Update upstream source from tag 'upstream/0.67'

Update to upstream version '0.67'
with Debian dir d407fa0579
This commit is contained in:
Dave Hibberd 2023-09-12 21:38:19 +01:00
commit 51667f3056
105 changed files with 15126 additions and 9637 deletions

View File

@ -93,6 +93,22 @@ extern BOOL UseKISS; // Enable Packet (KISS) interface
extern short * DMABuffer;
#define MaxReceiveSize 2048 // Enough for 9600
#define MaxSendSize 4096
short buffer[2][MaxSendSize * 2]; // Two Transfer/DMA buffers of 0.1 Sec (x2 for Stereo)
short inbuffer[MaxReceiveSize * 2]; // Input Transfer/ buffers of 0.1 Sec (x2 for Stereo)
extern short * DMABuffer;
extern int Number;
int ReceiveSize = 512;
int SendSize = 1024;
int using48000 = 0;
int SampleRate = 12000;
BOOL UseLeft = TRUE;
BOOL UseRight = TRUE;
@ -123,8 +139,6 @@ void Sleep(int mS)
// Windows and ALSA work with signed samples +- 32767
// STM32 and Teensy DAC uses unsigned 0 - 4095
short buffer[2][1200 * 2]; // Two Transfer/DMA buffers of 0.1 Sec
short inbuffer[1200 * 2]; // Two Transfer/DMA buffers of 0.1 Sec
BOOL Loopback = FALSE;
//BOOL Loopback = TRUE;
@ -967,7 +981,7 @@ int SoundCardWrite(short * input, int nSamples)
// Debugprintf("Tosend %d Avail %d", nSamples, (int)avail);
while (avail < nSamples || (MaxAvail - avail) > 12000) // Limit to 1 sec of audio
while (avail < nSamples || (MaxAvail - avail) > SampleRate) // Limit to 1 sec of audio
{
txSleep(10);
avail = snd_pcm_avail_update(playhandle);
@ -1203,15 +1217,29 @@ void GetSoundDevices()
int InitSound(BOOL Quiet)
{
if (using48000)
{
ReceiveSize = 2048;
SendSize = 4096; // 100 mS for now
SampleRate = 48000;
}
else
{
ReceiveSize = 512;
SendSize = 1024;
SampleRate = 12000;
}
GetSoundDevices();
switch (SoundMode)
{
case 0: // ALSA
if (!OpenSoundCard(CaptureDevice, PlaybackDevice, 12000, 12000, Quiet))
if (!OpenSoundCard(CaptureDevice, PlaybackDevice, SampleRate, SampleRate, Quiet))
return FALSE;
break;
case 1: // OSS

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@ -1,444 +0,0 @@
/*
Copyright (C) 2019-2020 Andrei Kopanchuk UZ7HO
This file is part of QtSoundModem
QtSoundModem is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
QtSoundModem is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with QtSoundModem. If not, see http://www.gnu.org/licenses
*/
// UZ7HO Soundmodem Port by John Wiseman G8BPQ
#include <QSettings>
#include "UZ7HOStuff.h"
extern "C" void get_exclude_list(char * line, TStringList * list);
extern "C" void get_exclude_frm(char * line, TStringList * list);
extern "C" int SoundMode;
extern "C" int RX_SR;
extern "C" int TX_SR;
extern "C" int multiCore;
extern "C" char * Wisdom;
extern "C" word MEMRecovery[5];
extern int MintoTray;
extern "C" int UDPClientPort;
extern "C" int UDPServerPort;
extern "C" int TXPort;
extern char UDPHost[64];
extern char CWIDCall[128];
extern int CWIDInterval;
extern int CWIDLeft;
extern int CWIDRight;
extern int CWIDType;
extern "C" int RSID_SABM[4];
extern "C" int RSID_UI[4];
extern "C" int RSID_SetModem[4];
QSettings* settings = new QSettings("QtSoundModem.ini", QSettings::IniFormat);
// This makes geting settings for more channels easier
char Prefix[16] = "AX25_A";
void GetPortSettings(int Chan);
QVariant getAX25Param(const char * key, QVariant Default)
{
char fullKey[64];
sprintf(fullKey, "%s/%s", Prefix, key);
return settings->value(fullKey, Default);
}
void getAX25Params(int chan)
{
Prefix[5] = chan + 'A';
GetPortSettings(chan);
}
void GetPortSettings(int Chan)
{
tx_hitoneraisedb[Chan] = getAX25Param("HiToneRaise", 0).toInt();
maxframe[Chan] = getAX25Param("Maxframe", 3).toInt();
fracks[Chan] = getAX25Param("Retries", 15).toInt();
frack_time[Chan] = getAX25Param("FrackTime", 5).toInt();
idletime[Chan] = getAX25Param("IdleTime", 180).toInt();
slottime[Chan] = getAX25Param("SlotTime", 100).toInt();
persist[Chan] = getAX25Param("Persist", 128).toInt();
resptime[Chan] = getAX25Param("RespTime", 1500).toInt();
TXFrmMode[Chan] = getAX25Param("TXFrmMode", 1).toInt();
max_frame_collector[Chan] = getAX25Param("FrameCollector", 6).toInt();
//exclude_callsigns[Chan]= getAX25Param("ExcludeCallsigns/");
//exclude_APRS_frm[Chan]= getAX25Param("ExcludeAPRSFrmType/");
KISS_opt[Chan] = getAX25Param("KISSOptimization", false).toInt();;
dyn_frack[Chan] = getAX25Param("DynamicFrack", false).toInt();;
recovery[Chan] = getAX25Param("BitRecovery", 0).toInt();
NonAX25[Chan] = getAX25Param("NonAX25Frm", false).toInt();;
MEMRecovery[Chan]= getAX25Param("MEMRecovery", 200).toInt();
IPOLL[Chan] = getAX25Param("IPOLL", 80).toInt();
strcpy(MyDigiCall[Chan], getAX25Param("MyDigiCall", "").toString().toUtf8());
fx25_mode[Chan] = getAX25Param("FX25", FX25_MODE_RX).toInt();
il2p_mode[Chan] = getAX25Param("IL2P", IL2P_MODE_NONE).toInt();
RSID_UI[Chan] = getAX25Param("RSID_UI", 0).toInt();
RSID_SABM[Chan] = getAX25Param("RSID_SABM", 0).toInt();
RSID_SetModem[Chan] = getAX25Param("RSID_SetModem", 0).toInt();
}
void getSettings()
{
int snd_ch;
QSettings* settings = new QSettings("QtSoundModem.ini", QSettings::IniFormat);
settings->sync();
SoundMode = settings->value("Init/SoundMode", 0).toInt();
UDPClientPort = settings->value("Init/UDPClientPort", 8888).toInt();
UDPServerPort = settings->value("Init/UDPServerPort", 8884).toInt();
TXPort = settings->value("Init/TXPort", UDPServerPort).toInt();
strcpy(UDPHost, settings->value("Init/UDPHost", "192.168.1.255").toString().toUtf8());
UDPServ = settings->value("Init/UDPServer", FALSE).toBool();
RX_SR = settings->value("Init/RXSampleRate", 12000).toInt();
TX_SR = settings->value("Init/TXSampleRate", 12000).toInt();
strcpy(CaptureDevice, settings->value("Init/SndRXDeviceName", "hw:1,0").toString().toUtf8());
strcpy(PlaybackDevice, settings->value("Init/SndTXDeviceName", "hw:1,0").toString().toUtf8());
raduga = settings->value("Init/DispMode", DISP_RGB).toInt();
strcpy(PTTPort, settings->value("Init/PTT", "").toString().toUtf8());
PTTMode = settings->value("Init/PTTMode", 19200).toInt();
PTTBAUD = settings->value("Init/PTTBAUD", 19200).toInt();
strcpy(PTTOnString, settings->value("Init/PTTOnString", "").toString().toUtf8());
strcpy(PTTOffString, settings->value("Init/PTTOffString", "").toString().toUtf8());
pttGPIOPin = settings->value("Init/pttGPIOPin", 17).toInt();
pttGPIOPinR = settings->value("Init/pttGPIOPinR", 17).toInt();
#ifdef WIN32
strcpy(CM108Addr, settings->value("Init/CM108Addr", "0xD8C:0x08").toString().toUtf8());
#else
strcpy(CM108Addr, settings->value("Init/CM108Addr", "/dev/hidraw0").toString().toUtf8());
#endif
HamLibPort = settings->value("Init/HamLibPort", 4532).toInt();
strcpy(HamLibHost, settings->value("Init/HamLibHost", "127.0.0.1").toString().toUtf8());
DualPTT = settings->value("Init/DualPTT", 1).toInt();
TX_rotate = settings->value("Init/TXRotate", 0).toInt();
multiCore = settings->value("Init/multiCore", 0).toInt();
Wisdom = strdup(settings->value("Init/Wisdom", "").toString().toUtf8());
rx_freq[0] = settings->value("Modem/RXFreq1", 1700).toInt();
rx_freq[1] = settings->value("Modem/RXFreq2", 1700).toInt();
rx_freq[2] = settings->value("Modem/RXFreq3", 1700).toInt();
rx_freq[3] = settings->value("Modem/RXFreq4", 1700).toInt();
rcvr_offset[0] = settings->value("Modem/RcvrShift1", 30).toInt();
rcvr_offset[1] = settings->value("Modem/RcvrShift2", 30).toInt();
rcvr_offset[2] = settings->value("Modem/RcvrShift3", 30).toInt();
rcvr_offset[3] = settings->value("Modem/RcvrShift4", 30).toInt();
speed[0] = settings->value("Modem/ModemType1", SPEED_1200).toInt();
speed[1] = settings->value("Modem/ModemType2", SPEED_1200).toInt();
speed[2] = settings->value("Modem/ModemType3", SPEED_1200).toInt();
speed[3] = settings->value("Modem/ModemType4", SPEED_1200).toInt();
RCVR[0] = settings->value("Modem/NRRcvrPairs1", 0).toInt();;
RCVR[1] = settings->value("Modem/NRRcvrPairs2", 0).toInt();;
RCVR[2] = settings->value("Modem/NRRcvrPairs3", 0).toInt();;
RCVR[3] = settings->value("Modem/NRRcvrPairs4", 0).toInt();;
soundChannel[0] = settings->value("Modem/soundChannel1", 1).toInt();
soundChannel[1] = settings->value("Modem/soundChannel2", 0).toInt();
soundChannel[2] = settings->value("Modem/soundChannel3", 0).toInt();
soundChannel[3] = settings->value("Modem/soundChannel4", 0).toInt();
SCO = settings->value("Init/SCO", 0).toInt();
dcd_threshold = settings->value("Modem/DCDThreshold", 40).toInt();
rxOffset = settings->value("Modem/rxOffset", 0).toInt();
AGWServ = settings->value("AGWHost/Server", TRUE).toBool();
AGWPort = settings->value("AGWHost/Port", 8000).toInt();
KISSServ = settings->value("KISS/Server", FALSE).toBool();
KISSPort = settings->value("KISS/Port", 8105).toInt();
RX_Samplerate = RX_SR + RX_SR * 0.000001*RX_PPM;
TX_Samplerate = TX_SR + TX_SR * 0.000001*TX_PPM;
emph_all[0] = settings->value("Modem/PreEmphasisAll1", FALSE).toBool();
emph_all[1] = settings->value("Modem/PreEmphasisAll2", FALSE).toBool();
emph_all[2] = settings->value("Modem/PreEmphasisAll3", FALSE).toBool();
emph_all[3] = settings->value("Modem/PreEmphasisAll4", FALSE).toBool();
emph_db[0] = settings->value("Modem/PreEmphasisDB1", 0).toInt();
emph_db[1] = settings->value("Modem/PreEmphasisDB2", 0).toInt();
emph_db[2] = settings->value("Modem/PreEmphasisDB3", 0).toInt();
emph_db[3] = settings->value("Modem/PreEmphasisDB4", 0).toInt();
Firstwaterfall = settings->value("Window/Waterfall1", TRUE).toInt();
Secondwaterfall = settings->value("Window/Waterfall2", TRUE).toInt();
txdelay[0] = settings->value("Modem/TxDelay1", 250).toInt();
txdelay[1] = settings->value("Modem/TxDelay2", 250).toInt();
txdelay[2] = settings->value("Modem/TxDelay3", 250).toInt();
txdelay[3] = settings->value("Modem/TxDelay4", 250).toInt();
strcpy(CWIDCall, settings->value("Modem/CWIDCall", "").toString().toUtf8().toUpper());
CWIDInterval = settings->value("Modem/CWIDInterval", 0).toInt();
CWIDLeft = settings->value("Modem/CWIDLeft", 0).toInt();
CWIDRight = settings->value("Modem/CWIDRight", 0).toInt();
CWIDType = settings->value("Modem/CWIDType", 1).toInt(); // on/off
getAX25Params(0);
getAX25Params(1);
getAX25Params(2);
getAX25Params(3);
// Validate and process settings
UsingLeft = 0;
UsingRight = 0;
UsingBothChannels = 0;
for (int i = 0; i < 4; i++)
{
if (soundChannel[i] == LEFT)
{
UsingLeft = 1;
modemtoSoundLR[i] = 0;
}
else if (soundChannel[i] == RIGHT)
{
UsingRight = 1;
modemtoSoundLR[i] = 1;
}
}
if (UsingLeft && UsingRight)
UsingBothChannels = 1;
for (snd_ch = 0; snd_ch < 4; snd_ch++)
{
tx_hitoneraise[snd_ch] = powf(10.0f, -abs(tx_hitoneraisedb[snd_ch]) / 20.0f);
if (IPOLL[snd_ch] < 0)
IPOLL[snd_ch] = 0;
else if (IPOLL[snd_ch] > 65535)
IPOLL[snd_ch] = 65535;
if (MEMRecovery[snd_ch] < 1)
MEMRecovery[snd_ch] = 1;
// if (MEMRecovery[snd_ch]> 65535)
// MEMRecovery[snd_ch]= 65535;
/*
if resptime[snd_ch] < 0 then resptime[snd_ch]= 0;
if resptime[snd_ch] > 65535 then resptime[snd_ch]= 65535;
if persist[snd_ch] > 255 then persist[snd_ch]= 255;
if persist[snd_ch] < 32 then persist[snd_ch]= 32;
if fracks[snd_ch] < 1 then fracks[snd_ch]= 1;
if frack_time[snd_ch] < 1 then frack_time[snd_ch]= 1;
if idletime[snd_ch] < frack_time[snd_ch] then idletime[snd_ch]= 180;
*/
if (emph_db[snd_ch] < 0 || emph_db[snd_ch] > nr_emph)
emph_db[snd_ch] = 0;
if (max_frame_collector[snd_ch] > 6) max_frame_collector[snd_ch] = 6;
if (maxframe[snd_ch] == 0 || maxframe[snd_ch] > 7) maxframe[snd_ch] = 3;
if (qpsk_set[snd_ch].mode > 1) qpsk_set[snd_ch].mode = 0;
}
delete(settings);
}
void SavePortSettings(int Chan);
void saveAX25Param(const char * key, QVariant Value)
{
char fullKey[64];
sprintf(fullKey, "%s/%s", Prefix, key);
settings->setValue(fullKey, Value);
}
void saveAX25Params(int chan)
{
Prefix[5] = chan + 'A';
SavePortSettings(chan);
}
void SavePortSettings(int Chan)
{
saveAX25Param("Retries", fracks[Chan]);
saveAX25Param("HiToneRaise", tx_hitoneraisedb[Chan]);
saveAX25Param("Maxframe",maxframe[Chan]);
saveAX25Param("Retries", fracks[Chan]);
saveAX25Param("FrackTime", frack_time[Chan]);
saveAX25Param("IdleTime", idletime[Chan]);
saveAX25Param("SlotTime", slottime[Chan]);
saveAX25Param("Persist", persist[Chan]);
saveAX25Param("RespTime", resptime[Chan]);
saveAX25Param("TXFrmMode", TXFrmMode[Chan]);
saveAX25Param("FrameCollector", max_frame_collector[Chan]);
saveAX25Param("ExcludeCallsigns", exclude_callsigns[Chan]);
saveAX25Param("ExcludeAPRSFrmType", exclude_APRS_frm[Chan]);
saveAX25Param("KISSOptimization", KISS_opt[Chan]);
saveAX25Param("DynamicFrack", dyn_frack[Chan]);
saveAX25Param("BitRecovery", recovery[Chan]);
saveAX25Param("NonAX25Frm", NonAX25[Chan]);
saveAX25Param("MEMRecovery", MEMRecovery[Chan]);
saveAX25Param("IPOLL", IPOLL[Chan]);
saveAX25Param("MyDigiCall", MyDigiCall[Chan]);
saveAX25Param("FX25", fx25_mode[Chan]);
saveAX25Param("IL2P", il2p_mode[Chan]);
saveAX25Param("RSID_UI", RSID_UI[Chan]);
saveAX25Param("RSID_SABM", RSID_SABM[Chan]);
saveAX25Param("RSID_SetModem", RSID_SetModem[Chan]);
}
void saveSettings()
{
QSettings * settings = new QSettings("QtSoundModem.ini", QSettings::IniFormat);
settings->setValue("Init/SoundMode", SoundMode);
settings->setValue("Init/UDPClientPort", UDPClientPort);
settings->setValue("Init/UDPServerPort", UDPServerPort);
settings->setValue("Init/TXPort", TXPort);
settings->setValue("Init/UDPServer", UDPServ);
settings->setValue("Init/UDPHost", UDPHost);
settings->setValue("Init/TXSampleRate", TX_SR);
settings->setValue("Init/RXSampleRate", RX_SR);
settings->setValue("Init/SndRXDeviceName", CaptureDevice);
settings->setValue("Init/SndTXDeviceName", PlaybackDevice);
settings->setValue("Init/SCO", SCO);
settings->setValue("Init/DualPTT", DualPTT);
settings->setValue("Init/TXRotate", TX_rotate);
settings->setValue("Init/DispMode", raduga);
settings->setValue("Init/PTT", PTTPort);
settings->setValue("Init/PTTBAUD", PTTBAUD);
settings->setValue("Init/PTTMode", PTTMode);
settings->setValue("Init/PTTOffString", PTTOffString);
settings->setValue("Init/PTTOnString", PTTOnString);
settings->setValue("Init/pttGPIOPin", pttGPIOPin);
settings->setValue("Init/pttGPIOPinR", pttGPIOPinR);
settings->setValue("Init/CM108Addr", CM108Addr);
settings->setValue("Init/HamLibPort", HamLibPort);
settings->setValue("Init/HamLibHost", HamLibHost);
settings->setValue("Init/MinimizetoTray", MintoTray);
settings->setValue("Init/multiCore", multiCore);
settings->setValue("Init/Wisdom", Wisdom);
// Don't save freq on close as it could be offset by multiple decoders
settings->setValue("Modem/NRRcvrPairs1", RCVR[0]);
settings->setValue("Modem/NRRcvrPairs2", RCVR[1]);
settings->setValue("Modem/NRRcvrPairs3", RCVR[2]);
settings->setValue("Modem/NRRcvrPairs4", RCVR[3]);
settings->setValue("Modem/RcvrShift1", rcvr_offset[0]);
settings->setValue("Modem/RcvrShift2", rcvr_offset[1]);
settings->setValue("Modem/RcvrShift3", rcvr_offset[2]);
settings->setValue("Modem/RcvrShift4", rcvr_offset[3]);
settings->setValue("Modem/ModemType1", speed[0]);
settings->setValue("Modem/ModemType2", speed[1]);
settings->setValue("Modem/ModemType3", speed[2]);
settings->setValue("Modem/ModemType4", speed[3]);
settings->setValue("Modem/soundChannel1", soundChannel[0]);
settings->setValue("Modem/soundChannel2", soundChannel[1]);
settings->setValue("Modem/soundChannel3", soundChannel[2]);
settings->setValue("Modem/soundChannel4", soundChannel[3]);
settings->setValue("Modem/DCDThreshold", dcd_threshold);
settings->setValue("Modem/rxOffset", rxOffset);
settings->setValue("AGWHost/Server", AGWServ);
settings->setValue("AGWHost/Port", AGWPort);
settings->setValue("KISS/Server", KISSServ);
settings->setValue("KISS/Port", KISSPort);
settings->setValue("Modem/PreEmphasisAll1", emph_all[0]);
settings->setValue("Modem/PreEmphasisAll2", emph_all[1]);
settings->setValue("Modem/PreEmphasisAll3", emph_all[2]);
settings->setValue("Modem/PreEmphasisAll4", emph_all[3]);
settings->setValue("Modem/PreEmphasisDB1", emph_db[0]);
settings->setValue("Modem/PreEmphasisDB2", emph_db[1]);
settings->setValue("Modem/PreEmphasisDB3", emph_db[2]);
settings->setValue("Modem/PreEmphasisDB4", emph_db[3]);
settings->setValue("Window/Waterfall1", Firstwaterfall);
settings->setValue("Window/Waterfall2", Secondwaterfall);
settings->setValue("Modem/TxDelay1", txdelay[0]);
settings->setValue("Modem/TxDelay2", txdelay[1]);
settings->setValue("Modem/TxDelay3", txdelay[2]);
settings->setValue("Modem/TxDelay4", txdelay[3]);
settings->setValue("Modem/TxTail1", txtail[0]);
settings->setValue("Modem/TxTail2", txtail[1]);
settings->setValue("Modem/TxTail3", txtail[2]);
settings->setValue("Modem/TxTail4", txtail[3]);
settings->setValue("Modem/CWIDCall", CWIDCall);
settings->setValue("Modem/CWIDInterval", CWIDInterval);
settings->setValue("Modem/CWIDLeft", CWIDLeft);
settings->setValue("Modem/CWIDRight", CWIDRight);
settings->setValue("Modem/CWIDType", CWIDType);
saveAX25Params(0);
saveAX25Params(1);
saveAX25Params(2);
saveAX25Params(3);
settings->sync();
delete(settings);
}

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@ -21,6 +21,7 @@ along with QtSoundModem. If not, see http://www.gnu.org/licenses
// UZ7HO Soundmodem Port by John Wiseman G8BPQ
#include <QSettings>
#include <QDialog>
#include "UZ7HOStuff.h"
@ -43,8 +44,11 @@ extern "C" int UDPServerPort;
extern "C" int TXPort;
extern char UDPHost[64];
extern QDialog * constellationDialog;
extern QRect PSKRect;
extern char CWIDCall[128];
extern "C" char CWIDMark[32];
extern int CWIDInterval;
extern int CWIDLeft;
extern int CWIDRight;
@ -120,6 +124,8 @@ void getSettings()
QSettings* settings = new QSettings("QtSoundModem.ini", QSettings::IniFormat);
settings->sync();
PSKRect = settings->value("PSKWindow").toRect();
SoundMode = settings->value("Init/SoundMode", 0).toInt();
UDPClientPort = settings->value("Init/UDPClientPort", 8888).toInt();
UDPServerPort = settings->value("Init/UDPServerPort", 8884).toInt();
@ -219,7 +225,13 @@ void getSettings()
txdelay[2] = settings->value("Modem/TxDelay3", 250).toInt();
txdelay[3] = settings->value("Modem/TxDelay4", 250).toInt();
txtail[0] = settings->value("Modem/TxTail1", 50).toInt();
txtail[1] = settings->value("Modem/TxTail2", 50).toInt();
txtail[2] = settings->value("Modem/TxTail3", 50).toInt();
txtail[3] = settings->value("Modem/TxTail4", 50).toInt();
strcpy(CWIDCall, settings->value("Modem/CWIDCall", "").toString().toUtf8().toUpper());
strcpy(CWIDMark, settings->value("Modem/CWIDMark", "").toString().toUtf8().toUpper());
CWIDInterval = settings->value("Modem/CWIDInterval", 0).toInt();
CWIDLeft = settings->value("Modem/CWIDLeft", 0).toInt();
CWIDRight = settings->value("Modem/CWIDRight", 0).toInt();
@ -341,6 +353,7 @@ void saveSettings()
{
QSettings * settings = new QSettings("QtSoundModem.ini", QSettings::IniFormat);
settings->setValue("PSKWindow", constellationDialog->geometry());
settings->setValue("Init/SoundMode", SoundMode);
settings->setValue("Init/UDPClientPort", UDPClientPort);
settings->setValue("Init/UDPServerPort", UDPServerPort);
@ -436,6 +449,7 @@ void saveSettings()
settings->setValue("Modem/TxTail4", txtail[3]);
settings->setValue("Modem/CWIDCall", CWIDCall);
settings->setValue("Modem/CWIDMark", CWIDMark);
settings->setValue("Modem/CWIDInterval", CWIDInterval);
settings->setValue("Modem/CWIDLeft", CWIDLeft);
settings->setValue("Modem/CWIDRight", CWIDRight);

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@ -1,439 +0,0 @@
/*
Copyright (C) 2019-2020 Andrei Kopanchuk UZ7HO
This file is part of QtSoundModem
QtSoundModem is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
QtSoundModem is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with QtSoundModem. If not, see http://www.gnu.org/licenses
*/
// UZ7HO Soundmodem Port by John Wiseman G8BPQ
#include <QSettings>
#include "UZ7HOStuff.h"
extern "C" void get_exclude_list(char * line, TStringList * list);
extern "C" void get_exclude_frm(char * line, TStringList * list);
extern "C" int SoundMode;
extern "C" int RX_SR;
extern "C" int TX_SR;
extern "C" int multiCore;
extern "C" word MEMRecovery[5];
extern int MintoTray;
extern "C" int UDPClientPort;
extern "C" int UDPServerPort;
extern "C" int TXPort;
extern char UDPHost[64];
extern char CWIDCall[128];
extern int CWIDInterval;
extern int CWIDLeft;
extern int CWIDRight;
extern int CWIDType;
extern "C" int RSID_SABM[4];
extern "C" int RSID_UI[4];
extern "C" int RSID_SetModem[4];
QSettings* settings = new QSettings("QtSoundModem.ini", QSettings::IniFormat);
// This makes geting settings for more channels easier
char Prefix[16] = "AX25_A";
void GetPortSettings(int Chan);
QVariant getAX25Param(const char * key, QVariant Default)
{
char fullKey[64];
sprintf(fullKey, "%s/%s", Prefix, key);
return settings->value(fullKey, Default);
}
void getAX25Params(int chan)
{
Prefix[5] = chan + 'A';
GetPortSettings(chan);
}
void GetPortSettings(int Chan)
{
tx_hitoneraisedb[Chan] = getAX25Param("HiToneRaise", 0).toInt();
maxframe[Chan] = getAX25Param("Maxframe", 3).toInt();
fracks[Chan] = getAX25Param("Retries", 15).toInt();
frack_time[Chan] = getAX25Param("FrackTime", 5).toInt();
idletime[Chan] = getAX25Param("IdleTime", 180).toInt();
slottime[Chan] = getAX25Param("SlotTime", 100).toInt();
persist[Chan] = getAX25Param("Persist", 128).toInt();
resptime[Chan] = getAX25Param("RespTime", 1500).toInt();
TXFrmMode[Chan] = getAX25Param("TXFrmMode", 1).toInt();
max_frame_collector[Chan] = getAX25Param("FrameCollector", 6).toInt();
//exclude_callsigns[Chan]= getAX25Param("ExcludeCallsigns/");
//exclude_APRS_frm[Chan]= getAX25Param("ExcludeAPRSFrmType/");
KISS_opt[Chan] = getAX25Param("KISSOptimization", false).toInt();;
dyn_frack[Chan] = getAX25Param("DynamicFrack", false).toInt();;
recovery[Chan] = getAX25Param("BitRecovery", 0).toInt();
NonAX25[Chan] = getAX25Param("NonAX25Frm", false).toInt();;
MEMRecovery[Chan]= getAX25Param("MEMRecovery", 200).toInt();
IPOLL[Chan] = getAX25Param("IPOLL", 80).toInt();
strcpy(MyDigiCall[Chan], getAX25Param("MyDigiCall", "").toString().toUtf8());
fx25_mode[Chan] = getAX25Param("FX25", FX25_MODE_RX).toInt();
il2p_mode[Chan] = getAX25Param("IL2P", IL2P_MODE_NONE).toInt();
RSID_UI[Chan] = getAX25Param("RSID_UI", 0).toInt();
RSID_SABM[Chan] = getAX25Param("RSID_SABM", 0).toInt();
RSID_SetModem[Chan] = getAX25Param("RSID_SetModem", 0).toInt();
}
void getSettings()
{
int snd_ch;
QSettings* settings = new QSettings("QtSoundModem.ini", QSettings::IniFormat);
settings->sync();
SoundMode = settings->value("Init/SoundMode", 0).toInt();
UDPClientPort = settings->value("Init/UDPClientPort", 8888).toInt();
UDPServerPort = settings->value("Init/UDPServerPort", 8884).toInt();
TXPort = settings->value("Init/TXPort", UDPServerPort).toInt();
strcpy(UDPHost, settings->value("Init/UDPHost", "192.168.1.255").toString().toUtf8());
UDPServ = settings->value("Init/UDPServer", FALSE).toBool();
RX_SR = settings->value("Init/RXSampleRate", 12000).toInt();
TX_SR = settings->value("Init/TXSampleRate", 12000).toInt();
strcpy(CaptureDevice, settings->value("Init/SndRXDeviceName", "hw:1,0").toString().toUtf8());
strcpy(PlaybackDevice, settings->value("Init/SndTXDeviceName", "hw:1,0").toString().toUtf8());
raduga = settings->value("Init/DispMode", DISP_RGB).toInt();
strcpy(PTTPort, settings->value("Init/PTT", "").toString().toUtf8());
PTTMode = settings->value("Init/PTTMode", 19200).toInt();
PTTBAUD = settings->value("Init/PTTBAUD", 19200).toInt();
strcpy(PTTOnString, settings->value("Init/PTTOnString", "").toString().toUtf8());
strcpy(PTTOffString, settings->value("Init/PTTOffString", "").toString().toUtf8());
pttGPIOPin = settings->value("Init/pttGPIOPin", 17).toInt();
pttGPIOPinR = settings->value("Init/pttGPIOPinR", 17).toInt();
#ifdef WIN32
strcpy(CM108Addr, settings->value("Init/CM108Addr", "0xD8C:0x08").toString().toUtf8());
#else
strcpy(CM108Addr, settings->value("Init/CM108Addr", "/dev/hidraw0").toString().toUtf8());
#endif
HamLibPort = settings->value("Init/HamLibPort", 4532).toInt();
strcpy(HamLibHost, settings->value("Init/HamLibHost", "127.0.0.1").toString().toUtf8());
DualPTT = settings->value("Init/DualPTT", 1).toInt();
TX_rotate = settings->value("Init/TXRotate", 0).toInt();
multiCore = settings->value("Init/multiCore", 0).toInt();
MintoTray = settings->value("Init/MinimizetoTray", 1).toInt();
rx_freq[0] = settings->value("Modem/RXFreq1", 1700).toInt();
rx_freq[1] = settings->value("Modem/RXFreq2", 1700).toInt();
rx_freq[2] = settings->value("Modem/RXFreq3", 1700).toInt();
rx_freq[3] = settings->value("Modem/RXFreq4", 1700).toInt();
rcvr_offset[0] = settings->value("Modem/RcvrShift1", 30).toInt();
rcvr_offset[1] = settings->value("Modem/RcvrShift2", 30).toInt();
rcvr_offset[2] = settings->value("Modem/RcvrShift3", 30).toInt();
rcvr_offset[3] = settings->value("Modem/RcvrShift4", 30).toInt();
speed[0] = settings->value("Modem/ModemType1", SPEED_1200).toInt();
speed[1] = settings->value("Modem/ModemType2", SPEED_1200).toInt();
speed[2] = settings->value("Modem/ModemType3", SPEED_1200).toInt();
speed[3] = settings->value("Modem/ModemType4", SPEED_1200).toInt();
RCVR[0] = settings->value("Modem/NRRcvrPairs1", 0).toInt();;
RCVR[1] = settings->value("Modem/NRRcvrPairs2", 0).toInt();;
RCVR[2] = settings->value("Modem/NRRcvrPairs3", 0).toInt();;
RCVR[3] = settings->value("Modem/NRRcvrPairs4", 0).toInt();;
soundChannel[0] = settings->value("Modem/soundChannel1", 1).toInt();
soundChannel[1] = settings->value("Modem/soundChannel2", 0).toInt();
soundChannel[2] = settings->value("Modem/soundChannel3", 0).toInt();
soundChannel[3] = settings->value("Modem/soundChannel4", 0).toInt();
SCO = settings->value("Init/SCO", 0).toInt();
dcd_threshold = settings->value("Modem/DCDThreshold", 40).toInt();
rxOffset = settings->value("Modem/rxOffset", 0).toInt();
AGWServ = settings->value("AGWHost/Server", TRUE).toBool();
AGWPort = settings->value("AGWHost/Port", 8000).toInt();
KISSServ = settings->value("KISS/Server", FALSE).toBool();
KISSPort = settings->value("KISS/Port", 8105).toInt();
RX_Samplerate = RX_SR + RX_SR * 0.000001*RX_PPM;
TX_Samplerate = TX_SR + TX_SR * 0.000001*TX_PPM;
emph_all[0] = settings->value("Modem/PreEmphasisAll1", FALSE).toBool();
emph_all[1] = settings->value("Modem/PreEmphasisAll2", FALSE).toBool();
emph_all[2] = settings->value("Modem/PreEmphasisAll3", FALSE).toBool();
emph_all[3] = settings->value("Modem/PreEmphasisAll4", FALSE).toBool();
emph_db[0] = settings->value("Modem/PreEmphasisDB1", 0).toInt();
emph_db[1] = settings->value("Modem/PreEmphasisDB2", 0).toInt();
emph_db[2] = settings->value("Modem/PreEmphasisDB3", 0).toInt();
emph_db[3] = settings->value("Modem/PreEmphasisDB4", 0).toInt();
Firstwaterfall = settings->value("Window/Waterfall1", TRUE).toInt();
Secondwaterfall = settings->value("Window/Waterfall2", TRUE).toInt();
txdelay[0] = settings->value("Modem/TxDelay1", 250).toInt();
txdelay[1] = settings->value("Modem/TxDelay2", 250).toInt();
txdelay[2] = settings->value("Modem/TxDelay3", 250).toInt();
txdelay[3] = settings->value("Modem/TxDelay4", 250).toInt();
strcpy(CWIDCall, settings->value("Modem/CWIDCall", "").toString().toUtf8().toUpper());
CWIDInterval = settings->value("Modem/CWIDInterval", 0).toInt();
CWIDLeft = settings->value("Modem/CWIDLeft", 0).toInt();
CWIDRight = settings->value("Modem/CWIDRight", 0).toInt();
CWIDType = settings->value("Modem/CWIDType", 1).toInt(); // on/off
getAX25Params(0);
getAX25Params(1);
getAX25Params(2);
getAX25Params(3);
// Validate and process settings
UsingLeft = 0;
UsingRight = 0;
UsingBothChannels = 0;
for (int i = 0; i < 4; i++)
{
if (soundChannel[i] == LEFT)
{
UsingLeft = 1;
modemtoSoundLR[i] = 0;
}
else if (soundChannel[i] == RIGHT)
{
UsingRight = 1;
modemtoSoundLR[i] = 1;
}
}
if (UsingLeft && UsingRight)
UsingBothChannels = 1;
for (snd_ch = 0; snd_ch < 4; snd_ch++)
{
tx_hitoneraise[snd_ch] = powf(10.0f, -abs(tx_hitoneraisedb[snd_ch]) / 20.0f);
if (IPOLL[snd_ch] < 0)
IPOLL[snd_ch] = 0;
else if (IPOLL[snd_ch] > 65535)
IPOLL[snd_ch] = 65535;
if (MEMRecovery[snd_ch] < 1)
MEMRecovery[snd_ch] = 1;
// if (MEMRecovery[snd_ch]> 65535)
// MEMRecovery[snd_ch]= 65535;
/*
if resptime[snd_ch] < 0 then resptime[snd_ch]= 0;
if resptime[snd_ch] > 65535 then resptime[snd_ch]= 65535;
if persist[snd_ch] > 255 then persist[snd_ch]= 255;
if persist[snd_ch] < 32 then persist[snd_ch]= 32;
if fracks[snd_ch] < 1 then fracks[snd_ch]= 1;
if frack_time[snd_ch] < 1 then frack_time[snd_ch]= 1;
if idletime[snd_ch] < frack_time[snd_ch] then idletime[snd_ch]= 180;
*/
if (emph_db[snd_ch] < 0 || emph_db[snd_ch] > nr_emph)
emph_db[snd_ch] = 0;
if (max_frame_collector[snd_ch] > 6) max_frame_collector[snd_ch] = 6;
if (maxframe[snd_ch] == 0 || maxframe[snd_ch] > 7) maxframe[snd_ch] = 3;
if (qpsk_set[snd_ch].mode > 1) qpsk_set[snd_ch].mode = 0;
}
delete(settings);
}
void SavePortSettings(int Chan);
void saveAX25Param(const char * key, QVariant Value)
{
char fullKey[64];
sprintf(fullKey, "%s/%s", Prefix, key);
settings->setValue(fullKey, Value);
}
void saveAX25Params(int chan)
{
Prefix[5] = chan + 'A';
SavePortSettings(chan);
}
void SavePortSettings(int Chan)
{
saveAX25Param("Retries", fracks[Chan]);
saveAX25Param("HiToneRaise", tx_hitoneraisedb[Chan]);
saveAX25Param("Maxframe",maxframe[Chan]);
saveAX25Param("Retries", fracks[Chan]);
saveAX25Param("FrackTime", frack_time[Chan]);
saveAX25Param("IdleTime", idletime[Chan]);
saveAX25Param("SlotTime", slottime[Chan]);
saveAX25Param("Persist", persist[Chan]);
saveAX25Param("RespTime", resptime[Chan]);
saveAX25Param("TXFrmMode", TXFrmMode[Chan]);
saveAX25Param("FrameCollector", max_frame_collector[Chan]);
saveAX25Param("ExcludeCallsigns", exclude_callsigns[Chan]);
saveAX25Param("ExcludeAPRSFrmType", exclude_APRS_frm[Chan]);
saveAX25Param("KISSOptimization", KISS_opt[Chan]);
saveAX25Param("DynamicFrack", dyn_frack[Chan]);
saveAX25Param("BitRecovery", recovery[Chan]);
saveAX25Param("NonAX25Frm", NonAX25[Chan]);
saveAX25Param("MEMRecovery", MEMRecovery[Chan]);
saveAX25Param("IPOLL", IPOLL[Chan]);
saveAX25Param("MyDigiCall", MyDigiCall[Chan]);
saveAX25Param("FX25", fx25_mode[Chan]);
saveAX25Param("IL2P", il2p_mode[Chan]);
saveAX25Param("RSID_UI", RSID_UI[Chan]);
saveAX25Param("RSID_SABM", RSID_SABM[Chan]);
saveAX25Param("RSID_SetModem", RSID_SetModem[Chan]);
}
void saveSettings()
{
QSettings * settings = new QSettings("QtSoundModem.ini", QSettings::IniFormat);
settings->setValue("Init/SoundMode", SoundMode);
settings->setValue("Init/UDPClientPort", UDPClientPort);
settings->setValue("Init/UDPServerPort", UDPServerPort);
settings->setValue("Init/TXPort", TXPort);
settings->setValue("Init/UDPServer", UDPServ);
settings->setValue("Init/UDPHost", UDPHost);
settings->setValue("Init/TXSampleRate", TX_SR);
settings->setValue("Init/RXSampleRate", RX_SR);
settings->setValue("Init/SndRXDeviceName", CaptureDevice);
settings->setValue("Init/SndTXDeviceName", PlaybackDevice);
settings->setValue("Init/SCO", SCO);
settings->setValue("Init/DualPTT", DualPTT);
settings->setValue("Init/TXRotate", TX_rotate);
settings->setValue("Init/DispMode", raduga);
settings->setValue("Init/PTT", PTTPort);
settings->setValue("Init/PTTBAUD", PTTBAUD);
settings->setValue("Init/PTTMode", PTTMode);
settings->setValue("Init/PTTOffString", PTTOffString);
settings->setValue("Init/PTTOnString", PTTOnString);
settings->setValue("Init/pttGPIOPin", pttGPIOPin);
settings->setValue("Init/pttGPIOPinR", pttGPIOPinR);
settings->setValue("Init/CM108Addr", CM108Addr);
settings->setValue("Init/HamLibPort", HamLibPort);
settings->setValue("Init/HamLibHost", HamLibHost);
settings->setValue("Init/MinimizetoTray", MintoTray);
settings->setValue("Init/multiCore", multiCore);
// Don't save freq on close as it could be offset by multiple decoders
settings->setValue("Modem/NRRcvrPairs1", RCVR[0]);
settings->setValue("Modem/NRRcvrPairs2", RCVR[1]);
settings->setValue("Modem/NRRcvrPairs3", RCVR[2]);
settings->setValue("Modem/NRRcvrPairs4", RCVR[3]);
settings->setValue("Modem/RcvrShift1", rcvr_offset[0]);
settings->setValue("Modem/RcvrShift2", rcvr_offset[1]);
settings->setValue("Modem/RcvrShift3", rcvr_offset[2]);
settings->setValue("Modem/RcvrShift4", rcvr_offset[3]);
settings->setValue("Modem/ModemType1", speed[0]);
settings->setValue("Modem/ModemType2", speed[1]);
settings->setValue("Modem/ModemType3", speed[2]);
settings->setValue("Modem/ModemType4", speed[3]);
settings->setValue("Modem/soundChannel1", soundChannel[0]);
settings->setValue("Modem/soundChannel2", soundChannel[1]);
settings->setValue("Modem/soundChannel3", soundChannel[2]);
settings->setValue("Modem/soundChannel4", soundChannel[3]);
settings->setValue("Modem/DCDThreshold", dcd_threshold);
settings->setValue("Modem/rxOffset", rxOffset);
settings->setValue("AGWHost/Server", AGWServ);
settings->setValue("AGWHost/Port", AGWPort);
settings->setValue("KISS/Server", KISSServ);
settings->setValue("KISS/Port", KISSPort);
settings->setValue("Modem/PreEmphasisAll1", emph_all[0]);
settings->setValue("Modem/PreEmphasisAll2", emph_all[1]);
settings->setValue("Modem/PreEmphasisAll3", emph_all[2]);
settings->setValue("Modem/PreEmphasisAll4", emph_all[3]);
settings->setValue("Modem/PreEmphasisDB1", emph_db[0]);
settings->setValue("Modem/PreEmphasisDB2", emph_db[1]);
settings->setValue("Modem/PreEmphasisDB3", emph_db[2]);
settings->setValue("Modem/PreEmphasisDB4", emph_db[3]);
settings->setValue("Window/Waterfall1", Firstwaterfall);
settings->setValue("Window/Waterfall2", Secondwaterfall);
settings->setValue("Modem/TxDelay1", txdelay[0]);
settings->setValue("Modem/TxDelay2", txdelay[1]);
settings->setValue("Modem/TxDelay3", txdelay[2]);
settings->setValue("Modem/TxDelay4", txdelay[3]);
settings->setValue("Modem/TxTail1", txtail[0]);
settings->setValue("Modem/TxTail2", txtail[1]);
settings->setValue("Modem/TxTail3", txtail[2]);
settings->setValue("Modem/TxTail4", txtail[3]);
settings->setValue("Modem/CWIDCall", CWIDCall);
settings->setValue("Modem/CWIDInterval", CWIDInterval);
settings->setValue("Modem/CWIDLeft", CWIDLeft);
settings->setValue("Modem/CWIDRight", CWIDRight);
settings->setValue("Modem/CWIDType", CWIDType);
saveAX25Params(0);
saveAX25Params(1);
saveAX25Params(2);
saveAX25Params(3);
settings->sync();
delete(settings);
}

