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clock.c revision 1.54
      1  1.54       chs /*	$NetBSD: clock.c,v 1.54 2012/10/27 17:17:28 chs Exp $ */
      2   1.6       cgd 
      3   1.1    chopps /*
      4  1.52     rmind  * Copyright (c) 1988 University of Utah.
      5   1.1    chopps  * Copyright (c) 1982, 1990 The Regents of the University of California.
      6   1.1    chopps  * All rights reserved.
      7   1.1    chopps  *
      8   1.1    chopps  * This code is derived from software contributed to Berkeley by
      9   1.1    chopps  * the Systems Programming Group of the University of Utah Computer
     10   1.1    chopps  * Science Department.
     11   1.1    chopps  *
     12   1.1    chopps  * Redistribution and use in source and binary forms, with or without
     13   1.1    chopps  * modification, are permitted provided that the following conditions
     14   1.1    chopps  * are met:
     15   1.1    chopps  * 1. Redistributions of source code must retain the above copyright
     16   1.1    chopps  *    notice, this list of conditions and the following disclaimer.
     17   1.1    chopps  * 2. Redistributions in binary form must reproduce the above copyright
     18   1.1    chopps  *    notice, this list of conditions and the following disclaimer in the
     19   1.1    chopps  *    documentation and/or other materials provided with the distribution.
     20  1.42       agc  * 3. Neither the name of the University nor the names of its contributors
     21  1.42       agc  *    may be used to endorse or promote products derived from this software
     22  1.42       agc  *    without specific prior written permission.
     23  1.42       agc  *
     24  1.42       agc  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     25  1.42       agc  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     26  1.42       agc  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     27  1.42       agc  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     28  1.42       agc  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     29  1.42       agc  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     30  1.42       agc  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     31  1.42       agc  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     32  1.42       agc  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     33  1.42       agc  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     34  1.42       agc  * SUCH DAMAGE.
     35  1.42       agc  *
     36  1.42       agc  * from: Utah $Hdr: clock.c 1.18 91/01/21$
     37  1.42       agc  *
     38  1.42       agc  *	@(#)clock.c	7.6 (Berkeley) 5/7/91
     39  1.42       agc  */
     40  1.38   aymeric 
     41  1.38   aymeric #include <sys/cdefs.h>
     42  1.54       chs __KERNEL_RCSID(0, "$NetBSD: clock.c,v 1.54 2012/10/27 17:17:28 chs Exp $");
     43   1.1    chopps 
     44   1.1    chopps #include <sys/param.h>
     45   1.1    chopps #include <sys/kernel.h>
     46   1.1    chopps #include <sys/device.h>
     47  1.13     veego #include <sys/systm.h>
     48  1.47    mhitch #include <sys/timetc.h>
     49   1.1    chopps #include <machine/psl.h>
     50   1.1    chopps #include <machine/cpu.h>
     51   1.1    chopps #include <amiga/amiga/device.h>
     52   1.1    chopps #include <amiga/amiga/custom.h>
     53   1.1    chopps #include <amiga/amiga/cia.h>
     54  1.14        is #ifdef DRACO
     55  1.14        is #include <amiga/amiga/drcustom.h>
     56  1.33        is #include <m68k/include/asm_single.h>
     57  1.14        is #endif
     58   1.1    chopps #include <amiga/dev/rtc.h>
     59   1.8    chopps #include <amiga/dev/zbusvar.h>
     60   1.1    chopps 
     61   1.1    chopps #if defined(PROF) && defined(PROFTIMER)
     62   1.1    chopps #include <sys/PROF.h>
     63   1.1    chopps #endif
     64   1.1    chopps 
     65   1.1    chopps /*
     66   1.1    chopps  * Machine-dependent clock routines.
     67   1.1    chopps  *
     68   1.1    chopps  * Startrtclock restarts the real-time clock, which provides
     69   1.1    chopps  * hardclock interrupts to kern_clock.c.
     70   1.1    chopps  *
     71   1.1    chopps  * Inittodr initializes the time of day hardware which provides
     72   1.1    chopps  * date functions.
     73   1.1    chopps  *
     74   1.1    chopps  * Resettodr restores the time of day hardware after a time change.
     75   1.1    chopps  *
     76   1.1    chopps  * A note on the real-time clock:
     77  1.47    mhitch  * We actually load the clock with amiga_clk_interval-1 instead of amiga_clk_interval.
     78   1.1    chopps  * This is because the counter decrements to zero after N+1 enabled clock
     79   1.1    chopps  * periods where N is the value loaded into the counter.
