devfs.c 11 KB

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  1. /*
  2. * Copyright (c) 2006-2021, RT-Thread Development Team
  3. *
  4. * SPDX-License-Identifier: Apache-2.0
  5. *
  6. * Change Logs:
  7. * Date Author Notes
  8. * 2018-02-11 Bernard Ignore O_CREAT flag in open.
  9. */
  10. #include <rthw.h>
  11. #include <rtdbg.h>
  12. #include <rtdevice.h>
  13. #include <fcntl.h>
  14. #include <errno.h>
  15. #include <sys/unistd.h>
  16. #include <dfs.h>
  17. #include <dfs_fs.h>
  18. #include <dfs_file.h>
  19. #include <dfs_dentry.h>
  20. #include <dfs_mnt.h>
  21. static int dfs_devfs_open(struct dfs_file *file)
  22. {
  23. int ret = RT_EOK;
  24. RT_ASSERT(file != RT_NULL);
  25. RT_ASSERT(file->vnode->ref_count > 0);
  26. if (file->vnode->ref_count > 1)
  27. {
  28. if (file->vnode->type == FT_DIRECTORY
  29. && !(file->flags & O_DIRECTORY))
  30. {
  31. return -ENOENT;
  32. }
  33. file->fpos = 0;
  34. }
  35. if (!S_ISDIR(file->vnode->mode))
  36. {
  37. rt_device_t device = RT_NULL;
  38. struct dfs_dentry *de = file->dentry;
  39. char *device_name = rt_malloc(DFS_PATH_MAX);
  40. if (!device_name)
  41. {
  42. return -ENOMEM;
  43. }
  44. /* skip `/dev` */
  45. rt_snprintf(device_name, DFS_PATH_MAX, "%s%s", de->mnt->fullpath + sizeof("/dev") - 1, de->pathname);
  46. device = rt_device_find(device_name + 1);
  47. if (device)
  48. {
  49. file->vnode->data = device;
  50. #ifdef RT_USING_POSIX_DEVIO
  51. if (device->fops && device->fops->open)
  52. {
  53. ret = device->fops->open(file);
  54. if (ret == RT_EOK || ret == -RT_ENOSYS)
  55. {
  56. ret = RT_EOK;
  57. }
  58. }
  59. else if (device->ops && file->vnode->ref_count == 1)
  60. #else
  61. if (device->ops && file->vnode->ref_count == 1)
  62. #endif /* RT_USING_POSIX_DEVIO */
  63. {
  64. ret = rt_device_open(device, RT_DEVICE_OFLAG_RDWR);
  65. if (ret == RT_EOK || ret == -RT_ENOSYS)
  66. {
  67. ret = RT_EOK;
  68. }
  69. }
  70. }
  71. }
  72. return ret;
  73. }
  74. static int dfs_devfs_close(struct dfs_file *file)
  75. {
  76. int ret = RT_EOK;
  77. rt_device_t device;
  78. RT_ASSERT(file != RT_NULL);
  79. RT_ASSERT(file->vnode->ref_count > 0);
  80. if (file->vnode && file->vnode->data)
  81. {
  82. /* get device handler */
  83. device = (rt_device_t)file->vnode->data;
  84. #ifdef RT_USING_POSIX_DEVIO
  85. if (device->fops && device->fops->close)
  86. {
  87. ret = device->fops->close(file);
  88. }
  89. else if (file->vnode->ref_count == 1)
  90. #else
  91. if (device->ops && file->vnode->ref_count == 1)
  92. #endif /* RT_USING_POSIX_DEVIO */
  93. {
  94. /* close device handler */
  95. ret = rt_device_close(device);
  96. }
  97. }
  98. return ret;
  99. }
  100. static ssize_t dfs_devfs_read(struct dfs_file *file, void *buf, size_t count, off_t *pos)
  101. {
  102. ssize_t ret = -RT_EIO;
  103. rt_device_t device;
  104. RT_ASSERT(file != RT_NULL);
  105. if (file->vnode && file->vnode->data)
  106. {
  107. /* get device handler */
  108. device = (rt_device_t)file->vnode->data;
  109. #ifdef RT_USING_POSIX_DEVIO
  110. if (device->fops && device->fops->read)
  111. {
  112. ret = device->fops->read(file, buf, count, pos);
  113. }
  114. else
  115. #else
  116. if (device->ops)
  117. #endif /* RT_USING_POSIX_DEVIO */
  118. {
  119. /* read device data */
  120. ret = rt_device_read(device, *pos, buf, count);
  121. *pos += ret;
  122. }
  123. }
  124. return ret;
  125. }
  126. static ssize_t dfs_devfs_write(struct dfs_file *file, const void *buf, size_t count, off_t *pos)
  127. {
  128. ssize_t ret = -RT_EIO;
  129. rt_device_t device;
  130. RT_ASSERT(file != RT_NULL);
  131. if(file->vnode->data)
  132. {
  133. /* get device handler */
  134. device = (rt_device_t)file->vnode->data;
  135. if ((file->dentry->pathname[0] == '/') && (file->dentry->pathname[1] == '\0'))
  136. return -RT_ENOSYS;
  137. #ifdef RT_USING_POSIX_DEVIO
