Fix breakage introduced by converting hub_rt to clockevent. Signed-off-by: Thomas Bogendoerfer <tsbogend@alpha.franken.de> Signed-off-by: Ralf Baechle <ralf@linux-mips.org>
		
			
				
	
	
		
			304 lines
		
	
	
		
			7.2 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			304 lines
		
	
	
		
			7.2 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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 * Copytight (C) 1999, 2000, 05, 06 Ralf Baechle (ralf@linux-mips.org)
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 * Copytight (C) 1999, 2000 Silicon Graphics, Inc.
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 */
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#include <linux/bcd.h>
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#include <linux/clockchips.h>
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#include <linux/init.h>
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#include <linux/kernel.h>
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#include <linux/sched.h>
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#include <linux/interrupt.h>
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#include <linux/kernel_stat.h>
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#include <linux/param.h>
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#include <linux/time.h>
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#include <linux/timex.h>
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#include <linux/mm.h>
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#include <asm/time.h>
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#include <asm/pgtable.h>
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#include <asm/sgialib.h>
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#include <asm/sn/ioc3.h>
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#include <asm/m48t35.h>
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#include <asm/sn/klconfig.h>
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#include <asm/sn/arch.h>
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#include <asm/sn/addrs.h>
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#include <asm/sn/sn_private.h>
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#include <asm/sn/sn0/ip27.h>
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#include <asm/sn/sn0/hub.h>
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#define TICK_SIZE (tick_nsec / 1000)
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#if 0
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static int set_rtc_mmss(unsigned long nowtime)
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{
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	int retval = 0;
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	int real_seconds, real_minutes, cmos_minutes;
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	struct m48t35_rtc *rtc;
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	nasid_t nid;
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	nid = get_nasid();
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	rtc = (struct m48t35_rtc *)(KL_CONFIG_CH_CONS_INFO(nid)->memory_base +
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							IOC3_BYTEBUS_DEV0);
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	rtc->control |= M48T35_RTC_READ;
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	cmos_minutes = BCD2BIN(rtc->min);
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	rtc->control &= ~M48T35_RTC_READ;
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	/*
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	 * Since we're only adjusting minutes and seconds, don't interfere with
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	 * hour overflow. This avoids messing with unknown time zones but
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	 * requires your RTC not to be off by more than 15 minutes
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	 */
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	real_seconds = nowtime % 60;
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	real_minutes = nowtime / 60;
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	if (((abs(real_minutes - cmos_minutes) + 15)/30) & 1)
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		real_minutes += 30;	/* correct for half hour time zone */
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	real_minutes %= 60;
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	if (abs(real_minutes - cmos_minutes) < 30) {
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		real_seconds = BIN2BCD(real_seconds);
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		real_minutes = BIN2BCD(real_minutes);
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		rtc->control |= M48T35_RTC_SET;
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		rtc->sec = real_seconds;
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		rtc->min = real_minutes;
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		rtc->control &= ~M48T35_RTC_SET;
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	} else {
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		printk(KERN_WARNING
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		       "set_rtc_mmss: can't update from %d to %d\n",
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		       cmos_minutes, real_minutes);
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		retval = -1;
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	}
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	return retval;
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}
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#endif
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/* Includes for ioc3_init().  */
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#include <asm/sn/types.h>
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#include <asm/sn/sn0/addrs.h>
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#include <asm/sn/sn0/hubni.h>
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#include <asm/sn/sn0/hubio.h>
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#include <asm/pci/bridge.h>
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unsigned long read_persistent_clock(void)
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{
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        unsigned int year, month, date, hour, min, sec;
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	struct m48t35_rtc *rtc;
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	nasid_t nid;
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	nid = get_nasid();
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	rtc = (struct m48t35_rtc *)(KL_CONFIG_CH_CONS_INFO(nid)->memory_base +
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							IOC3_BYTEBUS_DEV0);
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	rtc->control |= M48T35_RTC_READ;
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	sec = rtc->sec;
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	min = rtc->min;
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	hour = rtc->hour;
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	date = rtc->date;
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	month = rtc->month;
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	year = rtc->year;
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	rtc->control &= ~M48T35_RTC_READ;
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        sec = BCD2BIN(sec);
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        min = BCD2BIN(min);
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        hour = BCD2BIN(hour);
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        date = BCD2BIN(date);
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        month = BCD2BIN(month);
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        year = BCD2BIN(year);
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        year += 1970;
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        return mktime(year, month, date, hour, min, sec);
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}
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static void enable_rt_irq(unsigned int irq)
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{
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}
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static void disable_rt_irq(unsigned int irq)
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{
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}
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static struct irq_chip rt_irq_type = {
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	.name		= "SN HUB RT timer",
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	.ack		= disable_rt_irq,
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	.mask		= disable_rt_irq,
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	.mask_ack	= disable_rt_irq,
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	.unmask		= enable_rt_irq,
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	.eoi		= enable_rt_irq,
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};
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static int rt_next_event(unsigned long delta, struct clock_event_device *evt)
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{
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	unsigned int cpu = smp_processor_id();
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	int slice = cputoslice(cpu);
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	unsigned long cnt;
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	cnt = LOCAL_HUB_L(PI_RT_COUNT);
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	cnt += delta;
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	LOCAL_HUB_S(PI_RT_COMPARE_A + PI_COUNT_OFFSET * slice, cnt);
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	return LOCAL_HUB_L(PI_RT_COUNT) >= cnt ? -ETIME : 0;
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}
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static void rt_set_mode(enum clock_event_mode mode,
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		struct clock_event_device *evt)
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{
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	switch (mode) {
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	case CLOCK_EVT_MODE_ONESHOT:
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		/* The only mode supported */
