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The change adjusts both cellular service as well as call and call log applications to handle properly incoming calls from private numbers.
326 lines
12 KiB
C++
326 lines
12 KiB
C++
// Copyright (c) 2017-2021, Mudita Sp. z.o.o. All rights reserved.
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// For licensing, see https://github.com/mudita/MuditaOS/LICENSE.md
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#include "ApplicationCall.hpp"
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#include "DialogMetadata.hpp"
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#include "DialogMetadataMessage.hpp"
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#include "data/CallSwitchData.hpp"
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#include "windows/CallWindow.hpp"
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#include "windows/EmergencyCallWindow.hpp"
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#include "windows/EnterNumberWindow.hpp"
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#include <Application.hpp>
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#include <MessageType.hpp>
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#include <PhoneNumber.hpp>
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#include <Dialog.hpp>
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#include <log/log.hpp>
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#include <memory>
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#include <service-cellular/ServiceCellular.hpp>
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#include <service-cellular/CellularServiceAPI.hpp>
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#include <service-audio/AudioServiceAPI.hpp>
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#include <service-appmgr/Controller.hpp>
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#include <time/time_conversion.hpp>
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#include <ticks.hpp>
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#include <cassert>
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#include <module-apps/application-phonebook/data/PhonebookItemData.hpp>
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#include <module-services/service-db/service-db/DBServiceAPI.hpp>
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namespace app
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{
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ApplicationCall::ApplicationCall(std::string name, std::string parent, StartInBackground startInBackground)
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: Application(name, parent, startInBackground, app::call_stack_size)
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{
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using namespace gui::top_bar;
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topBarManager->enableIndicators({Indicator::Signal,
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Indicator::Time,
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Indicator::Battery,
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Indicator::SimCard,
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Indicator::NetworkAccessTechnology});
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addActionReceiver(manager::actions::Call, [this](auto &&data) {
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switchWindow(window::name_call, std::forward<decltype(data)>(data));
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return msgHandled();
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});
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addActionReceiver(manager::actions::Dial, [this](auto &&data) {
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switchWindow(window::name_enterNumber, std::forward<decltype(data)>(data));
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return msgHandled();
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});
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addActionReceiver(manager::actions::EmergencyDial, [this](auto &&data) {
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switchWindow(app::window::name_emergencyCall, std::forward<decltype(data)>(data));
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return msgHandled();
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});
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addActionReceiver(manager::actions::NotAnEmergencyNotification, [this](auto &&data) {
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auto buttonAction = [=]() -> bool {
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returnToPreviousWindow();
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return true;
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};
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constexpr auto iconNoEmergency = "emergency_W_G";
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auto textNoEmergency = utils::localize.get("app_call_wrong_emergency");
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utils::findAndReplaceAll(textNoEmergency, "$NUMBER", data->getDescription());
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showNotification(buttonAction, iconNoEmergency, textNoEmergency);
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return msgHandled();
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});
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addActionReceiver(manager::actions::NoSimNotification, [this](auto &&data) {
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auto buttonAction = [=]() -> bool {
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returnToPreviousWindow();
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return true;
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};
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constexpr auto iconNoSim = "info_big_circle_W_G";
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const auto textNoSim = utils::localize.get("app_call_no_sim");
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showNotification(buttonAction, iconNoSim, textNoSim);
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return msgHandled();
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});
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}
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// number of seconds after end call to switch back to previous application
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const inline utils::time::Duration delayToSwitchToPreviousApp = 3;
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void ApplicationCall::CallAbortHandler()
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{
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manager::Controller::sendAction(this, manager::actions::Call, std::make_unique<app::CallAbortData>());
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}
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void ApplicationCall::CallActiveHandler()
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{
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manager::Controller::sendAction(this, manager::actions::Call, std::make_unique<app::CallActiveData>());
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}
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void ApplicationCall::CallerIdHandler(const CellularCallMessage *const msg)
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{
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if (getState() == call::State::IDLE) {
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if (callerIdTimer) {
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callerIdTimer->stop();
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callerIdTimer.reset(nullptr);
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}
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manager::Controller::sendAction(
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this, manager::actions::Call, std::make_unique<app::IncomingCallData>(msg->number));
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}
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}
