drv_sdh.c 20 KB

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  1. /**************************************************************************//**
  2. *
  3. * @copyright (C) 2020 Nuvoton Technology Corp. All rights reserved.
  4. *
  5. * SPDX-License-Identifier: Apache-2.0
  6. *
  7. * Change Logs:
  8. * Date Author Notes
  9. * 2020-12-12 Wayne First version
  10. *
  11. ******************************************************************************/
  12. #include <rtconfig.h>
  13. #if defined(BSP_USING_SDH)
  14. #include <rtdevice.h>
  15. #include <string.h>
  16. #include "NuMicro.h"
  17. #include <drv_sys.h>
  18. #include <dfs_fs.h>
  19. #include <dfs_file.h>
  20. #include <unistd.h>
  21. #include <stdio.h>
  22. #include <sys/stat.h>
  23. #include <sys/statfs.h>
  24. /* Private define ---------------------------------------------------------------*/
  25. #if defined(NU_SDH_MOUNT_ON_ROOT)
  26. #if !defined(NU_SDH_MOUNTPOINT_EMMC)
  27. #define NU_SDH_MOUNTPOINT_EMMC "/"
  28. #endif
  29. #if !defined(NU_SDH_MOUNTPOINT_SDH0)
  30. #define NU_SDH_MOUNTPOINT_SDH0 NU_SDH_MOUNTPOINT_SDH0"/sd0"
  31. #endif
  32. #if !defined(NU_SDH_MOUNTPOINT_SDH1)
  33. #define NU_SDH_MOUNTPOINT_SDH1 NU_SDH_MOUNTPOINT_SDH0"/sd1"
  34. #endif
  35. #else
  36. #if !defined(NU_SDH_MOUNTPOINT_ROOT)
  37. #define NU_SDH_MOUNTPOINT_ROOT "/mnt"
  38. #endif
  39. #endif
  40. #if !defined(NU_SDH_MOUNTPOINT_EMMC)
  41. #define NU_SDH_MOUNTPOINT_EMMC NU_SDH_MOUNTPOINT_ROOT"/emmc"
  42. #endif
  43. #if !defined(NU_SDH_MOUNTPOINT_SDH0)
  44. #define NU_SDH_MOUNTPOINT_SDH0 NU_SDH_MOUNTPOINT_ROOT"/sd0"
  45. #endif
  46. #if !defined(NU_SDH_MOUNTPOINT_SDH1)
  47. #define NU_SDH_MOUNTPOINT_SDH1 NU_SDH_MOUNTPOINT_ROOT"/sd1"
  48. #endif
  49. #if defined(BSP_USING_SDH0) && defined(BSP_USING_SDH1)
  50. #define NU_SDH_SHARED 1
  51. #endif
  52. enum
  53. {
  54. SDH_START = -1,
  55. #if defined(BSP_USING_EMMC)
  56. EMMC_IDX,
  57. #endif
  58. #if defined(BSP_USING_SDH0)
  59. SDH0_IDX,
  60. #endif
  61. #if defined(BSP_USING_SDH1)
  62. SDH1_IDX,
  63. #endif
  64. SDH_CNT
  65. };
  66. #define SDH_BLOCK_SIZE 512ul
  67. #if defined(NU_SDH_HOTPLUG)
  68. #define NU_SDH_TID_STACK_SIZE 1024
  69. #endif
  70. #if defined(NU_SDH_HOTPLUG)
  71. typedef enum
  72. {
  73. NU_SDH_CARD_DETECTED_EMMC = (1 << 0),
  74. NU_SDH_CARD_DETECTED_SD0 = (1 << 1),
  75. NU_SDH_CARD_DETECTED_SD1 = (1 << 2),
  76. NU_SDH_CARD_EVENT_ALL = (NU_SDH_CARD_DETECTED_EMMC | NU_SDH_CARD_DETECTED_SD0 | NU_SDH_CARD_DETECTED_SD1)
  77. } E_CARD_EVENT;
  78. #endif
  79. /* Private typedef --------------------------------------------------------------*/
  80. struct nu_sdh
  81. {
  82. struct rt_device dev;
  83. char *name;
