usb_device.h 14 KB

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  1. /*
  2. * Copyright (c) 2006-2018, RT-Thread Development Team
  3. *
  4. * SPDX-License-Identifier: Apache-2.0
  5. *
  6. * Change Logs:
  7. * Date Author Notes
  8. * 2012-10-01 Yi Qiu first version
  9. * 2012-12-12 heyuanjie87 change endpoint and function handler
  10. * 2013-04-26 aozima add DEVICEQUALIFIER support.
  11. * 2017-11-15 ZYH fix ep0 transform error
  12. */
  13. #ifndef __USB_DEVICE_H__
  14. #define __USB_DEVICE_H__
  15. #include <rtthread.h>
  16. #include "drivers/usb_common.h"
  17. #ifdef __cplusplus
  18. extern "C" {
  19. #endif
  20. /* Vendor ID */
  21. #ifdef USB_VENDOR_ID
  22. #define _VENDOR_ID USB_VENDOR_ID
  23. #else
  24. #define _VENDOR_ID 0x0EFF
  25. #endif
  26. /* Product ID */
  27. #ifdef USB_PRODUCT_ID
  28. #define _PRODUCT_ID USB_PRODUCT_ID
  29. #else
  30. #define _PRODUCT_ID 0x0001
  31. #endif
  32. #define USB_BCD_DEVICE 0x0200 /* USB Specification Release Number in Binary-Coded Decimal */
  33. #define USB_BCD_VERSION 0x0200 /* USB 2.0 */
  34. #define EP0_IN_ADDR 0x80
  35. #define EP0_OUT_ADDR 0x00
  36. #define EP_HANDLER(ep, func, size) RT_ASSERT(ep != RT_NULL); ep->handler(func, size)
  37. #define EP_ADDRESS(ep) ep->ep_desc->bEndpointAddress
  38. #define EP_MAXPACKET(ep) ep->ep_desc->wMaxPacketSize
  39. #define FUNC_ENABLE(func) do{ \
  40. if(func->ops->enable != RT_NULL && \
  41. func->enabled == RT_FALSE) \
  42. { \
  43. if(func->ops->enable(func) == RT_EOK) \
  44. func->enabled = RT_TRUE; \
  45. } \
  46. }while(0)
  47. #define FUNC_DISABLE(func) do{ \
  48. if(func->ops->disable != RT_NULL && \
  49. func->enabled == RT_TRUE) \
  50. { \
  51. func->enabled = RT_FALSE; \
  52. func->ops->disable(func); \
  53. } \
  54. }while(0)
  55. struct ufunction;
  56. struct udevice;
  57. struct uendpoint;
  58. typedef enum
  59. {
  60. /* request to read full count */
  61. UIO_REQUEST_READ_FULL,
  62. /* request to read any count */
  63. UIO_REQUEST_READ_BEST,
  64. /* request to write full count */
  65. UIO_REQUEST_WRITE,
  66. }UIO_REQUEST_TYPE;
  67. struct udcd_ops
  68. {
  69. rt_err_t (*set_address)(rt_uint8_t address);
  70. rt_err_t (*set_config)(rt_uint8_t address);
  71. rt_err_t (*ep_set_stall)(rt_uint8_t address);
  72. rt_err_t (*ep_clear_stall)(rt_uint8_t address);
  73. rt_err_t (*ep_enable)(struct uendpoint* ep);
  74. rt_err_t (*ep_disable)(struct uendpoint* ep);
  75. rt_size_t (*ep_read_prepare)(rt_uint8_t address, void *buffer, rt_size_t size);
  76. rt_size_t (*ep_read)(rt_uint8_t address, void *buffer);
  77. rt_size_t (*ep_write)(rt_uint8_t address, void *buffer, rt_size_t size);
  78. rt_err_t (*ep0_send_status)(void);
  79. rt_err_t (*suspend)(void);
  80. rt_err_t (*wakeup)(void);
  81. };
  82. struct ep_id
  83. {
  84. rt_uint8_t addr;
  85. rt_uint8_t type;
  86. rt_uint8_t dir;
  87. rt_uint16_t maxpacket;
  88. rt_uint8_t status;
  89. };
  90. typedef rt_err_t (*udep_handler_t)(struct ufunction* func, rt_size_t size);
