dma.h 14 KB

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  1. /* SPDX-License-Identifier: GPL-2.0 */
  2. #undef TRACE_SYSTEM
  3. #define TRACE_SYSTEM dma
  4. #if !defined(_TRACE_DMA_H) || defined(TRACE_HEADER_MULTI_READ)
  5. #define _TRACE_DMA_H
  6. #include <linux/tracepoint.h>
  7. #include <linux/dma-direction.h>
  8. #include <linux/dma-mapping.h>
  9. #include <trace/events/mmflags.h>
  10. TRACE_DEFINE_ENUM(DMA_BIDIRECTIONAL);
  11. TRACE_DEFINE_ENUM(DMA_TO_DEVICE);
  12. TRACE_DEFINE_ENUM(DMA_FROM_DEVICE);
  13. TRACE_DEFINE_ENUM(DMA_NONE);
  14. #define decode_dma_data_direction(dir) \
  15. __print_symbolic(dir, \
  16. { DMA_BIDIRECTIONAL, "BIDIRECTIONAL" }, \
  17. { DMA_TO_DEVICE, "TO_DEVICE" }, \
  18. { DMA_FROM_DEVICE, "FROM_DEVICE" }, \
  19. { DMA_NONE, "NONE" })
  20. #define decode_dma_attrs(attrs) \
  21. __print_flags(attrs, "|", \
  22. { DMA_ATTR_WEAK_ORDERING, "WEAK_ORDERING" }, \
  23. { DMA_ATTR_WRITE_COMBINE, "WRITE_COMBINE" }, \
  24. { DMA_ATTR_NO_KERNEL_MAPPING, "NO_KERNEL_MAPPING" }, \
  25. { DMA_ATTR_SKIP_CPU_SYNC, "SKIP_CPU_SYNC" }, \
  26. { DMA_ATTR_FORCE_CONTIGUOUS, "FORCE_CONTIGUOUS" }, \
  27. { DMA_ATTR_ALLOC_SINGLE_PAGES, "ALLOC_SINGLE_PAGES" }, \
  28. { DMA_ATTR_NO_WARN, "NO_WARN" }, \
  29. { DMA_ATTR_PRIVILEGED, "PRIVILEGED" })
  30. DECLARE_EVENT_CLASS(dma_map,
  31. TP_PROTO(struct device *dev, phys_addr_t phys_addr, dma_addr_t dma_addr,
  32. size_t size, enum dma_data_direction dir, unsigned long attrs),
  33. TP_ARGS(dev, phys_addr, dma_addr, size, dir, attrs),
  34. TP_STRUCT__entry(
  35. __string(device, dev_name(dev))
  36. __field(u64, phys_addr)
  37. __field(u64, dma_addr)
  38. __field(size_t, size)
  39. __field(enum dma_data_direction, dir)
  40. __field(unsigned long, attrs)
  41. ),
  42. TP_fast_assign(
  43. __assign_str(device);
  44. __entry->phys_addr = phys_addr;
  45. __entry->dma_addr = dma_addr;
  46. __entry->size = size;
  47. __entry->dir = dir;
  48. __entry->attrs = attrs;
  49. ),
  50. TP_printk("%s dir=%s dma_addr=%llx size=%zu phys_addr=%llx attrs=%s",
  51. __get_str(device),
  52. decode_dma_data_direction(__entry->dir),
  53. __entry->dma_addr,
  54. __entry->size,
  55. __entry->phys_addr,
  56. decode_dma_attrs(__entry->attrs))
  57. );
  58. DEFINE_EVENT(dma_map, dma_map_page,
  59. TP_PROTO(struct device *dev, phys_addr_t phys_addr, dma_addr_t dma_addr,
  60. size_t size, enum dma_data_direction dir, unsigned long attrs),
  61. TP_ARGS(dev, phys_addr, dma_addr, size, dir, attrs));
  62. DEFINE_EVENT(dma_map, dma_map_resource,
  63. TP_PROTO(struct device *dev, phys_addr_t phys_addr, dma_addr_t dma_addr,
  64. size_t size, enum dma_data_direction dir, unsigned long attrs),
  65. TP_ARGS(dev, phys_addr, dma_addr, size, dir, attrs));
  66. DECLARE_EVENT_CLASS(dma_unmap,
  67. TP_PROTO(struct device *dev, dma_addr_t addr, size_t size,
  68. enum dma_data_direction dir, unsigned long attrs),
  69. TP_ARGS(dev, addr, size, dir, attrs),
  70. TP_STRUCT__entry(
  71. __string(device, dev_name(dev))
  72. __field(u64, addr)
  73. __field(size_t, size)
  74. __field(enum dma_data_direction, dir)
  75. __field(unsigned long, attrs)
