goku_udc.c 49 KB

1234567891011121314151617181920212223242526272829303132333435363738394041424344454647484950515253545556575859606162636465666768697071727374757677787980818283848586878889909192939495969798991001011021031041051061071081091101111121131141151161171181191201211221231241251261271281291301311321331341351361371381391401411421431441451461471481491501511521531541551561571581591601611621631641651661671681691701711721731741751761771781791801811821831841851861871881891901911921931941951961971981992002012022032042052062072082092102112122132142152162172182192202212222232242252262272282292302312322332342352362372382392402412422432442452462472482492502512522532542552562572582592602612622632642652662672682692702712722732742752762772782792802812822832842852862872882892902912922932942952962972982993003013023033043053063073083093103113123133143153163173183193203213223233243253263273283293303313323333343353363373383393403413423433443453463473483493503513523533543553563573583593603613623633643653663673683693703713723733743753763773783793803813823833843853863873883893903913923933943953963973983994004014024034044054064074084094104114124134144154164174184194204214224234244254264274284294304314324334344354364374384394404414424434444454464474484494504514524534544554564574584594604614624634644654664674684694704714724734744754764774784794804814824834844854864874884894904914924934944954964974984995005015025035045055065075085095105115125135145155165175185195205215225235245255265275285295305315325335345355365375385395405415425435445455465475485495505515525535545555565575585595605615625635645655665675685695705715725735745755765775785795805815825835845855865875885895905915925935945955965975985996006016026036046056066076086096106116126136146156166176186196206216226236246256266276286296306316326336346356366376386396406416426436446456466476486496506516526536546556566576586596606616626636646656666676686696706716726736746756766776786796806816826836846856866876886896906916926936946956966976986997007017027037047057067077087097107117127137147157167177187197207217227237247257267277287297307317327337347357367377387397407417427437447457467477487497507517527537547557567577587597607617627637647657667677687697707717727737747757767777787797807817827837847857867877887897907917927937947957967977987998008018028038048058068078088098108118128138148158168178188198208218228238248258268278288298308318328338348358368378388398408418428438448458468478488498508518528538548558568578588598608618628638648658668678688698708718728738748758768778788798808818828838848858868878888898908918928938948958968978988999009019029039049059069079089099109119129139149159169179189199209219229239249259269279289299309319329339349359369379389399409419429439449459469479489499509519529539549559569579589599609619629639649659669679689699709719729739749759769779789799809819829839849859869879889899909919929939949959969979989991000100110021003100410051006100710081009101010111012101310141015101610171018101910201021102210231024102510261027102810291030103110321033103410351036103710381039104010411042104310441045104610471048104910501051105210531054105510561057105810591060106110621063106410651066106710681069107010711072107310741075107610771078107910801081108210831084108510861087108810891090109110921093109410951096109710981099110011011102110311041105110611071108110911101111111211131114111511161117111811191120112111221123112411251126112711281129113011311132113311341135113611371138113911401141114211431144114511461147114811491150115111521153115411551156115711581159116011611162116311641165116611671168116911701171117211731174117511761177117811791180118111821183118411851186118711881189119011911192119311941195119611971198119912001201120212031204120512061207120812091210121112121213121412151216121712181219122012211222122312241225122612271228122912301231123212331234123512361237123812391240124112421243124412451246124712481249125012511252125312541255125612571258125912601261126212631264126512661267126812691270127112721273127412751276127712781279128012811282128312841285128612871288128912901291129212931294129512961297129812991300130113021303130413051306130713081309131013111312131313141315131613171318131913201321132213231324132513261327132813291330133113321333133413351336133713381339134013411342134313441345134613471348134913501351135213531354135513561357135813591360136113621363136413651366136713681369137013711372137313741375137613771378137913801381138213831384138513861387138813891390139113921393139413951396139713981399140014011402140314041405140614071408140914101411141214131414141514161417141814191420142114221423142414251426142714281429143014311432143314341435143614371438143914401441144214431444144514461447144814491450145114521453145414551456145714581459146014611462146314641465146614671468146914701471147214731474147514761477147814791480148114821483148414851486148714881489149014911492149314941495149614971498149915001501150215031504150515061507150815091510151115121513151415151516151715181519152015211522152315241525152615271528152915301531153215331534153515361537153815391540154115421543154415451546154715481549155015511552155315541555155615571558155915601561156215631564156515661567156815691570157115721573157415751576157715781579158015811582158315841585158615871588158915901591159215931594159515961597159815991600160116021603160416051606160716081609161016111612161316141615161616171618161916201621162216231624162516261627162816291630163116321633163416351636163716381639164016411642164316441645164616471648164916501651165216531654165516561657165816591660166116621663166416651666166716681669167016711672167316741675167616771678167916801681168216831684168516861687168816891690169116921693169416951696169716981699170017011702170317041705170617071708170917101711171217131714171517161717171817191720172117221723172417251726172717281729173017311732173317341735173617371738173917401741174217431744174517461747174817491750175117521753175417551756175717581759176017611762176317641765176617671768176917701771177217731774177517761777177817791780178117821783178417851786178717881789179017911792179317941795179617971798179918001801180218031804180518061807180818091810181118121813181418151816181718181819182018211822182318241825182618271828182918301831183218331834183518361837183818391840184118421843184418451846184718481849185018511852185318541855185618571858185918601861186218631864186518661867186818691870187118721873187418751876187718781879188018811882188318841885188618871888188918901891189218931894189518961897189818991900190119021903190419051906190719081909191019111912191319141915191619171918191919201921192219231924192519261927192819291930193119321933193419351936193719381939194019411942194319441945194619471948194919501951195219531954195519561957195819591960196119621963196419651966196719681969197019711972197319741975197619771978197919801981198219831984198519861987198819891990
  1. /*
  2. * Toshiba TC86C001 ("Goku-S") USB Device Controller driver
  3. *
  4. * Copyright (C) 2000-2002 Lineo
  5. * by Stuart Lynne, Tom Rushworth, and Bruce Balden
  6. * Copyright (C) 2002 Toshiba Corporation
  7. * Copyright (C) 2003 MontaVista Software (source@mvista.com)
  8. *
  9. * This file is licensed under the terms of the GNU General Public
  10. * License version 2. This program is licensed "as is" without any
  11. * warranty of any kind, whether express or implied.
  12. */
  13. /*
  14. * This device has ep0 and three semi-configurable bulk/interrupt endpoints.
  15. *
  16. * - Endpoint numbering is fixed: ep{1,2,3}-bulk
  17. * - Gadget drivers can choose ep maxpacket (8/16/32/64)
  18. * - Gadget drivers can choose direction (IN, OUT)
  19. * - DMA works with ep1 (OUT transfers) and ep2 (IN transfers).
  20. */
  21. #undef DEBUG
  22. // #define VERBOSE /* extra debug messages (success too) */
  23. // #define USB_TRACE /* packet-level success messages */
  24. #include <linux/config.h>
  25. #include <linux/kernel.h>
  26. #include <linux/module.h>
  27. #include <linux/pci.h>
  28. #include <linux/delay.h>
  29. #include <linux/ioport.h>
  30. #include <linux/sched.h>
  31. #include <linux/slab.h>
  32. #include <linux/smp_lock.h>
  33. #include <linux/errno.h>
  34. #include <linux/init.h>
  35. #include <linux/timer.h>
  36. #include <linux/list.h>
  37. #include <linux/interrupt.h>
  38. #include <linux/proc_fs.h>
  39. #include <linux/device.h>
  40. #include <linux/usb_ch9.h>
  41. #include <linux/usb_gadget.h>
  42. #include <asm/byteorder.h>
  43. #include <asm/io.h>
  44. #include <asm/irq.h>
  45. #include <asm/system.h>
  46. #include <asm/unaligned.h>
  47. #include "goku_udc.h"
  48. #define DRIVER_DESC "TC86C001 USB Device Controller"
  49. #define DRIVER_VERSION "30-Oct 2003"
  50. #define DMA_ADDR_INVALID (~(dma_addr_t)0)
  51. static const char driver_name [] = "goku_udc";
  52. static const char driver_desc [] = DRIVER_DESC;
  53. MODULE_AUTHOR("source@mvista.com");
  54. MODULE_DESCRIPTION(DRIVER_DESC);
  55. MODULE_LICENSE("GPL");
  56. /*
  57. * IN dma behaves ok under testing, though the IN-dma abort paths don't
  58. * seem to behave quite as expected. Used by default.
  59. *
  60. * OUT dma documents design problems handling the common "short packet"
  61. * transfer termination policy; it couldn't be enabled by default, even
  62. * if the OUT-dma abort problems had a resolution.
  63. */
  64. static unsigned use_dma = 1;
  65. #if 0
  66. //#include <linux/moduleparam.h>
  67. /* "modprobe goku_udc use_dma=1" etc
  68. * 0 to disable dma
  69. * 1 to use IN dma only (normal operation)
  70. * 2 to use IN and OUT dma
  71. */
  72. module_param(use_dma, uint, S_IRUGO);
  73. #endif
  74. /*-------------------------------------------------------------------------*/
  75. static void nuke(struct goku_ep *, int status);
  76. static inline void
  77. command(struct goku_udc_regs __iomem *regs, int command, unsigned epnum)
  78. {
  79. writel(COMMAND_EP(epnum) | command, &regs->Command);
  80. udelay(300);
  81. }
  82. static int
  83. goku_ep_enable(struct usb_ep *_ep, const struct usb_endpoint_descriptor *desc)
  84. {
  85. struct goku_udc *dev;
  86. struct goku_ep *ep;
  87. u32 mode;
  88. u16 max;
  89. unsigned long flags;
  90. ep = container_of(_ep, struct goku_ep, ep);
  91. if (!_ep || !desc || ep->desc
  92. || desc->bDescriptorType != USB_DT_ENDPOINT)
  93. return -EINVAL;
  94. dev = ep->dev;
  95. if (ep == &dev->ep[0])
  96. return -EINVAL;
  97. if (!dev->driver || dev->gadget.speed == USB_SPEED_UNKNOWN)
  98. return -ESHUTDOWN;
  99. if (ep->num != (desc->bEndpointAddress & 0x0f))
  100. return -EINVAL;
  101. switch (desc->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK) {
  102. case USB_ENDPOINT_XFER_BULK:
  103. case USB_ENDPOINT_XFER_INT:
  104. break;
  105. default:
  106. return -EINVAL;
  107. }
  108. if ((readl(ep->reg_status) & EPxSTATUS_EP_MASK)
  109. != EPxSTATUS_EP_INVALID)
  110. return -EBUSY;
  111. /* enabling the no-toggle interrupt mode would need an api hook */
  112. mode = 0;
  113. max = le16_to_cpu(get_unaligned(&desc->wMaxPacketSize));
  114. switch (max) {
  115. case 64: mode++;
  116. case 32: mode++;
  117. case 16: mode++;
  118. case 8: mode <<= 3;
  119. break;
  120. default:
  121. return -EINVAL;
  122. }
  123. mode |= 2 << 1; /* bulk, or intr-with-toggle */
  124. /* ep1/ep2 dma direction is chosen early; it works in the other
  125. * direction, with pio. be cautious with out-dma.
