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VDR developer version 1.7.33 is now available at ftp://ftp.tvdr.de/vdr/Developer/vdr-1.7.33.tar.bz2 A 'diff' against the previous version is available at ftp://ftp.tvdr.de/vdr/Developer/vdr-1.7.32-1.7.33.diff MD5 checksums: 7c21451360ac7959d0d95e533d34451c vdr-1.7.33.tar.bz2 c79257198f8569bc02f43dc470ee3076 vdr-1.7.32-1.7.33.diff WARNING: ======== This is a developer version. Even though I use it in my productive environment. I strongly recommend that you only use it under controlled conditions and for testing and debugging. IMPORTANT: ========== This version of VDR no longer sets LC_NUMERIC to "C" in order to make sure any floating point numbers written to configuration files use a proper decimal point. It rather explicitly converts such numbers using the new functions atod() and dtoa(). IF YOU USE PLUGINS THAT STORE FLOATING POINT NUMBERS IN THEIR OWN CONFIGURATION FILES, YOU SHOULD SET export LC_NUMERIC=C BEFORE RUNNING VDR, UNTIL THESE PLUGINS HAVE BEEN PROPERLY UPDATED. From the HISTORY file: - In order to be able to play TS recordings from other sources, in which there is more than one PMT PID in the PAT, 'int cPatPmtParser::PatPmt(void)' has been changed to 'bool cPatPmtParser::IsPatPmt(int Pid)'. - Fixed learning remote control keys with the LCARS skin. - Updated the Macedonian OSD texts (thanks to Dimitar Petrovski). - Fixed getting only non-video packets in cCuttingThread::GetPendingPackets() (reported by Sören Moch). - Changed all occurrences of MPEG4 to H264 (pointed out by Sören Moch). - Fixed getting the number of editing sequences in case the last sequence has no actual end mark. - The cutter now only increments the TS continuity counter for packets that have a payload (pointed out by Sören Moch). - Fixed adjusting the DTS values in the cutter, to compensate for dropped B-frames (pointed out by Sören Moch). - Fixed a typo in skins.h (thanks to Lars Hanisch). - Simplified calculating the PTS offset in cPtsFixer::Fix() and fixed the overflow handling of PCR values (thanks to Sören Moch). - Fixed calling iconv_close() only with a valid iconv_t value (thanks to Juergen Lock). - Fixed faulty opening of the Recordings menu when pressing the Play key during normal live viewing mode in case there is a "last viewed" recording. - Fixed some #include statements in plugins to use <vdr/...> instead of "vdr/..." (thanks to Lars Hanisch). - Fixed some spellings in osd.h and svdrp.c (thanks to Ville Skyttä). - Fixed handling lowercase polarization characters in channel definitions if no DiSEqC is used (reported by Mike Hay, actual bug pointed out by Stefan Huelswitt). - Synchronizing system time to the transponder time is now done using adjtime() in order to avoid discontinuities (suggested by Manuel Reimer). If the time difference is more than 10 seconds, stime() is still used to do the initial sync. - The '7' and '9' keys now jump to the very beginning or end, respectively, of the recording, even if there is no mark set at that point (following a request from Andre Weidemann). - Now always setting the TDT EIT filter, because otherwise when turning on using the transponder time in the Setup menu, it would only be used after the next restart of VDR (thanks to Sundararaj Reel). - The new functions cDevice::CanScaleVideo() and cDevice::ScaleVideo() can be used by derived output devices to implement scaling the video to a given size and location (based on a suggestion by Lucian Muresan). - The SVDRP command HITK now discards any keys if the remote control is currently turned off (thanks to Alexander Hans). - The new remote control key "Play/Pause" can be used with remote controls that don't have separate keys for "Play" and "Pause", but rather have a single key for both functions (thanks to Stefan Hofmann for suggesting to implement support for such remote controls). - The new option "Setup/Replay/Pause on mark set" can be used to activate automatically going into Pause mode if an editing mark is set during replay (suggested by Andre Weidemann). - When regenerating the index of a recording, the frame rate stored in the info file is now automatically fixed if it differs from the value detected by the frame detector. - Fixed creating the edited version directory if a relative file name is given in the call to 'vdr --edit' (the '/video' part was stripped from the given file name even if it wasn't there). - The new option "Setup/Replay/Progress display time" can be used to activate automatically displaying the progress display whenever replay of a recording is started (suggested by Stefan Blochberger). - Changed reading and writing of floating point numbers into configuration files to make it independent of the decimal point used in the current locale. All calls to atof() have been replaced with the new function atod(), which makes sure the string representation of a floating point number using a '.' as decimal point will be handled correctly, even if the locale in use expects a ',' as the decimal point. Plugins that read floating point numbers from their own configuration files will also need to use atod() for this, or use a method of their own (this is not necessary if values are stored in VDR's setup.conf file, because VDR takes care of this). The reason for these changes is that floating point numbers presented to the user shall be displayed in the way defined by the current locale (suggested by Stefan Blochberger). If you use plugins that store floating point values in configuration files of their own and have not yet been adapted to this change, you should set export LC_NUMERIC=C before running VDR. Otherwise your plugin's configuration data may not be read or written correctly. - The new functions SetItemEvent(), SetItemTimer(), SetItemChannel() and SetItemRecording() of the cSkinDisplayMenu class can be reimplemented by skin plugins to display these items in a more elaborate way than just a simple line of text.
