "boxes/confirm_box.h"
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#include "calls/calls_call.h"
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#include "calls/calls_panel.h"
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#include "media/media_audio_track.h"
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#include "boxes/rate_call_box.h"
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namespace Calls {
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namespace {
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constexpr auto kServerConfigUpdateTimeoutMs = 24 * 3600 * TimeMs(1000);
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} // namespace
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Instance::Instance() = default;
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void Instance::startOutgoingCall(gsl::not_null<UserData*> user) {
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	if (alreadyInCall()) { // Already in a call.
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		_currentCallPanel->showAndActivate();
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		return;
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	}
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	if (user->callsStatus() == UserData::CallsStatus::Private) {
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		// Request full user once more to refresh the setting in case it was changed.
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		AuthSession::Current().api().requestFullPeer(user);
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		Ui::show(Box<InformBox>(lng_call_error_not_available(lt_user, App::peerName(user))));
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		return;
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	}
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	createCall(user, Call::Type::Outgoing);
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}
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void Instance::callFinished(gsl::not_null<Call*> call) {
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	destroyCall(call);
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}
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void Instance::callFailed(gsl::not_null<Call*> call) {
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	destroyCall(call);
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}
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void Instance::callRedial(gsl::not_null<Call*> call) {
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	if (_currentCall.get() == call) {
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		refreshDhConfig();
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	}
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}
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void Instance::playSound(Sound sound) {
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	switch (sound) {
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	case Sound::Busy: {
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		if (!_callBusyTrack) {
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			_callBusyTrack = Media::Audio::Current().createTrack();
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			_callBusyTrack->fillFromFile(AuthSession::Current().data().getSoundPath(qsl("call_busy")));
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		}
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		_callBusyTrack->playOnce();
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	} break;
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	case Sound::Ended: {
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		if (!_callEndedTrack) {
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			_callEndedTrack = Media::Audio::Current().createTrack();
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			_callEndedTrack->fillFromFile(AuthSession::Current().data().getSoundPath(qsl("call_end")));
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		}
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		_callEndedTrack->playOnce();
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	} break;
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	case Sound::Connecting: {
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		if (!_callConnectingTrack) {
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			_callConnectingTrack = Media::Audio::Current().createTrack();
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			_callConnectingTrack->fillFromFile(AuthSession::Current().data().getSoundPath(qsl("call_connect")));
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		}
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		_callConnectingTrack->playOnce();
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	} break;
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	}
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}
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void Instance::destroyCall(gsl::not_null<Call*> call) {
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	if (_currentCall.get() == call) {
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		destroyCurrentPanel();
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		_currentCall.reset();
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		_currentCallChanged.notify(nullptr, true);
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		if (App::quitting()) {
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			LOG(("Calls::Instance doesn't prevent quit any more."));
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		}
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		Messenger::Instance().quitPreventFinished();
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	}
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}
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void Instance::destroyCurrentPanel() {
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	_pendingPanels.erase(std::remove_if(_pendingPanels.begin(), _pendingPanels.end(), [](auto &&panel) {
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		return !panel;
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	}), _pendingPanels.end());
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	_pendingPanels.push_back(_currentCallPanel.release());
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	_pendingPanels.back()->hideAndDestroy(); // Always queues the destruction.
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}
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void Instance::createCall(gsl::not_null<UserData*> user, Call::Type type) {
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	auto call = std::make_unique<Call>(getCallDelegate(), user, type);;
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	if (_currentCall) {
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		_currentCallPanel->replaceCall(call.get());
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		std::swap(_currentCall, call);
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		call->hangup();
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	} else {
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		_currentCallPanel = std::make_unique<Panel>(call.get());
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		_currentCall = std::move(call);
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	}
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	_currentCallChanged.notify(_currentCall.get(), true);
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	refreshServerConfig();
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	refreshDhConfig();
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}
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void Instance::refreshDhConfig() {
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	Expects(_currentCall != nullptr);
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	request(MTPmessages_GetDhConfig(MTP_int(_dhConfig.version), MTP_int(Call::kRandomPowerSize))).done([this, call = base::weak_unique_ptr<Call>(_currentCall)](const MTPmessages_DhConfig &result) {
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		auto random = base::const_byte_span();
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		switch (result.type()) {
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		case mtpc_messages_dhConfig: {
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			auto &config = result.c_messages_dhConfig();
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			if (!MTP::IsPrimeAndGood(bytesFromMTP(config.vp), config.vg.v)) {
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				LOG(("API Error: bad p/g received in dhConfig."));
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				callFailed(call.get());
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				return;
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			}
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			_dhConfig.g = config.vg.v;
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			_dhConfig.p = byteVectorFromMTP(config.vp);
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			random = bytesFromMTP(config.vrandom);
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		} break;
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		case mtpc_messages_dhConfigNotModified: {
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			auto &config = result.c_messages_dhConfigNotModified();
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			random = bytesFromMTP(config.vrandom);
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			if (!_dhConfig.g || _dhConfig.p.empty()) {
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				LOG(("API Error: dhConfigNotModified on zero version."));
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				callFailed(call.get());
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				return;
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			}
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		} break;
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		default: Unexpected("Type in messages.getDhConfig");
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		}
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		if (random.size() != Call::kRandomPowerSize) {
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			LOG(("API Error: dhConfig random bytes wrong size: %1").arg(random.size()));
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			callFailed(call.get());
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			return;
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		}
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		if (call) {
