ch9.h 27 KB

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  1. /*
  2. * This file holds USB constants and structures that are needed for
  3. * USB device APIs. These are used by the USB device model, which is
  4. * defined in chapter 9 of the USB 2.0 specification and in the
  5. * Wireless USB 1.0 (spread around). Linux has several APIs in C that
  6. * need these:
  7. *
  8. * - the master/host side Linux-USB kernel driver API;
  9. * - the "usbfs" user space API; and
  10. * - the Linux "gadget" slave/device/peripheral side driver API.
  11. *
  12. * USB 2.0 adds an additional "On The Go" (OTG) mode, which lets systems
  13. * act either as a USB master/host or as a USB slave/device. That means
  14. * the master and slave side APIs benefit from working well together.
  15. *
  16. * There's also "Wireless USB", using low power short range radios for
  17. * peripheral interconnection but otherwise building on the USB framework.
  18. *
  19. * Note all descriptors are declared '__attribute__((packed))' so that:
  20. *
  21. * [a] they never get padded, either internally (USB spec writers
  22. * probably handled that) or externally;
  23. *
  24. * [b] so that accessing bigger-than-a-bytes fields will never
  25. * generate bus errors on any platform, even when the location of
  26. * its descriptor inside a bundle isn't "naturally aligned", and
  27. *
  28. * [c] for consistency, removing all doubt even when it appears to
  29. * someone that the two other points are non-issues for that
  30. * particular descriptor type.
  31. */
  32. #ifndef __LINUX_USB_CH9_H
  33. #define __LINUX_USB_CH9_H
  34. #include <linux/types.h> /* __u8 etc */
  35. /*-------------------------------------------------------------------------*/
  36. /* CONTROL REQUEST SUPPORT */
  37. /*
  38. * USB directions
  39. *
  40. * This bit flag is used in endpoint descriptors' bEndpointAddress field.
  41. * It's also one of three fields in control requests bRequestType.
  42. */
  43. #define USB_DIR_OUT 0 /* to device */
  44. #define USB_DIR_IN 0x80 /* to host */
  45. /*
  46. * USB types, the second of three bRequestType fields
  47. */
  48. #define USB_TYPE_MASK (0x03 << 5)
  49. #define USB_TYPE_STANDARD (0x00 << 5)
  50. #define USB_TYPE_CLASS (0x01 << 5)
  51. #define USB_TYPE_VENDOR (0x02 << 5)
  52. #define USB_TYPE_RESERVED (0x03 << 5)
  53. /*
  54. * USB recipients, the third of three bRequestType fields
  55. */
  56. #define USB_RECIP_MASK 0x1f
  57. #define USB_RECIP_DEVICE 0x00
  58. #define USB_RECIP_INTERFACE 0x01
  59. #define USB_RECIP_ENDPOINT 0x02
  60. #define USB_RECIP_OTHER 0x03
  61. /* From Wireless USB 1.0 */
  62. #define USB_RECIP_PORT 0x04
  63. #define USB_RECIP_RPIPE 0x05
  64. /*
  65. * Standard requests, for the bRequest field of a SETUP packet.
  66. *
  67. * These are qualified by the bRequestType field, so that for example
  68. * TYPE_CLASS or TYPE_VENDOR specific feature flags could be retrieved
  69. * by a GET_STATUS request.
  70. */
  71. #define USB_REQ_GET_STATUS 0x00
  72. #define USB_REQ_CLEAR_FEATURE 0x01
  73. #define USB_REQ_SET_FEATURE 0x03
  74. #define USB_REQ_SET_ADDRESS 0x05
  75. #define USB_REQ_GET_DESCRIPTOR 0x06
  76. #define USB_REQ_SET_DESCRIPTOR 0x07
  77. #define USB_REQ_GET_CONFIGURATION 0x08
  78. #define USB_REQ_SET_CONFIGURATION 0x09
  79. #define USB_REQ_GET_INTERFACE 0x0A
  80. #define USB_REQ_SET_INTERFACE 0x0B
  81. #define USB_REQ_SYNCH_FRAME 0x0C
  82. #define USB_REQ_SET_SEL 0x30
  83. #define USB_REQ_SET_ISOCH_DELAY 0x31
  84. #define USB_REQ_SET_ENCRYPTION 0x0D /* Wireless USB */
  85. #define USB_REQ_GET_ENCRYPTION 0x0E
  86. #define USB_REQ_RPIPE_ABORT 0x0E
  87. #define USB_REQ_SET_HANDSHAKE 0x0F
  88. #define USB_REQ_RPIPE_RESET 0x0F
  89. #define USB_REQ_GET_HANDSHAKE 0x10
  90. #define USB_REQ_SET_CONNECTION 0x11
  91. #define USB_REQ_SET_SECURITY_DATA 0x12
  92. #define USB_REQ_GET_SECURITY_DATA 0x13
  93. #define USB_REQ_SET_WUSB_DATA 0x14
  94. #define USB_REQ_LOOPBACK_DATA_WRITE 0x15
  95. #define USB_REQ_LOOPBACK_DATA_READ 0x16
  96. #define USB_REQ_SET_INTERFACE_DS 0x17
  97. /* The Link Power Management (LPM) ECN defines USB_REQ_TEST_AND_SET command,
  98. * used by hubs to put ports into a new L1 suspend state, except that it
  99. * forgot to define its number ...
