mirror of https://github.com/axmolengine/axmol.git
523 lines
14 KiB
C++
523 lines
14 KiB
C++
/**
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* OpenAL cross platform audio library
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* Copyright (C) 1999-2007 by authors.
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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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*
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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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*
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* You should have received a copy of the GNU Library General Public
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* License along with this library; if not, write to the
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* Free Software Foundation, Inc.,
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* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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* Or go to http://www.gnu.org/copyleft/lgpl.html
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*/
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#include "config.h"
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#include "sndio.h"
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <thread>
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#include <functional>
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#include "alnumeric.h"
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#include "core/device.h"
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#include "core/helpers.h"
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#include "core/logging.h"
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#include "ringbuffer.h"
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#include "threads.h"
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#include "vector.h"
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#include <sndio.h>
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namespace {
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static const char sndio_device[] = "SndIO Default";
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struct SndioPlayback final : public BackendBase {
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SndioPlayback(DeviceBase *device) noexcept : BackendBase{device} { }
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~SndioPlayback() override;
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int mixerProc();
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void open(const char *name) override;
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bool reset() override;
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void start() override;
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void stop() override;
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sio_hdl *mSndHandle{nullptr};
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al::vector<al::byte> mBuffer;
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std::atomic<bool> mKillNow{true};
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std::thread mThread;
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DEF_NEWDEL(SndioPlayback)
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};
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SndioPlayback::~SndioPlayback()
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{
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if(mSndHandle)
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sio_close(mSndHandle);
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mSndHandle = nullptr;
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}
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int SndioPlayback::mixerProc()
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{
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sio_par par;
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sio_initpar(&par);
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if(!sio_getpar(mSndHandle, &par))
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{
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mDevice->handleDisconnect("Failed to get device parameters");
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return 1;
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}
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const size_t frameStep{par.pchan};
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const size_t frameSize{frameStep * par.bps};
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SetRTPriority();
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althrd_setname(MIXER_THREAD_NAME);
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while(!mKillNow.load(std::memory_order_acquire)
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&& mDevice->Connected.load(std::memory_order_acquire))
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{
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al::byte *WritePtr{mBuffer.data()};
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size_t len{mBuffer.size()};
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mDevice->renderSamples(WritePtr, static_cast<uint>(len/frameSize), frameStep);
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while(len > 0 && !mKillNow.load(std::memory_order_acquire))
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{
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size_t wrote{sio_write(mSndHandle, WritePtr, len)};
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if(wrote == 0)
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{
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ERR("sio_write failed\n");
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mDevice->handleDisconnect("Failed to write playback samples");
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break;
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}
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len -= wrote;
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WritePtr += wrote;
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}
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}
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return 0;
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}
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void SndioPlayback::open(const char *name)
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{
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if(!name)
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name = sndio_device;
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else if(strcmp(name, sndio_device) != 0)
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throw al::backend_exception{al::backend_error::NoDevice, "Device name \"%s\" not found",
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name};
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sio_hdl *sndHandle{sio_open(nullptr, SIO_PLAY, 0)};
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if(!sndHandle)
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throw al::backend_exception{al::backend_error::NoDevice, "Could not open backend device"};
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if(mSndHandle)
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sio_close(mSndHandle);
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mSndHandle = sndHandle;
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mDevice->DeviceName = name;
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}
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bool SndioPlayback::reset()
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{
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sio_par par;
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sio_initpar(&par);
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par.rate = mDevice->Frequency;
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switch(mDevice->FmtChans)
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{
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case DevFmtMono : par.pchan = 1; break;
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case DevFmtQuad : par.pchan = 4; break;
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case DevFmtX51Rear: // fall-through - "Similar to 5.1, except using rear channels instead of sides"
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case DevFmtX51 : par.pchan = 6; break;