414 lines
19 KiB
C
414 lines
19 KiB
C
/*
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* eit.c: EIT section filter
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*
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* See the main source file 'vdr.c' for copyright information and
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* how to reach the author.
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*
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* Original version (as used in VDR before 1.3.0) written by
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* Robert Schneider <Robert.Schneider@web.de> and Rolf Hakenes <hakenes@hippomi.de>.
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* Adapted to 'libsi' for VDR 1.3.0 by Marcel Wiesweg <marcel.wiesweg@gmx.de>.
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*
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* $Id: eit.c 2.23 2012/12/04 11:10:10 kls Exp $
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*/
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#include "eit.h"
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#include <sys/time.h>
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#include "epg.h"
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#include "i18n.h"
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#include "libsi/section.h"
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#include "libsi/descriptor.h"
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#define VALID_TIME (31536000 * 2) // two years
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// --- cEIT ------------------------------------------------------------------
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class cEIT : public SI::EIT {
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public:
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cEIT(cSchedules *Schedules, int Source, u_char Tid, const u_char *Data, bool OnlyRunningStatus = false);
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};
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cEIT::cEIT(cSchedules *Schedules, int Source, u_char Tid, const u_char *Data, bool OnlyRunningStatus)
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:SI::EIT(Data, false)
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{
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if (!CheckCRCAndParse())
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return;
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time_t Now = time(NULL);
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if (Now < VALID_TIME)
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return; // we need the current time for handling PDC descriptors
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if (!Channels.Lock(false, 10))
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return;
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tChannelID channelID(Source, getOriginalNetworkId(), getTransportStreamId(), getServiceId());
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cChannel *channel = Channels.GetByChannelID(channelID, true);
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if (!channel || EpgHandlers.IgnoreChannel(channel)) {
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Channels.Unlock();
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return;
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}
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bool handledExternally = EpgHandlers.HandledExternally(channel);
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cSchedule *pSchedule = (cSchedule *)Schedules->GetSchedule(channel, true);
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bool Empty = true;
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bool Modified = false;
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time_t SegmentStart = 0;
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time_t SegmentEnd = 0;
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struct tm tm_r;
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struct tm t = *localtime_r(&Now, &tm_r); // this initializes the time zone in 't'
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SI::EIT::Event SiEitEvent;
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for (SI::Loop::Iterator it; eventLoop.getNext(SiEitEvent, it); ) {
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if (EpgHandlers.HandleEitEvent(pSchedule, &SiEitEvent, Tid, getVersionNumber()))
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continue; // an EPG handler has done all of the processing
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time_t StartTime = SiEitEvent.getStartTime();
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int Duration = SiEitEvent.getDuration();
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// Drop bogus events - but keep NVOD reference events, where all bits of the start time field are set to 1, resulting in a negative number.