1
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@ -1 +0,0 @@
ref: refs/heads/master

311
LinuxBits.c Normal file
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@ -0,0 +1,311 @@
/*
Copyright (C) 2019-2020 Andrei Kopanchuk UZ7HO
This file is part of QtSoundModem
QtSoundModem is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
QtSoundModem is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with QtSoundModem. If not, see http://www.gnu.org/licenses
*/
//#define TXSILENCE
// UZ7HO Soundmodem Port by John Wiseman G8BPQ
//
// Audio interface Routine
// Passes audio samples to/from the sound interface
// As this is platform specific it also has the main() routine, which does
// platform specific initialisation before calling ardopmain()
// This is ALSASound.c for Linux
// Windows Version is Waveout.c
void gpioSetMode(unsigned gpio, unsigned mode);
void gpioWrite(unsigned gpio, unsigned level);
int _memicmp(unsigned char *a, unsigned char *b, int n);
int stricmp(const unsigned char * pStr1, const unsigned char *pStr2);
int gpioInitialise(void);
void Sleep(int mS)
{
usleep(mS * 1000);
return;
}
// GPIO access stuff for PTT on PI
#ifdef __ARM_ARCH
/*
tiny_gpio.c
2016-04-30
Public Domain
*/
#include <stdio.h>
#include <unistd.h>
#include <stdint.h>
#include <string.h>
#include <fcntl.h>
#include <sys/mman.h>
#include <sys/stat.h>
#include <sys/types.h>
#define GPSET0 7
#define GPSET1 8
#define GPCLR0 10
#define GPCLR1 11
#define GPLEV0 13
#define GPLEV1 14
#define GPPUD 37
#define GPPUDCLK0 38
#define GPPUDCLK1 39
unsigned piModel;
unsigned piRev;
static volatile uint32_t *gpioReg = MAP_FAILED;
#define PI_BANK (gpio>>5)
#define PI_BIT (1<<(gpio&0x1F))
/* gpio modes. */
// PTT via GPIO code
#ifdef __ARM_ARCH
#define PI_INPUT 0
#define PI_OUTPUT 1
#define PI_ALT0 4
#define PI_ALT1 5
#define PI_ALT2 6
#define PI_ALT3 7
#define PI_ALT4 3
#define PI_ALT5 2
// Set GPIO pin as output and set low
void SetupGPIOPTT()
{
}
#endif
void gpioSetMode(unsigned gpio, unsigned mode)
{
int reg, shift;
reg = gpio/10;
shift = (gpio%10) * 3;
gpioReg[reg] = (gpioReg[reg] & ~(7<<shift)) | (mode<<shift);
}
int gpioGetMode(unsigned gpio)
{
int reg, shift;
reg = gpio/10;
shift = (gpio%10) * 3;
return (*(gpioReg + reg) >> shift) & 7;
}
/* Values for pull-ups/downs off, pull-down and pull-up. */
#define PI_PUD_OFF 0
#define PI_PUD_DOWN 1
#define PI_PUD_UP 2
void gpioSetPullUpDown(unsigned gpio, unsigned pud)
{
*(gpioReg + GPPUD) = pud;
usleep(20);
*(gpioReg + GPPUDCLK0 + PI_BANK) = PI_BIT;
usleep(20);
*(gpioReg + GPPUD) = 0;
*(gpioReg + GPPUDCLK0 + PI_BANK) = 0;
}
int gpioRead(unsigned gpio)
{
if ((*(gpioReg + GPLEV0 + PI_BANK) & PI_BIT) != 0) return 1;
else return 0;
}
void gpioWrite(unsigned gpio, unsigned level)
{
if (level == 0)
*(gpioReg + GPCLR0 + PI_BANK) = PI_BIT;
else
*(gpioReg + GPSET0 + PI_BANK) = PI_BIT;
}
void gpioTrigger(unsigned gpio, unsigned pulseLen, unsigned level)
{
if (level == 0) *(gpioReg + GPCLR0 + PI_BANK) = PI_BIT;
else *(gpioReg + GPSET0 + PI_BANK) = PI_BIT;
usleep(pulseLen);
if (level != 0) *(gpioReg + GPCLR0 + PI_BANK) = PI_BIT;
else *(gpioReg + GPSET0 + PI_BANK) = PI_BIT;
}
/* Bit (1<<x) will be set if gpio x is high. */
uint32_t gpioReadBank1(void) { return (*(gpioReg + GPLEV0)); }
uint32_t gpioReadBank2(void) { return (*(gpioReg + GPLEV1)); }
/* To clear gpio x bit or in (1<<x). */
void gpioClearBank1(uint32_t bits) { *(gpioReg + GPCLR0) = bits; }
void gpioClearBank2(uint32_t bits) { *(gpioReg + GPCLR1) = bits; }
/* To set gpio x bit or in (1<<x). */
void gpioSetBank1(uint32_t bits) { *(gpioReg + GPSET0) = bits; }
void gpioSetBank2(uint32_t bits) { *(gpioReg + GPSET1) = bits; }
unsigned gpioHardwareRevision(void)
{
static unsigned rev = 0;
FILE * filp;
char buf[512];
char term;
int chars=4; /* number of chars in revision string */
if (rev) return rev;
piModel = 0;
filp = fopen ("/proc/cpuinfo", "r");
if (filp != NULL)
{
while (fgets(buf, sizeof(buf), filp) != NULL)
{
if (piModel == 0)
{
if (!strncasecmp("model name", buf, 10))
{
if (strstr (buf, "ARMv6") != NULL)
{
piModel = 1;
chars = 4;
}
else if (strstr (buf, "ARMv7") != NULL)
{
piModel = 2;
chars = 6;
}
else if (strstr (buf, "ARMv8") != NULL)
{
piModel = 2;
chars = 6;
}
}
}
if (!strncasecmp("revision", buf, 8))
{
if (sscanf(buf+strlen(buf)-(chars+1),
"%x%c", &rev, &term) == 2)
{
if (term != '\n') rev = 0;
}
}
}
fclose(filp);
}
return rev;
}
int gpioInitialise(void)
{
int fd;
piRev = gpioHardwareRevision(); /* sets piModel and piRev */
fd = open("/dev/gpiomem", O_RDWR | O_SYNC) ;
if (fd < 0)
{
fprintf(stderr, "failed to open /dev/gpiomem\n");
return -1;
}
gpioReg = (uint32_t *)mmap(NULL, 0xB4, PROT_READ|PROT_WRITE, MAP_SHARED, fd, 0);
close(fd);
if (gpioReg == MAP_FAILED)
{
fprintf(stderr, "Bad, mmap failed\n");
return -1;
}
return 0;
}
#endif
int stricmp(const unsigned char * pStr1, const unsigned char *pStr2)
{
unsigned char c1, c2;
int v;
if (pStr1 == NULL)
{
if (pStr2)
Debugprintf("stricmp called with NULL 1st param - 2nd %s ", pStr2);
else
Debugprintf("stricmp called with two NULL params");
return 1;
}
do {
c1 = *pStr1++;
c2 = *pStr2++;
/* The casts are necessary when pStr1 is shorter & char is signed */
v = tolower(c1) - tolower(c2);
} while ((v == 0) && (c1 != '\0') && (c2 != '\0') );
return v;
}

View File

@ -320,7 +320,7 @@
</rect>
</property>
<property name="title">
<string>Modem type</string>
<string>Modem params</string>
</property>
<widget class="QLineEdit" name="RXShiftA">
<property name="geometry">
@ -337,7 +337,7 @@
<rect>
<x>100</x>
<y>21</y>
<width>61</width>
<width>41</width>
<height>23</height>
</rect>
</property>
@ -346,8 +346,8 @@
<property name="geometry">
<rect>
<x>100</x>
<y>51</y>
<width>61</width>
<y>50</y>
<width>41</width>
<height>23</height>
</rect>
</property>
@ -399,7 +399,7 @@
<property name="geometry">
<rect>
<x>10</x>
<y>50</y>
<y>49</y>
<width>71</width>
<height>23</height>
</rect>
@ -464,7 +464,7 @@
<property name="geometry">
<rect>
<x>176</x>
<y>51</y>
<y>50</y>
<width>71</width>
<height>23</height>
</rect>
@ -541,7 +541,7 @@
<property name="geometry">
<rect>
<x>10</x>
<y>80</y>
<y>79</y>
<width>71</width>
<height>23</height>
</rect>
@ -554,7 +554,7 @@
<property name="geometry">
<rect>
<x>176</x>
<y>81</y>
<y>80</y>
<width>71</width>
<height>23</height>
</rect>
@ -567,31 +567,8 @@
<property name="geometry">
<rect>
<x>100</x>
<y>81</y>
<width>61</width>
<height>23</height>
</rect>
</property>
</widget>
<widget class="QLabel" name="label_71">
<property name="geometry">
<rect>
<x>10</x>
<y>109</y>
<width>71</width>
<height>23</height>
</rect>
</property>
<property name="text">
<string>Retries</string>
</property>
</widget>
<widget class="QLineEdit" name="RetriesA">
<property name="geometry">
<rect>
<x>100</x>
<y>110</y>
<width>61</width>
<y>80</y>
<width>41</width>
<height>23</height>
</rect>
</property>
@ -714,6 +691,52 @@
</property>
</item>
</widget>
<widget class="QLabel" name="label_87">
<property name="geometry">
<rect>
<x>130</x>
<y>111</y>
<width>71</width>
<height>23</height>
</rect>
</property>
<property name="text">
<string>maxFrame</string>
</property>
</widget>
<widget class="QLineEdit" name="MaxFrameA">
<property name="geometry">
<rect>
<x>200</x>
<y>112</y>
<width>41</width>
<height>23</height>
</rect>
</property>
</widget>
<widget class="QLineEdit" name="RetriesA">
<property name="geometry">
<rect>
<x>70</x>
<y>111</y>
<width>41</width>
<height>23</height>
</rect>
</property>
</widget>
<widget class="QLabel" name="label_71">
<property name="geometry">
<rect>
<x>10</x>
<y>110</y>
<width>71</width>
<height>23</height>
</rect>
</property>
<property name="text">
<string>Retries</string>
</property>
</widget>
</widget>
</widget>
</widget>
@ -1051,7 +1074,7 @@
</rect>
</property>
<property name="title">
<string>Modem type</string>
<string>Modem params</string>
</property>
<widget class="QLineEdit" name="RXShiftB">
<property name="geometry">
@ -1304,29 +1327,6 @@
</rect>
</property>
</widget>
<widget class="QLabel" name="label_74">
<property name="geometry">
<rect>
<x>10</x>
<y>109</y>
<width>71</width>
<height>23</height>
</rect>
</property>
<property name="text">
<string>Retries</string>
</property>
</widget>
<widget class="QLineEdit" name="RetriesB">
<property name="geometry">
<rect>
<x>100</x>
<y>110</y>
<width>61</width>
<height>23</height>
</rect>
</property>
</widget>
<widget class="QPushButton" name="SendRSID_2">
<property name="geometry">
<rect>
@ -1446,6 +1446,52 @@
</item>
</widget>
</widget>
<widget class="QLabel" name="label_88">
<property name="geometry">
<rect>
<x>130</x>
<y>121</y>
<width>71</width>
<height>23</height>
</rect>
</property>
<property name="text">
<string>maxFrame</string>
</property>
</widget>
<widget class="QLineEdit" name="RetriesB">
<property name="geometry">
<rect>
<x>70</x>
<y>121</y>
<width>41</width>
<height>23</height>
</rect>
</property>
</widget>
<widget class="QLabel" name="label_74">
<property name="geometry">
<rect>
<x>10</x>
<y>121</y>
<width>71</width>
<height>23</height>
</rect>
</property>
<property name="text">
<string>Retries</string>
</property>
</widget>
<widget class="QLineEdit" name="MaxFrameB">
<property name="geometry">
<rect>
<x>200</x>
<y>121</y>
<width>41</width>
<height>23</height>
</rect>
</property>
</widget>
</widget>
</widget>
</widget>
@ -1782,7 +1828,7 @@
</rect>
</property>
<property name="title">
<string>Modem type</string>
<string>Modem params</string>
</property>
<widget class="QLineEdit" name="RXShiftC">
<property name="geometry">
@ -2035,29 +2081,6 @@
</rect>
</property>
</widget>
<widget class="QLabel" name="label_77">
<property name="geometry">
<rect>
<x>10</x>
<y>109</y>
<width>71</width>
<height>23</height>
</rect>
</property>
<property name="text">
<string>Retries</string>
</property>
</widget>
<widget class="QLineEdit" name="RetriesC">
<property name="geometry">
<rect>
<x>100</x>
<y>110</y>
<width>61</width>
<height>23</height>
</rect>
</property>
</widget>
<widget class="QCheckBox" name="RSIDSABM_C">
<property name="geometry">
<rect>
@ -2133,6 +2156,52 @@
</rect>
</property>
</widget>
<widget class="QLabel" name="label_89">
<property name="geometry">
<rect>
<x>130</x>
<y>111</y>
<width>71</width>
<height>23</height>
</rect>
</property>
<property name="text">
<string>maxFrame</string>
</property>
</widget>
<widget class="QLineEdit" name="RetriesC">
<property name="geometry">
<rect>
<x>70</x>
<y>111</y>
<width>41</width>
<height>23</height>
</rect>
</property>
</widget>
<widget class="QLabel" name="label_77">
<property name="geometry">
<rect>
<x>10</x>
<y>111</y>
<width>71</width>
<height>23</height>
</rect>
</property>
<property name="text">
<string>Retries</string>
</property>
</widget>
<widget class="QLineEdit" name="MaxFrameC">
<property name="geometry">
<rect>
<x>200</x>
<y>111</y>
<width>41</width>
<height>23</height>
</rect>
</property>
</widget>
</widget>
<widget class="QComboBox" name="IL2PModeC">
<property name="geometry">
@ -2513,7 +2582,7 @@
</rect>
</property>
<property name="title">
<string>Modem type</string>
<string>Modem params</string>
</property>
<widget class="QLineEdit" name="RXShiftD">
<property name="geometry">
@ -2766,29 +2835,6 @@
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</property>
</widget>
<widget class="QLabel" name="label_80">
<property name="geometry">
<rect>
<x>10</x>
<y>109</y>
<width>71</width>
<height>23</height>
</rect>
</property>
<property name="text">
<string>Retries</string>
</property>
</widget>
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<property name="geometry">
<rect>
<x>100</x>
<y>110</y>
<width>61</width>
<height>23</height>
</rect>
</property>
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<widget class="QCheckBox" name="RSIDSABM_D">
<property name="geometry">
<rect>
@ -2864,6 +2910,52 @@
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<widget class="QLabel" name="label_90">
<property name="geometry">
<rect>
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<y>111</y>
<width>71</width>
<height>23</height>
</rect>
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<string>maxFrame</string>
</property>
</widget>
<widget class="QLineEdit" name="RetriesD">
<property name="geometry">
<rect>
<x>70</x>
<y>111</y>
<width>41</width>
<height>23</height>
</rect>
</property>
</widget>
<widget class="QLabel" name="label_80">
<property name="geometry">
<rect>
<x>10</x>
<y>111</y>
<width>71</width>
<height>23</height>
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<string>Retries</string>
</property>
</widget>
<widget class="QLineEdit" name="MaxFrameD">
<property name="geometry">
<rect>
<x>200</x>
<y>111</y>
<width>41</width>
<height>23</height>
</rect>
</property>
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</widget>
<widget class="QComboBox" name="IL2PModeD">
<property name="geometry">
@ -2963,8 +3055,8 @@
<widget class="QLabel" name="label_7">
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<y>520</y>
<x>44</x>
<y>516</y>
<width>71</width>
<height>20</height>
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@ -2976,8 +3068,8 @@
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<y>520</y>
<x>114</x>
<y>516</y>
<width>51</width>
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@ -2989,8 +3081,8 @@
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<property name="geometry">
<rect>
<x>340</x>
<y>520</y>
<x>410</x>
<y>516</y>
<width>61</width>
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@ -3002,8 +3094,8 @@
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<property name="geometry">
<rect>
<x>390</x>
<y>520</y>
<x>460</x>
<y>516</y>
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@ -3015,8 +3107,8 @@
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<property name="geometry">
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<y>520</y>
<x>190</x>
<y>516</y>
<width>61</width>
<height>20</height>
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@ -3028,13 +3120,42 @@
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<rect>
<x>294</x>
<y>516</y>
<width>61</width>
<height>20</height>
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</property>
<property name="text">
<string>Mark Freq</string>
</property>
</widget>
<widget class="QLineEdit" name="CWIDMark">
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<rect>
<x>348</x>
<y>516</y>
<width>41</width>
<height>20</height>
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<string>Leave blank for default</string>
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<string/>
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<resources/>
<connections/>

View File

@ -5,7 +5,9 @@
#define ARDOPBufferSize 12000 * 100
extern short ARDOPTXBuffer[4][12000 * 100]; // Enough to hold whole frame of samples
extern char CWIDMark[32];
extern short ARDOPTXBuffer[4][ARDOPBufferSize]; // Enough to hold whole frame of samples
extern int ARDOPTXLen[4]; // Length of frame
extern int ARDOPTXPtr[4]; // Tx Pointer
@ -966,7 +968,7 @@ void sendCWID(char * strID, BOOL CWOnOff, int Chan)
0x557, 0x155, 0x755, 0x1DD5, 0x7775, 0x1DDDD, 0x1D57, 0x1D57};
float dblHiPhaseInc = 2 * M_PI * 1609.375f / 12000; // 1609.375 Hz High tone
float dblHiPhaseInc = 2 * M_PI * 1509.375f / 12000; // 1609.375 Hz High tone
float dblLoPhaseInc = 2 * M_PI * 1390.625f / 12000; // 1390.625 low tone
float dblHiPhase = 0;
float dblLoPhase = 0;
@ -978,6 +980,23 @@ void sendCWID(char * strID, BOOL CWOnOff, int Chan)
char * index;
int intMask;
int idoffset;
int Filter = 1500;
if (CWIDMark[0])
{
// Want nonstandard tones
float Mark = atof(CWIDMark);
float Space = Mark - 200;
dblHiPhaseInc = 2 * M_PI * Mark / 12000; // 1609.375 Hz High tone
dblLoPhaseInc = 2 * M_PI * Space / 12000; // 1390.625 low tone
if (CWOnOff)
Filter = Mark;
else
Filter = (Mark + Space) / 2;
}
strlop(strID, '-'); // Remove any SSID
@ -1000,8 +1019,12 @@ void sendCWID(char * strID, BOOL CWOnOff, int Chan)
dblLoPhase -= 2 * M_PI;
}
initFilter(500,1500, Chan);
if (CWOnOff)
initFilter(500, Filter, Chan);
else
initFilter(200, Filter, Chan);
//Generate leader for VOX 6 dots long
for (k = 6; k >0; k--)

File diff suppressed because it is too large Load Diff

View File

@ -0,0 +1,292 @@
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<ItemGroup>
<ClCompile Include="ARDOPC.c" />
<ClCompile Include="BusyDetect.c" />
<ClCompile Include="Config.cpp" />
<ClCompile Include="dw9600.c" />
<ClCompile Include="hid.c" />
<ClCompile Include="il2p.c">
<CompileAs Condition="'$(Configuration)|$(Platform)'=='Debug|Win32'">CompileAsC</CompileAs>
</ClCompile>
<ClCompile Include="Modulate.c" />
<ClCompile Include="QtSoundModem.cpp" />
<ClCompile Include="rsid.c" />
<ClCompile Include="RSUnit.c" />
<ClCompile Include="SMMain.c" />
<ClCompile Include="ShowFilter.cpp" />
<ClCompile Include="SoundInput.c" />
<ClCompile Include="UZ7HOUtils.c" />
<ClCompile Include="ardopSampleArrays.c" />
<ClCompile Include="ax25.c" />
<ClCompile Include="ax25_agw.c" />
<ClCompile Include="ax25_demod.c" />
<ClCompile Include="ax25_fec.c" />
<ClCompile Include="ax25_l2.c" />
<ClCompile Include="ax25_mod.c" />
<ClCompile Include="berlekamp.c" />
<ClCompile Include="galois.c" />
<ClCompile Include="kiss_mode.c" />
<ClCompile Include="main.cpp" />
<ClCompile Include="ofdm.c" />
<ClCompile Include="pktARDOP.c" />
<ClCompile Include="rs.c" />
<ClCompile Include="sm_main.c" />
<ClCompile Include="tcpCode.cpp" />
<ClCompile Include="Waveout.c" />
</ItemGroup>
<ItemGroup>
<QtMoc Include="QtSoundModem.h">
</QtMoc>
<ClInclude Include="UZ7HOStuff.h" />
<QtMoc Include="tcpCode.h">
</QtMoc>
</ItemGroup>
<ItemGroup>
<CustomBuild Include="debug\moc_predefs.h.cbt">
<FileType>Document</FileType>
<ExcludedFromBuild Condition="'$(Configuration)|$(Platform)'=='Release|Win32'">true</ExcludedFromBuild>
<AdditionalInputs Condition="'$(Configuration)|$(Platform)'=='Debug|Win32'">$(QTDIR)\mkspecs\features\data\dummy.cpp;%(AdditionalInputs)</AdditionalInputs>
<Command Condition="'$(Configuration)|$(Platform)'=='Debug|Win32'">cl -Bx"$(QTDIR)\bin\qmake.exe" -nologo -Zc:wchar_t -FS -Zc:rvalueCast -Zc:inline -Zc:strictStrings -Zc:throwingNew -Zc:referenceBinding -Zc:__cplusplus -Zi -MDd -W3 -w34100 -w34189 -w44996 -w44456 -w44457 -w44458 -wd4577 -wd4467 -E $(QTDIR)\mkspecs\features\data\dummy.cpp 2&gt;NUL &gt;debug\moc_predefs.h</Command>
<Message Condition="'$(Configuration)|$(Platform)'=='Debug|Win32'">Generate moc_predefs.h</Message>
<Outputs Condition="'$(Configuration)|$(Platform)'=='Debug|Win32'">debug\moc_predefs.h;%(Outputs)</Outputs>
</CustomBuild>
<CustomBuild Include="release\moc_predefs.h.cbt">
<FileType>Document</FileType>
<AdditionalInputs Condition="'$(Configuration)|$(Platform)'=='Release|Win32'">$(QTDIR)\mkspecs\features\data\dummy.cpp;%(AdditionalInputs)</AdditionalInputs>
<Command Condition="'$(Configuration)|$(Platform)'=='Release|Win32'">cl -Bx"$(QTDIR)\bin\qmake.exe" -nologo -Zc:wchar_t -FS -Zc:rvalueCast -Zc:inline -Zc:strictStrings -Zc:throwingNew -Zc:referenceBinding -Zc:__cplusplus -O2 -MD -W3 -w34100 -w34189 -w44996 -w44456 -w44457 -w44458 -wd4577 -wd4467 -E $(QTDIR)\mkspecs\features\data\dummy.cpp 2&gt;NUL &gt;release\moc_predefs.h</Command>
<Message Condition="'$(Configuration)|$(Platform)'=='Release|Win32'">Generate moc_predefs.h</Message>
<Outputs Condition="'$(Configuration)|$(Platform)'=='Release|Win32'">release\moc_predefs.h;%(Outputs)</Outputs>
<ExcludedFromBuild Condition="'$(Configuration)|$(Platform)'=='Debug|Win32'">true</ExcludedFromBuild>
</CustomBuild>
</ItemGroup>
<ItemGroup>
<QtUic Include="ModemDialog.ui">
</QtUic>
<QtUic Include="QtSoundModem.ui">
</QtUic>
<QtUic Include="calibrateDialog.ui">
</QtUic>
<QtUic Include="devicesDialog.ui">
</QtUic>
<QtUic Include="filterWindow.ui">
</QtUic>
</ItemGroup>
<ItemGroup>
<QtRcc Include="QtSoundModem.qrc">
</QtRcc>
</ItemGroup>
<ItemGroup>
<ResourceCompile Include=".\QtSoundModem_resource.rc" />
</ItemGroup>
<ItemGroup>
<Image Include="QtSoundModem.ico" />
</ItemGroup>
<Import Project="$(VCTargetsPath)\Microsoft.Cpp.targets" />
<ImportGroup Condition="Exists('$(QtMsBuild)\qt.targets')">
<Import Project="$(QtMsBuild)\qt.targets" />
</ImportGroup>
<ImportGroup Label="ExtensionTargets" />
</Project>

