Split chunk reading into helper functions.
parent
e5bf3ca9c0
commit
35ffcbad33
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@ -17,8 +17,8 @@
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16,Normal,Here's the next tune.,AV Player
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17,Normal,I can feel this race is gonna be really hot. Now start your engine and get ready.,Pre-race
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18,Normal,I can feel this race is gonna be really hot. Now start your engine and get ready.,Pre-race
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19,Normal,Heh aww yeah… I can feel this race is gonna be really hot. Now start your engine and get ready.,Pre-race
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20,Normal,,
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19,Normal,Hehe aww yeah… I can feel this race is gonna be really hot. Now start your engine and get ready.,Pre-race
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20,Normal,"Are you nervous? Hah, I'm so excited! Come on! Hurry up and start this race.",Pre-race
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21,Normal,,
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22,Normal,,
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23,Normal,,
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@ -263,21 +263,79 @@ public class AudioExtractor {
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}
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/**
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* Helper method that converts a little-endian byte array into a long value.
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* Helper function to prompt user to select a program task.
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*
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* @param bytes (up to 8 bytes)
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* @return value
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* @param reader
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* @param input
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* @return operation
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*/
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public static long littleEndianToLong(byte[] bytes) {
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if(bytes.length > 8)
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throw new IllegalArgumentException("Byte array must be 8 bytes or shorter.");
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long value = 0;
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for(int i = 0; i < bytes.length; i++)
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value |= (long) (bytes[i] & 0xFF) << (8 * i);
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return value;
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private static String retrieveOperation(BufferedReader reader, String input) {
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String operation = null;
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String[] values = {"identify", "extract", "pack", "patch", "print", "exit"};
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if(input != null)
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for(int i = 0; i < values.length; i++)
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if(values[i].equalsIgnoreCase(input))
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operation = values[i];
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if(operation == null) {
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String prompt = "\n" + Ansi.colorize("Operations", Attribute.BRIGHT_YELLOW_TEXT(), Attribute.BOLD()) + ":\n"
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+ "- " + Ansi.colorize("Identify", Attribute.BRIGHT_RED_TEXT()) + " a package or audio file\n"
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+ "- " + Ansi.colorize("Extract", Attribute.TEXT_COLOR(0xFF, 0x68, 0x1F)) + " audio tracks from a package (BIN -> WAV/XMA)\n"
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+ "- " + Ansi.colorize("Convert", Attribute.TEXT_COLOR(0xFF, 0xEA, 0x00)) + " audio tracks to another format (XMA <-> WAV <-> FLAC)\n"
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+ "- " + Ansi.colorize("Patch", Attribute.BRIGHT_GREEN_TEXT()) + " an audio track to repeat (WAV)\n"
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+ "- " + Ansi.colorize("Pack", Attribute.BRIGHT_BLUE_TEXT()) + " audio tracks into a package (WAV/XMA -> BIN)\n"
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+ "- " + Ansi.colorize("Print", Attribute.TEXT_COLOR(0x6B, 0x4C, 0xE3)) + " a Ridge Racer 6 style ASCII logo\n"
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+ "- " + Ansi.colorize("Exit", Attribute.BRIGHT_MAGENTA_TEXT()) + " program\n"
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+ "\nPlease select an operation: " + ANSI_BEIGE;
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operation = retrieveInput(reader, prompt, values);
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if(CMD_MODE) {
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Attribute color = null;
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switch(operation.toLowerCase()) {
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case "identify":
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color = Attribute.BRIGHT_RED_TEXT();
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break;
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case "extract":
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color = Attribute.TEXT_COLOR(0xFF, 0x68, 0x1F);
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break;
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case "convert":
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color = Attribute.TEXT_COLOR(0xFF, 0xEA, 0x00);
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case "patch":
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color = Attribute.BRIGHT_GREEN_TEXT();
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break;
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case "pack":
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color = Attribute.BRIGHT_BLUE_TEXT();
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break;
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case "print":
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color = Attribute.TEXT_COLOR(0x6B, 0x4C, 0xE3);
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break;
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case "exit":
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color = Attribute.BRIGHT_MAGENTA_TEXT();
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break;
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}
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System.out.println(ANSI_BACKLINE + Ansi.colorize("Please select an operation: ") + Ansi.colorize(operation, color));
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} else System.out.print(Ansi.colorize(""));
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}
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return operation.toLowerCase();
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}
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/**
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* Examines a given file and reads some of its properties.
