blob: a94ec48587b480fe52f150c1323a7f29e17a3e99 [file] [log] [blame]
Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * arch/s390/kernel/time.c
3 * Time of day based timer functions.
4 *
5 * S390 version
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02006 * Copyright IBM Corp. 1999, 2008
Linus Torvalds1da177e2005-04-16 15:20:36 -07007 * Author(s): Hartmut Penner (hp@de.ibm.com),
8 * Martin Schwidefsky (schwidefsky@de.ibm.com),
9 * Denis Joseph Barrow (djbarrow@de.ibm.com,barrow_dj@yahoo.com)
10 *
11 * Derived from "arch/i386/kernel/time.c"
12 * Copyright (C) 1991, 1992, 1995 Linus Torvalds
13 */
14
Martin Schwidefskyfeab6502008-12-25 13:39:38 +010015#define KMSG_COMPONENT "time"
16#define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
17
Linus Torvalds1da177e2005-04-16 15:20:36 -070018#include <linux/errno.h>
19#include <linux/module.h>
20#include <linux/sched.h>
21#include <linux/kernel.h>
22#include <linux/param.h>
23#include <linux/string.h>
24#include <linux/mm.h>
25#include <linux/interrupt.h>
Heiko Carstens750887d2008-12-25 13:38:37 +010026#include <linux/cpu.h>
27#include <linux/stop_machine.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070028#include <linux/time.h>
Ralf Baechle3367b992007-05-08 00:27:52 -070029#include <linux/sysdev.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070030#include <linux/delay.h>
31#include <linux/init.h>
32#include <linux/smp.h>
33#include <linux/types.h>
34#include <linux/profile.h>
35#include <linux/timex.h>
36#include <linux/notifier.h>
Martin Schwidefskydc64bef2006-10-06 16:38:48 +020037#include <linux/clocksource.h>
Heiko Carstens5a62b192008-04-17 07:46:25 +020038#include <linux/clockchips.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070039#include <asm/uaccess.h>
40#include <asm/delay.h>
41#include <asm/s390_ext.h>
42#include <asm/div64.h>
Martin Schwidefskyb0206322008-12-25 13:38:36 +010043#include <asm/vdso.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070044#include <asm/irq.h>
Heiko Carstens5a489b92006-10-06 16:38:35 +020045#include <asm/irq_regs.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070046#include <asm/timer.h>
Martin Schwidefskyd54853e2007-02-05 21:18:19 +010047#include <asm/etr.h>
Heiko Carstensa8061702008-04-17 07:46:26 +020048#include <asm/cio.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070049
50/* change this if you have some constant time drift */
51#define USECS_PER_JIFFY ((unsigned long) 1000000/HZ)
52#define CLK_TICKS_PER_JIFFY ((unsigned long) USECS_PER_JIFFY << 12)
53
54/*
55 * Create a small time difference between the timer interrupts
56 * on the different cpus to avoid lock contention.
57 */
58#define CPU_DEVIATION (smp_processor_id() << 12)
59
60#define TICK_SIZE tick
61
Martin Schwidefskyb6112cc2009-04-14 15:36:28 +020062u64 sched_clock_base_cc = -1; /* Force to data section. */
63
Heiko Carstens5a62b192008-04-17 07:46:25 +020064static DEFINE_PER_CPU(struct clock_event_device, comparators);
Linus Torvalds1da177e2005-04-16 15:20:36 -070065
Linus Torvalds1da177e2005-04-16 15:20:36 -070066/*
67 * Scheduler clock - returns current time in nanosec units.
68 */
Heiko Carstens88dbd202009-06-12 10:26:46 +020069unsigned long long notrace sched_clock(void)
Linus Torvalds1da177e2005-04-16 15:20:36 -070070{
Christian Borntraeger8107d822008-11-27 11:05:56 +010071 return ((get_clock_xt() - sched_clock_base_cc) * 125) >> 9;
Linus Torvalds1da177e2005-04-16 15:20:36 -070072}
73
Jan Glauber32f65f22006-02-01 03:06:33 -080074/*
75 * Monotonic_clock - returns # of nanoseconds passed since time_init()
76 */
77unsigned long long monotonic_clock(void)
78{
79 return sched_clock();
80}
81EXPORT_SYMBOL(monotonic_clock);
82
Linus Torvalds1da177e2005-04-16 15:20:36 -070083void tod_to_timeval(__u64 todval, struct timespec *xtime)
84{
85 unsigned long long sec;
86
87 sec = todval >> 12;
88 do_div(sec, 1000000);
89 xtime->tv_sec = sec;
90 todval -= (sec * 1000000) << 12;
91 xtime->tv_nsec = ((todval * 1000) >> 12);
92}
93
Heiko Carstens5a62b192008-04-17 07:46:25 +020094void clock_comparator_work(void)
Linus Torvalds1da177e2005-04-16 15:20:36 -070095{
Heiko Carstens5a62b192008-04-17 07:46:25 +020096 struct clock_event_device *cd;
Linus Torvalds1da177e2005-04-16 15:20:36 -070097
Heiko Carstens5a62b192008-04-17 07:46:25 +020098 S390_lowcore.clock_comparator = -1ULL;
99 set_clock_comparator(S390_lowcore.clock_comparator);
100 cd = &__get_cpu_var(comparators);
101 cd->event_handler(cd);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700102}
103
Linus Torvalds1da177e2005-04-16 15:20:36 -0700104/*
Heiko Carstens5a62b192008-04-17 07:46:25 +0200105 * Fixup the clock comparator.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700106 */
Heiko Carstens5a62b192008-04-17 07:46:25 +0200107static void fixup_clock_comparator(unsigned long long delta)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700108{
Heiko Carstens5a62b192008-04-17 07:46:25 +0200109 /* If nobody is waiting there's nothing to fix. */
110 if (S390_lowcore.clock_comparator == -1ULL)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700111 return;
Heiko Carstens5a62b192008-04-17 07:46:25 +0200112 S390_lowcore.clock_comparator += delta;
113 set_clock_comparator(S390_lowcore.clock_comparator);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700114}
115
Heiko Carstens5a62b192008-04-17 07:46:25 +0200116static int s390_next_event(unsigned long delta,
117 struct clock_event_device *evt)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700118{
Heiko Carstens5a62b192008-04-17 07:46:25 +0200119 S390_lowcore.clock_comparator = get_clock() + delta;
120 set_clock_comparator(S390_lowcore.clock_comparator);
121 return 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700122}
123
Heiko Carstens5a62b192008-04-17 07:46:25 +0200124static void s390_set_mode(enum clock_event_mode mode,
125 struct clock_event_device *evt)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700126{
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100127}
128
129/*
130 * Set up lowcore and control register of the current cpu to
131 * enable TOD clock and clock comparator interrupts.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700132 */
133void init_cpu_timer(void)
134{
Heiko Carstens5a62b192008-04-17 07:46:25 +0200135 struct clock_event_device *cd;
136 int cpu;
137
138 S390_lowcore.clock_comparator = -1ULL;
139 set_clock_comparator(S390_lowcore.clock_comparator);
140
141 cpu = smp_processor_id();
142 cd = &per_cpu(comparators, cpu);
143 cd->name = "comparator";
144 cd->features = CLOCK_EVT_FEAT_ONESHOT;
145 cd->mult = 16777;
146 cd->shift = 12;
147 cd->min_delta_ns = 1;
148 cd->max_delta_ns = LONG_MAX;
149 cd->rating = 400;
Rusty Russell320ab2b2008-12-13 21:20:26 +1030150 cd->cpumask = cpumask_of(cpu);
Heiko Carstens5a62b192008-04-17 07:46:25 +0200151 cd->set_next_event = s390_next_event;
152 cd->set_mode = s390_set_mode;
153
154 clockevents_register_device(cd);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700155
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100156 /* Enable clock comparator timer interrupt. */
157 __ctl_set_bit(0,11);
158
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200159 /* Always allow the timing alert external interrupt. */
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100160 __ctl_set_bit(0, 4);
161}
162
163static void clock_comparator_interrupt(__u16 code)
164{
Heiko Carstensd3d238c2008-10-03 21:54:59 +0200165 if (S390_lowcore.clock_comparator == -1ULL)
166 set_clock_comparator(S390_lowcore.clock_comparator);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100167}
168
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200169static void etr_timing_alert(struct etr_irq_parm *);
170static void stp_timing_alert(struct stp_irq_parm *);
171
172static void timing_alert_interrupt(__u16 code)
173{
174 if (S390_lowcore.ext_params & 0x00c40000)
175 etr_timing_alert((struct etr_irq_parm *)
176 &S390_lowcore.ext_params);
177 if (S390_lowcore.ext_params & 0x00038000)
178 stp_timing_alert((struct stp_irq_parm *)
179 &S390_lowcore.ext_params);
180}
181
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100182static void etr_reset(void);
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200183static void stp_reset(void);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100184
Martin Schwidefskyd4f587c2009-08-14 15:47:31 +0200185void read_persistent_clock(struct timespec *ts)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100186{
Martin Schwidefskyd4f587c2009-08-14 15:47:31 +0200187 tod_to_timeval(get_clock() - TOD_UNIX_EPOCH, ts);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700188}
189
Magnus Damm8e196082009-04-21 12:24:00 -0700190static cycle_t read_tod_clock(struct clocksource *cs)
Martin Schwidefskydc64bef2006-10-06 16:38:48 +0200191{
192 return get_clock();
193}
194
195static struct clocksource clocksource_tod = {
196 .name = "tod",
Christian Borntraegerd2cb0e62007-11-05 11:10:14 +0100197 .rating = 400,
Martin Schwidefskydc64bef2006-10-06 16:38:48 +0200198 .read = read_tod_clock,
199 .mask = -1ULL,
200 .mult = 1000,
201 .shift = 12,
Thomas Gleixnercc02d802007-02-16 01:27:39 -0800202 .flags = CLOCK_SOURCE_IS_CONTINUOUS,
Martin Schwidefskydc64bef2006-10-06 16:38:48 +0200203};
204
Martin Schwidefskyf1b82742009-08-14 15:47:21 +0200205struct clocksource * __init clocksource_default_clock(void)
206{
207 return &clocksource_tod;
208}
Martin Schwidefskydc64bef2006-10-06 16:38:48 +0200209
Martin Schwidefskyb0206322008-12-25 13:38:36 +0100210void update_vsyscall(struct timespec *wall_time, struct clocksource *clock)
211{
212 if (clock != &clocksource_tod)
213 return;
214
215 /* Make userspace gettimeofday spin until we're done. */
216 ++vdso_data->tb_update_count;
217 smp_wmb();
218 vdso_data->xtime_tod_stamp = clock->cycle_last;
219 vdso_data->xtime_clock_sec = xtime.tv_sec;
220 vdso_data->xtime_clock_nsec = xtime.tv_nsec;
221 vdso_data->wtom_clock_sec = wall_to_monotonic.tv_sec;
222 vdso_data->wtom_clock_nsec = wall_to_monotonic.tv_nsec;
223 smp_wmb();
224 ++vdso_data->tb_update_count;
225}
226
227extern struct timezone sys_tz;
228
229void update_vsyscall_tz(void)
230{
231 /* Make userspace gettimeofday spin until we're done. */
232 ++vdso_data->tb_update_count;
233 smp_wmb();
234 vdso_data->tz_minuteswest = sys_tz.tz_minuteswest;
235 vdso_data->tz_dsttime = sys_tz.tz_dsttime;
236 smp_wmb();
237 ++vdso_data->tb_update_count;
238}
239
Linus Torvalds1da177e2005-04-16 15:20:36 -0700240/*
241 * Initialize the TOD clock and the CPU timer of
242 * the boot cpu.