  84. #if defined(NU_SDH_HOTPLUG)
  85. char *mounted_point;
  86. #endif
  87. SDH_T *base;
  88. IRQn_Type irqn;
  89. E_SYS_IPRST rstidx;
  90. E_SYS_IPCLK clkidx;
  91. #if defined(NU_SDH_HOTPLUG)
  92. E_CARD_EVENT card_detected_event;
  93. #endif
  94. uint32_t card_num;
  95. uint32_t is_card_inserted;
  96. SDH_INFO_T *info;
  97. struct rt_semaphore lock;
  98. uint8_t *pbuf;
  99. };
  100. typedef struct nu_sdh *nu_sdh_t;
  101. #if defined(NU_SDH_HOTPLUG)
  102. static struct rt_thread sdh_tid;
  103. static rt_uint8_t sdh_stack[NU_SDH_TID_STACK_SIZE];
  104. #endif
  105. /* Private functions ------------------------------------------------------------*/
  106. static rt_err_t nu_sdh_init(rt_device_t dev);
  107. static rt_err_t nu_sdh_open(rt_device_t dev, rt_uint16_t oflag);
  108. static rt_err_t nu_sdh_close(rt_device_t dev);
  109. static rt_size_t nu_sdh_read(rt_device_t dev, rt_off_t pos, void *buffer, rt_size_t blk_nb);
  110. static rt_err_t nu_sdh_control(rt_device_t dev, int cmd, void *args);
  111. static int rt_hw_sdh_init(void);
  112. #if defined(NU_SDH_HOTPLUG)
  113. static rt_bool_t nu_sdh_hotplug_is_mounted(const char *mounting_path);
  114. static void sdh_hotplugger(void *param);
  115. static rt_err_t nu_sdh_hotplug_mount(nu_sdh_t sdh);
  116. static rt_err_t nu_sdh_hotplug_unmount(nu_sdh_t sdh);
  117. #endif
  118. /* Public functions -------------------------------------------------------------*/
  119. /* Private variables ------------------------------------------------------------*/
  120. #if defined(BSP_USING_EMMC)
  121. static SDH_INFO_T EMMC;
  122. #endif
  123. #if defined(BSP_USING_SDH0)
  124. static SDH_INFO_T SD0;
  125. #endif
  126. #if defined(BSP_USING_SDH1)
  127. static SDH_INFO_T SD1;
  128. #endif
  129. #if defined(NU_SDH_SHARED)
  130. static struct rt_mutex g_shared_lock;
  131. #endif
  132. static struct nu_sdh nu_sdh_arr [] =
  133. {
  134. #if defined(BSP_USING_EMMC)
  135. {
  136. .name = "emmc",
  137. #if defined(NU_SDH_HOTPLUG)
  138. .mounted_point = NU_SDH_MOUNTPOINT_EMMC,
  139. #endif
  140. .irqn = IRQ_FMI,
  141. .base = SDH0,
  142. .card_num = SD_PORT0,
  143. .rstidx = FMIRST,
  144. .clkidx = EMMCCKEN,
  145. .info = &EMMC,
  146. .card_detected_event = NU_SDH_CARD_DETECTED_EMMC,
  147. },
  148. #endif
  149. #if defined(BSP_USING_SDH0)
  150. {
  151. .name = "sdh0",
  152. #if defined(NU_SDH_HOTPLUG)
  153. .mounted_point = NU_SDH_MOUNTPOINT_SDH0,
  154. #endif
  155. .irqn = IRQ_SDH,
  156. .base = SDH1,
  157. .card_num = SD_PORT0,
  158. .rstidx = SDIORST,
  159. .clkidx = SDHCKEN,
  160. .info = &SD0,
  161. .card_detected_event = NU_SDH_CARD_DETECTED_SD0,
  162. },
  163. #endif
  164. #if defined(BSP_USING_SDH1)
  165. {
