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Thomas Gleixner74ba9202019-05-20 09:19:02 +02001// SPDX-License-Identifier: GPL-2.0-or-later
Richard Cochrand94ba802011-04-22 12:03:08 +02002/*
3 * PTP 1588 clock support
4 *
5 * Copyright (C) 2010 OMICRON electronics GmbH
Richard Cochrand94ba802011-04-22 12:03:08 +02006 */
Jiri Benc7356a762013-04-12 00:56:15 +00007#include <linux/idr.h>
Richard Cochrand94ba802011-04-22 12:03:08 +02008#include <linux/device.h>
9#include <linux/err.h>
10#include <linux/init.h>
11#include <linux/kernel.h>
12#include <linux/module.h>
13#include <linux/posix-clock.h>
14#include <linux/pps_kernel.h>
15#include <linux/slab.h>
16#include <linux/syscalls.h>
17#include <linux/uaccess.h>
Grygorii Strashkod9535cb2017-07-28 17:30:02 -050018#include <uapi/linux/sched/types.h>
Richard Cochrand94ba802011-04-22 12:03:08 +020019
20#include "ptp_private.h"
21
22#define PTP_MAX_ALARMS 4
Richard Cochrand94ba802011-04-22 12:03:08 +020023#define PTP_PPS_DEFAULTS (PPS_CAPTUREASSERT | PPS_OFFSETASSERT)
24#define PTP_PPS_EVENT PPS_CAPTUREASSERT
25#define PTP_PPS_MODE (PTP_PPS_DEFAULTS | PPS_CANWAIT | PPS_TSFMT_TSPEC)
26
27/* private globals */
28
29static dev_t ptp_devt;
30static struct class *ptp_class;
31
Jiri Benc7356a762013-04-12 00:56:15 +000032static DEFINE_IDA(ptp_clocks_map);
Richard Cochrand94ba802011-04-22 12:03:08 +020033
34/* time stamp event queue operations */
35
36static inline int queue_free(struct timestamp_event_queue *q)
37{
38 return PTP_MAX_TIMESTAMPS - queue_cnt(q) - 1;
39}
40
41static void enqueue_external_timestamp(struct timestamp_event_queue *queue,
42 struct ptp_clock_event *src)
43{
44 struct ptp_extts_event *dst;
45 unsigned long flags;
46 s64 seconds;
47 u32 remainder;
48
49 seconds = div_u64_rem(src->timestamp, 1000000000, &remainder);
50
51 spin_lock_irqsave(&queue->lock, flags);
52
53 dst = &queue->buf[queue->tail];
54 dst->index = src->index;
55 dst->t.sec = seconds;
56 dst->t.nsec = remainder;
57
58 if (!queue_free(queue))
59 queue->head = (queue->head + 1) % PTP_MAX_TIMESTAMPS;
60
61 queue->tail = (queue->tail + 1) % PTP_MAX_TIMESTAMPS;
62
63 spin_unlock_irqrestore(&queue->lock, flags);
64}
65
Shalom Toledo4368dad2019-06-11 18:45:09 +030066s32 scaled_ppm_to_ppb(long ppm)
Richard Cochrand94ba802011-04-22 12:03:08 +020067{
68 /*
69 * The 'freq' field in the 'struct timex' is in parts per
70 * million, but with a 16 bit binary fractional field.
