#define __dvb_frontend_h
#include <lib/dvb/idvb.h>
+
class eDVBFrontendParameters: public iDVBFrontendParameters
{
DECLARE_REF(eDVBFrontendParameters);
int m_type;
public:
eDVBFrontendParameters();
-
+ ~eDVBFrontendParameters()
+ {
+ }
+
RESULT getSystem(int &type) const;
- RESULT getDVBS(eDVBFrontendParametersSatellite &SWIG_OUTPUT) const;
- RESULT getDVBC(eDVBFrontendParametersCable &SWIG_OUTPUT) const;
- RESULT getDVBT(eDVBFrontendParametersTerrestrial &SWIG_OUTPUT) const;
+ RESULT getDVBS(eDVBFrontendParametersSatellite &) const;
+ RESULT getDVBC(eDVBFrontendParametersCable &) const;
+ RESULT getDVBT(eDVBFrontendParametersTerrestrial &) const;
RESULT setDVBS(const eDVBFrontendParametersSatellite &p, bool no_rotor_command_on_tune=false);
RESULT setDVBC(const eDVBFrontendParametersCable &p);
RESULT setDVBT(const eDVBFrontendParametersTerrestrial &p);
-
- RESULT calculateDifference(const iDVBFrontendParameters *parm, int &SWIG_OUTPUT) const;
-
- RESULT getHash(unsigned long &SWIG_OUTPUT) const;
+
+ RESULT calculateDifference(const iDVBFrontendParameters *parm, int &, bool exact) const;
+
+ RESULT getHash(unsigned long &) const;
};
#ifndef SWIG
class eDVBFrontend: public iDVBFrontend, public Object
{
DECLARE_REF(eDVBFrontend);
+ bool m_enabled;
int m_type;
- int m_fe;
+ int m_dvbid;
+ int m_slotid;
int m_fd;
+ bool m_need_rotor_workaround;
char m_filename[128];
+ char m_description[128];
#if HAVE_DVB_API_VERSION < 3
int m_secfd;
char m_sec_filename[128];
LINKED_NEXT_PTR, // next double linked list (for linked FEs)
SATPOS_DEPENDS_PTR, // pointer to FE with configured rotor (with twin/quattro lnb)
FREQ_OFFSET, // current frequency offset
+ CUR_VOLTAGE, // current voltage
+ CUR_TONE, // current continuous tone
NUM_DATA_ENTRIES
};
- int m_data[NUM_DATA_ENTRIES];
+ long m_data[NUM_DATA_ENTRIES];
int m_idleInputpower[2]; // 13V .. 18V
int m_runningInputpower;
int m_timeoutCount; // needed for timeout
int m_retryCount; // diseqc retry for rotor
- int m_curVoltage;
void feEvent(int);
void timeout();
void setFrontend();
int readInputpower();
bool setSecSequencePos(int steps);
+ void setRotorData(int pos, int cmd);
+ static int PriorityOrder;
public:
eDVBFrontend(int adap, int fe, int &ok);
virtual ~eDVBFrontend();
RESULT sendToneburst(int burst);
RESULT setSEC(iDVBSatelliteEquipmentControl *sec);
RESULT setSecSequence(const eSecCommandList &list);
- RESULT getData(int num, int &data);
- RESULT setData(int num, int val);
+ RESULT getData(int num, long &data);
+ RESULT setData(int num, long val);
- int readFrontendData(int type); // bitErrorRate, signalPower, signalQuality, locked, synced
- PyObject *readTransponderData(bool original);
+ int readFrontendData(int type); // bitErrorRate, signalPower, signalQualitydB, signalQuality, locked, synced
+ void getFrontendStatus(ePyObject dest);
+ void getTransponderData(ePyObject dest, bool original);
+ void getFrontendData(ePyObject dest);
int isCompatibleWith(ePtr<iDVBFrontendParameters> &feparm);
- int getID() { return m_fe; }
+ int getDVBID() { return m_dvbid; }
+ int getSlotID() { return m_slotid; }
+ bool setSlotInfo(ePyObject obj); // get a tuple (slotid, slotdescr)
+ static void setTypePriorityOrder(int val) { PriorityOrder = val; }
+ static int getTypePriorityOrder() { return PriorityOrder; }
int openFrontend();
int closeFrontend();
+ const char *getDescription() const { return m_description; }
};
#endif // SWIG