  100. */
  101. /*
  102. * USB feature flags are written using USB_REQ_{CLEAR,SET}_FEATURE, and
  103. * are read as a bit array returned by USB_REQ_GET_STATUS. (So there
  104. * are at most sixteen features of each type.) Hubs may also support a
  105. * new USB_REQ_TEST_AND_SET_FEATURE to put ports into L1 suspend.
  106. */
  107. #define USB_DEVICE_SELF_POWERED 0 /* (read only) */
  108. #define USB_DEVICE_REMOTE_WAKEUP 1 /* dev may initiate wakeup */
  109. #define USB_DEVICE_TEST_MODE 2 /* (wired high speed only) */
  110. #define USB_DEVICE_BATTERY 2 /* (wireless) */
  111. #define USB_DEVICE_B_HNP_ENABLE 3 /* (otg) dev may initiate HNP */
  112. #define USB_DEVICE_WUSB_DEVICE 3 /* (wireless)*/
  113. #define USB_DEVICE_A_HNP_SUPPORT 4 /* (otg) RH port supports HNP */
  114. #define USB_DEVICE_A_ALT_HNP_SUPPORT 5 /* (otg) other RH port does */
  115. #define USB_DEVICE_DEBUG_MODE 6 /* (special devices only) */
  116. /*
  117. * New Feature Selectors as added by USB 3.0
  118. * See USB 3.0 spec Table 9-6
  119. */
  120. #define USB_DEVICE_U1_ENABLE 48 /* dev may initiate U1 transition */
  121. #define USB_DEVICE_U2_ENABLE 49 /* dev may initiate U2 transition */
  122. #define USB_DEVICE_LTM_ENABLE 50 /* dev may send LTM */
  123. #define USB_INTRF_FUNC_SUSPEND 0 /* function suspend */
  124. #define USB_INTR_FUNC_SUSPEND_OPT_MASK 0xFF00
  125. /*
  126. * Suspend Options, Table 9-7 USB 3.0 spec
  127. */
  128. #define USB_INTRF_FUNC_SUSPEND_LP (1 << (8 + 0))
  129. #define USB_INTRF_FUNC_SUSPEND_RW (1 << (8 + 1))
  130. #define USB_ENDPOINT_HALT 0 /* IN/OUT will STALL */
  131. /* Bit array elements as returned by the USB_REQ_GET_STATUS request. */
  132. #define USB_DEV_STAT_U1_ENABLED 2 /* transition into U1 state */
  133. #define USB_DEV_STAT_U2_ENABLED 3 /* transition into U2 state */
  134. #define USB_DEV_STAT_LTM_ENABLED 4 /* Latency tolerance messages */
  135. /**
  136. * struct usb_ctrlrequest - SETUP data for a USB device control request
  137. * @bRequestType: matches the USB bmRequestType field
  138. * @bRequest: matches the USB bRequest field
  139. * @wValue: matches the USB wValue field (le16 byte order)
  140. * @wIndex: matches the USB wIndex field (le16 byte order)
  141. * @wLength: matches the USB wLength field (le16 byte order)
  142. *
  143. * This structure is used to send control requests to a USB device. It matches
  144. * the different fields of the USB 2.0 Spec section 9.3, table 9-2. See the
  145. * USB spec for a fuller description of the different fields, and what they are
  146. * used for.
  147. *
  148. * Note that the driver for any interface can issue control requests.
  149. * For most devices, interfaces don't coordinate with each other, so
  150. * such requests may be made at any time.
  151. */
  152. struct usb_ctrlrequest {
  153. __u8 bRequestType;
  154. __u8 bRequest;
  155. __le16 wValue;
  156. __le16 wIndex;
  157. __le16 wLength;
  158. } __attribute__ ((packed));
  159. /*-------------------------------------------------------------------------*/
  160. /*
  161. * STANDARD DESCRIPTORS ... as returned by GET_DESCRIPTOR, or
  162. * (rarely) accepted by SET_DESCRIPTOR.
  163. *
  164. * Note that all multi-byte values here are encoded in little endian
  165. * byte order "on the wire". Within the kernel and when exposed
  166. * through the Linux-USB APIs, they are not converted to cpu byte
  167. * order; it is the responsibility of the client code to do this.
  168. * The single exception is when device and configuration descriptors (but
  169. * not other descriptors) are read from usbfs (i.e. /proc/bus/usb/BBB/DDD);
  170. * in this case the fields are converted to host endianness by the kernel.
