1 /*
2  * Miscellaneous Mac68K-specific stuff
3  */
4 
5 #include <linux/config.h>
6 #include <linux/types.h>
7 #include <linux/errno.h>
8 #include <linux/miscdevice.h>
9 #include <linux/kernel.h>
10 #include <linux/delay.h>
11 #include <linux/sched.h>
12 #include <linux/slab.h>
13 #include <linux/time.h>
14 #include <linux/rtc.h>
15 #include <linux/mm.h>
16 
17 #include <linux/adb.h>
18 #include <linux/cuda.h>
19 #include <linux/pmu.h>
20 
21 #include <asm/uaccess.h>
22 #include <asm/io.h>
23 #include <asm/rtc.h>
24 #include <asm/system.h>
25 #include <asm/segment.h>
26 #include <asm/setup.h>
27 #include <asm/macintosh.h>
28 #include <asm/mac_via.h>
29 #include <asm/mac_oss.h>
30 
31 #define BOOTINFO_COMPAT_1_0
32 #include <asm/bootinfo.h>
33 #include <asm/machdep.h>
34 
35 /* Offset between Unix time (1970-based) and Mac time (1904-based) */
36 
37 #define RTC_OFFSET 2082844800
38 
39 extern struct mac_booter_data mac_bi_data;
40 static void (*rom_reset)(void);
41 
42 #ifdef CONFIG_ADB
43 /*
44  * Return the current time as the number of seconds since January 1, 1904.
45  */
46 
adb_read_time(void)47 static long adb_read_time(void)
48 {
49 	volatile struct adb_request req;
50 	long time;
51 
52 	adb_request((struct adb_request *) &req, NULL,
53 			ADBREQ_RAW|ADBREQ_SYNC,
54 			2, CUDA_PACKET, CUDA_GET_TIME);
55 
56 	time = (req.reply[3] << 24) | (req.reply[4] << 16)
57 		| (req.reply[5] << 8) | req.reply[6];
58 	return time - RTC_OFFSET;
59 }
60 
61 /*
62  * Set the current system time
63  */
64 
adb_write_time(long data)65 static void adb_write_time(long data)
66 {
67 	volatile struct adb_request req;
68 
69 	data += RTC_OFFSET;
70 
71 	adb_request((struct adb_request *) &req, NULL,
72 			ADBREQ_RAW|ADBREQ_SYNC,
73 			6, CUDA_PACKET, CUDA_SET_TIME,
74 			(data >> 24) & 0xFF, (data >> 16) & 0xFF,
75 			(data >> 8) & 0xFF, data & 0xFF);
76 }
77 
78 /*
79  * Get a byte from the NVRAM
80  */
81 
adb_read_pram(int offset)82 static __u8 adb_read_pram(int offset)
83 {
84 	volatile struct adb_request req;
85 
86 	adb_request((struct adb_request *) &req, NULL,
87 			ADBREQ_RAW|ADBREQ_SYNC,
88 			4, CUDA_PACKET, CUDA_GET_PRAM,
89 			(offset >> 8) & 0xFF, offset & 0xFF);
90 	return req.reply[3];
91 }
92 
93 /*
94  * Write a byte to the NVRAM
95  */
96 
adb_write_pram(int offset,__u8 data)97 static void adb_write_pram(int offset, __u8 data)
98 {
99 	volatile struct adb_request req;
100 
101 	adb_request((struct adb_request *) &req, NULL,
102 			ADBREQ_RAW|ADBREQ_SYNC,
103 			5, CUDA_PACKET, CUDA_SET_PRAM,
104 			(offset >> 8) & 0xFF, offset & 0xFF,
105 			data);
106 }
107 #endif /* CONFIG_ADB */
108 
109 /*
110  * VIA PRAM/RTC access routines
111  *
112  * Must be called with interrupts disabled and
113  * the RTC should be enabled.
