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footbridge_clock.c revision 1.1.2.1
      1  1.1.2.1  thorpej /*	$NetBSD: footbridge_clock.c,v 1.1.2.1 2001/09/13 01:13:08 thorpej Exp $	*/
      2      1.1    chris 
      3      1.1    chris /*
      4      1.1    chris  * Copyright (c) 1997 Mark Brinicombe.
      5      1.1    chris  * Copyright (c) 1997 Causality Limited.
      6      1.1    chris  * All rights reserved.
      7      1.1    chris  *
      8      1.1    chris  * Redistribution and use in source and binary forms, with or without
      9      1.1    chris  * modification, are permitted provided that the following conditions
     10      1.1    chris  * are met:
     11      1.1    chris  * 1. Redistributions of source code must retain the above copyright
     12      1.1    chris  *    notice, this list of conditions and the following disclaimer.
     13      1.1    chris  * 2. Redistributions in binary form must reproduce the above copyright
     14      1.1    chris  *    notice, this list of conditions and the following disclaimer in the
     15      1.1    chris  *    documentation and/or other materials provided with the distribution.
     16      1.1    chris  * 3. All advertising materials mentioning features or use of this software
     17      1.1    chris  *    must display the following acknowledgement:
     18      1.1    chris  *	This product includes software developed by Mark Brinicombe
     19      1.1    chris  *	for the NetBSD Project.
     20      1.1    chris  * 4. The name of the company nor the name of the author may be used to
     21      1.1    chris  *    endorse or promote products derived from this software without specific
     22      1.1    chris  *    prior written permission.
     23      1.1    chris  *
     24      1.1    chris  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     25      1.1    chris  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     26      1.1    chris  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     27      1.1    chris  * IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT,
     28      1.1    chris  * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
     29      1.1    chris  * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     30      1.1    chris  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     31      1.1    chris  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     32      1.1    chris  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     33      1.1    chris  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     34      1.1    chris  * SUCH DAMAGE.
     35      1.1    chris  */
     36      1.1    chris 
     37      1.1    chris /* Include header files */
     38      1.1    chris 
     39      1.1    chris #include <sys/types.h>
     40      1.1    chris #include <sys/param.h>
     41      1.1    chris #include <sys/systm.h>
     42      1.1    chris #include <sys/kernel.h>
     43      1.1    chris #include <sys/time.h>
     44      1.1    chris #include <sys/device.h>
     45      1.1    chris 
     46      1.1    chris #include <machine/cpufunc.h>
     47  1.1.2.1  thorpej #include <machine/intr.h>
     48      1.1    chris #include <arm/footbridge/dc21285reg.h>
     49      1.1    chris #include <arm/footbridge/footbridgevar.h>
     50      1.1    chris 
     51      1.1    chris extern struct footbridge_softc *clock_sc;
     52      1.1    chris extern u_int dc21285_fclk;
     53      1.1    chris 
     54      1.1    chris #if 0
     55      1.1    chris static int clockmatch	__P((struct device *parent, struct cfdata *cf, void *aux));
     56      1.1    chris static void clockattach	__P((struct device *parent, struct device *self, void *aux));
     57      1.1    chris 
     58      1.1    chris struct cfattach footbridge_clock_ca = {
     59      1.1    chris 	sizeof(struct clock_softc), clockmatch, clockattach
     60      1.1    chris };
     61      1.1    chris 
     62      1.1    chris /*
     63      1.1    chris  * int clockmatch(struct device *parent, void *match, void *aux)
