request.c 20 KB

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  1. /*
  2. * request.c
  3. *
  4. * Copyright (C) 2001 by Urban Widmark
  5. *
  6. * Please add a note about your changes to smbfs in the ChangeLog file.
  7. */
  8. #include <linux/types.h>
  9. #include <linux/fs.h>
  10. #include <linux/slab.h>
  11. #include <linux/net.h>
  12. #include <linux/smb_fs.h>
  13. #include <linux/smbno.h>
  14. #include <linux/smb_mount.h>
  15. #include "smb_debug.h"
  16. #include "request.h"
  17. #include "proto.h"
  18. /* #define SMB_SLAB_DEBUG (SLAB_RED_ZONE | SLAB_POISON) */
  19. #define SMB_SLAB_DEBUG 0
  20. #define ROUND_UP(x) (((x)+3) & ~3)
  21. /* cache for request structures */
  22. static struct kmem_cache *req_cachep;
  23. static int smb_request_send_req(struct smb_request *req);
  24. /*
  25. /proc/slabinfo:
  26. name, active, num, objsize, active_slabs, num_slaps, #pages
  27. */
  28. int smb_init_request_cache(void)
  29. {
  30. req_cachep = kmem_cache_create("smb_request",
  31. sizeof(struct smb_request), 0,
  32. SMB_SLAB_DEBUG | SLAB_HWCACHE_ALIGN,
  33. NULL, NULL);
  34. if (req_cachep == NULL)
  35. return -ENOMEM;
  36. return 0;
  37. }
  38. void smb_destroy_request_cache(void)
  39. {
  40. kmem_cache_destroy(req_cachep);
  41. }
  42. /*
  43. * Allocate and initialise a request structure
  44. */
  45. static struct smb_request *smb_do_alloc_request(struct smb_sb_info *server,
  46. int bufsize)
  47. {
  48. struct smb_request *req;
  49. unsigned char *buf = NULL;
  50. req = kmem_cache_zalloc(req_cachep, GFP_KERNEL);
  51. VERBOSE("allocating request: %p\n", req);
  52. if (!req)
  53. goto out;
  54. if (bufsize > 0) {
  55. buf = kmalloc(bufsize, GFP_NOFS);
  56. if (!buf) {
  57. kmem_cache_free(req_cachep, req);
  58. return NULL;
  59. }
  60. }
  61. req->rq_buffer = buf;
  62. req->rq_bufsize = bufsize;
  63. req->rq_server = server;
  64. init_waitqueue_head(&req->rq_wait);
  65. INIT_LIST_HEAD(&req->rq_queue);
  66. atomic_set(&req->rq_count, 1);
  67. out:
  68. return req;
  69. }
  70. struct smb_request *smb_alloc_request(struct smb_sb_info *server, int bufsize)
  71. {
  72. struct smb_request *req = NULL;
  73. for (;;) {
  74. atomic_inc(&server->nr_requests);
  75. if (atomic_read(&server->nr_requests) <= MAX_REQUEST_HARD) {
  76. req = smb_do_alloc_request(server, bufsize);
  77. if (req != NULL)
  78. break;
  79. }
  80. #if 0
  81. /*
  82. * Try to free up at least one request in order to stay
  83. * below the hard limit
  84. */
  85. if (nfs_try_to_free_pages(server))
  86. continue;
  87. if (signalled() && (server->flags & NFS_MOUNT_INTR))
  88. return ERR_PTR(-ERESTARTSYS);
  89. current->policy = SCHED_YIELD;
  90. schedule();
  91. #else
  92. /* FIXME: we want something like nfs does above, but that
  93. requires changes to all callers and can wait. */
  94. break;
  95. #endif
  96. }
  97. return req;
  98. }
  99. static void smb_free_request(struct smb_request *req)
  100. {
  101. atomic_dec(&req->rq_server->nr_requests);
  102. if (req->rq_buffer && !(req->rq_flags & SMB_REQ_STATIC))
  103. kfree(req->rq_buffer);
  104. kfree(req->rq_trans2buffer);
  105. kmem_cache_free(req_cachep, req);
  106. }
  107. /*
  108. * What prevents a rget to race with a rput? The count must never drop to zero
  109. * while it is in use. Only rput if it is ok that it is free'd.