  126. */
  127. ep->is_in = (USB_DIR_IN & desc->bEndpointAddress) != 0;
  128. if (ep->is_in) {
  129. mode |= 1;
  130. ep->dma = (use_dma != 0) && (ep->num == UDC_MSTRD_ENDPOINT);
  131. } else {
  132. ep->dma = (use_dma == 2) && (ep->num == UDC_MSTWR_ENDPOINT);
  133. if (ep->dma)
  134. DBG(dev, "%s out-dma hides short packets\n",
  135. ep->ep.name);
  136. }
  137. spin_lock_irqsave(&ep->dev->lock, flags);
  138. /* ep1 and ep2 can do double buffering and/or dma */
  139. if (ep->num < 3) {
  140. struct goku_udc_regs __iomem *regs = ep->dev->regs;
  141. u32 tmp;
  142. /* double buffer except (for now) with pio in */
  143. tmp = ((ep->dma || !ep->is_in)
  144. ? 0x10 /* double buffered */
  145. : 0x11 /* single buffer */
  146. ) << ep->num;
  147. tmp |= readl(&regs->EPxSingle);
  148. writel(tmp, &regs->EPxSingle);
  149. tmp = (ep->dma ? 0x10/*dma*/ : 0x11/*pio*/) << ep->num;
  150. tmp |= readl(&regs->EPxBCS);
  151. writel(tmp, &regs->EPxBCS);
  152. }
  153. writel(mode, ep->reg_mode);
  154. command(ep->dev->regs, COMMAND_RESET, ep->num);
  155. ep->ep.maxpacket = max;
  156. ep->stopped = 0;
  157. ep->desc = desc;
  158. spin_unlock_irqrestore(&ep->dev->lock, flags);
  159. DBG(dev, "enable %s %s %s maxpacket %u\n", ep->ep.name,
  160. ep->is_in ? "IN" : "OUT",
  161. ep->dma ? "dma" : "pio",
  162. max);
  163. return 0;
  164. }
  165. static void ep_reset(struct goku_udc_regs __iomem *regs, struct goku_ep *ep)
  166. {
  167. struct goku_udc *dev = ep->dev;
  168. if (regs) {
  169. command(regs, COMMAND_INVALID, ep->num);
  170. if (ep->num) {
  171. if (ep->num == UDC_MSTWR_ENDPOINT)
  172. dev->int_enable &= ~(INT_MSTWREND
  173. |INT_MSTWRTMOUT);
  174. else if (ep->num == UDC_MSTRD_ENDPOINT)
  175. dev->int_enable &= ~INT_MSTRDEND;
  176. dev->int_enable &= ~INT_EPxDATASET (ep->num);
  177. } else
  178. dev->int_enable &= ~INT_EP0;
  179. writel(dev->int_enable, &regs->int_enable);
  180. readl(&regs->int_enable);
  181. if (ep->num < 3) {
  182. struct goku_udc_regs __iomem *r = ep->dev->regs;
  183. u32 tmp;
  184. tmp = readl(&r->EPxSingle);
  185. tmp &= ~(0x11 << ep->num);
  186. writel(tmp, &r->EPxSingle);
  187. tmp = readl(&r->EPxBCS);
  188. tmp &= ~(0x11 << ep->num);
  189. writel(tmp, &r->EPxBCS);
  190. }
  191. /* reset dma in case we're still using it */
  192. if (ep->dma) {
  193. u32 master;
  194. master = readl(&regs->dma_master) & MST_RW_BITS;
  195. if (ep->num == UDC_MSTWR_ENDPOINT) {
  196. master &= ~MST_W_BITS;
  197. master |= MST_WR_RESET;
  198. } else {
  199. master &= ~MST_R_BITS;
  200. master |= MST_RD_RESET;
  201. }
  202. writel(master, &regs->dma_master);
  203. }
  204. }
  205. ep->ep.maxpacket = MAX_FIFO_SIZE;
  206. ep->desc = NULL;
  207. ep->stopped = 1;
  208. ep->irqs = 0;
  209. ep->dma = 0;
  210. }
  211. static int goku_ep_disable(struct usb_ep *_ep)
  212. {
  213. struct goku_ep *ep;
  214. struct goku_udc *dev;
  215. unsigned long flags;
  216. ep = container_of(_ep, struct goku_ep, ep);
  217. if (!_ep || !ep->desc)
  218. return -ENODEV;
  219. dev = ep->dev;
  220. if (dev->ep0state == EP0_SUSPEND)
  221. return -EBUSY;
  222. VDBG(dev, "disable %s\n", _ep->name);
  223. spin_lock_irqsave(&dev->lock, flags);
  224. nuke(ep, -ESHUTDOWN);
  225. ep_reset(dev->regs, ep);
  226. spin_unlock_irqrestore(&dev->lock, flags);
  227. return 0;
  228. }
  229. /*-------------------------------------------------------------------------*/
  230. static struct usb_request *
  231. goku_alloc_request(struct usb_ep *_ep, unsigned gfp_flags)
  232. {
  233. struct goku_request *req;
  234. if (!_ep)
  235. return NULL;
  236. req = kmalloc(sizeof *req, gfp_flags);
  237. if (!req)
  238. return NULL;
  239. memset(req, 0, sizeof *req);
  240. req->req.dma = DMA_ADDR_INVALID;
  241. INIT_LIST_HEAD(&req->queue);
  242. return &req->req;
  243. }
  244. static void
  245. goku_free_request(struct usb_ep *_ep, struct usb_request *_req)
  246. {
  247. struct goku_request *req;
  248. if (!_ep || !_req)
  249. return;
  250. req = container_of(_req, struct goku_request, req);
  251. WARN_ON(!list_empty(&req->queue));
  252. kfree(req);
  253. }
  254. /*-------------------------------------------------------------------------*/
  255. #undef USE_KMALLOC
  256. /* many common platforms have dma-coherent caches, which means that it's
  257. * safe to use kmalloc() memory for all i/o buffers without using any
  258. * cache flushing calls. (unless you're trying to share cache lines
  259. * between dma and non-dma activities, which is a slow idea in any case.)
  260. *
  261. * other platforms need more care, with 2.6 having a moderately general
  262. * solution except for the common "buffer is smaller than a page" case.
  263. */
  264. #if defined(CONFIG_X86)
  265. #define USE_KMALLOC
  266. #elif defined(CONFIG_MIPS) && !defined(CONFIG_DMA_NONCOHERENT)
  267. #define USE_KMALLOC
  268. #elif defined(CONFIG_PPC) && !defined(CONFIG_NOT_COHERENT_CACHE)
  269. #define USE_KMALLOC
  270. #endif
  271. /* allocating buffers this way eliminates dma mapping overhead, which
  272. * on some platforms will mean eliminating a per-io buffer copy. with
  273. * some kinds of system caches, further tweaks may still be needed.
  274. */
  275. static void *
  276. goku_alloc_buffer(struct usb_ep *_ep, unsigned bytes,
  277. dma_addr_t *dma, unsigned gfp_flags)
  278. {
  279. void *retval;
  280. struct goku_ep *ep;
  281. ep = container_of(_ep, struct goku_ep, ep);
  282. if (!_ep)
  283. return NULL;
  284. *dma = DMA_ADDR_INVALID;
  285. #if defined(USE_KMALLOC)
  286. retval = kmalloc(bytes, gfp_flags);
  287. if (retval)
  288. *dma = virt_to_phys(retval);
  289. #else
  290. if (ep->dma) {
  291. /* the main problem with this call is that it wastes memory
  292. * on typical 1/N page allocations: it allocates 1-N pages.
  293. */
  294. #warning Using dma_alloc_coherent even with buffers smaller than a page.
