cdnsp-trace.h 21 KB

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  1. /* SPDX-License-Identifier: GPL-2.0 */
  2. /*
  3. * Cadence CDNSP DRD Driver.
  4. * Trace support header file
  5. *
  6. * Copyright (C) 2020 Cadence.
  7. *
  8. * Author: Pawel Laszczak <pawell@cadence.com>
  9. *
  10. */
  11. #undef TRACE_SYSTEM
  12. #define TRACE_SYSTEM cdnsp-dev
  13. /*
  14. * The TRACE_SYSTEM_VAR defaults to TRACE_SYSTEM, but must be a
  15. * legitimate C variable. It is not exported to user space.
  16. */
  17. #undef TRACE_SYSTEM_VAR
  18. #define TRACE_SYSTEM_VAR cdnsp_dev
  19. #if !defined(__CDNSP_DEV_TRACE_H) || defined(TRACE_HEADER_MULTI_READ)
  20. #define __CDNSP_DEV_TRACE_H
  21. #include <linux/tracepoint.h>
  22. #include "cdnsp-gadget.h"
  23. #include "cdnsp-debug.h"
  24. /*
  25. * There is limitation for single buffer size in TRACEPOINT subsystem.
  26. * By default TRACE_BUF_SIZE is 1024, so no all data will be logged.
  27. * To show more data this must be increased. In most cases the default
  28. * value is sufficient.
  29. */
  30. #define CDNSP_MSG_MAX 500
  31. DECLARE_EVENT_CLASS(cdnsp_log_ep,
  32. TP_PROTO(struct cdnsp_ep *pep, u32 stream_id),
  33. TP_ARGS(pep, stream_id),
  34. TP_STRUCT__entry(
  35. __string(name, pep->name)
  36. __field(unsigned int, state)
  37. __field(u32, stream_id)
  38. __field(u8, enabled)
  39. __field(unsigned int, num_streams)
  40. __field(int, td_count)
  41. __field(u8, first_prime_det)
  42. __field(u8, drbls_count)
  43. ),
  44. TP_fast_assign(
  45. __assign_str(name);
  46. __entry->state = pep->ep_state;
  47. __entry->stream_id = stream_id;
  48. __entry->enabled = pep->ep_state & EP_HAS_STREAMS;
  49. __entry->num_streams = pep->stream_info.num_streams;
  50. __entry->td_count = pep->stream_info.td_count;
  51. __entry->first_prime_det = pep->stream_info.first_prime_det;
  52. __entry->drbls_count = pep->stream_info.drbls_count;
  53. ),
  54. TP_printk("%s: SID: %08x, ep state: %x, stream: enabled: %d num %d "
  55. "tds %d, first prime: %d drbls %d",
  56. __get_str(name), __entry->stream_id, __entry->state,
  57. __entry->enabled, __entry->num_streams, __entry->td_count,
  58. __entry->first_prime_det, __entry->drbls_count)
  59. );
  60. DEFINE_EVENT(cdnsp_log_ep, cdnsp_tr_drbl,
  61. TP_PROTO(struct cdnsp_ep *pep, u32 stream_id),
  62. TP_ARGS(pep, stream_id)
  63. );
  64. DEFINE_EVENT(cdnsp_log_ep, cdnsp_wait_for_prime,
  65. TP_PROTO(struct cdnsp_ep *pep, u32 stream_id),
  66. TP_ARGS(pep, stream_id)
  67. );
  68. DEFINE_EVENT(cdnsp_log_ep, cdnsp_ep_list_empty_with_skip,
  69. TP_PROTO(struct cdnsp_ep *pep, u32 stream_id),
  70. TP_ARGS(pep, stream_id)
  71. );
  72. DEFINE_EVENT(cdnsp_log_ep, cdnsp_ep_enable_end,
  73. TP_PROTO(struct cdnsp_ep *pep, u32 stream_id),
  74. TP_ARGS(pep, stream_id)
  75. );
  76. DEFINE_EVENT(cdnsp_log_ep, cdnsp_ep_disable_end,
  77. TP_PROTO(struct cdnsp_ep *pep, u32 stream_id),
  78. TP_ARGS(pep, stream_id)
  79. );
  80. DEFINE_EVENT(cdnsp_log_ep, cdnsp_ep_busy_try_halt_again,
  81. TP_PROTO(struct cdnsp_ep *pep, u32 stream_id),
  82. TP_ARGS(pep, stream_id)
  83. );
  84. DECLARE_EVENT_CLASS(cdnsp_log_enable_disable,
  85. TP_PROTO(int set),
  86. TP_ARGS(set),
  87. TP_STRUCT__entry(
  88. __field(int, set)
  89. ),
  90. TP_fast_assign(
  91. __entry->set = set;
