fotg210.h 22 KB

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  1. #ifndef __LINUX_FOTG210_H
  2. #define __LINUX_FOTG210_H
  3. #include <linux/usb/ehci-dbgp.h>
  4. /* definitions used for the EHCI driver */
  5. /*
  6. * __hc32 and __hc16 are "Host Controller" types, they may be equivalent to
  7. * __leXX (normally) or __beXX (given FOTG210_BIG_ENDIAN_DESC), depending on
  8. * the host controller implementation.
  9. *
  10. * To facilitate the strongest possible byte-order checking from "sparse"
  11. * and so on, we use __leXX unless that's not practical.
  12. */
  13. #define __hc32 __le32
  14. #define __hc16 __le16
  15. /* statistics can be kept for tuning/monitoring */
  16. struct fotg210_stats {
  17. /* irq usage */
  18. unsigned long normal;
  19. unsigned long error;
  20. unsigned long iaa;
  21. unsigned long lost_iaa;
  22. /* termination of urbs from core */
  23. unsigned long complete;
  24. unsigned long unlink;
  25. };
  26. /* fotg210_hcd->lock guards shared data against other CPUs:
  27. * fotg210_hcd: async, unlink, periodic (and shadow), ...
  28. * usb_host_endpoint: hcpriv
  29. * fotg210_qh: qh_next, qtd_list
  30. * fotg210_qtd: qtd_list
  31. *
  32. * Also, hold this lock when talking to HC registers or
  33. * when updating hw_* fields in shared qh/qtd/... structures.
  34. */
  35. #define FOTG210_MAX_ROOT_PORTS 1 /* see HCS_N_PORTS */
  36. /*
  37. * fotg210_rh_state values of FOTG210_RH_RUNNING or above mean that the
  38. * controller may be doing DMA. Lower values mean there's no DMA.
  39. */
  40. enum fotg210_rh_state {
  41. FOTG210_RH_HALTED,
  42. FOTG210_RH_SUSPENDED,
  43. FOTG210_RH_RUNNING,
  44. FOTG210_RH_STOPPING
  45. };
  46. /*
  47. * Timer events, ordered by increasing delay length.
  48. * Always update event_delays_ns[] and event_handlers[] (defined in
  49. * ehci-timer.c) in parallel with this list.
  50. */
  51. enum fotg210_hrtimer_event {
  52. FOTG210_HRTIMER_POLL_ASS, /* Poll for async schedule off */
  53. FOTG210_HRTIMER_POLL_PSS, /* Poll for periodic schedule off */
  54. FOTG210_HRTIMER_POLL_DEAD, /* Wait for dead controller to stop */
  55. FOTG210_HRTIMER_UNLINK_INTR, /* Wait for interrupt QH unlink */
  56. FOTG210_HRTIMER_FREE_ITDS, /* Wait for unused iTDs and siTDs */
  57. FOTG210_HRTIMER_ASYNC_UNLINKS, /* Unlink empty async QHs */
  58. FOTG210_HRTIMER_IAA_WATCHDOG, /* Handle lost IAA interrupts */
  59. FOTG210_HRTIMER_DISABLE_PERIODIC, /* Wait to disable periodic sched */
  60. FOTG210_HRTIMER_DISABLE_ASYNC, /* Wait to disable async sched */
  61. FOTG210_HRTIMER_IO_WATCHDOG, /* Check for missing IRQs */
  62. FOTG210_HRTIMER_NUM_EVENTS /* Must come last */
  63. };
  64. #define FOTG210_HRTIMER_NO_EVENT 99
  65. struct fotg210_hcd { /* one per controller */
  66. /* timing support */
  67. enum fotg210_hrtimer_event next_hrtimer_event;
  68. unsigned enabled_hrtimer_events;
  69. ktime_t hr_timeouts[FOTG210_HRTIMER_NUM_EVENTS];
  70. struct hrtimer hrtimer;
  71. int PSS_poll_count;
  72. int ASS_poll_count;
  73. int died_poll_count;
  74. /* glue to PCI and HCD framework */
  75. struct fotg210_caps __iomem *caps;
  76. struct fotg210_regs __iomem *regs;
  77. struct ehci_dbg_port __iomem *debug;
  78. __u32 hcs_params; /* cached register copy */
  79. spinlock_t lock;
  80. enum fotg210_rh_state rh_state;
  81. /* general schedule support */
  82. bool scanning:1;
  83. bool need_rescan:1;
  84. bool intr_unlinking:1;
  85. bool async_unlinking:1;
  86. bool shutdown:1;
  87. struct fotg210_qh *qh_scan_next;
  88. /* async schedule support */
