dfl-afu-dma-region.c 12 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * Driver for FPGA Accelerated Function Unit (AFU) DMA Region Management
  4. *
  5. * Copyright (C) 2017-2018 Intel Corporation, Inc.
  6. *
  7. * Authors:
  8. * Wu Hao <hao.wu@intel.com>
  9. * Xiao Guangrong <guangrong.xiao@linux.intel.com>
  10. */
  11. #include <linux/dma-mapping.h>
  12. #include <linux/sched/signal.h>
  13. #include <linux/uaccess.h>
  14. #include "dfl-afu.h"
  15. static void put_all_pages(struct page **pages, int npages)
  16. {
  17. int i;
  18. for (i = 0; i < npages; i++)
  19. if (pages[i])
  20. put_page(pages[i]);
  21. }
  22. void afu_dma_region_init(struct dfl_feature_platform_data *pdata)
  23. {
  24. struct dfl_afu *afu = dfl_fpga_pdata_get_private(pdata);
  25. afu->dma_regions = RB_ROOT;
  26. }
  27. /**
  28. * afu_dma_adjust_locked_vm - adjust locked memory
  29. * @dev: port device
  30. * @npages: number of pages
  31. * @incr: increase or decrease locked memory
  32. *
  33. * Increase or decrease the locked memory size with npages input.
  34. *
  35. * Return 0 on success.
  36. * Return -ENOMEM if locked memory size is over the limit and no CAP_IPC_LOCK.
  37. */
  38. static int afu_dma_adjust_locked_vm(struct device *dev, long npages, bool incr)
  39. {
  40. unsigned long locked, lock_limit;
  41. int ret = 0;
  42. /* the task is exiting. */
  43. if (!current->mm)
  44. return 0;
  45. down_write(&current->mm->mmap_sem);
  46. if (incr) {
  47. locked = current->mm->locked_vm + npages;
  48. lock_limit = rlimit(RLIMIT_MEMLOCK) >> PAGE_SHIFT;
  49. if (locked > lock_limit && !capable(CAP_IPC_LOCK))
  50. ret = -ENOMEM;
  51. else
  52. current->mm->locked_vm += npages;
  53. } else {
  54. if (WARN_ON_ONCE(npages > current->mm->locked_vm))
  55. npages = current->mm->locked_vm;
  56. current->mm->locked_vm -= npages;
  57. }
  58. dev_dbg(dev, "[%d] RLIMIT_MEMLOCK %c%ld %ld/%ld%s\n", current->pid,
  59. incr ? '+' : '-', npages << PAGE_SHIFT,
  60. current->mm->locked_vm << PAGE_SHIFT, rlimit(RLIMIT_MEMLOCK),
  61. ret ? "- execeeded" : "");
  62. up_write(&current->mm->mmap_sem);
  63. return ret;
  64. }
  65. /**
  66. * afu_dma_pin_pages - pin pages of given dma memory region
  67. * @pdata: feature device platform data
  68. * @region: dma memory region to be pinned
  69. *
  70. * Pin all the pages of given dfl_afu_dma_region.
  71. * Return 0 for success or negative error code.
  72. */
  73. static int afu_dma_pin_pages(struct dfl_feature_platform_data *pdata,
  74. struct dfl_afu_dma_region *region)
  75. {
  76. int npages = region->length >> PAGE_SHIFT;
  77. struct device *dev = &pdata->dev->dev;
  78. int ret, pinned;
  79. ret = afu_dma_adjust_locked_vm(dev, npages, true);
  80. if (ret)
  81. return ret;
  82. region->pages = kcalloc(npages, sizeof(struct page *), GFP_KERNEL);
  83. if (!region->pages) {
  84. ret = -ENOMEM;
  85. goto unlock_vm;
  86. }
  87. pinned = get_user_pages_fast(region->user_addr, npages, 1,
  88. region->pages);
  89. if (pinned < 0) {
  90. ret = pinned;
  91. goto free_pages;
  92. } else if (pinned != npages) {
  93. ret = -EFAULT;
  94. goto put_pages;
  95. }
  96. dev_dbg(dev, "%d pages pinned\n", pinned);
  97. return 0;
  98. put_pages:
  99. put_all_pages(region->pages, pinned);
  100. free_pages:
  101. kfree(region->pages);
  102. unlock_vm:
  103. afu_dma_adjust_locked_vm(dev, npages, false);
  104. return ret;
  105. }
  106. /**
  107. * afu_dma_unpin_pages - unpin pages of given dma memory region
  108. * @pdata: feature device platform data
  109. * @region: dma memory region to be unpinned
  110. *
  111. * Unpin all the pages of given dfl_afu_dma_region.