  92. ),
  93. TP_printk("%s", __entry->set ? "enabled" : "disabled")
  94. );
  95. DEFINE_EVENT(cdnsp_log_enable_disable, cdnsp_pullup,
  96. TP_PROTO(int set),
  97. TP_ARGS(set)
  98. );
  99. DEFINE_EVENT(cdnsp_log_enable_disable, cdnsp_u1,
  100. TP_PROTO(int set),
  101. TP_ARGS(set)
  102. );
  103. DEFINE_EVENT(cdnsp_log_enable_disable, cdnsp_u2,
  104. TP_PROTO(int set),
  105. TP_ARGS(set)
  106. );
  107. DEFINE_EVENT(cdnsp_log_enable_disable, cdnsp_lpm,
  108. TP_PROTO(int set),
  109. TP_ARGS(set)
  110. );
  111. DEFINE_EVENT(cdnsp_log_enable_disable, cdnsp_may_wakeup,
  112. TP_PROTO(int set),
  113. TP_ARGS(set)
  114. );
  115. DECLARE_EVENT_CLASS(cdnsp_log_simple,
  116. TP_PROTO(char *msg),
  117. TP_ARGS(msg),
  118. TP_STRUCT__entry(
  119. __string(text, msg)
  120. ),
  121. TP_fast_assign(
  122. __assign_str(text);
  123. ),
  124. TP_printk("%s", __get_str(text))
  125. );
  126. DEFINE_EVENT(cdnsp_log_simple, cdnsp_exit,
  127. TP_PROTO(char *msg),
  128. TP_ARGS(msg)
  129. );
  130. DEFINE_EVENT(cdnsp_log_simple, cdnsp_init,
  131. TP_PROTO(char *msg),
  132. TP_ARGS(msg)
  133. );
  134. DEFINE_EVENT(cdnsp_log_simple, cdnsp_slot_id,
  135. TP_PROTO(char *msg),
  136. TP_ARGS(msg)
  137. );
  138. DEFINE_EVENT(cdnsp_log_simple, cdnsp_no_room_on_ring,
  139. TP_PROTO(char *msg),
  140. TP_ARGS(msg)
  141. );
  142. DEFINE_EVENT(cdnsp_log_simple, cdnsp_ep0_status_stage,
  143. TP_PROTO(char *msg),
  144. TP_ARGS(msg)
  145. );
  146. DEFINE_EVENT(cdnsp_log_simple, cdnsp_ep0_request,
  147. TP_PROTO(char *msg),
  148. TP_ARGS(msg)
  149. );
  150. DEFINE_EVENT(cdnsp_log_simple, cdnsp_ep0_set_config,
  151. TP_PROTO(char *msg),
  152. TP_ARGS(msg)
  153. );
  154. DEFINE_EVENT(cdnsp_log_simple, cdnsp_ep0_halted,
  155. TP_PROTO(char *msg),
  156. TP_ARGS(msg)
  157. );
  158. DEFINE_EVENT(cdnsp_log_simple, cdnsp_ep_halt,
  159. TP_PROTO(char *msg),
  160. TP_ARGS(msg)
  161. );
  162. TRACE_EVENT(cdnsp_looking_trb_in_td,
  163. TP_PROTO(dma_addr_t suspect, dma_addr_t trb_start, dma_addr_t trb_end,
  164. dma_addr_t curr_seg, dma_addr_t end_seg),
  165. TP_ARGS(suspect, trb_start, trb_end, curr_seg, end_seg),
  166. TP_STRUCT__entry(
  167. __field(dma_addr_t, suspect)
  168. __field(dma_addr_t, trb_start)
  169. __field(dma_addr_t, trb_end)
  170. __field(dma_addr_t, curr_seg)
  171. __field(dma_addr_t, end_seg)
  172. ),
  173. TP_fast_assign(
  174. __entry->suspect = suspect;
  175. __entry->trb_start = trb_start;
  176. __entry->trb_end = trb_end;
  177. __entry->curr_seg = curr_seg;
  178. __entry->end_seg = end_seg;
  179. ),
  180. TP_printk("DMA: suspect event: %pad, trb-start: %pad, trb-end %pad, "
  181. "seg-start %pad, seg-end %pad",
  182. &__entry->suspect, &__entry->trb_start, &__entry->trb_end,
  183. &__entry->curr_seg, &__entry->end_seg)
  184. );
  185. TRACE_EVENT(cdnsp_port_info,
  186. TP_PROTO(__le32 __iomem *addr, u32 offset, u32 count, u32 rev),
  187. TP_ARGS(addr, offset, count, rev),
  188. TP_STRUCT__entry(
  189. __field(__le32 __iomem *, addr)
  190. __field(u32, offset)
  191. __field(u32, count)
  192. __field(u32, rev)
  193. ),
  194. TP_fast_assign(
  195. __entry->addr = addr;
  196. __entry->offset = offset;
  197. __entry->count = count;
  198. __entry->rev = rev;
  199. ),
  200. TP_printk("Ext Cap %p, port offset = %u, count = %u, rev = 0x%x",
