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rtc.c revision 1.9
      1  1.9       uch /*	$NetBSD: rtc.c,v 1.9 2001/09/19 14:51:13 uch Exp $	*/
      2  1.1  takemura 
      3  1.1  takemura /*-
      4  1.1  takemura  * Copyright (c) 1999 Shin Takemura. All rights reserved.
      5  1.1  takemura  * Copyright (c) 1999 SATO Kazumi. All rights reserved.
      6  1.1  takemura  * Copyright (c) 1999 PocketBSD Project. All rights reserved.
      7  1.1  takemura  *
      8  1.1  takemura  * Redistribution and use in source and binary forms, with or without
      9  1.1  takemura  * modification, are permitted provided that the following conditions
     10  1.1  takemura  * are met:
     11  1.1  takemura  * 1. Redistributions of source code must retain the above copyright
     12  1.1  takemura  *    notice, this list of conditions and the following disclaimer.
     13  1.1  takemura  * 2. Redistributions in binary form must reproduce the above copyright
     14  1.1  takemura  *    notice, this list of conditions and the following disclaimer in the
     15  1.1  takemura  *    documentation and/or other materials provided with the distribution.
     16  1.1  takemura  * 3. All advertising materials mentioning features or use of this software
     17  1.1  takemura  *    must display the following acknowledgement:
     18  1.1  takemura  *	This product includes software developed by the PocketBSD project
     19  1.1  takemura  *	and its contributors.
     20  1.1  takemura  * 4. Neither the name of the project nor the names of its contributors
     21  1.1  takemura  *    may be used to endorse or promote products derived from this software
     22  1.1  takemura  *    without specific prior written permission.
     23  1.1  takemura  *
     24  1.1  takemura  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     25  1.1  takemura  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     26  1.1  takemura  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     27  1.1  takemura  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     28  1.1  takemura  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     29  1.1  takemura  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     30  1.1  takemura  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     31  1.1  takemura  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     32  1.1  takemura  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     33  1.1  takemura  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     34  1.1  takemura  * SUCH DAMAGE.
     35  1.1  takemura  *
     36  1.1  takemura  */
     37  1.1  takemura 
     38  1.5     enami #include "opt_vr41xx.h"
     39  1.5     enami 
     40  1.1  takemura #include <sys/param.h>
     41  1.1  takemura #include <sys/systm.h>
     42  1.1  takemura 
     43  1.8       uch #include <machine/sysconf.h>
     44  1.1  takemura #include <machine/bus.h>
     45  1.8       uch 
     46  1.8       uch #include <dev/clock_subr.h>
     47  1.1  takemura 
     48  1.1  takemura #include <hpcmips/vr/vr.h>
     49  1.5     enami #include <hpcmips/vr/vrcpudef.h>
     50  1.1  takemura #include <hpcmips/vr/vripvar.h>
     51  1.1  takemura #include <hpcmips/vr/rtcreg.h>
     52  1.1  takemura 
     53  1.3      sato /*
     54  1.3      sato  * for debugging definitions
     55  1.6    toshii  * 	VRRTCDEBUG	print rtc debugging information
     56  1.4      sato  *	VRRTC_HEARTBEAT	print HEARTBEAT (too many print...)