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if (StartTime == 0 || StartTime > 0 && Duration == 0)
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continue;
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Empty = false;
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if (!SegmentStart)
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SegmentStart = StartTime;
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SegmentEnd = StartTime + Duration;
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cEvent *newEvent = NULL;
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cEvent *rEvent = NULL;
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cEvent *pEvent = (cEvent *)pSchedule->GetEvent(SiEitEvent.getEventId(), StartTime);
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if (!pEvent || handledExternally) {
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if (OnlyRunningStatus)
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continue;
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if (handledExternally && !EpgHandlers.IsUpdate(SiEitEvent.getEventId(), StartTime, Tid, getVersionNumber()))
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continue;
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// If we don't have that event yet, we create a new one.
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// Otherwise we copy the information into the existing event anyway, because the data might have changed.
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pEvent = newEvent = new cEvent(SiEitEvent.getEventId());
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newEvent->SetStartTime(StartTime);
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newEvent->SetDuration(Duration);
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if (!handledExternally)
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pSchedule->AddEvent(newEvent);
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}
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else {
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// We have found an existing event, either through its event ID or its start time.
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pEvent->SetSeen();
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uchar TableID = max(pEvent->TableID(), uchar(0x4E)); // for backwards compatibility, table ids less than 0x4E are treated as if they were "present"
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// If the new event has a higher table ID, let's skip it.
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// The lower the table ID, the more "current" the information.
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if (Tid > TableID)
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continue;
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// If the new event comes from the same table and has the same version number
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// as the existing one, let's skip it to avoid unnecessary work.
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// Unfortunately some stations (like, e.g. "Premiere") broadcast their EPG data on several transponders (like
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// the actual Premiere transponder and the Sat.1/Pro7 transponder), but use different version numbers on
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// each of them :-( So if one DVB card is tuned to the Premiere transponder, while an other one is tuned
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// to the Sat.1/Pro7 transponder, events will keep toggling because of the bogus version numbers.
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else if (Tid == TableID && pEvent->Version() == getVersionNumber())
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continue;
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EpgHandlers.SetEventID(pEvent, SiEitEvent.getEventId()); // unfortunately some stations use different event ids for the same event in different tables :-(
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EpgHandlers.SetStartTime(pEvent, StartTime);
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EpgHandlers.SetDuration(pEvent, Duration);
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}
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if (pEvent->TableID() > 0x4E) // for backwards compatibility, table ids less than 0x4E are never overwritten
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pEvent->SetTableID(Tid);
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if (Tid == 0x4E) { // we trust only the present/following info on the actual TS
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if (SiEitEvent.getRunningStatus() >= SI::RunningStatusNotRunning)
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pSchedule->SetRunningStatus(pEvent, SiEitEvent.getRunningStatus(), channel);
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}
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if (OnlyRunningStatus) {
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pEvent->SetVersion(0xFF); // we have already changed the table id above, so set the version to an invalid value to make sure the next full run will be executed
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continue; // do this before setting the version, so that the full update can be done later
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}
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pEvent->SetVersion(getVersionNumber());
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int LanguagePreferenceShort = -1;
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int LanguagePreferenceExt = -1;
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bool UseExtendedEventDescriptor = false;
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SI::Descriptor *d;
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SI::ExtendedEventDescriptors *ExtendedEventDescriptors = NULL;
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SI::ShortEventDescriptor *ShortEventDescriptor = NULL;
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cLinkChannels *LinkChannels = NULL;
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cComponents *Components = NULL;
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for (SI::Loop::Iterator it2; (d = SiEitEvent.eventDescriptors.getNext(it2)); ) {
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switch (d->getDescriptorTag()) {
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case SI::ExtendedEventDescriptorTag: {
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SI::ExtendedEventDescriptor *eed = (SI::ExtendedEventDescriptor *)d;
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if (I18nIsPreferredLanguage(Setup.EPGLanguages, eed->languageCode, LanguagePreferenceExt) || !ExtendedEventDescriptors) {
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delete ExtendedEventDescriptors;
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ExtendedEventDescriptors = new SI::ExtendedEventDescriptors;
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UseExtendedEventDescriptor = true;
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}
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if (UseExtendedEventDescriptor) {
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ExtendedEventDescriptors->Add(eed);
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d = NULL; // so that it is not deleted
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}
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if (eed->getDescriptorNumber() == eed->getLastDescriptorNumber())
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UseExtendedEventDescriptor = false;