  89. struct fotg210_qh *async;
  90. struct fotg210_qh *dummy; /* For AMD quirk use */
  91. struct fotg210_qh *async_unlink;
  92. struct fotg210_qh *async_unlink_last;
  93. struct fotg210_qh *async_iaa;
  94. unsigned async_unlink_cycle;
  95. unsigned async_count; /* async activity count */
  96. /* periodic schedule support */
  97. #define DEFAULT_I_TDPS 1024 /* some HCs can do less */
  98. unsigned periodic_size;
  99. __hc32 *periodic; /* hw periodic table */
  100. dma_addr_t periodic_dma;
  101. struct list_head intr_qh_list;
  102. unsigned i_thresh; /* uframes HC might cache */
  103. union fotg210_shadow *pshadow; /* mirror hw periodic table */
  104. struct fotg210_qh *intr_unlink;
  105. struct fotg210_qh *intr_unlink_last;
  106. unsigned intr_unlink_cycle;
  107. unsigned now_frame; /* frame from HC hardware */
  108. unsigned next_frame; /* scan periodic, start here */
  109. unsigned intr_count; /* intr activity count */
  110. unsigned isoc_count; /* isoc activity count */
  111. unsigned periodic_count; /* periodic activity count */
  112. /* max periodic time per uframe */
  113. unsigned uframe_periodic_max;
  114. /* list of itds completed while now_frame was still active */
  115. struct list_head cached_itd_list;
  116. struct fotg210_itd *last_itd_to_free;
  117. /* per root hub port */
  118. unsigned long reset_done[FOTG210_MAX_ROOT_PORTS];
  119. /* bit vectors (one bit per port) */
  120. unsigned long bus_suspended; /* which ports were
  121. already suspended at the start of a bus suspend */
  122. unsigned long companion_ports; /* which ports are
  123. dedicated to the companion controller */
  124. unsigned long owned_ports; /* which ports are
  125. owned by the companion during a bus suspend */
  126. unsigned long port_c_suspend; /* which ports have
  127. the change-suspend feature turned on */
  128. unsigned long suspended_ports; /* which ports are
  129. suspended */
  130. unsigned long resuming_ports; /* which ports have
  131. started to resume */
  132. /* per-HC memory pools (could be per-bus, but ...) */
  133. struct dma_pool *qh_pool; /* qh per active urb */
  134. struct dma_pool *qtd_pool; /* one or more per qh */
  135. struct dma_pool *itd_pool; /* itd per iso urb */
  136. unsigned random_frame;
  137. unsigned long next_statechange;
  138. ktime_t last_periodic_enable;
  139. u32 command;
  140. /* SILICON QUIRKS */
  141. unsigned need_io_watchdog:1;
  142. unsigned fs_i_thresh:1; /* Intel iso scheduling */
  143. u8 sbrn; /* packed release number */
  144. /* irq statistics */
  145. #ifdef FOTG210_STATS
  146. struct fotg210_stats stats;
  147. # define COUNT(x) ((x)++)
  148. #else
  149. # define COUNT(x)
  150. #endif
  151. /* debug files */
  152. struct dentry *debug_dir;
  153. };
  154. /* convert between an HCD pointer and the corresponding FOTG210_HCD */
  155. static inline struct fotg210_hcd *hcd_to_fotg210(struct usb_hcd *hcd)
  156. {
  157. return (struct fotg210_hcd *)(hcd->hcd_priv);
  158. }
  159. static inline struct usb_hcd *fotg210_to_hcd(struct fotg210_hcd *fotg210)
  160. {
  161. return container_of((void *) fotg210, struct usb_hcd, hcd_priv);
  162. }
  163. /*-------------------------------------------------------------------------*/
  164. /* EHCI register interface, corresponds to EHCI Revision 0.95 specification */
  165. /* Section 2.2 Host Controller Capability Registers */
  166. struct fotg210_caps {
  167. /* these fields are specified as 8 and 16 bit registers,
  168. * but some hosts can't perform 8 or 16 bit PCI accesses.