     57  1.3      sato  */
     58  1.4      sato #ifdef VRRTCDEBUG
     59  1.4      sato #ifndef VRRTCDEBUG_CONF
     60  1.4      sato #define VRRTCDEBUG_CONF 0
     61  1.4      sato #endif
     62  1.4      sato int vrrtc_debug = VRRTCDEBUG_CONF;
     63  1.4      sato #define DPRINTF(arg) if (vrrtc_debug) printf arg;
     64  1.4      sato #define DDUMP_REGS(arg) if (vrrtc_debug) vrrtc_dump_regs(arg);
     65  1.4      sato #else /* VRRTCDEBUG */
     66  1.4      sato #define DPRINTF(arg)
     67  1.4      sato #define DDUMP_REGS(arg)
     68  1.4      sato #endif /* VRRTCDEBUG */
     69  1.1  takemura 
     70  1.1  takemura struct vrrtc_softc {
     71  1.1  takemura 	struct device sc_dev;
     72  1.1  takemura 	bus_space_tag_t sc_iot;
     73  1.1  takemura 	bus_space_handle_t sc_ioh;
     74  1.1  takemura 	void *sc_ih;
     75  1.1  takemura };
     76  1.1  takemura 
     77  1.7       uch void	clock_init(struct device *);
     78  1.8       uch void	clock_get(struct device *, time_t, struct clock_ymdhms *);
     79  1.8       uch void	clock_set(struct device *, struct clock_ymdhms *);
     80  1.1  takemura 
     81  1.8       uch struct platform_clock vr_clock = {
     82  1.8       uch #define CLOCK_RATE	128
     83  1.8       uch 	CLOCK_RATE, clock_init, clock_get, clock_set,
     84  1.1  takemura };
     85  1.1  takemura 
     86  1.7       uch int	vrrtc_match(struct device *, struct cfdata *, void *);
     87  1.7       uch void	vrrtc_attach(struct device *, struct device *, void *);
     88  1.7       uch int	vrrtc_intr(void*, u_int32_t, u_int32_t);
     89  1.7       uch void	vrrtc_dump_regs(struct vrrtc_softc *);
     90  1.1  takemura 
     91  1.1  takemura struct cfattach vrrtc_ca = {
     92  1.1  takemura 	sizeof(struct vrrtc_softc), vrrtc_match, vrrtc_attach
     93  1.1  takemura };
     94  1.1  takemura 
     95  1.9       uch static __inline__ void vrrtc_write(struct vrrtc_softc *, int, u_int16_t);
     96  1.9       uch static __inline__ u_int16_t vrrtc_read(struct vrrtc_softc *, int);
     97  1.8       uch void	cvt_timehl_ymdhms(u_int32_t, u_int32_t, struct clock_ymdhms *);
     98  1.1  takemura 
     99  1.1  takemura extern int rtc_offset;
    100  1.8       uch static int m2d[12] = { 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31};
    101  1.1  takemura 
    102  1.8       uch static __inline__ void
    103  1.8       uch vrrtc_write(struct vrrtc_softc *sc, int port, u_int16_t val)
    104  1.1  takemura {
    105  1.7       uch 
    106  1.8       uch 	bus_space_write_2(sc->sc_iot, sc->sc_ioh, port, val);
    107  1.1  takemura }
    108  1.1  takemura 
    109  1.8       uch static __inline__ u_int16_t
    110  1.8       uch vrrtc_read(struct vrrtc_softc *sc, int port)
    111  1.1  takemura {
    112  1.7       uch 
    113  1.8       uch 	return (bus_space_read_2(sc->sc_iot, sc->sc_ioh, port));
    114  1.1  takemura }
    115  1.1  takemura 
    116  1.8       uch int
    117  1.8       uch vrrtc_match(struct device *parent, struct cfdata *cf, void *aux)
    118  1.1  takemura {
    119  1.7       uch 
    120  1.8       uch 	return (1);
    121  1.1  takemura }
    122  1.1  takemura 
    123  1.1  takemura void
    124  1.7       uch vrrtc_attach(struct device *parent, struct device *self, void *aux)
    125  1.1  takemura {
    126  1.1  takemura 	struct vrip_attach_args *va = aux;
    127  1.8       uch 	struct vrrtc_softc *sc = (void *)self;
    128  1.1  takemura 
    129  1.1  takemura 	sc->sc_iot = va->va_iot;
    130  1.1  takemura 	if (bus_space_map(sc->sc_iot, va->va_addr, va->va_size,
    131  1.7       uch 	    0 /* no flags */, &sc->sc_ioh)) {
    132  1.1  takemura 		printf("vrrtc_attach: can't map i/o space\n");
    133  1.1  takemura 		return;
    134  1.1  takemura 	}
    135  1.1  takemura 	/* RTC interrupt handler is directly dispatched from CPU intr */
    136  1.1  takemura 	vr_intr_establish(VR_INTR1, vrrtc_intr, sc);
    137  1.1  takemura 	/* But need to set level 1 interupt mask register,
    138  1.1  takemura 	 * so regsiter fake interrurpt handler
    139  1.1  takemura 	 */
    140  1.1  takemura 	if (!(sc->sc_ih = vrip_intr_establish(va->va_vc, va->va_intr,
    141  1.7       uch 	    IPL_CLOCK, 0, 0))) {
    142  1.1  takemura 		printf (":can't map interrupt.\n");
    143  1.1  takemura 		return;
    144  1.1  takemura 	}
    145  1.1  takemura 	/*
    146  1.1  takemura 	 *  Rtc is attached to call this routine
    147  1.1  takemura 	 *  before cpu_initclock() calls clock_init().