     80   1.1    chopps  */
     81   1.1    chopps 
     82  1.53      matt int clockmatch(device_t, cfdata_t, void *);
     83  1.53      matt void clockattach(device_t, device_t, void *);
     84  1.37   aymeric void cpu_initclocks(void);
     85  1.53      matt static void calibrate_delay(device_t);
     86  1.51       phx 
     87  1.51       phx /* the clocks run at NTSC: 715.909kHz or PAL: 709.379kHz.
     88  1.51       phx    We're using a 100 Hz clock. */
     89  1.51       phx int amiga_clk_interval;
     90  1.51       phx int eclockfreq;
     91  1.51       phx struct CIA *clockcia;
     92  1.51       phx 
     93  1.51       phx static u_int clk_getcounter(struct timecounter *);
     94  1.51       phx 
     95  1.51       phx static struct timecounter clk_timecounter = {
     96  1.51       phx 	clk_getcounter,	/* get_timecount */
     97  1.51       phx 	0,		/* no poll_pps */
     98  1.51       phx 	~0u,		/* counter_mask */
     99  1.51       phx 	0,		/* frequency */
    100  1.51       phx 	"clock",	/* name, overriden later */
    101  1.51       phx 	100,		/* quality */
    102  1.51       phx 	NULL,		/* prev */
    103  1.51       phx 	NULL,		/* next */
    104  1.51       phx };
    105   1.1    chopps 
    106  1.53      matt CFATTACH_DECL_NEW(clock, 0,
    107  1.41   thorpej     clockmatch, clockattach, NULL, NULL);
    108   1.1    chopps 
    109   1.1    chopps int
    110  1.54       chs clockmatch(device_t parent, cfdata_t cf, void *aux)
    111   1.1    chopps {
    112  1.54       chs 	if (matchname("clock", aux))
    113   1.1    chopps 		return(1);
    114   1.1    chopps 	return(0);
    115   1.1    chopps }
    116   1.1    chopps 
    117   1.1    chopps /*
    118   1.1    chopps  * Start the real-time clock.
    119   1.1    chopps  */
    120   1.1    chopps void
    121  1.54       chs clockattach(device_t parent, device_t self, void *aux)
    122   1.1    chopps {
    123  1.43       jmc 	const char *clockchip;
    124   1.1    chopps 	unsigned short interval;
    125  1.51       phx 	int chipfreq;
    126  1.18        is #ifdef DRACO
    127  1.18        is 	u_char dracorev;
    128  1.18        is #endif
    129   1.1    chopps 
    130   1.4    chopps 	if (eclockfreq == 0)
    131   1.4    chopps 		eclockfreq = 715909;	/* guess NTSC */
    132  1.37   aymeric 
    133  1.51       phx 	chipfreq = eclockfreq;
    134  1.51       phx 
    135  1.14        is #ifdef DRACO
    136  1.51       phx 	dracorev = is_draco();
    137  1.18        is 	if (dracorev >= 4) {
    138  1.51       phx 		chipfreq = eclockfreq / 7;
    139  1.18        is 		clockchip = "QuickLogic";
    140  1.18        is 	} else if (dracorev) {
    141  1.14        is 		clockcia = (struct CIA *)CIAAbase;
    142  1.18        is 		clockchip = "CIA A";
    143  1.37   aymeric 	} else
    144  1.14        is #endif
    145  1.14        is 	{
    146  1.14        is 		clockcia = (struct CIA *)CIABbase;
    147  1.18        is 		clockchip = "CIA B";
    148  1.14        is 	}
    149  1.14        is 
    150  1.51       phx 	amiga_clk_interval = chipfreq / hz;
    151  1.47    mhitch 
    152  1.54       chs 	if (self != NULL) {	/* real autoconfig? */
    153  1.23        is 		printf(": %s system hz %d hardware hz %d\n", clockchip, hz,
    154  1.51       phx 		    chipfreq);
    155  1.51       phx 
    156  1.51       phx 		clk_timecounter.tc_name = clockchip;
    157  1.51       phx 		clk_timecounter.tc_frequency = chipfreq;
    158  1.47    mhitch 		tc_init(&clk_timecounter);
    159  1.47    mhitch 	}
    160  1.18        is 
    161  1.18        is #ifdef DRACO
    162  1.18        is 	if (dracorev >= 4) {
    163  1.37   aymeric 		/*
    164  1.18        is 		 * can't preload anything beforehand, timer is free_running;
    165  1.18        is 		 * but need this for delay calibration.
