mirror of
https://github.com/vdr-projects/vdr.git
synced 2025-03-01 10:50:46 +00:00
- The name of the function cDevice::GetVideoSize() wasn't very well chosen for its purpose of defining the optimum size of the OSD for the current output device. Therefore a new function named cDevice::GetOsdSize() has been introduced (suggested by Rolf Ahrenberg). Plugin authors should implement this function in classes derived from cDevice, if they are able to replay video. cDevice::GetVideoSize() still exists and should return the actual size of the video material that is currently replayed. Note that because of the many possible aspect ratios for video material, the type of the Aspect parameter of GetVideoSize() has been changed to 'double', and the Aspect parameter in both functions is named differently, because it returns different values (suggested by Reinhard Nissl). Thanks to Oliver Endriss for his input on calculating the Aspect factor in GetOsdSize(). - Fixed the way the OSD size is determined on full featured DVB cards (thanks to Oliver Endriss). - Increased MAXOSDHEIGHT to 1200 (suggested by Nicolas Huillard). - Removed limitation to PAL resolution from SPU handling. - Checking fd_video in cDvbDevice::GetVideoSize() to avoid error messages on systems with no real primary replay device (reported by Martin Neuditschko). - Added a note to cTsToPes::GetPes() about having to call it repeatedly, once it has returned a non-NULL value. - Added MPEG 1 handling to remux.c (thanks to Ales Jurik). - Fixed use of time_t in cEIT::cEIT() (thanks to Tobias Bratfisch). - Added missing update of lastOsdSizeUpdate. - EIT events are now only processed if a plausible system time is available, to avoid wrong handling of PDC descriptors (thanks to Tobias Bratfisch). - Removed unused 'synced' member from cTsToPes (reported by Christoph Haubrich). - Added a note to cTsToPes about all TS packets having to belong to the same PID, and that for video data GetPes() may only be called if the next TS packet that will be given to PutTs() has the "payload start" flag set (suggested by Christoph Haubrich). - Added a note about the meaning of PERCENTAGEDELTA in cRingBuffer::UpdatePercentage() (thanks to Rolf Ahrenberg). - The new setup option "Recording/Pause key handling" can be used to define what happens if the Pause key on the remote control is pressed during live tv (thanks to Timo Eskola). - Added a note about cFont::GetFont() not being thread-safe. - Fixed generating PAT/PMT version numbers in case the PIDs change during recording (reported by Reinhard Nissl). - Updated the Ukrainian OSD texts (thanks to Yarema Aka Knedlyk). - Fixed a memory leak when reaching the end of a recording during replay (reported by Reinhard Nissl). - Fixed calling close(-1) in cUnbufferedFile::Close() (reported by Reinhard Nissl). - Added a workaround for the broken linux-dvb driver header files (based on a patch from Tobias Grimm). - Fixed handling the length of DiSEqC command sequences (reported by Reinhard Nissl). - Fixed cOsdMenu::Display() in case the menu size has changed (thanks to Reinhard Nissl). - Added some missing 'const' keywords to avoid compilation errors with gcc 4.4 (thanks to Ville Skyttä and Ludwig Nussel). - Modified cSVDRP::CmdGRAB() to avoid writing into const data (reported by Ludwig Nussel). - Fixed calculating menu colum widths in case the font has a size other than the default size (reported by Reinhard Nissl). - Added a plausibility check for the OSD percentage parameters to avoid problems in case the values are stored in the setup.conf file in a wrong way. - Fixed variable types in cIndexFile (reported by Udo Richter).
358 lines
15 KiB
C
358 lines
15 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 2.5 2009/05/15 12:34:43 kls Exp $
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*/
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#include "eit.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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tChannelID channelID(Source, getOriginalNetworkId(), getTransportStreamId(), getServiceId());
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cChannel *channel = Channels.GetByChannelID(channelID, true);
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if (!channel)
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return; // only collect data for known channels
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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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bool HasExternalData = false;
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time_t SegmentStart = 0;
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time_t SegmentEnd = 0;
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time_t Now = time(NULL);
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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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if (Now < VALID_TIME)
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return; // we need the current time for handling PDC descriptors
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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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bool ExternalData = false;
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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) {
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if (OnlyRunningStatus)
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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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if (!pEvent)
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continue;
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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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// If the existing event has a zero table ID it was defined externally and shall
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// not be overwritten.
