Adds basic support for native APIs for a local song player.

This commit is contained in:
Markil3
2021-07-17 07:20:14 -06:00
parent 704ab06f85
commit 94ffd80c8d
12 changed files with 968 additions and 1 deletions

5
.gitignore vendored
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@@ -4,3 +4,8 @@
/*/build/ /*/build/
/local.properties /local.properties
/browser/profile/extensions/universal_music@regis.edu.xpi /browser/profile/extensions/universal_music@regis.edu.xpi
/browser/profile/cache2/*
/browser/profile/datareporting/*
/browser/profile/startupCache/*
/browser/profile/sessionstore-backups/*
/browser/profile/lock

1
WavReader/README.md Normal file
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@@ -0,0 +1 @@
These files were originally posted by Andrii Tkachenko on GitHub in 2016. They have been refactored to function in a Gradle environment.

11
WavReader/build.gradle Normal file
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@@ -0,0 +1,11 @@
/*
* Copyright (c) 2021 William Hubbard. All Rights Reserved.
*/
apply plugin: "java"
apply plugin: "application"
sourceCompatibility = 1.8
targetCompatibility = 1.8
mainClassName = "MetaReader"

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@@ -0,0 +1,28 @@
import wave.WavHeader;
import wave.WavHeaderReader;
import java.io.FileNotFoundException;
import java.io.IOException;
/**
* Console utility for reading meta data of the wave files
*/
public class MetaReader {
public static void main(String[] args) {
if (args.length == 0) {
System.out.println("Illegal command line arguments.\n" +
"Usage MetaReader\n\t MetaReader <source file path>");
return;
}
WavHeader wavHeader;
try {
WavHeaderReader wavHeaderReader = new WavHeaderReader(args[0]);
wavHeader = wavHeaderReader.read();
System.out.println(wavHeader.toString());
} catch (FileNotFoundException e) {
System.out.println("Error: File " + args[0] + " not found!");
} catch (IOException e) {
System.out.println("Error: " + e.getMessage());
}
}
}

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@@ -0,0 +1,150 @@
/*
* Copyright (c) 2016. Andrii Tkachenko. https://github.com/tkaczenko/WavReader
*/
package wave;
/**
* This class contains a structure of WAVE file.
*
* @see <a href =
* "https://github.com/tkacz-/WavReader/blob/master/wav-sound-format.gif">
* Structure of wave format
* </a>
*/
public class WavHeader {
private byte[] chunkID = new byte[4];
private int chunkSize;
private byte[] format = new byte[4];
private byte[] subChunk1ID = new byte[4];
private int subChunk1Size;
private short audioFormat;
private short numChannels;
private int sampleRate;
private int byteRate;
private short blockAlign;
private short bitsPerSample;
private byte[] subChunk2ID = new byte[4];
private int subChunk2Size;
@Override
public String toString() {
return "The RIFF chunk desriptor: " + new String(this.getChunkID()) + "\n" +
"Size of this chunk: " + this.getChunkSize() + "\n" +
"Format: " + new String(this.getFormat()) + "\n" + "\n" +
"fmt subchunk: " + new String(this.getSubChunk1ID()) + "\n" +
"Size of this chunk: " + this.getSubChunk1Size() + "\n" +
"Audio format: " + this.getAudioFormat() + "\n" +
"Number of channels: " + this.getNumChannels() + "\n" +
"Sample rate: " + this.getSampleRate() + "\n" +
"Byte rate: " + this.getByteRate() + "\n" +
"Block align: " + this.getBlockAlign() + "\n" +
"Bits per sample: " + this.getBitsPerSample() + "\n" + "\n" +
"data subchunk: " + new String(this.getSubChunk2ID()) + "\n" +
"Size of this chunk: " + this.getSubChunk2Size();
}
public byte[] getChunkID() {
return chunkID;
}
public void setChunkID(byte[] chunkID) {
this.chunkID = chunkID;
}
public int getChunkSize() {
return chunkSize;
}
public void setChunkSize(int chunkSize) {
this.chunkSize = chunkSize;
}
public byte[] getFormat() {
return format;
}
public void setFormat(byte[] format) {
this.format = format;
}
public byte[] getSubChunk1ID() {
return subChunk1ID;
}
public void setSubChunk1ID(byte[] subChunk1ID) {
this.subChunk1ID = subChunk1ID;
}
public int getSubChunk1Size() {
return subChunk1Size;
}
public void setSubChunk1Size(int subChunk1Size) {
this.subChunk1Size = subChunk1Size;
}
public short getAudioFormat() {
return audioFormat;
}
public void setAudioFormat(short audioFormat) {
this.audioFormat = audioFormat;
}
public short getNumChannels() {
return numChannels;
}
public void setNumChannels(short numChannels) {
this.numChannels = numChannels;
}
public int getSampleRate() {
return sampleRate;
}
public void setSampleRate(int sampleRate) {
this.sampleRate = sampleRate;
}
public int getByteRate() {
return byteRate;
}
public void setByteRate(int byteRate) {
this.byteRate = byteRate;
}
public short getBlockAlign() {
return blockAlign;
}
public void setBlockAlign(short blockAlign) {
this.blockAlign = blockAlign;
}
public short getBitsPerSample() {
return bitsPerSample;
}
public void setBitsPerSample(short bitsPerSample) {
this.bitsPerSample = bitsPerSample;
}
public byte[] getSubChunk2ID() {
return subChunk2ID;
}
public void setSubChunk2ID(byte[] subChunk2ID) {
this.subChunk2ID = subChunk2ID;
}
public int getSubChunk2Size() {
return subChunk2Size;
}
public void setSubChunk2Size(int subChunk2Size) {
this.subChunk2Size = subChunk2Size;
}
}

