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usbd_core.h 19 KB

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  1. /* This file is the part of the Lightweight USB device Stack for STM32 microcontrollers
  2. *
  3. * Copyright ©2016 Dmitry Filimonchuk <dmitrystu[at]gmail[dot]com>
  4. *
  5. * Licensed under the Apache License, Version 2.0 (the "License");
  6. * you may not use this file except in compliance with the License.
  7. * You may obtain a copy of the License at
  8. * http://www.apache.org/licenses/LICENSE-2.0
  9. * Unless required by applicable law or agreed to in writing, software
  10. * distributed under the License is distributed on an "AS IS" BASIS,
  11. * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  12. * See the License for the specific language governing permissions and
  13. * limitations under the License.
  14. .*/
  15. #ifndef _USBD_CORE_H_
  16. #define _USBD_CORE_H_
  17. #if defined(__cplusplus)
  18. extern "C" {
  19. #endif
  20. /**\addtogroup USBD_HW_CORE USB Device HW driver and core API
  21. * @{ */
  22. #if defined(__DOXYGEN__)
  23. /**\name Compile-time control macros
  24. * @{ */
  25. #define USBD_SOF_DISABLED /**<\brief Disables SOF handling.*/
  26. #define USBD_VBUS_DETECT /**<\brief Enables Vbus detection for L4/F4 driver.*/
  27. #define USBD_DP_PORT /**<\brief DP pullup port for F103/F303 driver.*/
  28. #define USBD_DP_PIN /**<\brief DP pullup pin for F103/F303 driver.*/
  29. #define USBD_SOF_OUT /**<\brief Enables SOF output pin for F4 OTGFS. */
  30. /** @} */
  31. #endif
  32. /**\addtogroup USBD_HW USB hardware driver
  33. * \brief Contains HW driver API
  34. * @{ */
  35. /**\anchor USB_EVENTS
  36. * \name USB device events
  37. * @{ */
  38. #define usbd_evt_reset 0 /**<\brief Reset.*/
  39. #define usbd_evt_sof 1 /**<\brief Start of frame.*/
  40. #define usbd_evt_susp 2 /**<\brief Suspend.*/
  41. #define usbd_evt_wkup 3 /**<\brief Wakeup.*/
  42. #define usbd_evt_eptx 4 /**<\brief Data packet transmitted*/
  43. #define usbd_evt_eprx 5 /**<\brief Data packet received.*/
  44. #define usbd_evt_epsetup 6 /**<\brief Setup packet received.*/
  45. #define usbd_evt_error 7 /**<\brief Data error.*/
  46. #define usbd_evt_count 8
  47. /** @} */
  48. /**\anchor USB_LANES_STATUS
  49. * \name USB lanes connection states
  50. * @{ */
  51. #define usbd_lane_unk 0 /**<\brief Unknown or proprietary charger.*/
  52. #define usbd_lane_dsc 1 /**<\brief Lanes disconnected.*/
  53. #define usbd_lane_sdp 2 /**<\brief Lanes connected to standard downstream port.*/
  54. #define usbd_lane_cdp 3 /**<\brief Lanes connected to charging downstream port.*/
  55. #define usbd_lane_dcp 4 /**<\brief Lanes connected to dedicated charging port.*/
  56. /** @} */
  57. /** \name USB HW capabilities
  58. * @{ */
  59. #define USBD_HW_ADDRFST (1 << 0) /**<\brief Set address before STATUS_OUT.*/
  60. #define USBD_HW_BC (1 << 1) /**<\brief Battery charging detection supported.*/
  61. /** @} */
  62. /** @} */
  63. /**\addtogroup USBD_CORE USB device core
  64. * \brief Contains core API
  65. * @{ */
  66. #define USB_EPTYPE_DBLBUF 0x04 /**<\brief Doublebuffered endpoint (bulk endpoint only).*/
  67. /**\name bmRequestType bitmapped field
  68. * @{ */
  69. #define USB_REQ_DIRECTION (1 << 7) /**<\brief Request direction mask.*/
  70. #define USB_REQ_HOSTTODEV (0 << 7) /**<\brief Request direction is HOST to DEVICE.*/
