-#include <config.h>
#include <lib/dvb/dvb.h>
#include <lib/base/eerror.h>
#include <errno.h>
diff = 1<<29;
else if (sat.polarisation != osat.polarisation)
diff = 1<<28;
- else
+ else
+ {
diff = abs(sat.frequency - osat.frequency);
+ diff += abs(sat.symbol_rate - osat.symbol_rate);
+ }
return 0;
}
case iDVBFrontend::feCable:
DEFINE_REF(eDVBFrontend);
-eDVBFrontend::eDVBFrontend(int adap, int fe, int &ok): m_type(-1), m_fe(fe), m_curVoltage(-1)
+eDVBFrontend::eDVBFrontend(int adap, int fe, int &ok)
+ :m_type(-1), m_fe(fe), m_fd(-1), m_timeout(0), m_tuneTimer(0)
+#if HAVE_DVB_API_VERSION < 3
+ ,m_secfd(-1)
+#endif
{
#if HAVE_DVB_API_VERSION < 3
- char sec_filename[128];
+ sprintf(m_filename, "/dev/dvb/card%d/frontend%d", adap, fe);
+ sprintf(m_sec_filename, "/dev/dvb/card%d/sec%d", adap, fe);
+#else
+ sprintf(m_filename, "/dev/dvb/adapter%d/frontend%d", adap, fe);
#endif
- char filename[128];
+ m_timeout = new eTimer(eApp);
+ CONNECT(m_timeout->timeout, eDVBFrontend::timeout);
+
+ m_tuneTimer = new eTimer(eApp);
+ CONNECT(m_tuneTimer->timeout, eDVBFrontend::tuneLoop);
+
+ int entries = sizeof(m_data) / sizeof(int);
+ for (int i=0; i<entries; ++i)
+ m_data[i] = -1;
- int result;
+ m_idleInputpower[0]=m_idleInputpower[1]=0;
- m_sn = 0;
- m_timeout = 0;
+ ok = !openFrontend();
+ closeFrontend();
+}
+
+int eDVBFrontend::openFrontend()
+{
+ if (m_fd >= 0)
+ return -1; // already opened
+
+ m_state=0;
+ m_tuning=0;
#if HAVE_DVB_API_VERSION < 3
- sprintf(sec_filename, "/dev/dvb/card%d/sec%d", adap, fe);
- m_secfd = ::open(sec_filename, O_RDWR);
+ m_secfd = ::open(m_sec_filename, O_RDWR);
if (m_secfd < 0)
{
- eWarning("failed! (%s) %m", sec_filename);
- ok = 0;
- return;
+ eWarning("failed! (%s) %m", m_sec_filename);
+ return -1;
}
- else
- eDebug("m_secfd is %d", m_secfd);
-
FrontendInfo fe_info;
- sprintf(filename, "/dev/dvb/card%d/frontend%d", adap, fe);
#else
- dvb_frontend_info fe_info;
- sprintf(filename, "/dev/dvb/adapter%d/frontend%d", adap, fe);
+ dvb_frontend_info fe_info;
#endif
- eDebug("opening frontend.");
- m_fd = ::open(filename, O_RDWR|O_NONBLOCK);
+ eDebug("opening frontend %d", m_fe);
+ m_fd = ::open(m_filename, O_RDWR|O_NONBLOCK);
if (m_fd < 0)
{
- eWarning("failed! (%s) %m", filename);
- ok = 0;
- return;
- }
-
- result = ::ioctl(m_fd, FE_GET_INFO, &fe_info);
-
- if (result < 0) {
- eWarning("ioctl FE_GET_INFO failed");
- ::close(m_fd);
- m_fd = -1;
- ok = 0;
- return;
+ eWarning("failed! (%s) %m", m_filename);
+#if HAVE_DVB_API_VERSION < 3
+ ::close(m_secfd);
+ m_secfd=-1;
+#endif
+ return -1;
}
- switch (fe_info.type)
+ if (m_type == -1)
{
- case FE_QPSK:
- m_type = feSatellite;
- break;
- case FE_QAM:
- m_type = feCable;
- break;
- case FE_OFDM:
- m_type = feTerrestrial;
- break;
- default:
- eWarning("unknown frontend type.");
- ::close(m_fd);
- m_fd = -1;
- ok = 0;
- return;
+ if (::ioctl(m_fd, FE_GET_INFO, &fe_info) < 0)
+ {
+ eWarning("ioctl FE_GET_INFO failed");
+ ::close(m_fd);
+ m_fd = -1;
+#if HAVE_DVB_API_VERSION < 3
+ ::close(m_secfd);
+ m_secfd=-1;
+#endif
+ return -1;
+ }
+
+ switch (fe_info.type)
+ {
+ case FE_QPSK:
+ m_type = iDVBFrontend::feSatellite;
+ break;
+ case FE_QAM:
+ m_type = iDVBFrontend::feCable;
+ break;
+ case FE_OFDM:
+ m_type = iDVBFrontend::feTerrestrial;
+ break;
+ default:
+ eWarning("unknown frontend type.");
+ ::close(m_fd);
+ m_fd = -1;
+#if HAVE_DVB_API_VERSION < 3
+ ::close(m_secfd);
+ m_secfd=-1;
+#endif
+ return -1;
+ }
+ eDebug("detected %s frontend", "satellite\0cable\0 terrestrial"+fe_info.type*10);
}
- eDebug("detected %s frontend", "satellite\0cable\0 terrestrial"+fe_info.type*10);
- ok = 1;
+
+ setTone(iDVBFrontend::toneOff);
+ setVoltage(iDVBFrontend::voltageOff);
m_sn = new eSocketNotifier(eApp, m_fd, eSocketNotifier::Read);
CONNECT(m_sn->activated, eDVBFrontend::feEvent);
m_sn->start();
- m_timeout = new eTimer(eApp);
- CONNECT(m_timeout->timeout, eDVBFrontend::timeout);
-
- m_tuneTimer = new eTimer(eApp);
- CONNECT(m_tuneTimer->timeout, eDVBFrontend::tuneLoop);
-
- int entries = sizeof(m_data) / sizeof(int);
- for (int i=0; i<entries; ++i)
- m_data[i] = -1;
-
-// m_data[7] = !m_fe;
+ return 0;
+}
-// eDebug("m_data[7] = %d %d", m_data[7], m_fe);
+int eDVBFrontend::closeFrontend()
+{
+ if (!m_fe && m_data[7] != -1)
+ {
+ // try to close the first frontend.. but the second is linked to the first
+ eDVBRegisteredFrontend *linked_fe = (eDVBRegisteredFrontend*)m_data[7];
+ if (linked_fe->m_inuse)
+ {
+ eDebug("dont close frontend %d until the linked frontend %d is still in use",
+ m_fe, linked_fe->m_frontend->getID());
+ return -1;
+ }
+ }
+ if (m_fd >= 0)
+ {
+ eDebug("close frontend %d", m_fe);
+ setTone(iDVBFrontend::toneOff);
+ setVoltage(iDVBFrontend::voltageOff);
+ ::close(m_fd);
+ m_fd=-1;
+ m_data[0] = m_data[1] = m_data[2] = -1;
+ }
+#if HAVE_DVB_API_VERSION < 3
+ if (m_secfd >= 0)
+ {
+ ::close(m_secfd);
+ m_secfd=-1;
+ }
+#endif
+ delete m_sn;
+ m_sn=0;
- return;
+ return 0;
}
eDVBFrontend::~eDVBFrontend()
{
- if (m_fd >= 0)
- ::close(m_fd);
- if (m_sn)
- delete m_sn;
- if (m_timeout)
- delete m_timeout;
+ closeFrontend();
+ delete m_timeout;
+ delete m_tuneTimer;
}
void eDVBFrontend::feEvent(int w)
else
{
state = stateLostLock;
-
- if (m_state != stateLostLock)
- eDebug("FIXME: we lost lock, so we might have to retune.");
+ m_data[0] = m_data[1] = m_data[2] = -1; // reset diseqc
}
}
if (m_state != state)
void eDVBFrontend::timeout()
{
- int state;
+ m_tuning = 0;
if (m_state == stateTuning)
{
- state = stateFailed;
- eDebug("DVBFrontend: timeout");
- if (m_state != state)
+ m_state = stateFailed;
+ m_stateChanged(this);
+ }
+}
+
+int eDVBFrontend::readFrontendData(int type)
+{
+ switch(type)
+ {
+ case bitErrorRate:
{
- m_state = state;
- m_stateChanged(this);
+ uint32_t ber=0;
+ if (ioctl(m_fd, FE_READ_BER, &ber) < 0 && errno != ERANGE)
+ eDebug("FE_READ_BER failed (%m)");
+ return ber;
+ }
+ case signalPower:
+ {
+ uint16_t snr=0;
+ if (ioctl(m_fd, FE_READ_SNR, &snr) < 0 && errno != ERANGE)
+ eDebug("FE_READ_SNR failed (%m)");
+ return snr;
}
- m_tuning = 0;
- } else
- m_tuning = 0;
+ case signalQuality:
+ {
+ uint16_t strength=0;
+ if (ioctl(m_fd, FE_READ_SIGNAL_STRENGTH, &strength) < 0 && errno != ERANGE)
+ eDebug("FE_READ_SIGNAL_STRENGTH failed (%m)");
+ return strength;
+ }
+ }
+ return 0;
}
#ifndef FP_IOCTL_GET_ID
#endif
int eDVBFrontend::readInputpower()
{
- int power=m_fe;
+ int power=m_fe; // this is needed for read inputpower from the correct tuner !