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}
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break;
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case SI::ShortEventDescriptorTag: {
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SI::ShortEventDescriptor *sed = (SI::ShortEventDescriptor *)d;
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if (I18nIsPreferredLanguage(Setup.EPGLanguages, sed->languageCode, LanguagePreferenceShort) || !ShortEventDescriptor) {
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delete ShortEventDescriptor;
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ShortEventDescriptor = sed;
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d = NULL; // so that it is not deleted
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}
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}
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break;
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case SI::ContentDescriptorTag: {
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SI::ContentDescriptor *cd = (SI::ContentDescriptor *)d;
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SI::ContentDescriptor::Nibble Nibble;
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int NumContents = 0;
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uchar Contents[MaxEventContents] = { 0 };
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for (SI::Loop::Iterator it3; cd->nibbleLoop.getNext(Nibble, it3); ) {
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if (NumContents < MaxEventContents) {
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Contents[NumContents] = ((Nibble.getContentNibbleLevel1() & 0xF) << 4) | (Nibble.getContentNibbleLevel2() & 0xF);
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NumContents++;
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}
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}
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EpgHandlers.SetContents(pEvent, Contents);
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}
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break;
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case SI::ParentalRatingDescriptorTag: {
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int LanguagePreferenceRating = -1;
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SI::ParentalRatingDescriptor *prd = (SI::ParentalRatingDescriptor *)d;
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SI::ParentalRatingDescriptor::Rating Rating;
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for (SI::Loop::Iterator it3; prd->ratingLoop.getNext(Rating, it3); ) {
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if (I18nIsPreferredLanguage(Setup.EPGLanguages, Rating.languageCode, LanguagePreferenceRating)) {
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int ParentalRating = (Rating.getRating() & 0xFF);
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switch (ParentalRating) {
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// values defined by the DVB standard (minimum age = rating + 3 years):
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case 0x01 ... 0x0F: ParentalRating += 3; break;
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// values defined by broadcaster CSAT (now why didn't they just use 0x07, 0x09 and 0x0D?):
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case 0x11: ParentalRating = 10; break;
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case 0x12: ParentalRating = 12; break;
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case 0x13: ParentalRating = 16; break;
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default: ParentalRating = 0;
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}
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EpgHandlers.SetParentalRating(pEvent, ParentalRating);
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}
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}
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}
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break;
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case SI::PDCDescriptorTag: {
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SI::PDCDescriptor *pd = (SI::PDCDescriptor *)d;
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t.tm_isdst = -1; // makes sure mktime() will determine the correct DST setting
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int month = t.tm_mon;
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t.tm_mon = pd->getMonth() - 1;
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t.tm_mday = pd->getDay();
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t.tm_hour = pd->getHour();
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t.tm_min = pd->getMinute();
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t.tm_sec = 0;
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if (month == 11 && t.tm_mon == 0) // current month is dec, but event is in jan
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t.tm_year++;
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else if (month == 0 && t.tm_mon == 11) // current month is jan, but event is in dec
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t.tm_year--;
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time_t vps = mktime(&t);
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EpgHandlers.SetVps(pEvent, vps);
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}
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break;
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case SI::TimeShiftedEventDescriptorTag: {
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SI::TimeShiftedEventDescriptor *tsed = (SI::TimeShiftedEventDescriptor *)d;
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cSchedule *rSchedule = (cSchedule *)Schedules->GetSchedule(tChannelID(Source, channel->Nid(), channel->Tid(), tsed->getReferenceServiceId()));
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if (!rSchedule)
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break;
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rEvent = (cEvent *)rSchedule->GetEvent(tsed->getReferenceEventId());
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if (!rEvent)
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break;
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EpgHandlers.SetTitle(pEvent, rEvent->Title());
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EpgHandlers.SetShortText(pEvent, rEvent->ShortText());
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EpgHandlers.SetDescription(pEvent, rEvent->Description());
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}
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break;
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case SI::LinkageDescriptorTag: {
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SI::LinkageDescriptor *ld = (SI::LinkageDescriptor *)d;
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tChannelID linkID(Source, ld->getOriginalNetworkId(), ld->getTransportStreamId(), ld->getServiceId());
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if (ld->getLinkageType() == 0xB0) { // Premiere World
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bool hit = StartTime <= Now && Now < StartTime + Duration;
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if (hit) {
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char linkName[ld->privateData.getLength() + 1];
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strn0cpy(linkName, (const char *)ld->privateData.getData(), sizeof(linkName));
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// TODO is there a standard way to determine the character set of this string?