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case DevFmtX61 : par.pchan = 7; break;
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case DevFmtX71 : par.pchan = 8; break;
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// fall back to stereo for Ambi3D
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case DevFmtAmbi3D : // fall-through
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case DevFmtStereo : par.pchan = 2; break;
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}
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switch(mDevice->FmtType)
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{
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case DevFmtByte:
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par.bits = 8;
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par.sig = 1;
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break;
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case DevFmtUByte:
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par.bits = 8;
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par.sig = 0;
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break;
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case DevFmtFloat:
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case DevFmtShort:
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par.bits = 16;
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par.sig = 1;
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break;
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case DevFmtUShort:
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par.bits = 16;
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par.sig = 0;
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break;
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case DevFmtInt:
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par.bits = 32;
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par.sig = 1;
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break;
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case DevFmtUInt:
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par.bits = 32;
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par.sig = 0;
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break;
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}
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par.le = SIO_LE_NATIVE;
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par.round = mDevice->UpdateSize;
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par.appbufsz = mDevice->BufferSize - mDevice->UpdateSize;
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if(!par.appbufsz) par.appbufsz = mDevice->UpdateSize;
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if(!sio_setpar(mSndHandle, &par) || !sio_getpar(mSndHandle, &par))
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{
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ERR("Failed to set device parameters\n");
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return false;
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}
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if(par.bits != par.bps*8)
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{
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ERR("Padded samples not supported (%u of %u bits)\n", par.bits, par.bps*8);
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return false;
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}
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if(par.le != SIO_LE_NATIVE)
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{
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ERR("Non-native-endian samples not supported (got %s-endian)\n",
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par.le ? "little" : "big");
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return false;
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}
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mDevice->Frequency = par.rate;
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if(par.pchan < 2)
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{
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if(mDevice->FmtChans != DevFmtMono)
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{
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WARN("Got %u channel for %s\n", par.pchan, DevFmtChannelsString(mDevice->FmtChans));
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mDevice->FmtChans = DevFmtMono;
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}
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}
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else if((par.pchan == 2 && mDevice->FmtChans != DevFmtStereo)
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|| par.pchan == 3
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|| (par.pchan == 4 && mDevice->FmtChans != DevFmtQuad)
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|| par.pchan == 5
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|| (par.pchan == 6 && mDevice->FmtChans != DevFmtX51 && mDevice->FmtChans != DevFmtX51Rear)
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|| (par.pchan == 7 && mDevice->FmtChans != DevFmtX61)
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|| (par.pchan == 8 && mDevice->FmtChans != DevFmtX71)
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|| par.pchan > 8)
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{
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WARN("Got %u channels for %s\n", par.pchan, DevFmtChannelsString(mDevice->FmtChans));
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mDevice->FmtChans = DevFmtStereo;
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}
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if(par.bits == 8 && par.sig == 1)
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mDevice->FmtType = DevFmtByte;
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else if(par.bits == 8 && par.sig == 0)
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mDevice->FmtType = DevFmtUByte;
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else if(par.bits == 16 && par.sig == 1)
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mDevice->FmtType = DevFmtShort;
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else if(par.bits == 16 && par.sig == 0)
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mDevice->FmtType = DevFmtUShort;
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else if(par.bits == 32 && par.sig == 1)
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mDevice->FmtType = DevFmtInt;
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else if(par.bits == 32 && par.sig == 0)
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mDevice->FmtType = DevFmtUInt;
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else
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{
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ERR("Unhandled sample format: %s %u-bit\n", (par.sig?"signed":"unsigned"), par.bits);
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return false;
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}
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setDefaultChannelOrder();
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mDevice->UpdateSize = par.round;
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mDevice->BufferSize = par.bufsz + par.round;
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mBuffer.resize(mDevice->UpdateSize * par.pchan*par.bps);
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if(par.sig == 1)
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std::fill(mBuffer.begin(), mBuffer.end(), al::byte{});
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else if(par.bits == 8)
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std::fill_n(mBuffer.data(), mBuffer.size(), al::byte(0x80));
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else if(par.bits == 16)
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std::fill_n(reinterpret_cast<uint16_t*>(mBuffer.data()), mBuffer.size()/2, 0x8000);
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else if(par.bits == 32)
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std::fill_n(reinterpret_cast<uint32_t*>(mBuffer.data()), mBuffer.size()/4, 0x80000000u);
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return true;
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}
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void SndioPlayback::start()
