1 // SPDX-License-Identifier: GPL-2.0-or-later
8 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
10 #include <linux/kernel.h>
11 #include <linux/module.h>
12 #include <linux/init.h>
13 #include <linux/sched.h>
14 #include <linux/uaccess.h>
15 #include <linux/idr.h>
16 #include <linux/mutex.h>
17 #include <linux/cdev.h>
18 #include <linux/poll.h>
19 #include <linux/pps_kernel.h>
20 #include <linux/slab.h>
28 static dev_t pps_devt;
29 static struct class *pps_class;
31 static DEFINE_MUTEX(pps_idr_lock);
32 static DEFINE_IDR(pps_idr);
38 static __poll_t pps_cdev_poll(struct file *file, poll_table *wait)
40 struct pps_device *pps = file->private_data;
42 poll_wait(file, &pps->queue, wait);
44 return EPOLLIN | EPOLLRDNORM;
47 static int pps_cdev_fasync(int fd, struct file *file, int on)
49 struct pps_device *pps = file->private_data;
50 return fasync_helper(fd, file, on, &pps->async_queue);
53 static int pps_cdev_pps_fetch(struct pps_device *pps, struct pps_fdata *fdata)
55 unsigned int ev = pps->last_ev;
58 /* Manage the timeout */
59 if (fdata->timeout.flags & PPS_TIME_INVALID)
60 err = wait_event_interruptible(pps->queue,
65 dev_dbg(pps->dev, "timeout %lld.%09d\n",
66 (long long) fdata->timeout.sec,
68 ticks = fdata->timeout.sec * HZ;
69 ticks += fdata->timeout.nsec / (NSEC_PER_SEC / HZ);
72 err = wait_event_interruptible_timeout(
81 /* Check for pending signals */
82 if (err == -ERESTARTSYS) {
83 dev_dbg(pps->dev, "pending signal caught\n");
90 static long pps_cdev_ioctl(struct file *file,
91 unsigned int cmd, unsigned long arg)
93 struct pps_device *pps = file->private_data;
94 struct pps_kparams params;
95 void __user *uarg = (void __user *) arg;
96 int __user *iuarg = (int __user *) arg;
101 dev_dbg(pps->dev, "PPS_GETPARAMS\n");
103 spin_lock_irq(&pps->lock);
105 /* Get the current parameters */
106 params = pps->params;
108 spin_unlock_irq(&pps->lock);
110 err = copy_to_user(uarg, ¶ms, sizeof(struct pps_kparams));
117 dev_dbg(pps->dev, "PPS_SETPARAMS\n");
119 /* Check the capabilities */
120 if (!capable(CAP_SYS_TIME))
123 err = copy_from_user(¶ms, uarg, sizeof(struct pps_kparams));
126 if (!(params.mode & (PPS_CAPTUREASSERT | PPS_CAPTURECLEAR))) {
127 dev_dbg(pps->dev, "capture mode unspecified (%x)\n",
132 /* Check for supported capabilities */
133 if ((params.mode & ~pps->info.mode) != 0) {
134 dev_dbg(pps->dev, "unsupported capabilities (%x)\n",
139 spin_lock_irq(&pps->lock);
141 /* Save the new parameters */
142 pps->params = params;
144 /* Restore the read only parameters */
145 if ((params.mode & (PPS_TSFMT_TSPEC | PPS_TSFMT_NTPFP)) == 0) {
146 /* section 3.3 of RFC 2783 interpreted */
147 dev_dbg(pps->dev, "time format unspecified (%x)\n",
149 pps->params.mode |= PPS_TSFMT_TSPEC;
151 if (pps->info.mode & PPS_CANWAIT)
152 pps->params.mode |= PPS_CANWAIT;
153 pps->params.api_version = PPS_API_VERS;
155 spin_unlock_irq(&pps->lock);
160 dev_dbg(pps->dev, "PPS_GETCAP\n");
162 err = put_user(pps->info.mode, iuarg);
169 struct pps_fdata fdata;
171 dev_dbg(pps->dev, "PPS_FETCH\n");
173 err = copy_from_user(&fdata, uarg, sizeof(struct pps_fdata));
177 err = pps_cdev_pps_fetch(pps, &fdata);
181 /* Return the fetched timestamp */
182 spin_lock_irq(&pps->lock);
184 fdata.info.assert_sequence = pps->assert_sequence;
185 fdata.info.clear_sequence = pps->clear_sequence;