243 */
244void __init time_init(void)
245{
Martin Schwidefskyab96e792009-04-14 15:36:29 +0200246 struct timespec ts;
247 unsigned long flags;
Martin Schwidefskyab96e792009-04-14 15:36:29 +0200248
Martin Schwidefskyb6112cc2009-04-14 15:36:28 +0200249 /* Reset time synchronization interfaces. */
250 etr_reset();
251 stp_reset();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700252
Linus Torvalds1da177e2005-04-16 15:20:36 -0700253 /* request the clock comparator external interrupt */
Heiko Carstensd7d11042009-06-22 12:08:03 +0200254 if (register_external_interrupt(0x1004, clock_comparator_interrupt))
Linus Torvalds1da177e2005-04-16 15:20:36 -0700255 panic("Couldn't request external interrupt 0x1004");
256
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200257 /* request the timing alert external interrupt */
Heiko Carstensd7d11042009-06-22 12:08:03 +0200258 if (register_external_interrupt(0x1406, timing_alert_interrupt))
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100259 panic("Couldn't request external interrupt 0x1406");
260
Martin Schwidefskyab96e792009-04-14 15:36:29 +0200261 if (clocksource_register(&clocksource_tod) != 0)
262 panic("Could not register TOD clock source");
263
264 /*
Martin Schwidefskyd4f587c2009-08-14 15:47:31 +0200265 * Reset wall_to_monotonic to the initial timestamp created
266 * in head.S to get a precise value in /proc/uptime.
Martin Schwidefskyab96e792009-04-14 15:36:29 +0200267 */
268 write_seqlock_irqsave(&xtime_lock, flags);
Martin Schwidefskyab96e792009-04-14 15:36:29 +0200269 tod_to_timeval(sched_clock_base_cc - TOD_UNIX_EPOCH, &ts);
270 set_normalized_timespec(&wall_to_monotonic, -ts.tv_sec, -ts.tv_nsec);
271 write_sequnlock_irqrestore(&xtime_lock, flags);
272
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100273 /* Enable TOD clock interrupts on the boot cpu. */
274 init_cpu_timer();
Martin Schwidefskyab96e792009-04-14 15:36:29 +0200275
Martin Schwidefskyc185b782008-12-25 13:39:25 +0100276 /* Enable cpu timer interrupts on the boot cpu. */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700277 vtime_init();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700278}
279
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100280/*
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200281 * The time is "clock". old is what we think the time is.
282 * Adjust the value by a multiple of jiffies and add the delta to ntp.
283 * "delay" is an approximation how long the synchronization took. If
284 * the time correction is positive, then "delay" is subtracted from
285 * the time difference and only the remaining part is passed to ntp.
286 */
287static unsigned long long adjust_time(unsigned long long old,
288 unsigned long long clock,
289 unsigned long long delay)
290{
291 unsigned long long delta, ticks;
292 struct timex adjust;
293
294 if (clock > old) {
295 /* It is later than we thought. */
296 delta = ticks = clock - old;
297 delta = ticks = (delta < delay) ? 0 : delta - delay;
298 delta -= do_div(ticks, CLK_TICKS_PER_JIFFY);
299 adjust.offset = ticks * (1000000 / HZ);
300 } else {
301 /* It is earlier than we thought. */
302 delta = ticks = old - clock;
303 delta -= do_div(ticks, CLK_TICKS_PER_JIFFY);
304 delta = -delta;
305 adjust.offset = -ticks * (1000000 / HZ);
306 }
Christian Borntraeger8107d822008-11-27 11:05:56 +0100307 sched_clock_base_cc += delta;
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200308 if (adjust.offset != 0) {
Martin Schwidefskyfeab6502008-12-25 13:39:38 +0100309 pr_notice("The ETR interface has adjusted the clock "
310 "by %li microseconds\n", adjust.offset);
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200311 adjust.modes = ADJ_OFFSET_SINGLESHOT;
312 do_adjtimex(&adjust);
313 }
314 return delta;
315}
316
317static DEFINE_PER_CPU(atomic_t, clock_sync_word);
Martin Schwidefsky8283cb42009-03-26 15:24:21 +0100318static DEFINE_MUTEX(clock_sync_mutex);
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200319static unsigned long clock_sync_flags;
320
321#define CLOCK_SYNC_HAS_ETR 0
322#define CLOCK_SYNC_HAS_STP 1
323#define CLOCK_SYNC_ETR 2
324#define CLOCK_SYNC_STP 3
325
326/*
327 * The synchronous get_clock function. It will write the current clock
328 * value to the clock pointer and return 0 if the clock is in sync with
329 * the external time source. If the clock mode is local it will return
330 * -ENOSYS and -EAGAIN if the clock is not in sync with the external
331 * reference.
332 */
333int get_sync_clock(unsigned long long *clock)
334{
335 atomic_t *sw_ptr;
336 unsigned int sw0, sw1;
337
338 sw_ptr = &get_cpu_var(clock_sync_word);
339 sw0 = atomic_read(sw_ptr);
340 *clock = get_clock();
341 sw1 = atomic_read(sw_ptr);
342 put_cpu_var(clock_sync_sync);
343 if (sw0 == sw1 && (sw0 & 0x80000000U))
344 /* Success: time is in sync. */
345 return 0;
346 if (!test_bit(CLOCK_SYNC_HAS_ETR, &clock_sync_flags) &&
347 !test_bit(CLOCK_SYNC_HAS_STP, &clock_sync_flags))
348 return -ENOSYS;
349 if (!test_bit(CLOCK_SYNC_ETR, &clock_sync_flags) &&
350 !test_bit(CLOCK_SYNC_STP, &clock_sync_flags))
351 return -EACCES;
352 return -EAGAIN;
353}
354EXPORT_SYMBOL(get_sync_clock);
355
356/*
357 * Make get_sync_clock return -EAGAIN.
358 */
359static void disable_sync_clock(void *dummy)
360{
361 atomic_t *sw_ptr = &__get_cpu_var(clock_sync_word);
362 /*
363 * Clear the in-sync bit 2^31. All get_sync_clock calls will
364 * fail until the sync bit is turned back on. In addition
365 * increase the "sequence" counter to avoid the race of an
366 * etr event and the complete recovery against get_sync_clock.
367 */
368 atomic_clear_mask(0x80000000, sw_ptr);
369 atomic_inc(sw_ptr);
370}
371
372/*
373 * Make get_sync_clock return 0 again.
374 * Needs to be called from a context disabled for preemption.
375 */
376static void enable_sync_clock(void)
377{
378 atomic_t *sw_ptr = &__get_cpu_var(clock_sync_word);
379 atomic_set_mask(0x80000000, sw_ptr);
380}
381
Martin Schwidefsky8283cb42009-03-26 15:24:21 +0100382/*
383 * Function to check if the clock is in sync.
384 */
385static inline int check_sync_clock(void)
386{
387 atomic_t *sw_ptr;
388 int rc;
389
390 sw_ptr = &get_cpu_var(clock_sync_word);
391 rc = (atomic_read(sw_ptr) & 0x80000000U) != 0;
392 put_cpu_var(clock_sync_sync);
393 return rc;
394}
395
Heiko Carstens750887d2008-12-25 13:38:37 +0100396/* Single threaded workqueue used for etr and stp sync events */
397static struct workqueue_struct *time_sync_wq;
398
399static void __init time_init_wq(void)
400{
Heiko Carstens179cb812009-01-23 16:40:26 +0100401 if (time_sync_wq)
402 return;
403 time_sync_wq = create_singlethread_workqueue("timesync");
404 stop_machine_create();
Heiko Carstens750887d2008-12-25 13:38:37 +0100405}
406
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200407/*
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100408 * External Time Reference (ETR) code.
