mirror of
https://github.com/tuxbox-neutrino/neutrino.git
synced 2025-08-29 16:31:11 +02:00
752 lines
24 KiB
C++
752 lines
24 KiB
C++
/*
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Neutrino-GUI - DBoxII-Project
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Copyright (C) 2001 Steffen Hehn 'McClean'
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Homepage: http://dbox.cyberphoria.org/
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Kommentar:
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Diese GUI wurde von Grund auf neu programmiert und sollte nun vom
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Aufbau und auch den Ausbaumoeglichkeiten gut aussehen. Neutrino basiert
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auf der Client-Server Idee, diese GUI ist also von der direkten DBox-
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Steuerung getrennt. Diese wird dann von Daemons uebernommen.
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License: GPL
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#ifdef HAVE_CONFIG_H
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#include <config.h>
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#endif
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#include <daemonc/remotecontrol.h>
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#include <global.h>
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#include <neutrino.h>
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#include <gui/infoviewer.h>
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#include <gui/movieplayer.h>
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#include <driver/record.h>
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#include <driver/abstime.h>
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#include <libdvbsub/dvbsub.h>
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#include <libtuxtxt/teletext.h>
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#include <zapit/channel.h>
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#include <zapit/bouquets.h>
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#include <zapit/zapit.h>
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#include <zapit/getservices.h>
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#include <eitd/sectionsd.h>
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#define ZAP_GUARD_TIME 2000 // ms
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extern CBouquetManager *g_bouquetManager;
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extern uint32_t scrambled_timer;
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CSubService::CSubService(const t_original_network_id anoriginal_network_id, const t_service_id aservice_id, const t_transport_stream_id atransport_stream_id, const std::string &asubservice_name)
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{
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service.original_network_id = anoriginal_network_id;
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service.service_id = aservice_id;
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service.transport_stream_id = atransport_stream_id;
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startzeit = 0;
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dauer = 0;
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subservice_name = asubservice_name;
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CZapitChannel * channel = CZapit::getInstance()->GetCurrentChannel();
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satellitePosition = channel ? channel->getSatellitePosition() : 0;
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}
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CSubService::CSubService(const t_original_network_id anoriginal_network_id, const t_service_id aservice_id, const t_transport_stream_id atransport_stream_id, const time_t astartzeit, const unsigned adauer)
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{
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service.original_network_id = anoriginal_network_id;
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service.service_id = aservice_id;
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service.transport_stream_id = atransport_stream_id;
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startzeit = astartzeit;
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dauer = adauer;
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subservice_name = "";
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CZapitChannel * channel = CZapit::getInstance()->GetCurrentChannel();
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satellitePosition = channel ? channel->getSatellitePosition() : 0;
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}
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t_channel_id CSubService::getChannelID(void) const
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{
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return ((uint64_t) ( satellitePosition >= 0 ? satellitePosition : (uint64_t)(0xF000+ abs(satellitePosition))) << 48) |
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(uint64_t) CREATE_CHANNEL_ID(service.service_id, service.original_network_id, service.transport_stream_id);
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}
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CRemoteControl::CRemoteControl()
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{
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current_channel_id = CZapit::getInstance()->GetCurrentChannelID();;
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current_sub_channel_id = 0;
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current_channel_name = "";
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zap_completion_timeout = 0;
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current_EPGid = 0;
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memset(¤t_PIDs.PIDs, 0, sizeof(current_PIDs.PIDs) );
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has_ac3 = false;
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selected_subchannel = -1;
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needs_nvods = false;
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director_mode = 0;
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is_video_started = true;
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//current_programm_timer = 0;
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//next_EPGid = 0;
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}
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int CRemoteControl::handleMsg(const neutrino_msg_t msg, neutrino_msg_data_t data)
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{
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//printf("[neutrino] MSG %x\n", msg);
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if ( zap_completion_timeout != 0 ) {
