vdr/libsi/si.c
Klaus Schmidinger 5a4eb3f104 Version 1.3.5
- Fixed reading the EPG preferred language parameter from 'setup.conf'.
- Fixed switching to a visible programme in case the current channel has neither
  a video nor an audio PID.
- Fixed editing channels (SID now range checked) and creating new channels (NID,
  TID and RID are now set to 0).
- Fixed transponder handling to make it work with satellites that provide two
  transponders on the same frequency, with different polarization, like Hispasat
  at S30.0W (thanks to Thomas Bergwinkl for pointing this out). See man vdr(5)
  for details about the enhanced channel ID format.
- Since there appears to be no general solution for the UPT error yet, a recording
  now initiates an "emergency exit" if the number of UPT errors during one
  recording exceeds 10 (suggested by Gregoire Favre). Since the UPT error doesn't
  happen on my system, this has not been explicitly tested.
  The "preliminary fix" for the UPT error in VDR/dvbdevice.c has been disabled
  by default, since it makes channel switching unpleasently slow. If you want
  to have that workaround back, you can uncomment the line
  //#define WAIT_FOR_LOCK_AFTER_TUNING 1
  in VDR/dvbdevice.c.
- Adapted the 'sky' plugin to use the actual channel IDs, and to fetch EPG data
  from www.bleb.org.
- Limited automatic retuning to devices that actually provide the transponder
  (necessary for the 'sky' plugin).
- Fixed handling receivers in the 'sky' plugin, so that a recording on the same
  channel won't interrupt an ongoing Transfer Mode.
- Added subtable ID and TSDT handling to 'libsi' (thanks to Marcel Wiesweg).
- Fixed some Russian OSD texts (thanks to Vyacheslav Dikonov).
- Added the 'running status' to the EPG events. This is necessary for implementing
  the VPS function for recording.
- Removed the obsolete 'present' and 'following' handling from the EPG data.
- The EPG data is now always kept sorted chronologically in the internal data
  structures. This also means that any EPG data retrieved through the SVRDP
  command LSTE is guaranteed to be sorted by start time.
- Now using the 'running status' in the channel display, so that a programme
  that has an end time that is before the current time, but is still running,
  will still be shown in the display (provided the broadcasters handle the
  'running status' flag correctly). This also applies to programmes that have
  a start time that is in the future, but are already running.
- Implemented an "EPG linger time", which can be set to have older EPG information
  still displayed in the "Schedule" menu (thanks to Jaakko Hyvätti).
- Added PDCDescriptor handling to 'libsi'.
- Implemented handling the VPS timestamps (aka "Programme Identification Label")
  for full VPS support for timers (provided the tv stations actually broadcast
  this information). The VPS time is displayed in the event info page if it exists
  and is different than the event's start time.
- Extended the SVDRP command LSTE to allow limiting the listed data to a given
  channel, the present or following events, or events at a given time (thanks to
  Thomas Heiligenmann).
- Fixed a typo in libsi/si.h (thanks to Stéphane Esté-Gracias).
- Timers can now be set to use the VPS information to control recording a programme.
  The new setup options "Recording/Use VPS" and "Recording/VPS margin", as well as
  the "VPS" option in the individual timers, can be used to control this feature
  (see MANUAL for details).
  Note that this feature will certainly need a lot of testing before it can be
  called "safe"!
- The "Schedule" and "What's on now/next?" menus now have an additional column
  which displays information on whether there is a timer defined for an event,
  whether an event has a VPS time that's different than its start time, and
  whether an event is currently running (see MANUAL under "The "Schedule" Menu"
  for details).
