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sa11x0_ost.c revision 1.29
      1  1.29    dyoung /*	$NetBSD: sa11x0_ost.c,v 1.29 2011/07/01 20:31:39 dyoung Exp $	*/
      2   1.1       rjs 
      3   1.1       rjs /*
      4   1.1       rjs  * Copyright (c) 1997 Mark Brinicombe.
      5   1.1       rjs  * Copyright (c) 1997 Causality Limited.
      6   1.1       rjs  * All rights reserved.
      7   1.1       rjs  *
      8   1.1       rjs  * This code is derived from software contributed to The NetBSD Foundation
      9   1.1       rjs  * by IWAMOTO Toshihiro and Ichiro FUKUHARA.
     10   1.1       rjs  *
     11   1.1       rjs  * Redistribution and use in source and binary forms, with or without
     12   1.1       rjs  * modification, are permitted provided that the following conditions
     13   1.1       rjs  * are met:
     14   1.1       rjs  * 1. Redistributions of source code must retain the above copyright
     15   1.1       rjs  *    notice, this list of conditions and the following disclaimer.
     16   1.1       rjs  * 2. Redistributions in binary form must reproduce the above copyright
     17   1.1       rjs  *    notice, this list of conditions and the following disclaimer in the
     18   1.1       rjs  *    documentation and/or other materials provided with the distribution.
     19  1.25    martin  * 3. All advertising materials mentioning features or use of this software
     20  1.25    martin  *    must display the following acknowledgement:
     21  1.25    martin  *	This product includes software developed by the NetBSD
     22  1.25    martin  *	Foundation, Inc. and its contributors.
     23  1.25    martin  * 4. Neither the name of The NetBSD Foundation nor the names of its
     24  1.25    martin  *    contributors may be used to endorse or promote products derived
     25  1.25    martin  *    from this software without specific prior written permission.
     26   1.1       rjs  *
     27   1.1       rjs  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     28   1.1       rjs  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     29   1.1       rjs  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     30   1.1       rjs  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     31   1.1       rjs  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     32   1.1       rjs  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     33   1.1       rjs  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     34   1.1       rjs  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     35   1.1       rjs  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     36   1.1       rjs  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     37   1.1       rjs  * POSSIBILITY OF SUCH DAMAGE.
     38   1.1       rjs  */
     39  1.11     lukem 
     40  1.11     lukem #include <sys/cdefs.h>
     41  1.29    dyoung __KERNEL_RCSID(0, "$NetBSD: sa11x0_ost.c,v 1.29 2011/07/01 20:31:39 dyoung Exp $");
     42   1.1       rjs 
     43   1.1       rjs #include <sys/types.h>
     44   1.1       rjs #include <sys/param.h>
     45   1.1       rjs #include <sys/systm.h>
     46   1.1       rjs #include <sys/kernel.h>
     47   1.1       rjs #include <sys/time.h>
     48  1.19     peter #include <sys/timetc.h>
     49   1.1       rjs #include <sys/device.h>
     50   1.1       rjs 
     51  1.29    dyoung #include <sys/bus.h>
     52   1.2      matt #include <machine/intr.h>
     53   1.4   thorpej 
     54   1.4   thorpej #include <arm/cpufunc.h>
     55   1.4   thorpej 
     56   1.1       rjs #include <arm/sa11x0/sa11x0_reg.h>
     57   1.1       rjs #include <arm/sa11x0/sa11x0_var.h>
     58   1.1       rjs #include <arm/sa11x0/sa11x0_ostreg.h>
     59   1.1       rjs 
     60  1.26       rjs static int	saost_match(device_t, cfdata_t, void *);
     61  1.26       rjs static void	saost_attach(device_t, device_t, void *);
     62   1.1       rjs 
     63  1.19     peter static void	saost_tc_init(void);
     64  1.19     peter 
     65  1.19     peter static uint32_t	gettick(void);
     66   1.1       rjs static int	clockintr(void *);
     67   1.1       rjs static int	statintr(void *);
     68   1.1       rjs 
     69   1.1       rjs struct saost_softc {
     70  1.26       rjs 	device_t		sc_dev;