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if ((msg == NeutrinoMessages::EVT_ZAP_COMPLETE) || (msg == NeutrinoMessages::EVT_ZAP_FAILED ) ||
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(msg == NeutrinoMessages::EVT_ZAP_ISNVOD )) {
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//printf("[neutrino] timeout EVT_ZAP current %llx data %llx\n", current_channel_id, *(t_channel_id *)data);
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if ((*(t_channel_id *)data) != current_channel_id) {
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g_InfoViewer->chanready = 0;
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if (!IS_WEBTV(current_channel_id))
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g_Sectionsd->setServiceStopped();
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CMoviePlayerGui::getInstance().stopPlayBack();
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g_Zapit->zapTo_serviceID_NOWAIT(current_channel_id );
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//g_Sectionsd->setServiceChanged(current_channel_id, false);
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zap_completion_timeout = time_monotonic_ms() + ZAP_GUARD_TIME;
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return messages_return::handled;
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}
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else {
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zap_completion_timeout = 0;
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g_InfoViewer->chanready = 1;
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}
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/* for CHANGETOLOCKED, we don't need to wait for EPG to arrive... */
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if ((!is_video_started) &&
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(g_settings.parentallock_prompt == PARENTALLOCK_PROMPT_CHANGETOLOCKED))
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g_RCInput->postMsg(NeutrinoMessages::EVT_PROGRAMLOCKSTATUS, 0x100, false);
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}
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} else {
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if ((msg == NeutrinoMessages::EVT_ZAP_COMPLETE) || (msg == NeutrinoMessages::EVT_ZAP_FAILED ) ||
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(msg == NeutrinoMessages::EVT_ZAP_ISNVOD ))
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{
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//printf("[neutrino] EVT_ZAP current %llx data %llx\n", current_channel_id, *(t_channel_id *)data);
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g_InfoViewer->chanready = 1;
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// warte auf keine Meldung vom ZAPIT -> jemand anderer hat das zappen ausgel<65>st...
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if ((*(t_channel_id *)data) != current_channel_id) {
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t_channel_id new_id = *(t_channel_id *)data;
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CZapitChannel* channel = CServiceManager::getInstance()->FindChannel(new_id);
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is_video_started = true;
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if (channel) {
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current_channel_name = channel->getName();
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if (!!channel->bLockCount != g_settings.parentallock_defaultlocked)
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stopvideo();
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}
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CVFD::getInstance()->showServicename(current_channel_name); // UTF-8
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current_channel_id = new_id;
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current_EPGid = 0;
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//next_EPGid = 0;
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memset(¤t_PIDs.PIDs, 0, sizeof(current_PIDs.PIDs) );
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current_PIDs.APIDs.clear();
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has_ac3 = false;
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subChannels.clear();
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selected_subchannel = -1;
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director_mode = 0;
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needs_nvods = (msg == NeutrinoMessages:: EVT_ZAP_ISNVOD);
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//g_Sectionsd->setServiceChanged( current_channel_id, true );
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CNeutrinoApp::getInstance()->channelList->adjustToChannelID(current_channel_id);
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if ( g_InfoViewer->is_visible )
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g_RCInput->postMsg( NeutrinoMessages::SHOW_INFOBAR , 0 );
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}
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if ((!is_video_started) &&
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(g_settings.parentallock_prompt == PARENTALLOCK_PROMPT_CHANGETOLOCKED))
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g_RCInput->postMsg(NeutrinoMessages::EVT_PROGRAMLOCKSTATUS, 0x100, false);
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}
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else
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if ((msg == NeutrinoMessages::EVT_ZAP_SUB_COMPLETE) || (msg == NeutrinoMessages:: EVT_ZAP_SUB_FAILED )) {
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//printf("[neutrino] EVT_ZAP_SUB current %llx data %llx\n", current_sub_channel_id, *(t_channel_id *)data);
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if ((*(t_channel_id *)data) != current_sub_channel_id)
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{
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current_sub_channel_id = *(t_channel_id *)data;
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for(unsigned int i = 0; i < subChannels.size(); i++)
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if (subChannels[i].getChannelID() == (*(t_channel_id *)data))
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{
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selected_subchannel = i;
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break;
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}
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}
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}
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}
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if ( msg == NeutrinoMessages::EVT_CURRENTEPG ) {
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CSectionsdClient::CurrentNextInfo* info_CN = (CSectionsdClient::CurrentNextInfo*) data;
