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			362 lines
		
	
	
	
		
			9 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			362 lines
		
	
	
	
		
			9 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| /*
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|  * PicoDrive
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|  * (C) notaz, 2009,2010,2013
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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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| 
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| static struct {
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|   int cycles;
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|   unsigned mult;
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|   int ptr;
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|   int irq_reload;
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|   int doing_fifo;
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|   int silent;
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|   int irq_timer;
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|   int irq_state;
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|   short current[2];
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| } pwm;
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| 
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| enum { PWM_IRQ_LOCKED, PWM_IRQ_STOPPED, PWM_IRQ_LOW, PWM_IRQ_HIGH };
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| 
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| void p32x_pwm_ctl_changed(void)
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| {
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|   int control = Pico32x.regs[0x30 / 2];
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|   int cycles = Pico32x.regs[0x32 / 2];
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|   int pwm_irq_opt = PicoIn.opt & POPT_PWM_IRQ_OPT;
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| 
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|   cycles = (cycles - 1) & 0x0fff;
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|   pwm.cycles = cycles;
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| 
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|   // supposedly we should stop FIFO when xMd is 0,
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|   // but mars test disagrees
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|   pwm.mult = 0;
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|   if ((control & 0x0f) != 0)
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|     pwm.mult = 0x10000 / cycles;
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| 
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|   pwm.irq_timer = (control & 0x0f00) >> 8;
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|   pwm.irq_timer = ((pwm.irq_timer - 1) & 0x0f) + 1;
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|   pwm.irq_reload = pwm.irq_timer;
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|   pwm.irq_state = pwm_irq_opt ? PWM_IRQ_STOPPED: PWM_IRQ_LOCKED;
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| 
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|   if (Pico32x.pwm_irq_cnt == 0)
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|     Pico32x.pwm_irq_cnt = pwm.irq_reload;
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| }
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| 
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| static void do_pwm_irq(SH2 *sh2, unsigned int m68k_cycles)
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| {
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|   p32x_trigger_irq(sh2, m68k_cycles, P32XI_PWM);
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| 
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|   if (Pico32x.regs[0x30 / 2] & P32XP_RTP) {
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|     p32x_event_schedule(m68k_cycles, P32X_EVENT_PWM, pwm.cycles / 3 + 1);
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|     // note: might recurse
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|     p32x_dreq1_trigger();
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|   }
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| }
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| 
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| static int convert_sample(unsigned int v)
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| {
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|   if (v > pwm.cycles)
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|     v = pwm.cycles;
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|   if (v == 0)
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|     return 0;
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|   return v * pwm.mult - 0x10000/2;
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| }
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| 
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| #define consume_fifo(sh2, m68k_cycles) { \
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|   int cycles_diff = ((m68k_cycles) * 3) - Pico32x.pwm_cycle_p; \
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|   if (cycles_diff >= pwm.cycles) \
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|     consume_fifo_do(sh2, m68k_cycles, cycles_diff); \
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| }
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| 
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| static void consume_fifo_do(SH2 *sh2, unsigned int m68k_cycles,
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|   int sh2_cycles_diff)
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| {
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|   struct Pico32xMem *mem = Pico32xMem;
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|   unsigned short *fifo_l = mem->pwm_fifo[0];
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|   unsigned short *fifo_r = mem->pwm_fifo[1];
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|   int sum = 0;
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| 
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|   if (pwm.cycles == 0 || pwm.doing_fifo)
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|     return;
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| 
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|   elprintf(EL_PWM, "pwm: %u: consume %d/%d, %d,%d ptr %d",
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|     m68k_cycles, sh2_cycles_diff, sh2_cycles_diff / pwm.cycles,