// open front prozessor
int fp=::open("/dev/dbox/fp0", O_RDWR);
++m_sec_sequence.current();
break;
case eSecCommand::SET_VOLTAGE:
+ {
int voltage = m_sec_sequence.current()++->voltage;
eDebug("[SEC] setVoltage %d", voltage);
setVoltage(voltage);
break;
+ }
+ case eSecCommand::IF_VOLTAGE_GOTO:
+ {
+ eSecCommand::pair &compare = m_sec_sequence.current()->compare;
+ if ( compare.voltage == m_curVoltage && setSecSequencePos(compare.steps) )
+ break;
+ ++m_sec_sequence.current();
+ break;
+ }
+ case eSecCommand::IF_NOT_VOLTAGE_GOTO:
+ {
+ eSecCommand::pair &compare = m_sec_sequence.current()->compare;
+ if ( compare.voltage != m_curVoltage && setSecSequencePos(compare.steps) )
+ break;
+ ++m_sec_sequence.current();
+ break;
+ }
case eSecCommand::SET_TONE:
eDebug("[SEC] setTone %d", m_sec_sequence.current()->tone);
setTone(m_sec_sequence.current()++->tone);
setFrontend();
++m_sec_sequence.current();
break;
- case eSecCommand::MEASURE_IDLE_INPUTPOWER:
- {
- int idx = m_sec_sequence.current()++->val;
- if ( idx == 0 || idx == 1 )
- {
- m_idleInputpower[idx] = readInputpower();
- eDebug("[SEC] idleInputpower[%d] is %d", idx, m_idleInputpower[idx]);
- }
- else
- eDebug("[SEC] idleInputpower measure index(%d) out of bound !!!", idx);
- break;
- }
- case eSecCommand::MEASURE_RUNNING_INPUTPOWER:
- m_runningInputpower = readInputpower();
- eDebug("[SEC] runningInputpower is %d", m_runningInputpower);
- ++m_sec_sequence.current();
- break;
case eSecCommand::SET_TIMEOUT:
m_timeoutCount = m_sec_sequence.current()++->val;
eDebug("[SEC] set timeout %d", m_timeoutCount);
break;
- case eSecCommand::UPDATE_CURRENT_ROTORPARAMS:
- m_data[5] = m_data[3];
- m_data[6] = m_data[4];
- eDebug("[SEC] update current rotorparams %d %04x %d", m_timeoutCount, m_data[5], m_data[6]);
- ++m_sec_sequence.current();
- break;
case eSecCommand::IF_TIMEOUT_GOTO:
if (!m_timeoutCount)
{
else
++m_sec_sequence.current();
break;
- case eSecCommand::SET_POWER_LIMITING_MODE:
+ case eSecCommand::MEASURE_IDLE_INPUTPOWER:
{
- int fd = m_fe ?