  171. */
  172. /*
  173. * Descriptor types ... USB 2.0 spec table 9.5
  174. */
  175. #define USB_DT_DEVICE 0x01
  176. #define USB_DT_CONFIG 0x02
  177. #define USB_DT_STRING 0x03
  178. #define USB_DT_INTERFACE 0x04
  179. #define USB_DT_ENDPOINT 0x05
  180. #define USB_DT_DEVICE_QUALIFIER 0x06
  181. #define USB_DT_OTHER_SPEED_CONFIG 0x07
  182. #define USB_DT_INTERFACE_POWER 0x08
  183. /* these are from a minor usb 2.0 revision (ECN) */
  184. #define USB_DT_OTG 0x09
  185. #define USB_DT_DEBUG 0x0a
  186. #define USB_DT_INTERFACE_ASSOCIATION 0x0b
  187. /* these are from the Wireless USB spec */
  188. #define USB_DT_SECURITY 0x0c
  189. #define USB_DT_KEY 0x0d
  190. #define USB_DT_ENCRYPTION_TYPE 0x0e
  191. #define USB_DT_BOS 0x0f
  192. #define USB_DT_DEVICE_CAPABILITY 0x10
  193. #define USB_DT_WIRELESS_ENDPOINT_COMP 0x11
  194. #define USB_DT_WIRE_ADAPTER 0x21
  195. #define USB_DT_RPIPE 0x22
  196. #define USB_DT_CS_RADIO_CONTROL 0x23
  197. /* From the USB 3.0 spec */
  198. #define USB_DT_SS_ENDPOINT_COMP 0x30
  199. /* Conventional codes for class-specific descriptors. The convention is
  200. * defined in the USB "Common Class" Spec (3.11). Individual class specs
  201. * are authoritative for their usage, not the "common class" writeup.
  202. */
  203. #define USB_DT_CS_DEVICE (USB_TYPE_CLASS | USB_DT_DEVICE)
  204. #define USB_DT_CS_CONFIG (USB_TYPE_CLASS | USB_DT_CONFIG)
  205. #define USB_DT_CS_STRING (USB_TYPE_CLASS | USB_DT_STRING)
  206. #define USB_DT_CS_INTERFACE (USB_TYPE_CLASS | USB_DT_INTERFACE)
  207. #define USB_DT_CS_ENDPOINT (USB_TYPE_CLASS | USB_DT_ENDPOINT)
  208. /* All standard descriptors have these 2 fields at the beginning */
  209. struct usb_descriptor_header {
  210. __u8 bLength;
  211. __u8 bDescriptorType;
  212. } __attribute__ ((packed));
  213. /*-------------------------------------------------------------------------*/
  214. /* USB_DT_DEVICE: Device descriptor */
  215. struct usb_device_descriptor {
  216. __u8 bLength;
  217. __u8 bDescriptorType;
  218. __le16 bcdUSB;
  219. __u8 bDeviceClass;
  220. __u8 bDeviceSubClass;
  221. __u8 bDeviceProtocol;
  222. __u8 bMaxPacketSize0;
  223. __le16 idVendor;
  224. __le16 idProduct;
  225. __le16 bcdDevice;
  226. __u8 iManufacturer;
  227. __u8 iProduct;
  228. __u8 iSerialNumber;
  229. __u8 bNumConfigurations;
  230. } __attribute__ ((packed));
  231. #define USB_DT_DEVICE_SIZE 18
  232. /*
  233. * Device and/or Interface Class codes
  234. * as found in bDeviceClass or bInterfaceClass
  235. * and defined by www.usb.org documents
  236. */
  237. #define USB_CLASS_PER_INTERFACE 0 /* for DeviceClass */
  238. #define USB_CLASS_AUDIO 1
  239. #define USB_CLASS_COMM 2
  240. #define USB_CLASS_HID 3
  241. #define USB_CLASS_PHYSICAL 5
  242. #define USB_CLASS_STILL_IMAGE 6
  243. #define USB_CLASS_PRINTER 7
  244. #define USB_CLASS_MASS_STORAGE 8
  245. #define USB_CLASS_HUB 9
  246. #define USB_CLASS_CDC_DATA 0x0a
  247. #define USB_CLASS_CSCID 0x0b /* chip+ smart card */
  248. #define USB_CLASS_CONTENT_SEC 0x0d /* content security */
  249. #define USB_CLASS_VIDEO 0x0e
  250. #define USB_CLASS_WIRELESS_CONTROLLER 0xe0
  251. #define USB_CLASS_MISC 0xef
  252. #define USB_CLASS_APP_SPEC 0xfe
  253. #define USB_CLASS_VENDOR_SPEC 0xff
  254. #define USB_SUBCLASS_VENDOR_SPEC 0xff
  255. /*-------------------------------------------------------------------------*/
  256. /* USB_DT_CONFIG: Configuration descriptor information.
  257. *
  258. * USB_DT_OTHER_SPEED_CONFIG is the same descriptor, except that the
  259. * descriptor type is different. Highspeed-capable devices can look
  260. * different depending on what speed they're currently running. Only
  261. * devices with a USB_DT_DEVICE_QUALIFIER have any OTHER_SPEED_CONFIG
  262. * descriptors.
