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drbd: fix various disconnecting races
[mirror_ubuntu-artful-kernel.git] / drivers / block / drbd / drbd_nl.c
CommitLineData
b411b363
PR
1/*
2 drbd_nl.c
3
4 This file is part of DRBD by Philipp Reisner and Lars Ellenberg.
5
6 Copyright (C) 2001-2008, LINBIT Information Technologies GmbH.
7 Copyright (C) 1999-2008, Philipp Reisner <philipp.reisner@linbit.com>.
8 Copyright (C) 2002-2008, Lars Ellenberg <lars.ellenberg@linbit.com>.
9
10 drbd is free software; you can redistribute it and/or modify
11 it under the terms of the GNU General Public License as published by
12 the Free Software Foundation; either version 2, or (at your option)
13 any later version.
14
15 drbd is distributed in the hope that it will be useful,
16 but WITHOUT ANY WARRANTY; without even the implied warranty of
17 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 GNU General Public License for more details.
19
20 You should have received a copy of the GNU General Public License
21 along with drbd; see the file COPYING. If not, write to
22 the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
23
24 */
25
b411b363
PR
26#include <linux/module.h>
27#include <linux/drbd.h>
28#include <linux/in.h>
29#include <linux/fs.h>
30#include <linux/file.h>
31#include <linux/slab.h>
b411b363
PR
32#include <linux/blkpg.h>
33#include <linux/cpumask.h>
34#include "drbd_int.h"
265be2d0 35#include "drbd_req.h"
b411b363
PR
36#include "drbd_wrappers.h"
37#include <asm/unaligned.h>
b411b363 38#include <linux/drbd_limits.h>
87f7be4c 39#include <linux/kthread.h>
b411b363 40
3b98c0c2
LE
41#include <net/genetlink.h>
42
43/* .doit */
44// int drbd_adm_create_resource(struct sk_buff *skb, struct genl_info *info);
45// int drbd_adm_delete_resource(struct sk_buff *skb, struct genl_info *info);
46
47int drbd_adm_add_minor(struct sk_buff *skb, struct genl_info *info);
48int drbd_adm_delete_minor(struct sk_buff *skb, struct genl_info *info);
49
50int drbd_adm_create_connection(struct sk_buff *skb, struct genl_info *info);
51int drbd_adm_delete_connection(struct sk_buff *skb, struct genl_info *info);
85f75dd7 52int drbd_adm_down(struct sk_buff *skb, struct genl_info *info);
3b98c0c2
LE
53
54int drbd_adm_set_role(struct sk_buff *skb, struct genl_info *info);
55int drbd_adm_attach(struct sk_buff *skb, struct genl_info *info);
f399002e 56int drbd_adm_disk_opts(struct sk_buff *skb, struct genl_info *info);
3b98c0c2
LE
57int drbd_adm_detach(struct sk_buff *skb, struct genl_info *info);
58int drbd_adm_connect(struct sk_buff *skb, struct genl_info *info);
f399002e 59int drbd_adm_net_opts(struct sk_buff *skb, struct genl_info *info);
3b98c0c2
LE
60int drbd_adm_resize(struct sk_buff *skb, struct genl_info *info);
61int drbd_adm_start_ov(struct sk_buff *skb, struct genl_info *info);
62int drbd_adm_new_c_uuid(struct sk_buff *skb, struct genl_info *info);
63int drbd_adm_disconnect(struct sk_buff *skb, struct genl_info *info);
64int drbd_adm_invalidate(struct sk_buff *skb, struct genl_info *info);
65int drbd_adm_invalidate_peer(struct sk_buff *skb, struct genl_info *info);
66int drbd_adm_pause_sync(struct sk_buff *skb, struct genl_info *info);
67int drbd_adm_resume_sync(struct sk_buff *skb, struct genl_info *info);
68int drbd_adm_suspend_io(struct sk_buff *skb, struct genl_info *info);
69int drbd_adm_resume_io(struct sk_buff *skb, struct genl_info *info);
70int drbd_adm_outdate(struct sk_buff *skb, struct genl_info *info);
f399002e 71int drbd_adm_resource_opts(struct sk_buff *skb, struct genl_info *info);
3b98c0c2
LE
72int drbd_adm_get_status(struct sk_buff *skb, struct genl_info *info);
73int drbd_adm_get_timeout_type(struct sk_buff *skb, struct genl_info *info);
74/* .dumpit */
75int drbd_adm_get_status_all(struct sk_buff *skb, struct netlink_callback *cb);
76
77#include <linux/drbd_genl_api.h>
78#include <linux/genl_magic_func.h>
79
80/* used blkdev_get_by_path, to claim our meta data device(s) */
b411b363
PR
81static char *drbd_m_holder = "Hands off! this is DRBD's meta data device.";
82
3b98c0c2
LE
83/* Configuration is strictly serialized, because generic netlink message
84 * processing is strictly serialized by the genl_lock().
85 * Which means we can use one static global drbd_config_context struct.
86 */
87static struct drbd_config_context {
88 /* assigned from drbd_genlmsghdr */
89 unsigned int minor;
90 /* assigned from request attributes, if present */
91 unsigned int volume;
92#define VOLUME_UNSPECIFIED (-1U)
93 /* pointer into the request skb,
94 * limited lifetime! */
95 char *conn_name;
96
97 /* reply buffer */
98 struct sk_buff *reply_skb;
99 /* pointer into reply buffer */
100 struct drbd_genlmsghdr *reply_dh;
101 /* resolved from attributes, if possible */
102 struct drbd_conf *mdev;
103 struct drbd_tconn *tconn;
104} adm_ctx;
105
106static void drbd_adm_send_reply(struct sk_buff *skb, struct genl_info *info)
107{
108 genlmsg_end(skb, genlmsg_data(nlmsg_data(nlmsg_hdr(skb))));
109 if (genlmsg_reply(skb, info))
110 printk(KERN_ERR "drbd: error sending genl reply\n");
b411b363 111}
3b98c0c2
LE
112
113/* Used on a fresh "drbd_adm_prepare"d reply_skb, this cannot fail: The only
114 * reason it could fail was no space in skb, and there are 4k available. */
8432b314 115int drbd_msg_put_info(const char *info)
3b98c0c2
LE
116{
117 struct sk_buff *skb = adm_ctx.reply_skb;
118 struct nlattr *nla;
119 int err = -EMSGSIZE;
120
121 if (!info || !info[0])
122 return 0;
123
124 nla = nla_nest_start(skb, DRBD_NLA_CFG_REPLY);
125 if (!nla)
126 return err;
127
128 err = nla_put_string(skb, T_info_text, info);
129 if (err) {
130 nla_nest_cancel(skb, nla);
131 return err;
132 } else
133 nla_nest_end(skb, nla);
134 return 0;
b411b363
PR
135}
136
3b98c0c2
LE
137/* This would be a good candidate for a "pre_doit" hook,
138 * and per-family private info->pointers.
139 * But we need to stay compatible with older kernels.
140 * If it returns successfully, adm_ctx members are valid.
141 */
142#define DRBD_ADM_NEED_MINOR 1
143#define DRBD_ADM_NEED_CONN 2
144static int drbd_adm_prepare(struct sk_buff *skb, struct genl_info *info,
145 unsigned flags)
146{
147 struct drbd_genlmsghdr *d_in = info->userhdr;
148 const u8 cmd = info->genlhdr->cmd;
149 int err;
150
151 memset(&adm_ctx, 0, sizeof(adm_ctx));
152
153 /* genl_rcv_msg only checks for CAP_NET_ADMIN on "GENL_ADMIN_PERM" :( */
154 if (cmd != DRBD_ADM_GET_STATUS
155 && security_netlink_recv(skb, CAP_SYS_ADMIN))
156 return -EPERM;
157
158 adm_ctx.reply_skb = genlmsg_new(NLMSG_GOODSIZE, GFP_KERNEL);
159 if (!adm_ctx.reply_skb)
160 goto fail;
161
162 adm_ctx.reply_dh = genlmsg_put_reply(adm_ctx.reply_skb,
163 info, &drbd_genl_family, 0, cmd);
164 /* put of a few bytes into a fresh skb of >= 4k will always succeed.
165 * but anyways */
166 if (!adm_ctx.reply_dh)
167 goto fail;
168
169 adm_ctx.reply_dh->minor = d_in->minor;
170 adm_ctx.reply_dh->ret_code = NO_ERROR;
171
172 if (info->attrs[DRBD_NLA_CFG_CONTEXT]) {
173 struct nlattr *nla;
174 /* parse and validate only */
f399002e 175 err = drbd_cfg_context_from_attrs(NULL, info);
3b98c0c2
LE
176 if (err)
177 goto fail;
178
179 /* It was present, and valid,
180 * copy it over to the reply skb. */
181 err = nla_put_nohdr(adm_ctx.reply_skb,
182 info->attrs[DRBD_NLA_CFG_CONTEXT]->nla_len,
183 info->attrs[DRBD_NLA_CFG_CONTEXT]);
184 if (err)
185 goto fail;
186
187 /* and assign stuff to the global adm_ctx */
188 nla = nested_attr_tb[__nla_type(T_ctx_volume)];
189 adm_ctx.volume = nla ? nla_get_u32(nla) : VOLUME_UNSPECIFIED;
190 nla = nested_attr_tb[__nla_type(T_ctx_conn_name)];
191 if (nla)
192 adm_ctx.conn_name = nla_data(nla);
193 } else
194 adm_ctx.volume = VOLUME_UNSPECIFIED;
195
196 adm_ctx.minor = d_in->minor;
197 adm_ctx.mdev = minor_to_mdev(d_in->minor);
0ace9dfa 198 adm_ctx.tconn = conn_get_by_name(adm_ctx.conn_name);
3b98c0c2
LE
199
200 if (!adm_ctx.mdev && (flags & DRBD_ADM_NEED_MINOR)) {
201 drbd_msg_put_info("unknown minor");
202 return ERR_MINOR_INVALID;
203 }
204 if (!adm_ctx.tconn && (flags & DRBD_ADM_NEED_CONN)) {
205 drbd_msg_put_info("unknown connection");
206 return ERR_INVALID_REQUEST;
207 }
208
209 /* some more paranoia, if the request was over-determined */
527f4b24
LE
210 if (adm_ctx.mdev && adm_ctx.tconn &&
211 adm_ctx.mdev->tconn != adm_ctx.tconn) {
212 pr_warning("request: minor=%u, conn=%s; but that minor belongs to connection %s\n",
213 adm_ctx.minor, adm_ctx.conn_name, adm_ctx.mdev->tconn->name);
214 drbd_msg_put_info("minor exists in different connection");
215 return ERR_INVALID_REQUEST;
216 }
3b98c0c2
LE
217 if (adm_ctx.mdev &&
218 adm_ctx.volume != VOLUME_UNSPECIFIED &&
219 adm_ctx.volume != adm_ctx.mdev->vnr) {
220 pr_warning("request: minor=%u, volume=%u; but that minor is volume %u in %s\n",
221 adm_ctx.minor, adm_ctx.volume,
222 adm_ctx.mdev->vnr, adm_ctx.mdev->tconn->name);
527f4b24 223 drbd_msg_put_info("minor exists as different volume");
3b98c0c2
LE
224 return ERR_INVALID_REQUEST;
225 }
0ace9dfa 226
3b98c0c2
LE
227 return NO_ERROR;
228
229fail:
230 nlmsg_free(adm_ctx.reply_skb);
231 adm_ctx.reply_skb = NULL;
232 return -ENOMEM;
233}
234
235static int drbd_adm_finish(struct genl_info *info, int retcode)
236{
237 struct nlattr *nla;
238 const char *conn_name = NULL;
239
0ace9dfa
PR
240 if (adm_ctx.tconn) {
241 kref_put(&adm_ctx.tconn->kref, &conn_destroy);
242 adm_ctx.tconn = NULL;
243 }
244
3b98c0c2
LE
245 if (!adm_ctx.reply_skb)
246 return -ENOMEM;
247
248 adm_ctx.reply_dh->ret_code = retcode;
249
250 nla = info->attrs[DRBD_NLA_CFG_CONTEXT];
251 if (nla) {
252 nla = nla_find_nested(nla, __nla_type(T_ctx_conn_name));
253 if (nla)
254 conn_name = nla_data(nla);
255 }
256
257 drbd_adm_send_reply(adm_ctx.reply_skb, info);
258 return 0;
259}
b411b363 260
6b75dced 261static void setup_khelper_env(struct drbd_tconn *tconn, char **envp)
b411b363 262{
6b75dced 263 char *afs;
44ed167d 264 struct net_conf *nc;
b411b363 265
44ed167d
PR
266 rcu_read_lock();
267 nc = rcu_dereference(tconn->net_conf);
268 if (nc) {
269 switch (((struct sockaddr *)nc->peer_addr)->sa_family) {
b411b363
PR
270 case AF_INET6:
271 afs = "ipv6";
6b75dced 272 snprintf(envp[4], 60, "DRBD_PEER_ADDRESS=%pI6",
44ed167d 273 &((struct sockaddr_in6 *)nc->peer_addr)->sin6_addr);
b411b363
PR
274 break;
275 case AF_INET:
276 afs = "ipv4";
6b75dced 277 snprintf(envp[4], 60, "DRBD_PEER_ADDRESS=%pI4",
44ed167d 278 &((struct sockaddr_in *)nc->peer_addr)->sin_addr);
b411b363
PR
279 break;
280 default:
281 afs = "ssocks";
6b75dced 282 snprintf(envp[4], 60, "DRBD_PEER_ADDRESS=%pI4",
44ed167d 283 &((struct sockaddr_in *)nc->peer_addr)->sin_addr);
b411b363 284 }
6b75dced 285 snprintf(envp[3], 20, "DRBD_PEER_AF=%s", afs);
b411b363 286 }
44ed167d 287 rcu_read_unlock();
6b75dced
PR
288}
289
290int drbd_khelper(struct drbd_conf *mdev, char *cmd)
291{
292 char *envp[] = { "HOME=/",
293 "TERM=linux",
294 "PATH=/sbin:/usr/sbin:/bin:/usr/bin",
295 (char[20]) { }, /* address family */
296 (char[60]) { }, /* address */
297 NULL };
298 char mb[12];
299 char *argv[] = {usermode_helper, cmd, mb, NULL };
300 struct sib_info sib;
301 int ret;
302
303 snprintf(mb, 12, "minor-%d", mdev_to_minor(mdev));
304 setup_khelper_env(mdev->tconn, envp);
b411b363 305
1090c056
LE
306 /* The helper may take some time.
307 * write out any unsynced meta data changes now */
308 drbd_md_sync(mdev);
309
b411b363 310 dev_info(DEV, "helper command: %s %s %s\n", usermode_helper, cmd, mb);
3b98c0c2
LE
311 sib.sib_reason = SIB_HELPER_PRE;
312 sib.helper_name = cmd;
313 drbd_bcast_event(mdev, &sib);
b411b363
PR
314 ret = call_usermodehelper(usermode_helper, argv, envp, 1);
315 if (ret)
316 dev_warn(DEV, "helper command: %s %s %s exit code %u (0x%x)\n",
317 usermode_helper, cmd, mb,
318 (ret >> 8) & 0xff, ret);
319 else
320 dev_info(DEV, "helper command: %s %s %s exit code %u (0x%x)\n",
321 usermode_helper, cmd, mb,
322 (ret >> 8) & 0xff, ret);
3b98c0c2
LE
323 sib.sib_reason = SIB_HELPER_POST;
324 sib.helper_exit_code = ret;
325 drbd_bcast_event(mdev, &sib);
b411b363
PR
326
327 if (ret < 0) /* Ignore any ERRNOs we got. */
328 ret = 0;
329
330 return ret;
331}
332
6b75dced
PR
333static void conn_md_sync(struct drbd_tconn *tconn)
334{
335 struct drbd_conf *mdev;
e90285e0 336 int vnr;
6b75dced 337
d3fcb490 338 down_read(&drbd_cfg_rwsem);
e90285e0 339 idr_for_each_entry(&tconn->volumes, mdev, vnr)
6b75dced 340 drbd_md_sync(mdev);
d3fcb490 341 up_read(&drbd_cfg_rwsem);
6b75dced
PR
342}
343
344int conn_khelper(struct drbd_tconn *tconn, char *cmd)
345{
346 char *envp[] = { "HOME=/",
347 "TERM=linux",
348 "PATH=/sbin:/usr/sbin:/bin:/usr/bin",
349 (char[20]) { }, /* address family */
350 (char[60]) { }, /* address */
351 NULL };
352 char *argv[] = {usermode_helper, cmd, tconn->name, NULL };
353 int ret;
354
355 setup_khelper_env(tconn, envp);
356 conn_md_sync(tconn);
357
358 conn_info(tconn, "helper command: %s %s %s\n", usermode_helper, cmd, tconn->name);
359 /* TODO: conn_bcast_event() ?? */
360
361 ret = call_usermodehelper(usermode_helper, argv, envp, 1);
362 if (ret)
363 conn_warn(tconn, "helper command: %s %s %s exit code %u (0x%x)\n",
364 usermode_helper, cmd, tconn->name,
365 (ret >> 8) & 0xff, ret);
366 else
367 conn_info(tconn, "helper command: %s %s %s exit code %u (0x%x)\n",
368 usermode_helper, cmd, tconn->name,
369 (ret >> 8) & 0xff, ret);
370 /* TODO: conn_bcast_event() ?? */
371
372 if (ret < 0) /* Ignore any ERRNOs we got. */
373 ret = 0;
374
375 return ret;
376}
377
cb703454 378static enum drbd_fencing_p highest_fencing_policy(struct drbd_tconn *tconn)
b411b363 379{
cb703454
PR
380 enum drbd_fencing_p fp = FP_NOT_AVAIL;
381 struct drbd_conf *mdev;
382 int vnr;
383
695d08fa 384 rcu_read_lock();
cb703454
PR
385 idr_for_each_entry(&tconn->volumes, mdev, vnr) {
386 if (get_ldev_if_state(mdev, D_CONSISTENT)) {
387 fp = max_t(enum drbd_fencing_p, fp, mdev->ldev->dc.fencing);
388 put_ldev(mdev);
389 }
390 }
695d08fa 391 rcu_read_unlock();
cb703454
PR
392
393 return fp;
394}
395
396bool conn_try_outdate_peer(struct drbd_tconn *tconn)
397{
398 union drbd_state mask = { };
399 union drbd_state val = { };
400 enum drbd_fencing_p fp;
b411b363
PR
401 char *ex_to_string;
402 int r;
b411b363 403
cb703454
PR
404 if (tconn->cstate >= C_WF_REPORT_PARAMS) {
405 conn_err(tconn, "Expected cstate < C_WF_REPORT_PARAMS\n");
406 return false;
407 }
b411b363 408
cb703454
PR
409 fp = highest_fencing_policy(tconn);
410 switch (fp) {
411 case FP_NOT_AVAIL:
412 conn_warn(tconn, "Not fencing peer, I'm not even Consistent myself.\n");
fb22c402 413 goto out;
cb703454
PR
414 case FP_DONT_CARE:
415 return true;
416 default: ;
b411b363
PR
417 }
418
cb703454 419 r = conn_khelper(tconn, "fence-peer");
b411b363
PR
420
421 switch ((r>>8) & 0xff) {
422 case 3: /* peer is inconsistent */
423 ex_to_string = "peer is inconsistent or worse";
cb703454
PR
424 mask.pdsk = D_MASK;
425 val.pdsk = D_INCONSISTENT;
b411b363
PR
426 break;
427 case 4: /* peer got outdated, or was already outdated */
428 ex_to_string = "peer was fenced";
cb703454
PR
429 mask.pdsk = D_MASK;
430 val.pdsk = D_OUTDATED;
b411b363
PR
431 break;
432 case 5: /* peer was down */
cb703454 433 if (conn_highest_disk(tconn) == D_UP_TO_DATE) {
b411b363
PR
434 /* we will(have) create(d) a new UUID anyways... */
435 ex_to_string = "peer is unreachable, assumed to be dead";
cb703454
PR
436 mask.pdsk = D_MASK;
437 val.pdsk = D_OUTDATED;
b411b363
PR
438 } else {
439 ex_to_string = "peer unreachable, doing nothing since disk != UpToDate";
b411b363
PR
440 }
441 break;
442 case 6: /* Peer is primary, voluntarily outdate myself.