409 */
410static int etr_port0_online;
411static int etr_port1_online;
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200412static int etr_steai_available;
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100413
414static int __init early_parse_etr(char *p)
415{
416 if (strncmp(p, "off", 3) == 0)
417 etr_port0_online = etr_port1_online = 0;
418 else if (strncmp(p, "port0", 5) == 0)
419 etr_port0_online = 1;
420 else if (strncmp(p, "port1", 5) == 0)
421 etr_port1_online = 1;
422 else if (strncmp(p, "on", 2) == 0)
423 etr_port0_online = etr_port1_online = 1;
424 return 0;
425}
426early_param("etr", early_parse_etr);
427
428enum etr_event {
429 ETR_EVENT_PORT0_CHANGE,
430 ETR_EVENT_PORT1_CHANGE,
431 ETR_EVENT_PORT_ALERT,
432 ETR_EVENT_SYNC_CHECK,
433 ETR_EVENT_SWITCH_LOCAL,
434 ETR_EVENT_UPDATE,
435};
436
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100437/*
438 * Valid bit combinations of the eacr register are (x = don't care):
439 * e0 e1 dp p0 p1 ea es sl
440 * 0 0 x 0 0 0 0 0 initial, disabled state
441 * 0 0 x 0 1 1 0 0 port 1 online
442 * 0 0 x 1 0 1 0 0 port 0 online
443 * 0 0 x 1 1 1 0 0 both ports online
444 * 0 1 x 0 1 1 0 0 port 1 online and usable, ETR or PPS mode
445 * 0 1 x 0 1 1 0 1 port 1 online, usable and ETR mode
446 * 0 1 x 0 1 1 1 0 port 1 online, usable, PPS mode, in-sync
447 * 0 1 x 0 1 1 1 1 port 1 online, usable, ETR mode, in-sync
448 * 0 1 x 1 1 1 0 0 both ports online, port 1 usable
449 * 0 1 x 1 1 1 1 0 both ports online, port 1 usable, PPS mode, in-sync
450 * 0 1 x 1 1 1 1 1 both ports online, port 1 usable, ETR mode, in-sync
451 * 1 0 x 1 0 1 0 0 port 0 online and usable, ETR or PPS mode
452 * 1 0 x 1 0 1 0 1 port 0 online, usable and ETR mode
453 * 1 0 x 1 0 1 1 0 port 0 online, usable, PPS mode, in-sync
454 * 1 0 x 1 0 1 1 1 port 0 online, usable, ETR mode, in-sync
455 * 1 0 x 1 1 1 0 0 both ports online, port 0 usable
456 * 1 0 x 1 1 1 1 0 both ports online, port 0 usable, PPS mode, in-sync
457 * 1 0 x 1 1 1 1 1 both ports online, port 0 usable, ETR mode, in-sync
458 * 1 1 x 1 1 1 1 0 both ports online & usable, ETR, in-sync
459 * 1 1 x 1 1 1 1 1 both ports online & usable, ETR, in-sync
460 */
461static struct etr_eacr etr_eacr;
462static u64 etr_tolec; /* time of last eacr update */
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100463static struct etr_aib etr_port0;
464static int etr_port0_uptodate;
465static struct etr_aib etr_port1;
466static int etr_port1_uptodate;
467static unsigned long etr_events;
468static struct timer_list etr_timer;
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100469
470static void etr_timeout(unsigned long dummy);
Martin Schwidefskyecdcc022007-04-27 16:01:58 +0200471static void etr_work_fn(struct work_struct *work);
Martin Schwidefsky0b3016b2008-12-25 13:38:38 +0100472static DEFINE_MUTEX(etr_work_mutex);
Martin Schwidefskyecdcc022007-04-27 16:01:58 +0200473static DECLARE_WORK(etr_work, etr_work_fn);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100474
475/*
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100476 * Reset ETR attachment.
477 */
478static void etr_reset(void)
479{
480 etr_eacr = (struct etr_eacr) {
481 .e0 = 0, .e1 = 0, ._pad0 = 4, .dp = 0,
482 .p0 = 0, .p1 = 0, ._pad1 = 0, .ea = 0,
483 .es = 0, .sl = 0 };
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200484 if (etr_setr(&etr_eacr) == 0) {
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100485 etr_tolec = get_clock();
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200486 set_bit(CLOCK_SYNC_HAS_ETR, &clock_sync_flags);
Martin Schwidefsky8283cb42009-03-26 15:24:21 +0100487 if (etr_port0_online && etr_port1_online)
488 set_bit(CLOCK_SYNC_ETR, &clock_sync_flags);
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200489 } else if (etr_port0_online || etr_port1_online) {
Martin Schwidefskyfeab6502008-12-25 13:39:38 +0100490 pr_warning("The real or virtual hardware system does "
491 "not provide an ETR interface\n");
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200492 etr_port0_online = etr_port1_online = 0;
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100493 }
494}
495
Martin Schwidefskyecdcc022007-04-27 16:01:58 +0200496static int __init etr_init(void)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100497{
498 struct etr_aib aib;
499
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200500 if (!test_bit(CLOCK_SYNC_HAS_ETR, &clock_sync_flags))
Martin Schwidefskyecdcc022007-04-27 16:01:58 +0200501 return 0;
Heiko Carstens750887d2008-12-25 13:38:37 +0100502 time_init_wq();
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100503 /* Check if this machine has the steai instruction. */
504 if (etr_steai(&aib, ETR_STEAI_STEPPING_PORT) == 0)
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200505 etr_steai_available = 1;
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100506 setup_timer(&etr_timer, etr_timeout, 0UL);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100507 if (etr_port0_online) {
508 set_bit(ETR_EVENT_PORT0_CHANGE, &etr_events);
Heiko Carstens750887d2008-12-25 13:38:37 +0100509 queue_work(time_sync_wq, &etr_work);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100510 }
511 if (etr_port1_online) {
512 set_bit(ETR_EVENT_PORT1_CHANGE, &etr_events);
Heiko Carstens750887d2008-12-25 13:38:37 +0100513 queue_work(time_sync_wq, &etr_work);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100514 }
Martin Schwidefskyecdcc022007-04-27 16:01:58 +0200515 return 0;
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100516}
517
Martin Schwidefskyecdcc022007-04-27 16:01:58 +0200518arch_initcall(etr_init);
519
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100520/*
521 * Two sorts of ETR machine checks. The architecture reads:
522 * "When a machine-check niterruption occurs and if a switch-to-local or
523 * ETR-sync-check interrupt request is pending but disabled, this pending
524 * disabled interruption request is indicated and is cleared".
525 * Which means that we can get etr_switch_to_local events from the machine
526 * check handler although the interruption condition is disabled. Lovely..
527 */
528
529/*
530 * Switch to local machine check. This is called when the last usable
531 * ETR port goes inactive. After switch to local the clock is not in sync.
532 */
533void etr_switch_to_local(void)
534{
535 if (!etr_eacr.sl)
536 return;
Martin Schwidefsky8283cb42009-03-26 15:24:21 +0100537 disable_sync_clock(NULL);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100538 set_bit(ETR_EVENT_SWITCH_LOCAL, &etr_events);
Heiko Carstens750887d2008-12-25 13:38:37 +0100539 queue_work(time_sync_wq, &etr_work);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100540}
541
542/*
543 * ETR sync check machine check. This is called when the ETR OTE and the
544 * local clock OTE are farther apart than the ETR sync check tolerance.
545 * After a ETR sync check the clock is not in sync. The machine check
546 * is broadcasted to all cpus at the same time.
547 */
548void etr_sync_check(void)
549{
550 if (!etr_eacr.es)
551 return;
Martin Schwidefsky8283cb42009-03-26 15:24:21 +0100552 disable_sync_clock(NULL);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100553 set_bit(ETR_EVENT_SYNC_CHECK, &etr_events);
Heiko Carstens750887d2008-12-25 13:38:37 +0100554 queue_work(time_sync_wq, &etr_work);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100555}
556
557/*
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200558 * ETR timing alert. There are two causes:
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100559 * 1) port state change, check the usability of the port
560 * 2) port alert, one of the ETR-data-validity bits (v1-v2 bits of the
561 * sldr-status word) or ETR-data word 1 (edf1) or ETR-data word 3 (edf3)
562 * or ETR-data word 4 (edf4) has changed.
563 */
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200564static void etr_timing_alert(struct etr_irq_parm *intparm)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100565{
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100566 if (intparm->pc0)
567 /* ETR port 0 state change. */
568 set_bit(ETR_EVENT_PORT0_CHANGE, &etr_events);
569 if (intparm->pc1)
570 /* ETR port 1 state change. */
571 set_bit(ETR_EVENT_PORT1_CHANGE, &etr_events);
572 if (intparm->eai)
573 /*
574 * ETR port alert on either port 0, 1 or both.
575 * Both ports are not up-to-date now.
576 */
577 set_bit(ETR_EVENT_PORT_ALERT, &etr_events);
Heiko Carstens750887d2008-12-25 13:38:37 +0100578 queue_work(time_sync_wq, &etr_work);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100579}
580
581static void etr_timeout(unsigned long dummy)
582{
583 set_bit(ETR_EVENT_UPDATE, &etr_events);
Heiko Carstens750887d2008-12-25 13:38:37 +0100584 queue_work(time_sync_wq, &etr_work);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100585}
586
587/*
588 * Check if the etr mode is pss.
589 */
590static inline int etr_mode_is_pps(struct etr_eacr eacr)
591{
592 return eacr.es && !eacr.sl;
593}
594
595/*
596 * Check if the etr mode is etr.
597 */
598static inline int etr_mode_is_etr(struct etr_eacr eacr)
599{
600 return eacr.es && eacr.sl;
601}
602
603/*
604 * Check if the port can be used for TOD synchronization.
605 * For PPS mode the port has to receive OTEs. For ETR mode
606 * the port has to receive OTEs, the ETR stepping bit has to
607 * be zero and the validity bits for data frame 1, 2, and 3
608 * have to be 1.