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*
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* @param unknownFile
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*/
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public static void identify(File unknownFile) {
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// TODO check for characteristics of BIN or WAV files
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@ -307,55 +365,32 @@ public class AudioExtractor {
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case "wav":
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case "xma":
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default: {
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byte[] buffer = new byte[4];
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for(long i = 0; i < size - 4; i += 4) {
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file.seek(i);
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int value = file.readInt();
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switch(value) {
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case ASCII_RIFF: {
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System.out.println(formatAddress(i) + ":\tRIFF (Resource Interchange File Format) chunk");
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if(i + 8 < size) {
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int riffSize = readChunkSize(file, (int) i);
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System.out.println(formatAddress(i + 4) + ":\t" + riffSize + " Bytes" + (riffSize > 1024 ? " (" + convertBytes(riffSize) + ")" : ""));
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}
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if(i + 12 < size) {
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file.seek(i + 8);
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value = file.readInt();
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if(value == ASCII_WAVE)
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System.out.println(formatAddress(i + 8) + ":\tWAVE (Waveform Audio File Format) type");
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i += 8;
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}
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System.out.println();
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readRIFFChunk(file, (int) i);
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break;
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}
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case ASCII_fmt: {
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System.out.println(formatAddress(i) + ":\tfmt (Format) chunk");
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int fmtSize = 8;
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if(i + 8 < size) {
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fmtSize = readChunkSize(file, (int) i);
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System.out.println(formatAddress(i + 4) + ":\t" + fmtSize + " Bytes" + (fmtSize > 1024 ? " (" + convertBytes(fmtSize) + ")" : ""));
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}
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if(i + fmtSize < size) {
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file.seek(i + 8);
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byte[] LEBytes = new byte[2];
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file.read(LEBytes);
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long encoding = littleEndianToLong(LEBytes);
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System.out.print(formatAddress(i + 8) + "\t");
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if(encoding == 0x0001)
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System.out.print("PCM (Pulse-Code Modulation)");
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else if(encoding == 0x0002)
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System.out.print("ADPCM (Adaptive Differential Pulse-Code Modulation)");
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else if(encoding == 0x0165)
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System.out.print("XMA (Xbox Media Audio)");
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else if(encoding == 0x0166)
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System.out.print("XMA2 (Xbox Media Audio 2)");
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else System.out.print("Unknown");
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// TODO lookup values from CSV
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System.out.println(" encoding");
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i += fmtSize;
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}
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System.out.println();
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readFormatChunk(file, (int) i);
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break;
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}
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case ASCII_smpl: {
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readSampleChunk(file, (int) i);
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break;
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}
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case ASCII_data: {
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readDataChunk(file, (int) i);
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break;
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}
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case ASCII_ALIG: {
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readAlignmentChunk(file, (int) i);
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break;
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}
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case ASCII_x2st: {
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readx2stChunk(file, (int) i);
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break;
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}
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}
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@ -370,6 +405,81 @@ public class AudioExtractor {
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// check if RIFF header
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}
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public static void readRIFFChunk(RandomAccessFile file, int offset) throws IOException {
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System.out.println(formatAddress(offset) + ":\tRIFF (Resource Interchange File Format) chunk");
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if(offset + 8 < file.length()) {
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int riffSize = readChunkSize(file, offset);
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System.out.println(formatAddress(offset + 4) + ":\t" + riffSize + " Bytes" + (riffSize > 1024 ? " (" + convertBytes(riffSize) + ")" : ""));
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}
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if(offset + 12 < file.length()) {
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file.seek(offset + 8);
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if(file.readInt() == ASCII_WAVE)
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System.out.println(formatAddress(offset + 8) + ":\tWAVE (Waveform Audio File Format) type");
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offset += 8;
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}
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System.out.println();
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}
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public static void readFormatChunk(RandomAccessFile file, int offset) throws IOException {
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System.out.println(formatAddress(offset) + ":\tfmt (Format) chunk");
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int fmtSize = 8;
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if(offset + 8 < file.length()) {
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fmtSize = readChunkSize(file, (int) offset);
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System.out.println(formatAddress(offset + 4) + ":\t" + fmtSize + " Bytes" + (fmtSize > 1024 ? " (" + convertBytes(fmtSize) + ")" : ""));
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}
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if(offset + fmtSize < file.length()) {
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file.seek(offset + 8);
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byte[] LEBytes = new byte[2];
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file.read(LEBytes);
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int encoding = littleEndianToInt(LEBytes);
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System.out.print(formatAddress(offset + 8) + "\t");
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if(encoding == 0x0001)
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System.out.print("PCM (Pulse-Code Modulation)");
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else if(encoding == 0x0002)
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System.out.print("ADPCM (Adaptive Differential Pulse-Code Modulation)");
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else if(encoding == 0x0165)
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System.out.print("XMA (Xbox Media Audio)");
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else if(encoding == 0x0166)
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System.out.print("XMA2 (Xbox Media Audio 2)");
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else System.out.print("Unknown");
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// TODO lookup values from CSV
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System.out.println(" encoding");
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offset += fmtSize;
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}
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System.out.println();
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}
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private static void readx2stChunk(RandomAccessFile file, int i) {
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// TODO Auto-generated method stub
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}
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private static void readAlignmentChunk(RandomAccessFile file, int i) {
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// TODO Auto-generated method stub
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}
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private static void readDataChunk(RandomAccessFile file, int i) {
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// TODO Auto-generated method stub
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}
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private static void readSampleChunk(RandomAccessFile file, int i) {
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// TODO Auto-generated method stub
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}
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/**
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* Formats a file address with leading zeroes.