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void ApplicationCall::IncomingCallHandler(const CellularCallMessage *const msg)
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{
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if (getState() == call::State::IDLE) {
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constexpr sys::ms callerIdTimeout = 1000;
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callerIdTimer =
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std::make_unique<sys::Timer>("CallerIdTimer", this, callerIdTimeout, sys::Timer::Type::SingleShot);
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callerIdTimer->connect([=](sys::Timer &) {
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callerIdTimer->stop();
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manager::Controller::sendAction(
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this,
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manager::actions::Call,
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std::make_unique<app::IncomingCallData>(utils::PhoneNumber().getView()));
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});
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}
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}
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void ApplicationCall::RingingHandler(const CellularCallMessage *const msg)
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{
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manager::Controller::sendAction(
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this, manager::actions::Call, std::make_unique<app::ExecuteCallData>(msg->number));
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}
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// Invoked upon receiving data message
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sys::MessagePointer ApplicationCall::DataReceivedHandler(sys::DataMessage *msgl, sys::ResponseMessage *resp)
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{
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auto retMsg = Application::DataReceivedHandler(msgl);
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// if message was handled by application's template there is no need to process further.
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auto response = dynamic_cast<sys::ResponseMessage *>(retMsg.get());
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assert(response);
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if (response->retCode == sys::ReturnCodes::Success) {
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return retMsg;
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}
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if (msgl->messageType == MessageType::CellularNotification) {
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auto *msg = dynamic_cast<CellularNotificationMessage *>(msgl);
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assert(msg != nullptr);
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switch (msg->type) {
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case CellularNotificationMessage::Type::CallAborted: {
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CallAbortHandler();
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} break;
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case CellularNotificationMessage::Type::CallActive: {
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CallActiveHandler();
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} break;
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default:
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break;
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}
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return std::make_shared<sys::ResponseMessage>();
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}
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else if (msgl->messageType == MessageType::CellularCall) {
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auto *msg = dynamic_cast<CellularCallMessage *>(msgl);
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assert(msg != nullptr);
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switch (msg->type) {
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case CellularCallMessage::Type::Ringing: {
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RingingHandler(msg);
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} break;
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case CellularCallMessage::Type::IncomingCall: {
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IncomingCallHandler(msg);
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} break;
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case CellularCallMessage::Type::CallerId: {
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CallerIdHandler(msg);
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} break;
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}
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}
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if (resp != nullptr) {
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switch (resp->responseTo) {
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case MessageType::CellularHangupCall: {
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if (resp->retCode == sys::ReturnCodes::Success) {
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CallAbortHandler();
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}
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break;
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}
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default:
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break;
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}
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return std::make_shared<sys::ResponseMessage>();
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}
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return std::make_shared<sys::ResponseMessage>(sys::ReturnCodes::Unresolved);
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}
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// Invoked during initialization
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sys::ReturnCodes ApplicationCall::InitHandler()
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{
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auto ret = Application::InitHandler();
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if (ret != sys::ReturnCodes::Success) {
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return ret;
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}
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createUserInterface();
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setActiveWindow(gui::name::window::main_window);
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return ret;
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}
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sys::ReturnCodes ApplicationCall::DeinitHandler()
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{
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return sys::ReturnCodes::Success;
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}
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void ApplicationCall::createUserInterface()
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{
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windowsFactory.attach(app::window::name_enterNumber, [](Application *app, const std::string newname) {
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return std::make_unique<gui::EnterNumberWindow>(app, static_cast<ApplicationCall *>(app));
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});
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windowsFactory.attach(app::window::name_call, [](Application *app, const std::string &name) {
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return std::make_unique<gui::CallWindow>(app, static_cast<ApplicationCall *>(app));
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});
