334 lines
8.0 KiB
C++
334 lines
8.0 KiB
C++
/*
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Audio File Library
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Copyright (C) 2012, 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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#include "config.h"
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#include "SampleVision.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 "util.h"
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#include <string.h>
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static const char *kSMPMagic = "SOUND SAMPLE DATA ";
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static const unsigned kSMPMagicLength = 18;
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static const char *kSMPVersion = "2.1 ";
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static const unsigned kSMPVersionLength = 4;
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static const unsigned kSMPNameLength = 30;
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static const unsigned kSMPCommentLength = 60;
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static const unsigned kSMPMarkerNameLength = 10;
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static const uint32_t kSMPInvalidSamplePosition = 0xffffffffu;
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static const uint8_t kSMPMIDIUnityPlaybackNote = 60;
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static const _AFfilesetup sSampleVisionDefaultFileSetup =
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{
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_AF_VALID_FILESETUP,
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AF_FILE_SAMPLEVISION,
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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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1, // 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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static void trimTrailingSpaces(char *s)
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{
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int n = strlen(s);
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if (!n)
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return;
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while (--n > 0 && s[n] == ' ')
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;
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s[n+1] = '\0';
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}
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SampleVisionFile::SampleVisionFile() :
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m_frameCountOffset(-1)
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{
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setFormatByteOrder(AF_BYTEORDER_LITTLEENDIAN);
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}
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SampleVisionFile::~SampleVisionFile()
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{
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}
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bool SampleVisionFile::recognize(File *fh)
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{
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fh->seek(0, File::SeekFromBeginning);
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char magic[kSMPMagicLength];
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if (fh->read(magic, kSMPMagicLength) != (ssize_t) kSMPMagicLength)
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return false;
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return !strncmp(magic, kSMPMagic, kSMPMagicLength);
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}
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AFfilesetup SampleVisionFile::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, "SampleVision file must have 1 track");
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return AF_NULL_FILESETUP;
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}
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TrackSetup *track = &setup->tracks[0];
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if (track->sampleFormatSet)
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{
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if (!track->f.isSigned() || track->f.sampleWidth != 16)
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{
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_af_error(AF_BAD_SAMPFMT,
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"SampleVision format supports only 16-bit signed integer audio data");
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return AF_NULL_FILESETUP;
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}
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}
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else
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_af_set_sample_format(&track->f, AF_SAMPFMT_TWOSCOMP,
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track->f.sampleWidth);
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if (track->byteOrderSet && track->f.byteOrder != AF_BYTEORDER_LITTLEENDIAN)
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{
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// Treat error as correctable.
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_af_error(AF_BAD_BYTEORDER, "SampleVision supports only little-endian data");
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}
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track->f.byteOrder = AF_BYTEORDER_LITTLEENDIAN;
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if (track->compressionSet && !track->f.isUncompressed())
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{
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_af_error(AF_BAD_COMPTYPE, "SampleVision does not support compressed audio data");
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return AF_NULL_FILESETUP;
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}
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if (track->markersSet && track->markerCount)
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{
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_af_error(AF_BAD_NUMMARKS, "SampleVision does not support markers");
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return AF_NULL_FILESETUP;
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}
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if (track->aesDataSet)
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{
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_af_error(AF_BAD_FILESETUP, "SampleVision does not support AES data");
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return AF_NULL_FILESETUP;
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}
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return _af_filesetup_copy(setup, &sSampleVisionDefaultFileSetup, true);
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}
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status SampleVisionFile::readInit(AFfilesetup)
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{
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m_fh->seek(0, File::SeekFromBeginning);
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char magic[kSMPMagicLength];
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if (m_fh->read(magic, kSMPMagicLength) != (ssize_t) kSMPMagicLength)
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return AF_FAIL;
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if (strncmp(magic, kSMPMagic, kSMPMagicLength) != 0)
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return AF_FAIL;
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char version[kSMPVersionLength];
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if (m_fh->read(version, kSMPVersionLength) != (ssize_t) kSMPVersionLength)
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return AF_FAIL;
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if (strncmp(version, kSMPVersion, kSMPVersionLength) != 0)
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return AF_FAIL;
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Track *track = allocateTrack();
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char name[kSMPNameLength + 1];
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m_fh->read(name, kSMPNameLength);
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name[kSMPNameLength] = '\0';
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trimTrailingSpaces(name);
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if (strlen(name) > 0)
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addMiscellaneous(AF_MISC_NAME, name);
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char comment[kSMPCommentLength + 1];
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m_fh->read(comment, kSMPCommentLength);
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comment[kSMPCommentLength] = '\0';
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trimTrailingSpaces(comment);
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if (strlen(comment) > 0)
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addMiscellaneous(AF_MISC_COMMENT, comment);
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uint32_t frameCount;
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readU32(&frameCount);
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track->totalfframes = frameCount;
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track->fpos_first_frame = m_fh->tell();
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track->data_size = 2 * frameCount;
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m_fh->seek(track->data_size, File::SeekFromCurrent);
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uint16_t reserved;
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readU16(&reserved);
