composite.h 21 KB

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  1. /*
  2. * composite.h -- framework for usb gadgets which are composite devices
  3. *
  4. * Copyright (C) 2006-2008 David Brownell
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * This program is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, write to the Free Software
  18. * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
  19. */
  20. #ifndef __LINUX_USB_COMPOSITE_H
  21. #define __LINUX_USB_COMPOSITE_H
  22. /*
  23. * This framework is an optional layer on top of the USB Gadget interface,
  24. * making it easier to build (a) Composite devices, supporting multiple
  25. * functions within any single configuration, and (b) Multi-configuration
  26. * devices, also supporting multiple functions but without necessarily
  27. * having more than one function per configuration.
  28. *
  29. * Example: a device with a single configuration supporting both network
  30. * link and mass storage functions is a composite device. Those functions
  31. * might alternatively be packaged in individual configurations, but in
  32. * the composite model the host can use both functions at the same time.
  33. */
  34. #include <linux/bcd.h>
  35. #include <linux/version.h>
  36. #include <linux/usb/ch9.h>
  37. #include <linux/usb/gadget.h>
  38. #include <linux/log2.h>
  39. #include <linux/configfs.h>
  40. /*
  41. * USB function drivers should return USB_GADGET_DELAYED_STATUS if they
  42. * wish to delay the data/status stages of the control transfer till they
  43. * are ready. The control transfer will then be kept from completing till
  44. * all the function drivers that requested for USB_GADGET_DELAYED_STAUS
  45. * invoke usb_composite_setup_continue().
  46. */
  47. #define USB_GADGET_DELAYED_STATUS 0x7fff /* Impossibly large value */
  48. /* big enough to hold our biggest descriptor */
  49. #define USB_COMP_EP0_BUFSIZ 1024
  50. #define USB_MS_TO_HS_INTERVAL(x) (ilog2((x * 1000 / 125)) + 1)
  51. struct usb_configuration;
  52. /**
  53. * struct usb_function - describes one function of a configuration
  54. * @name: For diagnostics, identifies the function.
  55. * @strings: tables of strings, keyed by identifiers assigned during bind()
  56. * and by language IDs provided in control requests
  57. * @fs_descriptors: Table of full (or low) speed descriptors, using interface and
  58. * string identifiers assigned during @bind(). If this pointer is null,
  59. * the function will not be available at full speed (or at low speed).
  60. * @hs_descriptors: Table of high speed descriptors, using interface and
  61. * string identifiers assigned during @bind(). If this pointer is null,
  62. * the function will not be available at high speed.
  63. * @ss_descriptors: Table of super speed descriptors, using interface and
  64. * string identifiers assigned during @bind(). If this
  65. * pointer is null after initiation, the function will not
  66. * be available at super speed.
  67. * @config: assigned when @usb_add_function() is called; this is the
  68. * configuration with which this function is associated.
  69. * @bind: Before the gadget can register, all of its functions bind() to the
  70. * available resources including string and interface identifiers used
  71. * in interface or class descriptors; endpoints; I/O buffers; and so on.
  72. * @unbind: Reverses @bind; called as a side effect of unregistering the
  73. * driver which added this function.
  74. * @free_func: free the struct usb_function.
  75. * @mod: (internal) points to the module that created this structure.
  76. * @set_alt: (REQUIRED) Reconfigures altsettings; function drivers may
  77. * initialize usb_ep.driver data at this time (when it is used).
  78. * Note that setting an interface to its current altsetting resets
  79. * interface state, and that all interfaces have a disabled state.
  80. * @get_alt: Returns the active altsetting. If this is not provided,
  81. * then only altsetting zero is supported.
  82. * @disable: (REQUIRED) Indicates the function should be disabled. Reasons
  83. * include host resetting or reconfiguring the gadget, and disconnection.
  84. * @setup: Used for interface-specific control requests.
  85. * @suspend: Notifies functions when the host stops sending USB traffic.
  86. * @resume: Notifies functions when the host restarts USB traffic.
  87. * @get_status: Returns function status as a reply to
  88. * GetStatus() request when the recepient is Interface.
  89. * @func_suspend: callback to be called when
  90. * SetFeature(FUNCTION_SUSPEND) is reseived
  91. *
  92. * A single USB function uses one or more interfaces, and should in most
  93. * cases support operation at both full and high speeds. Each function is
  94. * associated by @usb_add_function() with a one configuration; that function
  95. * causes @bind() to be called so resources can be allocated as part of
  96. * setting up a gadget driver. Those resources include endpoints, which
  97. * should be allocated using @usb_ep_autoconfig().
