1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3 * stack_user.c
4 *
5 * Code which interfaces ocfs2 with fs/dlm and a userspace stack.
6 *
7 * Copyright (C) 2007 Oracle. All rights reserved.
8 */
9
10 #include <linux/module.h>
11 #include <linux/fs.h>
12 #include <linux/filelock.h>
13 #include <linux/miscdevice.h>
14 #include <linux/mutex.h>
15 #include <linux/slab.h>
16 #include <linux/reboot.h>
17 #include <linux/sched.h>
18 #include <linux/uaccess.h>
19
20 #include "stackglue.h"
21
22 #include <linux/dlm_plock.h>
23
24 /*
25 * The control protocol starts with a handshake. Until the handshake
26 * is complete, the control device will fail all write(2)s.
27 *
28 * The handshake is simple. First, the client reads until EOF. Each line
29 * of output is a supported protocol tag. All protocol tags are a single
30 * character followed by a two hex digit version number. Currently the
31 * only things supported is T01, for "Text-base version 0x01". Next, the
32 * client writes the version they would like to use, including the newline.
33 * Thus, the protocol tag is 'T01\n'. If the version tag written is
34 * unknown, -EINVAL is returned. Once the negotiation is complete, the
35 * client can start sending messages.
36 *
37 * The T01 protocol has three messages. First is the "SETN" message.
38 * It has the following syntax:
39 *
40 * SETN<space><8-char-hex-nodenum><newline>
41 *
42 * This is 14 characters.
43 *
44 * The "SETN" message must be the first message following the protocol.
45 * It tells ocfs2_control the local node number.
46 *
47 * Next comes the "SETV" message. It has the following syntax:
48 *
49 * SETV<space><2-char-hex-major><space><2-char-hex-minor><newline>
50 *
51 * This is 11 characters.
52 *
53 * The "SETV" message sets the filesystem locking protocol version as
54 * negotiated by the client. The client negotiates based on the maximum
55 * version advertised in /sys/fs/ocfs2/max_locking_protocol. The major
56 * number from the "SETV" message must match
57 * ocfs2_user_plugin.sp_max_proto.pv_major, and the minor number
58 * must be less than or equal to ...sp_max_version.pv_minor.
59 *
60 * Once this information has been set, mounts will be allowed. From this
61 * point on, the "DOWN" message can be sent for node down notification.
62 * It has the following syntax:
63 *
64 * DOWN<space><32-char-cap-hex-uuid><space><8-char-hex-nodenum><newline>
65 *
66 * eg:
67 *
68 * DOWN 632A924FDD844190BDA93C0DF6B94899 00000001\n
69 *
70 * This is 47 characters.
71 */
72
73 /*
74 * Whether or not the client has done the handshake.
75 * For now, we have just one protocol version.
76 */
77 #define OCFS2_CONTROL_PROTO "T01\n"
78 #define OCFS2_CONTROL_PROTO_LEN 4
79
80 /* Handshake states */
81 #define OCFS2_CONTROL_HANDSHAKE_INVALID (0)
82 #define OCFS2_CONTROL_HANDSHAKE_READ (1)
83 #define OCFS2_CONTROL_HANDSHAKE_PROTOCOL (2)
84 #define OCFS2_CONTROL_HANDSHAKE_VALID (3)
85
86 /* Messages */
87 #define OCFS2_CONTROL_MESSAGE_OP_LEN 4
88 #define OCFS2_CONTROL_MESSAGE_SETNODE_OP "SETN"
89 #define OCFS2_CONTROL_MESSAGE_SETNODE_TOTAL_LEN 14
90 #define OCFS2_CONTROL_MESSAGE_SETVERSION_OP "SETV"
91 #define OCFS2_CONTROL_MESSAGE_SETVERSION_TOTAL_LEN 11
92 #define OCFS2_CONTROL_MESSAGE_DOWN_OP "DOWN"
93 #define OCFS2_CONTROL_MESSAGE_DOWN_TOTAL_LEN 47
94 #define OCFS2_TEXT_UUID_LEN 32
95 #define OCFS2_CONTROL_MESSAGE_VERNUM_LEN 2
96 #define OCFS2_CONTROL_MESSAGE_NODENUM_LEN 8
97 #define VERSION_LOCK "version_lock"
98
99 enum ocfs2_connection_type {
100 WITH_CONTROLD,
101 NO_CONTROLD
102 };
103
104 /*
105 * ocfs2_live_connection is refcounted because the filesystem and
106 * miscdevice sides can detach in different order. Let's just be safe.