  110. */
  111. static void smb_rget(struct smb_request *req)
  112. {
  113. atomic_inc(&req->rq_count);
  114. }
  115. void smb_rput(struct smb_request *req)
  116. {
  117. if (atomic_dec_and_test(&req->rq_count)) {
  118. list_del_init(&req->rq_queue);
  119. smb_free_request(req);
  120. }
  121. }
  122. /* setup to receive the data part of the SMB */
  123. static int smb_setup_bcc(struct smb_request *req)
  124. {
  125. int result = 0;
  126. req->rq_rlen = smb_len(req->rq_header) + 4 - req->rq_bytes_recvd;
  127. if (req->rq_rlen > req->rq_bufsize) {
  128. PARANOIA("Packet too large %d > %d\n",
  129. req->rq_rlen, req->rq_bufsize);
  130. return -ENOBUFS;
  131. }
  132. req->rq_iov[0].iov_base = req->rq_buffer;
  133. req->rq_iov[0].iov_len = req->rq_rlen;
  134. req->rq_iovlen = 1;
  135. return result;
  136. }
  137. /*
  138. * Prepare a "normal" request structure.
  139. */
  140. static int smb_setup_request(struct smb_request *req)
  141. {
  142. int len = smb_len(req->rq_header) + 4;
  143. req->rq_slen = len;
  144. /* if we expect a data part in the reply we set the iov's to read it */
  145. if (req->rq_resp_bcc)
  146. req->rq_setup_read = smb_setup_bcc;
  147. /* This tries to support re-using the same request */
  148. req->rq_bytes_sent = 0;
  149. req->rq_rcls = 0;
  150. req->rq_err = 0;
  151. req->rq_errno = 0;
  152. req->rq_fragment = 0;
  153. kfree(req->rq_trans2buffer);
  154. return 0;
  155. }
  156. /*
  157. * Prepare a transaction2 request structure
  158. */
  159. static int smb_setup_trans2request(struct smb_request *req)
  160. {
  161. struct smb_sb_info *server = req->rq_server;
  162. int mparam, mdata;
  163. static unsigned char padding[4];
  164. /* I know the following is very ugly, but I want to build the
  165. smb packet as efficiently as possible. */
  166. const int smb_parameters = 15;
  167. const int header = SMB_HEADER_LEN + 2 * smb_parameters + 2;
  168. const int oparam = ROUND_UP(header + 3);
  169. const int odata = ROUND_UP(oparam + req->rq_lparm);
  170. const int bcc = (req->rq_data ? odata + req->rq_ldata :
  171. oparam + req->rq_lparm) - header;
  172. if ((bcc + oparam) > server->opt.max_xmit)
  173. return -ENOMEM;
  174. smb_setup_header(req, SMBtrans2, smb_parameters, bcc);
  175. /*
  176. * max parameters + max data + max setup == bufsize to make NT4 happy
  177. * and not abort the transfer or split into multiple responses. It also
  178. * makes smbfs happy as handling packets larger than the buffer size
  179. * is extra work.
  180. *
  181. * OS/2 is probably going to hate me for this ...