  201. __entry->addr, __entry->offset, __entry->count, __entry->rev)
  202. );
  203. DECLARE_EVENT_CLASS(cdnsp_log_deq_state,
  204. TP_PROTO(struct cdnsp_dequeue_state *state),
  205. TP_ARGS(state),
  206. TP_STRUCT__entry(
  207. __field(int, new_cycle_state)
  208. __field(struct cdnsp_segment *, new_deq_seg)
  209. __field(dma_addr_t, deq_seg_dma)
  210. __field(union cdnsp_trb *, new_deq_ptr)
  211. __field(dma_addr_t, deq_ptr_dma)
  212. ),
  213. TP_fast_assign(
  214. __entry->new_cycle_state = state->new_cycle_state;
  215. __entry->new_deq_seg = state->new_deq_seg;
  216. __entry->deq_seg_dma = state->new_deq_seg->dma;
  217. __entry->new_deq_ptr = state->new_deq_ptr,
  218. __entry->deq_ptr_dma = cdnsp_trb_virt_to_dma(state->new_deq_seg,
  219. state->new_deq_ptr);
  220. ),
  221. TP_printk("New cycle state = 0x%x, New dequeue segment = %p (0x%pad dma), "
  222. "New dequeue pointer = %p (0x%pad dma)",
  223. __entry->new_cycle_state, __entry->new_deq_seg,
  224. &__entry->deq_seg_dma, __entry->new_deq_ptr,
  225. &__entry->deq_ptr_dma
  226. )
  227. );
  228. DEFINE_EVENT(cdnsp_log_deq_state, cdnsp_new_deq_state,
  229. TP_PROTO(struct cdnsp_dequeue_state *state),
  230. TP_ARGS(state)
  231. );
  232. DECLARE_EVENT_CLASS(cdnsp_log_ctrl,
  233. TP_PROTO(struct usb_ctrlrequest *ctrl),
  234. TP_ARGS(ctrl),
  235. TP_STRUCT__entry(
  236. __field(u8, bRequestType)
  237. __field(u8, bRequest)
  238. __field(u16, wValue)
  239. __field(u16, wIndex)
  240. __field(u16, wLength)
  241. ),
  242. TP_fast_assign(
  243. __entry->bRequestType = ctrl->bRequestType;
  244. __entry->bRequest = ctrl->bRequest;
  245. __entry->wValue = le16_to_cpu(ctrl->wValue);
  246. __entry->wIndex = le16_to_cpu(ctrl->wIndex);
  247. __entry->wLength = le16_to_cpu(ctrl->wLength);
  248. ),
  249. TP_printk("%s", usb_decode_ctrl(__get_buf(CDNSP_MSG_MAX), CDNSP_MSG_MAX,
  250. __entry->bRequestType,
  251. __entry->bRequest, __entry->wValue,
  252. __entry->wIndex, __entry->wLength)
  253. )
  254. );
  255. DEFINE_EVENT(cdnsp_log_ctrl, cdnsp_ctrl_req,
  256. TP_PROTO(struct usb_ctrlrequest *ctrl),
  257. TP_ARGS(ctrl)
  258. );
  259. DECLARE_EVENT_CLASS(cdnsp_log_bounce,
  260. TP_PROTO(struct cdnsp_request *preq, u32 new_buf_len, u32 offset,
  261. dma_addr_t dma, unsigned int unalign),
  262. TP_ARGS(preq, new_buf_len, offset, dma, unalign),
  263. TP_STRUCT__entry(
  264. __string(name, preq->pep->name)
  265. __field(u32, new_buf_len)
  266. __field(u32, offset)
  267. __field(dma_addr_t, dma)
  268. __field(unsigned int, unalign)
  269. ),
  270. TP_fast_assign(
  271. __assign_str(name);
  272. __entry->new_buf_len = new_buf_len;
  273. __entry->offset = offset;
  274. __entry->dma = dma;
  275. __entry->unalign = unalign;
  276. ),
  277. TP_printk("%s buf len %d, offset %d, dma %pad, unalign %d",
  278. __get_str(name), __entry->new_buf_len,
  279. __entry->offset, &__entry->dma, __entry->unalign
  280. )
  281. );
  282. DEFINE_EVENT(cdnsp_log_bounce, cdnsp_bounce_align_td_split,
  283. TP_PROTO(struct cdnsp_request *preq, u32 new_buf_len, u32 offset,
  284. dma_addr_t dma, unsigned int unalign),
  285. TP_ARGS(preq, new_buf_len, offset, dma, unalign)
  286. );
  287. DEFINE_EVENT(cdnsp_log_bounce, cdnsp_bounce_map,
  288. TP_PROTO(struct cdnsp_request *preq, u32 new_buf_len, u32 offset,