107 */
108 struct ocfs2_live_connection {
109 struct list_head oc_list;
110 struct ocfs2_cluster_connection *oc_conn;
111 enum ocfs2_connection_type oc_type;
112 atomic_t oc_this_node;
113 int oc_our_slot;
114 struct dlm_lksb oc_version_lksb;
115 char oc_lvb[DLM_LVB_LEN];
116 struct completion oc_sync_wait;
117 wait_queue_head_t oc_wait;
118 };
119
120 struct ocfs2_control_private {
121 struct list_head op_list;
122 int op_state;
123 int op_this_node;
124 struct ocfs2_protocol_version op_proto;
125 };
126
127 /* SETN<space><8-char-hex-nodenum><newline> */
128 struct ocfs2_control_message_setn {
129 char tag[OCFS2_CONTROL_MESSAGE_OP_LEN];
130 char space;
131 char nodestr[OCFS2_CONTROL_MESSAGE_NODENUM_LEN];
132 char newline;
133 };
134
135 /* SETV<space><2-char-hex-major><space><2-char-hex-minor><newline> */
136 struct ocfs2_control_message_setv {
137 char tag[OCFS2_CONTROL_MESSAGE_OP_LEN];
138 char space1;
139 char major[OCFS2_CONTROL_MESSAGE_VERNUM_LEN];
140 char space2;
141 char minor[OCFS2_CONTROL_MESSAGE_VERNUM_LEN];
142 char newline;
143 };
144
145 /* DOWN<space><32-char-cap-hex-uuid><space><8-char-hex-nodenum><newline> */
146 struct ocfs2_control_message_down {
147 char tag[OCFS2_CONTROL_MESSAGE_OP_LEN];
148 char space1;
149 char uuid[OCFS2_TEXT_UUID_LEN];
150 char space2;
151 char nodestr[OCFS2_CONTROL_MESSAGE_NODENUM_LEN];
152 char newline;
153 };
154
155 union ocfs2_control_message {
156 char tag[OCFS2_CONTROL_MESSAGE_OP_LEN];
157 struct ocfs2_control_message_setn u_setn;
158 struct ocfs2_control_message_setv u_setv;
159 struct ocfs2_control_message_down u_down;
160 };
161
162 static struct ocfs2_stack_plugin ocfs2_user_plugin;
163
164 static atomic_t ocfs2_control_opened;
165 static int ocfs2_control_this_node = -1;
166 static struct ocfs2_protocol_version running_proto;
167
168 static LIST_HEAD(ocfs2_live_connection_list);
169 static LIST_HEAD(ocfs2_control_private_list);
170 static DEFINE_MUTEX(ocfs2_control_lock);
171
ocfs2_control_set_handshake_state(struct file * file,int state)172 static inline void ocfs2_control_set_handshake_state(struct file *file,
173 int state)
174 {
175 struct ocfs2_control_private *p = file->private_data;
176 p->op_state = state;
177 }
178
ocfs2_control_get_handshake_state(struct file * file)179 static inline int ocfs2_control_get_handshake_state(struct file *file)
180 {
181 struct ocfs2_control_private *p = file->private_data;
182 return p->op_state;
183 }
184
ocfs2_connection_find(const char * name)185 static struct ocfs2_live_connection *ocfs2_connection_find(const char *name)
186 {
187 size_t len = strlen(name);
188 struct ocfs2_live_connection *c;
189
190 BUG_ON(!mutex_is_locked(&ocfs2_control_lock));
191
192 list_for_each_entry(c, &ocfs2_live_connection_list, oc_list) {
193 if ((c->oc_conn->cc_namelen == len) &&
194 !strncmp(c->oc_conn->cc_name, name, len))
195 return c;
196 }
197
198 return NULL;
199 }
200
201 /*
202 * ocfs2_live_connection structures are created underneath the ocfs2
203 * mount path. Since the VFS prevents multiple calls to
204 * fill_super(), we can't get dupes here.
205 */
ocfs2_live_connection_attach(struct ocfs2_cluster_connection * conn,struct ocfs2_live_connection * c)206 static int ocfs2_live_connection_attach(struct ocfs2_cluster_connection *conn,
207 struct ocfs2_live_connection *c)
208 {
209 int rc = 0;
210
211 mutex_lock(&ocfs2_control_lock);
212 c->oc_conn = conn;
213
214 if ((c->oc_type == NO_CONTROLD) || atomic_read(&ocfs2_control_opened))
215 list_add(&c->oc_list, &ocfs2_live_connection_list);
216 else {
217 printk(KERN_ERR
218 "ocfs2: Userspace control daemon is not present\n");
219 rc = -ESRCH;
220 }
221
222 mutex_unlock(&ocfs2_control_lock);
223 return rc;
224 }
225
226 /*
227 * This function disconnects the cluster connection from ocfs2_control.
228 * Afterwards, userspace can't affect the cluster connection.
229 */
ocfs2_live_connection_drop(struct ocfs2_live_connection * c)230 static void ocfs2_live_connection_drop(struct ocfs2_live_connection *c)
231 {
232 mutex_lock(&ocfs2_control_lock);
233 list_del_init(&c->oc_list);
234 c->oc_conn = NULL;
235 mutex_unlock(&ocfs2_control_lock);
236
237 kfree(c);
238 }
239
ocfs2_control_cfu(void * target,size_t target_len,const char __user * buf,size_t count)240 static int ocfs2_control_cfu(void *target, size_t target_len,
241 const char __user *buf, size_t count)
242 {
243 /* The T01 expects write(2) calls to have exactly one command */
244 if ((count != target_len) ||
245 (count > sizeof(union ocfs2_control_message)))
246 return -EINVAL;
247
248 if (copy_from_user(target, buf, target_len))
249 return -EFAULT;
250
251 return 0;
252 }
253
ocfs2_control_validate_protocol(struct file * file,const char __user * buf,size_t count)254 static ssize_t ocfs2_control_validate_protocol(struct file *file,
255 const char __user *buf,
256 size_t count)
257 {
258 ssize_t ret;
259 char kbuf[OCFS2_CONTROL_PROTO_LEN];
260
261 ret = ocfs2_control_cfu(kbuf, OCFS2_CONTROL_PROTO_LEN,
262 buf, count);
263 if (ret)
264 return ret;
265
266 if (strncmp(kbuf, OCFS2_CONTROL_PROTO, OCFS2_CONTROL_PROTO_LEN))
267 return -EINVAL;
268
269 ocfs2_control_set_handshake_state(file,
270 OCFS2_CONTROL_HANDSHAKE_PROTOCOL);
271
272 return count;
273 }
274
ocfs2_control_send_down(const char * uuid,int nodenum)275 static void ocfs2_control_send_down(const char *uuid,
276 int nodenum)
277 {
278 struct ocfs2_live_connection *c;
279
280 mutex_lock(&ocfs2_control_lock);
281
282 c = ocfs2_connection_find(uuid);
283 if (c) {
284 BUG_ON(c->oc_conn == NULL);
285 c->oc_conn->cc_recovery_handler(nodenum,
286 c->oc_conn->cc_recovery_data);
287 }
288
289 mutex_unlock(&ocfs2_control_lock);
290 }
291
292 /*
293 * Called whenever configuration elements are sent to /dev/ocfs2_control.