  112. * Return 0 for success or negative error code.
  113. */
  114. static void afu_dma_unpin_pages(struct dfl_feature_platform_data *pdata,
  115. struct dfl_afu_dma_region *region)
  116. {
  117. long npages = region->length >> PAGE_SHIFT;
  118. struct device *dev = &pdata->dev->dev;
  119. put_all_pages(region->pages, npages);
  120. kfree(region->pages);
  121. afu_dma_adjust_locked_vm(dev, npages, false);
  122. dev_dbg(dev, "%ld pages unpinned\n", npages);
  123. }
  124. /**
  125. * afu_dma_check_continuous_pages - check if pages are continuous
  126. * @region: dma memory region
  127. *
  128. * Return true if pages of given dma memory region have continuous physical
  129. * address, otherwise return false.
  130. */
  131. static bool afu_dma_check_continuous_pages(struct dfl_afu_dma_region *region)
  132. {
  133. int npages = region->length >> PAGE_SHIFT;
  134. int i;
  135. for (i = 0; i < npages - 1; i++)
  136. if (page_to_pfn(region->pages[i]) + 1 !=
  137. page_to_pfn(region->pages[i + 1]))
  138. return false;
  139. return true;
  140. }
  141. /**
  142. * dma_region_check_iova - check if memory area is fully contained in the region
  143. * @region: dma memory region
  144. * @iova: address of the dma memory area
  145. * @size: size of the dma memory area
  146. *
  147. * Compare the dma memory area defined by @iova and @size with given dma region.
  148. * Return true if memory area is fully contained in the region, otherwise false.
  149. */
  150. static bool dma_region_check_iova(struct dfl_afu_dma_region *region,
  151. u64 iova, u64 size)
  152. {
  153. if (!size && region->iova != iova)
  154. return false;
  155. return (region->iova <= iova) &&
  156. (region->length + region->iova >= iova + size);
  157. }
  158. /**
  159. * afu_dma_region_add - add given dma region to rbtree
  160. * @pdata: feature device platform data
  161. * @region: dma region to be added
  162. *
  163. * Return 0 for success, -EEXIST if dma region has already been added.
  164. *
  165. * Needs to be called with pdata->lock heold.
  166. */
  167. static int afu_dma_region_add(struct dfl_feature_platform_data *pdata,
  168. struct dfl_afu_dma_region *region)
  169. {
  170. struct dfl_afu *afu = dfl_fpga_pdata_get_private(pdata);
  171. struct rb_node **new, *parent = NULL;
  172. dev_dbg(&pdata->dev->dev, "add region (iova = %llx)\n",
  173. (unsigned long long)region->iova);
  174. new = &afu->dma_regions.rb_node;
  175. while (*new) {
  176. struct dfl_afu_dma_region *this;
  177. this = container_of(*new, struct dfl_afu_dma_region, node);
  178. parent = *new;
  179. if (dma_region_check_iova(this, region->iova, region->length))
  180. return -EEXIST;
  181. if (region->iova < this->iova)
  182. new = &((*new)->rb_left);
  183. else if (region->iova > this->iova)
  184. new = &((*new)->rb_right);
  185. else
  186. return -EEXIST;
  187. }
  188. rb_link_node(&region->node, parent, new);
  189. rb_insert_color(&region->node, &afu->dma_regions);
  190. return 0;
  191. }
  192. /**
  193. * afu_dma_region_remove - remove given dma region from rbtree
  194. * @pdata: feature device platform data
  195. * @region: dma region to be removed
  196. *
  197. * Needs to be called with pdata->lock heold.