    166  1.18        is 		 */
    167  1.18        is 
    168  1.47    mhitch 		draco_ioct->io_timerlo = amiga_clk_interval & 0xff;
    169  1.47    mhitch 		draco_ioct->io_timerhi = amiga_clk_interval >> 8;
    170  1.18        is 
    171  1.54       chs 		calibrate_delay(self);
    172  1.51       phx 
    173  1.18        is 		return;
    174  1.18        is 	}
    175  1.18        is #endif
    176   1.1    chopps 	/*
    177  1.37   aymeric 	 * stop timer A
    178   1.1    chopps 	 */
    179  1.14        is 	clockcia->cra = clockcia->cra & 0xc0;
    180  1.14        is 	clockcia->icr = 1 << 0;		/* disable timer A interrupt */
    181  1.14        is 	interval = clockcia->icr;		/* and make sure it's clear */
    182   1.1    chopps 
    183   1.1    chopps 	/*
    184   1.1    chopps 	 * load interval into registers.
    185   1.1    chopps          * the clocks run at NTSC: 715.909kHz or PAL: 709.379kHz
    186   1.1    chopps 	 */
    187  1.47    mhitch 	interval = amiga_clk_interval - 1;
    188   1.1    chopps 
    189   1.1    chopps 	/*
    190   1.1    chopps 	 * order of setting is important !
    191   1.1    chopps 	 */
    192  1.14        is 	clockcia->talo = interval & 0xff;
    193  1.14        is 	clockcia->tahi = interval >> 8;
    194  1.18        is 	/*
    195  1.18        is 	 * start timer A in continuous mode
    196  1.18        is 	 */
    197  1.18        is 	clockcia->cra = (clockcia->cra & 0xc0) | 1;
    198  1.51       phx 
    199  1.54       chs 	calibrate_delay(self);
    200   1.1    chopps }
    201   1.1    chopps 
    202   1.1    chopps void
    203  1.37   aymeric cpu_initclocks(void)
    204   1.1    chopps {
    205  1.20    mhitch #ifdef DRACO
    206  1.18        is 	unsigned char dracorev;
    207  1.18        is 	dracorev = is_draco();
    208  1.18        is 	if (dracorev >= 4) {
    209  1.47    mhitch 		draco_ioct->io_timerlo = amiga_clk_interval & 0xFF;
    210  1.47    mhitch 		draco_ioct->io_timerhi = amiga_clk_interval >> 8;
    211  1.18        is 		draco_ioct->io_timerrst = 0;	/* any value resets */
    212  1.33        is 		single_inst_bset_b(draco_ioct->io_status2, DRSTAT2_TMRINTENA);
    213  1.18        is 
    214  1.18        is 		return;
    215  1.18        is 	}
    216  1.18        is #endif
    217   1.1    chopps 	/*
    218   1.1    chopps 	 * enable interrupts for timer A
    219   1.1    chopps 	 */
    220  1.14        is 	clockcia->icr = (1<<7) | (1<<0);
    221   1.1    chopps 
    222   1.1    chopps 	/*
    223   1.1    chopps 	 * start timer A in continuous shot mode
    224   1.1    chopps 	 */
    225  1.14        is 	clockcia->cra = (clockcia->cra & 0xc0) | 1;
    226  1.37   aymeric 
    227   1.1    chopps 	/*
    228   1.1    chopps 	 * and globally enable interrupts for ciab
    229   1.1    chopps 	 */
    230  1.14        is #ifdef DRACO
    231  1.18        is 	if (dracorev)		/* we use cia a on DraCo */
    232  1.33        is 		single_inst_bset_b(*draco_intena, DRIRQ_INT2);
    233  1.14        is 	else
    234  1.14        is #endif
    235  1.14        is 		custom.intena = INTF_SETCLR | INTF_EXTER;
    236  1.18        is 
    237   1.1    chopps }
    238   1.1    chopps 
    239  1.13     veego void
    240  1.43       jmc setstatclockrate(int hertz)
    241   1.1    chopps {
    242   1.1    chopps }
    243   1.1    chopps 
    244   1.1    chopps /*
    245  1.51       phx  * Returns ticks since last recorded clock "tick"
    246   1.1    chopps  * (i.e. clock interrupt).