294 * If all configuration elements are present, try to set the global
295 * values. If there is a problem, return an error. Skip any missing
296 * elements, and only bump ocfs2_control_opened when we have all elements
297 * and are successful.
298 */
ocfs2_control_install_private(struct file * file)299 static int ocfs2_control_install_private(struct file *file)
300 {
301 int rc = 0;
302 int set_p = 1;
303 struct ocfs2_control_private *p = file->private_data;
304
305 BUG_ON(p->op_state != OCFS2_CONTROL_HANDSHAKE_PROTOCOL);
306
307 mutex_lock(&ocfs2_control_lock);
308
309 if (p->op_this_node < 0) {
310 set_p = 0;
311 } else if ((ocfs2_control_this_node >= 0) &&
312 (ocfs2_control_this_node != p->op_this_node)) {
313 rc = -EINVAL;
314 goto out_unlock;
315 }
316
317 if (!p->op_proto.pv_major) {
318 set_p = 0;
319 } else if (!list_empty(&ocfs2_live_connection_list) &&
320 ((running_proto.pv_major != p->op_proto.pv_major) ||
321 (running_proto.pv_minor != p->op_proto.pv_minor))) {
322 rc = -EINVAL;
323 goto out_unlock;
324 }
325
326 if (set_p) {
327 ocfs2_control_this_node = p->op_this_node;
328 running_proto.pv_major = p->op_proto.pv_major;
329 running_proto.pv_minor = p->op_proto.pv_minor;
330 }
331
332 out_unlock:
333 mutex_unlock(&ocfs2_control_lock);
334
335 if (!rc && set_p) {
336 /* We set the global values successfully */
337 atomic_inc(&ocfs2_control_opened);
338 ocfs2_control_set_handshake_state(file,
339 OCFS2_CONTROL_HANDSHAKE_VALID);
340 }
341
342 return rc;
343 }
344
ocfs2_control_get_this_node(void)345 static int ocfs2_control_get_this_node(void)
346 {
347 int rc;
348
349 mutex_lock(&ocfs2_control_lock);
350 if (ocfs2_control_this_node < 0)
351 rc = -EINVAL;
352 else
353 rc = ocfs2_control_this_node;
354 mutex_unlock(&ocfs2_control_lock);
355
356 return rc;
357 }
358
ocfs2_control_do_setnode_msg(struct file * file,struct ocfs2_control_message_setn * msg)359 static int ocfs2_control_do_setnode_msg(struct file *file,
360 struct ocfs2_control_message_setn *msg)
361 {
362 long nodenum;
363 char *ptr = NULL;
364 struct ocfs2_control_private *p = file->private_data;
365
366 if (ocfs2_control_get_handshake_state(file) !=
367 OCFS2_CONTROL_HANDSHAKE_PROTOCOL)
368 return -EINVAL;
369
370 if (strncmp(msg->tag, OCFS2_CONTROL_MESSAGE_SETNODE_OP,
371 OCFS2_CONTROL_MESSAGE_OP_LEN))
372 return -EINVAL;
373
374 if ((msg->space != ' ') || (msg->newline != '\n'))
375 return -EINVAL;
376 msg->space = msg->newline = '\0';
377
378 nodenum = simple_strtol(msg->nodestr, &ptr, 16);
379 if (!ptr || *ptr)
380 return -EINVAL;
381
382 if ((nodenum == LONG_MIN) || (nodenum == LONG_MAX) ||
383 (nodenum > INT_MAX) || (nodenum < 0))
384 return -ERANGE;
385 p->op_this_node = nodenum;
386
387 return ocfs2_control_install_private(file);
388 }
389
ocfs2_control_do_setversion_msg(struct file * file,struct ocfs2_control_message_setv * msg)390 static int ocfs2_control_do_setversion_msg(struct file *file,
391 struct ocfs2_control_message_setv *msg)
392 {
393 long major, minor;
394 char *ptr = NULL;
395 struct ocfs2_control_private *p = file->private_data;
396 struct ocfs2_protocol_version *max =
397 &ocfs2_user_plugin.sp_max_proto;
398
399 if (ocfs2_control_get_handshake_state(file) !=
400 OCFS2_CONTROL_HANDSHAKE_PROTOCOL)
401 return -EINVAL;
402
403 if (strncmp(msg->tag, OCFS2_CONTROL_MESSAGE_SETVERSION_OP,
404 OCFS2_CONTROL_MESSAGE_OP_LEN))
405 return -EINVAL;
406
407 if ((msg->space1 != ' ') || (msg->space2 != ' ') ||
408 (msg->newline != '\n'))
409 return -EINVAL;
410 msg->space1 = msg->space2 = msg->newline = '\0';
411
412 major = simple_strtol(msg->major, &ptr, 16);
413 if (!ptr || *ptr)
414 return -EINVAL;
415 minor = simple_strtol(msg->minor, &ptr, 16);
416 if (!ptr || *ptr)
417 return -EINVAL;
418
419 /*
420 * The major must be between 1 and 255, inclusive. The minor
421 * must be between 0 and 255, inclusive. The version passed in
422 * must be within the maximum version supported by the filesystem.