  169. * some hosts treat caplength and hciversion as parts of a 32-bit
  170. * register, others treat them as two separate registers, this
  171. * affects the memory map for big endian controllers.
  172. */
  173. u32 hc_capbase;
  174. #define HC_LENGTH(fotg210, p) (0x00ff&((p) >> /* bits 7:0 / offset 00h */ \
  175. (fotg210_big_endian_capbase(fotg210) ? 24 : 0)))
  176. #define HC_VERSION(fotg210, p) (0xffff&((p) >> /* bits 31:16 / offset 02h */ \
  177. (fotg210_big_endian_capbase(fotg210) ? 0 : 16)))
  178. u32 hcs_params; /* HCSPARAMS - offset 0x4 */
  179. #define HCS_N_PORTS(p) (((p)>>0)&0xf) /* bits 3:0, ports on HC */
  180. u32 hcc_params; /* HCCPARAMS - offset 0x8 */
  181. #define HCC_CANPARK(p) ((p)&(1 << 2)) /* true: can park on async qh */
  182. #define HCC_PGM_FRAMELISTLEN(p) ((p)&(1 << 1)) /* true: periodic_size changes*/
  183. u8 portroute[8]; /* nibbles for routing - offset 0xC */
  184. };
  185. /* Section 2.3 Host Controller Operational Registers */
  186. struct fotg210_regs {
  187. /* USBCMD: offset 0x00 */
  188. u32 command;
  189. /* EHCI 1.1 addendum */
  190. /* 23:16 is r/w intr rate, in microframes; default "8" == 1/msec */
  191. #define CMD_PARK (1<<11) /* enable "park" on async qh */
  192. #define CMD_PARK_CNT(c) (((c)>>8)&3) /* how many transfers to park for */
  193. #define CMD_IAAD (1<<6) /* "doorbell" interrupt async advance */
  194. #define CMD_ASE (1<<5) /* async schedule enable */
  195. #define CMD_PSE (1<<4) /* periodic schedule enable */
  196. /* 3:2 is periodic frame list size */
  197. #define CMD_RESET (1<<1) /* reset HC not bus */
  198. #define CMD_RUN (1<<0) /* start/stop HC */
  199. /* USBSTS: offset 0x04 */
  200. u32 status;
  201. #define STS_ASS (1<<15) /* Async Schedule Status */
  202. #define STS_PSS (1<<14) /* Periodic Schedule Status */
  203. #define STS_RECL (1<<13) /* Reclamation */
  204. #define STS_HALT (1<<12) /* Not running (any reason) */
  205. /* some bits reserved */
  206. /* these STS_* flags are also intr_enable bits (USBINTR) */
  207. #define STS_IAA (1<<5) /* Interrupted on async advance */
  208. #define STS_FATAL (1<<4) /* such as some PCI access errors */
  209. #define STS_FLR (1<<3) /* frame list rolled over */
  210. #define STS_PCD (1<<2) /* port change detect */
  211. #define STS_ERR (1<<1) /* "error" completion (overflow, ...) */
  212. #define STS_INT (1<<0) /* "normal" completion (short, ...) */
  213. /* USBINTR: offset 0x08 */
  214. u32 intr_enable;
  215. /* FRINDEX: offset 0x0C */
  216. u32 frame_index; /* current microframe number */
  217. /* CTRLDSSEGMENT: offset 0x10 */
  218. u32 segment; /* address bits 63:32 if needed */
  219. /* PERIODICLISTBASE: offset 0x14 */
  220. u32 frame_list; /* points to periodic list */