  295. retval = dma_alloc_coherent(&ep->dev->pdev->dev,
  296. bytes, dma, gfp_flags);
  297. } else
  298. retval = kmalloc(bytes, gfp_flags);
  299. #endif
  300. return retval;
  301. }
  302. static void
  303. goku_free_buffer(struct usb_ep *_ep, void *buf, dma_addr_t dma, unsigned bytes)
  304. {
  305. /* free memory into the right allocator */
  306. #ifndef USE_KMALLOC
  307. if (dma != DMA_ADDR_INVALID) {
  308. struct goku_ep *ep;
  309. ep = container_of(_ep, struct goku_ep, ep);
  310. if (!_ep)
  311. return;
  312. dma_free_coherent(&ep->dev->pdev->dev, bytes, buf, dma);
  313. } else
  314. #endif
  315. kfree (buf);
  316. }
  317. /*-------------------------------------------------------------------------*/
  318. static void
  319. done(struct goku_ep *ep, struct goku_request *req, int status)
  320. {
  321. struct goku_udc *dev;
  322. unsigned stopped = ep->stopped;
  323. list_del_init(&req->queue);
  324. if (likely(req->req.status == -EINPROGRESS))
  325. req->req.status = status;
  326. else
  327. status = req->req.status;
  328. dev = ep->dev;
  329. if (req->mapped) {
  330. pci_unmap_single(dev->pdev, req->req.dma, req->req.length,
  331. ep->is_in ? PCI_DMA_TODEVICE : PCI_DMA_FROMDEVICE);
  332. req->req.dma = DMA_ADDR_INVALID;
  333. req->mapped = 0;
  334. }
  335. #ifndef USB_TRACE
  336. if (status && status != -ESHUTDOWN)
  337. #endif
  338. VDBG(dev, "complete %s req %p stat %d len %u/%u\n",
  339. ep->ep.name, &req->req, status,
  340. req->req.actual, req->req.length);
  341. /* don't modify queue heads during completion callback */
  342. ep->stopped = 1;
  343. spin_unlock(&dev->lock);
  344. req->req.complete(&ep->ep, &req->req);
  345. spin_lock(&dev->lock);
  346. ep->stopped = stopped;
  347. }
  348. /*-------------------------------------------------------------------------*/
  349. static inline int
  350. write_packet(u32 __iomem *fifo, u8 *buf, struct goku_request *req, unsigned max)
  351. {
  352. unsigned length, count;
  353. length = min(req->req.length - req->req.actual, max);
  354. req->req.actual += length;
  355. count = length;
  356. while (likely(count--))
  357. writel(*buf++, fifo);
  358. return length;
  359. }
  360. // return: 0 = still running, 1 = completed, negative = errno
  361. static int write_fifo(struct goku_ep *ep, struct goku_request *req)
  362. {
  363. struct goku_udc *dev = ep->dev;
  364. u32 tmp;
  365. u8 *buf;
  366. unsigned count;
  367. int is_last;
  368. tmp = readl(&dev->regs->DataSet);
  369. buf = req->req.buf + req->req.actual;
  370. prefetch(buf);
  371. dev = ep->dev;
  372. if (unlikely(ep->num == 0 && dev->ep0state != EP0_IN))
  373. return -EL2HLT;
  374. /* NOTE: just single-buffered PIO-IN for now. */
  375. if (unlikely((tmp & DATASET_A(ep->num)) != 0))
  376. return 0;
  377. /* clear our "packet available" irq */
  378. if (ep->num != 0)
  379. writel(~INT_EPxDATASET(ep->num), &dev->regs->int_status);
  380. count = write_packet(ep->reg_fifo, buf, req, ep->ep.maxpacket);
  381. /* last packet often short (sometimes a zlp, especially on ep0) */
  382. if (unlikely(count != ep->ep.maxpacket)) {
  383. writel(~(1<<ep->num), &dev->regs->EOP);
  384. if (ep->num == 0) {
  385. dev->ep[0].stopped = 1;
  386. dev->ep0state = EP0_STATUS;
  387. }
  388. is_last = 1;
  389. } else {
  390. if (likely(req->req.length != req->req.actual)
  391. || req->req.zero)
  392. is_last = 0;
  393. else
  394. is_last = 1;
  395. }
  396. #if 0 /* printk seemed to trash is_last...*/
  397. //#ifdef USB_TRACE
  398. VDBG(dev, "wrote %s %u bytes%s IN %u left %p\n",
  399. ep->ep.name, count, is_last ? "/last" : "",
  400. req->req.length - req->req.actual, req);
  401. #endif
  402. /* requests complete when all IN data is in the FIFO,
  403. * or sometimes later, if a zlp was needed.
  404. */
  405. if (is_last) {
  406. done(ep, req, 0);
  407. return 1;
  408. }
  409. return 0;
  410. }
  411. static int read_fifo(struct goku_ep *ep, struct goku_request *req)
  412. {
  413. struct goku_udc_regs __iomem *regs;
  414. u32 size, set;
  415. u8 *buf;
  416. unsigned bufferspace, is_short, dbuff;
  417. regs = ep->dev->regs;
  418. top:
  419. buf = req->req.buf + req->req.actual;
  420. prefetchw(buf);
  421. if (unlikely(ep->num == 0 && ep->dev->ep0state != EP0_OUT))
  422. return -EL2HLT;
  423. dbuff = (ep->num == 1 || ep->num == 2);
  424. do {
  425. /* ack dataset irq matching the status we'll handle */
  426. if (ep->num != 0)
  427. writel(~INT_EPxDATASET(ep->num), &regs->int_status);
  428. set = readl(&regs->DataSet) & DATASET_AB(ep->num);
  429. size = readl(&regs->EPxSizeLA[ep->num]);
  430. bufferspace = req->req.length - req->req.actual;
  431. /* usually do nothing without an OUT packet */
  432. if (likely(ep->num != 0 || bufferspace != 0)) {
  433. if (unlikely(set == 0))
  434. break;
  435. /* use ep1/ep2 double-buffering for OUT */
  436. if (!(size & PACKET_ACTIVE))
  437. size = readl(&regs->EPxSizeLB[ep->num]);
  438. if (!(size & PACKET_ACTIVE)) // "can't happen"
  439. break;
  440. size &= DATASIZE; /* EPxSizeH == 0 */
  441. /* ep0out no-out-data case for set_config, etc */
  442. } else
  443. size = 0;
  444. /* read all bytes from this packet */
  445. req->req.actual += size;
  446. is_short = (size < ep->ep.maxpacket);
  447. #ifdef USB_TRACE
  448. VDBG(ep->dev, "read %s %u bytes%s OUT req %p %u/%u\n",
  449. ep->ep.name, size, is_short ? "/S" : "",
  450. req, req->req.actual, req->req.length);
  451. #endif
  452. while (likely(size-- != 0)) {
  453. u8 byte = (u8) readl(ep->reg_fifo);
  454. if (unlikely(bufferspace == 0)) {
  455. /* this happens when the driver's buffer
  456. * is smaller than what the host sent.
  457. * discard the extra data in this packet.
  458. */
  459. if (req->req.status != -EOVERFLOW)
  460. DBG(ep->dev, "%s overflow %u\n",
  461. ep->ep.name, size);
  462. req->req.status = -EOVERFLOW;
  463. } else {
  464. *buf++ = byte;
  465. bufferspace--;
  466. }
  467. }
  468. /* completion */
  469. if (unlikely(is_short || req->req.actual == req->req.length)) {
  470. if (unlikely(ep->num == 0)) {
  471. /* non-control endpoints now usable? */
  472. if (ep->dev->req_config)
  473. writel(ep->dev->configured
  474. ? USBSTATE_CONFIGURED
  475. : 0,
  476. &regs->UsbState);
  477. /* ep0out status stage */
  478. writel(~(1<<0), &regs->EOP);
  479. ep->stopped = 1;
  480. ep->dev->ep0state = EP0_STATUS;
  481. }
  482. done(ep, req, 0);
  483. /* empty the second buffer asap */
  484. if (dbuff && !list_empty(&ep->queue)) {
  485. req = list_entry(ep->queue.next,
  486. struct goku_request, queue);
  487. goto top;
  488. }
  489. return 1;
  490. }
  491. } while (dbuff);
  492. return 0;
  493. }
  494. static inline void
  495. pio_irq_enable(struct goku_udc *dev,
  496. struct goku_udc_regs __iomem *regs, int epnum)
  497. {
  498. dev->int_enable |= INT_EPxDATASET (epnum);
  499. writel(dev->int_enable, &regs->int_enable);
  500. /* write may still be posted */
  501. }
  502. static inline void
  503. pio_irq_disable(struct goku_udc *dev,
  504. struct goku_udc_regs __iomem *regs, int epnum)
  505. {
  506. dev->int_enable &= ~INT_EPxDATASET (epnum);
  507. writel(dev->int_enable, &regs->int_enable);
  508. /* write may still be posted */
  509. }
  510. static inline void
  511. pio_advance(struct goku_ep *ep)
  512. {
  513. struct goku_request *req;
  514. if (unlikely(list_empty (&ep->queue)))
  515. return;
  516. req = list_entry(ep->queue.next, struct goku_request, queue);
  517. (ep->is_in ? write_fifo : read_fifo)(ep, req);
  518. }
  519. /*-------------------------------------------------------------------------*/
  520. // return: 0 = q running, 1 = q stopped, negative = errno
  521. static int start_dma(struct goku_ep *ep, struct goku_request *req)
  522. {
  523. struct goku_udc_regs __iomem *regs = ep->dev->regs;
  524. u32 master;
  525. u32 start = req->req.dma;
  526. u32 end = start + req->req.length - 1;
  527. master = readl(&regs->dma_master) & MST_RW_BITS;
  528. /* re-init the bits affecting IN dma; careful with zlps */
  529. if (likely(ep->is_in)) {
  530. if (unlikely(master & MST_RD_ENA)) {
  531. DBG (ep->dev, "start, IN active dma %03x!!\n",
  532. master);
  533. // return -EL2HLT;
  534. }
  535. writel(end, &regs->in_dma_end);
  536. writel(start, &regs->in_dma_start);
  537. master &= ~MST_R_BITS;
  538. if (unlikely(req->req.length == 0))
  539. master = MST_RD_ENA | MST_RD_EOPB;
  540. else if ((req->req.length % ep->ep.maxpacket) != 0
  541. || req->req.zero)
  542. master = MST_RD_ENA | MST_EOPB_ENA;
  543. else
  544. master = MST_RD_ENA | MST_EOPB_DIS;
  545. ep->dev->int_enable |= INT_MSTRDEND;
  546. /* Goku DMA-OUT merges short packets, which plays poorly with
  547. * protocols where short packets mark the transfer boundaries.
  548. * The chip supports a nonstandard policy with INT_MSTWRTMOUT,
  549. * ending transfers after 3 SOFs; we don't turn it on.
  550. */
  551. } else {
  552. if (unlikely(master & MST_WR_ENA)) {
  553. DBG (ep->dev, "start, OUT active dma %03x!!\n",
  554. master);
  555. // return -EL2HLT;
  556. }
  557. writel(end, &regs->out_dma_end);
  558. writel(start, &regs->out_dma_start);
  559. master &= ~MST_W_BITS;
  560. master |= MST_WR_ENA | MST_TIMEOUT_DIS;
  561. ep->dev->int_enable |= INT_MSTWREND|INT_MSTWRTMOUT;
  562. }
  563. writel(master, &regs->dma_master);
  564. writel(ep->dev->int_enable, &regs->int_enable);
  565. return 0;
  566. }
  567. static void dma_advance(struct goku_udc *dev, struct goku_ep *ep)
  568. {
  569. struct goku_request *req;
  570. struct goku_udc_regs __iomem *regs = ep->dev->regs;
  571. u32 master;
  572. master = readl(&regs->dma_master);
  573. if (unlikely(list_empty(&ep->queue))) {
  574. stop:
  575. if (ep->is_in)
  576. dev->int_enable &= ~INT_MSTRDEND;
  577. else
  578. dev->int_enable &= ~(INT_MSTWREND|INT_MSTWRTMOUT);
  579. writel(dev->int_enable, &regs->int_enable);
  580. return;
  581. }
  582. req = list_entry(ep->queue.next, struct goku_request, queue);
  583. /* normal hw dma completion (not abort) */
  584. if (likely(ep->is_in)) {
  585. if (unlikely(master & MST_RD_ENA))
  586. return;
  587. req->req.actual = readl(&regs->in_dma_current);
  588. } else {
  589. if (unlikely(master & MST_WR_ENA))
  590. return;
  591. /* hardware merges short packets, and also hides packet
  592. * overruns. a partial packet MAY be in the fifo here.