  91. struct uio_request
  92. {
  93. rt_list_t list;
  94. UIO_REQUEST_TYPE req_type;
  95. rt_uint8_t* buffer;
  96. rt_size_t size;
  97. rt_size_t remain_size;
  98. };
  99. typedef struct uio_request* uio_request_t;
  100. struct uendpoint
  101. {
  102. rt_list_t list;
  103. uep_desc_t ep_desc;
  104. rt_list_t request_list;
  105. struct uio_request request;
  106. rt_uint8_t* buffer;
  107. rt_bool_t stalled;
  108. struct ep_id* id;
  109. udep_handler_t handler;
  110. rt_err_t (*rx_indicate)(struct udevice* dev, rt_size_t size);
  111. };
  112. typedef struct uendpoint* uep_t;
  113. struct udcd
  114. {
  115. struct rt_device parent;
  116. const struct udcd_ops* ops;
  117. struct uendpoint ep0;
  118. uep0_stage_t stage;
  119. struct ep_id* ep_pool;
  120. rt_uint8_t device_is_hs;
  121. };
  122. typedef struct udcd* udcd_t;
  123. struct ualtsetting
  124. {
  125. rt_list_t list;
  126. uintf_desc_t intf_desc;
  127. void* desc;
  128. rt_size_t desc_size;
  129. rt_list_t ep_list;
  130. };
  131. typedef struct ualtsetting* ualtsetting_t;
  132. typedef rt_err_t (*uintf_handler_t)(struct ufunction* func, ureq_t setup);
  133. struct uinterface
  134. {
  135. rt_list_t list;
  136. rt_uint8_t intf_num;
  137. ualtsetting_t curr_setting;
  138. rt_list_t setting_list;
  139. uintf_handler_t handler;
  140. };
  141. typedef struct uinterface* uintf_t;
  142. struct ufunction_ops
  143. {
  144. rt_err_t (*enable)(struct ufunction* func);
  145. rt_err_t (*disable)(struct ufunction* func);
  146. rt_err_t (*sof_handler)(struct ufunction* func);
  147. };
  148. typedef struct ufunction_ops* ufunction_ops_t;
  149. struct ufunction
  150. {
  151. rt_list_t list;
  152. ufunction_ops_t ops;
  153. struct udevice* device;
  154. udev_desc_t dev_desc;
  155. void* user_data;
  156. rt_bool_t enabled;
  157. rt_list_t intf_list;
  158. };
  159. typedef struct ufunction* ufunction_t;
  160. struct uconfig
  161. {
  162. rt_list_t list;
  163. struct uconfig_descriptor cfg_desc;
  164. rt_list_t func_list;
  165. };
  166. typedef struct uconfig* uconfig_t;
  167. struct udevice
  168. {
  169. rt_list_t list;
  170. struct udevice_descriptor dev_desc;
  171. struct usb_qualifier_descriptor * dev_qualifier;
  172. usb_os_comp_id_desc_t os_comp_id_desc;
  173. const char** str;
  174. udevice_state_t state;
  175. rt_list_t cfg_list;
  176. uconfig_t curr_cfg;
  177. rt_uint8_t nr_intf;
  178. udcd_t dcd;
  179. };
  180. typedef struct udevice* udevice_t;
  181. struct udclass
  182. {
  183. rt_list_t list;
  184. ufunction_t (*rt_usbd_function_create)(udevice_t device);
  185. };
  186. typedef struct udclass* udclass_t;
  187. enum udev_msg_type
  188. {
  189. USB_MSG_SETUP_NOTIFY,
  190. USB_MSG_DATA_NOTIFY,
  191. USB_MSG_EP0_OUT,
  192. USB_MSG_EP_CLEAR_FEATURE,
  193. USB_MSG_SOF,
  194. USB_MSG_RESET,
  195. USB_MSG_PLUG_IN,
  196. /* we don't need to add a "PLUG_IN" event because after the cable is