  182. */
  183. mparam = SMB_TRANS2_MAX_PARAM;
  184. mdata = req->rq_bufsize - mparam;
  185. mdata = server->opt.max_xmit - mparam - 100;
  186. if (mdata < 1024) {
  187. mdata = 1024;
  188. mparam = 20;
  189. }
  190. #if 0
  191. /* NT/win2k has ~4k max_xmit, so with this we request more than it wants
  192. to return as one SMB. Useful for testing the fragmented trans2
  193. handling. */
  194. mdata = 8192;
  195. #endif
  196. WSET(req->rq_header, smb_tpscnt, req->rq_lparm);
  197. WSET(req->rq_header, smb_tdscnt, req->rq_ldata);
  198. WSET(req->rq_header, smb_mprcnt, mparam);
  199. WSET(req->rq_header, smb_mdrcnt, mdata);
  200. WSET(req->rq_header, smb_msrcnt, 0); /* max setup always 0 ? */
  201. WSET(req->rq_header, smb_flags, 0);
  202. DSET(req->rq_header, smb_timeout, 0);
  203. WSET(req->rq_header, smb_pscnt, req->rq_lparm);
  204. WSET(req->rq_header, smb_psoff, oparam - 4);
  205. WSET(req->rq_header, smb_dscnt, req->rq_ldata);
  206. WSET(req->rq_header, smb_dsoff, req->rq_data ? odata - 4 : 0);
  207. *(req->rq_header + smb_suwcnt) = 0x01; /* setup count */
  208. *(req->rq_header + smb_suwcnt + 1) = 0x00; /* reserved */
  209. WSET(req->rq_header, smb_setup0, req->rq_trans2_command);
  210. req->rq_iovlen = 2;
  211. req->rq_iov[0].iov_base = (void *) req->rq_header;
  212. req->rq_iov[0].iov_len = oparam;
  213. req->rq_iov[1].iov_base = (req->rq_parm==NULL) ? padding : req->rq_parm;
  214. req->rq_iov[1].iov_len = req->rq_lparm;
  215. req->rq_slen = oparam + req->rq_lparm;
  216. if (req->rq_data) {
  217. req->rq_iovlen += 2;
  218. req->rq_iov[2].iov_base = padding;
  219. req->rq_iov[2].iov_len = odata - oparam - req->rq_lparm;
  220. req->rq_iov[3].iov_base = req->rq_data;
  221. req->rq_iov[3].iov_len = req->rq_ldata;
  222. req->rq_slen = odata + req->rq_ldata;
  223. }
  224. /* always a data part for trans2 replies */
  225. req->rq_setup_read = smb_setup_bcc;
  226. return 0;
  227. }
  228. /*
  229. * Add a request and tell smbiod to process it
  230. */
  231. int smb_add_request(struct smb_request *req)
  232. {
  233. long timeleft;
  234. struct smb_sb_info *server = req->rq_server;
  235. int result = 0;
  236. smb_setup_request(req);
  237. if (req->rq_trans2_command) {
  238. if (req->rq_buffer == NULL) {
  239. PARANOIA("trans2 attempted without response buffer!\n");
  240. return -EIO;
  241. }
  242. result = smb_setup_trans2request(req);
  243. }
  244. if (result < 0)
  245. return result;
  246. #ifdef SMB_DEBUG_PACKET_SIZE
  247. add_xmit_stats(req);
  248. #endif
  249. /* add 'req' to the queue of requests */
  250. if (smb_lock_server_interruptible(server))
  251. return -EINTR;
  252. /*
  253. * Try to send the request as the process. If that fails we queue the
  254. * request and let smbiod send it later.
  255. */
  256. /* FIXME: each server has a number on the maximum number of parallel
  257. requests. 10, 50 or so. We should not allow more requests to be
  258. active. */
  259. if (server->mid > 0xf000)
  260. server->mid = 0;
  261. req->rq_mid = server->mid++;
  262. WSET(req->rq_header, smb_mid, req->rq_mid);
  263. result = 0;
  264. if (server->state == CONN_VALID) {
  265. if (list_empty(&server->xmitq))
  266. result = smb_request_send_req(req);
  267. if (result < 0) {
  268. /* Connection lost? */
  269. server->conn_error = result;
  270. server->state = CONN_INVALID;
  271. }
  272. }
  273. if (result != 1)
  274. list_add_tail(&req->rq_queue, &server->xmitq);
  275. smb_rget(req);
  276. if (server->state != CONN_VALID)
  277. smbiod_retry(server);
  278. smb_unlock_server(server);
  279. smbiod_wake_up();
  280. timeleft = wait_event_interruptible_timeout(req->rq_wait,
  281. req->rq_flags & SMB_REQ_RECEIVED, 30*HZ);
  282. if (!timeleft || signal_pending(current)) {
  283. /*
  284. * On timeout or on interrupt we want to try and remove the
  285. * request from the recvq/xmitq.
