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1 /*
2  *   fs/cifs/misc.c
3  *
4  *   Copyright (C) International Business Machines  Corp., 2002,2008
5  *   Author(s): Steve French (sfrench@us.ibm.com)
6  *
7  *   This library is free software; you can redistribute it and/or modify
8  *   it under the terms of the GNU Lesser General Public License as published
9  *   by the Free Software Foundation; either version 2.1 of the License, or
10  *   (at your option) any later version.
11  *
12  *   This library is distributed in the hope that it will be useful,
13  *   but WITHOUT ANY WARRANTY; without even the implied warranty of
14  *   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See
15  *   the GNU Lesser General Public License for more details.
16  *
17  *   You should have received a copy of the GNU Lesser General Public License
18  *   along with this library; if not, write to the Free Software
19  *   Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
20  */
21 
22 #include <linux/slab.h>
23 #include <linux/ctype.h>
24 #include <linux/mempool.h>
25 #include <linux/vmalloc.h>
26 #include "cifspdu.h"
27 #include "cifsglob.h"
28 #include "cifsproto.h"
29 #include "cifs_debug.h"
30 #include "smberr.h"
31 #include "nterr.h"
32 #include "cifs_unicode.h"
33 #include "smb2pdu.h"
34 
35 extern mempool_t *cifs_sm_req_poolp;
36 extern mempool_t *cifs_req_poolp;
37 
38 /* The xid serves as a useful identifier for each incoming vfs request,
39    in a similar way to the mid which is useful to track each sent smb,
40    and CurrentXid can also provide a running counter (although it
41    will eventually wrap past zero) of the total vfs operations handled
42    since the cifs fs was mounted */
43 
44 unsigned int
_get_xid(void)45 _get_xid(void)
46 {
47 	unsigned int xid;
48 
49 	spin_lock(&GlobalMid_Lock);
50 	GlobalTotalActiveXid++;
51 
52 	/* keep high water mark for number of simultaneous ops in filesystem */
53 	if (GlobalTotalActiveXid > GlobalMaxActiveXid)
54 		GlobalMaxActiveXid = GlobalTotalActiveXid;
55 	if (GlobalTotalActiveXid > 65000)
56 		cifs_dbg(FYI, "warning: more than 65000 requests active\n");
57 	xid = GlobalCurrentXid++;
58 	spin_unlock(&GlobalMid_Lock);
59 	return xid;
60 }
61 
62 void
_free_xid(unsigned int xid)63 _free_xid(unsigned int xid)
64 {
65 	spin_lock(&GlobalMid_Lock);
66 	/* if (GlobalTotalActiveXid == 0)
67 		BUG(); */
68 	GlobalTotalActiveXid--;
69 	spin_unlock(&GlobalMid_Lock);
70 }
71 
72 struct cifs_ses *
sesInfoAlloc(void)73 sesInfoAlloc(void)
74 {
75 	struct cifs_ses *ret_buf;
76 
77 	ret_buf = kzalloc(sizeof(struct cifs_ses), GFP_KERNEL);
78 	if (ret_buf) {
79 		atomic_inc(&sesInfoAllocCount);
80 		ret_buf->status = CifsNew;
81 		++ret_buf->ses_count;
82 		INIT_LIST_HEAD(&ret_buf->smb_ses_list);
83 		INIT_LIST_HEAD(&ret_buf->tcon_list);
84 		mutex_init(&ret_buf->session_mutex);
85 	}
86 	return ret_buf;
87 }
88 
89 void
sesInfoFree(struct cifs_ses * buf_to_free)90 sesInfoFree(struct cifs_ses *buf_to_free)
91 {
92 	if (buf_to_free == NULL) {
93 		cifs_dbg(FYI, "Null buffer passed to sesInfoFree\n");
94 		return;
95 	}
96 
97 	atomic_dec(&sesInfoAllocCount);
98 	kfree(buf_to_free->serverOS);
99 	kfree(buf_to_free->serverDomain);
100 	kfree(buf_to_free->serverNOS);
101 	kzfree(buf_to_free->password);
102 	kfree(buf_to_free->user_name);
103 	kfree(buf_to_free->domainName);
104 	kzfree(buf_to_free->auth_key.response);
105 	kzfree(buf_to_free);
106 }
107 
108 struct cifs_tcon *
tconInfoAlloc(void)109 tconInfoAlloc(void)
110 {
111 	struct cifs_tcon *ret_buf;
112 	ret_buf = kzalloc(sizeof(struct cifs_tcon), GFP_KERNEL);
113 	if (ret_buf) {
114 		atomic_inc(&tconInfoAllocCount);
115 		ret_buf->tidStatus = CifsNew;
116 		++ret_buf->tc_count;
117 		INIT_LIST_HEAD(&ret_buf->openFileList);
118 		INIT_LIST_HEAD(&ret_buf->tcon_list);
119 		spin_lock_init(&ret_buf->open_file_lock);
120 #ifdef CONFIG_CIFS_STATS
121 		spin_lock_init(&ret_buf->stat_lock);
122 #endif
123 	}
124 	return ret_buf;
125 }
126 
127 void
tconInfoFree(struct cifs_tcon * buf_to_free)128 tconInfoFree(struct cifs_tcon *buf_to_free)
129 {
130 	if (buf_to_free == NULL) {
131 		cifs_dbg(FYI, "Null buffer passed to tconInfoFree\n");
132 		return;
133 	}
134 	atomic_dec(&tconInfoAllocCount);
135 	kfree(buf_to_free->nativeFileSystem);
136 	kzfree(buf_to_free->password);
137 	kfree(buf_to_free);
138 }
139 
140 struct smb_hdr *
cifs_buf_get(void)141 cifs_buf_get(void)
142 {
143 	struct smb_hdr *ret_buf = NULL;
144 	/*
145 	 * SMB2 header is bigger than CIFS one - no problems to clean some
146 	 * more bytes for CIFS.