71 *
72 * We want to calculate
73 *
74 * ppb = scaled_ppm * 1000 / 2^16
75 *
76 * which simplifies to
77 *
78 * ppb = scaled_ppm * 125 / 2^13
79 */
80 s64 ppb = 1 + ppm;
81 ppb *= 125;
82 ppb >>= 13;
83 return (s32) ppb;
84}
Shalom Toledo4368dad2019-06-11 18:45:09 +030085EXPORT_SYMBOL(scaled_ppm_to_ppb);
Richard Cochrand94ba802011-04-22 12:03:08 +020086
87/* posix clock implementation */
88
Deepa Dinamanid340266e2017-03-26 12:04:13 -070089static int ptp_clock_getres(struct posix_clock *pc, struct timespec64 *tp)
Richard Cochrand94ba802011-04-22 12:03:08 +020090{
Thomas Gleixnerd68fb112011-12-05 21:16:06 +010091 tp->tv_sec = 0;
92 tp->tv_nsec = 1;
93 return 0;
Richard Cochrand94ba802011-04-22 12:03:08 +020094}
95
Deepa Dinamanid340266e2017-03-26 12:04:13 -070096static int ptp_clock_settime(struct posix_clock *pc, const struct timespec64 *tp)
Richard Cochrand94ba802011-04-22 12:03:08 +020097{
98 struct ptp_clock *ptp = container_of(pc, struct ptp_clock, clock);
Richard Cochrand7d38f52015-03-29 23:11:53 +020099
Deepa Dinamanid340266e2017-03-26 12:04:13 -0700100 return ptp->info->settime64(ptp->info, tp);
Richard Cochrand94ba802011-04-22 12:03:08 +0200101}
102
Deepa Dinamanid340266e2017-03-26 12:04:13 -0700103static int ptp_clock_gettime(struct posix_clock *pc, struct timespec64 *tp)
Richard Cochrand94ba802011-04-22 12:03:08 +0200104{
105 struct ptp_clock *ptp = container_of(pc, struct ptp_clock, clock);
Richard Cochrand7d38f52015-03-29 23:11:53 +0200106 int err;
107
Miroslav Lichvar916444d2018-11-09 11:14:45 +0100108 if (ptp->info->gettimex64)
109 err = ptp->info->gettimex64(ptp->info, tp, NULL);
110 else
111 err = ptp->info->gettime64(ptp->info, tp);
Richard Cochrand7d38f52015-03-29 23:11:53 +0200112 return err;
Richard Cochrand94ba802011-04-22 12:03:08 +0200113}
114
Deepa Dinamaniead25412018-07-02 22:44:21 -0700115static int ptp_clock_adjtime(struct posix_clock *pc, struct __kernel_timex *tx)
Richard Cochrand94ba802011-04-22 12:03:08 +0200116{
117 struct ptp_clock *ptp = container_of(pc, struct ptp_clock, clock);
118 struct ptp_clock_info *ops;
119 int err = -EOPNOTSUPP;
120
121 ops = ptp->info;
122
123 if (tx->modes & ADJ_SETOFFSET) {
Deepa Dinamanid340266e2017-03-26 12:04:13 -0700124 struct timespec64 ts;
Richard Cochrand94ba802011-04-22 12:03:08 +0200125 ktime_t kt;
126 s64 delta;
127
128 ts.tv_sec = tx->time.tv_sec;
129 ts.tv_nsec = tx->time.tv_usec;
130
131 if (!(tx->modes & ADJ_NANO))
132 ts.tv_nsec *= 1000;
133
134 if ((unsigned long) ts.tv_nsec >= NSEC_PER_SEC)
135 return -EINVAL;
136
Deepa Dinamanid340266e2017-03-26 12:04:13 -0700137 kt = timespec64_to_ktime(ts);
Richard Cochrand94ba802011-04-22 12:03:08 +0200138 delta = ktime_to_ns(kt);
139 err = ops->adjtime(ops, delta);
Richard Cochrand94ba802011-04-22 12:03:08 +0200140 } else if (tx->modes & ADJ_FREQUENCY) {
Richard Cochrand39a7432014-04-27 15:01:27 +0200141 s32 ppb = scaled_ppm_to_ppb(tx->freq);
142 if (ppb > ops->max_adj || ppb < -ops->max_adj)
143 return -ERANGE;
Richard Cochrand8d26352016-11-08 22:49:16 +0100144 if (ops->adjfine)
145 err = ops->adjfine(ops, tx->freq);
146 else
147 err = ops->adjfreq(ops, ppb);
Richard Cochran39a8cbd2012-09-22 07:02:01 +0000148 ptp->dialed_frequency = tx->freq;
Vincent Cheng184ecc92020-05-01 23:35:36 -0400149 } else if (tx->modes & ADJ_OFFSET) {
150 if (ops->adjphase)
151 err = ops->adjphase(ops, tx->offset);