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{
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if(!sio_start(mSndHandle))
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throw al::backend_exception{al::backend_error::DeviceError, "Error starting playback"};
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try {
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mKillNow.store(false, std::memory_order_release);
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mThread = std::thread{std::mem_fn(&SndioPlayback::mixerProc), this};
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}
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catch(std::exception& e) {
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sio_stop(mSndHandle);
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throw al::backend_exception{al::backend_error::DeviceError,
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"Failed to start mixing thread: %s", e.what()};
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}
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}
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void SndioPlayback::stop()
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{
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if(mKillNow.exchange(true, std::memory_order_acq_rel) || !mThread.joinable())
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return;
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mThread.join();
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if(!sio_stop(mSndHandle))
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ERR("Error stopping device\n");
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}
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struct SndioCapture final : public BackendBase {
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SndioCapture(DeviceBase *device) noexcept : BackendBase{device} { }
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~SndioCapture() override;
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int recordProc();
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void open(const char *name) override;
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void start() override;
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void stop() override;
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void captureSamples(al::byte *buffer, uint samples) override;
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uint availableSamples() override;
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sio_hdl *mSndHandle{nullptr};
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RingBufferPtr mRing;
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std::atomic<bool> mKillNow{true};
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std::thread mThread;
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DEF_NEWDEL(SndioCapture)
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};
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SndioCapture::~SndioCapture()
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{
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if(mSndHandle)
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sio_close(mSndHandle);
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mSndHandle = nullptr;
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}
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int SndioCapture::recordProc()
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{
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SetRTPriority();
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althrd_setname(RECORD_THREAD_NAME);
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const uint frameSize{mDevice->frameSizeFromFmt()};
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while(!mKillNow.load(std::memory_order_acquire)
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&& mDevice->Connected.load(std::memory_order_acquire))
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{
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auto data = mRing->getWriteVector();
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size_t todo{data.first.len + data.second.len};
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if(todo == 0)
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{
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static char junk[4096];
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sio_read(mSndHandle, junk,
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minz(sizeof(junk)/frameSize, mDevice->UpdateSize)*frameSize);
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continue;
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}
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size_t total{0u};
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data.first.len *= frameSize;
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data.second.len *= frameSize;
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todo = minz(todo, mDevice->UpdateSize) * frameSize;
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while(total < todo)
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{
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if(!data.first.len)
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data.first = data.second;
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size_t got{sio_read(mSndHandle, data.first.buf, minz(todo-total, data.first.len))};
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if(!got)
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{
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mDevice->handleDisconnect("Failed to read capture samples");
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break;
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}
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data.first.buf += got;
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data.first.len -= got;
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total += got;
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}
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mRing->writeAdvance(total / frameSize);
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}
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return 0;
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}
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void SndioCapture::open(const char *name)
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{
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if(!name)
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name = sndio_device;
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else if(strcmp(name, sndio_device) != 0)
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throw al::backend_exception{al::backend_error::NoDevice, "Device name \"%s\" not found",
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name};
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mSndHandle = sio_open(nullptr, SIO_REC, 0);
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if(mSndHandle == nullptr)
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throw al::backend_exception{al::backend_error::NoDevice, "Could not open backend device"};
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sio_par par;
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sio_initpar(&par);
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switch(mDevice->FmtType)
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{
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case DevFmtByte:
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par.bps = 1;
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par.sig = 1;
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break;
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case DevFmtUByte:
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par.bps = 1;
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par.sig = 0;
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break;
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case DevFmtShort:
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par.bps = 2;
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par.sig = 1;
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break;
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case DevFmtUShort:
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par.bps = 2;
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par.sig = 0;
