16c68e8f5d0641329c2cffd26754ee676503fd59
[enigma2.git] / lib / dvb / sec.cpp
1 #include <lib/dvb/dvb.h>
2 #include <lib/dvb/sec.h>
3 #include <lib/dvb/rotor_calc.h>
4
5 #if HAVE_DVB_API_VERSION < 3
6 #define INVERSION Inversion
7 #define FREQUENCY Frequency
8 #define FEC_INNER FEC_inner
9 #define SYMBOLRATE SymbolRate
10 #else
11 #define INVERSION inversion
12 #define FREQUENCY frequency
13 #define FEC_INNER fec_inner
14 #define SYMBOLRATE symbol_rate
15 #endif
16 #include <lib/base/eerror.h>
17
18 DEFINE_REF(eDVBSatelliteEquipmentControl);
19
20 eDVBSatelliteEquipmentControl *eDVBSatelliteEquipmentControl::instance;
21
22 eDVBSatelliteEquipmentControl::eDVBSatelliteEquipmentControl(eSmartPtrList<eDVBRegisteredFrontend> &avail_frontends)
23         :m_lnbidx(-1), m_curSat(m_lnbs[0].m_satellites.end()), m_avail_frontends(avail_frontends), m_rotorMoving(false)
24 {
25         if (!instance)
26                 instance = this;
27
28         clear();
29
30 // ASTRA
31         addLNB();
32         setLNBTunerMask(3);
33         setLNBLOFL(9750000);
34         setLNBThreshold(11750000);
35         setLNBLOFH(10607000);
36         setDiSEqCMode(eDVBSatelliteDiseqcParameters::V1_0);
37         setToneburst(eDVBSatelliteDiseqcParameters::NO);
38         setRepeats(0);
39         setCommittedCommand(eDVBSatelliteDiseqcParameters::BB);
40         setCommandOrder(0); // committed, toneburst
41         setFastDiSEqC(true);
42         setSeqRepeat(false);
43         addSatellite(192);
44         setVoltageMode(eDVBSatelliteSwitchParameters::HV);
45         setToneMode(eDVBSatelliteSwitchParameters::HILO);
46
47 // Hotbird
48         addLNB();
49         setLNBTunerMask(3);
50         setLNBLOFL(9750000);
51         setLNBThreshold(11750000);
52         setLNBLOFH(10600000);
53         setDiSEqCMode(eDVBSatelliteDiseqcParameters::V1_0);
54         setToneburst(eDVBSatelliteDiseqcParameters::NO);
55         setRepeats(0);
56         setCommittedCommand(eDVBSatelliteDiseqcParameters::AB);
57         setCommandOrder(0); // committed, toneburst
58         setFastDiSEqC(true);
59         setSeqRepeat(false);
60         addSatellite(130);
61         setVoltageMode(eDVBSatelliteSwitchParameters::HV);
62         setToneMode(eDVBSatelliteSwitchParameters::HILO);
63
64 // Rotor
65         addLNB();
66         setLNBTunerMask(3);
67         setLNBLOFL(9750000);
68         setLNBThreshold(11750000);
69         setLNBLOFH(10600000);
70         setDiSEqCMode(eDVBSatelliteDiseqcParameters::V1_2);
71         setToneburst(eDVBSatelliteDiseqcParameters::NO);
72         setRepeats(0);
73         setCommittedCommand(eDVBSatelliteDiseqcParameters::AA);
74         setCommandOrder(0); // committed, toneburst
75         setFastDiSEqC(true);
76         setSeqRepeat(false);
77         setLaDirection(eDVBSatelliteRotorParameters::NORTH);
78         setLoDirection(eDVBSatelliteRotorParameters::EAST);
79         setLatitude(51.017);
80         setLongitude(8.683);
81         setUseInputpower(true);
82         setInputpowerDelta(50);
83
84         addSatellite(235);
85         setVoltageMode(eDVBSatelliteSwitchParameters::HV);
86         setToneMode(eDVBSatelliteSwitchParameters::HILO);
87         setRotorPosNum(0);
88
89         addSatellite(284);
90         setVoltageMode(eDVBSatelliteSwitchParameters::HV);
91         setToneMode(eDVBSatelliteSwitchParameters::HILO);
92         setRotorPosNum(0);
93
94         addSatellite(420);
95         setVoltageMode(eDVBSatelliteSwitchParameters::HV);
96         setToneMode(eDVBSatelliteSwitchParameters::HILO);
97         setRotorPosNum(1); // stored pos 1
98 }
99
100 int eDVBSatelliteEquipmentControl::canTune(const eDVBFrontendParametersSatellite &sat, iDVBFrontend *fe, int frontend_id )
101 {
102         int ret=0;
103
104         for (int idx=0; idx <= m_lnbidx; ++idx )
105         {
106                 eDVBSatelliteLNBParameters &lnb_param = m_lnbs[idx];
107                 if ( lnb_param.tuner_mask & frontend_id ) // lnb for correct tuner?
