uhci-debug.c 13 KB

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  1. /*
  2. * UHCI-specific debugging code. Invaluable when something
  3. * goes wrong, but don't get in my face.
  4. *
  5. * Kernel visible pointers are surrounded in []s and bus
  6. * visible pointers are surrounded in ()s
  7. *
  8. * (C) Copyright 1999 Linus Torvalds
  9. * (C) Copyright 1999-2001 Johannes Erdfelt
  10. */
  11. #include <linux/kernel.h>
  12. #include <linux/debugfs.h>
  13. #include <linux/smp_lock.h>
  14. #include <asm/io.h>
  15. #include "uhci-hcd.h"
  16. #define uhci_debug_operations (* (const struct file_operations *) NULL)
  17. static struct dentry *uhci_debugfs_root;
  18. #ifdef DEBUG
  19. /* Handle REALLY large printks so we don't overflow buffers */
  20. static void lprintk(char *buf)
  21. {
  22. char *p;
  23. /* Just write one line at a time */
  24. while (buf) {
  25. p = strchr(buf, '\n');
  26. if (p)
  27. *p = 0;
  28. printk(KERN_DEBUG "%s\n", buf);
  29. buf = p;
  30. if (buf)
  31. buf++;
  32. }
  33. }
  34. static int uhci_show_td(struct uhci_td *td, char *buf, int len, int space)
  35. {
  36. char *out = buf;
  37. char *spid;
  38. u32 status, token;
  39. /* Try to make sure there's enough memory */
  40. if (len < 160)
  41. return 0;
  42. status = td_status(td);
  43. out += sprintf(out, "%*s[%p] link (%08x) ", space, "", td, le32_to_cpu(td->link));
  44. out += sprintf(out, "e%d %s%s%s%s%s%s%s%s%s%sLength=%x ",
  45. ((status >> 27) & 3),
  46. (status & TD_CTRL_SPD) ? "SPD " : "",
  47. (status & TD_CTRL_LS) ? "LS " : "",
  48. (status & TD_CTRL_IOC) ? "IOC " : "",
  49. (status & TD_CTRL_ACTIVE) ? "Active " : "",
  50. (status & TD_CTRL_STALLED) ? "Stalled " : "",
  51. (status & TD_CTRL_DBUFERR) ? "DataBufErr " : "",
  52. (status & TD_CTRL_BABBLE) ? "Babble " : "",
  53. (status & TD_CTRL_NAK) ? "NAK " : "",
  54. (status & TD_CTRL_CRCTIMEO) ? "CRC/Timeo " : "",
  55. (status & TD_CTRL_BITSTUFF) ? "BitStuff " : "",
  56. status & 0x7ff);
  57. token = td_token(td);
  58. switch (uhci_packetid(token)) {
  59. case USB_PID_SETUP:
  60. spid = "SETUP";
  61. break;
  62. case USB_PID_OUT:
  63. spid = "OUT";
  64. break;
  65. case USB_PID_IN:
  66. spid = "IN";
  67. break;
  68. default:
  69. spid = "?";
  70. break;
  71. }
  72. out += sprintf(out, "MaxLen=%x DT%d EndPt=%x Dev=%x, PID=%x(%s) ",
  73. token >> 21,
  74. ((token >> 19) & 1),
  75. (token >> 15) & 15,
  76. (token >> 8) & 127,
  77. (token & 0xff),
  78. spid);
  79. out += sprintf(out, "(buf=%08x)\n", le32_to_cpu(td->buffer));
  80. return out - buf;
  81. }
  82. static int uhci_show_urbp(struct urb_priv *urbp, char *buf, int len, int space)
  83. {
  84. char *out = buf;
  85. struct uhci_td *td;
  86. int i, nactive, ninactive;
  87. char *ptype;
  88. if (len < 200)
  89. return 0;
  90. out += sprintf(out, "urb_priv [%p] ", urbp);
  91. out += sprintf(out, "urb [%p] ", urbp->urb);
  92. out += sprintf(out, "qh [%p] ", urbp->qh);
  93. out += sprintf(out, "Dev=%d ", usb_pipedevice(urbp->urb->pipe));
  94. out += sprintf(out, "EP=%x(%s) ", usb_pipeendpoint(urbp->urb->pipe),
  95. (usb_pipein(urbp->urb->pipe) ? "IN" : "OUT"));