    148  1.1  takemura 	 *  So we must disable all interrupt for now.
    149  1.1  takemura 	 */
    150  1.1  takemura 	/*
    151  1.1  takemura 	 * Disable all rtc interrupts
    152  1.1  takemura 	 */
    153  1.1  takemura 	/* Disable Elapse compare intr */
    154  1.1  takemura 	bus_space_write_2(sc->sc_iot, sc->sc_ioh, ECMP_H_REG_W, 0);
    155  1.1  takemura 	bus_space_write_2(sc->sc_iot, sc->sc_ioh, ECMP_M_REG_W, 0);
    156  1.1  takemura 	bus_space_write_2(sc->sc_iot, sc->sc_ioh, ECMP_L_REG_W, 0);
    157  1.1  takemura 	/* Disable RTC Long1 intr */
    158  1.1  takemura 	bus_space_write_2(sc->sc_iot, sc->sc_ioh, RTCL1_H_REG_W, 0);
    159  1.1  takemura 	bus_space_write_2(sc->sc_iot, sc->sc_ioh, RTCL1_L_REG_W, 0);
    160  1.1  takemura 	/* Disable RTC Long2 intr */
    161  1.1  takemura 	bus_space_write_2(sc->sc_iot, sc->sc_ioh, RTCL2_H_REG_W, 0);
    162  1.1  takemura 	bus_space_write_2(sc->sc_iot, sc->sc_ioh, RTCL2_L_REG_W, 0);
    163  1.1  takemura 	/* Disable RTC TCLK intr */
    164  1.1  takemura 	bus_space_write_2(sc->sc_iot, sc->sc_ioh, TCLK_H_REG_W, 0);
    165  1.1  takemura 	bus_space_write_2(sc->sc_iot, sc->sc_ioh, TCLK_L_REG_W, 0);
    166  1.1  takemura 	/*
    167  1.1  takemura 	 * Clear all rtc intrrupts.