  289. dma_addr_t dma, unsigned int unalign),
  290. TP_ARGS(preq, new_buf_len, offset, dma, unalign)
  291. );
  292. DEFINE_EVENT(cdnsp_log_bounce, cdnsp_bounce_unmap,
  293. TP_PROTO(struct cdnsp_request *preq, u32 new_buf_len, u32 offset,
  294. dma_addr_t dma, unsigned int unalign),
  295. TP_ARGS(preq, new_buf_len, offset, dma, unalign)
  296. );
  297. DECLARE_EVENT_CLASS(cdnsp_log_trb,
  298. TP_PROTO(struct cdnsp_ring *ring, struct cdnsp_generic_trb *trb),
  299. TP_ARGS(ring, trb),
  300. TP_STRUCT__entry(
  301. __field(u32, type)
  302. __field(u32, field0)
  303. __field(u32, field1)
  304. __field(u32, field2)
  305. __field(u32, field3)
  306. __field(union cdnsp_trb *, trb)
  307. __field(dma_addr_t, trb_dma)
  308. ),
  309. TP_fast_assign(
  310. __entry->type = ring->type;
  311. __entry->field0 = le32_to_cpu(trb->field[0]);
  312. __entry->field1 = le32_to_cpu(trb->field[1]);
  313. __entry->field2 = le32_to_cpu(trb->field[2]);
  314. __entry->field3 = le32_to_cpu(trb->field[3]);
  315. __entry->trb = (union cdnsp_trb *)trb;
  316. __entry->trb_dma = cdnsp_trb_virt_to_dma(ring->deq_seg,
  317. (union cdnsp_trb *)trb);
  318. ),
  319. TP_printk("%s: %s trb: %p(%pad)", cdnsp_ring_type_string(__entry->type),
  320. cdnsp_decode_trb(__get_buf(CDNSP_MSG_MAX), CDNSP_MSG_MAX,
  321. __entry->field0, __entry->field1,
  322. __entry->field2, __entry->field3),
  323. __entry->trb, &__entry->trb_dma
  324. )
  325. );
  326. DEFINE_EVENT(cdnsp_log_trb, cdnsp_handle_event,
  327. TP_PROTO(struct cdnsp_ring *ring, struct cdnsp_generic_trb *trb),
  328. TP_ARGS(ring, trb)
  329. );
  330. DEFINE_EVENT(cdnsp_log_trb, cdnsp_trb_without_td,
  331. TP_PROTO(struct cdnsp_ring *ring, struct cdnsp_generic_trb *trb),
  332. TP_ARGS(ring, trb)
  333. );
  334. DEFINE_EVENT(cdnsp_log_trb, cdnsp_handle_command,
  335. TP_PROTO(struct cdnsp_ring *ring, struct cdnsp_generic_trb *trb),
  336. TP_ARGS(ring, trb)
  337. );
  338. DEFINE_EVENT(cdnsp_log_trb, cdnsp_handle_transfer,
  339. TP_PROTO(struct cdnsp_ring *ring, struct cdnsp_generic_trb *trb),
  340. TP_ARGS(ring, trb)
  341. );
  342. DEFINE_EVENT(cdnsp_log_trb, cdnsp_queue_trb,
  343. TP_PROTO(struct cdnsp_ring *ring, struct cdnsp_generic_trb *trb),
  344. TP_ARGS(ring, trb)
  345. );
  346. DEFINE_EVENT(cdnsp_log_trb, cdnsp_cmd_wait_for_compl,
  347. TP_PROTO(struct cdnsp_ring *ring, struct cdnsp_generic_trb *trb),
  348. TP_ARGS(ring, trb)
  349. );
  350. DEFINE_EVENT(cdnsp_log_trb, cdnsp_cmd_timeout,
  351. TP_PROTO(struct cdnsp_ring *ring, struct cdnsp_generic_trb *trb),
  352. TP_ARGS(ring, trb)
  353. );
  354. DEFINE_EVENT(cdnsp_log_trb, cdnsp_defered_event,
  355. TP_PROTO(struct cdnsp_ring *ring, struct cdnsp_generic_trb *trb),
  356. TP_ARGS(ring, trb)
  357. );
  358. DECLARE_EVENT_CLASS(cdnsp_log_pdev,
  359. TP_PROTO(struct cdnsp_device *pdev),
  360. TP_ARGS(pdev),
  361. TP_STRUCT__entry(
  362. __field(struct cdnsp_device *, pdev)
  363. __field(struct usb_gadget *, gadget)
  364. __field(dma_addr_t, out_ctx)
  365. __field(dma_addr_t, in_ctx)
  366. __field(u8, port_num)
  367. ),
  368. TP_fast_assign(
  369. __entry->pdev = pdev;
  370. __entry->gadget = &pdev->gadget;
  371. __entry->in_ctx = pdev->in_ctx.dma;
  372. __entry->out_ctx = pdev->out_ctx.dma;
  373. __entry->port_num = pdev->active_port ?