     71  1.20     peter 
     72   1.1       rjs 	bus_space_tag_t		sc_iot;
     73   1.1       rjs 	bus_space_handle_t	sc_ioh;
     74   1.1       rjs 
     75  1.20     peter 	uint32_t		sc_clock_count;
     76  1.20     peter 	uint32_t		sc_statclock_count;
     77  1.20     peter 	uint32_t		sc_statclock_step;
     78   1.1       rjs };
     79   1.1       rjs 
     80   1.1       rjs static struct saost_softc *saost_sc = NULL;
     81   1.1       rjs 
     82  1.23     chris #if defined(CPU_XSCALE_PXA270) && defined(CPU_XSCALE_PXA250)
     83  1.27  kiyohara #include <arm/xscale/pxa2x0cpu.h>
     84  1.27  kiyohara static uint32_t freq;
     85  1.27  kiyohara #define TIMER_FREQUENCY         freq
     86  1.23     chris #elif defined(CPU_XSCALE_PXA270)
     87  1.23     chris #define TIMER_FREQUENCY         3250000         /* PXA270 uses 3.25MHz */
     88  1.23     chris #else
     89   1.1       rjs #define TIMER_FREQUENCY         3686400         /* 3.6864MHz */
     90  1.23     chris #endif
     91   1.1       rjs 
     92   1.1       rjs #ifndef STATHZ
     93   1.1       rjs #define STATHZ	64
     94   1.1       rjs #endif
     95   1.1       rjs 
     96  1.26       rjs CFATTACH_DECL_NEW(saost, sizeof(struct saost_softc),
     97   1.9   thorpej     saost_match, saost_attach, NULL, NULL);
     98   1.1       rjs 
     99   1.1       rjs static int
    100  1.26       rjs saost_match(device_t parent, cfdata_t match, void *aux)
    101   1.1       rjs {
    102  1.28  kiyohara 	struct sa11x0_attach_args *sa = aux;
    103  1.18     peter 
    104  1.28  kiyohara 	if (strcmp(sa->sa_name, match->cf_name) != 0)
    105  1.28  kiyohara 		return 0;
    106  1.18     peter 	return 1;
    107   1.1       rjs }
    108   1.1       rjs 
    109  1.20     peter static void
    110  1.26       rjs saost_attach(device_t parent, device_t self, void *aux)
    111   1.1       rjs {
    112  1.26       rjs 	struct saost_softc *sc = device_private(self);
    113   1.1       rjs 	struct sa11x0_attach_args *sa = aux;
    114   1.1       rjs 
    115  1.26       rjs 	aprint_normal("\n");
    116   1.1       rjs 
    117  1.26       rjs 	sc->sc_dev = self;
    118   1.1       rjs 	sc->sc_iot = sa->sa_iot;
    119   1.1       rjs 
    120   1.1       rjs 	saost_sc = sc;
    121   1.1       rjs 
    122  1.18     peter 	if (bus_space_map(sa->sa_iot, sa->sa_addr, sa->sa_size, 0,
    123  1.18     peter 	    &sc->sc_ioh))
    124  1.26       rjs 		panic("%s: Cannot map registers", device_xname(self));
    125   1.1       rjs 
    126   1.1       rjs 	/* disable all channel and clear interrupt status */
    127  1.20     peter 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, SAOST_IR, 0);
    128  1.20     peter 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, SAOST_SR, 0xf);
    129   1.1       rjs 
    130  1.26       rjs 	aprint_normal_dev(self, "SA-11x0 OS Timer\n");
    131   1.1       rjs }
    132   1.1       rjs 
    133   1.1       rjs static int
    134  1.15     peter clockintr(void *arg)
    135   1.1       rjs {
    136  1.20     peter 	struct saost_softc *sc = saost_sc;
    137   1.1       rjs 	struct clockframe *frame = arg;
    138  1.16     peter 	uint32_t oscr, nextmatch, oldmatch;
    139   1.1       rjs 	int s;
    140   1.1       rjs 
    141  1.20     peter 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, SAOST_SR, 1);
    142   1.1       rjs 
    143   1.1       rjs 	/* schedule next clock intr */
    144  1.20     peter 	oldmatch = sc->sc_clock_count;
    145   1.1       rjs 	nextmatch = oldmatch + TIMER_FREQUENCY / hz;
    146   1.1       rjs 
    147  1.20     peter 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, SAOST_MR0, nextmatch);
    148  1.20     peter 	oscr = bus_space_read_4(sc->sc_iot, sc->sc_ioh, SAOST_CR);
    149   1.1       rjs 
    150   1.1       rjs 	if ((nextmatch > oldmatch &&
    151   1.1       rjs 	     (oscr > nextmatch || oscr < oldmatch)) ||
    152   1.1       rjs 	    (nextmatch < oldmatch && oscr > nextmatch && oscr < oldmatch)) {
    153   1.1       rjs 		/*
    154   1.1       rjs 		 * we couldn't set the matching register in time.
    155   1.1       rjs 		 * just set it to some value so that next interrupt happens.
    156  1.18     peter 		 * XXX is it possible to compensate lost interrupts?
