mirror of
https://github.com/RaySollium99/picodrive.git
synced 2025-09-05 15:27:46 -04:00
464 lines
12 KiB
C
464 lines
12 KiB
C
/*
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* PicoDrive
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* (c) Copyright Dave, 2004
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* (C) notaz, 2006-2009
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*
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* This work is licensed under the terms of MAME license.
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* See COPYING file in the top-level directory.
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*/
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#include <string.h>
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#include "ym2612.h"
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#include "sn76496.h"
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#include "../pico_int.h"
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#include "mix.h"
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#include "emu2413/emu2413.h"
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void (*PsndMix_32_to_16l)(short *dest, int *src, int count) = mix_32_to_16l_stereo;
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// master int buffer to mix to
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// +1 for a fill triggered by an instruction overhanging into the next scanline
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static s32 PsndBuffer[2*(44100+100)/50+2];
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// cdda output buffer
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s16 cdda_out_buffer[2*1152];
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// sn76496
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extern int *sn76496_regs;
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// ym2413
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#define YM2413_CLK 3579545
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OPLL old_opll;
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static OPLL *opll = NULL;
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unsigned YM2413_reg;
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PICO_INTERNAL void PsndInit(void)
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{
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opll = OPLL_new(YM2413_CLK, PicoIn.sndRate);
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OPLL_setChipType(opll,0);
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OPLL_reset(opll);
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}
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PICO_INTERNAL void PsndExit(void)
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{
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OPLL_delete(opll);
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opll = NULL;
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}
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PICO_INTERNAL void PsndReset(void)
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{
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// PsndRerate calls YM2612Init, which also resets
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PsndRerate(0);
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timers_reset();
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}
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// to be called after changing sound rate or chips
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void PsndRerate(int preserve_state)
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{
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void *state = NULL;
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int target_fps = Pico.m.pal ? 50 : 60;
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int target_lines = Pico.m.pal ? 313 : 262;
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if (preserve_state) {
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state = malloc(0x204);
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if (state == NULL) return;
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ym2612_pack_state();
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memcpy(state, YM2612GetRegs(), 0x204);
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}
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YM2612Init(Pico.m.pal ? OSC_PAL/7 : OSC_NTSC/7, PicoIn.sndRate,
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((PicoIn.opt&POPT_DIS_FM_SSGEG) ? 0 : ST_SSG) |
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((PicoIn.opt&POPT_EN_FM_LADDER) ? ST_LADDER : 0));
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if (preserve_state) {
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// feed it back it's own registers, just like after loading state
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memcpy(YM2612GetRegs(), state, 0x204);
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ym2612_unpack_state();
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}
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if (preserve_state) memcpy(state, sn76496_regs, 28*4); // remember old state
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SN76496_init(Pico.m.pal ? OSC_PAL/15 : OSC_NTSC/15, PicoIn.sndRate);
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if (preserve_state) memcpy(sn76496_regs, state, 28*4); // restore old state
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if(opll != NULL){
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if (preserve_state) memcpy(&old_opll, opll, sizeof(OPLL)); // remember old state
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OPLL_setRate(opll, PicoIn.sndRate);
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OPLL_reset(opll);
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}
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if (state)
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free(state);
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// calculate Pico.snd.len
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Pico.snd.len = PicoIn.sndRate / target_fps;
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Pico.snd.len_e_add = ((PicoIn.sndRate - Pico.snd.len * target_fps) << 16) / target_fps;
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Pico.snd.len_e_cnt = 0; // Q16
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// samples per line (Q16)
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Pico.snd.smpl_mult = 65536LL * PicoIn.sndRate / (target_fps*target_lines);
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// samples per z80 clock (Q20)
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Pico.snd.clkl_mult = 16 * Pico.snd.smpl_mult * 15/7 / 488;
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// clear all buffers
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memset32(PsndBuffer, 0, sizeof(PsndBuffer)/4);
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memset(cdda_out_buffer, 0, sizeof(cdda_out_buffer));
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if (PicoIn.sndOut)
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PsndClear();
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// set mixer
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PsndMix_32_to_16l = (PicoIn.opt & POPT_EN_STEREO) ? mix_32_to_16l_stereo : mix_32_to_16_mono;
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mix_reset(PicoIn.opt & POPT_EN_SNDFILTER ? PicoIn.sndFilterAlpha : 0);
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if (PicoIn.AHW & PAHW_PICO)
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PicoReratePico();
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}
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PICO_INTERNAL void PsndStartFrame(void)
