mirror of
https://github.com/AyuGram/AyuGramDesktop.git
synced 2025-04-26 19:14:02 +02:00
754 lines
21 KiB
C++
754 lines
21 KiB
C++
/*
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This file is part of Telegram Desktop,
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the official desktop application for the Telegram messaging service.
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For license and copyright information please follow this link:
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https://github.com/telegramdesktop/tdesktop/blob/master/LEGAL
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*/
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#include "calls/calls_group_call.h"
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#include "main/main_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 "ui/toasts/common_toasts.h"
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#include "base/unixtime.h"
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#include "core/application.h"
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#include "core/core_settings.h"
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#include "data/data_changes.h"
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#include "data/data_user.h"
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#include "data/data_channel.h"
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#include "data/data_group_call.h"
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#include "data/data_session.h"
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#include <tgcalls/group/GroupInstanceImpl.h>
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#include <QtCore/QJsonDocument>
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#include <QtCore/QJsonObject>
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#include <QtCore/QJsonArray>
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namespace tgcalls {
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class GroupInstanceImpl;
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} // namespace tgcalls
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namespace Calls {
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namespace {
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constexpr auto kMaxInvitePerSlice = 10;
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constexpr auto kCheckLastSpokeInterval = 3 * crl::time(1000);
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constexpr auto kSpeakLevelThreshold = 0.2;
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constexpr auto kCheckJoinedTimeout = 4 * crl::time(1000);
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} // namespace
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GroupCall::GroupCall(
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not_null<Delegate*> delegate,
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not_null<ChannelData*> channel,
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const MTPInputGroupCall &inputCall)
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: _delegate(delegate)
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, _channel(channel)
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, _api(&_channel->session().mtp())
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, _lastSpokeCheckTimer([=] { checkLastSpoke(); })
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, _checkJoinedTimer([=] { checkJoined(); }) {
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_muted.changes(
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) | rpl::start_with_next([=](MuteState state) {
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if (_instance) {
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_instance->setIsMuted(state != MuteState::Active);
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}
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if (_mySsrc && state != MuteState::ForceMuted) {
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sendMutedUpdate();
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}
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}, _lifetime);
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const auto id = inputCall.c_inputGroupCall().vid().v;
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if (id) {
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if (const auto call = _channel->call(); call && call->id() == id) {
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if (!_channel->canManageCall() && call->joinMuted()) {
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_muted = MuteState::ForceMuted;
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}
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}
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_state = State::Joining;
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join(inputCall);
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} else {
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start();
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}
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}
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GroupCall::~GroupCall() {
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destroyController();
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}
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void GroupCall::setState(State state) {
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if (_state.current() == State::Failed) {
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return;
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} else if (_state.current() == State::FailedHangingUp
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&& state != State::Failed) {
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return;
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}
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if (_state.current() == state) {
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return;
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}
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_state = state;
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if (false
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|| state == State::Ended
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|| state == State::Failed) {
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// Destroy controller before destroying Call Panel,
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// so that the panel hide animation is smooth.
