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https://github.com/coop-deluxe/sm64coopdx.git
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366 lines
9.4 KiB
C++
366 lines
9.4 KiB
C++
/*
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Audio File Library
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Copyright (C) 1998-2000, 2011-2013, Michael Pruett <michael@68k.org>
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version.
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This library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
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License along with this library; if not, write to the
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Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
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Boston, MA 02110-1301 USA
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*/
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/*
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NeXT.cpp
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This file contains routines for reading and writing NeXT/Sun
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.snd/.au sound files.
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*/
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#include "config.h"
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#include "NeXT.h"
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#include <assert.h>
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#include <stdint.h>
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#include <stdlib.h>
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#include <string.h>
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#include "File.h"
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#include "Setup.h"
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#include "Track.h"
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#include "afinternal.h"
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#include "audiofile.h"
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#include "byteorder.h"
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#include "util.h"
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const int _af_next_compression_types[_AF_NEXT_NUM_COMPTYPES] =
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{
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AF_COMPRESSION_G711_ULAW,
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AF_COMPRESSION_G711_ALAW
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};
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static const _AFfilesetup nextDefaultFileSetup =
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{
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_AF_VALID_FILESETUP, /* valid */
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AF_FILE_NEXTSND, /* fileFormat */
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true, /* trackSet */
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true, /* instrumentSet */
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true, /* miscellaneousSet */
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1, /* trackCount */
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NULL, /* tracks */
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0, /* instrumentCount */
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NULL, /* instruments */
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0, /* miscellaneousCount */
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NULL /* miscellaneous */
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};
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enum
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{
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_AU_FORMAT_UNSPECIFIED = 0,
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_AU_FORMAT_MULAW_8 = 1, /* CCITT G.711 mu-law 8-bit */
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_AU_FORMAT_LINEAR_8 = 2,
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_AU_FORMAT_LINEAR_16 = 3,
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_AU_FORMAT_LINEAR_24 = 4,
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_AU_FORMAT_LINEAR_32 = 5,
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_AU_FORMAT_FLOAT = 6,
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_AU_FORMAT_DOUBLE = 7,
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_AU_FORMAT_INDIRECT = 8,
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_AU_FORMAT_NESTED = 9,
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_AU_FORMAT_DSP_CORE = 10,
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_AU_FORMAT_DSP_DATA_8 = 11, /* 8-bit fixed point */
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_AU_FORMAT_DSP_DATA_16 = 12, /* 16-bit fixed point */
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_AU_FORMAT_DSP_DATA_24 = 13, /* 24-bit fixed point */
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_AU_FORMAT_DSP_DATA_32 = 14, /* 32-bit fixed point */
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_AU_FORMAT_DISPLAY = 16,
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_AU_FORMAT_MULAW_SQUELCH = 17, /* 8-bit mu-law, squelched */
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_AU_FORMAT_EMPHASIZED = 18,
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_AU_FORMAT_COMPRESSED = 19,
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_AU_FORMAT_COMPRESSED_EMPHASIZED = 20,
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_AU_FORMAT_DSP_COMMANDS = 21,
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_AU_FORMAT_DSP_COMMANDS_SAMPLES = 22,
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_AU_FORMAT_ADPCM_G721 = 23, /* CCITT G.721 ADPCM 32 kbits/s */
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_AU_FORMAT_ADPCM_G722 = 24, /* CCITT G.722 ADPCM */
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_AU_FORMAT_ADPCM_G723_3 = 25, /* CCITT G.723 ADPCM 24 kbits/s */
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_AU_FORMAT_ADPCM_G723_5 = 26, /* CCITT G.723 ADPCM 40 kbits/s */
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_AU_FORMAT_ALAW_8 = 27, /* CCITT G.711 a-law */
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_AU_FORMAT_AES = 28,
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_AU_FORMAT_DELTA_MULAW_8 = 29
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};
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static const uint32_t _AU_LENGTH_UNSPECIFIED = 0xffffffff;
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NeXTFile::NeXTFile()
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{
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setFormatByteOrder(AF_BYTEORDER_BIGENDIAN);
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}
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status NeXTFile::readInit(AFfilesetup setup)
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{
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uint32_t id, offset, length, encoding, sampleRate, channelCount;
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m_fh->seek(0, File::SeekFromBeginning);
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m_fh->read(&id, 4);
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assert(!memcmp(&id, ".snd", 4));
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readU32(&offset);
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readU32(&length);
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readU32(&encoding);
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readU32(&sampleRate);
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readU32(&channelCount);
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if (!channelCount)
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{
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_af_error(AF_BAD_CHANNELS, "invalid file with 0 channels");
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return AF_FAIL;
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}
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Track *track = allocateTrack();