  76. ),
  77. TP_fast_assign(
  78. __assign_str(device);
  79. __entry->addr = addr;
  80. __entry->size = size;
  81. __entry->dir = dir;
  82. __entry->attrs = attrs;
  83. ),
  84. TP_printk("%s dir=%s dma_addr=%llx size=%zu attrs=%s",
  85. __get_str(device),
  86. decode_dma_data_direction(__entry->dir),
  87. __entry->addr,
  88. __entry->size,
  89. decode_dma_attrs(__entry->attrs))
  90. );
  91. DEFINE_EVENT(dma_unmap, dma_unmap_page,
  92. TP_PROTO(struct device *dev, dma_addr_t addr, size_t size,
  93. enum dma_data_direction dir, unsigned long attrs),
  94. TP_ARGS(dev, addr, size, dir, attrs));
  95. DEFINE_EVENT(dma_unmap, dma_unmap_resource,
  96. TP_PROTO(struct device *dev, dma_addr_t addr, size_t size,
  97. enum dma_data_direction dir, unsigned long attrs),
  98. TP_ARGS(dev, addr, size, dir, attrs));
  99. DECLARE_EVENT_CLASS(dma_alloc_class,
  100. TP_PROTO(struct device *dev, void *virt_addr, dma_addr_t dma_addr,
  101. size_t size, enum dma_data_direction dir, gfp_t flags,
  102. unsigned long attrs),
  103. TP_ARGS(dev, virt_addr, dma_addr, size, dir, flags, attrs),
  104. TP_STRUCT__entry(
  105. __string(device, dev_name(dev))
  106. __field(void *, virt_addr)
  107. __field(u64, dma_addr)
  108. __field(size_t, size)
  109. __field(gfp_t, flags)
  110. __field(enum dma_data_direction, dir)
  111. __field(unsigned long, attrs)
  112. ),
  113. TP_fast_assign(
  114. __assign_str(device);
  115. __entry->virt_addr = virt_addr;
  116. __entry->dma_addr = dma_addr;
  117. __entry->size = size;
  118. __entry->flags = flags;
  119. __entry->dir = dir;
  120. __entry->attrs = attrs;
  121. ),
  122. TP_printk("%s dir=%s dma_addr=%llx size=%zu virt_addr=%p flags=%s attrs=%s",
  123. __get_str(device),
  124. decode_dma_data_direction(__entry->dir),
  125. __entry->dma_addr,
  126. __entry->size,
  127. __entry->virt_addr,
  128. show_gfp_flags(__entry->flags),
  129. decode_dma_attrs(__entry->attrs))
  130. );
  131. #define DEFINE_ALLOC_EVENT(name) \
  132. DEFINE_EVENT(dma_alloc_class, name, \
  133. TP_PROTO(struct device *dev, void *virt_addr, dma_addr_t dma_addr, \
  134. size_t size, enum dma_data_direction dir, gfp_t flags, \
  135. unsigned long attrs), \
  136. TP_ARGS(dev, virt_addr, dma_addr, size, dir, flags, attrs))
  137. DEFINE_ALLOC_EVENT(dma_alloc);
  138. DEFINE_ALLOC_EVENT(dma_alloc_pages);
  139. DEFINE_ALLOC_EVENT(dma_alloc_sgt_err);
  140. TRACE_EVENT(dma_alloc_sgt,
  141. TP_PROTO(struct device *dev, struct sg_table *sgt, size_t size,
  142. enum dma_data_direction dir, gfp_t flags, unsigned long attrs),
  143. TP_ARGS(dev, sgt, size, dir, flags, attrs),
  144. TP_STRUCT__entry(
  145. __string(device, dev_name(dev))
  146. __dynamic_array(u64, phys_addrs, sgt->orig_nents)
  147. __field(u64, dma_addr)
  148. __field(size_t, size)
  149. __field(enum dma_data_direction, dir)
  150. __field(gfp_t, flags)
  151. __field(unsigned long, attrs)
  152. ),
  153. TP_fast_assign(
  154. struct scatterlist *sg;
  155. int i;
  156. __assign_str(device);
  157. for_each_sg(sgt->sgl, sg, sgt->orig_nents, i)
  158. ((u64 *)__get_dynamic_array(phys_addrs))[i] = sg_phys(sg);