443 * This is useful when an unconnected R_SECONDARY is asked to
444 * become R_PRIMARY, but finds the other peer being active. */
445 ex_to_string = "peer is active";
cb703454
PR
446 conn_warn(tconn, "Peer is primary, outdating myself.\n");
447 mask.disk = D_MASK;
448 val.disk = D_OUTDATED;
b411b363
PR
449 break;
450 case 7:
451 if (fp != FP_STONITH)
cb703454 452 conn_err(tconn, "fence-peer() = 7 && fencing != Stonith !!!\n");
b411b363 453 ex_to_string = "peer was stonithed";
cb703454
PR
454 mask.pdsk = D_MASK;
455 val.pdsk = D_OUTDATED;
b411b363
PR
456 break;
457 default:
458 /* The script is broken ... */
cb703454
PR
459 conn_err(tconn, "fence-peer helper broken, returned %d\n", (r>>8)&0xff);
460 return false; /* Eventually leave IO frozen */
b411b363
PR
461 }
462
cb703454
PR
463 conn_info(tconn, "fence-peer helper returned %d (%s)\n",
464 (r>>8) & 0xff, ex_to_string);
fb22c402 465
cb703454 466 out:
fb22c402 467
cb703454
PR
468 /* Not using
469 conn_request_state(tconn, mask, val, CS_VERBOSE);
470 here, because we might were able to re-establish the connection in the
471 meantime. */
472 spin_lock_irq(&tconn->req_lock);
473 if (tconn->cstate < C_WF_REPORT_PARAMS)
474 _conn_request_state(tconn, mask, val, CS_VERBOSE);
475 spin_unlock_irq(&tconn->req_lock);
476
477 return conn_highest_pdsk(tconn) <= D_OUTDATED;
b411b363
PR
478}
479
87f7be4c
PR
480static int _try_outdate_peer_async(void *data)
481{
cb703454 482 struct drbd_tconn *tconn = (struct drbd_tconn *)data;
87f7be4c 483
cb703454 484 conn_try_outdate_peer(tconn);
87f7be4c 485
9dc9fbb3 486 kref_put(&tconn->kref, &conn_destroy);
87f7be4c
PR
487 return 0;
488}
489
cb703454 490void conn_try_outdate_peer_async(struct drbd_tconn *tconn)
87f7be4c
PR
491{
492 struct task_struct *opa;
493
9dc9fbb3 494 kref_get(&tconn->kref);
cb703454 495 opa = kthread_run(_try_outdate_peer_async, tconn, "drbd_async_h");
9dc9fbb3 496 if (IS_ERR(opa)) {
cb703454 497 conn_err(tconn, "out of mem, failed to invoke fence-peer helper\n");
9dc9fbb3
PR
498 kref_put(&tconn->kref, &conn_destroy);
499 }
87f7be4c 500}
b411b363 501
bf885f8a
AG
502enum drbd_state_rv
503drbd_set_role(struct drbd_conf *mdev, enum drbd_role new_role, int force)
b411b363
PR
504{
505 const int max_tries = 4;
bf885f8a 506 enum drbd_state_rv rv = SS_UNKNOWN_ERROR;
44ed167d 507 struct net_conf *nc;
b411b363
PR
508 int try = 0;
509 int forced = 0;
510 union drbd_state mask, val;
b411b363
PR
511
512 if (new_role == R_PRIMARY)
0625ac19 513 request_ping(mdev->tconn); /* Detect a dead peer ASAP */
b411b363 514
8410da8f 515 mutex_lock(mdev->state_mutex);
b411b363
PR
516
517 mask.i = 0; mask.role = R_MASK;
518 val.i = 0; val.role = new_role;
519
520 while (try++ < max_tries) {
bf885f8a 521 rv = _drbd_request_state(mdev, mask, val, CS_WAIT_COMPLETE);
b411b363
PR
522
523 /* in case we first succeeded to outdate,
524 * but now suddenly could establish a connection */
bf885f8a 525 if (rv == SS_CW_FAILED_BY_PEER && mask.pdsk != 0) {
b411b363
PR
526 val.pdsk = 0;
527 mask.pdsk = 0;
528 continue;
529 }
530
bf885f8a 531 if (rv == SS_NO_UP_TO_DATE_DISK && force &&
d10a33c6
PR
532 (mdev->state.disk < D_UP_TO_DATE &&
533 mdev->state.disk >= D_INCONSISTENT)) {
b411b363
PR
534 mask.disk = D_MASK;
535 val.disk = D_UP_TO_DATE;
536 forced = 1;
537 continue;
538 }
539
bf885f8a 540 if (rv == SS_NO_UP_TO_DATE_DISK &&
b411b363
PR
541 mdev->state.disk == D_CONSISTENT && mask.pdsk == 0) {
542 D_ASSERT(mdev->state.pdsk == D_UNKNOWN);
b411b363 543
cb703454 544 if (conn_try_outdate_peer(mdev->tconn)) {
b411b363
PR
545 val.disk = D_UP_TO_DATE;
546 mask.disk = D_MASK;
547 }
b411b363
PR
548 continue;
549 }
550
bf885f8a 551 if (rv == SS_NOTHING_TO_DO)
3b98c0c2 552 goto out;
bf885f8a 553 if (rv == SS_PRIMARY_NOP && mask.pdsk == 0) {
cb703454 554 if (!conn_try_outdate_peer(mdev->tconn) && force) {
b411b363 555 dev_warn(DEV, "Forced into split brain situation!\n");
cb703454
PR
556 mask.pdsk = D_MASK;
557 val.pdsk = D_OUTDATED;
b411b363 558
cb703454 559 }
b411b363
PR
560 continue;
561 }
bf885f8a 562 if (rv == SS_TWO_PRIMARIES) {
b411b363
PR
563 /* Maybe the peer is detected as dead very soon...
564 retry at most once more in this case. */
44ed167d
PR
565 int timeo;
566 rcu_read_lock();
567 nc = rcu_dereference(mdev->tconn->net_conf);
568 timeo = nc ? (nc->ping_timeo + 1) * HZ / 10 : 1;
569 rcu_read_unlock();
570 schedule_timeout_interruptible(timeo);
b411b363
PR
571 if (try < max_tries)
572 try = max_tries - 1;
573 continue;
574 }
bf885f8a
AG
575 if (rv < SS_SUCCESS) {
576 rv = _drbd_request_state(mdev, mask, val,
b411b363 577 CS_VERBOSE + CS_WAIT_COMPLETE);
bf885f8a 578 if (rv < SS_SUCCESS)
3b98c0c2 579 goto out;
b411b363
PR
580 }
581 break;
582 }
583
bf885f8a 584 if (rv < SS_SUCCESS)
3b98c0c2 585 goto out;
b411b363
PR
586
587 if (forced)
588 dev_warn(DEV, "Forced to consider local data as UpToDate!\n");
589
590 /* Wait until nothing is on the fly :) */
591 wait_event(mdev->misc_wait, atomic_read(&mdev->ap_pending_cnt) == 0);
592
593 if (new_role == R_SECONDARY) {
81e84650 594 set_disk_ro(mdev->vdisk, true);
b411b363
PR
595 if (get_ldev(mdev)) {
596 mdev->ldev->md.uuid[UI_CURRENT] &= ~(u64)1;
597 put_ldev(mdev);
598 }
599 } else {
91fd4dad
PR
600 mutex_lock(&mdev->tconn->net_conf_update);
601 nc = mdev->tconn->net_conf;
44ed167d 602 if (nc)
91fd4dad
PR
603 nc->want_lose = 0; /* without copy; single bit op is atomic */
604 mutex_unlock(&mdev->tconn->net_conf_update);
605
81e84650 606 set_disk_ro(mdev->vdisk, false);
b411b363
PR
607 if (get_ldev(mdev)) {
608 if (((mdev->state.conn < C_CONNECTED ||
609 mdev->state.pdsk <= D_FAILED)
610 && mdev->ldev->md.uuid[UI_BITMAP] == 0) || forced)
611 drbd_uuid_new_current(mdev);
612
613 mdev->ldev->md.uuid[UI_CURRENT] |= (u64)1;
614 put_ldev(mdev);
615 }
616 }
617
19f843aa
LE
618 /* writeout of activity log covered areas of the bitmap
619 * to stable storage done in after state change already */
b411b363
PR
620
621 if (mdev->state.conn >= C_WF_REPORT_PARAMS) {
622 /* if this was forced, we should consider sync */
623 if (forced)
624 drbd_send_uuids(mdev);
625 drbd_send_state(mdev);
626 }
627
628 drbd_md_sync(mdev);
629
630 kobject_uevent(&disk_to_dev(mdev->vdisk)->kobj, KOBJ_CHANGE);
3b98c0c2 631out:
8410da8f 632 mutex_unlock(mdev->state_mutex);
bf885f8a 633 return rv;
b411b363
PR
634}
635
3b98c0c2 636static const char *from_attrs_err_to_txt(int err)
b411b363 637{
3b98c0c2
LE
638 return err == -ENOMSG ? "required attribute missing" :
639 err == -EOPNOTSUPP ? "unknown mandatory attribute" :
f399002e 640 err == -EEXIST ? "can not change invariant setting" :
3b98c0c2 641 "invalid attribute value";
b411b363
PR
642}
643
3b98c0c2 644int drbd_adm_set_role(struct sk_buff *skb, struct genl_info *info)
b411b363 645{
3b98c0c2
LE
646 struct set_role_parms parms;
647 int err;
648 enum drbd_ret_code retcode;
b411b363 649
3b98c0c2
LE
650 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_MINOR);
651 if (!adm_ctx.reply_skb)
652 return retcode;
653 if (retcode != NO_ERROR)
654 goto out;
655
656 memset(&parms, 0, sizeof(parms));
657 if (info->attrs[DRBD_NLA_SET_ROLE_PARMS]) {
f399002e 658 err = set_role_parms_from_attrs(&parms, info);
3b98c0c2
LE
659 if (err) {
660 retcode = ERR_MANDATORY_TAG;
661 drbd_msg_put_info(from_attrs_err_to_txt(err));
662 goto out;
663 }
664 }
665
666 if (info->genlhdr->cmd == DRBD_ADM_PRIMARY)
667 retcode = drbd_set_role(adm_ctx.mdev, R_PRIMARY, parms.assume_uptodate);
668 else
669 retcode = drbd_set_role(adm_ctx.mdev, R_SECONDARY, 0);
670out:
671 drbd_adm_finish(info, retcode);
b411b363
PR
672 return 0;
673}
674
675/* initializes the md.*_offset members, so we are able to find
676 * the on disk meta data */
677static void drbd_md_set_sector_offsets(struct drbd_conf *mdev,
678 struct drbd_backing_dev *bdev)
679{
680 sector_t md_size_sect = 0;
681 switch (bdev->dc.meta_dev_idx) {
682 default:
683 /* v07 style fixed size indexed meta data */
684 bdev->md.md_size_sect = MD_RESERVED_SECT;
685 bdev->md.md_offset = drbd_md_ss__(mdev, bdev);
686 bdev->md.al_offset = MD_AL_OFFSET;
687 bdev->md.bm_offset = MD_BM_OFFSET;
688 break;
689 case DRBD_MD_INDEX_FLEX_EXT:
690 /* just occupy the full device; unit: sectors */
691 bdev->md.md_size_sect = drbd_get_capacity(bdev->md_bdev);
692 bdev->md.md_offset = 0;
693 bdev->md.al_offset = MD_AL_OFFSET;
694 bdev->md.bm_offset = MD_BM_OFFSET;
695 break;
696 case DRBD_MD_INDEX_INTERNAL:
697 case DRBD_MD_INDEX_FLEX_INT:
698 bdev->md.md_offset = drbd_md_ss__(mdev, bdev);
699 /* al size is still fixed */
7ad651b5 700 bdev->md.al_offset = -MD_AL_SECTORS;
b411b363
PR
701 /* we need (slightly less than) ~ this much bitmap sectors: */
702 md_size_sect = drbd_get_capacity(bdev->backing_bdev);
703 md_size_sect = ALIGN(md_size_sect, BM_SECT_PER_EXT);
704 md_size_sect = BM_SECT_TO_EXT(md_size_sect);
705 md_size_sect = ALIGN(md_size_sect, 8);
706
707 /* plus the "drbd meta data super block",
708 * and the activity log; */
709 md_size_sect += MD_BM_OFFSET;
710
711 bdev->md.md_size_sect = md_size_sect;
712 /* bitmap offset is adjusted by 'super' block size */
713 bdev->md.bm_offset = -md_size_sect + MD_AL_OFFSET;
714 break;
715 }
716}
717
4b0715f0 718/* input size is expected to be in KB */
b411b363
PR
719char *ppsize(char *buf, unsigned long long size)
720{
4b0715f0
LE
721 /* Needs 9 bytes at max including trailing NUL:
722 * -1ULL ==> "16384 EB" */
b411b363
PR
723 static char units[] = { 'K', 'M', 'G', 'T', 'P', 'E' };
724 int base = 0;
4b0715f0 725 while (size >= 10000 && base < sizeof(units)-1) {
b411b363
PR
726 /* shift + round */
727 size = (size >> 10) + !!(size & (1<<9));
728 base++;
729 }
4b0715f0 730 sprintf(buf, "%u %cB", (unsigned)size, units[base]);
b411b363
PR
731
732 return buf;
733}
734
735/* there is still a theoretical deadlock when called from receiver
736 * on an D_INCONSISTENT R_PRIMARY:
737 * remote READ does inc_ap_bio, receiver would need to receive answer
738 * packet from remote to dec_ap_bio again.
739 * receiver receive_sizes(), comes here,
740 * waits for ap_bio_cnt == 0. -> deadlock.
741 * but this cannot happen, actually, because:
742 * R_PRIMARY D_INCONSISTENT, and peer's disk is unreachable
743 * (not connected, or bad/no disk on peer):
744 * see drbd_fail_request_early, ap_bio_cnt is zero.
745 * R_PRIMARY D_INCONSISTENT, and C_SYNC_TARGET:
746 * peer may not initiate a resize.
747 */
3b98c0c2
LE
748/* Note these are not to be confused with
749 * drbd_adm_suspend_io/drbd_adm_resume_io,
750 * which are (sub) state changes triggered by admin (drbdsetup),
751 * and can be long lived.
752 * This changes an mdev->flag, is triggered by drbd internals,
753 * and should be short-lived. */
b411b363
PR
754void drbd_suspend_io(struct drbd_conf *mdev)
755{
756 set_bit(SUSPEND_IO, &mdev->flags);
2aebfabb 757 if (drbd_suspended(mdev))
265be2d0 758 return;
b411b363
PR
759 wait_event(mdev->misc_wait, !atomic_read(&mdev->ap_bio_cnt));
760}
761
762void drbd_resume_io(struct drbd_conf *mdev)
763{
764 clear_bit(SUSPEND_IO, &mdev->flags);
765 wake_up(&mdev->misc_wait);
766}
767
768/**
769 * drbd_determine_dev_size() - Sets the right device size obeying all constraints
770 * @mdev: DRBD device.
771 *
772 * Returns 0 on success, negative return values indicate errors.
773 * You should call drbd_md_sync() after calling this function.
774 */
24c4830c 775enum determine_dev_size drbd_determine_dev_size(struct drbd_conf *mdev, enum dds_flags flags) __must_hold(local)
b411b363
PR
776{
777 sector_t prev_first_sect, prev_size; /* previous meta location */
778 sector_t la_size;
779 sector_t size;
780 char ppb[10];
781
782 int md_moved, la_size_changed;
783 enum determine_dev_size rv = unchanged;
784
785 /* race:
786 * application request passes inc_ap_bio,
787 * but then cannot get an AL-reference.