  374. pdev->active_port->port_num : 0xFF;
  375. ),
  376. TP_printk("pdev %p gadget %p ctx %pad | %pad, port %d ",
  377. __entry->pdev, __entry->gadget, &__entry->in_ctx,
  378. &__entry->out_ctx, __entry->port_num
  379. )
  380. );
  381. DEFINE_EVENT(cdnsp_log_pdev, cdnsp_alloc_priv_device,
  382. TP_PROTO(struct cdnsp_device *vdev),
  383. TP_ARGS(vdev)
  384. );
  385. DEFINE_EVENT(cdnsp_log_pdev, cdnsp_free_priv_device,
  386. TP_PROTO(struct cdnsp_device *vdev),
  387. TP_ARGS(vdev)
  388. );
  389. DEFINE_EVENT(cdnsp_log_pdev, cdnsp_setup_device,
  390. TP_PROTO(struct cdnsp_device *vdev),
  391. TP_ARGS(vdev)
  392. );
  393. DEFINE_EVENT(cdnsp_log_pdev, cdnsp_setup_addressable_priv_device,
  394. TP_PROTO(struct cdnsp_device *vdev),
  395. TP_ARGS(vdev)
  396. );
  397. DECLARE_EVENT_CLASS(cdnsp_log_request,
  398. TP_PROTO(struct cdnsp_request *req),
  399. TP_ARGS(req),
  400. TP_STRUCT__entry(
  401. __string(name, req->pep->name)
  402. __field(struct usb_request *, request)
  403. __field(struct cdnsp_request *, preq)
  404. __field(void *, buf)
  405. __field(unsigned int, actual)
  406. __field(unsigned int, length)
  407. __field(int, status)
  408. __field(dma_addr_t, dma)
  409. __field(unsigned int, stream_id)
  410. __field(unsigned int, zero)
  411. __field(unsigned int, short_not_ok)
  412. __field(unsigned int, no_interrupt)
  413. __field(struct scatterlist*, sg)
  414. __field(unsigned int, num_sgs)
  415. __field(unsigned int, num_mapped_sgs)
  416. ),
  417. TP_fast_assign(
  418. __assign_str(name);
  419. __entry->request = &req->request;
  420. __entry->preq = req;
  421. __entry->buf = req->request.buf;
  422. __entry->actual = req->request.actual;
  423. __entry->length = req->request.length;
  424. __entry->status = req->request.status;
  425. __entry->dma = req->request.dma;
  426. __entry->stream_id = req->request.stream_id;
  427. __entry->zero = req->request.zero;
  428. __entry->short_not_ok = req->request.short_not_ok;
  429. __entry->no_interrupt = req->request.no_interrupt;
  430. __entry->sg = req->request.sg;
  431. __entry->num_sgs = req->request.num_sgs;
  432. __entry->num_mapped_sgs = req->request.num_mapped_sgs;
  433. ),
  434. TP_printk("%s; req U:%p/P:%p, req buf %p, length %u/%u, status %d, "
  435. "buf dma (%pad), SID %u, %s%s%s, sg %p, num_sg %d,"
  436. " num_m_sg %d",
  437. __get_str(name), __entry->request, __entry->preq,
  438. __entry->buf, __entry->actual, __entry->length,
  439. __entry->status, &__entry->dma,
  440. __entry->stream_id, __entry->zero ? "Z" : "z",
  441. __entry->short_not_ok ? "S" : "s",
  442. __entry->no_interrupt ? "I" : "i",
  443. __entry->sg, __entry->num_sgs, __entry->num_mapped_sgs
  444. )
  445. );
  446. DEFINE_EVENT(cdnsp_log_request, cdnsp_request_enqueue,
  447. TP_PROTO(struct cdnsp_request *req),
  448. TP_ARGS(req)
  449. );
  450. DEFINE_EVENT(cdnsp_log_request, cdnsp_request_enqueue_busy,
  451. TP_PROTO(struct cdnsp_request *req),
  452. TP_ARGS(req)
  453. );
  454. DEFINE_EVENT(cdnsp_log_request, cdnsp_request_enqueue_error,
  455. TP_PROTO(struct cdnsp_request *req),
