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ko .. tw
19 changed files with 877 additions and 780 deletions
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+1 -9
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@@ -36,13 +36,5 @@ dependencies {
testImplementation 'junit:junit:4.13.2'
androidTestImplementation 'androidx.test.ext:junit:1.1.5'
androidTestImplementation 'androidx.test.espresso:espresso-core:3.5.1'
// Required for CameraX
def camerax_version = "1.2.2"
implementation "androidx.camera:camera-core:${camerax_version}"
implementation "androidx.camera:camera-camera2:${camerax_version}"
implementation "androidx.camera:camera-lifecycle:${camerax_version}"
implementation "androidx.camera:camera-video:${camerax_version}"
implementation "androidx.camera:camera-view:${camerax_version}"
implementation "androidx.camera:camera-extensions:${camerax_version}"
implementation 'com.jjoe64:graphview:4.2.2'
}
+4 -23
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@@ -2,30 +2,11 @@
<manifest xmlns:android="http://schemas.android.com/apk/res/android"
xmlns:tools="http://schemas.android.com/tools">
<!-- &lt;!&ndash; If your app targets Android 13 (API level 33)-->
<!-- or higher, you must declare the NEARBY_WIFI_DEVICES permission. &ndash;&gt;-->
<!-- <uses-permission android:name="android.permission.NEARBY_WIFI_DEVICES"-->
<!-- &lt;!&ndash; If your app derives location information from Wi-Fi APIs,-->
<!-- don't include the "usesPermissionFlags" attribute. &ndash;&gt;-->
<!-- android:usesPermissionFlags="neverForLocation" />-->
<uses-permission
android:required="true"
android:name="android.permission.ACCESS_FINE_LOCATION"/>
<!-- If any feature in your app relies on precise location information,
don't include the "maxSdkVersion" attribute. -->
<uses-permission
android:required="true"
android:name="android.permission.ACCESS_WIFI_STATE"/>
<uses-permission
android:required="true"
android:name="android.permission.CHANGE_WIFI_STATE"/>
<uses-permission
android:required="true"
android:name="android.permission.INTERNET"/>
<uses-permission android:name="android.permission.RECORD_AUDIO"/>
<uses-permission android:name="android.permission.CAMERA"/>
<!--<uses-permission android:name="android.permission.BLUETOOTH"/>-->
<!--<uses-permission android:name="android.permission.BLUETOOTH_ADMIN"/>-->
<uses-permission android:name="android.permission.ACCESS_WIFI_STATE" />
<uses-permission android:name="android.permission.ACCESS_NETWORK_STATE" />
<uses-permission android:name="android.permission.INTERNET" />
<application
@@ -1,196 +0,0 @@
package com.example.ueberwachungssystem.Detection;
import android.content.Context;
import android.graphics.ImageFormat;
import android.media.Image;
import android.util.Size;
import androidx.annotation.NonNull;
import androidx.camera.core.CameraSelector;
import androidx.camera.core.ExperimentalGetImage;
import androidx.camera.core.ImageAnalysis;
import androidx.camera.core.Preview;
import androidx.camera.lifecycle.ProcessCameraProvider;
import androidx.camera.view.PreviewView;
import androidx.core.content.ContextCompat;
import androidx.lifecycle.LifecycleOwner;
import com.google.common.util.concurrent.ListenableFuture;
import java.nio.ByteBuffer;
import java.util.concurrent.ExecutionException;
/**
* Video Detector inherits some methods from abstract Detector class (more info there)
*
*
* USE FROM MAIN ACTIVITY:
*
* VideoDetector vd = new VideoDetector(this);
* vd.setPreview(previewView); //THIS IS OPTIONAL!
* vd.setOnDetectionListener(new Detector.OnDetectionListener{...});
* vd.startDetection();
* vd.stopDetection
*
* */
@ExperimentalGetImage
public class VideoDetector extends Detector {
// Calling Activity
private final Context context;
// Camera Provider
private ProcessCameraProvider cameraProvider;
private Boolean isDetectionRunning = false;
// Preview Camera Image
private PreviewView previewView = null;
// Detect Violation
private static final float PIXEL_THRESHOLD = 30f; // Luminosity (brightness channel of YUV_420_888)
private static final float ALARM_THRESHOLD = 0.2f; // Percent of pixels changed
private ByteBuffer previousBuffer = null;
/**
* Constructor
* @param context: the context of calling activity (usually "this")
* */
public VideoDetector(Context context) {
super();
this.context = context;
}
/**
* Starts the Video Detection
* */
@Override
public void startDetection() {
if (isDetectionRunning)
return;
// Request Camera Provider
final ListenableFuture<ProcessCameraProvider> cameraProviderFuture = ProcessCameraProvider.getInstance(context);
//Check for Camera availability
cameraProviderFuture.addListener(() -> {
try {
cameraProvider = cameraProviderFuture.get();
bindAnalysis(cameraProvider);
isDetectionRunning = true;
previousBuffer = null;
} catch (ExecutionException | InterruptedException e) {
// No errors need to be handled for this Future. This should never be reached.