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#if 0
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printf("[neutrino] EVT_CURRENTEPG: uniqueKey %llx chid %llx subid %llx flags %x\n",
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info_CN->current_uniqueKey >> 16, current_channel_id & 0xFFFFFFFFFFFFULL,
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current_sub_channel_id&0xFFFFFFFFFFFFULL, info_CN->flags);
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#endif
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t_channel_id chid = (info_CN->current_uniqueKey >> 16);
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if(chid != (current_channel_id&0xFFFFFFFFFFFFULL) && chid != (current_sub_channel_id&0xFFFFFFFFFFFFULL))
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return messages_return::handled;
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/* current event came for current channel */
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if ( info_CN->current_uniqueKey != current_EPGid )
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{
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if ( current_EPGid != 0 )
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{
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/* new event, not channel. get pids */
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g_Zapit->getPIDS( current_PIDs );
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has_unresolved_ctags = true;
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// infobar indicate on epg change
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g_InfoViewer->showEpgInfo();
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}
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current_EPGid= info_CN->current_uniqueKey;
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if ( has_unresolved_ctags )
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processAPIDnames();
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if ( info_CN->flags & CSectionsdClient::epgflags::current_has_linkagedescriptors ) {
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subChannels.clear();
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getSubChannels();
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}
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if ( needs_nvods )
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getNVODs();
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#if 0
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g_RCInput->killTimer( current_programm_timer );
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time_t end_program= info_CN->current_zeit.startzeit+ info_CN->current_zeit.dauer;
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current_programm_timer = g_RCInput->addTimer( &end_program );
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#endif
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}
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// is_video_started is only false if channel is locked
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if ((!is_video_started) &&
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(info_CN->current_fsk == 0 || g_settings.parentallock_prompt == PARENTALLOCK_PROMPT_CHANGETOLOCKED))
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g_RCInput->postMsg(NeutrinoMessages::EVT_PROGRAMLOCKSTATUS, 0x100, false);
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else
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g_RCInput->postMsg(NeutrinoMessages::EVT_PROGRAMLOCKSTATUS, info_CN->current_fsk, false);
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return messages_return::handled;
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}
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else if ( msg == NeutrinoMessages::EVT_NEXTEPG )
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{
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CSectionsdClient::CurrentNextInfo* info_CN = (CSectionsdClient::CurrentNextInfo*) data;
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t_channel_id chid = (info_CN->next_uniqueKey >> 16);
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if(chid != (current_channel_id&0xFFFFFFFFFFFFULL) && chid != (current_sub_channel_id&0xFFFFFFFFFFFFULL))
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return messages_return::handled;
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#if 0
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if ( ( info_CN->next_uniqueKey >> 16) == (current_channel_id&0xFFFFFFFFFFFFULL) )
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{
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// next-EPG f<>r den aktuellen Kanal bekommen, current ist leider net da?!;
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if ( info_CN->next_uniqueKey != next_EPGid )
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{
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next_EPGid = info_CN->next_uniqueKey;
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// timer setzen
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g_RCInput->killTimer( current_programm_timer );
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time_t end_program = info_CN->next_zeit.startzeit;
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current_programm_timer = g_RCInput->addTimer( &end_program );
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}
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}
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#endif
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if ( !is_video_started )
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g_RCInput->postMsg( NeutrinoMessages::EVT_PROGRAMLOCKSTATUS, 0x100, false );
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return messages_return::handled;
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}
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else if (msg == NeutrinoMessages::EVT_NOEPG_YET)
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{
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if ((*(t_channel_id *)data) == (current_channel_id&0xFFFFFFFFFFFFULL))
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{
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if ( !is_video_started )
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g_RCInput->postMsg( NeutrinoMessages::EVT_PROGRAMLOCKSTATUS, 0x100, false );
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}
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return messages_return::handled;
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}
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else if ((msg == NeutrinoMessages::EVT_ZAP_COMPLETE)||
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(msg == NeutrinoMessages::EVT_ZAP_SUB_COMPLETE)) {