- ::open("/dev/i2c/1", O_RDWR) :
- ::open("/dev/i2c/0", O_RDWR);
-
- unsigned char data[2];
- ::ioctl(fd, I2C_SLAVE_FORCE, 0x10 >> 1);
- if(::read(fd, data, 1) != 1)
- eDebug("[SEC] error read lnbp (%m)");
- if ( m_sec_sequence.current()->mode == eSecCommand::modeStatic )
+ int idx = m_sec_sequence.current()++->val;
+ if ( idx == 0 || idx == 1 )
{
- data[0] |= 0x90; // enable static current limiting
- eDebug("[SEC] set static current limiting");
+ m_idleInputpower[idx] = readInputpower();
+ eDebug("[SEC] idleInputpower[%d] is %d", idx, m_idleInputpower[idx]);
}
else
+ eDebug("[SEC] idleInputpower measure index(%d) out of bound !!!", idx);
+ break;
+ }
+ case eSecCommand::IF_MEASURE_IDLE_WAS_NOT_OK_GOTO:
+ {
+ eSecCommand::pair &compare = m_sec_sequence.current()->compare;
+ int idx = compare.voltage;
+ if ( idx == 0 || idx == 1 )
{
- data[0] &= ~0x90; // enable dynamic current limiting
- eDebug("[SEC] set dynamic current limiting");
+ int idle = readInputpower();
+ int diff = abs(idle-m_idleInputpower[idx]);
+ if ( diff > 0)
+ {
+ eDebug("measure idle(%d) was not okay.. (%d - %d = %d) retry", idx, m_idleInputpower[idx], idle, diff);
+ setSecSequencePos(compare.steps);
+ break;
+ }
}
- if(::write(fd, data, 1) != 1)
- eDebug("[SEC] error write lnbp (%m)");
- ::close(fd);
++m_sec_sequence.current();
break;
}
- case eSecCommand::IF_IDLE_INPUTPOWER_AVAIL_GOTO:
- if (m_idleInputpower[0] && m_idleInputpower[1] && setSecSequencePos(m_sec_sequence.current()->steps))
- break;
+ case eSecCommand::MEASURE_RUNNING_INPUTPOWER:
+ m_runningInputpower = readInputpower();
+ eDebug("[SEC] runningInputpower is %d", m_runningInputpower);
++m_sec_sequence.current();
break;
case eSecCommand::IF_INPUTPOWER_DELTA_GOTO:
{
- int idleInputpower = m_idleInputpower[m_curVoltage == iDVBFrontend::voltage13 ? 0 : 1];
+ int idleInputpower = m_idleInputpower[ (m_curVoltage&1) ? 0 : 1];
eSecCommand::rotor &cmd = m_sec_sequence.current()->measure;
const char *txt = cmd.direction ? "running" : "stopped";
eDebug("[SEC] waiting for rotor %s %d, idle %d, delta %d",
{
eDebug("[SEC] rotor not %s... reset counter.. increase timeout", txt);
--m_timeoutCount;
+ if (!m_timeoutCount && m_retryCount > 0)
+ --m_retryCount;
cmd.okcount=0;
}
++m_sec_sequence.current();
break;
}
- case eSecCommand::IF_VOLTAGE_GOTO:
+ case eSecCommand::IF_ROTORPOS_VALID_GOTO:
+ if (m_data[5] != -1 && m_data[6] != -1)
+ setSecSequencePos(m_sec_sequence.current()->steps);
+ else
+ ++m_sec_sequence.current();
+ break;
+ case eSecCommand::INVALIDATE_CURRENT_ROTORPARMS:
+ m_data[5] = m_data[6] = -1;
+ eDebug("[SEC] invalidate current rotorparams");
+ ++m_sec_sequence.current();
+ break;
+ case eSecCommand::UPDATE_CURRENT_ROTORPARAMS:
+ m_data[5] = m_data[3];
+ m_data[6] = m_data[4];
+ eDebug("[SEC] update current rotorparams %d %04x %d", m_timeoutCount, m_data[5], m_data[6]);
+ ++m_sec_sequence.current();
+ break;
+ case eSecCommand::SET_ROTOR_DISEQC_RETRYS:
+ m_retryCount = m_sec_sequence.current()++->val;
+ eDebug("[SEC] set rotor retries %d", m_retryCount);
+ break;
+ case eSecCommand::IF_NO_MORE_ROTOR_DISEQC_RETRYS_GOTO:
+ if (!m_retryCount)
+ {
+ eDebug("[SEC] no more rotor retrys");
+ setSecSequencePos(m_sec_sequence.current()->steps);
+ }
+ else
+ ++m_sec_sequence.current();
+ break;
+ case eSecCommand::SET_POWER_LIMITING_MODE:
{
- eSecCommand::pair &compare = m_sec_sequence.current()->compare;
- if ( compare.voltage == m_curVoltage && setSecSequencePos(compare.steps) )
- break;
+ int fd = m_fe ?
