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https://github.com/VDR4Arch/vdr.git
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No longer actually tuning the primary interface in 'Transfer Mode'
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5
HISTORY
5
HISTORY
@ -586,7 +586,6 @@ Video Disk Recorder Revision History
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- DiSEqC support can now be generally enabled/disabled in the Setup menu. This
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may be necessary if your multiswitch gets irritated by the default DiSEqC
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codes '0' (thanks to Markus Lang).
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- Avoiding audio/video distortions in 'Transfer Mode'.
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- Fixed replaying in case there is no index file.
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- Fixed jumping to an editing mark when replay has been paused.
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- Avoiding unnecessary code execution in the replay progress display (thanks
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@ -603,3 +602,7 @@ Video Disk Recorder Revision History
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confirmation messages (like "Delete...") to "black on yellow".
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- Fixed display with DEBUG_OSD (it still crashes sometimes, esp. when replaying,
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but I can't seem to find what causes this... any ideas anybody?).
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- Avoiding audio/video distortions in 'Transfer Mode' by no longer actually
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tuning the primary interface (which can't receive this channel, anyway).
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Apparently the driver gets irritated when the channel is switched and a
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replay session is started immediately after that.
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233
dvbapi.c
233
dvbapi.c
@ -4,7 +4,7 @@
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* See the main source file 'vdr.c' for copyright information and
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* how to reach the author.
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*
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* $Id: dvbapi.c 1.93 2001/07/28 11:45:04 kls Exp $
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* $Id: dvbapi.c 1.94 2001/07/29 09:00:19 kls Exp $
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*/
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#include "dvbapi.h"
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@ -2116,6 +2116,15 @@ bool cDvbApi::SetChannel(int ChannelNumber, int FrequencyMHz, char Polarization,
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StopTransfer();
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StopReplay();
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// Must set this anyway to avoid getting stuck when switching through
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// channels with 'Up' and 'Down' keys:
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currentChannel = ChannelNumber;
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vPid = Vpid;
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aPid1 = Apid1;
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aPid2 = Apid2;
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dPid1 = Dpid1;
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dPid2 = Dpid2;
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// Avoid noise while switching:
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if (fd_video >= 0 && fd_audio >= 0) {
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@ -2125,150 +2134,150 @@ bool cDvbApi::SetChannel(int ChannelNumber, int FrequencyMHz, char Polarization,
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CHECK(ioctl(fd_audio, AUDIO_CLEAR_BUFFER));
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}
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// Turn off current PIDs:
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// If this card can't receive this channel, we must not actually switch
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// the channel here, because that would irritate the driver when we
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// start replaying in Transfer Mode immediately after switching the channel:
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bool NeedsTransferMode = (this == PrimaryDvbApi && Ca && Ca != Index() + 1);
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SetVpid( 0x1FFF, DMX_OUT_DECODER);
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SetApid1(0x1FFF, DMX_OUT_DECODER);
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SetApid2(0x1FFF, DMX_OUT_DECODER);
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SetDpid1(0x1FFF, DMX_OUT_DECODER);
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SetDpid2(0x1FFF, DMX_OUT_DECODER);
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SetTpid( 0x1FFF, DMX_OUT_DECODER);
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if (!NeedsTransferMode) {
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// Must set this anyway to avoid getting stuck when switching through
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// channels with 'Up' and 'Down' keys:
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currentChannel = ChannelNumber;
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// Turn off current PIDs:
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bool ChannelSynced = false;
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SetVpid( 0x1FFF, DMX_OUT_DECODER);
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SetApid1(0x1FFF, DMX_OUT_DECODER);
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SetApid2(0x1FFF, DMX_OUT_DECODER);
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SetDpid1(0x1FFF, DMX_OUT_DECODER);
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SetDpid2(0x1FFF, DMX_OUT_DECODER);
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SetTpid( 0x1FFF, DMX_OUT_DECODER);
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if (fd_qpskfe >= 0 && fd_sec >= 0) { // DVB-S
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bool ChannelSynced = false;
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// Frequency offsets:
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if (fd_qpskfe >= 0 && fd_sec >= 0) { // DVB-S
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unsigned int freq = FrequencyMHz;
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int tone = SEC_TONE_OFF;
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// Frequency offsets:
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if (freq < (unsigned int)Setup.LnbSLOF) {
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freq -= Setup.LnbFrequLo;
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tone = SEC_TONE_OFF;
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unsigned int freq = FrequencyMHz;
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int tone = SEC_TONE_OFF;