423 */
424 if ((major == LONG_MIN) || (major == LONG_MAX) ||
425 (major > (u8)-1) || (major < 1))
426 return -ERANGE;
427 if ((minor == LONG_MIN) || (minor == LONG_MAX) ||
428 (minor > (u8)-1) || (minor < 0))
429 return -ERANGE;
430 if ((major != max->pv_major) ||
431 (minor > max->pv_minor))
432 return -EINVAL;
433
434 p->op_proto.pv_major = major;
435 p->op_proto.pv_minor = minor;
436
437 return ocfs2_control_install_private(file);
438 }
439
ocfs2_control_do_down_msg(struct file * file,struct ocfs2_control_message_down * msg)440 static int ocfs2_control_do_down_msg(struct file *file,
441 struct ocfs2_control_message_down *msg)
442 {
443 long nodenum;
444 char *p = NULL;
445
446 if (ocfs2_control_get_handshake_state(file) !=
447 OCFS2_CONTROL_HANDSHAKE_VALID)
448 return -EINVAL;
449
450 if (strncmp(msg->tag, OCFS2_CONTROL_MESSAGE_DOWN_OP,
451 OCFS2_CONTROL_MESSAGE_OP_LEN))
452 return -EINVAL;
453
454 if ((msg->space1 != ' ') || (msg->space2 != ' ') ||
455 (msg->newline != '\n'))
456 return -EINVAL;
457 msg->space1 = msg->space2 = msg->newline = '\0';
458
459 nodenum = simple_strtol(msg->nodestr, &p, 16);
460 if (!p || *p)
461 return -EINVAL;
462
463 if ((nodenum == LONG_MIN) || (nodenum == LONG_MAX) ||
464 (nodenum > INT_MAX) || (nodenum < 0))
465 return -ERANGE;
466
467 ocfs2_control_send_down(msg->uuid, nodenum);
468
469 return 0;
470 }
471
ocfs2_control_message(struct file * file,const char __user * buf,size_t count)472 static ssize_t ocfs2_control_message(struct file *file,
473 const char __user *buf,
474 size_t count)
475 {
476 ssize_t ret;
477 union ocfs2_control_message msg;
478
479 /* Try to catch padding issues */
480 WARN_ON(offsetof(struct ocfs2_control_message_down, uuid) !=
481 (sizeof(msg.u_down.tag) + sizeof(msg.u_down.space1)));
482
483 memset(&msg, 0, sizeof(union ocfs2_control_message));
484 ret = ocfs2_control_cfu(&msg, count, buf, count);
485 if (ret)
486 goto out;
487
488 if ((count == OCFS2_CONTROL_MESSAGE_SETNODE_TOTAL_LEN) &&
489 !strncmp(msg.tag, OCFS2_CONTROL_MESSAGE_SETNODE_OP,
490 OCFS2_CONTROL_MESSAGE_OP_LEN))
491 ret = ocfs2_control_do_setnode_msg(file, &msg.u_setn);
492 else if ((count == OCFS2_CONTROL_MESSAGE_SETVERSION_TOTAL_LEN) &&
493 !strncmp(msg.tag, OCFS2_CONTROL_MESSAGE_SETVERSION_OP,
494 OCFS2_CONTROL_MESSAGE_OP_LEN))
495 ret = ocfs2_control_do_setversion_msg(file, &msg.u_setv);
496 else if ((count == OCFS2_CONTROL_MESSAGE_DOWN_TOTAL_LEN) &&
497 !strncmp(msg.tag, OCFS2_CONTROL_MESSAGE_DOWN_OP,
498 OCFS2_CONTROL_MESSAGE_OP_LEN))
499 ret = ocfs2_control_do_down_msg(file, &msg.u_down);
500 else
501 ret = -EINVAL;
502
503 out:
504 return ret ? ret : count;
505 }
506
ocfs2_control_write(struct file * file,const char __user * buf,size_t count,loff_t * ppos)507 static ssize_t ocfs2_control_write(struct file *file,
508 const char __user *buf,
509 size_t count,
510 loff_t *ppos)
511 {
512 ssize_t ret;
513
514 switch (ocfs2_control_get_handshake_state(file)) {
515 case OCFS2_CONTROL_HANDSHAKE_INVALID:
516 ret = -EINVAL;
517 break;
518
519 case OCFS2_CONTROL_HANDSHAKE_READ:
520 ret = ocfs2_control_validate_protocol(file, buf,
521 count);
522 break;
523
524 case OCFS2_CONTROL_HANDSHAKE_PROTOCOL:
525 case OCFS2_CONTROL_HANDSHAKE_VALID:
526 ret = ocfs2_control_message(file, buf, count);
527 break;
528
529 default:
530 BUG();
531 ret = -EIO;
532 break;
533 }
534
535 return ret;
536 }
537
538 /*
539 * This is a naive version. If we ever have a new protocol, we'll expand
540 * it. Probably using seq_file.