  138. if (device->fops && device->fops->write)
  139. {
  140. ret = device->fops->write(file, buf, count, pos);
  141. }
  142. else
  143. #else
  144. if (device->ops)
  145. #endif /* RT_USING_POSIX_DEVIO */
  146. {
  147. /* read device data */
  148. ret = rt_device_write(device, *pos, buf, count);
  149. *pos += ret;
  150. }
  151. }
  152. return ret;
  153. }
  154. static int dfs_devfs_ioctl(struct dfs_file *file, int cmd, void *args)
  155. {
  156. int ret = RT_EOK;
  157. rt_device_t device;
  158. RT_ASSERT(file != RT_NULL);
  159. if (file->vnode && file->vnode->data)
  160. {
  161. /* get device handler */
  162. device = (rt_device_t)file->vnode->data;
  163. if ((file->dentry->pathname[0] == '/') && (file->dentry->pathname[1] == '\0'))
  164. return -RT_ENOSYS;
  165. #ifdef RT_USING_POSIX_DEVIO
  166. if (device->fops && device->fops->ioctl)
  167. {
  168. ret = device->fops->ioctl(file, cmd, args);
  169. }
  170. else
  171. #endif /* RT_USING_POSIX_DEVIO */
  172. {
  173. ret = rt_device_control(device, cmd, args);
  174. }
  175. }
  176. return ret;
  177. }
  178. static int dfs_devfs_getdents(struct dfs_file *file, struct dirent *dirp, uint32_t count)
  179. {
  180. int ret = -RT_ENOSYS;
  181. RT_ASSERT(file != RT_NULL);
  182. return ret;
  183. }
  184. static int dfs_devfs_poll(struct dfs_file *file, struct rt_pollreq *req)
  185. {
  186. int mask = 0;
  187. rt_device_t device;
  188. RT_ASSERT(file != RT_NULL);
  189. if (file->vnode && file->vnode->data)
  190. {
  191. /* get device handler */
  192. device = (rt_device_t)file->vnode->data;
  193. #ifdef RT_USING_POSIX_DEVIO
  194. if (device->fops && device->fops->poll)
  195. {
  196. mask = device->fops->poll(file, req);
  197. }
  198. #endif /* RT_USING_POSIX_DEVIO */
  199. }
  200. return mask;
  201. }
  202. static int dfs_devfs_flush(struct dfs_file *file)
  203. {
  204. int ret = RT_EOK;
  205. rt_device_t device;
  206. RT_ASSERT(file != RT_NULL);
  207. if (file->vnode && file->vnode->data)
  208. {
  209. /* get device handler */
  210. device = (rt_device_t)file->vnode->data;
  211. #ifdef RT_USING_POSIX_DEVIO
  212. if (device->fops && device->fops->flush)
  213. {
  214. ret = device->fops->flush(file);
  215. }
  216. #endif /* RT_USING_POSIX_DEVIO */
  217. }
  218. return ret;
  219. }
  220. static off_t dfs_devfs_lseek(struct dfs_file *file, off_t offset, int wherece)
  221. {
  222. off_t ret = -EPERM;
  223. rt_device_t device;
  224. RT_ASSERT(file != RT_NULL);
  225. if (file->vnode && file->vnode->data)
  226. {
  227. /* get device handler */
  228. device = (rt_device_t)file->vnode->data;
  229. #ifdef RT_USING_POSIX_DEVIO
  230. if (device->fops && device->fops->lseek)
  231. {
  232. ret = device->fops->lseek(file, offset, wherece);
  233. }
  234. #endif /* RT_USING_POSIX_DEVIO */
  235. }
  236. return ret;
  237. }
  238. static int dfs_devfs_truncate(struct dfs_file *file, off_t offset)
  239. {
  240. int ret = RT_EOK;
  241. rt_device_t device;
  242. RT_ASSERT(file != RT_NULL);
  243. if (file->vnode && file->vnode->data)
  244. {
  245. /* get device handler */
  246. device = (rt_device_t)file->vnode->data;
  247. #ifdef RT_USING_POSIX_DEVIO
  248. if (device->fops && device->fops->truncate)
  249. {
  250. ret = device->fops->truncate(file, offset);
  251. }
  252. #endif /* RT_USING_POSIX_DEVIO */
  253. }
  254. return ret;
  255. }
  256. static int dfs_devfs_mmap(struct dfs_file *file, struct lwp_avl_struct *mmap)
  257. {
  258. int ret = RT_EOK;
  259. rt_device_t device;
  260. RT_ASSERT(file != RT_NULL);
  261. if (file->vnode && file->vnode->data)
  262. {
  263. /* get device handler */
  264. device = (rt_device_t)file->vnode->data;
  265. #ifdef RT_USING_POSIX_DEVIO
  266. if (device->fops && device->fops->mmap)
  267. {
  268. ret = device->fops->mmap(file, mmap);
  269. }
  270. #endif /* RT_USING_POSIX_DEVIO */
  271. }
  272. return ret;