}
},ContextCompat.getMainExecutor(context));
}
/**
* Stops the Video Detection
* */
@Override
public void stopDetection() {
if (!isDetectionRunning)
return;
cameraProvider.unbindAll();
isDetectionRunning = false;
}
/**
* Set PreviewView to show video feed while detecting
* this is optional and does not need to be called
* */
public void setPreviewView(PreviewView previewView) {
this.previewView = previewView;
}
/**
* Binds the Luminosity Analyzer (configure and run Analysis)
* @param cameraProvider: CameraProvider of Context passed by Constructor
* */
private void bindAnalysis(@NonNull ProcessCameraProvider cameraProvider) {
// Configure and create Image Analysis
ImageAnalysis.Builder builder = new ImageAnalysis.Builder();
builder.setTargetResolution(new Size(640, 480));
builder.setBackpressureStrategy(ImageAnalysis.STRATEGY_KEEP_ONLY_LATEST);
builder.setOutputImageFormat(ImageAnalysis.OUTPUT_IMAGE_FORMAT_YUV_420_888);
ImageAnalysis imageAnalysis = builder.build();
// Set Analyzer
imageAnalysis.setAnalyzer(ContextCompat.getMainExecutor(context), imageProxy -> {
if (imageProxy.getFormat() == ImageFormat.YUV_420_888) {
Image image = imageProxy.getImage();
assert image != null;
// Changed Pixel Detection
int pixelChanged = getChangedPixelCount(image);
int width = image.getWidth();
int height = image.getHeight();
float percentPixelChanged = (float) 100f * pixelChanged / (width * height);
if (percentPixelChanged > ALARM_THRESHOLD)
reportViolation("0", "Video", percentPixelChanged);
}
imageProxy.close();
});
// Create Preview
Preview preview = new Preview.Builder().build();
// Specify which Camera to use
CameraSelector cameraSelector = new CameraSelector.Builder().requireLensFacing(CameraSelector.LENS_FACING_BACK).build();
// Update PreviewView if set
if (previewView != null)
preview.setSurfaceProvider(previewView.getSurfaceProvider());
cameraProvider.bindToLifecycle((LifecycleOwner) context, cameraSelector, imageAnalysis, preview);
}
/**
* Calculate Amount of Pixels changed using a threshold
* @param image
* */
private int getChangedPixelCount(Image image) {
Image.Plane[] planes = image.getPlanes();
ByteBuffer buffer = planes[0].getBuffer();
if (previousBuffer == null) {
previousBuffer = ByteBuffer.allocate(buffer.capacity());
buffer.rewind();
previousBuffer.put(buffer);
previousBuffer.rewind();
return 0;
}
int width = image.getWidth();
int height = image.getHeight();
int yRowStride = image.getPlanes()[0].getRowStride();
int yPixelStride = image.getPlanes()[0].getPixelStride();
int changedPixelCount = 0;
// Count changed pixels
for (int y = 0; y < height; ++y) {
for (int x = 0; x < width; x++) {
int index = (y * yRowStride) + (x * yPixelStride);
int luminosity = (buffer.get(index) & 0xff);
int previousLuminosity = (previousBuffer.get(index) & 0xff);
int diff = Math.abs(luminosity - previousLuminosity);
if (diff > PIXEL_THRESHOLD)
changedPixelCount++;
}
}
// Reset and copy Byte Buffer
buffer.rewind();
previousBuffer.rewind();
previousBuffer.put(buffer);
return changedPixelCount;
}
}
@@ -1,4 +1,4 @@
package com.example.ueberwachungssystem.Detection;
package com.example.ueberwachungssystem.Detector;
import android.util.Log;
@@ -1,5 +1,6 @@
package com.example.ueberwachungssystem.Detection;
package com.example.ueberwachungssystem.Detector;
import android.content.Context;
import androidx.annotation.NonNull;
@@ -7,7 +8,7 @@ abstract public class Detector {
private OnDetectionListener listener;
/** Constructor - takes context of current activity */
public Detector() {}
public Detector(Context context) {};
/** On Detection Listener - runs when violation is reported */
@@ -0,0 +1,421 @@
package com.example.ueberwachungssystem.Detector;
import static java.lang.Math.*;
import android.Manifest;
import android.app.Activity;
import android.content.Context;
import android.content.pm.PackageManager;
import android.media.AudioFormat;
import android.media.AudioRecord;
import android.media.MediaRecorder;
import android.os.AsyncTask;
import android.util.Log;
import androidx.core.app.ActivityCompat;
import androidx.core.content.ContextCompat;
import com.example.ueberwachungssystem.Detector.Signalverarbeitung.Complex;
import com.example.ueberwachungssystem.Detector.Signalverarbeitung.FFT;
import com.example.ueberwachungssystem.Detector.logger.Logger;
import com.jjoe64.graphview.GraphView;
import com.jjoe64.graphview.series.DataPoint;
import com.jjoe64.graphview.series.LineGraphSeries;
public class MicrophoneDetector extends Detector {
/**
* Constructor - takes context of current activity
*
* @param context
*/
private static final int RECHTEANFORDERUNG_MIKROFON = 1;
private AufnahmeTask aufnahmeTask;
public boolean armed = false;
public int Schwellwert_Alarm = 100;
private Activity MainActivityForClass;
public MicrophoneDetector(Context context) {
super(context);
MainActivityForClass = (Activity) context;
if (!istZugriffAufMikrofonErlaubt()) {
zugriffAufMikrofonAnfordern();
}
}
@Override
public void startDetection() {
if (!istZugriffAufMikrofonErlaubt()) {
zugriffAufMikrofonAnfordern();
}
if (istZugriffAufMikrofonErlaubt()) {
aufnahmeTask = new AufnahmeTask();
aufnahmeTask.execute();
}
}
@Override
public void stopDetection() {
if (aufnahmeTask != null) {
aufnahmeTask.cancel(true);
}
}
private boolean istZugriffAufMikrofonErlaubt() {
if (ContextCompat.checkSelfPermission(MainActivityForClass, android.Manifest.permission.RECORD_AUDIO) != PackageManager.PERMISSION_GRANTED) {
Log.d("0","Zugriff auf Mikrofon ist verboten.");
return false;
} else {
Log.d("0","Zugriff auf Mikrofon ist erlaubt.");
return true;
}
}
private void zugriffAufMikrofonAnfordern() {
ActivityCompat.requestPermissions(MainActivityForClass, new String[]{Manifest.permission.RECORD_AUDIO}, RECHTEANFORDERUNG_MIKROFON);
}
class AufnahmeTask extends AsyncTask<Long, Verarbeitungsergebnis, Void> {
private AudioRecord recorder;
private final int sampleRateInHz = 44100;
private final int channelConfig = AudioFormat.CHANNEL_IN_MONO;
private final int audioFormat = AudioFormat.ENCODING_PCM_16BIT;
private int minPufferGroesseInBytes;
private int pufferGroesseInBytes;
private RingPuffer ringPuffer = new RingPuffer(10);
private float kalibierWert;
private DetectionReport detectionReport;
AufnahmeTask() {
minPufferGroesseInBytes = AudioRecord.getMinBufferSize(sampleRateInHz, channelConfig, audioFormat);
pufferGroesseInBytes = minPufferGroesseInBytes * 2;
if (ActivityCompat.checkSelfPermission(MainActivityForClass, Manifest.permission.RECORD_AUDIO) != PackageManager.PERMISSION_GRANTED) {
// TODO: Consider calling
// ActivityCompat#requestPermissions
// here to request the missing permissions, and then overriding
// public void onRequestPermissionsResult(int requestCode, String[] permissions,
// int[] grantResults)
// to handle the case where the user grants the permission. See the documentation
// for ActivityCompat#requestPermissions for more details.
