274 lines
5.6 KiB
Objective-C
274 lines
5.6 KiB
Objective-C
//
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// WavPackFile.m
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// Cog
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//
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// Created by Vincent Spader on 6/6/05.
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// Copyright 2005 Vincent Spader All rights reserved.
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//
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#import "WavPackDecoder.h"
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#import "Logging.h"
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@implementation WavPackDecoder
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int32_t ReadBytesProc(void *ds, void *data, int32_t bcount)
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{
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WavPackDecoder *decoder = (WavPackDecoder *)ds;
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return [[decoder source] read:data amount:bcount];
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}
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uint32_t GetPosProc(void *ds)
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{
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WavPackDecoder *decoder = (WavPackDecoder *)ds;
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return [[decoder source] tell];
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}
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int SetPosAbsProc(void *ds, uint32_t pos)
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{
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WavPackDecoder *decoder = (WavPackDecoder *)ds;
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return ([[decoder source] seek:pos whence:SEEK_SET] ? 0: -1);
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}
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int SetPosRelProc(void *ds, int32_t delta, int mode)
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{
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WavPackDecoder *decoder = (WavPackDecoder *)ds;
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return ([[decoder source] seek:delta whence:mode] ? 0: -1);
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}
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int PushBackByteProc(void *ds, int c)
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{
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WavPackDecoder *decoder = (WavPackDecoder *)ds;
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if ([[decoder source] seekable]) {
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[[decoder source] seek:-1 whence:SEEK_CUR];
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return c;
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}
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else {
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return -1;
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}
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}
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uint32_t GetLengthProc(void *ds)
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{
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WavPackDecoder *decoder = (WavPackDecoder *)ds;
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if ([[decoder source] seekable]) {
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long currentPos = [[decoder source] tell];
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[[decoder source] seek:0 whence:SEEK_END];
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long size = [[decoder source] tell];
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[[decoder source] seek:currentPos whence:SEEK_SET];
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return size;
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}
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else {
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return 0;
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}
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}
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int CanSeekProc(void *ds)
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{
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WavPackDecoder *decoder = (WavPackDecoder *)ds;
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return [[decoder source] seekable];
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}
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int32_t WriteBytesProc(void *ds, void *data, int32_t bcount)
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{
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return -1;
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}
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- (BOOL)open:(id<CogSource>)s
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{
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int open_flags = 0;
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char error[80];
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[self setSource:s];
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reader.read_bytes = ReadBytesProc;
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reader.get_pos = GetPosProc;
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reader.set_pos_abs = SetPosAbsProc;
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reader.set_pos_rel = SetPosRelProc;
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reader.push_back_byte = PushBackByteProc;
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reader.get_length = GetLengthProc;
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reader.can_seek = CanSeekProc;
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reader.write_bytes = WriteBytesProc;
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//No corrections file (WVC) support at the moment.
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wpc = WavpackOpenFileInputEx(&reader, self, NULL, error, open_flags, 0);
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if (!wpc) {
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DLog(@"Unable to open file..");
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return NO;
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}
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channels = WavpackGetNumChannels(wpc);
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bitsPerSample = WavpackGetBitsPerSample(wpc);
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frequency = WavpackGetSampleRate(wpc);
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totalFrames = WavpackGetNumSamples(wpc);
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bitrate = (int)(WavpackGetAverageBitrate(wpc, TRUE)/1000.0);
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[self willChangeValueForKey:@"properties"];
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[self didChangeValueForKey:@"properties"];
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return YES;
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}
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/*
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- (int)fillBuffer:(void *)buf ofSize:(UInt32)size
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{
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int numsamples;
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int n;
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void *sampleBuf = malloc(size*2);
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numsamples = size/(bitsPerSample/8)/channels;
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n = WavpackUnpackSamples(wpc, sampleBuf, numsamples);
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int i;
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for (i = 0; i < n*channels; i++)
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{
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((UInt16 *)buf)[i] = ((UInt32 *)sampleBuf)[i];
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}
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n *= (bitsPerSample/8)*channels;
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free(sampleBuf);
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return n;
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}
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*/
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- (int)readAudio:(void *)buf frames:(UInt32)frames
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{
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uint32_t sample;
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int32_t audioSample;
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uint32_t samplesRead;
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int8_t *alias8;
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int16_t *alias16;
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int32_t *alias32;
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int32_t *inputBuffer = malloc(frames*sizeof(int32_t));
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// Wavpack uses "complete" samples (one sample across all channels), i.e. a Core Audio frame
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samplesRead = WavpackUnpackSamples(wpc, inputBuffer, frames/channels);
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// Handle floating point files
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// Perform hard clipping and convert to integers
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if(MODE_FLOAT & WavpackGetMode(wpc) && 127 == WavpackGetFloatNormExp(wpc)) {
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float f;
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alias32 = inputBuffer;
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for(sample = 0; sample < samplesRead * channels; ++sample) {
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f = * ((float *) alias32);
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if(f > 1.0) { f = 1.0; }
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if(f < -1.0) { f = -1.0; }
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*alias32++ = (int32_t) (f * 2147483647.0);
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}
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}
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switch(bitsPerSample) {
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case 8:
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// No need for byte swapping
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alias8 = buf;
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for(sample = 0; sample < samplesRead * channels; ++sample) {
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*alias8++ = (int8_t)inputBuffer[sample];
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}
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break;
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case 16:
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// Convert to little endian byte order
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alias16 = buf;
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for(sample = 0; sample < samplesRead*channels; ++sample) {
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*alias16++ = OSSwapHostToLittleInt16((int16_t)inputBuffer[sample]);
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}
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break;
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case 24:
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// Convert to little endian byte order
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alias8 = buf;
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for(sample = 0; sample < samplesRead * channels; ++sample) {
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audioSample = inputBuffer[sample];
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*alias8++ = (int8_t)audioSample;
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*alias8++ = (int8_t)(audioSample >> 8);
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*alias8++ = (int8_t)(audioSample >> 16);
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}
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break;
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case 32:
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// Convert to little endian byte order
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alias32 = buf;
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for(sample = 0; sample < samplesRead * channels; ++sample) {
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*alias32++ = OSSwapHostToLittleInt32(inputBuffer[sample]);
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}
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break;
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default:
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ALog(@"Unsupported sample size: %d", bitsPerSample);
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}
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free(inputBuffer);
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return samplesRead;
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}
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- (long)seek:(long)frame
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{
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WavpackSeekSample(wpc, frame);
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return frame;
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}
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- (void)close
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{
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[source release];
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WavpackCloseFile(wpc);
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}
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- (void)setSource:(id<CogSource>)s
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{
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[s retain];
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[source release];
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source = s;
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}
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- (id<CogSource>)source
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{
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return source;
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}
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- (NSDictionary *)properties
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{
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return [NSDictionary dictionaryWithObjectsAndKeys:
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[NSNumber numberWithInt:channels],@"channels",
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[NSNumber numberWithInt:bitsPerSample],@"bitsPerSample",
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[NSNumber numberWithInt:bitrate],@"bitrate",
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[NSNumber numberWithFloat:frequency],@"sampleRate",
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[NSNumber numberWithDouble:totalFrames],@"totalFrames",
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[NSNumber numberWithBool:[source seekable]], @"seekable",
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@"little",@"endian",
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nil];
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}
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+ (NSArray *)fileTypes
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{
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return [NSArray arrayWithObjects:@"wv", @"wvp", nil];
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}
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+ (NSArray *)mimeTypes
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{
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return [NSArray arrayWithObjects:@"audio/x-wavpack", nil];
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}
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+ (float)priority
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{
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return 1.0;
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}
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@end
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