2 * Miscellaneous Mac68K-specific stuff
5 #include <linux/types.h>
6 #include <linux/errno.h>
7 #include <linux/miscdevice.h>
8 #include <linux/kernel.h>
9 #include <linux/delay.h>
10 #include <linux/sched.h>
11 #include <linux/time.h>
12 #include <linux/rtc.h>
15 #include <linux/adb.h>
16 #include <linux/cuda.h>
17 #include <linux/pmu.h>
19 #include <asm/uaccess.h>
22 #include <asm/system.h>
23 #include <asm/segment.h>
24 #include <asm/setup.h>
25 #include <asm/macintosh.h>
26 #include <asm/mac_via.h>
27 #include <asm/mac_oss.h>
29 #define BOOTINFO_COMPAT_1_0
30 #include <asm/bootinfo.h>
31 #include <asm/machdep.h>
33 /* Offset between Unix time (1970-based) and Mac time (1904-based) */
35 #define RTC_OFFSET 2082844800
37 static void (*rom_reset
)(void);
39 #ifdef CONFIG_ADB_CUDA
40 static long cuda_read_time(void)
42 struct adb_request req
;
45 if (cuda_request(&req
, NULL
, 2, CUDA_PACKET
, CUDA_GET_TIME
) < 0)
50 time
= (req
.reply
[3] << 24) | (req
.reply
[4] << 16)
51 | (req
.reply
[5] << 8) | req
.reply
[6];
52 return time
- RTC_OFFSET
;
55 static void cuda_write_time(long data
)
57 struct adb_request req
;
59 if (cuda_request(&req
, NULL
, 6, CUDA_PACKET
, CUDA_SET_TIME
,
60 (data
>> 24) & 0xFF, (data
>> 16) & 0xFF,
61 (data
>> 8) & 0xFF, data
& 0xFF) < 0)
67 static __u8
cuda_read_pram(int offset
)
69 struct adb_request req
;
70 if (cuda_request(&req
, NULL
, 4, CUDA_PACKET
, CUDA_GET_PRAM
,
71 (offset
>> 8) & 0xFF, offset
& 0xFF) < 0)
78 static void cuda_write_pram(int offset
, __u8 data
)
80 struct adb_request req
;
81 if (cuda_request(&req
, NULL
, 5, CUDA_PACKET
, CUDA_SET_PRAM
,
82 (offset
>> 8) & 0xFF, offset
& 0xFF, data
) < 0)
88 #define cuda_read_time() 0
89 #define cuda_write_time(n)
90 #define cuda_read_pram NULL
91 #define cuda_write_pram NULL
94 #ifdef CONFIG_ADB_PMU68K
95 static long pmu_read_time(void)
97 struct adb_request req
;
100 if (pmu_request(&req
, NULL
, 1, PMU_READ_RTC
) < 0)
102 while (!req
.complete
)
105 time
= (req
.reply
[1] << 24) | (req
.reply
[2] << 16)
106 | (req
.reply
[3] << 8) | req
.reply
[4];
107 return time
- RTC_OFFSET
;
110 static void pmu_write_time(long data
)
112 struct adb_request req
;
114 if (pmu_request(&req
, NULL
, 5, PMU_SET_RTC
,
115 (data
>> 24) & 0xFF, (data
>> 16) & 0xFF,
116 (data
>> 8) & 0xFF, data
& 0xFF) < 0)
118 while (!req
.complete
)
122 static __u8
pmu_read_pram(int offset
)
124 struct adb_request req
;
125 if (pmu_request(&req
, NULL
, 3, PMU_READ_NVRAM
,
126 (offset
>> 8) & 0xFF, offset
& 0xFF) < 0)
128 while (!req
.complete
)
133 static void pmu_write_pram(int offset
, __u8 data
)
135 struct adb_request req
;
136 if (pmu_request(&req
, NULL
, 4, PMU_WRITE_NVRAM
,
137 (offset
>> 8) & 0xFF, offset
& 0xFF, data
) < 0)
139 while (!req
.complete
)
143 #define pmu_read_time() 0
144 #define pmu_write_time(n)
145 #define pmu_read_pram NULL
146 #define pmu_write_pram NULL
149 #if 0 /* def CONFIG_ADB_MACIISI */
150 extern int maciisi_request(struct adb_request
*req
,
151 void (*done
)(struct adb_request
*), int nbytes
, ...);
153 static long maciisi_read_time(void)
