uhci-hcd.h 15 KB

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  1. #ifndef __LINUX_UHCI_HCD_H
  2. #define __LINUX_UHCI_HCD_H
  3. #include <linux/list.h>
  4. #include <linux/usb.h>
  5. #define usb_packetid(pipe) (usb_pipein(pipe) ? USB_PID_IN : USB_PID_OUT)
  6. #define PIPE_DEVEP_MASK 0x0007ff00
  7. /*
  8. * Universal Host Controller Interface data structures and defines
  9. */
  10. /* Command register */
  11. #define USBCMD 0
  12. #define USBCMD_RS 0x0001 /* Run/Stop */
  13. #define USBCMD_HCRESET 0x0002 /* Host reset */
  14. #define USBCMD_GRESET 0x0004 /* Global reset */
  15. #define USBCMD_EGSM 0x0008 /* Global Suspend Mode */
  16. #define USBCMD_FGR 0x0010 /* Force Global Resume */
  17. #define USBCMD_SWDBG 0x0020 /* SW Debug mode */
  18. #define USBCMD_CF 0x0040 /* Config Flag (sw only) */
  19. #define USBCMD_MAXP 0x0080 /* Max Packet (0 = 32, 1 = 64) */
  20. /* Status register */
  21. #define USBSTS 2
  22. #define USBSTS_USBINT 0x0001 /* Interrupt due to IOC */
  23. #define USBSTS_ERROR 0x0002 /* Interrupt due to error */
  24. #define USBSTS_RD 0x0004 /* Resume Detect */
  25. #define USBSTS_HSE 0x0008 /* Host System Error: PCI problems */
  26. #define USBSTS_HCPE 0x0010 /* Host Controller Process Error:
  27. * the schedule is buggy */
  28. #define USBSTS_HCH 0x0020 /* HC Halted */
  29. /* Interrupt enable register */
  30. #define USBINTR 4
  31. #define USBINTR_TIMEOUT 0x0001 /* Timeout/CRC error enable */
  32. #define USBINTR_RESUME 0x0002 /* Resume interrupt enable */
  33. #define USBINTR_IOC 0x0004 /* Interrupt On Complete enable */
  34. #define USBINTR_SP 0x0008 /* Short packet interrupt enable */
  35. #define USBFRNUM 6
  36. #define USBFLBASEADD 8
  37. #define USBSOF 12
  38. #define USBSOF_DEFAULT 64 /* Frame length is exactly 1 ms */
  39. /* USB port status and control registers */
  40. #define USBPORTSC1 16
  41. #define USBPORTSC2 18
  42. #define USBPORTSC_CCS 0x0001 /* Current Connect Status
  43. * ("device present") */
  44. #define USBPORTSC_CSC 0x0002 /* Connect Status Change */
  45. #define USBPORTSC_PE 0x0004 /* Port Enable */
  46. #define USBPORTSC_PEC 0x0008 /* Port Enable Change */
  47. #define USBPORTSC_DPLUS 0x0010 /* D+ high (line status) */
  48. #define USBPORTSC_DMINUS 0x0020 /* D- high (line status) */
  49. #define USBPORTSC_RD 0x0040 /* Resume Detect */
  50. #define USBPORTSC_RES1 0x0080 /* reserved, always 1 */
  51. #define USBPORTSC_LSDA 0x0100 /* Low Speed Device Attached */
  52. #define USBPORTSC_PR 0x0200 /* Port Reset */
  53. /* OC and OCC from Intel 430TX and later (not UHCI 1.1d spec) */
  54. #define USBPORTSC_OC 0x0400 /* Over Current condition */
  55. #define USBPORTSC_OCC 0x0800 /* Over Current Change R/WC */
  56. #define USBPORTSC_SUSP 0x1000 /* Suspend */
  57. #define USBPORTSC_RES2 0x2000 /* reserved, write zeroes */
  58. #define USBPORTSC_RES3 0x4000 /* reserved, write zeroes */
  59. #define USBPORTSC_RES4 0x8000 /* reserved, write zeroes */
  60. /* Legacy support register */
  61. #define USBLEGSUP 0xc0
  62. #define USBLEGSUP_DEFAULT 0x2000 /* only PIRQ enable set */
  63. #define USBLEGSUP_RWC 0x8f00 /* the R/WC bits */
  64. #define USBLEGSUP_RO 0x5040 /* R/O and reserved bits */
  65. #define UHCI_PTR_BITS __constant_cpu_to_le32(0x000F)
  66. #define UHCI_PTR_TERM __constant_cpu_to_le32(0x0001)
  67. #define UHCI_PTR_QH __constant_cpu_to_le32(0x0002)
