• Max Kellermann's avatar
    output/sndio: refuse to build with libroarsndio · 5ce93d6f
    Max Kellermann authored
    RoarAudio's sndio emulation has been a source for annoyances.  First,
    their headers turned out to be broken with C++, due to their use of
    the "new" keyword.  Then they used a preprocessor macro to rename
    "sio_hdl" to something else, effectively disallowing the use of
    forward declarations.  Enough is enough, and I'm removing support for
    it.
    
    RoarAudio users should better use the RoarAudio output plugin.
    5ce93d6f
SndioOutputPlugin.cxx 4.47 KB
/*
 * Copyright 2003-2017 The Music Player Daemon Project
 * http://www.musicpd.org
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License as published by
 * the Free Software Foundation; either version 2 of the License, or
 * (at your option) any later version.
 *
 * This program is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 * GNU General Public License for more details.
 *
 * You should have received a copy of the GNU General Public License along
 * with this program; if not, write to the Free Software Foundation, Inc.,
 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
 */

#include "config.h"
#include "SndioOutputPlugin.hxx"
#include "mixer/MixerList.hxx"
#include "mixer/Listener.hxx"
#include "util/Domain.hxx"
#include "Log.hxx"

#include <sndio.h>

#include <stdexcept>

#ifndef SIO_DEVANY
/* this macro is missing in libroar-dev 1.0~beta2-3 (Debian Wheezy) */
#define SIO_DEVANY "default"
#endif

static constexpr unsigned MPD_SNDIO_BUFFER_TIME_MS = 250;

static constexpr Domain sndio_output_domain("sndio_output");

SndioOutput::SndioOutput(const ConfigBlock &block)
	:AudioOutput(0),
	 device(block.GetBlockValue("device", SIO_DEVANY)),
	 buffer_time(block.GetBlockValue("buffer_time",
					 MPD_SNDIO_BUFFER_TIME_MS)),
	 raw_volume(SIO_MAXVOL)
{
}

static void
VolumeCallback(void *arg, unsigned int volume) {
	((SndioOutput *)arg)->VolumeChanged(volume);
}

AudioOutput *
SndioOutput::Create(EventLoop &, const ConfigBlock &block) {
	return new SndioOutput(block);
}

static bool
sndio_test_default_device()
{
	auto *hdl = sio_open(SIO_DEVANY, SIO_PLAY, 0);
	if (!hdl) {
		FormatError(sndio_output_domain,
			    "Error opening default sndio device");
		return false;
	}

	sio_close(hdl);
	return true;
}

void
SndioOutput::Open(AudioFormat &audio_format)
{
	struct sio_par par;
	unsigned bits, rate, chans;

	hdl = sio_open(device, SIO_PLAY, 0);
	if (!hdl)
		throw std::runtime_error("Failed to open default sndio device");

	switch (audio_format.format) {
	case SampleFormat::S16:
		bits = 16;
		break;
	case SampleFormat::S24_P32:
		bits = 24;
		break;
	case SampleFormat::S32:
		bits = 32;
		break;
	default:
		audio_format.format = SampleFormat::S16;
		bits = 16;
		break;
	}

	rate = audio_format.sample_rate;
	chans = audio_format.channels;

	sio_initpar(&par);
	par.bits = bits;
	par.rate = rate;
	par.pchan = chans;
	par.sig = 1;
	par.le = SIO_LE_NATIVE;
	par.appbufsz = rate * buffer_time / 1000;

	if (!sio_setpar(hdl, &par) ||
	    !sio_getpar(hdl, &par)) {
		sio_close(hdl);
		throw std::runtime_error("Failed to set/get audio params");
	}

	if (par.bits != bits ||
	    par.rate < rate * 995 / 1000 ||
	    par.rate > rate * 1005 / 1000 ||
	    par.pchan != chans ||
	    par.sig != 1 ||
	    par.le != SIO_LE_NATIVE) {
		sio_close(hdl);
		throw std::runtime_error("Requested audio params cannot be satisfied");
	}

	// Set volume after opening fresh audio stream which does
	// know nothing about previous audio streams.
	sio_setvol(hdl, raw_volume);
	// sio_onvol returns 0 if no volume knob is available.
	// This is the case on raw audio devices rather than
	// the sndiod audio server.
	if (sio_onvol(hdl, VolumeCallback, this) == 0)
		raw_volume = -1;

	if (!sio_start(hdl)) {
		sio_close(hdl);
		throw std::runtime_error("Failed to start audio device");
	}
}

void
SndioOutput::Close()  noexcept
{
	sio_close(hdl);
}

size_t
SndioOutput::Play(const void *chunk, size_t size)
{
	size_t n;

	n = sio_write(hdl, chunk, size);
	if (n == 0 && sio_eof(hdl) != 0)
		throw std::runtime_error("sndio write failed");
	return n;
}

void
SndioOutput::SetVolume(unsigned int volume)
{
	sio_setvol(hdl, volume * SIO_MAXVOL / 100);
}

static inline unsigned int
RawToPercent(int raw_volume) {
	return raw_volume < 0 ? 100 : raw_volume * 100 / SIO_MAXVOL;
}

void
SndioOutput::VolumeChanged(int _raw_volume) {
	if (raw_volume >= 0 && listener != nullptr && mixer != nullptr) {
		raw_volume = _raw_volume;
		listener->OnMixerVolumeChanged(*mixer,
		    RawToPercent(raw_volume));
	}
}

unsigned int
SndioOutput::GetVolume() {
	return RawToPercent(raw_volume);
}

void
SndioOutput::RegisterMixerListener(Mixer *_mixer, MixerListener *_listener) {
	mixer = _mixer;
	listener = _listener;
}

const struct AudioOutputPlugin sndio_output_plugin = {
	"sndio",
	sndio_test_default_device,
	SndioOutput::Create,
	&sndio_mixer_plugin,
};