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if (!track)
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return AF_FAIL;
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track->f.byteOrder = AF_BYTEORDER_BIGENDIAN;
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track->f.sampleRate = sampleRate;
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track->f.channelCount = channelCount;
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track->f.framesPerPacket = 1;
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/* Override the compression type later if necessary. */
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track->f.compressionType = AF_COMPRESSION_NONE;
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track->fpos_first_frame = offset;
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off_t lengthAvailable = m_fh->length() - offset;
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if (length == _AU_LENGTH_UNSPECIFIED || static_cast<off_t>(length) > lengthAvailable)
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length = lengthAvailable;
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track->data_size = length;
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switch (encoding)
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{
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case _AU_FORMAT_MULAW_8:
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track->f.sampleWidth = 16;
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track->f.sampleFormat = AF_SAMPFMT_TWOSCOMP;
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track->f.compressionType = AF_COMPRESSION_G711_ULAW;
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track->f.byteOrder = _AF_BYTEORDER_NATIVE;
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track->f.bytesPerPacket = track->f.channelCount;
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break;
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case _AU_FORMAT_ALAW_8:
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track->f.sampleWidth = 16;
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track->f.sampleFormat = AF_SAMPFMT_TWOSCOMP;
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track->f.compressionType = AF_COMPRESSION_G711_ALAW;
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track->f.byteOrder = _AF_BYTEORDER_NATIVE;
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track->f.bytesPerPacket = track->f.channelCount;
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break;
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case _AU_FORMAT_LINEAR_8:
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track->f.sampleWidth = 8;
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track->f.sampleFormat = AF_SAMPFMT_TWOSCOMP;
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break;
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case _AU_FORMAT_LINEAR_16:
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track->f.sampleWidth = 16;
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track->f.sampleFormat = AF_SAMPFMT_TWOSCOMP;
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break;
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case _AU_FORMAT_LINEAR_24:
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track->f.sampleWidth = 24;
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track->f.sampleFormat = AF_SAMPFMT_TWOSCOMP;
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break;
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case _AU_FORMAT_LINEAR_32:
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track->f.sampleWidth = 32;
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track->f.sampleFormat = AF_SAMPFMT_TWOSCOMP;
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break;
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case _AU_FORMAT_FLOAT:
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track->f.sampleWidth = 32;
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track->f.sampleFormat = AF_SAMPFMT_FLOAT;
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break;
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case _AU_FORMAT_DOUBLE:
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track->f.sampleWidth = 64;
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track->f.sampleFormat = AF_SAMPFMT_DOUBLE;
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break;
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default:
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/*
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This encoding method is not recognized.
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*/
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_af_error(AF_BAD_SAMPFMT, "bad sample format");
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return AF_FAIL;
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}
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if (track->f.isUncompressed())
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track->f.computeBytesPerPacketPCM();
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_af_set_sample_format(&track->f, track->f.sampleFormat, track->f.sampleWidth);
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track->computeTotalFileFrames();
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return AF_SUCCEED;
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}
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bool NeXTFile::recognize(File *fh)
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{
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uint8_t buffer[4];
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fh->seek(0, File::SeekFromBeginning);
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if (fh->read(buffer, 4) != 4 || memcmp(buffer, ".snd", 4) != 0)
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return false;
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return true;
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}
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AFfilesetup NeXTFile::completeSetup(AFfilesetup setup)
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{
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if (setup->trackSet && setup->trackCount != 1)
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{
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_af_error(AF_BAD_NUMTRACKS, "NeXT files must have exactly 1 track");
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return AF_NULL_FILESETUP;
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}
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TrackSetup *track = setup->getTrack();
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if (!track)
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return AF_NULL_FILESETUP;
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if (track->f.sampleFormat == AF_SAMPFMT_UNSIGNED)
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{
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_af_error(AF_BAD_FILEFMT, "NeXT format does not support unsigned data");
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_af_set_sample_format(&track->f, AF_SAMPFMT_TWOSCOMP, track->f.sampleWidth);
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}
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if (track->f.sampleFormat == AF_SAMPFMT_TWOSCOMP)
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{
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if (track->f.sampleWidth != 8 &&
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track->f.sampleWidth != 16 &&
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track->f.sampleWidth != 24 &&
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track->f.sampleWidth != 32)
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{
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_af_error(AF_BAD_WIDTH, "invalid sample width %d for NeXT file (only 8-, 16-, 24-, and 32-bit data are allowed)", track->f.sampleWidth);
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return AF_NULL_FILESETUP;
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}