ActivityCompat.requestPermissions(MainActivityForClass, new String[]{Manifest.permission.RECORD_AUDIO}, RECHTEANFORDERUNG_MIKROFON);
}
recorder = new AudioRecord(MediaRecorder.AudioSource.MIC, sampleRateInHz, channelConfig, audioFormat, pufferGroesseInBytes);
Log.d("0","Puffergroeße: "+ minPufferGroesseInBytes + " " + pufferGroesseInBytes);
Log.d("0","Recorder (SR, CH): "+ recorder.getSampleRate() + " " + recorder.getChannelCount());
int anzahlBytesProAbtastwert;
String s;
switch (recorder.getAudioFormat()) {
case AudioFormat.ENCODING_PCM_8BIT:
s = "8 Bit PCM ";
anzahlBytesProAbtastwert = 1;
break;
case AudioFormat.ENCODING_PCM_16BIT:
s = "16 Bit PCM";
anzahlBytesProAbtastwert = 2;
break;
case AudioFormat.ENCODING_PCM_FLOAT:
s = "Float PCM";
anzahlBytesProAbtastwert = 4;
break;
default:
throw new IllegalArgumentException();
}
switch (recorder.getChannelConfiguration()) {
case AudioFormat.CHANNEL_IN_MONO:
s = "Mono";
break;
case AudioFormat.CHANNEL_IN_STEREO:
s = "Stereo";
anzahlBytesProAbtastwert *= 2;
break;
case AudioFormat.CHANNEL_INVALID:
s = "ungültig";
break;
default:
throw new IllegalArgumentException();
}
Log.d("0","Konfiguration: "+ s);
int pufferGroesseInAnzahlAbtastwerten = pufferGroesseInBytes / anzahlBytesProAbtastwert;
int pufferGroesseInMillisekunden = 1000 * pufferGroesseInAnzahlAbtastwerten / recorder.getSampleRate();
}
@Override
protected Void doInBackground(Long... params) {
recorder.startRecording();
short[] puffer = new short[pufferGroesseInBytes / 2];
long lastTime = System.currentTimeMillis();
float verarbeitungsrate = 0;
final int maxZaehlerZeitMessung = 10;
int zaehlerZeitMessung = 0;
int anzahlVerarbeitet = 0;
GleitenderMittelwert gleitenderMittelwert = new GleitenderMittelwert(0.3f);
//Kalibrierung
try {
Thread.sleep(3000); // Time to lay down the phone
} catch (InterruptedException e) {
e.printStackTrace();
}
int i = 0;
for (i = 0; i < 20; i++) {
int n = recorder.read(puffer, 0, puffer.length);
Verarbeitungsergebnis kalibrierErgebnis = verarbeiten(puffer, n);
kalibierWert += kalibrierErgebnis.maxAmp;
try {
Thread.sleep(50);
} catch (InterruptedException e) {
e.printStackTrace();
}
}
kalibierWert = kalibierWert/i;
// __Part of FFT__
// Complex[] zeitSignal = new Complex[puffer.length];
// for (int j = 0; j < puffer.length; j++) {
// zeitSignal[j] = new Complex(puffer[j], 0);
// }
// Complex[] spektrum = FFT.fft(zeitSignal);
// double[] spektrum = calculateFFT(puffer);
// DataPoint AddPoint;
// LineGraphSeries<DataPoint> series = new LineGraphSeries<DataPoint>(new DataPoint[]{});
// for (i = 0; i < spektrum.length; i++) {
// AddPoint = new DataPoint(i, spektrum[i]);
// series.appendData(AddPoint, true, spektrum.length);
// }
// graph.addSeries(series);
for (; ; ) {
if (aufnahmeTask.isCancelled()) {
break;
} else {
int n = recorder.read(puffer, 0, puffer.length);
Verarbeitungsergebnis ergebnis = verarbeiten(puffer, n);
anzahlVerarbeitet += n;
// __Part of FFT__
// spektrum = calculateFFT(puffer);
// LineGraphSeries<DataPoint> newseries = new LineGraphSeries<DataPoint>(new DataPoint[]{});
// for (i = 0; i < spektrum.length; i++) {
// AddPoint = new DataPoint(i, spektrum[i]);
// newseries.appendData(AddPoint, true, spektrum.length);
// }
zaehlerZeitMessung++;
if (zaehlerZeitMessung == maxZaehlerZeitMessung) {
long time = System.currentTimeMillis();
long deltaTime = time - lastTime;
verarbeitungsrate = 1000.0f * anzahlVerarbeitet / deltaTime;
verarbeitungsrate = gleitenderMittelwert.mittel(verarbeitungsrate);
zaehlerZeitMessung = 0;
anzahlVerarbeitet = 0;
lastTime = time;
}
ergebnis.verarbeitungsrate = (int) verarbeitungsrate;
publishProgress(ergebnis);
try {
Thread.sleep(10);
} catch (InterruptedException e) {
e.printStackTrace();
}
}
}
recorder.release();
return null;
}
private Verarbeitungsergebnis verarbeiten(short[] daten, int n) {
String status;
short maxAmp = -1;
if (n == AudioRecord.ERROR_INVALID_OPERATION) {
status = "ERROR_INVALID_OPERATION";
} else if (n == AudioRecord.ERROR_BAD_VALUE) {
status = "ERROR_BAD_VALUE";
} else {
status = "OK";
short max = 0;
for (int i = 0; i < n; i++) {
if (daten[i] > max) {
max = daten[i];
}
}
ringPuffer.hinzufuegen(max);
maxAmp = ringPuffer.maximum();
if (maxAmp <= Schwellwert_Alarm+kalibierWert) {
armed = true;
}
}
return new Verarbeitungsergebnis(status, maxAmp, 0);
}
@Override
protected void onProgressUpdate(Verarbeitungsergebnis... progress) {
super.onProgressUpdate(progress);
float maxAmpPrint = round(20*log10(abs(progress[0].maxAmp/1.0)));
float kalibierWertPrint = round(20*log10(abs(kalibierWert)));
Log.d("0","VR, Max, Kal:" + progress[0].verarbeitungsrate + ", " + maxAmpPrint
+ " dB, " + kalibierWertPrint + " dB");
if (progress[0].maxAmp >= Schwellwert_Alarm+kalibierWert && armed == true) {
armed = false;
detectionReport = new DetectionReport("Mic1", "Audio", maxAmpPrint);
reportViolation("Mic1", "Audio", maxAmpPrint);
Log.d("1",detectionReport.toString());
}
}
}
private double[] calculateFFT(short[] zeitsignal)
{
byte signal[] = new byte[zeitsignal.length];
// loops through all the values of a Short
for (int i = 0; i < zeitsignal.length-1; i++) {
signal[i] = (byte) (zeitsignal[i]);
signal[i+1] = (byte) (zeitsignal[i] >> 8);
}
final int mNumberOfFFTPoints =1024;
double mMaxFFTSample;
double temp;
Complex[] y;
Complex[] complexSignal = new Complex[mNumberOfFFTPoints];
double[] absSignal = new double[mNumberOfFFTPoints/2];
for(int i = 0; i < mNumberOfFFTPoints; i++){
temp = (double)((signal[2*i] & 0xFF) | (signal[2*i+1] << 8)) / 32768.0F;
complexSignal[i] = new Complex(temp,0.0);
}
y = FFT.fft(complexSignal);
mMaxFFTSample = 0.0;
for(int i = 0; i < (mNumberOfFFTPoints/2); i++)
{
absSignal[i] = y[i].abs();
// absSignal[i] = Math.sqrt(Math.pow(y[i].re(), 2) + Math.pow(y[i].im(), 2));
// if(absSignal[i] > mMaxFFTSample)
// {
// mMaxFFTSample = absSignal[i];
// }
}
return absSignal;
}
class Verarbeitungsergebnis {
String status;
short maxAmp;
int verarbeitungsrate;
Verarbeitungsergebnis(String status, short maxAmp, int verarbeitungsrate) {
this.status = status;
this.maxAmp = maxAmp;
this.verarbeitungsrate = verarbeitungsrate;
}
}
class RingPuffer {
private short[] puffer;
private final int laenge;
private int anzahlEnthaltenerDaten;
private int position;
public RingPuffer(int n) {
laenge = n;
anzahlEnthaltenerDaten = 0;
position = 0;
puffer = new short[laenge];
}
public void hinzufuegen(short wert) {
puffer[position] = wert;
position++;
if (position >= laenge) {