  197. * plugged in(before any SETUP) the classed have nothing to do. If the host
  198. * is ready, it will send RESET and we will have USB_MSG_RESET. So, a RESET
  199. * should reset and run the class while plug_in is not. */
  200. USB_MSG_PLUG_OUT,
  201. };
  202. typedef enum udev_msg_type udev_msg_type;
  203. struct ep_msg
  204. {
  205. rt_size_t size;
  206. rt_uint8_t ep_addr;
  207. };
  208. struct udev_msg
  209. {
  210. udev_msg_type type;
  211. udcd_t dcd;
  212. union
  213. {
  214. struct ep_msg ep_msg;
  215. struct urequest setup;
  216. } content;
  217. };
  218. typedef struct udev_msg* udev_msg_t;
  219. int rt_usbd_class_list_init(void);
  220. udevice_t rt_usbd_device_new(void);
  221. uconfig_t rt_usbd_config_new(void);
  222. ufunction_t rt_usbd_function_new(udevice_t device, udev_desc_t dev_desc,
  223. ufunction_ops_t ops);
  224. uintf_t rt_usbd_interface_new(udevice_t device, uintf_handler_t handler);
  225. uep_t rt_usbd_endpoint_new(uep_desc_t ep_desc, udep_handler_t handler);
  226. ualtsetting_t rt_usbd_altsetting_new(rt_size_t desc_size);
  227. rt_err_t rt_usbd_core_init(void);
  228. rt_err_t rt_usb_device_init(void);
  229. rt_err_t rt_usbd_event_signal(struct udev_msg* msg);
  230. rt_err_t rt_usbd_device_set_controller(udevice_t device, udcd_t dcd);
  231. rt_err_t rt_usbd_device_set_descriptor(udevice_t device, udev_desc_t dev_desc);
  232. rt_err_t rt_usbd_device_set_string(udevice_t device, const char** ustring);
  233. rt_err_t rt_usbd_device_set_qualifier(udevice_t device, struct usb_qualifier_descriptor* qualifier);
  234. rt_err_t rt_usbd_device_set_os_comp_id_desc(udevice_t device, usb_os_comp_id_desc_t os_comp_id_desc);
  235. rt_err_t rt_usbd_device_add_config(udevice_t device, uconfig_t cfg);
  236. rt_err_t rt_usbd_config_add_function(uconfig_t cfg, ufunction_t func);
  237. rt_err_t rt_usbd_class_register(udclass_t udclass);
  238. rt_err_t rt_usbd_function_add_interface(ufunction_t func, uintf_t intf);
  239. rt_err_t rt_usbd_interface_add_altsetting(uintf_t intf, ualtsetting_t setting);
  240. rt_err_t rt_usbd_altsetting_add_endpoint(ualtsetting_t setting, uep_t ep);
  241. rt_err_t rt_usbd_os_comp_id_desc_add_os_func_comp_id_desc(usb_os_comp_id_desc_t os_comp_id_desc, usb_os_func_comp_id_desc_t os_func_comp_id_desc);
  242. rt_err_t rt_usbd_altsetting_config_descriptor(ualtsetting_t setting, const void* desc, rt_off_t intf_pos);
  243. rt_err_t rt_usbd_set_config(udevice_t device, rt_uint8_t value);
  244. rt_err_t rt_usbd_set_altsetting(uintf_t intf, rt_uint8_t value);
  245. udevice_t rt_usbd_find_device(udcd_t dcd);
  246. uconfig_t rt_usbd_find_config(udevice_t device, rt_uint8_t value);
  247. uintf_t rt_usbd_find_interface(udevice_t device, rt_uint8_t value, ufunction_t *pfunc);
  248. uep_t rt_usbd_find_endpoint(udevice_t device, ufunction_t* pfunc, rt_uint8_t ep_addr);
  249. rt_size_t rt_usbd_io_request(udevice_t device, uep_t ep, uio_request_t req);
  250. rt_size_t rt_usbd_ep0_write(udevice_t device, void *buffer, rt_size_t size);