     64      1.1    chris  *
     65      1.1    chris  * Just return ok for this if it is device 0
     66      1.1    chris  */
     67      1.1    chris 
     68      1.1    chris static int
     69      1.1    chris clockmatch(parent, cf, aux)
     70      1.1    chris 	struct device *parent;
     71      1.1    chris 	struct cfdata *cf;
     72      1.1    chris 	void *aux;
     73      1.1    chris {
     74      1.1    chris 	union footbridge_attach_args *fba = aux;
     75      1.1    chris 
     76      1.1    chris 	if (strcmp(fba->fba_ca.ca_name, "clk") == 0)
     77      1.1    chris 		return(1);
     78      1.1    chris 	return(0);
     79      1.1    chris }
     80      1.1    chris 
     81      1.1    chris 
     82      1.1    chris /*
     83      1.1    chris  * void clockattach(struct device *parent, struct device *dev, void *aux)
     84      1.1    chris  *
     85      1.1    chris  */
     86      1.1    chris 
     87      1.1    chris static void
     88      1.1    chris clockattach(parent, self, aux)
     89      1.1    chris 	struct device *parent;
     90      1.1    chris 	struct device *self;
     91      1.1    chris 	void *aux;
     92      1.1    chris {
     93      1.1    chris 	struct clock_softc *sc = (struct clock_softc *)self;
     94      1.1    chris 	union footbridge_attach_args *fba = aux;
     95      1.1    chris 
     96      1.1    chris 	sc->sc_iot = fba->fba_ca.ca_iot;
     97      1.1    chris 	sc->sc_ioh = fba->fba_ca.ca_ioh;
     98      1.1    chris 
     99      1.1    chris 	clock_sc = sc;
    100      1.1    chris 
    101      1.1    chris 	/* Cannot do anything until cpu_initclocks() has been called */
    102      1.1    chris 
    103      1.1    chris 	printf("\n");
    104      1.1    chris }
    105      1.1    chris #endif
    106      1.1    chris 
    107      1.1    chris /*
    108      1.1    chris  * int clockhandler(struct clockframe *frame)
    109      1.1    chris  *
    110      1.1    chris  * Function called by timer 1 interrupts.
    111      1.1    chris  * This just clears the interrupt condition and calls hardclock().
    112      1.1    chris  */
    113      1.1    chris 
    114      1.1    chris int
    115      1.1    chris clockhandler(frame)
    116      1.1    chris 	struct clockframe *frame;
    117      1.1    chris {
    118      1.1    chris 	bus_space_write_4(clock_sc->sc_iot, clock_sc->sc_ioh,
    119      1.1    chris 	    TIMER_1_CLEAR, 0);
    120      1.1    chris 	hardclock(frame);
    121      1.1    chris 	return(0);	/* Pass the interrupt on down the chain */
    122      1.1    chris }
    123      1.1    chris 
    124      1.1    chris 
    125      1.1    chris /*
    126      1.1    chris  * int statclockhandler(struct clockframe *frame)
    127      1.1    chris  *
    128      1.1    chris  * Function called by timer 2 interrupts.
    129      1.1    chris  * This just clears the interrupt condition and calls statclock().
    130      1.1    chris  */
    131      1.1    chris 
    132      1.1    chris int
    133      1.1    chris statclockhandler(frame)
    134      1.1    chris 	struct clockframe *frame;
    135      1.1    chris {
    136      1.1    chris 	bus_space_write_4(clock_sc->sc_iot, clock_sc->sc_ioh,
    137      1.1    chris 	    TIMER_2_CLEAR, 0);
    138      1.1    chris 	statclock(frame);
    139      1.1    chris 	return(0);	/* Pass the interrupt on down the chain */
    140      1.1    chris }
    141      1.1    chris 
    142      1.1    chris static int
    143      1.1    chris load_timer(base, hz)
    144      1.1    chris 	int base;
    145      1.1    chris 	int hz;
    146      1.1    chris {
    147      1.1    chris 	unsigned int timer_count;
    148      1.1    chris 	int control;
    149      1.1    chris 
    150      1.1    chris 	timer_count = dc21285_fclk / hz;
    151      1.1    chris 	if (timer_count > TIMER_MAX * 16) {
    152      1.1    chris 		control = TIMER_FCLK_256;
    153      1.1    chris 		timer_count >>= 8;
    154      1.1    chris 	} else if (timer_count > TIMER_MAX) {