  68. #define UHCI_PTR_DEPTH __constant_cpu_to_le32(0x0004)
  69. #define UHCI_PTR_BREADTH __constant_cpu_to_le32(0x0000)
  70. #define UHCI_NUMFRAMES 1024 /* in the frame list [array] */
  71. #define UHCI_MAX_SOF_NUMBER 2047 /* in an SOF packet */
  72. #define CAN_SCHEDULE_FRAMES 1000 /* how far in the future frames
  73. * can be scheduled */
  74. /* When no queues need Full-Speed Bandwidth Reclamation,
  75. * delay this long before turning FSBR off */
  76. #define FSBR_OFF_DELAY msecs_to_jiffies(400)
  77. /* If a queue hasn't advanced after this much time, assume it is stuck */
  78. #define QH_WAIT_TIMEOUT msecs_to_jiffies(200)
  79. /*
  80. * Queue Headers
  81. */
  82. /*
  83. * One role of a QH is to hold a queue of TDs for some endpoint. One QH goes
  84. * with each endpoint, and qh->element (updated by the HC) is either:
  85. * - the next unprocessed TD in the endpoint's queue, or
  86. * - UHCI_PTR_TERM (when there's no more traffic for this endpoint).
  87. *
  88. * The other role of a QH is to serve as a "skeleton" framelist entry, so we
  89. * can easily splice a QH for some endpoint into the schedule at the right
  90. * place. Then qh->element is UHCI_PTR_TERM.
  91. *
  92. * In the schedule, qh->link maintains a list of QHs seen by the HC:
  93. * skel1 --> ep1-qh --> ep2-qh --> ... --> skel2 --> ...
  94. *
  95. * qh->node is the software equivalent of qh->link. The differences
  96. * are that the software list is doubly-linked and QHs in the UNLINKING
  97. * state are on the software list but not the hardware schedule.
  98. *
  99. * For bookkeeping purposes we maintain QHs even for Isochronous endpoints,
  100. * but they never get added to the hardware schedule.
  101. */
  102. #define QH_STATE_IDLE 1 /* QH is not being used */
  103. #define QH_STATE_UNLINKING 2 /* QH has been removed from the
  104. * schedule but the hardware may
  105. * still be using it */
  106. #define QH_STATE_ACTIVE 3 /* QH is on the schedule */
  107. struct uhci_qh {
  108. /* Hardware fields */
  109. __le32 link; /* Next QH in the schedule */
  110. __le32 element; /* Queue element (TD) pointer */
  111. /* Software fields */
  112. dma_addr_t dma_handle;
  113. struct list_head node; /* Node in the list of QHs */
  114. struct usb_host_endpoint *hep; /* Endpoint information */
  115. struct usb_device *udev;
  116. struct list_head queue; /* Queue of urbps for this QH */
  117. struct uhci_qh *skel; /* Skeleton for this QH */
  118. struct uhci_td *dummy_td; /* Dummy TD to end the queue */
  119. struct uhci_td *post_td; /* Last TD completed */
  120. unsigned long advance_jiffies; /* Time of last queue advance */
  121. unsigned int unlink_frame; /* When the QH was unlinked */
  122. unsigned int period; /* For Interrupt and Isochronous QHs */
  123. int state; /* QH_STATE_xxx; see above */
  124. int type; /* Queue type (control, bulk, etc) */
  125. unsigned int initial_toggle:1; /* Endpoint's current toggle value */
  126. unsigned int needs_fixup:1; /* Must fix the TD toggle values */
  127. unsigned int is_stopped:1; /* Queue was stopped by error/unlink */
  128. unsigned int wait_expired:1; /* QH_WAIT_TIMEOUT has expired */
  129. } __attribute__((aligned(16)));
  130. /*
  131. * We need a special accessor for the element pointer because it is
  132. * subject to asynchronous updates by the controller.
