416 lines
9.7 KiB
C
416 lines
9.7 KiB
C
![]() |
/*
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* PicoDrive
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* (C) notaz, 2007,2013
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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 "../pico_int.h"
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#include "../sound/ym2612.h"
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extern unsigned char formatted_bram[4*0x10];
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static unsigned int mcd_m68k_cycle_mult;
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static unsigned int mcd_m68k_cycle_base;
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static unsigned int mcd_s68k_cycle_base;
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void (*PicoMCDopenTray)(void) = NULL;
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void (*PicoMCDcloseTray)(void) = NULL;
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PICO_INTERNAL void PicoInitMCD(void)
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{
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SekInitS68k();
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}
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PICO_INTERNAL void PicoExitMCD(void)
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{
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}
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PICO_INTERNAL void PicoPowerMCD(void)
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{
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SekCycleCntS68k = SekCycleAimS68k = 0;
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int fmt_size = sizeof(formatted_bram);
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memset(Pico_mcd->prg_ram, 0, sizeof(Pico_mcd->prg_ram));
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memset(Pico_mcd->word_ram2M, 0, sizeof(Pico_mcd->word_ram2M));
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memset(Pico_mcd->pcm_ram, 0, sizeof(Pico_mcd->pcm_ram));
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memset(Pico_mcd->bram, 0, sizeof(Pico_mcd->bram));
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memcpy(Pico_mcd->bram + sizeof(Pico_mcd->bram) - fmt_size,
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formatted_bram, fmt_size);
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memset(Pico_mcd->s68k_regs, 0, sizeof(Pico_mcd->s68k_regs));
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memset(&Pico_mcd->pcm, 0, sizeof(Pico_mcd->pcm));
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memset(&Pico_mcd->m, 0, sizeof(Pico_mcd->m));
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cdc_init();
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gfx_init();
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// cold reset state (tested)
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Pico_mcd->m.state_flags = PCD_ST_S68K_RST;
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Pico_mcd->m.busreq = 2; // busreq on, s68k in reset
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Pico_mcd->s68k_regs[3] = 1; // 2M word RAM mode, m68k access
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memset(Pico_mcd->bios + 0x70, 0xff, 4);
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}
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void pcd_soft_reset(void)
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{
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elprintf(EL_CD, "cd: soft reset");
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Pico_mcd->m.s68k_pend_ints = 0;
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cdc_reset();
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cdd_reset();
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#ifdef _ASM_CD_MEMORY_C
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//PicoMemResetCDdecode(1); // don't have to call this in 2M mode
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#endif
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memset(&Pico_mcd->s68k_regs[0x38], 0, 9);
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Pico_mcd->s68k_regs[0x38+9] = 0x0f; // default checksum
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pcd_event_schedule_s68k(PCD_EVENT_CDC, 12500000/75);
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// TODO: test if register state/timers change
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}
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PICO_INTERNAL int PicoResetMCD(void)
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{
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// reset button doesn't affect MCD hardware
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// use SRam.data for RAM cart
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if (PicoOpt & POPT_EN_MCD_RAMCART) {
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if (SRam.data == NULL)
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SRam.data = calloc(1, 0x12000);
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}
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else if (SRam.data != NULL) {
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free(SRam.data);
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SRam.data = NULL;
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}
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SRam.start = SRam.end = 0; // unused
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return 0;
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}
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static void SekRunM68kOnce(void)
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{
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int cyc_do;
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pevt_log_m68k_o(EVT_RUN_START);
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if ((cyc_do = SekCycleAim - SekCycleCnt) > 0) {
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SekCycleCnt += cyc_do;
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#if defined(EMU_C68K)
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PicoCpuCM68k.cycles = cyc_do;
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CycloneRun(&PicoCpuCM68k);
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SekCycleCnt -= PicoCpuCM68k.cycles;
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#elif defined(EMU_M68K)
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SekCycleCnt += m68k_execute(cyc_do) - cyc_do;
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#elif defined(EMU_F68K)
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SekCycleCnt += fm68k_emulate(cyc_do, 0) - cyc_do;
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#endif
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}
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SekCyclesLeft = 0;
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SekTrace(0);
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pevt_log_m68k_o(EVT_RUN_END);
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}
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static void SekRunS68k(unsigned int to)
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{
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int cyc_do;
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SekCycleAimS68k = to;
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if ((cyc_do = SekCycleAimS68k - SekCycleCntS68k) <= 0)
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return;
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if (SekShouldInterrupt())
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Pico_mcd->m.s68k_poll_a = 0;
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SekCycleCntS68k += cyc_do;
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#if defined(EMU_C68K)
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PicoCpuCS68k.cycles = cyc_do;
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CycloneRun(&PicoCpuCS68k);
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SekCycleCntS68k -= PicoCpuCS68k.cycles;
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#elif defined(EMU_M68K)
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m68k_set_context(&PicoCpuMS68k);
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SekCycleCntS68k += m68k_execute(cyc_do) - cyc_do;
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m68k_set_context(&PicoCpuMM68k);
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#elif defined(EMU_F68K)
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g_m68kcontext = &PicoCpuFS68k;