108                 {
109                         eDVBSatelliteDiseqcParameters &di_param = lnb_param.m_diseqc_parameters;
110
111                         std::map<int, eDVBSatelliteSwitchParameters>::iterator sit =
112                                 lnb_param.m_satellites.find(sat.orbital_position);
113                         if ( sit != lnb_param.m_satellites.end())
114                         {
115                                 int band=0,
116                                         linked_to=-1, // linked tuner
117                                         satpos_depends_to=-1,
118                                         csw = di_param.m_committed_cmd,
119                                         ucsw = di_param.m_uncommitted_cmd,
120                                         toneburst = di_param.m_toneburst_param,
121                                         curRotorPos;
122
123                                 fe->getData(6, curRotorPos);
124                                 fe->getData(7, linked_to);
125                                 fe->getData(8, satpos_depends_to);
126
127                                 if ( sat.frequency > lnb_param.m_lof_threshold )
128                                         band |= 1;
129                                 if (sat.polarisation == eDVBFrontendParametersSatellite::Polarisation::Horizontal)
130                                         band |= 2;
131
132                                 bool rotor=false;
133                                 bool diseqc=false;
134
135                                 if (di_param.m_diseqc_mode >= eDVBSatelliteDiseqcParameters::V1_0)
136                                 {
137                                         diseqc=true;
138                                         if ( di_param.m_committed_cmd < eDVBSatelliteDiseqcParameters::SENDNO )
139                                                 csw = 0xF0 | (csw << 2);
140
141                                         csw |= band;
142
143                                         if ( di_param.m_diseqc_mode == eDVBSatelliteDiseqcParameters::V1_2 )  // ROTOR
144                                         {
145                                                 rotor=true;
146                                                 if ( curRotorPos == sat.orbital_position )
147                                                         ret=20;  // rotor on correct orbpos = prio 20
148                                                 else
149                                                         ret=10;  // rotor must turn to correct orbpos = prio 10
150                                         }
151                                         else
152                                                 ret = 30;  // no rotor = prio 30
153                                 }
154                                 else
155                                 {
156                                         csw = band;
157                                         ret = 40;  // no diseqc = prio 40
158                                 }
159
160                                 if (linked_to != -1)  // check for linked tuners..
161                                 {
162                                         eDVBRegisteredFrontend *linked_fe = (eDVBRegisteredFrontend*) linked_to;
163                                         if (linked_fe->m_inuse)
164                                         {
165                                                 int ocsw = -1,
166                                                         oucsw = -1,
167                                                         oToneburst = -1,
168                                                         oRotorPos = -1;
169                                                 linked_fe->m_frontend->getData(0, ocsw);
170                                                 linked_fe->m_frontend->getData(1, oucsw);
171                                                 linked_fe->m_frontend->getData(2, oToneburst);
172                                                 linked_fe->m_frontend->getData(6, oRotorPos);
173 #if 0
174                                                 eDebug("compare csw %02x == lcsw %02x",
175                                                         csw, ocsw);
176                                                 if ( diseqc )
177                                                         eDebug("compare ucsw %02x == lucsw %02x\ncompare toneburst %02x == oToneburst %02x",
178                                                                 ucsw, oucsw, toneburst, oToneburst);
179                                                 if ( rotor )
180                                                         eDebug("compare pos %d == current pos %d",
181                                                                 sat.orbital_position, oRotorPos);
182 #endif
183                                                 if ( (csw != ocsw) ||
184                                                         ( diseqc && (ucsw != oucsw || toneburst != oToneburst) ) ||
185                                                         ( rotor && oRotorPos != sat.orbital_position ) )
186                                                 {
187 //                                                      eDebug("can not tune this transponder with linked tuner in use!!");
188                                                         ret=0;
189                                                 }
190 //                                              else
191 //                                                      eDebug("OK .. can tune this transponder with linked tuner in use :)");
192                                         }
193                                 }
194
195                                 if (satpos_depends_to != -1)  // check for linked tuners..
196                                 {
197                                         eDVBRegisteredFrontend *satpos_depends_to_fe = (eDVBRegisteredFrontend*) satpos_depends_to;
198                                         if ( satpos_depends_to_fe->m_inuse )
199                                         {
200                                                 int oRotorPos = -1;
201                                                 satpos_depends_to_fe->m_frontend->getData(6, oRotorPos);
202                                                 if (!rotor || oRotorPos != sat.orbital_position)
203                                                 {
204 //                                                      eDebug("can not tune this transponder ... rotor on other tuner is positioned to %d", oRotorPos);
205                                                         ret=0;
206                                                 }
207                                         }
208 //                                      else
209 //                                              eDebug("OK .. can tune this transponder satpos is correct :)");
210                                 }
211                         }
212                 }
213         }
214         return ret;
215 }
216
217 #define VOLTAGE(x) (lnb_param.m_increased_voltage ? iDVBFrontend::voltage##x##_5 : iDVBFrontend::voltage##x)
218
219 RESULT eDVBSatelliteEquipmentControl::prepare(iDVBFrontend &frontend, FRONTENDPARAMETERS &parm, eDVBFrontendParametersSatellite &sat, int frontend_id)
220 {
221         bool linked=false;
222         bool depend_satpos_mode=false;
223
224         for (int idx=0; idx <= m_lnbidx; ++idx )
225         {
226                 eDVBSatelliteLNBParameters &lnb_param = m_lnbs[idx];
227                 if (!(lnb_param.tuner_mask & frontend_id)) // lnb for correct tuner?