  133. */
  134. static inline __le32 qh_element(struct uhci_qh *qh) {
  135. __le32 element = qh->element;
  136. barrier();
  137. return element;
  138. }
  139. /*
  140. * Transfer Descriptors
  141. */
  142. /*
  143. * for TD <status>:
  144. */
  145. #define TD_CTRL_SPD (1 << 29) /* Short Packet Detect */
  146. #define TD_CTRL_C_ERR_MASK (3 << 27) /* Error Counter bits */
  147. #define TD_CTRL_C_ERR_SHIFT 27
  148. #define TD_CTRL_LS (1 << 26) /* Low Speed Device */
  149. #define TD_CTRL_IOS (1 << 25) /* Isochronous Select */
  150. #define TD_CTRL_IOC (1 << 24) /* Interrupt on Complete */
  151. #define TD_CTRL_ACTIVE (1 << 23) /* TD Active */
  152. #define TD_CTRL_STALLED (1 << 22) /* TD Stalled */
  153. #define TD_CTRL_DBUFERR (1 << 21) /* Data Buffer Error */
  154. #define TD_CTRL_BABBLE (1 << 20) /* Babble Detected */
  155. #define TD_CTRL_NAK (1 << 19) /* NAK Received */
  156. #define TD_CTRL_CRCTIMEO (1 << 18) /* CRC/Time Out Error */
  157. #define TD_CTRL_BITSTUFF (1 << 17) /* Bit Stuff Error */
  158. #define TD_CTRL_ACTLEN_MASK 0x7FF /* actual length, encoded as n - 1 */
  159. #define TD_CTRL_ANY_ERROR (TD_CTRL_STALLED | TD_CTRL_DBUFERR | \
  160. TD_CTRL_BABBLE | TD_CTRL_CRCTIME | \
  161. TD_CTRL_BITSTUFF)
  162. #define uhci_maxerr(err) ((err) << TD_CTRL_C_ERR_SHIFT)
  163. #define uhci_status_bits(ctrl_sts) ((ctrl_sts) & 0xF60000)
  164. #define uhci_actual_length(ctrl_sts) (((ctrl_sts) + 1) & \
  165. TD_CTRL_ACTLEN_MASK) /* 1-based */
  166. /*
  167. * for TD <info>: (a.k.a. Token)
  168. */
  169. #define td_token(td) le32_to_cpu((td)->token)
  170. #define TD_TOKEN_DEVADDR_SHIFT 8
  171. #define TD_TOKEN_TOGGLE_SHIFT 19
  172. #define TD_TOKEN_TOGGLE (1 << 19)
  173. #define TD_TOKEN_EXPLEN_SHIFT 21
  174. #define TD_TOKEN_EXPLEN_MASK 0x7FF /* expected length, encoded as n-1 */
  175. #define TD_TOKEN_PID_MASK 0xFF
  176. #define uhci_explen(len) ((((len) - 1) & TD_TOKEN_EXPLEN_MASK) << \
  177. TD_TOKEN_EXPLEN_SHIFT)
  178. #define uhci_expected_length(token) ((((token) >> TD_TOKEN_EXPLEN_SHIFT) + \
  179. 1) & TD_TOKEN_EXPLEN_MASK)
  180. #define uhci_toggle(token) (((token) >> TD_TOKEN_TOGGLE_SHIFT) & 1)
  181. #define uhci_endpoint(token) (((token) >> 15) & 0xf)
  182. #define uhci_devaddr(token) (((token) >> TD_TOKEN_DEVADDR_SHIFT) & 0x7f)
  183. #define uhci_devep(token) (((token) >> TD_TOKEN_DEVADDR_SHIFT) & 0x7ff)
  184. #define uhci_packetid(token) ((token) & TD_TOKEN_PID_MASK)
  185. #define uhci_packetout(token) (uhci_packetid(token) != USB_PID_IN)
  186. #define uhci_packetin(token) (uhci_packetid(token) == USB_PID_IN)
  187. /*
  188. * The documentation says "4 words for hardware, 4 words for software".
  189. *
  190. * That's silly, the hardware doesn't care. The hardware only cares that
  191. * the hardware words are 16-byte aligned, and we can have any amount of
  192. * sw space after the TD entry.
  193. *
  194. * td->link points to either another TD (not necessarily for the same urb or
  195. * even the same endpoint), or nothing (PTR_TERM), or a QH.