155 struct adb_request req
;
158 if (maciisi_request(&req
, NULL
, 2, CUDA_PACKET
, CUDA_GET_TIME
))
161 time
= (req
.reply
[3] << 24) | (req
.reply
[4] << 16)
162 | (req
.reply
[5] << 8) | req
.reply
[6];
163 return time
- RTC_OFFSET
;
166 static void maciisi_write_time(long data
)
168 struct adb_request req
;
170 maciisi_request(&req
, NULL
, 6, CUDA_PACKET
, CUDA_SET_TIME
,
171 (data
>> 24) & 0xFF, (data
>> 16) & 0xFF,
172 (data
>> 8) & 0xFF, data
& 0xFF);
175 static __u8
maciisi_read_pram(int offset
)
177 struct adb_request req
;
178 if (maciisi_request(&req
, NULL
, 4, CUDA_PACKET
, CUDA_GET_PRAM
,
179 (offset
>> 8) & 0xFF, offset
& 0xFF))
184 static void maciisi_write_pram(int offset
, __u8 data
)
186 struct adb_request req
;
187 maciisi_request(&req
, NULL
, 5, CUDA_PACKET
, CUDA_SET_PRAM
,
188 (offset
>> 8) & 0xFF, offset
& 0xFF, data
);
191 #define maciisi_read_time() 0
192 #define maciisi_write_time(n)
193 #define maciisi_read_pram NULL
194 #define maciisi_write_pram NULL
198 * VIA PRAM/RTC access routines
200 * Must be called with interrupts disabled and
201 * the RTC should be enabled.
204 static __u8
via_pram_readbyte(void)
209 reg
= via1
[vBufB
] & ~VIA1B_vRTCClk
;
211 /* Set the RTC data line to be an input. */
213 via1
[vDirB
] &= ~VIA1B_vRTCData
;
215 /* The bits of the byte come out in MSB order */
218 for (i
= 0 ; i
< 8 ; i
++) {
220 via1
[vBufB
] = reg
| VIA1B_vRTCClk
;
221 data
= (data
<< 1) | (via1
[vBufB
] & VIA1B_vRTCData
);
224 /* Return RTC data line to output state */
226 via1
[vDirB
] |= VIA1B_vRTCData
;
231 static void via_pram_writebyte(__u8 data
)
235 reg
= via1
[vBufB
] & ~(VIA1B_vRTCClk
| VIA1B_vRTCData
);
237 /* The bits of the byte go in in MSB order */
239 for (i
= 0 ; i
< 8 ; i
++) {
240 bit
= data
& 0x80? 1 : 0;
242 via1
[vBufB
] = reg
| bit
;
243 via1
[vBufB
] = reg
| bit
| VIA1B_vRTCClk
;
248 * Execute a VIA PRAM/RTC command. For read commands
249 * data should point to a one-byte buffer for the
250 * resulting data. For write commands it should point
251 * to the data byte to for the command.
253 * This function disables all interrupts while running.
256 static void via_pram_command(int command
, __u8
*data
)
261 local_irq_save(flags
);
263 /* Enable the RTC and make sure the strobe line is high */
265 via1
[vBufB
] = (via1
[vBufB
] | VIA1B_vRTCClk
) & ~VIA1B_vRTCEnb
;
267 if (command
& 0xFF00) { /* extended (two-byte) command */
268 via_pram_writebyte((command
& 0xFF00) >> 8);
269 via_pram_writebyte(command
& 0xFF);
270 is_read
= command
& 0x8000;
271 } else { /* one-byte command */
272 via_pram_writebyte(command
);
273 is_read
= command
& 0x80;
276 *data
= via_pram_readbyte();
278 via_pram_writebyte(*data
);
281 /* All done, disable the RTC */
283 via1
[vBufB
] |= VIA1B_vRTCEnb
;
285 local_irq_restore(flags
);
288 static __u8
via_read_pram(int offset
)
293 static void via_write_pram(int offset
, __u8 data
)
298 * Return the current time in seconds since January 1, 1904.
300 * This only works on machines with the VIA-based PRAM/RTC, which
301 * is basically any machine with Mac II-style ADB.