View File

@ -50,7 +50,7 @@ along with QtSoundModem. If not, see http://www.gnu.org/licenses
#include "UZ7HOStuff.h"
QImage *Constellation;
QImage *Constellation[4];
QImage *Waterfall[4] = { 0,0,0,0 };
QImage *Header[4];
QLabel *DCDLabel[4];
@ -73,7 +73,7 @@ void saveSettings();
void getSettings();
extern "C" void CloseSound();
extern "C" void GetSoundDevices();
extern "C" char modes_name[modes_count][20];
extern "C" char modes_name[modes_count][21];
extern "C" int speed[5];
extern "C" int KISSPort;
extern "C" short rx_freq[5];
@ -91,6 +91,7 @@ extern "C" int SoundMode;
extern "C" int multiCore;
extern "C" int refreshModems;
int NeedPSKRefresh;
extern "C" int pnt_change[5];
extern "C" int needRSID[4];
@ -101,6 +102,11 @@ extern "C" float MagOut[4096];
extern "C" float MaxMagOut;
extern "C" int MaxMagIndex;
extern "C" int using48000; // Set if using 48K sample rate (ie RUH Modem active)
extern "C" int ReceiveSize;
extern "C" int SendSize; // 100 mS for now
extern "C"
{
int InitSound(BOOL Report);
@ -137,6 +143,7 @@ int FreqD = 1500;
int DCD = 50;
char CWIDCall[128] = "";
extern "C" char CWIDMark[32] = "";
int CWIDInterval = 0;
int CWIDLeft = 0;
int CWIDRight = 0;
@ -147,11 +154,12 @@ int WaterfallMax = 6000;
int Configuring = 0;
float BinSize;
extern "C" float BinSize;
extern "C" { int RSID_SABM[4]; }
extern "C" { int RSID_UI[4]; }
extern "C" { int RSID_SetModem[4]; }
extern "C" unsigned int pskStates[4];
int Closing = FALSE; // Set to stop background thread
@ -461,17 +469,80 @@ void QtSoundModem::initWaterfall(int chan, int state)
QApplication::sendEvent(this, event);
}
QRect PSKRect = { 100,100,100,100 };
QDialog * constellationDialog;
QLabel * constellationLabel[4];
QLabel * QualLabel[4];
// Local copies
QLabel *RXOffsetLabel;
QSlider *RXOffset;
extern "C" void CheckPSKWindows()
{
NeedPSKRefresh = 1;
}
void DoPSKWindows()
{
// Display Constellation for PSK Window;
int NextX = 0;
int i;
for (i = 0; i < 4; i++)
{
if (pskStates[i])
{
constellationLabel[i]->setGeometry(QRect(NextX, 19, 121, 121));
QualLabel[i]->setGeometry(QRect(1 + NextX, 1, 120, 15));
constellationLabel[i]->setVisible(1);
QualLabel[i]->setVisible(1);
NextX += 122;
}
else
{
constellationLabel[i]->setVisible(0);
QualLabel[i]->setVisible(0);
}
}
constellationDialog->resize(NextX, 140);
}
QtSoundModem::QtSoundModem(QWidget *parent) : QMainWindow(parent)
{
ui.setupUi(this);
QSettings mysettings("QtSoundModem.ini", QSettings::IniFormat);
constellationDialog = new QDialog(nullptr, Qt::WindowTitleHint | Qt::WindowSystemMenuHint);
constellationDialog->resize(488, 140);
constellationDialog->setGeometry(PSKRect);
QFont f("Arial", 8, QFont::Normal);
for (int i = 0; i < 4; i++)
{
char Text[16];
sprintf(Text, "Chan %c", i + 'A');
constellationLabel[i] = new QLabel(constellationDialog);
constellationDialog->setWindowTitle("PSK Constellations");
QualLabel[i] = new QLabel(constellationDialog);
QualLabel[i]->setText(Text);
QualLabel[i]->setFont(f);
Constellation[i] = new QImage(121, 121, QImage::Format_RGB32);
Constellation[i]->fill(black);
constellationLabel[i]->setPixmap(QPixmap::fromImage(*Constellation[i]));
}
constellationDialog->show();
if (MintoTray)
{
char popUp[256];
@ -479,10 +550,24 @@ QtSoundModem::QtSoundModem(QWidget *parent) : QMainWindow(parent)
trayIcon = new QSystemTrayIcon(QIcon(":/QtSoundModem/soundmodem.ico"), this);
trayIcon->setToolTip(popUp);
trayIcon->show();
connect(trayIcon, SIGNAL(activated(QSystemTrayIcon::ActivationReason)), this, SLOT(TrayActivated(QSystemTrayIcon::ActivationReason)));
}
using48000 = 0; // Set if using 48K sample rate (ie RUH Modem active)
ReceiveSize = 512;
SendSize = 1024; // 100 mS for now
for (int i = 0; i < 4; i++)
{
if (soundChannel[i] && (speed[i] == SPEED_RUH48 || speed[i] == SPEED_RUH96))
{
using48000 = 1; // Set if using 48K sample rate (ie RUH Modem active)
ReceiveSize = 2048;
SendSize = 4096; // 100 mS for now
}
}
float FFTCalc = 12000.0f / ((WaterfallMax - WaterfallMin) / 900.0f);
FFTSize = FFTCalc + 0.4999;
@ -648,6 +733,11 @@ QtSoundModem::QtSoundModem(QWidget *parent) : QMainWindow(parent)
connect(ui.modeC, SIGNAL(currentIndexChanged(int)), this, SLOT(clickedSlotI(int)));
connect(ui.modeD, SIGNAL(currentIndexChanged(int)), this, SLOT(clickedSlotI(int)));
ModemA = speed[0];
ModemB = speed[1];
ModemC = speed[2];
ModemD = speed[3];
ui.modeA->setCurrentIndex(speed[0]);
ui.modeB->setCurrentIndex(speed[1]);
ui.modeC->setCurrentIndex(speed[2]);
@ -692,7 +782,11 @@ QtSoundModem::QtSoundModem(QWidget *parent) : QMainWindow(parent)
connect(timer, SIGNAL(timeout()), this, SLOT(MyTimerSlot()));
timer->start(100);
QTimer *wftimer = new QTimer(this);
connect(wftimer, SIGNAL(timeout()), this, SLOT(doRestartWF()));
wftimer->start(1000 * 300);
cwidtimer = new QTimer(this);
connect(cwidtimer, SIGNAL(timeout()), this, SLOT(CWIDTimer()));
@ -776,6 +870,11 @@ void QtSoundModem::MyTimerSlot()
ui.centerC->setValue(rx_freq[2]);
ui.centerD->setValue(rx_freq[3]);
}
if (NeedPSKRefresh)
{
NeedPSKRefresh = 0;
DoPSKWindows();
}
show_grid();
}
@ -798,6 +897,44 @@ void QtSoundModem::returnPressed()
}
void CheckforChanges(int Mode, int OldMode)
{
int old48000 = using48000;
if (OldMode != Mode && Mode == 15)
{
QMessageBox msgBox;
msgBox.setText("Warning!!\nARDOP Packet is NOT the same as ARDOP\n"
"It is an experimental mode for sending ax.25 frames using ARDOP packet formats\n");
msgBox.setStandardButtons(QMessageBox::Ok);
msgBox.exec();
}
// See if need to switch beween 12000 and 48000
using48000 = 0; // Set if using 48K sample rate (ie RUH Modem active)
ReceiveSize = 512;
SendSize = 1024; // 100 mS for now
for (int i = 0; i < 4; i++)
{
if (soundChannel[i] && (speed[i] == SPEED_RUH48 || speed[i] == SPEED_RUH96))
{
using48000 = 1; // Set if using 48K sample rate (ie RUH Modem active)
ReceiveSize = 2048;
SendSize = 4096; // 100 mS for now
}
}
if (using48000 != old48000)
{
InitSound(1);
}
}
void QtSoundModem::clickedSlotI(int i)
{
@ -807,8 +944,10 @@ void QtSoundModem::clickedSlotI(int i)
if (strcmp(Name, "modeA") == 0)
{
int OldModem = ModemA;
ModemA = ui.modeA->currentIndex();
set_speed(0, ModemA);
CheckforChanges(ModemA, OldModem);
saveSettings();
AGW_Report_Modem_Change(0);
return;
@ -816,8 +955,10 @@ void QtSoundModem::clickedSlotI(int i)
if (strcmp(Name, "modeB") == 0)
{
int OldModem = ModemB;
ModemB = ui.modeB->currentIndex();
set_speed(1, ModemB);
CheckforChanges(ModemB, OldModem);
saveSettings();
AGW_Report_Modem_Change(1);
return;
@ -825,8 +966,10 @@ void QtSoundModem::clickedSlotI(int i)
if (strcmp(Name, "modeC") == 0)
{
int OldModem = ModemC;
ModemC = ui.modeC->currentIndex();
set_speed(2, ModemC);
CheckforChanges(ModemC, OldModem);
saveSettings();
AGW_Report_Modem_Change(2);
return;
@ -834,8 +977,10 @@ void QtSoundModem::clickedSlotI(int i)
if (strcmp(Name, "modeD") == 0)
{
int OldModem = ModemD;
ModemD = ui.modeD->currentIndex();
set_speed(3, ModemD);
CheckforChanges(ModemD, OldModem);
saveSettings();
AGW_Report_Modem_Change(3);
return;
@ -843,7 +988,7 @@ void QtSoundModem::clickedSlotI(int i)
if (strcmp(Name, "centerA") == 0)
{
if (i > 300)
if (i > 299)
{
QSettings * settings = new QSettings("QtSoundModem.ini", QSettings::IniFormat);
ui.centerA->setValue(Freq_Change(0, i));
@ -856,7 +1001,7 @@ void QtSoundModem::clickedSlotI(int i)
if (strcmp(Name, "centerB") == 0)
{
if (i > 300)
if (i > 299)
{
QSettings * settings = new QSettings("QtSoundModem.ini", QSettings::IniFormat);
ui.centerB->setValue(Freq_Change(1, i));
@ -868,7 +1013,7 @@ void QtSoundModem::clickedSlotI(int i)
if (strcmp(Name, "centerC") == 0)
{
if (i > 300)
if (i > 299)
{
QSettings * settings = new QSettings("QtSoundModem.ini", QSettings::IniFormat);
ui.centerC->setValue(Freq_Change(2, i));
@ -880,7 +1025,7 @@ void QtSoundModem::clickedSlotI(int i)
if (strcmp(Name, "centerD") == 0)
{
if (i > 300)
if (i > 299)
{
QSettings * settings = new QSettings("QtSoundModem.ini", QSettings::IniFormat);
ui.centerD->setValue(Freq_Change(3, i));
@ -1187,6 +1332,15 @@ void QtSoundModem::doModems()
Dlg->KISSOptC->setChecked(KISS_opt[2]);
Dlg->KISSOptD->setChecked(KISS_opt[3]);
sprintf(valChar, "%d", maxframe[0]);
Dlg->MaxFrameA->setText(valChar);
sprintf(valChar, "%d", maxframe[1]);
Dlg->MaxFrameB->setText(valChar);
sprintf(valChar, "%d", maxframe[2]);
Dlg->MaxFrameC->setText(valChar);
sprintf(valChar, "%d", maxframe[3]);
Dlg->MaxFrameD->setText(valChar);
sprintf(valChar, "%d", txdelay[0]);
Dlg->TXDelayA->setText(valChar);
sprintf(valChar, "%d", txdelay[1]);
@ -1196,6 +1350,7 @@ void QtSoundModem::doModems()
sprintf(valChar, "%d", txdelay[3]);
Dlg->TXDelayD->setText(valChar);
sprintf(valChar, "%d", txtail[0]);
Dlg->TXTailA->setText(valChar);
sprintf(valChar, "%d", txtail[1]);
@ -1255,6 +1410,7 @@ void QtSoundModem::doModems()
Dlg->CWIDCall->setText(CWIDCall);
Dlg->CWIDInterval->setText(QString::number(CWIDInterval));
Dlg->CWIDMark->setText(CWIDMark);
if (CWIDType)
Dlg->radioButton_2->setChecked(1);
@ -1396,6 +1552,23 @@ void QtSoundModem::modemSave()
Q = Dlg->TXDelayD->text();
txdelay[3] = Q.toInt();
Q = Dlg->MaxFrameA->text();
maxframe[0] = Q.toInt();
Q = Dlg->MaxFrameB->text();
maxframe[1] = Q.toInt();
Q = Dlg->MaxFrameC->text();
maxframe[2] = Q.toInt();
Q = Dlg->MaxFrameD->text();
maxframe[3] = Q.toInt();
if (maxframe[0] == 0 || maxframe[0] > 7) maxframe[0] = 3;
if (maxframe[1] == 0 || maxframe[1] > 7) maxframe[1] = 3;
if (maxframe[2] == 0 || maxframe[2] > 7) maxframe[2] = 3;
if (maxframe[3] == 0 || maxframe[3] > 7) maxframe[3] = 3;
Q = Dlg->TXTailA->text();
txtail[0] = Q.toInt();
@ -1458,6 +1631,7 @@ void QtSoundModem::modemSave()
strcpy(CWIDCall, Dlg->CWIDCall->text().toUtf8().toUpper());
strcpy(CWIDMark, Dlg->CWIDMark->text().toUtf8().toUpper());
CWIDInterval = Dlg->CWIDInterval->text().toInt();
CWIDType = Dlg->radioButton_2->isChecked();
@ -2091,10 +2265,10 @@ void QtSoundModem::deviceaccept()
InitSound(1);
}
// Reset title and tooltip in case ports changed
// Reset title and tooltip in case ports changed
char Title[128];
sprintf(Title, "QtSoundModem Version %s Ports %d/%d", VersionString, AGWPort, KISSPort);
sprintf(Title, "QtSoundModem Version %s Ports %d%s/%d%s", VersionString, AGWPort, AGWServ ? "*": "", KISSPort, KISSServ ? "*" : "");
w->setWindowTitle(Title);
sprintf(Title, "QtSoundModem %d %d", AGWPort, KISSPort);
@ -2517,6 +2691,7 @@ extern "C" void doWaterfall(int snd_ch)
extern "C" float aFFTAmpl[1024];
extern "C" void SMUpdateBusyDetector(int LR, float * Real, float *Imag);
void doWaterfallThread(void * param)
{
@ -2617,6 +2792,8 @@ void doWaterfallThread(void * param)
}
}
SMUpdateBusyDetector(snd_ch, RealOut, ImagOut);
if (bm == 0)
return;
@ -2875,3 +3052,82 @@ void QtSoundModem::onTEselectionChanged()
x->copy();
}
#define ConstellationHeight 121
#define ConstellationWidth 121
#define PLOTRADIUS 60
#define MAX(x, y) ((x) > (y) ? (x) : (y))
extern "C" int SMUpdatePhaseConstellation(int chan, float * Phases, float * Mags, int intPSKPhase, int Count)
{
// Subroutine to update bmpConstellation plot for PSK modes...
// Skip plotting and calculations of intPSKPhase(0) as this is a reference phase (9/30/2014)
float dblPhaseError;
float dblPhaseErrorSum = 0;
float intP = 0;
float dblRad = 0;
float dblAvgRad = 0;
float dbPhaseStep;
float MagMax = 0;
float dblPlotRotation = 0;
int i, intQuality;
int intX, intY;
int yCenter = (ConstellationHeight - 2) / 2;
int xCenter = (ConstellationWidth - 2) / 2;
Constellation[chan]->fill(black);
for (i = 0; i < 120; i++)
{
Constellation[chan]->setPixel(xCenter, i, cyan);
Constellation[chan]->setPixel(i, xCenter, cyan);
}
if (Count == 0)
return 0;
dbPhaseStep = 2 * M_PI / intPSKPhase;
for (i = 1; i < Count; i++) // Don't plot the first phase (reference)
{
MagMax = MAX(MagMax, Mags[i]); // find the max magnitude to auto scale
dblAvgRad += Mags[i];
}
dblAvgRad = dblAvgRad / Count; // the average radius
for (i = 0; i < Count; i++)
{
dblRad = PLOTRADIUS * Mags[i] / MagMax; // scale the radius dblRad based on intMag
intP = round((Phases[i]) / dbPhaseStep);
// compute the Phase error
dblPhaseError = fabsf(Phases[i] - intP * dbPhaseStep); // always positive and < .5 * dblPhaseStep
dblPhaseErrorSum += dblPhaseError;
intX = xCenter + dblRad * cosf(dblPlotRotation + Phases[i]);
intY = yCenter + dblRad * sinf(dblPlotRotation + Phases[i]);
if (intX > 0 && intY > 0)
if (intX != xCenter && intY != yCenter)
Constellation[chan]->setPixel(intX, intY, yellow);
}
dblAvgRad = dblAvgRad / Count; // the average radius
intQuality = MAX(0, ((100 - 200 * (dblPhaseErrorSum / (Count)) / dbPhaseStep))); // ignore radius error for (PSK) but include for QAM
char QualText[64];
sprintf(QualText, "Chan %c Qual = %d", chan + 'A', intQuality);
QualLabel[chan]->setText(QualText);
constellationLabel[chan]->setPixmap(QPixmap::fromImage(*Constellation[chan]));
// constellationDialog[chan]->setWindowTitle(QualText);
return intQuality;
}

View File

@ -43,7 +43,8 @@ SOURCES += ./audio.c \
./Modulate.c \
./ofdm.c \
./pktARDOP.c \
./BusyDetect.c
./BusyDetect.c \
./DW9600.c

View File

@ -124,9 +124,9 @@
<widget class="QLabel" name="WaterfallA">
<property name="geometry">
<rect>
<x>0</x>
<x>80</x>
<y>488</y>
<width>953</width>
<width>881</width>
<height>80</height>
</rect>
</property>

View File

@ -1,516 +0,0 @@
<?xml version="1.0" encoding="UTF-8"?>
<ui version="4.0">
<class>QtSoundModemClass</class>
<widget class="QMainWindow" name="QtSoundModemClass">
<property name="geometry">
<rect>
<x>0</x>
<y>0</y>
<width>962</width>
<height>721</height>
</rect>
</property>
<property name="maximumSize">
<size>
<width>1024</width>
<height>16777215</height>
</size>
</property>
<property name="windowTitle">
<string>QtSoundModem</string>
</property>
<property name="windowIcon">
<iconset resource="QtSoundModem.qrc">
<normaloff>:/QtSoundModem/soundmodem.ico</normaloff>:/QtSoundModem/soundmodem.ico</iconset>
</property>
<widget class="QWidget" name="centralWidget">
<widget class="QSpinBox" name="centerA">
<property name="geometry">
<rect>
<x>174</x>
<y>6</y>
<width>56</width>
<height>22</height>
</rect>
</property>
<property name="maximum">
<number>3000</number>
</property>
<property name="value">
<number>1500</number>
</property>
</widget>
<widget class="QComboBox" name="modeB">
<property name="geometry">
<rect>
<x>316</x>
<y>6</y>
<width>145</width>
<height>22</height>
</rect>
</property>
</widget>
<widget class="QLabel" name="WaterfallB">
<property name="geometry">
<rect>
<x>0</x>
<y>586</y>
<width>959</width>
<height>80</height>
</rect>
</property>
<property name="sizePolicy">
<sizepolicy hsizetype="Minimum" vsizetype="Minimum">
<horstretch>0</horstretch>
<verstretch>0</verstretch>
</sizepolicy>
</property>
<property name="minimumSize">
<size>
<width>600</width>
<height>80</height>
</size>
</property>
<property name="maximumSize">
<size>
<width>5000</width>
<height>100</height>
</size>
</property>
<property name="font">
<font>
<pointsize>8</pointsize>
</font>
</property>
<property name="frameShape">
<enum>QFrame::Box</enum>
</property>
<property name="frameShadow">
<enum>QFrame::Plain</enum>
</property>
<property name="text">
<string/>
</property>
</widget>
<widget class="QLabel" name="label_2">
<property name="geometry">
<rect>
<x>6</x>
<y>7</y>
<width>16</width>
<height>18</height>
</rect>
</property>
<property name="text">
<string>A:</string>
</property>
</widget>
<widget class="QSpinBox" name="centerB">
<property name="geometry">
<rect>
<x>468</x>
<y>6</y>
<width>56</width>
<height>22</height>
</rect>
</property>
<property name="maximum">
<number>3000</number>
</property>
<property name="value">
<number>1500</number>
</property>
</widget>
<widget class="QLabel" name="WaterfallA">
<property name="geometry">
<rect>
<x>0</x>
<y>488</y>
<width>953</width>
<height>80</height>
</rect>
</property>
<property name="minimumSize">
<size>
<width>600</width>
<height>80</height>
</size>
</property>
<property name="maximumSize">
<size>
<width>5000</width>
<height>100</height>
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<Command Condition="'$(Configuration)|$(Platform)'=='Release|Win32'">cl -Bx"$(QTDIR)\bin\qmake.exe" -nologo -Zc:wchar_t -FS -Zc:rvalueCast -Zc:inline -Zc:strictStrings -Zc:throwingNew -Zc:referenceBinding -Zc:__cplusplus -O2 -MD -W3 -w34100 -w34189 -w44996 -w44456 -w44457 -w44458 -wd4577 -wd4467 -E $(QTDIR)\mkspecs\features\data\dummy.cpp 2&gt;NUL &gt;release\moc_predefs.h</Command>
<Message Condition="'$(Configuration)|$(Platform)'=='Release|Win32'">Generate moc_predefs.h</Message>
<Outputs Condition="'$(Configuration)|$(Platform)'=='Release|Win32'">release\moc_predefs.h;%(Outputs)</Outputs>
<ExcludedFromBuild Condition="'$(Configuration)|$(Platform)'=='Debug|Win32'">true</ExcludedFromBuild>
<Outputs Condition="'$(Configuration)|$(Platform)'=='Debug|x64'">debug\moc_predefs.h;%(Outputs)</Outputs>
</CustomBuild>
</ItemGroup>
<ItemGroup>

View File

@ -0,0 +1,34 @@
<?xml version="1.0" encoding="utf-8"?>
<Project ToolsVersion="15.0" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<PropertyGroup Condition="'$(Configuration)|$(Platform)'=='Debug|Win32'">
<LocalDebuggerWorkingDirectory>C:\DevProgs\BPQ32\SMTest</LocalDebuggerWorkingDirectory>
<DebuggerFlavor>WindowsLocalDebugger</DebuggerFlavor>
<LocalDebuggerCommandArguments>
</LocalDebuggerCommandArguments>
</PropertyGroup>
<PropertyGroup Condition="'$(Configuration)|$(Platform)'=='Debug|x64'">
<LocalDebuggerWorkingDirectory>c:\devprogs\bpq32\SMSAT2</LocalDebuggerWorkingDirectory>
<DebuggerFlavor>WindowsLocalDebugger</DebuggerFlavor>
<LocalDebuggerCommandArguments>&lt; d:\samples.wav</LocalDebuggerCommandArguments>
</PropertyGroup>
<PropertyGroup Condition="'$(Configuration)|$(Platform)'=='Release|Win32'">
<LocalDebuggerWorkingDirectory>.\debug</LocalDebuggerWorkingDirectory>
<DebuggerFlavor>WindowsLocalDebugger</DebuggerFlavor>
</PropertyGroup>
<PropertyGroup Condition="'$(Configuration)|$(Platform)'=='Release|x64'">
<LocalDebuggerWorkingDirectory>C:\DevProgs\BPQ32\SMSat</LocalDebuggerWorkingDirectory>
<DebuggerFlavor>WindowsLocalDebugger</DebuggerFlavor>
</PropertyGroup>
<PropertyGroup Label="QtSettings" Condition="'$(Configuration)|$(Platform)'=='Debug|Win32'">
<QtLastBackgroundBuild>2023-08-21T20:12:53.1523329Z</QtLastBackgroundBuild>
</PropertyGroup>
<PropertyGroup Condition="'$(Configuration)|$(Platform)'=='Debug|x64'" Label="QtSettings">
<QtLastBackgroundBuild>2022-03-11T19:38:31.5906689Z</QtLastBackgroundBuild>
</PropertyGroup>
<PropertyGroup Label="QtSettings" Condition="'$(Configuration)|$(Platform)'=='Release|Win32'">
<QtLastBackgroundBuild>2023-08-18T07:29:42.4175478Z</QtLastBackgroundBuild>
</PropertyGroup>
<PropertyGroup Condition="'$(Configuration)|$(Platform)'=='Release|x64'" Label="QtSettings">
<QtLastBackgroundBuild>2022-03-11T19:38:33.3845083Z</QtLastBackgroundBuild>
</PropertyGroup>
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View File

@ -137,6 +137,9 @@
<ClCompile Include="il2p.c">
<Filter>Source Files</Filter>
</ClCompile>
<ClCompile Include="dw9600.c">
<Filter>Source Files</Filter>
</ClCompile>
</ItemGroup>
<ItemGroup>
<QtMoc Include="QtSoundModem.h">
@ -153,9 +156,6 @@
<CustomBuild Include="debug\moc_predefs.h.cbt">
<Filter>Generated Files</Filter>
</CustomBuild>
<CustomBuild Include="release\moc_predefs.h.cbt">
<Filter>Generated Files</Filter>
</CustomBuild>
</ItemGroup>
<ItemGroup>
<QtUic Include="ModemDialog.ui">

View File

@ -1,7 +1,7 @@
<?xml version="1.0" encoding="utf-8"?>
<Project ToolsVersion="15.0" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<PropertyGroup Condition="'$(Configuration)|$(Platform)'=='Debug|Win32'">
<LocalDebuggerWorkingDirectory>C:\DevProgs\BPQ32\SM2</LocalDebuggerWorkingDirectory>
<LocalDebuggerWorkingDirectory>C:\DevProgs\BPQ32\SMTest</LocalDebuggerWorkingDirectory>
<DebuggerFlavor>WindowsLocalDebugger</DebuggerFlavor>
<LocalDebuggerCommandArguments>
</LocalDebuggerCommandArguments>
@ -20,15 +20,15 @@
<DebuggerFlavor>WindowsLocalDebugger</DebuggerFlavor>
</PropertyGroup>
<PropertyGroup Label="QtSettings" Condition="'$(Configuration)|$(Platform)'=='Debug|Win32'">
<QtLastBackgroundBuild>2023-06-27T07:43:13.0567353Z</QtLastBackgroundBuild>
<QtLastBackgroundBuild>2023-08-31T18:31:29.1703485Z</QtLastBackgroundBuild>
</PropertyGroup>
<PropertyGroup Condition="'$(Configuration)|$(Platform)'=='Debug|x64'" Label="QtSettings">
<QtLastBackgroundBuild>2022-03-11T19:38:31.5906689Z</QtLastBackgroundBuild>
<QtLastBackgroundBuild>2023-08-31T18:31:29.3763536Z</QtLastBackgroundBuild>
</PropertyGroup>
<PropertyGroup Label="QtSettings" Condition="'$(Configuration)|$(Platform)'=='Release|Win32'">
<QtLastBackgroundBuild>2023-06-27T07:43:13.1602990Z</QtLastBackgroundBuild>
<QtLastBackgroundBuild>2023-08-31T18:31:30.2753833Z</QtLastBackgroundBuild>
</PropertyGroup>
<PropertyGroup Condition="'$(Configuration)|$(Platform)'=='Release|x64'" Label="QtSettings">
<QtLastBackgroundBuild>2022-03-11T19:38:33.3845083Z</QtLastBackgroundBuild>
<QtLastBackgroundBuild>2023-08-31T18:31:32.1264353Z</QtLastBackgroundBuild>
</PropertyGroup>
</Project>

View File

@ -27,6 +27,7 @@ along with QtSoundModem. If not, see http://www.gnu.org/licenses
#include "hidapi.h"
#include <fcntl.h>
#include <errno.h>
#include <stdint.h>
BOOL KISSServ;
int KISSPort;
@ -62,13 +63,24 @@ extern int pnt_change[5]; // Freq Changed Flag
fftwf_complex *in, *out;
fftwf_plan p;
#define N 2048
int FFTSize = 4096;
char * Wisdom;
void initfft()
{
in = (fftwf_complex*)fftwf_malloc(sizeof(fftwf_complex) * N);
out = (fftwf_complex*)fftwf_malloc(sizeof(fftwf_complex) * N);
p = fftwf_plan_dft_1d(N, in, out, FFTW_FORWARD, FFTW_ESTIMATE);
fftwf_import_wisdom_from_string(Wisdom);
fftwf_set_timelimit(30);
#ifndef WIN32
printf("It may take up to 30 seconds for the program to start for the first time\n");
#endif
in = (fftwf_complex*)fftwf_malloc(sizeof(fftwf_complex) * 10000);
out = (fftwf_complex*)fftwf_malloc(sizeof(fftwf_complex) * 10000);
p = fftwf_plan_dft_1d(FFTSize, in, out, FFTW_FORWARD, FFTW_PATIENT);
Wisdom = fftwf_export_wisdom_to_string();
}
void dofft(short * inp, float * outr, float * outi)
@ -77,7 +89,7 @@ void dofft(short * inp, float * outr, float * outi)
fftwf_complex * fft = in;
for (i = 0; i < N; i++)
for (i = 0; i < FFTSize; i++)
{
fft[0][0] = inp[0] * 1.0f;
fft[0][1] = 0;
@ -89,7 +101,7 @@ void dofft(short * inp, float * outr, float * outi)
fft = out;
for (i = 0; i < N; i++)
for (i = 0; i < FFTSize; i++)
{
outr[0] = fft[0][0];
outi[0] = fft[0][1];
@ -165,6 +177,18 @@ void SampleSink(int LR, short Sample)
DMABuffer[1 + 2 * Number] = 0;
}
}
if (using48000)
{
// Need to upsample to 48K. Try just duplicating sample
uint32_t * ptr = &DMABuffer[2 * Number];
*(&ptr[1]) = *(ptr);
*(&ptr[2]) = *(ptr);
*(&ptr[3]) = *(ptr);
Number += 3;
}
Number++;
#endif
if (Number >= SendSize)
@ -321,194 +345,171 @@ extern UCHAR * pixelPointer;
#endif
extern int blnBusyStatus;
BusyDet = 0;
BusyDet = 5;
#define PLOTWATERFALL
int WaterfallActive = 1;
int SpectrumActive;
/*
float BinSize;
void UpdateBusyDetector(short * bytNewSamples)
extern int intLastStart;
extern int intLastStop;
void SMSortSignals2(float * dblMag, int intStartBin, int intStopBin, int intNumBins, float * dblAVGSignalPerBin, float * dblAVGBaselinePerBin);
BOOL SMBusyDetect3(float * dblMag, int intStart, int intStop) // this only called while searching for leader ...once leader detected, no longer called.
{
float dblReF[1024];
float dblImF[1024];
float dblMag[206];
#ifdef PLOTSPECTRUM
float dblMagMax = 0.0000000001f;
float dblMagMin = 10000000000.0f;
#endif
UCHAR Waterfall[256]; // Colour index values to send to GUI
int clrTLC = Lime; // Default Bandwidth lines on waterfall
// First sort signals and look at highes signals:baseline ratio..
static BOOL blnLastBusyStatus;
float dblAVGSignalPerBinNarrow, dblAVGSignalPerBinWide, dblAVGBaselineNarrow, dblAVGBaselineWide;
float dblSlowAlpha = 0.2f;
float dblAvgStoNNarrow = 0, dblAvgStoNWide = 0;
int intNarrow = 8; // 8 x 11.72 Hz about 94 z
int intWide = ((intStop - intStart) * 2) / 3; //* 0.66);
int blnBusy = FALSE;
int BusyDet4th = BusyDet * BusyDet * BusyDet * BusyDet;
// First sort signals and look at highest signals:baseline ratio..
// First narrow band (~94Hz)
SMSortSignals2(dblMag, intStart, intStop, intNarrow, &dblAVGSignalPerBinNarrow, &dblAVGBaselineNarrow);
if (intLastStart == intStart && intLastStop == intStop)
dblAvgStoNNarrow = (1 - dblSlowAlpha) * dblAvgStoNNarrow + dblSlowAlpha * dblAVGSignalPerBinNarrow / dblAVGBaselineNarrow;
else
{
// This initializes the Narrow average after a bandwidth change
dblAvgStoNNarrow = dblAVGSignalPerBinNarrow / dblAVGBaselineNarrow;
intLastStart = intStart;
intLastStop = intStop;
}
// Wide band (66% of current bandwidth)
SMSortSignals2(dblMag, intStart, intStop, intWide, &dblAVGSignalPerBinWide, &dblAVGBaselineWide);
if (intLastStart == intStart && intLastStop == intStop)
dblAvgStoNWide = (1 - dblSlowAlpha) * dblAvgStoNWide + dblSlowAlpha * dblAVGSignalPerBinWide / dblAVGBaselineWide;
else
{
// This initializes the Wide average after a bandwidth change
dblAvgStoNWide = dblAVGSignalPerBinWide / dblAVGBaselineWide;
intLastStart = intStart;
intLastStop = intStop;
}
// Preliminary calibration...future a function of bandwidth and BusyDet.
blnBusy = (dblAvgStoNNarrow > (3 + 0.008 * BusyDet4th)) || (dblAvgStoNWide > (5 + 0.02 * BusyDet4th));
// if (BusyDet == 0)
// blnBusy = FALSE; // 0 Disables check ?? Is this the best place to do this?
// WriteDebugLog(LOGDEBUG, "Busy %d Wide %f Narrow %f", blnBusy, dblAvgStoNWide, dblAvgStoNNarrow);
return blnBusy;
}
extern int compare(const void *p1, const void *p2);
void SMSortSignals2(float * dblMag, int intStartBin, int intStopBin, int intNumBins, float * dblAVGSignalPerBin, float * dblAVGBaselinePerBin)
{
// puts the top intNumber of bins between intStartBin and intStopBin into dblAVGSignalPerBin, the rest into dblAvgBaselinePerBin
// for decent accuracy intNumBins should be < 75% of intStopBin-intStartBin)
// This version uses a native sort function which is much faster and reduces CPU loading significantly on wide bandwidths.
float dblSort[8192];
float dblSum1 = 0, dblSum2 = 0;
int numtoSort = (intStopBin - intStartBin) + 1, i;
memcpy(dblSort, &dblMag[intStartBin], numtoSort * sizeof(float));
qsort((void *)dblSort, numtoSort, sizeof(float), compare);
for (i = numtoSort - 1; i >= 0; i--)
{
if (i >= (numtoSort - intNumBins))
dblSum1 += dblSort[i];
else
dblSum2 += dblSort[i];
}
*dblAVGSignalPerBin = dblSum1 / intNumBins;
*dblAVGBaselinePerBin = dblSum2 / (intStopBin - intStartBin - intNumBins - 1);
}
void SMUpdateBusyDetector(int LR, float * Real, float *Imag)
{
// Energy based detector for each channel.
// Fed from FFT generated for waterfall display
// FFT size is 4096
float dblMag[4096];
static BOOL blnLastBusyStatus[4];
float dblMagAvg = 0;
int intTuneLineLow, intTuneLineHi, intDelta;
int i;
int i, chan;
// if (State != SearchingForLeader)
// return; // only when looking for leader
return;
if (Now - LastBusyCheck < 100)
if (Now - LastBusyCheck < 100) // ??
return;
LastBusyCheck = Now;
FourierTransform(1024, bytNewSamples, &dblReF[0], &dblImF[0], FALSE);
// We need to run busy test on the frequncies used by each modem.
for (i = 0; i < 206; i++)
for (chan = 0; chan < 4; chan++)
{
// starting at ~300 Hz to ~2700 Hz Which puts the center of the signal in the center of the window (~1500Hz)
int Low, High, Start, End;
dblMag[i] = powf(dblReF[i + 25], 2) + powf(dblImF[i + 25], 2); // first pass
dblMagAvg += dblMag[i];
#ifdef PLOTSPECTRUM
dblMagSpectrum[i] = 0.2f * dblMag[i] + 0.8f * dblMagSpectrum[i];
dblMagMax = max(dblMagMax, dblMagSpectrum[i]);
dblMagMin = min(dblMagMin, dblMagSpectrum[i]);
#endif
}
if (soundChannel[chan] != (LR + 1)) // on this side of soundcard
continue;
// LookforPacket(dblMag, dblMagAvg, 206, &dblReF[25], &dblImF[25]);
// packet_process_samples(bytNewSamples, 1200);
Low = tx_freq[chan] - txbpf[chan] / 2;
High = tx_freq[chan] + txbpf[chan] / 2;
intDelta = roundf(500 / 2) + 50 / 11.719f;
// BinSize is width of each fft bin in Hz
intTuneLineLow = max((103 - intDelta), 3);
intTuneLineHi = min((103 + intDelta), 203);
Start = (Low / BinSize); // First and last bins to process
End = (High / BinSize);
// if (ProtocolState == DISC) // ' Only process busy when in DISC state
{
// blnBusyStatus = BusyDetect3(dblMag, intTuneLineLow, intTuneLineHi);
if (blnBusyStatus && !blnLastBusyStatus)
for (i = Start; i < End; i++)
{
// QueueCommandToHost("BUSY TRUE");
// newStatus = TRUE; // report to PTC
if (!WaterfallActive && !SpectrumActive)
{
UCHAR Msg[2];
// Msg[0] = blnBusyStatus;
// SendtoGUI('B', Msg, 1);
}
dblMag[i] = powf(Real[i], 2) + powf(Imag[i], 2); // first pass
dblMagAvg += dblMag[i];
}
// stcStatus.Text = "TRUE"
// queTNCStatus.Enqueue(stcStatus)
// 'Debug.WriteLine("BUSY TRUE @ " & Format(DateTime.UtcNow, "HH:mm:ss"))
else if (blnLastBusyStatus && !blnBusyStatus)
blnBusyStatus = SMBusyDetect3(dblMag, Start, End);
if (blnBusyStatus && !blnLastBusyStatus[chan])
{
// QueueCommandToHost("BUSY FALSE");
// newStatus = TRUE; // report to PTC
if (!WaterfallActive && !SpectrumActive)
{
UCHAR Msg[2];
Msg[0] = blnBusyStatus;
// SendtoGUI('B', Msg, 1);
}
Debugprintf("Ch %d Busy True", chan);
}
else if (blnLastBusyStatus[chan] && !blnBusyStatus)
{
Debugprintf("Ch %d Busy False", chan);
}
// stcStatus.Text = "FALSE"
// queTNCStatus.Enqueue(stcStatus)
// 'Debug.WriteLine("BUSY FALSE @ " & Format(DateTime.UtcNow, "HH:mm:ss"))
blnLastBusyStatus = blnBusyStatus;
}
if (BusyDet == 0)
clrTLC = Goldenrod;
else if (blnBusyStatus)
clrTLC = Fuchsia;
// At the moment we only get here what seaching for leader,
// but if we want to plot spectrum we should call
// it always
if (WaterfallActive)
{
#ifdef PLOTWATERFALL
dblMagAvg = log10f(dblMagAvg / 5000.0f);
for (i = 0; i < 206; i++)
{
// The following provides some AGC over the waterfall to compensate for avg input level.
float y1 = (0.25f + 2.5f / dblMagAvg) * log10f(0.01 + dblMag[i]);
int objColor;
// Set the pixel color based on the intensity (log) of the spectral line
if (y1 > 6.5)
objColor = Orange; // Strongest spectral line
else if (y1 > 6)
objColor = Khaki;
else if (y1 > 5.5)
objColor = Cyan;
else if (y1 > 5)
objColor = DeepSkyBlue;
else if (y1 > 4.5)
objColor = RoyalBlue;
else if (y1 > 4)
objColor = Navy;
else
objColor = Black;
if (i == 102)
Waterfall[i] = Tomato; // 1500 Hz line (center)
else if (i == intTuneLineLow || i == intTuneLineLow - 1 || i == intTuneLineHi || i == intTuneLineHi + 1)
Waterfall[i] = clrTLC;
else
Waterfall[i] = objColor; // ' Else plot the pixel as received
}
// Send Signal level and Busy indicator to save extra packets
Waterfall[206] = CurrentLevel;
Waterfall[207] = blnBusyStatus;
doWaterfall(Waterfall);
#endif
}
else if (SpectrumActive)
{
#ifdef PLOTSPECTRUM
// This performs an auto scaling mechansim with fast attack and slow release
if (dblMagMin / dblMagMax < 0.0001) // more than 10000:1 difference Max:Min
dblMaxScale = max(dblMagMax, dblMaxScale * 0.9f);
else
dblMaxScale = max(10000 * dblMagMin, dblMagMax);
// clearDisplay();
for (i = 0; i < 206; i++)
{
// The following provides some AGC over the spectrum to compensate for avg input level.
float y1 = -0.25f * (SpectrumHeight - 1) * log10f((max(dblMagSpectrum[i], dblMaxScale / 10000)) / dblMaxScale); // ' range should be 0 to bmpSpectrumHeight -1
int objColor = Yellow;
Waterfall[i] = round(y1);
}
// Send Signal level and Busy indicator to save extra packets
Waterfall[206] = CurrentLevel;
Waterfall[207] = blnBusyStatus;
Waterfall[208] = intTuneLineLow;
Waterfall[209] = intTuneLineHi;
// SendtoGUI('X', Waterfall, 210);
#endif
blnLastBusyStatus[chan] = blnBusyStatus;
}
}
*/
extern short rawSamples[2400]; // Get Frame Type need 2400 and we may add 1200
int rawSamplesLength = 0;
@ -600,6 +601,7 @@ int ARDOPSendToCard(int Chan, int Len)
{
// Send Next Block of samples to the soundcard
short * in = &ARDOPTXBuffer[Chan][ARDOPTXPtr[Chan]]; // Enough to hold whole frame of samples
short * out = DMABuffer;
@ -628,6 +630,7 @@ int ARDOPSendToCard(int Chan, int Len)
}
}
}
DMABuffer = SendtoCard(DMABuffer, Len);
ARDOPTXPtr[Chan] += Len;
@ -669,6 +672,8 @@ void DoTX(int Chan)
Flush();
Debugprintf("TX Complete");
RadioPTT(0, 0);
Continuation[Chan] = 0;
tx_status[Chan] = TX_SILENCE;
// We should now send any ackmode acks as the channel is now free for dest to reply
@ -680,7 +685,7 @@ void DoTX(int Chan)
{
// Continue the send
if (modem_mode[Chan] == MODE_ARDOP)
if (modem_mode[Chan] == MODE_ARDOP || modem_mode[Chan] == MODE_RUH)
{
// if (SeeIfCardBusy())
// return 0;
@ -699,6 +704,8 @@ void DoTX(int Chan)
SoundIsPlaying = TRUE;
Number = 0;
Continuation[Chan] = 1;
Debugprintf("TX Continuing");
string * myTemp = Strings(&all_frame_buf[Chan], 0); // get message
@ -728,12 +735,17 @@ void DoTX(int Chan)
put_frame(Chan, tx_data, "", TRUE, FALSE);
PktARDOPEncode(tx_data->Data, tx_data->Length - 2, Chan);
if (modem_mode[Chan] == MODE_ARDOP)
PktARDOPEncode(tx_data->Data, tx_data->Length - 2, Chan);
else
RUHEncode(tx_data->Data, tx_data->Length - 2, Chan);
freeString(tx_data);
// Samples are now in DMABuffer = Send first block
DMABuffer = SoundInit();
ARDOPSendToCard(Chan, SendSize);
tx_status[Chan] = TX_FRAME;
return;
@ -741,6 +753,8 @@ void DoTX(int Chan)
Debugprintf("TX Complete");
RadioPTT(0, 0);
Continuation[Chan] = 0;
tx_status[Chan] = TX_SILENCE;
// We should now send any ackmode acks as the channel is now free for dest to reply
@ -845,6 +859,50 @@ void DoTX(int Chan)
ARDOPSendToCard(Chan, SendSize);
tx_status[Chan] = TX_FRAME;
}
else if (modem_mode[Chan] == MODE_RUH)
{
// Same as for ARDOP. Generate a whole frame of samples
// then send them out a bit at a time to avoid stopping here
// We allow two RUH modems
string * myTemp = Strings(&all_frame_buf[Chan], 0); // get message
string * tx_data;
if ((myTemp->Data[0] & 0x0f) == 12) // ACKMODE
{
// Save copy then copy data up 3 bytes
Add(&KISS_acked[Chan], duplicateString(myTemp));
mydelete(myTemp, 0, 3);
myTemp->Length -= sizeof(void *);
}
else
{
// Just remove control
mydelete(myTemp, 0, 1);
}
tx_data = duplicateString(myTemp); // so can free original below
Delete(&all_frame_buf[Chan], 0); // This will invalidate temp
AGW_AX25_frame_analiz(Chan, FALSE, tx_data);
put_frame(Chan, tx_data, "", TRUE, FALSE);
RUHEncode(tx_data->Data, tx_data->Length - 2, Chan);
freeString(tx_data);
// Samples are now in DMABuffer = Send first block
ARDOPSendToCard(Chan, SendSize);
tx_status[Chan] = TX_FRAME;
}
else
modulator(Chan, tx_bufsize);
@ -852,16 +910,6 @@ void DoTX(int Chan)
return;
}
void stoptx(int snd_ch)
{
Flush();
Debugprintf("TX Complete");
RadioPTT(snd_ch, 0);
tx_status[snd_ch] = TX_SILENCE;
snd_status[snd_ch] = SND_IDLE;
}
void RX2TX(int snd_ch)
{
if (snd_status[snd_ch] == SND_IDLE)
@ -1146,6 +1194,8 @@ void CM108_set_ptt(int PTTState)
void RadioPTT(int snd_ch, BOOL PTTState)
{
snd_status[snd_ch] = PTTState; // SND_IDLE = 0 SND_TX = 1
#ifdef __ARM_ARCH
if (useGPIO)
{