  263. */
  264. struct usb_config_descriptor {
  265. __u8 bLength;
  266. __u8 bDescriptorType;
  267. __le16 wTotalLength;
  268. __u8 bNumInterfaces;
  269. __u8 bConfigurationValue;
  270. __u8 iConfiguration;
  271. __u8 bmAttributes;
  272. __u8 bMaxPower;
  273. } __attribute__ ((packed));
  274. #define USB_DT_CONFIG_SIZE 9
  275. /* from config descriptor bmAttributes */
  276. #define USB_CONFIG_ATT_ONE (1 << 7) /* must be set */
  277. #define USB_CONFIG_ATT_SELFPOWER (1 << 6) /* self powered */
  278. #define USB_CONFIG_ATT_WAKEUP (1 << 5) /* can wakeup */
  279. #define USB_CONFIG_ATT_BATTERY (1 << 4) /* battery powered */
  280. /*-------------------------------------------------------------------------*/
  281. /* USB_DT_STRING: String descriptor */
  282. struct usb_string_descriptor {
  283. __u8 bLength;
  284. __u8 bDescriptorType;
  285. __le16 wData[1]; /* UTF-16LE encoded */
  286. } __attribute__ ((packed));
  287. /* note that "string" zero is special, it holds language codes that
  288. * the device supports, not Unicode characters.
  289. */
  290. /*-------------------------------------------------------------------------*/
  291. /* USB_DT_INTERFACE: Interface descriptor */
  292. struct usb_interface_descriptor {
  293. __u8 bLength;
  294. __u8 bDescriptorType;
  295. __u8 bInterfaceNumber;
  296. __u8 bAlternateSetting;
  297. __u8 bNumEndpoints;
  298. __u8 bInterfaceClass;
  299. __u8 bInterfaceSubClass;
  300. __u8 bInterfaceProtocol;
  301. __u8 iInterface;
  302. } __attribute__ ((packed));
  303. #define USB_DT_INTERFACE_SIZE 9
  304. /*-------------------------------------------------------------------------*/
  305. /* USB_DT_ENDPOINT: Endpoint descriptor */
  306. struct usb_endpoint_descriptor {
  307. __u8 bLength;
  308. __u8 bDescriptorType;
  309. __u8 bEndpointAddress;
  310. __u8 bmAttributes;
  311. __le16 wMaxPacketSize;
  312. __u8 bInterval;
  313. /* NOTE: these two are _only_ in audio endpoints. */
  314. /* use USB_DT_ENDPOINT*_SIZE in bLength, not sizeof. */
  315. __u8 bRefresh;
  316. __u8 bSynchAddress;
  317. } __attribute__ ((packed));
  318. #define USB_DT_ENDPOINT_SIZE 7
  319. #define USB_DT_ENDPOINT_AUDIO_SIZE 9 /* Audio extension */
  320. /*
  321. * Endpoints
  322. */
  323. #define USB_ENDPOINT_NUMBER_MASK 0x0f /* in bEndpointAddress */
  324. #define USB_ENDPOINT_DIR_MASK 0x80
  325. #define USB_ENDPOINT_XFERTYPE_MASK 0x03 /* in bmAttributes */
  326. #define USB_ENDPOINT_XFER_CONTROL 0
  327. #define USB_ENDPOINT_XFER_ISOC 1
  328. #define USB_ENDPOINT_XFER_BULK 2
  329. #define USB_ENDPOINT_XFER_INT 3
  330. #define USB_ENDPOINT_MAX_ADJUSTABLE 0x80
  331. #define USB_ENDPOINT_SYNCTYPE 0x0c
  332. #define USB_ENDPOINT_SYNC_NONE (0 << 2)
  333. #define USB_ENDPOINT_SYNC_ASYNC (1 << 2)
  334. #define USB_ENDPOINT_SYNC_ADAPTIVE (2 << 2)
  335. #define USB_ENDPOINT_SYNC_SYNC (3 << 2)
  336. #define USB_ENDPOINT_USAGE_MASK 0x30
  337. #define USB_ENDPOINT_USAGE_DATA 0x00
  338. #define USB_ENDPOINT_USAGE_FEEDBACK 0x10
  339. #define USB_ENDPOINT_USAGE_IMPLICIT_FB 0x20 /* Implicit feedback Data endpoint */
  340. /*-------------------------------------------------------------------------*/
  341. /**
  342. * usb_endpoint_num - get the endpoint's number
  343. * @epd: endpoint to be checked
  344. *
  345. * Returns @epd's number: 0 to 15.
  346. */
  347. static __inline__ int usb_endpoint_num(const struct usb_endpoint_descriptor *epd)
  348. {
  349. return epd->bEndpointAddress & USB_ENDPOINT_NUMBER_MASK;
  350. }
  351. /**
  352. * usb_endpoint_type - get the endpoint's transfer type
  353. * @epd: endpoint to be checked
  354. *
  355. * Returns one of USB_ENDPOINT_XFER_{CONTROL, ISOC, BULK, INT} according
  356. * to @epd's transfer type.
