mirror of
https://github.com/vdr-projects/vdr.git
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- Added a sleep in cDvbPlayer::Action() in case there is no data to send to the device, which avoids a busy loop on very fast machines (thanks to Martin Wache). - Modified the description of cDevice::Poll() to avoid misunderstandings. - Updated Croatian language texts (thanks to Drazen Dupor). - cDvbPlayer::Goto() now appends a Sequence End Code to get the image shown immediately with softdevices (thanks to Reinhard Nissl). - Reactivated cVideoRepacker in remux.c after some fixes (thanks to Reinhard Nissl). - Removed the fix for handling VPS timers, so that they only record if the event they are assigned to actually has the given VPS time. This has caused repeating VPS timers to stop recording prematurely. - Avoiding duplicate components in EPG events when reading epg.data or in the PUTE SVDRP command (thanks to Olaf Titz for reporting this one). - Added the command line options '--lirc', '--rcu' and '--no-kbd' to allow setting the remote control at runtime (based on a patch by Darren Salt). - Now checking whether timers or channels are currently being edited via the menu before making changes through SVDRP (thanks to Andreas Brugger for reporting a problem with this). - Files and directories are now created with rights according to the shell's umask settings (thanks to Andreas Brachold). - Fixed the cChannel copy constructor (thanks to Marcel Wiesweg for pointing out a problem with it). - Fixed an out-of-bounds memory access with audio language ids (thanks to Matthias Lenk for reporting, and Udo Richter for suggesting a fix). - Updated the Finnish OSD texts (thanks to Rolf Ahrenberg). - Added missing storing of the MenuScrollPage parameter (thanks to Frank Krömmelbein). - Added cRemux::SetTimeouts() for better use of cRemux in a single thread (thanks to Udo Richter for reporting a problem with this). - Modified cEITScanner::Process() so that it uses the primary device if it is replaying and is the only device that provides the given transponder, and that a forced EPG scan works even if EPG scan timeout is set to 0 (thanks to Bernhard Stegmaier for reporting a problem with this). - Fixed cDvbSpuBitmap::putPixel() (thanks to Reinhard Nissl). - Fixed setting system time to avoid time jumps in case of faulty data (thanks to Andreas Böttger). - Fixed a memory leak in the SVDRP command LSTE (thanks to Stefan Huelswitt).
233 lines
9.0 KiB
C++
233 lines
9.0 KiB
C++
/*
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* channels.h: Channel handling
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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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* $Id: channels.h 1.33 2005/08/06 11:23:32 kls Exp $
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*/
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#ifndef __CHANNELS_H
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#define __CHANNELS_H
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#include "config.h"
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#include "sources.h"
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#include "thread.h"
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#include "tools.h"
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#define ISTRANSPONDER(f1, f2) (abs((f1) - (f2)) < 4) //XXX
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#define CHANNELMOD_NONE 0x00
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#define CHANNELMOD_ALL 0xFF
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#define CHANNELMOD_NAME 0x01
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#define CHANNELMOD_PIDS 0x02
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#define CHANNELMOD_ID 0x04
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#define CHANNELMOD_CA 0x10
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#define CHANNELMOD_TRANSP 0x20
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#define CHANNELMOD_LANGS 0x40
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#define CHANNELMOD_RETUNE (CHANNELMOD_PIDS | CHANNELMOD_CA | CHANNELMOD_TRANSP)
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#define CHANNELSMOD_NONE 0
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#define CHANNELSMOD_AUTO 1
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#define CHANNELSMOD_USER 2
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#define MAXAPIDS 32 // audio
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#define MAXDPIDS 16 // dolby (AC3 + DTS)
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#define MAXSPIDS 8 // subtitles
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#define MAXCAIDS 8 // conditional access
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struct tChannelParameterMap {
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int userValue;
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int driverValue;
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};
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//XXX into cChannel???