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if (freq < (unsigned int)Setup.LnbSLOF) {
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freq -= Setup.LnbFrequLo;
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tone = SEC_TONE_OFF;
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}
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else {
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freq -= Setup.LnbFrequHi;
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tone = SEC_TONE_ON;
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}
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qpskParameters qpsk;
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qpsk.iFrequency = freq * 1000UL;
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qpsk.SymbolRate = Srate * 1000UL;
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qpsk.FEC_inner = FEC_AUTO;
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int volt = (Polarization == 'v' || Polarization == 'V') ? SEC_VOLTAGE_13 : SEC_VOLTAGE_18;
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// DiseqC:
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secCommand scmd;
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scmd.type = 0;
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scmd.u.diseqc.addr = 0x10;
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scmd.u.diseqc.cmd = 0x38;
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scmd.u.diseqc.numParams = 1;
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scmd.u.diseqc.params[0] = 0xF0 | ((Diseqc * 4) & 0x0F) | (tone == SEC_TONE_ON ? 1 : 0) | (volt == SEC_VOLTAGE_18 ? 2 : 0);
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secCmdSequence scmds;
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scmds.voltage = volt;
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scmds.miniCommand = SEC_MINI_NONE;
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scmds.continuousTone = tone;
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scmds.numCommands = Setup.DiSEqC ? 1 : 0;
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scmds.commands = &scmd;
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CHECK(ioctl(fd_sec, SEC_SEND_SEQUENCE, &scmds));
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// Tuning:
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CHECK(ioctl(fd_qpskfe, QPSK_TUNE, &qpsk));
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// Wait for channel sync:
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if (cFile::FileReady(fd_qpskfe, 5000)) {
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qpskEvent event;
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int res = ioctl(fd_qpskfe, QPSK_GET_EVENT, &event);
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if (res >= 0)
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ChannelSynced = event.type == FE_COMPLETION_EV;
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else
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esyslog(LOG_ERR, "ERROR %d in qpsk get event", res);
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}
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else
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esyslog(LOG_ERR, "ERROR: timeout while tuning\n");
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}
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else if (fd_qamfe >= 0) { // DVB-C
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// Frequency and symbol rate:
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qamParameters qam;
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qam.Frequency = FrequencyMHz * 1000000UL;
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qam.SymbolRate = Srate * 1000UL;
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qam.FEC_inner = FEC_AUTO;
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qam.QAM = QAM_64;
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// Tuning:
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CHECK(ioctl(fd_qamfe, QAM_TUNE, &qam));
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// Wait for channel sync:
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if (cFile::FileReady(fd_qamfe, 5000)) {
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qamEvent event;
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int res = ioctl(fd_qamfe, QAM_GET_EVENT, &event);
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if (res >= 0)
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ChannelSynced = event.type == FE_COMPLETION_EV;
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else
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esyslog(LOG_ERR, "ERROR %d in qam get event", res);
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}
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else
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esyslog(LOG_ERR, "ERROR: timeout while tuning\n");
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}
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else {
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freq -= Setup.LnbFrequHi;
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tone = SEC_TONE_ON;
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esyslog(LOG_ERR, "ERROR: attempt to set channel without DVB-S or DVB-C device");
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return false;
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}
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qpskParameters qpsk;
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qpsk.iFrequency = freq * 1000UL;
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qpsk.SymbolRate = Srate * 1000UL;
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qpsk.FEC_inner = FEC_AUTO;
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int volt = (Polarization == 'v' || Polarization == 'V') ? SEC_VOLTAGE_13 : SEC_VOLTAGE_18;
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// DiseqC:
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secCommand scmd;
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scmd.type = 0;
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scmd.u.diseqc.addr = 0x10;
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scmd.u.diseqc.cmd = 0x38;
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scmd.u.diseqc.numParams = 1;
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scmd.u.diseqc.params[0] = 0xF0 | ((Diseqc * 4) & 0x0F) | (tone == SEC_TONE_ON ? 1 : 0) | (volt == SEC_VOLTAGE_18 ? 2 : 0);
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secCmdSequence scmds;
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scmds.voltage = volt;
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scmds.miniCommand = SEC_MINI_NONE;
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scmds.continuousTone = tone;
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scmds.numCommands = Setup.DiSEqC ? 1 : 0;
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scmds.commands = &scmd;
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CHECK(ioctl(fd_sec, SEC_SEND_SEQUENCE, &scmds));
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// Tuning:
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CHECK(ioctl(fd_qpskfe, QPSK_TUNE, &qpsk));