  251. rt_size_t rt_usbd_ep0_read(udevice_t device, void *buffer, rt_size_t size,
  252. rt_err_t (*rx_ind)(udevice_t device, rt_size_t size));
  253. int rt_usbd_vcom_class_register(void);
  254. int rt_usbd_ecm_class_register(void);
  255. int rt_usbd_hid_class_register(void);
  256. int rt_usbd_msc_class_register(void);
  257. int rt_usbd_rndis_class_register(void);
  258. int rt_usbd_winusb_class_register(void);
  259. #ifdef RT_USB_DEVICE_COMPOSITE
  260. rt_err_t rt_usbd_function_set_iad(ufunction_t func, uiad_desc_t iad_desc);
  261. #endif
  262. rt_err_t rt_usbd_set_feature(udevice_t device, rt_uint16_t value, rt_uint16_t index);
  263. rt_err_t rt_usbd_clear_feature(udevice_t device, rt_uint16_t value, rt_uint16_t index);
  264. rt_err_t rt_usbd_ep_set_stall(udevice_t device, uep_t ep);
  265. rt_err_t rt_usbd_ep_clear_stall(udevice_t device, uep_t ep);
  266. rt_err_t rt_usbd_ep0_set_stall(udevice_t device);
  267. rt_err_t rt_usbd_ep0_clear_stall(udevice_t device);
  268. rt_err_t rt_usbd_ep0_setup_handler(udcd_t dcd, struct urequest* setup);
  269. rt_err_t rt_usbd_ep0_in_handler(udcd_t dcd);
  270. rt_err_t rt_usbd_ep0_out_handler(udcd_t dcd, rt_size_t size);
  271. rt_err_t rt_usbd_ep_in_handler(udcd_t dcd, rt_uint8_t address, rt_size_t size);
  272. rt_err_t rt_usbd_ep_out_handler(udcd_t dcd, rt_uint8_t address, rt_size_t size);
  273. rt_err_t rt_usbd_reset_handler(udcd_t dcd);
  274. rt_err_t rt_usbd_connect_handler(udcd_t dcd);
  275. rt_err_t rt_usbd_disconnect_handler(udcd_t dcd);
  276. rt_err_t rt_usbd_sof_handler(udcd_t dcd);
  277. rt_inline rt_err_t dcd_set_address(udcd_t dcd, rt_uint8_t address)
  278. {
  279. RT_ASSERT(dcd != RT_NULL);
  280. RT_ASSERT(dcd->ops != RT_NULL);
  281. RT_ASSERT(dcd->ops->set_address != RT_NULL);
  282. return dcd->ops->set_address(address);
  283. }
  284. rt_inline rt_err_t dcd_set_config(udcd_t dcd, rt_uint8_t address)
  285. {
  286. RT_ASSERT(dcd != RT_NULL);
  287. RT_ASSERT(dcd->ops != RT_NULL);
  288. RT_ASSERT(dcd->ops->set_config != RT_NULL);
  289. return dcd->ops->set_config(address);
  290. }
  291. rt_inline rt_err_t dcd_ep_enable(udcd_t dcd, uep_t ep)
  292. {
  293. RT_ASSERT(dcd != RT_NULL);
  294. RT_ASSERT(dcd->ops != RT_NULL);
  295. RT_ASSERT(dcd->ops->ep_enable != RT_NULL);
  296. return dcd->ops->ep_enable(ep);
  297. }
  298. rt_inline rt_err_t dcd_ep_disable(udcd_t dcd, uep_t ep)
  299. {
  300. RT_ASSERT(dcd != RT_NULL);
  301. RT_ASSERT(dcd->ops != RT_NULL);
  302. RT_ASSERT(dcd->ops->ep_disable != RT_NULL);
  303. return dcd->ops->ep_disable(ep);
  304. }
  305. rt_inline rt_size_t dcd_ep_read_prepare(udcd_t dcd, rt_uint8_t address, void *buffer,
  306. rt_size_t size)
  307. {
  308. RT_ASSERT(dcd != RT_NULL);
  309. RT_ASSERT(dcd->ops != RT_NULL);
  310. if(dcd->ops->ep_read_prepare != RT_NULL)
  311. {
  312. return dcd->ops->ep_read_prepare(address, buffer, size);
  313. }
  314. else
  315. {
  316. return 0;
  317. }
  318. }
  319. rt_inline rt_size_t dcd_ep_read(udcd_t dcd, rt_uint8_t address, void *buffer)