541 */
ocfs2_control_read(struct file * file,char __user * buf,size_t count,loff_t * ppos)542 static ssize_t ocfs2_control_read(struct file *file,
543 char __user *buf,
544 size_t count,
545 loff_t *ppos)
546 {
547 ssize_t ret;
548
549 ret = simple_read_from_buffer(buf, count, ppos,
550 OCFS2_CONTROL_PROTO, OCFS2_CONTROL_PROTO_LEN);
551
552 /* Have we read the whole protocol list? */
553 if (ret > 0 && *ppos >= OCFS2_CONTROL_PROTO_LEN)
554 ocfs2_control_set_handshake_state(file,
555 OCFS2_CONTROL_HANDSHAKE_READ);
556
557 return ret;
558 }
559
ocfs2_control_release(struct inode * inode,struct file * file)560 static int ocfs2_control_release(struct inode *inode, struct file *file)
561 {
562 struct ocfs2_control_private *p = file->private_data;
563
564 mutex_lock(&ocfs2_control_lock);
565
566 if (ocfs2_control_get_handshake_state(file) !=
567 OCFS2_CONTROL_HANDSHAKE_VALID)
568 goto out;
569
570 if (atomic_dec_and_test(&ocfs2_control_opened)) {
571 if (!list_empty(&ocfs2_live_connection_list)) {
572 /* XXX: Do bad things! */
573 printk(KERN_ERR
574 "ocfs2: Unexpected release of ocfs2_control!\n"
575 " Loss of cluster connection requires "
576 "an emergency restart!\n");
577 emergency_restart();
578 }
579 /*
580 * Last valid close clears the node number and resets
581 * the locking protocol version
582 */
583 ocfs2_control_this_node = -1;
584 running_proto.pv_major = 0;
585 running_proto.pv_minor = 0;
586 }
587
588 out:
589 list_del_init(&p->op_list);
590 file->private_data = NULL;
591
592 mutex_unlock(&ocfs2_control_lock);
593
594 kfree(p);
595
596 return 0;
597 }
598
ocfs2_control_open(struct inode * inode,struct file * file)599 static int ocfs2_control_open(struct inode *inode, struct file *file)
600 {
601 struct ocfs2_control_private *p;
602
603 p = kzalloc(sizeof(struct ocfs2_control_private), GFP_KERNEL);
604 if (!p)
605 return -ENOMEM;
606 p->op_this_node = -1;
607
608 mutex_lock(&ocfs2_control_lock);
609 file->private_data = p;
610 list_add(&p->op_list, &ocfs2_control_private_list);
611 mutex_unlock(&ocfs2_control_lock);
612
613 return 0;
614 }
615
616 static const struct file_operations ocfs2_control_fops = {
617 .open = ocfs2_control_open,
618 .release = ocfs2_control_release,
619 .read = ocfs2_control_read,
620 .write = ocfs2_control_write,
621 .owner = THIS_MODULE,
622 .llseek = default_llseek,
623 };
624
625 static struct miscdevice ocfs2_control_device = {
626 .minor = MISC_DYNAMIC_MINOR,
627 .name = "ocfs2_control",
628 .fops = &ocfs2_control_fops,
629 };
630
ocfs2_control_init(void)631 static int ocfs2_control_init(void)
632 {
633 int rc;
634
635 atomic_set(&ocfs2_control_opened, 0);
636
637 rc = misc_register(&ocfs2_control_device);
638 if (rc)
639 printk(KERN_ERR
640 "ocfs2: Unable to register ocfs2_control device "
641 "(errno %d)\n",
642 -rc);
643
644 return rc;
645 }
646
ocfs2_control_exit(void)647 static void ocfs2_control_exit(void)
648 {
649 misc_deregister(&ocfs2_control_device);
650 }
651
fsdlm_lock_ast_wrapper(void * astarg)652 static void fsdlm_lock_ast_wrapper(void *astarg)
653 {
654 struct ocfs2_dlm_lksb *lksb = astarg;
655 int status = lksb->lksb_fsdlm.sb_status;
656
657 /*
658 * For now we're punting on the issue of other non-standard errors
659 * where we can't tell if the unlock_ast or lock_ast should be called.
660 * The main "other error" that's possible is EINVAL which means the
661 * function was called with invalid args, which shouldn't be possible
662 * since the caller here is under our control. Other non-standard
663 * errors probably fall into the same category, or otherwise are fatal
664 * which means we can't carry on anyway.
665 */
666
667 if (status == -DLM_EUNLOCK || status == -DLM_ECANCEL)
668 lksb->lksb_conn->cc_proto->lp_unlock_ast(lksb, 0);
669 else
670 lksb->lksb_conn->cc_proto->lp_lock_ast(lksb);
671 }
672
fsdlm_blocking_ast_wrapper(void * astarg,int level)673 static void fsdlm_blocking_ast_wrapper(void *astarg, int level)
674 {
675 struct ocfs2_dlm_lksb *lksb = astarg;
676
677 lksb->lksb_conn->cc_proto->lp_blocking_ast(lksb, level);
678 }
679
user_dlm_lock(struct ocfs2_cluster_connection * conn,int mode,struct ocfs2_dlm_lksb * lksb,u32 flags,void * name,unsigned int namelen)680 static int user_dlm_lock(struct ocfs2_cluster_connection *conn,
681 int mode,
682 struct ocfs2_dlm_lksb *lksb,
683 u32 flags,
684 void *name,
685 unsigned int namelen)
686 {
687 if (!lksb->lksb_fsdlm.sb_lvbptr)
688 lksb->lksb_fsdlm.sb_lvbptr = (char *)lksb +
689 sizeof(struct dlm_lksb);
690
691 return dlm_lock(conn->cc_lockspace, mode, &lksb->lksb_fsdlm,
692 flags|DLM_LKF_NODLCKWT, name, namelen, 0,
693 fsdlm_lock_ast_wrapper, lksb,
694 fsdlm_blocking_ast_wrapper);
695 }
696
user_dlm_unlock(struct ocfs2_cluster_connection * conn,struct ocfs2_dlm_lksb * lksb,u32 flags)697 static int user_dlm_unlock(struct ocfs2_cluster_connection *conn,
698 struct ocfs2_dlm_lksb *lksb,
699 u32 flags)
700 {
701 return dlm_unlock(conn->cc_lockspace, lksb->lksb_fsdlm.sb_lkid,
702 flags, &lksb->lksb_fsdlm, lksb);
703 }
704
user_dlm_lock_status(struct ocfs2_dlm_lksb * lksb)705 static int user_dlm_lock_status(struct ocfs2_dlm_lksb *lksb)
706 {
707 return lksb->lksb_fsdlm.sb_status;
708 }
709
user_dlm_lvb_valid(struct ocfs2_dlm_lksb * lksb)710 static int user_dlm_lvb_valid(struct ocfs2_dlm_lksb *lksb)
711 {
712 int invalid = lksb->lksb_fsdlm.sb_flags & DLM_SBF_VALNOTVALID;
713
714 return !invalid;
715 }
716
user_dlm_lvb(struct ocfs2_dlm_lksb * lksb)717 static void *user_dlm_lvb(struct ocfs2_dlm_lksb *lksb)
718 {
719 if (!lksb->lksb_fsdlm.sb_lvbptr)
720 lksb->lksb_fsdlm.sb_lvbptr = (char *)lksb +
721 sizeof(struct dlm_lksb);
722 return (void *)(lksb->lksb_fsdlm.sb_lvbptr);
723 }
724
user_dlm_dump_lksb(struct ocfs2_dlm_lksb * lksb)725 static void user_dlm_dump_lksb(struct ocfs2_dlm_lksb *lksb)
726 {
727 }
728
user_plock(struct ocfs2_cluster_connection * conn,u64 ino,struct file * file,int cmd,struct file_lock * fl)729 static int user_plock(struct ocfs2_cluster_connection *conn,
730 u64 ino,
731 struct file *file,
732 int cmd,
733 struct file_lock *fl)
734 {
735 /*
736 * This more or less just demuxes the plock request into any
737 * one of three dlm calls.