    168  1.1  takemura 	 */
    169  1.1  takemura 	bus_space_write_2(sc->sc_iot, sc->sc_ioh, RTCINT_REG_W, RTCINT_ALL);
    170  1.1  takemura 
    171  1.8       uch 	platform_clock_attach(sc, &vr_clock);
    172  1.1  takemura }
    173  1.1  takemura 
    174  1.1  takemura int
    175  1.7       uch vrrtc_intr(void *arg, u_int32_t pc, u_int32_t statusReg)
    176  1.1  takemura {
    177  1.1  takemura 	struct vrrtc_softc *sc = arg;
    178  1.1  takemura 	struct clockframe cf;
    179  1.1  takemura 
    180  1.1  takemura 	bus_space_write_2(sc->sc_iot, sc->sc_ioh, RTCINT_REG_W, RTCINT_ALL);
    181  1.1  takemura 	cf.pc = pc;
    182  1.1  takemura 	cf.sr = statusReg;
    183  1.1  takemura 	hardclock(&cf);
    184  1.1  takemura 	intrcnt[HARDCLOCK]++;
    185  1.1  takemura 
    186  1.4      sato #ifdef VRRTC_HEARTBEAT
    187  1.1  takemura 	if ((intrcnt[HARDCLOCK] % (CLOCK_RATE * 5)) == 0) {
    188  1.1  takemura 		struct clocktime ct;
    189  1.1  takemura 		clock_get((struct device *)sc, NULL, &ct);
    190  1.1  takemura 		printf("%s(%d): rtc_intr: %2d.%2d.%2d %02d:%02d:%02d\n",
    191  1.7       uch 		    __FILE__, __LINE__,
    192  1.7       uch 		    ct.year, ct.mon, ct.day,
    193  1.7       uch 		    ct.hour, ct.min, ct.sec);
    194  1.1  takemura 	}
    195  1.1  takemura #endif
    196  1.1  takemura 	return 0;
    197  1.1  takemura }
    198  1.1  takemura 
    199  1.1  takemura void
    200  1.8       uch clock_init(struct device *dev)
    201  1.1  takemura {
    202  1.8       uch 	struct vrrtc_softc *sc = (struct vrrtc_softc *)dev;
    203  1.1  takemura 
    204  1.8       uch 	DDUMP_REGS(sc);
    205  1.8       uch 	/*
    206  1.8       uch 	 * Set tick (CLOCK_RATE)
    207  1.8       uch 	 */
    208  1.8       uch 	bus_space_write_2(sc->sc_iot, sc->sc_ioh, RTCL1_H_REG_W, 0);
    209  1.8       uch 	bus_space_write_2(sc->sc_iot, sc->sc_ioh, RTCL1_L_REG_W,
    210  1.8       uch 	    RTCL1_L_HZ/CLOCK_RATE);
    211  1.8       uch }
    212  1.1  takemura 
    213  1.8       uch void
    214  1.8       uch clock_get(struct device *dev, time_t base, struct clock_ymdhms *dt)
    215  1.8       uch {
    216  1.1  takemura 
    217  1.8       uch 	struct vrrtc_softc *sc = (struct vrrtc_softc *)dev;
    218  1.8       uch 	bus_space_tag_t iot = sc->sc_iot;
    219  1.8       uch 	bus_space_handle_t ioh = sc->sc_ioh;
    220  1.8       uch 	u_int32_t timeh;	/* elapse time (2*timeh sec) */
    221  1.8       uch 	u_int32_t timel;	/* timel/32768 sec */
    222  1.8       uch 
    223  1.8       uch 	timeh = bus_space_read_2(iot, ioh, ETIME_H_REG_W);
    224  1.8       uch 	timeh = (timeh << 16) | bus_space_read_2(iot, ioh, ETIME_M_REG_W);
    225  1.8       uch 	timel = bus_space_read_2(iot, ioh, ETIME_L_REG_W);
    226  1.1  takemura 
    227  1.8       uch 	DPRINTF(("clock_get: timeh %08lx timel %08lx\n", timeh, timel));
    228  1.1  takemura 