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destroyController();
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}
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switch (state) {
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case State::Ended:
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_delegate->groupCallFinished(this);
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break;
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case State::Failed:
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_delegate->groupCallFailed(this);
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break;
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case State::Connecting:
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if (!_checkJoinedTimer.isActive()) {
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_checkJoinedTimer.callOnce(kCheckJoinedTimeout);
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}
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break;
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}
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}
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void GroupCall::start() {
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_createRequestId = _api.request(MTPphone_CreateGroupCall(
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_channel->inputChannel,
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MTP_int(rand_value<int32>())
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)).done([=](const MTPUpdates &result) {
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_acceptFields = true;
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_channel->session().api().applyUpdates(result);
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_acceptFields = false;
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}).fail([=](const RPCError &error) {
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LOG(("Call Error: Could not create, error: %1"
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).arg(error.type()));
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hangup();
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if (error.type() == u"GROUP_CALL_ANONYMOUS_FORBIDDEN"_q) {
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Ui::ShowMultilineToast({
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.text = tr::lng_group_call_no_anonymous(tr::now),
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});
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}
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}).send();
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}
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void GroupCall::join(const MTPInputGroupCall &inputCall) {
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setState(State::Joining);
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_channel->setCall(inputCall);
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inputCall.match([&](const MTPDinputGroupCall &data) {
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_id = data.vid().v;
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_accessHash = data.vaccess_hash().v;
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rejoin();
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});
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using Update = Data::GroupCall::ParticipantUpdate;
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_channel->call()->participantUpdated(
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) | rpl::filter([=](const Update &update) {
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return (_instance != nullptr) && !update.now;
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}) | rpl::start_with_next([=](const Update &update) {
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Expects(update.was.has_value());
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_instance->removeSsrcs({ update.was->source });
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}, _lifetime);
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}
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void GroupCall::rejoin() {
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Expects(_state.current() == State::Joining
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|| _state.current() == State::Joined
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|| _state.current() == State::Connecting);
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_mySsrc = 0;
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setState(State::Joining);
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createAndStartController();
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applySelfInCallLocally();
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LOG(("Call Info: Requesting join payload."));
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const auto weak = base::make_weak(this);
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_instance->emitJoinPayload([=](tgcalls::GroupJoinPayload payload) {
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crl::on_main(weak, [=, payload = std::move(payload)]{
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auto fingerprints = QJsonArray();
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for (const auto print : payload.fingerprints) {
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auto object = QJsonObject();
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object.insert("hash", QString::fromStdString(print.hash));
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object.insert("setup", QString::fromStdString(print.setup));
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object.insert(
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"fingerprint",
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QString::fromStdString(print.fingerprint));
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fingerprints.push_back(object);
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}
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auto root = QJsonObject();
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const auto ssrc = payload.ssrc;
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root.insert("ufrag", QString::fromStdString(payload.ufrag));
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root.insert("pwd", QString::fromStdString(payload.pwd));
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root.insert("fingerprints", fingerprints);
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root.insert("ssrc", double(payload.ssrc));
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LOG(("Call Info: Join payload received, joining with source: %1."
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).arg(ssrc));
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const auto json = QJsonDocument(root).toJson(
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QJsonDocument::Compact);
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const auto muted = _muted.current();
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_api.request(MTPphone_JoinGroupCall(
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MTP_flags((muted != MuteState::Active)
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? MTPphone_JoinGroupCall::Flag::f_muted
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: MTPphone_JoinGroupCall::Flag(0)),
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inputCall(),
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MTP_dataJSON(MTP_bytes(json))
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)).done([=](const MTPUpdates &updates) {
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_mySsrc = ssrc;
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setState(_instanceConnected
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? State::Joined
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: State::Connecting);
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applySelfInCallLocally();
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if (_muted.current() != muted) {
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sendMutedUpdate();
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}
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_channel->session().api().applyUpdates(updates);
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}).fail([=](const RPCError &error) {
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LOG(("Call Error: Could not join, error: %1"
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).arg(error.type()));
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hangup();
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if (error.type() == u"GROUP_CALL_ANONYMOUS_FORBIDDEN"_q) {
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Ui::ShowMultilineToast({
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.text = tr::lng_group_call_no_anonymous(tr::now),
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});
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}
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}).send();
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});
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});