788 * this function later may wait on ap_bio_cnt == 0. -> deadlock.
789 *
790 * to avoid that:
791 * Suspend IO right here.
792 * still lock the act_log to not trigger ASSERTs there.
793 */
794 drbd_suspend_io(mdev);
795
796 /* no wait necessary anymore, actually we could assert that */
797 wait_event(mdev->al_wait, lc_try_lock(mdev->act_log));
798
799 prev_first_sect = drbd_md_first_sector(mdev->ldev);
800 prev_size = mdev->ldev->md.md_size_sect;
801 la_size = mdev->ldev->md.la_size_sect;
802
803 /* TODO: should only be some assert here, not (re)init... */
804 drbd_md_set_sector_offsets(mdev, mdev->ldev);
805
d845030f 806 size = drbd_new_dev_size(mdev, mdev->ldev, flags & DDSF_FORCED);
b411b363
PR
807
808 if (drbd_get_capacity(mdev->this_bdev) != size ||
809 drbd_bm_capacity(mdev) != size) {
810 int err;
02d9a94b 811 err = drbd_bm_resize(mdev, size, !(flags & DDSF_NO_RESYNC));
b411b363
PR
812 if (unlikely(err)) {
813 /* currently there is only one error: ENOMEM! */
814 size = drbd_bm_capacity(mdev)>>1;
815 if (size == 0) {
816 dev_err(DEV, "OUT OF MEMORY! "
817 "Could not allocate bitmap!\n");
818 } else {
819 dev_err(DEV, "BM resizing failed. "
820 "Leaving size unchanged at size = %lu KB\n",
821 (unsigned long)size);
822 }
823 rv = dev_size_error;
824 }
825 /* racy, see comments above. */
826 drbd_set_my_capacity(mdev, size);
827 mdev->ldev->md.la_size_sect = size;
828 dev_info(DEV, "size = %s (%llu KB)\n", ppsize(ppb, size>>1),
829 (unsigned long long)size>>1);
830 }
831 if (rv == dev_size_error)
832 goto out;
833
834 la_size_changed = (la_size != mdev->ldev->md.la_size_sect);
835
836 md_moved = prev_first_sect != drbd_md_first_sector(mdev->ldev)
837 || prev_size != mdev->ldev->md.md_size_sect;
838
839 if (la_size_changed || md_moved) {
24dccabb
AG
840 int err;
841
b411b363
PR
842 drbd_al_shrink(mdev); /* All extents inactive. */
843 dev_info(DEV, "Writing the whole bitmap, %s\n",
844 la_size_changed && md_moved ? "size changed and md moved" :
845 la_size_changed ? "size changed" : "md moved");
20ceb2b2
LE
846 /* next line implicitly does drbd_suspend_io()+drbd_resume_io() */
847 err = drbd_bitmap_io(mdev, &drbd_bm_write,
848 "size changed", BM_LOCKED_MASK);
24dccabb
AG
849 if (err) {
850 rv = dev_size_error;
851 goto out;
852 }
b411b363
PR
853 drbd_md_mark_dirty(mdev);
854 }
855
856 if (size > la_size)
857 rv = grew;
858 if (size < la_size)
859 rv = shrunk;
860out:
861 lc_unlock(mdev->act_log);
862 wake_up(&mdev->al_wait);
863 drbd_resume_io(mdev);
864
865 return rv;
866}
867
868sector_t
a393db6f 869drbd_new_dev_size(struct drbd_conf *mdev, struct drbd_backing_dev *bdev, int assume_peer_has_space)
b411b363
PR
870{
871 sector_t p_size = mdev->p_size; /* partner's disk size. */
872 sector_t la_size = bdev->md.la_size_sect; /* last agreed size. */
873 sector_t m_size; /* my size */
874 sector_t u_size = bdev->dc.disk_size; /* size requested by user. */
875 sector_t size = 0;
876
877 m_size = drbd_get_max_capacity(bdev);
878
a393db6f
PR
879 if (mdev->state.conn < C_CONNECTED && assume_peer_has_space) {
880 dev_warn(DEV, "Resize while not connected was forced by the user!\n");
881 p_size = m_size;
882 }
883
b411b363
PR
884 if (p_size && m_size) {
885 size = min_t(sector_t, p_size, m_size);
886 } else {
887 if (la_size) {
888 size = la_size;
889 if (m_size && m_size < size)
890 size = m_size;
891 if (p_size && p_size < size)
892 size = p_size;
893 } else {
894 if (m_size)
895 size = m_size;
896 if (p_size)
897 size = p_size;
898 }
899 }
900
901 if (size == 0)
902 dev_err(DEV, "Both nodes diskless!\n");
903
904 if (u_size) {
905 if (u_size > size)
906 dev_err(DEV, "Requested disk size is too big (%lu > %lu)\n",
907 (unsigned long)u_size>>1, (unsigned long)size>>1);
908 else
909 size = u_size;
910 }
911
912 return size;
913}
914
915/**
916 * drbd_check_al_size() - Ensures that the AL is of the right size
917 * @mdev: DRBD device.
918 *
919 * Returns -EBUSY if current al lru is still used, -ENOMEM when allocation
920 * failed, and 0 on success. You should call drbd_md_sync() after you called
921 * this function.
922 */
f399002e 923static int drbd_check_al_size(struct drbd_conf *mdev, struct disk_conf *dc)
b411b363
PR
924{
925 struct lru_cache *n, *t;
926 struct lc_element *e;
927 unsigned int in_use;
928 int i;
929
f399002e
LE
930 if (!expect(dc->al_extents >= DRBD_AL_EXTENTS_MIN))
931 dc->al_extents = DRBD_AL_EXTENTS_MIN;
b411b363
PR
932
933 if (mdev->act_log &&
f399002e 934 mdev->act_log->nr_elements == dc->al_extents)
b411b363
PR
935 return 0;
936
937 in_use = 0;
938 t = mdev->act_log;
7ad651b5 939 n = lc_create("act_log", drbd_al_ext_cache, AL_UPDATES_PER_TRANSACTION,
f399002e 940 dc->al_extents, sizeof(struct lc_element), 0);
b411b363
PR
941
942 if (n == NULL) {
943 dev_err(DEV, "Cannot allocate act_log lru!\n");
944 return -ENOMEM;
945 }
946 spin_lock_irq(&mdev->al_lock);
947 if (t) {
948 for (i = 0; i < t->nr_elements; i++) {
949 e = lc_element_by_index(t, i);
950 if (e->refcnt)
951 dev_err(DEV, "refcnt(%d)==%d\n",
952 e->lc_number, e->refcnt);
953 in_use += e->refcnt;
954 }
955 }
956 if (!in_use)
957 mdev->act_log = n;
958 spin_unlock_irq(&mdev->al_lock);
959 if (in_use) {
960 dev_err(DEV, "Activity log still in use!\n");
961 lc_destroy(n);
962 return -EBUSY;
963 } else {
964 if (t)
965 lc_destroy(t);
966 }
967 drbd_md_mark_dirty(mdev); /* we changed mdev->act_log->nr_elemens */
968 return 0;
969}
970
99432fcc 971static void drbd_setup_queue_param(struct drbd_conf *mdev, unsigned int max_bio_size)
b411b363
PR
972{
973 struct request_queue * const q = mdev->rq_queue;
99432fcc
PR
974 int max_hw_sectors = max_bio_size >> 9;
975 int max_segments = 0;
976
977 if (get_ldev_if_state(mdev, D_ATTACHING)) {
978 struct request_queue * const b = mdev->ldev->backing_bdev->bd_disk->queue;
979
980 max_hw_sectors = min(queue_max_hw_sectors(b), max_bio_size >> 9);
981 max_segments = mdev->ldev->dc.max_bio_bvecs;
982 put_ldev(mdev);
983 }
b411b363 984
b411b363 985 blk_queue_logical_block_size(q, 512);
1816a2b4
LE
986 blk_queue_max_hw_sectors(q, max_hw_sectors);
987 /* This is the workaround for "bio would need to, but cannot, be split" */
988 blk_queue_max_segments(q, max_segments ? max_segments : BLK_MAX_SEGMENTS);
989 blk_queue_segment_boundary(q, PAGE_CACHE_SIZE-1);
b411b363 990
99432fcc
PR
991 if (get_ldev_if_state(mdev, D_ATTACHING)) {
992 struct request_queue * const b = mdev->ldev->backing_bdev->bd_disk->queue;
993
994 blk_queue_stack_limits(q, b);
995
996 if (q->backing_dev_info.ra_pages != b->backing_dev_info.ra_pages) {
997 dev_info(DEV, "Adjusting my ra_pages to backing device's (%lu -> %lu)\n",
998 q->backing_dev_info.ra_pages,
999 b->backing_dev_info.ra_pages);
1000 q->backing_dev_info.ra_pages = b->backing_dev_info.ra_pages;
1001 }
1002 put_ldev(mdev);
1003 }
1004}
1005
1006void drbd_reconsider_max_bio_size(struct drbd_conf *mdev)
1007{
1008 int now, new, local, peer;
1009
1010 now = queue_max_hw_sectors(mdev->rq_queue) << 9;
1011 local = mdev->local_max_bio_size; /* Eventually last known value, from volatile memory */
1012 peer = mdev->peer_max_bio_size; /* Eventually last known value, from meta data */
b411b363 1013
99432fcc
PR
1014 if (get_ldev_if_state(mdev, D_ATTACHING)) {
1015 local = queue_max_hw_sectors(mdev->ldev->backing_bdev->bd_disk->queue) << 9;
1016 mdev->local_max_bio_size = local;
1017 put_ldev(mdev);
b411b363 1018 }
99432fcc
PR
1019
1020 /* We may ignore peer limits if the peer is modern enough.
1021 Because new from 8.3.8 onwards the peer can use multiple
1022 BIOs for a single peer_request */
1023 if (mdev->state.conn >= C_CONNECTED) {
31890f4a 1024 if (mdev->tconn->agreed_pro_version < 94)
99432fcc 1025 peer = mdev->peer_max_bio_size;
31890f4a 1026 else if (mdev->tconn->agreed_pro_version == 94)
99432fcc
PR
1027 peer = DRBD_MAX_SIZE_H80_PACKET;
1028 else /* drbd 8.3.8 onwards */
1029 peer = DRBD_MAX_BIO_SIZE;
1030 }
1031
1032 new = min_t(int, local, peer);
1033
1034 if (mdev->state.role == R_PRIMARY && new < now)
1035 dev_err(DEV, "ASSERT FAILED new < now; (%d < %d)\n", new, now);
1036
1037 if (new != now)
1038 dev_info(DEV, "max BIO size = %u\n", new);
1039
1040 drbd_setup_queue_param(mdev, new);
b411b363
PR
1041}
1042
a18e9d1e 1043/* Starts the worker thread */
0e29d163 1044static void conn_reconfig_start(struct drbd_tconn *tconn)
b411b363 1045{
0e29d163
PR
1046 drbd_thread_start(&tconn->worker);
1047 conn_flush_workqueue(tconn);
b411b363
PR
1048}
1049
a18e9d1e 1050/* if still unconfigured, stops worker again. */
0e29d163 1051static void conn_reconfig_done(struct drbd_tconn *tconn)
b411b363 1052{
0e29d163 1053 spin_lock_irq(&tconn->req_lock);
a18e9d1e 1054 if (conn_all_vols_unconf(tconn))
0e29d163 1055 drbd_thread_stop_nowait(&tconn->worker);
0e29d163 1056 spin_unlock_irq(&tconn->req_lock);
b411b363
PR
1057}
1058
0778286a
PR
1059/* Make sure IO is suspended before calling this function(). */
1060static void drbd_suspend_al(struct drbd_conf *mdev)
1061{
1062 int s = 0;
1063
61610420 1064 if (!lc_try_lock(mdev->act_log)) {
0778286a
PR
1065 dev_warn(DEV, "Failed to lock al in drbd_suspend_al()\n");
1066 return;
1067 }
1068
61610420 1069 drbd_al_shrink(mdev);
87eeee41 1070 spin_lock_irq(&mdev->tconn->req_lock);
0778286a
PR
1071 if (mdev->state.conn < C_CONNECTED)
1072 s = !test_and_set_bit(AL_SUSPENDED, &mdev->flags);
87eeee41 1073 spin_unlock_irq(&mdev->tconn->req_lock);
61610420 1074 lc_unlock(mdev->act_log);
0778286a
PR
1075
1076 if (s)
1077 dev_info(DEV, "Suspended AL updates\n");
1078}
1079
f399002e
LE
1080int drbd_adm_disk_opts(struct sk_buff *skb, struct genl_info *info)
1081{
1082 enum drbd_ret_code retcode;
1083 struct drbd_conf *mdev;
1084 struct disk_conf *ndc; /* new disk conf */
1085 int err, fifo_size;
1086 int *rs_plan_s = NULL;
1087
1088 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_MINOR);
1089 if (!adm_ctx.reply_skb)
1090 return retcode;
1091 if (retcode != NO_ERROR)
1092 goto out;
1093
1094 mdev = adm_ctx.mdev;
1095
1096 /* we also need a disk
1097 * to change the options on */
1098 if (!get_ldev(mdev)) {
1099 retcode = ERR_NO_DISK;
1100 goto out;
1101 }
1102
1103/* FIXME freeze IO, cluster wide.
1104 *
1105 * We should make sure no-one uses
1106 * some half-updated struct when we
1107 * assign it later. */
1108
1109 ndc = kmalloc(sizeof(*ndc), GFP_KERNEL);
1110 if (!ndc) {
1111 retcode = ERR_NOMEM;
1112 goto fail;
1113 }
1114
1115 memcpy(ndc, &mdev->ldev->dc, sizeof(*ndc));
1116 err = disk_conf_from_attrs_for_change(ndc, info);
1117 if (err) {
1118 retcode = ERR_MANDATORY_TAG;
1119 drbd_msg_put_info(from_attrs_err_to_txt(err));
1120 }
1121
1122 if (!expect(ndc->resync_rate >= 1))
1123 ndc->resync_rate = 1;
1124
1125 /* clip to allowed range */
1126 if (!expect(ndc->al_extents >= DRBD_AL_EXTENTS_MIN))
1127 ndc->al_extents = DRBD_AL_EXTENTS_MIN;
1128 if (!expect(ndc->al_extents <= DRBD_AL_EXTENTS_MAX))
1129 ndc->al_extents = DRBD_AL_EXTENTS_MAX;
1130
1131 /* most sanity checks done, try to assign the new sync-after
1132 * dependency. need to hold the global lock in there,
1133 * to avoid a race in the dependency loop check. */
1134 retcode = drbd_alter_sa(mdev, ndc->resync_after);
1135 if (retcode != NO_ERROR)
1136 goto fail;
1137
1138 fifo_size = (ndc->c_plan_ahead * 10 * SLEEP_TIME) / HZ;
1139 if (fifo_size != mdev->rs_plan_s.size && fifo_size > 0) {
1140 rs_plan_s = kzalloc(sizeof(int) * fifo_size, GFP_KERNEL);
1141 if (!rs_plan_s) {
1142 dev_err(DEV, "kmalloc of fifo_buffer failed");
1143 retcode = ERR_NOMEM;
1144 goto fail;
1145 }
1146 }
1147
1148 if (fifo_size != mdev->rs_plan_s.size) {
1149 kfree(mdev->rs_plan_s.values);
1150 mdev->rs_plan_s.values = rs_plan_s;
1151 mdev->rs_plan_s.size = fifo_size;
1152 mdev->rs_planed = 0;
1153 rs_plan_s = NULL;
1154 }
1155
1156 wait_event(mdev->al_wait, lc_try_lock(mdev->act_log));
1157 drbd_al_shrink(mdev);
1158 err = drbd_check_al_size(mdev, ndc);
1159 lc_unlock(mdev->act_log);
1160 wake_up(&mdev->al_wait);
1161
1162 if (err) {
1163 retcode = ERR_NOMEM;
1164 goto fail;
1165 }
1166
1167 /* FIXME
1168 * To avoid someone looking at a half-updated struct, we probably
1169 * should have a rw-semaphor on net_conf and disk_conf.