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int MapToUser(int Value, const tChannelParameterMap *Map);
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int MapToDriver(int Value, const tChannelParameterMap *Map);
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int UserIndex(int Value, const tChannelParameterMap *Map);
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int DriverIndex(int Value, const tChannelParameterMap *Map);
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extern const tChannelParameterMap InversionValues[];
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extern const tChannelParameterMap BandwidthValues[];
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extern const tChannelParameterMap CoderateValues[];
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extern const tChannelParameterMap ModulationValues[];
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extern const tChannelParameterMap TransmissionValues[];
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extern const tChannelParameterMap GuardValues[];
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extern const tChannelParameterMap HierarchyValues[];
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struct tChannelID {
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private:
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int source;
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int nid;
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int tid;
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int sid;
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int rid;
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public:
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tChannelID(void) { source = nid = tid = sid = rid = 0; }
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tChannelID(int Source, int Nid, int Tid, int Sid, int Rid = 0) { source = Source; nid = Nid; tid = Tid; sid = Sid; rid = Rid; }
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bool operator== (const tChannelID &arg) const { return source == arg.source && nid == arg.nid && tid == arg.tid && sid == arg.sid && rid == arg.rid; }
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bool Valid(void) const { return (nid || tid) && sid; } // rid is optional and source may be 0//XXX source may not be 0???
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tChannelID &ClrRid(void) { rid = 0; return *this; }
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tChannelID &ClrPolarization(void);
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static tChannelID FromString(const char *s);
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cString ToString(void) const;
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static const tChannelID InvalidID;
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};
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class cChannel;
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class cLinkChannel : public cListObject {
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private:
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cChannel *channel;
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public:
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cLinkChannel(cChannel *Channel) { channel = Channel; }
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cChannel *Channel(void) { return channel; }
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};
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class cLinkChannels : public cList<cLinkChannel> {
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};
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class cChannel : public cListObject {
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friend class cMenuEditChannel;
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private:
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static cString ToText(const cChannel *Channel);
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char *name;
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char *shortName;
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char *provider;
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char *portalName;
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int __BeginData__;
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int frequency; // MHz
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int source;
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int srate;
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int vpid;
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int ppid;
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int apids[MAXAPIDS + 1]; // list is zero-terminated
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char alangs[MAXAPIDS][4];
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int dpids[MAXDPIDS + 1]; // list is zero-terminated
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char dlangs[MAXDPIDS][4];
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int spids[MAXSPIDS + 1]; // list is zero-terminated
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char slangs[MAXSPIDS][4];
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int tpid;
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int caids[MAXCAIDS + 1]; // list is zero-terminated
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int nid;
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int tid;
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int sid;
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int rid;
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int number; // Sequence number assigned on load
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bool groupSep;
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char polarization;
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int inversion;
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int bandwidth;
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int coderateH;
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int coderateL;
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int modulation;
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int transmission;
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int guard;
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int hierarchy;
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int __EndData__;
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int modification;
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cLinkChannels *linkChannels;
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cChannel *refChannel;
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cString ParametersToString(void) const;
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bool StringToParameters(const char *s);
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public:
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cChannel(void);
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cChannel(const cChannel &Channel);
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~cChannel();
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cChannel& operator= (const cChannel &Channel);
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cString ToText(void) const;
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bool Parse(const char *s);
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bool Save(FILE *f);
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const char *Name(void) const { return name; }
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const char *ShortName(bool OrName = false) const { return (OrName && isempty(shortName)) ? name : shortName; }
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const char *Provider(void) const { return provider; }
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const char *PortalName(void) const { return portalName; }
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int Frequency(void) const { return frequency; } ///< Returns the actual frequency, as given in 'channels.conf'
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int Transponder(void) const; ///< Returns the transponder frequency in MHz, plus the polarization in case of sat
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static int Transponder(int Frequency, char Polarization); ///< builds the transponder from the given Frequency and Polarization
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int Source(void) const { return source; }