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if ((*(t_channel_id *)data) == ((msg == NeutrinoMessages::EVT_ZAP_COMPLETE) ? current_channel_id : current_sub_channel_id))
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{
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CVFD::getInstance()->showServicename(current_channel_name); // UTF-8
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g_Zapit->getPIDS( current_PIDs );
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//tuxtxt
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#if 1
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tuxtxt_stop();
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if(g_settings.cacheTXT) {
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printf("TuxTXT pid: %X\n", current_PIDs.PIDs.vtxtpid);
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if(current_PIDs.PIDs.vtxtpid != 0)
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tuxtxt_start(current_PIDs.PIDs.vtxtpid);
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}
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#endif
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char *p = new char[sizeof(t_channel_id)];
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memcpy(p, ¤t_channel_id, sizeof(t_channel_id));
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g_RCInput->postMsg(NeutrinoMessages::EVT_ZAP_GOTPIDS, (const neutrino_msg_data_t)p, false);
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processAPIDnames();
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}
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return messages_return::handled;
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}
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else if (msg == NeutrinoMessages::EVT_PMT_CHANGED) {
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g_Zapit->getPIDS(current_PIDs);
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processAPIDnames();
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return messages_return::unhandled;
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}
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else if (msg == NeutrinoMessages::EVT_ZAP_ISNVOD)
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{
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if ((*(t_channel_id *)data) == current_channel_id)
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{
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needs_nvods = true;
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CVFD::getInstance()->showServicename(std::string("[") + current_channel_name + ']'); // UTF-8
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if ( current_EPGid != 0)
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{
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getNVODs();
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if (subChannels.empty())
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g_Sectionsd->setServiceChanged( current_channel_id, true );
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}
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else
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// EVENT anfordern!
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g_Sectionsd->setServiceChanged( current_channel_id, true );
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}
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return messages_return::handled;
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}
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#if 0
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else if ( ( msg == NeutrinoMessages::EVT_TIMER ) && ( data == current_programm_timer ) )
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{
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//printf("new program !\n");
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char *p = new char[sizeof(t_channel_id)];
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memcpy(p, ¤t_channel_id, sizeof(t_channel_id));
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g_RCInput->postMsg(NeutrinoMessages::EVT_NEXTPROGRAM, (const neutrino_msg_data_t)p, false); // data is pointer to allocated memory
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return messages_return::handled;
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}
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#endif
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else if (msg == NeutrinoMessages::EVT_TUNE_COMPLETE) {
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t_channel_id chid = *(t_channel_id *)data;
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printf("CRemoteControl::handleMsg: EVT_TUNE_COMPLETE (%016" PRIx64 ")\n", chid);
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if(chid && !IS_WEBTV(chid))
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g_Sectionsd->setServiceChanged( chid, true );
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#if 0
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else
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g_Sectionsd->setServiceChanged( current_channel_id, true );
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#endif
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return messages_return::handled;
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}
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//else if (msg == NeutrinoMessages::EVT_ZAP_FAILED || msg == NeutrinoMessages::EVT_ZAP_SUB_FAILED)
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//return messages_return::handled;
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else
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return messages_return::unhandled;
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}
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void CRemoteControl::getSubChannels()
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{
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//printf("[neutrino] getSubChannels, current_EPGid %llx\n", current_EPGid);
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if ( subChannels.empty() )
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{
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CSectionsdClient::LinkageDescriptorList linkedServices;
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if (CEitManager::getInstance()->getLinkageDescriptorsUniqueKey( current_EPGid, linkedServices))
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{
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if ( linkedServices.size()> 1 )
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{
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are_subchannels = true;
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//printf("CRemoteControl::getSubChannels linkedServices.size %d\n", linkedServices.size());
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for (unsigned int i=0; i< linkedServices.size(); i++)
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{