1170 */
1171 mdev->ldev->dc = *ndc;
1172
1173 drbd_md_sync(mdev);
1174
1175
1176 if (mdev->state.conn >= C_CONNECTED)
1177 drbd_send_sync_param(mdev);
1178
1179 fail:
1180 put_ldev(mdev);
1181 kfree(ndc);
1182 kfree(rs_plan_s);
1183 out:
1184 drbd_adm_finish(info, retcode);
1185 return 0;
1186}
1187
3b98c0c2 1188int drbd_adm_attach(struct sk_buff *skb, struct genl_info *info)
b411b363 1189{
3b98c0c2
LE
1190 struct drbd_conf *mdev;
1191 int err;
116676ca 1192 enum drbd_ret_code retcode;
b411b363
PR
1193 enum determine_dev_size dd;
1194 sector_t max_possible_sectors;
1195 sector_t min_md_device_sectors;
1196 struct drbd_backing_dev *nbc = NULL; /* new_backing_conf */
e525fd89 1197 struct block_device *bdev;
b411b363
PR
1198 struct lru_cache *resync_lru = NULL;
1199 union drbd_state ns, os;
f2024e7c 1200 enum drbd_state_rv rv;
44ed167d 1201 struct net_conf *nc;
b411b363 1202 int cp_discovered = 0;
b411b363 1203
3b98c0c2
LE
1204 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_MINOR);
1205 if (!adm_ctx.reply_skb)
1206 return retcode;
1207 if (retcode != NO_ERROR)
40cbf085 1208 goto finish;
3b98c0c2
LE
1209
1210 mdev = adm_ctx.mdev;
0e29d163 1211 conn_reconfig_start(mdev->tconn);
b411b363
PR
1212
1213 /* if you want to reconfigure, please tear down first */
1214 if (mdev->state.disk > D_DISKLESS) {
1215 retcode = ERR_DISK_CONFIGURED;
1216 goto fail;
1217 }
82f59cc6
LE
1218 /* It may just now have detached because of IO error. Make sure
1219 * drbd_ldev_destroy is done already, we may end up here very fast,
1220 * e.g. if someone calls attach from the on-io-error handler,
1221 * to realize a "hot spare" feature (not that I'd recommend that) */
1222 wait_event(mdev->misc_wait, !atomic_read(&mdev->local_cnt));
b411b363 1223
3b98c0c2 1224 /* allocation not in the IO path, drbdsetup context */
b411b363
PR
1225 nbc = kzalloc(sizeof(struct drbd_backing_dev), GFP_KERNEL);
1226 if (!nbc) {
1227 retcode = ERR_NOMEM;
1228 goto fail;
1229 }
1230
f399002e
LE
1231 nbc->dc = (struct disk_conf) {
1232 {}, 0, /* backing_dev */
1233 {}, 0, /* meta_dev */
1234 0, /* meta_dev_idx */
1235 DRBD_DISK_SIZE_SECT_DEF, /* disk_size */
1236 DRBD_MAX_BIO_BVECS_DEF, /* max_bio_bvecs */
1237 DRBD_ON_IO_ERROR_DEF, /* on_io_error */
1238 DRBD_FENCING_DEF, /* fencing */
1239 DRBD_RATE_DEF, /* resync_rate */
1240 DRBD_AFTER_DEF, /* resync_after */
1241 DRBD_AL_EXTENTS_DEF, /* al_extents */
1242 DRBD_C_PLAN_AHEAD_DEF, /* c_plan_ahead */
1243 DRBD_C_DELAY_TARGET_DEF, /* c_delay_target */
1244 DRBD_C_FILL_TARGET_DEF, /* c_fill_target */
1245 DRBD_C_MAX_RATE_DEF, /* c_max_rate */
1246 DRBD_C_MIN_RATE_DEF, /* c_min_rate */
1247 0, /* no_disk_barrier */
1248 0, /* no_disk_flush */
1249 0, /* no_disk_drain */
1250 0, /* no_md_flush */
1251 };
1252
1253 err = disk_conf_from_attrs(&nbc->dc, info);
3b98c0c2 1254 if (err) {
b411b363 1255 retcode = ERR_MANDATORY_TAG;
3b98c0c2 1256 drbd_msg_put_info(from_attrs_err_to_txt(err));
b411b363
PR
1257 goto fail;
1258 }
1259
3b98c0c2 1260 if ((int)nbc->dc.meta_dev_idx < DRBD_MD_INDEX_FLEX_INT) {
b411b363
PR
1261 retcode = ERR_MD_IDX_INVALID;
1262 goto fail;
1263 }
1264
44ed167d
PR
1265 rcu_read_lock();
1266 nc = rcu_dereference(mdev->tconn->net_conf);
1267 if (nc) {
1268 if (nbc->dc.fencing == FP_STONITH && nc->wire_protocol == DRBD_PROT_A) {
1269 rcu_read_unlock();
47ff2d0a
PR
1270 retcode = ERR_STONITH_AND_PROT_A;
1271 goto fail;
1272 }
1273 }
44ed167d 1274 rcu_read_unlock();
47ff2d0a 1275
d4d77629
TH
1276 bdev = blkdev_get_by_path(nbc->dc.backing_dev,
1277 FMODE_READ | FMODE_WRITE | FMODE_EXCL, mdev);
e525fd89 1278 if (IS_ERR(bdev)) {
b411b363 1279 dev_err(DEV, "open(\"%s\") failed with %ld\n", nbc->dc.backing_dev,
e525fd89 1280 PTR_ERR(bdev));
b411b363
PR
1281 retcode = ERR_OPEN_DISK;
1282 goto fail;
1283 }
e525fd89
TH
1284 nbc->backing_bdev = bdev;
1285
1286 /*
1287 * meta_dev_idx >= 0: external fixed size, possibly multiple
1288 * drbd sharing one meta device. TODO in that case, paranoia
1289 * check that [md_bdev, meta_dev_idx] is not yet used by some
1290 * other drbd minor! (if you use drbd.conf + drbdadm, that
1291 * should check it for you already; but if you don't, or
1292 * someone fooled it, we need to double check here)
1293 */
d4d77629
TH
1294 bdev = blkdev_get_by_path(nbc->dc.meta_dev,
1295 FMODE_READ | FMODE_WRITE | FMODE_EXCL,
3b98c0c2 1296 ((int)nbc->dc.meta_dev_idx < 0) ?
d4d77629 1297 (void *)mdev : (void *)drbd_m_holder);
e525fd89 1298 if (IS_ERR(bdev)) {
b411b363 1299 dev_err(DEV, "open(\"%s\") failed with %ld\n", nbc->dc.meta_dev,
e525fd89 1300 PTR_ERR(bdev));
b411b363
PR
1301 retcode = ERR_OPEN_MD_DISK;
1302 goto fail;
1303 }
e525fd89 1304 nbc->md_bdev = bdev;
b411b363 1305
e525fd89
TH
1306 if ((nbc->backing_bdev == nbc->md_bdev) !=
1307 (nbc->dc.meta_dev_idx == DRBD_MD_INDEX_INTERNAL ||
1308 nbc->dc.meta_dev_idx == DRBD_MD_INDEX_FLEX_INT)) {
1309 retcode = ERR_MD_IDX_INVALID;
b411b363
PR
1310 goto fail;
1311 }
1312
1313 resync_lru = lc_create("resync", drbd_bm_ext_cache,
46a15bc3 1314 1, 61, sizeof(struct bm_extent),
b411b363
PR
1315 offsetof(struct bm_extent, lce));
1316 if (!resync_lru) {
1317 retcode = ERR_NOMEM;
e525fd89 1318 goto fail;
b411b363
PR
1319 }
1320
1321 /* RT - for drbd_get_max_capacity() DRBD_MD_INDEX_FLEX_INT */
1322 drbd_md_set_sector_offsets(mdev, nbc);
1323
1324 if (drbd_get_max_capacity(nbc) < nbc->dc.disk_size) {
1325 dev_err(DEV, "max capacity %llu smaller than disk size %llu\n",
1326 (unsigned long long) drbd_get_max_capacity(nbc),
1327 (unsigned long long) nbc->dc.disk_size);
1328 retcode = ERR_DISK_TO_SMALL;
e525fd89 1329 goto fail;
b411b363
PR
1330 }
1331
3b98c0c2 1332 if ((int)nbc->dc.meta_dev_idx < 0) {
b411b363
PR
1333 max_possible_sectors = DRBD_MAX_SECTORS_FLEX;
1334 /* at least one MB, otherwise it does not make sense */
1335 min_md_device_sectors = (2<<10);
1336 } else {
1337 max_possible_sectors = DRBD_MAX_SECTORS;
1338 min_md_device_sectors = MD_RESERVED_SECT * (nbc->dc.meta_dev_idx + 1);
1339 }
1340
b411b363
PR
1341 if (drbd_get_capacity(nbc->md_bdev) < min_md_device_sectors) {
1342 retcode = ERR_MD_DISK_TO_SMALL;
1343 dev_warn(DEV, "refusing attach: md-device too small, "
1344 "at least %llu sectors needed for this meta-disk type\n",
1345 (unsigned long long) min_md_device_sectors);
e525fd89 1346 goto fail;
b411b363
PR
1347 }
1348
1349 /* Make sure the new disk is big enough
1350 * (we may currently be R_PRIMARY with no local disk...) */
1351 if (drbd_get_max_capacity(nbc) <
1352 drbd_get_capacity(mdev->this_bdev)) {
1353 retcode = ERR_DISK_TO_SMALL;
e525fd89 1354 goto fail;
b411b363
PR
1355 }
1356
1357 nbc->known_size = drbd_get_capacity(nbc->backing_bdev);
1358
1352994b
LE
1359 if (nbc->known_size > max_possible_sectors) {
1360 dev_warn(DEV, "==> truncating very big lower level device "
1361 "to currently maximum possible %llu sectors <==\n",
1362 (unsigned long long) max_possible_sectors);
3b98c0c2 1363 if ((int)nbc->dc.meta_dev_idx >= 0)
1352994b
LE
1364 dev_warn(DEV, "==>> using internal or flexible "
1365 "meta data may help <<==\n");
1366 }
1367
b411b363
PR
1368 drbd_suspend_io(mdev);
1369 /* also wait for the last barrier ack. */
2aebfabb 1370 wait_event(mdev->misc_wait, !atomic_read(&mdev->ap_pending_cnt) || drbd_suspended(mdev));
b411b363 1371 /* and for any other previously queued work */
a21e9298 1372 drbd_flush_workqueue(mdev);
b411b363 1373
f2024e7c
AG
1374 rv = _drbd_request_state(mdev, NS(disk, D_ATTACHING), CS_VERBOSE);
1375 retcode = rv; /* FIXME: Type mismatch. */
b411b363 1376 drbd_resume_io(mdev);
f2024e7c 1377 if (rv < SS_SUCCESS)
e525fd89 1378 goto fail;
b411b363
PR
1379
1380 if (!get_ldev_if_state(mdev, D_ATTACHING))
1381 goto force_diskless;
1382
1383 drbd_md_set_sector_offsets(mdev, nbc);
1384
1385 if (!mdev->bitmap) {
1386 if (drbd_bm_init(mdev)) {
1387 retcode = ERR_NOMEM;
1388 goto force_diskless_dec;
1389 }
1390 }
1391
1392 retcode = drbd_md_read(mdev, nbc);
1393 if (retcode != NO_ERROR)
1394 goto force_diskless_dec;
1395
1396 if (mdev->state.conn < C_CONNECTED &&
1397 mdev->state.role == R_PRIMARY &&
1398 (mdev->ed_uuid & ~((u64)1)) != (nbc->md.uuid[UI_CURRENT] & ~((u64)1))) {
1399 dev_err(DEV, "Can only attach to data with current UUID=%016llX\n",
1400 (unsigned long long)mdev->ed_uuid);
1401 retcode = ERR_DATA_NOT_CURRENT;
1402 goto force_diskless_dec;
1403 }
1404
1405 /* Since we are diskless, fix the activity log first... */
f399002e 1406 if (drbd_check_al_size(mdev, &nbc->dc)) {
b411b363
PR
1407 retcode = ERR_NOMEM;
1408 goto force_diskless_dec;
1409 }
1410
1411 /* Prevent shrinking of consistent devices ! */
1412 if (drbd_md_test_flag(nbc, MDF_CONSISTENT) &&
a393db6f 1413 drbd_new_dev_size(mdev, nbc, 0) < nbc->md.la_size_sect) {
b411b363
PR
1414 dev_warn(DEV, "refusing to truncate a consistent device\n");
1415 retcode = ERR_DISK_TO_SMALL;
1416 goto force_diskless_dec;
1417 }
1418
1419 if (!drbd_al_read_log(mdev, nbc)) {
1420 retcode = ERR_IO_MD_DISK;
1421 goto force_diskless_dec;
1422 }
1423
b411b363
PR
1424 /* Reset the "barriers don't work" bits here, then force meta data to
1425 * be written, to ensure we determine if barriers are supported. */
1426 if (nbc->dc.no_md_flush)
a8a4e51e 1427 set_bit(MD_NO_FUA, &mdev->flags);
b411b363 1428 else
a8a4e51e 1429 clear_bit(MD_NO_FUA, &mdev->flags);
b411b363
PR
1430
1431 /* Point of no return reached.
1432 * Devices and memory are no longer released by error cleanup below.
1433 * now mdev takes over responsibility, and the state engine should
1434 * clean it up somewhere. */
1435 D_ASSERT(mdev->ldev == NULL);
1436 mdev->ldev = nbc;
1437 mdev->resync = resync_lru;
1438 nbc = NULL;
1439 resync_lru = NULL;
1440
2451fc3b
PR
1441 mdev->write_ordering = WO_bdev_flush;
1442 drbd_bump_write_ordering(mdev, WO_bdev_flush);
b411b363
PR
1443
1444 if (drbd_md_test_flag(mdev->ldev, MDF_CRASHED_PRIMARY))
1445 set_bit(CRASHED_PRIMARY, &mdev->flags);
1446 else
1447 clear_bit(CRASHED_PRIMARY, &mdev->flags);
1448
894c6a94 1449 if (drbd_md_test_flag(mdev->ldev, MDF_PRIMARY_IND) &&
da9fbc27 1450 !(mdev->state.role == R_PRIMARY && mdev->tconn->susp_nod)) {
b411b363
PR
1451 set_bit(CRASHED_PRIMARY, &mdev->flags);
1452 cp_discovered = 1;
1453 }
1454
1455 mdev->send_cnt = 0;
1456 mdev->recv_cnt = 0;
1457 mdev->read_cnt = 0;
1458 mdev->writ_cnt = 0;
1459
99432fcc 1460 drbd_reconsider_max_bio_size(mdev);
b411b363
PR
1461
1462 /* If I am currently not R_PRIMARY,
1463 * but meta data primary indicator is set,
1464 * I just now recover from a hard crash,
1465 * and have been R_PRIMARY before that crash.
1466 *
1467 * Now, if I had no connection before that crash
1468 * (have been degraded R_PRIMARY), chances are that
1469 * I won't find my peer now either.
1470 *
1471 * In that case, and _only_ in that case,
1472 * we use the degr-wfc-timeout instead of the default,
1473 * so we can automatically recover from a crash of a
1474 * degraded but active "cluster" after a certain timeout.
1475 */
1476 clear_bit(USE_DEGR_WFC_T, &mdev->flags);
1477 if (mdev->state.role != R_PRIMARY &&
1478 drbd_md_test_flag(mdev->ldev, MDF_PRIMARY_IND) &&
1479 !drbd_md_test_flag(mdev->ldev, MDF_CONNECTED_IND))
1480 set_bit(USE_DEGR_WFC_T, &mdev->flags);
1481
24c4830c 1482 dd = drbd_determine_dev_size(mdev, 0);
b411b363
PR
1483 if (dd == dev_size_error) {
1484 retcode = ERR_NOMEM_BITMAP;
1485 goto force_diskless_dec;
1486 } else if (dd == grew)
1487 set_bit(RESYNC_AFTER_NEG, &mdev->flags);
1488
1489 if (drbd_md_test_flag(mdev->ldev, MDF_FULL_SYNC)) {
1490 dev_info(DEV, "Assuming that all blocks are out of sync "
1491 "(aka FullSync)\n");
20ceb2b2
LE
1492 if (drbd_bitmap_io(mdev, &drbd_bmio_set_n_write,
1493 "set_n_write from attaching", BM_LOCKED_MASK)) {
b411b363
PR
1494 retcode = ERR_IO_MD_DISK;
1495 goto force_diskless_dec;
1496 }
1497 } else {
20ceb2b2 1498 if (drbd_bitmap_io(mdev, &drbd_bm_read,
22ab6a30 1499 "read from attaching", BM_LOCKED_MASK)) {
b411b363
PR
1500 retcode = ERR_IO_MD_DISK;
1501 goto force_diskless_dec;
1502 }
1503 }
1504
1505 if (cp_discovered) {
1506 drbd_al_apply_to_bm(mdev);
20ceb2b2
LE
1507 if (drbd_bitmap_io(mdev, &drbd_bm_write,
1508 "crashed primary apply AL", BM_LOCKED_MASK)) {
19f843aa
LE
1509 retcode = ERR_IO_MD_DISK;
1510 goto force_diskless_dec;
1511 }
b411b363
PR
1512 }
1513
0778286a
PR
1514 if (_drbd_bm_total_weight(mdev) == drbd_bm_bits(mdev))
1515 drbd_suspend_al(mdev); /* IO is still suspended here... */
1516
87eeee41 1517 spin_lock_irq(&mdev->tconn->req_lock);
78bae59b
PR
1518 os = drbd_read_state(mdev);
1519 ns = os;
b411b363
PR
1520 /* If MDF_CONSISTENT is not set go into inconsistent state,
1521 otherwise investigate MDF_WasUpToDate...
1522 If MDF_WAS_UP_TO_DATE is not set go into D_OUTDATED disk state,
1523 otherwise into D_CONSISTENT state.
1524 */
1525 if (drbd_md_test_flag(mdev->ldev, MDF_CONSISTENT)) {
1526 if (drbd_md_test_flag(mdev->ldev, MDF_WAS_UP_TO_DATE))
1527 ns.disk = D_CONSISTENT;
1528 else
1529 ns.disk = D_OUTDATED;
1530 } else {
1531 ns.disk = D_INCONSISTENT;
1532 }
1533
1534 if (drbd_md_test_flag(mdev->ldev, MDF_PEER_OUT_DATED))
1535 ns.pdsk = D_OUTDATED;
1536
1537 if ( ns.disk == D_CONSISTENT &&
1538 (ns.pdsk == D_OUTDATED || mdev->ldev->dc.fencing == FP_DONT_CARE))
1539 ns.disk = D_UP_TO_DATE;
1540
1541 /* All tests on MDF_PRIMARY_IND, MDF_CONNECTED_IND,
1542 MDF_CONSISTENT and MDF_WAS_UP_TO_DATE must happen before
1543 this point, because drbd_request_state() modifies these
1544 flags. */
1545
1546 /* In case we are C_CONNECTED postpone any decision on the new disk
1547 state after the negotiation phase. */
1548 if (mdev->state.conn == C_CONNECTED) {
1549 mdev->new_state_tmp.i = ns.i;
1550 ns.i = os.i;
1551 ns.disk = D_NEGOTIATING;
dc66c74d
PR
1552
1553 /* We expect to receive up-to-date UUIDs soon.