  166. .name = "sdh1",
  167. #if defined(NU_SDH_HOTPLUG)
  168. .mounted_point = NU_SDH_MOUNTPOINT_SDH1,
  169. #endif
  170. .base = SDH1,
  171. .card_num = SD_PORT1,
  172. #if defined(NU_SDH_SHARED)
  173. .irqn = (IRQn_Type)0,
  174. .rstidx = SYS_IPRST_NA,
  175. .clkidx = SYS_IPCLK_NA,
  176. #else
  177. .irqn = IRQ_SDH,
  178. .rstidx = SDIORST,
  179. .clkidx = SDHCKEN,
  180. #endif
  181. .info = &SD1,
  182. .card_detected_event = NU_SDH_CARD_DETECTED_SD1,
  183. },
  184. #endif
  185. }; /* struct nu_sdh nu_sdh_arr [] */
  186. static struct rt_event sdh_event;
  187. static void SDH_IRQHandler(int vector, void *param)
  188. {
  189. nu_sdh_t sdh = (nu_sdh_t)param;
  190. SDH_T *sdh_base = sdh->base;
  191. unsigned int volatile isr;
  192. SDH_INFO_T *pSD = sdh->info;
  193. #if defined(BSP_USING_SDH1)
  194. if (SDH_WhichCardIsSelected(sdh_base) == SD_PORT1)
  195. pSD = &SD1;
  196. #endif
  197. // FMI data abort interrupt
  198. if (sdh_base->GINTSTS & SDH_GINTSTS_DTAIF_Msk)
  199. {
  200. /* ResetAllEngine() */
  201. sdh_base->GCTL |= SDH_GCTL_GCTLRST_Msk;
  202. }
  203. //----- SD interrupt status
  204. isr = sdh_base->INTSTS;
  205. if (isr & SDH_INTSTS_BLKDIF_Msk)
  206. {
  207. // block down
  208. pSD->DataReadyFlag = TRUE;
  209. SDH_CLR_INT_FLAG(sdh_base, SDH_INTSTS_BLKDIF_Msk);
  210. }
  211. if (isr & SDH_INTSTS_CDIF_Msk) // card number=0 detect
  212. {
  213. #if defined(NU_SDH_HOTPLUG)
  214. rt_event_send(&sdh_event, sdh->card_detected_event);
  215. #endif
  216. /* Clear CDIF interrupt flag */
  217. SDH_CLR_INT_FLAG(sdh_base, SDH_INTSTS_CDIF_Msk);
  218. }
  219. else if (isr & SDH_INTSTS_CDIF1_Msk) // card number=1 detect
  220. {
  221. #if defined(NU_SDH_HOTPLUG)
  222. rt_event_send(&sdh_event, NU_SDH_CARD_DETECTED_SD1);
  223. #endif
  224. /* Clear CDIF1 interrupt flag */
  225. SDH_CLR_INT_FLAG(sdh_base, SDH_INTSTS_CDIF1_Msk);
  226. }
  227. // CRC error interrupt
  228. if (isr & SDH_INTSTS_CRCIF_Msk)
  229. {
  230. if (!(isr & SDH_INTSTS_CRC16_Msk))
  231. {
  232. /* CRC_16 error */
  233. // TODO: handle CRC 16 error
  234. }
  235. else if (!(isr & SDH_INTSTS_CRC7_Msk))
  236. {
  237. if (!pSD->R3Flag)
  238. {
  239. /* CRC_7 error */
  240. // TODO: handle CRC 7 error
  241. }
  242. }
  243. /* Clear CRCIF interrupt flag */
  244. SDH_CLR_INT_FLAG(sdh_base, SDH_INTSTS_CRCIF_Msk);
  245. }
  246. /* Data-in timeout */
  247. if (isr & SDH_INTSTS_DITOIF_Msk)
  248. {
  249. sdh_base->INTSTS |= SDH_INTSTS_DITOIF_Msk;
  250. }
  251. /* Response-in timeout interrupt */
  252. if (isr & SDH_INTSTS_RTOIF_Msk)
  253. {
  254. sdh_base->INTSTS |= SDH_INTSTS_RTOIF_Msk;
  255. }
  256. }
  257. /* RT-Thread Device Driver Interface */
  258. static rt_err_t nu_sdh_init(rt_device_t dev)