  71. #define USB_REQ_DEVTOHOST (1 << 7) /**<\brief Request direction is DEVICE to HOST.*/
  72. #define USB_REQ_TYPE (3 << 5) /**<\brief Request type mask.*/
  73. #define USB_REQ_STANDARD (0 << 5) /**<\brief Standard request.*/
  74. #define USB_REQ_CLASS (1 << 5) /**<\brief Class specified request.*/
  75. #define USB_REQ_VENDOR (2 << 5) /**<\brief Vendor specified request.*/
  76. #define USB_REQ_RECIPIENT (3 << 0) /**<\brief Request recipient mask.*/
  77. #define USB_REQ_DEVICE (0 << 0) /**<\brief Request to device.*/
  78. #define USB_REQ_INTERFACE (1 << 0) /**<\brief Request to interface.*/
  79. #define USB_REQ_ENDPOINT (2 << 0) /**<\brief Request to endpoint.*/
  80. #define USB_REQ_OTHER (3 << 0) /**<\brief Other request.*/
  81. /** @} */
  82. #if !defined(__ASSEMBLER__)
  83. #include <stdbool.h>
  84. /**\brief USB device machine states.*/
  85. enum usbd_machine_state {
  86. usbd_state_disabled,
  87. usbd_state_disconnected,
  88. usbd_state_default, /**< Default.*/
  89. usbd_state_addressed, /**< Addressed.*/
  90. usbd_state_configured, /**< Configured.*/
  91. };
  92. /**\brief USB device control endpoint machine state.*/
  93. enum usbd_ctl_state {
  94. usbd_ctl_idle, /**<\brief Idle stage. Awaiting for SETUP packet.*/
  95. usbd_ctl_rxdata, /**<\brief RX stage. Receiving DATA-OUT payload.*/
  96. usbd_ctl_txdata, /**<\brief TX stage. Transmitting DATA-IN payload.*/
  97. usbd_ctl_ztxdata, /**<\brief TX stage. Transmitting DATA-IN payload. Zero length
  98. * packet maybe required..*/
  99. usbd_ctl_lastdata, /**<\brief TX stage. Last DATA-IN packed passed to buffer. Awaiting
  100. * for the TX completion.*/
  101. usbd_ctl_statusin, /**<\brief STATUS-IN stage.*/
  102. usbd_ctl_statusout, /**<\brief STATUS-OUT stage.*/
  103. };
  104. /**\brief Asynchronous device control commands.*/
  105. enum usbd_commands {
  106. usbd_cmd_enable, /**<\brief Enables device.*/
  107. usbd_cmd_disable, /**<\brief Disables device.*/
  108. usbd_cmd_connect, /**<\brief Connects device to host.*/
  109. usbd_cmd_disconnect, /**<\brief Disconnects device from host.*/
  110. usbd_cmd_reset, /**<\brief Resets device.*/
  111. };
  112. /**\brief Reporting status results.*/
  113. typedef enum _usbd_respond {
  114. usbd_fail, /**<\brief Function has an error, STALLPID will be issued.*/
  115. usbd_ack, /**<\brief Function completes request accepted ZLP or data will be send.*/
  116. usbd_nak, /**<\brief Function is busy. NAK handshake.*/
  117. } usbd_respond;
  118. typedef struct _usbd_device usbd_device;
  119. /**\brief Represents generic USB control request.*/
  120. typedef struct {
  121. uint8_t bmRequestType; /**<\brief This bitmapped field identifies the characteristics of
  122. * the specific request.*/
  123. uint8_t bRequest; /**<\brief This field specifies the particular request.*/
  124. uint16_t wValue; /**<\brief It is used to pass a parameter to the device, specific to
  125. * the request.*/
  126. uint16_t wIndex; /**<\brief It is used to pass a parameter to the device, specific to
  127. * the request.*/
  128. uint16_t wLength; /**<\brief This field specifies the length of the data transferred
  129. * during the second phase of the control transfer.*/
  130. uint8_t data[]; /**<\brief Data payload.*/
  131. } usbd_ctlreq;
  132. /** USB device status data.*/
  133. typedef struct {