  357. */
  358. static __inline__ int usb_endpoint_type(const struct usb_endpoint_descriptor *epd)
  359. {
  360. return epd->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK;
  361. }
  362. /**
  363. * usb_endpoint_dir_in - check if the endpoint has IN direction
  364. * @epd: endpoint to be checked
  365. *
  366. * Returns true if the endpoint is of type IN, otherwise it returns false.
  367. */
  368. static __inline__ int usb_endpoint_dir_in(const struct usb_endpoint_descriptor *epd)
  369. {
  370. return ((epd->bEndpointAddress & USB_ENDPOINT_DIR_MASK) == USB_DIR_IN);
  371. }
  372. /**
  373. * usb_endpoint_dir_out - check if the endpoint has OUT direction
  374. * @epd: endpoint to be checked
  375. *
  376. * Returns true if the endpoint is of type OUT, otherwise it returns false.
  377. */
  378. static __inline__ int usb_endpoint_dir_out(
  379. const struct usb_endpoint_descriptor *epd)
  380. {
  381. return ((epd->bEndpointAddress & USB_ENDPOINT_DIR_MASK) == USB_DIR_OUT);
  382. }
  383. /**
  384. * usb_endpoint_xfer_bulk - check if the endpoint has bulk transfer type
  385. * @epd: endpoint to be checked
  386. *
  387. * Returns true if the endpoint is of type bulk, otherwise it returns false.
  388. */
  389. static __inline__ int usb_endpoint_xfer_bulk(
  390. const struct usb_endpoint_descriptor *epd)
  391. {
  392. return ((epd->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK) ==
  393. USB_ENDPOINT_XFER_BULK);
  394. }
  395. /**
  396. * usb_endpoint_xfer_control - check if the endpoint has control transfer type
  397. * @epd: endpoint to be checked
  398. *
  399. * Returns true if the endpoint is of type control, otherwise it returns false.
  400. */
  401. static __inline__ int usb_endpoint_xfer_control(
  402. const struct usb_endpoint_descriptor *epd)
  403. {
  404. return ((epd->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK) ==
  405. USB_ENDPOINT_XFER_CONTROL);
  406. }
  407. /**
  408. * usb_endpoint_xfer_int - check if the endpoint has interrupt transfer type
  409. * @epd: endpoint to be checked
  410. *
  411. * Returns true if the endpoint is of type interrupt, otherwise it returns
  412. * false.
  413. */
  414. static __inline__ int usb_endpoint_xfer_int(
  415. const struct usb_endpoint_descriptor *epd)
  416. {
  417. return ((epd->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK) ==
  418. USB_ENDPOINT_XFER_INT);
  419. }
  420. /**
  421. * usb_endpoint_xfer_isoc - check if the endpoint has isochronous transfer type
  422. * @epd: endpoint to be checked
  423. *
  424. * Returns true if the endpoint is of type isochronous, otherwise it returns
  425. * false.
  426. */
  427. static __inline__ int usb_endpoint_xfer_isoc(
  428. const struct usb_endpoint_descriptor *epd)
  429. {
  430. return ((epd->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK) ==
  431. USB_ENDPOINT_XFER_ISOC);
  432. }
  433. /**
  434. * usb_endpoint_is_bulk_in - check if the endpoint is bulk IN
  435. * @epd: endpoint to be checked
  436. *
  437. * Returns true if the endpoint has bulk transfer type and IN direction,
  438. * otherwise it returns false.
  439. */
  440. static __inline__ int usb_endpoint_is_bulk_in(
  441. const struct usb_endpoint_descriptor *epd)
  442. {
  443. return usb_endpoint_xfer_bulk(epd) && usb_endpoint_dir_in(epd);
  444. }
  445. /**
  446. * usb_endpoint_is_bulk_out - check if the endpoint is bulk OUT
  447. * @epd: endpoint to be checked
  448. *
  449. * Returns true if the endpoint has bulk transfer type and OUT direction,
  450. * otherwise it returns false.
  451. */
  452. static __inline__ int usb_endpoint_is_bulk_out(
  453. const struct usb_endpoint_descriptor *epd)
  454. {
  455. return usb_endpoint_xfer_bulk(epd) && usb_endpoint_dir_out(epd);
  456. }
  457. /**
  458. * usb_endpoint_is_int_in - check if the endpoint is interrupt IN
  459. * @epd: endpoint to be checked
  460. *
  461. * Returns true if the endpoint has interrupt transfer type and IN direction,
  462. * otherwise it returns false.
  463. */
  464. static __inline__ int usb_endpoint_is_int_in(
  465. const struct usb_endpoint_descriptor *epd)
  466. {
  467. return usb_endpoint_xfer_int(epd) && usb_endpoint_dir_in(epd);
  468. }
  469. /**
  470. * usb_endpoint_is_int_out - check if the endpoint is interrupt OUT
  471. * @epd: endpoint to be checked
  472. *
  473. * Returns true if the endpoint has interrupt transfer type and OUT direction,
  474. * otherwise it returns false.