  273. }
  274. static int dfs_devfs_lock(struct dfs_file *file, struct file_lock *flock)
  275. {
  276. int ret = RT_EOK;
  277. rt_device_t device;
  278. RT_ASSERT(file != RT_NULL);
  279. if (file->vnode && file->vnode->data)
  280. {
  281. /* get device handler */
  282. device = (rt_device_t)file->vnode->data;
  283. #ifdef RT_USING_POSIX_DEVIO
  284. if (device->fops && device->fops->lock)
  285. {
  286. ret = device->fops->lock(file, flock);
  287. }
  288. #endif /* RT_USING_POSIX_DEVIO */
  289. }
  290. return ret;
  291. }
  292. static int dfs_devfs_flock(struct dfs_file *file, int operation, struct file_lock *flock)
  293. {
  294. int ret = RT_EOK;
  295. rt_device_t device;
  296. RT_ASSERT(file != RT_NULL);
  297. if (file->vnode && file->vnode->data)
  298. {
  299. /* get device handler */
  300. device = (rt_device_t)file->vnode->data;
  301. #ifdef RT_USING_POSIX_DEVIO
  302. if (device->fops && device->fops->flock)
  303. {
  304. ret = device->fops->flock(file, operation, flock);
  305. }
  306. #endif /* RT_USING_POSIX_DEVIO */
  307. }
  308. return ret;
  309. }
  310. static const struct dfs_file_ops _dev_fops =
  311. {
  312. .open = dfs_devfs_open,
  313. .close = dfs_devfs_close,
  314. .read = dfs_devfs_read,
  315. .write = dfs_devfs_write,
  316. .ioctl = dfs_devfs_ioctl,
  317. .getdents = dfs_devfs_getdents,
  318. .poll = dfs_devfs_poll,
  319. .flush = dfs_devfs_flush,
  320. .lseek = dfs_devfs_lseek,
  321. .truncate = dfs_devfs_truncate,
  322. .mmap = dfs_devfs_mmap,
  323. .lock = dfs_devfs_lock,
  324. .flock = dfs_devfs_flock,
  325. };
  326. const struct dfs_file_ops *dfs_devfs_fops(void)
  327. {
  328. return &_dev_fops;
  329. }
  330. mode_t dfs_devfs_device_to_mode(struct rt_device *device)
  331. {
  332. mode_t mode = 0;
  333. switch (device->type)
  334. {
  335. case RT_Device_Class_Char:
  336. mode = S_IFCHR | 0777;
  337. break;
  338. case RT_Device_Class_Block:
  339. mode = S_IFBLK | 0777;
  340. break;
  341. case RT_Device_Class_Pipe:
  342. mode = S_IFIFO | 0777;
  343. break;
  344. default:
  345. mode = S_IFCHR | 0777;
  346. break;
  347. }
  348. return mode;
  349. }
  350. static void dfs_devfs_mkdir(const char *fullpath, mode_t mode)
  351. {
  352. int len = rt_strlen(fullpath);
  353. char *path = (char *)rt_malloc(len + 1);
  354. if (path)
  355. {
  356. int index = len - 1;
  357. rt_strcpy(path, fullpath);
  358. if (path[index] == '/')
  359. {
  360. path[index] = '\0';
  361. index --;
  362. }
  363. while (path[index] != '/' && index >= 0)
  364. {
  365. index --;
  366. }
  367. path[index] = '\0';
  368. if (index > 0 && access(path, 0) != 0)
  369. {
  370. int i = 0;
  371. if (path[i] == '/')
  372. {
  373. i ++;
  374. }
  375. while (index > i)
  376. {
  377. if (path[i] == '/')
  378. {
  379. path[i] = '\0';
  380. mkdir(path, mode);
  381. path[i] = '/';
  382. }
  383. i ++;
  384. }
  385. mkdir(path, mode);
  386. }
  387. }
  388. }
  389. void dfs_devfs_device_add(rt_device_t device)
  390. {
  391. int fd;
  392. char path[512];
  393. if (device)
  394. {
  395. rt_snprintf(path, 512, "/dev/%s", device->parent.name);
  396. if (access(path, 0) != 0)
  397. {
  398. mode_t mode = dfs_devfs_device_to_mode(device);
  399. dfs_devfs_mkdir(path, mode);
  400. fd = open(path, O_RDWR | O_CREAT, mode);
  401. if (fd >= 0)
  402. {
  403. close(fd);
  404. }
  405. }
  406. }
  407. }
  408. int dfs_devfs_update(void)
  409. {
  410. int count = rt_object_get_length(RT_Object_Class_Device);
  411. if (count > 0)
  412. {
  413. rt_device_t *devices = rt_malloc(count * sizeof(rt_device_t));
  414. if (devices)
  415. {
  416. rt_object_get_pointers(RT_Object_Class_Device, (rt_object_t *)devices, count);
  417. for (int index = 0; index < count; index ++)
  418. {
  419. dfs_devfs_device_add(devices[index]);
  420. }
  421. rt_free(devices);
  422. }
  423. }
  424. return count;
  425. }