114  */
115 
via_pram_readbyte(void)116 static __u8 via_pram_readbyte(void)
117 {
118 	int	i,reg;
119 	__u8	data;
120 
121 	reg = via1[vBufB] & ~VIA1B_vRTCClk;
122 
123 	/* Set the RTC data line to be an input. */
124 
125 	via1[vDirB] &= ~VIA1B_vRTCData;
126 
127 	/* The bits of the byte come out in MSB order */
128 
129 	data = 0;
130 	for (i = 0 ; i < 8 ; i++) {
131 		via1[vBufB] = reg;
132 		via1[vBufB] = reg | VIA1B_vRTCClk;
133 		data = (data << 1) | (via1[vBufB] & VIA1B_vRTCData);
134 	}
135 
136 	/* Return RTC data line to output state */
137 
138 	via1[vDirB] |= VIA1B_vRTCData;
139 
140 	return data;
141 }
142 
via_pram_writebyte(__u8 data)143 static void via_pram_writebyte(__u8 data)
144 {
145 	int	i,reg,bit;
146 
147 	reg = via1[vBufB] & ~(VIA1B_vRTCClk | VIA1B_vRTCData);
148 
149 	/* The bits of the byte go in in MSB order */
150 
151 	for (i = 0 ; i < 8 ; i++) {
152 		bit = data & 0x80? 1 : 0;
153 		data <<= 1;
154 		via1[vBufB] = reg | bit;
155 		via1[vBufB] = reg | bit | VIA1B_vRTCClk;
156 	}
157 }
158 
159 /*
160  * Execute a VIA PRAM/RTC command. For read commands
161  * data should point to a one-byte buffer for the
162  * resulting data. For write commands it should point
163  * to the data byte to for the command.
164  *
165  * This function disables all interrupts while running.
166  */
167 
via_pram_command(int command,__u8 * data)168 static void via_pram_command(int command, __u8 *data)
169 {
170 	unsigned long cpu_flags;
171 	int	is_read;
172 
173 	save_flags(cpu_flags);
174 	cli();
175 
176 	/* Enable the RTC and make sure the strobe line is high */
177 
178 	via1[vBufB] = (via1[vBufB] | VIA1B_vRTCClk) & ~VIA1B_vRTCEnb;
179 
180 	if (command & 0xFF00) {		/* extended (two-byte) command */
181 		via_pram_writebyte((command & 0xFF00) >> 8);
182 		via_pram_writebyte(command & 0xFF);
183 		is_read = command & 0x8000;
184 	} else {			/* one-byte command */
185 		via_pram_writebyte(command);
186 		is_read = command & 0x80;
187 	}
188 	if (is_read) {
189 		*data = via_pram_readbyte();
190 	} else {
191 		via_pram_writebyte(*data);
192 	}
193 
194 	/* All done, disable the RTC */
195 
196 	via1[vBufB] |= VIA1B_vRTCEnb;
197 
198 	restore_flags(cpu_flags);
199 }
200 
via_read_pram(int offset)201 static __u8 via_read_pram(int offset)
202 {
203 	return 0;
204 }
205 
via_write_pram(int offset,__u8 data)206 static void via_write_pram(int offset, __u8 data)
207 {
208 }
209 
210 /*
211  * Return the current time in seconds since January 1, 1904.
212  *
213  * This only works on machines with the VIA-based PRAM/RTC, which
214  * is basically any machine with Mac II-style ADB.
215  */
216 
via_read_time(void)217 static long via_read_time(void)
218 {
219 	union {
220 		__u8  cdata[4];
221 		long  idata;
222 	} result, last_result;
223 	int	ct;
224 
225 	/*
226 	 * The NetBSD guys say to loop until you get the same reading
227 	 * twice in a row.
228 	 */
229 
230 	ct = 0;
231 	do {
232 		if (++ct > 10) {
233 			printk("via_read_time: couldn't get valid time, "
234 			       "last read = 0x%08lx and 0x%08lx\n",
235 			       last_result.idata, result.idata);
236 			break;
237 		}
238 
239 		last_result.idata = result.idata;
240 		result.idata = 0;
241 
242 		via_pram_command(0x81, &result.cdata[3]);
243 		via_pram_command(0x85, &result.cdata[2]);
244 		via_pram_command(0x89, &result.cdata[1]);
245 		via_pram_command(0x8D, &result.cdata[0]);
246 	} while (result.idata != last_result.idata);
247 
248 	return result.idata - RTC_OFFSET;
249 }
250 
251 /*
252  * Set the current time to a number of seconds since January 1, 1904.
253  *
254  * This only works on machines with the VIA-based PRAM/RTC, which
255  * is basically any machine with Mac II-style ADB.
