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443 lines
11 KiB
443 lines
11 KiB
15 years ago
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/*
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Copyright (C) 2001 Aaron Williams
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aaronw@home.com
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(C) 2001 Stefan Westerfeld
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stefan@space.twc.de
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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 Library General Public
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License as published by the Free Software Foundation; either
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version 2 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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Library General Public License for more details.
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You should have received a copy of the GNU Library General Public License
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along with this library; see the file COPYING.LIB. If not, write to
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15 years ago
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the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
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Boston, MA 02110-1301, USA.
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15 years ago
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*/
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/*
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* Audio support for Sun Solaris, written by Aaron Williams
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*
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*
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* Please send comments to aaronw@home.com
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*
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* This code has been tested with Solaris 7 running on a Sun Ultra 5
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*
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* Note that in Solaris the select support appears to be broken.
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* Because of this, we use a timer and a dispatcher instead so we
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* arn't polling (and sucking up most of the CPU).
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*
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* Currently read support has not been tested and will likely break
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* other code
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*
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* 8-bit audio support also does not work (which I don't consider a
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* big deal).
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*/
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#ifdef HAVE_CONFIG_H
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#include <config.h>
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#endif
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/*
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* Only compile this AudioIO class if we're on Solaris
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*/
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#ifdef USE_SOLARIS
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#include <sys/types.h>
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#include <sys/ioctl.h>
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#include <sys/time.h>
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#include <sys/stat.h>
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#include <sys/audioio.h>
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#include <stropts.h>
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#include <sys/conf.h>
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#include <assert.h>
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#include <errno.h>
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#include <fcntl.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <unistd.h>
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#include <iostream>
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#include <algorithm>
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#include "debug.h"
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#include "audioio.h"
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#include "audiosubsys.h"
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#include "iomanager.h"
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#include "dispatcher.h"
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// This looks like the maximum buffer size according to the sys/audio*.h
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// files on Solaris7
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#define SUN_MAX_BUFFER_SIZE (65536)
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namespace Arts {
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class AudioIOSun : public AudioIO, public TimeNotify {
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protected:
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uint_t bytesRead, bytesWritten, bytesPerSec;
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uint_t bytesPerSample;
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timeval start;
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int audio_fd;
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int requestedFragmentSize;
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int requestedFragmentCount;
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audio_info_t auinfo;
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#ifdef WORDS_BIGENDIAN
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static const int defaultFormat = 17;
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#else
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static const int defaultFormat = 16;
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#endif
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public:
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AudioIOSun();
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// Timer callback
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void notifyTime();
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void setParam(AudioParam param, int& value);
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int getParam(AudioParam param);
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bool open();
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void close();
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int read(void *buffer, int size);
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int write(void *buffer, int size);
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};
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REGISTER_AUDIO_IO(AudioIOSun,"sun","Sun Audio Input/Output");
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};
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using namespace std;
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using namespace Arts;
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AudioIOSun::AudioIOSun()
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{
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/*
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* default parameters
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*/
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param(samplingRate) = 44100;
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// solaris convention to support SunRays run out-of-the-box
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const char *audioDev = getenv("AUDIODEV");
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paramStr(deviceName) = (audioDev != 0)?audioDev:"/dev/audio";
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param(fragmentSize) = 1024;
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param(fragmentCount) = 7;
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param(channels) = 2;
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param(direction) = 2;
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param(format) = defaultFormat;
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}
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// Opens the audio device
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bool AudioIOSun::open()
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{
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string& _error = paramStr(lastError);
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string& _deviceName = paramStr(deviceName);
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int& _channels = param(channels);
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int& _fragmentSize = param(fragmentSize);
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int& _fragmentCount = param(fragmentCount);
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int& _samplingRate = param(samplingRate);
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int& _format = param(format);
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int mode;
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if (param(direction) == 3)