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|     Pico32x.pwm_p[0], Pico32x.pwm_p[1], pwm.ptr);
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| 
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|   // this is for recursion from dreq1 writes
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|   pwm.doing_fifo = 1;
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| 
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|   while (sh2_cycles_diff >= pwm.cycles)
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|   {
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|     sh2_cycles_diff -= pwm.cycles;
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| 
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|     if (Pico32x.pwm_p[0] > 0) {
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|       mem->pwm_index[0] = (mem->pwm_index[0]+1) % 4;
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|       Pico32x.pwm_p[0]--;
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|       pwm.current[0] = convert_sample(fifo_l[mem->pwm_index[0]]);
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|       sum |= (u16)pwm.current[0];
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|     }
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|     if (Pico32x.pwm_p[1] > 0) {
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|       mem->pwm_index[1] = (mem->pwm_index[1]+1) % 4;
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|       Pico32x.pwm_p[1]--;
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|       pwm.current[1] = convert_sample(fifo_r[mem->pwm_index[1]]);
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|       sum |= (u16)pwm.current[1];
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|     }
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| 
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|     mem->pwm[pwm.ptr * 2    ] = pwm.current[0];
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|     mem->pwm[pwm.ptr * 2 + 1] = pwm.current[1];
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|     pwm.ptr = (pwm.ptr + 1) & (PWM_BUFF_LEN - 1);
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| 
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|     if (--Pico32x.pwm_irq_cnt == 0) {
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|       Pico32x.pwm_irq_cnt = pwm.irq_reload;
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|       do_pwm_irq(sh2, m68k_cycles);
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|     } else if (Pico32x.pwm_p[1] == 0 && pwm.irq_state >= PWM_IRQ_LOW) {
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|       // buffer underrun. Reduce reload rate if above programmed setting.
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|       if (pwm.irq_reload > pwm.irq_timer)
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|         pwm.irq_reload--;
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|       pwm.irq_state = PWM_IRQ_LOW;
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|     }
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|   }
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|   Pico32x.pwm_cycle_p = m68k_cycles * 3 - sh2_cycles_diff;
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|   pwm.doing_fifo = 0;
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|   if (sum != 0)
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|     pwm.silent = 0;
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| }
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| 
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| static int p32x_pwm_schedule_(SH2 *sh2, unsigned int m68k_now)
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| {
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|   unsigned int pwm_now = m68k_now * 3;
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|   int cycles_diff_sh2;
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| 
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|   if (pwm.cycles == 0)
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|     return 0;
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| 
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|   cycles_diff_sh2 = pwm_now - Pico32x.pwm_cycle_p;
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|   if (cycles_diff_sh2 >= pwm.cycles)
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|     consume_fifo_do(sh2, m68k_now, cycles_diff_sh2);
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| 
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|   if (!((Pico32x.sh2irq_mask[0] | Pico32x.sh2irq_mask[1]) & 1))
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|     return 0; // masked by everyone
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| 
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|   cycles_diff_sh2 = pwm_now - Pico32x.pwm_cycle_p;
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|   return (Pico32x.pwm_irq_cnt * pwm.cycles
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|            - cycles_diff_sh2) / 3 + 1;
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| }
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| 
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| void p32x_pwm_schedule(unsigned int m68k_now)
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| {
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|   int after = p32x_pwm_schedule_(NULL, m68k_now);
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|   if (after != 0)
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|     p32x_event_schedule(m68k_now, P32X_EVENT_PWM, after);
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| }
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| 
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| void p32x_pwm_schedule_sh2(SH2 *sh2)
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| {
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|   int after = p32x_pwm_schedule_(sh2, sh2_cycles_done_m68k(sh2));
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|   if (after != 0)
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|     p32x_event_schedule_sh2(sh2, P32X_EVENT_PWM, after);
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| }
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| 
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| void p32x_pwm_sync_to_sh2(SH2 *sh2)
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| {
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|   int m68k_cycles = sh2_cycles_done_m68k(sh2);
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|   consume_fifo(sh2, m68k_cycles);