  593. */
  594. req->req.actual = readl(&regs->out_dma_current);
  595. }
  596. req->req.actual -= req->req.dma;
  597. req->req.actual++;
  598. #ifdef USB_TRACE
  599. VDBG(dev, "done %s %s dma, %u/%u bytes, req %p\n",
  600. ep->ep.name, ep->is_in ? "IN" : "OUT",
  601. req->req.actual, req->req.length, req);
  602. #endif
  603. done(ep, req, 0);
  604. if (list_empty(&ep->queue))
  605. goto stop;
  606. req = list_entry(ep->queue.next, struct goku_request, queue);
  607. (void) start_dma(ep, req);
  608. }
  609. static void abort_dma(struct goku_ep *ep, int status)
  610. {
  611. struct goku_udc_regs __iomem *regs = ep->dev->regs;
  612. struct goku_request *req;
  613. u32 curr, master;
  614. /* NAK future host requests, hoping the implicit delay lets the
  615. * dma engine finish reading (or writing) its latest packet and
  616. * empty the dma buffer (up to 16 bytes).
  617. *
  618. * This avoids needing to clean up a partial packet in the fifo;
  619. * we can't do that for IN without side effects to HALT and TOGGLE.
  620. */
  621. command(regs, COMMAND_FIFO_DISABLE, ep->num);
  622. req = list_entry(ep->queue.next, struct goku_request, queue);
  623. master = readl(&regs->dma_master) & MST_RW_BITS;
  624. /* FIXME using these resets isn't usably documented. this may
  625. * not work unless it's followed by disabling the endpoint.
  626. *
  627. * FIXME the OUT reset path doesn't even behave consistently.
  628. */
  629. if (ep->is_in) {
  630. if (unlikely((readl(&regs->dma_master) & MST_RD_ENA) == 0))
  631. goto finished;
  632. curr = readl(&regs->in_dma_current);
  633. writel(curr, &regs->in_dma_end);
  634. writel(curr, &regs->in_dma_start);
  635. master &= ~MST_R_BITS;
  636. master |= MST_RD_RESET;
  637. writel(master, &regs->dma_master);
  638. if (readl(&regs->dma_master) & MST_RD_ENA)
  639. DBG(ep->dev, "IN dma active after reset!\n");
  640. } else {
  641. if (unlikely((readl(&regs->dma_master) & MST_WR_ENA) == 0))
  642. goto finished;
  643. curr = readl(&regs->out_dma_current);
  644. writel(curr, &regs->out_dma_end);
  645. writel(curr, &regs->out_dma_start);
  646. master &= ~MST_W_BITS;
  647. master |= MST_WR_RESET;
  648. writel(master, &regs->dma_master);
  649. if (readl(&regs->dma_master) & MST_WR_ENA)
  650. DBG(ep->dev, "OUT dma active after reset!\n");
  651. }
  652. req->req.actual = (curr - req->req.dma) + 1;
  653. req->req.status = status;
  654. VDBG(ep->dev, "%s %s %s %d/%d\n", __FUNCTION__, ep->ep.name,
  655. ep->is_in ? "IN" : "OUT",
  656. req->req.actual, req->req.length);
  657. command(regs, COMMAND_FIFO_ENABLE, ep->num);
  658. return;
  659. finished:
  660. /* dma already completed; no abort needed */
  661. command(regs, COMMAND_FIFO_ENABLE, ep->num);
  662. req->req.actual = req->req.length;
  663. req->req.status = 0;
  664. }
  665. /*-------------------------------------------------------------------------*/
  666. static int
  667. goku_queue(struct usb_ep *_ep, struct usb_request *_req, unsigned gfp_flags)
  668. {
  669. struct goku_request *req;
  670. struct goku_ep *ep;
  671. struct goku_udc *dev;
  672. unsigned long flags;
  673. int status;
  674. /* always require a cpu-view buffer so pio works */
  675. req = container_of(_req, struct goku_request, req);
  676. if (unlikely(!_req || !_req->complete
  677. || !_req->buf || !list_empty(&req->queue)))
  678. return -EINVAL;
  679. ep = container_of(_ep, struct goku_ep, ep);
  680. if (unlikely(!_ep || (!ep->desc && ep->num != 0)))
  681. return -EINVAL;
  682. dev = ep->dev;
  683. if (unlikely(!dev->driver || dev->gadget.speed == USB_SPEED_UNKNOWN))
  684. return -ESHUTDOWN;
  685. /* can't touch registers when suspended */
  686. if (dev->ep0state == EP0_SUSPEND)
  687. return -EBUSY;
  688. /* set up dma mapping in case the caller didn't */
  689. if (ep->dma && _req->dma == DMA_ADDR_INVALID) {
  690. _req->dma = pci_map_single(dev->pdev, _req->buf, _req->length,
  691. ep->is_in ? PCI_DMA_TODEVICE : PCI_DMA_FROMDEVICE);
  692. req->mapped = 1;
  693. }
  694. #ifdef USB_TRACE
  695. VDBG(dev, "%s queue req %p, len %u buf %p\n",
  696. _ep->name, _req, _req->length, _req->buf);
  697. #endif
  698. spin_lock_irqsave(&dev->lock, flags);
  699. _req->status = -EINPROGRESS;
  700. _req->actual = 0;
  701. /* for ep0 IN without premature status, zlp is required and
  702. * writing EOP starts the status stage (OUT).
  703. */
  704. if (unlikely(ep->num == 0 && ep->is_in))
  705. _req->zero = 1;
  706. /* kickstart this i/o queue? */
  707. status = 0;
  708. if (list_empty(&ep->queue) && likely(!ep->stopped)) {
  709. /* dma: done after dma completion IRQ (or error)
  710. * pio: done after last fifo operation
  711. */
  712. if (ep->dma)
  713. status = start_dma(ep, req);
  714. else
  715. status = (ep->is_in ? write_fifo : read_fifo)(ep, req);
  716. if (unlikely(status != 0)) {
  717. if (status > 0)
  718. status = 0;
  719. req = NULL;
  720. }
  721. } /* else pio or dma irq handler advances the queue. */
  722. if (likely(req != 0))
  723. list_add_tail(&req->queue, &ep->queue);
  724. if (likely(!list_empty(&ep->queue))
  725. && likely(ep->num != 0)
  726. && !ep->dma
  727. && !(dev->int_enable & INT_EPxDATASET (ep->num)))
  728. pio_irq_enable(dev, dev->regs, ep->num);
  729. spin_unlock_irqrestore(&dev->lock, flags);
  730. /* pci writes may still be posted */
  731. return status;
  732. }
  733. /* dequeue ALL requests */
  734. static void nuke(struct goku_ep *ep, int status)
  735. {
  736. struct goku_request *req;
  737. ep->stopped = 1;
  738. if (list_empty(&ep->queue))
  739. return;
  740. if (ep->dma)
  741. abort_dma(ep, status);
  742. while (!list_empty(&ep->queue)) {
  743. req = list_entry(ep->queue.next, struct goku_request, queue);
  744. done(ep, req, status);
  745. }
  746. }
  747. /* dequeue JUST ONE request */
  748. static int goku_dequeue(struct usb_ep *_ep, struct usb_request *_req)
  749. {
  750. struct goku_request *req;
  751. struct goku_ep *ep;
  752. struct goku_udc *dev;
  753. unsigned long flags;
  754. ep = container_of(_ep, struct goku_ep, ep);
  755. if (!_ep || !_req || (!ep->desc && ep->num != 0))
  756. return -EINVAL;
  757. dev = ep->dev;
  758. if (!dev->driver)
  759. return -ESHUTDOWN;
  760. /* we can't touch (dma) registers when suspended */
  761. if (dev->ep0state == EP0_SUSPEND)
  762. return -EBUSY;
  763. VDBG(dev, "%s %s %s %s %p\n", __FUNCTION__, _ep->name,
  764. ep->is_in ? "IN" : "OUT",
  765. ep->dma ? "dma" : "pio",
  766. _req);
  767. spin_lock_irqsave(&dev->lock, flags);
  768. /* make sure it's actually queued on this endpoint */
  769. list_for_each_entry (req, &ep->queue, queue) {
  770. if (&req->req == _req)
  771. break;
  772. }
  773. if (&req->req != _req) {
  774. spin_unlock_irqrestore (&dev->lock, flags);
  775. return -EINVAL;
  776. }
  777. if (ep->dma && ep->queue.next == &req->queue && !ep->stopped) {
  778. abort_dma(ep, -ECONNRESET);
  779. done(ep, req, -ECONNRESET);
  780. dma_advance(dev, ep);
  781. } else if (!list_empty(&req->queue))
  782. done(ep, req, -ECONNRESET);
  783. else
  784. req = NULL;
  785. spin_unlock_irqrestore(&dev->lock, flags);
  786. return req ? 0 : -EOPNOTSUPP;
  787. }
  788. /*-------------------------------------------------------------------------*/
  789. static void goku_clear_halt(struct goku_ep *ep)
  790. {
  791. // assert (ep->num !=0)
  792. VDBG(ep->dev, "%s clear halt\n", ep->ep.name);
  793. command(ep->dev->regs, COMMAND_SETDATA0, ep->num);
  794. command(ep->dev->regs, COMMAND_STALL_CLEAR, ep->num);
  795. if (ep->stopped) {
  796. ep->stopped = 0;