147 	 */
148 	size_t buf_size = sizeof(struct smb2_hdr);
149 
150 	/*
151 	 * We could use negotiated size instead of max_msgsize -
152 	 * but it may be more efficient to always alloc same size
153 	 * albeit slightly larger than necessary and maxbuffersize
154 	 * defaults to this and can not be bigger.
155 	 */
156 	ret_buf = mempool_alloc(cifs_req_poolp, GFP_NOFS);
157 
158 	/* clear the first few header bytes */
159 	/* for most paths, more is cleared in header_assemble */
160 	memset(ret_buf, 0, buf_size + 3);
161 	atomic_inc(&bufAllocCount);
162 #ifdef CONFIG_CIFS_STATS2
163 	atomic_inc(&totBufAllocCount);
164 #endif /* CONFIG_CIFS_STATS2 */
165 
166 	return ret_buf;
167 }
168 
169 void
cifs_buf_release(void * buf_to_free)170 cifs_buf_release(void *buf_to_free)
171 {
172 	if (buf_to_free == NULL) {
173 		/* cifs_dbg(FYI, "Null buffer passed to cifs_buf_release\n");*/
174 		return;
175 	}
176 	mempool_free(buf_to_free, cifs_req_poolp);
177 
178 	atomic_dec(&bufAllocCount);
179 	return;
180 }
181 
182 struct smb_hdr *
cifs_small_buf_get(void)183 cifs_small_buf_get(void)
184 {
185 	struct smb_hdr *ret_buf = NULL;
186 
187 /* We could use negotiated size instead of max_msgsize -
188    but it may be more efficient to always alloc same size
189    albeit slightly larger than necessary and maxbuffersize
190    defaults to this and can not be bigger */
191 	ret_buf = mempool_alloc(cifs_sm_req_poolp, GFP_NOFS);
192 	/* No need to clear memory here, cleared in header assemble */
193 	/*	memset(ret_buf, 0, sizeof(struct smb_hdr) + 27);*/
194 	atomic_inc(&smBufAllocCount);
195 #ifdef CONFIG_CIFS_STATS2
196 	atomic_inc(&totSmBufAllocCount);
197 #endif /* CONFIG_CIFS_STATS2 */
198 
199 	return ret_buf;
200 }
201 
202 void
cifs_small_buf_release(void * buf_to_free)203 cifs_small_buf_release(void *buf_to_free)
204 {
205 
206 	if (buf_to_free == NULL) {
207 		cifs_dbg(FYI, "Null buffer passed to cifs_small_buf_release\n");
208 		return;
209 	}
210 	mempool_free(buf_to_free, cifs_sm_req_poolp);
211 
212 	atomic_dec(&smBufAllocCount);
213 	return;
214 }
215 
216 void
free_rsp_buf(int resp_buftype,void * rsp)217 free_rsp_buf(int resp_buftype, void *rsp)
218 {
219 	if (resp_buftype == CIFS_SMALL_BUFFER)
220 		cifs_small_buf_release(rsp);
221 	else if (resp_buftype == CIFS_LARGE_BUFFER)
222 		cifs_buf_release(rsp);
223 }
224 
225 /* NB: MID can not be set if treeCon not passed in, in that
226    case it is responsbility of caller to set the mid */
227 void
header_assemble(struct smb_hdr * buffer,char smb_command,const struct cifs_tcon * treeCon,int word_count)228 header_assemble(struct smb_hdr *buffer, char smb_command /* command */ ,
229 		const struct cifs_tcon *treeCon, int word_count
230 		/* length of fixed section (word count) in two byte units  */)
231 {
232 	char *temp = (char *) buffer;
233 
234 	memset(temp, 0, 256); /* bigger than MAX_CIFS_HDR_SIZE */
235 
236 	buffer->smb_buf_length = cpu_to_be32(
237 	    (2 * word_count) + sizeof(struct smb_hdr) -
238 	    4 /*  RFC 1001 length field does not count */  +
239 	    2 /* for bcc field itself */) ;
240 
241 	buffer->Protocol[0] = 0xFF;
242 	buffer->Protocol[1] = 'S';
243 	buffer->Protocol[2] = 'M';
244 	buffer->Protocol[3] = 'B';
245 	buffer->Command = smb_command;
246 	buffer->Flags = 0x00;	/* case sensitive */
247 	buffer->Flags2 = SMBFLG2_KNOWS_LONG_NAMES;
248 	buffer->Pid = cpu_to_le16((__u16)current->tgid);
249 	buffer->PidHigh = cpu_to_le16((__u16)(current->tgid >> 16));
250 	if (treeCon) {
251 		buffer->Tid = treeCon->tid;
252 		if (treeCon->ses) {
253 			if (treeCon->ses->capabilities & CAP_UNICODE)
254 				buffer->Flags2 |= SMBFLG2_UNICODE;
255 			if (treeCon->ses->capabilities & CAP_STATUS32)
256 				buffer->Flags2 |= SMBFLG2_ERR_STATUS;
257 
258 			/* Uid is not converted */
259 			buffer->Uid = treeCon->ses->Suid;
260 			buffer->Mid = get_next_mid(treeCon->ses->server);
261 		}
262 		if (treeCon->Flags & SMB_SHARE_IS_IN_DFS)
263 			buffer->Flags2 |= SMBFLG2_DFS;