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parseLoops();
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parseMarkers();
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uint8_t midiNote;
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uint32_t sampleRate;
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uint32_t smpteOffset;
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uint32_t cycleLength;
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readU8(&midiNote);
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readU32(&sampleRate);
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readU32(&smpteOffset);
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readU32(&cycleLength);
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track->f.byteOrder = AF_BYTEORDER_LITTLEENDIAN;
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track->f.sampleRate = sampleRate;
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track->f.channelCount = 1;
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track->f.compressionType = AF_COMPRESSION_NONE;
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track->f.framesPerPacket = 1;
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_af_set_sample_format(&track->f, AF_SAMPFMT_TWOSCOMP, 16);
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track->f.computeBytesPerPacketPCM();
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return AF_SUCCEED;
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}
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status SampleVisionFile::parseLoops()
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{
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for (int i=0; i<8; i++)
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{
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uint32_t startFrame, endFrame;
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uint8_t type;
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uint16_t count;
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readU32(&startFrame);
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readU32(&endFrame);
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readU8(&type);
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readU16(&count);
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}
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return AF_SUCCEED;
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}
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status SampleVisionFile::parseMarkers()
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{
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for (int i=0; i<8; i++)
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{
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char name[kSMPMarkerNameLength + 1];
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m_fh->read(name, kSMPMarkerNameLength);
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name[kSMPMarkerNameLength] = '\0';
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uint32_t position;
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readU32(&position);
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}
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return AF_SUCCEED;
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}
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void SampleVisionFile::addMiscellaneous(int type, const char *data)
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{
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m_miscellaneousCount++;
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m_miscellaneous = (Miscellaneous *) _af_realloc(m_miscellaneous,
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m_miscellaneousCount * sizeof (Miscellaneous));
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Miscellaneous &m = m_miscellaneous[m_miscellaneousCount - 1];
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m.id = m_miscellaneousCount;
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m.type = type;
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m.size = strlen(data);
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m.position = 0;
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m.buffer = _af_malloc(m.size);
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memcpy(m.buffer, data, m.size);
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}
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status SampleVisionFile::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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m_fh->write(kSMPMagic, kSMPMagicLength);
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m_fh->write(kSMPVersion, kSMPVersionLength);
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char name[kSMPNameLength + 1];
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char comment[kSMPCommentLength + 1];
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memset(name, ' ', kSMPNameLength);
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memset(comment, ' ', kSMPCommentLength);
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m_fh->write(name, kSMPNameLength);
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m_fh->write(comment, kSMPCommentLength);
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uint32_t frameCount = 0;
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m_frameCountOffset = m_fh->tell();
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writeU32(&frameCount);
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Track *track = getTrack();
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track->fpos_first_frame = m_fh->tell();
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return AF_SUCCEED;
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}
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status SampleVisionFile::update()
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{
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m_fh->seek(m_frameCountOffset, File::SeekFromBeginning);
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Track *track = getTrack();
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uint32_t frameCount = track->totalfframes;
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writeU32(&frameCount);
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writeTrailer();
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return AF_SUCCEED;
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}
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status SampleVisionFile::writeTrailer()
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{
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Track *track = getTrack();
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m_fh->seek(track->fpos_after_data, File::SeekFromBeginning);
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uint16_t reserved = 0;
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writeU16(&reserved);
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writeLoops();
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writeMarkers();
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uint8_t midiNote = kSMPMIDIUnityPlaybackNote;
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uint32_t sampleRate = track->f.sampleRate;
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uint32_t smpteOffset = 0;
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uint32_t cycleLength = 0;
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writeU8(&midiNote);
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writeU32(&sampleRate);
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writeU32(&smpteOffset);
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writeU32(&cycleLength);
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return AF_SUCCEED;
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}
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status SampleVisionFile::writeLoops()
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{
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for (int i=0; i<8; i++)
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{
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uint32_t startFrame = kSMPInvalidSamplePosition, endFrame = 0;
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uint8_t type = 0;
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uint16_t count = 0;
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writeU32(&startFrame);
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writeU32(&endFrame);
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writeU8(&type);
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writeU16(&count);
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}
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return AF_SUCCEED;
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}
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status SampleVisionFile::writeMarkers()
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{
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for (int i=0; i<8; i++)
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{
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char name[kSMPMarkerNameLength + 1];
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memset(name, ' ', kSMPMarkerNameLength);
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name[kSMPMarkerNameLength] = '\0';
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m_fh->write(name, kSMPMarkerNameLength);
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uint32_t position = kSMPInvalidSamplePosition;
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writeU32(&position);
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}
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return AF_SUCCEED;
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}
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