228                         continue;
229                 eDVBSatelliteDiseqcParameters &di_param = lnb_param.m_diseqc_parameters;
230                 eDVBSatelliteRotorParameters &rotor_param = lnb_param.m_rotor_parameters;
231
232                 std::map<int, eDVBSatelliteSwitchParameters>::iterator sit =
233                         lnb_param.m_satellites.find(sat.orbital_position);
234                 if ( sit != lnb_param.m_satellites.end())
235                 {
236                         eDVBSatelliteSwitchParameters &sw_param = sit->second;
237
238                         int band=0,
239                                 linked_to=-1, // linked tuner
240                                 satpos_depends_to=-1,
241                                 voltage = iDVBFrontend::voltageOff,
242                                 tone = iDVBFrontend::toneOff,
243                                 csw = di_param.m_committed_cmd,
244                                 ucsw = di_param.m_uncommitted_cmd,
245                                 toneburst = di_param.m_toneburst_param,
246                                 lastcsw = -1,
247                                 lastucsw = -1,
248                                 lastToneburst = -1,
249                                 lastRotorCmd = -1,
250                                 curRotorPos = -1;
251
252                         frontend.getData(0, lastcsw);
253                         frontend.getData(1, lastucsw);
254                         frontend.getData(2, lastToneburst);
255                         frontend.getData(5, lastRotorCmd);
256                         frontend.getData(6, curRotorPos);
257                         frontend.getData(7, linked_to);
258                         frontend.getData(8, satpos_depends_to);
259
260                         if (linked_to != -1)
261                         {
262                                 eDVBRegisteredFrontend *linked_fe = (eDVBRegisteredFrontend*) linked_to;
263                                 if (linked_fe->m_inuse)
264                                 {
265                                         eDebug("[SEC] frontend is linked with another and the other one is in use.. so we dont do SEC!!");
266                                         linked=true;
267                                 }
268                         }
269
270                         if (satpos_depends_to != -1)
271                         {
272                                 eDVBRegisteredFrontend *satpos_fe = (eDVBRegisteredFrontend*) satpos_depends_to;
273                                 if (satpos_fe->m_inuse)
274                                 {
275                                         if ( di_param.m_diseqc_mode != eDVBSatelliteDiseqcParameters::V1_2 )
276                                                 continue;
277                                         eDebug("[SEC] frontend is depending on satpos of other one.. so we dont turn rotor!!");
278                                         depend_satpos_mode=true;
279                                 }
280                         }
281
282                         if ( sat.frequency > lnb_param.m_lof_threshold )
283                                 band |= 1;
284
285                         if (band&1)
286                                 parm.FREQUENCY = sat.frequency - lnb_param.m_lof_hi;
287                         else
288                                 parm.FREQUENCY = sat.frequency - lnb_param.m_lof_lo;
289
290                         parm.FREQUENCY = abs(parm.FREQUENCY);
291
292                         if (sat.polarisation == eDVBFrontendParametersSatellite::Polarisation::Horizontal)
293                                 band |= 2;
294
295                         switch (sat.inversion)
296                         {
297                                 case eDVBFrontendParametersCable::Inversion::On:
298                                         parm.INVERSION = INVERSION_ON;
299                                         break;
300                                 case eDVBFrontendParametersCable::Inversion::Off:
301                                         parm.INVERSION = INVERSION_OFF;
302                                         break;
303                                 default:
304                                 case eDVBFrontendParametersCable::Inversion::Unknown:
305                                         parm.INVERSION = INVERSION_AUTO;
306                                         break;
307                         }
308
309                         switch (sat.fec)
310                         {
311                                 default:
312                                 case eDVBFrontendParametersSatellite::FEC::fNone:
313                                         eDebug("no fec set.. assume auto");
314                                 case eDVBFrontendParametersSatellite::FEC::fAuto:
315                                         parm.u.qpsk.FEC_INNER = FEC_AUTO;
316                                         break;
317                                 case eDVBFrontendParametersSatellite::FEC::f1_2:
318                                         parm.u.qpsk.FEC_INNER = FEC_1_2;
319                                         break;
320                                 case eDVBFrontendParametersSatellite::FEC::f2_3:
321                                         parm.u.qpsk.FEC_INNER = FEC_2_3;
322                                         break;
323                                 case eDVBFrontendParametersSatellite::FEC::f3_4:
324                                         parm.u.qpsk.FEC_INNER = FEC_3_4;
325                                         break;
326                                 case eDVBFrontendParametersSatellite::FEC::f5_6:
327                                         parm.u.qpsk.FEC_INNER = FEC_5_6;
328                                         break;
329                                 case eDVBFrontendParametersSatellite::FEC::f7_8: 
330                                         parm.u.qpsk.FEC_INNER = FEC_7_8;
331                                         break;
332                         }
333
334                         parm.u.qpsk.SYMBOLRATE = sat.symbol_rate;
335
336                         if ( sw_param.m_voltage_mode == eDVBSatelliteSwitchParameters::_14V
337                                 || ( sat.polarisation == eDVBFrontendParametersSatellite::Polarisation::Vertical
338                                         && sw_param.m_voltage_mode == eDVBSatelliteSwitchParameters::HV )  )
339                                 voltage = VOLTAGE(13);
340                         else if ( sw_param.m_voltage_mode == eDVBSatelliteSwitchParameters::_18V
341                                 || ( sat.polarisation == eDVBFrontendParametersSatellite::Polarisation::Horizontal
342                                         && sw_param.m_voltage_mode == eDVBSatelliteSwitchParameters::HV )  )
343                                 voltage = VOLTAGE(18);
344                         if ( (sw_param.m_22khz_signal == eDVBSatelliteSwitchParameters::ON)
345                                 || ( sw_param.m_22khz_signal == eDVBSatelliteSwitchParameters::HILO && (band&1) ) )
346                                 tone = iDVBFrontend::toneOn;
347                         else if ( (sw_param.m_22khz_signal == eDVBSatelliteSwitchParameters::OFF)
348                                 || ( sw_param.m_22khz_signal == eDVBSatelliteSwitchParameters::HILO && !(band&1) ) )
349                                 tone = iDVBFrontend::toneOff;
350
351                         eSecCommandList sec_sequence;
352
353                         if (di_param.m_diseqc_mode >= eDVBSatelliteDiseqcParameters::V1_0)
354                         {
355                                 if ( di_param.m_committed_cmd < eDVBSatelliteDiseqcParameters::SENDNO )
356                                         csw = 0xF0 | (csw << 2);
357
358                                 csw |= band;
359
360                                 bool send_csw =
361                                         (di_param.m_committed_cmd != eDVBSatelliteDiseqcParameters::SENDNO);
362                                 bool changed_csw = send_csw && csw != lastcsw;
363
364                                 bool send_ucsw =
365                                         (di_param.m_uncommitted_cmd && di_param.m_diseqc_mode > eDVBSatelliteDiseqcParameters::V1_0);
366                                 bool changed_ucsw = send_ucsw && ucsw != lastucsw;
367
368                                 bool send_burst =
369                                         (di_param.m_toneburst_param != eDVBSatelliteDiseqcParameters::NO);
370                                 bool changed_burst = send_burst && toneburst != lastToneburst;
371
372                                 int send_mask = 0; /*
373                                         1 must send csw
374                                         2 must send ucsw
375                                         4 send toneburst first
376                                         8 send toneburst at end */
377                                 if (changed_burst) // toneburst first and toneburst changed
378                                 {
379                                         if (di_param.m_command_order&1)
