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Richard Cochrand94ba802011-04-22 12:03:08 +02001/*
2 * PTP 1588 clock support
3 *
4 * Copyright (C) 2010 OMICRON electronics GmbH
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
19 */
Jiri Benc7356a762013-04-12 00:56:15 +000020#include <linux/idr.h>
Richard Cochrand94ba802011-04-22 12:03:08 +020021#include <linux/device.h>
22#include <linux/err.h>
23#include <linux/init.h>
24#include <linux/kernel.h>
25#include <linux/module.h>
26#include <linux/posix-clock.h>
27#include <linux/pps_kernel.h>
28#include <linux/slab.h>
29#include <linux/syscalls.h>
30#include <linux/uaccess.h>
31
32#include "ptp_private.h"
33
34#define PTP_MAX_ALARMS 4
Richard Cochrand94ba802011-04-22 12:03:08 +020035#define PTP_PPS_DEFAULTS (PPS_CAPTUREASSERT | PPS_OFFSETASSERT)
36#define PTP_PPS_EVENT PPS_CAPTUREASSERT
37#define PTP_PPS_MODE (PTP_PPS_DEFAULTS | PPS_CANWAIT | PPS_TSFMT_TSPEC)
38
39/* private globals */
40
41static dev_t ptp_devt;
42static struct class *ptp_class;
43
Jiri Benc7356a762013-04-12 00:56:15 +000044static DEFINE_IDA(ptp_clocks_map);
Richard Cochrand94ba802011-04-22 12:03:08 +020045
46/* time stamp event queue operations */
47
48static inline int queue_free(struct timestamp_event_queue *q)
49{
50 return PTP_MAX_TIMESTAMPS - queue_cnt(q) - 1;
51}
52
53static void enqueue_external_timestamp(struct timestamp_event_queue *queue,
54 struct ptp_clock_event *src)
55{
56 struct ptp_extts_event *dst;
57 unsigned long flags;
58 s64 seconds;
59 u32 remainder;
60
61 seconds = div_u64_rem(src->timestamp, 1000000000, &remainder);
62
63 spin_lock_irqsave(&queue->lock, flags);
64
65 dst = &queue->buf[queue->tail];
66 dst->index = src->index;
67 dst->t.sec = seconds;
68 dst->t.nsec = remainder;
69
70 if (!queue_free(queue))
71 queue->head = (queue->head + 1) % PTP_MAX_TIMESTAMPS;
72
73 queue->tail = (queue->tail + 1) % PTP_MAX_TIMESTAMPS;
74
75 spin_unlock_irqrestore(&queue->lock, flags);
76}
77
78static s32 scaled_ppm_to_ppb(long ppm)
79{
80 /*
81 * The 'freq' field in the 'struct timex' is in parts per
82 * million, but with a 16 bit binary fractional field.
83 *
84 * We want to calculate
85 *
86 * ppb = scaled_ppm * 1000 / 2^16
87 *
88 * which simplifies to
89 *
90 * ppb = scaled_ppm * 125 / 2^13
91 */
92 s64 ppb = 1 + ppm;
93 ppb *= 125;
94 ppb >>= 13;
95 return (s32) ppb;
96}
97
98/* posix clock implementation */
99
100static int ptp_clock_getres(struct posix_clock *pc, struct timespec *tp)
101{
Thomas Gleixnerd68fb112011-12-05 21:16:06 +0100102 tp->tv_sec = 0;
103 tp->tv_nsec = 1;
104 return 0;
Richard Cochrand94ba802011-04-22 12:03:08 +0200105}
106
107static int ptp_clock_settime(struct posix_clock *pc, const struct timespec *tp)
108{
109 struct ptp_clock *ptp = container_of(pc, struct ptp_clock, clock);
Richard Cochrand7d38f52015-03-29 23:11:53 +0200110 struct timespec64 ts = timespec_to_timespec64(*tp);
111
112 return ptp->info->settime64 ?