186 fdata.info.assert_tu = pps->assert_tu;
187 fdata.info.clear_tu = pps->clear_tu;
188 fdata.info.current_mode = pps->current_mode;
190 spin_unlock_irq(&pps->lock);
192 err = copy_to_user(uarg, &fdata, sizeof(struct pps_fdata));
199 struct pps_bind_args bind_args;
201 dev_dbg(pps->dev, "PPS_KC_BIND\n");
203 /* Check the capabilities */
204 if (!capable(CAP_SYS_TIME))
207 if (copy_from_user(&bind_args, uarg,
208 sizeof(struct pps_bind_args)))
211 /* Check for supported capabilities */
212 if ((bind_args.edge & ~pps->info.mode) != 0) {
213 dev_err(pps->dev, "unsupported capabilities (%x)\n",
218 /* Validate parameters roughly */
219 if (bind_args.tsformat != PPS_TSFMT_TSPEC ||
220 (bind_args.edge & ~PPS_CAPTUREBOTH) != 0 ||
221 bind_args.consumer != PPS_KC_HARDPPS) {
222 dev_err(pps->dev, "invalid kernel consumer bind"
223 " parameters (%x)\n", bind_args.edge);
227 err = pps_kc_bind(pps, &bind_args);
241 static long pps_cdev_compat_ioctl(struct file *file,
242 unsigned int cmd, unsigned long arg)
244 struct pps_device *pps = file->private_data;
245 void __user *uarg = (void __user *) arg;
247 cmd = _IOC(_IOC_DIR(cmd), _IOC_TYPE(cmd), _IOC_NR(cmd), sizeof(void *));
249 if (cmd == PPS_FETCH) {
250 struct pps_fdata_compat compat;
251 struct pps_fdata fdata;
254 dev_dbg(pps->dev, "PPS_FETCH\n");
256 err = copy_from_user(&compat, uarg, sizeof(struct pps_fdata_compat));
260 memcpy(&fdata.timeout, &compat.timeout,
261 sizeof(struct pps_ktime_compat));
263 err = pps_cdev_pps_fetch(pps, &fdata);
267 /* Return the fetched timestamp */
268 spin_lock_irq(&pps->lock);
270 compat.info.assert_sequence = pps->assert_sequence;
271 compat.info.clear_sequence = pps->clear_sequence;
272 compat.info.current_mode = pps->current_mode;
274 memcpy(&compat.info.assert_tu, &pps->assert_tu,
275 sizeof(struct pps_ktime_compat));
276 memcpy(&compat.info.clear_tu, &pps->clear_tu,
277 sizeof(struct pps_ktime_compat));
279 spin_unlock_irq(&pps->lock);
281 return copy_to_user(uarg, &compat,
282 sizeof(struct pps_fdata_compat)) ? -EFAULT : 0;
285 return pps_cdev_ioctl(file, cmd, arg);
288 #define pps_cdev_compat_ioctl NULL
291 static int pps_cdev_open(struct inode *inode, struct file *file)
293 struct pps_device *pps = container_of(inode->i_cdev,
294 struct pps_device, cdev);
295 file->private_data = pps;
296 kobject_get(&pps->dev->kobj);
300 static int pps_cdev_release(struct inode *inode, struct file *file)
302 struct pps_device *pps = container_of(inode->i_cdev,
303 struct pps_device, cdev);
304 kobject_put(&pps->dev->kobj);
312 static const struct file_operations pps_cdev_fops = {
313 .owner = THIS_MODULE,
315 .poll = pps_cdev_poll,
316 .fasync = pps_cdev_fasync,
317 .compat_ioctl = pps_cdev_compat_ioctl,
318 .unlocked_ioctl = pps_cdev_ioctl,
319 .open = pps_cdev_open,
320 .release = pps_cdev_release,
323 static void pps_device_destruct(struct device *dev)
325 struct pps_device *pps = dev_get_drvdata(dev);
327 cdev_del(&pps->cdev);
329 /* Now we can release the ID for re-use */
330 pr_debug("deallocating pps%d\n", pps->id);
331 mutex_lock(&pps_idr_lock);
332 idr_remove(&pps_idr, pps->id);
333 mutex_unlock(&pps_idr_lock);
339 int pps_register_cdev(struct pps_device *pps)
344 mutex_lock(&pps_idr_lock);
346 * Get new ID for the new PPS source. After idr_alloc() calling
347 * the new source will be freely available into the kernel.