Richard Cochran5c35bad2012-09-22 07:02:02 +0000152 } else if (tx->modes == 0) {
153 tx->freq = ptp->dialed_frequency;
154 err = 0;
Richard Cochrand94ba802011-04-22 12:03:08 +0200155 }
156
157 return err;
158}
159
160static struct posix_clock_operations ptp_clock_ops = {
161 .owner = THIS_MODULE,
162 .clock_adjtime = ptp_clock_adjtime,
163 .clock_gettime = ptp_clock_gettime,
164 .clock_getres = ptp_clock_getres,
165 .clock_settime = ptp_clock_settime,
166 .ioctl = ptp_ioctl,
167 .open = ptp_open,
168 .poll = ptp_poll,
169 .read = ptp_read,
170};
171
Vladis Dronova33121e2019-12-27 03:26:27 +0100172static void ptp_clock_release(struct device *dev)
Richard Cochrand94ba802011-04-22 12:03:08 +0200173{
Vladis Dronova33121e2019-12-27 03:26:27 +0100174 struct ptp_clock *ptp = container_of(dev, struct ptp_clock, dev);
Richard Cochrand94ba802011-04-22 12:03:08 +0200175
Vladis Dronov75718582020-01-13 14:00:09 +0100176 ptp_cleanup_pin_groups(ptp);
Richard Cochrand94ba802011-04-22 12:03:08 +0200177 mutex_destroy(&ptp->tsevq_mux);
Richard Cochran60923152014-03-20 22:21:52 +0100178 mutex_destroy(&ptp->pincfg_mux);
Jiri Benc7356a762013-04-12 00:56:15 +0000179 ida_simple_remove(&ptp_clocks_map, ptp->index);
Richard Cochrand94ba802011-04-22 12:03:08 +0200180 kfree(ptp);
181}
182
Grygorii Strashkod9535cb2017-07-28 17:30:02 -0500183static void ptp_aux_kworker(struct kthread_work *work)
184{
185 struct ptp_clock *ptp = container_of(work, struct ptp_clock,
186 aux_work.work);
187 struct ptp_clock_info *info = ptp->info;
188 long delay;
189
190 delay = info->do_aux_work(info);
191
192 if (delay >= 0)
193 kthread_queue_delayed_work(ptp->kworker, &ptp->aux_work, delay);
194}
195
Richard Cochrand94ba802011-04-22 12:03:08 +0200196/* public interface */
197
Richard Cochran1ef76152012-09-22 07:02:03 +0000198struct ptp_clock *ptp_clock_register(struct ptp_clock_info *info,
199 struct device *parent)
Richard Cochrand94ba802011-04-22 12:03:08 +0200200{
201 struct ptp_clock *ptp;
202 int err = 0, index, major = MAJOR(ptp_devt);
203
204 if (info->n_alarm > PTP_MAX_ALARMS)
205 return ERR_PTR(-EINVAL);
206
Richard Cochrand94ba802011-04-22 12:03:08 +0200207 /* Initialize a clock structure. */
208 err = -ENOMEM;
209 ptp = kzalloc(sizeof(struct ptp_clock), GFP_KERNEL);
210 if (ptp == NULL)
211 goto no_memory;
212
Jiri Benc7356a762013-04-12 00:56:15 +0000213 index = ida_simple_get(&ptp_clocks_map, 0, MINORMASK + 1, GFP_KERNEL);
214 if (index < 0) {
215 err = index;
216 goto no_slot;
217 }
218
Richard Cochrand94ba802011-04-22 12:03:08 +0200219 ptp->clock.ops = ptp_clock_ops;
Richard Cochrand94ba802011-04-22 12:03:08 +0200220 ptp->info = info;
221 ptp->devid = MKDEV(major, index);
222 ptp->index = index;
223 spin_lock_init(&ptp->tsevq.lock);
224 mutex_init(&ptp->tsevq_mux);
Richard Cochran60923152014-03-20 22:21:52 +0100225 mutex_init(&ptp->pincfg_mux);
Richard Cochrand94ba802011-04-22 12:03:08 +0200226 init_waitqueue_head(&ptp->tsev_wq);
227
Grygorii Strashkod9535cb2017-07-28 17:30:02 -0500228 if (ptp->info->do_aux_work) {
Grygorii Strashkod9535cb2017-07-28 17:30:02 -0500229 kthread_init_delayed_work(&ptp->aux_work, ptp_aux_kworker);
Rasmus Villemoes822c5f72018-10-26 23:22:59 +0200230 ptp->kworker = kthread_create_worker(0, "ptp%d", ptp->index);
Grygorii Strashkod9535cb2017-07-28 17:30:02 -0500231 if (IS_ERR(ptp->kworker)) {
232 err = PTR_ERR(ptp->kworker);