389
SMMain.c
View File

@ -27,6 +27,7 @@ along with QtSoundModem. If not, see http://www.gnu.org/licenses
#include "hidapi.h"
#include <fcntl.h>
#include <errno.h>
#include <stdint.h>
BOOL KISSServ;
int KISSPort;
@ -40,6 +41,9 @@ int SoundIsPlaying = 0;
int UDPSoundIsPlaying = 0;
int Capturing = 0;
int txmin = 0;
int txmax = 0;
extern unsigned short buffer[2][1200];
extern int SoundMode;
extern int needRSID[4];
@ -176,6 +180,18 @@ void SampleSink(int LR, short Sample)
DMABuffer[1 + 2 * Number] = 0;
}
}
if (using48000)
{
// Need to upsample to 48K. Try just duplicating sample
uint32_t * ptr = &DMABuffer[2 * Number];
*(&ptr[1]) = *(ptr);
*(&ptr[2]) = *(ptr);
*(&ptr[3]) = *(ptr);
Number += 3;
}
Number++;
#endif
if (Number >= SendSize)
@ -332,194 +348,171 @@ extern UCHAR * pixelPointer;
#endif
extern int blnBusyStatus;
BusyDet = 0;
BusyDet = 5;
#define PLOTWATERFALL
int WaterfallActive = 1;
int SpectrumActive;
/*
float BinSize;
void UpdateBusyDetector(short * bytNewSamples)
extern int intLastStart;
extern int intLastStop;
void SMSortSignals2(float * dblMag, int intStartBin, int intStopBin, int intNumBins, float * dblAVGSignalPerBin, float * dblAVGBaselinePerBin);
BOOL SMBusyDetect3(float * dblMag, int intStart, int intStop) // this only called while searching for leader ...once leader detected, no longer called.
{
float dblReF[1024];
float dblImF[1024];
float dblMag[206];
#ifdef PLOTSPECTRUM
float dblMagMax = 0.0000000001f;
float dblMagMin = 10000000000.0f;
#endif
UCHAR Waterfall[256]; // Colour index values to send to GUI
int clrTLC = Lime; // Default Bandwidth lines on waterfall
// First sort signals and look at highes signals:baseline ratio..
static BOOL blnLastBusyStatus;
float dblAVGSignalPerBinNarrow, dblAVGSignalPerBinWide, dblAVGBaselineNarrow, dblAVGBaselineWide;
float dblSlowAlpha = 0.2f;
float dblAvgStoNNarrow = 0, dblAvgStoNWide = 0;
int intNarrow = 8; // 8 x 11.72 Hz about 94 z
int intWide = ((intStop - intStart) * 2) / 3; //* 0.66);
int blnBusy = FALSE;
int BusyDet4th = BusyDet * BusyDet * BusyDet * BusyDet;
// First sort signals and look at highest signals:baseline ratio..
// First narrow band (~94Hz)
SMSortSignals2(dblMag, intStart, intStop, intNarrow, &dblAVGSignalPerBinNarrow, &dblAVGBaselineNarrow);
if (intLastStart == intStart && intLastStop == intStop)
dblAvgStoNNarrow = (1 - dblSlowAlpha) * dblAvgStoNNarrow + dblSlowAlpha * dblAVGSignalPerBinNarrow / dblAVGBaselineNarrow;
else
{
// This initializes the Narrow average after a bandwidth change
dblAvgStoNNarrow = dblAVGSignalPerBinNarrow / dblAVGBaselineNarrow;
intLastStart = intStart;
intLastStop = intStop;
}
// Wide band (66% of current bandwidth)
SMSortSignals2(dblMag, intStart, intStop, intWide, &dblAVGSignalPerBinWide, &dblAVGBaselineWide);
if (intLastStart == intStart && intLastStop == intStop)
dblAvgStoNWide = (1 - dblSlowAlpha) * dblAvgStoNWide + dblSlowAlpha * dblAVGSignalPerBinWide / dblAVGBaselineWide;
else
{
// This initializes the Wide average after a bandwidth change
dblAvgStoNWide = dblAVGSignalPerBinWide / dblAVGBaselineWide;
intLastStart = intStart;
intLastStop = intStop;
}
// Preliminary calibration...future a function of bandwidth and BusyDet.
blnBusy = (dblAvgStoNNarrow > (3 + 0.008 * BusyDet4th)) || (dblAvgStoNWide > (5 + 0.02 * BusyDet4th));
// if (BusyDet == 0)
// blnBusy = FALSE; // 0 Disables check ?? Is this the best place to do this?
// WriteDebugLog(LOGDEBUG, "Busy %d Wide %f Narrow %f", blnBusy, dblAvgStoNWide, dblAvgStoNNarrow);
return blnBusy;
}
extern int compare(const void *p1, const void *p2);
void SMSortSignals2(float * dblMag, int intStartBin, int intStopBin, int intNumBins, float * dblAVGSignalPerBin, float * dblAVGBaselinePerBin)
{
// puts the top intNumber of bins between intStartBin and intStopBin into dblAVGSignalPerBin, the rest into dblAvgBaselinePerBin
// for decent accuracy intNumBins should be < 75% of intStopBin-intStartBin)
// This version uses a native sort function which is much faster and reduces CPU loading significantly on wide bandwidths.
float dblSort[8192];
float dblSum1 = 0, dblSum2 = 0;
int numtoSort = (intStopBin - intStartBin) + 1, i;
memcpy(dblSort, &dblMag[intStartBin], numtoSort * sizeof(float));
qsort((void *)dblSort, numtoSort, sizeof(float), compare);
for (i = numtoSort - 1; i >= 0; i--)
{
if (i >= (numtoSort - intNumBins))
dblSum1 += dblSort[i];
else
dblSum2 += dblSort[i];
}
*dblAVGSignalPerBin = dblSum1 / intNumBins;
*dblAVGBaselinePerBin = dblSum2 / (intStopBin - intStartBin - intNumBins - 1);
}
void SMUpdateBusyDetector(int LR, float * Real, float *Imag)
{
// Energy based detector for each channel.
// Fed from FFT generated for waterfall display
// FFT size is 4096
float dblMag[4096];
static BOOL blnLastBusyStatus[4];
float dblMagAvg = 0;
int intTuneLineLow, intTuneLineHi, intDelta;
int i;
int i, chan;
// if (State != SearchingForLeader)
// return; // only when looking for leader
return;
if (Now - LastBusyCheck < 100)
if (Now - LastBusyCheck < 100) // ??
return;
LastBusyCheck = Now;
FourierTransform(1024, bytNewSamples, &dblReF[0], &dblImF[0], FALSE);
// We need to run busy test on the frequncies used by each modem.
for (i = 0; i < 206; i++)
for (chan = 0; chan < 4; chan++)
{
// starting at ~300 Hz to ~2700 Hz Which puts the center of the signal in the center of the window (~1500Hz)
int Low, High, Start, End;
dblMag[i] = powf(dblReF[i + 25], 2) + powf(dblImF[i + 25], 2); // first pass
dblMagAvg += dblMag[i];
#ifdef PLOTSPECTRUM
dblMagSpectrum[i] = 0.2f * dblMag[i] + 0.8f * dblMagSpectrum[i];
dblMagMax = max(dblMagMax, dblMagSpectrum[i]);
dblMagMin = min(dblMagMin, dblMagSpectrum[i]);
#endif
}
if (soundChannel[chan] != (LR + 1)) // on this side of soundcard
continue;
// LookforPacket(dblMag, dblMagAvg, 206, &dblReF[25], &dblImF[25]);
// packet_process_samples(bytNewSamples, 1200);
Low = tx_freq[chan] - txbpf[chan] / 2;
High = tx_freq[chan] + txbpf[chan] / 2;
intDelta = roundf(500 / 2) + 50 / 11.719f;
// BinSize is width of each fft bin in Hz
intTuneLineLow = max((103 - intDelta), 3);
intTuneLineHi = min((103 + intDelta), 203);
Start = (Low / BinSize); // First and last bins to process
End = (High / BinSize);
// if (ProtocolState == DISC) // ' Only process busy when in DISC state
{
// blnBusyStatus = BusyDetect3(dblMag, intTuneLineLow, intTuneLineHi);
if (blnBusyStatus && !blnLastBusyStatus)
for (i = Start; i < End; i++)
{
// QueueCommandToHost("BUSY TRUE");
// newStatus = TRUE; // report to PTC
if (!WaterfallActive && !SpectrumActive)
{
UCHAR Msg[2];
// Msg[0] = blnBusyStatus;
// SendtoGUI('B', Msg, 1);
}
dblMag[i] = powf(Real[i], 2) + powf(Imag[i], 2); // first pass
dblMagAvg += dblMag[i];
}
// stcStatus.Text = "TRUE"
// queTNCStatus.Enqueue(stcStatus)
// 'Debug.WriteLine("BUSY TRUE @ " & Format(DateTime.UtcNow, "HH:mm:ss"))
else if (blnLastBusyStatus && !blnBusyStatus)
blnBusyStatus = SMBusyDetect3(dblMag, Start, End);
if (blnBusyStatus && !blnLastBusyStatus[chan])
{
// QueueCommandToHost("BUSY FALSE");
// newStatus = TRUE; // report to PTC
if (!WaterfallActive && !SpectrumActive)
{
UCHAR Msg[2];
Msg[0] = blnBusyStatus;
// SendtoGUI('B', Msg, 1);
}
Debugprintf("Ch %d Busy True", chan);
}
else if (blnLastBusyStatus[chan] && !blnBusyStatus)
{
Debugprintf("Ch %d Busy False", chan);
}
// stcStatus.Text = "FALSE"
// queTNCStatus.Enqueue(stcStatus)
// 'Debug.WriteLine("BUSY FALSE @ " & Format(DateTime.UtcNow, "HH:mm:ss"))
blnLastBusyStatus = blnBusyStatus;
}
if (BusyDet == 0)
clrTLC = Goldenrod;
else if (blnBusyStatus)
clrTLC = Fuchsia;
// At the moment we only get here what seaching for leader,
// but if we want to plot spectrum we should call
// it always
if (WaterfallActive)
{
#ifdef PLOTWATERFALL
dblMagAvg = log10f(dblMagAvg / 5000.0f);
for (i = 0; i < 206; i++)
{
// The following provides some AGC over the waterfall to compensate for avg input level.
float y1 = (0.25f + 2.5f / dblMagAvg) * log10f(0.01 + dblMag[i]);
int objColor;
// Set the pixel color based on the intensity (log) of the spectral line
if (y1 > 6.5)
objColor = Orange; // Strongest spectral line
else if (y1 > 6)
objColor = Khaki;
else if (y1 > 5.5)
objColor = Cyan;
else if (y1 > 5)
objColor = DeepSkyBlue;
else if (y1 > 4.5)
objColor = RoyalBlue;
else if (y1 > 4)
objColor = Navy;
else
objColor = Black;
if (i == 102)
Waterfall[i] = Tomato; // 1500 Hz line (center)
else if (i == intTuneLineLow || i == intTuneLineLow - 1 || i == intTuneLineHi || i == intTuneLineHi + 1)
Waterfall[i] = clrTLC;
else
Waterfall[i] = objColor; // ' Else plot the pixel as received
}
// Send Signal level and Busy indicator to save extra packets
Waterfall[206] = CurrentLevel;
Waterfall[207] = blnBusyStatus;
doWaterfall(Waterfall);
#endif
}
else if (SpectrumActive)
{
#ifdef PLOTSPECTRUM
// This performs an auto scaling mechansim with fast attack and slow release
if (dblMagMin / dblMagMax < 0.0001) // more than 10000:1 difference Max:Min
dblMaxScale = max(dblMagMax, dblMaxScale * 0.9f);
else
dblMaxScale = max(10000 * dblMagMin, dblMagMax);
// clearDisplay();
for (i = 0; i < 206; i++)
{
// The following provides some AGC over the spectrum to compensate for avg input level.
float y1 = -0.25f * (SpectrumHeight - 1) * log10f((max(dblMagSpectrum[i], dblMaxScale / 10000)) / dblMaxScale); // ' range should be 0 to bmpSpectrumHeight -1
int objColor = Yellow;
Waterfall[i] = round(y1);
}
// Send Signal level and Busy indicator to save extra packets
Waterfall[206] = CurrentLevel;
Waterfall[207] = blnBusyStatus;
Waterfall[208] = intTuneLineLow;
Waterfall[209] = intTuneLineHi;
// SendtoGUI('X', Waterfall, 210);
#endif
blnLastBusyStatus[chan] = blnBusyStatus;
}
}
*/
extern short rawSamples[2400]; // Get Frame Type need 2400 and we may add 1200
int rawSamplesLength = 0;
@ -554,9 +547,12 @@ int Freq_Change(int Chan, int Freq)
{
int low, high;
low = round(rx_shift[1] / 2 + RCVR[Chan] * rcvr_offset[Chan] + 1);
low = round(rx_shift[Chan] / 2 + (RCVR[Chan] * rcvr_offset[Chan]));
high = round(RX_Samplerate / 2 - (rx_shift[Chan] / 2 + RCVR[Chan] * rcvr_offset[Chan]));
if (Freq < 300)
return rx_freq[Chan]; // Dont allow change
if (Freq < low)
return rx_freq[Chan]; // Dont allow change
@ -611,6 +607,7 @@ int ARDOPSendToCard(int Chan, int Len)
{
// Send Next Block of samples to the soundcard
short * in = &ARDOPTXBuffer[Chan][ARDOPTXPtr[Chan]]; // Enough to hold whole frame of samples
short * out = DMABuffer;
@ -639,6 +636,7 @@ int ARDOPSendToCard(int Chan, int Len)
}
}
}
DMABuffer = SendtoCard(DMABuffer, Len);
ARDOPTXPtr[Chan] += Len;
@ -679,7 +677,9 @@ void DoTX(int Chan)
{
Flush();
Debugprintf("TX Complete");
RadioPTT(0, 0);
RadioPTT(Chan, 0);
Continuation[Chan] = 0;
tx_status[Chan] = TX_SILENCE;
// We should now send any ackmode acks as the channel is now free for dest to reply
@ -691,7 +691,7 @@ void DoTX(int Chan)
{
// Continue the send
if (modem_mode[Chan] == MODE_ARDOP)
if (modem_mode[Chan] == MODE_ARDOP || modem_mode[Chan] == MODE_RUH)
{
// if (SeeIfCardBusy())
// return 0;
@ -710,6 +710,8 @@ void DoTX(int Chan)
SoundIsPlaying = TRUE;
Number = 0;
Continuation[Chan] = 1;
Debugprintf("TX Continuing");
string * myTemp = Strings(&all_frame_buf[Chan], 0); // get message
@ -739,19 +741,26 @@ void DoTX(int Chan)
put_frame(Chan, tx_data, "", TRUE, FALSE);
PktARDOPEncode(tx_data->Data, tx_data->Length - 2, Chan);
if (modem_mode[Chan] == MODE_ARDOP)
PktARDOPEncode(tx_data->Data, tx_data->Length - 2, Chan);
else
RUHEncode(tx_data->Data, tx_data->Length - 2, Chan);
freeString(tx_data);
// Samples are now in DMABuffer = Send first block
DMABuffer = SoundInit();
ARDOPSendToCard(Chan, SendSize);
tx_status[Chan] = TX_FRAME;
return;
}
Debugprintf("TX Complete");
RadioPTT(0, 0);
RadioPTT(Chan, 0);
Continuation[Chan] = 0;
tx_status[Chan] = TX_SILENCE;
// We should now send any ackmode acks as the channel is now free for dest to reply
@ -856,6 +865,50 @@ void DoTX(int Chan)
ARDOPSendToCard(Chan, SendSize);
tx_status[Chan] = TX_FRAME;
}
else if (modem_mode[Chan] == MODE_RUH)
{
// Same as for ARDOP. Generate a whole frame of samples
// then send them out a bit at a time to avoid stopping here
// We allow two RUH modems
string * myTemp = Strings(&all_frame_buf[Chan], 0); // get message
string * tx_data;
if ((myTemp->Data[0] & 0x0f) == 12) // ACKMODE
{
// Save copy then copy data up 3 bytes
Add(&KISS_acked[Chan], duplicateString(myTemp));
mydelete(myTemp, 0, 3);
myTemp->Length -= sizeof(void *);
}
else
{
// Just remove control
mydelete(myTemp, 0, 1);
}
tx_data = duplicateString(myTemp); // so can free original below
Delete(&all_frame_buf[Chan], 0); // This will invalidate temp
AGW_AX25_frame_analiz(Chan, FALSE, tx_data);
put_frame(Chan, tx_data, "", TRUE, FALSE);
RUHEncode(tx_data->Data, tx_data->Length - 2, Chan);
freeString(tx_data);
// Samples are now in DMABuffer = Send first block
ARDOPSendToCard(Chan, SendSize);
tx_status[Chan] = TX_FRAME;
}
else
modulator(Chan, tx_bufsize);
@ -863,16 +916,6 @@ void DoTX(int Chan)
return;
}
void stoptx(int snd_ch)
{
Flush();
Debugprintf("TX Complete");
RadioPTT(snd_ch, 0);
tx_status[snd_ch] = TX_SILENCE;
snd_status[snd_ch] = SND_IDLE;
}
void RX2TX(int snd_ch)
{
if (snd_status[snd_ch] == SND_IDLE)
@ -1153,10 +1196,24 @@ void CM108_set_ptt(int PTTState)
}
float amplitudes[4] = { 32767, 32767, 32767, 32767 };
extern float amplitude;
void RadioPTT(int snd_ch, BOOL PTTState)
{
snd_status[snd_ch] = PTTState; // SND_IDLE = 0 SND_TX = 1
if (PTTState)
{
txmax = txmin = 0;
amplitude = amplitudes[snd_ch];
}
else
{
Debugprintf("Output peaks = %d, %d, amp %f", txmin, txmax, amplitude);
amplitudes[snd_ch] = amplitude;
}
#ifdef __ARM_ARCH
if (useGPIO)
{

View File

@ -1,234 +0,0 @@
/*
Copyright (C) 2019-2020 Andrei Kopanchuk UZ7HO
This file is part of QtSoundModem
QtSoundModem is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
QtSoundModem is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with QtSoundModem. If not, see http://www.gnu.org/licenses
*/
// UZ7HO Soundmodem Port by John Wiseman G8BPQ
#include "UZ7HOStuff.h"
#include <QPainter>
// This displays a graph of the filter characteristics
#define c3 -1.5000000000000E+00f // cos(2*pi / 3) - 1;
#define c32 8.6602540378444E-01f // sin(2*pi / 3);
#define u5 1.2566370614359E+00f // 2*pi / 5;
#define c51 -1.2500000000000E+00f // (cos(u5) + cos(2*u5))/2 - 1;
#define c52 5.5901699437495E-01f // (cos(u5) - cos(2*u5))/2;
#define c53 -9.5105651629515E-0f //- sin(u5);
#define c54 -1.5388417685876E+00f //-(sin(u5) + sin(2*u5));
#define c55 3.6327126400268E-01f // (sin(u5) - sin(2*u5));
#define c8 = 7.0710678118655E-01f // 1 / sqrt(2);
float pnt_graph_buf[4096];
float graph_buf[4096];
float prev_graph_buf[4096];
float src_graph_buf[4096];
float graph_f;
float RealOut[4096];
short RealIn[4096];
float ImagOut[4096];
#define Image1Width 642
#define Image1Height 312
void filter_grid(QPainter * Painter)
{
int col = 20;
int row = 8;
int top_margin = 10;
int bottom_margin = 20;
int left_margin = 30;
int right_margin = 10;
int x, y;
float kx, ky;
QPen pen; // creates a default pen
pen.setStyle(Qt::DotLine);
Painter->setPen(pen);
ky = 35;
kx = (Image1Width - left_margin - right_margin - 2) / col;
for (y = 0; y < row; y++)
{
Painter->drawLine(
left_margin + 1,
top_margin + round(ky*y) + 1,
Image1Width - right_margin - 1,
top_margin + round(ky*y) + 1);
}
for (x = 0; x < col; x++)
{
Painter->drawLine(
left_margin + round(kx*x) + 1,
top_margin + 1,
left_margin + round(kx*x) + 1,
Image1Height - bottom_margin - 1);
}
pen.setStyle(Qt::SolidLine);
Painter->setPen(pen);
for (y = 0; y < row / 2; y++)
{
char Textxx[20];
sprintf(Textxx, "%d", y * -20);
Painter->drawLine(
left_margin + 1,
top_margin + round(ky*y * 2) + 1,
Image1Width - right_margin - 1,
top_margin + round(ky*y * 2) + 1);
Painter->drawText(
1,
top_margin + round(ky*y * 2) + 1,
100, 20, 0, Textxx);
}
for (x = 0; x <= col / 5; x++)
{
char Textxx[20];
sprintf(Textxx, "%d", x * 1000);
Painter->drawLine(
left_margin + round(kx*x * 5) + 1,
top_margin + 1,
left_margin + round(kx*x * 5) + 1,
Image1Height - bottom_margin - 1);
Painter->drawText(
top_margin + round(kx*x * 5) + 8,
Image1Height - 15,
100, 20, 0, Textxx);
}
}
extern "C" void FourierTransform(int NumSamples, short * RealIn, float * RealOut, float * ImagOut, int InverseTransform);
void make_graph(float * buf, int buflen, QPainter * Painter)
{
int top_margin = 10;
int bottom_margin = 20;
int left_margin = 30;
int i, y1, y2;
float pixel;
if (buflen == 0)
return;
for (i = 0; i <= buflen - 2; i++)
{
y1 = 1 - round(buf[i]);
if (y1 > Image1Height - top_margin - bottom_margin - 2)
y1 = Image1Height - top_margin - bottom_margin - 2;
y2 = 1 - round(buf[i + 1]);
if (y2 > Image1Height - top_margin - bottom_margin - 2)
y2 = Image1Height - top_margin - bottom_margin - 2;
// 150 pixels for 1000 Hz
// i is the bin number, but bin is not 10 Hz but 12000 /1024
// so freq = i * 12000 / 1024;
// and pixel is freq * 300 /1000
pixel = i * 12000.0f / 1024.0f;
pixel = pixel * 150.0f /1000.0f;
Painter->drawLine(
left_margin + pixel,
top_margin + y1,
left_margin + pixel + 1,
top_margin + y2);
}
}
void make_graph_buf(float * buf, short tap, QPainter * Painter)
{
int FFTSize;
float max;
int i, k;
FFTSize = 1024; // 12000 / 10; // 10hz on sample;
for (i = 0; i < tap; i++)
prev_graph_buf[i]= 0;
for (i = 0; i < FFTSize; i++)
src_graph_buf[i] = 0;
src_graph_buf[0]= 1;
FIR_filter(src_graph_buf, FFTSize, tap, buf, graph_buf, prev_graph_buf);
for (k = 0; k < FFTSize; k++)
RealIn[k] = graph_buf[k] * 32768;
FourierTransform(FFTSize, RealIn, RealOut, ImagOut, 0);
for (k = 0; k < (FFTSize / 2) - 1; k++)
pnt_graph_buf[k] = powf(RealOut[k], 2) + powf(ImagOut[k], 2);
max = 0;
for (i = 0; i < (FFTSize / 2) - 1; i++)
{
if (pnt_graph_buf[i] > max)
max = pnt_graph_buf[i];
}
if (max > 0)
{
for (i = 0; i < (FFTSize / 2) - 1; i++)
pnt_graph_buf[i] = pnt_graph_buf[i] / max;
}
for (i = 0; i < (FFTSize / 2) - 1; i++)
{
if (pnt_graph_buf[i] > 0)
pnt_graph_buf[i] = 70 * log10(pnt_graph_buf[i]);
else
pnt_graph_buf[i] = 0;
}
filter_grid(Painter);
Painter->setPen(Qt::blue);
make_graph(pnt_graph_buf, 400, Painter);
}

View File

@ -322,7 +322,7 @@ VOID Track1Car4FSK(short * intSamples, int * intPtr, int intSampPerSymbol, float
VOID Decode1CarPSK(int Carrier, BOOL OFDM);
int EnvelopeCorrelator();
int EnvelopeCorrelatorNew();
BOOL DecodeFrame(int intFrameType, UCHAR * bytData);
BOOL DecodeFrame(int chan, int intFrameType, UCHAR * bytData);
void Update4FSKConstellation(int * intToneMags, int * intQuality);
void Update16FSKConstellation(int * intToneMags, int * intQuality);
@ -864,7 +864,7 @@ float dblFreqBin[MAXCAR];
BOOL CheckFrameTypeParity(int intTonePtr, int * intToneMags);
void ARDOPProcessNewSamples(short * Samples, int nSamples)
void ARDOPProcessNewSamples(int chan, short * Samples, int nSamples)
{
BOOL blnFrameDecodedOK = FALSE;
@ -1264,7 +1264,7 @@ else if (intPhaseError > 2)
// This mechanism is to skip actual decoding and reply/change state...no need to decode
blnFrameDecodedOK = DecodeFrame(intFrameType, bytData);
blnFrameDecodedOK = DecodeFrame(chan, intFrameType, bytData);
ProcessFrame:
@ -3047,7 +3047,7 @@ void DemodulateFrame(int intFrameType)
int intSNdB = 0, intQuality = 0;
BOOL DecodeFrame(int xxx, UCHAR * bytData)
BOOL DecodeFrame(int chan, int xxx, UCHAR * bytData)
{
BOOL blnDecodeOK = FALSE;
char strCallerCallsign[10] = "";
@ -3176,7 +3176,7 @@ BOOL DecodeFrame(int xxx, UCHAR * bytData)
// Data in bytData len in frameLen
ProcessPktFrame(0, bytData, frameLen);
ProcessPktFrame(chan, bytData, frameLen);
// else
// L2Routine(bytData, frameLen, intLastRcvdFrameQuality, totalRSErrors, intNumCar, pktRXMode);

1110
UZ7HOStuff-DESKTOP-MHE5LO8.h Normal file

File diff suppressed because it is too large Load Diff

View File

@ -1,9 +1,11 @@
#pragma once
//
// My port of UZ7HO's Soundmodem
//
#define VersionString "0.0.0.66"
#define VersionBytes {0, 0, 0, 66}
#define VersionString "0.0.0.67-2"
#define VersionBytes {0, 0, 0, 67}
// Added FX25. 4x100 FEC and V27 not Working and disabled
@ -146,7 +148,17 @@
// 0.66 Allow configuration of waterfall span June 23
// Add Exclude
// .67 Add extra modes 8PSK 900 RUH 4800 RUH 9600 QPSK 600 QPSK 2400 August 23
// Fix loading txtail
// Fix digipeating
// Add MaxFrame to Modem Dialog
// Fix 64 bit compatibility in ackmode
// Add option to change CWID tones
// Fix minimum centre freq validation
// .68 Monitor XID and TEST
// Flag active interface in title bar
// Improve header validation in il2p
@ -402,7 +414,6 @@ typedef struct TDetector_t
Byte rx_decoded;
Byte errors;
} TDetector;
@ -516,6 +527,10 @@ typedef struct TAX25Port_t
#define U_UA 99
#define U_FRMR 135
#define U_UI 3
#define U_XID 0xAF
#define U_TEST 0xE3
// PID flags
#define PID_X25 0x01 // 00000001-CCIT X25 PLP
#define PID_SEGMENT 0x08 // 00001000-Segmentation fragment
@ -528,10 +543,11 @@ typedef struct TAX25Port_t
#define PID_NET_ROM 0xCF // 11001111-NET/ROM
// Sound interface buffer size
// Sound interface buffer sizes
extern int ReceiveSize;
extern int SendSize;
#define SendSize 1024 // 100 mS for now
#define ReceiveSize 512 // try 100 mS for now
#define NumberofinBuffers 4
#define Now getTicks()
@ -543,8 +559,7 @@ typedef struct TAX25Port_t
#define MODEM_CAPTION 'SoundModem by UZ7HO'
#define MODEM_VERSION '1.06'
#define SND_IDLE 0
#define SND_RX 1
#define SND_TX 2
#define SND_TX 1
#define BUF_EMPTY 0
#define BUF_FULL 1
#define DISP_MONO FALSE
@ -564,7 +579,7 @@ typedef struct TAX25Port_t
#define DEBUG_SOUND 8
#define IS_LAST TRUE
#define IS_NOT_LAST FALSE
#define modes_count 16
#define modes_count 20
#define SPEED_300 0
#define SPEED_1200 1
#define SPEED_600 2
@ -579,8 +594,12 @@ typedef struct TAX25Port_t
#define SPEED_MP400 11
#define SPEED_DW2400 12
#define SPEED_8P4800 13
#define SPEED_AE2400 14
#define SPEED_2400V26B 14
#define SPEED_ARDOP 15
#define SPEED_Q300 16
#define SPEED_8PSK300 17
#define SPEED_RUH48 18
#define SPEED_RUH96 19
#define MODE_FSK 0
#define MODE_BPSK 1
@ -589,11 +608,11 @@ typedef struct TAX25Port_t
#define MODE_8PSK 4
#define MODE_PI4QPSK 5
#define MODE_ARDOP 6
#define MODE_RUH 7
#define QPSK_SM 0
#define QPSK_V26 1
#define MODEM_8P4800_BPF 3200
#define MODEM_8P4800_TXBPF 3400
#define MODEM_8P4800_LPF 1000
@ -720,7 +739,7 @@ typedef struct TAX25Port_t
#define ARDOPBufferSize 12000 * 100
extern short ARDOPTXBuffer[4][12000 * 100]; // Enough to hold whole frame of samples
extern short ARDOPTXBuffer[4][ARDOPBufferSize]; // Enough to hold whole frame of samples
extern int ARDOPTXLen[4]; // Length of frame
extern int ARDOPTXPtr[4]; // Tx Pointer
@ -776,6 +795,7 @@ extern UCHAR tx_status[5];
extern float tx_freq[5];
extern float tx_shift[5];
extern unsigned short tx_baudrate[5];
extern unsigned short tx_bitrate[5];
extern unsigned short bpf[5];
extern unsigned short lpf[5];
@ -927,6 +947,7 @@ extern BOOL Secondwaterfall;
extern int dcd_threshold;
extern int rxOffset;
extern int chanOffset[4];
extern int Continuation[4]; // Sending 2nd or more packet of burst
extern boolean busy;
extern boolean dcd[5];
@ -976,6 +997,10 @@ extern int tx_fx25_mode[4];
extern int SatelliteMode;
extern int using48000; // Set if using 48K sample rate (ie RUH Modem active)
extern int txmin, txmax;
// Function prototypes
void KISS_send_ack(UCHAR port, string * data);
@ -1014,7 +1039,7 @@ double pila(double x);
void AGW_Raw_monitor(int snd_ch, string * data);
// Dephi emulation functions
// Delphi emulation functions
string * Strings(TStringList * Q, int Index);
void Clear(TStringList * Q);
@ -1053,6 +1078,46 @@ int my_indexof(TStringList * l, string * s);
boolean compareStrings(string * a, string * b);
int Add(TStringList * Q, string * Entry);
#define IL2P_SYNC_WORD_SIZE 3
#define IL2P_HEADER_SIZE 13 // Does not include 2 parity.
#define IL2P_HEADER_PARITY 2
#define IL2P_MAX_PAYLOAD_SIZE 1023
#define IL2P_MAX_PAYLOAD_BLOCKS 5
#define IL2P_MAX_PARITY_SYMBOLS 16 // For payload only.
#define IL2P_MAX_ENCODED_PAYLOAD_SIZE (IL2P_MAX_PAYLOAD_SIZE + IL2P_MAX_PAYLOAD_BLOCKS * IL2P_MAX_PARITY_SYMBOLS)
struct il2p_context_s {
enum { IL2P_SEARCHING = 0, IL2P_HEADER, IL2P_PAYLOAD, IL2P_DECODE } state;
unsigned int acc; // Accumulate most recent 24 bits for sync word matching.
// Lower 8 bits are also used for accumulating bytes for
// the header and payload.
int bc; // Bit counter so we know when a complete byte has been accumulated.
int polarity; // 1 if opposite of expected polarity.
unsigned char shdr[IL2P_HEADER_SIZE + IL2P_HEADER_PARITY];
// Scrambled header as received over the radio. Includes parity.
int hc; // Number if bytes placed in above.
unsigned char uhdr[IL2P_HEADER_SIZE]; // Header after FEC and unscrambling.
int eplen; // Encoded payload length. This is not the nuumber from
// from the header but rather the number of encoded bytes to gather.
unsigned char spayload[IL2P_MAX_ENCODED_PAYLOAD_SIZE];
// Scrambled and encoded payload as received over the radio.
int pc; // Number of bytes placed in above.
int corrected; // Number of symbols corrected by RS FEC.
};
#ifdef __cplusplus
}
#endif

View File

@ -54,12 +54,19 @@ void GetSoundDevices();
// Currently use 1200 samples for TX but 480 for RX to reduce latency
short buffer[2][SendSize * 2]; // Two Transfer/DMA buffers of 0.1 Sec (x2 for Stereo)
short inbuffer[5][ReceiveSize * 2]; // Input Transfer/ buffers of 0.1 Sec (x2 for Stereo)
#define MaxReceiveSize 2048 // Enough for 9600
#define MaxSendSize 4096
short buffer[2][MaxSendSize * 2]; // Two Transfer/DMA buffers of 0.1 Sec (x2 for Stereo)
short inbuffer[5][MaxReceiveSize * 2]; // Input Transfer/ buffers of 0.1 Sec (x2 for Stereo)
extern short * DMABuffer;
extern int Number;
int ReceiveSize = 512;
int SendSize = 1024;
int using48000 = 0;
int SoundMode = 0;
int stdinMode = 0;
@ -248,7 +255,7 @@ short * SendtoCard(unsigned short * buf, int n)
while (!(header[!Index].dwFlags & WHDR_DONE))
{
txSleep(10); // Run buckground while waiting
txSleep(5); // Run buckground while waiting
}
waveOutUnprepareHeader(hWaveOut, &header[!Index], sizeof(WAVEHDR));
@ -404,6 +411,21 @@ int InitSound(BOOL Report)
}
}
if (using48000)
{
wfx.nSamplesPerSec = 48000;
wfx.nAvgBytesPerSec = 48000 * 4;
ReceiveSize = 2048;
SendSize = 4096; // 100 mS for now
}
else
{
wfx.nSamplesPerSec = 12000;
wfx.nAvgBytesPerSec = 12000 * 4;
ReceiveSize = 512;
SendSize = 1024;
}
ret = waveOutOpen(&hWaveOut, PlayBackIndex, &wfx, 0, 0, CALLBACK_NULL); //WAVE_MAPPER
if (ret)
@ -507,7 +529,7 @@ void PollReceivedSamples()
return;
}
if (inheader[inIndex].dwFlags & WHDR_DONE)
while (inheader[inIndex].dwFlags & WHDR_DONE)
{
short * ptr = &inbuffer[inIndex][0];
int i;
@ -656,6 +678,7 @@ VOID WriteSamples(short * buffer, int len)
short * SoundInit()
{
Index = 0;
inIndex = 0;
return &buffer[0][0];

45
agwlib.h Normal file
View File

@ -0,0 +1,45 @@
#ifndef AGWLIB_H
#define AGWLIB_H 1
// Call at beginning to start it up.
int agwlib_init (char *host, char *port, int (*init_func)(void));
// Send commands to TNC.
int agwlib_X_register_callsign (int chan, char *call_from);
int agwlib_x_unregister_callsign (int chan, char *call_from);
int agwlib_G_ask_port_information (void);
int agwlib_C_connect (int chan, char *call_from, char *call_to);
int agwlib_d_disconnect (int chan, char *call_from, char *call_to);
int agwlib_D_send_connected_data (int chan, int pid, char *call_from, char *call_to, int data_len, char *data);
int agwlib_Y_outstanding_frames_for_station (int chan, char *call_from, char *call_to);
// The application must define these.
void agw_cb_C_connection_received (int chan, char *call_from, char *call_to, int data_len, char *data);
void on_C_connection_received (int chan, char *call_from, char *call_to, int incoming, char *data);
void agw_cb_d_disconnected (int chan, char *call_from, char *call_to, int data_len, char *data);
void agw_cb_D_connected_data (int chan, char *call_from, char *call_to, int data_len, char *data);
void agw_cb_G_port_information (int num_chan, char *chan_descriptions[]);
void agw_cb_Y_outstanding_frames_for_station (int chan, char *call_from, char *call_to, int frame_count);
#endif