  96. switch (usb_pipetype(urbp->urb->pipe)) {
  97. case PIPE_ISOCHRONOUS: ptype = "ISO"; break;
  98. case PIPE_INTERRUPT: ptype = "INT"; break;
  99. case PIPE_BULK: ptype = "BLK"; break;
  100. default:
  101. case PIPE_CONTROL: ptype = "CTL"; break;
  102. }
  103. out += sprintf(out, "%s%s", ptype, (urbp->fsbr ? " FSBR" : ""));
  104. out += sprintf(out, " Actlen=%d", urbp->urb->actual_length);
  105. if (urbp->urb->status != -EINPROGRESS)
  106. out += sprintf(out, " Status=%d", urbp->urb->status);
  107. out += sprintf(out, "\n");
  108. i = nactive = ninactive = 0;
  109. list_for_each_entry(td, &urbp->td_list, list) {
  110. if (urbp->qh->type != USB_ENDPOINT_XFER_ISOC &&
  111. (++i <= 10 || debug > 2)) {
  112. out += sprintf(out, "%*s%d: ", space + 2, "", i);
  113. out += uhci_show_td(td, out, len - (out - buf), 0);
  114. } else {
  115. if (td_status(td) & TD_CTRL_ACTIVE)
  116. ++nactive;
  117. else
  118. ++ninactive;
  119. }
  120. }
  121. if (nactive + ninactive > 0)
  122. out += sprintf(out, "%*s[skipped %d inactive and %d active "
  123. "TDs]\n",
  124. space, "", ninactive, nactive);
  125. return out - buf;
  126. }
  127. static int uhci_show_qh(struct uhci_qh *qh, char *buf, int len, int space)
  128. {
  129. char *out = buf;
  130. int i, nurbs;
  131. __le32 element = qh_element(qh);
  132. char *qtype;
  133. /* Try to make sure there's enough memory */
  134. if (len < 80 * 7)
  135. return 0;
  136. switch (qh->type) {
  137. case USB_ENDPOINT_XFER_ISOC: qtype = "ISO"; break;
  138. case USB_ENDPOINT_XFER_INT: qtype = "INT"; break;
  139. case USB_ENDPOINT_XFER_BULK: qtype = "BLK"; break;
  140. case USB_ENDPOINT_XFER_CONTROL: qtype = "CTL"; break;
  141. default: qtype = "Skel" ; break;
  142. }
  143. out += sprintf(out, "%*s[%p] %s QH link (%08x) element (%08x)\n",
  144. space, "", qh, qtype,
  145. le32_to_cpu(qh->link), le32_to_cpu(element));
  146. if (qh->type == USB_ENDPOINT_XFER_ISOC)
  147. out += sprintf(out, "%*s period %d frame %x desc [%p]\n",
  148. space, "", qh->period, qh->iso_frame,
  149. qh->iso_packet_desc);
  150. if (element & UHCI_PTR_QH)
  151. out += sprintf(out, "%*s Element points to QH (bug?)\n", space, "");
  152. if (element & UHCI_PTR_DEPTH)
  153. out += sprintf(out, "%*s Depth traverse\n", space, "");
  154. if (element & cpu_to_le32(8))
  155. out += sprintf(out, "%*s Bit 3 set (bug?)\n", space, "");
  156. if (!(element & ~(UHCI_PTR_QH | UHCI_PTR_DEPTH)))
  157. out += sprintf(out, "%*s Element is NULL (bug?)\n", space, "");
  158. if (list_empty(&qh->queue)) {
  159. out += sprintf(out, "%*s queue is empty\n", space, "");
  160. } else {
  161. struct urb_priv *urbp = list_entry(qh->queue.next,
  162. struct urb_priv, node);
  163. struct uhci_td *td = list_entry(urbp->td_list.next,
  164. struct uhci_td, list);
  165. if (cpu_to_le32(td->dma_handle) != (element & ~UHCI_PTR_BITS))
  166. out += sprintf(out, "%*s Element != First TD\n",
  167. space, "");
  168. i = nurbs = 0;
  169. list_for_each_entry(urbp, &qh->queue, node) {
  170. if (++i <= 10)
  171. out += uhci_show_urbp(urbp, out,
  172. len - (out - buf), space + 2);