  456. TP_ARGS(req)
  457. );
  458. DEFINE_EVENT(cdnsp_log_request, cdnsp_request_dequeue,
  459. TP_PROTO(struct cdnsp_request *req),
  460. TP_ARGS(req)
  461. );
  462. DEFINE_EVENT(cdnsp_log_request, cdnsp_request_giveback,
  463. TP_PROTO(struct cdnsp_request *req),
  464. TP_ARGS(req)
  465. );
  466. DEFINE_EVENT(cdnsp_log_request, cdnsp_alloc_request,
  467. TP_PROTO(struct cdnsp_request *req),
  468. TP_ARGS(req)
  469. );
  470. DEFINE_EVENT(cdnsp_log_request, cdnsp_free_request,
  471. TP_PROTO(struct cdnsp_request *req),
  472. TP_ARGS(req)
  473. );
  474. DECLARE_EVENT_CLASS(cdnsp_log_ep_ctx,
  475. TP_PROTO(struct cdnsp_ep_ctx *ctx),
  476. TP_ARGS(ctx),
  477. TP_STRUCT__entry(
  478. __field(u32, info)
  479. __field(u32, info2)
  480. __field(u64, deq)
  481. __field(u32, tx_info)
  482. ),
  483. TP_fast_assign(
  484. __entry->info = le32_to_cpu(ctx->ep_info);
  485. __entry->info2 = le32_to_cpu(ctx->ep_info2);
  486. __entry->deq = le64_to_cpu(ctx->deq);
  487. __entry->tx_info = le32_to_cpu(ctx->tx_info);
  488. ),
  489. TP_printk("%s", cdnsp_decode_ep_context(__get_buf(CDNSP_MSG_MAX), CDNSP_MSG_MAX,
  490. __entry->info, __entry->info2,
  491. __entry->deq, __entry->tx_info)
  492. )
  493. );
  494. DEFINE_EVENT(cdnsp_log_ep_ctx, cdnsp_ep_disabled,
  495. TP_PROTO(struct cdnsp_ep_ctx *ctx),
  496. TP_ARGS(ctx)
  497. );
  498. DEFINE_EVENT(cdnsp_log_ep_ctx, cdnsp_ep_stopped_or_disabled,
  499. TP_PROTO(struct cdnsp_ep_ctx *ctx),
  500. TP_ARGS(ctx)
  501. );
  502. DEFINE_EVENT(cdnsp_log_ep_ctx, cdnsp_remove_request,
  503. TP_PROTO(struct cdnsp_ep_ctx *ctx),
  504. TP_ARGS(ctx)
  505. );
  506. DEFINE_EVENT(cdnsp_log_ep_ctx, cdnsp_handle_cmd_stop_ep,
  507. TP_PROTO(struct cdnsp_ep_ctx *ctx),
  508. TP_ARGS(ctx)
  509. );
  510. DEFINE_EVENT(cdnsp_log_ep_ctx, cdnsp_handle_cmd_flush_ep,
  511. TP_PROTO(struct cdnsp_ep_ctx *ctx),
  512. TP_ARGS(ctx)
  513. );
  514. DEFINE_EVENT(cdnsp_log_ep_ctx, cdnsp_handle_cmd_set_deq_ep,
  515. TP_PROTO(struct cdnsp_ep_ctx *ctx),
  516. TP_ARGS(ctx)
  517. );
  518. DEFINE_EVENT(cdnsp_log_ep_ctx, cdnsp_handle_cmd_reset_ep,
  519. TP_PROTO(struct cdnsp_ep_ctx *ctx),
  520. TP_ARGS(ctx)
  521. );
  522. DEFINE_EVENT(cdnsp_log_ep_ctx, cdnsp_handle_cmd_config_ep,
  523. TP_PROTO(struct cdnsp_ep_ctx *ctx),
  524. TP_ARGS(ctx)
  525. );
  526. DECLARE_EVENT_CLASS(cdnsp_log_slot_ctx,
  527. TP_PROTO(struct cdnsp_slot_ctx *ctx),
  528. TP_ARGS(ctx),
  529. TP_STRUCT__entry(
  530. __field(u32, info)
  531. __field(u32, info2)
  532. __field(u32, int_target)
  533. __field(u32, state)
  534. ),
  535. TP_fast_assign(
  536. __entry->info = le32_to_cpu(ctx->dev_info);
  537. __entry->info2 = le32_to_cpu(ctx->dev_port);
  538. __entry->int_target = le32_to_cpu(ctx->int_target);
  539. __entry->state = le32_to_cpu(ctx->dev_state);
  540. ),
  541. TP_printk("%s", cdnsp_decode_slot_context(__entry->info,
  542. __entry->info2,
  543. __entry->int_target,
  544. __entry->state)
  545. )
  546. );
  547. DEFINE_EVENT(cdnsp_log_slot_ctx, cdnsp_slot_already_in_default,
  548. TP_PROTO(struct cdnsp_slot_ctx *ctx),
