pps_gen_parport.c 6.1 KB

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  1. // SPDX-License-Identifier: GPL-2.0-or-later
  2. /*
  3. * pps_gen_parport.c -- kernel parallel port PPS signal generator
  4. *
  5. * Copyright (C) 2009 Alexander Gordeev <lasaine@lvk.cs.msu.su>
  6. */
  7. /*
  8. * TODO:
  9. * fix issues when realtime clock is adjusted in a leap
  10. */
  11. #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  12. #include <linux/kernel.h>
  13. #include <linux/module.h>
  14. #include <linux/init.h>
  15. #include <linux/time.h>
  16. #include <linux/hrtimer.h>
  17. #include <linux/parport.h>
  18. #define SIGNAL 0
  19. #define NO_SIGNAL PARPORT_CONTROL_STROBE
  20. /* module parameters */
  21. #define SEND_DELAY_MAX 100000
  22. static unsigned int send_delay = 30000;
  23. MODULE_PARM_DESC(delay,
  24. "Delay between setting and dropping the signal (ns)");
  25. module_param_named(delay, send_delay, uint, 0);
  26. #define SAFETY_INTERVAL 3000 /* set the hrtimer earlier for safety (ns) */
  27. /* internal per port structure */
  28. struct pps_generator_pp {
  29. struct pardevice *pardev; /* parport device */
  30. struct hrtimer timer;
  31. long port_write_time; /* calibrated port write time (ns) */
  32. };
  33. static struct pps_generator_pp device = {
  34. .pardev = NULL,
  35. };
  36. static int attached;
  37. /* calibrated time between a hrtimer event and the reaction */
  38. static long hrtimer_error = SAFETY_INTERVAL;
  39. /* the kernel hrtimer event */
  40. static enum hrtimer_restart hrtimer_event(struct hrtimer *timer)
  41. {
  42. struct timespec64 expire_time, ts1, ts2, ts3, dts;
  43. struct pps_generator_pp *dev;
  44. struct parport *port;
  45. long lim, delta;
  46. unsigned long flags;
  47. /* We have to disable interrupts here. The idea is to prevent
  48. * other interrupts on the same processor to introduce random
  49. * lags while polling the clock. ktime_get_real_ts64() takes <1us on
  50. * most machines while other interrupt handlers can take much
  51. * more potentially.
  52. *
  53. * NB: approx time with blocked interrupts =
  54. * send_delay + 3 * SAFETY_INTERVAL
  55. */
  56. local_irq_save(flags);
  57. /* first of all we get the time stamp... */
  58. ktime_get_real_ts64(&ts1);
  59. expire_time = ktime_to_timespec64(hrtimer_get_softexpires(timer));
  60. dev = container_of(timer, struct pps_generator_pp, timer);
  61. lim = NSEC_PER_SEC - send_delay - dev->port_write_time;
  62. /* check if we are late */
  63. if (expire_time.tv_sec != ts1.tv_sec || ts1.tv_nsec > lim) {
  64. local_irq_restore(flags);
  65. pr_err("we are late this time %lld.%09ld\n",
  66. (s64)ts1.tv_sec, ts1.tv_nsec);
  67. goto done;
  68. }
  69. /* busy loop until the time is right for an assert edge */
  70. do {
  71. ktime_get_real_ts64(&ts2);
  72. } while (expire_time.tv_sec == ts2.tv_sec && ts2.tv_nsec < lim);
  73. /* set the signal */
  74. port = dev->pardev->port;
  75. port->ops->write_control(port, SIGNAL);
  76. /* busy loop until the time is right for a clear edge */
  77. lim = NSEC_PER_SEC - dev->port_write_time;
  78. do {
  79. ktime_get_real_ts64(&ts2);
  80. } while (expire_time.tv_sec == ts2.tv_sec && ts2.tv_nsec < lim);
  81. /* unset the signal */
  82. port->ops->write_control(port, NO_SIGNAL);
  83. ktime_get_real_ts64(&ts3);
  84. local_irq_restore(flags);
  85. /* update calibrated port write time */
  86. dts = timespec64_sub(ts3, ts2);
  87. dev->port_write_time =
  88. (dev->port_write_time + timespec64_to_ns(&dts)) >> 1;
  89. done:
  90. /* update calibrated hrtimer error */
  91. dts = timespec64_sub(ts1, expire_time);
  92. delta = timespec64_to_ns(&dts);
  93. /* If the new error value is bigger then the old, use the new
  94. * value, if not then slowly move towards the new value. This
  95. * way it should be safe in bad conditions and efficient in
  96. * good conditions.