  259. {
  260. return RT_EOK;
  261. }
  262. static rt_err_t nu_sdh_open(rt_device_t dev, rt_uint16_t oflag)
  263. {
  264. nu_sdh_t sdh = (nu_sdh_t)dev;
  265. rt_err_t result = RT_EOK;
  266. RT_ASSERT(dev != RT_NULL);
  267. #if defined(NU_SDH_SHARED)
  268. if (sdh->base == SDH1)
  269. {
  270. result = rt_mutex_take(&g_shared_lock, RT_WAITING_FOREVER);
  271. RT_ASSERT(result == RT_EOK);
  272. }
  273. SDH_CardSelect(sdh->base, sdh->info, sdh->card_num);
  274. #endif
  275. if (SDH_Probe(sdh->base, sdh->info, sdh->card_num) == 0)
  276. {
  277. result = RT_EOK;
  278. }
  279. else
  280. {
  281. result = -RT_ERROR;
  282. }
  283. #if defined(NU_SDH_SHARED)
  284. if (sdh->base == SDH1)
  285. {
  286. rt_mutex_release(&g_shared_lock);
  287. }
  288. #endif
  289. return result;
  290. }
  291. static rt_err_t nu_sdh_close(rt_device_t dev)
  292. {
  293. return RT_EOK;
  294. }
  295. static rt_size_t nu_sdh_read(rt_device_t dev, rt_off_t pos, void *buffer, rt_size_t blk_nb)
  296. {
  297. rt_err_t result = RT_ERROR;
  298. rt_uint32_t ret = 0;
  299. nu_sdh_t sdh = (nu_sdh_t)dev;
  300. RT_ASSERT(dev != RT_NULL);
  301. RT_ASSERT(buffer != RT_NULL);
  302. #if defined(NU_SDH_SHARED)
  303. if (sdh->base == SDH1)
  304. {
  305. result = rt_mutex_take(&g_shared_lock, RT_WAITING_FOREVER);
  306. RT_ASSERT(result == RT_EOK);
  307. }
  308. SDH_CardSelect(sdh->base, sdh->info, sdh->card_num);
  309. #endif
  310. result = rt_sem_take(&sdh->lock, RT_WAITING_FOREVER);
  311. RT_ASSERT(result == RT_EOK);
  312. /* Check alignment. */
  313. if (((uint32_t)buffer & 0x03) != 0)
  314. {
  315. /* Non-aligned. */
  316. uint32_t i;
  317. uint8_t *copy_buffer = (uint8_t *)buffer;
  318. sdh->pbuf = rt_malloc(SDH_BLOCK_SIZE);
  319. if (sdh->pbuf == RT_NULL)
  320. goto exit_nu_sdh_read;
  321. for (i = 0; i < blk_nb; i++)
  322. {
  323. /* Read to temp buffer from specified sector. */
  324. ret = SDH_Read(sdh->base, sdh->info, (uint8_t *)((uint32_t)&sdh->pbuf[0] | NONCACHEABLE), pos, 1);
  325. if (ret != Successful)
  326. goto exit_nu_sdh_read;
  327. /* Move to user's buffer */
  328. memcpy((void *)copy_buffer, (void *)&sdh->pbuf[0], SDH_BLOCK_SIZE);
  329. pos ++;
  330. copy_buffer += SDH_BLOCK_SIZE;
  331. }
  332. }
  333. else
  334. {
  335. #if defined(BSP_USING_MMU)
  336. mmu_clean_invalidated_dcache((rt_uint32_t)buffer, SDH_BLOCK_SIZE * blk_nb);
  337. #endif
  338. /* Read to user's buffer from specified sector. */
  339. ret = SDH_Read(sdh->base, sdh->info, (uint8_t *)((uint32_t)buffer | NONCACHEABLE), pos, blk_nb);
  340. }
  341. exit_nu_sdh_read:
  342. if (sdh->pbuf)
  343. {
  344. rt_free(sdh->pbuf);
  345. sdh->pbuf = RT_NULL;
  346. }
  347. result = rt_sem_release(&sdh->lock);