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{
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// compensate for float part of Pico.snd.len
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Pico.snd.len_use = Pico.snd.len;
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Pico.snd.len_e_cnt += Pico.snd.len_e_add;
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if (Pico.snd.len_e_cnt >= 0x10000) {
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Pico.snd.len_e_cnt -= 0x10000;
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Pico.snd.len_use++;
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}
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}
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PICO_INTERNAL void PsndDoDAC(int cyc_to)
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{
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int pos, len;
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int dout = ym2612.dacout;
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// number of samples to fill in buffer (Q20)
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len = (cyc_to * Pico.snd.clkl_mult) - Pico.snd.dac_pos;
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// update position and calculate buffer offset and length
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pos = (Pico.snd.dac_pos+0x80000) >> 20;
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Pico.snd.dac_pos += len;
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len = ((Pico.snd.dac_pos+0x80000) >> 20) - pos;
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// avoid loss of the 1st sample of a new block (Q rounding issues)
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if (pos+len == 0)
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len = 1, Pico.snd.dac_pos += 0x80000;
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if (len <= 0)
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return;
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if (!PicoIn.sndOut)
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return;
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// fill buffer, applying a rather weak order 1 bessel IIR on the way
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// y[n] = (x[n] + x[n-1])*(1/2) (3dB cutoff at 11025 Hz, no gain)
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// 1 sample delay for correct IIR filtering over audio frame boundaries
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if (PicoIn.opt & POPT_EN_STEREO) {
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short *d = PicoIn.sndOut + pos*2;
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// left channel only, mixed ro right channel in mixing phase
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*d++ += Pico.snd.dac_val2; d++;
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while (--len) *d++ += Pico.snd.dac_val, d++;
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} else {
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short *d = PicoIn.sndOut + pos;
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*d++ += Pico.snd.dac_val2;
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while (--len) *d++ += Pico.snd.dac_val;
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}
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Pico.snd.dac_val2 = (Pico.snd.dac_val + dout) >> 1;
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Pico.snd.dac_val = dout;
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}
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PICO_INTERNAL void PsndDoPSG(int cyc_to)
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{
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int pos, len;
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int stereo = 0;
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// number of samples to fill in buffer (Q20)
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len = (cyc_to * Pico.snd.clkl_mult) - Pico.snd.psg_pos;
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// update position and calculate buffer offset and length
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pos = (Pico.snd.psg_pos+0x80000) >> 20;
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Pico.snd.psg_pos += len;
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len = ((Pico.snd.psg_pos+0x80000) >> 20) - pos;
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if (len <= 0)
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return;
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if (!PicoIn.sndOut || !(PicoIn.opt & POPT_EN_PSG))
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return;
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if (PicoIn.opt & POPT_EN_STEREO) {
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stereo = 1;
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pos <<= 1;
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}
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SN76496Update(PicoIn.sndOut + pos, len, stereo);
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}
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#if 0
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PICO_INTERNAL void PsndDoYM2413(int cyc_to)
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{
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int pos, len;
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int stereo = 0;
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short *buf;
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// number of samples to fill in buffer (Q20)
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len = (cyc_to * Pico.snd.clkl_mult) - Pico.snd.ym2413_pos;
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// update position and calculate buffer offset and length
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pos = (Pico.snd.ym2413_pos+0x80000) >> 20;
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Pico.snd.ym2413_pos += len;
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len = ((Pico.snd.ym2413_pos+0x80000) >> 20) - pos;
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if (len <= 0)
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return;
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if (!PicoIn.sndOut || !(PicoIn.opt & POPT_EN_YM2413))
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return;
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if (PicoIn.opt & POPT_EN_STEREO) {
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stereo = 1;
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pos <<= 1;
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}
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buf = PicoIn.sndOut + pos;
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while (len-- > 0) {
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int16_t getdata = OPLL_calc(opll) * 3;
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*buf++ += getdata;
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buf += stereo; // only left for stereo, to be mixed to right later
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}
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}
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#endif
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void YM2413_regWrite(unsigned data){
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OPLL_writeIO(opll,0,data);
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}
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void YM2413_dataWrite(unsigned data){
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OPLL_writeIO(opll,1,data);
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}
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PICO_INTERNAL void PsndDoFM(int cyc_to)