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subChannels.push_back(CSubService(
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linkedServices[i].originalNetworkId,
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linkedServices[i].serviceId,
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linkedServices[i].transportStreamId,
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linkedServices[i].name));
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//printf("CRemoteControl::getSubChannels %s: %016llx\n", linkedServices[i].name.c_str(), subChannels[i].getChannelID());
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if ((subChannels[i].getChannelID()&0xFFFFFFFFFFFFULL) == (current_channel_id&0xFFFFFFFFFFFFULL))
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selected_subchannel = i;
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}
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copySubChannelsToZapit();
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char *p = new char[sizeof(t_channel_id)];
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memcpy(p, ¤t_channel_id, sizeof(t_channel_id));
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g_RCInput->postMsg(NeutrinoMessages::EVT_ZAP_GOT_SUBSERVICES, (const neutrino_msg_data_t)p, false); // data is pointer to allocated memory
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}
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}
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}
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}
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void CRemoteControl::getNVODs()
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{
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//printf("[neutrino] getNVODs, current_EPGid %llx\n", current_EPGid);
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if ( subChannels.empty() )
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{
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CSectionsdClient::NVODTimesList NVODs;
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if (CEitManager::getInstance()->getNVODTimesServiceKey( current_channel_id, NVODs))
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{
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are_subchannels = false;
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//printf("CRemoteControl::getNVODs NVODs.size %d\n", NVODs.size());
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for (unsigned int i=0; i< NVODs.size(); i++)
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{
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if ( NVODs[i].zeit.dauer> 0 )
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{
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CSubService newService(
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NVODs[i].original_network_id,
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NVODs[i].service_id,
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NVODs[i].transport_stream_id,
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NVODs[i].zeit.startzeit,
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NVODs[i].zeit.dauer);
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CSubServiceListSorted::iterator e= subChannels.begin();
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for(; e!=subChannels.end(); ++e)
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{
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if ( e->startzeit > newService.startzeit )
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break;
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}
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subChannels.insert( e, newService );
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}
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}
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copySubChannelsToZapit();
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char *p = new char[sizeof(t_channel_id)];
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memcpy(p, ¤t_channel_id, sizeof(t_channel_id));
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g_RCInput->postMsg(NeutrinoMessages::EVT_ZAP_GOT_SUBSERVICES, (const neutrino_msg_data_t)p, false); // data is pointer to allocated memory
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if ( selected_subchannel == -1 )
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{
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// beim ersten Holen letzten NVOD-Kanal setzen!
|
||
setSubChannel( subChannels.size()- 1 );
|
||
}
|
||
else
|
||
{
|
||
// sollte nur passieren, wenn die aktuelle Sendung vorbei ist?!
|
||
selected_subchannel = -1;
|
||
}
|
||
}
|
||
}
|
||
}
|
||
|
||
void CRemoteControl::processAPIDnames()
|
||
{
|
||
has_unresolved_ctags= false;
|
||
has_ac3 = false; //use in infoviewer
|
||
int pref_found = -1;
|
||
int pref_ac3_found = -1;
|
||
int pref_idx = -1;
|
||
int pref_ac3_idx = -1;
|
||
int ac3_found = -1;
|
||
const char *desc;
|
||
char lang[4];
|
||
|
||
if(g_settings.auto_lang && (current_PIDs.APIDs.size() > 1)) {
|
||
/* first we check prefs to find pid according to pref index */
|
||
for(int i = 0; i < 3; i++) {
|
||
for(int j = 0; j < (int) current_PIDs.APIDs.size(); j++) {
|
||
desc = current_PIDs.APIDs[j].desc;
|
||
// In some cases AAC is the only audio system used
|
||
// so accept it here as a 'normal' sound track
|
||
if(strstr(desc, "(AAC)")) {
|
||
strncpy(lang, desc, 3);
|
||
lang[3] = 0;
|
||
desc = lang;
|
||
}
|
||
/* processAPIDnames called 2 times, TODO find better way to detect second call */
|
||
if(strlen( desc ) != 3)
|
||
continue;
|
||
if(g_settings.pref_lang[i].empty())
|
||
continue;
|
||
|
||
std::string temp(g_settings.pref_lang[i]);
|
||
std::map<std::string, std::string>::const_iterator it;
|
||
for(it = iso639.begin(); it != iso639.end(); ++it) {
|
||
if(temp == it->second && strcasecmp(desc, it->first.c_str()) == 0) {
|
||
/* remember first pref found index and pid*/
|
||
if(pref_found < 0) {
|
||
pref_found = j;
|
||
pref_idx = i;
|
||
}
|
||
if((current_PIDs.APIDs[j].is_ac3 || current_PIDs.APIDs[j].is_eac3)
|
||
&& g_settings.audio_DolbyDigital && (pref_ac3_found < 0)) {
|
||
pref_ac3_found = j;
|
||
pref_ac3_idx = i;
|
||
}
|
||
break;
|
||
}
|
||
}
|
||
} /* for all pids */
|
||
} /*for all prefs*/
|
||
|
||
/* reset pref ac3, if it have lower priority */
|
||
if((pref_idx >= 0) && (pref_idx < pref_ac3_idx))
|
||
pref_ac3_found = -1;
|
||
}
|
||
|
||
for(unsigned int count=0; count< current_PIDs.APIDs.size(); count++)
|
||
{
|
||
printf("Neutrino: apid name= %s (%s) pid= %X\n", current_PIDs.APIDs[count].desc, getISO639Description( current_PIDs.APIDs[count].desc ), current_PIDs.APIDs[count].pid);
|
||
if ( current_PIDs.APIDs[count].component_tag != 0xFF )
|
||
{
|
||
has_unresolved_ctags= true;
|
||
}
|
||
if ( strlen( current_PIDs.APIDs[count].desc ) == 3 )
|
||
{
|
||
// unaufgeloeste Sprache...