  797. if (ep->dma) {
  798. struct goku_request *req;
  799. if (list_empty(&ep->queue))
  800. return;
  801. req = list_entry(ep->queue.next, struct goku_request,
  802. queue);
  803. (void) start_dma(ep, req);
  804. } else
  805. pio_advance(ep);
  806. }
  807. }
  808. static int goku_set_halt(struct usb_ep *_ep, int value)
  809. {
  810. struct goku_ep *ep;
  811. unsigned long flags;
  812. int retval = 0;
  813. if (!_ep)
  814. return -ENODEV;
  815. ep = container_of (_ep, struct goku_ep, ep);
  816. if (ep->num == 0) {
  817. if (value) {
  818. ep->dev->ep0state = EP0_STALL;
  819. ep->dev->ep[0].stopped = 1;
  820. } else
  821. return -EINVAL;
  822. /* don't change EPxSTATUS_EP_INVALID to READY */
  823. } else if (!ep->desc) {
  824. DBG(ep->dev, "%s %s inactive?\n", __FUNCTION__, ep->ep.name);
  825. return -EINVAL;
  826. }
  827. spin_lock_irqsave(&ep->dev->lock, flags);
  828. if (!list_empty(&ep->queue))
  829. retval = -EAGAIN;
  830. else if (ep->is_in && value
  831. /* data in (either) packet buffer? */
  832. && (readl(&ep->dev->regs->DataSet)
  833. & DATASET_AB(ep->num)))
  834. retval = -EAGAIN;
  835. else if (!value)
  836. goku_clear_halt(ep);
  837. else {
  838. ep->stopped = 1;
  839. VDBG(ep->dev, "%s set halt\n", ep->ep.name);
  840. command(ep->dev->regs, COMMAND_STALL, ep->num);
  841. readl(ep->reg_status);
  842. }
  843. spin_unlock_irqrestore(&ep->dev->lock, flags);
  844. return retval;
  845. }
  846. static int goku_fifo_status(struct usb_ep *_ep)
  847. {
  848. struct goku_ep *ep;
  849. struct goku_udc_regs __iomem *regs;
  850. u32 size;
  851. if (!_ep)
  852. return -ENODEV;
  853. ep = container_of(_ep, struct goku_ep, ep);
  854. /* size is only reported sanely for OUT */
  855. if (ep->is_in)
  856. return -EOPNOTSUPP;
  857. /* ignores 16-byte dma buffer; SizeH == 0 */
  858. regs = ep->dev->regs;
  859. size = readl(&regs->EPxSizeLA[ep->num]) & DATASIZE;
  860. size += readl(&regs->EPxSizeLB[ep->num]) & DATASIZE;
  861. VDBG(ep->dev, "%s %s %u\n", __FUNCTION__, ep->ep.name, size);
  862. return size;
  863. }
  864. static void goku_fifo_flush(struct usb_ep *_ep)
  865. {
  866. struct goku_ep *ep;
  867. struct goku_udc_regs __iomem *regs;
  868. u32 size;
  869. if (!_ep)
  870. return;
  871. ep = container_of(_ep, struct goku_ep, ep);
  872. VDBG(ep->dev, "%s %s\n", __FUNCTION__, ep->ep.name);
  873. /* don't change EPxSTATUS_EP_INVALID to READY */
  874. if (!ep->desc && ep->num != 0) {
  875. DBG(ep->dev, "%s %s inactive?\n", __FUNCTION__, ep->ep.name);
  876. return;
  877. }
  878. regs = ep->dev->regs;
  879. size = readl(&regs->EPxSizeLA[ep->num]);
  880. size &= DATASIZE;
  881. /* Non-desirable behavior: FIFO_CLEAR also clears the
  882. * endpoint halt feature. For OUT, we _could_ just read
  883. * the bytes out (PIO, if !ep->dma); for in, no choice.
  884. */
  885. if (size)
  886. command(regs, COMMAND_FIFO_CLEAR, ep->num);
  887. }
  888. static struct usb_ep_ops goku_ep_ops = {
  889. .enable = goku_ep_enable,
  890. .disable = goku_ep_disable,
  891. .alloc_request = goku_alloc_request,
  892. .free_request = goku_free_request,
  893. .alloc_buffer = goku_alloc_buffer,
  894. .free_buffer = goku_free_buffer,
  895. .queue = goku_queue,
  896. .dequeue = goku_dequeue,
  897. .set_halt = goku_set_halt,
  898. .fifo_status = goku_fifo_status,
  899. .fifo_flush = goku_fifo_flush,
  900. };
  901. /*-------------------------------------------------------------------------*/
  902. static int goku_get_frame(struct usb_gadget *_gadget)
  903. {
  904. return -EOPNOTSUPP;
  905. }
  906. static const struct usb_gadget_ops goku_ops = {
  907. .get_frame = goku_get_frame,
  908. // no remote wakeup
  909. // not selfpowered
  910. };
  911. /*-------------------------------------------------------------------------*/
  912. static inline char *dmastr(void)
  913. {
  914. if (use_dma == 0)
  915. return "(dma disabled)";
  916. else if (use_dma == 2)
  917. return "(dma IN and OUT)";
  918. else
  919. return "(dma IN)";
  920. }
  921. #ifdef CONFIG_USB_GADGET_DEBUG_FILES
  922. static const char proc_node_name [] = "driver/udc";
  923. #define FOURBITS "%s%s%s%s"
  924. #define EIGHTBITS FOURBITS FOURBITS
  925. static void
  926. dump_intmask(const char *label, u32 mask, char **next, unsigned *size)
  927. {
  928. int t;
  929. /* int_status is the same format ... */
  930. t = scnprintf(*next, *size,
  931. "%s %05X =" FOURBITS EIGHTBITS EIGHTBITS "\n",
  932. label, mask,
  933. (mask & INT_PWRDETECT) ? " power" : "",
  934. (mask & INT_SYSERROR) ? " sys" : "",
  935. (mask & INT_MSTRDEND) ? " in-dma" : "",
  936. (mask & INT_MSTWRTMOUT) ? " wrtmo" : "",
  937. (mask & INT_MSTWREND) ? " out-dma" : "",
  938. (mask & INT_MSTWRSET) ? " wrset" : "",
  939. (mask & INT_ERR) ? " err" : "",
  940. (mask & INT_SOF) ? " sof" : "",
  941. (mask & INT_EP3NAK) ? " ep3nak" : "",
  942. (mask & INT_EP2NAK) ? " ep2nak" : "",
  943. (mask & INT_EP1NAK) ? " ep1nak" : "",
  944. (mask & INT_EP3DATASET) ? " ep3" : "",
  945. (mask & INT_EP2DATASET) ? " ep2" : "",
  946. (mask & INT_EP1DATASET) ? " ep1" : "",
  947. (mask & INT_STATUSNAK) ? " ep0snak" : "",
  948. (mask & INT_STATUS) ? " ep0status" : "",
  949. (mask & INT_SETUP) ? " setup" : "",
  950. (mask & INT_ENDPOINT0) ? " ep0" : "",
  951. (mask & INT_USBRESET) ? " reset" : "",
  952. (mask & INT_SUSPEND) ? " suspend" : "");
  953. *size -= t;
  954. *next += t;
  955. }
  956. static int
  957. udc_proc_read(char *buffer, char **start, off_t off, int count,
  958. int *eof, void *_dev)
  959. {
  960. char *buf = buffer;
  961. struct goku_udc *dev = _dev;
  962. struct goku_udc_regs __iomem *regs = dev->regs;
  963. char *next = buf;
  964. unsigned size = count;
  965. unsigned long flags;
  966. int i, t, is_usb_connected;
  967. u32 tmp;
  968. if (off != 0)
  969. return 0;
  970. local_irq_save(flags);
  971. /* basic device status */
  972. tmp = readl(&regs->power_detect);
  973. is_usb_connected = tmp & PW_DETECT;
  974. t = scnprintf(next, size,
  975. "%s - %s\n"
  976. "%s version: %s %s\n"
  977. "Gadget driver: %s\n"
  978. "Host %s, %s\n"
  979. "\n",
  980. pci_name(dev->pdev), driver_desc,
  981. driver_name, DRIVER_VERSION, dmastr(),
  982. dev->driver ? dev->driver->driver.name : "(none)",
  983. is_usb_connected
  984. ? ((tmp & PW_PULLUP) ? "full speed" : "powered")
  985. : "disconnected",
  986. ({char *tmp;
  987. switch(dev->ep0state){
  988. case EP0_DISCONNECT: tmp = "ep0_disconnect"; break;
  989. case EP0_IDLE: tmp = "ep0_idle"; break;
  990. case EP0_IN: tmp = "ep0_in"; break;
  991. case EP0_OUT: tmp = "ep0_out"; break;
  992. case EP0_STATUS: tmp = "ep0_status"; break;
  993. case EP0_STALL: tmp = "ep0_stall"; break;
  994. case EP0_SUSPEND: tmp = "ep0_suspend"; break;
  995. default: tmp = "ep0_?"; break;
  996. } tmp; })
  997. );
  998. size -= t;
  999. next += t;
  1000. dump_intmask("int_status", readl(&regs->int_status), &next, &size);
  1001. dump_intmask("int_enable", readl(&regs->int_enable), &next, &size);
  1002. if (!is_usb_connected || !dev->driver || (tmp & PW_PULLUP) == 0)
  1003. goto done;
  1004. /* registers for (active) device and ep0 */
  1005. t = scnprintf(next, size, "\nirqs %lu\ndataset %02x "
  1006. "single.bcs %02x.%02x state %x addr %u\n",
  1007. dev->irqs, readl(&regs->DataSet),
  1008. readl(&regs->EPxSingle), readl(&regs->EPxBCS),
  1009. readl(&regs->UsbState),
  1010. readl(&regs->address));
  1011. size -= t;
  1012. next += t;
  1013. tmp = readl(&regs->dma_master);
  1014. t = scnprintf(next, size,