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@@ -0,0 +1,159 @@
/*
* Copyright (c) 2016. Andrii Tkachenko. https://github.com/tkaczenko/WavReader
*/
package wave;
import java.io.FileInputStream;
import java.io.IOException;
import java.io.InputStream;
import java.util.Arrays;
/**
* Custom wave header reader which use class
*
* @see WavHeader
*/
public class WavHeaderReader {
/**
* Size for the wave header
*/
private static final int HEADER_SIZE = 44;
/**
* Buffer which contain bytes of the wave header
*/
private byte[] buf = new byte[HEADER_SIZE];
/**
* Wave header
*/
private WavHeader header = new WavHeader();
/**
* InputStream to the wave file
*/
private InputStream inputStream;
/**
* Empty constructor
*/
public WavHeaderReader() {
}
/**
* Constructor which create own FileInputStream
*
* @param source absolute path to the file
* @throws IOException
*/
public WavHeaderReader(String source) throws IOException {
inputStream = new FileInputStream(source);
}
/**
* Constructor which use created InputStream
*
* @param inputStream InputStream to the wave file
*/
public WavHeaderReader(InputStream inputStream) {
this.inputStream = inputStream;
}
/**
* Read wave header of the file
*
* @return wave.WavHeader object
* @throws IOException
* @see WavHeader
*/
public WavHeader read() throws IOException {
int res = inputStream.read(buf);
if (res != HEADER_SIZE) {
throw new IOException("Could not read header.");
}
header.setChunkID(Arrays.copyOfRange(buf, 0, 4));
if (new String(header.getChunkID()).compareTo("RIFF") != 0) {
throw new IOException("Illegal format.");
}
header.setChunkSize(toInt(4, false));
header.setFormat(Arrays.copyOfRange(buf, 8, 12));
header.setSubChunk1ID(Arrays.copyOfRange(buf, 12, 16));
header.setSubChunk1Size(toInt(16, false));
header.setAudioFormat(toShort(20, false));
header.setNumChannels(toShort(22, false));
header.setSampleRate(toInt(24, false));
header.setByteRate(toInt(28, false));
header.setBlockAlign(toShort(32, false));
header.setBitsPerSample(toShort(34, false));
header.setSubChunk2ID(Arrays.copyOfRange(buf, 36, 40));
header.setSubChunk2Size(toInt(40, false));
return header;
}
/**
* Convert byte[] array to int number
*
* @param start start position of the buffer
* @param endian <code>true</code> for big-endian
* <code>false</code> for little-endian
* @return converted number
*/
private int toInt(int start, boolean endian) {
int k = (endian) ? 1 : -1;
if (!endian) {
start += 3;
}
return (buf[start] << 24) + (buf[start + k * 1] << 16) +
(buf[start + k * 2] << 8) + buf[start + k * 3];
}
/**
* Convert byte[] array to short number
*
* @param start start position of the buffer
* @param endian <code>true</code> for big-endian
* <code>false</code> for little-endian
* @return converted number
*/
private short toShort(int start, boolean endian) {
short k = (endian) ? (short) 1 : -1;
if (!endian) {
start++;
}
return (short) ((buf[start] << 8) + (buf[start + k * 1]));
}
/**
* Return the buffer which contain wave hader
*
* @return buffer
*/
public byte[] getBuf() {
return buf;
}
/**
* Return wave.WavHeader object which contain wave header
*
* @return wave.WavHeader object
*/
public WavHeader getHeader() {
return header;
}
/**
* Return input stream to the wave file
*
* @return Input steam to the wave file
*/
public InputStream getInputStream() {
return inputStream;
}
public void setInputStream(InputStream inputStream) {
this.inputStream = inputStream;
}
}