256  */
257 
via_write_time(long time)258 static void via_write_time(long time)
259 {
260 	union {
261 		__u8  cdata[4];
262 		long  idata;
263 	} data;
264 	__u8	temp;
265 
266 	/* Clear the write protect bit */
267 
268 	temp = 0x55;
269 	via_pram_command(0x35, &temp);
270 
271 	data.idata = time + RTC_OFFSET;
272 	via_pram_command(0x01, &data.cdata[3]);
273 	via_pram_command(0x05, &data.cdata[2]);
274 	via_pram_command(0x09, &data.cdata[1]);
275 	via_pram_command(0x0D, &data.cdata[0]);
276 
277 	/* Set the write protect bit */
278 
279 	temp = 0xD5;
280 	via_pram_command(0x35, &temp);
281 }
282 
via_shutdown(void)283 static void via_shutdown(void)
284 {
285 	if (rbv_present) {
286 		via2[rBufB] &= ~0x04;
287 	} else {
288 		/* Direction of vDirB is output */
289 		via2[vDirB] |= 0x04;
290 		/* Send a value of 0 on that line */
291 		via2[vBufB] &= ~0x04;
292 		mdelay(1000);
293 	}
294 }
295 
296 /*
297  * FIXME: not sure how this is supposed to work exactly...
298  */
299 
oss_shutdown(void)300 static void oss_shutdown(void)
301 {
302 	oss->rom_ctrl = OSS_POWEROFF;
303 }
304 
305 #ifdef CONFIG_ADB_CUDA
306 
cuda_restart(void)307 static void cuda_restart(void)
308 {
309 	adb_request(NULL, NULL, ADBREQ_RAW|ADBREQ_SYNC,
310 			2, CUDA_PACKET, CUDA_RESET_SYSTEM);
311 }
312 
cuda_shutdown(void)313 static void cuda_shutdown(void)
314 {
315 	adb_request(NULL, NULL, ADBREQ_RAW|ADBREQ_SYNC,
316 			2, CUDA_PACKET, CUDA_POWERDOWN);
317 }
318 
319 #endif /* CONFIG_ADB_CUDA */
320 
321 #ifdef CONFIG_ADB_PMU
322 
pmu_restart(void)323 void pmu_restart(void)
324 {
325 	adb_request(NULL, NULL, ADBREQ_RAW|ADBREQ_SYNC,
326 			3, PMU_PACKET, PMU_SET_INTR_MASK,
327 			PMU_INT_ADB|PMU_INT_TICK);
328 
329 	adb_request(NULL, NULL, ADBREQ_RAW|ADBREQ_SYNC,
330 			2, PMU_PACKET, PMU_RESET);
331 }
332 
pmu_shutdown(void)333 void pmu_shutdown(void)
334 {
335 	adb_request(NULL, NULL, ADBREQ_RAW|ADBREQ_SYNC,
336 			3, PMU_PACKET, PMU_SET_INTR_MASK,
337 			PMU_INT_ADB|PMU_INT_TICK);
338 
339 	adb_request(NULL, NULL, ADBREQ_RAW|ADBREQ_SYNC,
340 			6, PMU_PACKET, PMU_SHUTDOWN,
341 			'M', 'A', 'T', 'T');
342 }
343 
344 #endif /* CONFIG_ADB_PMU */
345 
346 /*
347  *-------------------------------------------------------------------
348  * Below this point are the generic routines; they'll dispatch to the
349  * correct routine for the hardware on which we're running.