  549. TP_ARGS(ctx)
  550. );
  551. DEFINE_EVENT(cdnsp_log_slot_ctx, cdnsp_handle_cmd_enable_slot,
  552. TP_PROTO(struct cdnsp_slot_ctx *ctx),
  553. TP_ARGS(ctx)
  554. );
  555. DEFINE_EVENT(cdnsp_log_slot_ctx, cdnsp_handle_cmd_disable_slot,
  556. TP_PROTO(struct cdnsp_slot_ctx *ctx),
  557. TP_ARGS(ctx)
  558. );
  559. DEFINE_EVENT(cdnsp_log_slot_ctx, cdnsp_reset_device,
  560. TP_PROTO(struct cdnsp_slot_ctx *ctx),
  561. TP_ARGS(ctx)
  562. );
  563. DEFINE_EVENT(cdnsp_log_slot_ctx, cdnsp_setup_device_slot,
  564. TP_PROTO(struct cdnsp_slot_ctx *ctx),
  565. TP_ARGS(ctx)
  566. );
  567. DEFINE_EVENT(cdnsp_log_slot_ctx, cdnsp_handle_cmd_addr_dev,
  568. TP_PROTO(struct cdnsp_slot_ctx *ctx),
  569. TP_ARGS(ctx)
  570. );
  571. DEFINE_EVENT(cdnsp_log_slot_ctx, cdnsp_handle_cmd_reset_dev,
  572. TP_PROTO(struct cdnsp_slot_ctx *ctx),
  573. TP_ARGS(ctx)
  574. );
  575. DEFINE_EVENT(cdnsp_log_slot_ctx, cdnsp_handle_cmd_set_deq,
  576. TP_PROTO(struct cdnsp_slot_ctx *ctx),
  577. TP_ARGS(ctx)
  578. );
  579. DEFINE_EVENT(cdnsp_log_slot_ctx, cdnsp_configure_endpoint,
  580. TP_PROTO(struct cdnsp_slot_ctx *ctx),
  581. TP_ARGS(ctx)
  582. );
  583. DECLARE_EVENT_CLASS(cdnsp_log_td_info,
  584. TP_PROTO(struct cdnsp_request *preq),
  585. TP_ARGS(preq),
  586. TP_STRUCT__entry(
  587. __string(name, preq->pep->name)
  588. __field(struct usb_request *, request)
  589. __field(struct cdnsp_request *, preq)
  590. __field(union cdnsp_trb *, first_trb)
  591. __field(union cdnsp_trb *, last_trb)
  592. __field(dma_addr_t, trb_dma)
  593. ),
  594. TP_fast_assign(
  595. __assign_str(name);
  596. __entry->request = &preq->request;
  597. __entry->preq = preq;
  598. __entry->first_trb = preq->td.first_trb;
  599. __entry->last_trb = preq->td.last_trb;
  600. __entry->trb_dma = cdnsp_trb_virt_to_dma(preq->td.start_seg,
  601. preq->td.first_trb)
  602. ),
  603. TP_printk("%s req/preq: %p/%p, first trb %p[vir]/%pad(dma), last trb %p",
  604. __get_str(name), __entry->request, __entry->preq,
  605. __entry->first_trb, &__entry->trb_dma,
  606. __entry->last_trb
  607. )
  608. );
  609. DEFINE_EVENT(cdnsp_log_td_info, cdnsp_remove_request_td,
  610. TP_PROTO(struct cdnsp_request *preq),
  611. TP_ARGS(preq)
  612. );
  613. DECLARE_EVENT_CLASS(cdnsp_log_ring,
  614. TP_PROTO(struct cdnsp_ring *ring),
  615. TP_ARGS(ring),
  616. TP_STRUCT__entry(
  617. __field(u32, type)
  618. __field(void *, ring)
  619. __field(dma_addr_t, enq)
  620. __field(dma_addr_t, deq)
  621. __field(dma_addr_t, enq_seg)
  622. __field(dma_addr_t, deq_seg)
  623. __field(unsigned int, num_segs)
  624. __field(unsigned int, stream_id)
  625. __field(unsigned int, cycle_state)
  626. __field(unsigned int, num_trbs_free)
  627. __field(unsigned int, bounce_buf_len)
  628. ),
  629. TP_fast_assign(
  630. __entry->ring = ring;
  631. __entry->type = ring->type;
  632. __entry->num_segs = ring->num_segs;
  633. __entry->stream_id = ring->stream_id;
  634. __entry->enq_seg = ring->enq_seg->dma;
  635. __entry->deq_seg = ring->deq_seg->dma;
  636. __entry->cycle_state = ring->cycle_state;