|
||
strcpy( current_PIDs.APIDs[count].desc, getISO639Description( current_PIDs.APIDs[count].desc ) );
|
||
}
|
||
|
||
if ( current_PIDs.APIDs[count].is_ac3 )
|
||
{
|
||
if(!strstr(current_PIDs.APIDs[count].desc, " (AC3)"))
|
||
strncat(current_PIDs.APIDs[count].desc, " (AC3)", DESC_MAX_LEN - strlen(current_PIDs.APIDs[count].desc)-1);
|
||
has_ac3 = true;
|
||
if(g_settings.audio_DolbyDigital && (ac3_found < 0))
|
||
ac3_found = count;
|
||
}
|
||
else if (current_PIDs.APIDs[count].is_aac && !strstr(current_PIDs.APIDs[count].desc, " (AAC)"))
|
||
strncat(current_PIDs.APIDs[count].desc, " (AAC)", DESC_MAX_LEN - strlen(current_PIDs.APIDs[count].desc)-1);
|
||
else if (current_PIDs.APIDs[count].is_eac3 && !strstr(current_PIDs.APIDs[count].desc, " (EAC3)"))
|
||
strncat(current_PIDs.APIDs[count].desc, " (EAC3)", DESC_MAX_LEN - strlen(current_PIDs.APIDs[count].desc)-1);
|
||
}
|
||
|
||
if ( has_unresolved_ctags )
|
||
{
|
||
if ( current_EPGid != 0 )
|
||
{
|
||
CSectionsdClient::ComponentTagList tags;
|
||
if (CEitManager::getInstance()->getComponentTagsUniqueKey(current_EPGid, tags))
|
||
{
|
||
has_unresolved_ctags = false;
|
||
|
||
for (unsigned int i=0; i< tags.size(); i++)
|
||
{
|
||
for (unsigned int j=0; j< current_PIDs.APIDs.size(); j++)
|
||
{
|
||
if ( current_PIDs.APIDs[j].component_tag == tags[i].componentTag )
|
||
{
|
||
// workaround for buggy ZDF ctags / or buggy sectionsd/drivers , who knows...