609 */
610static int etr_port_valid(struct etr_aib *aib, int port)
611{
612 unsigned int psc;
613
614 /* Check that this port is receiving OTEs. */
615 if (aib->tsp == 0)
616 return 0;
617
618 psc = port ? aib->esw.psc1 : aib->esw.psc0;
619 if (psc == etr_lpsc_pps_mode)
620 return 1;
621 if (psc == etr_lpsc_operational_step)
622 return !aib->esw.y && aib->slsw.v1 &&
623 aib->slsw.v2 && aib->slsw.v3;
624 return 0;
625}
626
627/*
628 * Check if two ports are on the same network.
629 */
630static int etr_compare_network(struct etr_aib *aib1, struct etr_aib *aib2)
631{
632 // FIXME: any other fields we have to compare?
633 return aib1->edf1.net_id == aib2->edf1.net_id;
634}
635
636/*
637 * Wrapper for etr_stei that converts physical port states
638 * to logical port states to be consistent with the output
639 * of stetr (see etr_psc vs. etr_lpsc).
640 */
641static void etr_steai_cv(struct etr_aib *aib, unsigned int func)
642{
643 BUG_ON(etr_steai(aib, func) != 0);
644 /* Convert port state to logical port state. */
645 if (aib->esw.psc0 == 1)
646 aib->esw.psc0 = 2;
647 else if (aib->esw.psc0 == 0 && aib->esw.p == 0)
648 aib->esw.psc0 = 1;
649 if (aib->esw.psc1 == 1)
650 aib->esw.psc1 = 2;
651 else if (aib->esw.psc1 == 0 && aib->esw.p == 1)
652 aib->esw.psc1 = 1;
653}
654
655/*
656 * Check if the aib a2 is still connected to the same attachment as
657 * aib a1, the etv values differ by one and a2 is valid.
658 */
659static int etr_aib_follows(struct etr_aib *a1, struct etr_aib *a2, int p)
660{
661 int state_a1, state_a2;
662
663 /* Paranoia check: e0/e1 should better be the same. */
664 if (a1->esw.eacr.e0 != a2->esw.eacr.e0 ||
665 a1->esw.eacr.e1 != a2->esw.eacr.e1)
666 return 0;
667
668 /* Still connected to the same etr ? */
669 state_a1 = p ? a1->esw.psc1 : a1->esw.psc0;
670 state_a2 = p ? a2->esw.psc1 : a2->esw.psc0;
671 if (state_a1 == etr_lpsc_operational_step) {
672 if (state_a2 != etr_lpsc_operational_step ||
673 a1->edf1.net_id != a2->edf1.net_id ||
674 a1->edf1.etr_id != a2->edf1.etr_id ||
675 a1->edf1.etr_pn != a2->edf1.etr_pn)
676 return 0;
677 } else if (state_a2 != etr_lpsc_pps_mode)
678 return 0;
679
680 /* The ETV value of a2 needs to be ETV of a1 + 1. */
681 if (a1->edf2.etv + 1 != a2->edf2.etv)
682 return 0;
683
684 if (!etr_port_valid(a2, p))
685 return 0;
686
687 return 1;
688}
689
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200690struct clock_sync_data {
Heiko Carstens750887d2008-12-25 13:38:37 +0100691 atomic_t cpus;
Heiko Carstens5a62b192008-04-17 07:46:25 +0200692 int in_sync;
693 unsigned long long fixup_cc;
Heiko Carstens750887d2008-12-25 13:38:37 +0100694 int etr_port;
695 struct etr_aib *etr_aib;
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200696};
Heiko Carstens5a62b192008-04-17 07:46:25 +0200697
Heiko Carstens750887d2008-12-25 13:38:37 +0100698static void clock_sync_cpu(struct clock_sync_data *sync)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100699{
Heiko Carstens750887d2008-12-25 13:38:37 +0100700 atomic_dec(&sync->cpus);
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200701 enable_sync_clock();
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100702 /*
703 * This looks like a busy wait loop but it isn't. etr_sync_cpus
704 * is called on all other cpus while the TOD clocks is stopped.
705 * __udelay will stop the cpu on an enabled wait psw until the
706 * TOD is running again.
707 */
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200708 while (sync->in_sync == 0) {
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100709 __udelay(1);
Heiko Carstens6c732de2007-02-21 10:55:15 +0100710 /*
711 * A different cpu changes *in_sync. Therefore use
712 * barrier() to force memory access.
713 */
714 barrier();
715 }
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200716 if (sync->in_sync != 1)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100717 /* Didn't work. Clear per-cpu in sync bit again. */
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200718 disable_sync_clock(NULL);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100719 /*
720 * This round of TOD syncing is done. Set the clock comparator
721 * to the next tick and let the processor continue.
722 */
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200723 fixup_clock_comparator(sync->fixup_cc);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100724}
725
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100726/*
727 * Sync the TOD clock using the port refered to by aibp. This port
728 * has to be enabled and the other port has to be disabled. The
729 * last eacr update has to be more than 1.6 seconds in the past.
730 */
Heiko Carstens750887d2008-12-25 13:38:37 +0100731static int etr_sync_clock(void *data)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100732{
Heiko Carstens750887d2008-12-25 13:38:37 +0100733 static int first;
Heiko Carstens5a62b192008-04-17 07:46:25 +0200734 unsigned long long clock, old_clock, delay, delta;
Heiko Carstens750887d2008-12-25 13:38:37 +0100735 struct clock_sync_data *etr_sync;
736 struct etr_aib *sync_port, *aib;
737 int port;
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100738 int rc;
739
Heiko Carstens750887d2008-12-25 13:38:37 +0100740 etr_sync = data;
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100741
Heiko Carstens750887d2008-12-25 13:38:37 +0100742 if (xchg(&first, 1) == 1) {
743 /* Slave */
744 clock_sync_cpu(etr_sync);
745 return 0;
746 }
747
748 /* Wait until all other cpus entered the sync function. */
749 while (atomic_read(&etr_sync->cpus) != 0)
750 cpu_relax();
751
752 port = etr_sync->etr_port;
753 aib = etr_sync->etr_aib;
754 sync_port = (port == 0) ? &etr_port0 : &etr_port1;
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200755 enable_sync_clock();
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100756
757 /* Set clock to next OTE. */
758 __ctl_set_bit(14, 21);
759 __ctl_set_bit(0, 29);
760 clock = ((unsigned long long) (aib->edf2.etv + 1)) << 32;
Heiko Carstens5a62b192008-04-17 07:46:25 +0200761 old_clock = get_clock();
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100762 if (set_clock(clock) == 0) {
763 __udelay(1); /* Wait for the clock to start. */
764 __ctl_clear_bit(0, 29);
765 __ctl_clear_bit(14, 21);
766 etr_stetr(aib);
767 /* Adjust Linux timing variables. */
768 delay = (unsigned long long)
769 (aib->edf2.etv - sync_port->edf2.etv) << 32;
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200770 delta = adjust_time(old_clock, clock, delay);
Heiko Carstens750887d2008-12-25 13:38:37 +0100771 etr_sync->fixup_cc = delta;
Heiko Carstens5a62b192008-04-17 07:46:25 +0200772 fixup_clock_comparator(delta);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100773 /* Verify that the clock is properly set. */
774 if (!etr_aib_follows(sync_port, aib, port)) {
775 /* Didn't work. */
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200776 disable_sync_clock(NULL);
Heiko Carstens750887d2008-12-25 13:38:37 +0100777 etr_sync->in_sync = -EAGAIN;
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100778 rc = -EAGAIN;
779 } else {
Heiko Carstens750887d2008-12-25 13:38:37 +0100780 etr_sync->in_sync = 1;
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100781 rc = 0;
782 }
783 } else {
784 /* Could not set the clock ?!? */
785 __ctl_clear_bit(0, 29);
786 __ctl_clear_bit(14, 21);
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200787 disable_sync_clock(NULL);
Heiko Carstens750887d2008-12-25 13:38:37 +0100788 etr_sync->in_sync = -EAGAIN;
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100789 rc = -EAGAIN;
790 }
Heiko Carstens750887d2008-12-25 13:38:37 +0100791 xchg(&first, 0);
792 return rc;
793}
794
795static int etr_sync_clock_stop(struct etr_aib *aib, int port)
796{
797 struct clock_sync_data etr_sync;
798 struct etr_aib *sync_port;
799 int follows;
800 int rc;
801
802 /* Check if the current aib is adjacent to the sync port aib. */
803 sync_port = (port == 0) ? &etr_port0 : &etr_port1;
804 follows = etr_aib_follows(sync_port, aib, port);
805 memcpy(sync_port, aib, sizeof(*aib));
806 if (!follows)
807 return -EAGAIN;
808 memset(&etr_sync, 0, sizeof(etr_sync));
809 etr_sync.etr_aib = aib;
810 etr_sync.etr_port = port;
811 get_online_cpus();
812 atomic_set(&etr_sync.cpus, num_online_cpus() - 1);
813 rc = stop_machine(etr_sync_clock, &etr_sync, &cpu_online_map);
814 put_online_cpus();
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100815 return rc;
816}
817
818/*
819 * Handle the immediate effects of the different events.
820 * The port change event is used for online/offline changes.
821 */
822static struct etr_eacr etr_handle_events(struct etr_eacr eacr)
823{
824 if (test_and_clear_bit(ETR_EVENT_SYNC_CHECK, &etr_events))
825 eacr.es = 0;
826 if (test_and_clear_bit(ETR_EVENT_SWITCH_LOCAL, &etr_events))
827 eacr.es = eacr.sl = 0;
828 if (test_and_clear_bit(ETR_EVENT_PORT_ALERT, &etr_events))
829 etr_port0_uptodate = etr_port1_uptodate = 0;
830
831 if (test_and_clear_bit(ETR_EVENT_PORT0_CHANGE, &etr_events)) {
832 if (eacr.e0)
833 /*
834 * Port change of an enabled port. We have to
835 * assume that this can have caused an stepping
836 * port switch.