position = 0;
}
if (anzahlEnthaltenerDaten < laenge) {
anzahlEnthaltenerDaten++;
}
}
public void hinzufuegen(short[] daten) {
for (short d : daten) {
puffer[position] = d;
position++;
if (position >= laenge) {
position = 0;
}
}
if (anzahlEnthaltenerDaten < laenge) {
anzahlEnthaltenerDaten += daten.length;
if (anzahlEnthaltenerDaten >= laenge) {
anzahlEnthaltenerDaten = laenge;
}
}
}
public short maximum() {
short max = 0;
for (int i = 0; i < anzahlEnthaltenerDaten; i++) {
if (puffer[i] > max) {
max = puffer[i];
}
}
return max;
}
public float mittelwert() {
float summe = 0;
for (int i = 0; i < anzahlEnthaltenerDaten; i++) {
summe += puffer[i];
}
return summe / anzahlEnthaltenerDaten;
}
}
class GleitenderMittelwert {
private final float wichtungNeuerWert;
private final float wichtungAlterWert;
private float mittelwert = 0;
private boolean istMittelwertGesetzt = false;
GleitenderMittelwert(float wichtungNeuerWert) {
this.wichtungNeuerWert = wichtungNeuerWert;
this.wichtungAlterWert = 1 - this.wichtungNeuerWert;
}
float MittelwertPuffer(short[] puffer) {
for (int i = 0; i < puffer.length; i++) {
mittelwert = Math.abs(puffer[i]);
}
mittelwert = mittelwert/puffer.length;
return mittelwert;
}
float mittel(float wert) {
if (istMittelwertGesetzt) {
mittelwert = wert * wichtungNeuerWert + mittelwert * wichtungAlterWert;
} else {
mittelwert = wert;
istMittelwertGesetzt = true;
}
return mittelwert;
}
}
}
@@ -0,0 +1,148 @@
package com.example.ueberwachungssystem.Detector.Signalverarbeitung;
import java.util.Objects;
public class Complex {
private final double re; // the real part
private final double im; // the imaginary part
// create a new object with the given real and imaginary parts
public Complex(double real, double imag) {
re = real;
im = imag;
}
// return a string representation of the invoking com.example.ueberwachungssystem.Detector.Signalverarbeitung.Complex object
public String toString() {
if (im == 0) return re + "";
if (re == 0) return im + "i";
if (im < 0) return re + " - " + (-im) + "i";
return re + " + " + im + "i";
}
// return abs/modulus/magnitude
public double abs() {
return Math.hypot(re, im);
}
// return angle/phase/argument, normalized to be between -pi and pi
public double phase() {
return Math.atan2(im, re);
}
// return a new com.example.ueberwachungssystem.Detector.Signalverarbeitung.Complex object whose value is (this + b)
public Complex plus(Complex b) {
Complex a = this; // invoking object
double real = a.re + b.re;
double imag = a.im + b.im;
return new Complex(real, imag);
}
// return a new com.example.ueberwachungssystem.Detector.Signalverarbeitung.Complex object whose value is (this - b)
public Complex minus(Complex b) {
Complex a = this;
double real = a.re - b.re;
double imag = a.im - b.im;
return new Complex(real, imag);
}
// return a new com.example.ueberwachungssystem.Detector.Signalverarbeitung.Complex object whose value is (this * b)
public Complex times(Complex b) {
Complex a = this;
double real = a.re * b.re - a.im * b.im;
double imag = a.re * b.im + a.im * b.re;
return new Complex(real, imag);
}
// return a new object whose value is (this * alpha)
public Complex scale(double alpha) {
return new Complex(alpha * re, alpha * im);
}
// return a new com.example.ueberwachungssystem.Detector.Signalverarbeitung.Complex object whose value is the conjugate of this
public Complex conjugate() {
return new Complex(re, -im);
}
// return a new com.example.ueberwachungssystem.Detector.Signalverarbeitung.Complex object whose value is the reciprocal of this
public Complex reciprocal() {
double scale = re * re + im * im;
return new Complex(re / scale, -im / scale);
}
// return the real or imaginary part
public double re() {
return re;
}
public double im() {
return im;
}
// return a / b
public Complex divides(Complex b) {
Complex a = this;
return a.times(b.reciprocal());
}
// return a new com.example.ueberwachungssystem.Detector.Signalverarbeitung.Complex object whose value is the complex exponential of this
public Complex exp() {
return new Complex(Math.exp(re) * Math.cos(im), Math.exp(re) * Math.sin(im));
}
// return a new com.example.ueberwachungssystem.Detector.Signalverarbeitung.Complex object whose value is the complex sine of this
public Complex sin() {
return new Complex(Math.sin(re) * Math.cosh(im), Math.cos(re) * Math.sinh(im));
}
// return a new com.example.ueberwachungssystem.Detector.Signalverarbeitung.Complex object whose value is the complex cosine of this
public Complex cos() {
return new Complex(Math.cos(re) * Math.cosh(im), -Math.sin(re) * Math.sinh(im));
}
// return a new com.example.ueberwachungssystem.Detector.Signalverarbeitung.Complex object whose value is the complex tangent of this
public Complex tan() {
return sin().divides(cos());
}
// a static version of plus
public static Complex plus(Complex a, Complex b) {
double real = a.re + b.re;
double imag = a.im + b.im;
Complex sum = new Complex(real, imag);
return sum;
}
// See Section 3.3.
public boolean equals(Object x) {
if (x == null) return false;
if (this.getClass() != x.getClass()) return false;
Complex that = (Complex) x;
return (this.re == that.re) && (this.im == that.im);
}
// See Section 3.3.
public int hashCode() {
return Objects.hash(re, im);
}
// sample client for testing
public static void main(String[] args) {
Complex a = new Complex(5.0, 6.0);
Complex b = new Complex(-3.0, 4.0);
System.out.println("a = " + a);
System.out.println("b = " + b);
System.out.println("Re(a) = " + a.re());
System.out.println("Im(a) = " + a.im());
System.out.println("b + a = " + b.plus(a));
System.out.println("a - b = " + a.minus(b));
System.out.println("a * b = " + a.times(b));
System.out.println("b * a = " + b.times(a));
System.out.println("a / b = " + a.divides(b));
System.out.println("(a / b) * b = " + a.divides(b).times(b));
System.out.println("conj(a) = " + a.conjugate());
System.out.println("|a| = " + a.abs());
System.out.println("tan(a) = " + a.tan());
}
}
@@ -0,0 +1,246 @@
package com.example.ueberwachungssystem.Detector.Signalverarbeitung;
// Source: https://introcs.cs.princeton.edu/java/97data/FFT.java.html
/******************************************************************************
* Compilation: javac FFT.java
* Execution: java FFT n
* Dependencies: com.example.ueberwachungssystem.Detector.Signalverarbeitung.Complex.java
*
* Compute the FFT and inverse FFT of a length n complex sequence
* using the radix 2 Cooley-Tukey algorithm.