  173. else
  174. ++nurbs;
  175. }
  176. if (nurbs > 0)
  177. out += sprintf(out, "%*s Skipped %d URBs\n",
  178. space, "", nurbs);
  179. }
  180. if (qh->udev) {
  181. out += sprintf(out, "%*s Dummy TD\n", space, "");
  182. out += uhci_show_td(qh->dummy_td, out, len - (out - buf), 0);
  183. }
  184. return out - buf;
  185. }
  186. static const char * const qh_names[] = {
  187. "skel_unlink_qh", "skel_iso_qh",
  188. "skel_int128_qh", "skel_int64_qh",
  189. "skel_int32_qh", "skel_int16_qh",
  190. "skel_int8_qh", "skel_int4_qh",
  191. "skel_int2_qh", "skel_int1_qh",
  192. "skel_ls_control_qh", "skel_fs_control_qh",
  193. "skel_bulk_qh", "skel_term_qh"
  194. };
  195. static int uhci_show_sc(int port, unsigned short status, char *buf, int len)
  196. {
  197. char *out = buf;
  198. /* Try to make sure there's enough memory */
  199. if (len < 160)
  200. return 0;
  201. out += sprintf(out, " stat%d = %04x %s%s%s%s%s%s%s%s%s%s\n",
  202. port,
  203. status,
  204. (status & USBPORTSC_SUSP) ? " Suspend" : "",
  205. (status & USBPORTSC_OCC) ? " OverCurrentChange" : "",
  206. (status & USBPORTSC_OC) ? " OverCurrent" : "",
  207. (status & USBPORTSC_PR) ? " Reset" : "",
  208. (status & USBPORTSC_LSDA) ? " LowSpeed" : "",
  209. (status & USBPORTSC_RD) ? " ResumeDetect" : "",
  210. (status & USBPORTSC_PEC) ? " EnableChange" : "",
  211. (status & USBPORTSC_PE) ? " Enabled" : "",
  212. (status & USBPORTSC_CSC) ? " ConnectChange" : "",
  213. (status & USBPORTSC_CCS) ? " Connected" : "");
  214. return out - buf;
  215. }
  216. static int uhci_show_root_hub_state(struct uhci_hcd *uhci, char *buf, int len)
  217. {
  218. char *out = buf;
  219. char *rh_state;
  220. /* Try to make sure there's enough memory */
  221. if (len < 60)
  222. return 0;
  223. switch (uhci->rh_state) {
  224. case UHCI_RH_RESET:
  225. rh_state = "reset"; break;
  226. case UHCI_RH_SUSPENDED:
  227. rh_state = "suspended"; break;
  228. case UHCI_RH_AUTO_STOPPED:
  229. rh_state = "auto-stopped"; break;
  230. case UHCI_RH_RESUMING:
  231. rh_state = "resuming"; break;
  232. case UHCI_RH_SUSPENDING:
  233. rh_state = "suspending"; break;
  234. case UHCI_RH_RUNNING:
  235. rh_state = "running"; break;
  236. case UHCI_RH_RUNNING_NODEVS:
  237. rh_state = "running, no devs"; break;
  238. default:
  239. rh_state = "?"; break;
  240. }
  241. out += sprintf(out, "Root-hub state: %s FSBR: %d\n",
  242. rh_state, uhci->fsbr_is_on);
  243. return out - buf;
  244. }
  245. static int uhci_show_status(struct uhci_hcd *uhci, char *buf, int len)
  246. {
  247. char *out = buf;
  248. unsigned long io_addr = uhci->io_addr;
  249. unsigned short usbcmd, usbstat, usbint, usbfrnum;
  250. unsigned int flbaseadd;
  251. unsigned char sof;
  252. unsigned short portsc1, portsc2;
  253. /* Try to make sure there's enough memory */
  254. if (len < 80 * 9)
  255. return 0;
  256. usbcmd = inw(io_addr + 0);
  257. usbstat = inw(io_addr + 2);
  258. usbint = inw(io_addr + 4);
  259. usbfrnum = inw(io_addr + 6);
  260. flbaseadd = inl(io_addr + 8);
  261. sof = inb(io_addr + 12);
  262. portsc1 = inw(io_addr + 16);
  263. portsc2 = inw(io_addr + 18);