    229  1.8       uch 	cvt_timehl_ymdhms(timeh, timel, dt);
    230  1.1  takemura 
    231  1.8       uch 	DPRINTF(("clock_get: %d/%d/%d/%d/%d/%d\n", dt->dt_year, dt->dt_mon,
    232  1.8       uch 	    dt->dt_day, dt->dt_hour, dt->dt_min, dt->dt_sec));
    233  1.4      sato }
    234  1.4      sato 
    235  1.4      sato void
    236  1.8       uch clock_set(struct device *dev, struct clock_ymdhms *dt)
    237  1.4      sato {
    238  1.4      sato 	struct vrrtc_softc *sc = (struct vrrtc_softc *)dev;
    239  1.8       uch 	bus_space_tag_t iot = sc->sc_iot;
    240  1.8       uch 	bus_space_handle_t ioh = sc->sc_ioh;
    241  1.8       uch 	u_int32_t timeh;	/* elapse time (2*timeh sec) */
    242  1.8       uch 	u_int32_t timel;	/* timel/32768 sec */
    243  1.8       uch 	int year, month, sec2;
    244  1.8       uch 
    245  1.8       uch 	timeh = 0;
    246  1.8       uch 	timel = 0;
    247  1.8       uch 
    248  1.8       uch 	DPRINTF(("clock_set: %d/%d/%d/%d/%d/%d\n", dt->dt_year, dt->dt_mon,
    249  1.8       uch 	    dt->dt_day, dt->dt_hour, dt->dt_min, dt->dt_sec));
    250  1.8       uch 
    251  1.8       uch 	dt->dt_year += YBASE;
    252  1.8       uch 
    253  1.8       uch 	DPRINTF(("clock_set: %d/%d/%d/%d/%d/%d\n", dt->dt_year, dt->dt_mon,
    254  1.8       uch 	    dt->dt_day, dt->dt_hour, dt->dt_min, dt->dt_sec));
    255  1.8       uch 
    256  1.8       uch 	year = EPOCHYEAR;
    257  1.8       uch 	sec2 = LEAPYEAR4(year)?SEC2YR+SEC2DAY:SEC2YR;
    258  1.8       uch 	while (year < dt->dt_year) {
    259  1.8       uch 		year++;
    260  1.8       uch 		timeh += sec2;
    261  1.8       uch 		sec2 = LEAPYEAR4(year)?SEC2YR+SEC2DAY:SEC2YR;
    262  1.8       uch 	}
    263  1.8       uch 	month = 1; /* now month is 1..12 */
    264  1.8       uch 	sec2 = SEC2DAY * m2d[month-1];
    265  1.8       uch 	while (month < dt->dt_mon) {
    266  1.8       uch 		month++;
    267  1.8       uch 		timeh += sec2;
    268  1.8       uch 		sec2 = SEC2DAY * m2d[month-1];
    269  1.8       uch 		if (month == 2 && LEAPYEAR4(year)) /* feb. and leapyear */
    270  1.8       uch 			sec2 += SEC2DAY;
    271  1.8       uch 	}
    272  1.8       uch 
    273  1.8       uch 	timeh += (dt->dt_day - 1)*SEC2DAY;
    274  1.8       uch 
    275  1.8       uch 	timeh += dt->dt_hour*SEC2HOUR;
    276  1.8       uch 
    277  1.8       uch 	timeh += dt->dt_min*SEC2MIN;
    278  1.4      sato 
    279  1.8       uch 	timeh += dt->dt_sec/2;
    280  1.8       uch 	timel += (dt->dt_sec%2)*ETIME_L_HZ;
    281  1.8       uch 
    282  1.8       uch 	timeh += EPOCHOFF;
    283  1.8       uch 	timeh -= (rtc_offset*SEC2MIN);
    284  1.8       uch 
    285  1.8       uch #ifdef VRRTCDEBUG
    286  1.8       uch 	cvt_timehl_ymdhms(timeh, timel, NULL);
    287  1.8       uch #endif /* RTCDEBUG */
    288  1.8       uch 
    289  1.8       uch 	bus_space_write_2(iot, ioh, ETIME_H_REG_W, (timeh >> 16) & 0xffff);