    155      1.1    chris 		control = TIMER_FCLK_16;
    156      1.1    chris 		timer_count >>= 4;
    157      1.1    chris 	} else
    158      1.1    chris 		control = TIMER_FCLK;
    159      1.1    chris 
    160      1.1    chris 	control |= (TIMER_ENABLE | TIMER_MODE_PERIODIC);
    161      1.1    chris 	bus_space_write_4(clock_sc->sc_iot, clock_sc->sc_ioh,
    162      1.1    chris 	    base + TIMER_LOAD, timer_count);
    163      1.1    chris 	bus_space_write_4(clock_sc->sc_iot, clock_sc->sc_ioh,
    164      1.1    chris 	    base + TIMER_CONTROL, control);
    165      1.1    chris 	bus_space_write_4(clock_sc->sc_iot, clock_sc->sc_ioh,
    166      1.1    chris 	    base + TIMER_CLEAR, 0);
    167      1.1    chris 	return(timer_count);
    168      1.1    chris }
    169      1.1    chris 
    170      1.1    chris /*
    171      1.1    chris  * void setstatclockrate(int hz)
    172      1.1    chris  *
    173      1.1    chris  * Set the stat clock rate. The stat clock uses timer2
    174      1.1    chris  */
    175      1.1    chris 
    176      1.1    chris void
    177      1.1    chris setstatclockrate(hz)
    178      1.1    chris 	int hz;
    179      1.1    chris {
    180      1.1    chris 
    181      1.1    chris 	clock_sc->sc_statclock_count = load_timer(TIMER_2_BASE, hz);
    182      1.1    chris }
    183      1.1    chris 
    184      1.1    chris /*
    185      1.1    chris  * void cpu_initclocks(void)
    186      1.1    chris  *
    187      1.1    chris  * Initialise the clocks.
    188      1.1    chris  *
    189      1.1    chris  * Timer 1 is used for the main system clock (hardclock)
    190      1.1    chris  * Timer 2 is used for the statistics clock (statclock)
    191      1.1    chris  */
    192      1.1    chris 
    193      1.1    chris void
    194      1.1    chris cpu_initclocks()
    195      1.1    chris {
    196      1.1    chris 
    197      1.1    chris 	/* Report the clock frequencies */
    198      1.1    chris 	printf("clock: hz=%d stathz = %d profhz = %d\n", hz, stathz, profhz);
    199      1.1    chris 
    200      1.1    chris 	/* Setup timer 1 and claim interrupt */
    201      1.1    chris 	clock_sc->sc_clock_count = load_timer(TIMER_1_BASE, hz);
    202      1.1    chris 
    203      1.1    chris 	/*
    204      1.1    chris 	 * Use ticks per 256us for accuracy since ticks per us is often
    205      1.1    chris 	 * fractional e.g. @ 66MHz
    206      1.1    chris 	 */
    207      1.1    chris 	clock_sc->sc_clock_ticks_per_256us =
    208      1.1    chris 	    ((((clock_sc->sc_clock_count * hz) / 1000) * 256) / 1000);
    209      1.1    chris 	clock_sc->sc_clockintr = intr_claim(IRQ_TIMER_1, IPL_CLOCK,
    210      1.1    chris 	    "tmr1 hard clk", clockhandler, 0);
    211      1.1    chris 
    212      1.1    chris 	if (clock_sc->sc_clockintr == NULL)
    213      1.1    chris 		panic("%s: Cannot install timer 1 interrupt handler\n",
    214      1.1    chris 		    clock_sc->sc_dev.dv_xname);
    215      1.1    chris 
    216      1.1    chris 	/* If stathz is non-zero then setup the stat clock */
    217      1.1    chris 	if (stathz) {
    218      1.1    chris 		/* Setup timer 2 and claim interrupt */
    219      1.1    chris 		setstatclockrate(stathz);
    220      1.1    chris        		clock_sc->sc_statclockintr = intr_claim(IRQ_TIMER_2, IPL_CLOCK,
    221      1.1    chris        		    "tmr2 stat clk", statclockhandler, 0);
    222      1.1    chris 		if (clock_sc->sc_statclockintr == NULL)
    223      1.1    chris 			panic("%s: Cannot install timer 2 interrupt handler\n",
    224      1.1    chris 			    clock_sc->sc_dev.dv_xname);
    225      1.1    chris 	}
    226      1.1    chris }
    227      1.1    chris 
    228      1.1    chris 
    229      1.1    chris /*
    230      1.1    chris  * void microtime(struct timeval *tvp)
    231      1.1    chris  *
    232      1.1    chris  * Fill in the specified timeval struct with the current time
    233      1.1    chris  * accurate to the microsecond.