350  *-------------------------------------------------------------------
351  */
352 
mac_pram_read(int offset,__u8 * buffer,int len)353 void mac_pram_read(int offset, __u8 *buffer, int len)
354 {
355 	__u8 (*func)(int) = NULL;
356 	int i;
357 
358 	if (macintosh_config->adb_type == MAC_ADB_IISI ||
359 	    macintosh_config->adb_type == MAC_ADB_PB1 ||
360 	    macintosh_config->adb_type == MAC_ADB_PB2 ||
361 	    macintosh_config->adb_type == MAC_ADB_CUDA) {
362 #ifdef CONFIG_ADB
363 		func = adb_read_pram;
364 #else
365 		return;
366 #endif
367 	} else {
368 		func = via_read_pram;
369 	}
370 	for (i = 0 ; i < len ; i++) {
371 		buffer[i] = (*func)(offset++);
372 	}
373 }
374 
mac_pram_write(int offset,__u8 * buffer,int len)375 void mac_pram_write(int offset, __u8 *buffer, int len)
376 {
377 	void (*func)(int, __u8) = NULL;
378 	int i;
379 
380 	if (macintosh_config->adb_type == MAC_ADB_IISI ||
381 	    macintosh_config->adb_type == MAC_ADB_PB1 ||
382 	    macintosh_config->adb_type == MAC_ADB_PB2 ||
383 	    macintosh_config->adb_type == MAC_ADB_CUDA) {
384 #ifdef CONFIG_ADB
385 		func = adb_write_pram;
386 #else
387 		return;
388 #endif
389 	} else {
390 		func = via_write_pram;
391 	}
392 	for (i = 0 ; i < len ; i++) {
393 		(*func)(offset++, buffer[i]);
394 	}
395 }
396 
mac_poweroff(void)397 void mac_poweroff(void)
398 {
399 	/*
400 	 * MAC_ADB_IISI may need to be moved up here if it doesn't actually
401 	 * work using the ADB packet method.  --David Kilzer
402 	 */
403 
404 	if (oss_present) {
405 		oss_shutdown();
406 	} else if (macintosh_config->adb_type == MAC_ADB_II) {
407 		via_shutdown();
408 #ifdef CONFIG_ADB_CUDA
409 	} else if (macintosh_config->adb_type == MAC_ADB_CUDA) {
410 		cuda_shutdown();
411 #endif
412 #ifdef CONFIG_ADB_PMU
413 	} else if (macintosh_config->adb_type == MAC_ADB_PB1
414 		|| macintosh_config->adb_type == MAC_ADB_PB2) {
415 		pmu_shutdown();
416 #endif
417 	}
418 	sti();
419 	printk("It is now safe to turn off your Macintosh.\n");
420 	while(1);
421 }
422 
mac_reset(void)423 void mac_reset(void)
424 {
425 	if (macintosh_config->adb_type == MAC_ADB_II) {
426 		unsigned long cpu_flags;
427 
428 		/* need ROMBASE in booter */
429 		/* indeed, plus need to MAP THE ROM !! */
430 
431 		if (mac_bi_data.rombase == 0)
432 			mac_bi_data.rombase = 0x40800000;
433 
434 		/* works on some */
435 		rom_reset = (void *) (mac_bi_data.rombase + 0xa);
436 
437 		if (macintosh_config->ident == MAC_MODEL_SE30) {
438 			/*
439 			 * MSch: Machines known to crash on ROM reset ...
440 			 */
441 		} else {
442 			save_flags(cpu_flags);
443 			cli();
444 
445 			rom_reset();
446 
447 			restore_flags(cpu_flags);
448 		}
449 #ifdef CONFIG_ADB_CUDA
450 	} else if (macintosh_config->adb_type == MAC_ADB_CUDA) {
451 		cuda_restart();
452 #endif
453 #ifdef CONFIG_ADB_PMU
454 	} else if (macintosh_config->adb_type == MAC_ADB_PB1
455 		|| macintosh_config->adb_type == MAC_ADB_PB2) {
456 		pmu_restart();
457 #endif
458 	} else if (CPU_IS_030) {
459 
460 		/* 030-specific reset routine.  The idea is general, but the
461 		 * specific registers to reset are '030-specific.  Until I
462 		 * have a non-030 machine, I can't test anything else.