  221. /* ASYNCLISTADDR: offset 0x18 */
  222. u32 async_next; /* address of next async queue head */
  223. u32 reserved1;
  224. /* PORTSC: offset 0x20 */
  225. u32 port_status;
  226. /* 31:23 reserved */
  227. #define PORT_USB11(x) (((x)&(3<<10)) == (1<<10)) /* USB 1.1 device */
  228. #define PORT_RESET (1<<8) /* reset port */
  229. #define PORT_SUSPEND (1<<7) /* suspend port */
  230. #define PORT_RESUME (1<<6) /* resume it */
  231. #define PORT_PEC (1<<3) /* port enable change */
  232. #define PORT_PE (1<<2) /* port enable */
  233. #define PORT_CSC (1<<1) /* connect status change */
  234. #define PORT_CONNECT (1<<0) /* device connected */
  235. #define PORT_RWC_BITS (PORT_CSC | PORT_PEC)
  236. u32 reserved2[19];
  237. /* OTGCSR: offet 0x70 */
  238. u32 otgcsr;
  239. #define OTGCSR_HOST_SPD_TYP (3 << 22)
  240. #define OTGCSR_A_BUS_DROP (1 << 5)
  241. #define OTGCSR_A_BUS_REQ (1 << 4)
  242. /* OTGISR: offset 0x74 */
  243. u32 otgisr;
  244. #define OTGISR_OVC (1 << 10)
  245. u32 reserved3[15];
  246. /* GMIR: offset 0xB4 */
  247. u32 gmir;
  248. #define GMIR_INT_POLARITY (1 << 3) /*Active High*/
  249. #define GMIR_MHC_INT (1 << 2)
  250. #define GMIR_MOTG_INT (1 << 1)
  251. #define GMIR_MDEV_INT (1 << 0)
  252. };
  253. /*-------------------------------------------------------------------------*/
  254. #define QTD_NEXT(fotg210, dma) cpu_to_hc32(fotg210, (u32)dma)
  255. /*
  256. * EHCI Specification 0.95 Section 3.5
  257. * QTD: describe data transfer components (buffer, direction, ...)
  258. * See Fig 3-6 "Queue Element Transfer Descriptor Block Diagram".
  259. *
  260. * These are associated only with "QH" (Queue Head) structures,
  261. * used with control, bulk, and interrupt transfers.
  262. */
  263. struct fotg210_qtd {
  264. /* first part defined by EHCI spec */
  265. __hc32 hw_next; /* see EHCI 3.5.1 */
  266. __hc32 hw_alt_next; /* see EHCI 3.5.2 */
  267. __hc32 hw_token; /* see EHCI 3.5.3 */
  268. #define QTD_TOGGLE (1 << 31) /* data toggle */
  269. #define QTD_LENGTH(tok) (((tok)>>16) & 0x7fff)
  270. #define QTD_IOC (1 << 15) /* interrupt on complete */
  271. #define QTD_CERR(tok) (((tok)>>10) & 0x3)
  272. #define QTD_PID(tok) (((tok)>>8) & 0x3)
  273. #define QTD_STS_ACTIVE (1 << 7) /* HC may execute this */
  274. #define QTD_STS_HALT (1 << 6) /* halted on error */
  275. #define QTD_STS_DBE (1 << 5) /* data buffer error (in HC) */
  276. #define QTD_STS_BABBLE (1 << 4) /* device was babbling (qtd halted) */
  277. #define QTD_STS_XACT (1 << 3) /* device gave illegal response */
  278. #define QTD_STS_MMF (1 << 2) /* incomplete split transaction */
  279. #define QTD_STS_STS (1 << 1) /* split transaction state */
  280. #define QTD_STS_PING (1 << 0) /* issue PING? */