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@ -658,72 +768,6 @@ public class AudioExtractor {
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}
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/**
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* Helper function to prompt user to select a program task.
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*
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* @param reader
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* @param input
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* @return operation
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*/
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private static String retrieveOperation(BufferedReader reader, String input) {
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String operation = null;
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String[] values = {"identify", "extract", "pack", "patch", "print", "exit"};
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if(input != null)
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for(int i = 0; i < values.length; i++)
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if(values[i].equalsIgnoreCase(input))
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operation = values[i];
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if(operation == null) {
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String prompt = "\n" + Ansi.colorize("Operations", Attribute.BRIGHT_YELLOW_TEXT(), Attribute.BOLD()) + ":\n"
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+ "- " + Ansi.colorize("Identify", Attribute.BRIGHT_RED_TEXT()) + " a package or audio file\n"
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+ "- " + Ansi.colorize("Extract", Attribute.TEXT_COLOR(0xFF, 0x68, 0x1F)) + " audio tracks from a package (BIN -> WAV/XMA)\n"
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+ "- " + Ansi.colorize("Convert", Attribute.TEXT_COLOR(0xFF, 0xEA, 0x00)) + " audio tracks to another format (XMA <-> WAV <-> FLAC)\n"
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+ "- " + Ansi.colorize("Patch", Attribute.BRIGHT_GREEN_TEXT()) + " an audio track to repeat (WAV)\n"
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+ "- " + Ansi.colorize("Pack", Attribute.BRIGHT_BLUE_TEXT()) + " audio tracks into a package (WAV/XMA -> BIN)\n"
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+ "- " + Ansi.colorize("Print", Attribute.TEXT_COLOR(0x6B, 0x4C, 0xE3)) + " a Ridge Racer 6 style ASCII logo\n"
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+ "- " + Ansi.colorize("Exit", Attribute.BRIGHT_MAGENTA_TEXT()) + " program\n"
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+ "\nPlease select an operation: " + ANSI_BEIGE;
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operation = retrieveInput(reader, prompt, values);
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if(CMD_MODE) {
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Attribute color = null;
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switch(operation.toLowerCase()) {
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case "identify":
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color = Attribute.BRIGHT_RED_TEXT();
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break;
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case "extract":
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color = Attribute.TEXT_COLOR(0xFF, 0x68, 0x1F);
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break;
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case "convert":
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color = Attribute.TEXT_COLOR(0xFF, 0xEA, 0x00);
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case "patch":
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color = Attribute.BRIGHT_GREEN_TEXT();
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break;
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case "pack":
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color = Attribute.BRIGHT_BLUE_TEXT();
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break;
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case "print":
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color = Attribute.TEXT_COLOR(0x6B, 0x4C, 0xE3);
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break;
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case "exit":
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color = Attribute.BRIGHT_MAGENTA_TEXT();
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break;
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}
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System.out.println(ANSI_BACKLINE + Ansi.colorize("Please select an operation: ") + Ansi.colorize(operation, color));
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} else System.out.print(Ansi.colorize(""));
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}
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return operation.toLowerCase();
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}
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/**
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* Helper function to prompt user to select a WAV file.
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*
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@ -1923,4 +1967,34 @@ public class AudioExtractor {
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}
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/**
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* Helper method that converts a little-endian byte array into a long value.
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*
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* @param bytes (up to 8 bytes)
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* @return value
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*/
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public static long littleEndianToLong(byte[] bytes) {
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if(bytes.length > 8)
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throw new IllegalArgumentException("Byte array must be 8 bytes or shorter.");
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long value = 0;
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for(int i = 0; i < bytes.length; i++)
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value |= (long) (bytes[i] & 0xFF) << (8 * i);
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return value;
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}
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/**
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* Helper method that converts a little-endian byte array into a long value.
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*
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* @param bytes (up to 8 bytes)
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* @return value
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*/
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public static int littleEndianToInt(byte[] bytes) {
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if(bytes.length > 8)
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throw new IllegalArgumentException("Byte array must be 4 bytes or shorter.");
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int value = 0;
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for(int i = 0; i < bytes.length; i++)
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value |= (int) (bytes[i] & 0xFF) << (8 * i);
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return value;
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}
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}
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