  98. *
  99. * To support dual speed operation, a function driver provides descriptors
  100. * for both high and full speed operation. Except in rare cases that don't
  101. * involve bulk endpoints, each speed needs different endpoint descriptors.
  102. *
  103. * Function drivers choose their own strategies for managing instance data.
  104. * The simplest strategy just declares it "static', which means the function
  105. * can only be activated once. If the function needs to be exposed in more
  106. * than one configuration at a given speed, it needs to support multiple
  107. * usb_function structures (one for each configuration).
  108. *
  109. * A more complex strategy might encapsulate a @usb_function structure inside
  110. * a driver-specific instance structure to allows multiple activations. An
  111. * example of multiple activations might be a CDC ACM function that supports
  112. * two or more distinct instances within the same configuration, providing
  113. * several independent logical data links to a USB host.
  114. */
  115. struct usb_function {
  116. const char *name;
  117. struct usb_gadget_strings **strings;
  118. struct usb_descriptor_header **fs_descriptors;
  119. struct usb_descriptor_header **hs_descriptors;
  120. struct usb_descriptor_header **ss_descriptors;
  121. struct usb_configuration *config;
  122. /* REVISIT: bind() functions can be marked __init, which
  123. * makes trouble for section mismatch analysis. See if
  124. * we can't restructure things to avoid mismatching.
  125. * Related: unbind() may kfree() but bind() won't...
  126. */
  127. /* configuration management: bind/unbind */
  128. int (*bind)(struct usb_configuration *,
  129. struct usb_function *);
  130. void (*unbind)(struct usb_configuration *,
  131. struct usb_function *);
  132. void (*free_func)(struct usb_function *f);
  133. struct module *mod;
  134. /* runtime state management */
  135. int (*set_alt)(struct usb_function *,
  136. unsigned interface, unsigned alt);
  137. int (*get_alt)(struct usb_function *,
  138. unsigned interface);
  139. void (*disable)(struct usb_function *);
  140. int (*setup)(struct usb_function *,
  141. const struct usb_ctrlrequest *);
  142. void (*suspend)(struct usb_function *);
  143. void (*resume)(struct usb_function *);
  144. /* USB 3.0 additions */
  145. int (*get_status)(struct usb_function *);
  146. int (*func_suspend)(struct usb_function *,
  147. u8 suspend_opt);
  148. /* private: */
  149. /* internals */
  150. struct list_head list;
  151. DECLARE_BITMAP(endpoints, 32);
  152. const struct usb_function_instance *fi;
  153. };
  154. int usb_add_function(struct usb_configuration *, struct usb_function *);
  155. int usb_function_deactivate(struct usb_function *);
  156. int usb_function_activate(struct usb_function *);
  157. int usb_interface_id(struct usb_configuration *, struct usb_function *);
  158. int config_ep_by_speed(struct usb_gadget *g, struct usb_function *f,
  159. struct usb_ep *_ep);
  160. #define MAX_CONFIG_INTERFACES 16 /* arbitrary; max 255 */
  161. /**
  162. * struct usb_configuration - represents one gadget configuration
  163. * @label: For diagnostics, describes the configuration.
  164. * @strings: Tables of strings, keyed by identifiers assigned during @bind()
  165. * and by language IDs provided in control requests.
  166. * @descriptors: Table of descriptors preceding all function descriptors.
  167. * Examples include OTG and vendor-specific descriptors.
  168. * @unbind: Reverses @bind; called as a side effect of unregistering the
  169. * driver which added this configuration.
  170. * @setup: Used to delegate control requests that aren't handled by standard
  171. * device infrastructure or directed at a specific interface.
  172. * @bConfigurationValue: Copied into configuration descriptor.
  173. * @iConfiguration: Copied into configuration descriptor.
  174. * @bmAttributes: Copied into configuration descriptor.
  175. * @MaxPower: Power consumtion in mA. Used to compute bMaxPower in the
  176. * configuration descriptor after considering the bus speed.
  177. * @cdev: assigned by @usb_add_config() before calling @bind(); this is
  178. * the device associated with this configuration.
  179. *
  180. * Configurations are building blocks for gadget drivers structured around
  181. * function drivers. Simple USB gadgets require only one function and one
  182. * configuration, and handle dual-speed hardware by always providing the same
  183. * functionality. Slightly more complex gadgets may have more than one
  184. * single-function configuration at a given speed; or have configurations
  185. * that only work at one speed.
  186. *
  187. * Composite devices are, by definition, ones with configurations which
  188. * include more than one function.