|
||
if(!tags[i].component.empty())
|
||
{
|
||
strncpy(current_PIDs.APIDs[j].desc, tags[i].component.c_str(), DESC_MAX_LEN-1);
|
||
if (current_PIDs.APIDs[j].is_ac3 && !strstr(current_PIDs.APIDs[j].desc, " (AC3)"))
|
||
strncat(current_PIDs.APIDs[j].desc, " (AC3)", DESC_MAX_LEN - strlen(current_PIDs.APIDs[j].desc)-1);
|
||
else if (current_PIDs.APIDs[j].is_aac && !strstr(current_PIDs.APIDs[j].desc, " (AAC)"))
|
||
strncat(current_PIDs.APIDs[j].desc, " (AAC)", DESC_MAX_LEN - strlen(current_PIDs.APIDs[j].desc)-1);
|
||
else if (current_PIDs.APIDs[j].is_eac3 && !strstr(current_PIDs.APIDs[j].desc, " (EAC3)"))
|
||
strncat(current_PIDs.APIDs[j].desc, " (EAC3)", DESC_MAX_LEN - strlen(current_PIDs.APIDs[j].desc)-1);
|
||
}
|
||
current_PIDs.APIDs[j].component_tag = -1;
|
||
break;
|
||
}
|
||
}
|
||
}
|
||
}
|
||
}
|
||
}
|
||
printf("Neutrino: pref_found %d pref_ac3_found %d ac3_found %d\n", pref_found, pref_ac3_found, ac3_found);
|
||
if(pref_ac3_found >= 0) {
|
||
printf("Neutrino: set apid name= %s pid= %X\n", current_PIDs.APIDs[pref_ac3_found].desc, current_PIDs.APIDs[pref_ac3_found].pid);
|
||
setAPID(pref_ac3_found);
|
||
} else if(pref_found >= 0) {
|
||
printf("Neutrino: set apid name= %s pid= %X\n", current_PIDs.APIDs[pref_found].desc, current_PIDs.APIDs[pref_found].pid);
|
||
setAPID(pref_found);
|
||
}
|
||
else if(ac3_found >= 0) {
|
||
printf("Neutrino: set apid name= %s pid= %X\n", current_PIDs.APIDs[ac3_found].desc, current_PIDs.APIDs[ac3_found].pid);
|
||
setAPID(ac3_found);
|
||
}
|
||
else if ( current_PIDs.PIDs.selected_apid >= current_PIDs.APIDs.size() )
|
||
{
|
||
setAPID( 0 );
|
||
}
|
||
|
||
char *p = new char[sizeof(t_channel_id)];
|
||
memcpy(p, ¤t_channel_id, sizeof(t_channel_id));
|
||
g_RCInput->postMsg(NeutrinoMessages::EVT_ZAP_GOTAPIDS, (const neutrino_msg_data_t)p, false); // data is pointer to allocated memory
|
||
}
|
||
|
||
|
||
void CRemoteControl::copySubChannelsToZapit(void)
|
||
{
|
||
CZapitClient::subServiceList zapitList;
|
||
|
||
for (CSubServiceListSorted::const_iterator e = subChannels.begin(); e != subChannels.end(); ++e)
|
||
zapitList.push_back(e->getAsZapitSubService());
|
||
|
||
g_Zapit->setSubServices(zapitList);
|
||
}
|
||
|
||
|
||
void CRemoteControl::setAPID( uint32_t APID )
|
||
{
|
||
if ((current_PIDs.PIDs.selected_apid == APID ) ||
|
||
(APID >= current_PIDs.APIDs.size()))
|
||
return;
|
||
|
||
current_PIDs.PIDs.selected_apid = APID;
|
||
g_Zapit->setAudioChannel( APID );
|
||
}
|
||
|
||
static const std::string empty_string;
|
||
|
||
const std::string & CRemoteControl::setSubChannel(const int numSub, const bool force_zap)
|
||
{
|
||
if ((numSub < 0) || (numSub >= (int)subChannels.size()))
|
||
return empty_string;
|
||
|
||
if ((selected_subchannel == numSub ) && (!force_zap))
|
||
return empty_string;
|
||
|
||
selected_subchannel = numSub;
|
||
current_sub_channel_id = subChannels[numSub].getChannelID();
|
||
g_InfoViewer->chanready = 0;
|
||
g_RCInput->killTimer(scrambled_timer);
|
||
|
||
CMoviePlayerGui::getInstance().stopPlayBack();
|
||
g_Zapit->zapTo_subServiceID_NOWAIT( current_sub_channel_id );
|
||
// Houdini: to restart reading the private EPG when switching to a new option
|
||
//g_Sectionsd->setServiceChanged( current_sub_channel_id , true );
|
||
|
||
return subChannels[numSub].subservice_name;
|
||
}
|
||
|
||
const std::string & CRemoteControl::subChannelUp(void)
|
||
{
|
||