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}
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void GroupCall::applySelfInCallLocally() {
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const auto call = _channel->call();
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if (!call || call->id() != _id) {
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return;
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}
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using Flag = MTPDgroupCallParticipant::Flag;
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const auto &participants = call->participants();
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const auto self = _channel->session().user();
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const auto i = ranges::find(
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participants,
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self,
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&Data::GroupCall::Participant::user);
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const auto date = (i != end(participants))
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? i->date
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: base::unixtime::now();
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const auto lastActive = (i != end(participants))
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? i->lastActive
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: TimeId(0);
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const auto muted = (_muted.current() != MuteState::Active);
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const auto cantSelfUnmute = (_muted.current() == MuteState::ForceMuted);
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const auto flags = (cantSelfUnmute ? Flag(0) : Flag::f_can_self_unmute)
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| (lastActive ? Flag::f_active_date : Flag(0))
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| (_mySsrc ? Flag(0) : Flag::f_left)
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| (muted ? Flag::f_muted : Flag(0));
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call->applyUpdateChecked(
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MTP_updateGroupCallParticipants(
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inputCall(),
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MTP_vector<MTPGroupCallParticipant>(
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1,
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MTP_groupCallParticipant(
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MTP_flags(flags),
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MTP_int(self->bareId()),
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MTP_int(date),
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MTP_int(lastActive),
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MTP_int(_mySsrc))),
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MTP_int(0)).c_updateGroupCallParticipants());
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}
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void GroupCall::hangup() {
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finish(FinishType::Ended);
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}
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void GroupCall::discard() {
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if (!_id) {
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_api.request(_createRequestId).cancel();
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hangup();
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return;
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}
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_api.request(MTPphone_DiscardGroupCall(
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inputCall()
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)).done([=](const MTPUpdates &result) {
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// Here 'this' could be destroyed by updates, so we set Ended after
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// updates being handled, but in a guarded way.
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crl::on_main(this, [=] { hangup(); });
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_channel->session().api().applyUpdates(result);
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}).fail([=](const RPCError &error) {
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hangup();
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}).send();
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}
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void GroupCall::finish(FinishType type) {
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Expects(type != FinishType::None);
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const auto finalState = (type == FinishType::Ended)
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? State::Ended
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: State::Failed;
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const auto hangupState = (type == FinishType::Ended)
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? State::HangingUp
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: State::FailedHangingUp;
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const auto state = _state.current();
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if (state == State::HangingUp
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|| state == State::FailedHangingUp
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|| state == State::Ended
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|| state == State::Failed) {
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return;
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}
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if (!_mySsrc) {
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setState(finalState);
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return;
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}
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setState(hangupState);
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_api.request(MTPphone_LeaveGroupCall(
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inputCall(),
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MTP_int(_mySsrc)
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)).done([=](const MTPUpdates &result) {
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// Here 'this' could be destroyed by updates, so we set Ended after
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// updates being handled, but in a guarded way.
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crl::on_main(this, [=] { setState(finalState); });
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_channel->session().api().applyUpdates(result);
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}).fail([=](const RPCError &error) {
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setState(finalState);
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}).send();
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}
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void GroupCall::setMuted(MuteState mute) {
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_muted = mute;
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applySelfInCallLocally();
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}
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void GroupCall::handleUpdate(const MTPGroupCall &call) {
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return call.match([&](const MTPDgroupCall &data) {
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if (_acceptFields) {
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if (!_instance && !_id) {
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join(MTP_inputGroupCall(data.vid(), data.vaccess_hash()));
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}
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return;
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} else if (_id != data.vid().v
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|| _accessHash != data.vaccess_hash().v
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|| !_instance) {
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return;
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}
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if (const auto params = data.vparams()) {
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params->match([&](const MTPDdataJSON &data) {
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auto error = QJsonParseError{ 0, QJsonParseError::NoError };
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const auto document = QJsonDocument::fromJson(
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data.vdata().v,
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&error);
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if (error.error != QJsonParseError::NoError) {
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LOG(("API Error: "
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"Failed to parse group call params, error: %1."