463 		 *  -- C. Scott Ananian <cananian@alumni.princeton.edu>
464 		 */
465 
466 		unsigned long rombase = 0x40000000;
467 
468 		/* make a 1-to-1 mapping, using the transparent tran. reg. */
469 		unsigned long virt = (unsigned long) mac_reset;
470 		unsigned long phys = virt_to_phys(mac_reset);
471 		unsigned long offset = phys-virt;
472 		cli(); /* lets not screw this up, ok? */
473 		__asm__ __volatile__(".chip 68030\n\t"
474 				     "pmove %0,%/tt0\n\t"
475 				     ".chip 68k"
476 				     : : "m" ((phys&0xFF000000)|0x8777));
477 		/* Now jump to physical address so we can disable MMU */
478 		__asm__ __volatile__(
479                     ".chip 68030\n\t"
480 		    "lea %/pc@(1f),%/a0\n\t"
481 		    "addl %0,%/a0\n\t"/* fixup target address and stack ptr */
482 		    "addl %0,%/sp\n\t"
483 		    "pflusha\n\t"
484 		    "jmp %/a0@\n\t" /* jump into physical memory */
485 		    "0:.long 0\n\t" /* a constant zero. */
486 		    /* OK.  Now reset everything and jump to reset vector. */
487 		    "1:\n\t"
488 		    "lea %/pc@(0b),%/a0\n\t"
489 		    "pmove %/a0@, %/tc\n\t" /* disable mmu */
490 		    "pmove %/a0@, %/tt0\n\t" /* disable tt0 */
491 		    "pmove %/a0@, %/tt1\n\t" /* disable tt1 */
492 		    "movel #0, %/a0\n\t"
493 		    "movec %/a0, %/vbr\n\t" /* clear vector base register */
494 		    "movec %/a0, %/cacr\n\t" /* disable caches */
495 		    "movel #0x0808,%/a0\n\t"
496 		    "movec %/a0, %/cacr\n\t" /* flush i&d caches */
497 		    "movew #0x2700,%/sr\n\t" /* set up status register */
498 		    "movel %1@(0x0),%/a0\n\t"/* load interrupt stack pointer */
499 		    "movec %/a0, %/isp\n\t"
500 		    "movel %1@(0x4),%/a0\n\t" /* load reset vector */
501 		    "reset\n\t" /* reset external devices */
502 		    "jmp %/a0@\n\t" /* jump to the reset vector */
503 		    ".chip 68k"
504 		    : : "r" (offset), "a" (rombase) : "a0");
505 	}
506 
507 	/* should never get here */
508 	sti();
509 	printk ("Restart failed.  Please restart manually.\n");
510 	while(1);
511 }
512 
513 /*
514  * This function translates seconds since 1970 into a proper date.
515  *
516  * Algorithm cribbed from glibc2.1, __offtime().
517  */
518 #define SECS_PER_MINUTE (60)
519 #define SECS_PER_HOUR  (SECS_PER_MINUTE * 60)
520 #define SECS_PER_DAY   (SECS_PER_HOUR * 24)
521 
unmktime(unsigned long time,long offset,int * yearp,int * monp,int * dayp,int * hourp,int * minp,int * secp)522 static void unmktime(unsigned long time, long offset,
523 		     int *yearp, int *monp, int *dayp,
524 		     int *hourp, int *minp, int *secp)
525 {
526         /* How many days come before each month (0-12).  */
527 	static const unsigned short int __mon_yday[2][13] =
528 	{
529 		/* Normal years.  */
530 		{ 0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334, 365 },
531 		/* Leap years.  */
532 		{ 0, 31, 60, 91, 121, 152, 182, 213, 244, 274, 305, 335, 366 }
533 	};
534 	long int days, rem, y, wday, yday;
535 	const unsigned short int *ip;
536 
537 	days = time / SECS_PER_DAY;
538 	rem = time % SECS_PER_DAY;
539 	rem += offset;
540 	while (rem < 0) {
541 		rem += SECS_PER_DAY;
542 		--days;
543 	}
544 	while (rem >= SECS_PER_DAY) {
545 		rem -= SECS_PER_DAY;
546 		++days;
547 	}
548 	*hourp = rem / SECS_PER_HOUR;
549 	rem %= SECS_PER_HOUR;
550 	*minp = rem / SECS_PER_MINUTE;
551 	*secp = rem % SECS_PER_MINUTE;
552 	/* January 1, 1970 was a Thursday. */
553 	wday = (4 + days) % 7; /* Day in the week. Not currently used */
554 	if (wday < 0) wday += 7;
555 	y = 1970;
556 
557 #define DIV(a, b) ((a) / (b) - ((a) % (b) < 0))
558 #define LEAPS_THRU_END_OF(y) (DIV (y, 4) - DIV (y, 100) + DIV (y, 400))
559 #define __isleap(year)	\
560   ((year) % 4 == 0 && ((year) % 100 != 0 || (year) % 400 == 0))
561 
562 	while (days < 0 || days >= (__isleap (y) ? 366 : 365))
563 	{
564 		/* Guess a corrected year, assuming 365 days per year.  */
565 		long int yg = y + days / 365 - (days % 365 < 0);
566 
567 		/* Adjust DAYS and Y to match the guessed year.  */
568 		days -= ((yg - y) * 365
569 			 + LEAPS_THRU_END_OF (yg - 1)
570 			 - LEAPS_THRU_END_OF (y - 1));
571 		y = yg;
572 	}
573 	*yearp = y - 1900;
574 	yday = days; /* day in the year.  Not currently used. */
575 	ip = __mon_yday[__isleap(y)];
576 	for (y = 11; days < (long int) ip[y]; --y)
577 		continue;
578 	days -= ip[y];
579 	*monp = y;
580 	*dayp = days + 1; /* day in the month */
581 	return;
582 }
583 
584 /*
585  * Return the boot time for use in initializing the kernel clock.
