mirror of
https://github.com/VDR4Arch/vdr.git
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430 lines
18 KiB
C
430 lines
18 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 4.3 2017/05/03 08:58:41 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(cSectionSyncerHash &SectionSyncerHash, int Source, u_char Tid, const u_char *Data);
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};
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cEIT::cEIT(cSectionSyncerHash &SectionSyncerHash, int Source, u_char Tid, const u_char *Data)
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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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int HashId = Tid * getServiceId();
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cSectionSyncerEntry *SectionSyncerEntry = SectionSyncerHash.Get(HashId);
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if (!SectionSyncerEntry) {
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SectionSyncerEntry = new cSectionSyncerEntry;
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SectionSyncerHash.Add(SectionSyncerEntry, HashId);
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}
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bool Process = SectionSyncerEntry->Sync(getVersionNumber(), getSectionNumber(), getLastSectionNumber());
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if (Tid != 0x4E && !Process) // we need to set the 'seen' tag to watch the running status of the present/following event
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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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cStateKey ChannelsStateKey;
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cChannels *Channels = cChannels::GetChannelsWrite(ChannelsStateKey, 10);
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if (!Channels) {
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SectionSyncerEntry->Repeat(); // let's not miss any section of the EIT
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return;
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}
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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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ChannelsStateKey.Remove(false);
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return;
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}
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cStateKey SchedulesStateKey;
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cSchedules *Schedules = cSchedules::GetSchedulesWrite(SchedulesStateKey, 10);
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if (!Schedules) {
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SectionSyncerEntry->Repeat(); // let's not miss any section of the EIT
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ChannelsStateKey.Remove(false);
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return;
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}
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if (!EpgHandlers.BeginSegmentTransfer(Channel)) {
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SchedulesStateKey.Remove(false);
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ChannelsStateKey.Remove(false);
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return;
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}
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bool ChannelsModified = false;
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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 LingerLimit = Now - Setup.EPGLinger * 60;
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time_t SegmentStart = 0;
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time_t SegmentEnd = 0;
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struct tm t = { 0 };
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localtime_r(&Now, &t); // 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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// Ignore events that ended before the "EPG linger time":
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if (StartTime + Duration < LingerLimit)
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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 (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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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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if (!Process)
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continue;
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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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if (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() == SI::LinkageTypePremiere) { // 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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if (link) {
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if (Setup.UpdateChannels == 1 || Setup.UpdateChannels >= 3)
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ChannelsModified |= 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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ChannelsModified = true;
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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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ChannelsModified |= 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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ChannelsModified |= 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) {
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EpgHandlers.SortSchedule(pSchedule);
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EpgHandlers.DropOutdated(pSchedule, SegmentStart, SegmentEnd, Tid, getVersionNumber());
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pSchedule->SetModified();
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}
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SchedulesStateKey.Remove(Modified);
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ChannelsStateKey.Remove(ChannelsModified);
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EpgHandlers.EndSegmentTransfer(Modified);
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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) {
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lastAdj = time(NULL);
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timeval delta;
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delta.tv_sec = diff;
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delta.tv_usec = 0;
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if (adjtime(&delta, NULL) == 0)
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isyslog("system time adjustment initiated from %s (%ld) to %s (%ld)", *TimeToString(loctim), loctim, *TimeToString(dvbtim), dvbtim);
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else
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esyslog("ERROR while adjusting system time: %m");
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}
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mutex.Unlock();
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}
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}
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// --- cEitFilter ------------------------------------------------------------
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time_t cEitFilter::disableUntil = 0;
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cEitFilter::cEitFilter(void)
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{
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Set(0x12, 0x40, 0xC0); // event info now&next actual/other TS (0x4E/0x4F), future actual/other TS (0x5X/0x6X)
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Set(0x14, 0x70); // TDT
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}
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void cEitFilter::SetStatus(bool On)
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{
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cMutexLock MutexLock(&mutex);
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cFilter::SetStatus(On);
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sectionSyncerHash.Clear();
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}
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void cEitFilter::SetDisableUntil(time_t Time)
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{
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disableUntil = Time;
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}
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void cEitFilter::Process(u_short Pid, u_char Tid, const u_char *Data, int Length)
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{
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cMutexLock MutexLock(&mutex);
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if (disableUntil) {
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if (time(NULL) > disableUntil)
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disableUntil = 0;
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else
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return;
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}
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switch (Pid) {
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case 0x12: {
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if (Tid >= 0x4E && Tid <= 0x6F)
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cEIT EIT(sectionSyncerHash, Source(), Tid, Data);
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}
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break;
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case 0x14: {
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if (Setup.SetSystemTime && Setup.TimeSource == Source() && Setup.TimeTransponder && ISTRANSPONDER(Transponder(), Setup.TimeTransponder))
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cTDT TDT(Data);
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}
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break;
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default: ;
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}
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}
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