8
ais.h Normal file
View File

@ -0,0 +1,8 @@
void ais_to_nmea (unsigned char *ais, int ais_len, char *nema, int nema_size);
int ais_parse (char *sentence, int quiet, char *descr, int descr_size, char *mssi, int mssi_size, double *odlat, double *odlon,
float *ofknots, float *ofcourse, float *ofalt_m, char *symtab, char *symbol, char *comment, int comment_size);
int ais_check_length (int type, int length);

191
aprs_tt.h Normal file
View File

@ -0,0 +1,191 @@
/* aprs_tt.h */
#ifndef APRS_TT_H
#define APRS_TT_H 1
/*
* For holding location format specifications from config file.
* Same thing is also useful for macro definitions.
* We have exactly the same situation of looking for a pattern
* match and extracting fixed size groups of digits.
*/
struct ttloc_s {
enum { TTLOC_POINT, TTLOC_VECTOR, TTLOC_GRID, TTLOC_UTM, TTLOC_MGRS, TTLOC_USNG, TTLOC_MACRO, TTLOC_MHEAD, TTLOC_SATSQ, TTLOC_AMBIG } type;
char pattern[20]; /* e.g. B998, B5bbbdddd, B2xxyy, Byyyxxx, BAxxxx */
/* For macros, it should be all fixed digits, */
/* and the letters x, y, z. e.g. 911, xxyyyz */
union {
struct {
double lat; /* Specific locations. */
double lon;
} point;
struct {
double lat; /* For bearing/direction. */
double lon;
double scale; /* conversion to meters */
} vector;
struct {
double lat0; /* yyy all zeros. */
double lon0; /* xxx */
double lat9; /* yyy all nines. */
double lon9; /* xxx */
} grid;
struct {
double scale;
double x_offset;
double y_offset;
long lzone; /* UTM zone, should be 1-60 */
char latband; /* Latitude band if specified, otherwise space or - */
char hemi; /* UTM Hemisphere, should be 'N' or 'S'. */
} utm;
struct {
char zone[8]; /* Zone and square for USNG/MGRS */
} mgrs;
struct {
char prefix[24]; /* should be 10, 6, or 4 digits to be */
/* prepended to the received sequence. */
} mhead;
struct {
char *definition;
} macro;
};
};
/* Error codes for sending responses to user. */
#define TT_ERROR_OK 0 /* Success. */
#define TT_ERROR_D_MSG 1 /* D was first char of field. Not implemented yet. */
#define TT_ERROR_INTERNAL 2 /* Internal error. Shouldn't be here. */
#define TT_ERROR_MACRO_NOMATCH 3 /* No definition for digit sequence. */
#define TT_ERROR_BAD_CHECKSUM 4 /* Bad checksum on call. */
#define TT_ERROR_INVALID_CALL 5 /* Invalid callsign. */
#define TT_ERROR_INVALID_OBJNAME 6 /* Invalid object name. */
#define TT_ERROR_INVALID_SYMBOL 7 /* Invalid symbol specification. */
#define TT_ERROR_INVALID_LOC 8 /* Invalid location. */
#define TT_ERROR_NO_CALL 9 /* No call or object name included. */
#define TT_ERROR_INVALID_MHEAD 10 /* Invalid Maidenhead Locator. */
#define TT_ERROR_INVALID_SATSQ 11 /* Satellite square must be 4 digits. */
#define TT_ERROR_SUFFIX_NO_CALL 12 /* No known callsign for suffix. */
#define TT_ERROR_MAXP1 13 /* Number of items above. i.e. Last number plus 1. */
#if CONFIG_C /* Is this being included from config.c? */
/* Must keep in sync with above !!! */
static const char *tt_msg_id[TT_ERROR_MAXP1] = {
"OK",
"D_MSG",
"INTERNAL",
"MACRO_NOMATCH",
"BAD_CHECKSUM",
"INVALID_CALL",
"INVALID_OBJNAME",
"INVALID_SYMBOL",
"INVALID_LOC",
"NO_CALL",
"INVALID_MHEAD",
"INVALID_SATSQ",
"SUFFIX_NO_CALL"
};
#endif
/*
* Configuration options for APRStt.
*/
#define TT_MAX_XMITS 10
#define TT_MTEXT_LEN 64
struct tt_config_s {
int gateway_enabled; /* Send DTMF sequences to APRStt gateway. */
int obj_recv_chan; /* Channel to listen for tones. */
int obj_xmit_chan; /* Channel to transmit object report. */
/* -1 for none. This could happen if we */
/* are only sending to application */
/* and/or IGate. */
int obj_send_to_app; /* send to attached application(s). */
int obj_send_to_ig; /* send to IGate. */
char obj_xmit_via[AX25_MAX_REPEATERS * (AX25_MAX_ADDR_LEN+1)];
/* e.g. empty or "WIDE2-1,WIDE1-1" */
int retain_time; /* Seconds to keep information about a user. */
int num_xmits; /* Number of times to transmit object report. */
int xmit_delay[TT_MAX_XMITS]; /* Delay between them. */
/* e.g. 3 seconds before first transmission then */
/* delays of 16, 32, seconds etc. in between repeats. */
struct ttloc_s *ttloc_ptr; /* Pointer to variable length array of above. */
int ttloc_size; /* Number of elements allocated. */
int ttloc_len; /* Number of elements actually used. */
double corral_lat; /* The "corral" for unknown locations. */
double corral_lon;
double corral_offset;
int corral_ambiguity;
char status[10][TT_MTEXT_LEN]; /* Up to 9 status messages. e.g. "/enroute" */
/* Position 0 means none and can't be changed. */
struct {
char method[AX25_MAX_ADDR_LEN]; /* SPEECH or MORSE[-n] */
char mtext[TT_MTEXT_LEN]; /* Message text. */
} response[TT_ERROR_MAXP1];
char ttcmd[80]; /* Command to generate custom audible response. */
};
void aprs_tt_init (struct tt_config_s *p_config, int debug);
void aprs_tt_button (int chan, char button);
#define APRSTT_LOC_DESC_LEN 32 /* Need at least 26 */
#define APRSTT_DEFAULT_SYMTAB '\\'
#define APRSTT_DEFAULT_SYMBOL 'A'
void aprs_tt_dao_to_desc (char *dao, char *str);
void aprs_tt_sequence (int chan, char *msg);
int dw_run_cmd (char *cmd, int oneline, char *result, size_t resultsiz);
#endif
/* end aprs_tt.h */

7
audio_stats.h Normal file
View File

@ -0,0 +1,7 @@
/* audio_stats.h */
extern void audio_stats (int adev, int nchan, int nsamp, int interval);

36
ax25.c
View File

@ -1526,6 +1526,40 @@ void get_exclude_list(char * line, TStringList * list)
}
}
void get_digi_list(char * line, TStringList * list)
{
// Convert comma separated list of calls to ax25 format in list
string axcall;
char copy[512];
char * ptr, *Context;
if (line[0] == 0)
return;
strcpy(copy, line); // copy as strtok messes with it
strcat(copy, ",");
axcall.Length = 7;
axcall.AllocatedLength = 8;
axcall.Data = malloc(8);
memset(axcall.Data, 0, 8);
ptr = strtok_s(copy, " ,", &Context);
while (ptr)
{
if (ConvToAX25(ptr, axcall.Data) == 0)
return;
Add(list, duplicateString(&axcall));
ptr = strtok_s(NULL, " ,", &Context);
}
}
void get_exclude_frm(char * line, TStringList * list)
@ -1959,7 +1993,7 @@ void ax25_init()
initTStringList(&list_digi_callsigns[i]);
initTStringList(&KISS_acked[i]);
get_exclude_list(MyDigiCall[i], &list_digi_callsigns[i]);
get_digi_list(MyDigiCall[i], &list_digi_callsigns[i]);
get_exclude_list(exclude_callsigns[i], &list_exclude_callsigns[i]);
get_exclude_frm(exclude_APRS_frm[i], &list_exclude_APRS_frm[i]);

View File

@ -22,7 +22,7 @@ along with QtSoundModem. If not, see http://www.gnu.org/licenses
#include "UZ7HOStuff.h"
extern char modes_name[modes_count][20];
extern char modes_name[modes_count][21];
extern int RSID_SABM[4];
extern int RSID_UI[4];
extern int RSID_SetModem[4];

View File

@ -29,6 +29,10 @@ void make_rx_frame_FX25(int snd_ch, int rcvr_nr, int emph, string * data);
string * memory_ARQ(TStringList * buf, string * data);
float GuessCentreFreq(int i);
void ProcessRXFrames(int snd_ch);
extern struct il2p_context_s *il2p_context[4][16][3];
/*
@ -115,6 +119,8 @@ longword DCD_header[5] = { 0 };
int dcd_on_hdr[5] = { 0 };
extern int centreFreq[4];
float lastangle[4]; // pevious value for differential modes
unsigned short n_INTR[5] = { 1,1,1,1,1 };
@ -154,6 +160,12 @@ int modemtoSoundLR[4] = { 0 };
struct TDetector_t DET[nr_emph + 1][16];
// Chan, Decoder, Emph
float Phases[4][16][nr_emph + 1][4096];
float Mags[4][16][nr_emph + 1][4096];
int nPhases[4][16][nr_emph + 1];
TStringList detect_list_l[5];
TStringList detect_list[5];
TStringList detect_list_c[5];
@ -341,6 +353,10 @@ void chk_dcd1(int snd_ch, int buf_size)
{
dcd_bit_sync[snd_ch] = blnBusyStatus;
}
else if (modem_mode[snd_ch] == MODE_RUH)
{
dcd_bit_sync[snd_ch] = blnBusyStatus;
}
else
{
if (dcd_bit_cnt[snd_ch] > 0)
@ -1341,7 +1357,7 @@ int stats[2] = { 0 };
void decode_stream_MPSK(int snd_ch, int rcvr_nr, float * src, int buf_size, int last)
{
#ifndef WIN32
#ifndef XXXX
// Until ASM is converted
@ -2787,6 +2803,9 @@ void decode_stream_BPSK(int last, int snd_ch, int rcvr_nr, int emph, float * src
angle = atan2f(sumIQ2, sumIQ1);
PSK_IZ1 = PkAmpI;
PSK_QZ1 = PkAmpQ;
float Mag = sqrtf(powf(PSK_IZ1, 2) + powf(PSK_QZ1, 2));
// Phase corrector
if (fabsf(angle) < PI5)
@ -2808,11 +2827,24 @@ void decode_stream_BPSK(int last, int snd_ch, int rcvr_nr, int emph, float * src
bit = RX_BIT0;
//
// is this the best place to store phase for constellation?
// only for ilp2 for now
if (il2p_mode[snd_ch])
{
struct il2p_context_s * il2p = il2p_context[snd_ch][rcvr_nr][emph];
if (il2p && il2p->state > IL2P_SEARCHING)
{
Phases[snd_ch][rcvr_nr][emph][nPhases[snd_ch][rcvr_nr][emph]] = angle;
Mags[snd_ch][rcvr_nr][emph][nPhases[snd_ch][rcvr_nr][emph]++] = Mag;
if (nPhases[snd_ch][rcvr_nr][emph] > 4090)
nPhases[snd_ch][rcvr_nr][emph]--;
}
il2p_rec_bit(snd_ch, rcvr_nr, emph, bit);
if (il2p_mode[snd_ch] == IL2P_MODE_ONLY) // Dont try HDLC decode
continue;
}
if (bit)
stats[1]++;
else
@ -2949,7 +2981,6 @@ void decode_stream_QPSK(int last, int snd_ch, int rcvr_nr, int emph, float * src
struct TDetector_t * pDET = &DET[emph][rcvr_nr];
bit_stuff_cnt = pDET->bit_stuff_cnt[snd_ch];
last_rx_bit = pDET->last_rx_bit[snd_ch];
sample_cnt = pDET->sample_cnt[snd_ch];
@ -3073,6 +3104,8 @@ void decode_stream_QPSK(int last, int snd_ch, int rcvr_nr, int emph, float * src
PSK_IZ1 = PkAmpI;
PSK_QZ1 = PkAmpQ;
float Mag = sqrtf(powf(PSK_IZ1, 2) + powf(PSK_QZ1, 2));
if (angle > pi || angle < -pi)
angle = angle;
@ -3120,6 +3153,8 @@ void decode_stream_QPSK(int last, int snd_ch, int rcvr_nr, int emph, float * src
}
else
{
// "Normal" QPSK
// Phase corrector
// I think this sends 0 90 180 270
@ -3158,6 +3193,26 @@ void decode_stream_QPSK(int last, int snd_ch, int rcvr_nr, int emph, float * src
{
dibit = dibit << 1;
// is this the best place to store phase for constellation?
// only for ilp2 for now
if (il2p_mode[snd_ch])
{
struct il2p_context_s * il2p = il2p_context[snd_ch][rcvr_nr][emph];
if (il2p && il2p->state > IL2P_SEARCHING)
{
Phases[snd_ch][rcvr_nr][emph][nPhases[snd_ch][rcvr_nr][emph]] = angle;
Mags[snd_ch][rcvr_nr][emph][nPhases[snd_ch][rcvr_nr][emph]++] = Mag;
if (nPhases[snd_ch][rcvr_nr][emph] > 4090)
nPhases[snd_ch][rcvr_nr][emph]--;
}
il2p_rec_bit(snd_ch, rcvr_nr, emph, (dibit & RX_BIT1));
if (il2p_mode[snd_ch] == IL2P_MODE_ONLY) // Dont try HDLC decode
continue;
}
// NRZI
if (last_rx_bit == (dibit & RX_BIT1))
@ -3328,7 +3383,13 @@ void decode_stream_8PSK(int last, int snd_ch, int rcvr_nr, int emph, float * src
dcd_bit_cnt[snd_ch] = 0;
}
baudrate = 1600 / 6;
// Not sure how this works
if (tx_baudrate[snd_ch] == 300)
baudrate = 300;
else
baudrate = 1600 / 6;
div_bit_afc = 1.0 / round(BIT_AFC*(RX_Samplerate / 11025));
x = baudrate / RX_Samplerate;
max_cnt = round(RX_Samplerate / baudrate) + 1;
@ -3365,7 +3426,7 @@ void decode_stream_8PSK(int last, int snd_ch, int rcvr_nr, int emph, float * src
bit_osc = bit_osc + x;
if (bit_osc >= 1)
{
{
if (sample_cnt <= max_cnt)
for (k = sample_cnt; k <= max_cnt; k++)
bit_buf[k] = 0.95*bit_buf[k];
@ -3403,6 +3464,8 @@ void decode_stream_8PSK(int last, int snd_ch, int rcvr_nr, int emph, float * src
PSK_IZ1 = PkAmpI;
PSK_QZ1 = PkAmpQ;
float Mag = sqrtf(powf(PSK_IZ1, 2) + powf(PSK_QZ1, 2));
// Phase corrector
if (fabsf(angle) < PI125)
@ -3431,8 +3494,7 @@ void decode_stream_8PSK(int last, int snd_ch, int rcvr_nr, int emph, float * src
AngleCorr = AngleCorr * 0.95 - KCorr * 0.05;
angle = angle + AngleCorr;
//
if (fabsf(angle) < PI125)
tribit = 1;
if (angle >= PI125 && angle < PI375)
@ -3455,6 +3517,29 @@ void decode_stream_8PSK(int last, int snd_ch, int rcvr_nr, int emph, float * src
for (j = 0; j < 3; j++)
{
tribit = tribit << 1;
// look for il2p before nrzi
// is this the best place to store phase for constellation?
// only for ilp2 for now
if (il2p_mode[snd_ch])
{
struct il2p_context_s * il2p = il2p_context[snd_ch][rcvr_nr][emph];
if (il2p && il2p->state > IL2P_SEARCHING)
{
Phases[snd_ch][rcvr_nr][emph][nPhases[snd_ch][rcvr_nr][emph]] = angle;
Mags[snd_ch][rcvr_nr][emph][nPhases[snd_ch][rcvr_nr][emph]++] = Mag;
if (nPhases[snd_ch][rcvr_nr][emph] > 4090)
nPhases[snd_ch][rcvr_nr][emph]--;
}
il2p_rec_bit(snd_ch, rcvr_nr, emph, tribit & RX_BIT1);
if (il2p_mode[snd_ch] == IL2P_MODE_ONLY) // Dont try HDLC decode
continue;
}
//NRZI
if (last_rx_bit == (tribit & RX_BIT1))
@ -3733,6 +3818,14 @@ void make_core_INTR(UCHAR snd_ch)
n_INTR[snd_ch] = 1;
break;
case SPEED_Q300:
case SPEED_8PSK300:
width = roundf(RX_Samplerate / 2);
n_INTR[snd_ch] = 1;
break;
case SPEED_600:
width = roundf(RX_Samplerate / 4);
@ -3755,6 +3848,11 @@ void make_core_INTR(UCHAR snd_ch)
n_INTR[snd_ch] = 4;
break;
// case SPEED_Q1200:
// width = roundf(RX_Samplerate / 8);
// n_INTR[snd_ch] = 4;
// break;
case SPEED_Q2400:
width = 300;
n_INTR[snd_ch] = 4;
@ -3766,7 +3864,7 @@ void make_core_INTR(UCHAR snd_ch)
n_INTR[snd_ch] = 4;
break;
case SPEED_AE2400:
case SPEED_2400V26B:
width = 300;
n_INTR[snd_ch] = 4;
@ -3784,6 +3882,7 @@ void make_core_INTR(UCHAR snd_ch)
break;
case SPEED_8P4800:
width = 100;
n_INTR[snd_ch] = 6;
break;
@ -4121,7 +4220,7 @@ void Demodulator(int snd_ch, int rcvr_nr, float * src_buf, int last, int xcenter
QPSK_Demodulator(snd_ch, rcvr_nr, emph_db[snd_ch], last);
}
// QPSK demodulator
// 8PSK demodulator
if (modem_mode[snd_ch]==MODE_8PSK)
{
@ -4147,120 +4246,125 @@ void Demodulator(int snd_ch, int rcvr_nr, float * src_buf, int last, int xcenter
// I think this handles multiple decoders and passes packet on to next level
// Packet manager
if (last)
ProcessRXFrames(snd_ch);
}
void ProcessRXFrames(int snd_ch)
{
boolean fecflag = 0;
char indicators[5] = "-$#F+"; // None, Single, MEM, FEC, Normal
// Work out which decoder and which emph settings worked.
if (snd_ch < 0 || snd_ch >3)
return;
if (detect_list[snd_ch].Count > 0) // no point if nothing decoded
{
boolean fecflag = 0;
char decoded[32] = "";
char indicators[5] = "-$#F+"; // None, Single, MEM, FEC, Normal
char s_emph[4] = "";
int emph[4] = { 0 };
char report[32] = "";
int il2perrors = 255;
// Work out which decoder and which emph settings worked.
// The is one DET for each Decoder for each Emph setting
if (detect_list[snd_ch].Count > 0) // no point if nothing decoded
struct TDetector_t * pDET;
int i = 0, j, found;
int maxemph = nr_emph;
for (i = 0; i <= nr_emph; i++)
{
char decoded[32] = "";
char indicators[5] = "-$#F+"; // None, Single, MEM, FEC, Normal
char s_emph[4] = "";
int emph[4] = { 0 };
char report[32] = "";
int il2perrors = 255;
for (j = 0; j <= RCVR[snd_ch] * 2; j++)
{
pDET = &DET[i][j];
// The is one DET for each Decoder for each Emph setting
if (pDET->rx_decoded > decoded[j]) // Better than other one (| is higher than F)
decoded[j] = pDET->rx_decoded;
struct TDetector_t * pDET;
int i = 0, j;
int maxemph = nr_emph;
if (pDET->emph_decoded > emph[i])
emph[i] = pDET->emph_decoded;
if (il2perrors > pDET->errors)
il2perrors = pDET->errors;
pDET->rx_decoded = 0;
pDET->emph_decoded = 0; // Ready for next time
pDET->errors = 255;
}
if (emph_all[snd_ch] == 0)
break;
}
decoded[j] = 0;
for (j--; j >= 0; j--)
decoded[j] = indicators[decoded[j]];
if (emph_all[snd_ch])
{
for (i = 0; i <= nr_emph; i++)
{
for (j = 0; j <= RCVR[snd_ch] * 2; j++)
{
pDET = &DET[i][j];
if (pDET->rx_decoded > decoded[j]) // Better than other one (| is higher than F)
decoded[j] = pDET->rx_decoded;
if (pDET->emph_decoded > emph[i])
emph[i] = pDET->emph_decoded;
if (il2perrors > pDET->errors)
il2perrors = pDET->errors;
pDET->rx_decoded = 0;
pDET->emph_decoded = 0; // Ready for next time
pDET->errors = 255;
}
if (emph_all[snd_ch] == 0)
break;
s_emph[i] = indicators[emph[i]];
}
sprintf(report, "%s][%s", s_emph, decoded);
}
decoded[j] = 0;
else
strcpy(report, decoded);
for (j--; j >= 0; j--)
decoded[j] = indicators[decoded[j]];
if (detect_list_c[snd_ch].Items[0]->Length)
{
if (il2perrors < 255 && il2perrors > 0)
sprintf(detect_list_c[snd_ch].Items[0]->Data, "%s-%d", detect_list_c[snd_ch].Items[0]->Data, il2perrors);
if (emph_all[snd_ch])
strcat(report, "][");
strcat(report, detect_list_c[snd_ch].Items[0]->Data);
}
if (detect_list[snd_ch].Count > 0)
{
for (i = 0; i < detect_list[snd_ch].Count; i++)
{
for (i = 0; i <= nr_emph; i++)
found = 0;
// if (detect_list_l[snd_ch].Count > 0)
// if (my_indexof(&detect_list_l[snd_ch], detect_list[snd_ch].Items[i]) > -1)
// found = 1;
if (found == 0)
{
s_emph[i] = indicators[emph[i]];
}
sprintf(report, "%s][%s", s_emph, decoded);
}
else
strcpy(report, decoded);
if (detect_list_c[snd_ch].Items[0]->Length)
{
if (il2perrors < 255 && il2perrors > 0)
sprintf(detect_list_c[snd_ch].Items[0]->Data, "%s-%d", detect_list_c[snd_ch].Items[0]->Data, il2perrors);
strcat(report, "][");
strcat(report, detect_list_c[snd_ch].Items[0]->Data);
}
if (detect_list[snd_ch].Count > 0)
{
for (i = 0; i < detect_list[snd_ch].Count; i++)
{
found = 0;
// if (detect_list_l[snd_ch].Count > 0)
// if (my_indexof(&detect_list_l[snd_ch], detect_list[snd_ch].Items[i]) > -1)
// found = 1;
if (found == 0)
if (modem_mode[snd_ch] == MODE_MPSK)
{
if (modem_mode[snd_ch] == MODE_MPSK)
{
// analiz_frame(snd_ch, detect_list[snd_ch].Items[i]->Data, [snd_ch].Items[i]->Data + ' dF: ' + FloatToStrF(DET[0, 0].AFC_dF[snd_ch], ffFixed, 0, 1));
}
else
{
analiz_frame(snd_ch, detect_list[snd_ch].Items[i], report, fecflag);
}
// analiz_frame(snd_ch, detect_list[snd_ch].Items[i]->Data, [snd_ch].Items[i]->Data + ' dF: ' + FloatToStrF(DET[0, 0].AFC_dF[snd_ch], ffFixed, 0, 1));
}
else
{
analiz_frame(snd_ch, detect_list[snd_ch].Items[i], report, fecflag);
}
}
// Cancel FX25 decode
if (fx25_mode[snd_ch] != FX25_MODE_NONE)
{
int e;
for (i = 0; i < 16; i++)
for (e = 0; e <= nr_emph; e++)
DET[e][i].fx25[snd_ch].status = FX25_TAG;
}
}
// Assign(&detect_list_l[snd_ch], &detect_list[snd_ch]); // Duplicate detect_list to detect_list_l
// Cancel FX25 decode
Clear(&detect_list[snd_ch]);
Clear(&detect_list_c[snd_ch]);
if (fx25_mode[snd_ch] != FX25_MODE_NONE)
{
int e;
for (i = 0; i < 16; i++)
for (e = 0; e <= nr_emph; e++)
DET[e][i].fx25[snd_ch].status = FX25_TAG;
}
}
chk_dcd1(snd_ch, rx_bufsize);
// Assign(&detect_list_l[snd_ch], &detect_list[snd_ch]); // Duplicate detect_list to detect_list_l
Clear(&detect_list[snd_ch]);
Clear(&detect_list_c[snd_ch]);
}
chk_dcd1(snd_ch, rx_bufsize);
}
string * memory_ARQ(TStringList * buf, string * data)

88
ax25_link.h Normal file
View File

@ -0,0 +1,88 @@
/* ax25_link.h */
#ifndef AX25_LINK_H
#define AX25_LINK_H 1
#include "ax25_pad.h" // for AX25_MAX_INFO_LEN
#include "dlq.h" // for dlq_item_t
#include "config.h" // for struct misc_config_s
// Limits and defaults for parameters.
#define AX25_N1_PACLEN_MIN 1 // Max bytes in Information part of frame.
#define AX25_N1_PACLEN_DEFAULT 256 // some v2.0 implementations have 128
#define AX25_N1_PACLEN_MAX AX25_MAX_INFO_LEN // from ax25_pad.h
#define AX25_N2_RETRY_MIN 1 // Number of times to retry before giving up.
#define AX25_N2_RETRY_DEFAULT 10
#define AX25_N2_RETRY_MAX 15
#define AX25_T1V_FRACK_MIN 1 // Number of seconds to wait before retrying.
#define AX25_T1V_FRACK_DEFAULT 3 // KPC-3+ has 4. TM-D710A has 3.
#define AX25_T1V_FRACK_MAX 15
#define AX25_K_MAXFRAME_BASIC_MIN 1 // Window size - number of I frames to send before waiting for ack.
#define AX25_K_MAXFRAME_BASIC_DEFAULT 4
#define AX25_K_MAXFRAME_BASIC_MAX 7
#define AX25_K_MAXFRAME_EXTENDED_MIN 1
#define AX25_K_MAXFRAME_EXTENDED_DEFAULT 32
#define AX25_K_MAXFRAME_EXTENDED_MAX 63 // In theory 127 but I'm restricting as explained in SREJ handling.
// Call once at startup time.
void ax25_link_init (struct misc_config_s *pconfig);
// IMPORTANT:
// These functions must be called on a single thread, one at a time.
// The Data Link Queue (DLQ) is used to serialize events from multiple sources.
// Maybe the dispatch switch should be moved to ax25_link.c so they can all
// be made static and they can't be called from the wrong place accidentally.
void dl_connect_request (dlq_item_t *E);
void dl_disconnect_request (dlq_item_t *E);
void dl_data_request (dlq_item_t *E);
void dl_register_callsign (dlq_item_t *E);
void dl_unregister_callsign (dlq_item_t *E);
void dl_outstanding_frames_request (dlq_item_t *E);
void dl_client_cleanup (dlq_item_t *E);
void lm_data_indication (dlq_item_t *E);
void lm_seize_confirm (dlq_item_t *E);
void lm_channel_busy (dlq_item_t *E);
void dl_timer_expiry (void);
double ax25_link_get_next_timer_expiry (void);
#endif
/* end ax25_link.h */

1810
ax25_mod-DESKTOP-MHE5LO8.c Normal file

File diff suppressed because it is too large Load Diff

View File

@ -45,6 +45,7 @@ extern UCHAR modem_mode[];
#define sbc 175
extern single ch_offset[4];
int Continuation[4] = { 0, 0, 0, 0 }; // Sending 2nd or more packet of burst
#define COS45 0.70710676908493f
@ -89,7 +90,8 @@ float tx_osc[5] = {0}; // : array[1..4] of single=(0,0,0,0};
float tx_bit_osc[5] = {0}; // : array[1..4] of single=(0,0,0,0};
unsigned short txbpf[5] = { 400, 400, 400, 400, 400}; // : array[1..4] of word=(400,400,400,400};
unsigned short tx_BPF_tap[5] = { 256, 256, 256, 256, 256}; // : array[1..4] of word=(256,256,256,256};
unsigned short tx_baudrate[5] = { 300, 300, 300, 300, 300}; // : array[1..4] of word=(300,300,300,300};
unsigned short tx_baudrate[5] = { 300, 300, 300, 300, 300 }; // : array[1..4] of word=(300,300,300,300};
unsigned short tx_bitrate[5] = { 300, 300, 300, 300, 300 }; // : array[1..4] of word=(300,300,300,300};
unsigned short tx_BPF_timer[5] = {0}; // : array[1..4] of word=(0,0,0,0};
UCHAR tx_pol[5] = {0}; // : array[1..4] of byte=(0,0,0,0};
UCHAR tx_last_pol[5] = {0}; // : array[1..4] of byte=(0,0,0,0};
@ -1191,9 +1193,11 @@ float make_samples(unsigned char snd_ch, unsigned char * bitptr)
if (il2p_mode[snd_ch] >= IL2P_MODE_TXRX)
{
// il2p generates TXDELAY as part of the frame, so go straight to TX_FRAME
if (tx_status[snd_ch] == TX_DELAY)
tx_status[snd_ch] = TX_FRAME; // il2p generates TXDELAY as part of the frame, so go straight to TX_FRAME
tx_status[snd_ch] = TX_FRAME;
if (tx_status[snd_ch] == TX_TAIL)
bit = get_new_bit_tail(snd_ch, bit);
@ -1240,6 +1244,8 @@ float make_samples(unsigned char snd_ch, unsigned char * bitptr)
tx_status[snd_ch] = TX_DELAY;
}
// il2p generates TXDELAY as part of the frame, so go straight too TX_FRAME
if (tx_status[snd_ch] == TX_DELAY)
@ -1273,7 +1279,7 @@ float make_samples(unsigned char snd_ch, unsigned char * bitptr)
// QPSK Mode
if (modem_mode[snd_ch] == MODE_QPSK)
else if (modem_mode[snd_ch] == MODE_QPSK)
{
dibit = 0;
for (i = 0; i < 2; i++)
@ -1284,13 +1290,35 @@ float make_samples(unsigned char snd_ch, unsigned char * bitptr)
tx_delay_cnt[snd_ch] = 0;
tx_status[snd_ch] = TX_DELAY;
}
if (tx_status[snd_ch] == TX_DELAY)
bit = get_new_bit_delay(snd_ch, bit);
if (tx_status[snd_ch] == TX_TAIL)
bit = get_new_bit_tail(snd_ch, bit);
if (tx_status[snd_ch] == TX_FRAME)
bit = get_new_bit(snd_ch, bit);
dibit = (dibit << 1) | tx_nrzi(snd_ch, bit);
if (il2p_mode[snd_ch] >= IL2P_MODE_TXRX)
{
if (tx_status[snd_ch] == TX_DELAY)
tx_status[snd_ch] = TX_FRAME; // il2p generates TXDELAY as part of the frame, so go straight to TX_FRAME
if (tx_status[snd_ch] == TX_TAIL)
bit = get_new_bit_tail(snd_ch, bit);
if (tx_status[snd_ch] == TX_FRAME)
bit = il2p_get_new_bit(snd_ch, bit);
// No nrzi for il2p
dibit = (dibit << 1) | bit;
}
else
{
// ax25/fx25
if (tx_status[snd_ch] == TX_DELAY)
bit = get_new_bit_delay(snd_ch, bit);
if (tx_status[snd_ch] == TX_TAIL)
bit = get_new_bit_tail(snd_ch, bit);
if (tx_status[snd_ch] == TX_FRAME)
bit = get_new_bit(snd_ch, bit);
dibit = (dibit << 1) | tx_nrzi(snd_ch, bit);
}
}
@ -1348,19 +1376,38 @@ float make_samples(unsigned char snd_ch, unsigned char * bitptr)
tx_status[snd_ch] = TX_DELAY;
}
if (tx_status[snd_ch] == TX_DELAY)
bit = get_new_bit_delay(snd_ch, bit);
if (il2p_mode[snd_ch] >= IL2P_MODE_TXRX)
{
if (tx_status[snd_ch] == TX_DELAY)
tx_status[snd_ch] = TX_FRAME; // il2p generates TXDELAY as part of the frame, so go straight to TX_FRAME
if (tx_status[snd_ch] == TX_TAIL)
bit = get_new_bit_tail(snd_ch, bit);
if (tx_status[snd_ch] == TX_TAIL)
bit = get_new_bit_tail(snd_ch, bit);
if (tx_status[snd_ch] == TX_FRAME)
bit = get_new_bit(snd_ch, bit);
if (tx_status[snd_ch] == TX_FRAME)
bit = il2p_get_new_bit(snd_ch, bit);
*bitptr = tx_nrzi(snd_ch, bit);
// No nrzi for il2p
dibit = (dibit << 1) | *bitptr;
dibit = (dibit << 1) | bit;
}
else
{
// ax25/fx25
if (tx_status[snd_ch] == TX_DELAY)
bit = get_new_bit_delay(snd_ch, bit);
if (tx_status[snd_ch] == TX_TAIL)
bit = get_new_bit_tail(snd_ch, bit);
if (tx_status[snd_ch] == TX_FRAME)
bit = get_new_bit(snd_ch, bit);
*bitptr = tx_nrzi(snd_ch, bit);
dibit = (dibit << 1) | *bitptr;
}
}
// This returns 3,1,5 or 7 so we use the odd enties in the 8PSK table
@ -1436,16 +1483,36 @@ float make_samples(unsigned char snd_ch, unsigned char * bitptr)
tx_delay_cnt[snd_ch] = 0;
tx_status[snd_ch] = TX_DELAY;
}
if (tx_status[snd_ch] == TX_DELAY)
bit = get_new_bit_delay(snd_ch, bit);
if (tx_status[snd_ch] == TX_TAIL)
bit = get_new_bit_tail(snd_ch, bit);
if (tx_status[snd_ch] == TX_FRAME)
bit = get_new_bit(snd_ch, bit);
tribit = (tribit << 1) | tx_nrzi(snd_ch, bit);
if (il2p_mode[snd_ch] >= IL2P_MODE_TXRX)
{
if (tx_status[snd_ch] == TX_DELAY)
tx_status[snd_ch] = TX_FRAME; // il2p generates TXDELAY as part of the frame, so go straight to TX_FRAME
if (tx_status[snd_ch] == TX_TAIL)
bit = get_new_bit_tail(snd_ch, bit);
if (tx_status[snd_ch] == TX_FRAME)
bit = il2p_get_new_bit(snd_ch, bit);
// No nrzi for il2p
tribit = (tribit << 1) | bit;
}
else
{
// ax25/fx25
if (tx_status[snd_ch] == TX_DELAY)
bit = get_new_bit_delay(snd_ch, bit);
if (tx_status[snd_ch] == TX_TAIL)
bit = get_new_bit_tail(snd_ch, bit);
if (tx_status[snd_ch] == TX_FRAME)
bit = get_new_bit(snd_ch, bit);
tribit = (tribit << 1) | tx_nrzi(snd_ch, bit);
}
}
tribit = gray_8PSK[tribit & 7];
tx_8PSK[snd_ch] = (tx_8PSK[snd_ch] + tribit) & 7;
@ -1632,7 +1699,7 @@ float make_samples_calib(UCHAR snd_ch, UCHAR tones)
return amp * sinf(tx_osc[snd_ch]);
}
int amplitude = 22000;
float amplitude = 32000;
void modulator(UCHAR snd_ch, int buf_size)
{
@ -1641,7 +1708,7 @@ void modulator(UCHAR snd_ch, int buf_size)
// I think this is the top of the TX hierarchy
int i;
short Sample;
int Sample;
if (calib_mode[snd_ch] > 0)
{
@ -1694,6 +1761,12 @@ void modulator(UCHAR snd_ch, int buf_size)
for (i = 0; i < buf_size; i++)
{
Sample = tx_BPF_buf[snd_ch][i] * amplitude;
if (Sample < txmin)
txmin = Sample;
else if (Sample > txmax)
txmax = Sample;
SampleSink(modemtoSoundLR[snd_ch], Sample);
}
}
@ -1734,7 +1807,22 @@ void modulator(UCHAR snd_ch, int buf_size)
for (i = 0; i < buf_size; i++)
{
Sample = tx_BPF_buf[snd_ch][i] * 20000.0f;
Sample = tx_BPF_buf[snd_ch][i] * amplitude;
if (Sample < txmin)
txmin = Sample;
else if (Sample > txmax)
{
txmax = Sample;
if (txmax > 32767)
{
amplitude = amplitude * 32767 / txmax;
txmax = 32767;
Sample = 32767;
}
}
SampleSink(modemtoSoundLR[snd_ch], Sample);
}
}