264 		if (treeCon->nocase)
265 			buffer->Flags  |= SMBFLG_CASELESS;
266 		if ((treeCon->ses) && (treeCon->ses->server))
267 			if (treeCon->ses->server->sign)
268 				buffer->Flags2 |= SMBFLG2_SECURITY_SIGNATURE;
269 	}
270 
271 /*  endian conversion of flags is now done just before sending */
272 	buffer->WordCount = (char) word_count;
273 	return;
274 }
275 
276 static int
check_smb_hdr(struct smb_hdr * smb)277 check_smb_hdr(struct smb_hdr *smb)
278 {
279 	/* does it have the right SMB "signature" ? */
280 	if (*(__le32 *) smb->Protocol != cpu_to_le32(0x424d53ff)) {
281 		cifs_dbg(VFS, "Bad protocol string signature header 0x%x\n",
282 			 *(unsigned int *)smb->Protocol);
283 		return 1;
284 	}
285 
286 	/* if it's a response then accept */
287 	if (smb->Flags & SMBFLG_RESPONSE)
288 		return 0;
289 
290 	/* only one valid case where server sends us request */
291 	if (smb->Command == SMB_COM_LOCKING_ANDX)
292 		return 0;
293 
294 	cifs_dbg(VFS, "Server sent request, not response. mid=%u\n",
295 		 get_mid(smb));
296 	return 1;
297 }
298 
299 int
checkSMB(char * buf,unsigned int total_read,struct TCP_Server_Info * server)300 checkSMB(char *buf, unsigned int total_read, struct TCP_Server_Info *server)
301 {
302 	struct smb_hdr *smb = (struct smb_hdr *)buf;
303 	__u32 rfclen = be32_to_cpu(smb->smb_buf_length);
304 	__u32 clc_len;  /* calculated length */
305 	cifs_dbg(FYI, "checkSMB Length: 0x%x, smb_buf_length: 0x%x\n",
306 		 total_read, rfclen);
307 
308 	/* is this frame too small to even get to a BCC? */
309 	if (total_read < 2 + sizeof(struct smb_hdr)) {
310 		if ((total_read >= sizeof(struct smb_hdr) - 1)
311 			    && (smb->Status.CifsError != 0)) {
312 			/* it's an error return */
313 			smb->WordCount = 0;
314 			/* some error cases do not return wct and bcc */
315 			return 0;
316 		} else if ((total_read == sizeof(struct smb_hdr) + 1) &&
317 				(smb->WordCount == 0)) {
318 			char *tmp = (char *)smb;
319 			/* Need to work around a bug in two servers here */
320 			/* First, check if the part of bcc they sent was zero */
321 			if (tmp[sizeof(struct smb_hdr)] == 0) {
322 				/* some servers return only half of bcc
323 				 * on simple responses (wct, bcc both zero)
324 				 * in particular have seen this on
325 				 * ulogoffX and FindClose. This leaves
326 				 * one byte of bcc potentially unitialized
327 				 */
328 				/* zero rest of bcc */
329 				tmp[sizeof(struct smb_hdr)+1] = 0;
330 				return 0;
331 			}
332 			cifs_dbg(VFS, "rcvd invalid byte count (bcc)\n");
333 		} else {
334 			cifs_dbg(VFS, "Length less than smb header size\n");
335 		}
336 		return -EIO;
337 	}
338 
339 	/* otherwise, there is enough to get to the BCC */
340 	if (check_smb_hdr(smb))
341 		return -EIO;
342 	clc_len = smbCalcSize(smb);
343 
344 	if (4 + rfclen != total_read) {
345 		cifs_dbg(VFS, "Length read does not match RFC1001 length %d\n",
346 			 rfclen);
347 		return -EIO;
348 	}
349 
350 	if (4 + rfclen != clc_len) {
351 		__u16 mid = get_mid(smb);
352 		/* check if bcc wrapped around for large read responses */
353 		if ((rfclen > 64 * 1024) && (rfclen > clc_len)) {
354 			/* check if lengths match mod 64K */
355 			if (((4 + rfclen) & 0xFFFF) == (clc_len & 0xFFFF))
356 				return 0; /* bcc wrapped */
357 		}
358 		cifs_dbg(FYI, "Calculated size %u vs length %u mismatch for mid=%u\n",
359 			 clc_len, 4 + rfclen, mid);
360 
361 		if (4 + rfclen < clc_len) {
362 			cifs_dbg(VFS, "RFC1001 size %u smaller than SMB for mid=%u\n",
363 				 rfclen, mid);
364 			return -EIO;
365 		} else if (rfclen > clc_len + 512) {
366 			/*
367 			 * Some servers (Windows XP in particular) send more
368 			 * data than the lengths in the SMB packet would
369 			 * indicate on certain calls (byte range locks and
370 			 * trans2 find first calls in particular). While the
371 			 * client can handle such a frame by ignoring the
372 			 * trailing data, we choose limit the amount of extra
373 			 * data to 512 bytes.