  475. */
  476. static __inline__ int usb_endpoint_is_int_out(
  477. const struct usb_endpoint_descriptor *epd)
  478. {
  479. return usb_endpoint_xfer_int(epd) && usb_endpoint_dir_out(epd);
  480. }
  481. /**
  482. * usb_endpoint_is_isoc_in - check if the endpoint is isochronous IN
  483. * @epd: endpoint to be checked
  484. *
  485. * Returns true if the endpoint has isochronous transfer type and IN direction,
  486. * otherwise it returns false.
  487. */
  488. static __inline__ int usb_endpoint_is_isoc_in(
  489. const struct usb_endpoint_descriptor *epd)
  490. {
  491. return usb_endpoint_xfer_isoc(epd) && usb_endpoint_dir_in(epd);
  492. }
  493. /**
  494. * usb_endpoint_is_isoc_out - check if the endpoint is isochronous OUT
  495. * @epd: endpoint to be checked
  496. *
  497. * Returns true if the endpoint has isochronous transfer type and OUT direction,
  498. * otherwise it returns false.
  499. */
  500. static __inline__ int usb_endpoint_is_isoc_out(
  501. const struct usb_endpoint_descriptor *epd)
  502. {
  503. return usb_endpoint_xfer_isoc(epd) && usb_endpoint_dir_out(epd);
  504. }
  505. /*-------------------------------------------------------------------------*/
  506. /* USB_DT_SS_ENDPOINT_COMP: SuperSpeed Endpoint Companion descriptor */
  507. struct usb_ss_ep_comp_descriptor {
  508. __u8 bLength;
  509. __u8 bDescriptorType;
  510. __u8 bMaxBurst;
  511. __u8 bmAttributes;
  512. #ifndef __GENKSYMS__
  513. __le16 wBytesPerInterval;
  514. #else
  515. __u16 wBytesPerInterval;
  516. #endif
  517. } __attribute__ ((packed));
  518. #define USB_DT_SS_EP_COMP_SIZE 6
  519. /* Bits 4:0 of bmAttributes if this is a bulk endpoint */
  520. #define USB_SS_MAX_STREAMS(p) (1 << (p & 0x1f))
  521. /*-------------------------------------------------------------------------*/
  522. /* USB_DT_DEVICE_QUALIFIER: Device Qualifier descriptor */
  523. struct usb_qualifier_descriptor {
  524. __u8 bLength;
  525. __u8 bDescriptorType;
  526. __le16 bcdUSB;
  527. __u8 bDeviceClass;
  528. __u8 bDeviceSubClass;
  529. __u8 bDeviceProtocol;
  530. __u8 bMaxPacketSize0;
  531. __u8 bNumConfigurations;
  532. __u8 bRESERVED;
  533. } __attribute__ ((packed));
  534. /*-------------------------------------------------------------------------*/
  535. /* USB_DT_OTG (from OTG 1.0a supplement) */
  536. struct usb_otg_descriptor {
  537. __u8 bLength;
  538. __u8 bDescriptorType;
  539. __u8 bmAttributes; /* support for HNP, SRP, etc */
  540. } __attribute__ ((packed));
  541. /* from usb_otg_descriptor.bmAttributes */
  542. #define USB_OTG_SRP (1 << 0)
  543. #define USB_OTG_HNP (1 << 1) /* swap host/device roles */
  544. /*-------------------------------------------------------------------------*/
  545. /* USB_DT_DEBUG: for special highspeed devices, replacing serial console */
  546. struct usb_debug_descriptor {
  547. __u8 bLength;
  548. __u8 bDescriptorType;
  549. /* bulk endpoints with 8 byte maxpacket */
  550. __u8 bDebugInEndpoint;
  551. __u8 bDebugOutEndpoint;
  552. } __attribute__((packed));
  553. /*-------------------------------------------------------------------------*/
  554. /* USB_DT_INTERFACE_ASSOCIATION: groups interfaces */
  555. struct usb_interface_assoc_descriptor {
  556. __u8 bLength;
  557. __u8 bDescriptorType;
  558. __u8 bFirstInterface;
  559. __u8 bInterfaceCount;
  560. __u8 bFunctionClass;
  561. __u8 bFunctionSubClass;
  562. __u8 bFunctionProtocol;
  563. __u8 iFunction;
  564. } __attribute__ ((packed));
  565. /*-------------------------------------------------------------------------*/
  566. /* USB_DT_SECURITY: group of wireless security descriptors, including
  567. * encryption types available for setting up a CC/association.
  568. */
  569. struct usb_security_descriptor {
  570. __u8 bLength;
  571. __u8 bDescriptorType;
  572. __le16 wTotalLength;
  573. __u8 bNumEncryptionTypes;
  574. } __attribute__((packed));
  575. /*-------------------------------------------------------------------------*/
  576. /* USB_DT_KEY: used with {GET,SET}_SECURITY_DATA; only public keys
  577. * may be retrieved.