    247   1.1    chopps  */
    248  1.47    mhitch static u_int
    249  1.47    mhitch clk_gettick(void)
    250   1.1    chopps {
    251  1.18        is 	u_int interval;
    252   1.1    chopps 	u_char hi, hi2, lo;
    253   1.1    chopps 
    254  1.14        is #ifdef DRACO
    255  1.18        is 	if (is_draco() >= 4) {
    256  1.18        is 		hi2 = draco_ioct->io_chiprev;	/* latch timer */
    257  1.18        is 		hi = draco_ioct->io_timerhi;
    258  1.18        is 		lo = draco_ioct->io_timerlo;
    259  1.18        is 		interval = ((hi<<8) | lo);
    260  1.47    mhitch 		if (interval > amiga_clk_interval)	/* timer underflow */
    261  1.47    mhitch 			interval = 65536 + amiga_clk_interval - interval;
    262  1.18        is 		else
    263  1.47    mhitch 			interval = amiga_clk_interval - interval;
    264   1.1    chopps 
    265  1.18        is 	} else
    266  1.14        is #endif
    267  1.18        is 	{
    268  1.18        is 		hi  = clockcia->tahi;
    269  1.18        is 		lo  = clockcia->talo;
    270  1.18        is 		hi2 = clockcia->tahi;
    271  1.18        is 		if (hi != hi2) {
    272  1.18        is 			lo = clockcia->talo;
    273  1.18        is 			hi = hi2;
    274  1.18        is 		}
    275   1.1    chopps 
    276  1.47    mhitch 		interval = (amiga_clk_interval - 1) - ((hi<<8) | lo);
    277  1.37   aymeric 
    278   1.1    chopps 		/*
    279  1.18        is 		 * should read ICR and if there's an int pending, adjust
    280  1.18        is 		 * interval. However, since reading ICR clears the interrupt,
    281  1.18        is 		 * we'd lose a hardclock int, and this is not tolerable.
    282   1.1    chopps 		 */
    283   1.1    chopps 	}
    284   1.1    chopps 
    285  1.47    mhitch 	return interval;
    286  1.47    mhitch }
    287  1.47    mhitch 
    288  1.47    mhitch static u_int
    289  1.47    mhitch clk_getcounter(struct timecounter *tc)
    290  1.47    mhitch {
    291  1.51       phx 	static int prev_hardclock;
    292  1.51       phx 	static u_int prev_counter;
    293  1.51       phx 	int cur_hardclock;
    294  1.51       phx 	u_int counter;
    295  1.47    mhitch 
    296  1.47    mhitch 	do {
    297  1.51       phx 		cur_hardclock = hardclock_ticks;
    298  1.51       phx 		counter = clk_gettick();
    299  1.51       phx 	} while (cur_hardclock != hardclock_ticks);
    300  1.47    mhitch 
    301  1.50       phx 	/*
    302  1.50       phx 	 * Handle the situation of a wrapped interval counter, while
    303  1.50       phx 	 * the hardclock() interrupt was not yet executed to update
    304  1.50       phx 	 * hardclock_ticks.
    305  1.50       phx 	 */
    306  1.51       phx 	if (cur_hardclock < prev_hardclock)
    307  1.51       phx 		cur_hardclock = prev_hardclock;
    308  1.51       phx 	if (counter < prev_counter && cur_hardclock == prev_hardclock)
    309  1.51       phx 		cur_hardclock++;
    310  1.51       phx 
    311  1.51       phx 	prev_hardclock = cur_hardclock;
    312  1.51       phx 	prev_counter = counter;
    313  1.51       phx 
    314  1.51       phx 	return cur_hardclock * amiga_clk_interval + counter;
    315  1.51       phx }
    316  1.51       phx 
    317  1.51       phx /*
    318  1.51       phx  * Calibrate delay loop.
    319  1.51       phx  * We use two iterations because we don't have enough bits to do a factor of
    320  1.51       phx  * 8 with better than 1%.
    321  1.51       phx  *
    322  1.51       phx  * XXX Note that we MUST stay below 1 tick if using clk_gettick(), even for
    323  1.51       phx  * underestimated values of delaydivisor.
