mirror of
https://github.com/ZDoom/gzdoom-gles.git
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203 lines
5.7 KiB
C++
203 lines
5.7 KiB
C++
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/*
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* Interfaces over Yamaha OPN2 (YM2612) chip emulators
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*
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* Copyright (c) 2018-2020 Vitaly Novichkov (Wohlstand)
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*
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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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*
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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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*
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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 Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#include "mame_opna.h"
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#include "mamefm/fm.h"
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#include "mamefm/fmopn_2608rom.h"
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#include "mamefm/2608intf.h"
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#include "mamefm/resampler.hpp"
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struct MameOPNA::Impl {
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ym2608_device dev;
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void *chip;
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// typedef chip::SincResampler Resampler;
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typedef chip::LinearResampler Resampler;
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Resampler *psgrsm;
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int32_t *psgbuffer;
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static const ssg_callbacks cbssg;
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// callbacks
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static uint8_t cbInternalReadByte(device_t *, offs_t);
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static uint8_t cbExternalReadByte(device_t *, offs_t) { return 0; }
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static void cbExternalWriteByte(device_t *, offs_t, uint8_t) {}
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static void cbHandleTimer(device_t *, int, int, int) {}
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static void cbHandleIRQ(device_t *, int) {}
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static void cbSsgSetClock(device_t *dev, int clock);
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static void cbSsgWrite(device_t *dev, int addr, int data);
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static int cbSsgRead(device_t *dev);
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static void cbSsgReset(device_t *dev);
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};
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const ssg_callbacks MameOPNA::Impl::cbssg =
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{
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&cbSsgSetClock,
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&cbSsgWrite,
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&cbSsgRead,
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&cbSsgReset,
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};
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MameOPNA::MameOPNA(OPNFamily f)
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: OPNChipBaseBufferedT(f), impl(new Impl)
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{
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impl->chip = NULL;
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impl->psgrsm = NULL;
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impl->psgbuffer = NULL;
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setRate(m_rate, m_clock);
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}
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MameOPNA::~MameOPNA()
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{
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delete impl->psgrsm;
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delete[] impl->psgbuffer;
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ym2608_shutdown(impl->chip);
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delete impl;
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}
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void MameOPNA::setRate(uint32_t rate, uint32_t clock)
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{
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OPNChipBaseBufferedT::setRate(rate, clock);
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if(impl->chip)
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ym2608_shutdown(impl->chip);
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uint32_t chipRate = isRunningAtPcmRate() ? rate : nativeRate();
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ym2608_device *device = &impl->dev;
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void *chip = impl->chip = ym2608_init(
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device, (int)clock, (int)chipRate,
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&Impl::cbInternalReadByte, &Impl::cbExternalReadByte,
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&Impl::cbExternalWriteByte,
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&Impl::cbHandleTimer, &Impl::cbHandleIRQ, &Impl::cbssg);
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PSG *psg = &device->m_psg;
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memset(psg, 0, sizeof(PSG));
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uint32_t psgRate = clock / 32;
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PSG_init(psg, clock / 4, psgRate); // TODO libOPNMIDI verify clocks
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PSG_setVolumeMode(psg, 1); // YM2149 volume mode
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delete impl->psgrsm;
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Impl::Resampler *psgrsm = impl->psgrsm = new Impl::Resampler;
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psgrsm->init(psgRate, chipRate, 40);
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delete[] impl->psgbuffer;
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impl->psgbuffer = new int32_t[2 * psgrsm->calculateInternalSampleSize(buffer_size)];
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ym2608_reset_chip(chip);
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ym2608_write(chip, 0, 0x29);
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ym2608_write(chip, 1, 0x9f);
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}
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void MameOPNA::reset()
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{
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OPNChipBaseBufferedT::reset();
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void *chip = impl->chip;
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ym2608_reset_chip(chip);
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ym2608_write(chip, 0, 0x29);
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ym2608_write(chip, 1, 0x9f);
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}
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void MameOPNA::writeReg(uint32_t port, uint16_t addr, uint8_t data)
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{
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void *chip = impl->chip;
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ym2608_write(chip, 0 + (int)(port) * 2, (uint8_t)addr);
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ym2608_write(chip, 1 + (int)(port) * 2, data);
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}
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void MameOPNA::writePan(uint16_t chan, uint8_t data)
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{
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void *chip = impl->chip;
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ym2608_write_pan(chip, (int)chan, data);
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}
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void MameOPNA::nativeGenerateN(int16_t *output, size_t frames)
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{
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void *chip = impl->chip;
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FMSAMPLE fmLR[2 * buffer_size];
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FMSAMPLE *fmR = fmLR + buffer_size;
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FMSAMPLE *fmbufs[2] = { fmLR, fmR };
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ym2608_update_one(chip, fmbufs, (int)frames);
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PSG *psg = &impl->dev.m_psg;
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Impl::Resampler *psgrsm = impl->psgrsm;
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size_t psgframes = psgrsm->calculateInternalSampleSize(frames);
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int32_t *rawpsgLR = impl->psgbuffer;
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int32_t *rawpsgR = rawpsgLR + psgframes;
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int32_t *rawpsgbufs[2] = { rawpsgLR, rawpsgR };
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PSG_calc_stereo(psg, rawpsgbufs, (int32_t)psgframes);
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int32_t **psgbufs = psgrsm->interpolate(rawpsgbufs, frames, psgframes);
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int32_t *psgL = psgbufs[0];
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int32_t *psgR = psgbufs[1];
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for(size_t i = 0; i < frames; ++i)
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{
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int32_t l = fmLR[i] + psgL[i];
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l = (l > -32768) ? l : -32768;
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l = (l < 32767) ? l : 32767;
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int32_t r = fmR[i] + psgR[i];
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r = (r > -32768) ? r : -32768;
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r = (r < 32767) ? r : 32767;
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output[2 * i] = l;
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output[2 * i + 1] = r;
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}
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}
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const char *MameOPNA::emulatorName()
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{
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return "MAME YM2608"; // git 2018-12-15 rev 8ab05c0
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}
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uint8_t MameOPNA::Impl::cbInternalReadByte(device_t *dev, offs_t off)
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{
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(void)dev;
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return YM2608_ADPCM_ROM[off & 0x1fff];
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}
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void MameOPNA::Impl::cbSsgSetClock(device_t *dev, int clock)
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{
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ym2608_device *ym = static_cast<ym2608_device *>(dev);
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PSG_set_clock(&ym->m_psg, (uint32_t)clock);
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}
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void MameOPNA::Impl::cbSsgWrite(device_t *dev, int addr, int data)
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{
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ym2608_device *ym = static_cast<ym2608_device *>(dev);
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PSG_writeIO(&ym->m_psg, (uint32_t)addr, (uint32_t)data);
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}
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int MameOPNA::Impl::cbSsgRead(device_t *dev)
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{
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ym2608_device *ym = static_cast<ym2608_device *>(dev);
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return PSG_readIO(&ym->m_psg);
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}
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void MameOPNA::Impl::cbSsgReset(device_t *dev)
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{
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ym2608_device *ym = static_cast<ym2608_device *>(dev);
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return PSG_reset(&ym->m_psg);
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}
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