113 ptp->info->settime64(ptp->info, &ts) :
114 ptp->info->settime(ptp->info, tp);
Richard Cochrand94ba802011-04-22 12:03:08 +0200115}
116
117static int ptp_clock_gettime(struct posix_clock *pc, struct timespec *tp)
118{
119 struct ptp_clock *ptp = container_of(pc, struct ptp_clock, clock);
Richard Cochrand7d38f52015-03-29 23:11:53 +0200120 struct timespec64 ts;
121 int err;
122
123 if (ptp->info->gettime64) {
124 err = ptp->info->gettime64(ptp->info, &ts);
125 if (!err)
126 *tp = timespec64_to_timespec(ts);
127 } else {
128 err = ptp->info->gettime(ptp->info, tp);
129 }
130
131 return err;
Richard Cochrand94ba802011-04-22 12:03:08 +0200132}
133
134static int ptp_clock_adjtime(struct posix_clock *pc, struct timex *tx)
135{
136 struct ptp_clock *ptp = container_of(pc, struct ptp_clock, clock);
137 struct ptp_clock_info *ops;
138 int err = -EOPNOTSUPP;
139
140 ops = ptp->info;
141
142 if (tx->modes & ADJ_SETOFFSET) {
143 struct timespec ts;
144 ktime_t kt;
145 s64 delta;
146
147 ts.tv_sec = tx->time.tv_sec;
148 ts.tv_nsec = tx->time.tv_usec;
149
150 if (!(tx->modes & ADJ_NANO))
151 ts.tv_nsec *= 1000;
152
153 if ((unsigned long) ts.tv_nsec >= NSEC_PER_SEC)
154 return -EINVAL;
155
156 kt = timespec_to_ktime(ts);
157 delta = ktime_to_ns(kt);
158 err = ops->adjtime(ops, delta);
Richard Cochrand94ba802011-04-22 12:03:08 +0200159 } else if (tx->modes & ADJ_FREQUENCY) {
Richard Cochrand39a7432014-04-27 15:01:27 +0200160 s32 ppb = scaled_ppm_to_ppb(tx->freq);
161 if (ppb > ops->max_adj || ppb < -ops->max_adj)
162 return -ERANGE;
163 err = ops->adjfreq(ops, ppb);
Richard Cochran39a8cbd2012-09-22 07:02:01 +0000164 ptp->dialed_frequency = tx->freq;
Richard Cochran5c35bad2012-09-22 07:02:02 +0000165 } else if (tx->modes == 0) {
166 tx->freq = ptp->dialed_frequency;
167 err = 0;
Richard Cochrand94ba802011-04-22 12:03:08 +0200168 }
169
170 return err;
171}
172
173static struct posix_clock_operations ptp_clock_ops = {
174 .owner = THIS_MODULE,
175 .clock_adjtime = ptp_clock_adjtime,
176 .clock_gettime = ptp_clock_gettime,
177 .clock_getres = ptp_clock_getres,
178 .clock_settime = ptp_clock_settime,
179 .ioctl = ptp_ioctl,
180 .open = ptp_open,
181 .poll = ptp_poll,
182 .read = ptp_read,
183};
184
185static void delete_ptp_clock(struct posix_clock *pc)
186{
187 struct ptp_clock *ptp = container_of(pc, struct ptp_clock, clock);
188
189 mutex_destroy(&ptp->tsevq_mux);
Richard Cochran60923152014-03-20 22:21:52 +0100190 mutex_destroy(&ptp->pincfg_mux);
Jiri Benc7356a762013-04-12 00:56:15 +0000191 ida_simple_remove(&ptp_clocks_map, ptp->index);
Richard Cochrand94ba802011-04-22 12:03:08 +0200192 kfree(ptp);
193}
194
195/* public interface */
196
Richard Cochran1ef76152012-09-22 07:02:03 +0000197struct ptp_clock *ptp_clock_register(struct ptp_clock_info *info,
198 struct device *parent)
