237 lines
6.9 KiB
C
237 lines
6.9 KiB
C
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/*******************************************************************************/
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/* Copyright (C) 2008 Jonathan Moore Liles */
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/* */
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/* This program is free software; you can redistribute it and/or modify it */
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/* under the terms of the GNU General Public License as published by the */
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/* Free Software Foundation; either version 2 of the License, or (at your */
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/* option) any later version. */
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/* */
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/* This program is distributed in the hope that it will be useful, but WITHOUT */
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/* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or */
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/* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for */
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/* more details. */
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/* */
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/* You should have received a copy of the GNU General Public License along */
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/* with This program; see the file COPYING. If not,write to the Free Software */
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/* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
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/*******************************************************************************/
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/* Handles streaming regions from disk to track outputs. */
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/* FIXME: we shouldn't depend on these */
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#include "../Timeline.H" // for locking
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#include "../Audio_Sequence.H"
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#include "../Track.H"
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#include "Port.H"
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#include "Playback_DS.H"
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#include "Engine.H"
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#include "dsp.h"
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#include "const.h"
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#include "util/debug.h"
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#include "util/Thread.H"
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bool
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Playback_DS::seek_pending ( void )
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{
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return _pending_seek != (nframes_t)-1;
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}
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/** request that the IO thread perform a seek and rebuffer. This is
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called for each Disk_Stream whenever the RT thread determines that
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the transport has jumped to a new position. This is called *before*
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process. */
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void
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Playback_DS::seek ( nframes_t frame )
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{
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THREAD_ASSERT( RT );
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/* FIXME: non-RT-safe IO */
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DMESSAGE( "requesting seek to frame %lu", (unsigned long)frame );
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if ( seek_pending() )
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printf( "seek error, attempt to seek while seek is pending\n" );
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_pending_seek = frame;
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flush();
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}
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/** read /nframes/ from the attached track into /buf/ */
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void
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Playback_DS::read_block ( sample_t *buf, nframes_t nframes )
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{
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THREAD_ASSERT( Playback );
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memset( buf, 0, nframes * sizeof( sample_t ) * channels() );
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/* stupid chicken/egg */
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if ( ! timeline )
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return;
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// printf( "IO: attempting to read block @ %lu\n", _frame );
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if ( ! sequence() )
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{
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// _frame += _nframes;
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return;
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}
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timeline->rdlock();
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if ( sequence()->play( buf, _frame, nframes, channels() ) )
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_frame += nframes;
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else
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WARNING( "Programming error?" );
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timeline->unlock();
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}
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#define AVOID_UNNECESSARY_COPYING 1
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void
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Playback_DS::disk_thread ( void )
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{
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_thread.name( "Playback" );
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DMESSAGE( "playback thread running" );
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/* buffer to hold the interleaved data returned by the track reader */
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sample_t *buf = new sample_t[ _nframes * channels() * _disk_io_blocks ];
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#ifndef AVOID_UNNECESSARY_COPYING
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sample_t *cbuf = new sample_t[ _nframes * _disk_io_blocks ];
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#endif
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int blocks_ready = 0;
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const nframes_t nframes = _nframes * _disk_io_blocks;
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while ( wait_for_block() )
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{
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// lock(); // for seeking
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if ( seek_pending() )
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{
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/* FIXME: non-RT-safe IO */
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DMESSAGE( "performing seek to frame %lu", (unsigned long)_pending_seek );
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_frame = _pending_seek;
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_pending_seek = -1;
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blocks_ready = 0;
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}
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if ( ++blocks_ready < _disk_io_blocks )
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{
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/* wait for more space */
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continue;
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}
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/* reset */
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blocks_ready = 0;
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read_block( buf, nframes );
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// unlock(); // for seeking
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/* deinterleave the buffer and stuff it into the per-channel ringbuffers */
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const size_t block_size = nframes * sizeof( sample_t );
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for ( int i = channels(); i--; )
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{
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#ifdef AVOID_UNNECESSARY_COPYING
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/* deinterleave direcectly into the ringbuffer to avoid
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* unnecessary copying */
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jack_ringbuffer_data_t rbd[2];
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memset( rbd, 0, sizeof( rbd ) );
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jack_ringbuffer_get_write_vector( _rb[ i ], rbd );
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if ( rbd[ 0 ].len >= block_size )
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{
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/* it'll all fit in one go */
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buffer_deinterleave_one_channel( (sample_t*)rbd[ 0 ].buf, buf, i, channels(), nframes );
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}
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else if ( rbd[ 0 ].len + rbd[ 1 ].len >= block_size )
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{
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/* there's enough space in the ringbuffer, but it's not contiguous */
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assert( ! ( rbd[ 0 ].len % sizeof( sample_t ) ) );
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// assert( ! ( rbd[ 1 ].len % sizeof( sample_t ) ) );
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const nframes_t f = rbd[ 0 ].len / sizeof( sample_t );
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/* do the first half */
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buffer_deinterleave_one_channel( (sample_t*)rbd[ 0 ].buf, buf, i, channels(), f );
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assert( rbd[ 1 ].len >= ( nframes - f ) * sizeof( sample_t ) );
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/* do the second half */
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buffer_deinterleave_one_channel( (sample_t*)rbd[ 1 ].buf, buf + f, i, channels(), nframes - f );
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}
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else
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++_xruns;
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jack_ringbuffer_write_advance( _rb[ i ], block_size );
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#else
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buffer_deinterleave_one_channel( cbuf, buf, i, channels(), nframes );
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if ( jack_ringbuffer_write( _rb[ i ], (char*)cbuf, block_size ) < block_size )
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++_xruns;
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#endif
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}
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}
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DMESSAGE( "playback thread terminating" );
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delete[] buf;
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#ifndef AVOID_UNNECESSARY_COPYING
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delete[] cbuf;
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#endif
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_terminate = false;
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}
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/** take a single block from the ringbuffers and send it out the
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* attached track's ports */
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nframes_t
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Playback_DS::process ( nframes_t nframes )
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{
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THREAD_ASSERT( RT );
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const size_t block_size = nframes * sizeof( sample_t );
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// printf( "process: %lu %lu %lu\n", _frame, _frame + nframes, nframes );
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for ( int i = channels(); i--; )
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{
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void *buf = track()->output[ i ].buffer( nframes );
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if ( jack_ringbuffer_read( _rb[ i ], (char*)buf, block_size ) < block_size )
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{
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++_xruns;
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memset( buf, 0, block_size );
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/* FIXME: we need to resync somehow */
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}
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/* TODO: figure out a way to stop IO while muted without losing sync */
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if ( track()->mute() || ( Track::soloing() && ! track()->solo() ) )
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buffer_fill_with_silence( (sample_t*)buf, nframes );
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}
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block_processed();
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/* FIXME: bogus */
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return nframes;
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}
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