304 static long via_read_time(void)
309 } result
, last_result
;
312 via_pram_command(0x81, &last_result
.cdata
[3]);
313 via_pram_command(0x85, &last_result
.cdata
[2]);
314 via_pram_command(0x89, &last_result
.cdata
[1]);
315 via_pram_command(0x8D, &last_result
.cdata
[0]);
318 * The NetBSD guys say to loop until you get the same reading
323 via_pram_command(0x81, &result
.cdata
[3]);
324 via_pram_command(0x85, &result
.cdata
[2]);
325 via_pram_command(0x89, &result
.cdata
[1]);
326 via_pram_command(0x8D, &result
.cdata
[0]);
328 if (result
.idata
== last_result
.idata
)
329 return result
.idata
- RTC_OFFSET
;
334 last_result
.idata
= result
.idata
;
337 pr_err("via_read_time: failed to read a stable value; "
338 "got 0x%08lx then 0x%08lx\n",
339 last_result
.idata
, result
.idata
);
345 * Set the current time to a number of seconds since January 1, 1904.
347 * This only works on machines with the VIA-based PRAM/RTC, which
348 * is basically any machine with Mac II-style ADB.
351 static void via_write_time(long time
)
359 /* Clear the write protect bit */
362 via_pram_command(0x35, &temp
);
364 data
.idata
= time
+ RTC_OFFSET
;
365 via_pram_command(0x01, &data
.cdata
[3]);
366 via_pram_command(0x05, &data
.cdata
[2]);
367 via_pram_command(0x09, &data
.cdata
[1]);
368 via_pram_command(0x0D, &data
.cdata
[0]);
370 /* Set the write protect bit */
373 via_pram_command(0x35, &temp
);
376 static void via_shutdown(void)
379 via2
[rBufB
] &= ~0x04;
381 /* Direction of vDirB is output */
383 /* Send a value of 0 on that line */
384 via2
[vBufB
] &= ~0x04;
390 * FIXME: not sure how this is supposed to work exactly...
393 static void oss_shutdown(void)
395 oss
->rom_ctrl
= OSS_POWEROFF
;
398 #ifdef CONFIG_ADB_CUDA
400 static void cuda_restart(void)
402 struct adb_request req
;
403 if (cuda_request(&req
, NULL
, 2, CUDA_PACKET
, CUDA_RESET_SYSTEM
) < 0)
405 while (!req
.complete
)
409 static void cuda_shutdown(void)
411 struct adb_request req
;
412 if (cuda_request(&req
, NULL
, 2, CUDA_PACKET
, CUDA_POWERDOWN
) < 0)
414 while (!req
.complete
)
418 #endif /* CONFIG_ADB_CUDA */
420 #ifdef CONFIG_ADB_PMU68K
422 void pmu_restart(void)
424 struct adb_request req
;
425 if (pmu_request(&req
, NULL
,
426 2, PMU_SET_INTR_MASK
, PMU_INT_ADB
|PMU_INT_TICK
) < 0)
428 while (!req
.complete
)
430 if (pmu_request(&req
, NULL
, 1, PMU_RESET
) < 0)
432 while (!req
.complete
)
436 void pmu_shutdown(void)
438 struct adb_request req
;
439 if (pmu_request(&req
, NULL
,
440 2, PMU_SET_INTR_MASK
, PMU_INT_ADB
|PMU_INT_TICK
) < 0)
442 while (!req
.complete
)
444 if (pmu_request(&req
, NULL
, 5, PMU_SHUTDOWN
, 'M', 'A', 'T', 'T') < 0)
446 while (!req
.complete
)
453 *-------------------------------------------------------------------
454 * Below this point are the generic routines; they'll dispatch to the
455 * correct routine for the hardware on which we're running.