Richard Cochrand94ba802011-04-22 12:03:08 +0200199{
200 struct ptp_clock *ptp;
201 int err = 0, index, major = MAJOR(ptp_devt);
202
203 if (info->n_alarm > PTP_MAX_ALARMS)
204 return ERR_PTR(-EINVAL);
205
Richard Cochrand94ba802011-04-22 12:03:08 +0200206 /* Initialize a clock structure. */
207 err = -ENOMEM;
208 ptp = kzalloc(sizeof(struct ptp_clock), GFP_KERNEL);
209 if (ptp == NULL)
210 goto no_memory;
211
Jiri Benc7356a762013-04-12 00:56:15 +0000212 index = ida_simple_get(&ptp_clocks_map, 0, MINORMASK + 1, GFP_KERNEL);
213 if (index < 0) {
214 err = index;
215 goto no_slot;
216 }
217
Richard Cochrand94ba802011-04-22 12:03:08 +0200218 ptp->clock.ops = ptp_clock_ops;
219 ptp->clock.release = delete_ptp_clock;
220 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
228 /* Create a new device in our class. */
Richard Cochran1ef76152012-09-22 07:02:03 +0000229 ptp->dev = device_create(ptp_class, parent, ptp->devid, ptp,
Richard Cochrand94ba802011-04-22 12:03:08 +0200230 "ptp%d", ptp->index);
231 if (IS_ERR(ptp->dev))
232 goto no_device;
233
234 dev_set_drvdata(ptp->dev, ptp);
235
236 err = ptp_populate_sysfs(ptp);
237 if (err)
238 goto no_sysfs;
239
240 /* Register a new PPS source. */
241 if (info->pps) {
242 struct pps_source_info pps;
243 memset(&pps, 0, sizeof(pps));
244 snprintf(pps.name, PPS_MAX_NAME_LEN, "ptp%d", index);
245 pps.mode = PTP_PPS_MODE;
246 pps.owner = info->owner;
247 ptp->pps_source = pps_register_source(&pps, PTP_PPS_DEFAULTS);
248 if (!ptp->pps_source) {
249 pr_err("failed to register pps source\n");
250 goto no_pps;
251 }
252 }
253
254 /* Create a posix clock. */
255 err = posix_clock_register(&ptp->clock, ptp->devid);
256 if (err) {
257 pr_err("failed to create posix clock\n");
258 goto no_clock;
259 }
260
Richard Cochrand94ba802011-04-22 12:03:08 +0200261 return ptp;
262
263no_clock:
264 if (ptp->pps_source)
265 pps_unregister_source(ptp->pps_source);
266no_pps:
267 ptp_cleanup_sysfs(ptp);
268no_sysfs:
269 device_destroy(ptp_class, ptp->devid);
270no_device:
271 mutex_destroy(&ptp->tsevq_mux);
Richard Cochran60923152014-03-20 22:21:52 +0100272 mutex_destroy(&ptp->pincfg_mux);
Jiri Benc7356a762013-04-12 00:56:15 +0000273no_slot:
Richard Cochrand94ba802011-04-22 12:03:08 +0200274 kfree(ptp);
275no_memory:
Richard Cochrand94ba802011-04-22 12:03:08 +0200276 return ERR_PTR(err);
277}
278EXPORT_SYMBOL(ptp_clock_register);
279
280int ptp_clock_unregister(struct ptp_clock *ptp)
281{
282 ptp->defunct = 1;
283 wake_up_interruptible(&ptp->tsev_wq);
284
285 /* Release the clock's resources. */
286 if (ptp->pps_source)
287 pps_unregister_source(ptp->pps_source);
288 ptp_cleanup_sysfs(ptp);
289 device_destroy(ptp_class, ptp->devid);
290
291 posix_clock_unregister(&ptp->clock);
292 return 0;
293}
294EXPORT_SYMBOL(ptp_clock_unregister);