  1015. "dma %03X =" EIGHTBITS "%s %s\n", tmp,
  1016. (tmp & MST_EOPB_DIS) ? " eopb-" : "",
  1017. (tmp & MST_EOPB_ENA) ? " eopb+" : "",
  1018. (tmp & MST_TIMEOUT_DIS) ? " tmo-" : "",
  1019. (tmp & MST_TIMEOUT_ENA) ? " tmo+" : "",
  1020. (tmp & MST_RD_EOPB) ? " eopb" : "",
  1021. (tmp & MST_RD_RESET) ? " in_reset" : "",
  1022. (tmp & MST_WR_RESET) ? " out_reset" : "",
  1023. (tmp & MST_RD_ENA) ? " IN" : "",
  1024. (tmp & MST_WR_ENA) ? " OUT" : "",
  1025. (tmp & MST_CONNECTION)
  1026. ? "ep1in/ep2out"
  1027. : "ep1out/ep2in");
  1028. size -= t;
  1029. next += t;
  1030. /* dump endpoint queues */
  1031. for (i = 0; i < 4; i++) {
  1032. struct goku_ep *ep = &dev->ep [i];
  1033. struct goku_request *req;
  1034. int t;
  1035. if (i && !ep->desc)
  1036. continue;
  1037. tmp = readl(ep->reg_status);
  1038. t = scnprintf(next, size,
  1039. "%s %s max %u %s, irqs %lu, "
  1040. "status %02x (%s) " FOURBITS "\n",
  1041. ep->ep.name,
  1042. ep->is_in ? "in" : "out",
  1043. ep->ep.maxpacket,
  1044. ep->dma ? "dma" : "pio",
  1045. ep->irqs,
  1046. tmp, ({ char *s;
  1047. switch (tmp & EPxSTATUS_EP_MASK) {
  1048. case EPxSTATUS_EP_READY:
  1049. s = "ready"; break;
  1050. case EPxSTATUS_EP_DATAIN:
  1051. s = "packet"; break;
  1052. case EPxSTATUS_EP_FULL:
  1053. s = "full"; break;
  1054. case EPxSTATUS_EP_TX_ERR: // host will retry
  1055. s = "tx_err"; break;
  1056. case EPxSTATUS_EP_RX_ERR:
  1057. s = "rx_err"; break;
  1058. case EPxSTATUS_EP_BUSY: /* ep0 only */
  1059. s = "busy"; break;
  1060. case EPxSTATUS_EP_STALL:
  1061. s = "stall"; break;
  1062. case EPxSTATUS_EP_INVALID: // these "can't happen"
  1063. s = "invalid"; break;
  1064. default:
  1065. s = "?"; break;
  1066. }; s; }),
  1067. (tmp & EPxSTATUS_TOGGLE) ? "data1" : "data0",
  1068. (tmp & EPxSTATUS_SUSPEND) ? " suspend" : "",
  1069. (tmp & EPxSTATUS_FIFO_DISABLE) ? " disable" : "",
  1070. (tmp & EPxSTATUS_STAGE_ERROR) ? " ep0stat" : ""
  1071. );
  1072. if (t <= 0 || t > size)
  1073. goto done;
  1074. size -= t;
  1075. next += t;
  1076. if (list_empty(&ep->queue)) {
  1077. t = scnprintf(next, size, "\t(nothing queued)\n");
  1078. if (t <= 0 || t > size)
  1079. goto done;
  1080. size -= t;
  1081. next += t;
  1082. continue;
  1083. }
  1084. list_for_each_entry(req, &ep->queue, queue) {
  1085. if (ep->dma && req->queue.prev == &ep->queue) {
  1086. if (i == UDC_MSTRD_ENDPOINT)
  1087. tmp = readl(&regs->in_dma_current);
  1088. else
  1089. tmp = readl(&regs->out_dma_current);
  1090. tmp -= req->req.dma;
  1091. tmp++;
  1092. } else
  1093. tmp = req->req.actual;
  1094. t = scnprintf(next, size,
  1095. "\treq %p len %u/%u buf %p\n",
  1096. &req->req, tmp, req->req.length,
  1097. req->req.buf);
  1098. if (t <= 0 || t > size)
  1099. goto done;
  1100. size -= t;
  1101. next += t;
  1102. }
  1103. }
  1104. done:
  1105. local_irq_restore(flags);
  1106. *eof = 1;
  1107. return count - size;
  1108. }
  1109. #endif /* CONFIG_USB_GADGET_DEBUG_FILES */
  1110. /*-------------------------------------------------------------------------*/
  1111. static void udc_reinit (struct goku_udc *dev)
  1112. {
  1113. static char *names [] = { "ep0", "ep1-bulk", "ep2-bulk", "ep3-bulk" };
  1114. unsigned i;
  1115. INIT_LIST_HEAD (&dev->gadget.ep_list);
  1116. dev->gadget.ep0 = &dev->ep [0].ep;
  1117. dev->gadget.speed = USB_SPEED_UNKNOWN;
  1118. dev->ep0state = EP0_DISCONNECT;
  1119. dev->irqs = 0;
  1120. for (i = 0; i < 4; i++) {
  1121. struct goku_ep *ep = &dev->ep[i];
  1122. ep->num = i;
  1123. ep->ep.name = names[i];
  1124. ep->reg_fifo = &dev->regs->ep_fifo [i];
  1125. ep->reg_status = &dev->regs->ep_status [i];
  1126. ep->reg_mode = &dev->regs->ep_mode[i];
  1127. ep->ep.ops = &goku_ep_ops;
  1128. list_add_tail (&ep->ep.ep_list, &dev->gadget.ep_list);
  1129. ep->dev = dev;
  1130. INIT_LIST_HEAD (&ep->queue);
  1131. ep_reset(NULL, ep);
  1132. }
  1133. dev->ep[0].reg_mode = NULL;
  1134. dev->ep[0].ep.maxpacket = MAX_EP0_SIZE;
  1135. list_del_init (&dev->ep[0].ep.ep_list);
  1136. }
  1137. static void udc_reset(struct goku_udc *dev)
  1138. {
  1139. struct goku_udc_regs __iomem *regs = dev->regs;
  1140. writel(0, &regs->power_detect);
  1141. writel(0, &regs->int_enable);
  1142. readl(&regs->int_enable);
  1143. dev->int_enable = 0;
  1144. /* deassert reset, leave USB D+ at hi-Z (no pullup)
  1145. * don't let INT_PWRDETECT sequence begin
  1146. */
  1147. udelay(250);
  1148. writel(PW_RESETB, &regs->power_detect);
  1149. readl(&regs->int_enable);
  1150. }
  1151. static void ep0_start(struct goku_udc *dev)
  1152. {
  1153. struct goku_udc_regs __iomem *regs = dev->regs;
  1154. unsigned i;
  1155. VDBG(dev, "%s\n", __FUNCTION__);
  1156. udc_reset(dev);
  1157. udc_reinit (dev);
  1158. //writel(MST_EOPB_ENA | MST_TIMEOUT_ENA, &regs->dma_master);
  1159. /* hw handles set_address, set_feature, get_status; maybe more */
  1160. writel( G_REQMODE_SET_INTF | G_REQMODE_GET_INTF
  1161. | G_REQMODE_SET_CONF | G_REQMODE_GET_CONF
  1162. | G_REQMODE_GET_DESC
  1163. | G_REQMODE_CLEAR_FEAT
  1164. , &regs->reqmode);
  1165. for (i = 0; i < 4; i++)
  1166. dev->ep[i].irqs = 0;
  1167. /* can't modify descriptors after writing UsbReady */
  1168. for (i = 0; i < DESC_LEN; i++)
  1169. writel(0, &regs->descriptors[i]);
  1170. writel(0, &regs->UsbReady);
  1171. /* expect ep0 requests when the host drops reset */
  1172. writel(PW_RESETB | PW_PULLUP, &regs->power_detect);
  1173. dev->int_enable = INT_DEVWIDE | INT_EP0;
  1174. writel(dev->int_enable, &dev->regs->int_enable);
  1175. readl(&regs->int_enable);
  1176. dev->gadget.speed = USB_SPEED_FULL;
  1177. dev->ep0state = EP0_IDLE;
  1178. }
  1179. static void udc_enable(struct goku_udc *dev)
  1180. {
  1181. /* start enumeration now, or after power detect irq */
  1182. if (readl(&dev->regs->power_detect) & PW_DETECT)
  1183. ep0_start(dev);
  1184. else {
  1185. DBG(dev, "%s\n", __FUNCTION__);
  1186. dev->int_enable = INT_PWRDETECT;
  1187. writel(dev->int_enable, &dev->regs->int_enable);
  1188. }
  1189. }
  1190. /*-------------------------------------------------------------------------*/
  1191. /* keeping it simple:
  1192. * - one bus driver, initted first;
  1193. * - one function driver, initted second
  1194. */
  1195. static struct goku_udc *the_controller;
  1196. /* when a driver is successfully registered, it will receive
  1197. * control requests including set_configuration(), which enables
  1198. * non-control requests. then usb traffic follows until a
  1199. * disconnect is reported. then a host may connect again, or
  1200. * the driver might get unbound.
  1201. */
  1202. int usb_gadget_register_driver(struct usb_gadget_driver *driver)
  1203. {
  1204. struct goku_udc *dev = the_controller;
  1205. int retval;
  1206. if (!driver
  1207. || driver->speed != USB_SPEED_FULL
  1208. || !driver->bind
  1209. || !driver->unbind
  1210. || !driver->disconnect
  1211. || !driver->setup)
  1212. return -EINVAL;
  1213. if (!dev)
  1214. return -ENODEV;
  1215. if (dev->driver)
  1216. return -EBUSY;
  1217. /* hook up the driver */
  1218. driver->driver.bus = NULL;
  1219. dev->driver = driver;
  1220. dev->gadget.dev.driver = &driver->driver;
  1221. retval = driver->bind(&dev->gadget);
  1222. if (retval) {
  1223. DBG(dev, "bind to driver %s --> error %d\n",
  1224. driver->driver.name, retval);
  1225. dev->driver = NULL;
  1226. dev->gadget.dev.driver = NULL;
  1227. return retval;
  1228. }
  1229. /* then enable host detection and ep0; and we're ready
  1230. * for set_configuration as well as eventual disconnect.