55
ax25_pad2.h Normal file
View File

@ -0,0 +1,55 @@
/*-------------------------------------------------------------------
*
* Name: ax25_pad2.h
*
* Purpose: Header file for using ax25_pad2.c
* ax25_pad dealt only with UI frames.
* This adds a facility for the other types: U, s, I.
*
*------------------------------------------------------------------*/
#ifndef AX25_PAD2_H
#define AX25_PAD2_H 1
#include "ax25_pad.h"
#if AX25MEMDEBUG // to investigate a memory leak problem
packet_t ax25_u_frame_debug (char addrs[AX25_MAX_ADDRS][AX25_MAX_ADDR_LEN], int num_addr, cmdres_t cr, ax25_frame_type_t ftype, int pf, int pid, unsigned char *pinfo, int info_len, char *src_file, int src_line);
packet_t ax25_s_frame_debug (char addrs[AX25_MAX_ADDRS][AX25_MAX_ADDR_LEN], int num_addr, cmdres_t cr, ax25_frame_type_t ftype, int modulo, int nr, int pf, unsigned char *pinfo, int info_len, char *src_file, int src_line);
packet_t ax25_i_frame_debug (char addrs[AX25_MAX_ADDRS][AX25_MAX_ADDR_LEN], int num_addr, cmdres_t cr, int modulo, int nr, int ns, int pf, int pid, unsigned char *pinfo, int info_len, char *src_file, int src_line);
#define ax25_u_frame(a,n,c,f,p,q,i,l) ax25_u_frame_debug(a,n,c,f,p,q,i,l,__FILE__,__LINE__)
#define ax25_s_frame(a,n,c,f,m,r,p,i,l) ax25_s_frame_debug(a,n,c,f,m,r,p,i,l,__FILE__,__LINE__)
#define ax25_i_frame(a,n,c,m,r,s,p,q,i,l) ax25_i_frame_debug(a,n,c,m,r,s,p,q,i,l,__FILE__,__LINE__)
#else
packet_t ax25_u_frame (char addrs[AX25_MAX_ADDRS][AX25_MAX_ADDR_LEN], int num_addr, cmdres_t cr, ax25_frame_type_t ftype, int pf, int pid, unsigned char *pinfo, int info_len);
packet_t ax25_s_frame (char addrs[AX25_MAX_ADDRS][AX25_MAX_ADDR_LEN], int num_addr, cmdres_t cr, ax25_frame_type_t ftype, int modulo, int nr, int pf, unsigned char *pinfo, int info_len);
packet_t ax25_i_frame (char addrs[AX25_MAX_ADDRS][AX25_MAX_ADDR_LEN], int num_addr, cmdres_t cr, int modulo, int nr, int ns, int pf, int pid, unsigned char *pinfo, int info_len);
#endif
#endif /* AX25_PAD2_H */
/* end ax25_pad2.h */

6
beacon.h Normal file
View File

@ -0,0 +1,6 @@
/* beacon.h */
void beacon_init (struct audio_s *pmodem, struct misc_config_s *pconfig, struct igate_config_s *pigate);
void beacon_tracker_set_debug (int level);

62
cdigipeater.h Normal file
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@ -0,0 +1,62 @@
#ifndef CDIGIPEATER_H
#define CDIGIPEATER_H 1
#include "regex.h"
#include "direwolf.h" /* for MAX_CHANS */
#include "ax25_pad.h" /* for packet_t */
#include "audio.h" /* for radio channel properties */
/*
* Information required for Connected mode digipeating.
*
* The configuration file reader fills in this information
* and it is passed to cdigipeater_init at application start up time.
*/
struct cdigi_config_s {
/*
* Rules for each of the [from_chan][to_chan] combinations.
*/
int enabled[MAX_CHANS][MAX_CHANS]; // Is it enabled for from/to pair?
int has_alias[MAX_CHANS][MAX_CHANS]; // If there was no alias in the config file,
// the structure below will not be set up
// properly and an attempt to use it could
// result in a crash. (fixed v1.5)
// Not needed for [APRS] DIGIPEAT because
// the alias is mandatory there.
regex_t alias[MAX_CHANS][MAX_CHANS];
char *cfilter_str[MAX_CHANS][MAX_CHANS];
// NULL or optional Packet Filter strings such as "t/m".
};
/*
* Call once at application start up time.
*/
extern void cdigipeater_init (struct audio_s *p_audio_config, struct cdigi_config_s *p_cdigi_config);
/*
* Call this for each packet received.
* Suitable packets will be queued for transmission.
*/
extern void cdigipeater (int from_chan, packet_t pp);
/* Make statistics available. */
int cdigipeater_get_count (int from_chan, int to_chan);
#endif
/* end cdigipeater.h */

5
cm108.h Normal file
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@ -0,0 +1,5 @@
/* Dire Wolf cm108.h */
extern void cm108_find_ptt (char *output_audio_device, char *ptt_device, int ptt_device_size);
extern int cm108_set_gpio_pin (char *name, int num, int state);

262
config.h Normal file
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@ -0,0 +1,262 @@
/*----------------------------------------------------------------------------
*
* Name: config.h
*
* Purpose:
*
* Description:
*
*-----------------------------------------------------------------------------*/
#ifndef CONFIG_H
#define CONFIG_H 1
#include "audio.h" /* for struct audio_s */
#include "digipeater.h" /* for struct digi_config_s */
#include "cdigipeater.h" /* for struct cdigi_config_s */
#include "aprs_tt.h" /* for struct tt_config_s */
#include "igate.h" /* for struct igate_config_s */
/*
* All the leftovers.
* This wasn't thought out. It just happened.
*/
enum beacon_type_e { BEACON_IGNORE, BEACON_POSITION, BEACON_OBJECT, BEACON_TRACKER, BEACON_CUSTOM, BEACON_IGATE };
enum sendto_type_e { SENDTO_XMIT, SENDTO_IGATE, SENDTO_RECV };
#define MAX_BEACONS 30
#define MAX_KISS_TCP_PORTS (MAX_CHANS+1)
struct misc_config_s {
int agwpe_port; /* TCP Port number for the "AGW TCPIP Socket Interface" */
// Previously we allowed only a single TCP port for KISS.
// An increasing number of people want to run multiple radios.
// Unfortunately, most applications don't know how to deal with multi-radio TNCs.
// They ignore the channel on receive and always transmit to channel 0.
// Running multiple instances of direwolf is a work-around but this leads to
// more complex configuration and we lose the cross-channel digipeating capability.
// In release 1.7 we add a new feature to assign a single radio channel to a TCP port.
// e.g.
// KISSPORT 8001 # default, all channels. Radio channel = KISS channel.
//
// KISSPORT 7000 0 # Only radio channel 0 for receive.
// # Transmit to radio channel 0, ignoring KISS channel.
//
// KISSPORT 7001 1 # Only radio channel 1 for receive. KISS channel set to 0.
// # Transmit to radio channel 1, ignoring KISS channel.
int kiss_port[MAX_KISS_TCP_PORTS]; /* TCP Port number for the "TCP KISS" protocol. */
int kiss_chan[MAX_KISS_TCP_PORTS]; /* Radio Channel number for this port or -1 for all. */
int kiss_copy; /* Data from network KISS client is copied to all others. */
int enable_kiss_pt; /* Enable pseudo terminal for KISS. */
/* Want this to be off by default because it hangs */
/* after a while if nothing is reading from other end. */
char kiss_serial_port[20];
/* Serial port name for our end of the */
/* virtual null modem for native Windows apps. */
/* Version 1.5 add same capability for Linux. */
int kiss_serial_speed; /* Speed, in bps, for the KISS serial port. */
/* If 0, just leave what was already there. */
int kiss_serial_poll; /* When using Bluetooth KISS, the /dev/rfcomm0 device */
/* will appear and disappear as the remote application */
/* opens and closes the virtual COM port. */
/* When this is non-zero, we will check periodically to */
/* see if the device has appeared and we will open it. */
char gpsnmea_port[20]; /* Serial port name for reading NMEA sentences from GPS. */
/* e.g. COM22, /dev/ttyACM0 */
int gpsnmea_speed; /* Speed for above, baud, default 4800. */
char gpsd_host[20]; /* Host for gpsd server. */
/* e.g. localhost, 192.168.1.2 */
int gpsd_port; /* Port number for gpsd server. */
/* Default is 2947. */
char waypoint_serial_port[20]; /* Serial port name for sending NMEA waypoint sentences */
/* to a GPS map display or other mapping application. */
/* e.g. COM22, /dev/ttyACM0 */
/* Currently no option for setting non-standard speed. */
/* This was done in 2014 and no one has complained yet. */
char waypoint_udp_hostname[80]; /* Destination host when using UDP. */
int waypoint_udp_portnum; /* UDP port. */
int waypoint_formats; /* Which sentence formats should be generated? */
#define WPL_FORMAT_NMEA_GENERIC 0x01 /* N $GPWPL */
#define WPL_FORMAT_GARMIN 0x02 /* G $PGRMW */
#define WPL_FORMAT_MAGELLAN 0x04 /* M $PMGNWPL */
#define WPL_FORMAT_KENWOOD 0x08 /* K $PKWDWPL */
#define WPL_FORMAT_AIS 0x10 /* A !AIVDM */
int log_daily_names; /* True to generate new log file each day. */
char log_path[80]; /* Either directory or full file name depending on above. */
int dns_sd_enabled; /* DNS Service Discovery announcement enabled. */
char dns_sd_name[64]; /* Name announced on dns-sd; defaults to "Dire Wolf on <hostname>" */
int sb_configured; /* TRUE if SmartBeaconing is configured. */
int sb_fast_speed; /* MPH */
int sb_fast_rate; /* seconds */
int sb_slow_speed; /* MPH */
int sb_slow_rate; /* seconds */
int sb_turn_time; /* seconds */
int sb_turn_angle; /* degrees */
int sb_turn_slope; /* degrees * MPH */
// AX.25 connected mode.
int frack; /* Number of seconds to wait for ack to transmission. */
int retry; /* Number of times to retry before giving up. */
int paclen; /* Max number of bytes in information part of frame. */
int maxframe_basic; /* Max frames to send before ACK. mod 8 "Window" size. */
int maxframe_extended; /* Max frames to send before ACK. mod 128 "Window" size. */
int maxv22; /* Maximum number of unanswered SABME frames sent before */
/* switching to SABM. This is to handle the case of an old */
/* TNC which simply ignores SABME rather than replying with FRMR. */
char **v20_addrs; /* Stations known to understand only AX.25 v2.0 so we don't */
/* waste time trying v2.2 first. */
int v20_count; /* Number of station addresses in array above. */
char **noxid_addrs; /* Stations known not to understand XID command so don't */
/* waste time sending it and eventually giving up. */
/* AX.25 for Linux is the one known case, so far, where */
/* SABME is implemented but XID is not. */
int noxid_count; /* Number of station addresses in array above. */
// Beacons.
int num_beacons; /* Number of beacons defined. */
struct beacon_s {
enum beacon_type_e btype; /* Position or object. */
int lineno; /* Line number from config file for later error messages. */
enum sendto_type_e sendto_type;
/* SENDTO_XMIT - Usually beacons go to a radio transmitter. */
/* chan, below is the channel number. */
/* SENDTO_IGATE - Send to IGate, probably to announce my position */
/* rather than relying on someone else to hear */
/* me on the radio and report me. */
/* SENDTO_RECV - Pretend this was heard on the specified */
/* radio channel. Mostly for testing. It is a */
/* convenient way to send packets to attached apps. */
int sendto_chan; /* Transmit or simulated receive channel for above. Should be 0 for IGate. */
int delay; /* Seconds to delay before first transmission. */
int slot; /* Seconds after hour for slotted time beacons. */
/* If specified, it overrides any 'delay' value. */
int every; /* Time between transmissions, seconds. */
/* Remains fixed for PBEACON and OBEACON. */
/* Dynamically adjusted for TBEACON. */
time_t next; /* Unix time to transmit next one. */
char *source; /* NULL or explicit AX.25 source address to use */
/* instead of the mycall value for the channel. */
char *dest; /* NULL or explicit AX.25 destination to use */
/* instead of the software version such as APDW11. */
int compress; /* Use more compact form? */
char objname[10]; /* Object name. Any printable characters. */
char *via; /* Path, e.g. "WIDE1-1,WIDE2-1" or NULL. */
char *custom_info; /* Info part for handcrafted custom beacon. */
/* Ignore the rest below if this is set. */
char *custom_infocmd; /* Command to generate info part. */
/* Again, other options below are then ignored. */
int messaging; /* Set messaging attribute for position report. */
/* i.e. Data Type Indicator of '=' rather than '!' */
double lat; /* Latitude and longitude. */
double lon;
int ambiguity; /* Number of lower digits to trim from location. 0 (default), 1, 2, 3, 4. */
float alt_m; /* Altitude in meters. */
char symtab; /* Symbol table: / or \ or overlay character. */
char symbol; /* Symbol code. */
float power; /* For PHG. */
float height; /* HAAT in feet */
float gain; /* Original protocol spec was unclear. */
/* Addendum 1.1 clarifies it is dBi not dBd. */
char dir[3]; /* 1 or 2 of N,E,W,S, or empty for omni. */
float freq; /* MHz. */
float tone; /* Hz. */
float offset; /* MHz. */
char *comment; /* Comment or NULL. */
char *commentcmd; /* Command to append more to Comment or NULL. */
} beacon[MAX_BEACONS];
};
#define MIN_IP_PORT_NUMBER 1024
#define MAX_IP_PORT_NUMBER 49151
#define DEFAULT_AGWPE_PORT 8000 /* Like everyone else. */
#define DEFAULT_KISS_PORT 8001 /* Above plus 1. */
#define DEFAULT_NULLMODEM "COM3" /* should be equiv. to /dev/ttyS2 on Cygwin */
extern void config_init (char *fname, struct audio_s *p_modem,
struct digi_config_s *digi_config,
struct cdigi_config_s *cdigi_config,
struct tt_config_s *p_tt_config,
struct igate_config_s *p_igate_config,
struct misc_config_s *misc_config);
#endif /* CONFIG_H */
/* end config.h */

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debug/QtSoundModem.ini Normal file
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[General]
geometry=@ByteArray(\x1\xd9\xd0\xcb\0\x3\0\0\0\0\0\a\0\0\0\0\0\0\x3\xca\0\0\x2\xf0\0\0\0\b\0\0\0\x1f\0\0\x3\xc9\0\0\x2\xef\0\0\0\0\0\0\0\0\x5\0\0\0\0\b\0\0\0\x1f\0\0\x3\xc9\0\0\x2\xef)
windowState=@ByteArray(\0\0\0\xff\0\0\0\0\xfd\0\0\0\0\0\0\x3\xc2\0\0\x2\xbc\0\0\0\x4\0\0\0\x4\0\0\0\b\0\0\0\b\xfc\0\0\0\0)
PSKWindow=@Rect(46 499 366 140)
[AX25_A]
Retries=15
HiToneRaise=0
Maxframe=3
FrackTime=5
IdleTime=180
SlotTime=100
Persist=128
RespTime=1500
TXFrmMode=1
FrameCollector=6
ExcludeCallsigns=
ExcludeAPRSFrmType=
KISSOptimization=0
DynamicFrack=0
BitRecovery=0
NonAX25Frm=0
MEMRecovery=200
IPOLL=80
MyDigiCall=
FX25=1
IL2P=2
RSID_UI=0
RSID_SABM=0
RSID_SetModem=0
[Init]
SoundMode=0
UDPClientPort=8888
UDPServerPort=8884
TXPort=8884
UDPServer=0
UDPHost=192.168.1.255
TXSampleRate=12000
RXSampleRate=12000
SndRXDeviceName="CABLE-B OUTPUT (VB-AUDIO CABLE "
SndTXDeviceName=CABLE-B INPUT (VB-AUDIO CABLE B
SCO=0
DualPTT=1
TXRotate=0
DispMode=1
PTT=
PTTBAUD=19200
PTTMode=1
PTTOffString=
PTTOnString=
pttGPIOPin=17
pttGPIOPinR=17
CM108Addr=0xD8C:0x08
HamLibPort=4532
HamLibHost=127.0.0.1
MinimizetoTray=1
multiCore=1
Wisdom=(fftw-3.3.5 fftwf_wisdom #x08ac4c16 #x457005cc #xea102cf7 #xd7ff9038\n (fftwf_dft_vrank_geq1_register 0 #x10048 #x10048 #x0 #x2fce15e1 #x178d4f4d #x1e956a41 #xf3fd6b80)\n (fftwf_dft_buffered_register 0 #x11048 #x11048 #x0 #x4f8e87b4 #xec4f2fa0 #x79fe76a1 #xa16e32a5)\n (fftwf_codelet_t1fv_6_sse2 0 #x10048 #x10048 #x0 #xd9db29d8 #x3302fcf3 #x19ce6e5d #x869fc341)\n (fftwf_codelet_t1fv_12_sse2 0 #x10048 #x10048 #x0 #x0b0d3933 #x08267d12 #x45613873 #xde496efe)\n (fftwf_codelet_n2fv_12_sse2 0 #x10048 #x10048 #x0 #xb0767e46 #x8d41dd22 #x439264a0 #x18435a99)\n (fftwf_dft_bluestein_register 0 #x11048 #x11048 #x0 #x5e17c068 #x1682c5d6 #x89dd79be #x9b951c0f)\n (fftwf_codelet_t1fuv_8_sse2 0 #x11048 #x11048 #x0 #x34057a74 #x664db78f #xa9524ebc #x606afd88)\n (fftwf_dft_r2hc_register 0 #x11048 #x11048 #x0 #x576d5db6 #xa6a15f8a #x875d87d5 #x7561a866)\n (fftwf_dft_vrank_geq1_register 0 #x11048 #x11048 #x0 #x1e354940 #xac45f390 #x8260fb76 #x1a44862e)\n (fftwf_rdft_rank0_register 0 #x11048 #x11048 #x0 #xff75c762 #x3a0ee093 #x5b78d592 #x6b6be60e)\n (fftwf_dft_nop_register 0 #x11048 #x11048 #x0 #x4a593e24 #xb5f06ddf #xf11fe7f2 #xc010b545)\n)\n
WaterfallMin=0
WaterfallMax=3300
[AX25_B]
Retries=15
HiToneRaise=0
Maxframe=3
FrackTime=5
IdleTime=180
SlotTime=100
Persist=128
RespTime=1500
TXFrmMode=1
FrameCollector=6
ExcludeCallsigns=
ExcludeAPRSFrmType=
KISSOptimization=0
DynamicFrack=0
BitRecovery=0
NonAX25Frm=0
MEMRecovery=200
IPOLL=80
MyDigiCall=
FX25=1
IL2P=2
RSID_UI=0
RSID_SABM=0
RSID_SetModem=0
[Modem]
NRRcvrPairs1=2
NRRcvrPairs2=2
NRRcvrPairs3=0
NRRcvrPairs4=2
RcvrShift1=50
RcvrShift2=30
RcvrShift3=30
RcvrShift4=30
ModemType1=4
ModemType2=14
ModemType3=0
ModemType4=14
soundChannel1=1
soundChannel2=1
soundChannel3=0
soundChannel4=0
DCDThreshold=40
rxOffset=-100
PreEmphasisAll1=0
PreEmphasisAll2=0
PreEmphasisAll3=0
PreEmphasisAll4=0
PreEmphasisDB1=0
PreEmphasisDB2=0
PreEmphasisDB3=0
PreEmphasisDB4=0
TxDelay1=250
TxDelay2=250
TxDelay3=250
TxDelay4=250
TxTail1=50
TxTail2=50
TxTail3=50
TxTail4=50
CWIDCall=
CWIDInterval=0
CWIDLeft=0
CWIDRight=0
CWIDType=1
RXFreq1=1700
RXFreq2=1700
RXFreq3=500
RXFreq4=1700
CWIDMark=
[AGWHost]
Server=1
Port=8000
[KISS]
Server=0
Port=8105
[AX25_C]
Retries=15
HiToneRaise=0
Maxframe=3
FrackTime=5
IdleTime=180
SlotTime=100
Persist=128
RespTime=1500
TXFrmMode=1
FrameCollector=6
ExcludeCallsigns=
ExcludeAPRSFrmType=
KISSOptimization=0
DynamicFrack=0
BitRecovery=0
NonAX25Frm=0
MEMRecovery=200
IPOLL=80
MyDigiCall=
FX25=1
IL2P=0
RSID_UI=0
RSID_SABM=0
RSID_SetModem=0
[Window]
Waterfall1=1
Waterfall2=1
[AX25_D]
Retries=15
HiToneRaise=0
Maxframe=3
FrackTime=5
IdleTime=180
SlotTime=100
Persist=128
RespTime=1500
TXFrmMode=1
FrameCollector=6
ExcludeCallsigns=
ExcludeAPRSFrmType=
KISSOptimization=0
DynamicFrack=0
BitRecovery=0
NonAX25Frm=0
MEMRecovery=200
IPOLL=80
MyDigiCall=
FX25=1
IL2P=0
RSID_UI=0
RSID_SABM=0
RSID_SetModem=0

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#define _MSC_EXTENSIONS
#define _INTEGRAL_MAX_BITS 64
#define _MSC_VER 1916
#define _MSC_FULL_VER 191627050
#define _MSC_BUILD 0
#define _WIN32
#define _M_IX86 600
#define _M_IX86_FP 2
#define _CPPRTTI
#define _DEBUG
#define _MT
#define _DLL

12
debug/moc_predefs.h Normal file
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#define _MSC_EXTENSIONS
#define _INTEGRAL_MAX_BITS 64
#define _MSC_VER 1916
#define _MSC_FULL_VER 191627043
#define _MSC_BUILD 0
#define _WIN32
#define _M_IX86 600
#define _M_IX86_FP 2
#define _CPPRTTI
#define _DEBUG
#define _MT
#define _DLL

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decode_aprs.h Normal file
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/* decode_aprs.h */
#ifndef DECODE_APRS_H
#define DECODE_APRS_H 1
#ifndef G_UNKNOWN
#include "latlong.h"
#endif
#ifndef AX25_MAX_ADDR_LEN
#include "ax25_pad.h"
#endif
#ifndef APRSTT_LOC_DESC_LEN
#include "aprs_tt.h"
#endif
typedef struct decode_aprs_s {
int g_quiet; /* Suppress error messages when decoding. */
char g_src[AX25_MAX_ADDR_LEN];
char g_dest[AX25_MAX_ADDR_LEN];
char g_data_type_desc[100]; /* APRS data type description. Telemetry descriptions get pretty long. */
char g_symbol_table; /* The Symbol Table Identifier character selects one */
/* of the two Symbol Tables, or it may be used as */
/* single-character (alpha or numeric) overlay, as follows: */
/* / Primary Symbol Table (mostly stations) */
/* \ Alternate Symbol Table (mostly Objects) */
/* 0-9 Numeric overlay. Symbol from Alternate Symbol */
/* Table (uncompressed lat/long data format) */
/* a-j Numeric overlay. Symbol from Alternate */
/* Symbol Table (compressed lat/long data */
/* format only). i.e. a-j maps to 0-9 */
/* A-Z Alpha overlay. Symbol from Alternate Symbol Table */
char g_symbol_code; /* Where the Symbol Table Identifier is 0-9 or A-Z (or a-j */
/* with compressed position data only), the symbol comes from */
/* the Alternate Symbol Table, and is overlaid with the */
/* identifier (as a single digit or a capital letter). */
char g_aprstt_loc[APRSTT_LOC_DESC_LEN]; /* APRStt location from !DAO! */
double g_lat, g_lon; /* Location, degrees. Negative for South or West. */
/* Set to G_UNKNOWN if missing or error. */
char g_maidenhead[12]; /* 4 or 6 (or 8?) character maidenhead locator. */
char g_name[12]; /* Object or item name. Max. 9 characters. */
char g_addressee[12]; /* Addressee for a "message." Max. 9 characters. */
/* Also for Directed Station Query which is a */
/* special case of message. */
enum message_subtype_e { message_subtype_invalid = 0,
message_subtype_message,
message_subtype_ack,
message_subtype_rej,
message_subtype_telem_parm,
message_subtype_telem_unit,
message_subtype_telem_eqns,
message_subtype_telem_bits,
message_subtype_directed_query
} g_message_subtype; /* Various cases of the overloaded "message." */
char g_message_number[12]; /* Message number. Should be 1 - 5 alphanumeric characters if used. */
/* Addendum 1.1 has new format {mm} or {mm}aa with only two */
/* characters for message number and an ack riding piggyback. */
float g_speed_mph; /* Speed in MPH. */
/* The APRS transmission uses knots so watch out for */
/* conversions when sending and receiving APRS packets. */
float g_course; /* 0 = North, 90 = East, etc. */
int g_power; /* Transmitter power in watts. */
int g_height; /* Antenna height above average terrain, feet. */
int g_gain; /* Antenna gain in dB. */
char g_directivity[12]; /* Direction of max signal strength */
float g_range; /* Precomputed radio range in miles. */
float g_altitude_ft; /* Feet above median sea level. */
/* I used feet here because the APRS specification */
/* has units of feet for alititude. Meters would be */
/* more natural to the other 96% of the world. */
char g_mfr[80]; /* Manufacturer or application. */
char g_mic_e_status[32]; /* MIC-E message. */
double g_freq; /* Frequency, MHz */
float g_tone; /* CTCSS tone, Hz, one fractional digit */
int g_dcs; /* Digital coded squelch, print as 3 octal digits. */
int g_offset; /* Transmit offset, kHz */
char g_query_type[12]; /* General Query: APRS, IGATE, WX, ... */
/* Addressee is NOT set. */
/* Directed Station Query: exactly 5 characters. */
/* APRSD, APRST, PING?, ... */
/* Addressee is set. */
double g_footprint_lat; /* A general query may contain a foot print. */
double g_footprint_lon; /* Set all to G_UNKNOWN if not used. */
float g_footprint_radius; /* Radius in miles. */
char g_query_callsign[12]; /* Directed query may contain callsign. */
/* e.g. tell me all objects from that callsign. */
char g_weather[500]; /* Weather. Can get quite long. Rethink max size. */
char g_telemetry[256]; /* Telemetry data. Rethink max size. */
char g_comment[256]; /* Comment. */
} decode_aprs_t;
extern void decode_aprs (decode_aprs_t *A, packet_t pp, int quiet, char *third_party_src);
extern void decode_aprs_print (decode_aprs_t *A);
#endif

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void dedupe_init (int ttl);
void dedupe_remember (packet_t pp, int chan);
int dedupe_check (packet_t pp, int chan);
/* end dedupe.h */

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demod.h Normal file
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/* demod.h */
#include "audio.h" /* for struct audio_s */
#include "ax25_pad.h" /* for alevel_t */
int demod_init (struct audio_s *pa);
int demod_get_sample (int a);
void demod_process_sample (int chan, int subchan, int sam);
void demod_print_agc (int chan, int subchan);
alevel_t demod_get_audio_level (int chan, int subchan);

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demod_afsk.h Normal file
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/* demod_afsk.h */
void demod_afsk_init (int samples_per_sec, int baud, int mark_freq,
int space_freq, char profile, struct demodulator_state_s *D);
void demod_afsk_process_sample (int chan, int subchan, int sam, struct demodulator_state_s *D);

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demod_psk.h Normal file
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/* demod_psk.h */
void demod_psk_init (enum modem_t modem_type, enum v26_e v26_alt, int samples_per_sec, int bps, char profile, struct demodulator_state_s *D);
void demod_psk_process_sample (int chan, int subchan, int sam, struct demodulator_state_s *D);

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digipeater.h Normal file
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#ifndef DIGIPEATER_H
#define DIGIPEATER_H 1
#include "regex.h"
#include "direwolf.h" /* for MAX_CHANS */
#include "ax25_pad.h" /* for packet_t */
#include "audio.h" /* for radio channel properties */
/*
* Information required for digipeating.
*
* The configuration file reader fills in this information
* and it is passed to digipeater_init at application start up time.
*/
struct digi_config_s {
int dedupe_time; /* Don't digipeat duplicate packets */
/* within this number of seconds. */
#define DEFAULT_DEDUPE 30
/*
* Rules for each of the [from_chan][to_chan] combinations.
*/
regex_t alias[MAX_CHANS][MAX_CHANS];
regex_t wide[MAX_CHANS][MAX_CHANS];
int enabled[MAX_CHANS][MAX_CHANS];
enum preempt_e { PREEMPT_OFF, PREEMPT_DROP, PREEMPT_MARK, PREEMPT_TRACE } preempt[MAX_CHANS][MAX_CHANS];
// ATGP is an ugly hack for the specific need of ATGP which needs more that 8 digipeaters.
// DO NOT put this in the User Guide. On a need to know basis.
char atgp[MAX_CHANS][MAX_CHANS][AX25_MAX_ADDR_LEN];
char *filter_str[MAX_CHANS+1][MAX_CHANS+1];
// NULL or optional Packet Filter strings such as "t/m".
// Notice the size of arrays is one larger than normal.
// That extra position is for the IGate.
int regen[MAX_CHANS][MAX_CHANS]; // Regenerate packet.
// Sort of like digipeating but passed along unchanged.
};
/*
* Call once at application start up time.
*/
extern void digipeater_init (struct audio_s *p_audio_config, struct digi_config_s *p_digi_config);
/*
* Call this for each packet received.
* Suitable packets will be queued for transmission.
*/
extern void digipeater (int from_chan, packet_t pp);
void digi_regen (int from_chan, packet_t pp);
/* Make statistics available. */
int digipeater_get_count (int from_chan, int to_chan);
#endif
/* end digipeater.h */

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/*------------------------------------------------------------------
*
* Module: dlq.h
*
*---------------------------------------------------------------*/
#ifndef DLQ_H
#define DLQ_H 1
#include "ax25_pad.h"
#include "audio.h"
/* A transmit or receive data block for connected mode. */
typedef struct cdata_s {
int magic; /* For integrity checking. */
#define TXDATA_MAGIC 0x09110911
struct cdata_s *next; /* Pointer to next when part of a list. */
int pid; /* Protocol id. */
int size; /* Number of bytes allocated. */
int len; /* Number of bytes actually used. */
char data[]; /* Variable length data. */
} cdata_t;
/* Types of things that can be in queue. */
typedef enum dlq_type_e {DLQ_REC_FRAME, DLQ_CONNECT_REQUEST, DLQ_DISCONNECT_REQUEST, DLQ_XMIT_DATA_REQUEST, DLQ_REGISTER_CALLSIGN, DLQ_UNREGISTER_CALLSIGN, DLQ_OUTSTANDING_FRAMES_REQUEST, DLQ_CHANNEL_BUSY, DLQ_SEIZE_CONFIRM, DLQ_CLIENT_CLEANUP} dlq_type_t;
/* A queue item. */
// TODO: call this event rather than item.
// TODO: should add fences.
typedef struct dlq_item_s {
struct dlq_item_s *nextp; /* Next item in queue. */
dlq_type_t type; /* Type of item. */
/* See enum definition above. */
int chan; /* Radio channel of origin. */
// I'm not worried about amount of memory used but this might be a
// little clearer if a union was used for the different event types.
// Used for received frame.
int subchan; /* Winning "subchannel" when using multiple */
/* decoders on one channel. */
/* Special case, -1 means DTMF decoder. */
/* Maybe we should have a different type in this case? */
int slice; /* Winning slicer. */
packet_t pp; /* Pointer to frame structure. */
alevel_t alevel; /* Audio level. */
int is_fx25; /* Was it from FX.25? */
retry_t retries; /* Effort expended to get a valid CRC. */
/* Bits changed for regular AX.25. */
/* Number of bytes fixed for FX.25. */
char spectrum[MAX_SUBCHANS*MAX_SLICERS+1]; /* "Spectrum" display for multi-decoders. */
// Used by requests from a client application, connect, etc.
char addrs[AX25_MAX_ADDRS][AX25_MAX_ADDR_LEN];
int num_addr; /* Range 2 .. 10. */
int client;
// Used only by client request to transmit connected data.
cdata_t *txdata;
// Used for channel activity change.
// It is useful to know when the channel is busy either for carrier detect
// or when we are transmitting.
int activity; /* OCTYPE_PTT for my transmission start/end. */
/* OCTYPE_DCD if we hear someone else. */
int status; /* 1 for active or 0 for quiet. */
} dlq_item_t;
void dlq_init (void);
void dlq_rec_frame (int chan, int subchan, int slice, packet_t pp, alevel_t alevel, int is_fx25, retry_t retries, char *spectrum);
void dlq_connect_request (char addrs[AX25_MAX_ADDRS][AX25_MAX_ADDR_LEN], int num_addr, int chan, int client, int pid);
void dlq_disconnect_request (char addrs[AX25_MAX_ADDRS][AX25_MAX_ADDR_LEN], int num_addr, int chan, int client);
void dlq_outstanding_frames_request (char addrs[AX25_MAX_ADDRS][AX25_MAX_ADDR_LEN], int num_addr, int chan, int client);
void dlq_xmit_data_request (char addrs[AX25_MAX_ADDRS][AX25_MAX_ADDR_LEN], int num_addr, int chan, int client, int pid, char *xdata_ptr, int xdata_len);
void dlq_register_callsign (char addr[AX25_MAX_ADDR_LEN], int chan, int client);
void dlq_unregister_callsign (char addr[AX25_MAX_ADDR_LEN], int chan, int client);
void dlq_channel_busy (int chan, int activity, int status);
void dlq_seize_confirm (int chan);
void dlq_client_cleanup (int client);
int dlq_wait_while_empty (double timeout_val);
struct dlq_item_s *dlq_remove (void);
void dlq_delete (struct dlq_item_s *pitem);
cdata_t *cdata_new (int pid, char *data, int len);
void cdata_delete (cdata_t *txdata);
void cdata_check_leak (void);
#endif
/* end dlq.h */

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#if (USE_AVAHI_CLIENT|USE_MACOS_DNSSD)
char *dns_sd_default_service_name(void);
#endif

10
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#if (USE_AVAHI_CLIENT|USE_MACOS_DNSSD)
#include "config.h"
#define DNS_SD_SERVICE "_kiss-tnc._tcp"
void dns_sd_announce (struct misc_config_s *mc);
#endif // USE_AVAHI_CLIENT

18
dtime_now.h Normal file
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extern double dtime_realtime (void);
extern double dtime_monotonic (void);
void timestamp_now (char *result, int result_size, int show_ms);
void timestamp_user_format (char *result, int result_size, char *user_format);
void timestamp_filename (char *result, int result_size);
// FIXME: remove temp workaround.
// Needs many scattered updates.
#define dtime_now dtime_realtime

14
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/* dtmf.h */
#include "audio.h"
void dtmf_init (struct audio_s *p_audio_config, int amp);
char dtmf_sample (int c, float input);
int dtmf_send (int chan, char *str, int speed, int txdelay, int txtail);
/* end dtmf.h */

4184
dw9600.c Normal file

File diff suppressed because it is too large Load Diff

2042
dw9600.h Normal file

File diff suppressed because it is too large Load Diff

61
dwgps.h Normal file
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/* dwgps.h */
#ifndef DWGPS_H
#define DWGPS_H 1
#include <time.h>
#include "config.h" /* for struct misc_config_s */
/*
* Values for fix, equivalent to values from libgps.
* -2 = not initialized.
* -1 = error communicating with GPS receiver.
* 0 = nothing heard yet.
* 1 = had signal but lost it.
* 2 = 2D.
* 3 = 3D.
*
* Undefined float & double values are set to G_UNKNOWN.
*
*/
enum dwfix_e { DWFIX_NOT_INIT= -2, DWFIX_ERROR= -1, DWFIX_NOT_SEEN=0, DWFIX_NO_FIX=1, DWFIX_2D=2, DWFIX_3D=3 };
typedef enum dwfix_e dwfix_t;
typedef struct dwgps_info_s {
time_t timestamp; /* When last updated. System time. */
dwfix_t fix; /* Quality of position fix. */
double dlat; /* Latitude. Valid if fix >= 2. */
double dlon; /* Longitude. Valid if fix >= 2. */
float speed_knots; /* libgps uses meters/sec but we use GPS usual knots. */
float track; /* What is difference between track and course? */
float altitude; /* meters above mean sea level. Valid if fix == 3. */
} dwgps_info_t;
void dwgps_init (struct misc_config_s *pconfig, int debug);
void dwgps_clear (dwgps_info_t *gpsinfo);
dwfix_t dwgps_read (dwgps_info_t *gpsinfo);
void dwgps_print (char *msg, dwgps_info_t *gpsinfo);
void dwgps_term (void);
void dwgps_set_data (dwgps_info_t *gpsinfo);
#endif /* DWGPS_H 1 */
/* end dwgps.h */

22
dwgpsd.h Normal file
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/* dwgpsd.h - For communicating with daemon */
#ifndef DWGPSD_H
#define DWGPSD_H 1
#include "config.h"
int dwgpsd_init (struct misc_config_s *pconfig, int debug);
void dwgpsd_term (void);
#endif
/* end dwgpsd.h */

32
dwgpsnmea.h Normal file
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/* dwgpsnmea.h - For reading NMEA sentences over serial port */
#ifndef DWGPSNMEA_H
#define DWGPSNMEA_H 1
#include "dwgps.h" /* for dwfix_t */
#include "config.h"
#include "serial_port.h" /* for MYFDTYPE */
int dwgpsnmea_init (struct misc_config_s *pconfig, int debug);
MYFDTYPE dwgpsnmea_get_fd(char *wp_port_name, int speed);
void dwgpsnmea_term (void);
dwfix_t dwgpsnmea_gprmc (char *sentence, int quiet, double *odlat, double *odlon, float *oknots, float *ocourse);
dwfix_t dwgpsnmea_gpgga (char *sentence, int quiet, double *odlat, double *odlon, float *oalt, int *onsat);
#endif
/* end dwgpsnmea.h */