295
296void ptp_clock_event(struct ptp_clock *ptp, struct ptp_clock_event *event)
297{
298 struct pps_event_time evt;
299
300 switch (event->type) {
301
302 case PTP_CLOCK_ALARM:
303 break;
304
305 case PTP_CLOCK_EXTTS:
306 enqueue_external_timestamp(&ptp->tsevq, event);
307 wake_up_interruptible(&ptp->tsev_wq);
308 break;
309
310 case PTP_CLOCK_PPS:
311 pps_get_ts(&evt);
312 pps_event(ptp->pps_source, &evt, PTP_PPS_EVENT, NULL);
313 break;
Ben Hutchings220a60a2012-09-03 11:34:58 +0100314
315 case PTP_CLOCK_PPSUSR:
316 pps_event(ptp->pps_source, &event->pps_times,
317 PTP_PPS_EVENT, NULL);
318 break;
Richard Cochrand94ba802011-04-22 12:03:08 +0200319 }
320}
321EXPORT_SYMBOL(ptp_clock_event);
322
Richard Cochran995a9092012-04-03 22:59:16 +0000323int ptp_clock_index(struct ptp_clock *ptp)
324{
325 return ptp->index;
326}
327EXPORT_SYMBOL(ptp_clock_index);
328
Richard Cochran60923152014-03-20 22:21:52 +0100329int ptp_find_pin(struct ptp_clock *ptp,
330 enum ptp_pin_function func, unsigned int chan)
331{
332 struct ptp_pin_desc *pin = NULL;
333 int i;
334
335 mutex_lock(&ptp->pincfg_mux);
336 for (i = 0; i < ptp->info->n_pins; i++) {
337 if (ptp->info->pin_config[i].func == func &&
338 ptp->info->pin_config[i].chan == chan) {
339 pin = &ptp->info->pin_config[i];
340 break;
341 }
342 }
343 mutex_unlock(&ptp->pincfg_mux);
344
345 return pin ? i : -1;
346}
347EXPORT_SYMBOL(ptp_find_pin);
348
Richard Cochrand94ba802011-04-22 12:03:08 +0200349/* module operations */
350
351static void __exit ptp_exit(void)
352{
353 class_destroy(ptp_class);
Jiri Benc7356a762013-04-12 00:56:15 +0000354 unregister_chrdev_region(ptp_devt, MINORMASK + 1);
355 ida_destroy(&ptp_clocks_map);
Richard Cochrand94ba802011-04-22 12:03:08 +0200356}
357
358static int __init ptp_init(void)
359{
360 int err;
361
362 ptp_class = class_create(THIS_MODULE, "ptp");
363 if (IS_ERR(ptp_class)) {
364 pr_err("ptp: failed to allocate class\n");
365 return PTR_ERR(ptp_class);
366 }
367
Jiri Benc7356a762013-04-12 00:56:15 +0000368 err = alloc_chrdev_region(&ptp_devt, 0, MINORMASK + 1, "ptp");
Richard Cochrand94ba802011-04-22 12:03:08 +0200369 if (err < 0) {
370 pr_err("ptp: failed to allocate device region\n");
371 goto no_region;
372 }
373
Greg Kroah-Hartman34991162013-07-24 15:05:20 -0700374 ptp_class->dev_groups = ptp_groups;
Richard Cochrand94ba802011-04-22 12:03:08 +0200375 pr_info("PTP clock support registered\n");
376 return 0;
377
378no_region:
379 class_destroy(ptp_class);
380 return err;
381}
382
383subsys_initcall(ptp_init);
384module_exit(ptp_exit);
385
Richard Cochranc2ec3ff2012-03-16 22:39:29 +0000386MODULE_AUTHOR("Richard Cochran <richardcochran@gmail.com>");
Richard Cochrand94ba802011-04-22 12:03:08 +0200387MODULE_DESCRIPTION("PTP clocks support");
388MODULE_LICENSE("GPL");