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// Wait for channel sync:
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if (cFile::FileReady(fd_qpskfe, 5000)) {
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qpskEvent event;
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int res = ioctl(fd_qpskfe, QPSK_GET_EVENT, &event);
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if (res >= 0)
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ChannelSynced = event.type == FE_COMPLETION_EV;
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else
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esyslog(LOG_ERR, "ERROR %d in qpsk get event", res);
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if (!ChannelSynced) {
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esyslog(LOG_ERR, "ERROR: channel %d not sync'ed!", ChannelNumber);
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if (this == PrimaryDvbApi)
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cThread::RaisePanic();
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return false;
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}
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else
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esyslog(LOG_ERR, "ERROR: timeout while tuning\n");
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}
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else if (fd_qamfe >= 0) { // DVB-C
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// Frequency and symbol rate:
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// PID settings:
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qamParameters qam;
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qam.Frequency = FrequencyMHz * 1000000UL;
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qam.SymbolRate = Srate * 1000UL;
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qam.FEC_inner = FEC_AUTO;
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qam.QAM = QAM_64;
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// Tuning:
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CHECK(ioctl(fd_qamfe, QAM_TUNE, &qam));
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// Wait for channel sync:
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if (cFile::FileReady(fd_qamfe, 5000)) {
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qamEvent event;
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int res = ioctl(fd_qamfe, QAM_GET_EVENT, &event);
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if (res >= 0)
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ChannelSynced = event.type == FE_COMPLETION_EV;
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else
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esyslog(LOG_ERR, "ERROR %d in qam get event", res);
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if (!SetPids(false)) {
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esyslog(LOG_ERR, "ERROR: failed to set PIDs for channel %d", ChannelNumber);
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return false;
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}
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else
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esyslog(LOG_ERR, "ERROR: timeout while tuning\n");
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}
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else {
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esyslog(LOG_ERR, "ERROR: attempt to set channel without DVB-S or DVB-C device");
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return false;
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SetTpid(Tpid, DMX_OUT_DECODER);
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if (fd_audio >= 0)
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CHECK(ioctl(fd_audio, AUDIO_SET_AV_SYNC, true));
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}
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if (!ChannelSynced) {
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esyslog(LOG_ERR, "ERROR: channel %d not sync'ed!", ChannelNumber);
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if (this == PrimaryDvbApi)
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cThread::RaisePanic();
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return false;
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}
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// PID settings:
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vPid = Vpid;
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aPid1 = Apid1;
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aPid2 = Apid2;
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dPid1 = Dpid1;
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dPid2 = Dpid2;
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if (!SetPids(false)) {
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esyslog(LOG_ERR, "ERROR: failed to set PIDs for channel %d", ChannelNumber);
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return false;
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}
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SetTpid(Tpid, DMX_OUT_DECODER);
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if (fd_audio >= 0)
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CHECK(ioctl(fd_audio, AUDIO_SET_AV_SYNC, true));
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if (this == PrimaryDvbApi && siProcessor)
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siProcessor->SetCurrentServiceID(Pnr);
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// If this DVB card can't receive this channel, let's see if we can
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// use the card that actually can receive it and transfer data from there:
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if (this == PrimaryDvbApi && Ca && Ca != Index() + 1) {
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if (NeedsTransferMode) {
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cDvbApi *CaDvbApi = GetDvbApi(Ca, 0);
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if (CaDvbApi) {
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if (!CaDvbApi->Recording()) {
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if (CaDvbApi->SetChannel(ChannelNumber, FrequencyMHz, Polarization, Diseqc, Srate, Vpid, Apid1, Apid2, Dpid1, Dpid2, Tpid, Ca, Pnr)) {
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usleep(500000); // avoids distortions (apparently switching into replay mode immediately after tuning causes problems)
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SetModeReplay();
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transferringFromDvbApi = CaDvbApi->StartTransfer(fd_video);
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}
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}
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}
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}
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if (fd_video >= 0 && fd_audio >= 0) {
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CHECK(ioctl(fd_audio, AUDIO_SET_MUTE, false));
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CHECK(ioctl(fd_video, VIDEO_SET_BLANK, false));
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