21
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/* dwsock.h - Socket helper functions. */
#ifndef DWSOCK_H
#define DWSOCK_H 1
#define DWSOCK_IPADDR_LEN 48 // Size of string to hold IPv4 or IPv6 address.
// I think 40 would be adequate but we'll make
// it a little larger just to be safe.
// Use INET6_ADDRSTRLEN (from netinet/in.h) instead?
int dwsock_init (void);
int dwsock_connect (char *hostname, char *port, char *description, int allow_ipv6, int debug, char ipaddr_str[DWSOCK_IPADDR_LEN]);
/* ipaddr_str needs to be at least SOCK_IPADDR_LEN bytes */
char *dwsock_ia_to_text (int Family, void * pAddr, char * pStringBuf, size_t StringBufSize);
void dwsock_close (int fd);
#endif

17
encode_aprs.h Normal file
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int encode_position (int messaging, int compressed, double lat, double lon, int ambiguity, int alt_ft,
char symtab, char symbol,
int power, int height, int gain, char *dir,
int course, int speed_knots,
float freq, float tone, float offset,
char *comment,
char *presult, size_t result_size);
int encode_object (char *name, int compressed, time_t thyme, double lat, double lon, int ambiguity,
char symtab, char symbol,
int power, int height, int gain, char *dir,
int course, int speed_knots,
float freq, float tone, float offset, char *comment,
char *presult, size_t result_size);
int encode_message (char *addressee, char *text, char *id, char *presult, size_t result_size);

11
fcs_calc.h Normal file
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/* fcs_calc.h */
unsigned short fcs_calc (unsigned char *data, int len);
unsigned short crc16 (unsigned char *data, int len, unsigned short seed);
/* end fcs_calc.h */

7
fsk_filters.h Normal file
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/* 1200 bits/sec with Audio sample rate = 11025 */
/* Mark freq = 1200, Space freq = 2200 */
static const signed short m_sin_table[9] = { 0 , 7347 , 11257 , 9899 , 3909 , -3909 , -9899 , -11257 , -7347 };
static const signed short m_cos_table[9] = { 11431 , 8756 , 1984 , -5715 , -10741 , -10741 , -5715 , 1984 , 8756 };
static const signed short s_sin_table[9] = { 0 , 10950 , 6281 , -7347 , -10496 , 1327 , 11257 , 5130 , -8314 };
static const signed short s_cos_table[9] = { 11431 , 3278 , -9550 , -8756 , 4527 , 11353 , 1984 , -10215 , -7844 };

15
fsk_gen_filter.h Normal file
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#ifndef FSK_GEN_FILTER_H
#define FSK_GEN_FILTER_H 1
#include "audio.h"
#include "fsk_demod_state.h"
void fsk_gen_filter (int samples_per_sec,
int baud,
int mark_freq, int space_freq,
char profile,
struct demodulator_state_s *D);
#endif

17
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/*
* gen_tone.h
*/
int gen_tone_init (struct audio_s *pp, int amp, int gen_packets);
//int gen_tone_open (int nchan, int sample_rate, int bit_rate, int f1, int f2, int amp, char *fname);
//int gen_tone_open_fd (int nchan, int sample_rate, int bit_rate, int f1, int f2, int amp, int fd) ;
//int gen_tone_close (void);
void tone_gen_put_bit (int chan, int dat);
void gen_tone_put_sample (int chan, int a, int sam);

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grm_sym.h Normal file
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/*
* grm_sym.h
*
* Symbol codes for use in $PGRMWPL sentence.
*
* Copied from
* Garmin Device Interface Specification
* May 19, 2006
* Drawing Number: 001-00063-00 Rev. C
*/
typedef unsigned short symbol_type_t;
enum symbol_type_e
{
/*---------------------------------------------------------------
Marine symbols
---------------------------------------------------------------*/
sym_anchor = 0, /* white anchor symbol */
sym_bell = 1, /* white bell symbol */
sym_diamond_grn = 2, /* green diamond symbol */
sym_diamond_red = 3, /* red diamond symbol */
sym_dive1 = 4, /* diver down flag 1 */
sym_dive2 = 5, /* diver down flag 2 */
sym_dollar = 6, /* white dollar symbol */
sym_fish = 7, /* white fish symbol */
sym_fuel = 8, /* white fuel symbol */
sym_horn = 9, /* white horn symbol */
sym_house = 10, /* white house symbol */
sym_knife = 11, /* white knife & fork symbol */
sym_light = 12, /* white light symbol */
sym_mug = 13, /* white mug symbol */
sym_skull = 14, /* white skull and crossbones symbol*/
sym_square_grn = 15, /* green square symbol */
sym_square_red = 16, /* red square symbol */
sym_wbuoy = 17, /* white buoy waypoint symbol */
sym_wpt_dot = 18, /* waypoint dot */
sym_wreck = 19, /* white wreck symbol */
sym_null = 20, /* null symbol (transparent) */
sym_mob = 21, /* man overboard symbol */
sym_buoy_ambr = 22, /* amber map buoy symbol */
sym_buoy_blck = 23, /* black map buoy symbol */
sym_buoy_blue = 24, /* blue map buoy symbol */
sym_buoy_grn = 25, /* green map buoy symbol */
sym_buoy_grn_red = 26, /* green/red map buoy symbol */
sym_buoy_grn_wht = 27, /* green/white map buoy symbol */
sym_buoy_orng = 28, /* orange map buoy symbol */
sym_buoy_red = 29, /* red map buoy symbol */
sym_buoy_red_grn = 30, /* red/green map buoy symbol */
sym_buoy_red_wht = 31, /* red/white map buoy symbol */
sym_buoy_violet = 32, /* violet map buoy symbol */
sym_buoy_wht = 33, /* white map buoy symbol */
sym_buoy_wht_grn = 34, /* white/green map buoy symbol */
sym_buoy_wht_red = 35, /* white/red map buoy symbol */
sym_dot = 36, /* white dot symbol */
sym_rbcn = 37, /* radio beacon symbol */
sym_boat_ramp = 150, /* boat ramp symbol */
sym_camp = 151, /* campground symbol */
sym_restrooms = 152, /* restrooms symbol */
sym_showers = 153, /* shower symbol */
sym_drinking_wtr = 154, /* drinking water symbol */
sym_phone = 155, /* telephone symbol */
sym_1st_aid = 156, /* first aid symbol */
sym_info = 157, /* information symbol */
sym_parking = 158, /* parking symbol */
sym_park = 159, /* park symbol */
sym_picnic = 160, /* picnic symbol */
sym_scenic = 161, /* scenic area symbol */
sym_skiing = 162, /* skiing symbol */
sym_swimming = 163, /* swimming symbol */
sym_dam = 164, /* dam symbol */
sym_controlled = 165, /* controlled area symbol */
sym_danger = 166, /* danger symbol */
sym_restricted = 167, /* restricted area symbol */
sym_null_2 = 168, /* null symbol */
sym_ball = 169, /* ball symbol */
sym_car = 170, /* car symbol */
sym_deer = 171, /* deer symbol */
sym_shpng_cart = 172, /* shopping cart symbol */
sym_lodging = 173, /* lodging symbol */
sym_mine = 174, /* mine symbol */
sym_trail_head = 175, /* trail head symbol */
sym_truck_stop = 176, /* truck stop symbol */
sym_user_exit = 177, /* user exit symbol */
sym_flag = 178, /* flag symbol */
sym_circle_x = 179, /* circle with x in the center */
sym_open_24hr = 180, /* open 24 hours symbol */
sym_fhs_facility = 181, /* U Fishing Hot Spots(tm) Facility */
sym_bot_cond = 182, /* Bottom Conditions */
sym_tide_pred_stn = 183, /* Tide/Current Prediction Station */
sym_anchor_prohib = 184, /* U anchor prohibited symbol */
sym_beacon = 185, /* U beacon symbol */
sym_coast_guard = 186, /* U coast guard symbol */
sym_reef = 187, /* U reef symbol */
sym_weedbed = 188, /* U weedbed symbol */
sym_dropoff = 189, /* U dropoff symbol */
sym_dock = 190, /* U dock symbol */
sym_marina = 191, /* U marina symbol */
sym_bait_tackle = 192, /* U bait and tackle symbol */
sym_stump = 193, /* U stump symbol */
/*---------------------------------------------------------------
User customizable symbols
The values from sym_begin_custom to sym_end_custom inclusive are
reserved for the identification of user customizable symbols.
---------------------------------------------------------------*/
sym_begin_custom = 7680, /* first user customizable symbol */
sym_end_custom = 8191, /* last user customizable symbol */
/*---------------------------------------------------------------
Land symbols
---------------------------------------------------------------*/
sym_is_hwy = 8192, /* interstate hwy symbol */
sym_us_hwy = 8193, /* us hwy symbol */
sym_st_hwy = 8194, /* state hwy symbol */
sym_mi_mrkr = 8195, /* mile marker symbol */
sym_trcbck = 8196, /* TracBack (feet) symbol */
sym_golf = 8197, /* golf symbol */
sym_sml_cty = 8198, /* small city symbol */
sym_med_cty = 8199, /* medium city symbol */
sym_lrg_cty = 8200, /* large city symbol */
sym_freeway = 8201, /* intl freeway hwy symbol */
sym_ntl_hwy = 8202, /* intl national hwy symbol */
sym_cap_cty = 8203, /* capitol city symbol (star) */
sym_amuse_pk = 8204, /* amusement park symbol */
sym_bowling = 8205, /* bowling symbol */
sym_car_rental = 8206, /* car rental symbol */
sym_car_repair = 8207, /* car repair symbol */
sym_fastfood = 8208, /* fast food symbol */
sym_fitness = 8209, /* fitness symbol */
sym_movie = 8210, /* movie symbol */
sym_museum = 8211, /* museum symbol */
sym_pharmacy = 8212, /* pharmacy symbol */
sym_pizza = 8213, /* pizza symbol */
sym_post_ofc = 8214, /* post office symbol */
sym_rv_park = 8215, /* RV park symbol */
sym_school = 8216, /* school symbol */
sym_stadium = 8217, /* stadium symbol */
sym_store = 8218, /* dept. store symbol */
sym_zoo = 8219, /* zoo symbol */
sym_gas_plus = 8220, /* convenience store symbol */
sym_faces = 8221, /* live theater symbol */
sym_ramp_int = 8222, /* ramp intersection symbol */
sym_st_int = 8223, /* street intersection symbol */
sym_weigh_sttn = 8226, /* inspection/weigh station symbol */
sym_toll_booth = 8227, /* toll booth symbol */
sym_elev_pt = 8228, /* elevation point symbol */
sym_ex_no_srvc = 8229, /* exit without services symbol */
sym_geo_place_mm = 8230, /* Geographic place name, man-made */
sym_geo_place_wtr = 8231, /* Geographic place name, water */
sym_geo_place_lnd = 8232, /* Geographic place name, land */
sym_bridge = 8233, /* bridge symbol */
sym_building = 8234, /* building symbol */
sym_cemetery = 8235, /* cemetery symbol */
sym_church = 8236, /* church symbol */
sym_civil = 8237, /* civil location symbol */
sym_crossing = 8238, /* crossing symbol */
sym_hist_town = 8239, /* historical town symbol */
sym_levee = 8240, /* levee symbol */
sym_military = 8241, /* military location symbol */
sym_oil_field = 8242, /* oil field symbol */
sym_tunnel = 8243, /* tunnel symbol */
sym_beach = 8244, /* beach symbol */
sym_forest = 8245, /* forest symbol */
sym_summit = 8246, /* summit symbol */
sym_lrg_ramp_int = 8247, /* large ramp intersection symbol */
sym_lrg_ex_no_srvc = 8248, /* large exit without services smbl */
sym_badge = 8249, /* police/official badge symbol */
sym_cards = 8250, /* gambling/casino symbol */
sym_snowski = 8251, /* snow skiing symbol */
sym_iceskate = 8252, /* ice skating symbol */
sym_wrecker = 8253, /* tow truck (wrecker) symbol */
sym_border = 8254, /* border crossing (port of entry) */
sym_geocache = 8255, /* geocache location */
sym_geocache_fnd = 8256, /* found geocache */
sym_cntct_smiley = 8257, /* Rino contact symbol, "smiley" */
sym_cntct_ball_cap = 8258, /* Rino contact symbol, "ball cap" */
sym_cntct_big_ears = 8259, /* Rino contact symbol, "big ear" */
sym_cntct_spike = 8260, /* Rino contact symbol, "spike" */
sym_cntct_goatee = 8261, /* Rino contact symbol, "goatee" */
sym_cntct_afro = 8262, /* Rino contact symbol, "afro" */
sym_cntct_dreads = 8263, /* Rino contact symbol, "dreads" */
sym_cntct_female1 = 8264, /* Rino contact symbol, "female 1" */
sym_cntct_female2 = 8265, /* Rino contact symbol, "female 2" */
sym_cntct_female3 = 8266, /* Rino contact symbol, "female 3" */
sym_cntct_ranger = 8267, /* Rino contact symbol, "ranger" */
sym_cntct_kung_fu = 8268, /* Rino contact symbol, "kung fu" */
sym_cntct_sumo = 8269, /* Rino contact symbol, "sumo" */
sym_cntct_pirate = 8270, /* Rino contact symbol, "pirate" */
sym_cntct_biker = 8271, /* Rino contact symbol, "biker" */
sym_cntct_alien = 8272, /* Rino contact symbol, "alien" */
sym_cntct_bug = 8273, /* Rino contact symbol, "bug" */
sym_cntct_cat = 8274, /* Rino contact symbol, "cat" */
sym_cntct_dog = 8275, /* Rino contact symbol, "dog" */
sym_cntct_pig = 8276, /* Rino contact symbol, "pig" */
sym_hydrant = 8282, /* water hydrant symbol */
sym_flag_blue = 8284, /* blue flag symbol */
sym_flag_green = 8285, /* green flag symbol */
sym_flag_red = 8286, /* red flag symbol */
sym_pin_blue = 8287, /* blue pin symbol */
sym_pin_green = 8288, /* green pin symbol */
sym_pin_red = 8289, /* red pin symbol */
sym_block_blue = 8290, /* blue block symbol */
sym_block_green = 8291, /* green block symbol */
sym_block_red = 8292, /* red block symbol */
sym_bike_trail = 8293, /* bike trail symbol */
sym_circle_red = 8294, /* red circle symbol */
sym_circle_green = 8295, /* green circle symbol */
sym_circle_blue = 8296, /* blue circle symbol */
sym_diamond_blue = 8299, /* blue diamond symbol */
sym_oval_red = 8300, /* red oval symbol */
sym_oval_green = 8301, /* green oval symbol */
sym_oval_blue = 8302, /* blue oval symbol */
sym_rect_red = 8303, /* red rectangle symbol */
sym_rect_green = 8304, /* green rectangle symbol */
sym_rect_blue = 8305, /* blue rectangle symbol */
sym_square_blue = 8308, /* blue square symbol */
sym_letter_a_red = 8309, /* red letter 'A' symbol */
sym_letter_b_red = 8310, /* red letter 'B' symbol */
sym_letter_c_red = 8311, /* red letter 'C' symbol */
sym_letter_d_red = 8312, /* red letter 'D' symbol */
sym_letter_a_green = 8313, /* green letter 'A' symbol */
sym_letter_c_green = 8314, /* green letter 'C' symbol */
sym_letter_b_green = 8315, /* green letter 'B' symbol */
sym_letter_d_green = 8316, /* green letter 'D' symbol */
sym_letter_a_blue = 8317, /* blue letter 'A' symbol */
sym_letter_b_blue = 8318, /* blue letter 'B' symbol */
sym_letter_c_blue = 8319, /* blue letter 'C' symbol */
sym_letter_d_blue = 8320, /* blue letter 'D' symbol */
sym_number_0_red = 8321, /* red number '0' symbol */
sym_number_1_red = 8322, /* red number '1' symbol */
sym_number_2_red = 8323, /* red number '2' symbol */
sym_number_3_red = 8324, /* red number '3' symbol */
sym_number_4_red = 8325, /* red number '4' symbol */
sym_number_5_red = 8326, /* red number '5' symbol */
sym_number_6_red = 8327, /* red number '6' symbol */
sym_number_7_red = 8328, /* red number '7' symbol */
sym_number_8_red = 8329, /* red number '8' symbol */
sym_number_9_red = 8330, /* red number '9' symbol */
sym_number_0_green = 8331, /* green number '0' symbol */
sym_number_1_green = 8332, /* green number '1' symbol */
sym_number_2_green = 8333, /* green number '2' symbol */
sym_number_3_green = 8334, /* green number '3' symbol */
sym_number_4_green = 8335, /* green number '4' symbol */
sym_number_5_green = 8336, /* green number '5' symbol */
sym_number_6_green = 8337, /* green number '6' symbol */
sym_number_7_green = 8338, /* green number '7' symbol */
sym_number_8_green = 8339, /* green number '8' symbol */
sym_number_9_green = 8340, /* green number '9' symbol */
sym_number_0_blue = 8341, /* blue number '0' symbol */
sym_number_1_blue = 8342, /* blue number '1' symbol */
sym_number_2_blue = 8343, /* blue number '2' symbol */
sym_number_3_blue = 8344, /* blue number '3' symbol */
sym_number_4_blue = 8345, /* blue number '4' symbol */
sym_number_5_blue = 8346, /* blue number '5' symbol */
sym_number_6_blue = 8347, /* blue number '6' symbol */
sym_number_7_blue = 8348, /* blue number '7' symbol */
sym_number_8_blue = 8349, /* blue number '8' symbol */
sym_number_9_blue = 8350, /* blue number '9' symbol */
sym_triangle_blue = 8351, /* blue triangle symbol */
sym_triangle_green = 8352, /* green triangle symbol */
sym_triangle_red = 8353, /* red triangle symbol */
sym_food_asian = 8359, /* asian food symbol */
sym_food_deli = 8360, /* deli symbol */
sym_food_italian = 8361, /* italian food symbol */
sym_food_seafood = 8362, /* seafood symbol */
sym_food_steak = 8363, /* steak symbol */
/*---------------------------------------------------------------
Aviation symbols
---------------------------------------------------------------*/
sym_airport = 16384, /* airport symbol */
sym_int = 16385, /* intersection symbol */
sym_ndb = 16386, /* non-directional beacon symbol */
sym_vor = 16387, /* VHF omni-range symbol */
sym_heliport = 16388, /* heliport symbol */
sym_private = 16389, /* private field symbol */
sym_soft_fld = 16390, /* soft field symbol */
sym_tall_tower = 16391, /* tall tower symbol */
sym_short_tower = 16392, /* short tower symbol */
sym_glider = 16393, /* glider symbol */
sym_ultralight = 16394, /* ultralight symbol */
sym_parachute = 16395, /* parachute symbol */
sym_vortac = 16396, /* VOR/TACAN symbol */
sym_vordme = 16397, /* VOR-DME symbol */
sym_faf = 16398, /* first approach fix */
sym_lom = 16399, /* localizer outer marker */
sym_map = 16400, /* missed approach point */
sym_tacan = 16401, /* TACAN symbol */
sym_seaplane = 16402, /* Seaplane Base */
};
/*
* Mapping from APRS symbols to Garmin.
*/
// TODO: NEEDS MORE WORK!!!
#define SYMTAB_SIZE 95
#define sym_default sym_diamond_grn
static const symbol_type_t grm_primary_symtab[SYMTAB_SIZE] = {
sym_default, // 00 --no-symbol--
sym_cntct_ranger, // ! 01 Police, Sheriff
sym_default, // " 02 reserved (was rain)
sym_rbcn, // # 03 DIGI (white center)
sym_phone, // $ 04 PHONE
sym_rbcn, // % 05 DX CLUSTER
sym_rbcn, // & 06 HF GATEway
sym_glider, // ' 07 Small AIRCRAFT
sym_rbcn, // ( 08 Mobile Satellite Station
sym_default, // ) 09 Wheelchair (handicapped)
sym_car, // * 10 SnowMobile
sym_1st_aid, // + 11 Red Cross
sym_cntct_ball_cap, // , 12 Boy Scouts
sym_house, // - 13 House QTH (VHF)
sym_default, // . 14 X
sym_default, // / 15 Red Dot
sym_default, // 0 16 # circle (obsolete)
sym_default, // 1 17 TBD
sym_default, // 2 18 TBD
sym_default, // 3 19 TBD
sym_default, // 4 20 TBD
sym_default, // 5 21 TBD
sym_default, // 6 22 TBD
sym_default, // 7 23 TBD
sym_default, // 8 24 TBD
sym_default, // 9 25 TBD
sym_default, // : 26 FIRE
sym_camp, // ; 27 Campground (Portable ops)
sym_cntct_biker, // < 28 Motorcycle
sym_default, // = 29 RAILROAD ENGINE
sym_car, // > 30 CAR
sym_default, // ? 31 SERVER for Files
sym_default, // @ 32 HC FUTURE predict (dot)
sym_1st_aid, // A 33 Aid Station
sym_rbcn, // B 34 BBS or PBBS
sym_boat_ramp, // C 35 Canoe
sym_default, // D 36
sym_default, // E 37 EYEBALL (Eye catcher!)
sym_default, // F 38 Farm Vehicle (tractor)
sym_default, // G 39 Grid Square (6 digit)
sym_lodging, // H 40 HOTEL (blue bed symbol)
sym_rbcn, // I 41 TcpIp on air network stn
sym_default, // J 42
sym_school, // K 43 School
sym_default, // L 44 PC user
sym_default, // M 45 MacAPRS
sym_default, // N 46 NTS Station
sym_parachute, // O 47 BALLOON
sym_cntct_ranger, // P 48 Police
sym_default, // Q 49 TBD
sym_rv_park, // R 50 REC. VEHICLE
sym_glider, // S 51 SHUTTLE
sym_default, // T 52 SSTV
sym_car, // U 53 BUS
sym_cntct_biker, // V 54 ATV
sym_default, // W 55 National WX Service Site
sym_default, // X 56 HELO
sym_default, // Y 57 YACHT (sail)
sym_default, // Z 58 WinAPRS
sym_cntct_smiley, // [ 59 Human/Person (HT)
sym_triangle_green, // \ 60 TRIANGLE(DF station)
sym_default, // ] 61 MAIL/PostOffice(was PBBS)
sym_glider, // ^ 62 LARGE AIRCRAFT
sym_default, // _ 63 WEATHER Station (blue)
sym_rbcn, // ` 64 Dish Antenna
sym_1st_aid, // a 65 AMBULANCE
sym_cntct_biker, // b 66 BIKE
sym_default, // c 67 Incident Command Post
sym_hydrant, // d 68 Fire dept
sym_deer, // e 69 HORSE (equestrian)
sym_hydrant, // f 70 FIRE TRUCK
sym_glider, // g 71 Glider
sym_1st_aid, // h 72 HOSPITAL
sym_default, // i 73 IOTA (islands on the air)
sym_car, // j 74 JEEP
sym_car, // k 75 TRUCK
sym_default, // l 76 Laptop
sym_rbcn, // m 77 Mic-E Repeater
sym_default, // n 78 Node (black bulls-eye)
sym_default, // o 79 EOC
sym_cntct_dog, // p 80 ROVER (puppy, or dog)
sym_default, // q 81 GRID SQ shown above 128 m
sym_rbcn, // r 82 Repeater
sym_default, // s 83 SHIP (pwr boat)
sym_truck_stop, // t 84 TRUCK STOP
sym_truck_stop, // u 85 TRUCK (18 wheeler)
sym_car, // v 86 VAN
sym_drinking_wtr, // w 87 WATER station
sym_default, // x 88 xAPRS (Unix)
sym_tall_tower, // y 89 YAGI @ QTH
sym_default, // z 90 TBD
sym_default, // { 91
sym_default, // | 92 TNC Stream Switch
sym_default, // } 93
sym_default }; // ~ 94 TNC Stream Switch
static const symbol_type_t grm_alternate_symtab[SYMTAB_SIZE] = {
sym_default, // 00 --no-symbol--
sym_default, // ! 01 EMERGENCY (!)
sym_default, // " 02 reserved
sym_default, // # 03 OVERLAY DIGI (green star)
sym_default, // $ 04 Bank or ATM (green box)
sym_default, // % 05 Power Plant with overlay
sym_rbcn, // & 06 I=Igte IGate R=RX T=1hopTX 2=2hopTX
sym_default, // ' 07 Crash (& now Incident sites)
sym_default, // ( 08 CLOUDY (other clouds w ovrly)
sym_hydrant, // ) 09 Firenet MEO, MODIS Earth Obs.
sym_default, // * 10 SNOW (& future ovrly codes)
sym_default, // + 11 Church
sym_cntct_female1, // , 12 Girl Scouts
sym_house, // - 13 House (H=HF) (O = Op Present)
sym_default, // . 14 Ambiguous (Big Question mark)
sym_default, // / 15 Waypoint Destination
sym_default, // 0 16 CIRCLE (E/I/W=IRLP/Echolink/WIRES)
sym_default, // 1 17
sym_default, // 2 18
sym_default, // 3 19
sym_default, // 4 20
sym_default, // 5 21
sym_default, // 6 22
sym_default, // 7 23
sym_default, // 8 24 802.11 or other network node
sym_default, // 9 25 Gas Station (blue pump)
sym_default, // : 26 Hail (& future ovrly codes)
sym_park, // ; 27 Park/Picnic area
sym_default, // < 28 ADVISORY (one WX flag)
sym_rbcn, // = 29 APRStt Touchtone (DTMF users)
sym_car, // > 30 OVERLAID CAR
sym_default, // ? 31 INFO Kiosk (Blue box with ?)
sym_default, // @ 32 HURRICANE/Trop-Storm
sym_default, // A 33 overlayBOX DTMF & RFID & XO
sym_default, // B 34 Blwng Snow (& future codes)
sym_coast_guard, // C 35 Coast Guard
sym_default, // D 36 Drizzle (proposed APRStt)
sym_default, // E 37 Smoke (& other vis codes)
sym_default, // F 38 Freezng rain (&future codes)
sym_default, // G 39 Snow Shwr (& future ovrlys)
sym_default, // H 40 Haze (& Overlay Hazards)
sym_default, // I 41 Rain Shower
sym_default, // J 42 Lightning (& future ovrlys)
sym_rbcn, // K 43 Kenwood HT (W)
sym_light, // L 44 Lighthouse
sym_default, // M 45 MARS (A=Army,N=Navy,F=AF)
sym_default, // N 46 Navigation Buoy
sym_default, // O 47 Rocket
sym_default, // P 48 Parking
sym_default, // Q 49 QUAKE
sym_default, // R 50 Restaurant
sym_rbcn, // S 51 Satellite/Pacsat
sym_default, // T 52 Thunderstorm
sym_default, // U 53 SUNNY
sym_default, // V 54 VORTAC Nav Aid
sym_default, // W 55 # NWS site (NWS options)
sym_pharmacy, // X 56 Pharmacy Rx (Apothicary)
sym_rbcn, // Y 57 Radios and devices
sym_default, // Z 58
sym_default, // [ 59 W.Cloud (& humans w Ovrly)
sym_default, // \ 60 New overlayable GPS symbol
sym_default, // ] 61
sym_glider, // ^ 62 # Aircraft (shows heading)
sym_default, // _ 63 # WX site (green digi)
sym_default, // ` 64 Rain (all types w ovrly)
sym_default, // a 65 ARRL, ARES, WinLINK
sym_default, // b 66 Blwng Dst/Snd (& others)
sym_default, // c 67 CD triangle RACES/SATERN/etc
sym_default, // d 68 DX spot by callsign
sym_default, // e 69 Sleet (& future ovrly codes)
sym_default, // f 70 Funnel Cloud
sym_default, // g 71 Gale Flags
sym_default, // h 72 Store. or HAMFST Hh=HAM store
sym_default, // i 73 BOX or points of Interest
sym_default, // j 74 WorkZone (Steam Shovel)
sym_car, // k 75 Special Vehicle SUV,ATV,4x4
sym_default, // l 76 Areas (box,circles,etc)
sym_default, // m 77 Value Sign (3 digit display)
sym_default, // n 78 OVERLAY TRIANGLE
sym_default, // o 79 small circle
sym_default, // p 80 Prtly Cldy (& future ovrlys)
sym_default, // q 81
sym_restrooms, // r 82 Restrooms
sym_default, // s 83 OVERLAY SHIP/boat (top view)
sym_default, // t 84 Tornado
sym_car, // u 85 OVERLAID TRUCK
sym_car, // v 86 OVERLAID Van
sym_default, // w 87 Flooding
sym_wreck, // x 88 Wreck or Obstruction ->X<-
sym_default, // y 89 Skywarn
sym_default, // z 90 OVERLAID Shelter
sym_default, // { 91 Fog (& future ovrly codes)
sym_default, // | 92 TNC Stream Switch
sym_default, // } 93
sym_default }; // ~ 94 TNC Stream Switch

17
hdlc_send.h Normal file
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@ -0,0 +1,17 @@
/* hdlc_send.h */
// In version 1.7 an extra layer of abstraction was added here.
// Rather than calling hdlc_send_frame, we now use another function
// which sends AX.25, FX.25, or IL2P depending on
#include "ax25_pad.h"
#include "audio.h"
int layer2_send_frame (int chan, packet_t pp, int bad_fcs, struct audio_s *audio_config_p);
int layer2_preamble_postamble (int chan, int flags, int finish, struct audio_s *audio_config_p);
/* end hdlc_send.h */

128
igate.h Normal file
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@ -0,0 +1,128 @@
/*----------------------------------------------------------------------------
*
* Name: igate.h
*
* Purpose: Interface to the Internet Gateway functions.
*
*-----------------------------------------------------------------------------*/
#ifndef IGATE_H
#define IGATE_H 1
#include "ax25_pad.h"
#include "digipeater.h"
#include "audio.h"
#define DEFAULT_IGATE_PORT 14580
struct igate_config_s {
/*
* For logging into the IGate server.
*/
char t2_server_name[40]; /* Tier 2 IGate server name. */
int t2_server_port; /* Typically 14580. */
char t2_login[AX25_MAX_ADDR_LEN];/* e.g. WA9XYZ-15 */
/* Note that the ssid could be any two alphanumeric */
/* characters not just 1 thru 15. */
/* Could be same or different than the radio call(s). */
/* Not sure what the consequences would be. */
char t2_passcode[8]; /* Max. 5 digits. Could be "-1". */
char *t2_filter; /* Optional filter for IS -> RF direction. */
/* This is the "server side" filter. */
/* A better name would be subscription or something */
/* like that because we can only ask for more. */
/*
* For transmitting.
*/
int tx_chan; /* Radio channel for transmitting. */
/* 0=first, etc. -1 for none. */
/* Presently IGate can transmit on only a single channel. */
/* A future version might generalize this. */
/* Each transmit channel would have its own client side filtering. */
char tx_via[80]; /* VIA path for transmitting third party packets. */
/* Usual text representation. */
/* Must start with "," if not empty so it can */
/* simply be inserted after the destination address. */
int max_digi_hops; /* Maximum number of digipeater hops possible for via path. */
/* Derived from the SSID when last character of address is a digit. */
/* e.g. "WIDE1-1,WIDE5-2" would be 3. */
/* This is useful to know so we can determine how many */
/* stations we might be able to reach. */
int tx_limit_1; /* Max. packets to transmit in 1 minute. */
int tx_limit_5; /* Max. packets to transmit in 5 minutes. */
int igmsp; /* Number of message sender position reports to allow. */
/* Common practice is to default to 1. */
/* We allow additional flexibility of 0 to disable feature */
/* or a small number to allow more. */
/*
* Receiver to IS data options.
*/
int rx2ig_dedupe_time; /* seconds. 0 to disable. */
/*
* Special SATgate mode to delay packets heard directly.
*/
int satgate_delay; /* seconds. 0 to disable. */
};
#define IGATE_TX_LIMIT_1_DEFAULT 6
#define IGATE_TX_LIMIT_1_MAX 20
#define IGATE_TX_LIMIT_5_DEFAULT 20
#define IGATE_TX_LIMIT_5_MAX 80
#define IGATE_RX2IG_DEDUPE_TIME 0 /* Issue 85. 0 means disable dupe checking in RF>IS direction. */
/* See comments in rx_to_ig_remember & rx_to_ig_allow. */
/* Currently there is no configuration setting to change this. */
#define DEFAULT_SATGATE_DELAY 10
#define MIN_SATGATE_DELAY 5
#define MAX_SATGATE_DELAY 30
/* Call this once at startup */
void igate_init (struct audio_s *p_audio_config, struct igate_config_s *p_igate_config, struct digi_config_s *p_digi_config, int debug_level);
/* Call this with each packet received from the radio. */
void igate_send_rec_packet (int chan, packet_t recv_pp);
/* This when digipeater transmits. Set bydigi to 1 . */
void ig_to_tx_remember (packet_t pp, int chan, int bydigi);
/* Get statistics for IGATE status beacon. */
int igate_get_msg_cnt (void);
int igate_get_pkt_cnt (void);
int igate_get_upl_cnt (void);
int igate_get_dnl_cnt (void);
#endif

97
il2p.c
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@ -48,6 +48,7 @@ along with QtSoundModem. If not, see http://www.gnu.org/licenses
#include "UZ7HOStuff.h"
void Debugprintf(const char * format, ...);
int SMUpdatePhaseConstellation(int chan, float * Phases, float * Mags, int intPSKPhase, int Count);
#define MAX_ADEVS 3
@ -69,6 +70,10 @@ void Debugprintf(const char * format, ...);
#define max(x, y) ((x) > (y) ? (x) : (y))
#define min(x, y) ((x) < (y) ? (x) : (y))
extern int nPhases[4][16][nr_emph + 1];
extern float Phases[4][16][nr_emph + 1][4096];
extern float Mags[4][16][nr_emph + 1][4096];
/* For option to try fixing frames with bad CRC. */
typedef enum retry_e {
@ -106,6 +111,7 @@ int MaxMagIndex = 0;
#include <stdint.h> // for uint64_t
extern unsigned int pskStates[4];
/* Reed-Solomon codec control block */
struct rs {
@ -702,7 +708,7 @@ packet_t ax25_new(void)
//if (new_count > delete_count + 100) {
if (new_count > delete_count + 256) {
Debugprintf("Report to WB2OSZ - Memory leak for packet objects. new=%d, delete=%d\n", new_count, delete_count);
Debugprintf("Memory leak for packet objects. new=%d, delete=%d\n", new_count, delete_count);
#if AX25MEMDEBUG
#endif
}
@ -1004,7 +1010,8 @@ void multi_modem_process_rec_packet(int snd_ch, int subchan, int slice, packet_t
struct TDetector_t * pDET = &DET[emph][subchan];
string * data = newString();
char Mode[16] = "IL2P";
char Mode[32] = "IL2P";
int Quality = 0;
sprintf(Mode, "IL2P %d", centreFreq);
@ -1038,6 +1045,12 @@ void multi_modem_process_rec_packet(int snd_ch, int subchan, int slice, packet_t
string * xx = newString();
memset(xx->Data, 0, 16);
if (pskStates[snd_ch])
{
Quality = SMUpdatePhaseConstellation(snd_ch, &Phases[snd_ch][subchan][slice][0], &Mags[snd_ch][subchan][slice][0], pskStates[snd_ch], nPhases[snd_ch][subchan][slice]);
sprintf(Mode, "%s][Q%d", Mode, Quality);
}
Add(&detect_list_c[snd_ch], xx);
Add(&detect_list[snd_ch], data);
@ -1045,6 +1058,8 @@ void multi_modem_process_rec_packet(int snd_ch, int subchan, int slice, packet_t
// sprintf(Mode, "IP2P-%d", retries);
stringAdd(xx, Mode, strlen(Mode));
return;
}
@ -2256,6 +2271,7 @@ int il2p_decode_rs(unsigned char *rec_block, int data_size, int num_parity, unsi
int derrlocs[FX25_MAX_CHECK]; // Half would probably be OK.
int derrors = DECODE_RS(il2p_find_rs(num_parity), rs_block, derrlocs, 0);
memcpy(out, rs_block + sizeof(rs_block) - n, data_size);
if (il2p_get_debug() >= 3) {
@ -2753,7 +2769,6 @@ void fx_hex_dump(unsigned char *p, int len)
int il2p_encode_frame(packet_t pp, int max_fec, unsigned char *iout)
{
// Can a type 1 header be used?
unsigned char hdr[IL2P_HEADER_SIZE + IL2P_HEADER_PARITY];
@ -2772,6 +2787,7 @@ int il2p_encode_frame(packet_t pp, int max_fec, unsigned char *iout)
}
// Payload is AX.25 info part.
unsigned char *pinfo;
int info_len;
info_len = ax25_get_info(pp, &pinfo);
@ -3583,6 +3599,12 @@ int il2p_clarify_header(unsigned char *rec_hdr, unsigned char *corrected_descram
int e = il2p_decode_rs(rec_hdr, IL2P_HEADER_SIZE, IL2P_HEADER_PARITY, corrected);
if (e > 1) // only have 2 rs bytes so can only detect 1 error
{
Debugprintf("Header correction seems ok but errors > 1");
return -1;
}
il2p_descramble_block(corrected, corrected_descrambled_hdr, IL2P_HEADER_SIZE);
return (e);
@ -3857,38 +3879,7 @@ int il2p_decode_payload(unsigned char *received, int payload_size, int max_fec,
// end il2p_payload.c
struct il2p_context_s {
enum { IL2P_SEARCHING = 0, IL2P_HEADER, IL2P_PAYLOAD, IL2P_DECODE } state;
unsigned int acc; // Accumulate most recent 24 bits for sync word matching.
// Lower 8 bits are also used for accumulating bytes for
// the header and payload.
int bc; // Bit counter so we know when a complete byte has been accumulated.
int polarity; // 1 if opposite of expected polarity.
unsigned char shdr[IL2P_HEADER_SIZE + IL2P_HEADER_PARITY];
// Scrambled header as received over the radio. Includes parity.
int hc; // Number if bytes placed in above.
unsigned char uhdr[IL2P_HEADER_SIZE]; // Header after FEC and unscrambling.
int eplen; // Encoded payload length. This is not the nuumber from
// from the header but rather the number of encoded bytes to gather.
unsigned char spayload[IL2P_MAX_ENCODED_PAYLOAD_SIZE];
// Scrambled and encoded payload as received over the radio.
int pc; // Number of bytes placed in above.
int corrected; // Number of symbols corrected by RS FEC.
};
static struct il2p_context_s *il2p_context[MAX_CHANS][MAX_SUBCHANS][MAX_SLICERS];
struct il2p_context_s *il2p_context[4][16][3];
/***********************************************************************************
@ -3948,7 +3939,8 @@ void il2p_rec_bit(int chan, int subchan, int slice, int dbit)
F->state = IL2P_HEADER;
F->bc = 0;
F->hc = 0;
nPhases[chan][subchan][slice] = 0;
// Determine Centre Freq
centreFreq[chan] = GuessCentreFreq(chan);
@ -3962,6 +3954,7 @@ void il2p_rec_bit(int chan, int subchan, int slice, int dbit)
F->bc = 0;
F->hc = 0;
centreFreq[chan] = GuessCentreFreq(chan);
nPhases[chan][subchan][slice] = 0;
}
break;
@ -4005,6 +3998,12 @@ void il2p_rec_bit(int chan, int subchan, int slice, int dbit)
plprop.large_block_count, plprop.large_block_size, plprop.parity_symbols_per_block);
}
if (len > 340)
{
Debugprintf("Packet too big for QtSM");
// F->state = IL2P_SEARCHING;
// return;
}
if (F->eplen >= 1) { // Need to gather payload.
F->pc = 0;
F->state = IL2P_PAYLOAD;
@ -4277,12 +4276,12 @@ string * il2p_send_frame(int chan, packet_t pp, int max_fec, int polarity)
int preamblecount;
unsigned char preamble[1024];
encoded[0] = (IL2P_SYNC_WORD >> 16) & 0xff;
encoded[1] = (IL2P_SYNC_WORD >> 8) & 0xff;
encoded[2] = (IL2P_SYNC_WORD) & 0xff;
int elen = il2p_encode_frame(pp, max_fec, encoded + IL2P_SYNC_WORD_SIZE);
if (elen <= 0) {
Debugprintf("IL2P: Unable to encode frame into IL2P.\n");
return (packet);
@ -4301,14 +4300,27 @@ string * il2p_send_frame(int chan, packet_t pp, int max_fec, int polarity)
// Try using preaamble for txdelay
preamblecount = (txdelay[chan] * tx_baudrate[chan]) / 8000; // 8 for bits, 1000 for mS
// Nino now uses 00 as preamble for QPSK
if (preamblecount > 1024)
preamblecount = 1024;
// We don't need txdelay between frames in one transmission
memset(preamble, IL2P_PREAMBLE, preamblecount);
stringAdd(packet, preamble, preamblecount);
if (Continuation[chan] == 0)
{
preamblecount = (txdelay[chan] * tx_bitrate[chan]) / 8000; // 8 for bits, 1000 for mS
if (preamblecount > 1024)
preamblecount = 1024;
if (pskStates[chan]) // PSK Modes
memset(preamble, 01, preamblecount);
else
memset(preamble, IL2P_PREAMBLE, preamblecount);
stringAdd(packet, preamble, preamblecount);
Continuation[chan] = 1;
}
stringAdd(packet, encoded, elen);
tx_fx25_size[chan] = packet->Length * 8;
@ -4351,7 +4363,6 @@ string * fill_il2p_data(int snd_ch, string * data)
string * result;
packet_t pp = ax25_new();
// Call il2p_send_frame to build the bit stream
pp->frame_len = data->Length - 2; // Included CRC