    324  1.51       phx  *
    325  1.51       phx  * XXX the "ns" below is only correct for a shift of 10 bits, and even then
    326  1.51       phx  * off by 2.4%
    327  1.51       phx  */
    328  1.51       phx static void
    329  1.54       chs calibrate_delay(device_t self)
    330  1.51       phx {
    331  1.51       phx 	unsigned long t1, t2;
    332  1.51       phx 	extern u_int32_t delaydivisor;
    333  1.51       phx 		/* XXX this should be defined elsewhere */
    334  1.50       phx 
    335  1.54       chs 	if (self)
    336  1.51       phx 		printf("Calibrating delay loop... ");
    337  1.51       phx 
    338  1.51       phx 	do {
    339  1.51       phx 		t1 = clk_gettick();
    340  1.51       phx 		delay(1024);
    341  1.51       phx 		t2 = clk_gettick();
    342  1.51       phx 	} while (t2 <= t1);
    343  1.51       phx 	t2 = ((t2 - t1) * 1000000) / (amiga_clk_interval * hz);
    344  1.51       phx 	delaydivisor = (delaydivisor * t2 + 1023) >> 10;
    345  1.51       phx #ifdef DEBUG
    346  1.54       chs 	if (self)
    347  1.51       phx 		printf("\ndiff %ld us, new divisor %u/1024 us\n", t2,
    348  1.51       phx 		    delaydivisor);
    349  1.51       phx 	do {
    350  1.51       phx 		t1 = clk_gettick();
    351  1.51       phx 		delay(1024);
    352  1.51       phx 		t2 = clk_gettick();
    353  1.51       phx 	} while (t2 <= t1);
    354  1.51       phx 	t2 = ((t2 - t1) * 1000000) / (amiga_clk_interval * hz);
    355  1.51       phx 	delaydivisor = (delaydivisor * t2 + 1023) >> 10;
    356  1.54       chs 	if (self)
    357  1.51       phx 		printf("diff %ld us, new divisor %u/1024 us\n", t2,
    358  1.51       phx 		    delaydivisor);
    359  1.51       phx #endif
    360  1.51       phx 	do {
    361  1.51       phx 		t1 = clk_gettick();
    362  1.51       phx 		delay(1024);
    363  1.51       phx 		t2 = clk_gettick();
    364  1.51       phx 	} while (t2 <= t1);
    365  1.51       phx 	t2 = ((t2 - t1) * 1000000) / (amiga_clk_interval * hz);
    366  1.51       phx 	delaydivisor = (delaydivisor * t2 + 1023) >> 10;
    367  1.51       phx #ifdef DEBUG
    368  1.54       chs 	if (self)
    369  1.51       phx 		printf("diff %ld us, new divisor ", t2);
    370  1.51       phx #endif
    371  1.54       chs 	if (self)
    372  1.51       phx 		printf("%u/1024 us\n", delaydivisor);
    373   1.1    chopps }
    374   1.1    chopps 
    375   1.1    chopps #if notyet
    376   1.1    chopps 
    377   1.1    chopps /* implement this later. I'd suggest using both timers in CIA-A, they're
    378   1.1    chopps    not yet used. */
    379   1.1    chopps 
    380   1.1    chopps #include "clock.h"
    381   1.1    chopps #if NCLOCK > 0
    382   1.1    chopps /*
    383   1.1    chopps  * /dev/clock: mappable high resolution timer.
    384   1.1    chopps  *
    385   1.1    chopps  * This code implements a 32-bit recycling counter (with a 4 usec period)
    386   1.1    chopps  * using timers 2 & 3 on the 6840 clock chip.  The counter can be mapped
    387   1.1    chopps  * RO into a user's address space to achieve low overhead (no system calls),
    388   1.1    chopps  * high-precision timing.
    389   1.1    chopps  *
    390   1.1    chopps  * Note that timer 3 is also used for the high precision profiling timer
    391   1.1    chopps  * (PROFTIMER code above).  Care should be taken when both uses are
    392   1.1    chopps  * configured as only a token effort is made to avoid conflicting use.
    393   1.1    chopps  */
    394   1.1    chopps #include <sys/proc.h>
    395   1.1    chopps #include <sys/resourcevar.h>
    396   1.1    chopps #include <sys/ioctl.h>
    397   1.1    chopps #include <sys/malloc.h>
    398  1.35       mrg #include <uvm/uvm_extern.h>
    399   1.1    chopps #include <amiga/amiga/clockioctl.h>
    400   1.1    chopps #include <sys/specdev.h>
    401   1.1    chopps #include <sys/vnode.h>
    402   1.1    chopps #include <sys/mman.h>
    403   1.1    chopps 
    404   1.1    chopps int clockon = 0;		/* non-zero if high-res timer enabled */
    405   1.1    chopps #ifdef PROFTIMER
    406   1.1    chopps int  profprocs = 0;		/* # of procs using profiling timer */
    407   1.1    chopps #endif
    408   1.1    chopps #ifdef DEBUG
    409   1.1    chopps int clockdebug = 0;
    410   1.1    chopps #endif
    411   1.1    chopps 
    412   1.1    chopps /*ARGSUSED*/
    413  1.37   aymeric int
    414  1.37   aymeric clockopen(dev_t dev, int flags)
    415   1.1    chopps {
    416   1.1    chopps #ifdef PROFTIMER
    417   1.1    chopps #ifdef PROF
    418   1.1    chopps 	/*
    419   1.1    chopps 	 * Kernel profiling enabled, give up.
    420   1.1    chopps 	 */
    421   1.1    chopps 	if (profiling)
    422   1.1    chopps 		return(EBUSY);
    423   1.1    chopps #endif
    424   1.1    chopps 	/*
    425   1.1    chopps 	 * If any user processes are profiling, give up.