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).arg(error.errorString()));
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return;
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} else if (!document.isObject()) {
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LOG(("API Error: "
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"Not an object received in group call params."));
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return;
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}
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const auto readString = [](
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const QJsonObject &object,
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const char *key) {
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return object.value(key).toString().toStdString();
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};
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const auto root = document.object().value("transport").toObject();
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auto payload = tgcalls::GroupJoinResponsePayload();
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payload.ufrag = readString(root, "ufrag");
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payload.pwd = readString(root, "pwd");
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const auto prints = root.value("fingerprints").toArray();
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const auto candidates = root.value("candidates").toArray();
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for (const auto &print : prints) {
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const auto object = print.toObject();
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payload.fingerprints.push_back(tgcalls::GroupJoinPayloadFingerprint{
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.hash = readString(object, "hash"),
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.setup = readString(object, "setup"),
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.fingerprint = readString(object, "fingerprint"),
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});
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}
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for (const auto &candidate : candidates) {
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const auto object = candidate.toObject();
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payload.candidates.push_back(tgcalls::GroupJoinResponseCandidate{
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.port = readString(object, "port"),
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.protocol = readString(object, "protocol"),
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.network = readString(object, "network"),
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.generation = readString(object, "generation"),
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.id = readString(object, "id"),
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.component = readString(object, "component"),
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.foundation = readString(object, "foundation"),
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.priority = readString(object, "priority"),
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.ip = readString(object, "ip"),
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.type = readString(object, "type"),
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.tcpType = readString(object, "tcpType"),
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.relAddr = readString(object, "relAddr"),
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.relPort = readString(object, "relPort"),
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});
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}
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_instance->setJoinResponsePayload(payload);
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});
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}
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}, [&](const MTPDgroupCallDiscarded &data) {
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if (data.vid().v == _id) {
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_mySsrc = 0;
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hangup();
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}
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});
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}
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void GroupCall::handleUpdate(const MTPDupdateGroupCallParticipants &data) {
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const auto state = _state.current();
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if (state != State::Joined && state != State::Connecting) {
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return;
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}
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const auto self = _channel->session().userId();
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for (const auto &participant : data.vparticipants().v) {
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participant.match([&](const MTPDgroupCallParticipant &data) {
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if (data.vuser_id().v != self) {
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return;
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}
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if (data.is_left() && data.vsource().v == _mySsrc) {
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// I was removed from the call, rejoin.
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LOG(("Call Info: Rejoin after got 'left' with my source."));
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setState(State::Joining);
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rejoin();
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} else if (!data.is_left() && data.vsource().v != _mySsrc) {
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// I joined from another device, hangup.
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LOG(("Call Info: Hangup after '!left' with source %1, my %2."
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).arg(data.vsource().v
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).arg(_mySsrc));
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_mySsrc = 0;
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hangup();
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}
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if (data.is_muted() && !data.is_can_self_unmute()) {
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setMuted(MuteState::ForceMuted);
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} else if (muted() == MuteState::ForceMuted) {
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setMuted(MuteState::Muted);
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}
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});
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}
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}
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void GroupCall::createAndStartController() {
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using AudioLevels = std::vector<std::pair<uint32_t, float>>;
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const auto &settings = Core::App().settings();
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const auto weak = base::make_weak(this);
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const auto myLevel = std::make_shared<float>();
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tgcalls::GroupInstanceDescriptor descriptor = {
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.config = tgcalls::GroupConfig{
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},
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.networkStateUpdated = [=](bool connected) {
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crl::on_main(weak, [=] { setInstanceConnected(connected); });
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},
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.audioLevelsUpdated = [=](const AudioLevels &data) {
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if (!data.empty()) {
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crl::on_main(weak, [=] { audioLevelsUpdated(data); });
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}
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},
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.myAudioLevelUpdated = [=](float level) {
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if (*myLevel != level) { // Don't send many 0 while we're muted.
