add timeout for MessageBox screens (just add timeout=<seconds> as argument when creat...
[enigma2.git] / lib / dvb / frontend.cpp
1 #include <lib/dvb/dvb.h>
2 #include <lib/base/eerror.h>
3 #include <errno.h>
4 #include <unistd.h>
5 #include <fcntl.h>
6 #include <sys/ioctl.h>
7
8 #ifndef I2C_SLAVE_FORCE
9 #define I2C_SLAVE_FORCE 0x0706
10 #endif
11
12 #if HAVE_DVB_API_VERSION < 3
13 #include <ost/frontend.h>
14 #include <ost/sec.h>
15 #define QAM_AUTO                                (Modulation)6
16 #define TRANSMISSION_MODE_AUTO  (TransmitMode)2
17 #define BANDWIDTH_AUTO                  (BandWidth)3
18 #define GUARD_INTERVAL_AUTO             (GuardInterval)4
19 #define HIERARCHY_AUTO                  (Hierarchy)4
20 #define parm_frequency parm.Frequency
21 #define parm_inversion parm.Inversion
22 #define parm_u_qpsk_symbol_rate parm.u.qpsk.SymbolRate
23 #define parm_u_qpsk_fec_inner parm.u.qpsk.FEC_inner
24 #define parm_u_qam_symbol_rate parm.u.qam.SymbolRate
25 #define parm_u_qam_fec_inner parm.u.qam.FEC_inner
26 #define parm_u_qam_modulation parm.u.qam.QAM
27 #define parm_u_ofdm_bandwidth parm.u.ofdm.bandWidth
28 #define parm_u_ofdm_code_rate_LP parm.u.ofdm.LP_CodeRate
29 #define parm_u_ofdm_code_rate_HP parm.u.ofdm.HP_CodeRate
30 #define parm_u_ofdm_constellation parm.u.ofdm.Constellation
31 #define parm_u_ofdm_transmission_mode parm.u.ofdm.TransmissionMode
32 #define parm_u_ofdm_guard_interval parm.u.ofdm.guardInterval
33 #define parm_u_ofdm_hierarchy_information parm.u.ofdm.HierarchyInformation
34 #else
35 #include <linux/dvb/frontend.h>
36 #define parm_frequency parm.frequency
37 #define parm_inversion parm.inversion
38 #define parm_u_qpsk_symbol_rate parm.u.qpsk.symbol_rate
39 #define parm_u_qpsk_fec_inner parm.u.qpsk.fec_inner
40 #define parm_u_qam_symbol_rate parm.u.qam.symbol_rate
41 #define parm_u_qam_fec_inner parm.u.qam.fec_inner
42 #define parm_u_qam_modulation parm.u.qam.modulation
43 #define parm_u_ofdm_bandwidth parm.u.ofdm.bandwidth
44 #define parm_u_ofdm_code_rate_LP parm.u.ofdm.code_rate_LP
45 #define parm_u_ofdm_code_rate_HP parm.u.ofdm.code_rate_HP
46 #define parm_u_ofdm_constellation parm.u.ofdm.constellation
47 #define parm_u_ofdm_transmission_mode parm.u.ofdm.transmission_mode
48 #define parm_u_ofdm_guard_interval parm.u.ofdm.guard_interval
49 #define parm_u_ofdm_hierarchy_information parm.u.ofdm.hierarchy_information
50 #ifdef FEC_9_10
51         #warning "FEC_9_10 already exist in dvb api ... it seems it is now ready for DVB-S2"
52 #else
53         #define FEC_S2_QPSK_1_2 (fe_code_rate_t)(FEC_AUTO+1)
54         #define FEC_S2_QPSK_2_3 (fe_code_rate_t)(FEC_S2_QPSK_1_2+1)
55         #define FEC_S2_QPSK_3_4 (fe_code_rate_t)(FEC_S2_QPSK_2_3+1)
56         #define FEC_S2_QPSK_5_6 (fe_code_rate_t)(FEC_S2_QPSK_3_4+1)
57         #define FEC_S2_QPSK_7_8 (fe_code_rate_t)(FEC_S2_QPSK_5_6+1)
58         #define FEC_S2_QPSK_8_9 (fe_code_rate_t)(FEC_S2_QPSK_7_8+1)
59         #define FEC_S2_QPSK_3_5 (fe_code_rate_t)(FEC_S2_QPSK_8_9+1)
60         #define FEC_S2_QPSK_4_5 (fe_code_rate_t)(FEC_S2_QPSK_3_5+1)
61         #define FEC_S2_QPSK_9_10 (fe_code_rate_t)(FEC_S2_QPSK_4_5+1)
62         #define FEC_S2_8PSK_1_2 (fe_code_rate_t)(FEC_S2_QPSK_9_10+1)
63         #define FEC_S2_8PSK_2_3 (fe_code_rate_t)(FEC_S2_8PSK_1_2+1)
64         #define FEC_S2_8PSK_3_4 (fe_code_rate_t)(FEC_S2_8PSK_2_3+1)
65         #define FEC_S2_8PSK_5_6 (fe_code_rate_t)(FEC_S2_8PSK_3_4+1)
66         #define FEC_S2_8PSK_7_8 (fe_code_rate_t)(FEC_S2_8PSK_5_6+1)
67         #define FEC_S2_8PSK_8_9 (fe_code_rate_t)(FEC_S2_8PSK_7_8+1)
68         #define FEC_S2_8PSK_3_5 (fe_code_rate_t)(FEC_S2_8PSK_8_9+1)
69         #define FEC_S2_8PSK_4_5 (fe_code_rate_t)(FEC_S2_8PSK_3_5+1)
70         #define FEC_S2_8PSK_9_10 (fe_code_rate_t)(FEC_S2_8PSK_4_5+1)
71 #endif
72 #endif
73
74 #include <dvbsi++/satellite_delivery_system_descriptor.h>
75 #include <dvbsi++/cable_delivery_system_descriptor.h>
76 #include <dvbsi++/terrestrial_delivery_system_descriptor.h>
77
78 void eDVBDiseqcCommand::setCommandString(const char *str)
79 {
80         if (!str)
81                 return;
82         len=0;
83         int slen = strlen(str);
84         if (slen % 2)
85         {
86                 eDebug("invalid diseqc command string length (not 2 byte aligned)");
87                 return;
88         }
89         if (slen > MAX_DISEQC_LENGTH*2)
90         {
91                 eDebug("invalid diseqc command string length (string is to long)");
92                 return;
93         }
94         unsigned char val=0;
95         for (int i=0; i < slen; ++i)
96         {
97                 unsigned char c = str[i];
98                 switch(c)
99                 {
100                         case '0' ... '9': c-=48; break;
101                         case 'a' ... 'f': c-=87; break;
102                         case 'A' ... 'F': c-=55; break;
103                         default:
104                                 eDebug("invalid character in hex string..ignore complete diseqc command !");
105                                 return;
106                 }
107                 if ( i % 2 )
108                 {
109                         val |= c;
110                         data[i/2] = val;
111                 }
112                 else
113                         val = c << 4;
114         }
115         len = slen/2;
116 }
117
118 void eDVBFrontendParametersSatellite::set(const SatelliteDeliverySystemDescriptor &descriptor)
119 {
120         frequency    = descriptor.getFrequency() * 10;
121         symbol_rate  = descriptor.getSymbolRate() * 100;
122         polarisation = descriptor.getPolarization();
123         fec = descriptor.getFecInner();
124         if ( fec != FEC::fNone && fec > FEC::f9_10 )
125                 fec = FEC::fAuto;
126         inversion = Inversion::Unknown;
127         orbital_position  = ((descriptor.getOrbitalPosition() >> 12) & 0xF) * 1000;
128         orbital_position += ((descriptor.getOrbitalPosition() >> 8) & 0xF) * 100;
129         orbital_position += ((descriptor.getOrbitalPosition() >> 4) & 0xF) * 10;
130         orbital_position += ((descriptor.getOrbitalPosition()) & 0xF);
131         if (orbital_position && (!descriptor.getWestEastFlag()))
132                 orbital_position = 3600 - orbital_position;
133         system = descriptor.getModulationSystem();
134         modulation = descriptor.getModulation();
135         if (system == System::DVB_S && modulation == Modulation::M8PSK)
136         {
137                 eDebug("satellite_delivery_descriptor non valid modulation type.. force QPSK");
138                 modulation=QPSK;
139         }
140         roll_off = descriptor.getRollOff();
141         if (system == System::DVB_S2)
142         {
143                 eDebug("SAT DVB-S2 freq %d, %s, pos %d, sr %d, fec %d, modulation %d, roll_off %d",
144                         frequency,
145                         polarisation ? "hor" : "vert",
146                         orbital_position,
147                         symbol_rate, fec,
148                         modulation,
149                         roll_off);
150         }
151         else
152         {
153                 eDebug("SAT DVB-S freq %d, %s, pos %d, sr %d, fec %d",
154                         frequency,
155                         polarisation ? "hor" : "vert",
156                         orbital_position,
157                         symbol_rate, fec);
158         }
159 }
160
161 void eDVBFrontendParametersCable::set(const CableDeliverySystemDescriptor &descriptor)
162 {
163         frequency = descriptor.getFrequency() / 10;
164         symbol_rate = descriptor.getSymbolRate() * 100;
165         fec_inner = descriptor.getFecInner();
166         if ( fec_inner == 0xF )
167                 fec_inner = FEC::fNone;
168         modulation = descriptor.getModulation();
169         if ( modulation > 0x5 )
170                 modulation = Modulation::Auto;
171         inversion = Inversion::Unknown;
172         eDebug("Cable freq %d, mod %d, sr %d, fec %d",
173                 frequency,
174                 modulation, symbol_rate, fec_inner);
175 }
176
177 void eDVBFrontendParametersTerrestrial::set(const TerrestrialDeliverySystemDescriptor &descriptor)
178 {
179         frequency = descriptor.getCentreFrequency() * 10;
180         bandwidth = descriptor.getBandwidth();
181         if ( bandwidth > 2 ) // 5Mhz forced to auto
182                 bandwidth = Bandwidth::BwAuto;
183         code_rate_HP = descriptor.getCodeRateHpStream();
184         if (code_rate_HP > 4)
185                 code_rate_HP = FEC::fAuto;
186         code_rate_LP = descriptor.getCodeRateLpStream();
187         if (code_rate_LP > 4)
188                 code_rate_LP = FEC::fAuto;
189         transmission_mode = descriptor.getTransmissionMode();
190         if (transmission_mode > 1) // TM4k forced to auto
191                 transmission_mode = TransmissionMode::TMAuto;
192         guard_interval = descriptor.getGuardInterval();
193         if (guard_interval > 3)
194                 guard_interval = GuardInterval::GI_Auto;
195         hierarchy = descriptor.getHierarchyInformation()&3;
196         modulation = descriptor.getConstellation();
197         if (modulation > 2)