  637. __entry->num_trbs_free = ring->num_trbs_free;
  638. __entry->bounce_buf_len = ring->bounce_buf_len;
  639. __entry->enq = cdnsp_trb_virt_to_dma(ring->enq_seg,
  640. ring->enqueue);
  641. __entry->deq = cdnsp_trb_virt_to_dma(ring->deq_seg,
  642. ring->dequeue);
  643. ),
  644. TP_printk("%s %p: enq %pad(%pad) deq %pad(%pad) segs %d stream %d"
  645. " free_trbs %d bounce %d cycle %d",
  646. cdnsp_ring_type_string(__entry->type), __entry->ring,
  647. &__entry->enq, &__entry->enq_seg,
  648. &__entry->deq, &__entry->deq_seg,
  649. __entry->num_segs,
  650. __entry->stream_id,
  651. __entry->num_trbs_free,
  652. __entry->bounce_buf_len,
  653. __entry->cycle_state
  654. )
  655. );
  656. DEFINE_EVENT(cdnsp_log_ring, cdnsp_ring_alloc,
  657. TP_PROTO(struct cdnsp_ring *ring),
  658. TP_ARGS(ring)
  659. );
  660. DEFINE_EVENT(cdnsp_log_ring, cdnsp_ring_free,
  661. TP_PROTO(struct cdnsp_ring *ring),
  662. TP_ARGS(ring)
  663. );
  664. DEFINE_EVENT(cdnsp_log_ring, cdnsp_set_stream_ring,
  665. TP_PROTO(struct cdnsp_ring *ring),
  666. TP_ARGS(ring)
  667. );
  668. DEFINE_EVENT(cdnsp_log_ring, cdnsp_ring_expansion,
  669. TP_PROTO(struct cdnsp_ring *ring),
  670. TP_ARGS(ring)
  671. );
  672. DEFINE_EVENT(cdnsp_log_ring, cdnsp_inc_enq,
  673. TP_PROTO(struct cdnsp_ring *ring),
  674. TP_ARGS(ring)
  675. );
  676. DEFINE_EVENT(cdnsp_log_ring, cdnsp_inc_deq,
  677. TP_PROTO(struct cdnsp_ring *ring),
  678. TP_ARGS(ring)
  679. );
  680. DECLARE_EVENT_CLASS(cdnsp_log_portsc,
  681. TP_PROTO(u32 portnum, u32 portsc),
  682. TP_ARGS(portnum, portsc),
  683. TP_STRUCT__entry(
  684. __field(u32, portnum)
  685. __field(u32, portsc)
  686. ),
  687. TP_fast_assign(
  688. __entry->portnum = portnum;
  689. __entry->portsc = portsc;
  690. ),
  691. TP_printk("port-%d: %s",
  692. __entry->portnum,
  693. cdnsp_decode_portsc(__get_buf(CDNSP_MSG_MAX), CDNSP_MSG_MAX,
  694. __entry->portsc)
  695. )
  696. );
  697. DEFINE_EVENT(cdnsp_log_portsc, cdnsp_handle_port_status,
  698. TP_PROTO(u32 portnum, u32 portsc),
  699. TP_ARGS(portnum, portsc)
  700. );
  701. DEFINE_EVENT(cdnsp_log_portsc, cdnsp_link_state_changed,
  702. TP_PROTO(u32 portnum, u32 portsc),
  703. TP_ARGS(portnum, portsc)
  704. );
  705. TRACE_EVENT(cdnsp_stream_number,
  706. TP_PROTO(struct cdnsp_ep *pep, int num_stream_ctxs, int num_streams),
  707. TP_ARGS(pep, num_stream_ctxs, num_streams),
  708. TP_STRUCT__entry(
  709. __string(name, pep->name)
  710. __field(int, num_stream_ctxs)
  711. __field(int, num_streams)
  712. ),
  713. TP_fast_assign(
  714. __entry->num_stream_ctxs = num_stream_ctxs;
  715. __entry->num_streams = num_streams;
  716. ),
  717. TP_printk("%s Need %u stream ctx entries for %u stream IDs.",
  718. __get_str(name), __entry->num_stream_ctxs,
  719. __entry->num_streams)
  720. );
  721. #endif /* __CDNSP_TRACE_H */
  722. /* this part must be outside header guard */
  723. #undef TRACE_INCLUDE_PATH
  724. #define TRACE_INCLUDE_PATH .
  725. #undef TRACE_INCLUDE_FILE
  726. #define TRACE_INCLUDE_FILE cdnsp-trace
  727. #include <trace/define_trace.h>