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https://github.com/libretro/beetle-psx-libretro.git
synced 2024-11-27 02:40:31 +00:00
Fix eventcycles, add SPU Samples, allows much better performance
EventCycles should work up to 2048 now, now that it is used by MDEC and Timer SPU samples option was added, audio glitches will occur in some games unless samples is 1
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ec4d708a31
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10
libretro.cpp
10
libretro.cpp
@ -110,6 +110,7 @@ int memfd;
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#endif
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uint32 EventCycles = 128;
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uint8_t spu_samples = 1;
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// CPU overclock factor (or 0 if disabled)
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int32_t psx_overclock_factor = 0;
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@ -3200,6 +3201,15 @@ static void check_variables(bool startup)
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}
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else
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EventCycles = 128;
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var.key = BEETLE_OPT(dynarec_spu_samples);
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if (environ_cb(RETRO_ENVIRONMENT_GET_VARIABLE, &var) && var.value)
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{
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spu_samples = atoi(var.value);
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}
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else
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spu_samples = 1;
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#endif
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var.key = BEETLE_OPT(cpu_freq_scale);
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@ -1102,24 +1102,36 @@ struct retro_core_option_v2_definition option_defs_us[] = {
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},
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{
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BEETLE_OPT(dynarec_eventcycles),
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"Dynarec DMA/GPU Event Cycles",
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NULL,
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"Max cycles run by CPU before a GPU or DMA Update is checked, higher number will be faster, has much less impact on beetle interpreter than dynarec.",
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"Dynarec DMA/GPU/MDEC/Timer Event Cycles",
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NULL,
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"Max cycles run by CPU before a GPU/DMA/MDEC/Timer Update is checked, higher number will be faster, has much less impact on beetle interpreter than dynarec.",
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NULL,
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"hacks",
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{
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{ "128", NULL },
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{ "128", "128 (Default)" },
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{ "256", NULL },
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{ "384", NULL },
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{ "512", NULL },
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{ "640", NULL },
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{ "768", NULL },
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{ "896", NULL },
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{ "1024", NULL },
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{ "2048", NULL },
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{ NULL, NULL },
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},
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"128"
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},
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{
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BEETLE_OPT(dynarec_spu_samples),
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"Dynarec SPU Samples",
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NULL,
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"Max SPU samples to run before a SPU Update is checked, higher number will be faster, but will cause sound glitches in some games with anything other than 1.",
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NULL,
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"hacks",
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{
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{ "1", "1 (Default)" },
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{ "4", NULL },
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{ "16", NULL },
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{ NULL, NULL },
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},
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"1"
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},
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#endif
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{
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BEETLE_OPT(core_timing_fps),
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@ -124,6 +124,8 @@ static const uint8 ZigZag[64] =
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0x2e, 0x27, 0x2f, 0x36, 0x3d, 0x3e, 0x37, 0x3f,
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};
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extern int32 EventCycles;
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void MDEC_Power(void)
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{
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ClockCounter = 0;
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@ -527,11 +529,11 @@ void MDEC_Run(int32 clocks)
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ClockCounter += clocks;
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if(ClockCounter > 128)
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if(ClockCounter > EventCycles)
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{
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//if(MDRPhase != 0)
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// printf("SNORT: %d\n", ClockCounter);
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ClockCounter = 128;
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ClockCounter = EventCycles;
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}
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switch(MDRPhase + MDRPhaseBias)
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@ -76,6 +76,7 @@
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uint32_t IntermediateBufferPos;
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int16_t IntermediateBuffer[4096][2];
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extern uint8_t spu_samples;
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static const int16 FIR_Table[256][4] =
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{
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@ -746,8 +747,8 @@ int32 PS_SPU::UpdateFromCDC(int32 clocks)
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while(clock_divider <= 0)
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{
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clock_divider += 768;
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sample_clocks++;
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clock_divider += spu_samples*768;
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sample_clocks += spu_samples;
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}
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while(sample_clocks > 0)
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@ -1451,8 +1452,8 @@ int PS_SPU::StateAction(StateMem *sm, int load, int data_only)
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Voices[i].LoopAddr &= 0x3FFFF;
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}
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if(clock_divider <= 0 || clock_divider > 768)
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clock_divider = 768;
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if(clock_divider <= 0 || clock_divider > spu_samples*768)
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clock_divider = spu_samples*768;
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RWAddr &= 0x3FFFF;
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CWA &= 0x1FF;
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@ -111,9 +111,11 @@ static bool hretrace;
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static Timer Timers[3];
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static int32_t lastts;
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extern int32 EventCycles;
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static uint32_t CalcNextEvent(void)
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{
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int32_t next_event = 1024; /**/
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int32_t next_event = 8*EventCycles; /**/
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unsigned i;
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for(i = 0; i < 3; i++)
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