198                 modulation = Modulation::Auto;
199         inversion = Inversion::Unknown;
200         eDebug("Terr freq %d, bw %d, cr_hp %d, cr_lp %d, tm_mode %d, guard %d, hierarchy %d, const %d",
201                 frequency, bandwidth, code_rate_HP, code_rate_LP, transmission_mode,
202                 guard_interval, hierarchy, modulation);
203 }
204
205 eDVBFrontendParameters::eDVBFrontendParameters(): m_type(-1)
206 {
207 }
208
209 DEFINE_REF(eDVBFrontendParameters);
210
211 RESULT eDVBFrontendParameters::getSystem(int &t) const
212 {
213         if (m_type == -1)
214                 return -1;
215         t = m_type;
216         return 0;
217 }
218
219 RESULT eDVBFrontendParameters::getDVBS(eDVBFrontendParametersSatellite &p) const
220 {
221         if (m_type != iDVBFrontend::feSatellite)
222                 return -1;
223         p = sat;
224         return 0;
225 }
226
227 RESULT eDVBFrontendParameters::getDVBC(eDVBFrontendParametersCable &p) const
228 {
229         if (m_type != iDVBFrontend::feCable)
230                 return -1;
231         p = cable;
232         return 0;
233 }
234
235 RESULT eDVBFrontendParameters::getDVBT(eDVBFrontendParametersTerrestrial &p) const
236 {
237         if (m_type != iDVBFrontend::feTerrestrial)
238                 return -1;
239         p = terrestrial;
240         return 0;
241 }
242
243 RESULT eDVBFrontendParameters::setDVBS(const eDVBFrontendParametersSatellite &p, bool no_rotor_command_on_tune)
244 {
245         sat = p;
246         sat.no_rotor_command_on_tune = no_rotor_command_on_tune;
247         m_type = iDVBFrontend::feSatellite;
248         return 0;
249 }
250
251 RESULT eDVBFrontendParameters::setDVBC(const eDVBFrontendParametersCable &p)
252 {
253         cable = p;
254         m_type = iDVBFrontend::feCable;
255         return 0;
256 }
257
258 RESULT eDVBFrontendParameters::setDVBT(const eDVBFrontendParametersTerrestrial &p)
259 {
260         terrestrial = p;
261         m_type = iDVBFrontend::feTerrestrial;
262         return 0;
263 }
264
265 RESULT eDVBFrontendParameters::calculateDifference(const iDVBFrontendParameters *parm, int &diff) const
266 {
267         if (!parm)
268                 return -1;
269         int type;
270         if (parm->getSystem(type))
271                 return -1;
272         if (type != m_type)
273         {
274                 diff = 1<<30; // big difference
275                 return 0;
276         }
277
278         switch (type)
279         {
280         case iDVBFrontend::feSatellite:
281         {
282                 eDVBFrontendParametersSatellite osat;
283                 if (parm->getDVBS(osat))
284                         return -2;
285
286                 if (sat.orbital_position != osat.orbital_position)
287                         diff = 1<<29;
288                 else if (sat.polarisation != osat.polarisation)
289                         diff = 1<<28;
290                 else
291                 {
292                         diff = abs(sat.frequency - osat.frequency);
293                         diff += abs(sat.symbol_rate - osat.symbol_rate);
294                 }
295                 return 0;
296         }
297         case iDVBFrontend::feCable:
298                 eDVBFrontendParametersCable ocable;
299                 if (parm->getDVBC(ocable))
300                         return -2;
301
302                 if (cable.modulation != ocable.modulation && cable.modulation != eDVBFrontendParametersCable::Modulation::Auto && ocable.modulation != eDVBFrontendParametersCable::Modulation::Auto)
303                         diff = 1 << 29;
304                 else if (cable.inversion != ocable.inversion && cable.inversion != eDVBFrontendParametersCable::Inversion::Unknown && ocable.inversion != eDVBFrontendParametersCable::Inversion::Unknown)
305                         diff = 1 << 28;
306                 else
307                 {
308                         diff = abs(cable.frequency - ocable.frequency);
309                         diff += abs(cable.symbol_rate - ocable.symbol_rate);
310                 }
311
312                 return 0;
313         case iDVBFrontend::feTerrestrial:
314                 eDVBFrontendParametersTerrestrial oterrestrial;
315                 if (parm->getDVBT(oterrestrial))
316                         return -2;
317
318                 diff = abs(terrestrial.frequency - oterrestrial.frequency);
319
320                 return 0;
321         default:
322                 return -1;
323         }
324         return 0;
325 }
326
327 RESULT eDVBFrontendParameters::getHash(unsigned long &hash) const
328 {
329         switch (m_type)
330         {
331         case iDVBFrontend::feSatellite:
332         {
333                 hash = (sat.orbital_position << 16);
334                 hash |= ((sat.frequency/1000)&0xFFFF)|((sat.polarisation&1) << 15);
335                 return 0;
336         }
337         case iDVBFrontend::feCable:
338                 hash = 0xFFFF0000;
339                 return 0;
340         case iDVBFrontend::feTerrestrial:
341                 hash = 0xEEEE0000;
342                 return 0;
343         default:
344                 return -1;
345         }
346 }
347
348 DEFINE_REF(eDVBFrontend);
349
350 eDVBFrontend::eDVBFrontend(int adap, int fe, int &ok)
351         :m_type(-1), m_fe(fe), m_fd(-1), m_sn(0), m_timeout(0), m_tuneTimer(0)
352 #if HAVE_DVB_API_VERSION < 3
353         ,m_secfd(-1)
354 #endif
355 {
356 #if HAVE_DVB_API_VERSION < 3
357         sprintf(m_filename, "/dev/dvb/card%d/frontend%d", adap, fe);
358         sprintf(m_sec_filename, "/dev/dvb/card%d/sec%d", adap, fe);
359 #else
360         sprintf(m_filename, "/dev/dvb/adapter%d/frontend%d", adap, fe);
361 #endif
362         m_timeout = new eTimer(eApp);
363         CONNECT(m_timeout->timeout, eDVBFrontend::timeout);
364
365         m_tuneTimer = new eTimer(eApp);
366         CONNECT(m_tuneTimer->timeout, eDVBFrontend::tuneLoop);
367
368         for (int i=0; i<eDVBFrontend::NUM_DATA_ENTRIES; ++i)
369                 m_data[i] = -1;
370
371         m_idleInputpower[0]=m_idleInputpower[1]=0;
372
373         ok = !openFrontend();
374         closeFrontend();
375 }
376
377 int eDVBFrontend::openFrontend()
378 {
379         if (m_sn)
380                 return -1;  // already opened
381
382         m_state=0;
383         m_tuning=0;
384
385 #if HAVE_DVB_API_VERSION < 3
386         if (m_secfd < 0)
387         {
388                 m_secfd = ::open(m_sec_filename, O_RDWR);
389                 if (m_secfd < 0)
390                 {
391                         eWarning("failed! (%s) %m", m_sec_filename);
392                         return -1;
393                 }
394         }
395         else
396                 eWarning("sec %d already opened", m_fe);
397         FrontendInfo fe_info;
398 #else
399         dvb_frontend_info fe_info;
400 #endif
401         eDebug("opening frontend %d", m_fe);
402         if (m_fd < 0)
403         {
404                 m_fd = ::open(m_filename, O_RDWR|O_NONBLOCK);
405                 if (m_fd < 0)
406                 {
407                         eWarning("failed! (%s) %m", m_filename);
408 #if HAVE_DVB_API_VERSION < 3
409                         ::close(m_secfd);
410                         m_secfd=-1;
411 #endif
412                         return -1;
413                 }
414         }
415         else
416                 eWarning("frontend %d already opened", m_fe);
417         if (m_type == -1)
418         {
419                 if (::ioctl(m_fd, FE_GET_INFO, &fe_info) < 0)
420                 {
421                         eWarning("ioctl FE_GET_INFO failed");
422                         ::close(m_fd);
423                         m_fd = -1;
424 #if HAVE_DVB_API_VERSION < 3
425                         ::close(m_secfd);
426                         m_secfd=-1;
427 #endif
428                         return -1;
429                 }
430
431                 switch (fe_info.type)
432                 {
433                 case FE_QPSK:
434                         m_type = iDVBFrontend::feSatellite;
435                         break;
436                 case FE_QAM:
437                         m_type = iDVBFrontend::feCable;
438                         break;
439                 case FE_OFDM:
440                         m_type = iDVBFrontend::feTerrestrial;
441                         break;
442                 default:
443                         eWarning("unknown frontend type.");
444                         ::close(m_fd);
445                         m_fd = -1;
446 #if HAVE_DVB_API_VERSION < 3
447                         ::close(m_secfd);
448                         m_secfd=-1;
449 #endif
450                         return -1;
451                 }
452                 eDebug("detected %s frontend", "satellite\0cable\0    terrestrial"+fe_info.type*10);
453         }
454
455         setTone(iDVBFrontend::toneOff);
456         setVoltage(iDVBFrontend::voltageOff);
457
458         m_sn = new eSocketNotifier(eApp, m_fd, eSocketNotifier::Read);
459         CONNECT(m_sn->activated, eDVBFrontend::feEvent);
460
461         return 0;
462 }
463
464 int eDVBFrontend::closeFrontend()
465 {
466         eDVBRegisteredFrontend *linked_fe = (eDVBRegisteredFrontend*)m_data[LINKED_NEXT_PTR];