  286. * First check if the request is still part of a queue. (May
  287. * have been removed by some error condition)
  288. */
  289. smb_lock_server(server);
  290. if (!list_empty(&req->rq_queue)) {
  291. list_del_init(&req->rq_queue);
  292. smb_rput(req);
  293. }
  294. smb_unlock_server(server);
  295. }
  296. if (!timeleft) {
  297. PARANOIA("request [%p, mid=%d] timed out!\n",
  298. req, req->rq_mid);
  299. VERBOSE("smb_com: %02x\n", *(req->rq_header + smb_com));
  300. VERBOSE("smb_rcls: %02x\n", *(req->rq_header + smb_rcls));
  301. VERBOSE("smb_flg: %02x\n", *(req->rq_header + smb_flg));
  302. VERBOSE("smb_tid: %04x\n", WVAL(req->rq_header, smb_tid));
  303. VERBOSE("smb_pid: %04x\n", WVAL(req->rq_header, smb_pid));
  304. VERBOSE("smb_uid: %04x\n", WVAL(req->rq_header, smb_uid));
  305. VERBOSE("smb_mid: %04x\n", WVAL(req->rq_header, smb_mid));
  306. VERBOSE("smb_wct: %02x\n", *(req->rq_header + smb_wct));
  307. req->rq_rcls = ERRSRV;
  308. req->rq_err = ERRtimeout;
  309. /* Just in case it was "stuck" */
  310. smbiod_wake_up();
  311. }
  312. VERBOSE("woke up, rcls=%d\n", req->rq_rcls);
  313. if (req->rq_rcls != 0)
  314. req->rq_errno = smb_errno(req);
  315. if (signal_pending(current))
  316. req->rq_errno = -ERESTARTSYS;
  317. return req->rq_errno;
  318. }
  319. /*
  320. * Send a request and place it on the recvq if successfully sent.
  321. * Must be called with the server lock held.
  322. */
  323. static int smb_request_send_req(struct smb_request *req)
  324. {
  325. struct smb_sb_info *server = req->rq_server;
  326. int result;
  327. if (req->rq_bytes_sent == 0) {
  328. WSET(req->rq_header, smb_tid, server->opt.tid);
  329. WSET(req->rq_header, smb_pid, 1);
  330. WSET(req->rq_header, smb_uid, server->opt.server_uid);
  331. }
  332. result = smb_send_request(req);
  333. if (result < 0 && result != -EAGAIN)
  334. goto out;
  335. result = 0;
  336. if (!(req->rq_flags & SMB_REQ_TRANSMITTED))
  337. goto out;
  338. list_move_tail(&req->rq_queue, &server->recvq);
  339. result = 1;
  340. out:
  341. return result;
  342. }
  343. /*
  344. * Sends one request for this server. (smbiod)
  345. * Must be called with the server lock held.
  346. * Returns: <0 on error
  347. * 0 if no request could be completely sent
  348. * 1 if all data for one request was sent
  349. */
  350. int smb_request_send_server(struct smb_sb_info *server)
  351. {
  352. struct list_head *head;
  353. struct smb_request *req;
  354. int result;
  355. if (server->state != CONN_VALID)
  356. return 0;
  357. /* dequeue first request, if any */
  358. req = NULL;
  359. head = server->xmitq.next;
  360. if (head != &server->xmitq) {
  361. req = list_entry(head, struct smb_request, rq_queue);
  362. }
  363. if (!req)
  364. return 0;
  365. result = smb_request_send_req(req);
  366. if (result < 0) {
  367. server->conn_error = result;
  368. list_move(&req->rq_queue, &server->xmitq);
  369. result = -EIO;
  370. goto out;
  371. }
  372. out:
  373. return result;
  374. }
  375. /*
  376. * Try to find a request matching this "mid". Typically the first entry will
  377. * be the matching one.
  378. */
  379. static struct smb_request *find_request(struct smb_sb_info *server, int mid)
  380. {
  381. struct list_head *tmp;
  382. struct smb_request *req = NULL;
  383. list_for_each(tmp, &server->recvq) {
  384. req = list_entry(tmp, struct smb_request, rq_queue);
  385. if (req->rq_mid == mid) {
  386. break;
  387. }
  388. req = NULL;
  389. }
  390. if (!req) {
  391. VERBOSE("received reply with mid %d but no request!\n",
  392. WVAL(server->header, smb_mid));
  393. server->rstate = SMB_RECV_DROP;
  394. }
  395. return req;
  396. }
  397. /*
  398. * Called when we have read the smb header and believe this is a response.