24
kiss.h Normal file
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@ -0,0 +1,24 @@
/*
* Name: kiss.h
*
* This is for the pseudo terminal KISS interface.
*/
#include "ax25_pad.h" /* for packet_t */
#include "config.h"
#include "kiss_frame.h" // for struct kissport_status_s
void kisspt_init (struct misc_config_s *misc_config);
void kisspt_send_rec_packet (int chan, int kiss_cmd, unsigned char *fbuf, int flen,
struct kissport_status_s *notused1, int notused2);
void kisspt_set_debug (int n);
/* end kiss.h */

126
kiss_frame.h Normal file
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@ -0,0 +1,126 @@
/* kiss_frame.h */
#ifndef KISS_FRAME_H
#define KISS_FRAME_H
#include "audio.h" /* for struct audio_s */
/*
* The first byte of a KISS frame has:
* channel in upper nybble.
* command in lower nybble.
*/
#define KISS_CMD_DATA_FRAME 0
#define KISS_CMD_TXDELAY 1
#define KISS_CMD_PERSISTENCE 2
#define KISS_CMD_SLOTTIME 3
#define KISS_CMD_TXTAIL 4
#define KISS_CMD_FULLDUPLEX 5
#define KISS_CMD_SET_HARDWARE 6
#define XKISS_CMD_DATA 12 // Not supported. http://he.fi/pub/oh7lzb/bpq/multi-kiss.pdf
#define XKISS_CMD_POLL 14 // Not supported.
#define KISS_CMD_END_KISS 15
/*
* Special characters used by SLIP protocol.
*/
#define FEND 0xC0
#define FESC 0xDB
#define TFEND 0xDC
#define TFESC 0xDD
enum kiss_state_e {
KS_SEARCHING = 0, /* Looking for FEND to start KISS frame. */
/* Must be 0 so we can simply zero whole structure to initialize. */
KS_COLLECTING}; /* In process of collecting KISS frame. */
#define MAX_KISS_LEN 2048 /* Spec calls for at least 1024. */
/* Might want to make it longer to accommodate */
/* maximum packet length. */
#define MAX_NOISE_LEN 100
typedef struct kiss_frame_s {
enum kiss_state_e state;
unsigned char kiss_msg[MAX_KISS_LEN];
/* Leading FEND is optional. */
/* Contains escapes and ending FEND. */
int kiss_len;
unsigned char noise[MAX_NOISE_LEN];
int noise_len;
} kiss_frame_t;
// This is used only for TCPKISS but it put in kissnet.h,
// there would be a circular dependency between the two header files.
// Each KISS TCP port has its own status block.
struct kissport_status_s {
struct kissport_status_s *pnext; // To next in list.
volatile int arg2; // temp for passing second arg into
// kissnet_listen_thread
int tcp_port; // default 8001
int chan; // Radio channel for this tcp port.
// -1 for all.
// The default is a limit of 3 client applications at the same time.
// You can increase the limit by changing the line below.
// A larger number consumes more resources so don't go crazy by making it larger than needed.
// TODO: Should this be moved to direwolf.h so max number of audio devices
// client apps are in the same place?
#define MAX_NET_CLIENTS 3
int client_sock[MAX_NET_CLIENTS];
/* File descriptor for socket for */
/* communication with client application. */
/* Set to -1 if not connected. */
/* (Don't use SOCKET type because it is unsigned.) */
kiss_frame_t kf[MAX_NET_CLIENTS];
/* Accumulated KISS frame and state of decoder. */
};
#ifndef KISSUTIL
void kiss_frame_init (struct audio_s *pa);
#endif
int kiss_encapsulate (unsigned char *in, int ilen, unsigned char *out);
int kiss_unwrap (unsigned char *in, int ilen, unsigned char *out);
void kiss_rec_byte (kiss_frame_t *kf, unsigned char ch, int debug, struct kissport_status_s *kps, int client,
void (*sendfun)(int chan, int kiss_cmd, unsigned char *fbuf, int flen, struct kissport_status_s *onlykps, int onlyclient));
typedef enum fromto_e { FROM_CLIENT=0, TO_CLIENT=1 } fromto_t;
void kiss_process_msg (unsigned char *kiss_msg, int kiss_len, int debug, struct kissport_status_s *kps, int client,
void (*sendfun)(int chan, int kiss_cmd, unsigned char *fbuf, int flen, struct kissport_status_s *onlykps, int onlyclient));
void kiss_debug_print (fromto_t fromto, char *special, unsigned char *pmsg, int msg_len);
#endif // KISS_FRAME_H
/* end kiss_frame.h */

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@ -473,7 +473,7 @@ void sendAckModeAcks(int snd_ch)
// Socket to reply to is on end
Msg += (temp->Length - 4);
Msg += (temp->Length - sizeof(void *));
memcpy(&socket, Msg, sizeof(void *));

29
kissnet.h Normal file
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@ -0,0 +1,29 @@
/*
* Name: kissnet.h
*/
#ifndef KISSNET_H
#define KISSNET_H
#include "ax25_pad.h" /* for packet_t */
#include "config.h"
#include "kiss_frame.h"
void kissnet_init (struct misc_config_s *misc_config);
void kissnet_send_rec_packet (int chan, int kiss_cmd, unsigned char *fbuf, int flen,
struct kissport_status_s *onlykps, int onlyclient);
void kiss_net_set_debug (int n);
void kissnet_copy (unsigned char *kiss_msg, int kiss_len, int chan, int cmd, struct kissport_status_s *from_kps, int from_client);
#endif // KISSNET_H
/* end kissnet.h */

23
kissserial.h Normal file
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@ -0,0 +1,23 @@
/*
* Name: kissserial.h
*/
#include "ax25_pad.h" /* for packet_t */
#include "config.h"
#include "kiss_frame.h"
void kissserial_init (struct misc_config_s *misc_config);
void kissserial_send_rec_packet (int chan, int kiss_cmd, unsigned char *fbuf, int flen,
struct kissport_status_s *notused1, int notused2);
void kissserial_set_debug (int n);
/* end kissserial.h */

24
latlong.h Normal file
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@ -0,0 +1,24 @@
/* latlong.h */
/* Use this value for unknown latitude/longitude or other values. */
#define G_UNKNOWN (-999999)
void latitude_to_str (double dlat, int ambiguity, char *slat);
void longitude_to_str (double dlong, int ambiguity, char *slong);
void latitude_to_comp_str (double dlat, char *clat);
void longitude_to_comp_str (double dlon, char *clon);
void latitude_to_nmea (double dlat, char *slat, char *hemi);
void longitude_to_nmea (double dlong, char *slong, char *hemi);
double latitude_from_nmea (char *pstr, char *phemi);
double longitude_from_nmea (char *pstr, char *phemi);
double ll_distance_km (double lat1, double lon1, double lat2, double lon2);
int ll_from_grid_square (char *maidenhead, double *dlat, double *dlon);

BIN
libfftw3f-64-3.lib Normal file

Binary file not shown.

19
log.h Normal file
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@ -0,0 +1,19 @@
/* log.h */
#include "hdlc_rec2.h" // for retry_t
#include "decode_aprs.h" // for decode_aprs_t
#include "ax25_pad.h"
void log_init (int daily_names, char *path);
void log_write (int chan, decode_aprs_t *A, packet_t pp, alevel_t alevel, retry_t retries);
void log_rr_bits (decode_aprs_t *A, packet_t pp);
void log_term (void);

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@ -67,7 +67,7 @@ int main(int argc, char *argv[])
w = new QtSoundModem();
char Title[128];
sprintf(Title, "QtSoundModem Version %s Ports %d/%d", VersionString, AGWPort, KISSPort);
sprintf(Title, "QtSoundModem Version %s Ports %d%s/%d%s", VersionString, AGWPort, AGWServ ? "*" : "", KISSPort, KISSServ ? "*" : "");
w->setWindowTitle(Title);
w->show();

276
mgn_icon.h Normal file
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@ -0,0 +1,276 @@
/*
* MGN_icon.h
*
* Waypoint icon codes for use in the $PMGNWPL sentence.
*
* Derived from Data Transmission Protocol For Magellan Products - version 2.11, March 2003
*
* http://www.gpsinformation.org/mag-proto-2-11.pdf
*
*
* That's 13 years ago. There should be something newer available but I can't find it.
*
* The is based on the newer models at the time. Earlier models had shorter incompatible icon lists.
*/
#define MGN_crossed_square "a"
#define MGN_box "b"
#define MGN_house "c"
#define MGN_aerial "d"
#define MGN_airport "e"
#define MGN_amusement_park "f"
#define MGN_ATM "g"
#define MGN_auto_repair "h"
#define MGN_boating "I"
#define MGN_camping "j"
#define MGN_exit_ramp "k"
#define MGN_first_aid "l"
#define MGN_nav_aid "m"
#define MGN_buoy "n"
#define MGN_fuel "o"
#define MGN_garden "p"
#define MGN_golf "q"
#define MGN_hotel "r"
#define MGN_hunting_fishing "s"
#define MGN_large_city "t"
#define MGN_lighthouse "u"
#define MGN_major_city "v"
#define MGN_marina "w"
#define MGN_medium_city "x"
#define MGN_museum "y"
#define MGN_obstruction "z"
#define MGN_park "aa"
#define MGN_resort "ab"
#define MGN_restaurant "ac"
#define MGN_rock "ad"
#define MGN_scuba "ae"
#define MGN_RV_service "af"
#define MGN_shooting "ag"
#define MGN_sight_seeing "ah"
#define MGN_small_city "ai"
#define MGN_sounding "aj"
#define MGN_sports_arena "ak"
#define MGN_tourist_info "al"
#define MGN_truck_service "am"
#define MGN_winery "an"
#define MGN_wreck "ao"
#define MGN_zoo "ap"
/*
* Mapping from APRS symbols to Magellan.
*
* This is a bit of a challenge because there
* are no icons for moving objects.
* We can use airport for flying things but
* what about wheeled transportation devices?
*/
// TODO: NEEDS MORE WORK!!!
#define MGN_default MGN_crossed_square
#define SYMTAB_SIZE 95
static const char mgn_primary_symtab[SYMTAB_SIZE][3] = {
MGN_default, // 00 --no-symbol--
MGN_default, // ! 01 Police, Sheriff
MGN_default, // " 02 reserved (was rain)
MGN_aerial, // # 03 DIGI (white center)
MGN_default, // $ 04 PHONE
MGN_aerial, // % 05 DX CLUSTER
MGN_aerial, // & 06 HF GATEway
MGN_airport, // ' 07 Small AIRCRAFT
MGN_aerial, // ( 08 Mobile Satellite Station
MGN_default, // ) 09 Wheelchair (handicapped)
MGN_default, // * 10 SnowMobile
MGN_default, // + 11 Red Cross
MGN_default, // , 12 Boy Scouts
MGN_house, // - 13 House QTH (VHF)
MGN_default, // . 14 X
MGN_default, // / 15 Red Dot
MGN_default, // 0 16 # circle (obsolete)
MGN_default, // 1 17 TBD
MGN_default, // 2 18 TBD
MGN_default, // 3 19 TBD
MGN_default, // 4 20 TBD
MGN_default, // 5 21 TBD
MGN_default, // 6 22 TBD
MGN_default, // 7 23 TBD
MGN_default, // 8 24 TBD
MGN_default, // 9 25 TBD
MGN_default, // : 26 FIRE
MGN_camping, // ; 27 Campground (Portable ops)
MGN_default, // < 28 Motorcycle
MGN_default, // = 29 RAILROAD ENGINE
MGN_default, // > 30 CAR
MGN_default, // ? 31 SERVER for Files
MGN_default, // @ 32 HC FUTURE predict (dot)
MGN_first_aid, // A 33 Aid Station
MGN_aerial, // B 34 BBS or PBBS
MGN_boating, // C 35 Canoe
MGN_default, // D 36
MGN_default, // E 37 EYEBALL (Eye catcher!)
MGN_default, // F 38 Farm Vehicle (tractor)
MGN_default, // G 39 Grid Square (6 digit)
MGN_hotel, // H 40 HOTEL (blue bed symbol)
MGN_aerial, // I 41 TcpIp on air network stn
MGN_default, // J 42
MGN_default, // K 43 School
MGN_default, // L 44 PC user
MGN_default, // M 45 MacAPRS
MGN_aerial, // N 46 NTS Station
MGN_airport, // O 47 BALLOON
MGN_default, // P 48 Police
MGN_default, // Q 49 TBD
MGN_RV_service, // R 50 REC. VEHICLE
MGN_airport, // S 51 SHUTTLE
MGN_default, // T 52 SSTV
MGN_default, // U 53 BUS
MGN_default, // V 54 ATV
MGN_default, // W 55 National WX Service Site
MGN_default, // X 56 HELO
MGN_boating, // Y 57 YACHT (sail)
MGN_default, // Z 58 WinAPRS
MGN_default, // [ 59 Human/Person (HT)
MGN_default, // \ 60 TRIANGLE(DF station)
MGN_default, // ] 61 MAIL/PostOffice(was PBBS)
MGN_airport, // ^ 62 LARGE AIRCRAFT
MGN_default, // _ 63 WEATHER Station (blue)
MGN_aerial, // ` 64 Dish Antenna
MGN_default, // a 65 AMBULANCE
MGN_default, // b 66 BIKE
MGN_default, // c 67 Incident Command Post
MGN_default, // d 68 Fire dept
MGN_zoo, // e 69 HORSE (equestrian)
MGN_default, // f 70 FIRE TRUCK
MGN_airport, // g 71 Glider
MGN_default, // h 72 HOSPITAL
MGN_default, // i 73 IOTA (islands on the air)
MGN_default, // j 74 JEEP
MGN_default, // k 75 TRUCK
MGN_default, // l 76 Laptop
MGN_aerial, // m 77 Mic-E Repeater
MGN_default, // n 78 Node (black bulls-eye)
MGN_default, // o 79 EOC
MGN_zoo, // p 80 ROVER (puppy, or dog)
MGN_default, // q 81 GRID SQ shown above 128 m
MGN_aerial, // r 82 Repeater
MGN_default, // s 83 SHIP (pwr boat)
MGN_default, // t 84 TRUCK STOP
MGN_default, // u 85 TRUCK (18 wheeler)
MGN_default, // v 86 VAN
MGN_default, // w 87 WATER station
MGN_aerial, // x 88 xAPRS (Unix)
MGN_aerial, // y 89 YAGI @ QTH
MGN_default, // z 90 TBD
MGN_default, // { 91
MGN_default, // | 92 TNC Stream Switch
MGN_default, // } 93
MGN_default }; // ~ 94 TNC Stream Switch
static const char mgn_alternate_symtab[SYMTAB_SIZE][3] = {
MGN_default, // 00 --no-symbol--
MGN_default, // ! 01 EMERGENCY (!)
MGN_default, // " 02 reserved
MGN_aerial, // # 03 OVERLAY DIGI (green star)
MGN_ATM, // $ 04 Bank or ATM (green box)
MGN_default, // % 05 Power Plant with overlay
MGN_aerial, // & 06 I=Igte IGate R=RX T=1hopTX 2=2hopTX
MGN_default, // ' 07 Crash (& now Incident sites)
MGN_default, // ( 08 CLOUDY (other clouds w ovrly)
MGN_aerial, // ) 09 Firenet MEO, MODIS Earth Obs.
MGN_default, // * 10 SNOW (& future ovrly codes)
MGN_default, // + 11 Church
MGN_default, // , 12 Girl Scouts
MGN_house, // - 13 House (H=HF) (O = Op Present)
MGN_default, // . 14 Ambiguous (Big Question mark)
MGN_default, // / 15 Waypoint Destination
MGN_default, // 0 16 CIRCLE (E/I/W=IRLP/Echolink/WIRES)
MGN_default, // 1 17
MGN_default, // 2 18
MGN_default, // 3 19
MGN_default, // 4 20
MGN_default, // 5 21
MGN_default, // 6 22
MGN_default, // 7 23
MGN_aerial, // 8 24 802.11 or other network node
MGN_fuel, // 9 25 Gas Station (blue pump)
MGN_default, // : 26 Hail (& future ovrly codes)
MGN_park, // ; 27 Park/Picnic area
MGN_default, // < 28 ADVISORY (one WX flag)
MGN_default, // = 29 APRStt Touchtone (DTMF users)
MGN_default, // > 30 OVERLAID CAR
MGN_tourist_info, // ? 31 INFO Kiosk (Blue box with ?)
MGN_default, // @ 32 HURRICANE/Trop-Storm
MGN_box, // A 33 overlayBOX DTMF & RFID & XO
MGN_default, // B 34 Blwng Snow (& future codes)
MGN_boating, // C 35 Coast Guard
MGN_default, // D 36 Drizzle (proposed APRStt)
MGN_default, // E 37 Smoke (& other vis codes)
MGN_default, // F 38 Freezng rain (&future codes)
MGN_default, // G 39 Snow Shwr (& future ovrlys)
MGN_default, // H 40 Haze (& Overlay Hazards)
MGN_default, // I 41 Rain Shower
MGN_default, // J 42 Lightning (& future ovrlys)
MGN_default, // K 43 Kenwood HT (W)
MGN_lighthouse, // L 44 Lighthouse
MGN_default, // M 45 MARS (A=Army,N=Navy,F=AF)
MGN_buoy, // N 46 Navigation Buoy
MGN_airport, // O 47 Rocket
MGN_default, // P 48 Parking
MGN_default, // Q 49 QUAKE
MGN_restaurant, // R 50 Restaurant
MGN_aerial, // S 51 Satellite/Pacsat
MGN_default, // T 52 Thunderstorm
MGN_default, // U 53 SUNNY
MGN_nav_aid, // V 54 VORTAC Nav Aid
MGN_default, // W 55 # NWS site (NWS options)
MGN_default, // X 56 Pharmacy Rx (Apothicary)
MGN_aerial, // Y 57 Radios and devices
MGN_default, // Z 58
MGN_default, // [ 59 W.Cloud (& humans w Ovrly)
MGN_default, // \ 60 New overlayable GPS symbol
MGN_default, // ] 61
MGN_airport, // ^ 62 # Aircraft (shows heading)
MGN_default, // _ 63 # WX site (green digi)
MGN_default, // ` 64 Rain (all types w ovrly)
MGN_aerial, // a 65 ARRL, ARES, WinLINK
MGN_default, // b 66 Blwng Dst/Snd (& others)
MGN_default, // c 67 CD triangle RACES/SATERN/etc
MGN_default, // d 68 DX spot by callsign
MGN_default, // e 69 Sleet (& future ovrly codes)
MGN_default, // f 70 Funnel Cloud
MGN_default, // g 71 Gale Flags
MGN_default, // h 72 Store. or HAMFST Hh=HAM store
MGN_box, // i 73 BOX or points of Interest
MGN_default, // j 74 WorkZone (Steam Shovel)
MGN_default, // k 75 Special Vehicle SUV,ATV,4x4
MGN_default, // l 76 Areas (box,circles,etc)
MGN_default, // m 77 Value Sign (3 digit display)
MGN_default, // n 78 OVERLAY TRIANGLE
MGN_default, // o 79 small circle
MGN_default, // p 80 Prtly Cldy (& future ovrlys)
MGN_default, // q 81
MGN_default, // r 82 Restrooms
MGN_default, // s 83 OVERLAY SHIP/boat (top view)
MGN_default, // t 84 Tornado
MGN_default, // u 85 OVERLAID TRUCK
MGN_default, // v 86 OVERLAID Van
MGN_default, // w 87 Flooding
MGN_wreck, // x 88 Wreck or Obstruction ->X<-
MGN_default, // y 89 Skywarn
MGN_default, // z 90 OVERLAID Shelter
MGN_default, // { 91 Fog (& future ovrly codes)
MGN_default, // | 92 TNC Stream Switch
MGN_default, // } 93
MGN_default }; // ~ 94 TNC Stream Switch

20
mheard.h Normal file
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@ -0,0 +1,20 @@
/* mheard.h */
#include "decode_aprs.h" // for decode_aprs_t
void mheard_init (int debug);
void mheard_save_rf (int chan, decode_aprs_t *A, packet_t pp, alevel_t alevel, retry_t retries);
void mheard_save_is (char *ptext);
int mheard_count (int max_hops, int time_limit);
int mheard_was_recently_nearby (char *role, char *callsign, int time_limit, int max_hops, double dlat, double dlon, double km);
void mheard_set_msp (char *callsign, int num);
int mheard_get_msp (char *callsign);

8
morse.h Normal file
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@ -0,0 +1,8 @@
/* morse.h */
int morse_init (struct audio_s *audio_config_p, int amp) ;
int morse_send (int chan, char *str, int wpm, int txdelay, int txtail);
#define MORSE_DEFAULT_WPM 10

24
multi_modem.h Normal file
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@ -0,0 +1,24 @@
/* multi_modem.h */
#ifndef MULTI_MODEM_H
#define MULTI_MODEM 1
/* Needed for typedef retry_t. */
#include "hdlc_rec2.h"
/* Needed for struct audio_s */
#include "audio.h"
void multi_modem_init (struct audio_s *pmodem);
void multi_modem_process_sample (int c, int audio_sample);
int multi_modem_get_dc_average (int chan);
// Deprecated. Replace with ...packet
void multi_modem_process_rec_frame (int chan, int subchan, int slice, unsigned char *fbuf, int flen, alevel_t alevel, retry_t retries, int is_fx25);
void multi_modem_process_rec_packet (int chan, int subchan, int slice, packet_t pp, alevel_t alevel, retry_t retries, int is_fx25);
#endif

13
pfilter.h Normal file
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@ -0,0 +1,13 @@
/* pfilter.h */
#include "igate.h" // for igate_config_s
void pfilter_init (struct igate_config_s *p_igate_config, int debug_level);
int pfilter (int from_chan, int to_chan, char *filter, packet_t pp, int is_aprs);
int is_telem_metadata (char *infop);

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@ -48,7 +48,7 @@ extern int PacketMonLength;
#define ARDOPBufferSize 12000 * 100
short ARDOPTXBuffer[4][12000 * 100]; // Enough to hold whole frame of samples
short ARDOPTXBuffer[4][ARDOPBufferSize]; // Enough to hold whole frame of samples
int ARDOPTXLen[4] = { 0,0,0,0 }; // Length of frame
int ARDOPTXPtr[4] = { 0,0,0,0 }; // Tx Pointer

26
ptt.h Normal file
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#ifndef PTT_H
#define PTT_H 1
#include "audio.h" /* for struct audio_s and definitions for octype values */
void ptt_set_debug(int debug);
void ptt_init (struct audio_s *p_modem);
void ptt_set (int octype, int chan, int ptt);
void ptt_term (void);
int get_input (int it, int chan);
#endif
/* end ptt.h */

6
recv.h Normal file
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@ -0,0 +1,6 @@
/* recv.h */
void recv_init (struct audio_s *pa);
void recv_process (void);

15
redecode.h Normal file
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@ -0,0 +1,15 @@
#ifndef REDECODE_H
#define REDECODE_H 1
#include "rrbb.h"
extern void redecode_init (struct audio_s *p_audio_config);
#endif
/* end redecode.h */

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@ -0,0 +1,11 @@
#define _MSC_EXTENSIONS
#define _INTEGRAL_MAX_BITS 64
#define _MSC_VER 1916
#define _MSC_FULL_VER 191627043
#define _MSC_BUILD 0
#define _WIN32
#define _M_IX86 600
#define _M_IX86_FP 2
#define _CPPRTTI
#define _MT
#define _DLL

11
release/moc_predefs.h Normal file
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@ -0,0 +1,11 @@
#define _MSC_EXTENSIONS
#define _INTEGRAL_MAX_BITS 64
#define _MSC_VER 1916
#define _MSC_FULL_VER 191627043
#define _MSC_BUILD 0
#define _WIN32
#define _M_IX86 600
#define _M_IX86_FP 2
#define _CPPRTTI
#define _MT
#define _DLL

94
rpack.h Normal file
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/*------------------------------------------------------------------
*
* File: rpack.h
*
* Purpose: Definition of Garmin Rino message format.
*
* References: http://www.radio-active.net.au/web3/APRS/Resources/RINO
*
* http://www.radio-active.net.au/web3/APRS/Resources/RINO/OnAir
*
*---------------------------------------------------------------*/
#ifndef RPACK_H
#define RPACK_H 1
#define RPACK_FRAME_LEN 168
#ifdef RPACK_C /* Expose private details */
// Transmission order is LSB first.
struct __attribute__((__packed__)) rpack_s {
int lat; // Latitude.
// Signed integer. Scaled by 2**30/90.
int lon; // Longitude. Same encoding.
char unknown1; // Unproven theory: altitude.
char unknown2;
unsigned name0:6; // 10 character name.
unsigned name1:6; // Bit packing is implementation dependent.
unsigned name2:6; // Should rewrite to be more portable.
unsigned name3:6;
unsigned name4:6;
unsigned name5:6;
unsigned name6:6;
unsigned name7:6;
unsigned name8:6;
unsigned name9:6;
unsigned symbol:5;
unsigned unknown3:7;
// unsigned crc:16; // Safe bet this is CRC for error checking.
unsigned char crc1;
unsigned char crc2;
char dummy[3]; // Total size should be 24 bytes if no gaps.
};
#else /* Show only public interface. */
struct rpack_s {
char stuff[24];
};
#endif
void rpack_set_bit (struct rpack_s *rp, int position, int value);
int rpack_is_valid (struct rpack_s *rp);
int rpack_get_bit (struct rpack_s *rp, int position);
double rpack_get_lat (struct rpack_s *rp);
double rpack_get_lon (struct rpack_s *rp);
int rpack_get_symbol (struct rpack_s *rp);
void rpack_get_name (struct rpack_s *rp, char *str);
#endif
/* end rpack.h */

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rrbb.h Normal file
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#ifndef RRBB_H
#define RRBB_H
#define FASTER13 1 // Don't pack 8 samples per byte.
//typedef short slice_t;
/*
* Maximum size (in bytes) of an AX.25 frame including the 2 octet FCS.
*/
#define MAX_FRAME_LEN ((AX25_MAX_PACKET_LEN) + 2)
/*
* Maximum number of bits in AX.25 frame excluding the flags.
* Adequate for extreme case of bit stuffing after every 5 bits
* which could never happen.
*/
#define MAX_NUM_BITS (MAX_FRAME_LEN * 8 * 6 / 5)
typedef struct rrbb_s {
int magic1;
struct rrbb_s* nextp; /* Next pointer to maintain a queue. */
int chan; /* Radio channel from which it was received. */
int subchan; /* Which modem when more than one per channel. */
int slice; /* Which slicer. */
alevel_t alevel; /* Received audio level at time of frame capture. */
unsigned int len; /* Current number of samples in array. */
int is_scrambled; /* Is data scrambled G3RUH / K9NG style? */
int descram_state; /* Descrambler state before first data bit of frame. */
int prev_descram; /* Previous descrambled bit. */
unsigned char fdata[MAX_NUM_BITS];
int magic2;
} *rrbb_t;
rrbb_t rrbb_new (int chan, int subchan, int slice, int is_scrambled, int descram_state, int prev_descram);
void rrbb_clear (rrbb_t b, int is_scrambled, int descram_state, int prev_descram);
static inline /*__attribute__((always_inline))*/ void rrbb_append_bit (rrbb_t b, const unsigned char val)
{
if (b->len >= MAX_NUM_BITS) {
return; /* Silently discard if full. */
}
b->fdata[b->len] = val;
b->len++;
}
static inline /*__attribute__((always_inline))*/ unsigned char rrbb_get_bit (const rrbb_t b, const int ind)
{
return (b->fdata[ind]);
}
void rrbb_chop8 (rrbb_t b);
int rrbb_get_len (rrbb_t b);
//void rrbb_flip_bit (rrbb_t b, unsigned int ind);
void rrbb_delete (rrbb_t b);
void rrbb_set_nextp (rrbb_t b, rrbb_t np);
rrbb_t rrbb_get_nextp (rrbb_t b);
int rrbb_get_chan (rrbb_t b);
int rrbb_get_subchan (rrbb_t b);
int rrbb_get_slice (rrbb_t b);
void rrbb_set_audio_level (rrbb_t b, alevel_t alevel);
alevel_t rrbb_get_audio_level (rrbb_t b);
int rrbb_get_is_scrambled (rrbb_t b);
int rrbb_get_descram_state (rrbb_t b);
int rrbb_get_prev_descram (rrbb_t b);
#endif

32
serial_port.h Normal file
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/* serial_port.h */
#ifndef SERIAL_PORT_H
#define SERIAL_PORT_H 1
#if __WIN32__
#include <stdlib.h>
typedef HANDLE MYFDTYPE;
#define MYFDERROR INVALID_HANDLE_VALUE
#else
typedef int MYFDTYPE;
#define MYFDERROR (-1)
#endif
extern MYFDTYPE serial_port_open (char *devicename, int baud);
extern int serial_port_write (MYFDTYPE fd, char *str, int len);
extern int serial_port_get1 (MYFDTYPE fd);
extern void serial_port_close (MYFDTYPE fd);
#endif

32
server.h Normal file
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/*
* Name: server.h
*/
#include "ax25_pad.h" /* for packet_t */
#include "config.h"
void server_set_debug (int n);
void server_init (struct audio_s *audio_config_p, struct misc_config_s *misc_config);
void server_send_rec_packet (int chan, packet_t pp, unsigned char *fbuf, int flen);
void server_send_monitored (int chan, packet_t pp, int own_xmit);
int server_callsign_registered_by_client (char *callsign);
void server_link_established (int chan, int client, char *remote_call, char *own_call, int incoming);
void server_link_terminated (int chan, int client, char *remote_call, char *own_call, int timeout);
void server_rec_conn_data (int chan, int client, char *remote_call, char *own_call, int pid, char *data_ptr, int data_len);
void server_outstanding_frames_reply (int chan, int client, char *own_call, char *remote_call, int count);
/* end server.h */

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1836
sm_main.c

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19
symbols.h Normal file
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/* symbols.h */
void symbols_init (void);
void symbols_list (void);
void symbols_from_dest_or_src (char dti, char *src, char *dest, char *symtab, char *symbol);
int symbols_into_dest (char symtab, char symbol, char *dest);
void symbols_get_description (char symtab, char symbol, char *description, size_t desc_size);
int symbols_code_from_description (char overlay, char *description, char *symtab, char *symbol);
void symbols_to_tones (char symtab, char symbol, char *tones, size_t tonessize);
/* end symbols.h */

15
telemetry.h Normal file
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/* telemetry.h */
void telemetry_data_original (char *station, char *info, int quiet, char *output, size_t outputsize, char *comment, size_t commentsize);
void telemetry_data_base91 (char *station, char *cdata, char *output, size_t outputsize);
void telemetry_name_message (char *station, char *msg);
void telemetry_unit_label_message (char *station, char *msg);
void telemetry_coefficents_message (char *station, char *msg, int quiet);
void telemetry_bit_sense_message (char *station, char *msg, int quiet);

41
tq.h Normal file
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/*------------------------------------------------------------------
*
* Module: tq.h
*
* Purpose: Transmit queue - hold packets for transmission until the channel is clear.
*
*---------------------------------------------------------------*/
#ifndef TQ_H
#define TQ_H 1
#include "ax25_pad.h"
#include "audio.h"
#define TQ_NUM_PRIO 2 /* Number of priorities. */
#define TQ_PRIO_0_HI 0
#define TQ_PRIO_1_LO 1
void tq_init (struct audio_s *audio_config_p);
void tq_append (int chan, int prio, packet_t pp);
void lm_data_request (int chan, int prio, packet_t pp);
void lm_seize_request (int chan);
void tq_wait_while_empty (int chan);
packet_t tq_remove (int chan, int prio);
packet_t tq_peek (int chan, int prio);
int tq_count (int chan, int prio, char *source, char *dest, int bytes);
#endif
/* end tq.h */

38
tt_text.h Normal file
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/* tt_text.h */
/* Encode normal human readable to DTMF representation. */
int tt_text_to_multipress (const char *text, int quiet, char *buttons);
int tt_text_to_two_key (const char *text, int quiet, char *buttons);
int tt_text_to_call10 (const char *text, int quiet, char *buttons);
int tt_text_to_mhead (const char *text, int quiet, char *buttons, size_t buttonsiz);
int tt_text_to_satsq (const char *text, int quiet, char *buttons, size_t buttonsiz);
int tt_text_to_ascii2d (const char *text, int quiet, char *buttons);
/* Decode DTMF to normal human readable form. */
int tt_multipress_to_text (const char *buttons, int quiet, char *text);
int tt_two_key_to_text (const char *buttons, int quiet, char *text);
int tt_call10_to_text (const char *buttons, int quiet, char *text);
int tt_call5_suffix_to_text (const char *buttons, int quiet, char *text);
int tt_mhead_to_text (const char *buttons, int quiet, char *text, size_t textsiz);
int tt_satsq_to_text (const char *buttons, int quiet, char *text);
int tt_ascii2d_to_text (const char *buttons, int quiet, char *text);
/* end tt_text.h */

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tt_user.h Normal file
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/* tt_user.h */
#include "audio.h"
void tt_user_init (struct audio_s *p_audio_config, struct tt_config_s *p);
int tt_user_heard (char *callsign, int ssid, char overlay, char symbol, char *loc_text, double latitude,
double longitude, int ambiguity, char *freq, char *ctcss, char *comment, char mic_e, char *dao);
int tt_3char_suffix_search (char *suffix, char *callsign);
void tt_user_background (void);
void tt_user_dump (void);

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