    234      1.1    chris  */
    235      1.1    chris 
    236      1.1    chris void
    237      1.1    chris microtime(tvp)
    238      1.1    chris 	struct timeval *tvp;
    239      1.1    chris {
    240      1.1    chris 	int s;
    241      1.1    chris 	int tm;
    242      1.1    chris 	int deltatm;
    243      1.1    chris 	static struct timeval oldtv;
    244      1.1    chris 
    245      1.1    chris 	if (clock_sc == NULL || clock_sc->sc_clock_count == 0)
    246      1.1    chris 		return;
    247      1.1    chris 
    248      1.1    chris 	s = splhigh();
    249      1.1    chris 
    250      1.1    chris 	tm = bus_space_read_4(clock_sc->sc_iot, clock_sc->sc_ioh,
    251      1.1    chris 	    TIMER_1_VALUE);
    252      1.1    chris 
    253      1.1    chris 	deltatm = clock_sc->sc_clock_count - tm;
    254      1.1    chris 
    255      1.1    chris #ifdef DIAGNOSTIC
    256      1.1    chris 	if (deltatm < 0)
    257      1.1    chris 		panic("opps deltatm < 0 tm=%d deltatm=%d\n", tm, deltatm);
    258      1.1    chris #endif
    259      1.1    chris 
    260      1.1    chris 	/* Fill in the timeval struct */
    261      1.1    chris 	*tvp = time;
    262      1.1    chris 	tvp->tv_usec += ((deltatm << 8) / clock_sc->sc_clock_ticks_per_256us);
    263      1.1    chris 
    264      1.1    chris 	/* Make sure the micro seconds don't overflow. */
    265      1.1    chris 	while (tvp->tv_usec >= 1000000) {
    266      1.1    chris 		tvp->tv_usec -= 1000000;
    267      1.1    chris 		++tvp->tv_sec;
    268      1.1    chris 	}
    269      1.1    chris 
    270      1.1    chris 	/* Make sure the time has advanced. */
    271      1.1    chris 	if (tvp->tv_sec == oldtv.tv_sec &&
    272      1.1    chris 	    tvp->tv_usec <= oldtv.tv_usec) {
    273      1.1    chris 		tvp->tv_usec = oldtv.tv_usec + 1;
    274      1.1    chris 		if (tvp->tv_usec >= 1000000) {
    275      1.1    chris 			tvp->tv_usec -= 1000000;
    276      1.1    chris 			++tvp->tv_sec;
    277      1.1    chris 		}
    278      1.1    chris 	}
    279      1.1    chris 
    280      1.1    chris 	oldtv = *tvp;
    281      1.1    chris 	(void)splx(s);
    282      1.1    chris }
    283      1.1    chris 
    284      1.1    chris /*
    285      1.1    chris  * Estimated loop for n microseconds
    286      1.1    chris  */
    287      1.1    chris 
    288      1.1    chris /* Need to re-write this to use the timers */
    289      1.1    chris 
    290      1.1    chris /* One day soon I will actually do this */
    291      1.1    chris 
    292      1.1    chris int delaycount = 50;
    293      1.1    chris 
    294      1.1    chris void
    295      1.1    chris delay(n)
    296      1.1    chris 	u_int n;
    297      1.1    chris {
    298      1.1    chris 	u_int i;
    299      1.1    chris 
    300      1.1    chris 	if (n == 0) return;
    301      1.1    chris 	while (--n > 0) {
    302      1.1    chris 		if (cputype == CPU_ID_SA110)	/* XXX - Seriously gross hack */
    303      1.1    chris 			for (i = delaycount; --i;);
    304      1.1    chris 		else
    305      1.1    chris 			for (i = 8; --i;);
    306      1.1    chris 	}
    307      1.1    chris }
    308      1.1    chris 
    309      1.1    chris /* End of footbridge_clock.c */
    310