    426   1.1    chopps 	 */
    427   1.1    chopps 	if (profprocs)
    428   1.1    chopps 		return(EBUSY);
    429   1.1    chopps #endif
    430   1.1    chopps 	if (!clockon) {
    431   1.1    chopps 		startclock();
    432   1.1    chopps 		clockon++;
    433   1.1    chopps 	}
    434   1.1    chopps 	return(0);
    435   1.1    chopps }
    436   1.1    chopps 
    437   1.1    chopps /*ARGSUSED*/
    438  1.37   aymeric int
    439  1.37   aymeric clockclose(dev_t dev, int flags)
    440   1.1    chopps {
    441  1.46  christos 	(void) clockunmmap(dev, (void *)0, curproc);	/* XXX */
    442   1.1    chopps 	stopclock();
    443   1.1    chopps 	clockon = 0;
    444   1.1    chopps 	return(0);
    445   1.1    chopps }
    446   1.1    chopps 
    447   1.1    chopps /*ARGSUSED*/
    448  1.37   aymeric int
    449  1.46  christos clockioctl(dev_t dev, u_long cmd, void *data, int flag, struct proc *p)
    450   1.1    chopps {
    451   1.1    chopps 	int error = 0;
    452  1.37   aymeric 
    453   1.1    chopps 	switch (cmd) {
    454   1.1    chopps 
    455   1.1    chopps 	case CLOCKMAP:
    456  1.46  christos 		error = clockmmap(dev, (void **)data, p);
    457   1.1    chopps 		break;
    458   1.1    chopps 
    459   1.1    chopps 	case CLOCKUNMAP:
    460  1.46  christos 		error = clockunmmap(dev, *(void **)data, p);
    461   1.1    chopps 		break;
    462   1.1    chopps 
    463   1.1    chopps 	case CLOCKGETRES:
    464   1.1    chopps 		*(int *)data = CLK_RESOLUTION;
    465   1.1    chopps 		break;
    466   1.1    chopps 
    467   1.1    chopps 	default:
    468   1.1    chopps 		error = EINVAL;
    469   1.1    chopps 		break;
    470   1.1    chopps 	}
    471   1.1    chopps 	return(error);
    472   1.1    chopps }
    473   1.1    chopps 
    474   1.1    chopps /*ARGSUSED*/
    475  1.37   aymeric void
    476  1.37   aymeric clockmap(dev_t dev, int off, int prot)
    477   1.1    chopps {
    478   1.1    chopps 	return((off + (INTIOBASE+CLKBASE+CLKSR-1)) >> PGSHIFT);
    479   1.1    chopps }
    480   1.1    chopps 
    481  1.37   aymeric int
    482  1.46  christos clockmmap(dev_t dev, void **addrp, struct proc *p)
    483   1.1    chopps {
    484   1.1    chopps 	int error;
    485   1.1    chopps 	struct vnode vn;
    486   1.1    chopps 	struct specinfo si;
    487   1.1    chopps 	int flags;
    488   1.1    chopps 
    489   1.1    chopps 	flags = MAP_FILE|MAP_SHARED;
    490   1.1    chopps 	if (*addrp)
    491   1.1    chopps 		flags |= MAP_FIXED;
    492   1.1    chopps 	else
    493  1.46  christos 		*addrp = (void *)0x1000000;	/* XXX */
    494   1.1    chopps 	vn.v_type = VCHR;			/* XXX */
    495   1.1    chopps 	vn.v_specinfo = &si;			/* XXX */
    496   1.1    chopps 	vn.v_rdev = dev;			/* XXX */
    497   1.1    chopps 	error = vm_mmap(&p->p_vmspace->vm_map, (vm_offset_t *)addrp,
    498  1.46  christos 			PAGE_SIZE, VM_PROT_ALL, flags, (void *)&vn, 0);
    499   1.1    chopps 	return(error);
    500   1.1    chopps }
    501   1.1    chopps 
    502  1.37   aymeric int
    503  1.46  christos clockunmmap(dev_t dev, void *addr, struct proc *p)
    504   1.1    chopps {
    505   1.1    chopps 	int rv;
    506   1.1    chopps 
    507   1.1    chopps 	if (addr == 0)
    508   1.1    chopps 		return(EINVAL);		/* XXX: how do we deal with this? */
    509  1.36       chs 	uvm_deallocate(p->p_vmspace->vm_map, (vm_offset_t)addr, PAGE_SIZE);
    510  1.36       chs 	return 0;
    511   1.1    chopps }
    512   1.1    chopps 
    513  1.37   aymeric void
    514  1.37   aymeric startclock(void)
    515   1.1    chopps {
    516   1.1    chopps 	register struct clkreg *clk = (struct clkreg *)clkstd[0];
    517   1.1    chopps 
    518   1.1    chopps 	clk->clk_msb2 = -1; clk->clk_lsb2 = -1;