456 *-------------------------------------------------------------------
459 void mac_pram_read(int offset
, __u8
*buffer
, int len
)
464 switch(macintosh_config
->adb_type
) {
466 func
= maciisi_read_pram
; break;
469 func
= pmu_read_pram
; break;
471 func
= cuda_read_pram
; break;
473 func
= via_read_pram
;
477 for (i
= 0 ; i
< len
; i
++) {
478 buffer
[i
] = (*func
)(offset
++);
482 void mac_pram_write(int offset
, __u8
*buffer
, int len
)
484 void (*func
)(int, __u8
);
487 switch(macintosh_config
->adb_type
) {
489 func
= maciisi_write_pram
; break;
492 func
= pmu_write_pram
; break;
494 func
= cuda_write_pram
; break;
496 func
= via_write_pram
;
500 for (i
= 0 ; i
< len
; i
++) {
501 (*func
)(offset
++, buffer
[i
]);
505 void mac_poweroff(void)
508 * MAC_ADB_IISI may need to be moved up here if it doesn't actually
509 * work using the ADB packet method. --David Kilzer
514 } else if (macintosh_config
->adb_type
== MAC_ADB_II
) {
516 #ifdef CONFIG_ADB_CUDA
517 } else if (macintosh_config
->adb_type
== MAC_ADB_CUDA
) {
520 #ifdef CONFIG_ADB_PMU68K
521 } else if (macintosh_config
->adb_type
== MAC_ADB_PB1
522 || macintosh_config
->adb_type
== MAC_ADB_PB2
) {
527 printk("It is now safe to turn off your Macintosh.\n");
533 if (macintosh_config
->adb_type
== MAC_ADB_II
) {
536 /* need ROMBASE in booter */
537 /* indeed, plus need to MAP THE ROM !! */
539 if (mac_bi_data
.rombase
== 0)
540 mac_bi_data
.rombase
= 0x40800000;
543 rom_reset
= (void *) (mac_bi_data
.rombase
+ 0xa);
545 if (macintosh_config
->ident
== MAC_MODEL_SE30
) {
547 * MSch: Machines known to crash on ROM reset ...
550 local_irq_save(flags
);
554 local_irq_restore(flags
);
556 #ifdef CONFIG_ADB_CUDA
557 } else if (macintosh_config
->adb_type
== MAC_ADB_CUDA
) {
560 #ifdef CONFIG_ADB_PMU68K
561 } else if (macintosh_config
->adb_type
== MAC_ADB_PB1
562 || macintosh_config
->adb_type
== MAC_ADB_PB2
) {
565 } else if (CPU_IS_030
) {
567 /* 030-specific reset routine. The idea is general, but the
568 * specific registers to reset are '030-specific. Until I
569 * have a non-030 machine, I can't test anything else.
570 * -- C. Scott Ananian <cananian@alumni.princeton.edu>
573 unsigned long rombase
= 0x40000000;
575 /* make a 1-to-1 mapping, using the transparent tran. reg. */
576 unsigned long virt
= (unsigned long) mac_reset
;
577 unsigned long phys
= virt_to_phys(mac_reset
);
578 unsigned long addr
= (phys
&0xFF000000)|0x8777;
579 unsigned long offset
= phys
-virt
;
580 local_irq_disable(); /* lets not screw this up, ok? */
581 __asm__
__volatile__(".chip 68030\n\t"
585 /* Now jump to physical address so we can disable MMU */
586 __asm__
__volatile__(
588 "lea %/pc@(1f),%/a0\n\t"
589 "addl %0,%/a0\n\t"/* fixup target address and stack ptr */
592 "jmp %/a0@\n\t" /* jump into physical memory */
593 "0:.long 0\n\t" /* a constant zero. */
594 /* OK. Now reset everything and jump to reset vector. */
596 "lea %/pc@(0b),%/a0\n\t"
597 "pmove %/a0@, %/tc\n\t" /* disable mmu */
598 "pmove %/a0@, %/tt0\n\t" /* disable tt0 */
599 "pmove %/a0@, %/tt1\n\t" /* disable tt1 */
601 "movec %/a0, %/vbr\n\t" /* clear vector base register */
602 "movec %/a0, %/cacr\n\t" /* disable caches */
603 "movel #0x0808,%/a0\n\t"
604 "movec %/a0, %/cacr\n\t" /* flush i&d caches */
605 "movew #0x2700,%/sr\n\t" /* set up status register */
606 "movel %1@(0x0),%/a0\n\t"/* load interrupt stack pointer */
607 "movec %/a0, %/isp\n\t"
608 "movel %1@(0x4),%/a0\n\t" /* load reset vector */
609 "reset\n\t" /* reset external devices */
610 "jmp %/a0@\n\t" /* jump to the reset vector */
612 : : "r" (offset
), "a" (rombase
) : "a0");
615 /* should never get here */
617 printk ("Restart failed. Please restart manually.\n");
622 * This function translates seconds since 1970 into a proper date.
