mirror of
https://github.com/coop-deluxe/sm64coopdx.git
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202 lines
5.5 KiB
C++
202 lines
5.5 KiB
C++
/*
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Audio File Library
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Copyright (C) 2000, Silicon Graphics, Inc.
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Copyright (C) 2010, 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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PCM.cpp - read and file write module for uncompressed data
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*/
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#include "config.h"
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#include "PCM.h"
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#include <assert.h>
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#include <math.h>
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#include "Compiler.h"
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#include "FileModule.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 "compression.h"
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#include "util.h"
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bool _af_pcm_format_ok (AudioFormat *f)
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{
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assert(!isnan(f->pcm.slope));
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assert(!isnan(f->pcm.intercept));
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assert(!isnan(f->pcm.minClip));
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assert(!isnan(f->pcm.maxClip));
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return true;
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}
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class PCM : public FileModule
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{
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public:
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static PCM *createCompress(Track *track, File *fh, bool canSeek,
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bool headerless, AFframecount *chunkFrames);
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static PCM *createDecompress(Track *track, File *fh, bool canSeek,
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bool headerless, AFframecount *chunkFrames);
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virtual const char *name() const OVERRIDE { return "pcm"; }
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virtual void runPull() OVERRIDE;
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virtual void reset2() OVERRIDE;
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virtual void runPush() OVERRIDE;
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virtual void sync1() OVERRIDE;
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virtual void sync2() OVERRIDE;
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private:
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int m_bytesPerFrame;
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/* saved_fpos_next_frame and saved_nextfframe apply only to writing. */
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int m_saved_fpos_next_frame;
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int m_saved_nextfframe;
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PCM(Mode, Track *, File *, bool canSeek);
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};
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PCM::PCM(Mode mode, Track *track, File *fh, bool canSeek) :
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FileModule(mode, track, fh, canSeek),
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m_bytesPerFrame(track->f.bytesPerFrame(false)),
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m_saved_fpos_next_frame(-1),
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m_saved_nextfframe(-1)
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{
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if (mode == Decompress)
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track->f.compressionParams = AU_NULL_PVLIST;
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}
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PCM *PCM::createCompress(Track *track, File *fh, bool canSeek,
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bool headerless, AFframecount *chunkframes)
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{
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return new PCM(Compress, track, fh, canSeek);
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}
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void PCM::runPush()
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{
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AFframecount frames2write = m_inChunk->frameCount;
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AFframecount n;
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/*
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WARNING: due to the optimization explained at the end
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of arrangemodules(), the pcm file module cannot depend
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on the presence of the intermediate working buffer
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which _AFsetupmodules usually allocates for file
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modules in their input or output chunk (for reading or
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writing, respectively).
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Fortunately, the pcm module has no need for such a buffer.
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*/
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ssize_t bytesWritten = write(m_inChunk->buffer, m_bytesPerFrame * frames2write);
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n = bytesWritten >= 0 ? bytesWritten / m_bytesPerFrame : 0;
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if (n != frames2write)
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reportWriteError(n, frames2write);
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m_track->nextfframe += n;
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m_track->totalfframes = m_track->nextfframe;
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assert(!canSeek() || (tell() == m_track->fpos_next_frame));
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}
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void PCM::sync1()
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{
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m_saved_fpos_next_frame = m_track->fpos_next_frame;
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m_saved_nextfframe = m_track->nextfframe;
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}
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void PCM::sync2()
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{
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assert(!canSeek() || (tell() == m_track->fpos_next_frame));
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/* We can afford to seek because sync2 is rare. */
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m_track->fpos_after_data = tell();
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m_track->fpos_next_frame = m_saved_fpos_next_frame;
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m_track->nextfframe = m_saved_nextfframe;
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}
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PCM *PCM::createDecompress(Track *track, File *fh, bool canSeek,
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bool headerless, AFframecount *chunkframes)
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{
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return new PCM(Decompress, track, fh, canSeek);
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}
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void PCM::runPull()
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{
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AFframecount framesToRead = m_outChunk->frameCount;
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/*
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WARNING: Due to the optimization explained at the end of
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arrangemodules(), the pcm file module cannot depend on
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the presence of the intermediate working buffer which
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_AFsetupmodules usually allocates for file modules in
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their input or output chunk (for reading or writing,
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respectively).
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Fortunately, the pcm module has no need for such a buffer.
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*/
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/*
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Limit the number of frames to be read to the number of
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frames left in the track.
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*/
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if (m_track->totalfframes != -1 &&
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m_track->nextfframe + framesToRead > m_track->totalfframes)
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{
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framesToRead = m_track->totalfframes - m_track->nextfframe;
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}
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ssize_t bytesRead = read(m_outChunk->buffer, m_bytesPerFrame * framesToRead);
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AFframecount framesRead = bytesRead >= 0 ? bytesRead / m_bytesPerFrame : 0;
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m_track->nextfframe += framesRead;
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assert(!canSeek() || (tell() == m_track->fpos_next_frame));
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/*
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If we got EOF from read, then we return the actual amount read.
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Complain only if there should have been more frames in the file.
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*/
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if (framesRead != framesToRead && m_track->totalfframes != -1)
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reportReadError(framesRead, framesToRead);
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m_outChunk->frameCount = framesRead;
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}
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void PCM::reset2()
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{
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m_track->fpos_next_frame = m_track->fpos_first_frame +
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m_bytesPerFrame * m_track->nextfframe;
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m_track->frames2ignore = 0;
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}
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FileModule *_AFpcminitcompress (Track *track, File *fh, bool canSeek,
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bool headerless, AFframecount *chunkFrames)
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{
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return PCM::createCompress(track, fh, canSeek, headerless, chunkFrames);
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}
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FileModule *_AFpcminitdecompress (Track *track, File *fh, bool canSeek,
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bool headerless, AFframecount *chunkFrames)
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{
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return PCM::createDecompress(track, fh, canSeek, headerless, chunkFrames);
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}
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