380                                         {
381                                                 send_mask |= 4;
382                                                 if ( send_csw )
383                                                         send_mask |= 1;
384                                                 if ( send_ucsw )
385                                                         send_mask |= 2;
386                                         }
387                                         else
388                                                 send_mask |= 8;
389                                 }
390                                 if (changed_ucsw)
391                                 {
392                                         send_mask |= 2;
393                                         if ((di_param.m_command_order&4) && send_csw)
394                                                 send_mask |= 1;
395                                         if (di_param.m_command_order==4 && send_burst)
396                                                 send_mask |= 8;
397                                 }
398                                 if (changed_csw) 
399                                 {
400                                         if ( di_param.m_use_fast && (lastcsw & 0xF0) && ((csw / 4) == (lastcsw / 4)) )
401                                                 eDebug("dont send committed cmd (fast diseqc)");
402                                         else
403                                         {
404                                                 send_mask |= 1;
405                                                 if (!(di_param.m_command_order&4) && send_ucsw)
406                                                         send_mask |= 2;
407                                                 if (!(di_param.m_command_order&1) && send_burst)
408                                                         send_mask |= 8;
409                                         }
410                                 }
411
412 #if 0
413                                 eDebugNoNewLine("sendmask: ");
414                                 for (int i=3; i >= 0; --i)
415                                         if ( send_mask & (1<<i) )
416                                                 eDebugNoNewLine("1");
417                                         else
418                                                 eDebugNoNewLine("0");
419                                 eDebug("");
420 #endif
421
422                                 int RotorCmd=-1;
423                                 bool useGotoXX = false;
424                                 if ( di_param.m_diseqc_mode == eDVBSatelliteDiseqcParameters::V1_2 )
425                                 {
426                                         if (depend_satpos_mode || linked)
427                                                 // in this both modes we dont really turn the rotor.... but in canTune we need the satpos
428                                                 frontend.setData(6, sat.orbital_position);
429                                         else
430                                         {
431                                                 if (sw_param.m_rotorPosNum) // we have stored rotor pos?
432                                                         RotorCmd=sw_param.m_rotorPosNum;
433                                                 else  // we must calc gotoxx cmd
434                                                 {
435                                                         eDebug("Entry for %d,%d? not in Rotor Table found... i try gotoXX?", sat.orbital_position / 10, sat.orbital_position % 10 );
436                                                         useGotoXX = true;
437
438                                                         double  SatLon = abs(sat.orbital_position)/10.00,
439                                                                         SiteLat = rotor_param.m_gotoxx_parameters.m_latitude,
440                                                                         SiteLon = rotor_param.m_gotoxx_parameters.m_longitude;
441
442                                                         if ( rotor_param.m_gotoxx_parameters.m_la_direction == eDVBSatelliteRotorParameters::SOUTH )
443                                                                 SiteLat = -SiteLat;
444
445                                                         if ( rotor_param.m_gotoxx_parameters.m_lo_direction == eDVBSatelliteRotorParameters::WEST )
446                                                                 SiteLon = 360 - SiteLon;
447
448                                                         eDebug("siteLatitude = %lf, siteLongitude = %lf, %lf degrees", SiteLat, SiteLon, SatLon );
449                                                         double satHourAngle =
450                                                                 calcSatHourangle( SatLon, SiteLat, SiteLon );
451                                                         eDebug("PolarmountHourAngle=%lf", satHourAngle );
452
453                                                         static int gotoXTable[10] =
454                                                                 { 0x00, 0x02, 0x03, 0x05, 0x06, 0x08, 0x0A, 0x0B, 0x0D, 0x0E };
455
456                                                         if (SiteLat >= 0) // Northern Hemisphere
457                                                         {
458                                                                 int tmp=(int)round( fabs( 180 - satHourAngle ) * 10.0 );
459                                                                 RotorCmd = (tmp/10)*0x10 + gotoXTable[ tmp % 10 ];
460
461                                                                 if (satHourAngle < 180) // the east
462                                                                         RotorCmd |= 0xE000;
463                                                                 else                                    // west
464                                                                         RotorCmd |= 0xD000;
465                                                         }
466                                                         else // Southern Hemisphere
467                                                         {
468                                                                 if (satHourAngle < 180) // the east
469                                                                 {
470                                                                         int tmp=(int)round( fabs( satHourAngle ) * 10.0 );
471                                                                         RotorCmd = (tmp/10)*0x10 + gotoXTable[ tmp % 10 ];
472                                                                         RotorCmd |= 0xD000;
473                                                                 }
474                                                                 else                                    // west
475                                                                 {
476                                                                         int tmp=(int)round( fabs( 360 - satHourAngle ) * 10.0 );
477                                                                         RotorCmd = (tmp/10)*0x10 + gotoXTable[ tmp % 10 ];
478                                                                         RotorCmd |= 0xE000;
479                                                                 }
480                                                         }
481                                                         eDebug("RotorCmd = %04x", RotorCmd);
482                                                 }
483                                         }
484                                 }
485
486                                 if ( send_mask )
487                                 {
488                                         sec_sequence.push_back( eSecCommand(eSecCommand::SET_TONE, iDVBFrontend::toneOff) );
489                                         sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, 15) );
490                                         eSecCommand::pair compare;
491                                         compare.voltage = iDVBFrontend::voltageOff;
492                                         compare.steps = +4;
493                                         // the next is a check if voltage is switched off.. then we first set a voltage :)
494                                         // else we set voltage after all diseqc stuff..
495                                         sec_sequence.push_back( eSecCommand(eSecCommand::IF_NOT_VOLTAGE_GOTO, compare) );
496
497                                         if ( RotorCmd != -1 && RotorCmd != lastRotorCmd )
498                                                 // TODO .. add handling for turning rotor without measure inputpower
499                                                 compare.voltage = VOLTAGE(18);
500                                         else
501                                                 compare.voltage = voltage;
502
503                                         // voltage already correct ?