2004-02-29 18:00:00 +01:00

430 lines
13 KiB
C

/***************************************************************************
* Copyright (c) 2003 by Marcel Wiesweg *
* *
* This program is free software; you can redistribute it and/or modify *
* it under the terms of the GNU General Public License as published by *
* the Free Software Foundation; either version 2 of the License, or *
* (at your option) any later version. *
* *
* $Id: si.c 1.8 2004/02/22 10:14:12 kls Exp $
* *
***************************************************************************/
#include <string.h>
#include "si.h"
#include "descriptor.h"
namespace SI {
Object::Object() {
}
Object::Object(CharArray &d) : data(d) {
}
void Object::setData(const unsigned char*d, unsigned int size, bool doCopy) {
data.assign(d, size, doCopy);
}
void Object::setData(CharArray &d) {
data=d;
}
Section::Section(const unsigned char *data, bool doCopy) {
setData(data, getLength(data), doCopy);
}
TableId Section::getTableId() const {
return getTableId(data.getData());
}
int Section::getLength() {
return getLength(data.getData());
}
TableId Section::getTableId(const unsigned char *d) {
return (TableId)((const SectionHeader *)d)->table_id;
}
int Section::getLength(const unsigned char *d) {
return HILO(((const SectionHeader *)d)->section_length)+sizeof(SectionHeader);
}
bool CRCSection::isValid() {
return CRC32::isValid((const char *)data.getData(), getLength()/*, data.FourBytes(getLength()-4)*/);
}
bool CRCSection::CheckCRCAndParse() {
if (!isValid())
return false;
CheckParse();
return true;
}
int NumberedSection::getTableIdExtension() const {
return getTableIdExtension(data.getData());
}
int NumberedSection::getTableIdExtension(const unsigned char *d) {
return HILO(((const ExtendedSectionHeader *)d)->table_id_extension);
}
bool NumberedSection::getCurrentNextIndicator() const {
return data.getData<ExtendedSectionHeader>()->current_next_indicator;
}
int NumberedSection::getVersionNumber() const {
return data.getData<ExtendedSectionHeader>()->version_number;
}
int NumberedSection::getSectionNumber() const {
return data.getData<ExtendedSectionHeader>()->section_number;
}
int NumberedSection::getLastSectionNumber() const {
return data.getData<ExtendedSectionHeader>()->last_section_number;
}
int Descriptor::getLength() {
return getLength(data.getData());
}
DescriptorTag Descriptor::getDescriptorTag() const {
return getDescriptorTag(data.getData());
}
int Descriptor::getLength(const unsigned char *d) {
return ((const DescriptorHeader*)d)->descriptor_length+sizeof(DescriptorHeader);
}
DescriptorTag Descriptor::getDescriptorTag(const unsigned char *d) {
return (DescriptorTag)((const DescriptorHeader*)d)->descriptor_tag;
}
Descriptor *DescriptorLoop::getNext(Iterator &it) {
if (it.i<getLength()) {
return createDescriptor(it.i);
}
return 0;
}
Descriptor *DescriptorLoop::getNext(Iterator &it, DescriptorTag tag, bool returnUnimplemetedDescriptor) {
Descriptor *d=0;
if (it.i<getLength()) {
const unsigned char *p=data.getData(it.i);
const unsigned char *end=p+getLength();
while (p < end) {
if (Descriptor::getDescriptorTag(p) == tag) {
d=createDescriptor(it.i);
break;
}
it.i+=Descriptor::getLength(p);
p+=Descriptor::getLength(p);
}
}
if (d && d->getDescriptorTag()==UnimplementedDescriptorTag)
return returnUnimplemetedDescriptor ? d : 0;
return d;
}
Descriptor *DescriptorLoop::getNext(Iterator &it, DescriptorTag *tags, int arrayLength, bool returnUnimplemetedDescriptor) {
Descriptor *d=0;
if (it.i<getLength()) {
const unsigned char *p=data.getData(it.i);
const unsigned char *end=p+getLength();
while (p < end) {
for (int u=0; u<arrayLength;u++)
if (Descriptor::getDescriptorTag(p) == tags[u]) {
d=createDescriptor(it.i);
break;
}
if (d)
break;
it.i+=Descriptor::getLength(p);
p+=Descriptor::getLength(p);
}
}
if (d && d->getDescriptorTag()==UnimplementedDescriptorTag)
return returnUnimplemetedDescriptor ? d : 0;
return d;
}
Descriptor *DescriptorLoop::createDescriptor(int &i) {
Descriptor *d=Descriptor::getDescriptor(data+i, domain);
i+=d->getLength();
d->CheckParse();
return d;
}
DescriptorGroup::DescriptorGroup(bool del) {
array=0;
length=0;
deleteOnDesctruction=del;
}
DescriptorGroup::~DescriptorGroup() {
