2018-12-31 20:04:05 +01:00
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//
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2024-01-01 01:07:21 +01:00
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// Copyright Aliaksei Levin (levlam@telegram.org), Arseny Smirnov (arseny30@gmail.com) 2014-2024
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2018-12-31 20:04:05 +01:00
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//
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// Distributed under the Boost Software License, Version 1.0. (See accompanying
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// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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//
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#include "td/telegram/CallManager.h"
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2023-07-01 13:53:04 +02:00
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#include "td/telegram/telegram_api.h"
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2019-02-12 22:26:36 +01:00
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#include "td/utils/common.h"
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2018-12-31 20:04:05 +01:00
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#include "td/utils/logging.h"
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#include "td/utils/misc.h"
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2021-05-17 14:21:11 +02:00
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#include "td/utils/SliceBuilder.h"
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2018-12-31 20:04:05 +01:00
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#include <limits>
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namespace td {
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CallManager::CallManager(ActorShared<> parent) : parent_(std::move(parent)) {
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}
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void CallManager::update_call(Update call) {
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2023-07-01 12:11:27 +02:00
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auto call_id = [phone_call = call->phone_call_.get()] {
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switch (phone_call->get_id()) {
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case telegram_api::phoneCallEmpty::ID:
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return static_cast<const telegram_api::phoneCallEmpty *>(phone_call)->id_;
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case telegram_api::phoneCallWaiting::ID:
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return static_cast<const telegram_api::phoneCallWaiting *>(phone_call)->id_;
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case telegram_api::phoneCallRequested::ID:
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return static_cast<const telegram_api::phoneCallRequested *>(phone_call)->id_;
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case telegram_api::phoneCallAccepted::ID:
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return static_cast<const telegram_api::phoneCallAccepted *>(phone_call)->id_;
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case telegram_api::phoneCall::ID:
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return static_cast<const telegram_api::phoneCall *>(phone_call)->id_;
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case telegram_api::phoneCallDiscarded::ID:
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return static_cast<const telegram_api::phoneCallDiscarded *>(phone_call)->id_;
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default:
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UNREACHABLE();
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return static_cast<int64>(0);
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}
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}();
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2020-05-29 10:26:08 +02:00
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LOG(DEBUG) << "Receive UpdateCall for " << call_id;
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2018-12-31 20:04:05 +01:00
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auto &info = call_info_[call_id];
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if (!info.call_id.is_valid() && call->phone_call_->get_id() == telegram_api::phoneCallRequested::ID) {
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info.call_id = create_call_actor();
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}
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if (!info.call_id.is_valid()) {
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2020-05-29 10:26:08 +02:00
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LOG(INFO) << "Call_id is not valid for " << call_id << ", postpone update " << to_string(call);
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2018-12-31 20:04:05 +01:00
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info.updates.push_back(std::move(call));
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return;
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}
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auto actor = get_call_actor(info.call_id);
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if (actor.empty()) {
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2018-04-27 10:00:56 +02:00
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LOG(INFO) << "Drop update: " << to_string(call);
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2018-12-31 20:04:05 +01:00
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}
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send_closure(actor, &CallActor::update_call, std::move(call->phone_call_));
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}
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2020-05-29 10:26:08 +02:00
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void CallManager::update_call_signaling_data(int64 call_id, string data) {
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auto info_it = call_info_.find(call_id);
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if (info_it == call_info_.end() || !info_it->second.call_id.is_valid()) {
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LOG(INFO) << "Ignore signaling data for " << call_id;
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2020-09-14 15:02:37 +02:00
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return;
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2020-05-29 10:26:08 +02:00
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}
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auto actor = get_call_actor(info_it->second.call_id);
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if (actor.empty()) {
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LOG(INFO) << "Ignore signaling data for " << info_it->second.call_id;
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return;
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}
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send_closure(actor, &CallActor::update_call_signaling_data, std::move(data));
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}
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2018-12-31 20:04:05 +01:00