504                                         sec_sequence.push_back( eSecCommand(eSecCommand::IF_VOLTAGE_GOTO, compare) );
505                                         compare.steps = +3;
506                                         sec_sequence.push_back( eSecCommand(eSecCommand::SET_VOLTAGE, compare.voltage) );
507                                         // voltage was disabled..so we wait a longer time .. for normal switches 200ms should be enough
508                                         sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, 200) );
509
510                                         for (int seq_repeat = 0; seq_repeat < (di_param.m_seq_repeat?2:1); ++seq_repeat)
511                                         {
512                                                 if ( send_mask & 4 )
513                                                 {
514                                                         sec_sequence.push_back( eSecCommand(eSecCommand::SEND_TONEBURST, di_param.m_toneburst_param) );
515                                                         sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, 50) );
516                                                 }
517
518                                                 int loops=0;
519
520                                                 if ( send_mask & 1 )
521                                                         ++loops;
522                                                 if ( send_mask & 2 )
523                                                         ++loops;
524
525                                                 for ( int i=0; i < di_param.m_repeats; ++i )
526                                                 loops *= 2;
527
528                                                 for ( int i = 0; i < loops;)  // fill commands...
529                                                 {
530                                                         eDVBDiseqcCommand diseqc;
531                                                         diseqc.len = 4;
532                                                         diseqc.data[0] = i ? 0xE1 : 0xE0;
533                                                         diseqc.data[1] = 0x10;
534                                                         if ( (send_mask & 2) && (di_param.m_command_order & 4) )
535                                                         {
536                                                                 diseqc.data[2] = 0x39;
537                                                                 diseqc.data[3] = ucsw;
538                                                         }
539                                                         else if ( send_mask & 1 )
540                                                         {
541                                                                 diseqc.data[2] = 0x38;
542                                                                 diseqc.data[3] = csw;
543                                                         }
544                                                         else
545                                                         {
546                                                                 diseqc.data[2] = 0x00;
547                                                                 diseqc.data[3] = 0x00;
548                                                         }
549                                                         sec_sequence.push_back( eSecCommand(eSecCommand::SEND_DISEQC, diseqc) );
550
551                                                         i++;
552                                                         if ( i < loops )
553                                                         {
554                                                                 int cmd=0;
555                                                                 if (diseqc.data[2] == 0x38 && (send_mask & 2))
556                                                                         cmd=0x39;
557                                                                 else if (diseqc.data[2] == 0x39 && (send_mask & 1))
558                                                                         cmd=0x38;
559                                                                 if (cmd)
560                                                                 {
561                                                                         static int delay = (120 - 54) / 2;  // standard says 100msek between two repeated commands
562                                                                         sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, delay) );
563                                                                         diseqc.data[2]=cmd;
564                                                                         diseqc.data[3]=(cmd==0x38) ? csw : ucsw;
565                                                                         sec_sequence.push_back( eSecCommand(eSecCommand::SEND_DISEQC, diseqc) );
566                                                                         ++i;
567                                                                         if ( i < loops )
568                                                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, delay ) );
569                                                                         else
570                                                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, 50) );
571                                                                 }
572                                                                 else  // delay 120msek when no command is in repeat gap
573                                                                         sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, 120) );
574                                                         }
575                                                         else
576                                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, 50) );
577                                                 }
578
579                                                 if ( send_mask & 8 )  // toneburst at end of sequence
580                                                 {
581                                                         sec_sequence.push_back( eSecCommand(eSecCommand::SEND_TONEBURST, di_param.m_toneburst_param) );
582                                                         sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, 50) );
583                                                 }
584                                         }
585                                 }
586
587                                 if ( RotorCmd != -1 && RotorCmd != lastRotorCmd )
588                                 {
589                                         eSecCommand::pair compare;
590                                         compare.voltage = iDVBFrontend::voltageOff;
591                                         compare.steps = +4;
592                                         // the next is a check if voltage is switched off.. then we first set a voltage :)
593                                         // else we set voltage after all diseqc stuff..
594                                         sec_sequence.push_back( eSecCommand(eSecCommand::IF_NOT_VOLTAGE_GOTO, compare) );
595
596                                         // TODO .. add handling for turning rotor without measure inputpower
597                                         sec_sequence.push_back( eSecCommand(eSecCommand::SET_VOLTAGE, VOLTAGE(18)) );
598                                         // voltage was disabled..so we wait a longer time ..