* Bare bones implementation that runs in O(n log n) time and O(n)
* space. Our goal is to optimize the clarity of the code, rather
* than performance.
*
* This implementation uses the primitive root of unity w = e^(-2 pi i / n).
* Some resources use w = e^(2 pi i / n).
*
* Reference: https://www.cs.princeton.edu/~wayne/kleinberg-tardos/pdf/05DivideAndConquerII.pdf
*
* Limitations
* -----------
* - assumes n is a power of 2
*
* - not the most memory efficient algorithm (because it uses
* an object type for representing complex numbers and because
* it re-allocates memory for the subarray, instead of doing
* in-place or reusing a single temporary array)
*
* For an in-place radix 2 Cooley-Tukey FFT, see
* https://introcs.cs.princeton.edu/java/97data/InplaceFFT.java.html
*
******************************************************************************/
public class FFT {
// compute the FFT of x[], assuming its length n is a power of 2
public static Complex[] fft(Complex[] x) {
int n = x.length;
// base case
if (n == 1) return new Complex[]{x[0]};
// radix 2 Cooley-Tukey FFT
if (n % 2 != 0) {
throw new IllegalArgumentException("n is not a power of 2");
}
// compute FFT of even terms
Complex[] even = new Complex[n / 2];
for (int k = 0; k < n / 2; k++) {
even[k] = x[2 * k];
}
Complex[] evenFFT = fft(even);
// compute FFT of odd terms
Complex[] odd = even; // reuse the array (to avoid n log n space)
for (int k = 0; k < n / 2; k++) {
odd[k] = x[2 * k + 1];
}
Complex[] oddFFT = fft(odd);
// combine
Complex[] y = new Complex[n];
for (int k = 0; k < n / 2; k++) {
double kth = -2 * k * Math.PI / n;
Complex wk = new Complex(Math.cos(kth), Math.sin(kth));
y[k] = evenFFT[k].plus(wk.times(oddFFT[k]));
y[k + n / 2] = evenFFT[k].minus(wk.times(oddFFT[k]));
}
return y;
}
// compute the inverse FFT of x[], assuming its length n is a power of 2
public static Complex[] ifft(Complex[] x) {
int n = x.length;
Complex[] y = new Complex[n];
// take conjugate
for (int i = 0; i < n; i++) {
y[i] = x[i].conjugate();
}
// compute forward FFT
y = fft(y);
// take conjugate again
for (int i = 0; i < n; i++) {
y[i] = y[i].conjugate();
}
// divide by n
for (int i = 0; i < n; i++) {
y[i] = y[i].scale(1.0 / n);
}
return y;
}
// compute the circular convolution of x and y
public static Complex[] cconvolve(Complex[] x, Complex[] y) {
// should probably pad x and y with 0s so that they have same length
// and are powers of 2
if (x.length != y.length) {
throw new IllegalArgumentException("Dimensions don't agree");
}
int n = x.length;
// compute FFT of each sequence
Complex[] a = fft(x);
Complex[] b = fft(y);
// point-wise multiply
Complex[] c = new Complex[n];
for (int i = 0; i < n; i++) {
c[i] = a[i].times(b[i]);
}
// compute inverse FFT
return ifft(c);
}
// compute the linear convolution of x and y
public static Complex[] convolve(Complex[] x, Complex[] y) {
Complex ZERO = new Complex(0, 0);
Complex[] a = new Complex[2 * x.length];
for (int i = 0; i < x.length; i++) a[i] = x[i];
for (int i = x.length; i < 2 * x.length; i++) a[i] = ZERO;
Complex[] b = new Complex[2 * y.length];
for (int i = 0; i < y.length; i++) b[i] = y[i];
for (int i = y.length; i < 2 * y.length; i++) b[i] = ZERO;
return cconvolve(a, b);
}
// compute the DFT of x[] via brute force (n^2 time)
public static Complex[] dft(Complex[] x) {
int n = x.length;
Complex ZERO = new Complex(0, 0);
Complex[] y = new Complex[n];
for (int k = 0; k < n; k++) {
y[k] = ZERO;
for (int j = 0; j < n; j++) {
int power = (k * j) % n;
double kth = -2 * power * Math.PI / n;
Complex wkj = new Complex(Math.cos(kth), Math.sin(kth));
y[k] = y[k].plus(x[j].times(wkj));
}
}
return y;
}
// display an array of com.example.ueberwachungssystem.Detector.Signalverarbeitung.Complex numbers to standard output
public static void show(Complex[] x, String title) {
System.out.println(title);
System.out.println("-------------------");
for (int i = 0; i < x.length; i++) {
System.out.println(x[i]);
}
System.out.println();
}
/***************************************************************************
* Test client and sample execution
*
* % java FFT 4
* x
* -------------------
* -0.03480425839330703
* 0.07910192950176387
* 0.7233322451735928
* 0.1659819820667019
*
* y = fft(x)
* -------------------
* 0.9336118983487516
* -0.7581365035668999 + 0.08688005256493803i
* 0.44344407521182005
* -0.7581365035668999 - 0.08688005256493803i
*
* z = ifft(y)
* -------------------
* -0.03480425839330703
* 0.07910192950176387 + 2.6599344570851287E-18i
* 0.7233322451735928
* 0.1659819820667019 - 2.6599344570851287E-18i
*
* c = cconvolve(x, x)
* -------------------
* 0.5506798633981853
* 0.23461407150576394 - 4.033186818023279E-18i
* -0.016542951108772352
* 0.10288019294318276 + 4.033186818023279E-18i
*
* d = convolve(x, x)
* -------------------
* 0.001211336402308083 - 3.122502256758253E-17i
* -0.005506167987577068 - 5.058885073636224E-17i
* -0.044092969479563274 + 2.1934338938072244E-18i
* 0.10288019294318276 - 3.6147323062478115E-17i
* 0.5494685269958772 + 3.122502256758253E-17i
* 0.240120239493341 + 4.655566391833896E-17i
* 0.02755001837079092 - 2.1934338938072244E-18i
* 4.01805098805014E-17i
*
***************************************************************************/
public static void main(String[] args) {
int n = Integer.parseInt(args[0]);
Complex[] x = new Complex[n];
// original data
for (int i = 0; i < n; i++) {
x[i] = new Complex(i, 0);
}
show(x, "x");
// FFT of original data
Complex[] y = fft(x);
show(y, "y = fft(x)");
// FFT of original data
Complex[] y2 = dft(x);
show(y2, "y2 = dft(x)");
// take inverse FFT
Complex[] z = ifft(y);
show(z, "z = ifft(y)");
// circular convolution of x with itself
Complex[] c = cconvolve(x, x);
show(c, "c = cconvolve(x, x)");
// linear convolution of x with itself
Complex[] d = convolve(x, x);
show(d, "d = convolve(x, x)");
}
}
@@ -1,44 +0,0 @@
package com.example.ueberwachungssystem.Logger;
import android.util.Log;
import android.widget.TextView;
import java.io.PrintWriter;
import java.io.StringWriter;
public class Logger {
private TextView textView;