    290  1.8       uch 	bus_space_write_2(iot, ioh, ETIME_M_REG_W, timeh & 0xffff);
    291  1.8       uch 	bus_space_write_2(iot, ioh, ETIME_L_REG_W, timel);
    292  1.1  takemura }
    293  1.1  takemura 
    294  1.1  takemura void
    295  1.8       uch cvt_timehl_ymdhms(
    296  1.8       uch 	u_int32_t timeh, /* 2 sec */
    297  1.8       uch 	u_int32_t timel, /* 1/32768 sec */
    298  1.8       uch 	struct clock_ymdhms *dt)
    299  1.1  takemura {
    300  1.8       uch 	u_int32_t year, month, date, hour, min, sec, sec2;
    301  1.1  takemura 
    302  1.1  takemura 	timeh -= EPOCHOFF;
    303  1.1  takemura 
    304  1.2      sato 	timeh += (rtc_offset*SEC2MIN);
    305  1.1  takemura 
    306  1.1  takemura 	year = EPOCHYEAR;
    307  1.2      sato 	sec2 = LEAPYEAR4(year)?SEC2YR+SEC2DAY:SEC2YR;
    308  1.1  takemura 	while (timeh > sec2) {
    309  1.1  takemura 		year++;
    310  1.1  takemura 		timeh -= sec2;
    311  1.2      sato 		sec2 = LEAPYEAR4(year)?SEC2YR+SEC2DAY:SEC2YR;
    312  1.1  takemura 	}
    313  1.1  takemura 
    314  1.8       uch 	DPRINTF(("cvt_timehl_ymdhms: timeh %08lx year %ld yrref %ld\n",
    315  1.7       uch 	    timeh, year, sec2));
    316  1.1  takemura 
    317  1.1  takemura 	month = 0; /* now month is 0..11 */
    318  1.2      sato 	sec2 = SEC2DAY * m2d[month];
    319  1.1  takemura 	while (timeh > sec2) {
    320  1.1  takemura 		timeh -= sec2;
    321  1.1  takemura 		month++;
    322  1.2      sato 		sec2 = SEC2DAY * m2d[month];
    323  1.1  takemura 		if (month == 1 && LEAPYEAR4(year)) /* feb. and leapyear */
    324  1.2      sato 			sec2 += SEC2DAY;
    325  1.1  takemura 	}
    326  1.1  takemura 	month +=1; /* now month is 1..12 */
    327  1.1  takemura 
    328  1.8       uch 	DPRINTF(("cvt_timehl_ymdhms: timeh %08lx month %ld mref %ld\n",
    329  1.7       uch 	    timeh, month, sec2));
    330  1.1  takemura 
    331  1.2      sato 	sec2 = SEC2DAY;
    332  1.1  takemura 	date = timeh/sec2+1; /* date is 1..31 */
    333  1.1  takemura 	timeh -= (date-1)*sec2;
    334  1.1  takemura 
    335  1.8       uch 	DPRINTF(("cvt_timehl_ymdhms: timeh %08lx date %ld dref %ld\n",
    336  1.7       uch 	    timeh, date, sec2));
    337  1.1  takemura 
    338  1.2      sato 	sec2 = SEC2HOUR;
    339  1.1  takemura 	hour = timeh/sec2;
    340  1.1  takemura 	timeh -= hour*sec2;
    341  1.1  takemura 
    342  1.2      sato 	sec2 = SEC2MIN;
    343  1.1  takemura 	min = timeh/sec2;
    344  1.1  takemura 	timeh -= min*sec2;
    345  1.1  takemura 
    346  1.1  takemura 	sec = timeh*2 + timel/ETIME_L_HZ;
    347  1.1  takemura 
    348  1.8       uch 	DPRINTF(("cvt_timehl_ymdhms: hour %ld min %ld sec %ld\n", hour, min, sec));
    349  1.1  takemura 
    350  1.8       uch 	if (dt) {
    351  1.8       uch 		dt->dt_year	= year - YBASE; /* base 1900 */
    352  1.8       uch 		dt->dt_mon	= month;
    353  1.8       uch 		dt->dt_day	= date;
    354  1.8       uch 		dt->dt_hour	= hour;