599                                         sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, 500) );
600                                         sec_sequence.push_back( eSecCommand(eSecCommand::GOTO, +4) );  // no need to send stop rotor cmd
601
602                                         eDVBDiseqcCommand diseqc;
603                                         if ( !send_mask )  // no switch changed.. so we send first the rotor stop command
604                                         {
605                                                 diseqc.len = 3;
606                                                 diseqc.data[0] = 0xE0;
607                                                 diseqc.data[1] = 0x31;  // positioner
608                                                 diseqc.data[2] = 0x60;  // stop
609                                                 sec_sequence.push_back( eSecCommand(eSecCommand::IF_ROTORPOS_VALID_GOTO, +3) );
610                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SEND_DISEQC, diseqc) );
611                                                 // wait 300msec after send rotor stop cmd
612                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, 300) );
613                                         }
614                                         else
615                                         {
616                                                 // wait 500msec after switching to rotor
617                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, 500) );
618                                                 sec_sequence.push_back( eSecCommand(eSecCommand::GOTO, +2) );
619                                                 sec_sequence.push_back( eSecCommand(eSecCommand::GOTO, +1) );
620                                         }
621
622                                         diseqc.data[0] = 0xE0;
623                                         diseqc.data[1] = 0x31;          // positioner
624                                         if ( useGotoXX )
625                                         {
626                                                 diseqc.len = 5;
627                                                 diseqc.data[2] = 0x6E;  // drive to angular position
628                                                 diseqc.data[3] = ((RotorCmd & 0xFF00) / 0x100);
629                                                 diseqc.data[4] = RotorCmd & 0xFF;
630                                         }
631                                         else
632                                         {
633                                                 diseqc.len = 4;
634                                                 diseqc.data[2] = 0x6B;  // goto stored sat position
635                                                 diseqc.data[3] = RotorCmd;
636                                                 diseqc.data[4] = 0x00;
637                                         }
638
639                                         if ( rotor_param.m_inputpower_parameters.m_use )
640                                         { // use measure rotor input power to detect rotor state
641                                                 eSecCommand::rotor cmd;
642                                                 eSecCommand::pair compare;
643                                                 compare.voltage = VOLTAGE(18);
644                                                 compare.steps = +2;
645                                                 sec_sequence.push_back( eSecCommand(eSecCommand::IF_VOLTAGE_GOTO, compare) );
646                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SET_VOLTAGE, compare.voltage) );
647 // measure idle power values
648                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, 200) );  // wait 200msec after voltage change
649                                                 sec_sequence.push_back( eSecCommand(eSecCommand::MEASURE_IDLE_INPUTPOWER, 1) );
650                                                 compare.voltage = 1;
651                                                 compare.steps = -2;
652                                                 sec_sequence.push_back( eSecCommand(eSecCommand::IF_MEASURE_IDLE_WAS_NOT_OK_GOTO, compare) );
653                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SET_VOLTAGE, VOLTAGE(13)) );
654                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, 200) );  // wait 200msec before measure
655                                                 sec_sequence.push_back( eSecCommand(eSecCommand::MEASURE_IDLE_INPUTPOWER, 0) );
656                                                 compare.voltage = 0;
657                                                 sec_sequence.push_back( eSecCommand(eSecCommand::IF_MEASURE_IDLE_WAS_NOT_OK_GOTO, compare) );
658 ////////////////////////////
659                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SET_POWER_LIMITING_MODE, eSecCommand::modeStatic) );
660                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SET_ROTOR_DISEQC_RETRYS, 2) );  // 2 retries
661                                                 sec_sequence.push_back( eSecCommand(eSecCommand::INVALIDATE_CURRENT_ROTORPARMS) );
662                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SEND_DISEQC, diseqc) );
663                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SET_TIMEOUT, 40) );  // 2 seconds rotor start timout
664 // rotor start loop
665                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, 50) );  // 50msec delay
666                                                 sec_sequence.push_back( eSecCommand(eSecCommand::MEASURE_RUNNING_INPUTPOWER) );
667                                                 cmd.direction=1;  // check for running rotor
668                                                 cmd.deltaA=rotor_param.m_inputpower_parameters.m_delta;
669                                                 cmd.steps=+5;
670                                                 cmd.okcount=0;
671                                                 sec_sequence.push_back( eSecCommand(eSecCommand::IF_INPUTPOWER_DELTA_GOTO, cmd ) );  // check if rotor has started
672                                                 sec_sequence.push_back( eSecCommand(eSecCommand::IF_TIMEOUT_GOTO, +2 ) );  // timeout .. we assume now the rotor is already at the correct position
673                                                 sec_sequence.push_back( eSecCommand(eSecCommand::GOTO, -4) );  // goto loop start
674                                                 sec_sequence.push_back( eSecCommand(eSecCommand::IF_NO_MORE_ROTOR_DISEQC_RETRYS_GOTO, +9 ) );  // timeout .. we assume now the rotor is already at the correct position
675                                                 sec_sequence.push_back( eSecCommand(eSecCommand::GOTO, -8) );  // goto loop start
676 ////////////////////
677                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SET_TIMEOUT, 2400) );  // 2 minutes running timeout
678                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SET_VOLTAGE, VOLTAGE(18)) );
679 // rotor running loop
680                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, 50) );  // wait 50msec
681                                                 sec_sequence.push_back( eSecCommand(eSecCommand::MEASURE_RUNNING_INPUTPOWER) );
682                                                 cmd.direction=0;  // check for stopped rotor
683                                                 cmd.steps=+3;
684                                                 sec_sequence.push_back( eSecCommand(eSecCommand::IF_INPUTPOWER_DELTA_GOTO, cmd ) );
685                                                 sec_sequence.push_back( eSecCommand(eSecCommand::IF_TIMEOUT_GOTO, +3 ) );  // timeout ? this should never happen
686                                                 sec_sequence.push_back( eSecCommand(eSecCommand::GOTO, -4) );  // running loop start
687 /////////////////////
688                                                 sec_sequence.push_back( eSecCommand(eSecCommand::UPDATE_CURRENT_ROTORPARAMS) );
689                                                 sec_sequence.push_back( eSecCommand(eSecCommand::SET_POWER_LIMITING_MODE, eSecCommand::modeDynamic) );
690                                                 frontend.setData(3, RotorCmd);
691                                                 frontend.setData(4, sat.orbital_position);
692                                         }
693                                         else
694                                                 eFatal("rotor turning without inputpowermeasure not implemented yet");
695                                 }
696                         }
697                         else
698                                 csw = band;
699
700                         frontend.setData(0, csw);
701                         frontend.setData(1, ucsw);
702                         frontend.setData(2, di_param.m_toneburst_param);
703
704                         if ( linked )
705                                 return 0;
706
707                         eSecCommand::pair compare;
708                         compare.voltage = voltage;
709                         compare.steps = +3;
710                         sec_sequence.push_back( eSecCommand(eSecCommand::IF_VOLTAGE_GOTO, compare) ); // voltage already correct ?