467         while (linked_fe != (eDVBRegisteredFrontend*)-1)
468         {
469                 if (linked_fe->m_inuse)
470                 {
471                         eDebug("dont close frontend %d until the linked frontend %d is still in use",
472                                 m_fe, linked_fe->m_frontend->getID());
473                         return -1;
474                 }
475                 linked_fe->m_frontend->getData(LINKED_NEXT_PTR, (int&)linked_fe);
476         }
477         if (m_fd >= 0)
478         {
479                 eDebug("close frontend %d", m_fe);
480                 m_tuneTimer->stop();
481                 setTone(iDVBFrontend::toneOff);
482                 setVoltage(iDVBFrontend::voltageOff);
483                 if (m_sec)
484                         m_sec->setRotorMoving(false);
485                 if (!::close(m_fd))
486                         m_fd=-1;
487                 else
488                         eWarning("couldnt close frontend %d", m_fe);
489                 m_data[CSW] = m_data[UCSW] = m_data[TONEBURST] = -1;
490         }
491 #if HAVE_DVB_API_VERSION < 3
492         if (m_secfd >= 0)
493         {
494                 if (!::close(m_secfd))
495                         m_secfd=-1;
496                 else
497                         eWarning("couldnt close sec %d", m_fe);
498         }
499 #endif
500         delete m_sn;
501         m_sn=0;
502
503         return 0;
504 }
505
506 eDVBFrontend::~eDVBFrontend()
507 {
508         closeFrontend();
509         delete m_timeout;
510         delete m_tuneTimer;
511 }
512
513 void eDVBFrontend::feEvent(int w)
514 {
515         while (1)
516         {
517 #if HAVE_DVB_API_VERSION < 3
518                 FrontendEvent event;
519 #else
520                 dvb_frontend_event event;
521 #endif
522                 int res;
523                 int state;
524                 res = ::ioctl(m_fd, FE_GET_EVENT, &event);
525
526                 if (res && (errno == EAGAIN))
527                         break;
528
529                 if (res)
530                 {
531                         eWarning("FE_GET_EVENT failed! %m");
532                         return;
533                 }
534
535                 if (w < 0)
536                         continue;
537
538 #if HAVE_DVB_API_VERSION < 3
539                 if (event.type == FE_COMPLETION_EV)
540 #else
541                 eDebug("(%d)fe event: status %x, inversion %s", m_fe, event.status, (event.parameters.inversion == INVERSION_ON) ? "on" : "off");
542                 if (event.status & FE_HAS_LOCK)
543 #endif
544                 {
545                         state = stateLock;
546                 } else
547                 {
548                         if (m_tuning)
549                                 state = stateTuning;
550                         else
551                         {
552                                 state = stateLostLock;
553                                 m_data[CSW] = m_data[UCSW] = m_data[TONEBURST] = -1; // reset diseqc
554                         }
555                 }
556                 if (m_state != state)
557                 {
558                         m_state = state;
559                         m_stateChanged(this);
560                 }
561         }
562 }
563
564 void eDVBFrontend::timeout()
565 {
566         m_tuning = 0;
567         if (m_state == stateTuning)
568         {
569                 m_state = stateFailed;
570                 m_stateChanged(this);
571         }
572 }
573
574 int eDVBFrontend::readFrontendData(int type)
575 {
576         switch(type)
577         {
578                 case bitErrorRate:
579                 {
580                         uint32_t ber=0;
581                         if (ioctl(m_fd, FE_READ_BER, &ber) < 0 && errno != ERANGE)
582                                 eDebug("FE_READ_BER failed (%m)");
583                         return ber;
584                 }
585                 case signalPower:
586                 {
587                         uint16_t snr=0;
588                         if (ioctl(m_fd, FE_READ_SNR, &snr) < 0 && errno != ERANGE)
589                                 eDebug("FE_READ_SNR failed (%m)");
590                         return snr;
591                 }
592                 case signalQuality:
593                 {
594                         uint16_t strength=0;
595                         if (ioctl(m_fd, FE_READ_SIGNAL_STRENGTH, &strength) < 0 && errno != ERANGE)
596                                 eDebug("FE_READ_SIGNAL_STRENGTH failed (%m)");
597                         return strength;
598                 }
599                 case locked:
600                 {
601 #if HAVE_DVB_API_VERSION < 3
602                         FrontendStatus status=0;
603 #else
604                         fe_status_t status;
605 #endif
606                         if ( ioctl(m_fd, FE_READ_STATUS, &status) < 0 && errno != ERANGE )
607                                 eDebug("FE_READ_STATUS failed (%m)");
608                         return !!(status&FE_HAS_LOCK);
609                 }
610                 case synced:
611                 {
612 #if HAVE_DVB_API_VERSION < 3
613                         FrontendStatus status=0;
614 #else
615                         fe_status_t status;
616 #endif
617                         if ( ioctl(m_fd, FE_READ_STATUS, &status) < 0 && errno != ERANGE )
618                                 eDebug("FE_READ_STATUS failed (%m)");
619                         return !!(status&FE_HAS_SYNC);
620                 }
621                 case frontendNumber:
622                         return m_fe;
623         }
624         return 0;
625 }
626
627 void PutToDict(PyObject *dict, const char*key, long value)
628 {
629         PyObject *item = PyInt_FromLong(value);
630         if (item)
631         {
632                 if (PyDict_SetItemString(dict, key, item))
633                         eDebug("put %s to dict failed", key);
634                 Py_DECREF(item);
635         }
636         else
637                 eDebug("could not create PyObject for %s", key);
638 }
639
640 void PutToDict(PyObject *dict, const char*key, const char *value)
641 {
642         PyObject *item = PyString_FromString(value);
643         if (item)
644         {
645                 if (PyDict_SetItemString(dict, key, item))
646                         eDebug("put %s to dict failed", key);
647                 Py_DECREF(item);
648         }
649         else
650                 eDebug("could not create PyObject for %s", key);
651 }
652
653 void fillDictWithSatelliteData(PyObject *dict, const FRONTENDPARAMETERS &parm, eDVBFrontend *fe)
654 {
655         int freq_offset=0;
656         int csw=0;
657         const char *tmp=0;
658         fe->getData(eDVBFrontend::CSW, csw);
659         fe->getData(eDVBFrontend::FREQ_OFFSET, freq_offset);
660         int frequency = parm_frequency + freq_offset;
661         PutToDict(dict, "frequency", frequency);
662         PutToDict(dict, "symbol_rate", parm_u_qpsk_symbol_rate);
663         switch(parm_u_qpsk_fec_inner)
664         {
665         case FEC_1_2:
666                 tmp = "FEC_1_2";
667                 break;
668         case FEC_2_3:
669                 tmp = "FEC_2_3";
670                 break;
671         case FEC_3_4:
672                 tmp = "FEC_3_4";
673                 break;
674         case FEC_5_6:
675                 tmp = "FEC_5_6";
676                 break;
677         case FEC_7_8:
678                 tmp = "FEC_7_8";
679                 break;
680         case FEC_NONE:
681                 tmp = "FEC_NONE";
682         default:
683         case FEC_AUTO:
684                 tmp = "FEC_AUTO";
685                 break;
686 #if HAVE_DVB_API_VERSION >=3
687         case FEC_S2_8PSK_1_2:
688         case FEC_S2_QPSK_1_2:
689                 tmp = "FEC_1_2";
690                 break;
691         case FEC_S2_8PSK_2_3:
692         case FEC_S2_QPSK_2_3:
693                 tmp = "FEC_2_3";
694                 break;
695         case FEC_S2_8PSK_3_4:
696         case FEC_S2_QPSK_3_4:
697                 tmp = "FEC_3_4";
698                 break;
699         case FEC_S2_8PSK_5_6:
700         case FEC_S2_QPSK_5_6:
701                 tmp = "FEC_5_6";
702                 break;
703         case FEC_S2_8PSK_7_8:
704         case FEC_S2_QPSK_7_8:
705                 tmp = "FEC_7_8";
706                 break;
707         case FEC_S2_8PSK_8_9:
708         case FEC_S2_QPSK_8_9:
709                 tmp = "FEC_8_9";
710                 break;
711         case FEC_S2_8PSK_3_5:
712         case FEC_S2_QPSK_3_5:
713                 tmp = "FEC_3_5";
714                 break;
715         case FEC_S2_8PSK_4_5:
716         case FEC_S2_QPSK_4_5:
717                 tmp = "FEC_4_5";
718                 break;
719         case FEC_S2_8PSK_9_10:
720         case FEC_S2_QPSK_9_10:
721                 tmp = "FEC_9_10";
722                 break;
723 #endif
724         }
725 #if HAVE_DVB_API_VERSION >=3
726         PutToDict(dict, "modulation",
727                 parm_u_qpsk_fec_inner > FEC_S2_QPSK_9_10 ? "8PSK": "QPSK" );
728 #else
729         PutToDict(dict, "modulation", "QPSK" );
730 #endif
731         PutToDict(dict, "fec_inner", tmp);
732         tmp = parm_u_qpsk_fec_inner > FEC_AUTO ?