374 			 */
375 			cifs_dbg(VFS, "RFC1001 size %u more than 512 bytes larger than SMB for mid=%u\n",
376 				 rfclen, mid);
377 			return -EIO;
378 		}
379 	}
380 	return 0;
381 }
382 
383 bool
is_valid_oplock_break(char * buffer,struct TCP_Server_Info * srv)384 is_valid_oplock_break(char *buffer, struct TCP_Server_Info *srv)
385 {
386 	struct smb_hdr *buf = (struct smb_hdr *)buffer;
387 	struct smb_com_lock_req *pSMB = (struct smb_com_lock_req *)buf;
388 	struct list_head *tmp, *tmp1, *tmp2;
389 	struct cifs_ses *ses;
390 	struct cifs_tcon *tcon;
391 	struct cifsInodeInfo *pCifsInode;
392 	struct cifsFileInfo *netfile;
393 
394 	cifs_dbg(FYI, "Checking for oplock break or dnotify response\n");
395 	if ((pSMB->hdr.Command == SMB_COM_NT_TRANSACT) &&
396 	   (pSMB->hdr.Flags & SMBFLG_RESPONSE)) {
397 		struct smb_com_transaction_change_notify_rsp *pSMBr =
398 			(struct smb_com_transaction_change_notify_rsp *)buf;
399 		struct file_notify_information *pnotify;
400 		__u32 data_offset = 0;
401 		size_t len = srv->total_read - sizeof(pSMBr->hdr.smb_buf_length);
402 
403 		if (get_bcc(buf) > sizeof(struct file_notify_information)) {
404 			data_offset = le32_to_cpu(pSMBr->DataOffset);
405 
406 			if (data_offset >
407 			    len - sizeof(struct file_notify_information)) {
408 				cifs_dbg(FYI, "invalid data_offset %u\n",
409 					 data_offset);
410 				return true;
411 			}
412 			pnotify = (struct file_notify_information *)
413 				((char *)&pSMBr->hdr.Protocol + data_offset);
414 			cifs_dbg(FYI, "dnotify on %s Action: 0x%x\n",
415 				 pnotify->FileName, pnotify->Action);
416 			/*   cifs_dump_mem("Rcvd notify Data: ",buf,
417 				sizeof(struct smb_hdr)+60); */
418 			return true;
419 		}
420 		if (pSMBr->hdr.Status.CifsError) {
421 			cifs_dbg(FYI, "notify err 0x%x\n",
422 				 pSMBr->hdr.Status.CifsError);
423 			return true;
424 		}
425 		return false;
426 	}
427 	if (pSMB->hdr.Command != SMB_COM_LOCKING_ANDX)
428 		return false;
429 	if (pSMB->hdr.Flags & SMBFLG_RESPONSE) {
430 		/* no sense logging error on invalid handle on oplock
431 		   break - harmless race between close request and oplock
432 		   break response is expected from time to time writing out
433 		   large dirty files cached on the client */
434 		if ((NT_STATUS_INVALID_HANDLE) ==
435 		   le32_to_cpu(pSMB->hdr.Status.CifsError)) {
436 			cifs_dbg(FYI, "invalid handle on oplock break\n");
437 			return true;
438 		} else if (ERRbadfid ==
439 		   le16_to_cpu(pSMB->hdr.Status.DosError.Error)) {
440 			return true;
441 		} else {
442 			return false; /* on valid oplock brk we get "request" */
443 		}
444 	}
445 	if (pSMB->hdr.WordCount != 8)
446 		return false;
447 
448 	cifs_dbg(FYI, "oplock type 0x%x level 0x%x\n",
449 		 pSMB->LockType, pSMB->OplockLevel);
450 	if (!(pSMB->LockType & LOCKING_ANDX_OPLOCK_RELEASE))
451 		return false;
452 
453 	/* look up tcon based on tid & uid */
454 	spin_lock(&cifs_tcp_ses_lock);
455 	list_for_each(tmp, &srv->smb_ses_list) {
456 		ses = list_entry(tmp, struct cifs_ses, smb_ses_list);
457 		list_for_each(tmp1, &ses->tcon_list) {
458 			tcon = list_entry(tmp1, struct cifs_tcon, tcon_list);
459 			if (tcon->tid != buf->Tid)
460 				continue;
461 
462 			cifs_stats_inc(&tcon->stats.cifs_stats.num_oplock_brks);
463 			spin_lock(&tcon->open_file_lock);
464 			list_for_each(tmp2, &tcon->openFileList) {
465 				netfile = list_entry(tmp2, struct cifsFileInfo,
466 						     tlist);
467 				if (pSMB->Fid != netfile->fid.netfid)
468 					continue;
469 
470 				cifs_dbg(FYI, "file id match, oplock break\n");
471 				pCifsInode = CIFS_I(d_inode(netfile->dentry));
472 
473 				set_bit(CIFS_INODE_PENDING_OPLOCK_BREAK,
474 					&pCifsInode->flags);
475 
476 				/*
477 				 * Set flag if the server downgrades the oplock
478 				 * to L2 else clear.