711                         sec_sequence.push_back( eSecCommand(eSecCommand::SET_VOLTAGE, voltage) );
712                         sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, 10) );
713
714                         sec_sequence.push_back( eSecCommand(eSecCommand::SET_TONE, tone) );
715                         sec_sequence.push_back( eSecCommand(eSecCommand::SLEEP, 15) );
716
717                         frontend.setSecSequence(sec_sequence);
718
719                         return 0;
720                 }
721         }
722
723         eDebug("found no useable satellite configuration for orbital position (%d)", sat.orbital_position );
724         return -1;
725 }
726
727 RESULT eDVBSatelliteEquipmentControl::clear()
728 {
729         for (int i=0; i < m_lnbidx; ++i)
730         {
731                 m_lnbs[i].m_satellites.clear();
732                 m_lnbs[i].tuner_mask = 0;
733         }
734         m_lnbidx=-1;
735
736 // clear linked tuner configuration
737         for (eSmartPtrList<eDVBRegisteredFrontend>::iterator it(m_avail_frontends.begin()); it != m_avail_frontends.end(); ++it)
738                 it->m_frontend->setData(7, -1);
739
740         return 0;
741 }
742
743 // helper function for setTunerLinked and setTunerDepends
744 RESULT eDVBSatelliteEquipmentControl::setDependencyPointers( int tu1, int tu2, int dest_data_byte )
745 {
746         if (tu1 == tu2)
747                 return -1;
748
749         eDVBRegisteredFrontend *p1=NULL, *p2=NULL;
750
751         int cnt=0;
752         for (eSmartPtrList<eDVBRegisteredFrontend>::iterator it(m_avail_frontends.begin()); it != m_avail_frontends.end(); ++it, ++cnt)
753         {
754                 if (cnt == tu1)
755                         p1 = *it;
756                 else if (cnt == tu2)
757                         p2 = *it;
758         }
759         if (p1 && p2)
760         {
761                 p1->m_frontend->setData(dest_data_byte, (int)p2);  // this is evil..
762                 p2->m_frontend->setData(dest_data_byte, (int)p1);
763                 return 0;
764         }
765         return -1;
766 }
767
768 /* LNB Specific Parameters */
769 RESULT eDVBSatelliteEquipmentControl::addLNB()
770 {
771         if ( m_lnbidx < (int)(sizeof(m_lnbs) / sizeof(eDVBSatelliteLNBParameters)))
772                 m_curSat=m_lnbs[++m_lnbidx].m_satellites.end();
773         else
774         {
775                 eDebug("no more LNB free... cnt is %d", m_lnbidx);
776                 return -ENOSPC;
777         }
778         return 0;
779 }
780
781 RESULT eDVBSatelliteEquipmentControl::setLNBTunerMask(int tunermask)
782 {
783         if ( currentLNBValid() )
784                 m_lnbs[m_lnbidx].tuner_mask = tunermask;
785         else
786                 return -ENOENT;
787         return 0;
788 }
789
790 RESULT eDVBSatelliteEquipmentControl::setLNBLOFL(int lofl)
791 {
792         if ( currentLNBValid() )
793                 m_lnbs[m_lnbidx].m_lof_lo = lofl;
794         else
795                 return -ENOENT;
796         return 0;
797 }
798
799 RESULT eDVBSatelliteEquipmentControl::setLNBLOFH(int lofh)
800 {
801         if ( currentLNBValid() )
802                 m_lnbs[m_lnbidx].m_lof_hi = lofh;
803         else
804                 return -ENOENT;
805         return 0;
806 }
807
808 RESULT eDVBSatelliteEquipmentControl::setLNBThreshold(int threshold)
809 {
810         if ( currentLNBValid() )
811                 m_lnbs[m_lnbidx].m_lof_threshold = threshold;
812         else
813                 return -ENOENT;
814         return 0;
815 }
816
817 RESULT eDVBSatelliteEquipmentControl::setLNBIncreasedVoltage(bool onoff)
818 {
819         if ( currentLNBValid() )
820                 m_lnbs[m_lnbidx].m_increased_voltage = onoff;
821         else
822                 return -ENOENT;
823         return 0;
824 }
825
826 /* DiSEqC Specific Parameters */
827 RESULT eDVBSatelliteEquipmentControl::setDiSEqCMode(int diseqcmode)
828 {
829         if ( currentLNBValid() )
830                 m_lnbs[m_lnbidx].m_diseqc_parameters.m_diseqc_mode = (eDVBSatelliteDiseqcParameters::t_diseqc_mode)diseqcmode;
831         else
832                 return -ENOENT;
833         return 0;
834 }
835
836 RESULT eDVBSatelliteEquipmentControl::setToneburst(int toneburst)
837 {
838         if ( currentLNBValid() )
839                 m_lnbs[m_lnbidx].m_diseqc_parameters.m_toneburst_param = (eDVBSatelliteDiseqcParameters::t_toneburst_param)toneburst;
840         else
841                 return -ENOENT;
842         return 0;
843 }
844
845 RESULT eDVBSatelliteEquipmentControl::setRepeats(int repeats)
846 {
847         if ( currentLNBValid() )
848                 m_lnbs[m_lnbidx].m_diseqc_parameters.m_repeats=repeats;
849         else
850                 return -ENOENT;
851         return 0;
852 }
853
854 RESULT eDVBSatelliteEquipmentControl::setCommittedCommand(int command)
855 {
856         if ( currentLNBValid() )
857                 m_lnbs[m_lnbidx].m_diseqc_parameters.m_committed_cmd=command;
858         else
859                 return -ENOENT;
860         return 0;
861 }
862
863 RESULT eDVBSatelliteEquipmentControl::setUncommittedCommand(int command)
864 {
865         if ( currentLNBValid() )
866                 m_lnbs[m_lnbidx].m_diseqc_parameters.m_uncommitted_cmd = command;
867         else
868                 return -ENOENT;
869         return 0;
870 }
871
872 RESULT eDVBSatelliteEquipmentControl::setCommandOrder(int order)
873 {
874         if ( currentLNBValid() )