837 */
838 etr_tolec = get_clock();
839 eacr.p0 = etr_port0_online;
840 if (!eacr.p0)
841 eacr.e0 = 0;
842 etr_port0_uptodate = 0;
843 }
844 if (test_and_clear_bit(ETR_EVENT_PORT1_CHANGE, &etr_events)) {
845 if (eacr.e1)
846 /*
847 * Port change of an enabled port. We have to
848 * assume that this can have caused an stepping
849 * port switch.
850 */
851 etr_tolec = get_clock();
852 eacr.p1 = etr_port1_online;
853 if (!eacr.p1)
854 eacr.e1 = 0;
855 etr_port1_uptodate = 0;
856 }
857 clear_bit(ETR_EVENT_UPDATE, &etr_events);
858 return eacr;
859}
860
861/*
862 * Set up a timer that expires after the etr_tolec + 1.6 seconds if
863 * one of the ports needs an update.
864 */
865static void etr_set_tolec_timeout(unsigned long long now)
866{
867 unsigned long micros;
868
869 if ((!etr_eacr.p0 || etr_port0_uptodate) &&
870 (!etr_eacr.p1 || etr_port1_uptodate))
871 return;
872 micros = (now > etr_tolec) ? ((now - etr_tolec) >> 12) : 0;
873 micros = (micros > 1600000) ? 0 : 1600000 - micros;
874 mod_timer(&etr_timer, jiffies + (micros * HZ) / 1000000 + 1);
875}
876
877/*
878 * Set up a time that expires after 1/2 second.
879 */
880static void etr_set_sync_timeout(void)
881{
882 mod_timer(&etr_timer, jiffies + HZ/2);
883}
884
885/*
886 * Update the aib information for one or both ports.
887 */
888static struct etr_eacr etr_handle_update(struct etr_aib *aib,
889 struct etr_eacr eacr)
890{
891 /* With both ports disabled the aib information is useless. */
892 if (!eacr.e0 && !eacr.e1)
893 return eacr;
894
Martin Schwidefskyecdcc022007-04-27 16:01:58 +0200895 /* Update port0 or port1 with aib stored in etr_work_fn. */
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100896 if (aib->esw.q == 0) {
897 /* Information for port 0 stored. */
898 if (eacr.p0 && !etr_port0_uptodate) {
899 etr_port0 = *aib;
900 if (etr_port0_online)
901 etr_port0_uptodate = 1;
902 }
903 } else {
904 /* Information for port 1 stored. */
905 if (eacr.p1 && !etr_port1_uptodate) {
906 etr_port1 = *aib;
907 if (etr_port0_online)
908 etr_port1_uptodate = 1;
909 }
910 }
911
912 /*
913 * Do not try to get the alternate port aib if the clock
914 * is not in sync yet.
915 */
Martin Schwidefsky8283cb42009-03-26 15:24:21 +0100916 if (!check_sync_clock())
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100917 return eacr;
918
919 /*
920 * If steai is available we can get the information about
921 * the other port immediately. If only stetr is available the
922 * data-port bit toggle has to be used.
923 */
Martin Schwidefskyd2fec592008-07-14 09:58:56 +0200924 if (etr_steai_available) {
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100925 if (eacr.p0 && !etr_port0_uptodate) {
926 etr_steai_cv(&etr_port0, ETR_STEAI_PORT_0);
927 etr_port0_uptodate = 1;
928 }
929 if (eacr.p1 && !etr_port1_uptodate) {
930 etr_steai_cv(&etr_port1, ETR_STEAI_PORT_1);
931 etr_port1_uptodate = 1;
932 }
933 } else {
934 /*
935 * One port was updated above, if the other
936 * port is not uptodate toggle dp bit.
937 */
938 if ((eacr.p0 && !etr_port0_uptodate) ||
939 (eacr.p1 && !etr_port1_uptodate))
940 eacr.dp ^= 1;
941 else
942 eacr.dp = 0;
943 }
944 return eacr;
945}
946
947/*
948 * Write new etr control register if it differs from the current one.
949 * Return 1 if etr_tolec has been updated as well.
950 */
951static void etr_update_eacr(struct etr_eacr eacr)
952{
953 int dp_changed;
954
955 if (memcmp(&etr_eacr, &eacr, sizeof(eacr)) == 0)
956 /* No change, return. */
957 return;
958 /*
959 * The disable of an active port of the change of the data port
960 * bit can/will cause a change in the data port.
961 */
962 dp_changed = etr_eacr.e0 > eacr.e0 || etr_eacr.e1 > eacr.e1 ||
963 (etr_eacr.dp ^ eacr.dp) != 0;
964 etr_eacr = eacr;
965 etr_setr(&etr_eacr);
966 if (dp_changed)
967 etr_tolec = get_clock();
968}
969
970/*
Heiko Carstens750887d2008-12-25 13:38:37 +0100971 * ETR work. In this function you'll find the main logic. In
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100972 * particular this is the only function that calls etr_update_eacr(),
973 * it "controls" the etr control register.
974 */
Martin Schwidefskyecdcc022007-04-27 16:01:58 +0200975static void etr_work_fn(struct work_struct *work)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100976{
977 unsigned long long now;
978 struct etr_eacr eacr;
979 struct etr_aib aib;
980 int sync_port;
981
Martin Schwidefsky0b3016b2008-12-25 13:38:38 +0100982 /* prevent multiple execution. */
983 mutex_lock(&etr_work_mutex);
984
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100985 /* Create working copy of etr_eacr. */
986 eacr = etr_eacr;
987
988 /* Check for the different events and their immediate effects. */
989 eacr = etr_handle_events(eacr);
990
991 /* Check if ETR is supposed to be active. */
992 eacr.ea = eacr.p0 || eacr.p1;
993 if (!eacr.ea) {
994 /* Both ports offline. Reset everything. */
995 eacr.dp = eacr.es = eacr.sl = 0;
Ingo Molnar1a781a72008-07-15 21:55:59 +0200996 on_each_cpu(disable_sync_clock, NULL, 1);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100997 del_timer_sync(&etr_timer);
998 etr_update_eacr(eacr);
Martin Schwidefsky0b3016b2008-12-25 13:38:38 +0100999 goto out_unlock;
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001000 }
1001
1002 /* Store aib to get the current ETR status word. */
1003 BUG_ON(etr_stetr(&aib) != 0);
1004 etr_port0.esw = etr_port1.esw = aib.esw; /* Copy status word. */
1005 now = get_clock();
1006
1007 /*
1008 * Update the port information if the last stepping port change
1009 * or data port change is older than 1.6 seconds.
1010 */
1011 if (now >= etr_tolec + (1600000 << 12))
1012 eacr = etr_handle_update(&aib, eacr);
1013
1014 /*
1015 * Select ports to enable. The prefered synchronization mode is PPS.
1016 * If a port can be enabled depends on a number of things:
1017 * 1) The port needs to be online and uptodate. A port is not
1018 * disabled just because it is not uptodate, but it is only
1019 * enabled if it is uptodate.
1020 * 2) The port needs to have the same mode (pps / etr).
1021 * 3) The port needs to be usable -> etr_port_valid() == 1
1022 * 4) To enable the second port the clock needs to be in sync.
1023 * 5) If both ports are useable and are ETR ports, the network id
1024 * has to be the same.
1025 * The eacr.sl bit is used to indicate etr mode vs. pps mode.
1026 */
1027 if (eacr.p0 && aib.esw.psc0 == etr_lpsc_pps_mode) {
1028 eacr.sl = 0;
1029 eacr.e0 = 1;
1030 if (!etr_mode_is_pps(etr_eacr))
1031 eacr.es = 0;
1032 if (!eacr.es || !eacr.p1 || aib.esw.psc1 != etr_lpsc_pps_mode)
1033 eacr.e1 = 0;
1034 // FIXME: uptodate checks ?
1035 else if (etr_port0_uptodate && etr_port1_uptodate)
1036 eacr.e1 = 1;
1037 sync_port = (etr_port0_uptodate &&
1038 etr_port_valid(&etr_port0, 0)) ? 0 : -1;
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001039 } else if (eacr.p1 && aib.esw.psc1 == etr_lpsc_pps_mode) {
1040 eacr.sl = 0;
1041 eacr.e0 = 0;
1042 eacr.e1 = 1;
1043 if (!etr_mode_is_pps(etr_eacr))
1044 eacr.es = 0;
1045 sync_port = (etr_port1_uptodate &&
1046 etr_port_valid(&etr_port1, 1)) ? 1 : -1;
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001047 } else if (eacr.p0 && aib.esw.psc0 == etr_lpsc_operational_step) {
1048 eacr.sl = 1;
1049 eacr.e0 = 1;
1050 if (!etr_mode_is_etr(etr_eacr))
1051 eacr.es = 0;
1052 if (!eacr.es || !eacr.p1 ||
1053 aib.esw.psc1 != etr_lpsc_operational_alt)
1054 eacr.e1 = 0;
1055 else if (etr_port0_uptodate && etr_port1_uptodate &&
1056 etr_compare_network(&etr_port0, &etr_port1))
1057 eacr.e1 = 1;
1058 sync_port = (etr_port0_uptodate &&
1059 etr_port_valid(&etr_port0, 0)) ? 0 : -1;
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001060 } else if (eacr.p1 && aib.esw.psc1 == etr_lpsc_operational_step) {
1061 eacr.sl = 1;
1062 eacr.e0 = 0;
1063 eacr.e1 = 1;
1064 if (!etr_mode_is_etr(etr_eacr))
1065 eacr.es = 0;
1066 sync_port = (etr_port1_uptodate &&
1067 etr_port_valid(&etr_port1, 1)) ? 1 : -1;
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001068 } else {
1069 /* Both ports not usable. */
1070 eacr.es = eacr.sl = 0;
1071 sync_port = -1;
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001072 }
1073
1074 /*
1075 * If the clock is in sync just update the eacr and return.