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		break;
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	case CLOCK_EVT_MODE_PERIODIC:
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	case CLOCK_EVT_MODE_UNUSED:
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	case CLOCK_EVT_MODE_SHUTDOWN:
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	case CLOCK_EVT_MODE_RESUME:
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		/* Nothing to do  */
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		break;
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	}
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}
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int rt_timer_irq;
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static DEFINE_PER_CPU(struct clock_event_device, hub_rt_clockevent);
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static DEFINE_PER_CPU(char [11], hub_rt_name);
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static irqreturn_t hub_rt_counter_handler(int irq, void *dev_id)
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{
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	unsigned int cpu = smp_processor_id();
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	struct clock_event_device *cd = &per_cpu(hub_rt_clockevent, cpu);
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	int slice = cputoslice(cpu);
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	/*
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	 * Ack
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	 */
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	LOCAL_HUB_S(PI_RT_PEND_A + PI_COUNT_OFFSET * slice, 0);
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	cd->event_handler(cd);
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	return IRQ_HANDLED;
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}
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struct irqaction hub_rt_irqaction = {
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	.handler	= hub_rt_counter_handler,
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	.flags		= IRQF_DISABLED | IRQF_PERCPU,
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	.name		= "hub-rt",
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};
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/*
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 * This is a hack; we really need to figure these values out dynamically
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 *
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 * Since 800 ns works very well with various HUB frequencies, such as
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 * 360, 380, 390 and 400 MHZ, we use 800 ns rtc cycle time.
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 *
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 * Ralf: which clock rate is used to feed the counter?
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 */
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#define NSEC_PER_CYCLE		800
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#define CYCLES_PER_SEC		(NSEC_PER_SEC / NSEC_PER_CYCLE)
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void __cpuinit hub_rt_clock_event_init(void)
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{
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	unsigned int cpu = smp_processor_id();
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	struct clock_event_device *cd = &per_cpu(hub_rt_clockevent, cpu);
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	unsigned char *name = per_cpu(hub_rt_name, cpu);
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	int irq = rt_timer_irq;
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	sprintf(name, "hub-rt %d", cpu);
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	cd->name		= name;
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	cd->features		= CLOCK_EVT_FEAT_ONESHOT;
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	clockevent_set_clock(cd, CYCLES_PER_SEC);
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	cd->max_delta_ns        = clockevent_delta2ns(0xfffffffffffff, cd);
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	cd->min_delta_ns        = clockevent_delta2ns(0x300, cd);
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	cd->rating		= 200;
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	cd->irq			= irq;
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	cd->cpumask		= cpumask_of_cpu(cpu);
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	cd->set_next_event	= rt_next_event;
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	cd->set_mode		= rt_set_mode;
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	clockevents_register_device(cd);
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}
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static void __init hub_rt_clock_event_global_init(void)
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{
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	int irq;
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	do {
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		smp_wmb();
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		irq = rt_timer_irq;
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		if (irq)
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			break;
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		irq = allocate_irqno();
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		if (irq < 0)
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			panic("Allocation of irq number for timer failed");
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	} while (xchg(&rt_timer_irq, irq));
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	set_irq_chip_and_handler(irq, &rt_irq_type, handle_percpu_irq);
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	setup_irq(irq, &hub_rt_irqaction);
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}
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static cycle_t hub_rt_read(void)
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{
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	return REMOTE_HUB_L(cputonasid(0), PI_RT_COUNT);
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}
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struct clocksource hub_rt_clocksource = {
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	.name	= "HUB-RT",
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	.rating	= 200,
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	.read	= hub_rt_read,
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	.mask	= CLOCKSOURCE_MASK(52),
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	.flags	= CLOCK_SOURCE_IS_CONTINUOUS,
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};
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static void __init hub_rt_clocksource_init(void)
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{
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	struct clocksource *cs = &hub_rt_clocksource;
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	clocksource_set_clock(cs, CYCLES_PER_SEC);
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	clocksource_register(cs);
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}
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void __init plat_time_init(void)
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{
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	hub_rt_clocksource_init();
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	hub_rt_clock_event_global_init();
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	hub_rt_clock_event_init();
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}
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void __cpuinit cpu_time_init(void)
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{
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	lboard_t *board;
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	klcpu_t *cpu;
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	int cpuid;
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	/* Don't use ARCS.  ARCS is fragile.  Klconfig is simple and sane.  */
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	board = find_lboard(KL_CONFIG_INFO(get_nasid()), KLTYPE_IP27);
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	if (!board)
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		panic("Can't find board info for myself.");
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	cpuid = LOCAL_HUB_L(PI_CPU_NUM) ? IP27_CPU0_INDEX : IP27_CPU1_INDEX;
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	cpu = (klcpu_t *) KLCF_COMP(board, cpuid);
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	if (!cpu)
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		panic("No information about myself?");
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	printk("CPU %d clock is %dMHz.\n", smp_processor_id(), cpu->cpu_speed);
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	set_c0_status(SRB_TIMOCLK);
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}
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void __cpuinit hub_rtc_init(cnodeid_t cnode)
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{
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	/*
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	 * We only need to initialize the current node.
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	 * If this is not the current node then it is a cpuless
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	 * node and timeouts will not happen there.
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	 */
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	if (get_compact_nodeid() == cnode) {
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		LOCAL_HUB_S(PI_RT_EN_A, 1);
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		LOCAL_HUB_S(PI_RT_EN_B, 1);
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		LOCAL_HUB_S(PI_PROF_EN_A, 0);
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		LOCAL_HUB_S(PI_PROF_EN_B, 0);
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		LOCAL_HUB_S(PI_RT_COUNT, 0);
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		LOCAL_HUB_S(PI_RT_PEND_A, 0);
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		LOCAL_HUB_S(PI_RT_PEND_B, 0);
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	}
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}
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