if (deleteOnDesctruction)
Delete();
delete[] array;
}
void DescriptorGroup::Delete() {
for (int i=0;i<length;i++)
if (array[i]!=0) {
delete array[i];
array[i]=0;
}
}
void DescriptorGroup::Add(GroupDescriptor *d) {
if (!array) {
length=d->getLastDescriptorNumber()+1;
array=new GroupDescriptor*[length]; //numbering is zero-based
for (int i=0;i<length;i++)
array[i]=0;
} else if (length != d->getLastDescriptorNumber()+1)
return; //avoid crash in case of misuse
array[d->getDescriptorNumber()]=d;
}
bool DescriptorGroup::isComplete() {
for (int i=0;i<length;i++)
if (array[i]==0)
return false;
return true;
}
char *String::getText() {
if (getLength() < 0 || getLength() >4095)
return "text error";
char *data=new char(getLength()+1);
decodeText(data);
return data;
}
char *String::getText(char *buffer) {
if (getLength() < 0 || getLength() >4095) {
strncpy(buffer, "text error", getLength()+1);
return buffer;
}
decodeText(buffer);
return buffer;
}
//taken from libdtv, Copyright Rolf Hakenes <hakenes@hippomi.de>
void String::decodeText(char *buffer) {
const unsigned char *from=data.getData(0);
char *to=buffer;
/* Disable detection of coding tables - libdtv doesn't do it either
if ( (0x01 <= *from) && (*from <= 0x1f) ) {
codeTable=*from
}
*/
for (int i = 0; i < getLength(); i++) {
if (*from == 0)
break;
if ( ((' ' <= *from) && (*from <= '~'))
|| (*from == '\n')
|| (0xA0 <= *from)
)
*to++ = *from;
else if (*from == 0x8A)
*to++ = '\n';
else if (*from == 0x86 || *from == 0x87) //&& !(GDT_NAME_DESCRIPTOR & type))
*to++ = *from;
from++;
}
*to = '\0';
}
Descriptor *Descriptor::getDescriptor(CharArray da, DescriptorTagDomain domain) {
Descriptor *d=0;
switch (domain) {
case SI:
switch ((DescriptorTag)da.getData<DescriptorHeader>()->descriptor_tag) {
case CaDescriptorTag:
d=new CaDescriptor();
break;
case CarouselIdentifierDescriptorTag:
d=new CarouselIdentifierDescriptor();
break;
case NetworkNameDescriptorTag:
d=new NetworkNameDescriptor();
break;
case ServiceListDescriptorTag:
d=new ServiceListDescriptor();
break;
case SatelliteDeliverySystemDescriptorTag:
d=new SatelliteDeliverySystemDescriptor();
break;
case CableDeliverySystemDescriptorTag:
d=new CableDeliverySystemDescriptor();
break;
case TerrestrialDeliverySystemDescriptorTag:
d=new TerrestrialDeliverySystemDescriptor();
break;
case BouquetNameDescriptorTag:
d=new BouquetNameDescriptor();
break;
case ServiceDescriptorTag:
d=new ServiceDescriptor();
break;
case NVODReferenceDescriptorTag:
d=new NVODReferenceDescriptor();
break;
case TimeShiftedServiceDescriptorTag:
d=new TimeShiftedServiceDescriptor();
break;
case ComponentDescriptorTag:
d=new ComponentDescriptor();
break;
case StreamIdentifierDescriptorTag:
d=new StreamIdentifierDescriptor();
break;
case SubtitlingDescriptorTag:
d=new SubtitlingDescriptor();
break;
case MultilingualNetworkNameDescriptorTag:
d=new MultilingualNetworkNameDescriptor();
break;
case MultilingualBouquetNameDescriptorTag:
d=new MultilingualBouquetNameDescriptor();
break;
case MultilingualServiceNameDescriptorTag:
d=new MultilingualServiceNameDescriptor();
break;
case MultilingualComponentDescriptorTag:
d=new MultilingualComponentDescriptor();
break;
case ServiceMoveDescriptorTag:
d=new ServiceMoveDescriptor();
break;
case FrequencyListDescriptorTag:
d=new FrequencyListDescriptor();
break;
case ServiceIdentifierDescriptorTag:
d=new ServiceIdentifierDescriptor();
break;
case CaIdentifierDescriptorTag:
d=new CaIdentifierDescriptor();
break;
case ShortEventDescriptorTag:
d=new ShortEventDescriptor();
break;
case ExtendedEventDescriptorTag:
d=new ExtendedEventDescriptor();
break;
case TimeShiftedEventDescriptorTag:
d=new TimeShiftedEventDescriptor();
break;
case ContentDescriptorTag:
d=new ContentDescriptor();
break;
case ParentalRatingDescriptorTag:
d=new ParentalRatingDescriptor();
break;
case ApplicationSignallingDescriptorTag:
d=new ApplicationSignallingDescriptor();
break;
case LinkageDescriptorTag:
d=new LinkageDescriptor();
break;
case ISO639LanguageDescriptorTag:
d=new ISO639LanguageDescriptor();
break;
case PDCDescriptorTag:
d=new PDCDescriptor();
break;
//note that it is no problem to implement one
//of the unimplemented descriptors.