  1231. */
  1232. udc_enable(dev);
  1233. DBG(dev, "registered gadget driver '%s'\n", driver->driver.name);
  1234. return 0;
  1235. }
  1236. EXPORT_SYMBOL(usb_gadget_register_driver);
  1237. static void
  1238. stop_activity(struct goku_udc *dev, struct usb_gadget_driver *driver)
  1239. {
  1240. unsigned i;
  1241. DBG (dev, "%s\n", __FUNCTION__);
  1242. if (dev->gadget.speed == USB_SPEED_UNKNOWN)
  1243. driver = NULL;
  1244. /* disconnect gadget driver after quiesceing hw and the driver */
  1245. udc_reset (dev);
  1246. for (i = 0; i < 4; i++)
  1247. nuke(&dev->ep [i], -ESHUTDOWN);
  1248. if (driver) {
  1249. spin_unlock(&dev->lock);
  1250. driver->disconnect(&dev->gadget);
  1251. spin_lock(&dev->lock);
  1252. }
  1253. if (dev->driver)
  1254. udc_enable(dev);
  1255. }
  1256. int usb_gadget_unregister_driver(struct usb_gadget_driver *driver)
  1257. {
  1258. struct goku_udc *dev = the_controller;
  1259. unsigned long flags;
  1260. if (!dev)
  1261. return -ENODEV;
  1262. if (!driver || driver != dev->driver)
  1263. return -EINVAL;
  1264. spin_lock_irqsave(&dev->lock, flags);
  1265. dev->driver = NULL;
  1266. stop_activity(dev, driver);
  1267. spin_unlock_irqrestore(&dev->lock, flags);
  1268. driver->unbind(&dev->gadget);
  1269. DBG(dev, "unregistered driver '%s'\n", driver->driver.name);
  1270. return 0;
  1271. }
  1272. EXPORT_SYMBOL(usb_gadget_unregister_driver);
  1273. /*-------------------------------------------------------------------------*/
  1274. static void ep0_setup(struct goku_udc *dev)
  1275. {
  1276. struct goku_udc_regs __iomem *regs = dev->regs;
  1277. struct usb_ctrlrequest ctrl;
  1278. int tmp;
  1279. /* read SETUP packet and enter DATA stage */
  1280. ctrl.bRequestType = readl(&regs->bRequestType);
  1281. ctrl.bRequest = readl(&regs->bRequest);
  1282. ctrl.wValue = cpu_to_le16((readl(&regs->wValueH) << 8)
  1283. | readl(&regs->wValueL));
  1284. ctrl.wIndex = cpu_to_le16((readl(&regs->wIndexH) << 8)
  1285. | readl(&regs->wIndexL));
  1286. ctrl.wLength = cpu_to_le16((readl(&regs->wLengthH) << 8)
  1287. | readl(&regs->wLengthL));
  1288. writel(0, &regs->SetupRecv);
  1289. nuke(&dev->ep[0], 0);
  1290. dev->ep[0].stopped = 0;
  1291. if (likely(ctrl.bRequestType & USB_DIR_IN)) {
  1292. dev->ep[0].is_in = 1;
  1293. dev->ep0state = EP0_IN;
  1294. /* detect early status stages */
  1295. writel(ICONTROL_STATUSNAK, &dev->regs->IntControl);
  1296. } else {
  1297. dev->ep[0].is_in = 0;
  1298. dev->ep0state = EP0_OUT;
  1299. /* NOTE: CLEAR_FEATURE is done in software so that we can
  1300. * synchronize transfer restarts after bulk IN stalls. data
  1301. * won't even enter the fifo until the halt is cleared.
  1302. */
  1303. switch (ctrl.bRequest) {
  1304. case USB_REQ_CLEAR_FEATURE:
  1305. switch (ctrl.bRequestType) {
  1306. case USB_RECIP_ENDPOINT:
  1307. tmp = le16_to_cpu(ctrl.wIndex) & 0x0f;
  1308. /* active endpoint */
  1309. if (tmp > 3 || (!dev->ep[tmp].desc && tmp != 0))
  1310. goto stall;
  1311. if (ctrl.wIndex & __constant_cpu_to_le16(
  1312. USB_DIR_IN)) {
  1313. if (!dev->ep[tmp].is_in)
  1314. goto stall;
  1315. } else {
  1316. if (dev->ep[tmp].is_in)
  1317. goto stall;
  1318. }
  1319. if (ctrl.wValue != __constant_cpu_to_le16(
  1320. USB_ENDPOINT_HALT))
  1321. goto stall;
  1322. if (tmp)
  1323. goku_clear_halt(&dev->ep[tmp]);
  1324. succeed:
  1325. /* start ep0out status stage */
  1326. writel(~(1<<0), &regs->EOP);
  1327. dev->ep[0].stopped = 1;
  1328. dev->ep0state = EP0_STATUS;
  1329. return;
  1330. case USB_RECIP_DEVICE:
  1331. /* device remote wakeup: always clear */
  1332. if (ctrl.wValue != __constant_cpu_to_le16(1))
  1333. goto stall;
  1334. VDBG(dev, "clear dev remote wakeup\n");
  1335. goto succeed;
  1336. case USB_RECIP_INTERFACE:
  1337. goto stall;
  1338. default: /* pass to gadget driver */
  1339. break;
  1340. }
  1341. break;
  1342. default:
  1343. break;
  1344. }
  1345. }
  1346. #ifdef USB_TRACE
  1347. VDBG(dev, "SETUP %02x.%02x v%04x i%04x l%04x\n",
  1348. ctrl.bRequestType, ctrl.bRequest,
  1349. le16_to_cpu(ctrl.wValue), le16_to_cpu(ctrl.wIndex),
  1350. le16_to_cpu(ctrl.wLength));
  1351. #endif
  1352. /* hw wants to know when we're configured (or not) */
  1353. dev->req_config = (ctrl.bRequest == USB_REQ_SET_CONFIGURATION
  1354. && ctrl.bRequestType == USB_RECIP_DEVICE);
  1355. if (unlikely(dev->req_config))
  1356. dev->configured = (ctrl.wValue != __constant_cpu_to_le16(0));
  1357. /* delegate everything to the gadget driver.
  1358. * it may respond after this irq handler returns.
  1359. */
  1360. spin_unlock (&dev->lock);
  1361. tmp = dev->driver->setup(&dev->gadget, &ctrl);
  1362. spin_lock (&dev->lock);
  1363. if (unlikely(tmp < 0)) {
  1364. stall:
  1365. #ifdef USB_TRACE
  1366. VDBG(dev, "req %02x.%02x protocol STALL; err %d\n",
  1367. ctrl.bRequestType, ctrl.bRequest, tmp);
  1368. #endif
  1369. command(regs, COMMAND_STALL, 0);
  1370. dev->ep[0].stopped = 1;
  1371. dev->ep0state = EP0_STALL;
  1372. }
  1373. /* expect at least one data or status stage irq */
  1374. }
  1375. #define ACK(irqbit) { \
  1376. stat &= ~irqbit; \
  1377. writel(~irqbit, &regs->int_status); \
  1378. handled = 1; \
  1379. }
  1380. static irqreturn_t goku_irq(int irq, void *_dev, struct pt_regs *r)
  1381. {
  1382. struct goku_udc *dev = _dev;
  1383. struct goku_udc_regs __iomem *regs = dev->regs;
  1384. struct goku_ep *ep;
  1385. u32 stat, handled = 0;
  1386. unsigned i, rescans = 5;
  1387. spin_lock(&dev->lock);
  1388. rescan:
  1389. stat = readl(&regs->int_status) & dev->int_enable;
  1390. if (!stat)
  1391. goto done;
  1392. dev->irqs++;
  1393. /* device-wide irqs */
  1394. if (unlikely(stat & INT_DEVWIDE)) {
  1395. if (stat & INT_SYSERROR) {
  1396. ERROR(dev, "system error\n");
  1397. stop_activity(dev, dev->driver);
  1398. stat = 0;
  1399. handled = 1;
  1400. // FIXME have a neater way to prevent re-enumeration
  1401. dev->driver = NULL;
  1402. goto done;
  1403. }
  1404. if (stat & INT_PWRDETECT) {
  1405. writel(~stat, &regs->int_status);
  1406. if (readl(&dev->regs->power_detect) & PW_DETECT) {
  1407. VDBG(dev, "connect\n");
  1408. ep0_start(dev);
  1409. } else {
  1410. DBG(dev, "disconnect\n");
  1411. if (dev->gadget.speed == USB_SPEED_FULL)
  1412. stop_activity(dev, dev->driver);
  1413. dev->ep0state = EP0_DISCONNECT;
  1414. dev->int_enable = INT_DEVWIDE;
  1415. writel(dev->int_enable, &dev->regs->int_enable);
  1416. }
  1417. stat = 0;
  1418. handled = 1;
  1419. goto done;
  1420. }
  1421. if (stat & INT_SUSPEND) {
  1422. ACK(INT_SUSPEND);
  1423. if (readl(&regs->ep_status[0]) & EPxSTATUS_SUSPEND) {
  1424. switch (dev->ep0state) {
  1425. case EP0_DISCONNECT:
  1426. case EP0_SUSPEND:
  1427. goto pm_next;
  1428. default:
  1429. break;
  1430. }
  1431. DBG(dev, "USB suspend\n");
  1432. dev->ep0state = EP0_SUSPEND;
  1433. if (dev->gadget.speed != USB_SPEED_UNKNOWN
  1434. && dev->driver
  1435. && dev->driver->suspend) {
  1436. spin_unlock(&dev->lock);
  1437. dev->driver->suspend(&dev->gadget);
  1438. spin_lock(&dev->lock);
  1439. }
  1440. } else {
  1441. if (dev->ep0state != EP0_SUSPEND) {
  1442. DBG(dev, "bogus USB resume %d\n",
  1443. dev->ep0state);
  1444. goto pm_next;
  1445. }
  1446. DBG(dev, "USB resume\n");
  1447. dev->ep0state = EP0_IDLE;
  1448. if (dev->gadget.speed != USB_SPEED_UNKNOWN
  1449. && dev->driver
  1450. && dev->driver->resume) {
  1451. spin_unlock(&dev->lock);
  1452. dev->driver->resume(&dev->gadget);
  1453. spin_lock(&dev->lock);
  1454. }
  1455. }
  1456. }
  1457. pm_next:
  1458. if (stat & INT_USBRESET) { /* hub reset done */
  1459. ACK(INT_USBRESET);
  1460. INFO(dev, "USB reset done, gadget %s\n",
  1461. dev->driver->driver.name);
  1462. }
  1463. // and INT_ERR on some endpoint's crc/bitstuff/... problem
  1464. }
  1465. /* progress ep0 setup, data, or status stages.