  189. *
  190. * The lifecycle of a usb_configuration includes allocation, initialization
  191. * of the fields described above, and calling @usb_add_config() to set up
  192. * internal data and bind it to a specific device. The configuration's
  193. * @bind() method is then used to initialize all the functions and then
  194. * call @usb_add_function() for them.
  195. *
  196. * Those functions would normally be independent of each other, but that's
  197. * not mandatory. CDC WMC devices are an example where functions often
  198. * depend on other functions, with some functions subsidiary to others.
  199. * Such interdependency may be managed in any way, so long as all of the
  200. * descriptors complete by the time the composite driver returns from
  201. * its bind() routine.
  202. */
  203. struct usb_configuration {
  204. const char *label;
  205. struct usb_gadget_strings **strings;
  206. const struct usb_descriptor_header **descriptors;
  207. /* REVISIT: bind() functions can be marked __init, which
  208. * makes trouble for section mismatch analysis. See if
  209. * we can't restructure things to avoid mismatching...
  210. */
  211. /* configuration management: unbind/setup */
  212. void (*unbind)(struct usb_configuration *);
  213. int (*setup)(struct usb_configuration *,
  214. const struct usb_ctrlrequest *);
  215. /* fields in the config descriptor */
  216. u8 bConfigurationValue;
  217. u8 iConfiguration;
  218. u8 bmAttributes;
  219. u16 MaxPower;
  220. struct usb_composite_dev *cdev;
  221. /* private: */
  222. /* internals */
  223. struct list_head list;
  224. struct list_head functions;
  225. u8 next_interface_id;
  226. unsigned superspeed:1;
  227. unsigned highspeed:1;
  228. unsigned fullspeed:1;
  229. struct usb_function *interface[MAX_CONFIG_INTERFACES];
  230. };
  231. int usb_add_config(struct usb_composite_dev *,
  232. struct usb_configuration *,
  233. int (*)(struct usb_configuration *));
  234. void usb_remove_config(struct usb_composite_dev *,
  235. struct usb_configuration *);
  236. /* predefined index for usb_composite_driver */
  237. enum {
  238. USB_GADGET_MANUFACTURER_IDX = 0,
  239. USB_GADGET_PRODUCT_IDX,
  240. USB_GADGET_SERIAL_IDX,
  241. USB_GADGET_FIRST_AVAIL_IDX,
  242. };
  243. /**
  244. * struct usb_composite_driver - groups configurations into a gadget
  245. * @name: For diagnostics, identifies the driver.
  246. * @dev: Template descriptor for the device, including default device
  247. * identifiers.
  248. * @strings: tables of strings, keyed by identifiers assigned during @bind
  249. * and language IDs provided in control requests. Note: The first entries
  250. * are predefined. The first entry that may be used is
  251. * USB_GADGET_FIRST_AVAIL_IDX
  252. * @max_speed: Highest speed the driver supports.
  253. * @needs_serial: set to 1 if the gadget needs userspace to provide
  254. * a serial number. If one is not provided, warning will be printed.
  255. * @bind: (REQUIRED) Used to allocate resources that are shared across the
  256. * whole device, such as string IDs, and add its configurations using
  257. * @usb_add_config(). This may fail by returning a negative errno
  258. * value; it should return zero on successful initialization.
  259. * @unbind: Reverses @bind; called as a side effect of unregistering
  260. * this driver.
  261. * @disconnect: optional driver disconnect method
  262. * @suspend: Notifies when the host stops sending USB traffic,
  263. * after function notifications
  264. * @resume: Notifies configuration when the host restarts USB traffic,
  265. * before function notifications
  266. * @gadget_driver: Gadget driver controlling this driver
  267. *
  268. * Devices default to reporting self powered operation. Devices which rely
  269. * on bus powered operation should report this in their @bind method.
  270. *
  271. * Before returning from @bind, various fields in the template descriptor
  272. * may be overridden. These include the idVendor/idProduct/bcdDevice values
  273. * normally to bind the appropriate host side driver, and the three strings
  274. * (iManufacturer, iProduct, iSerialNumber) normally used to provide user
  275. * meaningful device identifiers. (The strings will not be defined unless
  276. * they are defined in @dev and @strings.) The correct ep0 maxpacket size
  277. * is also reported, as defined by the underlying controller driver.