  134. void *data_buf; /**<\brief Pointer to data buffer used for control requests.*/
  135. void *data_ptr; /**<\brief Pointer to current data for control request.*/
  136. uint16_t data_count; /**<\brief Count remained data for control request.*/
  137. uint16_t data_maxsize; /**<\brief Size of the data buffer for control requests.*/
  138. uint8_t ep0size; /**<\brief Size of the control endpoint.*/
  139. uint8_t device_cfg; /**<\brief Current device configuration number.*/
  140. uint8_t device_state; /**<\brief Current \ref usbd_machine_state.*/
  141. uint8_t control_state; /**<\brief Current \ref usbd_ctl_state.*/
  142. } usbd_status;
  143. /**\brief Generic USB device event callback for events and endpoints processing
  144. * \param[in] dev pointer to USB device
  145. * \param event \ref USB_EVENTS "USB event"
  146. * \param ep active endpoint number
  147. * \note endpoints with same indexes i.e. 0x01 and 0x81 shares same callback.
  148. */
  149. typedef void (*usbd_evt_callback)(usbd_device *dev, uint8_t event, uint8_t ep);
  150. /**\brief USB control transfer completed callback function.
  151. * \param[in] dev pointer to USB device
  152. * \param[in] req pointer to usb request structure
  153. * \note usbd_device->complete_callback will be set to NULL after this callback completion.
  154. */
  155. typedef void (*usbd_rqc_callback)(usbd_device *dev, usbd_ctlreq *req);
  156. /**\brief USB control callback function.
  157. * \details Uses for the control request processing.
  158. * Some requests will be handled by core if callback don't process it (returns FALSE).
  159. * If request was not processed STALL PID will be issued.
  160. * - GET_CONFIGURATION
  161. * - SET_CONFIGURATION (passes to \ref usbd_cfg_callback)
  162. * - GET_DESCRIPTOR (passes to \ref usbd_dsc_callback)
  163. * - GET_STATUS
  164. * - SET_FEATURE, CLEAR_FEATURE (endpoints only)
  165. * - SET_ADDRESS
  166. * \param[in] dev points to USB device
  167. * \param[in] req points to usb control request
  168. * \param[out] *callback USB control transfer completion callback, default is NULL (no callback)
  169. * \return usbd_respond status.
  170. */
  171. typedef usbd_respond (*usbd_ctl_callback)(usbd_device *dev, usbd_ctlreq *req, usbd_rqc_callback *callback);
  172. /**\brief USB get descriptor callback function
  173. * \details Called when GET_DESCRIPTOR request issued
  174. * \param[in] req pointer to usb control request structure
  175. * \param[in,out] address pointer to the descriptor in memory. Points to req->data by default. You
  176. * can use this buffer.
  177. * \param[in,out] dsize descriptor size. maximum buffer size by default.
  178. * \return usbd_ack if you passed the correct descriptor, usbd_fail otherwise.
  179. */
  180. typedef usbd_respond (*usbd_dsc_callback)(usbd_ctlreq *req, void **address, uint16_t *dsize);
  181. /**\brief USB set configuration callback function
  182. * \details called when SET_CONFIGURATION request issued
  183. * \param[in] dev pointer to USB device
  184. * \param[in] cfg configuration number.
  185. * \note if config is 0 device endpoints should be de-configured
  186. * \return TRUE if success
  187. */
  188. typedef usbd_respond (*usbd_cfg_callback)(usbd_device *dev, uint8_t cfg);
  189. /** @} */
  190. /**\addtogroup USBD_HW
  191. * @{ */
  192. /**\brief Enables or disables USB hardware
  193. * \param enable Enables USB when TRUE disables otherwise.