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uchar TableID = pEvent->TableID();
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if (TableID == 0x00) {
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if (pEvent->Version() == getVersionNumber())
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continue;
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HasExternalData = ExternalData = true;
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}
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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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else 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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}
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if (!ExternalData) {
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pEvent->SetEventID(SiEitEvent.getEventId()); // unfortunately some stations use different event ids for the same event in different tables :-(
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pEvent->SetTableID(Tid);
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pEvent->SetStartTime(StartTime);
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pEvent->SetDuration(Duration);
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}
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if (newEvent)
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pSchedule->AddEvent(newEvent);
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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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continue; // do this before setting the version, so that the full update can be done later
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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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if (ExternalData && d->getDescriptorTag() != SI::ComponentDescriptorTag) {
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delete d;
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continue;
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}
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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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break;
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case SI::ParentalRatingDescriptorTag:
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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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pEvent->SetVps(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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pEvent->SetTitle(rEvent->Title());
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pEvent->SetShortText(rEvent->ShortText());
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pEvent->SetDescription(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 <= 4 && Type != 0) { // 1=video, 2=audio, 3=subtitles, 4=AC3
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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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pEvent->SetTitle(ShortEventDescriptor->name.getText(buffer, sizeof(buffer)));
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pEvent->SetShortText(ShortEventDescriptor->text.getText(buffer, sizeof(buffer)));
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}
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else if (!HasExternalData) {
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pEvent->SetTitle(NULL);
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pEvent->SetShortText(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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pEvent->SetDescription(ExtendedEventDescriptors->getText(buffer, sizeof(buffer), ": "));
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}
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else if (!HasExternalData)
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pEvent->SetDescription(NULL);
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}
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delete ExtendedEventDescriptors;
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delete ShortEventDescriptor;
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pEvent->SetComponents(Components);
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if (!HasExternalData)
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pEvent->FixEpgBugs();
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if (LinkChannels)
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channel->SetLinkChannels(LinkChannels);
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Modified = true;
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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 (OnlyRunningStatus)
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return;
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if (Modified) {
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pSchedule->Sort();
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if (!HasExternalData)
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pSchedule->DropOutdated(SegmentStart, SegmentEnd, Tid, getVersionNumber());
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Schedules->SetModified(pSchedule);
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}
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}
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// --- cTDT ------------------------------------------------------------------
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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 int lastDiff;
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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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int cTDT::lastDiff = 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 sattim = getTime();
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time_t loctim = time(NULL);
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int diff = abs(sattim - loctim);
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if (diff > 2) {
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mutex.Lock();
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if (abs(diff - lastDiff) < 3) {
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if (stime(&sattim) == 0)
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isyslog("system time changed from %s (%ld) to %s (%ld)", *TimeToString(loctim), loctim, *TimeToString(sattim), sattim);
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else
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esyslog("ERROR while setting system time: %m");
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}
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lastDiff = diff;
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mutex.Unlock();
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}
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}
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// --- cEitFilter ------------------------------------------------------------
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cEitFilter::cEitFilter(void)
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{
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Set(0x12, 0x4E, 0xFE); // event info, actual(0x4E)/other(0x4F) TS, present/following
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Set(0x12, 0x50, 0xF0); // event info, actual TS, schedule(0x50)/schedule for future days(0x5X)
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Set(0x12, 0x60, 0xF0); // event info, other TS, schedule(0x60)/schedule for future days(0x6X)
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Set(0x14, 0x70); // TDT
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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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switch (Pid) {
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case 0x12: {
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cSchedulesLock SchedulesLock(true, 10);
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cSchedules *Schedules = (cSchedules *)cSchedules::Schedules(SchedulesLock);
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if (Schedules)
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cEIT EIT(Schedules, Source(), Tid, Data);
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else {
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// If we don't get a write lock, let's at least get a read lock, so
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// that we can set the running status and 'seen' timestamp (well, actually
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// with a read lock we shouldn't be doing that, but it's only integers that
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// get changed, so it should be ok)
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cSchedulesLock SchedulesLock;
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cSchedules *Schedules = (cSchedules *)cSchedules::Schedules(SchedulesLock);
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if (Schedules)
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cEIT EIT(Schedules, Source(), Tid, Data, true);
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}
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}
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break;
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case 0x14: {
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if (Setup.SetSystemTime && 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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}
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}
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