  578. */
  579. struct usb_key_descriptor {
  580. __u8 bLength;
  581. __u8 bDescriptorType;
  582. __u8 tTKID[3];
  583. __u8 bReserved;
  584. __u8 bKeyData[0];
  585. } __attribute__((packed));
  586. /*-------------------------------------------------------------------------*/
  587. /* USB_DT_ENCRYPTION_TYPE: bundled in DT_SECURITY groups */
  588. struct usb_encryption_descriptor {
  589. __u8 bLength;
  590. __u8 bDescriptorType;
  591. __u8 bEncryptionType;
  592. #define USB_ENC_TYPE_UNSECURE 0
  593. #define USB_ENC_TYPE_WIRED 1 /* non-wireless mode */
  594. #define USB_ENC_TYPE_CCM_1 2 /* aes128/cbc session */
  595. #define USB_ENC_TYPE_RSA_1 3 /* rsa3072/sha1 auth */
  596. __u8 bEncryptionValue; /* use in SET_ENCRYPTION */
  597. __u8 bAuthKeyIndex;
  598. } __attribute__((packed));
  599. /*-------------------------------------------------------------------------*/
  600. /* USB_DT_BOS: group of device-level capabilities */
  601. struct usb_bos_descriptor {
  602. __u8 bLength;
  603. __u8 bDescriptorType;
  604. __le16 wTotalLength;
  605. __u8 bNumDeviceCaps;
  606. } __attribute__((packed));
  607. #define USB_DT_BOS_SIZE 5
  608. /*-------------------------------------------------------------------------*/
  609. /* USB_DT_DEVICE_CAPABILITY: grouped with BOS */
  610. struct usb_dev_cap_header {
  611. __u8 bLength;
  612. __u8 bDescriptorType;
  613. __u8 bDevCapabilityType;
  614. } __attribute__((packed));
  615. #define USB_CAP_TYPE_WIRELESS_USB 1
  616. struct usb_wireless_cap_descriptor { /* Ultra Wide Band */
  617. __u8 bLength;
  618. __u8 bDescriptorType;
  619. __u8 bDevCapabilityType;
  620. __u8 bmAttributes;
  621. #define USB_WIRELESS_P2P_DRD (1 << 1)
  622. #define USB_WIRELESS_BEACON_MASK (3 << 2)
  623. #define USB_WIRELESS_BEACON_SELF (1 << 2)
  624. #define USB_WIRELESS_BEACON_DIRECTED (2 << 2)
  625. #define USB_WIRELESS_BEACON_NONE (3 << 2)
  626. __le16 wPHYRates; /* bit rates, Mbps */
  627. #define USB_WIRELESS_PHY_53 (1 << 0) /* always set */
  628. #define USB_WIRELESS_PHY_80 (1 << 1)
  629. #define USB_WIRELESS_PHY_107 (1 << 2) /* always set */
  630. #define USB_WIRELESS_PHY_160 (1 << 3)
  631. #define USB_WIRELESS_PHY_200 (1 << 4) /* always set */
  632. #define USB_WIRELESS_PHY_320 (1 << 5)
  633. #define USB_WIRELESS_PHY_400 (1 << 6)
  634. #define USB_WIRELESS_PHY_480 (1 << 7)
  635. __u8 bmTFITXPowerInfo; /* TFI power levels */
  636. __u8 bmFFITXPowerInfo; /* FFI power levels */
  637. __le16 bmBandGroup;
  638. __u8 bReserved;
  639. } __attribute__((packed));
  640. /* USB 2.0 Extension descriptor */
  641. #define USB_CAP_TYPE_EXT 2
  642. struct usb_ext_cap_descriptor { /* Link Power Management */
  643. __u8 bLength;
  644. __u8 bDescriptorType;
  645. __u8 bDevCapabilityType;
  646. __le32 bmAttributes;
  647. #define USB_LPM_SUPPORT (1 << 1) /* supports LPM */
  648. #define USB_BESL_SUPPORT (1 << 2) /* supports BESL */
  649. #define USB_BESL_BASELINE_VALID (1 << 3) /* Baseline BESL valid*/
  650. #define USB_BESL_DEEP_VALID (1 << 4) /* Deep BESL valid */
  651. #define USB_GET_BESL_BASELINE(p) (((p) & (0xf << 8)) >> 8)
  652. #define USB_GET_BESL_DEEP(p) (((p) & (0xf << 12)) >> 12)
  653. } __attribute__((packed));
  654. #define USB_DT_USB_EXT_CAP_SIZE 7
  655. /*
  656. * SuperSpeed USB Capability descriptor: Defines the set of SuperSpeed USB
  657. * specific device level capabilities
  658. */
  659. #define USB_SS_CAP_TYPE 3
  660. struct usb_ss_cap_descriptor { /* Link Power Management */
  661. __u8 bLength;
  662. __u8 bDescriptorType;
  663. __u8 bDevCapabilityType;
  664. __u8 bmAttributes;
  665. #define USB_LTM_SUPPORT (1 << 1) /* supports LTM */
  666. __le16 wSpeedSupported;
  667. #define USB_LOW_SPEED_OPERATION (1) /* Low speed operation */
  668. #define USB_FULL_SPEED_OPERATION (1 << 1) /* Full speed operation */
  669. #define USB_HIGH_SPEED_OPERATION (1 << 2) /* High speed operation */