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| }
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| 
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| void p32x_pwm_irq_event(unsigned int m68k_now)
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| {
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|   p32x_pwm_schedule(m68k_now);
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| }
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| 
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| unsigned int p32x_pwm_read16(u32 a, SH2 *sh2, unsigned int m68k_cycles)
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| {
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|   unsigned int d = 0;
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| 
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|   consume_fifo(sh2, m68k_cycles);
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| 
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|   a &= 0x0e;
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|   switch (a/2) {
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|     case 0/2: // control
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|     case 2/2: // cycle
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|       d = Pico32x.regs[(0x30 + a) / 2];
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|       break;
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| 
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|     case 4/2: // L ch
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|       if (Pico32x.pwm_p[0] == 3)
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|         d |= P32XP_FULL;
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|       else if (Pico32x.pwm_p[0] == 0)
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|         d |= P32XP_EMPTY;
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|       break;
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| 
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|     case 6/2: // R ch
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|     case 8/2: // MONO
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|       if (Pico32x.pwm_p[1] == 3)
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|         d |= P32XP_FULL;
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|       else if (Pico32x.pwm_p[1] == 0)
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|         d |= P32XP_EMPTY;
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|       break;
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|   }
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| 
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|   elprintf(EL_PWM, "pwm: %u: r16 %02x %04x (p %d %d)",
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|     m68k_cycles, a, d, Pico32x.pwm_p[0], Pico32x.pwm_p[1]);
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|   return d;
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| }
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| 
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| void p32x_pwm_write16(u32 a, unsigned int d, SH2 *sh2, unsigned int m68k_cycles)
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| {
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|   unsigned short *fifo;
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|   int idx;
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| 
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|   elprintf(EL_PWM, "pwm: %u: w16 %02x %04x (p %d %d)",
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|     m68k_cycles, a & 0x0e, d, Pico32x.pwm_p[0], Pico32x.pwm_p[1]);
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| 
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|   consume_fifo(sh2, m68k_cycles);
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| 
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|   a &= 0x0e;
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|   switch (a/2) {
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|     case 0/2: // control
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|       // avoiding pops..
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|       if ((Pico32x.regs[0x30 / 2] & 0x0f) == 0)
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|         Pico32xMem->pwm_fifo[0][0] = Pico32xMem->pwm_fifo[1][0] = 0;
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|       Pico32x.regs[0x30 / 2] = d;
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|       p32x_pwm_ctl_changed();
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|       Pico32x.pwm_irq_cnt = pwm.irq_reload; // ?
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|       break;
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|     case 2/2: // cycle
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|       Pico32x.regs[0x32 / 2] = d & 0x0fff;
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|       p32x_pwm_ctl_changed();
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|       break;
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|     case 8/2: // MONO
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|     case 6/2: // R ch
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|       fifo = Pico32xMem->pwm_fifo[1];
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|       idx = Pico32xMem->pwm_index[1];
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|       if (Pico32x.pwm_p[1] < 3) {
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|         if (Pico32x.pwm_p[1] == 2 && pwm.irq_state >= PWM_IRQ_STOPPED) {
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|           // buffer full. If there was no buffer underrun after last fill,
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|           // try increasing reload rate to reduce IRQs
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|           if (pwm.irq_reload < 3 && pwm.irq_state == PWM_IRQ_HIGH)
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|             pwm.irq_reload ++;
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|           pwm.irq_state = PWM_IRQ_HIGH;
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|         }
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|         Pico32x.pwm_p[1]++;
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|       } else {
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|         // buffer overflow. Some roms always fill the complete buffer even if
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|         // reload rate is set below max. Lock reload rate to programmed setting.