  194. */
  195. typedef void (*usbd_hw_enable)(bool enable);
  196. /** Connects or disconnects USB hardware to/from usb host
  197. * \param connect Connects USB to host if TRUE, disconnects otherwise
  198. * \return lanes connection status.
  199. */
  200. typedef uint8_t (*usbd_hw_connect)(bool connect);
  201. /**\brief Sets USB hardware address
  202. * \param address USB address
  203. */
  204. typedef void (*usbd_hw_setaddr)(uint8_t address);
  205. /**\brief Configures endpoint
  206. * \param ep endpoint address. Use USB_EPDIR_ macros to set endpoint direction
  207. * \param eptype endpoint type. Use USB_EPTYPE_* macros.
  208. * \param epsize endpoint size in bytes
  209. * \return TRUE if success
  210. */
  211. typedef bool (*usbd_hw_ep_config)(uint8_t ep, uint8_t eptype, uint16_t epsize);
  212. /**\brief De-configures, cleans and disables endpoint
  213. * \param ep endpoint index
  214. * \note if you have two one-direction single-buffered endpoints with same index (i.e. 0x02 and 0x82)
  215. * both will be deconfigured.
  216. */
  217. typedef void (*usbd_hw_ep_deconfig)(uint8_t ep);
  218. /**\brief Reads data from OUT or control endpoint
  219. * \param ep endpoint index, should belong to OUT or CONTROL endpoint.
  220. * \param buf pointer to read buffer
  221. * \param blen size of the read buffer in bytes
  222. * \return size of the actually received data, -1 on error.
  223. */
  224. typedef int32_t (*usbd_hw_ep_read)(uint8_t ep, void *buf, uint16_t blen);
  225. /**\brief Writes data to IN or control endpoint
  226. * \param ep endpoint index, hould belong to IN or CONTROL endpoint
  227. * \param buf pointer to data buffer
  228. * \param blen size of data will be written
  229. * \return number of written bytes
  230. */
  231. typedef int32_t (*usbd_hw_ep_write)(uint8_t ep, void *buf, uint16_t blen);
  232. /** Stalls and unstalls endpoint
  233. * \param ep endpoint address
  234. * \param stall endpoint will be stalled if TRUE and unstalled otherwise.
  235. * \note Has no effect on inactive endpoints.
  236. */
  237. typedef void (*usbd_hw_ep_setstall)(uint8_t ep, bool stall);
  238. /**\brief Checks endpoint for stalled state
  239. * \param ep endpoint address
  240. * \return TRUE if endpoint is stalled
  241. */
  242. typedef bool (*usbd_hw_ep_isstalled)(uint8_t ep);
  243. /**\brief Polls USB hardware for the events
  244. * \param[in] dev pointer to usb device structure
  245. * \param callback callback to event processing subroutine
  246. */
  247. typedef void (*usbd_hw_poll)(usbd_device *dev, usbd_evt_callback callback);
  248. /**\brief Gets frame number from usb hardware.*/
  249. typedef uint16_t (*usbd_hw_get_frameno)(void);
  250. /**\brief Makes a string descriptor contains unique serial number from hardware ID's
  251. * \param[in] buffer pointer to buffer for the descriptor
  252. * \return of the descriptor in bytes
  253. */
  254. typedef uint16_t (*usbd_hw_get_serialno)(void *buffer);
  255. /**\brief Represents a hardware USB driver call table.*/
  256. struct usbd_driver {
  257. uint32_t caps; /**<\brief HW capabilities */
  258. usbd_hw_enable enable; /**<\copybrief usbd_hw_enable */
  259. usbd_hw_connect connect; /**<\copybrief usbd_hw_connect */
  260. usbd_hw_setaddr setaddr; /**<\copybrief usbd_hw_setaddr */