479 				 */
480 				if (pSMB->OplockLevel)
481 					set_bit(
482 					   CIFS_INODE_DOWNGRADE_OPLOCK_TO_L2,
483 					   &pCifsInode->flags);
484 				else
485 					clear_bit(
486 					   CIFS_INODE_DOWNGRADE_OPLOCK_TO_L2,
487 					   &pCifsInode->flags);
488 
489 				cifs_queue_oplock_break(netfile);
490 				netfile->oplock_break_cancelled = false;
491 
492 				spin_unlock(&tcon->open_file_lock);
493 				spin_unlock(&cifs_tcp_ses_lock);
494 				return true;
495 			}
496 			spin_unlock(&tcon->open_file_lock);
497 			spin_unlock(&cifs_tcp_ses_lock);
498 			cifs_dbg(FYI, "No matching file for oplock break\n");
499 			return true;
500 		}
501 	}
502 	spin_unlock(&cifs_tcp_ses_lock);
503 	cifs_dbg(FYI, "Can not process oplock break for non-existent connection\n");
504 	return true;
505 }
506 
507 void
dump_smb(void * buf,int smb_buf_length)508 dump_smb(void *buf, int smb_buf_length)
509 {
510 	if (traceSMB == 0)
511 		return;
512 
513 	print_hex_dump(KERN_DEBUG, "", DUMP_PREFIX_NONE, 8, 2, buf,
514 		       smb_buf_length, true);
515 }
516 
517 void
cifs_autodisable_serverino(struct cifs_sb_info * cifs_sb)518 cifs_autodisable_serverino(struct cifs_sb_info *cifs_sb)
519 {
520 	if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_SERVER_INUM) {
521 		cifs_sb->mnt_cifs_flags &= ~CIFS_MOUNT_SERVER_INUM;
522 		cifs_dbg(VFS, "Autodisabling the use of server inode numbers on %s. This server doesn't seem to support them properly. Hardlinks will not be recognized on this mount. Consider mounting with the \"noserverino\" option to silence this message.\n",
523 			 cifs_sb_master_tcon(cifs_sb)->treeName);
524 	}
525 }
526 
cifs_set_oplock_level(struct cifsInodeInfo * cinode,__u32 oplock)527 void cifs_set_oplock_level(struct cifsInodeInfo *cinode, __u32 oplock)
528 {
529 	oplock &= 0xF;
530 
531 	if (oplock == OPLOCK_EXCLUSIVE) {
532 		cinode->oplock = CIFS_CACHE_WRITE_FLG | CIFS_CACHE_READ_FLG;
533 		cifs_dbg(FYI, "Exclusive Oplock granted on inode %p\n",
534 			 &cinode->vfs_inode);
535 	} else if (oplock == OPLOCK_READ) {
536 		cinode->oplock = CIFS_CACHE_READ_FLG;
537 		cifs_dbg(FYI, "Level II Oplock granted on inode %p\n",
538 			 &cinode->vfs_inode);
539 	} else
540 		cinode->oplock = 0;
541 }
542 
543 /*
544  * We wait for oplock breaks to be processed before we attempt to perform
545  * writes.
546  */
cifs_get_writer(struct cifsInodeInfo * cinode)547 int cifs_get_writer(struct cifsInodeInfo *cinode)
548 {
549 	int rc;
550 
551 start:
552 	rc = wait_on_bit(&cinode->flags, CIFS_INODE_PENDING_OPLOCK_BREAK,
553 			 TASK_KILLABLE);
554 	if (rc)
555 		return rc;
556 
557 	spin_lock(&cinode->writers_lock);
558 	if (!cinode->writers)
559 		set_bit(CIFS_INODE_PENDING_WRITERS, &cinode->flags);
560 	cinode->writers++;
561 	/* Check to see if we have started servicing an oplock break */
562 	if (test_bit(CIFS_INODE_PENDING_OPLOCK_BREAK, &cinode->flags)) {
563 		cinode->writers--;
564 		if (cinode->writers == 0) {
565 			clear_bit(CIFS_INODE_PENDING_WRITERS, &cinode->flags);
566 			wake_up_bit(&cinode->flags, CIFS_INODE_PENDING_WRITERS);
567 		}
568 		spin_unlock(&cinode->writers_lock);
569 		goto start;
570 	}
571 	spin_unlock(&cinode->writers_lock);
572 	return 0;
573 }
574 
cifs_put_writer(struct cifsInodeInfo * cinode)575 void cifs_put_writer(struct cifsInodeInfo *cinode)
576 {
577 	spin_lock(&cinode->writers_lock);
578 	cinode->writers--;
579 	if (cinode->writers == 0) {
580 		clear_bit(CIFS_INODE_PENDING_WRITERS, &cinode->flags);
581 		wake_up_bit(&cinode->flags, CIFS_INODE_PENDING_WRITERS);
582 	}
583 	spin_unlock(&cinode->writers_lock);
584 }
585 
586 /**
587  * cifs_queue_oplock_break - queue the oplock break handler for cfile
588  *
589  * This function is called from the demultiplex thread when it
590  * receives an oplock break for @cfile.