733                 "DVB-S2" : "DVB-S";
734         PutToDict(dict, "system", tmp);
735 }
736
737 void fillDictWithCableData(PyObject *dict, const FRONTENDPARAMETERS &parm)
738 {
739         const char *tmp=0;
740         PutToDict(dict, "frequency", parm_frequency/1000);
741         PutToDict(dict, "symbol_rate", parm_u_qam_symbol_rate);
742         switch(parm_u_qam_fec_inner)
743         {
744         case FEC_NONE:
745                 tmp = "FEC_NONE";
746                 break;
747         case FEC_1_2:
748                 tmp = "FEC_1_2";
749                 break;
750         case FEC_2_3:
751                 tmp = "FEC_2_3";
752                 break;
753         case FEC_3_4:
754                 tmp = "FEC_3_4";
755                 break;
756         case FEC_5_6:
757                 tmp = "FEC_5_6";
758                 break;
759         case FEC_7_8:
760                 tmp = "FEC_7_8";
761                 break;
762 #if HAVE_DVB_API_VERSION >= 3
763         case FEC_8_9:
764                 tmp = "FEC_8_9";
765                 break;
766 #endif
767         default:
768         case FEC_AUTO:
769                 tmp = "FEC_AUTO";
770                 break;
771         }
772         PutToDict(dict, "fec_inner", tmp);
773         switch(parm_u_qam_modulation)
774         {
775         case QAM_16:
776                 tmp = "QAM_16";
777                 break;
778         case QAM_32:
779                 tmp = "QAM_32";
780                 break;
781         case QAM_64:
782                 tmp = "QAM_64";
783                 break;
784         case QAM_128:
785                 tmp = "QAM_128";
786                 break;
787         case QAM_256:
788                 tmp = "QAM_256";
789                 break;
790         default:
791         case QAM_AUTO:
792                 tmp = "QAM_AUTO";
793                 break;
794         }
795         PutToDict(dict, "modulation", tmp);
796 }
797
798 void fillDictWithTerrestrialData(PyObject *dict, const FRONTENDPARAMETERS &parm)
799 {
800         const char *tmp=0;
801         PutToDict(dict, "frequency", parm_frequency);
802         switch (parm_u_ofdm_bandwidth)
803         {
804         case BANDWIDTH_8_MHZ:
805                 tmp = "BANDWIDTH_8_MHZ";
806                 break;
807         case BANDWIDTH_7_MHZ:
808                 tmp = "BANDWIDTH_7_MHZ";
809                 break;
810         case BANDWIDTH_6_MHZ:
811                 tmp = "BANDWIDTH_6_MHZ";
812                 break;
813         default:
814         case BANDWIDTH_AUTO:
815                 tmp = "BANDWIDTH_AUTO";
816                 break;
817         }
818         PutToDict(dict, "bandwidth", tmp);
819         switch (parm_u_ofdm_code_rate_LP)
820         {
821         case FEC_1_2:
822                 tmp = "FEC_1_2";
823                 break;
824         case FEC_2_3:
825                 tmp = "FEC_2_3";
826                 break;
827         case FEC_3_4:
828                 tmp = "FEC_3_4";
829                 break;
830         case FEC_5_6:
831                 tmp = "FEC_5_6";
832                 break;
833         case FEC_7_8:
834                 tmp = "FEC_7_8";
835                 break;
836         default:
837         case FEC_AUTO:
838                 tmp = "FEC_AUTO";
839                 break;
840         }
841         PutToDict(dict, "code_rate_lp", tmp);
842         switch (parm_u_ofdm_code_rate_HP)
843         {
844         case FEC_1_2:
845                 tmp = "FEC_1_2";
846                 break;
847         case FEC_2_3:
848                 tmp = "FEC_2_3";
849                 break;
850         case FEC_3_4:
851                 tmp = "FEC_3_4";
852                 break;
853         case FEC_5_6:
854                 tmp = "FEC_5_6";
855                 break;
856         case FEC_7_8:
857                 tmp = "FEC_7_8";
858                 break;
859         default:
860         case FEC_AUTO:
861                 tmp = "FEC_AUTO";
862                 break;
863         }
864         PutToDict(dict, "code_rate_hp", tmp);
865         switch (parm_u_ofdm_constellation)
866         {
867         case QPSK:
868                 tmp = "QPSK";
869                 break;
870         case QAM_16:
871                 tmp = "QAM_16";
872                 break;
873         case QAM_64:
874                 tmp = "QAM_64";
875                 break;
876         default:
877         case QAM_AUTO:
878                 tmp = "QAM_AUTO";
879                 break;
880         }
881         PutToDict(dict, "constellation", tmp);
882         switch (parm_u_ofdm_transmission_mode)
883         {
884         case TRANSMISSION_MODE_2K:
885                 tmp = "TRANSMISSION_MODE_2K";
886                 break;
887         case TRANSMISSION_MODE_8K:
888                 tmp = "TRANSMISSION_MODE_8K";
889                 break;
890         default:
891         case TRANSMISSION_MODE_AUTO:
892                 tmp = "TRANSMISSION_MODE_AUTO";
893                 break;
894         }
895         PutToDict(dict, "transmission_mode", tmp);
896         switch (parm_u_ofdm_guard_interval)
897         {
898                 case GUARD_INTERVAL_1_32:
899                         tmp = "GUARD_INTERVAL_1_32";
900                         break;
901                 case GUARD_INTERVAL_1_16:
902                         tmp = "GUARD_INTERVAL_1_16";
903                         break;
904                 case GUARD_INTERVAL_1_8:
905                         tmp = "GUARD_INTERVAL_1_8";
906                         break;
907                 case GUARD_INTERVAL_1_4:
908                         tmp = "GUARD_INTERVAL_1_4";
909                         break;
910                 default:
911                 case GUARD_INTERVAL_AUTO:
912                         tmp = "GUARD_INTERVAL_AUTO";
913                         break;
914         }
915         PutToDict(dict, "guard_interval", tmp);
916         switch (parm_u_ofdm_hierarchy_information)
917         {
918                 case HIERARCHY_NONE:
919                         tmp = "HIERARCHY_NONE";
920                         break;
921                 case HIERARCHY_1:
922                         tmp = "HIERARCHY_1";
923                         break;
924                 case HIERARCHY_2:
925                         tmp = "HIERARCHY_2";
926                         break;
927                 case HIERARCHY_4:
928                         tmp = "HIERARCHY_4";
929                         break;
930                 default:
931                 case HIERARCHY_AUTO:
932                         tmp = "HIERARCHY_AUTO";
933                         break;
934         }
935         PutToDict(dict, "hierarchy_information", tmp);
936 }
937
938 PyObject *eDVBFrontend::readTransponderData(bool original)
939 {
940         PyObject *ret=PyDict_New();
941
942         if (ret)
943         {
944                 bool read=m_fd != -1;
945                 const char *tmp=0;
946
947                 PutToDict(ret, "tuner_number", m_fe);
948
949                 switch(m_type)
950                 {
951                         case feSatellite:
952                                 tmp = "DVB-S";
953                                 break;
954                         case feCable:
955                                 tmp = "DVB-C";
956                                 break;
957                         case feTerrestrial:
958                                 tmp = "DVB-T";
959                                 break;
960                         default:
961                                 tmp = "UNKNOWN";
962                                 read=false;
963                                 break;
964                 }
965                 PutToDict(ret, "tuner_type", tmp);
966
967                 if (read)
968                 {
969                         FRONTENDPARAMETERS front;
970
971                         tmp = "UNKNOWN";
972                         switch(m_state)
973                         {
974                                 case stateIdle:
975                                         tmp="IDLE";
976                                         break;
977                                 case stateTuning:
978                                         tmp="TUNING";
979                                         break;
980                                 case stateFailed:
981                                         tmp="FAILED";
982                                         break;
983                                 case stateLock:
984                                         tmp="LOCKED";
985                                         break;
986                                 case stateLostLock:
987                                         tmp="LOSTLOCK";
988                                         break;
989                                 default:
990                                         break;
991                         }
992                         PutToDict(ret, "tuner_state", tmp);
993
994                         PutToDict(ret, "tuner_locked", readFrontendData(locked));
995                         PutToDict(ret, "tuner_synced", readFrontendData(synced));
996                         PutToDict(ret, "tuner_bit_error_rate", readFrontendData(bitErrorRate));
997                         PutToDict(ret, "tuner_signal_power", readFrontendData(signalPower));
998                         PutToDict(ret, "tuner_signal_quality", readFrontendData(signalQuality));
999
1000                         if (!original && ioctl(m_fd, FE_GET_FRONTEND, &front)<0)
1001                                 eDebug("FE_GET_FRONTEND (%m)");
1002                         else
1003                         {
1004                                 tmp = "INVERSION_AUTO";
1005                                 switch(parm_inversion)
1006                                 {
1007                                         case INVERSION_ON:
1008                                                 tmp = "INVERSION_ON";
1009                                                 break;
1010                                         case INVERSION_OFF:
1011                                                 tmp = "INVERSION_OFF";
1012                                                 break;
1013                                         default:
1014                                                 break;
1015                                 }
1016                                 if (tmp)
1017                                         PutToDict(ret, "inversion", tmp);
1018
1019                                 switch(m_type)
1020                                 {
1021                                         case feSatellite:
1022                                                 fillDictWithSatelliteData(ret, original?parm:front, this);
1023                                                 break;
1024                                         case feCable:
1025                                                 fillDictWithCableData(ret, original?parm:front);
1026                                                 break;
1027                                         case feTerrestrial:
1028                                                 fillDictWithTerrestrialData(ret, original?parm:front);
1029                                                 break;
1030                                 }
1031                         }
1032                 }
1033         }
1034         else
1035         {
1036                 Py_INCREF(Py_None);
1037                 ret = Py_None;
1038         }
1039         return ret;
1040 }
1041
1042 #ifndef FP_IOCTL_GET_ID
1043 #define FP_IOCTL_GET_ID 0
1044 #endif
1045 int eDVBFrontend::readInputpower()
1046 {
1047         int power=m_fe;  // this is needed for read inputpower from the correct tuner !