  281. #define ACTIVE_BIT(fotg210) cpu_to_hc32(fotg210, QTD_STS_ACTIVE)
  282. #define HALT_BIT(fotg210) cpu_to_hc32(fotg210, QTD_STS_HALT)
  283. #define STATUS_BIT(fotg210) cpu_to_hc32(fotg210, QTD_STS_STS)
  284. __hc32 hw_buf[5]; /* see EHCI 3.5.4 */
  285. __hc32 hw_buf_hi[5]; /* Appendix B */
  286. /* the rest is HCD-private */
  287. dma_addr_t qtd_dma; /* qtd address */
  288. struct list_head qtd_list; /* sw qtd list */
  289. struct urb *urb; /* qtd's urb */
  290. size_t length; /* length of buffer */
  291. } __aligned(32);
  292. /* mask NakCnt+T in qh->hw_alt_next */
  293. #define QTD_MASK(fotg210) cpu_to_hc32(fotg210, ~0x1f)
  294. #define IS_SHORT_READ(token) (QTD_LENGTH(token) != 0 && QTD_PID(token) == 1)
  295. /*-------------------------------------------------------------------------*/
  296. /* type tag from {qh,itd,fstn}->hw_next */
  297. #define Q_NEXT_TYPE(fotg210, dma) ((dma) & cpu_to_hc32(fotg210, 3 << 1))
  298. /*
  299. * Now the following defines are not converted using the
  300. * cpu_to_le32() macro anymore, since we have to support
  301. * "dynamic" switching between be and le support, so that the driver
  302. * can be used on one system with SoC EHCI controller using big-endian
  303. * descriptors as well as a normal little-endian PCI EHCI controller.
  304. */
  305. /* values for that type tag */
  306. #define Q_TYPE_ITD (0 << 1)
  307. #define Q_TYPE_QH (1 << 1)
  308. #define Q_TYPE_SITD (2 << 1)
  309. #define Q_TYPE_FSTN (3 << 1)
  310. /* next async queue entry, or pointer to interrupt/periodic QH */
  311. #define QH_NEXT(fotg210, dma) \
  312. (cpu_to_hc32(fotg210, (((u32)dma)&~0x01f)|Q_TYPE_QH))
  313. /* for periodic/async schedules and qtd lists, mark end of list */
  314. #define FOTG210_LIST_END(fotg210) \
  315. cpu_to_hc32(fotg210, 1) /* "null pointer" to hw */
  316. /*
  317. * Entries in periodic shadow table are pointers to one of four kinds
  318. * of data structure. That's dictated by the hardware; a type tag is
  319. * encoded in the low bits of the hardware's periodic schedule. Use
  320. * Q_NEXT_TYPE to get the tag.
  321. *
  322. * For entries in the async schedule, the type tag always says "qh".
  323. */
  324. union fotg210_shadow {
  325. struct fotg210_qh *qh; /* Q_TYPE_QH */
  326. struct fotg210_itd *itd; /* Q_TYPE_ITD */
  327. struct fotg210_fstn *fstn; /* Q_TYPE_FSTN */
  328. __hc32 *hw_next; /* (all types) */
  329. void *ptr;
  330. };
  331. /*-------------------------------------------------------------------------*/
  332. /*
  333. * EHCI Specification 0.95 Section 3.6
  334. * QH: describes control/bulk/interrupt endpoints
  335. * See Fig 3-7 "Queue Head Structure Layout".
  336. *
  337. * These appear in both the async and (for interrupt) periodic schedules.