591  *
592  * Assumes the tcon->open_file_lock is held.
593  * Assumes cfile->file_info_lock is NOT held.
594  */
cifs_queue_oplock_break(struct cifsFileInfo * cfile)595 void cifs_queue_oplock_break(struct cifsFileInfo *cfile)
596 {
597 	/*
598 	 * Bump the handle refcount now while we hold the
599 	 * open_file_lock to enforce the validity of it for the oplock
600 	 * break handler. The matching put is done at the end of the
601 	 * handler.
602 	 */
603 	cifsFileInfo_get(cfile);
604 
605 	queue_work(cifsoplockd_wq, &cfile->oplock_break);
606 }
607 
cifs_done_oplock_break(struct cifsInodeInfo * cinode)608 void cifs_done_oplock_break(struct cifsInodeInfo *cinode)
609 {
610 	clear_bit(CIFS_INODE_PENDING_OPLOCK_BREAK, &cinode->flags);
611 	wake_up_bit(&cinode->flags, CIFS_INODE_PENDING_OPLOCK_BREAK);
612 }
613 
614 bool
backup_cred(struct cifs_sb_info * cifs_sb)615 backup_cred(struct cifs_sb_info *cifs_sb)
616 {
617 	if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_CIFS_BACKUPUID) {
618 		if (uid_eq(cifs_sb->mnt_backupuid, current_fsuid()))
619 			return true;
620 	}
621 	if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_CIFS_BACKUPGID) {
622 		if (in_group_p(cifs_sb->mnt_backupgid))
623 			return true;
624 	}
625 
626 	return false;
627 }
628 
629 void
cifs_del_pending_open(struct cifs_pending_open * open)630 cifs_del_pending_open(struct cifs_pending_open *open)
631 {
632 	spin_lock(&tlink_tcon(open->tlink)->open_file_lock);
633 	list_del(&open->olist);
634 	spin_unlock(&tlink_tcon(open->tlink)->open_file_lock);
635 }
636 
637 void
cifs_add_pending_open_locked(struct cifs_fid * fid,struct tcon_link * tlink,struct cifs_pending_open * open)638 cifs_add_pending_open_locked(struct cifs_fid *fid, struct tcon_link *tlink,
639 			     struct cifs_pending_open *open)
640 {
641 	memcpy(open->lease_key, fid->lease_key, SMB2_LEASE_KEY_SIZE);
642 	open->oplock = CIFS_OPLOCK_NO_CHANGE;
643 	open->tlink = tlink;
644 	fid->pending_open = open;
645 	list_add_tail(&open->olist, &tlink_tcon(tlink)->pending_opens);
646 }
647 
648 void
cifs_add_pending_open(struct cifs_fid * fid,struct tcon_link * tlink,struct cifs_pending_open * open)649 cifs_add_pending_open(struct cifs_fid *fid, struct tcon_link *tlink,
650 		      struct cifs_pending_open *open)
651 {
652 	spin_lock(&tlink_tcon(tlink)->open_file_lock);
653 	cifs_add_pending_open_locked(fid, tlink, open);
654 	spin_unlock(&tlink_tcon(open->tlink)->open_file_lock);
655 }
656 
657 /* parses DFS refferal V3 structure
658  * caller is responsible for freeing target_nodes
659  * returns:
660  * - on success - 0
661  * - on failure - errno
662  */
663 int
parse_dfs_referrals(struct get_dfs_referral_rsp * rsp,u32 rsp_size,unsigned int * num_of_nodes,struct dfs_info3_param ** target_nodes,const struct nls_table * nls_codepage,int remap,const char * searchName,bool is_unicode)664 parse_dfs_referrals(struct get_dfs_referral_rsp *rsp, u32 rsp_size,
665 		    unsigned int *num_of_nodes,
666 		    struct dfs_info3_param **target_nodes,
667 		    const struct nls_table *nls_codepage, int remap,
668 		    const char *searchName, bool is_unicode)
669 {
670 	int i, rc = 0;
671 	char *data_end;
672 	struct dfs_referral_level_3 *ref;
673 
674 	*num_of_nodes = le16_to_cpu(rsp->NumberOfReferrals);
675 
676 	if (*num_of_nodes < 1) {
677 		cifs_dbg(VFS, "num_referrals: must be at least > 0, but we get num_referrals = %d\n",
678 			 *num_of_nodes);
679 		rc = -EINVAL;
680 		goto parse_DFS_referrals_exit;
681 	}
682 
683 	ref = (struct dfs_referral_level_3 *) &(rsp->referrals);