1048
1049         // open front prozessor
1050         int fp=::open("/dev/dbox/fp0", O_RDWR);
1051         if (fp < 0)
1052         {
1053                 eDebug("couldn't open fp");
1054                 return -1;
1055         }
1056         static bool old_fp = (::ioctl(fp, FP_IOCTL_GET_ID) < 0);
1057         if ( ioctl( fp, old_fp ? 9 : 0x100, &power ) < 0 )
1058         {
1059                 eDebug("FP_IOCTL_GET_LNB_CURRENT failed (%m)");
1060                 return -1;
1061         }
1062         ::close(fp);
1063
1064         return power;
1065 }
1066
1067 bool eDVBFrontend::setSecSequencePos(int steps)
1068 {
1069         eDebug("set sequence pos %d", steps);
1070         if (!steps)
1071                 return false;
1072         while( steps > 0 )
1073         {
1074                 if (m_sec_sequence.current() != m_sec_sequence.end())
1075                         ++m_sec_sequence.current();
1076                 --steps;
1077         }
1078         while( steps < 0 )
1079         {
1080                 if (m_sec_sequence.current() != m_sec_sequence.begin() && m_sec_sequence.current() != m_sec_sequence.end())
1081                         --m_sec_sequence.current();
1082                 ++steps;
1083         }
1084         return true;
1085 }
1086
1087 void eDVBFrontend::tuneLoop()  // called by m_tuneTimer
1088 {
1089         int delay=0;
1090         if ( m_sec_sequence && m_sec_sequence.current() != m_sec_sequence.end() )
1091         {
1092 //              eDebug("tuneLoop %d\n", m_sec_sequence.current()->cmd);
1093                 switch (m_sec_sequence.current()->cmd)
1094                 {
1095                         case eSecCommand::SLEEP:
1096                                 delay = m_sec_sequence.current()++->msec;
1097                                 eDebug("[SEC] sleep %dms", delay);
1098                                 break;
1099                         case eSecCommand::GOTO:
1100                                 if ( !setSecSequencePos(m_sec_sequence.current()->steps) )
1101                                         ++m_sec_sequence.current();
1102                                 break;
1103                         case eSecCommand::SET_VOLTAGE:
1104                         {
1105                                 int voltage = m_sec_sequence.current()++->voltage;
1106                                 eDebug("[SEC] setVoltage %d", voltage);
1107                                 setVoltage(voltage);
1108                                 break;
1109                         }
1110                         case eSecCommand::IF_VOLTAGE_GOTO:
1111                         {
1112                                 eSecCommand::pair &compare = m_sec_sequence.current()->compare;
1113                                 if ( compare.voltage == m_curVoltage && setSecSequencePos(compare.steps) )
1114                                         break;
1115                                 ++m_sec_sequence.current();
1116                                 break;
1117                         }
1118                         case eSecCommand::IF_NOT_VOLTAGE_GOTO:
1119                         {
1120                                 eSecCommand::pair &compare = m_sec_sequence.current()->compare;
1121                                 if ( compare.voltage != m_curVoltage && setSecSequencePos(compare.steps) )
1122                                         break;
1123                                 ++m_sec_sequence.current();
1124                                 break;
1125                         }
1126                         case eSecCommand::SET_TONE:
1127                                 eDebug("[SEC] setTone %d", m_sec_sequence.current()->tone);
1128                                 setTone(m_sec_sequence.current()++->tone);
1129                                 break;
1130                         case eSecCommand::SEND_DISEQC:
1131                                 sendDiseqc(m_sec_sequence.current()->diseqc);
1132                                 eDebugNoNewLine("[SEC] sendDiseqc: ");
1133                                 for (int i=0; i < m_sec_sequence.current()->diseqc.len; ++i)
1134                                     eDebugNoNewLine("%02x", m_sec_sequence.current()->diseqc.data[i]);
1135                                 eDebug("");
1136                                 ++m_sec_sequence.current();
1137                                 break;
1138                         case eSecCommand::SEND_TONEBURST:
1139                                 eDebug("[SEC] sendToneburst: %d", m_sec_sequence.current()->toneburst);
1140                                 sendToneburst(m_sec_sequence.current()++->toneburst);
1141                                 break;
1142                         case eSecCommand::SET_FRONTEND:
1143                                 eDebug("[SEC] setFrontend");
1144                                 setFrontend();
1145                                 ++m_sec_sequence.current();
1146                                 break;
1147                         case eSecCommand::START_TUNE_TIMEOUT:
1148                                 m_timeout->start(5000, 1); // 5 sec timeout. TODO: symbolrate dependent
1149                                 ++m_sec_sequence.current();
1150                                 break;
1151                         case eSecCommand::SET_TIMEOUT:
1152                                 m_timeoutCount = m_sec_sequence.current()++->val;
1153                                 eDebug("[SEC] set timeout %d", m_timeoutCount);
1154                                 break;
1155                         case eSecCommand::IF_TIMEOUT_GOTO:
1156                                 if (!m_timeoutCount)
1157                                 {
1158                                         eDebug("[SEC] rotor timout");
1159                                         m_sec->setRotorMoving(false);
1160                                         setSecSequencePos(m_sec_sequence.current()->steps);
1161                                 }
1162                                 else
1163                                         ++m_sec_sequence.current();
1164                                 break;
1165                         case eSecCommand::MEASURE_IDLE_INPUTPOWER:
1166                         {
1167                                 int idx = m_sec_sequence.current()++->val;
1168                                 if ( idx == 0 || idx == 1 )
1169                                 {
1170                                         m_idleInputpower[idx] = readInputpower();
1171                                         eDebug("[SEC] idleInputpower[%d] is %d", idx, m_idleInputpower[idx]);
1172                                 }
1173                                 else
1174                                         eDebug("[SEC] idleInputpower measure index(%d) out of bound !!!", idx);
1175                                 break;
1176                         }
1177                         case eSecCommand::IF_MEASURE_IDLE_WAS_NOT_OK_GOTO:
1178                         {
1179                                 eSecCommand::pair &compare = m_sec_sequence.current()->compare;
1180                                 int idx = compare.voltage;
1181                                 if ( idx == 0 || idx == 1 )
1182                                 {
1183                                         int idle = readInputpower();
1184                                         int diff = abs(idle-m_idleInputpower[idx]);
1185                                         if ( diff > 0)
1186                                         {
1187                                                 eDebug("measure idle(%d) was not okay.. (%d - %d = %d) retry", idx, m_idleInputpower[idx], idle, diff);
1188                                                 setSecSequencePos(compare.steps);
1189                                                 break;
1190                                         }
1191                                 }
1192                                 ++m_sec_sequence.current();
1193                                 break;
1194                         }
1195                         case eSecCommand::IF_TUNER_LOCKED_GOTO:
1196                         {
1197                                 eSecCommand::rotor &cmd = m_sec_sequence.current()->measure;
1198                                 if (readFrontendData(locked))
1199                                 {
1200                                         eDebug("[SEC] locked step %d ok", cmd.okcount);
1201                                         ++cmd.okcount;
1202                                         if (cmd.okcount > 12)
1203                                         {
1204                                                 eDebug("ok > 12 .. goto %d\n",m_sec_sequence.current()->steps);
1205                                                 setSecSequencePos(cmd.steps);
1206                                                 break;
1207                                         }
1208                                 }
1209                                 else
1210                                 {
1211                                         eDebug("[SEC] rotor locked step %d failed", cmd.okcount);
1212                                         --m_timeoutCount;
1213                                         if (!m_timeoutCount && m_retryCount > 0)
1214                                                 --m_retryCount;
1215                                         cmd.okcount=0;
1216                                 }
1217                                 ++m_sec_sequence.current();
1218                                 break;
1219                         }
1220                         case eSecCommand::MEASURE_RUNNING_INPUTPOWER:
1221                                 m_runningInputpower = readInputpower();
1222                                 eDebug("[SEC] runningInputpower is %d", m_runningInputpower);
1223                                 ++m_sec_sequence.current();
1224                                 break;
1225                         case eSecCommand::IF_INPUTPOWER_DELTA_GOTO:
1226                         {
1227                                 int idleInputpower = m_idleInputpower[ (m_curVoltage&1) ? 0 : 1];
1228                                 eSecCommand::rotor &cmd = m_sec_sequence.current()->measure;
1229                                 const char *txt = cmd.direction ? "running" : "stopped";
1230                                 eDebug("[SEC] waiting for rotor %s %d, idle %d, delta %d",
1231                                         txt,
1232                                         m_runningInputpower,
1233                                         idleInputpower,
1234                                         cmd.deltaA);
1235                                 if ( (cmd.direction && abs(m_runningInputpower - idleInputpower) >= cmd.deltaA)
1236                                         || (!cmd.direction && abs(m_runningInputpower - idleInputpower) <= cmd.deltaA) )
1237                                 {
1238                                         ++cmd.okcount;
1239                                         eDebug("[SEC] rotor %s step %d ok", txt, cmd.okcount);
1240                                         if ( cmd.okcount > 6 )
1241                                         {
1242                                                 m_sec->setRotorMoving(cmd.direction);
1243                                                 eDebug("[SEC] rotor is %s", txt);
1244                                                 if (setSecSequencePos(cmd.steps))
1245                                                         break;
1246                                         }
1247                                 }
1248                                 else
1249                                 {
1250                                         eDebug("[SEC] rotor not %s... reset counter.. increase timeout", txt);
1251                                         --m_timeoutCount;
1252                                         if (!m_timeoutCount && m_retryCount > 0)
1253                                                 --m_retryCount;
1254                                         cmd.okcount=0;
1255                                 }
1256                                 ++m_sec_sequence.current();
1257                                 break;
1258                         }
1259                         case eSecCommand::IF_ROTORPOS_VALID_GOTO:
1260                                 if (m_data[ROTOR_CMD] != -1 && m_data[ROTOR_POS] != -1)
1261                                         setSecSequencePos(m_sec_sequence.current()->steps);
1262                                 else
1263                                         ++m_sec_sequence.current();
1264                                 break;
1265                         case eSecCommand::INVALIDATE_CURRENT_ROTORPARMS:
1266                                 m_data[ROTOR_CMD] = m_data[ROTOR_POS] = -1;
1267                                 eDebug("[SEC] invalidate current rotorparams");
1268                                 ++m_sec_sequence.current();
1269                                 break;
1270                         case eSecCommand::UPDATE_CURRENT_ROTORPARAMS:
1271                                 m_data[ROTOR_CMD] = m_data[NEW_ROTOR_CMD];
1272                                 m_data[ROTOR_POS] = m_data[NEW_ROTOR_POS];
1273                                 eDebug("[SEC] update current rotorparams %d %04x %d", m_timeoutCount, m_data[5], m_data[6]);
1274                                 ++m_sec_sequence.current();
1275                                 break;
1276                         case eSecCommand::SET_ROTOR_DISEQC_RETRYS:
1277                                 m_retryCount = m_sec_sequence.current()++->val;
1278                                 eDebug("[SEC] set rotor retries %d", m_retryCount);
1279                                 break;
1280                         case eSecCommand::IF_NO_MORE_ROTOR_DISEQC_RETRYS_GOTO:
1281                                 if (!m_retryCount)
1282                                 {
1283                                         eDebug("[SEC] no more rotor retrys");
1284                                         setSecSequencePos(m_sec_sequence.current()->steps);
1285                                 }
1286                                 else
1287                                         ++m_sec_sequence.current();
1288                                 break;
1289                         case eSecCommand::SET_POWER_LIMITING_MODE:
1290                         {
1291                                 int fd = m_fe ?