586  *
587  * I'd like to read the hardware clock here but many machines read
588  * the PRAM through ADB, and interrupts aren't initialized when this
589  * is called so ADB obviously won't work.
590  */
591 
mac_gettod(int * yearp,int * monp,int * dayp,int * hourp,int * minp,int * secp)592 void mac_gettod(int *yearp, int *monp, int *dayp,
593 	       int *hourp, int *minp, int *secp)
594 {
595 	/* Yes the GMT bias is backwards.  It looks like Penguin is
596            screwing up the boottime it gives us... This works for me
597            in Canada/Eastern but it might be wrong everywhere else. */
598 	unmktime(mac_bi_data.boottime, -mac_bi_data.gmtbias * 60,
599 		yearp, monp, dayp, hourp, minp, secp);
600 	/* For some reason this is off by one */
601 	*monp = *monp + 1;
602 }
603 
604 /*
605  * Read/write the hardware clock.
606  */
607 
mac_hwclk(int op,struct rtc_time * t)608 int mac_hwclk(int op, struct rtc_time *t)
609 {
610 	unsigned long now;
611 
612 	if (!op) { /* read */
613 		if (macintosh_config->adb_type == MAC_ADB_II) {
614 			now = via_read_time();
615 		} else
616 #ifdef CONFIG_ADB
617 		if ((macintosh_config->adb_type == MAC_ADB_IISI) ||
618 			   (macintosh_config->adb_type == MAC_ADB_PB1) ||
619 			   (macintosh_config->adb_type == MAC_ADB_PB2) ||
620 			   (macintosh_config->adb_type == MAC_ADB_CUDA)) {
621 			now = adb_read_time();
622 		} else
623 #endif
624 		if (macintosh_config->adb_type == MAC_ADB_IOP) {
625 			now = via_read_time();
626 		} else {
627 			now = 0;
628 		}
629 
630 		t->tm_wday = 0;
631 		unmktime(now, 0,
632 			 &t->tm_year, &t->tm_mon, &t->tm_mday,
633 			 &t->tm_hour, &t->tm_min, &t->tm_sec);
634 		printk("mac_hwclk: read %04d-%02d-%-2d %02d:%02d:%02d\n",
635 			t->tm_year + 1900, t->tm_mon + 1, t->tm_mday, t->tm_hour, t->tm_min, t->tm_sec);
636 	} else { /* write */
637 		printk("mac_hwclk: tried to write %04d-%02d-%-2d %02d:%02d:%02d\n",
638 			t->tm_year + 1900, t->tm_mon + 1, t->tm_mday, t->tm_hour, t->tm_min, t->tm_sec);
639 
640 #if 0	/* it trashes my rtc */
641 		now = mktime(t->tm_year + 1900, t->tm_mon + 1, t->tm_mday,
642 			     t->tm_hour, t->tm_min, t->tm_sec);
643 
644 		if (macintosh_config->adb_type == MAC_ADB_II) {
645 			via_write_time(now);
646 		} else if ((macintosh_config->adb_type == MAC_ADB_IISI) ||
647 			   (macintosh_config->adb_type == MAC_ADB_PB1) ||
648 			   (macintosh_config->adb_type == MAC_ADB_PB2) ||
649 			   (macintosh_config->adb_type == MAC_ADB_CUDA)) {
650 			adb_write_time(now);
651 		} else if (macintosh_config->adb_type == MAC_ADB_IOP) {
652 			via_write_time(now);
653 		}
654 #endif
655 	}
656 	return 0;
657 }
658 
659 /*
660  * Set minutes/seconds in the hardware clock
661  */
662 
mac_set_clock_mmss(unsigned long nowtime)663 int mac_set_clock_mmss (unsigned long nowtime)
664 {
665 	struct rtc_time now;
666 
667 	mac_hwclk(0, &now);
668 	now.tm_sec = nowtime % 60;
669 	now.tm_min = (nowtime / 60) % 60;
670 	mac_hwclk(1, &now);
671 
672 	return 0;
673 }
674