  159. __entry->dma_addr = sg_dma_address(sgt->sgl);
  160. __entry->size = size;
  161. __entry->dir = dir;
  162. __entry->flags = flags;
  163. __entry->attrs = attrs;
  164. ),
  165. TP_printk("%s dir=%s dma_addr=%llx size=%zu phys_addrs=%s flags=%s attrs=%s",
  166. __get_str(device),
  167. decode_dma_data_direction(__entry->dir),
  168. __entry->dma_addr,
  169. __entry->size,
  170. __print_array(__get_dynamic_array(phys_addrs),
  171. __get_dynamic_array_len(phys_addrs) /
  172. sizeof(u64), sizeof(u64)),
  173. show_gfp_flags(__entry->flags),
  174. decode_dma_attrs(__entry->attrs))
  175. );
  176. DECLARE_EVENT_CLASS(dma_free_class,
  177. TP_PROTO(struct device *dev, void *virt_addr, dma_addr_t dma_addr,
  178. size_t size, enum dma_data_direction dir, unsigned long attrs),
  179. TP_ARGS(dev, virt_addr, dma_addr, size, dir, attrs),
  180. TP_STRUCT__entry(
  181. __string(device, dev_name(dev))
  182. __field(void *, virt_addr)
  183. __field(u64, dma_addr)
  184. __field(size_t, size)
  185. __field(enum dma_data_direction, dir)
  186. __field(unsigned long, attrs)
  187. ),
  188. TP_fast_assign(
  189. __assign_str(device);
  190. __entry->virt_addr = virt_addr;
  191. __entry->dma_addr = dma_addr;
  192. __entry->size = size;
  193. __entry->dir = dir;
  194. __entry->attrs = attrs;
  195. ),
  196. TP_printk("%s dir=%s dma_addr=%llx size=%zu virt_addr=%p attrs=%s",
  197. __get_str(device),
  198. decode_dma_data_direction(__entry->dir),
  199. __entry->dma_addr,
  200. __entry->size,
  201. __entry->virt_addr,
  202. decode_dma_attrs(__entry->attrs))
  203. );
  204. #define DEFINE_FREE_EVENT(name) \
  205. DEFINE_EVENT(dma_free_class, name, \
  206. TP_PROTO(struct device *dev, void *virt_addr, dma_addr_t dma_addr, \
  207. size_t size, enum dma_data_direction dir, unsigned long attrs), \
  208. TP_ARGS(dev, virt_addr, dma_addr, size, dir, attrs))
  209. DEFINE_FREE_EVENT(dma_free);
  210. DEFINE_FREE_EVENT(dma_free_pages);
  211. TRACE_EVENT(dma_free_sgt,
  212. TP_PROTO(struct device *dev, struct sg_table *sgt, size_t size,
  213. enum dma_data_direction dir),
  214. TP_ARGS(dev, sgt, size, dir),
  215. TP_STRUCT__entry(
  216. __string(device, dev_name(dev))
  217. __dynamic_array(u64, phys_addrs, sgt->orig_nents)
  218. __field(u64, dma_addr)
  219. __field(size_t, size)
  220. __field(enum dma_data_direction, dir)
  221. ),
  222. TP_fast_assign(
  223. struct scatterlist *sg;
  224. int i;
  225. __assign_str(device);
  226. for_each_sg(sgt->sgl, sg, sgt->orig_nents, i)
  227. ((u64 *)__get_dynamic_array(phys_addrs))[i] = sg_phys(sg);
  228. __entry->dma_addr = sg_dma_address(sgt->sgl);
  229. __entry->size = size;
  230. __entry->dir = dir;
  231. ),
  232. TP_printk("%s dir=%s dma_addr=%llx size=%zu phys_addrs=%s",
  233. __get_str(device),
  234. decode_dma_data_direction(__entry->dir),
  235. __entry->dma_addr,
  236. __entry->size,
  237. __print_array(__get_dynamic_array(phys_addrs),
  238. __get_dynamic_array_len(phys_addrs) /
  239. sizeof(u64), sizeof(u64)))
  240. );
  241. TRACE_EVENT(dma_map_sg,
  242. TP_PROTO(struct device *dev, struct scatterlist *sgl, int nents,
