Allow modems to limit/control input rate

- Modems can now over-ride user rate input and lock/step as needed
- Separate digital code defs a bit more so it’s not required when
disabled
- Testing FSK based on @andresv ’s example at
https://github.com/jgaeddert/liquid-dsp/issues/9
This commit is contained in:
Charles J. Cliffe
2015-11-22 19:56:25 -05:00
parent 724808d9ff
commit c0eca0b2f3
26 changed files with 242 additions and 105 deletions
+1
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@@ -44,6 +44,7 @@ public:
Modem();
virtual ~Modem();
virtual int checkSampleRate(long long sampleRate, int audioSampleRate) = 0;
virtual ModemKit *buildKit(long long sampleRate, int audioSampleRate) = 0;
virtual void disposeKit(ModemKit *kit) = 0;
virtual void demodulate(ModemKit *kit, ModemIQData *input, AudioThreadInput *audioOut) = 0;
+4
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@@ -8,6 +8,10 @@ std::string ModemAnalog::getType() {
return "analog";
}
int ModemAnalog::checkSampleRate(long long sampleRate, int audioSampleRate) {
return sampleRate;
}
ModemKit *ModemAnalog::buildKit(long long sampleRate, int audioSampleRate) {
ModemKitAnalog *akit = new ModemKitAnalog;
+7 -6
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@@ -16,12 +16,13 @@ class ModemAnalog : public Modem {
public:
ModemAnalog();
std::string getType();
ModemKit *buildKit(long long sampleRate, int audioSampleRate);
void disposeKit(ModemKit *kit);
void initOutputBuffers(ModemKitAnalog *akit, ModemIQData *input);
void buildAudioOutput(ModemKitAnalog *akit, AudioThreadInput *audioOut, bool autoGain);
std::vector<float> *getDemodOutputData();
std::vector<float> *getResampledOutputData();
virtual int checkSampleRate(long long sampleRate, int audioSampleRate);
virtual ModemKit *buildKit(long long sampleRate, int audioSampleRate);
virtual void disposeKit(ModemKit *kit);
virtual void initOutputBuffers(ModemKitAnalog *akit, ModemIQData *input);
virtual void buildAudioOutput(ModemKitAnalog *akit, AudioThreadInput *audioOut, bool autoGain);
virtual std::vector<float> *getDemodOutputData();
virtual std::vector<float> *getResampledOutputData();
protected:
int bufSize;
std::vector<float> demodOutputData;
+4
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@@ -8,6 +8,10 @@ std::string ModemDigital::getType() {
return "digital";
}
int ModemDigital::checkSampleRate(long long sampleRate, int audioSampleRate) {
return sampleRate;
}
ModemKit *ModemDigital::buildKit(long long sampleRate, int audioSampleRate) {
ModemKitDigital *dkit = new ModemKitDigital;
+5 -4
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@@ -13,10 +13,11 @@ class ModemDigital : public Modem {
public:
ModemDigital();
std::string getType();
ModemKit *buildKit(long long sampleRate, int audioSampleRate);
void disposeKit(ModemKit *kit);
void digitalStart(ModemKitDigital *kit, modem mod, ModemIQData *input);
void digitalFinish(ModemKitDigital *kit, modem mod);
virtual int checkSampleRate(long long sampleRate, int audioSampleRate);
virtual ModemKit *buildKit(long long sampleRate, int audioSampleRate);
virtual void disposeKit(ModemKit *kit);
virtual void digitalStart(ModemKitDigital *kit, modem mod, ModemIQData *input);
virtual void digitalFinish(ModemKitDigital *kit, modem mod);
virtual void setDemodulatorLock(bool demod_lock_in);
virtual int getDemodulatorLock();
@@ -30,6 +30,14 @@ Modem *ModemFMStereo::factory() {
return new ModemFMStereo;
}
int ModemFMStereo::checkSampleRate(long long sampleRate, int audioSampleRate) {
if (sampleRate < 100000) {
return 100000;
} else {
return sampleRate;
}
}
ModemKit *ModemFMStereo::buildKit(long long sampleRate, int audioSampleRate) {
ModemKitFMStereo *kit = new ModemKitFMStereo;
+1
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@@ -23,6 +23,7 @@ public:
std::string getType();
std::string getName();
Modem *factory();
int checkSampleRate(long long sampleRate, int audioSampleRate);
ModemKit *buildKit(long long sampleRate, int audioSampleRate);
void disposeKit(ModemKit *kit);
void demodulate(ModemKit *kit, ModemIQData *input, AudioThreadInput *audioOut);
+6
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@@ -10,6 +10,8 @@ Modem *ModemIQ::factory() {
ModemKit *ModemIQ::buildKit(long long sampleRate, int audioSampleRate) {