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SekCycleCntS68k += fm68k_emulate(cyc_do, 0) - cyc_do;
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g_m68kcontext = &PicoCpuFM68k;
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#endif
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}
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static void pcd_set_cycle_mult(void)
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{
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// ~1.63 for NTSC, ~1.645 for PAL
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if (Pico.m.pal)
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mcd_m68k_cycle_mult = ((12500000ull << 16) / (50*312*488));
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else
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mcd_m68k_cycle_mult = ((12500000ull << 16) / (60*262*488)) + 1;
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}
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unsigned int pcd_cycles_m68k_to_s68k(unsigned int c)
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{
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return (long long)c * mcd_m68k_cycle_mult >> 16;
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}
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/* events */
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static void pcd_cdc_event(unsigned int now)
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{
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// 75Hz CDC update
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cdd_update();
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/* check if a new CDD command has been processed */
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if (!(Pico_mcd->s68k_regs[0x4b] & 0xf0))
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{
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/* reset CDD command wait flag */
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Pico_mcd->s68k_regs[0x4b] = 0xf0;
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if (Pico_mcd->s68k_regs[0x33] & PCDS_IEN4) {
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elprintf(EL_INTS|EL_CD, "s68k: cdd irq 4");
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SekInterruptS68k(4);
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}
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}
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pcd_event_schedule(now, PCD_EVENT_CDC, 12500000/75);
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}
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static void pcd_int3_timer_event(unsigned int now)
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{
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if (Pico_mcd->s68k_regs[0x33] & PCDS_IEN3) {
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elprintf(EL_INTS|EL_CD, "s68k: timer irq 3");
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SekInterruptS68k(3);
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}
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if (Pico_mcd->s68k_regs[0x31] != 0)
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pcd_event_schedule(now, PCD_EVENT_TIMER3,
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Pico_mcd->s68k_regs[0x31] * 384);
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}
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static void pcd_dma_event(unsigned int now)
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{
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cdc_dma_update();
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}
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typedef void (event_cb)(unsigned int now);
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/* times are in s68k (12.5MHz) cycles */
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unsigned int pcd_event_times[PCD_EVENT_COUNT];
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static unsigned int event_time_next;
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static event_cb *pcd_event_cbs[PCD_EVENT_COUNT] = {
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[PCD_EVENT_CDC] = pcd_cdc_event,
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[PCD_EVENT_TIMER3] = pcd_int3_timer_event,
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[PCD_EVENT_GFX] = gfx_update,
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[PCD_EVENT_DMA] = pcd_dma_event,
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};
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void pcd_event_schedule(unsigned int now, enum pcd_event event, int after)
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{
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unsigned int when;
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when = now + after;
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if (when == 0) {
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// event cancelled
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pcd_event_times[event] = 0;
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return;
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}
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when |= 1;
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elprintf(EL_CD, "cd: new event #%u %u->%u", event, now, when);
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pcd_event_times[event] = when;
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if (event_time_next == 0 || CYCLES_GT(event_time_next, when))
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event_time_next = when;
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}
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void pcd_event_schedule_s68k(enum pcd_event event, int after)
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{
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if (SekCyclesLeftS68k > after)
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SekEndRunS68k(after);
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pcd_event_schedule(SekCyclesDoneS68k(), event, after);
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}
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static void pcd_run_events(unsigned int until)
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{
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int oldest, oldest_diff, time;
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int i, diff;
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while (1) {
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oldest = -1, oldest_diff = 0x7fffffff;
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for (i = 0; i < PCD_EVENT_COUNT; i++) {
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if (pcd_event_times[i]) {
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diff = pcd_event_times[i] - until;
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if (diff < oldest_diff) {
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oldest_diff = diff;
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oldest = i;
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}
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}
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}
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if (oldest_diff <= 0) {
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time = pcd_event_times[oldest];
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pcd_event_times[oldest] = 0;
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elprintf(EL_CD, "cd: run event #%d %u", oldest, time);
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pcd_event_cbs[oldest](time);
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}
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else if (oldest_diff < 0x7fffffff) {
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event_time_next = pcd_event_times[oldest];
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break;
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}
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else {
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event_time_next = 0;
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break;
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}
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}
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if (oldest != -1)
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elprintf(EL_CD, "cd: next event #%d at %u",
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oldest, event_time_next);
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}
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int pcd_sync_s68k(unsigned int m68k_target, int m68k_poll_sync)