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{
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int pos, len;
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int stereo = 0;
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// Q20, number of samples since last call
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len = (cyc_to * Pico.snd.clkl_mult) - Pico.snd.fm_pos;
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// update position and calculate buffer offset and length
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pos = (Pico.snd.fm_pos+0x80000) >> 20;
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Pico.snd.fm_pos += len;
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len = ((Pico.snd.fm_pos+0x80000) >> 20) - pos;
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if (len <= 0)
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return;
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// fill buffer
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if (PicoIn.opt & POPT_EN_STEREO) {
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stereo = 1;
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pos <<= 1;
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}
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if (PicoIn.opt & POPT_EN_FM)
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YM2612UpdateOne(PsndBuffer + pos, len, stereo, 1);
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}
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// cdda
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static void cdda_raw_update(int *buffer, int length)
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{
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int ret, cdda_bytes, mult = 1;
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cdda_bytes = length*4;
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if (PicoIn.sndRate <= 22050 + 100) mult = 2;
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if (PicoIn.sndRate < 22050 - 100) mult = 4;
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cdda_bytes *= mult;
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ret = pm_read_audio(cdda_out_buffer, cdda_bytes, Pico_mcd->cdda_stream);
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if (ret < cdda_bytes) {
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memset((char *)cdda_out_buffer + ret, 0, cdda_bytes - ret);
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Pico_mcd->cdda_stream = NULL;
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return;
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}
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// now mix
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switch (mult) {
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case 1: mix_16h_to_32(buffer, cdda_out_buffer, length*2); break;
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case 2: mix_16h_to_32_s1(buffer, cdda_out_buffer, length*2); break;
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case 4: mix_16h_to_32_s2(buffer, cdda_out_buffer, length*2); break;
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}
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}
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void cdda_start_play(int lba_base, int lba_offset, int lb_len)
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{
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if (Pico_mcd->cdda_type == CT_MP3)
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{
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int pos1024 = 0;
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if (lba_offset)
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pos1024 = lba_offset * 1024 / lb_len;
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mp3_start_play(Pico_mcd->cdda_stream, pos1024);
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return;
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}
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pm_seek(Pico_mcd->cdda_stream, (lba_base + lba_offset) * 2352, SEEK_SET);
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if (Pico_mcd->cdda_type == CT_WAV)
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{
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// skip headers, assume it's 44kHz stereo uncompressed
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pm_seek(Pico_mcd->cdda_stream, 44, SEEK_CUR);
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}
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}
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PICO_INTERNAL void PsndClear(void)
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{
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int len = Pico.snd.len;
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if (Pico.snd.len_e_add) len++;
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if (PicoIn.opt & POPT_EN_STEREO)
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memset32((int *) PicoIn.sndOut, 0, len); // assume PicoIn.sndOut to be aligned
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else {
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short *out = PicoIn.sndOut;
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if ((uintptr_t)out & 2) { *out++ = 0; len--; }
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memset32((int *) out, 0, len/2);
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if (len & 1) out[len-1] = 0;
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}
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if (!(PicoIn.opt & POPT_EN_FM))
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memset32(PsndBuffer, 0, PicoIn.opt & POPT_EN_STEREO ? len*2 : len);
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// drop pos remainder to avoid rounding errors (not entirely correct though)
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Pico.snd.dac_pos = Pico.snd.fm_pos = Pico.snd.psg_pos = Pico.snd.ym2413_pos = 0;
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}
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static int PsndRender(int offset, int length)
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{
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int *buf32;
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int stereo = (PicoIn.opt & 8) >> 3;
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int fmlen = ((Pico.snd.fm_pos+0x80000) >> 20);
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int daclen = ((Pico.snd.dac_pos+0x80000) >> 20);
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int psglen = ((Pico.snd.psg_pos+0x80000) >> 20);
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buf32 = PsndBuffer+(offset<<stereo);
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pprof_start(sound);
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if (PicoIn.AHW & PAHW_PICO) {
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PicoPicoPCMUpdate(PicoIn.sndOut+(offset<<stereo), length-offset, stereo);
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return length;
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}
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// Fill up DAC output in case of missing samples (Q rounding errors)
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if (length-daclen > 0) {
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short *dacbuf = PicoIn.sndOut + (daclen << stereo);
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Pico.snd.dac_pos += (length-daclen) << 20;
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*dacbuf++ += Pico.snd.dac_val2;
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if (stereo) dacbuf++;
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for (daclen++; length-daclen > 0; daclen++) {