  348. RT_ASSERT(result == RT_EOK);
  349. #if defined(NU_SDH_SHARED)
  350. if (sdh->base == SDH1)
  351. {
  352. rt_mutex_release(&g_shared_lock);
  353. }
  354. #endif
  355. if (ret == Successful)
  356. return blk_nb;
  357. rt_kprintf("Read failed: %d, buffer 0x%08x\n", ret, buffer);
  358. rt_set_errno(-RT_ENOSYS);
  359. return 0;
  360. }
  361. static rt_size_t nu_sdh_write(rt_device_t dev, rt_off_t pos, const void *buffer, rt_size_t blk_nb)
  362. {
  363. rt_err_t result = RT_ERROR;
  364. rt_uint32_t ret = 0;
  365. nu_sdh_t sdh = (nu_sdh_t)dev;
  366. RT_ASSERT(dev != RT_NULL);
  367. RT_ASSERT(buffer != RT_NULL);
  368. #if defined(NU_SDH_SHARED)
  369. if (sdh->base == SDH1)
  370. {
  371. result = rt_mutex_take(&g_shared_lock, RT_WAITING_FOREVER);
  372. RT_ASSERT(result == RT_EOK);
  373. }
  374. SDH_CardSelect(sdh->base, sdh->info, sdh->card_num);
  375. #endif
  376. result = rt_sem_take(&sdh->lock, RT_WAITING_FOREVER);
  377. RT_ASSERT(result == RT_EOK);
  378. /* Check alignment. */
  379. if (((uint32_t)buffer & 0x03) != 0)
  380. {
  381. /* Non-aligned. */
  382. uint32_t i;
  383. uint8_t *copy_buffer = (uint8_t *)buffer;
  384. sdh->pbuf = rt_malloc(SDH_BLOCK_SIZE);
  385. if (sdh->pbuf == RT_NULL)
  386. goto exit_nu_sdh_write;
  387. for (i = 0; i < blk_nb; i++)
  388. {
  389. #if defined(BSP_USING_MMU)
  390. mmu_clean_invalidated_dcache((rt_uint32_t)copy_buffer, SDH_BLOCK_SIZE);
  391. #endif
  392. memcpy((void *)&sdh->pbuf[0], copy_buffer, SDH_BLOCK_SIZE);
  393. ret = SDH_Write(sdh->base, sdh->info, (uint8_t *)((uint32_t)&sdh->pbuf[0] | NONCACHEABLE), pos, 1);
  394. if (ret != Successful)
  395. goto exit_nu_sdh_write;
  396. pos++;
  397. copy_buffer += SDH_BLOCK_SIZE;
  398. }
  399. }
  400. else
  401. {
  402. #if defined(BSP_USING_MMU)
  403. mmu_clean_invalidated_dcache((rt_uint32_t)buffer, SDH_BLOCK_SIZE * blk_nb);
  404. #endif
  405. /* Write to device directly. */
  406. ret = SDH_Write(sdh->base, sdh->info, (uint8_t *)((uint32_t)buffer | NONCACHEABLE), pos, blk_nb);
  407. }
  408. exit_nu_sdh_write:
  409. if (sdh->pbuf)
  410. {
  411. rt_free(sdh->pbuf);
  412. sdh->pbuf = RT_NULL;
  413. }
  414. result = rt_sem_release(&sdh->lock);
  415. RT_ASSERT(result == RT_EOK);
  416. #if defined(NU_SDH_SHARED)
  417. if (sdh->base == SDH1)
  418. {
  419. rt_mutex_release(&g_shared_lock);
  420. }
  421. #endif
  422. if (ret == Successful) return blk_nb;
  423. rt_kprintf("write failed: %d, buffer 0x%08x\n", ret, buffer);
  424. rt_set_errno(-RT_ENOSYS);
  425. return 0;
  426. }
  427. static rt_err_t nu_sdh_control(rt_device_t dev, int cmd, void *args)
  428. {
  429. nu_sdh_t sdh = (nu_sdh_t)dev;
  430. RT_ASSERT(dev != RT_NULL);