  399. */
  400. static int smb_init_request(struct smb_sb_info *server, struct smb_request *req)
  401. {
  402. int hdrlen, wct;
  403. memcpy(req->rq_header, server->header, SMB_HEADER_LEN);
  404. wct = *(req->rq_header + smb_wct);
  405. if (wct > 20) {
  406. PARANOIA("wct too large, %d > 20\n", wct);
  407. server->rstate = SMB_RECV_DROP;
  408. return 0;
  409. }
  410. req->rq_resp_wct = wct;
  411. hdrlen = SMB_HEADER_LEN + wct*2 + 2;
  412. VERBOSE("header length: %d smb_wct: %2d\n", hdrlen, wct);
  413. req->rq_bytes_recvd = SMB_HEADER_LEN;
  414. req->rq_rlen = hdrlen;
  415. req->rq_iov[0].iov_base = req->rq_header;
  416. req->rq_iov[0].iov_len = hdrlen;
  417. req->rq_iovlen = 1;
  418. server->rstate = SMB_RECV_PARAM;
  419. #ifdef SMB_DEBUG_PACKET_SIZE
  420. add_recv_stats(smb_len(server->header));
  421. #endif
  422. return 0;
  423. }
  424. /*
  425. * Reads the SMB parameters
  426. */
  427. static int smb_recv_param(struct smb_sb_info *server, struct smb_request *req)
  428. {
  429. int result;
  430. result = smb_receive(server, req);
  431. if (result < 0)
  432. return result;
  433. if (req->rq_bytes_recvd < req->rq_rlen)
  434. return 0;
  435. VERBOSE("result: %d smb_bcc: %04x\n", result,
  436. WVAL(req->rq_header, SMB_HEADER_LEN +
  437. (*(req->rq_header + smb_wct) * 2)));
  438. result = 0;
  439. req->rq_iov[0].iov_base = NULL;
  440. req->rq_rlen = 0;
  441. if (req->rq_callback)
  442. req->rq_callback(req);
  443. else if (req->rq_setup_read)
  444. result = req->rq_setup_read(req);
  445. if (result < 0) {
  446. server->rstate = SMB_RECV_DROP;
  447. return result;
  448. }
  449. server->rstate = req->rq_rlen > 0 ? SMB_RECV_DATA : SMB_RECV_END;
  450. req->rq_bytes_recvd = 0; // recvd out of the iov
  451. VERBOSE("rlen: %d\n", req->rq_rlen);
  452. if (req->rq_rlen < 0) {
  453. PARANOIA("Parameters read beyond end of packet!\n");
  454. server->rstate = SMB_RECV_END;
  455. return -EIO;
  456. }
  457. return 0;
  458. }
  459. /*
  460. * Reads the SMB data
  461. */
  462. static int smb_recv_data(struct smb_sb_info *server, struct smb_request *req)
  463. {
  464. int result;
  465. result = smb_receive(server, req);
  466. if (result < 0)
  467. goto out;
  468. if (req->rq_bytes_recvd < req->rq_rlen)
  469. goto out;
  470. server->rstate = SMB_RECV_END;
  471. out:
  472. VERBOSE("result: %d\n", result);
  473. return result;
  474. }
  475. /*
  476. * Receive a transaction2 response
  477. * Return: 0 if the response has been fully read
  478. * 1 if there are further "fragments" to read
  479. * <0 if there is an error
  480. */
  481. static int smb_recv_trans2(struct smb_sb_info *server, struct smb_request *req)
  482. {
  483. unsigned char *inbuf;
  484. unsigned int parm_disp, parm_offset, parm_count, parm_tot;
  485. unsigned int data_disp, data_offset, data_count, data_tot;
  486. int hdrlen = SMB_HEADER_LEN + req->rq_resp_wct*2 - 2;
  487. VERBOSE("handling trans2\n");
  488. inbuf = req->rq_header;
  489. data_tot = WVAL(inbuf, smb_tdrcnt);
  490. parm_tot = WVAL(inbuf, smb_tprcnt);
  491. parm_disp = WVAL(inbuf, smb_prdisp);
  492. parm_offset = WVAL(inbuf, smb_proff);
  493. parm_count = WVAL(inbuf, smb_prcnt);
  494. data_disp = WVAL(inbuf, smb_drdisp);
  495. data_offset = WVAL(inbuf, smb_droff);
  496. data_count = WVAL(inbuf, smb_drcnt);
  497. /* Modify offset for the split header/buffer we use */
  498. if (data_count || data_offset) {
  499. if (unlikely(data_offset < hdrlen))
  500. goto out_bad_data;
  501. else
  502. data_offset -= hdrlen;
  503. }
  504. if (parm_count || parm_offset) {
  505. if (unlikely(parm_offset < hdrlen))
  506. goto out_bad_parm;
  507. else
  508. parm_offset -= hdrlen;
  509. }
  510. if (parm_count == parm_tot && data_count == data_tot) {
  511. /*
  512. * This packet has all the trans2 data.