//return setSubChannel((subChannels.empty()) ? -1 : (int)((selected_subchannel + 1) % subChannels.size()));
|
||
// if there are any NVOD/subchannels switch these else switch audio channel (if any)
|
||
if ( !subChannels.empty() || !g_settings.audiochannel_up_down_enable)
|
||
{
|
||
return setSubChannel( subChannels.empty() ? -1 : (int)((selected_subchannel + 1) % subChannels.size()));
|
||
}
|
||
else
|
||
{
|
||
if ( !current_PIDs.APIDs.empty() )
|
||
{
|
||
setAPID((current_PIDs.PIDs.selected_apid + 1) % current_PIDs.APIDs.size());
|
||
}
|
||
return (empty_string);
|
||
}
|
||
}
|
||
|
||
const std::string & CRemoteControl::subChannelDown(void)
|
||
{
|
||
//return setSubChannel((selected_subchannel <= 0) ? (subChannels.size() - 1) : (selected_subchannel - 1));
|
||
// if there are any NVOD/subchannels switch these else switch audio channel (if any)
|
||
if ( !subChannels.empty() || !g_settings.audiochannel_up_down_enable)
|
||
{
|
||
return setSubChannel((selected_subchannel <= 0) ? (subChannels.size() - 1) : (selected_subchannel - 1));
|
||
}
|
||
else
|
||
{
|
||
if ( !current_PIDs.APIDs.empty() )
|
||
{
|
||
if (current_PIDs.PIDs.selected_apid <= 0)
|
||
setAPID(current_PIDs.APIDs.size() - 1);
|
||
else
|
||
setAPID((current_PIDs.PIDs.selected_apid - 1));
|
||
}
|
||
return (empty_string);
|
||
}
|
||
}
|
||
|
||
void CRemoteControl::zapTo_ChannelID(const t_channel_id channel_id, const std::string & channame, const bool start_video) // UTF-8
|
||
{
|
||
current_channel_id = channel_id;
|
||
current_channel_name = channame;
|
||
//printf("zapTo_ChannelID: start_video: %d\n", start_video);
|
||
if (start_video)
|
||
startvideo();
|
||
else
|
||
stopvideo();
|
||
|
||
current_sub_channel_id = 0;
|
||
current_EPGid = 0;
|
||
//next_EPGid = 0;
|
||
|
||
memset(¤t_PIDs.PIDs, 0, sizeof(current_PIDs.PIDs) );
|
||
|
||
current_PIDs.APIDs.clear();
|
||
has_ac3 = false;
|
||
|
||
subChannels.clear();
|
||
selected_subchannel = -1;
|
||
needs_nvods = false;
|
||
director_mode = 0;
|
||
|
||
uint64_t now = time_monotonic_ms();
|
||
if ( zap_completion_timeout < now )
|
||
{
|
||
g_InfoViewer->chanready = 0;
|
||
|
||
CRecordManager::getInstance()->StopAutoRecord();
|
||
|
||
g_RCInput->killTimer(scrambled_timer);
|
||
//dvbsub_pause(true);
|
||
CZapit::getInstance()->Abort();
|
||
if (!IS_WEBTV(channel_id))
|
||
g_Sectionsd->setServiceStopped();
|
||
CMoviePlayerGui::getInstance().stopPlayBack();
|
||
g_Zapit->zapTo_serviceID_NOWAIT(channel_id);
|
||
|
||
zap_completion_timeout = now + ZAP_GUARD_TIME;
|
||
//g_Sectionsd->setServiceChanged( current_channel_id, false );
|
||
//g_RCInput->killTimer( current_programm_timer );
|
||
}
|
||
}
|
||
|
||
void CRemoteControl::startvideo()
|
||
{
|
||
if ( !is_video_started )
|
||
{
|
||
is_video_started= true;
|
||
//g_Zapit->startPlayBack();
|
||
g_Zapit->unlockPlayBack();
|
||
}
|
||
}
|
||
|
||
void CRemoteControl::stopvideo()
|
||
{
|
||
if ( is_video_started )
|
||
{
|
||
is_video_started= false;
|
||
#if HAVE_TRIPLEDRAGON
|
||
/* we need stopPlayback to blank video,
|
||
lockPlayback prevents it from being inadvertently starting */
|
||
g_Zapit->stopPlayBack();
|
||
#endif
|
||
g_Zapit->lockPlayBack();
|
||
}
|
||
}
|
||
|
||
void CRemoteControl::radioMode()
|
||
{
|
||
g_Zapit->setMode( CZapitClient::MODE_RADIO );
|
||
}
|
||
|
||
void CRemoteControl::tvMode()
|
||
{
|
||
printf("CRemoteControl::tvMode\n");
|
||
g_Zapit->setMode( CZapitClient::MODE_TV );
|
||
}
|