1554 To avoid a race in receive_state, free p_uuid while
1555 holding req_lock. I.e. atomic with the state change */
1556 kfree(mdev->p_uuid);
1557 mdev->p_uuid = NULL;
b411b363
PR
1558 }
1559
1560 rv = _drbd_set_state(mdev, ns, CS_VERBOSE, NULL);
87eeee41 1561 spin_unlock_irq(&mdev->tconn->req_lock);
b411b363
PR
1562
1563 if (rv < SS_SUCCESS)
1564 goto force_diskless_dec;
1565
1566 if (mdev->state.role == R_PRIMARY)
1567 mdev->ldev->md.uuid[UI_CURRENT] |= (u64)1;
1568 else
1569 mdev->ldev->md.uuid[UI_CURRENT] &= ~(u64)1;
1570
1571 drbd_md_mark_dirty(mdev);
1572 drbd_md_sync(mdev);
1573
1574 kobject_uevent(&disk_to_dev(mdev->vdisk)->kobj, KOBJ_CHANGE);
1575 put_ldev(mdev);
0e29d163 1576 conn_reconfig_done(mdev->tconn);
3b98c0c2 1577 drbd_adm_finish(info, retcode);
b411b363
PR
1578 return 0;
1579
1580 force_diskless_dec:
1581 put_ldev(mdev);
1582 force_diskless:
82f59cc6 1583 drbd_force_state(mdev, NS(disk, D_FAILED));
b411b363 1584 drbd_md_sync(mdev);
b411b363 1585 fail:
40cbf085 1586 conn_reconfig_done(mdev->tconn);
b411b363 1587 if (nbc) {
e525fd89
TH
1588 if (nbc->backing_bdev)
1589 blkdev_put(nbc->backing_bdev,
1590 FMODE_READ | FMODE_WRITE | FMODE_EXCL);
1591 if (nbc->md_bdev)
1592 blkdev_put(nbc->md_bdev,
1593 FMODE_READ | FMODE_WRITE | FMODE_EXCL);
b411b363
PR
1594 kfree(nbc);
1595 }
1596 lc_destroy(resync_lru);
1597
40cbf085 1598 finish:
3b98c0c2 1599 drbd_adm_finish(info, retcode);
b411b363
PR
1600 return 0;
1601}
1602
85f75dd7
LE
1603static int adm_detach(struct drbd_conf *mdev)
1604{
19f83c76 1605 enum drbd_state_rv retcode;
85f75dd7
LE
1606 drbd_suspend_io(mdev); /* so no-one is stuck in drbd_al_begin_io */
1607 retcode = drbd_request_state(mdev, NS(disk, D_DISKLESS));
1608 wait_event(mdev->misc_wait,
1609 mdev->state.disk != D_DISKLESS ||
1610 !atomic_read(&mdev->local_cnt));
1611 drbd_resume_io(mdev);
1612 return retcode;
1613}
1614
82f59cc6
LE
1615/* Detaching the disk is a process in multiple stages. First we need to lock
1616 * out application IO, in-flight IO, IO stuck in drbd_al_begin_io.
1617 * Then we transition to D_DISKLESS, and wait for put_ldev() to return all
1618 * internal references as well.
1619 * Only then we have finally detached. */
3b98c0c2 1620int drbd_adm_detach(struct sk_buff *skb, struct genl_info *info)
b411b363 1621{
9a0d9d03 1622 enum drbd_ret_code retcode;
3b98c0c2
LE
1623
1624 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_MINOR);
1625 if (!adm_ctx.reply_skb)
1626 return retcode;
1627 if (retcode != NO_ERROR)
1628 goto out;
1629
85f75dd7 1630 retcode = adm_detach(adm_ctx.mdev);
3b98c0c2
LE
1631out:
1632 drbd_adm_finish(info, retcode);
b411b363
PR
1633 return 0;
1634}
1635
f399002e
LE
1636static bool conn_resync_running(struct drbd_tconn *tconn)
1637{
1638 struct drbd_conf *mdev;
695d08fa 1639 bool rv = false;
f399002e
LE
1640 int vnr;
1641
695d08fa 1642 rcu_read_lock();
f399002e
LE
1643 idr_for_each_entry(&tconn->volumes, mdev, vnr) {
1644 if (mdev->state.conn == C_SYNC_SOURCE ||
1645 mdev->state.conn == C_SYNC_TARGET ||
1646 mdev->state.conn == C_PAUSED_SYNC_S ||
695d08fa
PR
1647 mdev->state.conn == C_PAUSED_SYNC_T) {
1648 rv = true;
1649 break;
1650 }
f399002e 1651 }
695d08fa
PR
1652 rcu_read_unlock();
1653
1654 return rv;
f399002e
LE
1655}
1656
1657static bool conn_ov_running(struct drbd_tconn *tconn)
1658{
1659 struct drbd_conf *mdev;
695d08fa 1660 bool rv = false;
f399002e
LE
1661 int vnr;
1662
695d08fa 1663 rcu_read_lock();
f399002e
LE
1664 idr_for_each_entry(&tconn->volumes, mdev, vnr) {
1665 if (mdev->state.conn == C_VERIFY_S ||
695d08fa
PR
1666 mdev->state.conn == C_VERIFY_T) {
1667 rv = true;
1668 break;
1669 }
f399002e 1670 }
695d08fa
PR
1671 rcu_read_unlock();
1672
1673 return rv;
f399002e
LE
1674}
1675
cd64397c 1676static enum drbd_ret_code
44ed167d 1677_check_net_options(struct drbd_tconn *tconn, struct net_conf *old_conf, struct net_conf *new_conf)
cd64397c
PR
1678{
1679 struct drbd_conf *mdev;
1680 int i;
1681
44ed167d 1682 if (old_conf && tconn->agreed_pro_version < 100 &&
b032b6fa 1683 tconn->cstate == C_WF_REPORT_PARAMS &&
44ed167d 1684 new_conf->wire_protocol != old_conf->wire_protocol)
b032b6fa
PR
1685 return ERR_NEED_APV_100;
1686
cd64397c
PR
1687 if (new_conf->two_primaries &&
1688 (new_conf->wire_protocol != DRBD_PROT_C))
1689 return ERR_NOT_PROTO_C;
1690
cd64397c
PR
1691 idr_for_each_entry(&tconn->volumes, mdev, i) {
1692 if (get_ldev(mdev)) {
1693 enum drbd_fencing_p fp = mdev->ldev->dc.fencing;
1694 put_ldev(mdev);
44ed167d 1695 if (new_conf->wire_protocol == DRBD_PROT_A && fp == FP_STONITH)
cd64397c 1696 return ERR_STONITH_AND_PROT_A;
cd64397c 1697 }
44ed167d 1698 if (mdev->state.role == R_PRIMARY && new_conf->want_lose)
cd64397c 1699 return ERR_DISCARD;
cd64397c 1700 }
cd64397c
PR
1701
1702 if (new_conf->on_congestion != OC_BLOCK && new_conf->wire_protocol != DRBD_PROT_A)
1703 return ERR_CONG_NOT_PROTO_A;
1704
1705 return NO_ERROR;
1706}
1707
44ed167d
PR
1708static enum drbd_ret_code
1709check_net_options(struct drbd_tconn *tconn, struct net_conf *new_conf)
1710{
1711 static enum drbd_ret_code rv;
1712 struct drbd_conf *mdev;
1713 int i;
1714
1715 rcu_read_lock();
1716 rv = _check_net_options(tconn, rcu_dereference(tconn->net_conf), new_conf);
1717 rcu_read_unlock();
1718
1719 /* tconn->volumes protected by genl_lock() here */
1720 idr_for_each_entry(&tconn->volumes, mdev, i) {
1721 if (!mdev->bitmap) {
1722 if(drbd_bm_init(mdev))
1723 return ERR_NOMEM;
1724 }
1725 }
1726
1727 return rv;
1728}
1729
f399002e
LE
1730int drbd_adm_net_opts(struct sk_buff *skb, struct genl_info *info)
1731{
1732 enum drbd_ret_code retcode;
1733 struct drbd_tconn *tconn;
44ed167d 1734 struct net_conf *old_conf, *new_conf = NULL;
f399002e
LE
1735 int err;
1736 int ovr; /* online verify running */
1737 int rsr; /* re-sync running */
1738 struct crypto_hash *verify_tfm = NULL;
1739 struct crypto_hash *csums_tfm = NULL;
1740
1741
1742 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_CONN);
1743 if (!adm_ctx.reply_skb)
1744 return retcode;
1745 if (retcode != NO_ERROR)
1746 goto out;
1747
1748 tconn = adm_ctx.tconn;
1749
1750 new_conf = kzalloc(sizeof(struct net_conf), GFP_KERNEL);
1751 if (!new_conf) {
1752 retcode = ERR_NOMEM;
1753 goto out;
1754 }
1755
44ed167d
PR
1756 conn_reconfig_start(tconn);
1757
91fd4dad
PR
1758 mutex_lock(&tconn->net_conf_update);
1759 old_conf = tconn->net_conf;
44ed167d
PR
1760
1761 if (!old_conf) {
f399002e
LE
1762 drbd_msg_put_info("net conf missing, try connect");
1763 retcode = ERR_INVALID_REQUEST;
91fd4dad 1764 goto fail;
f399002e
LE
1765 }
1766
44ed167d 1767 *new_conf = *old_conf;
f399002e 1768
f399002e
LE
1769 err = net_conf_from_attrs_for_change(new_conf, info);
1770 if (err) {
1771 retcode = ERR_MANDATORY_TAG;
1772 drbd_msg_put_info(from_attrs_err_to_txt(err));
1773 goto fail;
1774 }
1775
cd64397c
PR
1776 retcode = check_net_options(tconn, new_conf);
1777 if (retcode != NO_ERROR)
1778 goto fail;
1779
f399002e
LE
1780 /* re-sync running */
1781 rsr = conn_resync_running(tconn);
44ed167d 1782 if (rsr && old_conf && strcmp(new_conf->csums_alg, old_conf->csums_alg)) {
f399002e 1783 retcode = ERR_CSUMS_RESYNC_RUNNING;
91fd4dad 1784 goto fail;
f399002e
LE
1785 }
1786
1787 if (!rsr && new_conf->csums_alg[0]) {
1788 csums_tfm = crypto_alloc_hash(new_conf->csums_alg, 0, CRYPTO_ALG_ASYNC);
1789 if (IS_ERR(csums_tfm)) {
1790 csums_tfm = NULL;
1791 retcode = ERR_CSUMS_ALG;
1792 goto fail;
1793 }
1794
1795 if (!drbd_crypto_is_hash(crypto_hash_tfm(csums_tfm))) {
1796 retcode = ERR_CSUMS_ALG_ND;
1797 goto fail;
1798 }
1799 }
1800
1801 /* online verify running */
1802 ovr = conn_ov_running(tconn);
91fd4dad 1803 if (ovr) {
44ed167d 1804 if (strcmp(new_conf->verify_alg, old_conf->verify_alg)) {
f399002e 1805 retcode = ERR_VERIFY_RUNNING;
91fd4dad 1806 goto fail;
f399002e
LE
1807 }
1808 }
1809
1810 if (!ovr && new_conf->verify_alg[0]) {
1811 verify_tfm = crypto_alloc_hash(new_conf->verify_alg, 0, CRYPTO_ALG_ASYNC);
1812 if (IS_ERR(verify_tfm)) {
1813 verify_tfm = NULL;
1814 retcode = ERR_VERIFY_ALG;
1815 goto fail;
1816 }
1817
1818 if (!drbd_crypto_is_hash(crypto_hash_tfm(verify_tfm))) {
1819 retcode = ERR_VERIFY_ALG_ND;
1820 goto fail;
1821 }
1822 }
1823
44ed167d 1824 rcu_assign_pointer(tconn->net_conf, new_conf);
f399002e
LE
1825
1826 if (!rsr) {
1827 crypto_free_hash(tconn->csums_tfm);
1828 tconn->csums_tfm = csums_tfm;
1829 csums_tfm = NULL;
1830 }
1831 if (!ovr) {
1832 crypto_free_hash(tconn->verify_tfm);
1833 tconn->verify_tfm = verify_tfm;
1834 verify_tfm = NULL;
1835 }
1836
91fd4dad
PR
1837 mutex_unlock(&tconn->net_conf_update);
1838 synchronize_rcu();
1839 kfree(old_conf);
1840
f399002e
LE
1841 if (tconn->cstate >= C_WF_REPORT_PARAMS)
1842 drbd_send_sync_param(minor_to_mdev(conn_lowest_minor(tconn)));
1843
91fd4dad
PR
1844 goto done;
1845
f399002e 1846 fail:
91fd4dad 1847 mutex_unlock(&tconn->net_conf_update);
f399002e
LE
1848 crypto_free_hash(csums_tfm);
1849 crypto_free_hash(verify_tfm);
1850 kfree(new_conf);
91fd4dad 1851 done:
f399002e
LE
1852 conn_reconfig_done(tconn);
1853 out:
1854 drbd_adm_finish(info, retcode);
1855 return 0;
1856}
1857
3b98c0c2 1858int drbd_adm_connect(struct sk_buff *skb, struct genl_info *info)
b411b363 1859{
3b98c0c2
LE
1860 char hmac_name[CRYPTO_MAX_ALG_NAME];
1861 struct drbd_conf *mdev;
44ed167d 1862 struct net_conf *old_conf, *new_conf = NULL;
b411b363
PR
1863 struct crypto_hash *tfm = NULL;
1864 struct crypto_hash *integrity_w_tfm = NULL;
1865 struct crypto_hash *integrity_r_tfm = NULL;
b411b363
PR
1866 void *int_dig_in = NULL;
1867 void *int_dig_vv = NULL;
80883197 1868 struct drbd_tconn *oconn;
3b98c0c2 1869 struct drbd_tconn *tconn;
b411b363 1870 struct sockaddr *new_my_addr, *new_peer_addr, *taken_addr;
3b98c0c2
LE
1871 enum drbd_ret_code retcode;
1872 int i;
1873 int err;
b411b363 1874
3b98c0c2
LE
1875 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_CONN);
1876 if (!adm_ctx.reply_skb)
1877 return retcode;
1878 if (retcode != NO_ERROR)
1879 goto out;
1880
1881 tconn = adm_ctx.tconn;
80883197 1882 conn_reconfig_start(tconn);
b411b363 1883
80883197 1884 if (tconn->cstate > C_STANDALONE) {
b411b363
PR
1885 retcode = ERR_NET_CONFIGURED;
1886 goto fail;
1887 }
1888
1889 /* allocation not in the IO path, cqueue thread context */
f399002e 1890 new_conf = kmalloc(sizeof(struct net_conf), GFP_KERNEL);
b411b363
PR
1891 if (!new_conf) {
1892 retcode = ERR_NOMEM;
1893 goto fail;
1894 }
1895
f399002e
LE
1896 *new_conf = (struct net_conf) {
1897 {}, 0, /* my_addr */
1898 {}, 0, /* peer_addr */
1899 {}, 0, /* shared_secret */
1900 {}, 0, /* cram_hmac_alg */
1901 {}, 0, /* integrity_alg */
1902 {}, 0, /* verify_alg */
1903 {}, 0, /* csums_alg */
1904 DRBD_PROTOCOL_DEF, /* wire_protocol */
1905 DRBD_CONNECT_INT_DEF, /* try_connect_int */
1906 DRBD_TIMEOUT_DEF, /* timeout */
1907 DRBD_PING_INT_DEF, /* ping_int */
1908 DRBD_PING_TIMEO_DEF, /* ping_timeo */
1909 DRBD_SNDBUF_SIZE_DEF, /* sndbuf_size */
1910 DRBD_RCVBUF_SIZE_DEF, /* rcvbuf_size */
1911 DRBD_KO_COUNT_DEF, /* ko_count */
1912 DRBD_MAX_BUFFERS_DEF, /* max_buffers */
1913 DRBD_MAX_EPOCH_SIZE_DEF, /* max_epoch_size */
1914 DRBD_UNPLUG_WATERMARK_DEF, /* unplug_watermark */
1915 DRBD_AFTER_SB_0P_DEF, /* after_sb_0p */
1916 DRBD_AFTER_SB_1P_DEF, /* after_sb_1p */
1917 DRBD_AFTER_SB_2P_DEF, /* after_sb_2p */
1918 DRBD_RR_CONFLICT_DEF, /* rr_conflict */
1919 DRBD_ON_CONGESTION_DEF, /* on_congestion */
1920 DRBD_CONG_FILL_DEF, /* cong_fill */
1921 DRBD_CONG_EXTENTS_DEF, /* cong_extents */
1922 0, /* two_primaries */
1923 0, /* want_lose */
1924 0, /* no_cork */
1925 0, /* always_asbp */
1926 0, /* dry_run */
1927 0, /* use_rle */
1928 };
1929
1930 err = net_conf_from_attrs(new_conf, info);
3b98c0c2 1931 if (err) {
b411b363 1932 retcode = ERR_MANDATORY_TAG;
3b98c0c2 1933 drbd_msg_put_info(from_attrs_err_to_txt(err));
b411b363
PR
1934 goto fail;
1935 }
1936
cd64397c
PR
1937 retcode = check_net_options(tconn, new_conf);
1938 if (retcode != NO_ERROR)
422028b1 1939 goto fail;
422028b1 1940
b411b363
PR
1941 retcode = NO_ERROR;
1942
1943 new_my_addr = (struct sockaddr *)&new_conf->my_addr;
1944 new_peer_addr = (struct sockaddr *)&new_conf->peer_addr;
543cc10b 1945
ef356262 1946 /* No need to take drbd_cfg_rwsem here. All reconfiguration is
543cc10b
LE
1947 * strictly serialized on genl_lock(). We are protected against
1948 * concurrent reconfiguration/addition/deletion */
80883197 1949 list_for_each_entry(oconn, &drbd_tconns, all_tconn) {
44ed167d 1950 struct net_conf *nc;
80883197 1951 if (oconn == tconn)
b411b363 1952 continue;