233 pr_err("failed to create ptp aux_worker %d\n", err);
234 goto kworker_err;
235 }
236 }
237
Dmitry Torokhov85a66e52017-02-14 10:23:34 -0800238 err = ptp_populate_pin_groups(ptp);
239 if (err)
240 goto no_pin_groups;
241
Richard Cochrand94ba802011-04-22 12:03:08 +0200242 /* Register a new PPS source. */
243 if (info->pps) {
244 struct pps_source_info pps;
245 memset(&pps, 0, sizeof(pps));
246 snprintf(pps.name, PPS_MAX_NAME_LEN, "ptp%d", index);
247 pps.mode = PTP_PPS_MODE;
248 pps.owner = info->owner;
249 ptp->pps_source = pps_register_source(&pps, PTP_PPS_DEFAULTS);
Dan Carpenterb9d93592018-12-07 09:00:46 +0300250 if (IS_ERR(ptp->pps_source)) {
251 err = PTR_ERR(ptp->pps_source);
Richard Cochrand94ba802011-04-22 12:03:08 +0200252 pr_err("failed to register pps source\n");
253 goto no_pps;
254 }
255 }
256
Vladis Dronova33121e2019-12-27 03:26:27 +0100257 /* Initialize a new device of our class in our clock structure. */
258 device_initialize(&ptp->dev);
259 ptp->dev.devt = ptp->devid;
260 ptp->dev.class = ptp_class;
261 ptp->dev.parent = parent;
262 ptp->dev.groups = ptp->pin_attr_groups;
263 ptp->dev.release = ptp_clock_release;
264 dev_set_drvdata(&ptp->dev, ptp);
265 dev_set_name(&ptp->dev, "ptp%d", ptp->index);
266
267 /* Create a posix clock and link it to the device. */
268 err = posix_clock_register(&ptp->clock, &ptp->dev);
Richard Cochrand94ba802011-04-22 12:03:08 +0200269 if (err) {
270 pr_err("failed to create posix clock\n");
271 goto no_clock;
272 }
273
Richard Cochrand94ba802011-04-22 12:03:08 +0200274 return ptp;
275
276no_clock:
277 if (ptp->pps_source)
278 pps_unregister_source(ptp->pps_source);
279no_pps:
Dmitry Torokhov85a66e52017-02-14 10:23:34 -0800280 ptp_cleanup_pin_groups(ptp);
281no_pin_groups:
Grygorii Strashkod9535cb2017-07-28 17:30:02 -0500282 if (ptp->kworker)
283 kthread_destroy_worker(ptp->kworker);
284kworker_err:
Richard Cochrand94ba802011-04-22 12:03:08 +0200285 mutex_destroy(&ptp->tsevq_mux);
Richard Cochran60923152014-03-20 22:21:52 +0100286 mutex_destroy(&ptp->pincfg_mux);
Christophe Jailletb9118b72016-10-02 09:04:16 +0200287 ida_simple_remove(&ptp_clocks_map, index);
Jiri Benc7356a762013-04-12 00:56:15 +0000288no_slot:
Richard Cochrand94ba802011-04-22 12:03:08 +0200289 kfree(ptp);
290no_memory:
Richard Cochrand94ba802011-04-22 12:03:08 +0200291 return ERR_PTR(err);
292}
293EXPORT_SYMBOL(ptp_clock_register);
294
295int ptp_clock_unregister(struct ptp_clock *ptp)
296{
297 ptp->defunct = 1;
298 wake_up_interruptible(&ptp->tsev_wq);
299
Grygorii Strashkod9535cb2017-07-28 17:30:02 -0500300 if (ptp->kworker) {
301 kthread_cancel_delayed_work_sync(&ptp->aux_work);
302 kthread_destroy_worker(ptp->kworker);
303 }
304
Richard Cochrand94ba802011-04-22 12:03:08 +0200305 /* Release the clock's resources. */
306 if (ptp->pps_source)
307 pps_unregister_source(ptp->pps_source);
Dmitry Torokhov85a66e52017-02-14 10:23:34 -0800308
Richard Cochrand94ba802011-04-22 12:03:08 +0200309 posix_clock_unregister(&ptp->clock);
Vladis Dronov75718582020-01-13 14:00:09 +0100310
Richard Cochrand94ba802011-04-22 12:03:08 +0200311 return 0;
312}
313EXPORT_SYMBOL(ptp_clock_unregister);
314
315void ptp_clock_event(struct ptp_clock *ptp, struct ptp_clock_event *event)
316{
317 struct pps_event_time evt;
318
319 switch (event->type) {
320
321 case PTP_CLOCK_ALARM:
322 break;
323
324 case PTP_CLOCK_EXTTS:
325 enqueue_external_timestamp(&ptp->tsevq, event);