  338. */
  339. /* first part defined by EHCI spec */
  340. struct fotg210_qh_hw {
  341. __hc32 hw_next; /* see EHCI 3.6.1 */
  342. __hc32 hw_info1; /* see EHCI 3.6.2 */
  343. #define QH_CONTROL_EP (1 << 27) /* FS/LS control endpoint */
  344. #define QH_HEAD (1 << 15) /* Head of async reclamation list */
  345. #define QH_TOGGLE_CTL (1 << 14) /* Data toggle control */
  346. #define QH_HIGH_SPEED (2 << 12) /* Endpoint speed */
  347. #define QH_LOW_SPEED (1 << 12)
  348. #define QH_FULL_SPEED (0 << 12)
  349. #define QH_INACTIVATE (1 << 7) /* Inactivate on next transaction */
  350. __hc32 hw_info2; /* see EHCI 3.6.2 */
  351. #define QH_SMASK 0x000000ff
  352. #define QH_CMASK 0x0000ff00
  353. #define QH_HUBADDR 0x007f0000
  354. #define QH_HUBPORT 0x3f800000
  355. #define QH_MULT 0xc0000000
  356. __hc32 hw_current; /* qtd list - see EHCI 3.6.4 */
  357. /* qtd overlay (hardware parts of a struct fotg210_qtd) */
  358. __hc32 hw_qtd_next;
  359. __hc32 hw_alt_next;
  360. __hc32 hw_token;
  361. __hc32 hw_buf[5];
  362. __hc32 hw_buf_hi[5];
  363. } __aligned(32);
  364. struct fotg210_qh {
  365. struct fotg210_qh_hw *hw; /* Must come first */
  366. /* the rest is HCD-private */
  367. dma_addr_t qh_dma; /* address of qh */
  368. union fotg210_shadow qh_next; /* ptr to qh; or periodic */
  369. struct list_head qtd_list; /* sw qtd list */
  370. struct list_head intr_node; /* list of intr QHs */
  371. struct fotg210_qtd *dummy;
  372. struct fotg210_qh *unlink_next; /* next on unlink list */
  373. unsigned unlink_cycle;
  374. u8 needs_rescan; /* Dequeue during giveback */
  375. u8 qh_state;
  376. #define QH_STATE_LINKED 1 /* HC sees this */
  377. #define QH_STATE_UNLINK 2 /* HC may still see this */
  378. #define QH_STATE_IDLE 3 /* HC doesn't see this */
  379. #define QH_STATE_UNLINK_WAIT 4 /* LINKED and on unlink q */
  380. #define QH_STATE_COMPLETING 5 /* don't touch token.HALT */
  381. u8 xacterrs; /* XactErr retry counter */
  382. #define QH_XACTERR_MAX 32 /* XactErr retry limit */
  383. /* periodic schedule info */
  384. u8 usecs; /* intr bandwidth */
  385. u8 gap_uf; /* uframes split/csplit gap */
  386. u8 c_usecs; /* ... split completion bw */
  387. u16 tt_usecs; /* tt downstream bandwidth */
  388. unsigned short period; /* polling interval */
  389. unsigned short start; /* where polling starts */
  390. #define NO_FRAME ((unsigned short)~0) /* pick new start */
  391. struct usb_device *dev; /* access to TT */
  392. unsigned is_out:1; /* bulk or intr OUT */
  393. unsigned clearing_tt:1; /* Clear-TT-Buf in progress */
  394. };
  395. /*-------------------------------------------------------------------------*/
  396. /* description of one iso transaction (up to 3 KB data if highspeed) */
  397. struct fotg210_iso_packet {
  398. /* These will be copied to iTD when scheduling */
  399. u64 bufp; /* itd->hw_bufp{,_hi}[pg] |= */
  400. __hc32 transaction; /* itd->hw_transaction[i] |= */
  401. u8 cross; /* buf crosses pages */
  402. /* for full speed OUT splits */
  403. u32 buf1;
  404. };
  405. /* temporary schedule data for packets from iso urbs (both speeds)
  406. * each packet is one logical usb transaction to the device (not TT),
  407. * beginning at stream->next_uframe
  408. */
  409. struct fotg210_iso_sched {
  410. struct list_head td_list;
  411. unsigned span;
  412. struct fotg210_iso_packet packet[0];
  413. };
  414. /*
  415. * fotg210_iso_stream - groups all (s)itds for this endpoint.
  416. * acts like a qh would, if EHCI had them for ISO.