1076 * If there is no valid sync port wait for a port update.
1077 */
Martin Schwidefsky8283cb42009-03-26 15:24:21 +01001078 if (check_sync_clock() || sync_port < 0) {
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001079 etr_update_eacr(eacr);
1080 etr_set_tolec_timeout(now);
Martin Schwidefsky0b3016b2008-12-25 13:38:38 +01001081 goto out_unlock;
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001082 }
1083
1084 /*
1085 * Prepare control register for clock syncing
1086 * (reset data port bit, set sync check control.
1087 */
1088 eacr.dp = 0;
1089 eacr.es = 1;
1090
1091 /*
1092 * Update eacr and try to synchronize the clock. If the update
1093 * of eacr caused a stepping port switch (or if we have to
1094 * assume that a stepping port switch has occured) or the
1095 * clock syncing failed, reset the sync check control bit
1096 * and set up a timer to try again after 0.5 seconds
1097 */
1098 etr_update_eacr(eacr);
1099 if (now < etr_tolec + (1600000 << 12) ||
Heiko Carstens750887d2008-12-25 13:38:37 +01001100 etr_sync_clock_stop(&aib, sync_port) != 0) {
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001101 /* Sync failed. Try again in 1/2 second. */
1102 eacr.es = 0;
1103 etr_update_eacr(eacr);
1104 etr_set_sync_timeout();
1105 } else
1106 etr_set_tolec_timeout(now);
Martin Schwidefsky0b3016b2008-12-25 13:38:38 +01001107out_unlock:
1108 mutex_unlock(&etr_work_mutex);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001109}
1110
1111/*
1112 * Sysfs interface functions
1113 */
1114static struct sysdev_class etr_sysclass = {
Kay Sieversaf5ca3f2007-12-20 02:09:39 +01001115 .name = "etr",
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001116};
1117
1118static struct sys_device etr_port0_dev = {
1119 .id = 0,
1120 .cls = &etr_sysclass,
1121};
1122
1123static struct sys_device etr_port1_dev = {
1124 .id = 1,
1125 .cls = &etr_sysclass,
1126};
1127
1128/*
1129 * ETR class attributes
1130 */
1131static ssize_t etr_stepping_port_show(struct sysdev_class *class, char *buf)
1132{
1133 return sprintf(buf, "%i\n", etr_port0.esw.p);
1134}
1135
1136static SYSDEV_CLASS_ATTR(stepping_port, 0400, etr_stepping_port_show, NULL);
1137
1138static ssize_t etr_stepping_mode_show(struct sysdev_class *class, char *buf)
1139{
1140 char *mode_str;
1141
1142 if (etr_mode_is_pps(etr_eacr))
1143 mode_str = "pps";
1144 else if (etr_mode_is_etr(etr_eacr))
1145 mode_str = "etr";
1146 else
1147 mode_str = "local";
1148 return sprintf(buf, "%s\n", mode_str);
1149}
1150
1151static SYSDEV_CLASS_ATTR(stepping_mode, 0400, etr_stepping_mode_show, NULL);
1152
1153/*
1154 * ETR port attributes
1155 */
1156static inline struct etr_aib *etr_aib_from_dev(struct sys_device *dev)
1157{
1158 if (dev == &etr_port0_dev)
1159 return etr_port0_online ? &etr_port0 : NULL;
1160 else
1161 return etr_port1_online ? &etr_port1 : NULL;
1162}
1163
Andi Kleen4a0b2b42008-07-01 18:48:41 +02001164static ssize_t etr_online_show(struct sys_device *dev,
1165 struct sysdev_attribute *attr,
1166 char *buf)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001167{
1168 unsigned int online;
1169
1170 online = (dev == &etr_port0_dev) ? etr_port0_online : etr_port1_online;
1171 return sprintf(buf, "%i\n", online);
1172}
1173
1174static ssize_t etr_online_store(struct sys_device *dev,
Andi Kleen4a0b2b42008-07-01 18:48:41 +02001175 struct sysdev_attribute *attr,
1176 const char *buf, size_t count)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001177{
1178 unsigned int value;
1179
1180 value = simple_strtoul(buf, NULL, 0);
1181 if (value != 0 && value != 1)
1182 return -EINVAL;
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001183 if (!test_bit(CLOCK_SYNC_HAS_ETR, &clock_sync_flags))
1184 return -EOPNOTSUPP;
Martin Schwidefsky8283cb42009-03-26 15:24:21 +01001185 mutex_lock(&clock_sync_mutex);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001186 if (dev == &etr_port0_dev) {
1187 if (etr_port0_online == value)
Martin Schwidefsky8283cb42009-03-26 15:24:21 +01001188 goto out; /* Nothing to do. */
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001189 etr_port0_online = value;
Martin Schwidefsky8283cb42009-03-26 15:24:21 +01001190 if (etr_port0_online && etr_port1_online)
1191 set_bit(CLOCK_SYNC_ETR, &clock_sync_flags);
1192 else
1193 clear_bit(CLOCK_SYNC_ETR, &clock_sync_flags);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001194 set_bit(ETR_EVENT_PORT0_CHANGE, &etr_events);
Heiko Carstens750887d2008-12-25 13:38:37 +01001195 queue_work(time_sync_wq, &etr_work);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001196 } else {
1197 if (etr_port1_online == value)
Martin Schwidefsky8283cb42009-03-26 15:24:21 +01001198 goto out; /* Nothing to do. */
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001199 etr_port1_online = value;
Martin Schwidefsky8283cb42009-03-26 15:24:21 +01001200 if (etr_port0_online && etr_port1_online)
1201 set_bit(CLOCK_SYNC_ETR, &clock_sync_flags);
1202 else
1203 clear_bit(CLOCK_SYNC_ETR, &clock_sync_flags);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001204 set_bit(ETR_EVENT_PORT1_CHANGE, &etr_events);
Heiko Carstens750887d2008-12-25 13:38:37 +01001205 queue_work(time_sync_wq, &etr_work);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001206 }
Martin Schwidefsky8283cb42009-03-26 15:24:21 +01001207out:
1208 mutex_unlock(&clock_sync_mutex);
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001209 return count;
1210}
1211
1212static SYSDEV_ATTR(online, 0600, etr_online_show, etr_online_store);
1213
Andi Kleen4a0b2b42008-07-01 18:48:41 +02001214static ssize_t etr_stepping_control_show(struct sys_device *dev,
1215 struct sysdev_attribute *attr,
1216 char *buf)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001217{
1218 return sprintf(buf, "%i\n", (dev == &etr_port0_dev) ?
1219 etr_eacr.e0 : etr_eacr.e1);
1220}
1221
1222static SYSDEV_ATTR(stepping_control, 0400, etr_stepping_control_show, NULL);
1223
Andi Kleen4a0b2b42008-07-01 18:48:41 +02001224static ssize_t etr_mode_code_show(struct sys_device *dev,
1225 struct sysdev_attribute *attr, char *buf)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001226{
1227 if (!etr_port0_online && !etr_port1_online)
1228 /* Status word is not uptodate if both ports are offline. */
1229 return -ENODATA;
1230 return sprintf(buf, "%i\n", (dev == &etr_port0_dev) ?