    519   1.1    chopps 	clk->clk_msb3 = -1; clk->clk_lsb3 = -1;
    520   1.1    chopps 
    521   1.1    chopps 	clk->clk_cr2 = CLK_CR3;
    522   1.1    chopps 	clk->clk_cr3 = CLK_OENAB|CLK_8BIT;
    523   1.1    chopps 	clk->clk_cr2 = CLK_CR1;
    524   1.1    chopps 	clk->clk_cr1 = CLK_IENAB;
    525   1.1    chopps }
    526   1.1    chopps 
    527  1.37   aymeric void
    528  1.37   aymeric stopclock(void)
    529   1.1    chopps {
    530   1.1    chopps 	register struct clkreg *clk = (struct clkreg *)clkstd[0];
    531   1.1    chopps 
    532   1.1    chopps 	clk->clk_cr2 = CLK_CR3;
    533   1.1    chopps 	clk->clk_cr3 = 0;
    534   1.1    chopps 	clk->clk_cr2 = CLK_CR1;
    535   1.1    chopps 	clk->clk_cr1 = CLK_IENAB;
    536   1.1    chopps }
    537   1.1    chopps #endif
    538   1.1    chopps 
    539   1.1    chopps #endif
    540   1.1    chopps 
    541   1.1    chopps 
    542   1.1    chopps #ifdef PROFTIMER
    543   1.1    chopps /*
    544   1.1    chopps  * This code allows the amiga kernel to use one of the extra timers on
    545   1.1    chopps  * the clock chip for profiling, instead of the regular system timer.
    546   1.1    chopps  * The advantage of this is that the profiling timer can be turned up to
    547   1.1    chopps  * a higher interrupt rate, giving finer resolution timing. The profclock
    548   1.1    chopps  * routine is called from the lev6intr in locore, and is a specialized
    549   1.1    chopps  * routine that calls addupc. The overhead then is far less than if
    550   1.1    chopps  * hardclock/softclock was called. Further, the context switch code in
    551   1.1    chopps  * locore has been changed to turn the profile clock on/off when switching
    552   1.1    chopps  * into/out of a process that is profiling (startprofclock/stopprofclock).
    553   1.1    chopps  * This reduces the impact of the profiling clock on other users, and might
    554  1.37   aymeric  * possibly increase the accuracy of the profiling.
    555   1.1    chopps  */
    556   1.1    chopps int  profint   = PRF_INTERVAL;	/* Clock ticks between interrupts */
    557   1.1    chopps int  profscale = 0;		/* Scale factor from sys clock to prof clock */
    558   1.1    chopps char profon    = 0;		/* Is profiling clock on? */
    559   1.1    chopps 
    560   1.1    chopps /* profon values - do not change, locore.s assumes these values */
    561   1.1    chopps #define PRF_NONE	0x00
    562   1.1    chopps #define	PRF_USER	0x01
    563   1.1    chopps #define	PRF_KERNEL	0x80
    564   1.1    chopps 
    565  1.37   aymeric void
    566  1.37   aymeric initprofclock(void)
    567   1.1    chopps {
    568   1.1    chopps #if NCLOCK > 0
    569   1.1    chopps 	struct proc *p = curproc;		/* XXX */
    570   1.1    chopps 
    571   1.1    chopps 	/*
    572   1.1    chopps 	 * If the high-res timer is running, force profiling off.
    573   1.1    chopps 	 * Unfortunately, this gets reflected back to the user not as
    574   1.1    chopps 	 * an error but as a lack of results.
    575   1.1    chopps 	 */
    576   1.1    chopps 	if (clockon) {
    577   1.1    chopps 		p->p_stats->p_prof.pr_scale = 0;
    578   1.1    chopps 		return;
    579   1.1    chopps 	}
    580   1.1    chopps 	/*
    581   1.1    chopps 	 * Keep track of the number of user processes that are profiling
    582   1.1    chopps 	 * by checking the scale value.
    583   1.1    chopps 	 *
    584   1.1    chopps 	 * XXX: this all assumes that the profiling code is well behaved;
    585   1.1    chopps 	 * i.e. profil() is called once per process with pcscale non-zero
    586   1.1    chopps 	 * to turn it on, and once with pcscale zero to turn it off.
    587   1.1    chopps 	 * Also assumes you don't do any forks or execs.  Oh well, there
    588   1.1    chopps 	 * is always adb...