  243. int ents, enum dma_data_direction dir, unsigned long attrs),
  244. TP_ARGS(dev, sgl, nents, ents, dir, attrs),
  245. TP_STRUCT__entry(
  246. __string(device, dev_name(dev))
  247. __dynamic_array(u64, phys_addrs, nents)
  248. __dynamic_array(u64, dma_addrs, ents)
  249. __dynamic_array(unsigned int, lengths, ents)
  250. __field(enum dma_data_direction, dir)
  251. __field(unsigned long, attrs)
  252. ),
  253. TP_fast_assign(
  254. struct scatterlist *sg;
  255. int i;
  256. __assign_str(device);
  257. for_each_sg(sgl, sg, nents, i)
  258. ((u64 *)__get_dynamic_array(phys_addrs))[i] = sg_phys(sg);
  259. for_each_sg(sgl, sg, ents, i) {
  260. ((u64 *)__get_dynamic_array(dma_addrs))[i] =
  261. sg_dma_address(sg);
  262. ((unsigned int *)__get_dynamic_array(lengths))[i] =
  263. sg_dma_len(sg);
  264. }
  265. __entry->dir = dir;
  266. __entry->attrs = attrs;
  267. ),
  268. TP_printk("%s dir=%s dma_addrs=%s sizes=%s phys_addrs=%s attrs=%s",
  269. __get_str(device),
  270. decode_dma_data_direction(__entry->dir),
  271. __print_array(__get_dynamic_array(dma_addrs),
  272. __get_dynamic_array_len(dma_addrs) /
  273. sizeof(u64), sizeof(u64)),
  274. __print_array(__get_dynamic_array(lengths),
  275. __get_dynamic_array_len(lengths) /
  276. sizeof(unsigned int), sizeof(unsigned int)),
  277. __print_array(__get_dynamic_array(phys_addrs),
  278. __get_dynamic_array_len(phys_addrs) /
  279. sizeof(u64), sizeof(u64)),
  280. decode_dma_attrs(__entry->attrs))
  281. );
  282. TRACE_EVENT(dma_map_sg_err,
  283. TP_PROTO(struct device *dev, struct scatterlist *sgl, int nents,
  284. int err, enum dma_data_direction dir, unsigned long attrs),
  285. TP_ARGS(dev, sgl, nents, err, dir, attrs),
  286. TP_STRUCT__entry(
  287. __string(device, dev_name(dev))
  288. __dynamic_array(u64, phys_addrs, nents)
  289. __field(int, err)
  290. __field(enum dma_data_direction, dir)
  291. __field(unsigned long, attrs)
  292. ),
  293. TP_fast_assign(
  294. struct scatterlist *sg;
  295. int i;
  296. __assign_str(device);
  297. for_each_sg(sgl, sg, nents, i)
  298. ((u64 *)__get_dynamic_array(phys_addrs))[i] = sg_phys(sg);
  299. __entry->err = err;
  300. __entry->dir = dir;
  301. __entry->attrs = attrs;
  302. ),
  303. TP_printk("%s dir=%s dma_addrs=%s err=%d attrs=%s",
  304. __get_str(device),
  305. decode_dma_data_direction(__entry->dir),
  306. __print_array(__get_dynamic_array(phys_addrs),
  307. __get_dynamic_array_len(phys_addrs) /
  308. sizeof(u64), sizeof(u64)),
  309. __entry->err,
  310. decode_dma_attrs(__entry->attrs))
  311. );
  312. TRACE_EVENT(dma_unmap_sg,
  313. TP_PROTO(struct device *dev, struct scatterlist *sgl, int nents,
  314. enum dma_data_direction dir, unsigned long attrs),
  315. TP_ARGS(dev, sgl, nents, dir, attrs),
  316. TP_STRUCT__entry(
  317. __string(device, dev_name(dev))
  318. __dynamic_array(u64, addrs, nents)
  319. __field(enum dma_data_direction, dir)
  320. __field(unsigned long, attrs)
  321. ),
  322. TP_fast_assign(
  323. struct scatterlist *sg;
  324. int i;
  325. __assign_str(device);
  326. for_each_sg(sgl, sg, nents, i)
  327. ((u64 *)__get_dynamic_array(addrs))[i] = sg_phys(sg);
  328. __entry->dir = dir;