875                 m_lnbs[m_lnbidx].m_diseqc_parameters.m_command_order=order;
876         else
877                 return -ENOENT;
878         return 0;
879 }
880
881 RESULT eDVBSatelliteEquipmentControl::setFastDiSEqC(bool onoff)
882 {
883         if ( currentLNBValid() )
884                 m_lnbs[m_lnbidx].m_diseqc_parameters.m_use_fast=onoff;
885         else
886                 return -ENOENT;
887         return 0;
888 }
889
890 RESULT eDVBSatelliteEquipmentControl::setSeqRepeat(bool onoff)
891 {
892         if ( currentLNBValid() )
893                 m_lnbs[m_lnbidx].m_diseqc_parameters.m_seq_repeat = onoff;
894         else
895                 return -ENOENT;
896         return 0;
897 }
898
899 /* Rotor Specific Parameters */
900 RESULT eDVBSatelliteEquipmentControl::setLongitude(float longitude)
901 {
902         if ( currentLNBValid() )
903                 m_lnbs[m_lnbidx].m_rotor_parameters.m_gotoxx_parameters.m_longitude=longitude;
904         else
905                 return -ENOENT;
906         return 0;
907 }
908
909 RESULT eDVBSatelliteEquipmentControl::setLatitude(float latitude)
910 {
911         if ( currentLNBValid() )
912                 m_lnbs[m_lnbidx].m_rotor_parameters.m_gotoxx_parameters.m_latitude=latitude;
913         else
914                 return -ENOENT;
915         return 0;
916 }
917
918 RESULT eDVBSatelliteEquipmentControl::setLoDirection(int direction)
919 {
920         if ( currentLNBValid() )
921                 m_lnbs[m_lnbidx].m_rotor_parameters.m_gotoxx_parameters.m_lo_direction=direction;
922         else
923                 return -ENOENT;
924         return 0;
925 }
926
927 RESULT eDVBSatelliteEquipmentControl::setLaDirection(int direction)
928 {
929         if ( currentLNBValid() )
930                 m_lnbs[m_lnbidx].m_rotor_parameters.m_gotoxx_parameters.m_la_direction=direction;
931         else
932                 return -ENOENT;
933         return 0;
934 }
935
936 RESULT eDVBSatelliteEquipmentControl::setUseInputpower(bool onoff)
937 {
938         if ( currentLNBValid() )
939                 m_lnbs[m_lnbidx].m_rotor_parameters.m_inputpower_parameters.m_use=onoff;
940         else
941                 return -ENOENT;
942         return 0;
943 }
944
945 RESULT eDVBSatelliteEquipmentControl::setInputpowerDelta(int delta)
946 {
947         if ( currentLNBValid() )
948                 m_lnbs[m_lnbidx].m_rotor_parameters.m_inputpower_parameters.m_delta=delta;
949         else
950                 return -ENOENT;
951         return 0;
952 }
953
954 /* Satellite Specific Parameters */
955 RESULT eDVBSatelliteEquipmentControl::addSatellite(int orbital_position)
956 {
957         if ( currentLNBValid() )
958         {
959                 std::map<int, eDVBSatelliteSwitchParameters>::iterator it =
960                         m_lnbs[m_lnbidx].m_satellites.find(orbital_position);
961                 if ( it == m_lnbs[m_lnbidx].m_satellites.end() )
962                 {
963                         std::pair<std::map<int, eDVBSatelliteSwitchParameters>::iterator, bool > ret =
964                                 m_lnbs[m_lnbidx].m_satellites.insert(
965                                         std::pair<int, eDVBSatelliteSwitchParameters>(orbital_position, eDVBSatelliteSwitchParameters())
966                                 );
967                         if ( ret.second )
968                                 m_curSat = ret.first;
969                         else
970                                 return -ENOMEM;
971                 }
972                 else
973                         return -EEXIST;
974         }
975         else
976                 return -ENOENT;
977         return 0;
978 }
979
980 RESULT eDVBSatelliteEquipmentControl::setVoltageMode(int mode)
981 {
982         if ( currentLNBValid() && m_curSat != m_lnbs[m_lnbidx].m_satellites.end() )
983                 m_curSat->second.m_voltage_mode = (eDVBSatelliteSwitchParameters::t_voltage_mode)mode;
984         else
985                 return -ENOENT;
986         return 0;
987
988 }
989
990 RESULT eDVBSatelliteEquipmentControl::setToneMode(int mode)
991 {
992         if ( currentLNBValid() )
993         {
994                 if ( m_curSat != m_lnbs[m_lnbidx].m_satellites.end() )
995                         m_curSat->second.m_22khz_signal = (eDVBSatelliteSwitchParameters::t_22khz_signal)mode;
996                 else
997                         return -EPERM;
998         }
999         else
1000                 return -ENOENT;
1001         return 0;
1002 }
1003
1004 RESULT eDVBSatelliteEquipmentControl::setRotorPosNum(int rotor_pos_num)
1005 {
1006         if ( currentLNBValid() )
1007         {
1008                 if ( m_curSat != m_lnbs[m_lnbidx].m_satellites.end() )
1009                         m_curSat->second.m_rotorPosNum=rotor_pos_num;
1010                 else
1011                         return -EPERM;
1012         }
1013         else
1014                 return -ENOENT;
1015         return 0;
1016 }
1017
1018 RESULT eDVBSatelliteEquipmentControl::setTunerLinked(int tu1, int tu2)
1019 {
1020         return setDependencyPointers(tu1, tu2, 7);
1021 }
1022
1023 RESULT eDVBSatelliteEquipmentControl::setTunerDepends(int tu1, int tu2)
1024 {
1025         return setDependencyPointers(tu1, tu2, 8);
1026 }
1027
1028 bool eDVBSatelliteEquipmentControl::isRotorMoving()
1029 {
1030         return m_rotorMoving;
1031 }
1032
1033 void eDVBSatelliteEquipmentControl::setRotorMoving(bool b)
1034 {
1035         m_rotorMoving=b;
1036 }