44ed167d
PR
1953
1954 rcu_read_lock();
1955 nc = rcu_dereference(oconn->net_conf);
1956 if (nc) {
1957 taken_addr = (struct sockaddr *)&nc->my_addr;
1958 if (new_conf->my_addr_len == nc->my_addr_len &&
b411b363
PR
1959 !memcmp(new_my_addr, taken_addr, new_conf->my_addr_len))
1960 retcode = ERR_LOCAL_ADDR;
1961
44ed167d
PR
1962 taken_addr = (struct sockaddr *)&nc->peer_addr;
1963 if (new_conf->peer_addr_len == nc->peer_addr_len &&
b411b363
PR
1964 !memcmp(new_peer_addr, taken_addr, new_conf->peer_addr_len))
1965 retcode = ERR_PEER_ADDR;
b411b363 1966 }
44ed167d
PR
1967 rcu_read_unlock();
1968 if (retcode != NO_ERROR)
1969 goto fail;
b411b363
PR
1970 }
1971
1972 if (new_conf->cram_hmac_alg[0] != 0) {
1973 snprintf(hmac_name, CRYPTO_MAX_ALG_NAME, "hmac(%s)",
1974 new_conf->cram_hmac_alg);
1975 tfm = crypto_alloc_hash(hmac_name, 0, CRYPTO_ALG_ASYNC);
1976 if (IS_ERR(tfm)) {
1977 tfm = NULL;
1978 retcode = ERR_AUTH_ALG;
1979 goto fail;
1980 }
1981
0798219f 1982 if (!drbd_crypto_is_hash(crypto_hash_tfm(tfm))) {
b411b363
PR
1983 retcode = ERR_AUTH_ALG_ND;
1984 goto fail;
1985 }
1986 }
1987
1988 if (new_conf->integrity_alg[0]) {
1989 integrity_w_tfm = crypto_alloc_hash(new_conf->integrity_alg, 0, CRYPTO_ALG_ASYNC);
1990 if (IS_ERR(integrity_w_tfm)) {
1991 integrity_w_tfm = NULL;
1992 retcode=ERR_INTEGRITY_ALG;
1993 goto fail;
1994 }
1995
1996 if (!drbd_crypto_is_hash(crypto_hash_tfm(integrity_w_tfm))) {
1997 retcode=ERR_INTEGRITY_ALG_ND;
1998 goto fail;
1999 }
2000
2001 integrity_r_tfm = crypto_alloc_hash(new_conf->integrity_alg, 0, CRYPTO_ALG_ASYNC);
2002 if (IS_ERR(integrity_r_tfm)) {
2003 integrity_r_tfm = NULL;
2004 retcode=ERR_INTEGRITY_ALG;
2005 goto fail;
2006 }
2007 }
2008
b411b363
PR
2009 ((char *)new_conf->shared_secret)[SHARED_SECRET_MAX-1] = 0;
2010
80883197 2011 /* allocation not in the IO path, cqueue thread context */
b411b363
PR
2012 if (integrity_w_tfm) {
2013 i = crypto_hash_digestsize(integrity_w_tfm);
b411b363
PR
2014 int_dig_in = kmalloc(i, GFP_KERNEL);
2015 if (!int_dig_in) {
2016 retcode = ERR_NOMEM;
2017 goto fail;
2018 }
2019 int_dig_vv = kmalloc(i, GFP_KERNEL);
2020 if (!int_dig_vv) {
2021 retcode = ERR_NOMEM;
2022 goto fail;
2023 }
2024 }
2025
80883197 2026 conn_flush_workqueue(tconn);
91fd4dad
PR
2027
2028 mutex_lock(&tconn->net_conf_update);
2029 old_conf = tconn->net_conf;
2030 if (old_conf) {
b411b363 2031 retcode = ERR_NET_CONFIGURED;
91fd4dad 2032 mutex_unlock(&tconn->net_conf_update);
b411b363
PR
2033 goto fail;
2034 }
44ed167d 2035 rcu_assign_pointer(tconn->net_conf, new_conf);
b411b363 2036
91fd4dad 2037 conn_free_crypto(tconn);
80883197 2038 tconn->cram_hmac_tfm = tfm;
80883197 2039 tconn->integrity_w_tfm = integrity_w_tfm;
80883197 2040 tconn->integrity_r_tfm = integrity_r_tfm;
91fd4dad
PR
2041 tconn->int_dig_in = int_dig_in;
2042 tconn->int_dig_vv = int_dig_vv;
b411b363 2043
91fd4dad
PR
2044 mutex_unlock(&tconn->net_conf_update);
2045
695d08fa 2046 rcu_read_lock();
80883197
PR
2047 idr_for_each_entry(&tconn->volumes, mdev, i) {
2048 mdev->send_cnt = 0;
2049 mdev->recv_cnt = 0;
80883197 2050 }
695d08fa 2051 rcu_read_unlock();
5ee743e9
LE
2052
2053 retcode = conn_request_state(tconn, NS(conn, C_UNCONNECTED), CS_VERBOSE);
2054
80883197 2055 conn_reconfig_done(tconn);
3b98c0c2 2056 drbd_adm_finish(info, retcode);
b411b363
PR
2057 return 0;
2058
2059fail:
b411b363
PR
2060 kfree(int_dig_in);
2061 kfree(int_dig_vv);
2062 crypto_free_hash(tfm);
2063 crypto_free_hash(integrity_w_tfm);
2064 crypto_free_hash(integrity_r_tfm);
b411b363
PR
2065 kfree(new_conf);
2066
80883197 2067 conn_reconfig_done(tconn);
3b98c0c2
LE
2068out:
2069 drbd_adm_finish(info, retcode);
b411b363
PR
2070 return 0;
2071}
2072
85f75dd7
LE
2073static enum drbd_state_rv conn_try_disconnect(struct drbd_tconn *tconn, bool force)
2074{
2075 enum drbd_state_rv rv;
2076 if (force) {
2077 spin_lock_irq(&tconn->req_lock);
d9cc6e23 2078 rv = _conn_request_state(tconn, NS(conn, C_DISCONNECTING), CS_HARD);
85f75dd7 2079 spin_unlock_irq(&tconn->req_lock);
d9cc6e23 2080 return rv;
85f75dd7
LE
2081 }
2082
2083 rv = conn_request_state(tconn, NS(conn, C_DISCONNECTING), 0);
2084
2085 switch (rv) {
2086 case SS_NOTHING_TO_DO:
2087 case SS_ALREADY_STANDALONE:
2088 return SS_SUCCESS;
2089 case SS_PRIMARY_NOP:
2090 /* Our state checking code wants to see the peer outdated. */
2091 rv = conn_request_state(tconn, NS2(conn, C_DISCONNECTING,
2092 pdsk, D_OUTDATED), CS_VERBOSE);
2093 break;
2094 case SS_CW_FAILED_BY_PEER:
2095 /* The peer probably wants to see us outdated. */
2096 rv = conn_request_state(tconn, NS2(conn, C_DISCONNECTING,
2097 disk, D_OUTDATED), 0);
2098 if (rv == SS_IS_DISKLESS || rv == SS_LOWER_THAN_OUTDATED) {
2099 conn_request_state(tconn, NS(conn, C_DISCONNECTING), CS_HARD);
2100 rv = SS_SUCCESS;
2101 }
2102 break;
2103 default:;
2104 /* no special handling necessary */
2105 }
2106
2107 return rv;
2108}
2109
3b98c0c2 2110int drbd_adm_disconnect(struct sk_buff *skb, struct genl_info *info)
b411b363 2111{
3b98c0c2
LE
2112 struct disconnect_parms parms;
2113 struct drbd_tconn *tconn;
85f75dd7 2114 enum drbd_state_rv rv;
3b98c0c2
LE
2115 enum drbd_ret_code retcode;
2116 int err;
2561b9c1 2117
3b98c0c2
LE
2118 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_CONN);
2119 if (!adm_ctx.reply_skb)
2120 return retcode;
2121 if (retcode != NO_ERROR)
2561b9c1 2122 goto fail;
3b98c0c2
LE
2123
2124 tconn = adm_ctx.tconn;
2125 memset(&parms, 0, sizeof(parms));
2126 if (info->attrs[DRBD_NLA_DISCONNECT_PARMS]) {
f399002e 2127 err = disconnect_parms_from_attrs(&parms, info);
3b98c0c2
LE
2128 if (err) {
2129 retcode = ERR_MANDATORY_TAG;
2130 drbd_msg_put_info(from_attrs_err_to_txt(err));
2131 goto fail;
2132 }
2561b9c1
PR
2133 }
2134
85f75dd7
LE
2135 rv = conn_try_disconnect(tconn, parms.force_disconnect);
2136 if (rv < SS_SUCCESS)
b411b363
PR
2137 goto fail;
2138
d9cc6e23
LE
2139 /* No one else can reconfigure the network while I am here.
2140 * The state handling only uses drbd_thread_stop_nowait(),
2141 * we want to really wait here until the receiver is no more. */
2142 drbd_thread_stop(&tconn->receiver);
df24aa45 2143 if (wait_event_interruptible(tconn->ping_wait,
d9cc6e23 2144 tconn->cstate == C_STANDALONE)) {
b411b363
PR
2145 retcode = ERR_INTR;
2146 goto fail;
2147 }
2148
b411b363
PR
2149 retcode = NO_ERROR;
2150 fail:
3b98c0c2 2151 drbd_adm_finish(info, retcode);
b411b363
PR
2152 return 0;
2153}
2154
2155void resync_after_online_grow(struct drbd_conf *mdev)
2156{
2157 int iass; /* I am sync source */
2158
2159 dev_info(DEV, "Resync of new storage after online grow\n");
2160 if (mdev->state.role != mdev->state.peer)
2161 iass = (mdev->state.role == R_PRIMARY);
2162 else
25703f83 2163 iass = test_bit(DISCARD_CONCURRENT, &mdev->tconn->flags);
b411b363
PR
2164
2165 if (iass)
2166 drbd_start_resync(mdev, C_SYNC_SOURCE);
2167 else
2168 _drbd_request_state(mdev, NS(conn, C_WF_SYNC_UUID), CS_VERBOSE + CS_SERIALIZE);
2169}
2170
3b98c0c2 2171int drbd_adm_resize(struct sk_buff *skb, struct genl_info *info)
b411b363 2172{
3b98c0c2
LE
2173 struct resize_parms rs;
2174 struct drbd_conf *mdev;
2175 enum drbd_ret_code retcode;
b411b363 2176 enum determine_dev_size dd;
6495d2c6 2177 enum dds_flags ddsf;
3b98c0c2 2178 int err;
b411b363 2179
3b98c0c2
LE
2180 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_MINOR);
2181 if (!adm_ctx.reply_skb)
2182 return retcode;
2183 if (retcode != NO_ERROR)
b411b363 2184 goto fail;
3b98c0c2
LE
2185
2186 memset(&rs, 0, sizeof(struct resize_parms));
2187 if (info->attrs[DRBD_NLA_RESIZE_PARMS]) {
f399002e 2188 err = resize_parms_from_attrs(&rs, info);
3b98c0c2
LE
2189 if (err) {
2190 retcode = ERR_MANDATORY_TAG;
2191 drbd_msg_put_info(from_attrs_err_to_txt(err));
2192 goto fail;
2193 }
b411b363
PR
2194 }
2195
3b98c0c2 2196 mdev = adm_ctx.mdev;
b411b363
PR
2197 if (mdev->state.conn > C_CONNECTED) {
2198 retcode = ERR_RESIZE_RESYNC;
2199 goto fail;
2200 }
2201
2202 if (mdev->state.role == R_SECONDARY &&
2203 mdev->state.peer == R_SECONDARY) {
2204 retcode = ERR_NO_PRIMARY;
2205 goto fail;
2206 }
2207
2208 if (!get_ldev(mdev)) {
2209 retcode = ERR_NO_DISK;
2210 goto fail;
2211 }
2212
31890f4a 2213 if (rs.no_resync && mdev->tconn->agreed_pro_version < 93) {
6495d2c6
PR
2214 retcode = ERR_NEED_APV_93;
2215 goto fail;
2216 }
2217
087c2492 2218 if (mdev->ldev->known_size != drbd_get_capacity(mdev->ldev->backing_bdev))
b411b363 2219 mdev->ldev->known_size = drbd_get_capacity(mdev->ldev->backing_bdev);
b411b363
PR
2220
2221 mdev->ldev->dc.disk_size = (sector_t)rs.resize_size;
6495d2c6 2222 ddsf = (rs.resize_force ? DDSF_FORCED : 0) | (rs.no_resync ? DDSF_NO_RESYNC : 0);
24c4830c 2223 dd = drbd_determine_dev_size(mdev, ddsf);
b411b363
PR
2224 drbd_md_sync(mdev);
2225 put_ldev(mdev);
2226 if (dd == dev_size_error) {
2227 retcode = ERR_NOMEM_BITMAP;
2228 goto fail;
2229 }
2230
087c2492 2231 if (mdev->state.conn == C_CONNECTED) {
b411b363
PR
2232 if (dd == grew)
2233 set_bit(RESIZE_PENDING, &mdev->flags);
2234
2235 drbd_send_uuids(mdev);
6495d2c6 2236 drbd_send_sizes(mdev, 1, ddsf);
b411b363
PR
2237 }
2238
2239 fail:
3b98c0c2 2240 drbd_adm_finish(info, retcode);
b411b363
PR
2241 return 0;
2242}
2243
f399002e 2244int drbd_adm_resource_opts(struct sk_buff *skb, struct genl_info *info)
b411b363 2245{
3b98c0c2 2246 enum drbd_ret_code retcode;
b411b363 2247 cpumask_var_t new_cpu_mask;
f399002e 2248 struct drbd_tconn *tconn;
778f271d 2249 int *rs_plan_s = NULL;
f399002e
LE
2250 struct res_opts sc;
2251 int err;
b411b363 2252
f399002e 2253 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_CONN);
3b98c0c2
LE
2254 if (!adm_ctx.reply_skb)
2255 return retcode;
2256 if (retcode != NO_ERROR)
2257 goto fail;
f399002e 2258 tconn = adm_ctx.tconn;
3b98c0c2 2259
b411b363
PR
2260 if (!zalloc_cpumask_var(&new_cpu_mask, GFP_KERNEL)) {
2261 retcode = ERR_NOMEM;
3b98c0c2 2262 drbd_msg_put_info("unable to allocate cpumask");
b411b363
PR
2263 goto fail;
2264 }
2265
3b98c0c2
LE
2266 if (((struct drbd_genlmsghdr*)info->userhdr)->flags
2267 & DRBD_GENL_F_SET_DEFAULTS) {
f399002e 2268 memset(&sc, 0, sizeof(struct res_opts));
265be2d0 2269 sc.on_no_data = DRBD_ON_NO_DATA_DEF;
b411b363 2270 } else
f399002e 2271 sc = tconn->res_opts;
b411b363 2272
f399002e 2273 err = res_opts_from_attrs(&sc, info);
3b98c0c2 2274 if (err) {
b411b363 2275 retcode = ERR_MANDATORY_TAG;
3b98c0c2 2276 drbd_msg_put_info(from_attrs_err_to_txt(err));
b411b363
PR
2277 goto fail;
2278 }
2279
b411b363
PR
2280 /* silently ignore cpu mask on UP kernel */
2281 if (nr_cpu_ids > 1 && sc.cpu_mask[0] != 0) {
2282 err = __bitmap_parse(sc.cpu_mask, 32, 0,
2283 cpumask_bits(new_cpu_mask), nr_cpu_ids);
2284 if (err) {
f399002e 2285 conn_warn(tconn, "__bitmap_parse() failed with %d\n", err);
b411b363
PR
2286 retcode = ERR_CPU_MASK_PARSE;
2287 goto fail;
2288 }
2289 }
2290
b411b363 2291
f399002e 2292 tconn->res_opts = sc;
b411b363 2293
f399002e
LE
2294 if (!cpumask_equal(tconn->cpu_mask, new_cpu_mask)) {
2295 cpumask_copy(tconn->cpu_mask, new_cpu_mask);
2296 drbd_calc_cpu_mask(tconn);
2297 tconn->receiver.reset_cpu_mask = 1;
2298 tconn->asender.reset_cpu_mask = 1;
2299 tconn->worker.reset_cpu_mask = 1;
b411b363
PR
2300 }
2301
b411b363 2302fail:
778f271d 2303 kfree(rs_plan_s);
b411b363 2304 free_cpumask_var(new_cpu_mask);
3b98c0c2
LE
2305
2306 drbd_adm_finish(info, retcode);
b411b363
PR
2307 return 0;
2308}
2309
3b98c0c2 2310int drbd_adm_invalidate(struct sk_buff *skb, struct genl_info *info)
b411b363 2311{
3b98c0c2
LE
2312 struct drbd_conf *mdev;
2313 int retcode; /* enum drbd_ret_code rsp. enum drbd_state_rv */
2314
2315 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_MINOR);
2316 if (!adm_ctx.reply_skb)
2317 return retcode;
2318 if (retcode != NO_ERROR)
2319 goto out;
2320
2321 mdev = adm_ctx.mdev;
b411b363 2322
194bfb32
LE
2323 /* If there is still bitmap IO pending, probably because of a previous
2324 * resync just being finished, wait for it before requesting a new resync. */
2325 wait_event(mdev->misc_wait, !test_bit(BITMAP_IO, &mdev->flags));
2326
b411b363
PR
2327 retcode = _drbd_request_state(mdev, NS(conn, C_STARTING_SYNC_T), CS_ORDERED);
2328
2329 if (retcode < SS_SUCCESS && retcode != SS_NEED_CONNECTION)
2330 retcode = drbd_request_state(mdev, NS(conn, C_STARTING_SYNC_T));
2331
2332 while (retcode == SS_NEED_CONNECTION) {
87eeee41 2333 spin_lock_irq(&mdev->tconn->req_lock);
b411b363
PR
2334 if (mdev->state.conn < C_CONNECTED)
2335 retcode = _drbd_set_state(_NS(mdev, disk, D_INCONSISTENT), CS_VERBOSE, NULL);
87eeee41 2336 spin_unlock_irq(&mdev->tconn->req_lock);