1292                                         ::open("/dev/i2c/1", O_RDWR) :
1293                                         ::open("/dev/i2c/0", O_RDWR);
1294
1295                                 unsigned char data[2];
1296                                 ::ioctl(fd, I2C_SLAVE_FORCE, 0x10 >> 1);
1297                                 if(::read(fd, data, 1) != 1)
1298                                         eDebug("[SEC] error read lnbp (%m)");
1299                                 if ( m_sec_sequence.current()->mode == eSecCommand::modeStatic )
1300                                 {
1301                                         data[0] |= 0x80;  // enable static current limiting
1302                                         eDebug("[SEC] set static current limiting");
1303                                 }
1304                                 else
1305                                 {
1306                                         data[0] &= ~0x80;  // enable dynamic current limiting
1307                                         eDebug("[SEC] set dynamic current limiting");
1308                                 }
1309                                 if(::write(fd, data, 1) != 1)
1310                                         eDebug("[SEC] error write lnbp (%m)");
1311                                 ::close(fd);
1312                                 ++m_sec_sequence.current();
1313                                 break;
1314                         }
1315                         default:
1316                                 ++m_sec_sequence.current();
1317                                 eDebug("[SEC] unhandled sec command");
1318                 }
1319                 m_tuneTimer->start(delay,true);
1320         }
1321 }
1322
1323 void eDVBFrontend::setFrontend()
1324 {
1325         eDebug("setting frontend %d", m_fe);
1326         m_sn->start();
1327         feEvent(-1);
1328         if (ioctl(m_fd, FE_SET_FRONTEND, &parm) == -1)
1329         {
1330                 perror("FE_SET_FRONTEND failed");
1331                 return;
1332         }
1333 }
1334
1335 RESULT eDVBFrontend::getFrontendType(int &t)
1336 {
1337         if (m_type == -1)
1338                 return -ENODEV;
1339         t = m_type;
1340         return 0;
1341 }
1342
1343 RESULT eDVBFrontend::prepare_sat(const eDVBFrontendParametersSatellite &feparm)
1344 {
1345         int res;
1346         if (!m_sec)
1347         {
1348                 eWarning("no SEC module active!");
1349                 return -ENOENT;
1350         }
1351         res = m_sec->prepare(*this, parm, feparm, 1 << m_fe);
1352         if (!res)
1353         {
1354                 eDebug("prepare_sat System %d Freq %d Pol %d SR %d INV %d FEC %d",
1355                         feparm.system,
1356                         feparm.frequency,
1357                         feparm.polarisation,
1358                         feparm.symbol_rate,
1359                         feparm.inversion,
1360                         feparm.fec);
1361                 parm_u_qpsk_symbol_rate = feparm.symbol_rate;
1362                 switch (feparm.inversion)
1363                 {
1364                         case eDVBFrontendParametersSatellite::Inversion::On:
1365                                 parm_inversion = INVERSION_ON;
1366                                 break;
1367                         case eDVBFrontendParametersSatellite::Inversion::Off:
1368                                 parm_inversion = INVERSION_OFF;
1369                                 break;
1370                         default:
1371                         case eDVBFrontendParametersSatellite::Inversion::Unknown:
1372                                 parm_inversion = INVERSION_AUTO;
1373                                 break;
1374                 }
1375                 if (feparm.system == eDVBFrontendParametersSatellite::System::DVB_S)
1376                         switch (feparm.fec)
1377                         {
1378                                 case eDVBFrontendParametersSatellite::FEC::fNone:
1379                                         parm_u_qpsk_fec_inner = FEC_NONE;
1380                                         break;
1381                                 case eDVBFrontendParametersSatellite::FEC::f1_2:
1382                                         parm_u_qpsk_fec_inner = FEC_1_2;
1383                                         break;
1384                                 case eDVBFrontendParametersSatellite::FEC::f2_3:
1385                                         parm_u_qpsk_fec_inner = FEC_2_3;
1386                                         break;
1387                                 case eDVBFrontendParametersSatellite::FEC::f3_4:
1388                                         parm_u_qpsk_fec_inner = FEC_3_4;
1389                                         break;
1390                                 case eDVBFrontendParametersSatellite::FEC::f5_6:
1391                                         parm_u_qpsk_fec_inner = FEC_5_6;
1392                                         break;
1393                                 case eDVBFrontendParametersSatellite::FEC::f7_8:
1394                                         parm_u_qpsk_fec_inner = FEC_7_8;
1395                                         break;
1396                                 default:
1397                                         eDebug("no valid fec for DVB-S set.. assume auto");
1398                                 case eDVBFrontendParametersSatellite::FEC::fAuto:
1399                                         parm_u_qpsk_fec_inner = FEC_AUTO;
1400                                         break;
1401                         }
1402 #if HAVE_DVB_API_VERSION >= 3
1403                 else // DVB_S2
1404                 {
1405                         switch (feparm.fec)
1406                         {
1407                                 case eDVBFrontendParametersSatellite::FEC::f1_2:
1408                                         parm_u_qpsk_fec_inner = FEC_S2_QPSK_1_2;
1409                                         break;
1410                                 case eDVBFrontendParametersSatellite::FEC::f2_3:
1411                                         parm_u_qpsk_fec_inner = FEC_S2_QPSK_2_3;
1412                                         break;
1413                                 case eDVBFrontendParametersSatellite::FEC::f3_4:
1414                                         parm_u_qpsk_fec_inner = FEC_S2_QPSK_3_4;
1415                                         break;
1416                                 case eDVBFrontendParametersSatellite::FEC::f3_5:
1417                                         parm_u_qpsk_fec_inner = FEC_S2_QPSK_3_5;
1418                                         break;
1419                                 case eDVBFrontendParametersSatellite::FEC::f4_5:
1420                                         parm_u_qpsk_fec_inner = FEC_S2_QPSK_4_5;
1421                                         break;
1422                                 case eDVBFrontendParametersSatellite::FEC::f5_6:
1423                                         parm_u_qpsk_fec_inner = FEC_S2_QPSK_5_6;
1424                                         break;
1425                                 case eDVBFrontendParametersSatellite::FEC::f7_8:
1426                                         parm_u_qpsk_fec_inner = FEC_S2_QPSK_7_8;
1427                                         break;
1428                                 case eDVBFrontendParametersSatellite::FEC::f8_9:
1429                                         parm_u_qpsk_fec_inner = FEC_S2_QPSK_8_9;
1430                                         break;
1431                                 case eDVBFrontendParametersSatellite::FEC::f9_10:
1432                                         parm_u_qpsk_fec_inner = FEC_S2_QPSK_9_10;
1433                                         break;
1434                                 default:
1435                                         eDebug("no valid fec for DVB-S2 set.. abort !!");
1436                                         return -EINVAL;
1437                         }
1438                         if (feparm.modulation == eDVBFrontendParametersSatellite::Modulation::M8PSK)
1439                                 parm_u_qpsk_fec_inner = (fe_code_rate_t)((int)parm_u_qpsk_fec_inner+9);
1440                                 // 8PSK fec driver values are decimal 9 bigger
1441                 }
1442 #endif
1443                 // FIXME !!! get frequency range from tuner
1444                 if ( parm_frequency < 900000 || parm_frequency > 2200000 )
1445                 {
1446                         eDebug("%d mhz out of tuner range.. dont tune", parm_frequency/1000);
1447                         return -EINVAL;
1448                 }
1449                 eDebug("tuning to %d mhz", parm_frequency/1000);
1450         }
1451         return res;
1452 }
1453
1454 RESULT eDVBFrontend::prepare_cable(const eDVBFrontendParametersCable &feparm)
1455 {
1456         parm_frequency = feparm.frequency * 1000;
1457         parm_u_qam_symbol_rate = feparm.symbol_rate;