  431. if (cmd == RT_DEVICE_CTRL_BLK_GETGEOME)
  432. {
  433. SDH_INFO_T *sdh_info = sdh->info;
  434. struct rt_device_blk_geometry *geometry;
  435. geometry = (struct rt_device_blk_geometry *)args;
  436. if (geometry == RT_NULL) return -RT_ERROR;
  437. geometry->bytes_per_sector = sdh_info->sectorSize;
  438. geometry->block_size = sdh_info->sectorSize;
  439. geometry->sector_count = sdh_info->totalSectorN;
  440. }
  441. return RT_EOK;
  442. }
  443. static int rt_hw_sdh_init(void)
  444. {
  445. int i;
  446. rt_err_t ret = RT_EOK;
  447. rt_uint32_t flags = RT_DEVICE_FLAG_RDWR | RT_DEVICE_FLAG_REMOVABLE | RT_DEVICE_FLAG_STANDALONE;
  448. ret = rt_event_init(&sdh_event, "sdh_event", RT_IPC_FLAG_FIFO);
  449. RT_ASSERT(ret == RT_EOK);
  450. #if defined(NU_SDH_SHARED)
  451. ret = rt_mutex_init(&g_shared_lock, "sdh_share_lock", RT_IPC_FLAG_PRIO);
  452. RT_ASSERT(ret == RT_EOK);
  453. #endif
  454. #if defined(BSP_USING_EMMC)
  455. nu_sys_ipclk_enable(FMICKEN);
  456. nu_sys_ipclk_enable(NANDCKEN);
  457. #endif
  458. for (i = (SDH_START + 1); i < SDH_CNT; i++)
  459. {
  460. /* Register sdcard device */
  461. nu_sdh_arr[i].dev.type = RT_Device_Class_Block;
  462. nu_sdh_arr[i].dev.init = nu_sdh_init;
  463. nu_sdh_arr[i].dev.open = nu_sdh_open;
  464. nu_sdh_arr[i].dev.close = nu_sdh_close;
  465. nu_sdh_arr[i].dev.read = nu_sdh_read;
  466. nu_sdh_arr[i].dev.write = nu_sdh_write;
  467. nu_sdh_arr[i].dev.control = nu_sdh_control;
  468. /* Private */
  469. nu_sdh_arr[i].dev.user_data = (void *)&nu_sdh_arr[i];
  470. ret = rt_sem_init(&nu_sdh_arr[i].lock, "sdhlock", 1, RT_IPC_FLAG_FIFO);
  471. RT_ASSERT(ret == RT_EOK);
  472. if (nu_sdh_arr[i].irqn != 0)
  473. {
  474. rt_hw_interrupt_install(nu_sdh_arr[i].irqn, SDH_IRQHandler, (void *)&nu_sdh_arr[i], nu_sdh_arr[i].name);
  475. rt_hw_interrupt_umask(nu_sdh_arr[i].irqn);
  476. }
  477. if (nu_sdh_arr[i].clkidx != SYS_IPCLK_NA)
  478. {
  479. nu_sys_ipclk_enable(nu_sdh_arr[i].clkidx);
  480. }
  481. if (nu_sdh_arr[i].rstidx != SYS_IPRST_NA)
  482. {
  483. nu_sys_ip_reset(nu_sdh_arr[i].rstidx);
  484. }
  485. nu_sdh_arr[i].pbuf = RT_NULL;
  486. ret = rt_device_register(&nu_sdh_arr[i].dev, nu_sdh_arr[i].name, flags);
  487. RT_ASSERT(ret == RT_EOK);
  488. }
  489. return (int)ret;
  490. }
  491. INIT_BOARD_EXPORT(rt_hw_sdh_init);
  492. #if defined(NU_SDH_HOTPLUG)
  493. static rt_bool_t nu_sdh_hotplug_is_mounted(const char *mounting_path)
  494. {
  495. rt_bool_t ret = RT_FALSE;
  496. struct dfs_filesystem *psFS = dfs_filesystem_lookup(mounting_path);
  497. if (psFS == RT_NULL)
  498. {
  499. goto exit_nu_sdh_hotplug_is_mounted;
  500. }
  501. else if (!rt_memcmp(psFS->path, mounting_path, rt_strlen(mounting_path)))
  502. {
  503. ret = RT_TRUE;