b411b363
PR
2337
2338 if (retcode != SS_NEED_CONNECTION)
2339 break;
2340
2341 retcode = drbd_request_state(mdev, NS(conn, C_STARTING_SYNC_T));
2342 }
2343
3b98c0c2
LE
2344out:
2345 drbd_adm_finish(info, retcode);
b411b363
PR
2346 return 0;
2347}
2348
0778286a
PR
2349static int drbd_bmio_set_susp_al(struct drbd_conf *mdev)
2350{
2351 int rv;
2352
2353 rv = drbd_bmio_set_n_write(mdev);
2354 drbd_suspend_al(mdev);
2355 return rv;
2356}
2357
3b98c0c2
LE
2358static int drbd_adm_simple_request_state(struct sk_buff *skb, struct genl_info *info,
2359 union drbd_state mask, union drbd_state val)
b411b363 2360{
3b98c0c2 2361 enum drbd_ret_code retcode;
194bfb32 2362
3b98c0c2
LE
2363 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_MINOR);
2364 if (!adm_ctx.reply_skb)
2365 return retcode;
2366 if (retcode != NO_ERROR)
2367 goto out;
b411b363 2368
3b98c0c2
LE
2369 retcode = drbd_request_state(adm_ctx.mdev, mask, val);
2370out:
2371 drbd_adm_finish(info, retcode);
b411b363
PR
2372 return 0;
2373}
2374
3b98c0c2 2375int drbd_adm_invalidate_peer(struct sk_buff *skb, struct genl_info *info)
b411b363 2376{
3b98c0c2
LE
2377 return drbd_adm_simple_request_state(skb, info, NS(conn, C_STARTING_SYNC_S));
2378}
b411b363 2379
3b98c0c2
LE
2380int drbd_adm_pause_sync(struct sk_buff *skb, struct genl_info *info)
2381{
2382 enum drbd_ret_code retcode;
2383
2384 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_MINOR);
2385 if (!adm_ctx.reply_skb)
2386 return retcode;
2387 if (retcode != NO_ERROR)
2388 goto out;
b411b363 2389
3b98c0c2
LE
2390 if (drbd_request_state(adm_ctx.mdev, NS(user_isp, 1)) == SS_NOTHING_TO_DO)
2391 retcode = ERR_PAUSE_IS_SET;
2392out:
2393 drbd_adm_finish(info, retcode);
b411b363
PR
2394 return 0;
2395}
2396
3b98c0c2 2397int drbd_adm_resume_sync(struct sk_buff *skb, struct genl_info *info)
b411b363 2398{
da9fbc27 2399 union drbd_dev_state s;
3b98c0c2
LE
2400 enum drbd_ret_code retcode;
2401
2402 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_MINOR);
2403 if (!adm_ctx.reply_skb)
2404 return retcode;
2405 if (retcode != NO_ERROR)
2406 goto out;
b411b363 2407
3b98c0c2
LE
2408 if (drbd_request_state(adm_ctx.mdev, NS(user_isp, 0)) == SS_NOTHING_TO_DO) {
2409 s = adm_ctx.mdev->state;
cd88d030
PR
2410 if (s.conn == C_PAUSED_SYNC_S || s.conn == C_PAUSED_SYNC_T) {
2411 retcode = s.aftr_isp ? ERR_PIC_AFTER_DEP :
2412 s.peer_isp ? ERR_PIC_PEER_DEP : ERR_PAUSE_IS_CLEAR;
2413 } else {
2414 retcode = ERR_PAUSE_IS_CLEAR;
2415 }
2416 }
b411b363 2417
3b98c0c2
LE
2418out:
2419 drbd_adm_finish(info, retcode);
b411b363
PR
2420 return 0;
2421}
2422
3b98c0c2 2423int drbd_adm_suspend_io(struct sk_buff *skb, struct genl_info *info)
b411b363 2424{
3b98c0c2 2425 return drbd_adm_simple_request_state(skb, info, NS(susp, 1));
b411b363
PR
2426}
2427
3b98c0c2 2428int drbd_adm_resume_io(struct sk_buff *skb, struct genl_info *info)
b411b363 2429{
3b98c0c2
LE
2430 struct drbd_conf *mdev;
2431 int retcode; /* enum drbd_ret_code rsp. enum drbd_state_rv */
2432
2433 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_MINOR);
2434 if (!adm_ctx.reply_skb)
2435 return retcode;
2436 if (retcode != NO_ERROR)
2437 goto out;
2438
2439 mdev = adm_ctx.mdev;
43a5182c
PR
2440 if (test_bit(NEW_CUR_UUID, &mdev->flags)) {
2441 drbd_uuid_new_current(mdev);
2442 clear_bit(NEW_CUR_UUID, &mdev->flags);
43a5182c 2443 }
265be2d0 2444 drbd_suspend_io(mdev);
3b98c0c2
LE
2445 retcode = drbd_request_state(mdev, NS3(susp, 0, susp_nod, 0, susp_fen, 0));
2446 if (retcode == SS_SUCCESS) {
265be2d0 2447 if (mdev->state.conn < C_CONNECTED)
2f5cdd0b 2448 tl_clear(mdev->tconn);
265be2d0 2449 if (mdev->state.disk == D_DISKLESS || mdev->state.disk == D_FAILED)
2f5cdd0b 2450 tl_restart(mdev->tconn, FAIL_FROZEN_DISK_IO);
265be2d0
PR
2451 }
2452 drbd_resume_io(mdev);
2453
3b98c0c2
LE
2454out:
2455 drbd_adm_finish(info, retcode);
b411b363
PR
2456 return 0;
2457}
2458
3b98c0c2 2459int drbd_adm_outdate(struct sk_buff *skb, struct genl_info *info)
b411b363 2460{
3b98c0c2 2461 return drbd_adm_simple_request_state(skb, info, NS(disk, D_OUTDATED));
b411b363
PR
2462}
2463
543cc10b
LE
2464int nla_put_drbd_cfg_context(struct sk_buff *skb, const char *conn_name, unsigned vnr)
2465{
2466 struct nlattr *nla;
2467 nla = nla_nest_start(skb, DRBD_NLA_CFG_CONTEXT);
2468 if (!nla)
2469 goto nla_put_failure;
2470 if (vnr != VOLUME_UNSPECIFIED)
2471 NLA_PUT_U32(skb, T_ctx_volume, vnr);
2472 NLA_PUT_STRING(skb, T_ctx_conn_name, conn_name);
2473 nla_nest_end(skb, nla);
2474 return 0;
2475
2476nla_put_failure:
2477 if (nla)
2478 nla_nest_cancel(skb, nla);
2479 return -EMSGSIZE;
2480}
2481
3b98c0c2
LE
2482int nla_put_status_info(struct sk_buff *skb, struct drbd_conf *mdev,
2483 const struct sib_info *sib)
b411b363 2484{
3b98c0c2 2485 struct state_info *si = NULL; /* for sizeof(si->member); */
44ed167d 2486 struct net_conf *nc;
3b98c0c2
LE
2487 struct nlattr *nla;
2488 int got_ldev;
3b98c0c2
LE
2489 int err = 0;
2490 int exclude_sensitive;
2491
2492 /* If sib != NULL, this is drbd_bcast_event, which anyone can listen
2493 * to. So we better exclude_sensitive information.
2494 *
2495 * If sib == NULL, this is drbd_adm_get_status, executed synchronously
2496 * in the context of the requesting user process. Exclude sensitive
2497 * information, unless current has superuser.
2498 *
2499 * NOTE: for drbd_adm_get_status_all(), this is a netlink dump, and
2500 * relies on the current implementation of netlink_dump(), which
2501 * executes the dump callback successively from netlink_recvmsg(),
2502 * always in the context of the receiving process */
2503 exclude_sensitive = sib || !capable(CAP_SYS_ADMIN);
2504
2505 got_ldev = get_ldev(mdev);
3b98c0c2
LE
2506
2507 /* We need to add connection name and volume number information still.
2508 * Minor number is in drbd_genlmsghdr. */
543cc10b 2509 if (nla_put_drbd_cfg_context(skb, mdev->tconn->name, mdev->vnr))
3b98c0c2 2510 goto nla_put_failure;
3b98c0c2 2511
f399002e
LE
2512 if (res_opts_to_skb(skb, &mdev->tconn->res_opts, exclude_sensitive))
2513 goto nla_put_failure;
2514
3b98c0c2
LE
2515 if (got_ldev)
2516 if (disk_conf_to_skb(skb, &mdev->ldev->dc, exclude_sensitive))
2517 goto nla_put_failure;
44ed167d
PR
2518
2519 rcu_read_lock();
2520 nc = rcu_dereference(mdev->tconn->net_conf);
2521 if (nc)
2522 err = net_conf_to_skb(skb, nc, exclude_sensitive);
2523 rcu_read_unlock();
2524 if (err)
2525 goto nla_put_failure;
3b98c0c2 2526
3b98c0c2
LE
2527 nla = nla_nest_start(skb, DRBD_NLA_STATE_INFO);
2528 if (!nla)
2529 goto nla_put_failure;
2530 NLA_PUT_U32(skb, T_sib_reason, sib ? sib->sib_reason : SIB_GET_STATUS_REPLY);
2531 NLA_PUT_U32(skb, T_current_state, mdev->state.i);
2532 NLA_PUT_U64(skb, T_ed_uuid, mdev->ed_uuid);
2533 NLA_PUT_U64(skb, T_capacity, drbd_get_capacity(mdev->this_bdev));
2534
2535 if (got_ldev) {
2536 NLA_PUT_U32(skb, T_disk_flags, mdev->ldev->md.flags);
2537 NLA_PUT(skb, T_uuids, sizeof(si->uuids), mdev->ldev->md.uuid);
2538 NLA_PUT_U64(skb, T_bits_total, drbd_bm_bits(mdev));
2539 NLA_PUT_U64(skb, T_bits_oos, drbd_bm_total_weight(mdev));
2540 if (C_SYNC_SOURCE <= mdev->state.conn &&
2541 C_PAUSED_SYNC_T >= mdev->state.conn) {
2542 NLA_PUT_U64(skb, T_bits_rs_total, mdev->rs_total);
2543 NLA_PUT_U64(skb, T_bits_rs_failed, mdev->rs_failed);
2544 }
b411b363
PR
2545 }
2546
3b98c0c2
LE
2547 if (sib) {
2548 switch(sib->sib_reason) {
2549 case SIB_SYNC_PROGRESS:
2550 case SIB_GET_STATUS_REPLY:
2551 break;
2552 case SIB_STATE_CHANGE:
2553 NLA_PUT_U32(skb, T_prev_state, sib->os.i);
2554 NLA_PUT_U32(skb, T_new_state, sib->ns.i);
2555 break;
2556 case SIB_HELPER_POST:
2557 NLA_PUT_U32(skb,
2558 T_helper_exit_code, sib->helper_exit_code);
2559 /* fall through */
2560 case SIB_HELPER_PRE:
2561 NLA_PUT_STRING(skb, T_helper, sib->helper_name);
2562 break;
2563 }
b411b363 2564 }
3b98c0c2 2565 nla_nest_end(skb, nla);
b411b363 2566
3b98c0c2
LE
2567 if (0)
2568nla_put_failure:
2569 err = -EMSGSIZE;
2570 if (got_ldev)
2571 put_ldev(mdev);
3b98c0c2 2572 return err;
b411b363
PR
2573}
2574
3b98c0c2 2575int drbd_adm_get_status(struct sk_buff *skb, struct genl_info *info)
b411b363 2576{
3b98c0c2
LE
2577 enum drbd_ret_code retcode;
2578 int err;
b411b363 2579
3b98c0c2
LE
2580 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_MINOR);
2581 if (!adm_ctx.reply_skb)
2582 return retcode;
2583 if (retcode != NO_ERROR)
2584 goto out;
b411b363 2585
3b98c0c2
LE
2586 err = nla_put_status_info(adm_ctx.reply_skb, adm_ctx.mdev, NULL);
2587 if (err) {
2588 nlmsg_free(adm_ctx.reply_skb);
2589 return err;
b411b363 2590 }
3b98c0c2
LE
2591out:
2592 drbd_adm_finish(info, retcode);
2593 return 0;
b411b363
PR
2594}
2595
71932efc 2596int get_one_status(struct sk_buff *skb, struct netlink_callback *cb)
b411b363 2597{
3b98c0c2
LE
2598 struct drbd_conf *mdev;
2599 struct drbd_genlmsghdr *dh;
543cc10b
LE
2600 struct drbd_tconn *pos = (struct drbd_tconn*)cb->args[0];
2601 struct drbd_tconn *tconn = NULL;
2602 struct drbd_tconn *tmp;
2603 unsigned volume = cb->args[1];
2604
2605 /* Open coded, deferred, iteration:
2606 * list_for_each_entry_safe(tconn, tmp, &drbd_tconns, all_tconn) {
2607 * idr_for_each_entry(&tconn->volumes, mdev, i) {
2608 * ...
2609 * }
2610 * }
2611 * where tconn is cb->args[0];
2612 * and i is cb->args[1];
2613 *
71932efc
LE
2614 * cb->args[2] indicates if we shall loop over all resources,
2615 * or just dump all volumes of a single resource.
2616 *
3b98c0c2
LE
2617 * This may miss entries inserted after this dump started,
2618 * or entries deleted before they are reached.
543cc10b
LE
2619 *
2620 * We need to make sure the mdev won't disappear while
2621 * we are looking at it, and revalidate our iterators
2622 * on each iteration.
2623 */
3b98c0c2 2624
9dc9fbb3 2625 /* synchronize with conn_create()/conn_destroy() */
ef356262 2626 down_read(&drbd_cfg_rwsem);
543cc10b
LE
2627 /* revalidate iterator position */
2628 list_for_each_entry(tmp, &drbd_tconns, all_tconn) {
2629 if (pos == NULL) {
2630 /* first iteration */
2631 pos = tmp;
2632 tconn = pos;
2633 break;
2634 }
2635 if (tmp == pos) {
2636 tconn = pos;
2637 break;
2638 }
2639 }
2640 if (tconn) {
71932efc 2641next_tconn:
543cc10b
LE
2642 mdev = idr_get_next(&tconn->volumes, &volume);
2643 if (!mdev) {
2644 /* No more volumes to dump on this tconn.
2645 * Advance tconn iterator. */
2646 pos = list_entry(tconn->all_tconn.next,
2647 struct drbd_tconn, all_tconn);
71932efc 2648 /* Did we dump any volume on this tconn yet? */
543cc10b 2649 if (volume != 0) {
71932efc
LE
2650 /* If we reached the end of the list,
2651 * or only a single resource dump was requested,
2652 * we are done. */
2653 if (&pos->all_tconn == &drbd_tconns || cb->args[2])
2654 goto out;
543cc10b 2655 volume = 0;
71932efc 2656 tconn = pos;
543cc10b
LE
2657 goto next_tconn;
2658 }
2659 }
2660
3b98c0c2
LE
2661 dh = genlmsg_put(skb, NETLINK_CB(cb->skb).pid,
2662 cb->nlh->nlmsg_seq, &drbd_genl_family,
2663 NLM_F_MULTI, DRBD_ADM_GET_STATUS);
2664 if (!dh)
543cc10b
LE
2665 goto out;
2666
2667 if (!mdev) {
2668 /* this is a tconn without a single volume */
2669 dh->minor = -1U;
2670 dh->ret_code = NO_ERROR;
2671 if (nla_put_drbd_cfg_context(skb, tconn->name, VOLUME_UNSPECIFIED))
2672 genlmsg_cancel(skb, dh);
2673 else
2674 genlmsg_end(skb, dh);
2675 goto out;
2676 }
3b98c0c2 2677
543cc10b
LE
2678 D_ASSERT(mdev->vnr == volume);
2679 D_ASSERT(mdev->tconn == tconn);
3b98c0c2 2680
543cc10b 2681 dh->minor = mdev_to_minor(mdev);
3b98c0c2
LE
2682 dh->ret_code = NO_ERROR;
2683
2684 if (nla_put_status_info(skb, mdev, NULL)) {
2685 genlmsg_cancel(skb, dh);
543cc10b 2686 goto out;
3b98c0c2
LE
2687 }
2688 genlmsg_end(skb, dh);
2689 }
b411b363 2690
543cc10b 2691out:
ef356262 2692 up_read(&drbd_cfg_rwsem);
543cc10b
LE
2693 /* where to start the next iteration */
2694 cb->args[0] = (long)pos;
2695 cb->args[1] = (pos == tconn) ? volume + 1 : 0;
b411b363 2696
543cc10b
LE
2697 /* No more tconns/volumes/minors found results in an empty skb.
2698 * Which will terminate the dump. */
3b98c0c2 2699 return skb->len;
b411b363
PR
2700}
2701
71932efc
LE
2702/*
2703 * Request status of all resources, or of all volumes within a single resource.
2704 *
2705 * This is a dump, as the answer may not fit in a single reply skb otherwise.
2706 * Which means we cannot use the family->attrbuf or other such members, because
2707 * dump is NOT protected by the genl_lock(). During dump, we only have access
2708 * to the incoming skb, and need to opencode "parsing" of the nlattr payload.
2709 *
2710 * Once things are setup properly, we call into get_one_status().