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mode = O_RDWR;
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else if (param(direction) == 2)
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mode = O_WRONLY;
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else
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{
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_error = "invalid direction";
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return false;
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}
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audio_fd = ::open(_deviceName.c_str(), mode, 0);
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if (audio_fd < 0)
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{
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_error = "device ";
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_error += _deviceName.c_str();
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_error += " can't be opened (";
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_error += strerror(errno);
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_error += ")";
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return false;
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}
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fcntl(audio_fd, F_SETFL, O_NDELAY);
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AUDIO_INITINFO(&auinfo);
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if (ioctl(audio_fd, AUDIO_GETINFO, &auinfo) < 0)
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{
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_error = "device ";
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_error += _deviceName.c_str();
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_error += " AUDIO_GETINFO failed (";
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_error += strerror(errno);
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_error += ")";
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return false;
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}
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if(_format != 8) _format = defaultFormat;
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#if 0
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printf("param(direction)=%d\n", param(direction));
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printf("format: %d\n", _format);
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printf("channels: %d\n", _channels);
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printf("sampling rate: %d\n", _samplingRate);
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#endif
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bytesPerSample = ((_format == 8) ? 8 : 16)/8 * _channels;
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auinfo.play.precision = (_format == 8) ? 8 : 16;
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if (param(direction) == 3)
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auinfo.record.precision = (_format == 8) ? 8 : 16;
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auinfo.play.encoding = AUDIO_ENCODING_LINEAR;
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if (param(direction) == 3)
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auinfo.record.encoding = AUDIO_ENCODING_LINEAR;
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auinfo.play.channels = _channels;
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if (param(direction) == 3)
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auinfo.record.channels = _channels;
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auinfo.play.sample_rate = _samplingRate;
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if (param(direction) == 3)
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auinfo.record.sample_rate = _samplingRate;
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if (ioctl(audio_fd, AUDIO_SETINFO, &auinfo) < 0)
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{
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_error = "AUDIO_SETINFO failed - ";
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_error += strerror(errno);
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close();
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return false;
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}
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if (ioctl(audio_fd, AUDIO_GETINFO, &auinfo) < 0)
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{
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_error = "device ";
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_error += _deviceName.c_str();
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_error += " AUDIO_GETINFO failed (";
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_error += strerror(errno);
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_error += ")";
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return false;
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}
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if (auinfo.play.precision != (uint_t)((_format == 8) ? 8 : 16) ||
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(param(direction) == 3 &&
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auinfo.record.precision != (uint_t)((_format == 8) ? 8 : 16)))
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{
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char play_details[80];
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char record_details[80];
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sprintf(play_details,
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" (_format = %d, asked driver to give %d, got %d)",
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_format, _format, auinfo.play.precision);
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if (param(direction) == 3)
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sprintf(record_details,
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" (_format = %d, asked driver to give %d, got %d)",
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_format, _format, auinfo.record.precision);
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_error = "Can't set playback and/or record format ";
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_error += "Play format: ";
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_error += play_details;
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if (param(direction) == 3) {
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_error += " Record format: ";
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_error += record_details;
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}
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close();
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return false;
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}
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if ((auinfo.play.encoding != (uint_t)AUDIO_ENCODING_LINEAR) ||
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(param(direction) == 3 &&
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auinfo.record.encoding != (uint_t)AUDIO_ENCODING_LINEAR))
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{
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char play_encoding[80], record_encoding[80];
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sprintf(play_encoding, "(%d bits, %d encoding)",
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auinfo.play.precision, auinfo.play.encoding);
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sprintf(record_encoding, "(%d bits, %d encoding)",
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auinfo.record.precision, auinfo.record.encoding);
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_error = "Can't set playback and/or record format";
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_error += "requested format was ";
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_error += (_format == 8) ? "8-bit AUDIO_ENCODING_LINEAR" :
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"16-bit AUDIO_ENCODING_LINEAR";
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_error += ", got playback format ";
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_error += play_encoding;
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if (param(direction) == 3) {
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_error += ", record format ";
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_error += record_encoding;
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}
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close();
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return false;
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}
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if (auinfo.play.channels != (uint_t)_channels) {
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_error = "Audio device doesn't support number of ";
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_error += "requested playback channels";
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close();
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return false;
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}
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if (param(direction) == 3 && auinfo.record.channels != (uint_t)_channels) {