326 wake_up_interruptible(&ptp->tsev_wq);
327 break;
328
329 case PTP_CLOCK_PPS:
330 pps_get_ts(&evt);
331 pps_event(ptp->pps_source, &evt, PTP_PPS_EVENT, NULL);
332 break;
Ben Hutchings220a60a2012-09-03 11:34:58 +0100333
334 case PTP_CLOCK_PPSUSR:
335 pps_event(ptp->pps_source, &event->pps_times,
336 PTP_PPS_EVENT, NULL);
337 break;
Richard Cochrand94ba802011-04-22 12:03:08 +0200338 }
339}
340EXPORT_SYMBOL(ptp_clock_event);
341
Richard Cochran995a9092012-04-03 22:59:16 +0000342int ptp_clock_index(struct ptp_clock *ptp)
343{
344 return ptp->index;
345}
346EXPORT_SYMBOL(ptp_clock_index);
347
Richard Cochran60923152014-03-20 22:21:52 +0100348int ptp_find_pin(struct ptp_clock *ptp,
349 enum ptp_pin_function func, unsigned int chan)
350{
351 struct ptp_pin_desc *pin = NULL;
352 int i;
353
Richard Cochran60923152014-03-20 22:21:52 +0100354 for (i = 0; i < ptp->info->n_pins; i++) {
355 if (ptp->info->pin_config[i].func == func &&
356 ptp->info->pin_config[i].chan == chan) {
357 pin = &ptp->info->pin_config[i];
358 break;
359 }
360 }
Richard Cochran60923152014-03-20 22:21:52 +0100361
362 return pin ? i : -1;
363}
364EXPORT_SYMBOL(ptp_find_pin);
365
Richard Cochran62582a72020-03-29 07:55:10 -0700366int ptp_find_pin_unlocked(struct ptp_clock *ptp,
367 enum ptp_pin_function func, unsigned int chan)
368{
369 int result;
370
371 mutex_lock(&ptp->pincfg_mux);
372
373 result = ptp_find_pin(ptp, func, chan);
374
375 mutex_unlock(&ptp->pincfg_mux);
376
377 return result;
378}
379EXPORT_SYMBOL(ptp_find_pin_unlocked);
380
Grygorii Strashkod9535cb2017-07-28 17:30:02 -0500381int ptp_schedule_worker(struct ptp_clock *ptp, unsigned long delay)
382{
383 return kthread_mod_delayed_work(ptp->kworker, &ptp->aux_work, delay);
384}
385EXPORT_SYMBOL(ptp_schedule_worker);
386
Vladimir Oltean544fed42019-12-27 15:02:28 +0200387void ptp_cancel_worker_sync(struct ptp_clock *ptp)
388{
389 kthread_cancel_delayed_work_sync(&ptp->aux_work);
390}
391EXPORT_SYMBOL(ptp_cancel_worker_sync);
392
Richard Cochrand94ba802011-04-22 12:03:08 +0200393/* module operations */
394
395static void __exit ptp_exit(void)
396{
397 class_destroy(ptp_class);
Jiri Benc7356a762013-04-12 00:56:15 +0000398 unregister_chrdev_region(ptp_devt, MINORMASK + 1);
399 ida_destroy(&ptp_clocks_map);
Richard Cochrand94ba802011-04-22 12:03:08 +0200400}
401
402static int __init ptp_init(void)
403{
404 int err;
405
406 ptp_class = class_create(THIS_MODULE, "ptp");
407 if (IS_ERR(ptp_class)) {
408 pr_err("ptp: failed to allocate class\n");
409 return PTR_ERR(ptp_class);
410 }
411
Jiri Benc7356a762013-04-12 00:56:15 +0000412 err = alloc_chrdev_region(&ptp_devt, 0, MINORMASK + 1, "ptp");
Richard Cochrand94ba802011-04-22 12:03:08 +0200413 if (err < 0) {
414 pr_err("ptp: failed to allocate device region\n");
415 goto no_region;
416 }
417
Greg Kroah-Hartman34991162013-07-24 15:05:20 -0700418 ptp_class->dev_groups = ptp_groups;
Richard Cochrand94ba802011-04-22 12:03:08 +0200419 pr_info("PTP clock support registered\n");
420 return 0;
421
422no_region:
423 class_destroy(ptp_class);
424 return err;
425}
426
427subsys_initcall(ptp_init);
428module_exit(ptp_exit);
429
Richard Cochranc2ec3ff2012-03-16 22:39:29 +0000430MODULE_AUTHOR("Richard Cochran <richardcochran@gmail.com>");
Richard Cochrand94ba802011-04-22 12:03:08 +0200431MODULE_DESCRIPTION("PTP clocks support");
432MODULE_LICENSE("GPL");