//defined in ISO-13818-1
case VideoStreamDescriptorTag:
case AudioStreamDescriptorTag:
case HierarchyDescriptorTag:
case RegistrationDescriptorTag:
case DataStreamAlignmentDescriptorTag:
case TargetBackgroundGridDescriptorTag:
case VideoWindowDescriptorTag:
case SystemClockDescriptorTag:
case MultiplexBufferUtilizationDescriptorTag:
case CopyrightDescriptorTag:
case MaximumBitrateDescriptorTag:
case PrivateDataIndicatorDescriptorTag:
case SmoothingBufferDescriptorTag:
case STDDescriptorTag:
case IBPDescriptorTag:
//defined in ETSI EN 300 468
case StuffingDescriptorTag:
case VBIDataDescriptorTag:
case VBITeletextDescriptorTag:
case CountryAvailabilityDescriptorTag:
case MocaicDescriptorTag:
case TeletextDescriptorTag:
case TelephoneDescriptorTag:
case LocalTimeOffsetDescriptorTag:
case PrivateDataSpecifierDescriptorTag:
case CellListDescriptorTag:
case CellFrequencyLinkDescriptorTag:
case ServiceAvailabilityDescriptorTag:
case ShortSmoothingBufferDescriptorTag:
case PartialTransportStreamDescriptorTag:
case DataBroadcastDescriptorTag:
case DataBroadcastIdDescriptorTag:
case CaSystemDescriptorTag:
case AC3DescriptorTag:
case DSNGDescriptorTag:
case AncillaryDataDescriptorTag:
case AnnouncementSupportDescriptorTag:
case AdaptationFieldDataDescriptorTag:
case TransportStreamDescriptorTag:
default:
d=new UnimplementedDescriptor();
break;
}
break;
case MHP:
switch ((DescriptorTag)da.getData<DescriptorHeader>()->descriptor_tag) {
// They once again start with 0x00 (see page 234, MHP specification)
case MHP_ApplicationDescriptorTag:
d=new MHP_ApplicationDescriptor();
break;
case MHP_ApplicationNameDescriptorTag:
d=new MHP_ApplicationNameDescriptor();
break;
case MHP_TransportProtocolDescriptorTag:
d=new MHP_TransportProtocolDescriptor();
break;
case MHP_DVBJApplicationDescriptorTag:
d=new MHP_DVBJApplicationDescriptor();
break;
case MHP_DVBJApplicationLocationDescriptorTag:
d=new MHP_DVBJApplicationLocationDescriptor();
break;
// 0x05 - 0x0A is unimplemented this library
case MHP_ExternalApplicationAuthorisationDescriptorTag:
case MHP_IPv4RoutingDescriptorTag:
case MHP_IPv6RoutingDescriptorTag:
case MHP_DVBHTMLApplicationDescriptorTag:
case MHP_DVBHTMLApplicationLocationDescriptorTag:
case MHP_DVBHTMLApplicationBoundaryDescriptorTag:
case MHP_ApplicationIconsDescriptorTag:
case MHP_PrefetchDescriptorTag:
case MHP_DelegatedApplicationDescriptorTag:
case MHP_ApplicationStorageDescriptorTag:
default:
d=new UnimplementedDescriptor();
break;
}
break;
}
d->setData(da);
return d;
}
} //end of namespace