684 	if (ref->VersionNumber != cpu_to_le16(3)) {
685 		cifs_dbg(VFS, "Referrals of V%d version are not supported, should be V3\n",
686 			 le16_to_cpu(ref->VersionNumber));
687 		rc = -EINVAL;
688 		goto parse_DFS_referrals_exit;
689 	}
690 
691 	/* get the upper boundary of the resp buffer */
692 	data_end = (char *)rsp + rsp_size;
693 
694 	cifs_dbg(FYI, "num_referrals: %d dfs flags: 0x%x ...\n",
695 		 *num_of_nodes, le32_to_cpu(rsp->DFSFlags));
696 
697 	*target_nodes = kcalloc(*num_of_nodes, sizeof(struct dfs_info3_param),
698 				GFP_KERNEL);
699 	if (*target_nodes == NULL) {
700 		rc = -ENOMEM;
701 		goto parse_DFS_referrals_exit;
702 	}
703 
704 	/* collect necessary data from referrals */
705 	for (i = 0; i < *num_of_nodes; i++) {
706 		char *temp;
707 		int max_len;
708 		struct dfs_info3_param *node = (*target_nodes)+i;
709 
710 		node->flags = le32_to_cpu(rsp->DFSFlags);
711 		if (is_unicode) {
712 			__le16 *tmp = kmalloc(strlen(searchName)*2 + 2,
713 						GFP_KERNEL);
714 			if (tmp == NULL) {
715 				rc = -ENOMEM;
716 				goto parse_DFS_referrals_exit;
717 			}
718 			cifsConvertToUTF16((__le16 *) tmp, searchName,
719 					   PATH_MAX, nls_codepage, remap);
720 			node->path_consumed = cifs_utf16_bytes(tmp,
721 					le16_to_cpu(rsp->PathConsumed),
722 					nls_codepage);
723 			kfree(tmp);
724 		} else
725 			node->path_consumed = le16_to_cpu(rsp->PathConsumed);
726 
727 		node->server_type = le16_to_cpu(ref->ServerType);
728 		node->ref_flag = le16_to_cpu(ref->ReferralEntryFlags);
729 
730 		/* copy DfsPath */
731 		temp = (char *)ref + le16_to_cpu(ref->DfsPathOffset);
732 		max_len = data_end - temp;
733 		node->path_name = cifs_strndup_from_utf16(temp, max_len,
734 						is_unicode, nls_codepage);
735 		if (!node->path_name) {
736 			rc = -ENOMEM;
737 			goto parse_DFS_referrals_exit;
738 		}
739 
740 		/* copy link target UNC */
741 		temp = (char *)ref + le16_to_cpu(ref->NetworkAddressOffset);
742 		max_len = data_end - temp;
743 		node->node_name = cifs_strndup_from_utf16(temp, max_len,
744 						is_unicode, nls_codepage);
745 		if (!node->node_name) {
746 			rc = -ENOMEM;
747 			goto parse_DFS_referrals_exit;
748 		}
749 
750 		ref++;
751 	}
752 
753 parse_DFS_referrals_exit:
754 	if (rc) {
755 		free_dfs_info_array(*target_nodes, *num_of_nodes);
756 		*target_nodes = NULL;
757 		*num_of_nodes = 0;
758 	}
759 	return rc;
760 }
761 
762 struct cifs_aio_ctx *
cifs_aio_ctx_alloc(void)763 cifs_aio_ctx_alloc(void)
764 {
765 	struct cifs_aio_ctx *ctx;
766 
767 	ctx = kzalloc(sizeof(struct cifs_aio_ctx), GFP_KERNEL);
768 	if (!ctx)
769 		return NULL;
770 
771 	INIT_LIST_HEAD(&ctx->list);
772 	mutex_init(&ctx->aio_mutex);
773 	init_completion(&ctx->done);
774 	kref_init(&ctx->refcount);
775 	return ctx;
776 }
777 
778 void
cifs_aio_ctx_release(struct kref * refcount)779 cifs_aio_ctx_release(struct kref *refcount)
780 {
781 	struct cifs_aio_ctx *ctx = container_of(refcount,
782 					struct cifs_aio_ctx, refcount);
783 
784 	cifsFileInfo_put(ctx->cfile);
785 	kvfree(ctx->bv);
786 	kfree(ctx);
787 }
788 
789 #define CIFS_AIO_KMALLOC_LIMIT (1024 * 1024)
790 
791 int
setup_aio_ctx_iter(struct cifs_aio_ctx * ctx,struct iov_iter * iter,int rw)792 setup_aio_ctx_iter(struct cifs_aio_ctx *ctx, struct iov_iter *iter, int rw)
793 {
794 	ssize_t rc;
795 	unsigned int cur_npages;
796 	unsigned int npages = 0;
797 	unsigned int i;
798 	size_t len;
799 	size_t count = iov_iter_count(iter);
800 	unsigned int saved_len;
801 	size_t start;
802 	unsigned int max_pages = iov_iter_npages(iter, INT_MAX);