    589   1.1    chopps 	 */
    590   1.1    chopps 	if (p->p_stats->p_prof.pr_scale)
    591   1.1    chopps 		profprocs++;
    592   1.1    chopps 	else
    593   1.1    chopps 		profprocs--;
    594   1.1    chopps #endif
    595   1.1    chopps 	/*
    596   1.1    chopps 	 * The profile interrupt interval must be an even divisor
    597  1.47    mhitch 	 * of the amiga_clk_interval so that scaling from a system clock
    598   1.1    chopps 	 * tick to a profile clock tick is possible using integer math.
    599   1.1    chopps 	 */
    600  1.47    mhitch 	if (profint > amiga_clk_interval || (amiga_clk_interval % profint) != 0)
    601  1.47    mhitch 		profint = amiga_clk_interval;
    602  1.47    mhitch 	profscale = amiga_clk_interval / profint;
    603   1.1    chopps }
    604   1.1    chopps 
    605  1.37   aymeric void
    606  1.37   aymeric startprofclock(void)
    607   1.1    chopps {
    608   1.1    chopps   unsigned short interval;
    609   1.1    chopps 
    610   1.1    chopps   /* stop timer B */
    611  1.14        is   clockcia->crb = clockcia->crb & 0xc0;
    612   1.1    chopps 
    613   1.1    chopps   /* load interval into registers.
    614   1.1    chopps      the clocks run at NTSC: 715.909kHz or PAL: 709.379kHz */
    615   1.1    chopps 
    616   1.1    chopps   interval = profint - 1;
    617   1.1    chopps 
    618   1.1    chopps   /* order of setting is important ! */
    619  1.14        is   clockcia->tblo = interval & 0xff;
    620  1.14        is   clockcia->tbhi = interval >> 8;
    621   1.1    chopps 
    622   1.1    chopps   /* enable interrupts for timer B */
    623  1.14        is   clockcia->icr = (1<<7) | (1<<1);
    624   1.1    chopps 
    625   1.1    chopps   /* start timer B in continuous shot mode */
    626  1.14        is   clockcia->crb = (clockcia->crb & 0xc0) | 1;
    627   1.1    chopps }
    628   1.1    chopps 
    629  1.37   aymeric void
    630  1.37   aymeric stopprofclock(void)
    631   1.1    chopps {
    632   1.1    chopps   /* stop timer B */
    633  1.14        is   clockcia->crb = clockcia->crb & 0xc0;
    634   1.1    chopps }
    635   1.1    chopps 
    636   1.1    chopps #ifdef PROF
    637   1.1    chopps /*
    638   1.1    chopps  * profclock() is expanded in line in lev6intr() unless profiling kernel.
    639   1.1    chopps  * Assumes it is called with clock interrupts blocked.
    640   1.1    chopps  */
    641  1.37   aymeric void
    642  1.46  christos profclock(void *pc, int ps)
    643   1.1    chopps {
    644   1.1    chopps 	/*
    645   1.1    chopps 	 * Came from user mode.
    646   1.1    chopps 	 * If this process is being profiled record the tick.
    647   1.1    chopps 	 */
    648   1.1    chopps 	if (USERMODE(ps)) {
    649   1.1    chopps 		if (p->p_stats.p_prof.pr_scale)
    650   1.1    chopps 			addupc(pc, &curproc->p_stats.p_prof, 1);
    651   1.1    chopps 	}
    652   1.1    chopps 	/*
    653   1.1    chopps 	 * Came from kernel (supervisor) mode.
    654   1.1    chopps 	 * If we are profiling the kernel, record the tick.
    655   1.1    chopps 	 */
    656   1.1    chopps 	else if (profiling < 2) {
    657   1.1    chopps 		register int s = pc - s_lowpc;
    658   1.1    chopps 
    659   1.1    chopps 		if (s < s_textsize)
    660   1.1    chopps 			kcount[s / (HISTFRACTION * sizeof (*kcount))]++;
    661   1.1    chopps 	}
    662   1.1    chopps 	/*
    663   1.1    chopps 	 * Kernel profiling was on but has been disabled.
    664   1.1    chopps 	 * Mark as no longer profiling kernel and if all profiling done,
    665   1.1    chopps 	 * disable the clock.
    666   1.1    chopps 	 */
    667   1.1    chopps 	if (profiling && (profon & PRF_KERNEL)) {
    668   1.1    chopps 		profon &= ~PRF_KERNEL;
    669   1.1    chopps 		if (profon == PRF_NONE)
    670   1.1    chopps 			stopprofclock();
    671   1.1    chopps 	}
    672   1.1    chopps }
    673   1.1    chopps #endif
    674   1.1    chopps #endif
    675