  198. */
  199. static void afu_dma_region_remove(struct dfl_feature_platform_data *pdata,
  200. struct dfl_afu_dma_region *region)
  201. {
  202. struct dfl_afu *afu;
  203. dev_dbg(&pdata->dev->dev, "del region (iova = %llx)\n",
  204. (unsigned long long)region->iova);
  205. afu = dfl_fpga_pdata_get_private(pdata);
  206. rb_erase(&region->node, &afu->dma_regions);
  207. }
  208. /**
  209. * afu_dma_region_destroy - destroy all regions in rbtree
  210. * @pdata: feature device platform data
  211. *
  212. * Needs to be called with pdata->lock heold.
  213. */
  214. void afu_dma_region_destroy(struct dfl_feature_platform_data *pdata)
  215. {
  216. struct dfl_afu *afu = dfl_fpga_pdata_get_private(pdata);
  217. struct rb_node *node = rb_first(&afu->dma_regions);
  218. struct dfl_afu_dma_region *region;
  219. while (node) {
  220. region = container_of(node, struct dfl_afu_dma_region, node);
  221. dev_dbg(&pdata->dev->dev, "del region (iova = %llx)\n",
  222. (unsigned long long)region->iova);
  223. rb_erase(node, &afu->dma_regions);
  224. if (region->iova)
  225. dma_unmap_page(dfl_fpga_pdata_to_parent(pdata),
  226. region->iova, region->length,
  227. DMA_BIDIRECTIONAL);
  228. if (region->pages)
  229. afu_dma_unpin_pages(pdata, region);
  230. node = rb_next(node);
  231. kfree(region);
  232. }
  233. }
  234. /**
  235. * afu_dma_region_find - find the dma region from rbtree based on iova and size
  236. * @pdata: feature device platform data
  237. * @iova: address of the dma memory area
  238. * @size: size of the dma memory area
  239. *
  240. * It finds the dma region from the rbtree based on @iova and @size:
  241. * - if @size == 0, it finds the dma region which starts from @iova
  242. * - otherwise, it finds the dma region which fully contains
  243. * [@iova, @iova+size)
  244. * If nothing is matched returns NULL.
  245. *
  246. * Needs to be called with pdata->lock held.
  247. */
  248. struct dfl_afu_dma_region *
  249. afu_dma_region_find(struct dfl_feature_platform_data *pdata, u64 iova, u64 size)
  250. {
  251. struct dfl_afu *afu = dfl_fpga_pdata_get_private(pdata);
  252. struct rb_node *node = afu->dma_regions.rb_node;
  253. struct device *dev = &pdata->dev->dev;
  254. while (node) {
  255. struct dfl_afu_dma_region *region;
  256. region = container_of(node, struct dfl_afu_dma_region, node);
  257. if (dma_region_check_iova(region, iova, size)) {
  258. dev_dbg(dev, "find region (iova = %llx)\n",
  259. (unsigned long long)region->iova);
  260. return region;
  261. }
  262. if (iova < region->iova)
  263. node = node->rb_left;
  264. else if (iova > region->iova)
  265. node = node->rb_right;
  266. else
  267. /* the iova region is not fully covered. */
  268. break;
  269. }
  270. dev_dbg(dev, "region with iova %llx and size %llx is not found\n",
  271. (unsigned long long)iova, (unsigned long long)size);
  272. return NULL;
  273. }
  274. /**
  275. * afu_dma_region_find_iova - find the dma region from rbtree by iova
  276. * @pdata: feature device platform data
  277. * @iova: address of the dma region
  278. *
  279. * Needs to be called with pdata->lock held.
  280. */
  281. static struct dfl_afu_dma_region *
  282. afu_dma_region_find_iova(struct dfl_feature_platform_data *pdata, u64 iova)
  283. {
  284. return afu_dma_region_find(pdata, iova, 0);
  285. }
  286. /**
  287. * afu_dma_map_region - map memory region for dma
  288. * @pdata: feature device platform data
  289. * @user_addr: address of the memory region
  290. * @length: size of the memory region
  291. * @iova: pointer of iova address
  292. *
  293. * Map memory region defined by @user_addr and @length, and return dma address
  294. * of the memory region via @iova.