  278. */
  279. struct usb_composite_driver {
  280. const char *name;
  281. const struct usb_device_descriptor *dev;
  282. struct usb_gadget_strings **strings;
  283. enum usb_device_speed max_speed;
  284. unsigned needs_serial:1;
  285. int (*bind)(struct usb_composite_dev *cdev);
  286. int (*unbind)(struct usb_composite_dev *);
  287. void (*disconnect)(struct usb_composite_dev *);
  288. /* global suspend hooks */
  289. void (*suspend)(struct usb_composite_dev *);
  290. void (*resume)(struct usb_composite_dev *);
  291. struct usb_gadget_driver gadget_driver;
  292. };
  293. extern int usb_composite_probe(struct usb_composite_driver *driver);
  294. extern void usb_composite_unregister(struct usb_composite_driver *driver);
  295. extern void usb_composite_setup_continue(struct usb_composite_dev *cdev);
  296. extern int composite_dev_prepare(struct usb_composite_driver *composite,
  297. struct usb_composite_dev *cdev);
  298. void composite_dev_cleanup(struct usb_composite_dev *cdev);
  299. static inline struct usb_composite_driver *to_cdriver(
  300. struct usb_gadget_driver *gdrv)
  301. {
  302. return container_of(gdrv, struct usb_composite_driver, gadget_driver);
  303. }
  304. /**
  305. * struct usb_composite_device - represents one composite usb gadget
  306. * @gadget: read-only, abstracts the gadget's usb peripheral controller
  307. * @req: used for control responses; buffer is pre-allocated
  308. * @config: the currently active configuration
  309. *
  310. * One of these devices is allocated and initialized before the
  311. * associated device driver's bind() is called.
  312. *
  313. * OPEN ISSUE: it appears that some WUSB devices will need to be
  314. * built by combining a normal (wired) gadget with a wireless one.
  315. * This revision of the gadget framework should probably try to make
  316. * sure doing that won't hurt too much.
  317. *
  318. * One notion for how to handle Wireless USB devices involves:
  319. * (a) a second gadget here, discovery mechanism TBD, but likely
  320. * needing separate "register/unregister WUSB gadget" calls;
  321. * (b) updates to usb_gadget to include flags "is it wireless",
  322. * "is it wired", plus (presumably in a wrapper structure)
  323. * bandgroup and PHY info;
  324. * (c) presumably a wireless_ep wrapping a usb_ep, and reporting
  325. * wireless-specific parameters like maxburst and maxsequence;
  326. * (d) configurations that are specific to wireless links;
  327. * (e) function drivers that understand wireless configs and will
  328. * support wireless for (additional) function instances;
  329. * (f) a function to support association setup (like CBAF), not
  330. * necessarily requiring a wireless adapter;
  331. * (g) composite device setup that can create one or more wireless
  332. * configs, including appropriate association setup support;
  333. * (h) more, TBD.
  334. */
  335. struct usb_composite_dev {
  336. struct usb_gadget *gadget;
  337. struct usb_request *req;
  338. struct usb_configuration *config;
  339. /* private: */
  340. /* internals */
  341. unsigned int suspended:1;
  342. struct usb_device_descriptor desc;
  343. struct list_head configs;
  344. struct list_head gstrings;
  345. struct usb_composite_driver *driver;
  346. u8 next_string_id;
  347. char *def_manufacturer;
  348. /* the gadget driver won't enable the data pullup
  349. * while the deactivation count is nonzero.
  350. */
  351. unsigned deactivations;
  352. /* the composite driver won't complete the control transfer's
  353. * data/status stages till delayed_status is zero.
  354. */
  355. int delayed_status;
  356. /* protects deactivations and delayed_status counts*/
  357. spinlock_t lock;
  358. };
  359. extern int usb_string_id(struct usb_composite_dev *c);
  360. extern int usb_string_ids_tab(struct usb_composite_dev *c,
  361. struct usb_string *str);
  362. extern struct usb_string *usb_gstrings_attach(struct usb_composite_dev *cdev,
  363. struct usb_gadget_strings **sp, unsigned n_strings);
  364. extern int usb_string_ids_n(struct usb_composite_dev *c, unsigned n);
  365. extern void composite_disconnect(struct usb_gadget *gadget);
  366. extern int composite_setup(struct usb_gadget *gadget,
  367. const struct usb_ctrlrequest *ctrl);
  368. /*
  369. * Some systems will need runtime overrides for the product identifiers
  370. * published in the device descriptor, either numbers or strings or both.
  371. * String parameters are in UTF-8 (superset of ASCII's 7 bit characters).