  264. out += sprintf(out, " usbcmd = %04x %s%s%s%s%s%s%s%s\n",
  265. usbcmd,
  266. (usbcmd & USBCMD_MAXP) ? "Maxp64 " : "Maxp32 ",
  267. (usbcmd & USBCMD_CF) ? "CF " : "",
  268. (usbcmd & USBCMD_SWDBG) ? "SWDBG " : "",
  269. (usbcmd & USBCMD_FGR) ? "FGR " : "",
  270. (usbcmd & USBCMD_EGSM) ? "EGSM " : "",
  271. (usbcmd & USBCMD_GRESET) ? "GRESET " : "",
  272. (usbcmd & USBCMD_HCRESET) ? "HCRESET " : "",
  273. (usbcmd & USBCMD_RS) ? "RS " : "");
  274. out += sprintf(out, " usbstat = %04x %s%s%s%s%s%s\n",
  275. usbstat,
  276. (usbstat & USBSTS_HCH) ? "HCHalted " : "",
  277. (usbstat & USBSTS_HCPE) ? "HostControllerProcessError " : "",
  278. (usbstat & USBSTS_HSE) ? "HostSystemError " : "",
  279. (usbstat & USBSTS_RD) ? "ResumeDetect " : "",
  280. (usbstat & USBSTS_ERROR) ? "USBError " : "",
  281. (usbstat & USBSTS_USBINT) ? "USBINT " : "");
  282. out += sprintf(out, " usbint = %04x\n", usbint);
  283. out += sprintf(out, " usbfrnum = (%d)%03x\n", (usbfrnum >> 10) & 1,
  284. 0xfff & (4*(unsigned int)usbfrnum));
  285. out += sprintf(out, " flbaseadd = %08x\n", flbaseadd);
  286. out += sprintf(out, " sof = %02x\n", sof);
  287. out += uhci_show_sc(1, portsc1, out, len - (out - buf));
  288. out += uhci_show_sc(2, portsc2, out, len - (out - buf));
  289. out += sprintf(out, "Most recent frame: %x (%d) "
  290. "Last ISO frame: %x (%d)\n",
  291. uhci->frame_number, uhci->frame_number & 1023,
  292. uhci->last_iso_frame, uhci->last_iso_frame & 1023);
  293. return out - buf;
  294. }
  295. static int uhci_sprint_schedule(struct uhci_hcd *uhci, char *buf, int len)
  296. {
  297. char *out = buf;
  298. int i, j;
  299. struct uhci_qh *qh;
  300. struct uhci_td *td;
  301. struct list_head *tmp, *head;
  302. out += uhci_show_root_hub_state(uhci, out, len - (out - buf));
  303. out += sprintf(out, "HC status\n");
  304. out += uhci_show_status(uhci, out, len - (out - buf));
  305. if (debug <= 1)
  306. return out - buf;
  307. out += sprintf(out, "Frame List\n");
  308. for (i = 0; i < UHCI_NUMFRAMES; ++i) {
  309. td = uhci->frame_cpu[i];
  310. if (!td)
  311. continue;
  312. out += sprintf(out, "- Frame %d\n", i); \
  313. if (td->dma_handle != (dma_addr_t)uhci->frame[i])
  314. out += sprintf(out, " frame list does not match td->dma_handle!\n");
  315. head = &td->fl_list;
  316. tmp = head;
  317. do {
  318. td = list_entry(tmp, struct uhci_td, fl_list);
  319. tmp = tmp->next;
  320. out += uhci_show_td(td, out, len - (out - buf), 4);
  321. } while (tmp != head);
  322. }
  323. out += sprintf(out, "Skeleton QHs\n");
  324. for (i = 0; i < UHCI_NUM_SKELQH; ++i) {
  325. int cnt = 0;
  326. qh = uhci->skelqh[i];
  327. out += sprintf(out, "- %s\n", qh_names[i]); \
  328. out += uhci_show_qh(qh, out, len - (out - buf), 4);
  329. /* Last QH is the Terminating QH, it's different */
  330. if (i == UHCI_NUM_SKELQH - 1) {
  331. if (qh->link != UHCI_PTR_TERM)
  332. out += sprintf(out, " bandwidth reclamation on!\n");
  333. if (qh_element(qh) != cpu_to_le32(uhci->term_td->dma_handle))
  334. out += sprintf(out, " skel_term_qh element is not set to term_td!\n");
  335. continue;
  336. }