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@@ -17,6 +17,7 @@ dependencies {
// The production code uses the SLF4J logging API at compile time // The production code uses the SLF4J logging API at compile time
implementation 'org.slf4j:slf4j-api:1.7.25' implementation 'org.slf4j:slf4j-api:1.7.25'
implementation 'com.google.code.gson:gson:2.8.7' implementation 'com.google.code.gson:gson:2.8.7'
implementation project(":WavReader")
// Declare the dependency for your favourite test framework you want to use in your tests. // Declare the dependency for your favourite test framework you want to use in your tests.
// TestNG is also supported by the Gradle Test task. Just change the // TestNG is also supported by the Gradle Test task. Just change the
@@ -27,5 +28,12 @@ dependencies {
// Define the main class for the application // Define the main class for the application
mainClassName = defaultPackage + '.player.Interface' mainClassName = defaultPackage + '.player.Interface'
//mainClassName = defaultPackage + '.localPlayer.Player'
compileJava.dependsOn rootProject.bundleAddOn compileJava.dependsOn rootProject.bundleAddOn
run {
systemProperty "java.library.path", file("${project(":player").buildDir}/lib/main/debug").absolutePath
}
compileJava.dependsOn ':player:linkDebug'

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/*
* Copyright (c) 2021 William Hubbard. All Rights Reserved.
*/
package edu.regis.universeplayer.localPlayer;
import java.io.IOException;
import java.io.InputStream;
import wave.WavHeader;
import wave.WavHeaderReader;
/**
* Contains information on a WAV audio file, along with a reference to the stream of raw data.
*
* @author William Hubbard
*/
public class AudioFile extends InputStream
{
/**
* Contains header information.
*/
private final WavHeaderReader header;
/**
* Contains a link to the process reading the audio file.
*/
private final Process process;
/**
* The stream for the actual audio data.
*/
private InputStream stream;
/**
* Creates an audio file from a stream
*
* @param stream - The stream to create it from.
* @throws IOException - Thrown when an error occurs creating the input stream.
*/
AudioFile(Process stream) throws IOException
{
this.process = stream;
this.stream = stream.getInputStream();
this.header = new WavHeaderReader(this.stream);
this.header.read();
}
public WavHeader getHeader()
{
return this.header.getHeader();
}
/**
* Obtains the byte string representation of this header.
* @return A byte string containing this file's header.
*/
public byte[] getByteStream()
{
return this.header.getBuf();
}
@Override
public int read() throws IOException
{
return this.stream.read();
}
@Override
public int available() throws IOException
{
return this.process.isAlive() ? Integer.MAX_VALUE : super.available();
}
}