  417. */
  418. struct fotg210_iso_stream {
  419. /* first field matches fotg210_hq, but is NULL */
  420. struct fotg210_qh_hw *hw;
  421. u8 bEndpointAddress;
  422. u8 highspeed;
  423. struct list_head td_list; /* queued itds */
  424. struct list_head free_list; /* list of unused itds */
  425. struct usb_device *udev;
  426. struct usb_host_endpoint *ep;
  427. /* output of (re)scheduling */
  428. int next_uframe;
  429. __hc32 splits;
  430. /* the rest is derived from the endpoint descriptor,
  431. * trusting urb->interval == f(epdesc->bInterval) and
  432. * including the extra info for hw_bufp[0..2]
  433. */
  434. u8 usecs, c_usecs;
  435. u16 interval;
  436. u16 tt_usecs;
  437. u16 maxp;
  438. u16 raw_mask;
  439. unsigned bandwidth;
  440. /* This is used to initialize iTD's hw_bufp fields */
  441. __hc32 buf0;
  442. __hc32 buf1;
  443. __hc32 buf2;
  444. /* this is used to initialize sITD's tt info */
  445. __hc32 address;
  446. };
  447. /*-------------------------------------------------------------------------*/
  448. /*
  449. * EHCI Specification 0.95 Section 3.3
  450. * Fig 3-4 "Isochronous Transaction Descriptor (iTD)"
  451. *
  452. * Schedule records for high speed iso xfers
  453. */
  454. struct fotg210_itd {
  455. /* first part defined by EHCI spec */
  456. __hc32 hw_next; /* see EHCI 3.3.1 */
  457. __hc32 hw_transaction[8]; /* see EHCI 3.3.2 */
  458. #define FOTG210_ISOC_ACTIVE (1<<31) /* activate transfer this slot */
  459. #define FOTG210_ISOC_BUF_ERR (1<<30) /* Data buffer error */
  460. #define FOTG210_ISOC_BABBLE (1<<29) /* babble detected */
  461. #define FOTG210_ISOC_XACTERR (1<<28) /* XactErr - transaction error */
  462. #define FOTG210_ITD_LENGTH(tok) (((tok)>>16) & 0x0fff)
  463. #define FOTG210_ITD_IOC (1 << 15) /* interrupt on complete */
  464. #define ITD_ACTIVE(fotg210) cpu_to_hc32(fotg210, FOTG210_ISOC_ACTIVE)
  465. __hc32 hw_bufp[7]; /* see EHCI 3.3.3 */
  466. __hc32 hw_bufp_hi[7]; /* Appendix B */
  467. /* the rest is HCD-private */
  468. dma_addr_t itd_dma; /* for this itd */
  469. union fotg210_shadow itd_next; /* ptr to periodic q entry */
  470. struct urb *urb;
  471. struct fotg210_iso_stream *stream; /* endpoint's queue */
  472. struct list_head itd_list; /* list of stream's itds */
  473. /* any/all hw_transactions here may be used by that urb */
  474. unsigned frame; /* where scheduled */
  475. unsigned pg;
  476. unsigned index[8]; /* in urb->iso_frame_desc */
  477. } __aligned(32);
  478. /*-------------------------------------------------------------------------*/
  479. /*
  480. * EHCI Specification 0.96 Section 3.7
  481. * Periodic Frame Span Traversal Node (FSTN)
  482. *
  483. * Manages split interrupt transactions (using TT) that span frame boundaries
  484. * into uframes 0/1; see 4.12.2.2. In those uframes, a "save place" FSTN
  485. * makes the HC jump (back) to a QH to scan for fs/ls QH completions until
  486. * it hits a "restore" FSTN; then it returns to finish other uframe 0/1 work.