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break;
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case DevFmtInt:
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par.bps = 4;
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par.sig = 1;
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break;
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case DevFmtUInt:
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par.bps = 4;
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par.sig = 0;
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break;
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case DevFmtFloat:
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throw al::backend_exception{al::backend_error::DeviceError,
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"%s capture samples not supported", DevFmtTypeString(mDevice->FmtType)};
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}
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par.bits = par.bps * 8;
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par.le = SIO_LE_NATIVE;
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par.msb = SIO_LE_NATIVE ? 0 : 1;
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par.rchan = mDevice->channelsFromFmt();
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par.rate = mDevice->Frequency;
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par.appbufsz = maxu(mDevice->BufferSize, mDevice->Frequency/10);
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par.round = minu(par.appbufsz, mDevice->Frequency/40);
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mDevice->UpdateSize = par.round;
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mDevice->BufferSize = par.appbufsz;
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if(!sio_setpar(mSndHandle, &par) || !sio_getpar(mSndHandle, &par))
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throw al::backend_exception{al::backend_error::DeviceError,
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"Failed to set device praameters"};
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if(par.bits != par.bps*8)
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throw al::backend_exception{al::backend_error::DeviceError,
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"Padded samples not supported (got %u of %u bits)", par.bits, par.bps*8};
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if(!((mDevice->FmtType == DevFmtByte && par.bits == 8 && par.sig != 0)
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|| (mDevice->FmtType == DevFmtUByte && par.bits == 8 && par.sig == 0)
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|| (mDevice->FmtType == DevFmtShort && par.bits == 16 && par.sig != 0)
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|| (mDevice->FmtType == DevFmtUShort && par.bits == 16 && par.sig == 0)
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|| (mDevice->FmtType == DevFmtInt && par.bits == 32 && par.sig != 0)
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|| (mDevice->FmtType == DevFmtUInt && par.bits == 32 && par.sig == 0))
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|| mDevice->channelsFromFmt() != par.rchan || mDevice->Frequency != par.rate)
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throw al::backend_exception{al::backend_error::DeviceError,
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"Failed to set format %s %s %uhz, got %c%u %u-channel %uhz instead",
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DevFmtTypeString(mDevice->FmtType), DevFmtChannelsString(mDevice->FmtChans),
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mDevice->Frequency, par.sig?'s':'u', par.bits, par.rchan, par.rate};
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mRing = RingBuffer::Create(mDevice->BufferSize, par.bps*par.rchan, false);
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setDefaultChannelOrder();
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mDevice->DeviceName = name;
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}
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void SndioCapture::start()
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{
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if(!sio_start(mSndHandle))
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throw al::backend_exception{al::backend_error::DeviceError, "Error starting capture"};
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try {
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mKillNow.store(false, std::memory_order_release);
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mThread = std::thread{std::mem_fn(&SndioCapture::recordProc), this};
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}
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catch(std::exception& e) {
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sio_stop(mSndHandle);
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throw al::backend_exception{al::backend_error::DeviceError,
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"Failed to start capture thread: %s", e.what()};
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}
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}
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void SndioCapture::stop()
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{
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if(mKillNow.exchange(true, std::memory_order_acq_rel) || !mThread.joinable())
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return;
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mThread.join();
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if(!sio_stop(mSndHandle))
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ERR("Error stopping device\n");
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}
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void SndioCapture::captureSamples(al::byte *buffer, uint samples)
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{ mRing->read(buffer, samples); }
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uint SndioCapture::availableSamples()
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{ return static_cast<uint>(mRing->readSpace()); }
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} // namespace
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BackendFactory &SndIOBackendFactory::getFactory()
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{
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static SndIOBackendFactory factory{};
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return factory;
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}
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bool SndIOBackendFactory::init()
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{ return true; }
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bool SndIOBackendFactory::querySupport(BackendType type)
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{ return (type == BackendType::Playback || type == BackendType::Capture); }
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std::string SndIOBackendFactory::probe(BackendType type)
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{
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std::string outnames;
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switch(type)
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{
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case BackendType::Playback:
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case BackendType::Capture:
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/* Includes null char. */
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outnames.append(sndio_device, sizeof(sndio_device));
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break;
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}
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return outnames;
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}
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BackendPtr SndIOBackendFactory::createBackend(DeviceBase *device, BackendType type)
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{
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if(type == BackendType::Playback)
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return BackendPtr{new SndioPlayback{device}};
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if(type == BackendType::Capture)
|
|
return BackendPtr{new SndioCapture{device}};
|
|
return nullptr;
|
|
}
|