  320. {
  321. RT_ASSERT(dcd != RT_NULL);
  322. RT_ASSERT(dcd->ops != RT_NULL);
  323. if(dcd->ops->ep_read != RT_NULL)
  324. {
  325. return dcd->ops->ep_read(address, buffer);
  326. }
  327. else
  328. {
  329. return 0;
  330. }
  331. }
  332. rt_inline rt_size_t dcd_ep_write(udcd_t dcd, rt_uint8_t address, void *buffer,
  333. rt_size_t size)
  334. {
  335. RT_ASSERT(dcd != RT_NULL);
  336. RT_ASSERT(dcd->ops != RT_NULL);
  337. RT_ASSERT(dcd->ops->ep_write != RT_NULL);
  338. return dcd->ops->ep_write(address, buffer, size);
  339. }
  340. rt_inline rt_err_t dcd_ep0_send_status(udcd_t dcd)
  341. {
  342. RT_ASSERT(dcd != RT_NULL);
  343. RT_ASSERT(dcd->ops != RT_NULL);
  344. RT_ASSERT(dcd->ops->ep0_send_status != RT_NULL);
  345. return dcd->ops->ep0_send_status();
  346. }
  347. rt_inline rt_err_t dcd_ep_set_stall(udcd_t dcd, rt_uint8_t address)
  348. {
  349. RT_ASSERT(dcd != RT_NULL);
  350. RT_ASSERT(dcd->ops != RT_NULL);
  351. RT_ASSERT(dcd->ops->ep_set_stall != RT_NULL);
  352. return dcd->ops->ep_set_stall(address);
  353. }
  354. rt_inline rt_err_t dcd_ep_clear_stall(udcd_t dcd, rt_uint8_t address)
  355. {
  356. RT_ASSERT(dcd != RT_NULL);
  357. RT_ASSERT(dcd->ops != RT_NULL);
  358. RT_ASSERT(dcd->ops->ep_clear_stall != RT_NULL);
  359. return dcd->ops->ep_clear_stall(address);
  360. }
  361. rt_inline void usbd_os_proerty_descriptor_send(ufunction_t func, ureq_t setup, usb_os_proerty_t usb_os_proerty, rt_uint8_t number_of_proerty)
  362. {
  363. struct usb_os_property_header header;
  364. static rt_uint8_t * data;
  365. rt_uint8_t * pdata;
  366. rt_uint8_t index,i;
  367. if(data == RT_NULL)
  368. {
  369. header.dwLength = sizeof(struct usb_os_property_header);
  370. header.bcdVersion = 0x0100;
  371. header.wIndex = 0x05;
  372. header.wCount = number_of_proerty;
  373. for(index = 0;index < number_of_proerty;index++)
  374. {
  375. header.dwLength += usb_os_proerty[index].dwSize;
  376. }
  377. data = (rt_uint8_t *)rt_malloc(header.dwLength);
  378. RT_ASSERT(data != RT_NULL);
  379. pdata = data;
  380. rt_memcpy((void *)pdata,(void *)&header,sizeof(struct usb_os_property_header));
  381. pdata += sizeof(struct usb_os_property_header);
  382. for(index = 0;index < number_of_proerty;index++)
  383. {
  384. rt_memcpy((void *)pdata,(void *)&usb_os_proerty[index],10);
  385. pdata += 10;
  386. for(i = 0;i < usb_os_proerty[index].wPropertyNameLength/2;i++)
  387. {
  388. *pdata = usb_os_proerty[index].bPropertyName[i];
  389. pdata++;
  390. *pdata = 0;
  391. pdata++;
  392. }
  393. *((rt_uint32_t *)pdata) = usb_os_proerty[index].dwPropertyDataLength;
  394. pdata += 4;
  395. for(i = 0;i < usb_os_proerty[index].dwPropertyDataLength/2;i++)
  396. {
  397. *pdata = usb_os_proerty[index].bPropertyData[i];
  398. pdata++;
  399. *pdata = 0;
  400. pdata++;
  401. }
  402. }
  403. }
  404. rt_usbd_ep0_write(func->device, data, setup->wLength);
  405. }
  406. #ifdef __cplusplus
  407. }
  408. #endif
  409. #endif