1231 etr_port0.esw.psc0 : etr_port0.esw.psc1);
1232}
1233
1234static SYSDEV_ATTR(state_code, 0400, etr_mode_code_show, NULL);
1235
Andi Kleen4a0b2b42008-07-01 18:48:41 +02001236static ssize_t etr_untuned_show(struct sys_device *dev,
1237 struct sysdev_attribute *attr, char *buf)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001238{
1239 struct etr_aib *aib = etr_aib_from_dev(dev);
1240
1241 if (!aib || !aib->slsw.v1)
1242 return -ENODATA;
1243 return sprintf(buf, "%i\n", aib->edf1.u);
1244}
1245
1246static SYSDEV_ATTR(untuned, 0400, etr_untuned_show, NULL);
1247
Andi Kleen4a0b2b42008-07-01 18:48:41 +02001248static ssize_t etr_network_id_show(struct sys_device *dev,
1249 struct sysdev_attribute *attr, char *buf)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001250{
1251 struct etr_aib *aib = etr_aib_from_dev(dev);
1252
1253 if (!aib || !aib->slsw.v1)
1254 return -ENODATA;
1255 return sprintf(buf, "%i\n", aib->edf1.net_id);
1256}
1257
1258static SYSDEV_ATTR(network, 0400, etr_network_id_show, NULL);
1259
Andi Kleen4a0b2b42008-07-01 18:48:41 +02001260static ssize_t etr_id_show(struct sys_device *dev,
1261 struct sysdev_attribute *attr, char *buf)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001262{
1263 struct etr_aib *aib = etr_aib_from_dev(dev);
1264
1265 if (!aib || !aib->slsw.v1)
1266 return -ENODATA;
1267 return sprintf(buf, "%i\n", aib->edf1.etr_id);
1268}
1269
1270static SYSDEV_ATTR(id, 0400, etr_id_show, NULL);
1271
Andi Kleen4a0b2b42008-07-01 18:48:41 +02001272static ssize_t etr_port_number_show(struct sys_device *dev,
1273 struct sysdev_attribute *attr, char *buf)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001274{
1275 struct etr_aib *aib = etr_aib_from_dev(dev);
1276
1277 if (!aib || !aib->slsw.v1)
1278 return -ENODATA;
1279 return sprintf(buf, "%i\n", aib->edf1.etr_pn);
1280}
1281
1282static SYSDEV_ATTR(port, 0400, etr_port_number_show, NULL);
1283
Andi Kleen4a0b2b42008-07-01 18:48:41 +02001284static ssize_t etr_coupled_show(struct sys_device *dev,
1285 struct sysdev_attribute *attr, char *buf)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001286{
1287 struct etr_aib *aib = etr_aib_from_dev(dev);
1288
1289 if (!aib || !aib->slsw.v3)
1290 return -ENODATA;
1291 return sprintf(buf, "%i\n", aib->edf3.c);
1292}
1293
1294static SYSDEV_ATTR(coupled, 0400, etr_coupled_show, NULL);
1295
Andi Kleen4a0b2b42008-07-01 18:48:41 +02001296static ssize_t etr_local_time_show(struct sys_device *dev,
1297 struct sysdev_attribute *attr, char *buf)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001298{
1299 struct etr_aib *aib = etr_aib_from_dev(dev);
1300
1301 if (!aib || !aib->slsw.v3)
1302 return -ENODATA;
1303 return sprintf(buf, "%i\n", aib->edf3.blto);
1304}
1305
1306static SYSDEV_ATTR(local_time, 0400, etr_local_time_show, NULL);
1307
Andi Kleen4a0b2b42008-07-01 18:48:41 +02001308static ssize_t etr_utc_offset_show(struct sys_device *dev,
1309 struct sysdev_attribute *attr, char *buf)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +01001310{
1311 struct etr_aib *aib = etr_aib_from_dev(dev);
1312
1313 if (!aib || !aib->slsw.v3)
1314 return -ENODATA;
1315 return sprintf(buf, "%i\n", aib->edf3.buo);
1316}
1317
1318static SYSDEV_ATTR(utc_offset, 0400, etr_utc_offset_show, NULL);
1319
1320static struct sysdev_attribute *etr_port_attributes[] = {
1321 &attr_online,
1322 &attr_stepping_control,
1323 &attr_state_code,
1324 &attr_untuned,
1325 &attr_network,
1326 &attr_id,
1327 &attr_port,
1328 &attr_coupled,
1329 &attr_local_time,
1330 &attr_utc_offset,
1331 NULL
1332};
1333
1334static int __init etr_register_port(struct sys_device *dev)
1335{
1336 struct sysdev_attribute **attr;
1337 int rc;
1338
1339 rc = sysdev_register(dev);
1340 if (rc)
1341 goto out;
1342 for (attr = etr_port_attributes; *attr; attr++) {
1343 rc = sysdev_create_file(dev, *attr);
1344 if (rc)
1345 goto out_unreg;
1346 }
1347 return 0;
1348out_unreg:
1349 for (; attr >= etr_port_attributes; attr--)
1350 sysdev_remove_file(dev, *attr);
1351 sysdev_unregister(dev);
1352out:
1353 return rc;
1354}
1355
1356static void __init etr_unregister_port(struct sys_device *dev)
1357{
1358 struct sysdev_attribute **attr;
1359
1360 for (attr = etr_port_attributes; *attr; attr++)
1361 sysdev_remove_file(dev, *attr);
1362 sysdev_unregister(dev);
1363}
1364
1365static int __init etr_init_sysfs(void)
1366{
1367 int rc;
1368
1369 rc = sysdev_class_register(&etr_sysclass);
1370 if (rc)
1371 goto out;
1372 rc = sysdev_class_create_file(&etr_sysclass, &attr_stepping_port);
1373 if (rc)
1374 goto out_unreg_class;
1375 rc = sysdev_class_create_file(&etr_sysclass, &attr_stepping_mode);
1376 if (rc)
1377 goto out_remove_stepping_port;
1378 rc = etr_register_port(&etr_port0_dev);
1379 if (rc)
1380 goto out_remove_stepping_mode;
1381 rc = etr_register_port(&etr_port1_dev);
1382 if (rc)
1383 goto out_remove_port0;
1384 return 0;
1385
1386out_remove_port0:
1387 etr_unregister_port(&etr_port0_dev);
1388out_remove_stepping_mode:
1389 sysdev_class_remove_file(&etr_sysclass, &attr_stepping_mode);
1390out_remove_stepping_port:
1391 sysdev_class_remove_file(&etr_sysclass, &attr_stepping_port);
1392out_unreg_class:
1393 sysdev_class_unregister(&etr_sysclass);
1394out:
1395 return rc;
1396}
1397
1398device_initcall(etr_init_sysfs);
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001399
1400/*
1401 * Server Time Protocol (STP) code.
1402 */
1403static int stp_online;
1404static struct stp_sstpi stp_info;
1405static void *stp_page;
1406
1407static void stp_work_fn(struct work_struct *work);
Martin Schwidefsky0b3016b2008-12-25 13:38:38 +01001408static DEFINE_MUTEX(stp_work_mutex);
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001409static DECLARE_WORK(stp_work, stp_work_fn);
Martin Schwidefsky04362302009-04-14 15:36:19 +02001410static struct timer_list stp_timer;
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001411
1412static int __init early_parse_stp(char *p)
1413{
1414 if (strncmp(p, "off", 3) == 0)
1415 stp_online = 0;
1416 else if (strncmp(p, "on", 2) == 0)
1417 stp_online = 1;
1418 return 0;
1419}
1420early_param("stp", early_parse_stp);
1421
1422/*
1423 * Reset STP attachment.
1424 */
Heiko Carstens8f847002008-08-01 16:39:19 +02001425static void __init stp_reset(void)
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001426{
1427 int rc;
1428
Heiko Carstensd7d11042009-06-22 12:08:03 +02001429 stp_page = (void *) get_zeroed_page(GFP_ATOMIC);
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001430 rc = chsc_sstpc(stp_page, STP_OP_CTRL, 0x0000);
Martin Schwidefsky4a672cf2008-10-10 21:33:29 +02001431 if (rc == 0)
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001432 set_bit(CLOCK_SYNC_HAS_STP, &clock_sync_flags);
1433 else if (stp_online) {
Martin Schwidefskyfeab6502008-12-25 13:39:38 +01001434 pr_warning("The real or virtual hardware system does "
1435 "not provide an STP interface\n");
Heiko Carstensd7d11042009-06-22 12:08:03 +02001436 free_page((unsigned long) stp_page);
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001437 stp_page = NULL;
1438 stp_online = 0;
1439 }
1440}
1441
Martin Schwidefsky04362302009-04-14 15:36:19 +02001442static void stp_timeout(unsigned long dummy)
1443{
1444 queue_work(time_sync_wq, &stp_work);
1445}
1446
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001447static int __init stp_init(void)
1448{
Heiko Carstens750887d2008-12-25 13:38:37 +01001449 if (!test_bit(CLOCK_SYNC_HAS_STP, &clock_sync_flags))
1450 return 0;
Martin Schwidefsky04362302009-04-14 15:36:19 +02001451 setup_timer(&stp_timer, stp_timeout, 0UL);
Heiko Carstens750887d2008-12-25 13:38:37 +01001452 time_init_wq();
1453 if (!stp_online)
1454 return 0;
1455 queue_work(time_sync_wq, &stp_work);
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001456 return 0;
1457}
1458
1459arch_initcall(stp_init);
1460
1461/*
1462 * STP timing alert. There are three causes:
1463 * 1) timing status change
1464 * 2) link availability change
1465 * 3) time control parameter change
1466 * In all three cases we are only interested in the clock source state.
1467 * If a STP clock source is now available use it.
1468 */
1469static void stp_timing_alert(struct stp_irq_parm *intparm)
1470{
1471 if (intparm->tsc || intparm->lac || intparm->tcpc)
Heiko Carstens750887d2008-12-25 13:38:37 +01001472 queue_work(time_sync_wq, &stp_work);
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001473}
1474
1475/*
1476 * STP sync check machine check. This is called when the timing state
1477 * changes from the synchronized state to the unsynchronized state.
1478 * After a STP sync check the clock is not in sync. The machine check
1479 * is broadcasted to all cpus at the same time.
1480 */
1481void stp_sync_check(void)
1482{
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001483 disable_sync_clock(NULL);
Heiko Carstens750887d2008-12-25 13:38:37 +01001484 queue_work(time_sync_wq, &stp_work);
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001485}
1486
1487/*
1488 * STP island condition machine check. This is called when an attached
1489 * server attempts to communicate over an STP link and the servers
1490 * have matching CTN ids and have a valid stratum-1 configuration
1491 * but the configurations do not match.
1492 */
1493void stp_island_check(void)
1494{
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001495 disable_sync_clock(NULL);
Heiko Carstens750887d2008-12-25 13:38:37 +01001496 queue_work(time_sync_wq, &stp_work);
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001497}
1498
Heiko Carstens750887d2008-12-25 13:38:37 +01001499
1500static int stp_sync_clock(void *data)
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001501{
Heiko Carstens750887d2008-12-25 13:38:37 +01001502 static int first;
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001503 unsigned long long old_clock, delta;
Heiko Carstens750887d2008-12-25 13:38:37 +01001504 struct clock_sync_data *stp_sync;
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001505 int rc;
1506
Heiko Carstens750887d2008-12-25 13:38:37 +01001507 stp_sync = data;
1508
1509 if (xchg(&first, 1) == 1) {
1510 /* Slave */
1511 clock_sync_cpu(stp_sync);
1512 return 0;
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001513 }
1514
Heiko Carstens750887d2008-12-25 13:38:37 +01001515 /* Wait until all other cpus entered the sync function. */
1516 while (atomic_read(&stp_sync->cpus) != 0)
1517 cpu_relax();
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001518
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001519 enable_sync_clock();
1520
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001521 rc = 0;
1522 if (stp_info.todoff[0] || stp_info.todoff[1] ||
1523 stp_info.todoff[2] || stp_info.todoff[3] ||
1524 stp_info.tmd != 2) {
1525 old_clock = get_clock();
1526 rc = chsc_sstpc(stp_page, STP_OP_SYNC, 0);
1527 if (rc == 0) {
1528 delta = adjust_time(old_clock, get_clock(), 0);
1529 fixup_clock_comparator(delta);
1530 rc = chsc_sstpi(stp_page, &stp_info,
1531 sizeof(struct stp_sstpi));
1532 if (rc == 0 && stp_info.tmd != 2)
1533 rc = -EAGAIN;
1534 }
1535 }
1536 if (rc) {
1537 disable_sync_clock(NULL);
Heiko Carstens750887d2008-12-25 13:38:37 +01001538 stp_sync->in_sync = -EAGAIN;
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001539 } else
Heiko Carstens750887d2008-12-25 13:38:37 +01001540 stp_sync->in_sync = 1;
1541 xchg(&first, 0);
1542 return 0;
1543}
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001544
Heiko Carstens750887d2008-12-25 13:38:37 +01001545/*
1546 * STP work. Check for the STP state and take over the clock
1547 * synchronization if the STP clock source is usable.