  504. }
  505. else
  506. {
  507. ret = RT_FALSE;
  508. }
  509. exit_nu_sdh_hotplug_is_mounted:
  510. return ret;
  511. }
  512. static rt_err_t nu_sdh_hotplug_mount(nu_sdh_t sdh)
  513. {
  514. rt_err_t ret = RT_ERROR;
  515. DIR *t;
  516. if (nu_sdh_hotplug_is_mounted(sdh->mounted_point) == RT_TRUE)
  517. {
  518. ret = RT_EOK;
  519. goto exit_nu_sdh_hotplug_mount;
  520. }
  521. /* Check the SD folder path is valid. */
  522. if ((t = opendir(sdh->mounted_point)) != RT_NULL)
  523. {
  524. closedir(t);
  525. }
  526. #if !defined(NU_SDH_MOUNT_ON_ROOT)
  527. else
  528. {
  529. /* Check the ROOT path is valid. */
  530. if ((t = opendir(NU_SDH_MOUNTPOINT_ROOT)) != RT_NULL)
  531. {
  532. closedir(t);
  533. }
  534. else if ((ret = mkdir(NU_SDH_MOUNTPOINT_ROOT, 0)) != RT_EOK)
  535. {
  536. rt_kprintf("Failed to mkdir %s\n", NU_SDH_MOUNTPOINT_ROOT);
  537. goto exit_nu_sdh_hotplug_mount;
  538. }
  539. if ((ret = mkdir(sdh->mounted_point, 0)) != RT_EOK)
  540. {
  541. rt_kprintf("Failed to mkdir %s\n", sdh->mounted_point);
  542. goto exit_nu_sdh_hotplug_mount;
  543. }
  544. } //else
  545. #endif
  546. if ((ret = dfs_mount(sdh->name, sdh->mounted_point, "elm", 0, 0)) == 0)
  547. {
  548. rt_kprintf("Mounted %s on %s\n", sdh->name, sdh->mounted_point);
  549. }
  550. else
  551. {
  552. rt_kprintf("Failed to mount %s on %s\n", sdh->name, sdh->mounted_point);
  553. ret = RT_ERROR;
  554. }
  555. exit_nu_sdh_hotplug_mount:
  556. return -(ret);
  557. }
  558. static rt_err_t nu_sdh_hotplug_unmount(nu_sdh_t sdh)
  559. {
  560. rt_err_t ret = RT_ERROR;
  561. if (nu_sdh_hotplug_is_mounted(sdh->mounted_point) == RT_FALSE)
  562. {
  563. ret = RT_EOK;
  564. goto exit_nu_sdh_hotplug_unmount;
  565. }
  566. ret = dfs_unmount(sdh->mounted_point);
  567. if (ret != RT_EOK)
  568. {
  569. rt_kprintf("Failed to unmount %s.\n", sdh->mounted_point);
  570. }
  571. else
  572. {
  573. rt_kprintf("Succeed to unmount %s.\n", sdh->mounted_point);
  574. ret = RT_EOK;
  575. }
  576. exit_nu_sdh_hotplug_unmount:
  577. return -(ret);
  578. }
  579. static void nu_card_detector(nu_sdh_t sdh)
  580. {
  581. SDH_T *sdh_base = sdh->base;
  582. uint32_t u32INTSTS_CDSTS_Msk = (sdh->card_num == SD_PORT0) ? SDH_INTSTS_CDSTS_Msk : SDH_INTSTS_CDSTS1_Msk;
  583. unsigned int volatile isr = sdh_base->INTSTS;
  584. if (isr & u32INTSTS_CDSTS_Msk)
  585. {
  586. /* Card removed */
  587. sdh->info->IsCardInsert = FALSE; // SDISR_CD_Card = 1 means card remove for GPIO mode
  588. rt_memset((void *)sdh->info, 0, sizeof(SDH_INFO_T));
  589. nu_sdh_hotplug_unmount(sdh);
  590. }
  591. else
  592. {
  593. #if defined(NU_SDH_SHARED)
  594. if (sdh_base == SDH1)
  595. {