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			call->start(random);
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		}
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	}).fail([this, call = base::weak_unique_ptr<Call>(_currentCall)](const RPCError &error) {
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		if (!call) {
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			DEBUG_LOG(("API Warning: call was destroyed before got dhConfig."));
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			return;
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		}
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		callFailed(call.get());
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	}).send();
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}
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void Instance::refreshServerConfig() {
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	if (_serverConfigRequestId) {
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		return;
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	}
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	if (_lastServerConfigUpdateTime && (getms(true) - _lastServerConfigUpdateTime) < kServerConfigUpdateTimeoutMs) {
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		return;
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	}
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	_serverConfigRequestId = request(MTPphone_GetCallConfig()).done([this](const MTPDataJSON &result) {
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		_serverConfigRequestId = 0;
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		_lastServerConfigUpdateTime = getms(true);
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		auto configUpdate = std::map<std::string, std::string>();
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		auto bytes = bytesFromMTP(result.c_dataJSON().vdata);
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		auto error = QJsonParseError { 0, QJsonParseError::NoError };
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		auto document = QJsonDocument::fromJson(QByteArray::fromRawData(reinterpret_cast<const char*>(bytes.data()), bytes.size()), &error);
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		if (error.error != QJsonParseError::NoError) {
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			LOG(("API Error: Faild to parse call config JSON, error: %1").arg(error.errorString()));
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			return;
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		} else if (!document.isObject()) {
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			LOG(("API Error: Not an object received in call config JSON."));
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			return;
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		}
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		auto parseValue = [](QJsonValueRef data) -> std::string {
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			switch (data.type()) {
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			case QJsonValue::String: return data.toString().toStdString();
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			case QJsonValue::Double: return QString::number(data.toDouble(), 'f').toStdString();
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			case QJsonValue::Bool: return data.toBool() ? "true" : "false";
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			case QJsonValue::Null: {
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				LOG(("API Warning: null field in call config JSON."));
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			} return "null";
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			case QJsonValue::Undefined: {
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				LOG(("API Warning: undefined field in call config JSON."));
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			} return "undefined";
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			case QJsonValue::Object:
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			case QJsonValue::Array: {
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				LOG(("API Warning: complex field in call config JSON."));
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				QJsonDocument serializer;
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				if (data.isArray()) {
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					serializer.setArray(data.toArray());
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				} else {
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					serializer.setObject(data.toObject());
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				}
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				auto byteArray = serializer.toJson(QJsonDocument::Compact);
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				return std::string(byteArray.constData(), byteArray.size());
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			} break;
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			}
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			Unexpected("Type in Json parse.");
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		};
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		auto object = document.object();
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		for (auto i = object.begin(), e = object.end(); i != e; ++i) {
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			auto key = i.key().toStdString();
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			auto value = parseValue(i.value());
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			configUpdate[key] = value;
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		}
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		UpdateConfig(configUpdate);
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	}).fail([this](const RPCError &error) {
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		_serverConfigRequestId = 0;
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	}).send();
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}
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void Instance::handleUpdate(const MTPDupdatePhoneCall& update) {
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	handleCallUpdate(update.vphone_call);
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}
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void Instance::showInfoPanel(gsl::not_null<Call*> call) {
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	if (_currentCall.get() == call) {
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		_currentCallPanel->showAndActivate();
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	}
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}
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bool Instance::isQuitPrevent() {
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	if (!_currentCall || _currentCall->isIncomingWaiting()) {
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		return false;
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	}
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	_currentCall->hangup();
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	if (!_currentCall) {
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		return false;
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	}
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	LOG(("Calls::Instance prevents quit, saving drafts..."));
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	return true;
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}
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void Instance::handleCallUpdate(const MTPPhoneCall &call) {
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	if (call.type() == mtpc_phoneCallRequested) {
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		auto &phoneCall = call.c_phoneCallRequested();
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		auto user = App::userLoaded(phoneCall.vadmin_id.v);
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		if (!user) {
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			LOG(("API Error: User not loaded for phoneCallRequested."));
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		} else if (user->isSelf()) {
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			LOG(("API Error: Self found in phoneCallRequested."));
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		}
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		if (alreadyInCall() || !user || user->isSelf()) {
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			request(MTPphone_DiscardCall(MTP_inputPhoneCall(phoneCall.vid, phoneCall.vaccess_hash), MTP_int(0), MTP_phoneCallDiscardReasonBusy(), MTP_long(0))).send();
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		} else if (phoneCall.vdate.v + (Global::CallRingTimeoutMs() / 1000) < unixtime()) {
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			LOG(("Ignoring too old call."));
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		} else {
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			createCall(user, Call::Type::Incoming);
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			_currentCall->handleUpdate(call);
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		}
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	} else if (!_currentCall || !_currentCall->handleUpdate(call)) {
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		DEBUG_LOG(("API Warning: unexpected phone call update %1").arg(call.type()));
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	}
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}
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bool Instance::alreadyInCall() {
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	return (_currentCall && _currentCall->state() != Call::State::Busy);
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}
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Instance::~Instance() {
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	for (auto panel : _pendingPanels) {
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		if (panel) {
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			delete panel;
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		}
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	}
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}
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Instance &Current() {
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	return AuthSession::Current().calls();
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}
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} // namespace Calls
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