  329. __entry->attrs = attrs;
  330. ),
  331. TP_printk("%s dir=%s phys_addrs=%s attrs=%s",
  332. __get_str(device),
  333. decode_dma_data_direction(__entry->dir),
  334. __print_array(__get_dynamic_array(addrs),
  335. __get_dynamic_array_len(addrs) /
  336. sizeof(u64), sizeof(u64)),
  337. decode_dma_attrs(__entry->attrs))
  338. );
  339. DECLARE_EVENT_CLASS(dma_sync_single,
  340. TP_PROTO(struct device *dev, dma_addr_t dma_addr, size_t size,
  341. enum dma_data_direction dir),
  342. TP_ARGS(dev, dma_addr, size, dir),
  343. TP_STRUCT__entry(
  344. __string(device, dev_name(dev))
  345. __field(u64, dma_addr)
  346. __field(size_t, size)
  347. __field(enum dma_data_direction, dir)
  348. ),
  349. TP_fast_assign(
  350. __assign_str(device);
  351. __entry->dma_addr = dma_addr;
  352. __entry->size = size;
  353. __entry->dir = dir;
  354. ),
  355. TP_printk("%s dir=%s dma_addr=%llx size=%zu",
  356. __get_str(device),
  357. decode_dma_data_direction(__entry->dir),
  358. __entry->dma_addr,
  359. __entry->size)
  360. );
  361. DEFINE_EVENT(dma_sync_single, dma_sync_single_for_cpu,
  362. TP_PROTO(struct device *dev, dma_addr_t dma_addr, size_t size,
  363. enum dma_data_direction dir),
  364. TP_ARGS(dev, dma_addr, size, dir));
  365. DEFINE_EVENT(dma_sync_single, dma_sync_single_for_device,
  366. TP_PROTO(struct device *dev, dma_addr_t dma_addr, size_t size,
  367. enum dma_data_direction dir),
  368. TP_ARGS(dev, dma_addr, size, dir));
  369. DECLARE_EVENT_CLASS(dma_sync_sg,
  370. TP_PROTO(struct device *dev, struct scatterlist *sgl, int nents,
  371. enum dma_data_direction dir),
  372. TP_ARGS(dev, sgl, nents, dir),
  373. TP_STRUCT__entry(
  374. __string(device, dev_name(dev))
  375. __dynamic_array(u64, dma_addrs, nents)
  376. __dynamic_array(unsigned int, lengths, nents)
  377. __field(enum dma_data_direction, dir)
  378. ),
  379. TP_fast_assign(
  380. struct scatterlist *sg;
  381. int i;
  382. __assign_str(device);
  383. for_each_sg(sgl, sg, nents, i) {
  384. ((u64 *)__get_dynamic_array(dma_addrs))[i] =
  385. sg_dma_address(sg);
  386. ((unsigned int *)__get_dynamic_array(lengths))[i] =
  387. sg_dma_len(sg);
  388. }
  389. __entry->dir = dir;
  390. ),
  391. TP_printk("%s dir=%s dma_addrs=%s sizes=%s",
  392. __get_str(device),
  393. decode_dma_data_direction(__entry->dir),
  394. __print_array(__get_dynamic_array(dma_addrs),
  395. __get_dynamic_array_len(dma_addrs) /
  396. sizeof(u64), sizeof(u64)),
  397. __print_array(__get_dynamic_array(lengths),
  398. __get_dynamic_array_len(lengths) /
  399. sizeof(unsigned int), sizeof(unsigned int)))
  400. );
  401. DEFINE_EVENT(dma_sync_sg, dma_sync_sg_for_cpu,
  402. TP_PROTO(struct device *dev, struct scatterlist *sg, int nents,
  403. enum dma_data_direction dir),
  404. TP_ARGS(dev, sg, nents, dir));
  405. DEFINE_EVENT(dma_sync_sg, dma_sync_sg_for_device,
  406. TP_PROTO(struct device *dev, struct scatterlist *sg, int nents,
  407. enum dma_data_direction dir),
  408. TP_ARGS(dev, sg, nents, dir));
  409. #endif /* _TRACE_DMA_H */
  410. /* This part must be outside protection */
  411. #include <trace/define_trace.h>