624 * Algorithm cribbed from glibc2.1, __offtime().
626 #define SECS_PER_MINUTE (60)
627 #define SECS_PER_HOUR (SECS_PER_MINUTE * 60)
628 #define SECS_PER_DAY (SECS_PER_HOUR * 24)
630 static void unmktime(unsigned long time
, long offset
,
631 int *yearp
, int *monp
, int *dayp
,
632 int *hourp
, int *minp
, int *secp
)
634 /* How many days come before each month (0-12). */
635 static const unsigned short int __mon_yday
[2][13] =
638 { 0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334, 365 },
640 { 0, 31, 60, 91, 121, 152, 182, 213, 244, 274, 305, 335, 366 }
642 long int days
, rem
, y
, wday
, yday
;
643 const unsigned short int *ip
;
645 days
= time
/ SECS_PER_DAY
;
646 rem
= time
% SECS_PER_DAY
;
652 while (rem
>= SECS_PER_DAY
) {
656 *hourp
= rem
/ SECS_PER_HOUR
;
657 rem
%= SECS_PER_HOUR
;
658 *minp
= rem
/ SECS_PER_MINUTE
;
659 *secp
= rem
% SECS_PER_MINUTE
;
660 /* January 1, 1970 was a Thursday. */
661 wday
= (4 + days
) % 7; /* Day in the week. Not currently used */
662 if (wday
< 0) wday
+= 7;
665 #define DIV(a, b) ((a) / (b) - ((a) % (b) < 0))
666 #define LEAPS_THRU_END_OF(y) (DIV (y, 4) - DIV (y, 100) + DIV (y, 400))
667 #define __isleap(year) \
668 ((year) % 4 == 0 && ((year) % 100 != 0 || (year) % 400 == 0))
670 while (days
< 0 || days
>= (__isleap (y
) ? 366 : 365))
672 /* Guess a corrected year, assuming 365 days per year. */
673 long int yg
= y
+ days
/ 365 - (days
% 365 < 0);
675 /* Adjust DAYS and Y to match the guessed year. */
676 days
-= ((yg
- y
) * 365
677 + LEAPS_THRU_END_OF (yg
- 1)
678 - LEAPS_THRU_END_OF (y
- 1));
682 yday
= days
; /* day in the year. Not currently used. */
683 ip
= __mon_yday
[__isleap(y
)];
684 for (y
= 11; days
< (long int) ip
[y
]; --y
)
688 *dayp
= days
+ 1; /* day in the month */
693 * Read/write the hardware clock.
696 int mac_hwclk(int op
, struct rtc_time
*t
)
700 if (!op
) { /* read */
701 switch (macintosh_config
->adb_type
) {
704 now
= via_read_time();
707 now
= maciisi_read_time();
711 now
= pmu_read_time();
714 now
= cuda_read_time();
722 &t
->tm_year
, &t
->tm_mon
, &t
->tm_mday
,
723 &t
->tm_hour
, &t
->tm_min
, &t
->tm_sec
);
725 printk("mac_hwclk: read %04d-%02d-%-2d %02d:%02d:%02d\n",
726 t
->tm_year
+ 1900, t
->tm_mon
+ 1, t
->tm_mday
,
727 t
->tm_hour
, t
->tm_min
, t
->tm_sec
);
731 printk("mac_hwclk: tried to write %04d-%02d-%-2d %02d:%02d:%02d\n",
732 t
->tm_year
+ 1900, t
->tm_mon
+ 1, t
->tm_mday
,
733 t
->tm_hour
, t
->tm_min
, t
->tm_sec
);
736 now
= mktime(t
->tm_year
+ 1900, t
->tm_mon
+ 1, t
->tm_mday
,
737 t
->tm_hour
, t
->tm_min
, t
->tm_sec
);
739 switch (macintosh_config
->adb_type
) {
745 cuda_write_time(now
);
752 maciisi_write_time(now
);
759 * Set minutes/seconds in the hardware clock
762 int mac_set_clock_mmss (unsigned long nowtime
)
767 now
.tm_sec
= nowtime
% 60;
768 now
.tm_min
= (nowtime
/ 60) % 60;