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void CallManager::create_call(UserId user_id, tl_object_ptr<telegram_api::InputUser> &&input_user,
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2019-06-08 11:26:35 +02:00
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CallProtocol &&protocol, bool is_video, Promise<CallId> promise) {
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2018-12-31 20:04:05 +01:00
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LOG(INFO) << "Create call with " << user_id;
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auto call_id = create_call_actor();
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auto actor = get_call_actor(call_id);
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CHECK(!actor.empty());
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2022-08-30 11:03:26 +02:00
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auto safe_promise = SafePromise<CallId>(std::move(promise), Status::Error(400, "Call not found"));
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2019-06-08 11:26:35 +02:00
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send_closure(actor, &CallActor::create_call, user_id, std::move(input_user), std::move(protocol), is_video,
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std::move(safe_promise));
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2018-12-31 20:04:05 +01:00
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}
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2022-04-22 14:16:09 +02:00
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void CallManager::accept_call(CallId call_id, CallProtocol &&protocol, Promise<Unit> promise) {
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2018-12-31 20:04:05 +01:00
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auto actor = get_call_actor(call_id);
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if (actor.empty()) {
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return promise.set_error(Status::Error(400, "Call not found"));
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}
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2022-08-30 11:03:26 +02:00
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auto safe_promise = SafePromise<Unit>(std::move(promise), Status::Error(400, "Call not found"));
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send_closure(actor, &CallActor::accept_call, std::move(protocol), std::move(safe_promise));
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2018-12-31 20:04:05 +01:00
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}
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2022-04-22 14:16:09 +02:00
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void CallManager::send_call_signaling_data(CallId call_id, string &&data, Promise<Unit> promise) {
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2018-12-31 20:04:05 +01:00
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auto actor = get_call_actor(call_id);
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if (actor.empty()) {
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return promise.set_error(Status::Error(400, "Call not found"));
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}
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2022-08-30 11:03:26 +02:00
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auto safe_promise = SafePromise<Unit>(std::move(promise), Status::Error(400, "Call not found"));
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send_closure(actor, &CallActor::send_call_signaling_data, std::move(data), std::move(safe_promise));
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2020-08-10 10:34:28 +02:00
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}
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void CallManager::discard_call(CallId call_id, bool is_disconnected, int32 duration, bool is_video, int64 connection_id,
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2022-04-22 14:16:09 +02:00
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Promise<Unit> promise) {
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2020-08-10 10:34:28 +02:00
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auto actor = get_call_actor(call_id);
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if (actor.empty()) {
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return promise.set_error(Status::Error(400, "Call not found"));
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}
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2022-08-30 11:03:26 +02:00
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auto safe_promise = SafePromise<Unit>(std::move(promise), Status::Error(400, "Call not found"));
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send_closure(actor, &CallActor::discard_call, is_disconnected, duration, is_video, connection_id,
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std::move(safe_promise));
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2018-12-31 20:04:05 +01:00
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}
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2019-08-06 19:07:23 +02:00
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void CallManager::rate_call(CallId call_id, int32 rating, string comment,
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2022-04-22 14:16:09 +02:00
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vector<td_api::object_ptr<td_api::CallProblem>> &&problems, Promise<Unit> promise) {
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2018-12-31 20:04:05 +01:00
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auto actor = get_call_actor(call_id);
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if (actor.empty()) {
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return promise.set_error(Status::Error(400, "Call not found"));
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}
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2022-08-30 11:03:26 +02:00
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auto safe_promise = SafePromise<Unit>(std::move(promise), Status::Error(400, "Call not found"));
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send_closure(actor, &CallActor::rate_call, rating, std::move(comment), std::move(problems), std::move(safe_promise));
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2018-12-31 20:04:05 +01:00
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}
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2022-04-22 14:16:09 +02:00
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void CallManager::send_call_debug_information(CallId call_id, string data, Promise<Unit> promise) {
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2018-12-31 20:04:05 +01:00
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auto actor = get_call_actor(call_id);
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if (actor.empty()) {
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return promise.set_error(Status::Error(400, "Call not found"));
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}
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2022-08-30 11:03:26 +02:00
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auto safe_promise = SafePromise<Unit>(std::move(promise), Status::Error(400, "Call not found"));
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send_closure(actor, &CallActor::send_call_debug_information, std::move(data), std::move(safe_promise));