  670. #define USB_5GBPS_OPERATION (1 << 3) /* Operation at 5Gbps */
  671. __u8 bFunctionalitySupport;
  672. __u8 bU1devExitLat;
  673. __le16 bU2DevExitLat;
  674. } __attribute__((packed));
  675. #define USB_DT_USB_SS_CAP_SIZE 10
  676. /*
  677. * Container ID Capability descriptor: Defines the instance unique ID used to
  678. * identify the instance across all operating modes
  679. */
  680. #define CONTAINER_ID_TYPE 4
  681. struct usb_ss_container_id_descriptor {
  682. __u8 bLength;
  683. __u8 bDescriptorType;
  684. __u8 bDevCapabilityType;
  685. __u8 bReserved;
  686. __u8 ContainerID[16]; /* 128-bit number */
  687. } __attribute__((packed));
  688. #define USB_DT_USB_SS_CONTN_ID_SIZE 20
  689. /*-------------------------------------------------------------------------*/
  690. /* USB_DT_WIRELESS_ENDPOINT_COMP: companion descriptor associated with
  691. * each endpoint descriptor for a wireless device
  692. */
  693. struct usb_wireless_ep_comp_descriptor {
  694. __u8 bLength;
  695. __u8 bDescriptorType;
  696. __u8 bMaxBurst;
  697. __u8 bMaxSequence;
  698. __le16 wMaxStreamDelay;
  699. __le16 wOverTheAirPacketSize;
  700. __u8 bOverTheAirInterval;
  701. __u8 bmCompAttributes;
  702. #define USB_ENDPOINT_SWITCH_MASK 0x03 /* in bmCompAttributes */
  703. #define USB_ENDPOINT_SWITCH_NO 0
  704. #define USB_ENDPOINT_SWITCH_SWITCH 1
  705. #define USB_ENDPOINT_SWITCH_SCALE 2
  706. } __attribute__((packed));
  707. /*-------------------------------------------------------------------------*/
  708. /* USB_REQ_SET_HANDSHAKE is a four-way handshake used between a wireless
  709. * host and a device for connection set up, mutual authentication, and
  710. * exchanging short lived session keys. The handshake depends on a CC.
  711. */
  712. struct usb_handshake {
  713. __u8 bMessageNumber;
  714. __u8 bStatus;
  715. __u8 tTKID[3];
  716. __u8 bReserved;
  717. __u8 CDID[16];
  718. __u8 nonce[16];
  719. __u8 MIC[8];
  720. } __attribute__((packed));
  721. /*-------------------------------------------------------------------------*/
  722. /* USB_REQ_SET_CONNECTION modifies or revokes a connection context (CC).
  723. * A CC may also be set up using non-wireless secure channels (including
  724. * wired USB!), and some devices may support CCs with multiple hosts.
  725. */
  726. struct usb_connection_context {
  727. __u8 CHID[16]; /* persistent host id */
  728. __u8 CDID[16]; /* device id (unique w/in host context) */
  729. __u8 CK[16]; /* connection key */
  730. } __attribute__((packed));
  731. /*-------------------------------------------------------------------------*/
  732. /* USB 2.0 defines three speeds, here's how Linux identifies them */
  733. enum usb_device_speed {
  734. USB_SPEED_UNKNOWN = 0, /* enumerating */
  735. USB_SPEED_LOW, USB_SPEED_FULL, /* usb 1.1 */
  736. USB_SPEED_HIGH, /* usb 2.0 */
  737. #ifdef __GENKSYMS__
  738. USB_SPEED_VARIABLE,
  739. #else
  740. USB_SPEED_WIRELESS, /* wireless (usb 2.5) */
  741. #endif
  742. USB_SPEED_SUPER, /* usb 3.0 */
  743. };
  744. enum usb_device_state {
  745. /* NOTATTACHED isn't in the USB spec, and this state acts
  746. * the same as ATTACHED ... but it's clearer this way.
  747. */
  748. USB_STATE_NOTATTACHED = 0,
  749. /* chapter 9 and authentication (wireless) device states */
  750. USB_STATE_ATTACHED,
  751. USB_STATE_POWERED, /* wired */
  752. USB_STATE_RECONNECTING, /* auth */
  753. USB_STATE_UNAUTHENTICATED, /* auth */
  754. USB_STATE_DEFAULT, /* limited function */
  755. USB_STATE_ADDRESS,
  756. USB_STATE_CONFIGURED, /* most functions */
  757. USB_STATE_SUSPENDED
  758. /* NOTE: there are actually four different SUSPENDED
  759. * states, returning to POWERED, DEFAULT, ADDRESS, or
  760. * CONFIGURED respectively when SOF tokens flow again.
  761. * At this level there's no difference between L1 and L2
  762. * suspend states. (L2 being original USB 1.1 suspend.)
  763. */
  764. };
  765. #endif /* __LINUX_USB_CH9_H */