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int Srate(void) const { return srate; }
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int Vpid(void) const { return vpid; }
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int Ppid(void) const { return ppid; }
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const int *Apids(void) const { return apids; }
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const int *Dpids(void) const { return dpids; }
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const int *Spids(void) const { return spids; }
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int Apid(int i) const { return (0 <= i && i < MAXAPIDS) ? apids[i] : 0; }
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int Dpid(int i) const { return (0 <= i && i < MAXDPIDS) ? dpids[i] : 0; }
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int Spid(int i) const { return (0 <= i && i < MAXSPIDS) ? spids[i] : 0; }
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const char *Alang(int i) const { return (0 <= i && i < MAXAPIDS) ? alangs[i] : ""; }
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const char *Dlang(int i) const { return (0 <= i && i < MAXDPIDS) ? dlangs[i] : ""; }
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const char *Slang(int i) const { return (0 <= i && i < MAXSPIDS) ? slangs[i] : ""; }
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int Tpid(void) const { return tpid; }
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int Ca(int Index = 0) const { return Index < MAXCAIDS ? caids[Index] : 0; }
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int Nid(void) const { return nid; }
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int Tid(void) const { return tid; }
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int Sid(void) const { return sid; }
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int Rid(void) const { return rid; }
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int Number(void) const { return number; }
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void SetNumber(int Number) { number = Number; }
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bool GroupSep(void) const { return groupSep; }
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char Polarization(void) const { return polarization; }
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int Inversion(void) const { return inversion; }
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int Bandwidth(void) const { return bandwidth; }
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int CoderateH(void) const { return coderateH; }
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int CoderateL(void) const { return coderateL; }
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int Modulation(void) const { return modulation; }
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int Transmission(void) const { return transmission; }
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int Guard(void) const { return guard; }
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int Hierarchy(void) const { return hierarchy; }
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bool IsCable(void) const { return cSource::IsCable(source); }
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bool IsSat(void) const { return cSource::IsSat(source); }
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bool IsTerr(void) const { return cSource::IsTerr(source); }
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tChannelID GetChannelID(void) const { return tChannelID(source, nid, (nid || tid) ? tid : Transponder(), sid, rid); }
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int Modification(int Mask = CHANNELMOD_ALL);
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void CopyTransponderData(const cChannel *Channel);
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bool SetSatTransponderData(int Source, int Frequency, char Polarization, int Srate, int CoderateH);
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bool SetCableTransponderData(int Source, int Frequency, int Modulation, int Srate, int CoderateH);
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bool SetTerrTransponderData(int Source, int Frequency, int Bandwidth, int Modulation, int Hierarchy, int CodeRateH, int CodeRateL, int Guard, int Transmission);
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void SetId(int Nid, int Tid, int Sid, int Rid = 0);
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void SetName(const char *Name, const char *ShortName, const char *Provider);
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void SetPortalName(const char *PortalName);
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void SetPids(int Vpid, int Ppid, int *Apids, char ALangs[][4], int *Dpids, char DLangs[][4], int Tpid);
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void SetCaIds(const int *CaIds); // list must be zero-terminated
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void SetCaDescriptors(int Level);
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void SetLinkChannels(cLinkChannels *LinkChannels);
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void SetRefChannel(cChannel *RefChannel);
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};
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class cChannels : public cRwLock, public cConfig<cChannel> {
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private:
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int maxNumber;
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int modified;
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int beingEdited;
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void DeleteDuplicateChannels(void);
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public:
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cChannels(void);
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bool Load(const char *FileName, bool AllowComments = false, bool MustExist = false);
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int GetNextGroup(int Idx); // Get next channel group
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int GetPrevGroup(int Idx); // Get previous channel group
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int GetNextNormal(int Idx); // Get next normal channel (not group)
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void ReNumber(void); // Recalculate 'number' based on channel type
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cChannel *GetByNumber(int Number, int SkipGap = 0);
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cChannel *GetByServiceID(int Source, int Transponder, unsigned short ServiceID);
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cChannel *GetByChannelID(tChannelID ChannelID, bool TryWithoutRid = false, bool TryWithoutPolarization = false);
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int BeingEdited(void) { return beingEdited; }
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void IncBeingEdited(void) { beingEdited++; }
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void DecBeingEdited(void) { beingEdited--; }
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bool HasUniqueChannelID(cChannel *NewChannel, cChannel *OldChannel = NULL);
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bool SwitchTo(int Number);
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int MaxNumber(void) { return maxNumber; }
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void SetModified(bool ByUser = false);
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int Modified(void);
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///< Returns 0 if no channels have been modified, 1 if an automatic
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///< modification has been made, and 2 if the user has made a modification.
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///< Calling this function resets the 'modified' flag to 0.
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cChannel *NewChannel(const cChannel *Transponder, const char *Name, const char *ShortName, const char *Provider, int Nid, int Tid, int Sid, int Rid = 0);
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};
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extern cChannels Channels;
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cString ChannelString(const cChannel *Channel, int Number);
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#endif //__CHANNELS_H
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