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cChannel *link = Channels.GetByChannelID(linkID);
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if (link != channel) { // only link to other channels, not the same one
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//fprintf(stderr, "Linkage %s %4d %4d %5d %5d %5d %5d %02X '%s'\n", hit ? "*" : "", channel->Number(), link ? link->Number() : -1, SiEitEvent.getEventId(), ld->getOriginalNetworkId(), ld->getTransportStreamId(), ld->getServiceId(), ld->getLinkageType(), linkName);//XXX
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if (link) {
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if (Setup.UpdateChannels == 1 || Setup.UpdateChannels >= 3)
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link->SetName(linkName, "", "");
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}
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else if (Setup.UpdateChannels >= 4) {
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cChannel *transponder = channel;
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if (channel->Tid() != ld->getTransportStreamId())
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transponder = Channels.GetByTransponderID(linkID);
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link = Channels.NewChannel(transponder, linkName, "", "", ld->getOriginalNetworkId(), ld->getTransportStreamId(), ld->getServiceId());
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//XXX patFilter->Trigger();
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}
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if (link) {
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if (!LinkChannels)
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LinkChannels = new cLinkChannels;
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LinkChannels->Add(new cLinkChannel(link));
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}
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}
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else
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channel->SetPortalName(linkName);
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}
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}
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}
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break;
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case SI::ComponentDescriptorTag: {
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SI::ComponentDescriptor *cd = (SI::ComponentDescriptor *)d;
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uchar Stream = cd->getStreamContent();
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uchar Type = cd->getComponentType();
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if (1 <= Stream && Stream <= 6 && Type != 0) { // 1=MPEG2-video, 2=MPEG1-audio, 3=subtitles, 4=AC3-audio, 5=H.264-video, 6=HEAAC-audio
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if (!Components)
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Components = new cComponents;
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char buffer[Utf8BufSize(256)];
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Components->SetComponent(Components->NumComponents(), Stream, Type, I18nNormalizeLanguageCode(cd->languageCode), cd->description.getText(buffer, sizeof(buffer)));
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}
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}
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break;
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default: ;
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}
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delete d;
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}
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if (!rEvent) {
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if (ShortEventDescriptor) {
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char buffer[Utf8BufSize(256)];
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EpgHandlers.SetTitle(pEvent, ShortEventDescriptor->name.getText(buffer, sizeof(buffer)));
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EpgHandlers.SetShortText(pEvent, ShortEventDescriptor->text.getText(buffer, sizeof(buffer)));
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}
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else {
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EpgHandlers.SetTitle(pEvent, NULL);
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EpgHandlers.SetShortText(pEvent, NULL);
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}
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if (ExtendedEventDescriptors) {
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char buffer[Utf8BufSize(ExtendedEventDescriptors->getMaximumTextLength(": ")) + 1];
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EpgHandlers.SetDescription(pEvent, ExtendedEventDescriptors->getText(buffer, sizeof(buffer), ": "));
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}
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else
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EpgHandlers.SetDescription(pEvent, NULL);
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}
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delete ExtendedEventDescriptors;
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delete ShortEventDescriptor;
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EpgHandlers.SetComponents(pEvent, Components);
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EpgHandlers.FixEpgBugs(pEvent);
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if (LinkChannels)
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channel->SetLinkChannels(LinkChannels);
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Modified = true;