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{
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#define now SekCycleCntS68k
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unsigned int s68k_target;
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unsigned int target;
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target = m68k_target - mcd_m68k_cycle_base;
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s68k_target = mcd_s68k_cycle_base +
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((unsigned long long)target * mcd_m68k_cycle_mult >> 16);
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elprintf(EL_CD, "s68k sync to %u, %u->%u",
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m68k_target, now, s68k_target);
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if (Pico_mcd->m.busreq != 1) { /* busreq/reset */
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SekCycleCntS68k = SekCycleAimS68k = s68k_target;
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pcd_run_events(m68k_target);
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return 0;
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}
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while (CYCLES_GT(s68k_target, now)) {
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if (event_time_next && CYCLES_GE(now, event_time_next))
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pcd_run_events(now);
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target = s68k_target;
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if (event_time_next && CYCLES_GT(target, event_time_next))
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target = event_time_next;
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SekRunS68k(target);
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if (m68k_poll_sync && Pico_mcd->m.m68k_poll_cnt == 0)
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break;
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}
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return s68k_target - now;
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#undef now
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}
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#define pcd_run_cpus_normal pcd_run_cpus
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//#define pcd_run_cpus_lockstep pcd_run_cpus
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static void SekSyncM68k(void);
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void pcd_run_cpus_normal(int m68k_cycles)
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{
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SekCycleAim += m68k_cycles;
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if (SekShouldInterrupt() || Pico_mcd->m.m68k_poll_cnt < 12)
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Pico_mcd->m.m68k_poll_cnt = 0;
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else if (Pico_mcd->m.m68k_poll_cnt >= 16) {
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int s68k_left = pcd_sync_s68k(SekCycleAim, 1);
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if (s68k_left <= 0) {
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elprintf(EL_CDPOLL, "m68k poll [%02x] x%d @%06x",
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Pico_mcd->m.m68k_poll_a, Pico_mcd->m.m68k_poll_cnt, SekPc);
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SekCycleCnt = SekCycleAim;
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return;
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}
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SekCycleCnt = SekCycleAim - (s68k_left * 40220 >> 16);
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}
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while (CYCLES_GT(SekCycleAim, SekCycleCnt)) {
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SekRunM68kOnce();
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if (Pico_mcd->m.need_sync) {
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Pico_mcd->m.need_sync = 0;
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pcd_sync_s68k(SekCycleCnt, 0);
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}
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}
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}
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void pcd_run_cpus_lockstep(int m68k_cycles)
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{
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unsigned int target = SekCycleAim + m68k_cycles;
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do {
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SekCycleAim += 8;
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SekSyncM68k();
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pcd_sync_s68k(SekCycleAim, 0);
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} while (CYCLES_GT(target, SekCycleAim));
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SekCycleAim = target;
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}
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#define PICO_CD
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#define CPUS_RUN(m68k_cycles) \
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pcd_run_cpus(m68k_cycles)
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#include "../pico_cmn.inc"
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void pcd_prepare_frame(void)
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{
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pcd_set_cycle_mult();
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// need this because we can't have direct mapping between
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// master<->slave cycle counters because of overflows
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mcd_m68k_cycle_base = SekCycleAim;
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mcd_s68k_cycle_base = SekCycleAimS68k;
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}
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PICO_INTERNAL void PicoFrameMCD(void)
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{
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PicoFrameStart();
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pcd_prepare_frame();
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PicoFrameHints();
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}
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void pcd_state_loaded(void)
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{
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unsigned int cycles;
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int diff;
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pcd_set_cycle_mult();
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pcd_state_loaded_mem();
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memset(Pico_mcd->pcm_mixbuf, 0, sizeof(Pico_mcd->pcm_mixbuf));
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Pico_mcd->pcm_mixbuf_dirty = 0;
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Pico_mcd->pcm_mixpos = 0;
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Pico_mcd->pcm_regs_dirty = 1;
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// old savestates..
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cycles = pcd_cycles_m68k_to_s68k(SekCycleAim);
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diff = cycles - SekCycleAimS68k;
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if (diff < -1000 || diff > 1000) {
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SekCycleCntS68k = SekCycleAimS68k = cycles;
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}
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if (pcd_event_times[PCD_EVENT_CDC] == 0) {
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pcd_event_schedule(SekCycleAimS68k, PCD_EVENT_CDC, 12500000/75);
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if (Pico_mcd->s68k_regs[0x31])
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pcd_event_schedule(SekCycleAimS68k, PCD_EVENT_TIMER3,
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Pico_mcd->s68k_regs[0x31] * 384);
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}
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diff = cycles - Pico_mcd->pcm.update_cycles;
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if ((unsigned int)diff > 12500000/50)
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Pico_mcd->pcm.update_cycles = cycles;
|
||
|
|
||
|
// reschedule
|
||
|
event_time_next = 0;
|
||
|
pcd_run_events(SekCycleCntS68k);
|
||
|
}
|
||
|
|
||
|
// vim:shiftwidth=2:ts=2:expandtab
|