  596. rt_err_t result = rt_mutex_take(&g_shared_lock, RT_WAITING_FOREVER);
  597. RT_ASSERT(result == RT_EOK);
  598. }
  599. SDH_CardSelect(sdh->base, sdh->info, sdh->card_num);
  600. #endif
  601. SDH_Open(sdh_base, sdh->info, CardDetect_From_GPIO | sdh->card_num);
  602. if (!SDH_Probe(sdh_base, sdh->info, sdh->card_num))
  603. {
  604. /* Card inserted */
  605. nu_sdh_hotplug_mount(sdh);
  606. }
  607. #if defined(NU_SDH_SHARED)
  608. if (sdh_base == SDH1)
  609. {
  610. rt_mutex_release(&g_shared_lock);
  611. }
  612. #endif
  613. }
  614. }
  615. static void sdh_hotplugger(void *param)
  616. {
  617. rt_uint32_t e;
  618. int i;
  619. for (i = (SDH_START + 1); i < SDH_CNT; i++)
  620. {
  621. #if defined(NU_SDH_SHARED)
  622. if (nu_sdh_arr[i].base == SDH1)
  623. {
  624. rt_err_t result = rt_mutex_take(&g_shared_lock, RT_WAITING_FOREVER);
  625. RT_ASSERT(result == RT_EOK);
  626. }
  627. SDH_CardSelect(nu_sdh_arr[i].base, nu_sdh_arr[i].info, nu_sdh_arr[i].card_num);
  628. #endif
  629. /* Try to detect SD card on selected port. */
  630. SDH_Open(nu_sdh_arr[i].base, nu_sdh_arr[i].info, CardDetect_From_GPIO | nu_sdh_arr[i].card_num);
  631. if (!SDH_Probe(nu_sdh_arr[i].base, nu_sdh_arr[i].info, nu_sdh_arr[i].card_num) &&
  632. nu_sdh_arr[i].info->IsCardInsert)
  633. {
  634. nu_sdh_hotplug_mount(&nu_sdh_arr[i]);
  635. }
  636. #if defined(NU_SDH_SHARED)
  637. if (nu_sdh_arr[i].base == SDH1)
  638. {
  639. rt_mutex_release(&g_shared_lock);
  640. }
  641. #endif
  642. }
  643. while (1)
  644. {
  645. if (rt_event_recv(&sdh_event, (NU_SDH_CARD_EVENT_ALL),
  646. RT_EVENT_FLAG_OR | RT_EVENT_FLAG_CLEAR,
  647. RT_WAITING_FOREVER, &e) == RT_EOK)
  648. {
  649. /* Debounce */
  650. rt_thread_mdelay(500);
  651. switch (e)
  652. {
  653. #if defined(BSP_USING_EMMC)
  654. case NU_SDH_CARD_DETECTED_EMMC:
  655. nu_card_detector(&nu_sdh_arr[EMMC_IDX]);
  656. break;
  657. #endif
  658. #if defined(BSP_USING_SDH0)
  659. case NU_SDH_CARD_DETECTED_SD0:
  660. nu_card_detector(&nu_sdh_arr[SDH0_IDX]);
  661. break;
  662. #endif
  663. #if defined(BSP_USING_SDH1)
  664. case NU_SDH_CARD_DETECTED_SD1:
  665. nu_card_detector(&nu_sdh_arr[SDH1_IDX]);
  666. break;
  667. #endif
  668. default:
  669. break;
  670. } //switch(e)
  671. } //if
  672. } /* while(1) */
  673. }
  674. int mnt_init_sdcard_hotplug(void)
  675. {
  676. rt_err_t ret = RT_EOK;
  677. ret = rt_thread_init(&sdh_tid, "hotplug", sdh_hotplugger, NULL, sdh_stack, sizeof(sdh_stack), RT_THREAD_PRIORITY_MAX - 2, 10);
  678. RT_ASSERT(ret == RT_EOK);
  679. ret = rt_thread_startup(&sdh_tid);
  680. RT_ASSERT(ret == RT_EOK);
  681. return 0;
  682. }
  683. INIT_ENV_EXPORT(mnt_init_sdcard_hotplug);
  684. #endif
  685. #endif //#if defined(BSP_USING_SDH)