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@@ -0,0 +1,183 @@
/*
* Copyright (c) 2021 William Hubbard. All Rights Reserved.
*/
package edu.regis.universeplayer.localPlayer;
import java.io.File;
import java.io.FileNotFoundException;
import java.io.FileOutputStream;
import java.io.IOException;
import java.io.InputStream;
import java.util.LinkedList;
import wave.WavHeader;
/**
* This allows for the control of playback of files on the local file system
*
* @author William Hubbard
* @version 0.1
*/
public class Player
{
static
{
System.loadLibrary("player");
}
private int currentId;
private AudioFile currentFile;
/**
* Sets the file currently being used.
*
* @param file - The current audio file.
*/
public void setCurrentFile(AudioFile file)
{
WavHeader header = file.getHeader();
this.currentFile = file;
// TODO - Ensure that bytes per sample and bits per sample don't bother things
this.currentId = this.setCurrentFile(this.currentFile, header.getNumChannels(), header
.getBitsPerSample(), header.getSampleRate());
}
/**
* Updates the file currently being played.
*
* @param stream - A reference to the audio data stream.
* @param numChannels - The number of audio channels contained in the file.
* @param bitsPerSample - The number if bits in every sample.
* @param sampleRate - How many samples need to play every second.
* @return An ID for the current song.
*/
private native int setCurrentFile(InputStream stream, short numChannels, short bitsPerSample, int sampleRate);
/**
* Saves the current file to
*
* @param file - The file to save to.
*/
public native void save(String file);
/**
* Saves the current file as a WAVE file somewhere else. This method is meant for testing only.
*
* @param file - The file to save to.
*/
public void saveJava(String file)
{
try (FileOutputStream out = new FileOutputStream(file))
{
out.write(this.getAudioFile().getByteStream());
byte[] buffer = new byte[256];
int read = this.getAudioFile().read(buffer);
while (read > 0)
{
out.write(buffer, 0, read);
read = this.getAudioFile().read(buffer);
}
}
catch (IOException e)
{
e.printStackTrace();
}
}
/**
* Obtains the current file.
*
* @return The current audio file we are working with.
*/
public AudioFile getAudioFile()
{
return this.currentFile;
}
/**
* Plays the current audio file.
*/
public native void play();
/**
* Pauses playback for the current audio file.
*/
public native void pause();
/**
* Checks to see whether the current audio file is paused.
*
* @return True if there is an audio file present and it is paused, false otherwise.
*/
public native boolean isPaused();
/**
* Obtains an input stream for the requested file.
*
* @param file - The file to read
* @return An raw stream for the file
* @throws FileNotFoundException - Thrown should the file not exist.
* @throws IOException - Thrown should an error occur when reading the file
*/
public static AudioFile getAudioStream(File file) throws IOException
{
return new AudioFile(convertFile(file));
}
/**
* Converts any audio file to a stream containing WAV audio file data (courtesy of FFMPEG).
*
* @param file - The file to convert
* @return An input stream containing the file data
* @throws FileNotFoundException - Thrown should the file not exist.
* @throws IOException - Thrown should an error occur when reading the file
*/
protected static Process convertFile(File file) throws FileNotFoundException, IOException
{
LinkedList<String> args = new LinkedList<>();
if (!file.isFile())
{
throw new FileNotFoundException("Must provide a file");
}
args.add("ffmpeg");
args.add("-hide_banner");
args.add("-loglevel");
args.add("error");
args.add("-y");
args.add("-i");
args.add(file.getAbsolutePath());
args.add("-f");
args.add("wav");
args.add("pipe:1");
return Runtime.getRuntime().exec(args.toArray(new String[args.size()]));
}
public static void main(String[] args)
{
byte[] buffer = new byte[200];
int len;
File file = new File(args[0]);
try (AudioFile stream = getAudioStream(new File(args[0])))
{
Player player = new Player();
player.setCurrentFile(stream);
player.save(args[0] + ".wav");
}
catch (IOException e)
{
e.printStackTrace();
}
// Compare JNI vs Java
try (AudioFile stream = getAudioStream(new File(args[0])))
{
Player player = new Player();
player.setCurrentFile(stream);
player.saveJava(args[0] + ".orig.wav");
}
catch (IOException e)
{
e.printStackTrace();
}
}
}

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player/build.gradle Normal file
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@@ -0,0 +1,37 @@
/*
* Copyright (c) 2021 William Hubbard. All Rights Reserved.
*/
import org.gradle.internal.jvm.Jvm
/*
* There is currently no "C application" plugin, so this build uses the "C++ application" plugin and then reconfigures it
* to build C instead.
*/
plugins {
id 'cpp-library'
}
library {
binaries.configureEach { CppBinary binary ->
def compileTask = binary.compileTask.get()
compileTask.includes.from("${Jvm.current().javaHome}/include")
def osFamily = binary.targetPlatform.targetMachine.operatingSystemFamily
if (osFamily.macOs) {
compileTask.includes.from("${Jvm.current().javaHome}/include/darwin")
} else if (osFamily.linux) {
compileTask.includes.from("${Jvm.current().javaHome}/include/linux")
} else if (osFamily.windows) {
compileTask.includes.from("${Jvm.current().javaHome}/include/win32")
}
compileTask.source.from fileTree(dir: "src/main/c", include: "**/*.c")
def toolChain = binary.toolChain
if (toolChain instanceof VisualCpp) {
compileTask.compilerArgs.addAll(["/TC"])
} else if (toolChain instanceof GccCompatibleToolChain) {
compileTask.compilerArgs.addAll(["-x", "c", "-std=c11"])
}
}
}