  196. */
  197. struct uhci_td {
  198. /* Hardware fields */
  199. __le32 link;
  200. __le32 status;
  201. __le32 token;
  202. __le32 buffer;
  203. /* Software fields */
  204. dma_addr_t dma_handle;
  205. struct list_head list;
  206. int frame; /* for iso: what frame? */
  207. struct list_head fl_list;
  208. } __attribute__((aligned(16)));
  209. /*
  210. * We need a special accessor for the control/status word because it is
  211. * subject to asynchronous updates by the controller.
  212. */
  213. static inline u32 td_status(struct uhci_td *td) {
  214. __le32 status = td->status;
  215. barrier();
  216. return le32_to_cpu(status);
  217. }
  218. /*
  219. * Skeleton Queue Headers
  220. */
  221. /*
  222. * The UHCI driver uses QHs with Interrupt, Control and Bulk URBs for
  223. * automatic queuing. To make it easy to insert entries into the schedule,
  224. * we have a skeleton of QHs for each predefined Interrupt latency,
  225. * low-speed control, full-speed control, bulk, and terminating QH
  226. * (see explanation for the terminating QH below).
  227. *
  228. * When we want to add a new QH, we add it to the end of the list for the
  229. * skeleton QH. For instance, the schedule list can look like this:
  230. *
  231. * skel int128 QH
  232. * dev 1 interrupt QH
  233. * dev 5 interrupt QH
  234. * skel int64 QH
  235. * skel int32 QH
  236. * ...
  237. * skel int1 QH
  238. * skel low-speed control QH
  239. * dev 5 control QH
  240. * skel full-speed control QH
  241. * skel bulk QH
  242. * dev 1 bulk QH
  243. * dev 2 bulk QH
  244. * skel terminating QH
  245. *
  246. * The terminating QH is used for 2 reasons:
  247. * - To place a terminating TD which is used to workaround a PIIX bug
  248. * (see Intel errata for explanation), and
  249. * - To loop back to the full-speed control queue for full-speed bandwidth
  250. * reclamation.
  251. *
  252. * There's a special skeleton QH for Isochronous QHs. It never appears
  253. * on the schedule, and Isochronous TDs go on the schedule before the
  254. * the skeleton QHs. The hardware accesses them directly rather than
  255. * through their QH, which is used only for bookkeeping purposes.
  256. * While the UHCI spec doesn't forbid the use of QHs for Isochronous,
  257. * it doesn't use them either. And the spec says that queues never
  258. * advance on an error completion status, which makes them totally
  259. * unsuitable for Isochronous transfers.
  260. */
  261. #define UHCI_NUM_SKELQH 14
  262. #define skel_unlink_qh skelqh[0]
  263. #define skel_iso_qh skelqh[1]
  264. #define skel_int128_qh skelqh[2]
  265. #define skel_int64_qh skelqh[3]
  266. #define skel_int32_qh skelqh[4]
  267. #define skel_int16_qh skelqh[5]
  268. #define skel_int8_qh skelqh[6]
  269. #define skel_int4_qh skelqh[7]
  270. #define skel_int2_qh skelqh[8]
  271. #define skel_int1_qh skelqh[9]
  272. #define skel_ls_control_qh skelqh[10]
  273. #define skel_fs_control_qh skelqh[11]
  274. #define skel_bulk_qh skelqh[12]
  275. #define skel_term_qh skelqh[13]
  276. /* Find the skelqh entry corresponding to an interval exponent */
  277. #define UHCI_SKEL_INDEX(exponent) (9 - exponent)
  278. /*
  279. * The UHCI controller and root hub
  280. */
  281. /*
  282. * States for the root hub:
  283. *
  284. * To prevent "bouncing" in the presence of electrical noise,
  285. * when there are no devices attached we delay for 1 second in the
  286. * RUNNING_NODEVS state before switching to the AUTO_STOPPED state.
  287. *
  288. * (Note that the AUTO_STOPPED state won't be necessary once the hub
  289. * driver learns to autosuspend.)
  290. */
  291. enum uhci_rh_state {
  292. /* In the following states the HC must be halted.
  293. * These two must come first. */
  294. UHCI_RH_RESET,
  295. UHCI_RH_SUSPENDED,
  296. UHCI_RH_AUTO_STOPPED,
  297. UHCI_RH_RESUMING,
  298. /* In this state the HC changes from running to halted,
  299. * so it can legally appear either way. */
  300. UHCI_RH_SUSPENDING,
  301. /* In the following states it's an error if the HC is halted.