  295. * Return 0 for success, otherwise error code.
  296. */
  297. int afu_dma_map_region(struct dfl_feature_platform_data *pdata,
  298. u64 user_addr, u64 length, u64 *iova)
  299. {
  300. struct dfl_afu_dma_region *region;
  301. int ret;
  302. /*
  303. * Check Inputs, only accept page-aligned user memory region with
  304. * valid length.
  305. */
  306. if (!PAGE_ALIGNED(user_addr) || !PAGE_ALIGNED(length) || !length)
  307. return -EINVAL;
  308. /* Check overflow */
  309. if (user_addr + length < user_addr)
  310. return -EINVAL;
  311. if (!access_ok(VERIFY_WRITE, (void __user *)(unsigned long)user_addr,
  312. length))
  313. return -EINVAL;
  314. region = kzalloc(sizeof(*region), GFP_KERNEL);
  315. if (!region)
  316. return -ENOMEM;
  317. region->user_addr = user_addr;
  318. region->length = length;
  319. /* Pin the user memory region */
  320. ret = afu_dma_pin_pages(pdata, region);
  321. if (ret) {
  322. dev_err(&pdata->dev->dev, "failed to pin memory region\n");
  323. goto free_region;
  324. }
  325. /* Only accept continuous pages, return error else */
  326. if (!afu_dma_check_continuous_pages(region)) {
  327. dev_err(&pdata->dev->dev, "pages are not continuous\n");
  328. ret = -EINVAL;
  329. goto unpin_pages;
  330. }
  331. /* As pages are continuous then start to do DMA mapping */
  332. region->iova = dma_map_page(dfl_fpga_pdata_to_parent(pdata),
  333. region->pages[0], 0,
  334. region->length,
  335. DMA_BIDIRECTIONAL);
  336. if (dma_mapping_error(dfl_fpga_pdata_to_parent(pdata), region->iova)) {
  337. dev_err(&pdata->dev->dev, "failed to map for dma\n");
  338. ret = -EFAULT;
  339. goto unpin_pages;
  340. }
  341. *iova = region->iova;
  342. mutex_lock(&pdata->lock);
  343. ret = afu_dma_region_add(pdata, region);
  344. mutex_unlock(&pdata->lock);
  345. if (ret) {
  346. dev_err(&pdata->dev->dev, "failed to add dma region\n");
  347. goto unmap_dma;
  348. }
  349. return 0;
  350. unmap_dma:
  351. dma_unmap_page(dfl_fpga_pdata_to_parent(pdata),
  352. region->iova, region->length, DMA_BIDIRECTIONAL);
  353. unpin_pages:
  354. afu_dma_unpin_pages(pdata, region);
  355. free_region:
  356. kfree(region);
  357. return ret;
  358. }
  359. /**
  360. * afu_dma_unmap_region - unmap dma memory region
  361. * @pdata: feature device platform data
  362. * @iova: dma address of the region
  363. *
  364. * Unmap dma memory region based on @iova.
  365. * Return 0 for success, otherwise error code.
  366. */
  367. int afu_dma_unmap_region(struct dfl_feature_platform_data *pdata, u64 iova)
  368. {
  369. struct dfl_afu_dma_region *region;
  370. mutex_lock(&pdata->lock);
  371. region = afu_dma_region_find_iova(pdata, iova);
  372. if (!region) {
  373. mutex_unlock(&pdata->lock);
  374. return -EINVAL;
  375. }
  376. if (region->in_use) {
  377. mutex_unlock(&pdata->lock);
  378. return -EBUSY;
  379. }
  380. afu_dma_region_remove(pdata, region);
  381. mutex_unlock(&pdata->lock);
  382. dma_unmap_page(dfl_fpga_pdata_to_parent(pdata),
  383. region->iova, region->length, DMA_BIDIRECTIONAL);
  384. afu_dma_unpin_pages(pdata, region);
  385. kfree(region);
  386. return 0;
  387. }