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player/src/main/c/player.c Normal file
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/*
* Copyright (c) 2021 William Hubbard. All Rights Reserved.
*/
#include <jni.h>
#include <stdio.h>
static jclass InputStream;
static jclass AudioStream;
static jmethodID AudioStream_getHeader;
static jmethodID AudioStream_getByteStream;
static jmethodID AudioStream_readInt;
static jmethodID InputStream_readBuffer;
static jobject currentFile = NULL;
/**
* This function is used to initialize the static reference to java.io.InputStream class.
*
* @param env - A reference to the JVM.
* @param audio - An InputStream instance
* @return A reference to the InputStream class.
*/
jclass getInputStreamClass(JNIEnv *env)
{
if (InputStream == 0 )
{
jclass tempClass = (*env)->FindClass(env, "java/io/InputStream");
if (tempClass == 0)
{
printf("Could not find class java/io/InputStream");
return 0;
}
InputStream = (*env)->NewGlobalRef(env, tempClass);
}
return InputStream;
}
/**
* This function is used to initialize the static reference to the AudioStream class.
*
* @param env - A reference to the JVM.
* @param audio - An AudioStream instance
* @return A reference to the AudioStream class.
*/
jclass getAudioStreamClass(JNIEnv *env, jobject audio)
{
if (AudioStream == 0 )
{
jclass tempClass = (*env)->GetObjectClass(env, audio);
if (tempClass == 0)
{
printf("Could not find class edu/regis/universeplayer_localPlayer/AudioFile");
return 0;
}
AudioStream = (*env)->NewGlobalRef(env, tempClass);
}
return AudioStream;
}
/**
* This function is used to initialize the static reference to AudioStream's getHeader method.
*
* @param env - A reference to the JVM.
* @param audio - An AudioStream instance
* @return A reference to the getHeader method.
*/
jmethodID getHeaderMethod(JNIEnv *env, jobject audio)
{
if (AudioStream_getHeader == 0 )
{
jclass tempClass = getAudioStreamClass(env, audio);
if (tempClass == 0)
{
return 0;
}
AudioStream_getHeader = (*env)->GetMethodID(env, tempClass, "getHeader", "()Lwave/WavHeader;");
}
return AudioStream_getHeader;
}
/**
* This function is used to initialize the static reference to AudioStream's getByteStream method.
*
* @param env - A reference to the JVM.
* @param audio - An AudioStream instance
* @return A reference to the getByteStream method.
*/
jmethodID getByteStreamMethod(JNIEnv *env, jobject audio)
{
if (AudioStream_getByteStream == 0 )
{
jclass tempClass = getAudioStreamClass(env, audio);
if (tempClass == 0)
{
return 0;
}
AudioStream_getByteStream = (*env)->GetMethodID(env, tempClass, "getByteStream", "()[B");
}
return AudioStream_getByteStream;
}
/**
* This function is used to initialize the static references to AudioStream's read methods.
*
* @param env - A reference to the JVM.
* @param audio - An AudioStream instance
* @return A reference to the getByteStream method.
*/
jmethodID getReadMethod(JNIEnv *env, jobject audio)
{
jclass tempClass;
if (AudioStream_readInt == 0)
{
tempClass = getAudioStreamClass(env, audio);
if (tempClass == 0)
{
printf("Could not find AudioStream class");
}
else
{
AudioStream_readInt = (*env)->GetMethodID(env, tempClass, "read", "()I");
printf("Found class AudioStream");
}
}
if (InputStream_readBuffer == 0 )
{
tempClass = getInputStreamClass(env);
if (tempClass == 0)
{
printf("Could not find InputStream class");
}
else
{
InputStream_readBuffer = (*env)->GetMethodID(env, tempClass, "read", "([B)I");
printf("Found class java/io/InputStream");
}
}
return AudioStream_readInt;
}
/**
* Obtains an audio stream's header.
* @param env - A reference to the JVM.
* @param stream - The audio stream to obtain the header from
* @return The header information.
*/
jobject getHeader(JNIEnv *env, jobject stream)
{
if (AudioStream_getHeader == 0)
{
getHeaderMethod(env, stream);
if (AudioStream_getHeader == 0)
{
return 0;
}
}
jobject returnValue = (*env)->CallObjectMethod(env, stream, AudioStream_getHeader);
return returnValue;
}
/**
* Obtains the original raw byte data for an audio stream's header.