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2018-12-31 20:04:05 +01:00
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}
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2022-04-22 14:16:09 +02:00
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void CallManager::send_call_log(CallId call_id, td_api::object_ptr<td_api::InputFile> log_file, Promise<Unit> promise) {
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auto actor = get_call_actor(call_id);
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if (actor.empty()) {
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return promise.set_error(Status::Error(400, "Call not found"));
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}
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2022-08-30 11:03:26 +02:00
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auto safe_promise = SafePromise<Unit>(std::move(promise), Status::Error(400, "Call not found"));
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send_closure(actor, &CallActor::send_call_log, std::move(log_file), std::move(safe_promise));
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2022-04-22 14:16:09 +02:00
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}
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2018-12-31 20:04:05 +01:00
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CallId CallManager::create_call_actor() {
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if (next_call_id_ == std::numeric_limits<int32>::max()) {
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next_call_id_ = 1;
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}
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auto id = CallId(next_call_id_++);
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CHECK(id.is_valid());
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auto it_flag = id_to_actor_.emplace(id, ActorOwn<CallActor>());
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CHECK(it_flag.second);
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LOG(INFO) << "Create CallActor: " << id;
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2019-03-20 19:13:45 +01:00
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auto main_promise = PromiseCreator::lambda([actor_id = actor_id(this), id](Result<int64> call_id) {
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2018-12-31 20:04:05 +01:00
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send_closure(actor_id, &CallManager::set_call_id, id, std::move(call_id));
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});
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it_flag.first->second = create_actor<CallActor>(PSLICE() << "Call " << id.get(), id, actor_shared(this, id.get()),
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std::move(main_promise));
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return id;
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}
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void CallManager::set_call_id(CallId call_id, Result<int64> r_server_call_id) {
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if (r_server_call_id.is_error()) {
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return;
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}
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auto server_call_id = r_server_call_id.move_as_ok();
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auto &call_info = call_info_[server_call_id];
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CHECK(!call_info.call_id.is_valid() || call_info.call_id == call_id);
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call_info.call_id = call_id;
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auto actor = get_call_actor(call_id);
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if (actor.empty()) {
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return;
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}
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for (auto &update : call_info.updates) {
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send_closure(actor, &CallActor::update_call, std::move(update->phone_call_));
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}
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call_info.updates.clear();
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}
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ActorId<CallActor> CallManager::get_call_actor(CallId call_id) {
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auto it = id_to_actor_.find(call_id);
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if (it == id_to_actor_.end()) {
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return ActorId<CallActor>();
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}
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return it->second.get();
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}
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void CallManager::hangup() {
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close_flag_ = true;
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for (auto &it : id_to_actor_) {
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2022-10-01 00:28:54 +02:00
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LOG(INFO) << "Ask to close CallActor " << it.first.get();
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2018-12-31 20:04:05 +01:00
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it.second.reset();
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}
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if (id_to_actor_.empty()) {
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stop();
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}
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}
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2022-09-29 13:50:25 +02:00
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2018-12-31 20:04:05 +01:00
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void CallManager::hangup_shared() {
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auto token = narrow_cast<int32>(get_link_token());
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auto it = id_to_actor_.find(CallId(token));
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2022-10-01 00:28:54 +02:00
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CHECK(it != id_to_actor_.end());
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LOG(INFO) << "Closed CallActor " << it->first.get();
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2022-10-08 20:00:15 +02:00
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it->second.release();
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2022-10-01 00:28:54 +02:00
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id_to_actor_.erase(it);
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2018-12-31 20:04:05 +01:00
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if (close_flag_ && id_to_actor_.empty()) {
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stop();
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}
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}
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2022-09-29 13:50:25 +02:00
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2018-12-31 20:04:05 +01:00
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} // namespace td
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