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EpgHandlers.HandleEvent(pEvent);
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if (handledExternally)
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delete pEvent;
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}
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if (Tid == 0x4E) {
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if (Empty && getSectionNumber() == 0)
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// ETR 211: an empty entry in section 0 of table 0x4E means there is currently no event running
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pSchedule->ClrRunningStatus(channel);
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pSchedule->SetPresentSeen();
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}
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if (Modified && !OnlyRunningStatus) {
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EpgHandlers.SortSchedule(pSchedule);
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EpgHandlers.DropOutdated(pSchedule, SegmentStart, SegmentEnd, Tid, getVersionNumber());
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Schedules->SetModified(pSchedule);
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}
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Channels.Unlock();
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}
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// --- cTDT ------------------------------------------------------------------
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#define MAX_TIME_DIFF 1 // number of seconds the local time may differ from dvb time before making any corrections
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#define MAX_ADJ_DIFF 10 // number of seconds the local time may differ from dvb time to allow smooth adjustment
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#define ADJ_DELTA 300 // number of seconds between calls for smooth time adjustment
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class cTDT : public SI::TDT {
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private:
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static cMutex mutex;
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static time_t lastAdj;
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public:
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cTDT(const u_char *Data);
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};
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cMutex cTDT::mutex;
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time_t cTDT::lastAdj = 0;
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cTDT::cTDT(const u_char *Data)
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:SI::TDT(Data, false)
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{
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CheckParse();
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time_t dvbtim = getTime();
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time_t loctim = time(NULL);
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int diff = dvbtim - loctim;
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if (abs(diff) > MAX_TIME_DIFF) {
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mutex.Lock();
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if (abs(diff) > MAX_ADJ_DIFF) {
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if (stime(&dvbtim) == 0)
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isyslog("system time changed from %s (%ld) to %s (%ld)", *TimeToString(loctim), loctim, *TimeToString(dvbtim), dvbtim);
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else
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esyslog("ERROR while setting system time: %m");
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}
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else if (time(NULL) - lastAdj > ADJ_DELTA) {
|
|
lastAdj = time(NULL);
|
|
timeval delta;
|
|
delta.tv_sec = diff;
|
|
delta.tv_usec = 0;
|
|
if (adjtime(&delta, NULL) == 0)
|
|
isyslog("system time adjustment initiated from %s (%ld) to %s (%ld)", *TimeToString(loctim), loctim, *TimeToString(dvbtim), dvbtim);
|
|
else
|
|
esyslog("ERROR while adjusting system time: %m");
|
|
}
|
|
mutex.Unlock();
|
|
}
|
|
}
|
|
|
|
// --- cEitFilter ------------------------------------------------------------
|
|
|
|
time_t cEitFilter::disableUntil = 0;
|
|
|
|
cEitFilter::cEitFilter(void)
|
|
{
|
|
Set(0x12, 0x40, 0xC0); // event info now&next actual/other TS (0x4E/0x4F), future actual/other TS (0x5X/0x6X)
|
|
Set(0x14, 0x70); // TDT
|
|
}
|
|
|
|
void cEitFilter::SetDisableUntil(time_t Time)
|
|
{
|
|
disableUntil = Time;
|
|
}
|
|
|
|
void cEitFilter::Process(u_short Pid, u_char Tid, const u_char *Data, int Length)
|
|
{
|
|
if (disableUntil) {
|
|
if (time(NULL) > disableUntil)
|
|
disableUntil = 0;
|
|
else
|
|
return;
|
|
}
|
|
switch (Pid) {
|
|
case 0x12: {
|
|
if (Tid >= 0x4E && Tid <= 0x6F) {
|
|
cSchedulesLock SchedulesLock(true, 10);
|
|
cSchedules *Schedules = (cSchedules *)cSchedules::Schedules(SchedulesLock);
|
|
if (Schedules)
|
|
cEIT EIT(Schedules, Source(), Tid, Data);
|
|
else {
|
|
// If we don't get a write lock, let's at least get a read lock, so
|
|
// that we can set the running status and 'seen' timestamp (well, actually
|
|
// with a read lock we shouldn't be doing that, but it's only integers that
|
|
// get changed, so it should be ok)
|
|
cSchedulesLock SchedulesLock;
|
|
cSchedules *Schedules = (cSchedules *)cSchedules::Schedules(SchedulesLock);
|
|
if (Schedules)
|
|
cEIT EIT(Schedules, Source(), Tid, Data, true);
|
|
}
|
|
}
|
|
}
|
|
break;
|
|
case 0x14: {
|
|
if (Setup.SetSystemTime && Setup.TimeTransponder && ISTRANSPONDER(Transponder(), Setup.TimeTransponder))
|
|
cTDT TDT(Data);
|
|
}
|
|
break;
|
|
default: ;
|
|
}
|
|
}
|