  97. */
  98. if (delta >= hrtimer_error)
  99. hrtimer_error = delta;
  100. else
  101. hrtimer_error = (3 * hrtimer_error + delta) >> 2;
  102. /* update the hrtimer expire time */
  103. hrtimer_set_expires(timer,
  104. ktime_set(expire_time.tv_sec + 1,
  105. NSEC_PER_SEC - (send_delay +
  106. dev->port_write_time + SAFETY_INTERVAL +
  107. 2 * hrtimer_error)));
  108. return HRTIMER_RESTART;
  109. }
  110. /* calibrate port write time */
  111. #define PORT_NTESTS_SHIFT 5
  112. static void calibrate_port(struct pps_generator_pp *dev)
  113. {
  114. struct parport *port = dev->pardev->port;
  115. int i;
  116. long acc = 0;
  117. for (i = 0; i < (1 << PORT_NTESTS_SHIFT); i++) {
  118. struct timespec64 a, b;
  119. unsigned long irq_flags;
  120. local_irq_save(irq_flags);
  121. ktime_get_real_ts64(&a);
  122. port->ops->write_control(port, NO_SIGNAL);
  123. ktime_get_real_ts64(&b);
  124. local_irq_restore(irq_flags);
  125. b = timespec64_sub(b, a);
  126. acc += timespec64_to_ns(&b);
  127. }
  128. dev->port_write_time = acc >> PORT_NTESTS_SHIFT;
  129. pr_info("port write takes %ldns\n", dev->port_write_time);
  130. }
  131. static inline ktime_t next_intr_time(struct pps_generator_pp *dev)
  132. {
  133. struct timespec64 ts;
  134. ktime_get_real_ts64(&ts);
  135. return ktime_set(ts.tv_sec +
  136. ((ts.tv_nsec > 990 * NSEC_PER_MSEC) ? 1 : 0),
  137. NSEC_PER_SEC - (send_delay +
  138. dev->port_write_time + 3 * SAFETY_INTERVAL));
  139. }
  140. static void parport_attach(struct parport *port)
  141. {
  142. struct pardev_cb pps_cb;
  143. if (send_delay > SEND_DELAY_MAX) {
  144. pr_err("delay value should be not greater then %d\n", SEND_DELAY_MAX);
  145. return;
  146. }
  147. if (attached) {
  148. /* we already have a port */
  149. return;
  150. }
  151. memset(&pps_cb, 0, sizeof(pps_cb));
  152. pps_cb.private = &device;
  153. pps_cb.flags = PARPORT_FLAG_EXCL;
  154. device.pardev = parport_register_dev_model(port, KBUILD_MODNAME,
  155. &pps_cb, 0);
  156. if (!device.pardev) {
  157. pr_err("couldn't register with %s\n", port->name);
  158. return;
  159. }
  160. if (parport_claim_or_block(device.pardev) < 0) {
  161. pr_err("couldn't claim %s\n", port->name);
  162. goto err_unregister_dev;
  163. }
  164. pr_info("attached to %s\n", port->name);
  165. attached = 1;
  166. calibrate_port(&device);
  167. hrtimer_init(&device.timer, CLOCK_REALTIME, HRTIMER_MODE_ABS);
  168. device.timer.function = hrtimer_event;
  169. hrtimer_start(&device.timer, next_intr_time(&device), HRTIMER_MODE_ABS);
  170. return;
  171. err_unregister_dev:
  172. parport_unregister_device(device.pardev);
  173. }
  174. static void parport_detach(struct parport *port)
  175. {
  176. if (port->cad != device.pardev)
  177. return; /* not our port */
  178. hrtimer_cancel(&device.timer);
  179. parport_release(device.pardev);
  180. parport_unregister_device(device.pardev);
  181. }
  182. static struct parport_driver pps_gen_parport_driver = {
  183. .name = KBUILD_MODNAME,
  184. .match_port = parport_attach,
  185. .detach = parport_detach,
  186. };
  187. module_parport_driver(pps_gen_parport_driver);
  188. MODULE_AUTHOR("Alexander Gordeev <lasaine@lvk.cs.msu.su>");
  189. MODULE_DESCRIPTION("parallel port PPS signal generator");
  190. MODULE_LICENSE("GPL");