ModemKit *kit = new ModemKit;
kit->sampleRate = sampleRate;
kit->audioSampleRate = audioSampleRate;
return kit;
}
@@ -25,6 +27,10 @@ void ModemIQ::disposeKit(ModemKit *kit) {
delete kit;
}
int ModemIQ::checkSampleRate(long long sampleRate, int audioSampleRate) {
return audioSampleRate;
}
void ModemIQ::demodulate(ModemKit *kit, ModemIQData *input, AudioThreadInput *audioOut) {
int bufSize = input->data.size();
+1
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@@ -8,6 +8,7 @@ public:
std::string getName();
Modem *factory();
ModemKit *buildKit(long long sampleRate, int audioSampleRate);
int checkSampleRate(long long sampleRate, int audioSampleRate);
void disposeKit(ModemKit *kit);
void demodulate(ModemKit *kit, ModemIQData *input, AudioThreadInput *audioOut);
+7
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@@ -19,6 +19,13 @@ ModemLSB::~ModemLSB() {
ampmodem_destroy(demodAM_LSB);
}
int ModemLSB::checkSampleRate(long long sampleRate, int audioSampleRate) {
if (sampleRate % 2 == 0) {
return sampleRate;
}
return sampleRate+1;
}
void ModemLSB::demodulate(ModemKit *kit, ModemIQData *input, AudioThreadInput *audioOut) {
ModemKitAnalog *akit = (ModemKitAnalog *)kit;
+1
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@@ -8,6 +8,7 @@ public:
~ModemLSB();
std::string getName();
Modem *factory();
int checkSampleRate(long long sampleRate, int audioSampleRate);
void demodulate(ModemKit *kit, ModemIQData *input, AudioThreadInput *audioOut);
private:
+7
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@@ -19,6 +19,13 @@ ModemUSB::~ModemUSB() {
ampmodem_destroy(demodAM_USB);
}
int ModemUSB::checkSampleRate(long long sampleRate, int audioSampleRate) {
if (sampleRate % 2 == 0) {
return sampleRate;
}
return sampleRate+1;
}
void ModemUSB::demodulate(ModemKit *kit, ModemIQData *input, AudioThreadInput *audioOut) {
ModemKitAnalog *akit = (ModemKitAnalog *)kit;
+1
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@@ -7,6 +7,7 @@ public:
~ModemUSB();
std::string getName();
Modem *factory();
int checkSampleRate(long long sampleRate, int audioSampleRate);
void demodulate(ModemKit *kit, ModemIQData *input, AudioThreadInput *audioOut);
private:
+62
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@@ -0,0 +1,62 @@
#include "ModemFSK.h"
ModemFSK::ModemFSK() {
demodulatorCons.store(2);
currentDemodCons.store(0);
updateDemodulatorCons(2);
}
Modem *ModemFSK::factory() {
return new ModemFSK;
}
ModemKit *ModemFSK::buildKit(long long sampleRate, int audioSampleRate) {
ModemKitFSK *dkit = new ModemKitFSK;
dkit->m = 1;
dkit->k = sampleRate / 9600;
dkit->bandwidth = 7000.0 / sampleRate;
dkit->demodFSK = fskdem_create(dkit->m, dkit->k, dkit->bandwidth);
dkit->sampleRate = sampleRate;
dkit->audioSampleRate = audioSampleRate;
return dkit;
}
void ModemFSK::disposeKit(ModemKit *kit) {
ModemKitFSK *dkit = (ModemKitFSK *)kit;
delete dkit;
}
std::string ModemFSK::getName() {
return "FSK";
}
ModemFSK::~ModemFSK() {
}
void ModemFSK::updateDemodulatorCons(int cons) {
}
void ModemFSK::demodulate(ModemKit *kit, ModemIQData *input, AudioThreadInput *audioOut) {
ModemKitFSK *dkit = (ModemKitFSK *)kit;
digitalStart(dkit, nullptr, input);
dkit->inputBuffer.insert(dkit->inputBuffer.end(),input->data.begin(),input->data.end());
while (dkit->inputBuffer.size() >= dkit->k) {
unsigned int sym_out;
sym_out = fskdem_demodulate(dkit->demodFSK, &dkit->inputBuffer[0]);
// std::cout << "ferror: " << fskdem_get_frequency_error(dkit->demodFSK) << std::endl;
printf("%01X", sym_out);
dkit->inputBuffer.erase(dkit->inputBuffer.begin(),dkit->inputBuffer.begin()+dkit->k);
}
digitalFinish(dkit, nullptr);
}
+29
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@@ -0,0 +1,29 @@
#pragma once
#include "ModemDigital.h"
class ModemKitFSK : public ModemKitDigital {
public:
float sps, spacing, bandwidth;
unsigned int m, k;
fskdem demodFSK;
std::vector<liquid_float_complex> inputBuffer;
};
class ModemFSK : public ModemDigital {
public:
ModemFSK();
~ModemFSK();
std::string getName();
Modem *factory();
ModemKit *buildKit(long long sampleRate, int audioSampleRate);
void disposeKit(ModemKit *kit);
void updateDemodulatorCons(int cons);
void demodulate(ModemKit *kit, ModemIQData *input, AudioThreadInput *audioOut);
private:
fskdem dem;
};