738 *
739 * Internally, fs/dlm will pass these to a misc device, which
740 * a userspace daemon will read and write to.
741 *
742 * For now, cancel requests (which happen internally only),
743 * are turned into unlocks. Most of this function taken from
744 * gfs2_lock.
745 */
746
747 if (cmd == F_CANCELLK) {
748 cmd = F_SETLK;
749 fl->fl_type = F_UNLCK;
750 }
751
752 if (IS_GETLK(cmd))
753 return dlm_posix_get(conn->cc_lockspace, ino, file, fl);
754 else if (fl->fl_type == F_UNLCK)
755 return dlm_posix_unlock(conn->cc_lockspace, ino, file, fl);
756 else
757 return dlm_posix_lock(conn->cc_lockspace, ino, file, cmd, fl);
758 }
759
760 /*
761 * Compare a requested locking protocol version against the current one.
762 *
763 * If the major numbers are different, they are incompatible.
764 * If the current minor is greater than the request, they are incompatible.
765 * If the current minor is less than or equal to the request, they are
766 * compatible, and the requester should run at the current minor version.
767 */
fs_protocol_compare(struct ocfs2_protocol_version * existing,struct ocfs2_protocol_version * request)768 static int fs_protocol_compare(struct ocfs2_protocol_version *existing,
769 struct ocfs2_protocol_version *request)
770 {
771 if (existing->pv_major != request->pv_major)
772 return 1;
773
774 if (existing->pv_minor > request->pv_minor)
775 return 1;
776
777 if (existing->pv_minor < request->pv_minor)
778 request->pv_minor = existing->pv_minor;
779
780 return 0;
781 }
782
lvb_to_version(char * lvb,struct ocfs2_protocol_version * ver)783 static void lvb_to_version(char *lvb, struct ocfs2_protocol_version *ver)
784 {
785 struct ocfs2_protocol_version *pv =
786 (struct ocfs2_protocol_version *)lvb;
787 /*
788 * ocfs2_protocol_version has two u8 variables, so we don't
789 * need any endian conversion.
790 */
791 ver->pv_major = pv->pv_major;
792 ver->pv_minor = pv->pv_minor;
793 }
794
version_to_lvb(struct ocfs2_protocol_version * ver,char * lvb)795 static void version_to_lvb(struct ocfs2_protocol_version *ver, char *lvb)
796 {
797 struct ocfs2_protocol_version *pv =
798 (struct ocfs2_protocol_version *)lvb;
799 /*
800 * ocfs2_protocol_version has two u8 variables, so we don't
801 * need any endian conversion.