    157   1.1       rjs 		 */
    158   1.1       rjs 
    159   1.1       rjs 		s = splhigh();
    160  1.20     peter 		oscr = bus_space_read_4(sc->sc_iot, sc->sc_ioh, SAOST_CR);
    161   1.1       rjs 		nextmatch = oscr + 10;
    162  1.20     peter 		bus_space_write_4(sc->sc_iot, sc->sc_ioh, SAOST_MR0, nextmatch);
    163   1.1       rjs 		splx(s);
    164   1.1       rjs 	}
    165   1.1       rjs 
    166  1.20     peter 	sc->sc_clock_count = nextmatch;
    167   1.1       rjs 	hardclock(frame);
    168   1.1       rjs 
    169  1.18     peter 	return 1;
    170   1.1       rjs }
    171   1.1       rjs 
    172   1.1       rjs static int
    173  1.15     peter statintr(void *arg)
    174   1.1       rjs {
    175  1.20     peter 	struct saost_softc *sc = saost_sc;
    176   1.1       rjs 	struct clockframe *frame = arg;
    177  1.16     peter 	uint32_t oscr, nextmatch, oldmatch;
    178   1.1       rjs 	int s;
    179   1.1       rjs 
    180  1.20     peter 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, SAOST_SR, 2);
    181   1.1       rjs 
    182   1.1       rjs 	/* schedule next clock intr */
    183  1.20     peter 	oldmatch = sc->sc_statclock_count;
    184  1.20     peter 	nextmatch = oldmatch + sc->sc_statclock_step;
    185   1.1       rjs 
    186  1.20     peter 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, SAOST_MR1, nextmatch);
    187  1.20     peter 	oscr = bus_space_read_4(sc->sc_iot, sc->sc_ioh, SAOST_CR);
    188   1.1       rjs 
    189   1.1       rjs 	if ((nextmatch > oldmatch &&
    190   1.1       rjs 	     (oscr > nextmatch || oscr < oldmatch)) ||
    191   1.1       rjs 	    (nextmatch < oldmatch && oscr > nextmatch && oscr < oldmatch)) {
    192   1.1       rjs 		/*
    193   1.1       rjs 		 * we couldn't set the matching register in time.
    194   1.1       rjs 		 * just set it to some value so that next interrupt happens.
    195  1.18     peter 		 * XXX is it possible to compensate lost interrupts?
    196   1.1       rjs 		 */
    197   1.1       rjs 
    198   1.1       rjs 		s = splhigh();
    199  1.20     peter 		oscr = bus_space_read_4(sc->sc_iot, sc->sc_ioh, SAOST_CR);
    200   1.1       rjs 		nextmatch = oscr + 10;
    201  1.20     peter 		bus_space_write_4(sc->sc_iot, sc->sc_ioh, SAOST_MR1, nextmatch);
    202   1.1       rjs 		splx(s);
    203   1.1       rjs 	}
    204   1.1       rjs 
    205  1.20     peter 	sc->sc_statclock_count = nextmatch;
    206   1.1       rjs 	statclock(frame);
    207   1.1       rjs 
    208  1.18     peter 	return 1;
    209   1.1       rjs }
    210   1.1       rjs 
    211   1.1       rjs void
    212  1.15     peter setstatclockrate(int schz)
    213   1.1       rjs {
    214  1.20     peter 	struct saost_softc *sc = saost_sc;
    215  1.16     peter 	uint32_t count;
    216   1.1       rjs 
    217  1.20     peter 	sc->sc_statclock_step = TIMER_FREQUENCY / schz;
    218  1.20     peter 	count = bus_space_read_4(sc->sc_iot, sc->sc_ioh, SAOST_CR);
    219  1.20     peter 	count += sc->sc_statclock_step;
    220  1.20     peter 	sc->sc_statclock_count = count;
    221  1.20     peter 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, SAOST_MR1, count);
    222   1.1       rjs }
    223   1.1       rjs 
    224   1.1       rjs void
    225  1.15     peter cpu_initclocks(void)
    226   1.1       rjs {
    227  1.20     peter 	struct saost_softc *sc = saost_sc;
    228  1.20     peter 
    229   1.1       rjs 	stathz = STATHZ;
    230   1.1       rjs 	profhz = stathz;
    231  1.27  kiyohara #if defined(CPU_XSCALE_PXA270) && defined(CPU_XSCALE_PXA250)
    232  1.27  kiyohara 	TIMER_FREQUENCY = (CPU_IS_PXA250) ? 3686400 : 3250000;
    233  1.27  kiyohara #endif
    234  1.20     peter 	sc->sc_statclock_step = TIMER_FREQUENCY / stathz;
    235   1.1       rjs 
    236  1.26       rjs 	aprint_normal("clock: hz=%d stathz=%d\n", hz, stathz);
    237   1.1       rjs 
    238   1.1       rjs 	/* Use the channels 0 and 1 for hardclock and statclock, respectively */
    239  1.20     peter 	sc->sc_clock_count = TIMER_FREQUENCY / hz;