  261. usbd_hw_ep_config ep_config; /**<\copybrief usbd_hw_ep_config */
  262. usbd_hw_ep_deconfig ep_deconfig; /**<\copybrief usbd_hw_ep_deconfig */
  263. usbd_hw_ep_read ep_read; /**<\copybrief usbd_hw_ep_read */
  264. usbd_hw_ep_write ep_write; /**<\copybrief usbd_hw_ep_write */
  265. usbd_hw_ep_setstall ep_setstall; /**<\copybrief usbd_hw_ep_setstall */
  266. usbd_hw_ep_isstalled ep_isstalled; /**<\copybrief usbd_hw_ep_isstalled */
  267. usbd_hw_poll poll; /**<\copybrief usbd_hw_poll */
  268. usbd_hw_get_frameno frame_no; /**<\copybrief usbd_hw_get_frameno */
  269. usbd_hw_get_serialno get_serialno_desc; /**<\copybrief usbd_hw_get_serialno */
  270. };
  271. /** @} */
  272. /**\addtogroup USBD_CORE
  273. * @{ */
  274. /**\brief Represents a USB device data.*/
  275. struct _usbd_device {
  276. const struct usbd_driver *driver; /**<\copybrief usbd_driver */
  277. usbd_ctl_callback control_callback; /**<\copybrief usbd_ctl_callback */
  278. usbd_rqc_callback complete_callback; /**<\copybrief usbd_rqc_callback */
  279. usbd_cfg_callback config_callback; /**<\copybrief usbd_cfg_callback */
  280. usbd_dsc_callback descriptor_callback; /**<\copybrief usbd_dsc_callback */
  281. usbd_evt_callback events[usbd_evt_count]; /**<\brief array of the event callbacks.*/
  282. usbd_evt_callback endpoint[8]; /**<\brief array of the endpoint callbacks.*/
  283. usbd_status status; /**<\copybrief usbd_status */
  284. };
  285. /**\brief Initializes device structure
  286. * \param dev USB device that will be initialized
  287. * \param drv Pointer to hardware driver
  288. * \param ep0size Control endpoint 0 size
  289. * \param buffer Pointer to control request data buffer (32-bit aligned)
  290. * \param bsize Size of the data buffer
  291. */
  292. inline static void usbd_init(usbd_device *dev, const struct usbd_driver *drv,
  293. const uint8_t ep0size, uint32_t *buffer, const uint16_t bsize) {
  294. dev->driver = drv;
  295. dev->status.ep0size = ep0size;
  296. dev->status.data_ptr = buffer;
  297. dev->status.data_buf = buffer;
  298. dev->status.data_maxsize = bsize - __builtin_offsetof(usbd_ctlreq, data);
  299. }
  300. /**\brief Polls USB for events
  301. * \param dev Pointer to device structure
  302. * \note can be called as from main routine as from USB interrupt
  303. */
  304. void usbd_poll(usbd_device *dev);
  305. /**\brief Register callback for all control requests
  306. * \param dev usb device \ref _usbd_device
  307. * \param callback user control callback \ref usbd_ctl_callback
  308. */
  309. inline static void usbd_reg_control(usbd_device *dev, usbd_ctl_callback callback) {
  310. dev->control_callback = callback;
  311. }
  312. /**\brief Register callback for SET_CONFIG control request
  313. * \param dev dev usb device \ref _usbd_device
  314. * \param callback pointer to user \ref usbd_cfg_callback
  315. */
  316. inline static void usbd_reg_config(usbd_device *dev, usbd_cfg_callback callback) {
  317. dev->config_callback = callback;
  318. }
  319. /**\brief Register callback for GET_DESCRIPTOR control request
  320. * \param dev dev usb device \ref _usbd_device
  321. * \param callback pointer to user \ref usbd_ctl_callback
  322. */
  323. inline static void usbd_reg_descr(usbd_device *dev, usbd_dsc_callback callback) {
  324. dev->descriptor_callback = callback;