802 */
803 pv->pv_major = ver->pv_major;
804 pv->pv_minor = ver->pv_minor;
805 }
806
sync_wait_cb(void * arg)807 static void sync_wait_cb(void *arg)
808 {
809 struct ocfs2_cluster_connection *conn = arg;
810 struct ocfs2_live_connection *lc = conn->cc_private;
811 complete(&lc->oc_sync_wait);
812 }
813
sync_unlock(struct ocfs2_cluster_connection * conn,struct dlm_lksb * lksb,char * name)814 static int sync_unlock(struct ocfs2_cluster_connection *conn,
815 struct dlm_lksb *lksb, char *name)
816 {
817 int error;
818 struct ocfs2_live_connection *lc = conn->cc_private;
819
820 error = dlm_unlock(conn->cc_lockspace, lksb->sb_lkid, 0, lksb, conn);
821 if (error) {
822 printk(KERN_ERR "%s lkid %x error %d\n",
823 name, lksb->sb_lkid, error);
824 return error;
825 }
826
827 wait_for_completion(&lc->oc_sync_wait);
828
829 if (lksb->sb_status != -DLM_EUNLOCK) {
830 printk(KERN_ERR "%s lkid %x status %d\n",
831 name, lksb->sb_lkid, lksb->sb_status);
832 return -1;
833 }
834 return 0;
835 }
836
sync_lock(struct ocfs2_cluster_connection * conn,int mode,uint32_t flags,struct dlm_lksb * lksb,char * name)837 static int sync_lock(struct ocfs2_cluster_connection *conn,
838 int mode, uint32_t flags,
839 struct dlm_lksb *lksb, char *name)
840 {
841 int error, status;
842 struct ocfs2_live_connection *lc = conn->cc_private;
843
844 error = dlm_lock(conn->cc_lockspace, mode, lksb, flags,
845 name, strlen(name),
846 0, sync_wait_cb, conn, NULL);
847 if (error) {
848 printk(KERN_ERR "%s lkid %x flags %x mode %d error %d\n",
849 name, lksb->sb_lkid, flags, mode, error);
850 return error;
851 }
852
853 wait_for_completion(&lc->oc_sync_wait);
854
855 status = lksb->sb_status;
856
857 if (status && status != -EAGAIN) {
858 printk(KERN_ERR "%s lkid %x flags %x mode %d status %d\n",
859 name, lksb->sb_lkid, flags, mode, status);
860 }
861
862 return status;
863 }
864
865
version_lock(struct ocfs2_cluster_connection * conn,int mode,int flags)866 static int version_lock(struct ocfs2_cluster_connection *conn, int mode,
867 int flags)
868 {
869 struct ocfs2_live_connection *lc = conn->cc_private;
870 return sync_lock(conn, mode, flags,
871 &lc->oc_version_lksb, VERSION_LOCK);
872 }
873
version_unlock(struct ocfs2_cluster_connection * conn)874 static int version_unlock(struct ocfs2_cluster_connection *conn)
875 {
876 struct ocfs2_live_connection *lc = conn->cc_private;
877 return sync_unlock(conn, &lc->oc_version_lksb, VERSION_LOCK);
878 }
879
880 /* get_protocol_version()
881 *
882 * To exchange ocfs2 versioning, we use the LVB of the version dlm lock.
883 * The algorithm is:
884 * 1. Attempt to take the lock in EX mode (non-blocking).
885 * 2. If successful (which means it is the first mount), write the
886 * version number and downconvert to PR lock.
887 * 3. If unsuccessful (returns -EAGAIN), read the version from the LVB after
888 * taking the PR lock.
889 */
890
get_protocol_version(struct ocfs2_cluster_connection * conn)891 static int get_protocol_version(struct ocfs2_cluster_connection *conn)
892 {
893 int ret;
894 struct ocfs2_live_connection *lc = conn->cc_private;
895 struct ocfs2_protocol_version pv;
896
897 running_proto.pv_major =
898 ocfs2_user_plugin.sp_max_proto.pv_major;
899 running_proto.pv_minor =
900 ocfs2_user_plugin.sp_max_proto.pv_minor;
901
902 lc->oc_version_lksb.sb_lvbptr = lc->oc_lvb;
903 ret = version_lock(conn, DLM_LOCK_EX,
904 DLM_LKF_VALBLK|DLM_LKF_NOQUEUE);
905 if (!ret) {
906 conn->cc_version.pv_major = running_proto.pv_major;
907 conn->cc_version.pv_minor = running_proto.pv_minor;
908 version_to_lvb(&running_proto, lc->oc_lvb);
909 version_lock(conn, DLM_LOCK_PR, DLM_LKF_CONVERT|DLM_LKF_VALBLK);
910 } else if (ret == -EAGAIN) {
911 ret = version_lock(conn, DLM_LOCK_PR, DLM_LKF_VALBLK);
912 if (ret)
913 goto out;
914 lvb_to_version(lc->oc_lvb, &pv);
915
916 if ((pv.pv_major != running_proto.pv_major) ||
917 (pv.pv_minor > running_proto.pv_minor)) {
918 ret = -EINVAL;
919 goto out;
920 }
921
922 conn->cc_version.pv_major = pv.pv_major;
923 conn->cc_version.pv_minor = pv.pv_minor;
924 }
925 out:
926 return ret;
927 }
928
user_recover_prep(void * arg)929 static void user_recover_prep(void *arg)
930 {
931 }
932
user_recover_slot(void * arg,struct dlm_slot * slot)933 static void user_recover_slot(void *arg, struct dlm_slot *slot)
934 {
935 struct ocfs2_cluster_connection *conn = arg;
936 printk(KERN_INFO "ocfs2: Node %d/%d down. Initiating recovery.\n",
937 slot->nodeid, slot->slot);
938 conn->cc_recovery_handler(slot->nodeid, conn->cc_recovery_data);
939
940 }
941
user_recover_done(void * arg,struct dlm_slot * slots,int num_slots,int our_slot,uint32_t generation)942 static void user_recover_done(void *arg, struct dlm_slot *slots,
943 int num_slots, int our_slot,
944 uint32_t generation)
945 {
946 struct ocfs2_cluster_connection *conn = arg;
947 struct ocfs2_live_connection *lc = conn->cc_private;
948 int i;
949
950 for (i = 0; i < num_slots; i++)
951 if (slots[i].slot == our_slot) {
952 atomic_set(&lc->oc_this_node, slots[i].nodeid);
953 break;
954 }
955
956 lc->oc_our_slot = our_slot;
957 wake_up(&lc->oc_wait);
958 }
959
960 static const struct dlm_lockspace_ops ocfs2_ls_ops = {
961 .recover_prep = user_recover_prep,
962 .recover_slot = user_recover_slot,
963 .recover_done = user_recover_done,
964 };
965
user_cluster_disconnect(struct ocfs2_cluster_connection * conn)966 static int user_cluster_disconnect(struct ocfs2_cluster_connection *conn)
967 {
968 version_unlock(conn);
969 dlm_release_lockspace(conn->cc_lockspace, 2);
970 conn->cc_lockspace = NULL;
971 ocfs2_live_connection_drop(conn->cc_private);
972 conn->cc_private = NULL;
973 return 0;
974 }
975
user_cluster_connect(struct ocfs2_cluster_connection * conn)976 static int user_cluster_connect(struct ocfs2_cluster_connection *conn)
977 {
978 dlm_lockspace_t *fsdlm;
979 struct ocfs2_live_connection *lc;
980 int rc, ops_rv;
981
982 BUG_ON(conn == NULL);
983
984 lc = kzalloc(sizeof(struct ocfs2_live_connection), GFP_KERNEL);
985 if (!lc)
986 return -ENOMEM;
987
988 init_waitqueue_head(&lc->oc_wait);
989 init_completion(&lc->oc_sync_wait);
990 atomic_set(&lc->oc_this_node, 0);
991 conn->cc_private = lc;
992 lc->oc_type = NO_CONTROLD;
993
994 rc = dlm_new_lockspace(conn->cc_name, conn->cc_cluster_name,
995 DLM_LSFL_NEWEXCL, DLM_LVB_LEN,
996 &ocfs2_ls_ops, conn, &ops_rv, &fsdlm);
997 if (rc) {
998 if (rc == -EEXIST || rc == -EPROTO)
999 printk(KERN_ERR "ocfs2: Unable to create the "
1000 "lockspace %s (%d), because a ocfs2-tools "
1001 "program is running on this file system "
1002 "with the same name lockspace\n",
1003 conn->cc_name, rc);
1004 goto out;
1005 }
1006
1007 if (ops_rv == -EOPNOTSUPP) {
1008 lc->oc_type = WITH_CONTROLD;
1009 printk(KERN_NOTICE "ocfs2: You seem to be using an older "
1010 "version of dlm_controld and/or ocfs2-tools."