  513. *
  514. * We setup the request so that this will be the common
  515. * case. It may be a server error to not return a
  516. * response that fits.
  517. */
  518. VERBOSE("single trans2 response "
  519. "dcnt=%u, pcnt=%u, doff=%u, poff=%u\n",
  520. data_count, parm_count,
  521. data_offset, parm_offset);
  522. req->rq_ldata = data_count;
  523. req->rq_lparm = parm_count;
  524. req->rq_data = req->rq_buffer + data_offset;
  525. req->rq_parm = req->rq_buffer + parm_offset;
  526. if (unlikely(parm_offset + parm_count > req->rq_rlen))
  527. goto out_bad_parm;
  528. if (unlikely(data_offset + data_count > req->rq_rlen))
  529. goto out_bad_data;
  530. return 0;
  531. }
  532. VERBOSE("multi trans2 response "
  533. "frag=%d, dcnt=%u, pcnt=%u, doff=%u, poff=%u\n",
  534. req->rq_fragment,
  535. data_count, parm_count,
  536. data_offset, parm_offset);
  537. if (!req->rq_fragment) {
  538. int buf_len;
  539. /* We got the first trans2 fragment */
  540. req->rq_fragment = 1;
  541. req->rq_total_data = data_tot;
  542. req->rq_total_parm = parm_tot;
  543. req->rq_ldata = 0;
  544. req->rq_lparm = 0;
  545. buf_len = data_tot + parm_tot;
  546. if (buf_len > SMB_MAX_PACKET_SIZE)
  547. goto out_too_long;
  548. req->rq_trans2bufsize = buf_len;
  549. req->rq_trans2buffer = kzalloc(buf_len, GFP_NOFS);
  550. if (!req->rq_trans2buffer)
  551. goto out_no_mem;
  552. req->rq_parm = req->rq_trans2buffer;
  553. req->rq_data = req->rq_trans2buffer + parm_tot;
  554. } else if (unlikely(req->rq_total_data < data_tot ||
  555. req->rq_total_parm < parm_tot))
  556. goto out_data_grew;
  557. if (unlikely(parm_disp + parm_count > req->rq_total_parm ||
  558. parm_offset + parm_count > req->rq_rlen))
  559. goto out_bad_parm;
  560. if (unlikely(data_disp + data_count > req->rq_total_data ||
  561. data_offset + data_count > req->rq_rlen))
  562. goto out_bad_data;
  563. inbuf = req->rq_buffer;
  564. memcpy(req->rq_parm + parm_disp, inbuf + parm_offset, parm_count);
  565. memcpy(req->rq_data + data_disp, inbuf + data_offset, data_count);
  566. req->rq_ldata += data_count;
  567. req->rq_lparm += parm_count;
  568. /*
  569. * Check whether we've received all of the data. Note that
  570. * we use the packet totals -- total lengths might shrink!
  571. */
  572. if (req->rq_ldata >= data_tot && req->rq_lparm >= parm_tot) {
  573. req->rq_ldata = data_tot;
  574. req->rq_lparm = parm_tot;
  575. return 0;
  576. }
  577. return 1;
  578. out_too_long:
  579. printk(KERN_ERR "smb_trans2: data/param too long, data=%u, parm=%u\n",
  580. data_tot, parm_tot);
  581. goto out_EIO;
  582. out_no_mem:
  583. printk(KERN_ERR "smb_trans2: couldn't allocate data area of %d bytes\n",
  584. req->rq_trans2bufsize);
  585. req->rq_errno = -ENOMEM;
  586. goto out;
  587. out_data_grew:
  588. printk(KERN_ERR "smb_trans2: data/params grew!\n");
  589. goto out_EIO;
  590. out_bad_parm:
  591. printk(KERN_ERR "smb_trans2: invalid parms, disp=%u, cnt=%u, tot=%u, ofs=%u\n",
  592. parm_disp, parm_count, parm_tot, parm_offset);
  593. goto out_EIO;
  594. out_bad_data:
  595. printk(KERN_ERR "smb_trans2: invalid data, disp=%u, cnt=%u, tot=%u, ofs=%u\n",
  596. data_disp, data_count, data_tot, data_offset);
  597. out_EIO:
  598. req->rq_errno = -EIO;
  599. out:
  600. return req->rq_errno;
  601. }
  602. /*
  603. * State machine for receiving responses. We handle the fact that we can't
  604. * read the full response in one try by having states telling us how much we
  605. * have read.