  337. j = (i < 9) ? 9 : i+1; /* Next skeleton */
  338. head = &qh->node;
  339. tmp = head->next;
  340. while (tmp != head) {
  341. qh = list_entry(tmp, struct uhci_qh, node);
  342. tmp = tmp->next;
  343. if (++cnt <= 10)
  344. out += uhci_show_qh(qh, out,
  345. len - (out - buf), 4);
  346. }
  347. if ((cnt -= 10) > 0)
  348. out += sprintf(out, " Skipped %d QHs\n", cnt);
  349. if (i > 1 && i < UHCI_NUM_SKELQH - 1) {
  350. if (qh->link !=
  351. (cpu_to_le32(uhci->skelqh[j]->dma_handle) | UHCI_PTR_QH))
  352. out += sprintf(out, " last QH not linked to next skeleton!\n");
  353. }
  354. }
  355. return out - buf;
  356. }
  357. #ifdef CONFIG_DEBUG_FS
  358. #define MAX_OUTPUT (64 * 1024)
  359. struct uhci_debug {
  360. int size;
  361. char *data;
  362. };
  363. static int uhci_debug_open(struct inode *inode, struct file *file)
  364. {
  365. struct uhci_hcd *uhci = inode->i_private;
  366. struct uhci_debug *up;
  367. int ret = -ENOMEM;
  368. unsigned long flags;
  369. lock_kernel();
  370. up = kmalloc(sizeof(*up), GFP_KERNEL);
  371. if (!up)
  372. goto out;
  373. up->data = kmalloc(MAX_OUTPUT, GFP_KERNEL);
  374. if (!up->data) {
  375. kfree(up);
  376. goto out;
  377. }
  378. up->size = 0;
  379. spin_lock_irqsave(&uhci->lock, flags);
  380. if (uhci->is_initialized)
  381. up->size = uhci_sprint_schedule(uhci, up->data, MAX_OUTPUT);
  382. spin_unlock_irqrestore(&uhci->lock, flags);
  383. file->private_data = up;
  384. ret = 0;
  385. out:
  386. unlock_kernel();
  387. return ret;
  388. }
  389. static loff_t uhci_debug_lseek(struct file *file, loff_t off, int whence)
  390. {
  391. struct uhci_debug *up;
  392. loff_t new = -1;
  393. lock_kernel();
  394. up = file->private_data;
  395. switch (whence) {
  396. case 0:
  397. new = off;
  398. break;
  399. case 1:
  400. new = file->f_pos + off;
  401. break;
  402. }
  403. if (new < 0 || new > up->size) {
  404. unlock_kernel();
  405. return -EINVAL;
  406. }
  407. unlock_kernel();
  408. return (file->f_pos = new);
  409. }
  410. static ssize_t uhci_debug_read(struct file *file, char __user *buf,
  411. size_t nbytes, loff_t *ppos)
  412. {
  413. struct uhci_debug *up = file->private_data;
  414. return simple_read_from_buffer(buf, nbytes, ppos, up->data, up->size);
  415. }
  416. static int uhci_debug_release(struct inode *inode, struct file *file)
  417. {
  418. struct uhci_debug *up = file->private_data;
  419. kfree(up->data);
  420. kfree(up);
  421. return 0;
  422. }
  423. #undef uhci_debug_operations
  424. static const struct file_operations uhci_debug_operations = {
  425. .owner = THIS_MODULE,
  426. .open = uhci_debug_open,
  427. .llseek = uhci_debug_lseek,
  428. .read = uhci_debug_read,
  429. .release = uhci_debug_release,
  430. };
  431. #endif /* CONFIG_DEBUG_FS */
  432. #else /* DEBUG */
  433. static inline void lprintk(char *buf)
  434. {}
  435. static inline int uhci_show_qh(struct uhci_qh *qh, char *buf,
  436. int len, int space)
  437. {
  438. return 0;
  439. }
  440. static inline int uhci_sprint_schedule(struct uhci_hcd *uhci,
  441. char *buf, int len)
  442. {
  443. return 0;
  444. }
  445. #endif