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|         pwm.irq_reload = pwm.irq_timer;
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|         pwm.irq_state = PWM_IRQ_LOCKED;
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|         idx = (idx+1) % 4;
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|         Pico32xMem->pwm_index[1] = idx;
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|       }
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|       fifo[(idx+Pico32x.pwm_p[1]) % 4] = (d - 1) & 0x0fff;
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|       if (a != 8) break; // fallthrough if MONO
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|     case 4/2: // L ch
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|       fifo = Pico32xMem->pwm_fifo[0];
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|       idx = Pico32xMem->pwm_index[0];
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|       if (Pico32x.pwm_p[0] < 3)
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|         Pico32x.pwm_p[0]++;
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|       else {
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|         idx = (idx+1) % 4;
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|         Pico32xMem->pwm_index[0] = idx;
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|       }
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|       fifo[(idx+Pico32x.pwm_p[0]) % 4] = (d - 1) & 0x0fff;
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|       break;
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|   }
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| }
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| 
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| void p32x_pwm_update(int *buf32, int length, int stereo)
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| {
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|   short *pwmb;
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|   int step;
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|   int p = 0;
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|   int xmd;
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| 
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|   consume_fifo(NULL, SekCyclesDone());
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| 
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|   xmd = Pico32x.regs[0x30 / 2] & 0x0f;
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|   if (xmd == 0 || xmd == 0x06 || xmd == 0x09 || xmd == 0x0f)
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|     goto out; // invalid?
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|   if (pwm.silent)
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|     return;
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| 
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|   step = (pwm.ptr << 16) / length;
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|   pwmb = Pico32xMem->pwm;
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| 
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|   if (stereo)
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|   {
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|     if (xmd == 0x05) {
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|       // normal
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|       while (length-- > 0) {
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|         *buf32++ += pwmb[0];
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|         *buf32++ += pwmb[1];
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| 
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|         p += step;
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|         pwmb += (p >> 16) * 2;
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|         p &= 0xffff;
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|       }
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|     }
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|     else if (xmd == 0x0a) {
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|       // channel swap
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|       while (length-- > 0) {
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|         *buf32++ += pwmb[1];
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|         *buf32++ += pwmb[0];
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| 
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|         p += step;
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|         pwmb += (p >> 16) * 2;
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|         p &= 0xffff;
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|       }
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|     }
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|     else {
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|       // mono - LMD, RMD specify dst
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|       if (xmd & 0x06) // src is R
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|         pwmb++;
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|       if (xmd & 0x0c) // dst is R
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|         buf32++;
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|       while (length-- > 0) {
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|         *buf32 += *pwmb;
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| 
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|         p += step;
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|         pwmb += (p >> 16) * 2;
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|         p &= 0xffff;
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|         buf32 += 2;
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|       }
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|     }
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|   }
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|   else
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|   {
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|     // mostly unused
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|     while (length-- > 0) {
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|       *buf32++ += pwmb[0];
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| 
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|       p += step;
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|       pwmb += (p >> 16) * 2;
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|       p &= 0xffff;
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|     }
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|   }
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| 
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|   elprintf(EL_PWM, "pwm_update: pwm.ptr %d, len %d, step %04x, done %d",
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|     pwm.ptr, length, step, (pwmb - Pico32xMem->pwm) / 2);
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| 
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| out:
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|   pwm.ptr = 0;
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|   pwm.silent = pwm.current[0] == 0 && pwm.current[1] == 0;
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| }
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| 
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| void p32x_pwm_state_loaded(void)
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| {
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|   int cycles_diff_sh2;
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| 
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|   p32x_pwm_ctl_changed();
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| 
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|   // for old savestates
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|   cycles_diff_sh2 = Pico.t.m68c_cnt * 3 - Pico32x.pwm_cycle_p;
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|   if (cycles_diff_sh2 >= pwm.cycles || cycles_diff_sh2 < 0) {
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|     Pico32x.pwm_irq_cnt = pwm.irq_reload;
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|     Pico32x.pwm_cycle_p = Pico.t.m68c_cnt * 3;
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|     p32x_pwm_schedule(Pico.t.m68c_cnt);
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|   }
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| }
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| 
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| // vim:shiftwidth=2:ts=2:expandtab
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