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*myLevel = level;
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crl::on_main(weak, [=] { myLevelUpdated(level); });
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}
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},
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.initialInputDeviceId = settings.callInputDeviceId().toStdString(),
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.initialOutputDeviceId = settings.callOutputDeviceId().toStdString(),
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};
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if (Logs::DebugEnabled()) {
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auto callLogFolder = cWorkingDir() + qsl("DebugLogs");
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auto callLogPath = callLogFolder + qsl("/last_group_call_log.txt");
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auto callLogNative = QDir::toNativeSeparators(callLogPath);
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#ifdef Q_OS_WIN
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descriptor.config.logPath.data = callLogNative.toStdWString();
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#else // Q_OS_WIN
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const auto callLogUtf = QFile::encodeName(callLogNative);
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descriptor.config.logPath.data.resize(callLogUtf.size());
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ranges::copy(callLogUtf, descriptor.config.logPath.data.begin());
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#endif // Q_OS_WIN
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QFile(callLogPath).remove();
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QDir().mkpath(callLogFolder);
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}
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LOG(("Call Info: Creating group instance"));
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_instance = std::make_unique<tgcalls::GroupInstanceImpl>(
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std::move(descriptor));
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_instance->setIsMuted(_muted.current() != MuteState::Active);
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//raw->setAudioOutputDuckingEnabled(settings.callAudioDuckingEnabled());
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}
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void GroupCall::handleLevelsUpdated(
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gsl::span<const std::pair<std::uint32_t, float>> data) {
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Expects(!data.empty());
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auto check = false;
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auto checkNow = false;
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const auto now = crl::now();
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for (const auto &[source, level] : data) {
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_levelUpdates.fire(LevelUpdate{
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.source = source,
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.value = level,
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.self = (source == _mySsrc)
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});
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if (level <= kSpeakLevelThreshold) {
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continue;
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}
|
|
|
|
check = true;
|
|
const auto i = _lastSpoke.find(source);
|
|
if (i == _lastSpoke.end()) {
|
|
_lastSpoke.emplace(source, now);
|
|
checkNow = true;
|
|
} else {
|
|
if (i->second + kCheckLastSpokeInterval / 3 <= now) {
|
|
checkNow = true;
|
|
}
|
|
i->second = now;
|
|
}
|
|
}
|
|
if (checkNow) {
|
|
checkLastSpoke();
|
|
} else if (check && !_lastSpokeCheckTimer.isActive()) {
|
|
_lastSpokeCheckTimer.callEach(kCheckLastSpokeInterval / 2);
|
|
}
|
|
}
|
|
|
|
void GroupCall::myLevelUpdated(float level) {
|
|
const auto pair = std::pair<std::uint32_t, float>{ _mySsrc, level };
|
|
handleLevelsUpdated({ &pair, &pair + 1 });
|
|
}
|
|
|
|
void GroupCall::audioLevelsUpdated(
|
|
const std::vector<std::pair<std::uint32_t, float>> &data) {
|
|
handleLevelsUpdated(gsl::make_span(data));
|
|
}
|
|
|
|
void GroupCall::checkLastSpoke() {
|
|
const auto real = _channel->call();
|
|
if (!real || real->id() != _id) {
|
|
return;
|
|
}
|
|
|
|
auto hasRecent = false;
|
|
const auto now = crl::now();
|
|
auto list = base::take(_lastSpoke);
|
|
for (auto i = list.begin(); i != list.end();) {
|
|
const auto [source, when] = *i;
|
|
if (when + kCheckLastSpokeInterval >= now) {
|
|
hasRecent = true;
|
|
++i;
|
|
} else {
|
|
i = list.erase(i);
|
|
}
|
|
real->applyLastSpoke(source, when, now);
|
|
}
|
|
_lastSpoke = std::move(list);
|
|
|
|
if (!hasRecent) {
|
|
_lastSpokeCheckTimer.cancel();
|
|
} else if (!_lastSpokeCheckTimer.isActive()) {
|
|
_lastSpokeCheckTimer.callEach(kCheckLastSpokeInterval / 3);
|
|
}
|
|
}
|
|
|
|
void GroupCall::checkJoined() {
|
|
if (state() != State::Connecting || !_id || !_mySsrc) {
|
|
return;
|
|
}
|
|
_api.request(MTPphone_CheckGroupCall(
|
|
inputCall(),
|
|
MTP_int(_mySsrc)
|
|
)).done([=](const MTPBool &result) {
|
|
if (!mtpIsTrue(result)) {
|
|
LOG(("Call Info: Rejoin after FALSE in checkGroupCall."));
|
|
rejoin();
|
|
} else if (state() == State::Connecting) {
|
|
_checkJoinedTimer.callOnce(kCheckJoinedTimeout);
|
|
}
|
|
}).fail([=](const RPCError &error) {
|
|
LOG(("Call Info: Rejoin after error '%1' in checkGroupCall."