  325. }
  326. /**\brief Configure endpoint
  327. * \param dev dev usb device \ref _usbd_device
  328. * \copydetails usbd_hw_ep_config
  329. */
  330. inline static bool usbd_ep_config(usbd_device *dev, uint8_t ep, uint8_t eptype, uint16_t epsize) {
  331. return dev->driver->ep_config(ep, eptype, epsize);
  332. }
  333. /**\brief Deconfigure endpoint
  334. * \param dev dev usb device \ref _usbd_device
  335. * \copydetails usbd_hw_ep_deconfig
  336. */
  337. inline static void usbd_ep_deconfig(usbd_device *dev, uint8_t ep) {
  338. dev->driver->ep_deconfig(ep);
  339. }
  340. /**\brief Register endpoint callback
  341. * \param dev dev usb device \ref _usbd_device
  342. * \param ep endpoint index
  343. * \param callback pointer to user \ref usbd_evt_callback callback for endpoint events
  344. */
  345. inline static void usbd_reg_endpoint(usbd_device *dev, uint8_t ep, usbd_evt_callback callback) {
  346. dev->endpoint[ep & 0x07] = callback;
  347. }
  348. /**\brief Registers event callback
  349. * \param dev dev usb device \ref _usbd_device
  350. * \param evt device \ref USB_EVENTS "event" wants to be registered
  351. * \param callback pointer to user \ref usbd_evt_callback for this event
  352. */
  353. inline static void usbd_reg_event(usbd_device *dev, uint8_t evt, usbd_evt_callback callback) {
  354. dev->events[evt] = callback;
  355. }
  356. /**\brief Write data to endpoint
  357. * \param dev dev usb device \ref _usbd_device
  358. * \copydetails usbd_hw_ep_write
  359. */
  360. inline static int32_t usbd_ep_write(usbd_device *dev, uint8_t ep, void *buf, uint16_t blen) {
  361. return dev->driver->ep_write(ep, buf, blen);
  362. }
  363. /**\brief Read data from endpoint
  364. * \param dev dev usb device \ref _usbd_device
  365. * \copydetails usbd_hw_ep_read
  366. */
  367. inline static int32_t usbd_ep_read(usbd_device *dev, uint8_t ep, void *buf, uint16_t blen) {
  368. return dev->driver->ep_read(ep, buf, blen);
  369. }
  370. /**\brief Stall endpoint
  371. * \param dev dev usb device \ref _usbd_device
  372. * \param ep endpoint address
  373. */
  374. inline static void usbd_ep_stall(usbd_device *dev, uint8_t ep) {
  375. dev->driver->ep_setstall(ep, 1);
  376. }
  377. /**\brief Unstall endpoint
  378. * \param dev dev usb device \ref _usbd_device
  379. * \param ep endpoint address
  380. */
  381. inline static void usbd_ep_unstall(usbd_device *dev, uint8_t ep) {
  382. dev->driver->ep_setstall(ep, 0);
  383. }
  384. /**\brief Enables or disables USB hardware
  385. * \param dev dev usb device \ref _usbd_device
  386. * \param enable Enables USB when TRUE disables otherwise
  387. */
  388. inline static void usbd_enable(usbd_device *dev, bool enable) {
  389. dev->driver->enable(enable);
  390. }
  391. /**\brief Connects or disconnects USB hardware to/from usb host
  392. * \param dev dev usb device \ref _usbd_device
  393. * \param connect Connects USB to host if TRUE, disconnects otherwise
  394. * \return lanes connection status. \ref USB_LANES_STATUS
  395. */
  396. inline static uint8_t usbd_connect(usbd_device *dev, bool connect) {
  397. return dev->driver->connect(connect);
  398. }
  399. #endif //(__ASSEMBLER__)
  400. /** @} */
  401. /** @} */
  402. #if defined(__cplusplus)
  403. }
  404. #endif
  405. #endif //_USBD_STD_H_