  487. */
  488. struct fotg210_fstn {
  489. __hc32 hw_next; /* any periodic q entry */
  490. __hc32 hw_prev; /* qh or FOTG210_LIST_END */
  491. /* the rest is HCD-private */
  492. dma_addr_t fstn_dma;
  493. union fotg210_shadow fstn_next; /* ptr to periodic q entry */
  494. } __aligned(32);
  495. /*-------------------------------------------------------------------------*/
  496. /* Prepare the PORTSC wakeup flags during controller suspend/resume */
  497. #define fotg210_prepare_ports_for_controller_suspend(fotg210, do_wakeup) \
  498. fotg210_adjust_port_wakeup_flags(fotg210, true, do_wakeup);
  499. #define fotg210_prepare_ports_for_controller_resume(fotg210) \
  500. fotg210_adjust_port_wakeup_flags(fotg210, false, false);
  501. /*-------------------------------------------------------------------------*/
  502. /*
  503. * Some EHCI controllers have a Transaction Translator built into the
  504. * root hub. This is a non-standard feature. Each controller will need
  505. * to add code to the following inline functions, and call them as
  506. * needed (mostly in root hub code).
  507. */
  508. static inline unsigned int
  509. fotg210_get_speed(struct fotg210_hcd *fotg210, unsigned int portsc)
  510. {
  511. return (readl(&fotg210->regs->otgcsr)
  512. & OTGCSR_HOST_SPD_TYP) >> 22;
  513. }
  514. /* Returns the speed of a device attached to a port on the root hub. */
  515. static inline unsigned int
  516. fotg210_port_speed(struct fotg210_hcd *fotg210, unsigned int portsc)
  517. {
  518. switch (fotg210_get_speed(fotg210, portsc)) {
  519. case 0:
  520. return 0;
  521. case 1:
  522. return USB_PORT_STAT_LOW_SPEED;
  523. case 2:
  524. default:
  525. return USB_PORT_STAT_HIGH_SPEED;
  526. }
  527. }
  528. /*-------------------------------------------------------------------------*/
  529. #define fotg210_has_fsl_portno_bug(e) (0)
  530. /*
  531. * While most USB host controllers implement their registers in
  532. * little-endian format, a minority (celleb companion chip) implement
  533. * them in big endian format.
  534. *
  535. * This attempts to support either format at compile time without a
  536. * runtime penalty, or both formats with the additional overhead
  537. * of checking a flag bit.
  538. *
  539. */
  540. #define fotg210_big_endian_mmio(e) 0
  541. #define fotg210_big_endian_capbase(e) 0
  542. static inline unsigned int fotg210_readl(const struct fotg210_hcd *fotg210,
  543. __u32 __iomem *regs)
  544. {
  545. return readl(regs);
  546. }
  547. static inline void fotg210_writel(const struct fotg210_hcd *fotg210,
  548. const unsigned int val, __u32 __iomem *regs)
  549. {
  550. writel(val, regs);
  551. }
  552. /* cpu to fotg210 */
  553. static inline __hc32 cpu_to_hc32(const struct fotg210_hcd *fotg210, const u32 x)
  554. {
  555. return cpu_to_le32(x);
  556. }
  557. /* fotg210 to cpu */
  558. static inline u32 hc32_to_cpu(const struct fotg210_hcd *fotg210, const __hc32 x)
  559. {
  560. return le32_to_cpu(x);
  561. }
  562. static inline u32 hc32_to_cpup(const struct fotg210_hcd *fotg210,
  563. const __hc32 *x)
  564. {
  565. return le32_to_cpup(x);
  566. }
  567. /*-------------------------------------------------------------------------*/
  568. static inline unsigned fotg210_read_frame_index(struct fotg210_hcd *fotg210)
  569. {
  570. return fotg210_readl(fotg210, &fotg210->regs->frame_index);
  571. }
  572. #define fotg210_itdlen(urb, desc, t) ({ \
  573. usb_pipein((urb)->pipe) ? \
  574. (desc)->length - FOTG210_ITD_LENGTH(t) : \
  575. FOTG210_ITD_LENGTH(t); \
  576. })
  577. /*-------------------------------------------------------------------------*/
  578. #endif /* __LINUX_FOTG210_H */