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}
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if (track->f.compressionType != AF_COMPRESSION_NONE &&
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track->f.compressionType != AF_COMPRESSION_G711_ULAW &&
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track->f.compressionType != AF_COMPRESSION_G711_ALAW)
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{
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_af_error(AF_BAD_NOT_IMPLEMENTED, "compression format not implemented for NeXT files");
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return AF_NULL_FILESETUP;
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}
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if (track->f.isUncompressed() &&
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track->byteOrderSet &&
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track->f.byteOrder != AF_BYTEORDER_BIGENDIAN &&
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track->f.isByteOrderSignificant())
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{
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_af_error(AF_BAD_BYTEORDER, "NeXT format supports only big-endian data");
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return AF_NULL_FILESETUP;
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}
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if (track->f.isUncompressed())
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track->f.byteOrder = AF_BYTEORDER_BIGENDIAN;
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if (track->aesDataSet)
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{
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_af_error(AF_BAD_FILESETUP, "NeXT files cannot have AES data");
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return AF_NULL_FILESETUP;
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}
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if (track->markersSet && track->markerCount != 0)
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{
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_af_error(AF_BAD_FILESETUP, "NeXT format does not support markers");
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return AF_NULL_FILESETUP;
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}
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if (setup->instrumentSet && setup->instrumentCount != 0)
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{
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_af_error(AF_BAD_FILESETUP, "NeXT format does not support instruments");
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return AF_NULL_FILESETUP;
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}
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if (setup->miscellaneousSet && setup->miscellaneousCount != 0)
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{
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_af_error(AF_BAD_FILESETUP, "NeXT format does not support miscellaneous data");
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return AF_NULL_FILESETUP;
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}
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return _af_filesetup_copy(setup, &nextDefaultFileSetup, false);
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}
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static uint32_t nextencodingtype (AudioFormat *format);
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status NeXTFile::update()
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{
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writeHeader();
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return AF_SUCCEED;
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}
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status NeXTFile::writeHeader()
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{
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Track *track = getTrack();
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if (m_fh->seek(0, File::SeekFromBeginning) != 0)
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_af_error(AF_BAD_LSEEK, "bad seek");
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uint32_t offset = track->fpos_first_frame;
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uint32_t length = track->data_size;
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uint32_t encoding = nextencodingtype(&track->f);
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uint32_t sampleRate = track->f.sampleRate;
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uint32_t channelCount = track->f.channelCount;
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m_fh->write(".snd", 4);
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writeU32(&offset);
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writeU32(&length);
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writeU32(&encoding);
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writeU32(&sampleRate);
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writeU32(&channelCount);
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return AF_SUCCEED;
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}
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static uint32_t nextencodingtype (AudioFormat *format)
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{
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uint32_t encoding = 0;
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if (format->compressionType != AF_COMPRESSION_NONE)
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{
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if (format->compressionType == AF_COMPRESSION_G711_ULAW)
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encoding = _AU_FORMAT_MULAW_8;
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else if (format->compressionType == AF_COMPRESSION_G711_ALAW)
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encoding = _AU_FORMAT_ALAW_8;
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}
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else if (format->sampleFormat == AF_SAMPFMT_TWOSCOMP)
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{
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if (format->sampleWidth == 8)
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encoding = _AU_FORMAT_LINEAR_8;
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else if (format->sampleWidth == 16)
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encoding = _AU_FORMAT_LINEAR_16;
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else if (format->sampleWidth == 24)
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encoding = _AU_FORMAT_LINEAR_24;
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else if (format->sampleWidth == 32)
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encoding = _AU_FORMAT_LINEAR_32;
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}
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else if (format->sampleFormat == AF_SAMPFMT_FLOAT)
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encoding = _AU_FORMAT_FLOAT;
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else if (format->sampleFormat == AF_SAMPFMT_DOUBLE)
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encoding = _AU_FORMAT_DOUBLE;
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return encoding;
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}
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status NeXTFile::writeInit(AFfilesetup setup)
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{
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if (initFromSetup(setup) == AF_FAIL)
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return AF_FAIL;
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writeHeader();
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Track *track = getTrack();
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track->fpos_first_frame = 28;
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return AF_SUCCEED;
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}
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