private StringBuffer sb = new StringBuffer();
private String tag;
public Logger(String tag, TextView textView, String logInitText) {
this.tag = tag;
this.textView = textView;
sb.append(logInitText);
}
public void log(String s) {
Log.d(tag, s);
sb.append(s).append("\n");
if (textView != null) {
textView.setText(sb.toString());
}
}
public void log(Exception e) {
StringWriter sw = new StringWriter();
e.printStackTrace(new PrintWriter(sw));
log(sw.toString());
}
public void clearLog() {
sb.setLength(0);
if (textView != null) {
textView.setText("");
}
}
public String getLoggedText() {
return sb.toString();
}
}
@@ -1,220 +1,67 @@
package com.example.ueberwachungssystem;
import androidx.annotation.NonNull;
import androidx.camera.core.ExperimentalGetImage;
import androidx.fragment.app.Fragment;
import androidx.fragment.app.FragmentTransaction;
import androidx.appcompat.app.AppCompatActivity;
import android.os.Bundle;
import android.util.Log;
import android.view.LayoutInflater;
import android.view.View;
import android.view.ViewGroup;
import android.widget.Button;
import android.widget.EditText;
import android.widget.ScrollView;
import android.widget.Switch;
import android.widget.TextView;
import android.widget.ToggleButton;
import com.example.ueberwachungssystem.Detection.DetectionReport;
import com.example.ueberwachungssystem.Detection.Detector;
import com.example.ueberwachungssystem.Detection.VideoDetector;
import org.w3c.dom.Text;
import com.example.ueberwachungssystem.Detector.DetectionReport;
import com.example.ueberwachungssystem.Detector.Detector;
import com.example.ueberwachungssystem.Detector.MicrophoneDetector;
import com.jjoe64.graphview.GraphView;
@ExperimentalGetImage
public class MainActivity extends AppCompatActivity implements View.OnClickListener {
private Fragment aktuellesFragment;
WifiCommunication communication;
private TextView alarm;
private String text = "Das ist ein Alarm des Sensors";
//Buttons
private ToggleButton toggleKamera;
private ToggleButton btnAudio;
private ToggleButton btnBewegung;
//Detektoren
VideoDetector vd = new VideoDetector(this);
private void log(String nachricht) {
Log.d(this.getClass().getSimpleName(), nachricht);
}
public class MainActivity extends AppCompatActivity {
private TextView tv_log;
MicrophoneDetector Mic;
private Switch TglBtn_Mic;
@Override
protected void onCreate(Bundle savedInstanceState) {
super.onCreate(savedInstanceState);
setTitle(this.getClass().getSimpleName());
setContentView(R.layout.activity_main);
alarm = findViewById(R.id.Alarm);
alarm.setText(text);
toggleKamera = findViewById(R.id.toggleKamera);
toggleKamera.setOnClickListener(this);
vd.setOnDetectionListener(new Detector.OnDetectionListener() {
tv_log = (TextView) findViewById(R.id.tv_log); //Set textview for showing logged content
Log.d("Main",this.getClass().getSimpleName() + ".onCreate");
Mic = new MicrophoneDetector(this);
setupMic();
Mic.setOnDetectionListener(new Detector.OnDetectionListener() {
@Override
public void onDetection(@NonNull DetectionReport detectionReport) {
DetectionReport dr = detectionReport;
String drString = dr.toString();
Log.d("Main", "Detection erkannt!");
}
});
//boolean isRunning = vd.isRunning();
}
@Override
public void onClick(View v) {
if (v == toggleKamera) {
if (toggleKamera.isChecked()) {
vd.startDetection();
} else {
vd.stopDetection();
}
}
}
@Override
protected void onPause() {
super.onPause();
communication.stopCommunication();
}
@Override
protected void onResume() {
public void onResume() {
super.onResume();
communication = new WifiCommunication(MainActivity.this, 1234);
Log.d("Main",this.getClass().getSimpleName() + ".onResume");
}
public void onClickZeigeFragment1(View view) {
Button button = (Button) view;
log(button.getText() + " ausgewählt");
zeigeFragment(Fragment1.erstellen("Fragment 1 wurde angeklickt"));
}
public void onClickZeigeFragment2(View view) {
Button button = (Button) view;
log(button.getText() + " ausgewählt");
zeigeFragment(Fragment2.erstellen("Fragment 2 wurde angeklickt"));
@Override
public void onPause() {
super.onPause();
Log.d("Main",this.getClass().getSimpleName() + ".onPause");
}
public void onClickZeigeFragment3(View view) {
Button button = (Button) view;
log(button.getText() + " ausgewählt");
zeigeFragment(Fragment3.erstellen("Fragment 3 wurde angeklickt"));
}
public void onClickEntferneFragment(View view) {
entferneFragment();
}
private void zeigeFragment(Fragment fragment) {
FragmentTransaction ft = getSupportFragmentManager().beginTransaction();
ft.replace(R.id.frame, fragment);
ft.commit();
aktuellesFragment = fragment;
}
private void entferneFragment() {
if (aktuellesFragment != null) {
FragmentTransaction ft = getSupportFragmentManager().beginTransaction();
ft.remove(aktuellesFragment);
ft.commit();
aktuellesFragment = null ;
}
}
public static class Fragment1 extends Fragment {
private String text;
private final static String KEY_TEXT = "KEY_TEXT";
private void log(String nachricht) {
Log.d(this.getClass().getSimpleName(), nachricht);
}
@Override
public View onCreateView(LayoutInflater inflater, ViewGroup container, Bundle bundle) {
log("onCreateView");
View view = inflater.inflate(R.layout.fragment1, container, false);
TextView Sensor = (TextView) view.findViewById(R.id.Sensor);
Sensor.setText(text);
return view;
}
public static Fragment1 erstellen(String text) {
Fragment1 fragment = new Fragment1();
Bundle b = new Bundle();
b.putString(KEY_TEXT, text);
fragment.setArguments(b);
return fragment;
}
@Override
public void onCreate(Bundle bundle) {
super .onCreate(bundle);
Bundle args = getArguments();
if (args != null ) {
text = args.getString(KEY_TEXT);
log("onCreate: text=" + text);
} else {
log("onCreate");
private void setupMic() {
TglBtn_Mic = (Switch) findViewById(R.id.TglBtn_Mic);
TglBtn_Mic.setOnClickListener(new View.OnClickListener() {
@Override
public void onClick(View v) {
if (v == TglBtn_Mic) {
Log.d("Main","onClick toggleButtonThread " + TglBtn_Mic.isChecked());
if (TglBtn_Mic.isChecked()) {
Mic.startDetection();
} else {
Mic.stopDetection();
}
}
}
}
}
public static class Fragment2 extends Fragment {