1548 */
1549static void stp_work_fn(struct work_struct *work)
1550{
1551 struct clock_sync_data stp_sync;
1552 int rc;
1553
Martin Schwidefsky0b3016b2008-12-25 13:38:38 +01001554 /* prevent multiple execution. */
1555 mutex_lock(&stp_work_mutex);
1556
Heiko Carstens750887d2008-12-25 13:38:37 +01001557 if (!stp_online) {
1558 chsc_sstpc(stp_page, STP_OP_CTRL, 0x0000);
Martin Schwidefsky04362302009-04-14 15:36:19 +02001559 del_timer_sync(&stp_timer);
Martin Schwidefsky0b3016b2008-12-25 13:38:38 +01001560 goto out_unlock;
Heiko Carstens750887d2008-12-25 13:38:37 +01001561 }
1562
1563 rc = chsc_sstpc(stp_page, STP_OP_CTRL, 0xb0e0);
1564 if (rc)
Martin Schwidefsky0b3016b2008-12-25 13:38:38 +01001565 goto out_unlock;
Heiko Carstens750887d2008-12-25 13:38:37 +01001566
1567 rc = chsc_sstpi(stp_page, &stp_info, sizeof(struct stp_sstpi));
1568 if (rc || stp_info.c == 0)
Martin Schwidefsky0b3016b2008-12-25 13:38:38 +01001569 goto out_unlock;
Heiko Carstens750887d2008-12-25 13:38:37 +01001570
Martin Schwidefsky8283cb42009-03-26 15:24:21 +01001571 /* Skip synchronization if the clock is already in sync. */
1572 if (check_sync_clock())
1573 goto out_unlock;
1574
Heiko Carstens750887d2008-12-25 13:38:37 +01001575 memset(&stp_sync, 0, sizeof(stp_sync));
1576 get_online_cpus();
1577 atomic_set(&stp_sync.cpus, num_online_cpus() - 1);
1578 stop_machine(stp_sync_clock, &stp_sync, &cpu_online_map);
1579 put_online_cpus();
Martin Schwidefsky0b3016b2008-12-25 13:38:38 +01001580
Martin Schwidefsky04362302009-04-14 15:36:19 +02001581 if (!check_sync_clock())
1582 /*
1583 * There is a usable clock but the synchonization failed.
1584 * Retry after a second.
1585 */
1586 mod_timer(&stp_timer, jiffies + HZ);
1587
Martin Schwidefsky0b3016b2008-12-25 13:38:38 +01001588out_unlock:
1589 mutex_unlock(&stp_work_mutex);
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001590}
1591
1592/*
1593 * STP class sysfs interface functions
1594 */
1595static struct sysdev_class stp_sysclass = {
1596 .name = "stp",
1597};
1598
1599static ssize_t stp_ctn_id_show(struct sysdev_class *class, char *buf)
1600{
1601 if (!stp_online)
1602 return -ENODATA;
1603 return sprintf(buf, "%016llx\n",
1604 *(unsigned long long *) stp_info.ctnid);
1605}
1606
1607static SYSDEV_CLASS_ATTR(ctn_id, 0400, stp_ctn_id_show, NULL);
1608
1609static ssize_t stp_ctn_type_show(struct sysdev_class *class, char *buf)
1610{
1611 if (!stp_online)
1612 return -ENODATA;
1613 return sprintf(buf, "%i\n", stp_info.ctn);
1614}
1615
1616static SYSDEV_CLASS_ATTR(ctn_type, 0400, stp_ctn_type_show, NULL);
1617
1618static ssize_t stp_dst_offset_show(struct sysdev_class *class, char *buf)
1619{
1620 if (!stp_online || !(stp_info.vbits & 0x2000))
1621 return -ENODATA;
1622 return sprintf(buf, "%i\n", (int)(s16) stp_info.dsto);
1623}
1624
1625static SYSDEV_CLASS_ATTR(dst_offset, 0400, stp_dst_offset_show, NULL);
1626
1627static ssize_t stp_leap_seconds_show(struct sysdev_class *class, char *buf)
1628{
1629 if (!stp_online || !(stp_info.vbits & 0x8000))
1630 return -ENODATA;
1631 return sprintf(buf, "%i\n", (int)(s16) stp_info.leaps);
1632}
1633
1634static SYSDEV_CLASS_ATTR(leap_seconds, 0400, stp_leap_seconds_show, NULL);
1635
1636static ssize_t stp_stratum_show(struct sysdev_class *class, char *buf)
1637{
1638 if (!stp_online)
1639 return -ENODATA;
1640 return sprintf(buf, "%i\n", (int)(s16) stp_info.stratum);
1641}
1642
1643static SYSDEV_CLASS_ATTR(stratum, 0400, stp_stratum_show, NULL);
1644
1645static ssize_t stp_time_offset_show(struct sysdev_class *class, char *buf)
1646{
1647 if (!stp_online || !(stp_info.vbits & 0x0800))
1648 return -ENODATA;
1649 return sprintf(buf, "%i\n", (int) stp_info.tto);
1650}
1651
1652static SYSDEV_CLASS_ATTR(time_offset, 0400, stp_time_offset_show, NULL);
1653
1654static ssize_t stp_time_zone_offset_show(struct sysdev_class *class, char *buf)
1655{
1656 if (!stp_online || !(stp_info.vbits & 0x4000))
1657 return -ENODATA;
1658 return sprintf(buf, "%i\n", (int)(s16) stp_info.tzo);
1659}
1660
1661static SYSDEV_CLASS_ATTR(time_zone_offset, 0400,
1662 stp_time_zone_offset_show, NULL);
1663
1664static ssize_t stp_timing_mode_show(struct sysdev_class *class, char *buf)
1665{
1666 if (!stp_online)
1667 return -ENODATA;
1668 return sprintf(buf, "%i\n", stp_info.tmd);
1669}
1670
1671static SYSDEV_CLASS_ATTR(timing_mode, 0400, stp_timing_mode_show, NULL);
1672
1673static ssize_t stp_timing_state_show(struct sysdev_class *class, char *buf)
1674{
1675 if (!stp_online)
1676 return -ENODATA;
1677 return sprintf(buf, "%i\n", stp_info.tst);
1678}
1679
1680static SYSDEV_CLASS_ATTR(timing_state, 0400, stp_timing_state_show, NULL);
1681
1682static ssize_t stp_online_show(struct sysdev_class *class, char *buf)
1683{
1684 return sprintf(buf, "%i\n", stp_online);
1685}
1686
1687static ssize_t stp_online_store(struct sysdev_class *class,
1688 const char *buf, size_t count)
1689{
1690 unsigned int value;
1691
1692 value = simple_strtoul(buf, NULL, 0);
1693 if (value != 0 && value != 1)
1694 return -EINVAL;
1695 if (!test_bit(CLOCK_SYNC_HAS_STP, &clock_sync_flags))
1696 return -EOPNOTSUPP;
Martin Schwidefsky8283cb42009-03-26 15:24:21 +01001697 mutex_lock(&clock_sync_mutex);
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001698 stp_online = value;
Martin Schwidefsky8283cb42009-03-26 15:24:21 +01001699 if (stp_online)
1700 set_bit(CLOCK_SYNC_STP, &clock_sync_flags);
1701 else
1702 clear_bit(CLOCK_SYNC_STP, &clock_sync_flags);
Heiko Carstens750887d2008-12-25 13:38:37 +01001703 queue_work(time_sync_wq, &stp_work);
Martin Schwidefsky8283cb42009-03-26 15:24:21 +01001704 mutex_unlock(&clock_sync_mutex);
Martin Schwidefskyd2fec592008-07-14 09:58:56 +02001705 return count;
1706}
1707
1708/*
1709 * Can't use SYSDEV_CLASS_ATTR because the attribute should be named
1710 * stp/online but attr_online already exists in this file ..
1711 */
1712static struct sysdev_class_attribute attr_stp_online = {
1713 .attr = { .name = "online", .mode = 0600 },
1714 .show = stp_online_show,
1715 .store = stp_online_store,
1716};
1717
1718static struct sysdev_class_attribute *stp_attributes[] = {
1719 &attr_ctn_id,
1720 &attr_ctn_type,
1721 &attr_dst_offset,
1722 &attr_leap_seconds,
1723 &attr_stp_online,
1724 &attr_stratum,
1725 &attr_time_offset,
1726 &attr_time_zone_offset,
1727 &attr_timing_mode,
1728 &attr_timing_state,
1729 NULL
1730};
1731
1732static int __init stp_init_sysfs(void)
1733{
1734 struct sysdev_class_attribute **attr;
1735 int rc;
1736
1737 rc = sysdev_class_register(&stp_sysclass);
1738 if (rc)
1739 goto out;
1740 for (attr = stp_attributes; *attr; attr++) {
1741 rc = sysdev_class_create_file(&stp_sysclass, *attr);
1742 if (rc)
1743 goto out_unreg;
1744 }
1745 return 0;
1746out_unreg:
1747 for (; attr >= stp_attributes; attr--)
1748 sysdev_class_remove_file(&stp_sysclass, *attr);
1749 sysdev_class_unregister(&stp_sysclass);
1750out:
1751 return rc;
1752}
1753
1754device_initcall(stp_init_sysfs);