    355  1.8       uch 		dt->dt_min	= min;
    356  1.8       uch 		dt->dt_sec	= sec;
    357  1.1  takemura 	}
    358  1.1  takemura }
    359  1.1  takemura 
    360  1.1  takemura void
    361  1.8       uch vrrtc_dump_regs(struct vrrtc_softc *sc)
    362  1.1  takemura {
    363  1.8       uch 	int timeh;
    364  1.8       uch 	int timel;
    365  1.1  takemura 
    366  1.1  takemura 	timeh = bus_space_read_2(sc->sc_iot, sc->sc_ioh, ETIME_H_REG_W);
    367  1.8       uch 	timel = bus_space_read_2(sc->sc_iot, sc->sc_ioh, ETIME_M_REG_W);
    368  1.8       uch 	timel = (timel << 16)
    369  1.8       uch 	    | bus_space_read_2(sc->sc_iot, sc->sc_ioh, ETIME_L_REG_W);
    370  1.8       uch 	printf("clock_init()  Elapse Time %04x%04x\n", timeh, timel);
    371  1.1  takemura 
    372  1.8       uch 	timeh = bus_space_read_2(sc->sc_iot, sc->sc_ioh, ECMP_H_REG_W);
    373  1.8       uch 	timel = bus_space_read_2(sc->sc_iot, sc->sc_ioh, ECMP_M_REG_W);
    374  1.8       uch 	timel = (timel << 16)
    375  1.8       uch 	    | bus_space_read_2(sc->sc_iot, sc->sc_ioh, ECMP_L_REG_W);
    376  1.8       uch 	printf("clock_init()  Elapse Compare %04x%04x\n", timeh, timel);
    377  1.1  takemura 
    378  1.8       uch 	timeh = bus_space_read_2(sc->sc_iot, sc->sc_ioh, RTCL1_H_REG_W);
    379  1.8       uch 	timel = bus_space_read_2(sc->sc_iot, sc->sc_ioh, RTCL1_L_REG_W);
    380  1.8       uch 	printf("clock_init()  LONG1 %04x%04x\n", timeh, timel);
    381  1.1  takemura 
    382  1.8       uch 	timeh = bus_space_read_2(sc->sc_iot, sc->sc_ioh, RTCL1_CNT_H_REG_W);
    383  1.8       uch 	timel = bus_space_read_2(sc->sc_iot, sc->sc_ioh, RTCL1_CNT_L_REG_W);
    384  1.8       uch 	printf("clock_init()  LONG1 CNTL %04x%04x\n", timeh, timel);
    385  1.1  takemura 
    386  1.8       uch 	timeh = bus_space_read_2(sc->sc_iot, sc->sc_ioh, RTCL2_H_REG_W);
    387  1.8       uch 	timel = bus_space_read_2(sc->sc_iot, sc->sc_ioh, RTCL2_L_REG_W);
    388  1.8       uch 	printf("clock_init()  LONG2 %04x%04x\n", timeh, timel);
    389  1.1  takemura 
    390  1.8       uch 	timeh = bus_space_read_2(sc->sc_iot, sc->sc_ioh, RTCL2_CNT_H_REG_W);
    391  1.8       uch 	timel = bus_space_read_2(sc->sc_iot, sc->sc_ioh, RTCL2_CNT_L_REG_W);
    392  1.8       uch 	printf("clock_init()  LONG2 CNTL %04x%04x\n", timeh, timel);
    393  1.1  takemura 
    394  1.8       uch 	timeh = bus_space_read_2(sc->sc_iot, sc->sc_ioh, TCLK_H_REG_W);
    395  1.8       uch 	timel = bus_space_read_2(sc->sc_iot, sc->sc_ioh, TCLK_L_REG_W);
    396  1.8       uch 	printf("clock_init()  TCLK %04x%04x\n", timeh, timel);
    397  1.1  takemura 
    398  1.8       uch 	timeh = bus_space_read_2(sc->sc_iot, sc->sc_ioh, TCLK_CNT_H_REG_W);
    399  1.8       uch 	timel = bus_space_read_2(sc->sc_iot, sc->sc_ioh, TCLK_CNT_L_REG_W);
    400  1.8       uch 	printf("clock_init()  TCLK CNTL %04x%04x\n", timeh, timel);
    401  1.1  takemura }
    402