  606. *
  607. * Must be called with the server lock held (only called from smbiod).
  608. *
  609. * Return: <0 on error
  610. */
  611. int smb_request_recv(struct smb_sb_info *server)
  612. {
  613. struct smb_request *req = NULL;
  614. int result = 0;
  615. if (smb_recv_available(server) <= 0)
  616. return 0;
  617. VERBOSE("state: %d\n", server->rstate);
  618. switch (server->rstate) {
  619. case SMB_RECV_DROP:
  620. result = smb_receive_drop(server);
  621. if (result < 0)
  622. break;
  623. if (server->rstate == SMB_RECV_DROP)
  624. break;
  625. server->rstate = SMB_RECV_START;
  626. /* fallthrough */
  627. case SMB_RECV_START:
  628. server->smb_read = 0;
  629. server->rstate = SMB_RECV_HEADER;
  630. /* fallthrough */
  631. case SMB_RECV_HEADER:
  632. result = smb_receive_header(server);
  633. if (result < 0)
  634. break;
  635. if (server->rstate == SMB_RECV_HEADER)
  636. break;
  637. if (! (*(server->header + smb_flg) & SMB_FLAGS_REPLY) ) {
  638. server->rstate = SMB_RECV_REQUEST;
  639. break;
  640. }
  641. if (server->rstate != SMB_RECV_HCOMPLETE)
  642. break;
  643. /* fallthrough */
  644. case SMB_RECV_HCOMPLETE:
  645. req = find_request(server, WVAL(server->header, smb_mid));
  646. if (!req)
  647. break;
  648. smb_init_request(server, req);
  649. req->rq_rcls = *(req->rq_header + smb_rcls);
  650. req->rq_err = WVAL(req->rq_header, smb_err);
  651. if (server->rstate != SMB_RECV_PARAM)
  652. break;
  653. /* fallthrough */
  654. case SMB_RECV_PARAM:
  655. if (!req)
  656. req = find_request(server,WVAL(server->header,smb_mid));
  657. if (!req)
  658. break;
  659. result = smb_recv_param(server, req);
  660. if (result < 0)
  661. break;
  662. if (server->rstate != SMB_RECV_DATA)
  663. break;
  664. /* fallthrough */
  665. case SMB_RECV_DATA:
  666. if (!req)
  667. req = find_request(server,WVAL(server->header,smb_mid));
  668. if (!req)
  669. break;
  670. result = smb_recv_data(server, req);
  671. if (result < 0)
  672. break;
  673. break;
  674. /* We should never be called with any of these states */
  675. case SMB_RECV_END:
  676. case SMB_RECV_REQUEST:
  677. BUG();
  678. }
  679. if (result < 0) {
  680. /* We saw an error */
  681. return result;
  682. }
  683. if (server->rstate != SMB_RECV_END)
  684. return 0;
  685. result = 0;
  686. if (req->rq_trans2_command && req->rq_rcls == SUCCESS)
  687. result = smb_recv_trans2(server, req);
  688. /*
  689. * Response completely read. Drop any extra bytes sent by the server.
  690. * (Yes, servers sometimes add extra bytes to responses)
  691. */
  692. VERBOSE("smb_len: %d smb_read: %d\n",
  693. server->smb_len, server->smb_read);
  694. if (server->smb_read < server->smb_len)
  695. smb_receive_drop(server);
  696. server->rstate = SMB_RECV_START;
  697. if (!result) {
  698. list_del_init(&req->rq_queue);
  699. req->rq_flags |= SMB_REQ_RECEIVED;
  700. smb_rput(req);
  701. wake_up_interruptible(&req->rq_wait);
  702. }
  703. return 0;
  704. }