|
|
).arg(error.type()));
|
|
rejoin();
|
|
}).send();
|
|
}
|
|
|
|
void GroupCall::setInstanceConnected(bool connected) {
|
|
if (_instanceConnected == connected) {
|
|
return;
|
|
}
|
|
_instanceConnected = connected;
|
|
if (state() == State::Connecting && connected) {
|
|
setState(State::Joined);
|
|
} else if (state() == State::Joined && !connected) {
|
|
setState(State::Connecting);
|
|
}
|
|
}
|
|
|
|
void GroupCall::sendMutedUpdate() {
|
|
_api.request(_updateMuteRequestId).cancel();
|
|
_updateMuteRequestId = _api.request(MTPphone_EditGroupCallMember(
|
|
MTP_flags((_muted.current() != MuteState::Active)
|
|
? MTPphone_EditGroupCallMember::Flag::f_muted
|
|
: MTPphone_EditGroupCallMember::Flag(0)),
|
|
inputCall(),
|
|
MTP_inputUserSelf()
|
|
)).done([=](const MTPUpdates &result) {
|
|
_updateMuteRequestId = 0;
|
|
_channel->session().api().applyUpdates(result);
|
|
}).fail([=](const RPCError &error) {
|
|
_updateMuteRequestId = 0;
|
|
if (error.type() == u"GROUP_CALL_FORBIDDEN"_q) {
|
|
LOG(("Call Info: Rejoin after error '%1' in editGroupCallMember."
|
|
).arg(error.type()));
|
|
rejoin();
|
|
}
|
|
}).send();
|
|
}
|
|
|
|
void GroupCall::setCurrentAudioDevice(bool input, const QString &deviceId) {
|
|
if (_instance) {
|
|
const auto id = deviceId.toStdString();
|
|
if (input) {
|
|
_instance->setAudioInputDevice(id);
|
|
} else {
|
|
_instance->setAudioOutputDevice(id);
|
|
}
|
|
}
|
|
}
|
|
|
|
void GroupCall::toggleMute(not_null<UserData*> user, bool mute) {
|
|
if (!_id) {
|
|
return;
|
|
}
|
|
_api.request(MTPphone_EditGroupCallMember(
|
|
MTP_flags(mute
|
|
? MTPphone_EditGroupCallMember::Flag::f_muted
|
|
: MTPphone_EditGroupCallMember::Flag(0)),
|
|
inputCall(),
|
|
user->inputUser
|
|
)).done([=](const MTPUpdates &result) {
|
|
_channel->session().api().applyUpdates(result);
|
|
}).fail([=](const RPCError &error) {
|
|
if (error.type() == u"GROUP_CALL_FORBIDDEN"_q) {
|
|
LOG(("Call Info: Rejoin after error '%1' in editGroupCallMember."