private String text;
private final static String KEY_TEXT = "KEY_TEXT" ;
private void log(String nachricht) {
Log.d(this.getClass().getSimpleName(), nachricht);
}
@Override
public View onCreateView(LayoutInflater inflater, ViewGroup container, Bundle bundle) {
log( "onCreateView" );
View view = inflater.inflate(R.layout.fragment2, container, false );
TextView Sensor = (TextView) view.findViewById(R.id.Sensor);
Sensor.setText(text);
return view;
}
public static Fragment2 erstellen(String text) {
Fragment2 fragment = new Fragment2();
Bundle b = new Bundle();
b.putString(KEY_TEXT, text);
fragment.setArguments(b);
return fragment;
}
@Override
public void onCreate(Bundle bundle) {
super.onCreate(bundle);
Bundle args = getArguments();
if (args != null) {
text = args.getString(KEY_TEXT);
log("onCreate: text=" + text);
} else {
log("onCreate");
}
}
}
public static class Fragment3 extends Fragment {
private String text;
private final static String KEY_TEXT = "KEY_TEXT" ;
private void log(String nachricht) {
Log.d(this.getClass().getSimpleName(), nachricht);
}
@Override
public View onCreateView(LayoutInflater inflater, ViewGroup container, Bundle bundle) {
log( "onCreateView" );
View view = inflater.inflate(R.layout.fragment2, container, false );
TextView Sensor = (TextView) view.findViewById(R.id.Sensor);
Sensor.setText(text);
return view;
}
public static Fragment3 erstellen(String text) {
Fragment3 fragment = new Fragment3();
Bundle b = new Bundle();
b.putString(KEY_TEXT, text);
fragment.setArguments(b);
return fragment;
}
@Override
public void onCreate(Bundle bundle) {
super.onCreate(bundle);
Bundle args = getArguments();
if (args != null) {
text = args.getString(KEY_TEXT);
log("onCreate: text=" + text);
} else {
log("onCreate");
}
}
});
}
}
@@ -1,131 +0,0 @@
package com.example.ueberwachungssystem;
import android.annotation.SuppressLint;
import java.io.IOException;
import java.net.DatagramPacket;
import java.net.DatagramSocket;
import java.net.Inet4Address;
import java.net.InetAddress;
import java.net.NetworkInterface;
import java.net.SocketException;
import java.net.UnknownHostException;
import java.text.SimpleDateFormat;
import java.util.Date;
import java.util.Enumeration;
public class WifiCommunication {
private final MainActivity mainActivity;
private final InetAddress address;
private final int port;
private String messageToSend;
volatile private boolean send;
private final DatagramSocket socket;
volatile private boolean running;
@SuppressLint("SetTextI18n")
public WifiCommunication(MainActivity mainActivity, int port) {
this.mainActivity = mainActivity;
this.port = port;
try {
socket = new DatagramSocket(this.port);
socket.setBroadcast(true);
address = InetAddress.getByName("255.255.255.255"); //100.82.255.255
running = true;
send = false;
new ReceiveThread().start();
new SendThread().start();
} catch (SocketException | UnknownHostException e) {
throw new RuntimeException(e);
}
//mainActivity.runOnUiThread(() -> mainActivity.tvMessages.setText("Communication running"));
}
private class ReceiveThread extends Thread {
private StringBuffer rxStringBuffer = new StringBuffer();
private String rxString="";
private String previousRxString = "";
@Override
public void run() {
try {
do {
byte[] receiveData = new byte[512];
InetAddress fromAdress;
int fromPort;
DatagramPacket rxPacket = new DatagramPacket(receiveData, receiveData.length);
socket.receive(rxPacket);
fromAdress = rxPacket.getAddress();
fromPort = rxPacket.getPort();
rxString = new String(rxPacket.getData());
if(!previousRxString.equals(rxString)) {
rxStringBuffer.append(rxString).append("\n");
//mainActivity.runOnUiThread(() -> mainActivity.tvMessages.setText(rxStringBuffer));
previousRxString = rxString;
}
} while (running);
}
catch (IOException e) {
e.printStackTrace();
}
}
}
private class SendThread extends Thread {
private int tmpCnt = 0;
@Override
public void run() {
try {
do {
if(send)
{
send = false;
SimpleDateFormat formatter = new SimpleDateFormat("HH:mm:ss");
Date curDate = new Date(System.currentTimeMillis());
String str = formatter.format(curDate);
byte[] send_Data = new byte[512];
String txString = (str+ ",Gruppe2," + getLocalIpAddress() + ",An,Video," +messageToSend);
send_Data = txString.getBytes();
DatagramPacket txPacket = new DatagramPacket(send_Data, txString.length(), address, port);
for(int i = 0; i < 500; i++) {
socket.send(txPacket);
/*try{
sleep(10);
}catch (InterruptedException e){
e.printStackTrace();
}*/
}
}
} while (running);
} catch (IOException e) {
e.printStackTrace();
}
}
}
public static String getLocalIpAddress() {
try {
for (Enumeration<NetworkInterface> en = NetworkInterface.getNetworkInterfaces(); en.hasMoreElements();) {
NetworkInterface networkInterface = (NetworkInterface) ((Enumeration<?>) en).nextElement();
for (Enumeration<InetAddress> addresses = networkInterface.getInetAddresses(); addresses.hasMoreElements();) {
InetAddress inetAddress = addresses.nextElement();
if (!inetAddress.isLoopbackAddress() && inetAddress instanceof Inet4Address) {
return inetAddress.getHostAddress();
}
}
}
} catch (SocketException ex) {
ex.printStackTrace();
}
return null;
}
public void sendTrue(String message){
send = true;
messageToSend = message;
}
public void stopCommunication() {
running = false;
socket.close();
}
}
@@ -1,6 +0,0 @@
<?xml version="1.0" encoding="utf-8"?>
<LinearLayout xmlns:android="http://schemas.android.com/apk/res/android"
android:layout_width="match_parent"
android:layout_height="match_parent">
</LinearLayout>
+15 -112
View File
@@ -1,123 +1,26 @@
<?xml version="1.0" encoding="utf-8"?>
<RelativeLayout xmlns:android="http://schemas.android.com/apk/res/android"
<androidx.constraintlayout.widget.ConstraintLayout xmlns:android="http://schemas.android.com/apk/res/android"
xmlns:app="http://schemas.android.com/apk/res-auto"
xmlns:tools="http://schemas.android.com/tools"
android:layout_width="match_parent"
android:layout_height="match_parent"
android:background="@android:color/holo_green_dark"
android:visibility="visible"
tools:context="com.example.ueberwachungssystem.MainActivity"