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_error = "Audio device doesn't support number of ";
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_error += "requested record channels";
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close();
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return false;
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}
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int tolerance = _samplingRate/10+1000;
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if (abs(int(auinfo.play.sample_rate - _samplingRate)) > tolerance)
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{
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_error = "can't set requested playback sampling rate";
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char details[80];
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sprintf(details," (requested rate %d, got rate %d)",
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_samplingRate, auinfo.play.sample_rate);
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_error += details;
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close();
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return false;
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}
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if (param(direction) == 3 &&
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abs(int(auinfo.record.sample_rate - _samplingRate)) > tolerance)
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{
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_error = "can't set requested record sampling rate";
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char details[80];
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sprintf(details," (requested rate %d, got rate %d)",
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_samplingRate, auinfo.play.sample_rate);
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_error += details;
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close();
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return false;
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}
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/*
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* don't allow unreasonable large fragmentSize/Count combinations,
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* because "real" hardware also doesn't
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*/
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if(_fragmentSize > SUN_MAX_BUFFER_SIZE)
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_fragmentSize = SUN_MAX_BUFFER_SIZE;
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while(_fragmentSize * _fragmentCount > SUN_MAX_BUFFER_SIZE)
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_fragmentCount--;
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bytesRead = bytesWritten = 0;
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bytesPerSec = _channels * 2 * _samplingRate;
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// Install the timer
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Dispatcher::the()->ioManager()->addTimer(10, this);
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gettimeofday(&start,0);
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return true;
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}
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void AudioIOSun::close()
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{
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::close(audio_fd);
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Dispatcher::the()->ioManager()->removeTimer(this);
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}
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// This is called on each timer tick
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void AudioIOSun::notifyTime()
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{
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int& _direction = param(direction);
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int& _fragmentSize = param(fragmentSize);
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for (;;) {
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int todo = 0;
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if ((_direction & directionRead) && getParam(canRead) > _fragmentSize)
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todo |= AudioSubSystem::ioRead;
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if ((_direction & directionWrite) && getParam(canWrite) > _fragmentSize)
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todo |= AudioSubSystem::ioWrite;
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if (!todo)
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return;
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AudioSubSystem::the()->handleIO(todo);
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}
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}
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void AudioIOSun::setParam(AudioParam p, int& value)
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{
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switch(p) {
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case fragmentSize:
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param(p) = requestedFragmentSize = value;
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break;
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case fragmentCount:
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param(p) = requestedFragmentCount = value;
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break;
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default:
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param(p) = value;
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break;
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}
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}
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int AudioIOSun::getParam(AudioParam p)
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{
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int bytes;
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int count;
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switch(p)
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{
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case canRead:
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if (ioctl(audio_fd, AUDIO_GETINFO, &auinfo) < 0)
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return (0);
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bytes = (auinfo.record.samples * bytesPerSample) - bytesRead;
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if (bytes < 0) {
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printf("Error: bytes %d < 0, samples=%u, bytesRead=%u\n",
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bytes, auinfo.record.samples, bytesRead);
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bytes = 0;
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}
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return bytes;
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case canWrite:
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if (ioctl(audio_fd, AUDIO_GETINFO, &auinfo) < 0)
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return (0);
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count = SUN_MAX_BUFFER_SIZE -
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(bytesWritten - (auinfo.play.samples * bytesPerSample));
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return count;
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case autoDetect:
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/*
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* If we're on Solaris, this driver is the one that will work,
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* and if we're not on Solaris, it won't be compiled anyway.
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*/
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return 12;
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default:
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return param(p);
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}
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}
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int AudioIOSun::read(void *buffer, int size)
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{
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size = ::read(audio_fd, buffer, size);
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if (size < 0)
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return 0;
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bytesRead += size;
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return size;
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}
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int AudioIOSun::write(void *buffer, int size)
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{
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size = ::write(audio_fd, buffer, size);
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bytesWritten += size;
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return size;
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}
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#endif /* USE_SOLARIS */
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