|
|
).arg(error.type()));
|
|
rejoin();
|
|
}
|
|
}).send();
|
|
}
|
|
|
|
std::variant<int, not_null<UserData*>> GroupCall::inviteUsers(
|
|
const std::vector<not_null<UserData*>> &users) {
|
|
const auto real = _channel->call();
|
|
if (!real || real->id() != _id) {
|
|
return 0;
|
|
}
|
|
const auto owner = &_channel->owner();
|
|
const auto &invited = owner->invitedToCallUsers(_id);
|
|
const auto &participants = real->participants();
|
|
auto &&toInvite = users | ranges::view::filter([&](
|
|
not_null<UserData*> user) {
|
|
return !invited.contains(user) && !ranges::contains(
|
|
participants,
|
|
user,
|
|
&Data::GroupCall::Participant::user);
|
|
});
|
|
|
|
auto count = 0;
|
|
auto slice = QVector<MTPInputUser>();
|
|
auto result = std::variant<int, not_null<UserData*>>(0);
|
|
slice.reserve(kMaxInvitePerSlice);
|
|
const auto sendSlice = [&] {
|
|
count += slice.size();
|
|
_api.request(MTPphone_InviteToGroupCall(
|
|
inputCall(),
|
|
MTP_vector<MTPInputUser>(slice)
|
|
)).done([=](const MTPUpdates &result) {
|
|
_channel->session().api().applyUpdates(result);
|
|
}).send();
|
|
slice.clear();
|
|
};
|
|
for (const auto user : users) {
|
|
if (!count && slice.empty()) {
|
|
result = user;
|
|
}
|
|
owner->registerInvitedToCallUser(_id, _channel, user);
|
|
slice.push_back(user->inputUser);
|
|
if (slice.size() == kMaxInvitePerSlice) {
|
|
sendSlice();
|
|
}
|
|
}
|
|
if (count != 0 || slice.size() != 1) {
|
|
result = int(count + slice.size());
|
|
}
|
|
if (!slice.empty()) {
|
|
sendSlice();
|
|
}
|
|
return result;
|
|
}
|
|
|
|
//void GroupCall::setAudioVolume(bool input, float level) {
|
|
// if (_instance) {
|
|
// if (input) {
|
|
// _instance->setInputVolume(level);
|
|
// } else {
|
|
// _instance->setOutputVolume(level);
|
|
// }
|
|
// }
|
|
//}
|
|
|
|
void GroupCall::setAudioDuckingEnabled(bool enabled) {
|
|
if (_instance) {
|
|
//_instance->setAudioOutputDuckingEnabled(enabled);
|
|
}
|
|
}
|
|
|
|
void GroupCall::handleRequestError(const RPCError &error) {
|
|
//if (error.type() == qstr("USER_PRIVACY_RESTRICTED")) {
|
|
// Ui::show(Box<InformBox>(tr::lng_call_error_not_available(tr::now, lt_user, _user->name)));
|
|
//} else if (error.type() == qstr("PARTICIPANT_VERSION_OUTDATED")) {
|
|
// Ui::show(Box<InformBox>(tr::lng_call_error_outdated(tr::now, lt_user, _user->name)));
|
|
//} else if (error.type() == qstr("CALL_PROTOCOL_LAYER_INVALID")) {
|
|
// Ui::show(Box<InformBox>(Lang::Hard::CallErrorIncompatible().replace("{user}", _user->name)));
|
|
//}
|
|
//finish(FinishType::Failed);
|
|
}
|
|
|
|
void GroupCall::handleControllerError(const QString &error) {
|
|
if (error == u"ERROR_INCOMPATIBLE"_q) {
|
|
//Ui::show(Box<InformBox>(
|
|
// Lang::Hard::CallErrorIncompatible().replace(
|
|
// "{user}",
|
|
// _user->name)));
|
|
} else if (error == u"ERROR_AUDIO_IO"_q) {
|
|
Ui::show(Box<InformBox>(tr::lng_call_error_audio_io(tr::now)));
|
|
}
|
|
//finish(FinishType::Failed);
|
|
}
|
|
|
|
MTPInputGroupCall GroupCall::inputCall() const {
|
|
Expects(_id != 0);
|
|
|
|
return MTP_inputGroupCall(
|
|
MTP_long(_id),
|
|
MTP_long(_accessHash));
|
|
}
|
|
|
|
void GroupCall::destroyController() {
|
|
if (_instance) {
|
|
//_instance->stop([](tgcalls::FinalState) {
|
|
//});
|
|
|
|
DEBUG_LOG(("Call Info: Destroying call controller.."));
|
|
_instance.reset();
|
|
DEBUG_LOG(("Call Info: Call controller destroyed."));
|
|
}
|
|
}
|
|
|
|
} // namespace Calls
|