803 	struct page **pages = NULL;
804 	struct bio_vec *bv = NULL;
805 
806 	if (iter->type & ITER_KVEC) {
807 		memcpy(&ctx->iter, iter, sizeof(struct iov_iter));
808 		ctx->len = count;
809 		iov_iter_advance(iter, count);
810 		return 0;
811 	}
812 
813 	if (max_pages * sizeof(struct bio_vec) <= CIFS_AIO_KMALLOC_LIMIT)
814 		bv = kmalloc_array(max_pages, sizeof(struct bio_vec),
815 				   GFP_KERNEL);
816 
817 	if (!bv) {
818 		bv = vmalloc(max_pages * sizeof(struct bio_vec));
819 		if (!bv)
820 			return -ENOMEM;
821 	}
822 
823 	if (max_pages * sizeof(struct page *) <= CIFS_AIO_KMALLOC_LIMIT)
824 		pages = kmalloc_array(max_pages, sizeof(struct page *),
825 				      GFP_KERNEL);
826 
827 	if (!pages) {
828 		pages = vmalloc(max_pages * sizeof(struct page *));
829 		if (!pages) {
830 			kvfree(bv);
831 			return -ENOMEM;
832 		}
833 	}
834 
835 	saved_len = count;
836 
837 	while (count && npages < max_pages) {
838 		rc = iov_iter_get_pages(iter, pages, count, max_pages, &start);
839 		if (rc < 0) {
840 			cifs_dbg(VFS, "couldn't get user pages (rc=%zd)\n", rc);
841 			break;
842 		}
843 
844 		if (rc > count) {
845 			cifs_dbg(VFS, "get pages rc=%zd more than %zu\n", rc,
846 				 count);
847 			break;
848 		}
849 
850 		iov_iter_advance(iter, rc);
851 		count -= rc;
852 		rc += start;
853 		cur_npages = DIV_ROUND_UP(rc, PAGE_SIZE);
854 
855 		if (npages + cur_npages > max_pages) {
856 			cifs_dbg(VFS, "out of vec array capacity (%u vs %u)\n",
857 				 npages + cur_npages, max_pages);
858 			break;
859 		}
860 
861 		for (i = 0; i < cur_npages; i++) {
862 			len = rc > PAGE_SIZE ? PAGE_SIZE : rc;
863 			bv[npages + i].bv_page = pages[i];
864 			bv[npages + i].bv_offset = start;
865 			bv[npages + i].bv_len = len - start;
866 			rc -= len;
867 			start = 0;
868 		}
869 
870 		npages += cur_npages;
871 	}
872 
873 	kvfree(pages);
874 	ctx->bv = bv;
875 	ctx->len = saved_len - count;
876 	ctx->npages = npages;
877 	iov_iter_bvec(&ctx->iter, ITER_BVEC | rw, ctx->bv, npages, ctx->len);
878 	return 0;
879 }
880 
881 /**
882  * cifs_alloc_hash - allocate hash and hash context together
883  *
884  * The caller has to make sure @sdesc is initialized to either NULL or
885  * a valid context. Both can be freed via cifs_free_hash().
886  */
887 int
cifs_alloc_hash(const char * name,struct crypto_shash ** shash,struct sdesc ** sdesc)888 cifs_alloc_hash(const char *name,
889 		struct crypto_shash **shash, struct sdesc **sdesc)
890 {
891 	int rc = 0;
892 	size_t size;
893 
894 	if (*sdesc != NULL)
895 		return 0;
896 
897 	*shash = crypto_alloc_shash(name, 0, 0);
898 	if (IS_ERR(*shash)) {
899 		cifs_dbg(VFS, "could not allocate crypto %s\n", name);
900 		rc = PTR_ERR(*shash);
901 		*shash = NULL;
902 		*sdesc = NULL;
903 		return rc;
904 	}
905 
906 	size = sizeof(struct shash_desc) + crypto_shash_descsize(*shash);
907 	*sdesc = kmalloc(size, GFP_KERNEL);
908 	if (*sdesc == NULL) {
909 		cifs_dbg(VFS, "no memory left to allocate crypto %s\n", name);
910 		crypto_free_shash(*shash);
911 		*shash = NULL;
912 		return -ENOMEM;
913 	}
914 
915 	(*sdesc)->shash.tfm = *shash;
916 	(*sdesc)->shash.flags = 0x0;
917 	return 0;
918 }
919 
920 /**
921  * cifs_free_hash - free hash and hash context together
922  *
923  * Freeing a NULL hash or context is safe.
924  */
925 void
cifs_free_hash(struct crypto_shash ** shash,struct sdesc ** sdesc)926 cifs_free_hash(struct crypto_shash **shash, struct sdesc **sdesc)
927 {
928 	kfree(*sdesc);
929 	*sdesc = NULL;
930 	if (*shash)
931 		crypto_free_shash(*shash);
932 	*shash = NULL;
933 }
934