    240  1.20     peter 	sc->sc_statclock_count = TIMER_FREQUENCY / stathz;
    241   1.1       rjs 
    242   1.6       rjs 	sa11x0_intr_establish(0, 26, 1, IPL_CLOCK, clockintr, 0);
    243   1.6       rjs 	sa11x0_intr_establish(0, 27, 1, IPL_CLOCK, statintr, 0);
    244   1.6       rjs 
    245  1.20     peter 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, SAOST_SR, 0xf);
    246  1.20     peter 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, SAOST_IR, 3);
    247  1.20     peter 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, SAOST_MR0,
    248  1.20     peter 			  sc->sc_clock_count);
    249  1.20     peter 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, SAOST_MR1,
    250  1.20     peter 			  sc->sc_statclock_count);
    251   1.1       rjs 
    252   1.6       rjs 	/* Zero the counter value */
    253  1.20     peter 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, SAOST_CR, 0);
    254  1.19     peter 
    255  1.19     peter 	saost_tc_init();
    256  1.19     peter }
    257  1.19     peter 
    258  1.19     peter static u_int
    259  1.19     peter saost_tc_get_timecount(struct timecounter *tc)
    260  1.19     peter {
    261  1.19     peter 	return (u_int)gettick();
    262  1.19     peter }
    263  1.19     peter 
    264  1.19     peter static void
    265  1.19     peter saost_tc_init(void)
    266  1.19     peter {
    267  1.19     peter 	static struct timecounter saost_tc = {
    268  1.19     peter 		.tc_get_timecount = saost_tc_get_timecount,
    269  1.19     peter 		.tc_counter_mask = ~0,
    270  1.19     peter 		.tc_name = "saost_count",
    271  1.27  kiyohara #if !(defined(CPU_XSCALE_PXA270) && defined(CPU_XSCALE_PXA250))
    272  1.27  kiyohara 		.tc_frequency = TIMER_FREQUENCY,
    273  1.27  kiyohara #endif
    274  1.19     peter 		.tc_quality = 100,
    275  1.19     peter 	};
    276  1.19     peter 
    277  1.27  kiyohara #if defined(CPU_XSCALE_PXA270) && defined(CPU_XSCALE_PXA250)
    278  1.27  kiyohara 	saost_tc.tc_frequency = TIMER_FREQUENCY,
    279  1.27  kiyohara #endif
    280  1.19     peter 	tc_init(&saost_tc);
    281   1.1       rjs }
    282   1.1       rjs 
    283  1.19     peter static uint32_t
    284  1.15     peter gettick(void)
    285   1.1       rjs {
    286  1.20     peter 	struct saost_softc *sc = saost_sc;
    287  1.20     peter 	uint32_t counter;
    288  1.20     peter 	u_int saved_ints;
    289  1.20     peter 
    290  1.20     peter 	saved_ints = disable_interrupts(I32_bit);
    291  1.20     peter 	counter = bus_space_read_4(sc->sc_iot, sc->sc_ioh, SAOST_CR);
    292  1.20     peter 	restore_interrupts(saved_ints);
    293   1.1       rjs 
    294   1.1       rjs 	return counter;
    295   1.1       rjs }
    296   1.1       rjs 
    297   1.1       rjs void
    298  1.15     peter delay(u_int usecs)
    299   1.1       rjs {
    300  1.16     peter 	uint32_t xtick, otick, delta;
    301  1.23     chris 	int csec, usec;
    302   1.1       rjs 
    303   1.1       rjs 	csec = usecs / 10000;
    304   1.1       rjs 	usec = usecs % 10000;
    305   1.1       rjs 
    306   1.1       rjs 	usecs = (TIMER_FREQUENCY / 100) * csec
    307   1.1       rjs 	    + (TIMER_FREQUENCY / 100) * usec / 10000;
    308   1.1       rjs 
    309  1.20     peter 	if (saost_sc == NULL) {
    310  1.23     chris 		volatile int k;
    311  1.23     chris 		int j;
    312   1.1       rjs 		/* clock isn't initialized yet */
    313  1.18     peter 		for (; usecs > 0; usecs--)
    314  1.23     chris 			for (j = 100; j > 0; j--, k--)
    315  1.18     peter 				continue;
    316   1.1       rjs 		return;
    317   1.1       rjs 	}
    318   1.1       rjs 
    319   1.1       rjs 	otick = gettick();
    320   1.1       rjs 
    321   1.1       rjs 	while (1) {
    322  1.12       uwe 		xtick = gettick();
    323  1.12       uwe 		delta = xtick - otick;
    324   1.1       rjs 		if (delta > usecs)
    325   1.1       rjs 			break;
    326   1.1       rjs 		usecs -= delta;
    327  1.12       uwe 		otick = xtick;
    328   1.1       rjs 	}
    329   1.1       rjs }
    330