1011 " Please consider upgrading.\n");
1012 } else if (ops_rv) {
1013 rc = ops_rv;
1014 goto out;
1015 }
1016 conn->cc_lockspace = fsdlm;
1017
1018 rc = ocfs2_live_connection_attach(conn, lc);
1019 if (rc)
1020 goto out;
1021
1022 if (lc->oc_type == NO_CONTROLD) {
1023 rc = get_protocol_version(conn);
1024 if (rc) {
1025 printk(KERN_ERR "ocfs2: Could not determine"
1026 " locking version\n");
1027 user_cluster_disconnect(conn);
1028 goto out;
1029 }
1030 wait_event(lc->oc_wait, (atomic_read(&lc->oc_this_node) > 0));
1031 }
1032
1033 /*
1034 * running_proto must have been set before we allowed any mounts
1035 * to proceed.
1036 */
1037 if (fs_protocol_compare(&running_proto, &conn->cc_version)) {
1038 printk(KERN_ERR
1039 "Unable to mount with fs locking protocol version "
1040 "%u.%u because negotiated protocol is %u.%u\n",
1041 conn->cc_version.pv_major, conn->cc_version.pv_minor,
1042 running_proto.pv_major, running_proto.pv_minor);
1043 rc = -EPROTO;
1044 ocfs2_live_connection_drop(lc);
1045 lc = NULL;
1046 }
1047
1048 out:
1049 if (rc)
1050 kfree(lc);
1051 return rc;
1052 }
1053
1054
user_cluster_this_node(struct ocfs2_cluster_connection * conn,unsigned int * this_node)1055 static int user_cluster_this_node(struct ocfs2_cluster_connection *conn,
1056 unsigned int *this_node)
1057 {
1058 int rc;
1059 struct ocfs2_live_connection *lc = conn->cc_private;
1060
1061 if (lc->oc_type == WITH_CONTROLD)
1062 rc = ocfs2_control_get_this_node();
1063 else if (lc->oc_type == NO_CONTROLD)
1064 rc = atomic_read(&lc->oc_this_node);
1065 else
1066 rc = -EINVAL;
1067
1068 if (rc < 0)
1069 return rc;
1070
1071 *this_node = rc;
1072 return 0;
1073 }
1074
1075 static struct ocfs2_stack_operations ocfs2_user_plugin_ops = {
1076 .connect = user_cluster_connect,
1077 .disconnect = user_cluster_disconnect,
1078 .this_node = user_cluster_this_node,
1079 .dlm_lock = user_dlm_lock,
1080 .dlm_unlock = user_dlm_unlock,
1081 .lock_status = user_dlm_lock_status,
1082 .lvb_valid = user_dlm_lvb_valid,
1083 .lock_lvb = user_dlm_lvb,
1084 .plock = user_plock,
1085 .dump_lksb = user_dlm_dump_lksb,
1086 };
1087
1088 static struct ocfs2_stack_plugin ocfs2_user_plugin = {
1089 .sp_name = "user",
1090 .sp_ops = &ocfs2_user_plugin_ops,
1091 .sp_owner = THIS_MODULE,
1092 };
1093
1094
ocfs2_user_plugin_init(void)1095 static int __init ocfs2_user_plugin_init(void)
1096 {
1097 int rc;
1098
1099 rc = ocfs2_control_init();
1100 if (!rc) {
1101 rc = ocfs2_stack_glue_register(&ocfs2_user_plugin);
1102 if (rc)
1103 ocfs2_control_exit();
1104 }
1105
1106 return rc;
1107 }
1108
ocfs2_user_plugin_exit(void)1109 static void __exit ocfs2_user_plugin_exit(void)
1110 {
1111 ocfs2_stack_glue_unregister(&ocfs2_user_plugin);
1112 ocfs2_control_exit();
1113 }
1114
1115 MODULE_AUTHOR("Oracle");
1116 MODULE_DESCRIPTION("ocfs2 driver for userspace cluster stacks");
1117 MODULE_LICENSE("GPL");
1118 module_init(ocfs2_user_plugin_init);
1119 module_exit(ocfs2_user_plugin_exit);
1120