  302. * These two must come last. */
  303. UHCI_RH_RUNNING, /* The normal state */
  304. UHCI_RH_RUNNING_NODEVS, /* Running with no devices attached */
  305. };
  306. /*
  307. * The full UHCI controller information:
  308. */
  309. struct uhci_hcd {
  310. /* debugfs */
  311. struct dentry *dentry;
  312. /* Grabbed from PCI */
  313. unsigned long io_addr;
  314. struct dma_pool *qh_pool;
  315. struct dma_pool *td_pool;
  316. struct uhci_td *term_td; /* Terminating TD, see UHCI bug */
  317. struct uhci_qh *skelqh[UHCI_NUM_SKELQH]; /* Skeleton QHs */
  318. struct uhci_qh *next_qh; /* Next QH to scan */
  319. spinlock_t lock;
  320. dma_addr_t frame_dma_handle; /* Hardware frame list */
  321. __le32 *frame;
  322. void **frame_cpu; /* CPU's frame list */
  323. unsigned long fsbr_jiffies; /* Time when FSBR was last wanted */
  324. enum uhci_rh_state rh_state;
  325. unsigned long auto_stop_time; /* When to AUTO_STOP */
  326. unsigned int frame_number; /* As of last check */
  327. unsigned int is_stopped;
  328. #define UHCI_IS_STOPPED 9999 /* Larger than a frame # */
  329. unsigned int scan_in_progress:1; /* Schedule scan is running */
  330. unsigned int need_rescan:1; /* Redo the schedule scan */
  331. unsigned int hc_inaccessible:1; /* HC is suspended or dead */
  332. unsigned int working_RD:1; /* Suspended root hub doesn't
  333. need to be polled */
  334. unsigned int is_initialized:1; /* Data structure is usable */
  335. unsigned int fsbr_is_on:1; /* FSBR is turned on */
  336. /* Support for port suspend/resume/reset */
  337. unsigned long port_c_suspend; /* Bit-arrays of ports */
  338. unsigned long resuming_ports;
  339. unsigned long ports_timeout; /* Time to stop signalling */
  340. struct list_head idle_qh_list; /* Where the idle QHs live */
  341. int rh_numports; /* Number of root-hub ports */
  342. wait_queue_head_t waitqh; /* endpoint_disable waiters */
  343. int num_waiting; /* Number of waiters */
  344. };
  345. /* Convert between a usb_hcd pointer and the corresponding uhci_hcd */
  346. static inline struct uhci_hcd *hcd_to_uhci(struct usb_hcd *hcd)
  347. {
  348. return (struct uhci_hcd *) (hcd->hcd_priv);
  349. }
  350. static inline struct usb_hcd *uhci_to_hcd(struct uhci_hcd *uhci)
  351. {
  352. return container_of((void *) uhci, struct usb_hcd, hcd_priv);
  353. }
  354. #define uhci_dev(u) (uhci_to_hcd(u)->self.controller)
  355. /* Utility macro for comparing frame numbers */
  356. #define uhci_frame_before_eq(f1, f2) (0 <= (int) ((f2) - (f1)))
  357. /*
  358. * Private per-URB data
  359. */
  360. struct urb_priv {
  361. struct list_head node; /* Node in the QH's urbp list */
  362. struct urb *urb;
  363. struct uhci_qh *qh; /* QH for this URB */
  364. struct list_head td_list;
  365. unsigned fsbr:1; /* URB wants FSBR */
  366. };
  367. /*
  368. * Locking in uhci.c
  369. *
  370. * Almost everything relating to the hardware schedule and processing
  371. * of URBs is protected by uhci->lock. urb->status is protected by
  372. * urb->lock; that's the one exception.
  373. *
  374. * To prevent deadlocks, never lock uhci->lock while holding urb->lock.
  375. * The safe order of locking is:
  376. *
  377. * #1 uhci->lock
  378. * #2 urb->lock
  379. */
  380. /* Some special IDs */
  381. #define PCI_VENDOR_ID_GENESYS 0x17a0
  382. #define PCI_DEVICE_ID_GL880S_UHCI 0x8083
  383. #endif