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*dacbuf++ += Pico.snd.dac_val;
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if (stereo) dacbuf++;
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}
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Pico.snd.dac_val2 = Pico.snd.dac_val;
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}
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// Add in parts of the PSG output not yet done
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if (length-psglen > 0) {
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short *psgbuf = PicoIn.sndOut + (psglen << stereo);
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Pico.snd.psg_pos += (length-psglen) << 20;
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if (PicoIn.opt & POPT_EN_PSG)
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SN76496Update(psgbuf, length-psglen, stereo);
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}
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// Add in parts of the FM buffer not yet done
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if (length-fmlen > 0) {
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int *fmbuf = buf32 + ((fmlen-offset) << stereo);
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Pico.snd.fm_pos += (length-fmlen) << 20;
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if (PicoIn.opt & POPT_EN_FM)
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YM2612UpdateOne(fmbuf, length-fmlen, stereo, 1);
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}
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// CD: PCM sound
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if (PicoIn.AHW & PAHW_MCD) {
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pcd_pcm_update(buf32, length-offset, stereo);
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}
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// CD: CDDA audio
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// CD mode, cdda enabled, not data track, CDC is reading
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if ((PicoIn.AHW & PAHW_MCD) && (PicoIn.opt & POPT_EN_MCD_CDDA)
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&& Pico_mcd->cdda_stream != NULL
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&& !(Pico_mcd->s68k_regs[0x36] & 1))
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{
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// note: only 44, 22 and 11 kHz supported, with forced stereo
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if (Pico_mcd->cdda_type == CT_MP3)
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mp3_update(buf32, length-offset, stereo);
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else
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cdda_raw_update(buf32, length-offset);
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}
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if ((PicoIn.AHW & PAHW_32X) && (PicoIn.opt & POPT_EN_PWM))
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p32x_pwm_update(buf32, length-offset, stereo);
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// convert + limit to normal 16bit output
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PsndMix_32_to_16l(PicoIn.sndOut+(offset<<stereo), buf32, length-offset);
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pprof_end(sound);
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return length;
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}
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PICO_INTERNAL void PsndGetSamples(int y)
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{
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static int curr_pos = 0;
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curr_pos = PsndRender(0, Pico.snd.len_use);
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if (PicoIn.writeSound)
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PicoIn.writeSound(curr_pos * ((PicoIn.opt & POPT_EN_STEREO) ? 4 : 2));
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// clear sound buffer
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PsndClear();
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}
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static int PsndRenderMS(int offset, int length)
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{
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int stereo = (PicoIn.opt & 8) >> 3;
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int psglen = ((Pico.snd.psg_pos+0x80000) >> 20);
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int ym2413len = ((Pico.snd.ym2413_pos+0x80000) >> 20);
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pprof_start(sound);
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// Add in parts of the PSG output not yet done
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if (length-psglen > 0) {
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short *psgbuf = PicoIn.sndOut + (psglen << stereo);
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Pico.snd.psg_pos += (length-psglen) << 20;
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if (PicoIn.opt & POPT_EN_PSG)
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SN76496Update(psgbuf, length-psglen, stereo);
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}
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if (length-ym2413len > 0) {
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short *ym2413buf = PicoIn.sndOut + (ym2413len << stereo);
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Pico.snd.ym2413_pos += (length-ym2413len) << 20;
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int len = (length-ym2413len);
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if (PicoIn.opt & POPT_EN_YM2413){
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while (len-- > 0) {
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int16_t getdata = OPLL_calc(opll) * 3;
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*ym2413buf += getdata;
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ym2413buf += 1<<stereo;
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}
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}
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}
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// upmix to "stereo" if needed
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if (PicoIn.opt & POPT_EN_STEREO) {
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int i;
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short *p;
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for (i = length, p = (short *)PicoIn.sndOut; i > 0; i--, p+=2)
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*(p + 1) = *p;
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}
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pprof_end(sound);
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return length;
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}
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PICO_INTERNAL void PsndGetSamplesMS(int y)
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{
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static int curr_pos = 0;
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curr_pos = PsndRenderMS(0, Pico.snd.len_use);
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if (PicoIn.writeSound != NULL)
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PicoIn.writeSound(curr_pos * ((PicoIn.opt & POPT_EN_STEREO) ? 4 : 2));
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PsndClear();
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}
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// vim:shiftwidth=2:ts=2:expandtab
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