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key-detector.cpp
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key-detector.cpp
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/*! \file key-detector.cpp
* \brief Capture audio until N keystrokes are detected
* \author Georgi Gerganov
*/
#include "constants.h"
#include "common.h"
#include "audio-logger.h"
#include <array>
#include <cmath>
#include <cstdio>
#include <chrono>
#include <thread>
#include <fstream>
int main(int argc, char ** argv) {
printf("Usage: %s output.kbd nkeys [-cN] [-CN]\n", argv[0]);
printf(" -cN - select capture device N\n");
printf(" -CN - number N of capture channels N\n");
printf("\n");
if (argc < 3) {
return -127;
}
const auto argm = parseCmdArguments(argc, argv);
const int captureId = argm.count("c") == 0 ? 0 : std::stoi(argm.at("c"));
const int nChannels = argm.count("C") == 0 ? 0 : std::stoi(argm.at("C"));
const int nKeysToCapture = atoi(argv[2]);
int nKeysHave = 0;
bool doRecord = true;
bool doneRecording = false;
size_t totalSize_bytes = 0;
TWaveformF waveformF;
TWaveformI16 waveformI16;
TKeyPressCollectionT<TSampleI16> keyPresses;
AudioLogger audioLogger;
AudioLogger::Callback cbAudio = [&](const auto & frames) {
for (auto & frame : frames) {
waveformF.insert(waveformF.end(), frame.begin(), frame.end());
}
{
// apply default filtering, because keypress detection without it is impossible
auto waveformFFiltered = waveformF;
::filter(waveformFFiltered, EAudioFilter::FirstOrderHighPass, kFreqCutoff_Hz, kSampleRate);
if (convert(waveformFFiltered, waveformI16) == false) {
printf("Conversion failed\n");
}
}
TWaveformI16 waveformMax;
TWaveformI16 waveformThreshold;
if (findKeyPresses(getView(waveformI16, 0), keyPresses, waveformThreshold, waveformMax, 8.0, 512, 2*1024, true) == false) {
printf("Failed to detect keypresses\n");
}
if (nKeysHave < (int) keyPresses.size()) {
nKeysHave = keyPresses.size();
printf("Detected %d keys\n", nKeysHave);
}
if (nKeysToCapture <= (int) keyPresses.size()) {
doneRecording = true;
} else {
doRecord = true;
}
};
AudioLogger::Parameters parameters;
parameters.callback = std::move(cbAudio);
parameters.captureId = captureId;
parameters.nChannels = nChannels;
parameters.sampleRate = kSampleRate;
parameters.filter = EAudioFilter::None;
//parameters.freqCutoff_Hz = kFreqCutoff_Hz;
if (audioLogger.install(std::move(parameters)) == false) {
fprintf(stderr, "Failed to install audio logger\n");
return -1;
}
while (true) {
if (doRecord) {
doRecord = false;
audioLogger.record(0.5f, 0);
} else {
std::this_thread::sleep_for(std::chrono::milliseconds(1));
}
if (doneRecording) break;
}
printf("\n\n Done recording\n");
std::ofstream fout(argv[1], std::ios::binary);
if (fout.good() == false) {
fprintf(stderr, "Failed to open file '%s'\n", argv[1]);
return -1;
}
totalSize_bytes = sizeof(waveformF[0])*waveformF.size();
fout.write((char *)(waveformF.data()), sizeof(waveformF[0])*waveformF.size());
fout.close();
printf("Total data saved: %g MB\n", ((float)(totalSize_bytes)/1024.0f/1024.0f));
return 0;
}