+ ::open("/dev/i2c/1", O_RDWR) :
+ ::open("/dev/i2c/0", O_RDWR);
+
+ unsigned char data[2];
+ ::ioctl(fd, I2C_SLAVE_FORCE, 0x10 >> 1);
+ if(::read(fd, data, 1) != 1)
+ eDebug("[SEC] error read lnbp (%m)");
+ if ( m_sec_sequence.current()->mode == eSecCommand::modeStatic )
+ {
+ data[0] |= 0x80; // enable static current limiting
+ eDebug("[SEC] set static current limiting");
+ }
+ else
+ {
+ data[0] &= ~0x80; // enable dynamic current limiting
+ eDebug("[SEC] set dynamic current limiting");
+ }
+ if(::write(fd, data, 1) != 1)
+ eDebug("[SEC] error write lnbp (%m)");
+ ::close(fd);
++m_sec_sequence.current();
break;
}
void eDVBFrontend::setFrontend()
{
- eDebug("setting frontend..\n");
+ eDebug("setting frontend %d", m_fe);
if (ioctl(m_fd, FE_SET_FRONTEND, &parm) == -1)
{
perror("FE_SET_FRONTEND failed");
return;
}
-
- if (m_state != stateTuning)
- {
- m_tuning = 1;
- m_state = stateTuning;
- m_stateChanged(this);
- }
m_timeout->start(5000, 1); // 5 sec timeout. TODO: symbolrate dependent
}
parm.frequency = feparm.frequency * 1000;
parm.u.qam.symbol_rate = feparm.symbol_rate;
#endif
- fe_modulation_t mod;
+ fe_modulation_t mod=QAM_AUTO;
switch (feparm.modulation)
{
case eDVBFrontendParametersCable::Modulation::QAM16:
break;
}
- fe_code_rate_t fec_inner;
+ fe_code_rate_t fec_inner=FEC_AUTO;
switch (feparm.fec_inner)
{
case eDVBFrontendParametersCable::FEC::fNone:
m_sec_sequence.push_back( eSecCommand(eSecCommand::SET_FRONTEND) );
m_tuneTimer->start(0,true);
+ m_timeout->stop();
m_sec_sequence.current() = m_sec_sequence.begin();
+ if (m_state != stateTuning)
+ {
+ m_tuning = 1;
+ m_state = stateTuning;
+ m_stateChanged(this);
+ }
+
return 0;
}
RESULT eDVBFrontend::setVoltage(int voltage)
{
+ if (m_type != feSatellite)
+ return -1;
#if HAVE_DVB_API_VERSION < 3
secVoltage vlt;
#else
+ bool increased=false;
fe_sec_voltage_t vlt;
#endif
-
m_curVoltage=voltage;
switch (voltage)
{
case voltageOff:
+ for (int i=0; i < 3; ++i) // reset diseqc
+ m_data[i]=-1;
vlt = SEC_VOLTAGE_OFF;
break;
+ case voltage13_5:
+#if HAVE_DVB_API_VERSION < 3
+ vlt = SEC_VOLTAGE_13_5;
+ break;
+#else
+ increased = true;
+#endif
case voltage13:
vlt = SEC_VOLTAGE_13;
break;
+ case voltage18_5:
+#if HAVE_DVB_API_VERSION < 3
+ vlt = SEC_VOLTAGE_18_5;
+ break;
+#else
+ increased = true;
+#endif
case voltage18:
vlt = SEC_VOLTAGE_18;
break;
#if HAVE_DVB_API_VERSION < 3
return ::ioctl(m_secfd, SEC_SET_VOLTAGE, vlt);
#else
+ if (::ioctl(m_fd, FE_ENABLE_HIGH_LNB_VOLTAGE, increased) < 0)
+ perror("FE_ENABLE_HIGH_LNB_VOLTAGE");
return ::ioctl(m_fd, FE_SET_VOLTAGE, vlt);
#endif
}
RESULT eDVBFrontend::setTone(int t)
{
+ if (m_type != feSatellite)
+ return -1;
#if HAVE_DVB_API_VERSION < 3
secToneMode_t tone;
#else
cmd = SEC_MINI_B;
if (::ioctl(m_secfd, SEC_DISEQC_SEND_BURST, cmd))
return -EINVAL;
+#else
+ fe_sec_mini_cmd_t cmd = SEC_MINI_A;
+ if ( burst == eDVBSatelliteDiseqcParameters::A )
+ cmd = SEC_MINI_A;
+ else if ( burst == eDVBSatelliteDiseqcParameters::B )
+ cmd = SEC_MINI_B;
+ else
+ {
+ eDebug("unknown toneburst!");
+ return -EINVAL;
+ }
+ if (::ioctl(m_fd, FE_DISEQC_SEND_BURST, cmd))
+ return -EINVAL;
#endif
return 0;
}
{
if ( num < (int)(sizeof(m_data)/sizeof(int)) )
{
- if ( num == 0 )
- eDebug("(%d) set csw %02x", m_fe, val);
m_data[num] = val;
return 0;
}