* @param env - A reference to the JVM.
* @param stream - The audio stream to obtain the header from.
* @return The header information.
*/
jbyteArray getByteStream(JNIEnv *env, jobject stream)
{
if (AudioStream_getByteStream == 0)
{
getByteStreamMethod(env, stream);
if (AudioStream_getByteStream == 0)
{
return 0;
}
}
jbyteArray returnValue = (jbyteArray) (*env)->CallObjectMethod(env, stream, AudioStream_getByteStream);
return returnValue;
}
/**
* Reads a single integer from the audio stream.
* @param env - A reference to the JVM.
* @param stream - The audio stream to obtain the header from.
* @return The integer read.
*/
int readInt(JNIEnv *env, jobject stream)
{
if (AudioStream_readInt == 0)
{
getReadMethod(env, stream);
if (AudioStream_readInt == 0)
{
return 0;
}
}
jint returnValue = (*env)->CallIntMethod(env, stream, AudioStream_readInt);
return (int) returnValue;
}
/**
* Fills a provided buffer with input from the audio stream.
* @param env - A reference to the JVM.
* @param stream - The audio stream to obtain the header from.
* @param buffer - The buffer to read information to
* @param bufferSize - The size of the buffer
* @return How much information was actually read.
*/
int readBuffer(JNIEnv *env, jobject stream, char* buffer, int bufferSize)
{
if (InputStream_readBuffer == 0)
{
getReadMethod(env, stream);
if (InputStream_readBuffer == 0)
{
printf("readBuffer method not found\n");
return 0;
}
if (AudioStream_readInt == 0)
{
printf("readInt method not found\n");
return 0;
}
}
jbyteArray jbuffer = (*env)->NewByteArray(env, bufferSize);
jint returnValue = (*env)->CallIntMethod(env, stream, InputStream_readBuffer, jbuffer);
jbyte *jbufferEl = (*env)->GetByteArrayElements(env, jbuffer, 0);
for (int i = 0; i < returnValue; i++)
{
buffer[i] = jbufferEl[i];
}
(*env)->ReleaseByteArrayElements(env, jbuffer, jbufferEl, 0);
return returnValue;
}
/**
* Sets the file currently being used
*/
JNIEXPORT jint JNICALL Java_edu_regis_universeplayer_localPlayer_Player_setCurrentFile(JNIEnv *env, jobject obj, jobject stream, jshort numChannels, jshort bitsPerSample, jint sampleRate)
{
if (currentFile != NULL)
{
(*env)->DeleteLocalRef(env, currentFile);
}
currentFile = (*env)->NewGlobalRef(env, stream);
printf("Setting File\n");
return 0;
}
JNIEXPORT void JNICALL Java_edu_regis_universeplayer_localPlayer_Player_save(JNIEnv *env, jobject obj, jstring location)
{
int BUFFER_SIZE = 256;
char buffer[BUFFER_SIZE];
int read;
FILE *output;
char buf[128];
const char *locationPath = (*env)->GetStringUTFChars(env, location, 0);
output = fopen(locationPath, "w");
if (output == NULL)
{
printf("File %s can't be opened\n", locationPath);
return;
}
// Obtains header data
jbyteArray headerData = getByteStream(env, currentFile);
jsize headerLength = (*env)->GetArrayLength(env, headerData);
jbyte* header = (*env)->GetByteArrayElements(env, headerData, 0);
char headerBuff[headerLength];
for (int i = 0; i < headerLength; i++)
{
headerBuff[i] = header[i];
}
fwrite(headerBuff, headerLength, 1, output);
(*env)->ReleaseByteArrayElements(env, headerData, header, 0);
// Writes the actual file
read = readBuffer(env, currentFile, headerBuff, BUFFER_SIZE);
while (read > 0)
{
fwrite(headerBuff, read, 1, output);
read = readBuffer(env, currentFile, headerBuff, BUFFER_SIZE);
}
fclose(output);
(*env)->ReleaseStringUTFChars(env, location, locationPath);
return;
}
JNIEXPORT void JNICALL Java_edu_regis_universeplayer_localPlayer_Player_play(JNIEnv *env, jobject obj)
{
printf("Playing\n");
return;
}
JNIEXPORT void JNICALL Java_edu_regis_universeplayer_localPlayer_Player_pause(JNIEnv *env, jobject obj)
{
printf("Pausing\n");
return;
}
JNIEXPORT jboolean JNICALL Java_edu_regis_universeplayer_localPlayer_Player_isPaused(JNIEnv *env, jobject obj)
{
printf("Is Paused?\n");
return JNI_FALSE;
}

View File

@@ -22,3 +22,5 @@ include 'services:webservice'
rootProject.name = 'UniversalMusicPlayer' rootProject.name = 'UniversalMusicPlayer'
include ':interface' include ':interface'
include ':add-on' include ':add-on'
include ':player'
include ':WavReader'