  1466. * no transition {EP0_STATUS, EP0_STALL} --> EP0_IDLE; saves irqs
  1467. */
  1468. if (stat & INT_SETUP) {
  1469. ACK(INT_SETUP);
  1470. dev->ep[0].irqs++;
  1471. ep0_setup(dev);
  1472. }
  1473. if (stat & INT_STATUSNAK) {
  1474. ACK(INT_STATUSNAK|INT_ENDPOINT0);
  1475. if (dev->ep0state == EP0_IN) {
  1476. ep = &dev->ep[0];
  1477. ep->irqs++;
  1478. nuke(ep, 0);
  1479. writel(~(1<<0), &regs->EOP);
  1480. dev->ep0state = EP0_STATUS;
  1481. }
  1482. }
  1483. if (stat & INT_ENDPOINT0) {
  1484. ACK(INT_ENDPOINT0);
  1485. ep = &dev->ep[0];
  1486. ep->irqs++;
  1487. pio_advance(ep);
  1488. }
  1489. /* dma completion */
  1490. if (stat & INT_MSTRDEND) { /* IN */
  1491. ACK(INT_MSTRDEND);
  1492. ep = &dev->ep[UDC_MSTRD_ENDPOINT];
  1493. ep->irqs++;
  1494. dma_advance(dev, ep);
  1495. }
  1496. if (stat & INT_MSTWREND) { /* OUT */
  1497. ACK(INT_MSTWREND);
  1498. ep = &dev->ep[UDC_MSTWR_ENDPOINT];
  1499. ep->irqs++;
  1500. dma_advance(dev, ep);
  1501. }
  1502. if (stat & INT_MSTWRTMOUT) { /* OUT */
  1503. ACK(INT_MSTWRTMOUT);
  1504. ep = &dev->ep[UDC_MSTWR_ENDPOINT];
  1505. ep->irqs++;
  1506. ERROR(dev, "%s write timeout ?\n", ep->ep.name);
  1507. // reset dma? then dma_advance()
  1508. }
  1509. /* pio */
  1510. for (i = 1; i < 4; i++) {
  1511. u32 tmp = INT_EPxDATASET(i);
  1512. if (!(stat & tmp))
  1513. continue;
  1514. ep = &dev->ep[i];
  1515. pio_advance(ep);
  1516. if (list_empty (&ep->queue))
  1517. pio_irq_disable(dev, regs, i);
  1518. stat &= ~tmp;
  1519. handled = 1;
  1520. ep->irqs++;
  1521. }
  1522. if (rescans--)
  1523. goto rescan;
  1524. done:
  1525. (void)readl(&regs->int_enable);
  1526. spin_unlock(&dev->lock);
  1527. if (stat)
  1528. DBG(dev, "unhandled irq status: %05x (%05x, %05x)\n", stat,
  1529. readl(&regs->int_status), dev->int_enable);
  1530. return IRQ_RETVAL(handled);
  1531. }
  1532. #undef ACK
  1533. /*-------------------------------------------------------------------------*/
  1534. static void gadget_release(struct device *_dev)
  1535. {
  1536. struct goku_udc *dev = dev_get_drvdata(_dev);
  1537. kfree(dev);
  1538. }
  1539. /* tear down the binding between this driver and the pci device */
  1540. static void goku_remove(struct pci_dev *pdev)
  1541. {
  1542. struct goku_udc *dev = pci_get_drvdata(pdev);
  1543. DBG(dev, "%s\n", __FUNCTION__);
  1544. /* start with the driver above us */
  1545. if (dev->driver) {
  1546. /* should have been done already by driver model core */
  1547. WARN(dev, "pci remove, driver '%s' is still registered\n",
  1548. dev->driver->driver.name);
  1549. usb_gadget_unregister_driver(dev->driver);
  1550. }
  1551. #ifdef CONFIG_USB_GADGET_DEBUG_FILES
  1552. remove_proc_entry(proc_node_name, NULL);
  1553. #endif
  1554. if (dev->regs)
  1555. udc_reset(dev);
  1556. if (dev->got_irq)
  1557. free_irq(pdev->irq, dev);
  1558. if (dev->regs)
  1559. iounmap(dev->regs);
  1560. if (dev->got_region)
  1561. release_mem_region(pci_resource_start (pdev, 0),
  1562. pci_resource_len (pdev, 0));
  1563. if (dev->enabled)
  1564. pci_disable_device(pdev);
  1565. device_unregister(&dev->gadget.dev);
  1566. pci_set_drvdata(pdev, NULL);
  1567. dev->regs = NULL;
  1568. the_controller = NULL;
  1569. INFO(dev, "unbind\n");
  1570. }
  1571. /* wrap this driver around the specified pci device, but
  1572. * don't respond over USB until a gadget driver binds to us.
  1573. */
  1574. static int goku_probe(struct pci_dev *pdev, const struct pci_device_id *id)
  1575. {
  1576. struct goku_udc *dev = NULL;
  1577. unsigned long resource, len;
  1578. void __iomem *base = NULL;
  1579. int retval;
  1580. char buf [8], *bufp;
  1581. /* if you want to support more than one controller in a system,
  1582. * usb_gadget_driver_{register,unregister}() must change.
  1583. */
  1584. if (the_controller) {
  1585. WARN(dev, "ignoring %s\n", pci_name(pdev));
  1586. return -EBUSY;
  1587. }
  1588. if (!pdev->irq) {
  1589. printk(KERN_ERR "Check PCI %s IRQ setup!\n", pci_name(pdev));
  1590. retval = -ENODEV;
  1591. goto done;
  1592. }
  1593. /* alloc, and start init */
  1594. dev = kmalloc (sizeof *dev, SLAB_KERNEL);
  1595. if (dev == NULL){
  1596. pr_debug("enomem %s\n", pci_name(pdev));
  1597. retval = -ENOMEM;
  1598. goto done;
  1599. }
  1600. memset(dev, 0, sizeof *dev);
  1601. spin_lock_init(&dev->lock);
  1602. dev->pdev = pdev;
  1603. dev->gadget.ops = &goku_ops;
  1604. /* the "gadget" abstracts/virtualizes the controller */
  1605. strcpy(dev->gadget.dev.bus_id, "gadget");
  1606. dev->gadget.dev.parent = &pdev->dev;
  1607. dev->gadget.dev.dma_mask = pdev->dev.dma_mask;
  1608. dev->gadget.dev.release = gadget_release;
  1609. dev->gadget.name = driver_name;
  1610. /* now all the pci goodies ... */
  1611. retval = pci_enable_device(pdev);
  1612. if (retval < 0) {
  1613. DBG(dev, "can't enable, %d\n", retval);
  1614. goto done;
  1615. }
  1616. dev->enabled = 1;
  1617. resource = pci_resource_start(pdev, 0);
  1618. len = pci_resource_len(pdev, 0);
  1619. if (!request_mem_region(resource, len, driver_name)) {
  1620. DBG(dev, "controller already in use\n");
  1621. retval = -EBUSY;
  1622. goto done;
  1623. }
  1624. dev->got_region = 1;
  1625. base = ioremap_nocache(resource, len);
  1626. if (base == NULL) {
  1627. DBG(dev, "can't map memory\n");
  1628. retval = -EFAULT;
  1629. goto done;
  1630. }
  1631. dev->regs = (struct goku_udc_regs __iomem *) base;
  1632. pci_set_drvdata(pdev, dev);
  1633. INFO(dev, "%s\n", driver_desc);
  1634. INFO(dev, "version: " DRIVER_VERSION " %s\n", dmastr());
  1635. #ifndef __sparc__
  1636. scnprintf(buf, sizeof buf, "%d", pdev->irq);
  1637. bufp = buf;
  1638. #else
  1639. bufp = __irq_itoa(pdev->irq);
  1640. #endif
  1641. INFO(dev, "irq %s, pci mem %p\n", bufp, base);
  1642. /* init to known state, then setup irqs */
  1643. udc_reset(dev);
  1644. udc_reinit (dev);
  1645. if (request_irq(pdev->irq, goku_irq, SA_SHIRQ/*|SA_SAMPLE_RANDOM*/,
  1646. driver_name, dev) != 0) {
  1647. DBG(dev, "request interrupt %s failed\n", bufp);
  1648. retval = -EBUSY;
  1649. goto done;
  1650. }
  1651. dev->got_irq = 1;
  1652. if (use_dma)
  1653. pci_set_master(pdev);
  1654. #ifdef CONFIG_USB_GADGET_DEBUG_FILES
  1655. create_proc_read_entry(proc_node_name, 0, NULL, udc_proc_read, dev);
  1656. #endif
  1657. /* done */
  1658. the_controller = dev;
  1659. device_register(&dev->gadget.dev);
  1660. return 0;
  1661. done:
  1662. if (dev)
  1663. goku_remove (pdev);
  1664. return retval;
  1665. }
  1666. /*-------------------------------------------------------------------------*/
  1667. static struct pci_device_id pci_ids [] = { {
  1668. .class = ((PCI_CLASS_SERIAL_USB << 8) | 0xfe),
  1669. .class_mask = ~0,
  1670. .vendor = 0x102f, /* Toshiba */
  1671. .device = 0x0107, /* this UDC */
  1672. .subvendor = PCI_ANY_ID,
  1673. .subdevice = PCI_ANY_ID,
  1674. }, { /* end: all zeroes */ }
  1675. };
  1676. MODULE_DEVICE_TABLE (pci, pci_ids);
  1677. static struct pci_driver goku_pci_driver = {
  1678. .name = (char *) driver_name,
  1679. .id_table = pci_ids,
  1680. .probe = goku_probe,
  1681. .remove = goku_remove,
  1682. /* FIXME add power management support */
  1683. };
  1684. static int __init init (void)
  1685. {
  1686. return pci_register_driver (&goku_pci_driver);
  1687. }
  1688. module_init (init);
  1689. static void __exit cleanup (void)
  1690. {
  1691. pci_unregister_driver (&goku_pci_driver);
  1692. }
  1693. module_exit (cleanup);