1458         switch (feparm.modulation)
1459         {
1460         case eDVBFrontendParametersCable::Modulation::QAM16:
1461                 parm_u_qam_modulation = QAM_16;
1462                 break;
1463         case eDVBFrontendParametersCable::Modulation::QAM32:
1464                 parm_u_qam_modulation = QAM_32;
1465                 break;
1466         case eDVBFrontendParametersCable::Modulation::QAM64:
1467                 parm_u_qam_modulation = QAM_64;
1468                 break;
1469         case eDVBFrontendParametersCable::Modulation::QAM128:
1470                 parm_u_qam_modulation = QAM_128;
1471                 break;
1472         case eDVBFrontendParametersCable::Modulation::QAM256:
1473                 parm_u_qam_modulation = QAM_256;
1474                 break;
1475         default:
1476         case eDVBFrontendParametersCable::Modulation::Auto:
1477                 parm_u_qam_modulation = QAM_AUTO;
1478                 break;
1479         }
1480         switch (feparm.inversion)
1481         {
1482         case eDVBFrontendParametersCable::Inversion::On:
1483                 parm_inversion = INVERSION_ON;
1484                 break;
1485         case eDVBFrontendParametersCable::Inversion::Off:
1486                 parm_inversion = INVERSION_OFF;
1487                 break;
1488         default:
1489         case eDVBFrontendParametersCable::Inversion::Unknown:
1490                 parm_inversion = INVERSION_AUTO;
1491                 break;
1492         }
1493         switch (feparm.fec_inner)
1494         {
1495         case eDVBFrontendParametersCable::FEC::fNone:
1496                 parm_u_qam_fec_inner = FEC_NONE;
1497                 break;
1498         case eDVBFrontendParametersCable::FEC::f1_2:
1499                 parm_u_qam_fec_inner = FEC_1_2;
1500                 break;
1501         case eDVBFrontendParametersCable::FEC::f2_3:
1502                 parm_u_qam_fec_inner = FEC_2_3;
1503                 break;
1504         case eDVBFrontendParametersCable::FEC::f3_4:
1505                 parm_u_qam_fec_inner = FEC_3_4;
1506                 break;
1507         case eDVBFrontendParametersCable::FEC::f5_6:
1508                 parm_u_qam_fec_inner = FEC_5_6;
1509                 break;
1510         case eDVBFrontendParametersCable::FEC::f7_8:
1511                 parm_u_qam_fec_inner = FEC_7_8;
1512                 break;
1513 #if HAVE_DVB_API_VERSION >= 3
1514         case eDVBFrontendParametersCable::FEC::f8_9:
1515                 parm_u_qam_fec_inner = FEC_8_9;
1516                 break;
1517 #endif
1518         default:
1519         case eDVBFrontendParametersCable::FEC::fAuto:
1520                 parm_u_qam_fec_inner = FEC_AUTO;
1521                 break;
1522         }
1523         return 0;
1524 }
1525
1526 RESULT eDVBFrontend::prepare_terrestrial(const eDVBFrontendParametersTerrestrial &feparm)
1527 {
1528         parm_frequency = feparm.frequency;
1529
1530         switch (feparm.bandwidth)
1531         {
1532         case eDVBFrontendParametersTerrestrial::Bandwidth::Bw8MHz:
1533                 parm_u_ofdm_bandwidth = BANDWIDTH_8_MHZ;
1534                 break;
1535         case eDVBFrontendParametersTerrestrial::Bandwidth::Bw7MHz:
1536                 parm_u_ofdm_bandwidth = BANDWIDTH_7_MHZ;
1537                 break;
1538         case eDVBFrontendParametersTerrestrial::Bandwidth::Bw6MHz:
1539                 parm_u_ofdm_bandwidth = BANDWIDTH_6_MHZ;
1540                 break;
1541         default:
1542         case eDVBFrontendParametersTerrestrial::Bandwidth::BwAuto:
1543                 parm_u_ofdm_bandwidth = BANDWIDTH_AUTO;
1544                 break;
1545         }
1546         switch (feparm.code_rate_LP)
1547         {
1548         case eDVBFrontendParametersTerrestrial::FEC::f1_2:
1549                 parm_u_ofdm_code_rate_LP = FEC_1_2;
1550                 break;
1551         case eDVBFrontendParametersTerrestrial::FEC::f2_3:
1552                 parm_u_ofdm_code_rate_LP = FEC_2_3;
1553                 break;
1554         case eDVBFrontendParametersTerrestrial::FEC::f3_4:
1555                 parm_u_ofdm_code_rate_LP = FEC_3_4;
1556                 break;
1557         case eDVBFrontendParametersTerrestrial::FEC::f5_6:
1558                 parm_u_ofdm_code_rate_LP = FEC_5_6;
1559                 break;
1560         case eDVBFrontendParametersTerrestrial::FEC::f7_8:
1561                 parm_u_ofdm_code_rate_LP = FEC_7_8;
1562                 break;
1563         default:
1564         case eDVBFrontendParametersTerrestrial::FEC::fAuto:
1565                 parm_u_ofdm_code_rate_LP = FEC_AUTO;
1566                 break;
1567         }
1568         switch (feparm.code_rate_HP)
1569         {
1570         case eDVBFrontendParametersTerrestrial::FEC::f1_2:
1571                 parm_u_ofdm_code_rate_HP = FEC_1_2;
1572                 break;
1573         case eDVBFrontendParametersTerrestrial::FEC::f2_3:
1574                 parm_u_ofdm_code_rate_HP = FEC_2_3;
1575                 break;
1576         case eDVBFrontendParametersTerrestrial::FEC::f3_4:
1577                 parm_u_ofdm_code_rate_HP = FEC_3_4;
1578                 break;
1579         case eDVBFrontendParametersTerrestrial::FEC::f5_6:
1580                 parm_u_ofdm_code_rate_HP = FEC_5_6;
1581                 break;
1582         case eDVBFrontendParametersTerrestrial::FEC::f7_8:
1583                 parm_u_ofdm_code_rate_HP = FEC_7_8;
1584                 break;
1585         default:
1586         case eDVBFrontendParametersTerrestrial::FEC::fAuto:
1587                 parm_u_ofdm_code_rate_HP = FEC_AUTO;
1588                 break;
1589         }
1590         switch (feparm.modulation)
1591         {
1592         case eDVBFrontendParametersTerrestrial::Modulation::QPSK:
1593                 parm_u_ofdm_constellation = QPSK;
1594                 break;
1595         case eDVBFrontendParametersTerrestrial::Modulation::QAM16:
1596                 parm_u_ofdm_constellation = QAM_16;
1597                 break;
1598         case eDVBFrontendParametersTerrestrial::Modulation::QAM64:
1599                 parm_u_ofdm_constellation = QAM_64;
1600                 break;
1601         default:
1602         case eDVBFrontendParametersTerrestrial::Modulation::Auto:
1603                 parm_u_ofdm_constellation = QAM_AUTO;
1604                 break;
1605         }
1606         switch (feparm.transmission_mode)
1607         {
1608         case eDVBFrontendParametersTerrestrial::TransmissionMode::TM2k:
1609                 parm_u_ofdm_transmission_mode = TRANSMISSION_MODE_2K;
1610                 break;
1611         case eDVBFrontendParametersTerrestrial::TransmissionMode::TM8k:
1612                 parm_u_ofdm_transmission_mode = TRANSMISSION_MODE_8K;
1613                 break;
1614         default:
1615         case eDVBFrontendParametersTerrestrial::TransmissionMode::TMAuto:
1616                 parm_u_ofdm_transmission_mode = TRANSMISSION_MODE_AUTO;
1617                 break;
1618         }
1619         switch (feparm.guard_interval)
1620         {
1621                 case eDVBFrontendParametersTerrestrial::GuardInterval::GI_1_32:
1622                         parm_u_ofdm_guard_interval = GUARD_INTERVAL_1_32;
1623                         break;
1624                 case eDVBFrontendParametersTerrestrial::GuardInterval::GI_1_16:
1625                         parm_u_ofdm_guard_interval = GUARD_INTERVAL_1_16;
1626                         break;
1627                 case eDVBFrontendParametersTerrestrial::GuardInterval::GI_1_8:
1628                         parm_u_ofdm_guard_interval = GUARD_INTERVAL_1_8;
1629                         break;
1630                 case eDVBFrontendParametersTerrestrial::GuardInterval::GI_1_4:
1631                         parm_u_ofdm_guard_interval = GUARD_INTERVAL_1_4;
1632                         break;
1633                 default:
1634                 case eDVBFrontendParametersTerrestrial::GuardInterval::GI_Auto:
1635                         parm_u_ofdm_guard_interval = GUARD_INTERVAL_AUTO;
1636                         break;
1637         }
1638         switch (feparm.hierarchy)
1639         {
1640                 case eDVBFrontendParametersTerrestrial::Hierarchy::HNone:
1641                         parm_u_ofdm_hierarchy_information = HIERARCHY_NONE;
1642                         break;
1643                 case eDVBFrontendParametersTerrestrial::Hierarchy::H1:
1644                         parm_u_ofdm_hierarchy_information = HIERARCHY_1;
1645                         break;
1646                 case eDVBFrontendParametersTerrestrial::Hierarchy::H2:
1647                         parm_u_ofdm_hierarchy_information = HIERARCHY_2;
1648                         break;
1649                 case eDVBFrontendParametersTerrestrial::Hierarchy::H4:
1650                         parm_u_ofdm_hierarchy_information = HIERARCHY_4;
1651                         break;
1652                 default:
1653                 case eDVBFrontendParametersTerrestrial::Hierarchy::HAuto:
1654                         parm_u_ofdm_hierarchy_information = HIERARCHY_AUTO;
1655                         break;
1656         }
1657         switch (feparm.inversion)
1658         {
1659         case eDVBFrontendParametersTerrestrial::Inversion::On:
1660                 parm_inversion = INVERSION_ON;
1661                 break;
1662         case eDVBFrontendParametersTerrestrial::Inversion::Off:
1663                 parm_inversion = INVERSION_OFF;
1664                 break;
1665         default:
1666         case eDVBFrontendParametersTerrestrial::Inversion::Unknown:
1667                 parm_inversion = INVERSION_AUTO;
1668                 break;
1669         }
1670         return 0;
1671 }
1672
1673 RESULT eDVBFrontend::tune(const iDVBFrontendParameters &where)
1674 {
1675         eDebug("(%d)tune", m_fe);
1676
1677         m_timeout->stop();
1678
1679         int res=0;
1680
1681         if (m_type == -1)
1682                 return -ENODEV;
1683
1684         m_sn->stop();
1685         m_sec_sequence.clear();
1686
1687         switch (m_type)
1688         {
1689         case feSatellite:
1690         {
1691                 eDVBFrontendParametersSatellite feparm;
1692                 if (where.getDVBS(feparm))
1693                 {
1694                         eDebug("no dvbs data!");
1695                         return -EINVAL;
1696                 }
1697                 res=prepare_sat(feparm);
1698                 m_sec->setRotorMoving(false);
1699                 break;
1700         }
1701         case feCable:
1702         {
1703                 eDVBFrontendParametersCable feparm;
1704                 if (where.getDVBC(feparm))
1705                         return -EINVAL;
1706                 res=prepare_cable(feparm);
1707                 if (!res)
1708                 {
1709                         m_sec_sequence.push_back( eSecCommand(eSecCommand::START_TUNE_TIMEOUT) );
1710                         m_sec_sequence.push_back( eSecCommand(eSecCommand::SET_FRONTEND) );
1711                 }
1712                 break;
1713         }
1714         case feTerrestrial:
1715         {
1716                 eDVBFrontendParametersTerrestrial feparm;
1717                 if (where.getDVBT(feparm))
1718                 {
1719                         eDebug("no -T data");
1720                         return -EINVAL;
1721                 }
1722                 res=prepare_terrestrial(feparm);
1723                 if (!res)
1724                 {
1725                         m_sec_sequence.push_back( eSecCommand(eSecCommand::START_TUNE_TIMEOUT) );
1726                         m_sec_sequence.push_back( eSecCommand(eSecCommand::SET_FRONTEND) );
1727                 }
1728                 break;
1729         }
1730         }
1731
1732         if (!res)  // prepare ok
1733         {
1734                 m_tuneTimer->start(0,true);
1735                 m_sec_sequence.current() = m_sec_sequence.begin();
1736
1737                 if (m_state != stateTuning)
1738                 {
1739                         m_tuning = 1;
1740                         m_state = stateTuning;
1741                         m_stateChanged(this);
1742                 }
1743         }
1744
1745         return res;
1746 }
1747
1748 RESULT eDVBFrontend::connectStateChange(const Slot1<void,iDVBFrontend*> &stateChange, ePtr<eConnection> &connection)
1749 {
1750         connection = new eConnection(this, m_stateChanged.connect(stateChange));
1751         return 0;
1752 }
1753
1754 RESULT eDVBFrontend::setVoltage(int voltage)
1755 {
1756         if (m_type != feSatellite)
1757                 return -1;
1758 #if HAVE_DVB_API_VERSION < 3
1759         secVoltage vlt;
1760 #else
1761         bool increased=false;
1762         fe_sec_voltage_t vlt;
1763 #endif
1764         m_curVoltage=voltage;
1765         switch (voltage)
1766         {
1767         case voltageOff:
1768                 for (int i=0; i < 3; ++i)  // reset diseqc
1769                         m_data[i]=-1;
1770                 vlt = SEC_VOLTAGE_OFF;
1771                 break;
1772         case voltage13_5:
1773 #if HAVE_DVB_API_VERSION < 3
1774                 vlt = SEC_VOLTAGE_13_5;
1775                 break;
1776 #else
1777                 increased = true;
1778 #endif
1779         case voltage13:
1780                 vlt = SEC_VOLTAGE_13;
1781                 break;
1782         case voltage18_5:
1783 #if HAVE_DVB_API_VERSION < 3
1784                 vlt = SEC_VOLTAGE_18_5;
1785                 break;
1786 #else
1787                 increased = true;
1788 #endif
1789         case voltage18:
1790                 vlt = SEC_VOLTAGE_18;
1791                 break;
1792         default:
1793                 return -ENODEV;
1794         }
1795 #if HAVE_DVB_API_VERSION < 3
1796         return ::ioctl(m_secfd, SEC_SET_VOLTAGE, vlt);
1797 #else
1798         if (::ioctl(m_fd, FE_ENABLE_HIGH_LNB_VOLTAGE, increased) < 0)
1799                 perror("FE_ENABLE_HIGH_LNB_VOLTAGE");
1800         return ::ioctl(m_fd, FE_SET_VOLTAGE, vlt);
1801 #endif
1802 }
1803
1804 RESULT eDVBFrontend::getState(int &state)
1805 {
1806         state = m_state;
1807         return 0;
1808 }
1809
1810 RESULT eDVBFrontend::setTone(int t)
1811 {
1812         if (m_type != feSatellite)
1813                 return -1;
1814 #if HAVE_DVB_API_VERSION < 3
1815         secToneMode_t tone;
1816 #else
1817         fe_sec_tone_mode_t tone;
1818 #endif
1819
1820         switch (t)
1821         {
1822         case toneOn:
1823                 tone = SEC_TONE_ON;
1824                 break;
1825         case toneOff:
1826                 tone = SEC_TONE_OFF;
1827                 break;
1828         default:
1829                 return -ENODEV;
1830         }
1831 #if HAVE_DVB_API_VERSION < 3    
1832         return ::ioctl(m_secfd, SEC_SET_TONE, tone);
1833 #else   
1834         return ::ioctl(m_fd, FE_SET_TONE, tone);
1835 #endif
1836 }
1837
1838 #if HAVE_DVB_API_VERSION < 3 && !defined(SEC_DISEQC_SEND_MASTER_CMD)
1839         #define SEC_DISEQC_SEND_MASTER_CMD _IOW('o', 97, struct secCommand *)
1840 #endif
1841
1842 RESULT eDVBFrontend::sendDiseqc(const eDVBDiseqcCommand &diseqc)
1843 {
1844 #if HAVE_DVB_API_VERSION < 3
1845         struct secCommand cmd;
1846         cmd.type = SEC_CMDTYPE_DISEQC_RAW;
1847         cmd.u.diseqc.cmdtype = diseqc.data[0];
1848         cmd.u.diseqc.addr = diseqc.data[1];
1849         cmd.u.diseqc.cmd = diseqc.data[2];
1850         cmd.u.diseqc.numParams = diseqc.len-3;
1851         memcpy(cmd.u.diseqc.params, diseqc.data+3, diseqc.len-3);
1852         if (::ioctl(m_secfd, SEC_DISEQC_SEND_MASTER_CMD, &cmd))
1853 #else
1854         struct dvb_diseqc_master_cmd cmd;
1855         memcpy(cmd.msg, diseqc.data, diseqc.len);
1856         cmd.msg_len = diseqc.len;
1857         if (::ioctl(m_fd, FE_DISEQC_SEND_MASTER_CMD, &cmd))
1858 #endif
1859                 return -EINVAL;
1860         return 0;
1861 }
1862
1863 #if HAVE_DVB_API_VERSION < 3 && !defined(SEC_DISEQC_SEND_BURST)
1864         #define SEC_DISEQC_SEND_BURST _IO('o', 96)
1865 #endif
1866 RESULT eDVBFrontend::sendToneburst(int burst)
1867 {
1868 #if HAVE_DVB_API_VERSION < 3
1869         secMiniCmd cmd = SEC_MINI_NONE;
1870 #else
1871         fe_sec_mini_cmd_t cmd = SEC_MINI_A;
1872 #endif
1873         if ( burst == eDVBSatelliteDiseqcParameters::A )
1874                 cmd = SEC_MINI_A;
1875         else if ( burst == eDVBSatelliteDiseqcParameters::B )
1876                 cmd = SEC_MINI_B;
1877 #if HAVE_DVB_API_VERSION < 3
1878         if (::ioctl(m_secfd, SEC_DISEQC_SEND_BURST, cmd))
1879                 return -EINVAL;
1880 #else
1881         if (::ioctl(m_fd, FE_DISEQC_SEND_BURST, cmd))
1882                 return -EINVAL;
1883 #endif
1884         return 0;
1885 }
1886
1887 RESULT eDVBFrontend::setSEC(iDVBSatelliteEquipmentControl *sec)
1888 {
1889         m_sec = sec;
1890         return 0;
1891 }
1892
1893 RESULT eDVBFrontend::setSecSequence(const eSecCommandList &list)
1894 {
1895         m_sec_sequence = list;
1896         return 0;
1897 }
1898
1899 RESULT eDVBFrontend::getData(int num, int &data)
1900 {
1901         if ( num < NUM_DATA_ENTRIES )
1902         {
1903                 data = m_data[num];
1904                 return 0;
1905         }
1906         return -EINVAL;
1907 }
1908
1909 RESULT eDVBFrontend::setData(int num, int val)
1910 {
1911         if ( num < NUM_DATA_ENTRIES )
1912         {
1913                 m_data[num] = val;
1914                 return 0;
1915         }
1916         return -EINVAL;
1917 }
1918
1919 int eDVBFrontend::isCompatibleWith(ePtr<iDVBFrontendParameters> &feparm)
1920 {
1921         int type;
1922         if (feparm->getSystem(type) || type != m_type)
1923                 return 0;
1924
1925         if (m_type == eDVBFrontend::feSatellite)
1926         {
1927                 ASSERT(m_sec);
1928                 eDVBFrontendParametersSatellite sat_parm;
1929                 ASSERT(!feparm->getDVBS(sat_parm));
1930                 return m_sec->canTune(sat_parm, this, 1 << m_fe);
1931         }
1932         return 1;
1933 }