  372. */
  373. struct usb_composite_overwrite {
  374. u16 idVendor;
  375. u16 idProduct;
  376. u16 bcdDevice;
  377. char *serial_number;
  378. char *manufacturer;
  379. char *product;
  380. };
  381. #define USB_GADGET_COMPOSITE_OPTIONS() \
  382. static struct usb_composite_overwrite coverwrite; \
  383. \
  384. module_param_named(idVendor, coverwrite.idVendor, ushort, S_IRUGO); \
  385. MODULE_PARM_DESC(idVendor, "USB Vendor ID"); \
  386. \
  387. module_param_named(idProduct, coverwrite.idProduct, ushort, S_IRUGO); \
  388. MODULE_PARM_DESC(idProduct, "USB Product ID"); \
  389. \
  390. module_param_named(bcdDevice, coverwrite.bcdDevice, ushort, S_IRUGO); \
  391. MODULE_PARM_DESC(bcdDevice, "USB Device version (BCD)"); \
  392. \
  393. module_param_named(iSerialNumber, coverwrite.serial_number, charp, \
  394. S_IRUGO); \
  395. MODULE_PARM_DESC(iSerialNumber, "SerialNumber string"); \
  396. \
  397. module_param_named(iManufacturer, coverwrite.manufacturer, charp, \
  398. S_IRUGO); \
  399. MODULE_PARM_DESC(iManufacturer, "USB Manufacturer string"); \
  400. \
  401. module_param_named(iProduct, coverwrite.product, charp, S_IRUGO); \
  402. MODULE_PARM_DESC(iProduct, "USB Product string")
  403. void usb_composite_overwrite_options(struct usb_composite_dev *cdev,
  404. struct usb_composite_overwrite *covr);
  405. static inline u16 get_default_bcdDevice(void)
  406. {
  407. u16 bcdDevice;
  408. bcdDevice = bin2bcd((LINUX_VERSION_CODE >> 16 & 0xff)) << 8;
  409. bcdDevice |= bin2bcd((LINUX_VERSION_CODE >> 8 & 0xff));
  410. return bcdDevice;
  411. }
  412. struct usb_function_driver {
  413. const char *name;
  414. struct module *mod;
  415. struct list_head list;
  416. struct usb_function_instance *(*alloc_inst)(void);
  417. struct usb_function *(*alloc_func)(struct usb_function_instance *inst);
  418. };
  419. struct usb_function_instance {
  420. struct config_group group;
  421. struct list_head cfs_list;
  422. struct usb_function_driver *fd;
  423. void (*free_func_inst)(struct usb_function_instance *inst);
  424. };
  425. void usb_function_unregister(struct usb_function_driver *f);
  426. int usb_function_register(struct usb_function_driver *newf);
  427. void usb_put_function_instance(struct usb_function_instance *fi);
  428. void usb_put_function(struct usb_function *f);
  429. struct usb_function_instance *usb_get_function_instance(const char *name);
  430. struct usb_function *usb_get_function(struct usb_function_instance *fi);
  431. struct usb_configuration *usb_get_config(struct usb_composite_dev *cdev,
  432. int val);
  433. int usb_add_config_only(struct usb_composite_dev *cdev,
  434. struct usb_configuration *config);
  435. void usb_remove_function(struct usb_configuration *c, struct usb_function *f);
  436. #define DECLARE_USB_FUNCTION(_name, _inst_alloc, _func_alloc) \
  437. static struct usb_function_driver _name ## usb_func = { \
  438. .name = __stringify(_name), \
  439. .mod = THIS_MODULE, \
  440. .alloc_inst = _inst_alloc, \
  441. .alloc_func = _func_alloc, \
  442. }; \
  443. MODULE_ALIAS("usbfunc:"__stringify(_name));
  444. #define DECLARE_USB_FUNCTION_INIT(_name, _inst_alloc, _func_alloc) \
  445. DECLARE_USB_FUNCTION(_name, _inst_alloc, _func_alloc) \
  446. static int __init _name ## mod_init(void) \
  447. { \
  448. return usb_function_register(&_name ## usb_func); \
  449. } \
  450. static void __exit _name ## mod_exit(void) \
  451. { \
  452. usb_function_unregister(&_name ## usb_func); \
  453. } \
  454. module_init(_name ## mod_init); \
  455. module_exit(_name ## mod_exit)
  456. /* messaging utils */
  457. #define DBG(d, fmt, args...) \
  458. dev_dbg(&(d)->gadget->dev , fmt , ## args)
  459. #define VDBG(d, fmt, args...) \
  460. dev_vdbg(&(d)->gadget->dev , fmt , ## args)
  461. #define ERROR(d, fmt, args...) \
  462. dev_err(&(d)->gadget->dev , fmt , ## args)
  463. #define WARNING(d, fmt, args...) \
  464. dev_warn(&(d)->gadget->dev , fmt , ## args)
  465. #define INFO(d, fmt, args...) \
  466. dev_info(&(d)->gadget->dev , fmt , ## args)
  467. #endif /* __LINUX_USB_COMPOSITE_H */