tools:visibility="visible">
tools:context=".MainActivity">
<ToggleButton
android:id="@+id/toggleKamera"
<TextView
android:id="@+id/tv_log"
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:layout_alignBottom="@id/toggleAudio"
android:layout_marginRight="15dp"
android:layout_toStartOf="@+id/toggleAudio"
android:layout_toLeftOf="@id/toggleAudio"
android:text="Kamera" />
android:text="Log"
app:layout_constraintEnd_toEndOf="parent"
app:layout_constraintStart_toStartOf="parent"
app:layout_constraintTop_toBottomOf="@+id/TglBtn_Mic" />
<ToggleButton
android:id="@+id/toggleAudio"
<Switch
android:id="@+id/TglBtn_Mic"
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:layout_alignParentTop="true"
android:layout_centerHorizontal="true"
android:text="Audio" />
android:text="Mic"
app:layout_constraintEnd_toEndOf="parent"
app:layout_constraintTop_toTopOf="parent" />
<ToggleButton
android:id="@+id/toggleBewegung"
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:layout_alignBottom="@id/toggleAudio"
android:layout_marginLeft="15dp"
android:layout_toEndOf="@+id/toggleAudio"
android:layout_toRightOf="@id/toggleAudio"
android:text="Bewegung" />
<Button
android:id="@+id/btnAudio"
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:layout_alignBottom="@id/btnKamera"
android:layout_marginRight="15dp"
android:layout_toStartOf="@+id/btnKamera"
android:onClick="onClickZeigeFragment1"
android:text="Audio" />
<Button
android:id="@+id/btnKamera"
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:layout_below="@id/toggleAudio"
android:layout_centerHorizontal="true"
android:onClick="onClickZeigeFragment2"
android:text="Kamera" />
<!--
<Button
android:id="@+id/btnSensorWeg"
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:layout_centerHorizontal="true"
android:layout_below="@+id/btn1"
android:text="Entferne Sensordarstellung"
android:onClick="onClickEntferneFragment"/>
-->
<Button
android:id="@+id/btnBewegung"
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:layout_alignBottom="@id/btnKamera"
android:layout_marginLeft="15dp"
android:layout_toEndOf="@+id/btnKamera"
android:layout_toRightOf="@id/btnKamera"
android:onClick="onClickZeigeFragment3"
android:text="Bewegung" />
<Button
android:id="@+id/btnAufnahme"
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:layout_below="@+id/btnKamera"
android:layout_toLeftOf="@id/btnKamera"
android:layout_marginRight="15dp"
android:onClick="onClickEntferneFragment"
android:text="Aufnahme" />
<Button
android:id="@+id/btnWiedergabe"
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:layout_below="@+id/btnKamera"
android:layout_toRightOf="@id/btnKamera"
android:layout_marginLeft="15dp"
android:onClick="onClickEntferneFragment"
android:text="Wiedergabe" />
<FrameLayout
android:id="@+id/frame"
android:layout_width="match_parent"
android:layout_height="200dp"
android:layout_below="@+id/btnAufnahme"
android:layout_alignParentStart="true">
</FrameLayout>
<ScrollView
android:id= "@+id/scrollView1"
android:layout_width= "wrap_content"
android:layout_height= "wrap_content"
android:layout_below= "@id/frame">
<LinearLayout
android:layout_width= "match_parent"
android:layout_height= "match_parent"
android:orientation= "vertical" >
<TextView
android:id= "@+id/Alarm"
android:layout_width= "wrap_content"
android:layout_height= "wrap_content" />
</LinearLayout>
</ScrollView>
</RelativeLayout>
</androidx.constraintlayout.widget.ConstraintLayout>
-22
View File
@@ -1,22 +0,0 @@
<?xml version="1.0" encoding="utf-8"?>
<RelativeLayout xmlns:android="http://schemas.android.com/apk/res/android"
android:layout_width="match_parent"
android:layout_height="match_parent"
android:gravity="center_horizontal"
android:orientation="vertical"
android:background="@android:color/holo_green_light">
<TextView
android:id="@+id/Sensor"
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:textAppearance="?android:attr/textAppearanceLarge"/>
<TextView
android:id="@+id/Alarm"
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:layout_below="@id/Sensor"
android:textAppearance="?android:attr/textAppearanceLarge"/>
</RelativeLayout>
-22
View File
@@ -1,22 +0,0 @@
<?xml version="1.0" encoding="utf-8"?>
<LinearLayout xmlns:android="http://schemas.android.com/apk/res/android"
android:layout_width="match_parent"
android:layout_height="match_parent"
android:gravity="center_horizontal"
android:orientation="vertical"
android:background="@android:color/holo_blue_light" >
<TextView
android:id="@+id/Sensor"
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:textAppearance="?android:attr/textAppearanceLarge"/>
<TextView
android:id="@+id/Alarm"
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:layout_below="@id/Sensor"
android:textAppearance="?android:attr/textAppearanceLarge"/>
</LinearLayout>
-22
View File
@@ -1,22 +0,0 @@
<?xml version="1.0" encoding="utf-8"?>
<LinearLayout xmlns:android="http://schemas.android.com/apk/res/android"
android:layout_width="match_parent"
android:layout_height="match_parent"
android:gravity="center_horizontal"
android:orientation="vertical"
android:background="@android:color/holo_blue_light" >
<TextView
android:id="@+id/Sensor"
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:textAppearance="?android:attr/textAppearanceLarge"/>
<TextView
android:id="@+id/Alarm"
android:layout_width="wrap_content"
android:layout_height="wrap_content"
android:layout_below="@id/Sensor"
android:textAppearance="?android:attr/textAppearanceLarge"/>
</LinearLayout>
+2 -1
View File
@@ -18,4 +18,5 @@ android.useAndroidX=true
# Enables namespacing of each library's R class so that its R class includes only the
# resources declared in the library itself and none from the library's dependencies,
# thereby reducing the size of the R class for that library
android.nonTransitiveRClass=true
android.nonTransitiveRClass=true
android.enableJetifier=true
+1 -1
View File
@@ -1,4 +1,4 @@
#Thu May 11 15:19:24 CEST 2023
#Thu May 11 15:04:30 CEST 2023
distributionBase=GRADLE_USER_HOME
distributionUrl=https\://services.gradle.org/distributions/gradle-7.5-bin.zip
distributionPath=wrapper/dists