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windowsFactory.attach(app::window::name_emergencyCall, [](Application *app, const std::string &name) {
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return std::make_unique<gui::EmergencyCallWindow>(app, static_cast<ApplicationCall *>(app));
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});
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windowsFactory.attach(app::window::name_dialogConfirm, [](Application *app, const std::string &name) {
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return std::make_unique<gui::DialogConfirm>(app, name);
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});
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}
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bool ApplicationCall::showNotification(std::function<bool()> action,
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const std::string &icon,
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const std::string &text)
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{
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gui::DialogMetadata meta;
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meta.icon = icon;
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meta.text = text;
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meta.action = std::move(action);
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switchWindow(app::window::name_dialogConfirm, std::make_unique<gui::DialogMetadataMessage>(std::move(meta)));
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return true;
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}
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void ApplicationCall::destroyUserInterface()
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{}
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void ApplicationCall::handleEmergencyCallEvent(const std::string &number)
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{
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CellularServiceAPI::DialEmergencyNumber(this, utils::PhoneNumber(number));
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}
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void ApplicationCall::handleCallEvent(const std::string &number)
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{
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CellularServiceAPI::DialNumber(this, utils::PhoneNumber(number));
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}
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void ApplicationCall::handleAddContactEvent(const std::string &number)
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{
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LOG_INFO("add contact information: %s", number.c_str());
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auto numberView = utils::PhoneNumber(number).getView();
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auto searchResults = DBServiceAPI::MatchContactByPhoneNumber(this, numberView);
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if (searchResults != nullptr) {
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LOG_INFO("Found contact matching search num %s : contact ID %" PRIu32 " - %s %s",
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number.c_str(),
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searchResults->ID,
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searchResults->primaryName.c_str(),
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searchResults->alternativeName.c_str());
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app::manager::Controller::sendAction(this,
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app::manager::actions::EditContact,
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std::make_unique<PhonebookItemData>(std::move(searchResults)));
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}
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else {
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auto contactRecord = std::make_shared<ContactRecord>();
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contactRecord->numbers.emplace_back(std::move(numberView));
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auto data = std::make_unique<PhonebookItemData>(std::move(contactRecord));
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data->ignoreCurrentWindowOnStack = true;
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app::manager::Controller::sendAction(
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this, manager::actions::AddContact, std::move(data), manager::OnSwitchBehaviour::RunInBackground);
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}
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}
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void ApplicationCall::stopAudio()
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{
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AudioServiceAPI::StopAll(this);
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}
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void ApplicationCall::startAudioRinging()
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{
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AudioServiceAPI::PlaybackStart(this, audio::PlaybackType::CallRingtone, ringtone_path);
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}
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void ApplicationCall::startAudioRouting()
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{
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AudioServiceAPI::RoutingStart(this);
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}
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void ApplicationCall::sendAudioEvent(AudioEvent audioEvent)
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{
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switch (audioEvent) {
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case AudioEvent::Mute:
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AudioServiceAPI::SendEvent(this, audio::EventType::CallMute);
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break;
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case AudioEvent::Unmute:
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AudioServiceAPI::SendEvent(this, audio::EventType::CallUnmute);
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break;
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case AudioEvent::LoudspeakerOn:
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AudioServiceAPI::SendEvent(this, audio::EventType::CallLoudspeakerOn);
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break;
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case AudioEvent::LoudspeakerOff:
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AudioServiceAPI::SendEvent(this, audio::EventType::CallLoudspeakerOff);
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break;
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}
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}
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void ApplicationCall::hangupCall()
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{
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CellularServiceAPI::HangupCall(this);
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}
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void ApplicationCall::answerIncomingCall()
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{
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CellularServiceAPI::AnswerIncomingCall(this);
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}
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void ApplicationCall::transmitDtmfTone(uint32_t digit)
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{
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if (!CellularServiceAPI::TransmitDtmfTones(this, digit)) {
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LOG_ERROR("transmitDtmfTone failed");
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}
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}
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} // namespace app
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