349 err = idr_alloc(&pps_idr, pps, 0, PPS_MAX_SOURCES, GFP_KERNEL);
351 if (err == -ENOSPC) {
352 pr_err("%s: too many PPS sources in the system\n",
359 mutex_unlock(&pps_idr_lock);
361 devt = MKDEV(MAJOR(pps_devt), pps->id);
363 cdev_init(&pps->cdev, &pps_cdev_fops);
364 pps->cdev.owner = pps->info.owner;
366 err = cdev_add(&pps->cdev, devt, 1);
368 pr_err("%s: failed to add char device %d:%d\n",
369 pps->info.name, MAJOR(pps_devt), pps->id);
372 pps->dev = device_create(pps_class, pps->info.dev, devt, pps,
374 if (IS_ERR(pps->dev)) {
375 err = PTR_ERR(pps->dev);
379 /* Override the release function with our own */
380 pps->dev->release = pps_device_destruct;
382 pr_debug("source %s got cdev (%d:%d)\n", pps->info.name,
383 MAJOR(pps_devt), pps->id);
388 cdev_del(&pps->cdev);
391 mutex_lock(&pps_idr_lock);
392 idr_remove(&pps_idr, pps->id);
394 mutex_unlock(&pps_idr_lock);
398 void pps_unregister_cdev(struct pps_device *pps)
400 pr_debug("unregistering pps%d\n", pps->id);
401 pps->lookup_cookie = NULL;
402 device_destroy(pps_class, pps->dev->devt);
406 * Look up a pps device by magic cookie.
407 * The cookie is usually a pointer to some enclosing device, but this
408 * code doesn't care; you should never be dereferencing it.
410 * This is a bit of a kludge that is currently used only by the PPS
411 * serial line discipline. It may need to be tweaked when a second user
414 * There is no function interface for setting the lookup_cookie field.
415 * It's initialized to NULL when the pps device is created, and if a
416 * client wants to use it, just fill it in afterward.
418 * The cookie is automatically set to NULL in pps_unregister_source()
419 * so that it will not be used again, even if the pps device cannot
420 * be removed from the idr due to pending references holding the minor
423 struct pps_device *pps_lookup_dev(void const *cookie)
425 struct pps_device *pps;
429 idr_for_each_entry(&pps_idr, pps, id)
430 if (cookie == pps->lookup_cookie)
435 EXPORT_SYMBOL(pps_lookup_dev);
441 static void __exit pps_exit(void)
443 class_destroy(pps_class);
444 unregister_chrdev_region(pps_devt, PPS_MAX_SOURCES);
447 static int __init pps_init(void)
451 pps_class = class_create(THIS_MODULE, "pps");
452 if (IS_ERR(pps_class)) {
453 pr_err("failed to allocate class\n");
454 return PTR_ERR(pps_class);
456 pps_class->dev_groups = pps_groups;
458 err = alloc_chrdev_region(&pps_devt, 0, PPS_MAX_SOURCES, "pps");
460 pr_err("failed to allocate char device region\n");
464 pr_info("LinuxPPS API ver. %d registered\n", PPS_API_VERS);
465 pr_info("Software ver. %s - Copyright 2005-2007 Rodolfo Giometti "
471 class_destroy(pps_class);
476 subsys_initcall(pps_init);
477 module_exit(pps_exit);
480 MODULE_DESCRIPTION("LinuxPPS support (RFC 2783) - ver. " PPS_VERSION);
481 MODULE_LICENSE("GPL");