2711 */
2712int drbd_adm_get_status_all(struct sk_buff *skb, struct netlink_callback *cb)
2713{
2714 const unsigned hdrlen = GENL_HDRLEN + GENL_MAGIC_FAMILY_HDRSZ;
2715 struct nlattr *nla;
2716 const char *conn_name;
2717 struct drbd_tconn *tconn;
2718
2719 /* Is this a followup call? */
2720 if (cb->args[0]) {
2721 /* ... of a single resource dump,
2722 * and the resource iterator has been advanced already? */
2723 if (cb->args[2] && cb->args[2] != cb->args[0])
2724 return 0; /* DONE. */
2725 goto dump;
2726 }
2727
2728 /* First call (from netlink_dump_start). We need to figure out
2729 * which resource(s) the user wants us to dump. */
2730 nla = nla_find(nlmsg_attrdata(cb->nlh, hdrlen),
2731 nlmsg_attrlen(cb->nlh, hdrlen),
2732 DRBD_NLA_CFG_CONTEXT);
2733
2734 /* No explicit context given. Dump all. */
2735 if (!nla)
2736 goto dump;
2737 nla = nla_find_nested(nla, __nla_type(T_ctx_conn_name));
2738 /* context given, but no name present? */
2739 if (!nla)
2740 return -EINVAL;
2741 conn_name = nla_data(nla);
0ace9dfa
PR
2742 tconn = conn_get_by_name(conn_name);
2743
71932efc
LE
2744 if (!tconn)
2745 return -ENODEV;
2746
0ace9dfa
PR
2747 kref_put(&tconn->kref, &conn_destroy); /* get_one_status() (re)validates tconn by itself */
2748
71932efc
LE
2749 /* prime iterators, and set "filter" mode mark:
2750 * only dump this tconn. */
2751 cb->args[0] = (long)tconn;
2752 /* cb->args[1] = 0; passed in this way. */
2753 cb->args[2] = (long)tconn;
2754
2755dump:
2756 return get_one_status(skb, cb);
2757}
2758
3b98c0c2 2759int drbd_adm_get_timeout_type(struct sk_buff *skb, struct genl_info *info)
b411b363 2760{
3b98c0c2
LE
2761 enum drbd_ret_code retcode;
2762 struct timeout_parms tp;
2763 int err;
b411b363 2764
3b98c0c2
LE
2765 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_MINOR);
2766 if (!adm_ctx.reply_skb)
2767 return retcode;
2768 if (retcode != NO_ERROR)
2769 goto out;
b411b363 2770
3b98c0c2
LE
2771 tp.timeout_type =
2772 adm_ctx.mdev->state.pdsk == D_OUTDATED ? UT_PEER_OUTDATED :
2773 test_bit(USE_DEGR_WFC_T, &adm_ctx.mdev->flags) ? UT_DEGRADED :
2774 UT_DEFAULT;
b411b363 2775
3b98c0c2
LE
2776 err = timeout_parms_to_priv_skb(adm_ctx.reply_skb, &tp);
2777 if (err) {
2778 nlmsg_free(adm_ctx.reply_skb);
2779 return err;
2780 }
2781out:
2782 drbd_adm_finish(info, retcode);
2783 return 0;
b411b363
PR
2784}
2785
3b98c0c2 2786int drbd_adm_start_ov(struct sk_buff *skb, struct genl_info *info)
b411b363 2787{
3b98c0c2
LE
2788 struct drbd_conf *mdev;
2789 enum drbd_ret_code retcode;
b411b363 2790
3b98c0c2
LE
2791 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_MINOR);
2792 if (!adm_ctx.reply_skb)
2793 return retcode;
2794 if (retcode != NO_ERROR)
2795 goto out;
873b0d5f 2796
3b98c0c2
LE
2797 mdev = adm_ctx.mdev;
2798 if (info->attrs[DRBD_NLA_START_OV_PARMS]) {
2799 /* resume from last known position, if possible */
2800 struct start_ov_parms parms =
2801 { .ov_start_sector = mdev->ov_start_sector };
f399002e 2802 int err = start_ov_parms_from_attrs(&parms, info);
3b98c0c2
LE
2803 if (err) {
2804 retcode = ERR_MANDATORY_TAG;
2805 drbd_msg_put_info(from_attrs_err_to_txt(err));
2806 goto out;
2807 }
2808 /* w_make_ov_request expects position to be aligned */
2809 mdev->ov_start_sector = parms.ov_start_sector & ~BM_SECT_PER_BIT;
2810 }
873b0d5f
LE
2811 /* If there is still bitmap IO pending, e.g. previous resync or verify
2812 * just being finished, wait for it before requesting a new resync. */
2813 wait_event(mdev->misc_wait, !test_bit(BITMAP_IO, &mdev->flags));
3b98c0c2
LE
2814 retcode = drbd_request_state(mdev,NS(conn,C_VERIFY_S));
2815out:
2816 drbd_adm_finish(info, retcode);
b411b363
PR
2817 return 0;
2818}
2819
2820
3b98c0c2 2821int drbd_adm_new_c_uuid(struct sk_buff *skb, struct genl_info *info)
b411b363 2822{
3b98c0c2
LE
2823 struct drbd_conf *mdev;
2824 enum drbd_ret_code retcode;
b411b363
PR
2825 int skip_initial_sync = 0;
2826 int err;
3b98c0c2 2827 struct new_c_uuid_parms args;
b411b363 2828
3b98c0c2
LE
2829 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_MINOR);
2830 if (!adm_ctx.reply_skb)
2831 return retcode;
2832 if (retcode != NO_ERROR)
2833 goto out_nolock;
b411b363 2834
3b98c0c2
LE
2835 mdev = adm_ctx.mdev;
2836 memset(&args, 0, sizeof(args));
2837 if (info->attrs[DRBD_NLA_NEW_C_UUID_PARMS]) {
f399002e 2838 err = new_c_uuid_parms_from_attrs(&args, info);
3b98c0c2
LE
2839 if (err) {
2840 retcode = ERR_MANDATORY_TAG;
2841 drbd_msg_put_info(from_attrs_err_to_txt(err));
2842 goto out_nolock;
2843 }
b411b363
PR
2844 }
2845
8410da8f 2846 mutex_lock(mdev->state_mutex); /* Protects us against serialized state changes. */
b411b363
PR
2847
2848 if (!get_ldev(mdev)) {
2849 retcode = ERR_NO_DISK;
2850 goto out;
2851 }
2852
2853 /* this is "skip initial sync", assume to be clean */
31890f4a 2854 if (mdev->state.conn == C_CONNECTED && mdev->tconn->agreed_pro_version >= 90 &&
b411b363
PR
2855 mdev->ldev->md.uuid[UI_CURRENT] == UUID_JUST_CREATED && args.clear_bm) {
2856 dev_info(DEV, "Preparing to skip initial sync\n");
2857 skip_initial_sync = 1;
2858 } else if (mdev->state.conn != C_STANDALONE) {
2859 retcode = ERR_CONNECTED;
2860 goto out_dec;
2861 }
2862
2863 drbd_uuid_set(mdev, UI_BITMAP, 0); /* Rotate UI_BITMAP to History 1, etc... */
2864 drbd_uuid_new_current(mdev); /* New current, previous to UI_BITMAP */
2865
2866 if (args.clear_bm) {
20ceb2b2
LE
2867 err = drbd_bitmap_io(mdev, &drbd_bmio_clear_n_write,
2868 "clear_n_write from new_c_uuid", BM_LOCKED_MASK);
b411b363
PR
2869 if (err) {
2870 dev_err(DEV, "Writing bitmap failed with %d\n",err);
2871 retcode = ERR_IO_MD_DISK;
2872 }
2873 if (skip_initial_sync) {
2874 drbd_send_uuids_skip_initial_sync(mdev);
2875 _drbd_uuid_set(mdev, UI_BITMAP, 0);
62b0da3a 2876 drbd_print_uuids(mdev, "cleared bitmap UUID");
87eeee41 2877 spin_lock_irq(&mdev->tconn->req_lock);
b411b363
PR
2878 _drbd_set_state(_NS2(mdev, disk, D_UP_TO_DATE, pdsk, D_UP_TO_DATE),
2879 CS_VERBOSE, NULL);
87eeee41 2880 spin_unlock_irq(&mdev->tconn->req_lock);
b411b363
PR
2881 }
2882 }
2883
2884 drbd_md_sync(mdev);
2885out_dec:
2886 put_ldev(mdev);
2887out:
8410da8f 2888 mutex_unlock(mdev->state_mutex);
3b98c0c2
LE
2889out_nolock:
2890 drbd_adm_finish(info, retcode);
774b3055
PR
2891 return 0;
2892}
2893
3b98c0c2
LE
2894static enum drbd_ret_code
2895drbd_check_conn_name(const char *name)
774b3055 2896{
3b98c0c2
LE
2897 if (!name || !name[0]) {
2898 drbd_msg_put_info("connection name missing");
2899 return ERR_MANDATORY_TAG;
774b3055 2900 }
3b98c0c2
LE
2901 /* if we want to use these in sysfs/configfs/debugfs some day,
2902 * we must not allow slashes */
2903 if (strchr(name, '/')) {
2904 drbd_msg_put_info("invalid connection name");
2905 return ERR_INVALID_REQUEST;
774b3055 2906 }
3b98c0c2 2907 return NO_ERROR;
774b3055
PR
2908}
2909
3b98c0c2 2910int drbd_adm_create_connection(struct sk_buff *skb, struct genl_info *info)
b411b363 2911{
3b98c0c2 2912 enum drbd_ret_code retcode;
9f5180e5 2913
3b98c0c2
LE
2914 retcode = drbd_adm_prepare(skb, info, 0);
2915 if (!adm_ctx.reply_skb)
2916 return retcode;
2917 if (retcode != NO_ERROR)
2918 goto out;
b411b363 2919
3b98c0c2
LE
2920 retcode = drbd_check_conn_name(adm_ctx.conn_name);
2921 if (retcode != NO_ERROR)
2922 goto out;
b411b363 2923
3b98c0c2 2924 if (adm_ctx.tconn) {
38f19616
LE
2925 if (info->nlhdr->nlmsg_flags & NLM_F_EXCL) {
2926 retcode = ERR_INVALID_REQUEST;
2927 drbd_msg_put_info("connection exists");
2928 }
2929 /* else: still NO_ERROR */
3b98c0c2 2930 goto out;
b411b363
PR
2931 }
2932
9dc9fbb3 2933 if (!conn_create(adm_ctx.conn_name))
b411b363 2934 retcode = ERR_NOMEM;
3b98c0c2
LE
2935out:
2936 drbd_adm_finish(info, retcode);
2937 return 0;
b411b363
PR
2938}
2939
3b98c0c2 2940int drbd_adm_add_minor(struct sk_buff *skb, struct genl_info *info)
b411b363 2941{
3b98c0c2
LE
2942 struct drbd_genlmsghdr *dh = info->userhdr;
2943 enum drbd_ret_code retcode;
b411b363 2944
3b98c0c2
LE
2945 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_CONN);
2946 if (!adm_ctx.reply_skb)
2947 return retcode;
2948 if (retcode != NO_ERROR)
2949 goto out;
b411b363 2950
3b98c0c2
LE
2951 /* FIXME drop minor_count parameter, limit to MINORMASK */
2952 if (dh->minor >= minor_count) {
2953 drbd_msg_put_info("requested minor out of range");
2954 retcode = ERR_INVALID_REQUEST;
2955 goto out;
b411b363 2956 }
0c8e36d9 2957 if (adm_ctx.volume > DRBD_VOLUME_MAX) {
3b98c0c2
LE
2958 drbd_msg_put_info("requested volume id out of range");
2959 retcode = ERR_INVALID_REQUEST;
2960 goto out;
b411b363 2961 }
b411b363 2962
38f19616
LE
2963 /* drbd_adm_prepare made sure already
2964 * that mdev->tconn and mdev->vnr match the request. */
2965 if (adm_ctx.mdev) {
2966 if (info->nlhdr->nlmsg_flags & NLM_F_EXCL)
2967 retcode = ERR_MINOR_EXISTS;
2968 /* else: still NO_ERROR */
2969 goto out;
2970 }
2971
d3fcb490 2972 down_write(&drbd_cfg_rwsem);
3b98c0c2 2973 retcode = conn_new_minor(adm_ctx.tconn, dh->minor, adm_ctx.volume);
d3fcb490 2974 up_write(&drbd_cfg_rwsem);
3b98c0c2
LE
2975out:
2976 drbd_adm_finish(info, retcode);
2977 return 0;
b411b363
PR
2978}
2979
85f75dd7
LE
2980static enum drbd_ret_code adm_delete_minor(struct drbd_conf *mdev)
2981{
2982 if (mdev->state.disk == D_DISKLESS &&
2983 /* no need to be mdev->state.conn == C_STANDALONE &&
2984 * we may want to delete a minor from a live replication group.
2985 */
2986 mdev->state.role == R_SECONDARY) {
ff370e5a 2987 drbd_delete_device(mdev);
85f75dd7
LE
2988 return NO_ERROR;
2989 } else
2990 return ERR_MINOR_CONFIGURED;
2991}
2992
3b98c0c2 2993int drbd_adm_delete_minor(struct sk_buff *skb, struct genl_info *info)
b411b363 2994{
3b98c0c2 2995 enum drbd_ret_code retcode;
b411b363 2996
3b98c0c2
LE
2997 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_MINOR);
2998 if (!adm_ctx.reply_skb)
2999 return retcode;
3000 if (retcode != NO_ERROR)
3001 goto out;
b411b363 3002
ef356262 3003 down_write(&drbd_cfg_rwsem);
85f75dd7 3004 retcode = adm_delete_minor(adm_ctx.mdev);
ef356262 3005 up_write(&drbd_cfg_rwsem);
85f75dd7
LE
3006out:
3007 drbd_adm_finish(info, retcode);
3008 return 0;
3009}
3010
3011int drbd_adm_down(struct sk_buff *skb, struct genl_info *info)
3012{
3013 enum drbd_ret_code retcode;
3014 enum drbd_state_rv rv;
3015 struct drbd_conf *mdev;
3016 unsigned i;
3017
3018 retcode = drbd_adm_prepare(skb, info, 0);
3019 if (!adm_ctx.reply_skb)
3020 return retcode;
3021 if (retcode != NO_ERROR)
3022 goto out;
3023
3024 if (!adm_ctx.tconn) {
3025 retcode = ERR_CONN_NOT_KNOWN;
3026 goto out;
3027 }
3028
ef356262 3029 down_read(&drbd_cfg_rwsem);
85f75dd7
LE
3030 /* demote */
3031 idr_for_each_entry(&adm_ctx.tconn->volumes, mdev, i) {
3032 retcode = drbd_set_role(mdev, R_SECONDARY, 0);
3033 if (retcode < SS_SUCCESS) {
3034 drbd_msg_put_info("failed to demote");
3035 goto out_unlock;
3036 }
3037 }
3038
3039 /* disconnect */
3040 rv = conn_try_disconnect(adm_ctx.tconn, 0);
3041 if (rv < SS_SUCCESS) {
3042 retcode = rv; /* enum type mismatch! */
3043 drbd_msg_put_info("failed to disconnect");
3044 goto out_unlock;
3045 }
3046
d9cc6e23
LE
3047 /* Make sure the network threads have actually stopped,
3048 * state handling only does drbd_thread_stop_nowait(). */
3049 drbd_thread_stop(&adm_ctx.tconn->receiver);
3050
85f75dd7
LE
3051 /* detach */
3052 idr_for_each_entry(&adm_ctx.tconn->volumes, mdev, i) {
3053 rv = adm_detach(mdev);
3054 if (rv < SS_SUCCESS) {
3055 retcode = rv; /* enum type mismatch! */
3056 drbd_msg_put_info("failed to detach");
3057 goto out_unlock;
3058 }
3059 }
ef356262 3060 up_read(&drbd_cfg_rwsem);
85f75dd7
LE
3061
3062 /* delete volumes */
ef356262 3063 down_write(&drbd_cfg_rwsem);
85f75dd7
LE
3064 idr_for_each_entry(&adm_ctx.tconn->volumes, mdev, i) {
3065 retcode = adm_delete_minor(mdev);
3066 if (retcode != NO_ERROR) {
3067 /* "can not happen" */
3068 drbd_msg_put_info("failed to delete volume");
ef356262
PR
3069 up_write(&drbd_cfg_rwsem);
3070 goto out;
85f75dd7
LE
3071 }
3072 }
3073
85f75dd7
LE
3074 /* delete connection */
3075 if (conn_lowest_minor(adm_ctx.tconn) < 0) {
d9cc6e23 3076 drbd_thread_stop(&adm_ctx.tconn->worker);
9dc9fbb3
PR
3077 list_del(&adm_ctx.tconn->all_tconn);
3078 kref_put(&adm_ctx.tconn->kref, &conn_destroy);
3079
85f75dd7
LE
3080 retcode = NO_ERROR;
3081 } else {
3082 /* "can not happen" */
3083 retcode = ERR_CONN_IN_USE;
3084 drbd_msg_put_info("failed to delete connection");
85f75dd7 3085 }
ef356262
PR
3086
3087 up_write(&drbd_cfg_rwsem);
3088 goto out;
85f75dd7 3089out_unlock:
ef356262 3090 up_read(&drbd_cfg_rwsem);
3b98c0c2
LE
3091out:
3092 drbd_adm_finish(info, retcode);
3093 return 0;
b411b363
PR
3094}
3095
3b98c0c2 3096int drbd_adm_delete_connection(struct sk_buff *skb, struct genl_info *info)
b411b363 3097{
3b98c0c2 3098 enum drbd_ret_code retcode;
b411b363 3099
3b98c0c2
LE
3100 retcode = drbd_adm_prepare(skb, info, DRBD_ADM_NEED_CONN);
3101 if (!adm_ctx.reply_skb)
3102 return retcode;
3103 if (retcode != NO_ERROR)
3104 goto out;
3105
ef356262 3106 down_write(&drbd_cfg_rwsem);
3b98c0c2 3107 if (conn_lowest_minor(adm_ctx.tconn) < 0) {
9dc9fbb3
PR
3108 list_del(&adm_ctx.tconn->all_tconn);
3109 kref_put(&adm_ctx.tconn->kref, &conn_destroy);
3110
3b98c0c2
LE
3111 retcode = NO_ERROR;
3112 } else {
3113 retcode = ERR_CONN_IN_USE;
b411b363 3114 }
ef356262 3115 up_write(&drbd_cfg_rwsem);
b411b363 3116
3b98c0c2
LE
3117out:
3118 drbd_adm_finish(info, retcode);
b411b363
PR
3119 return 0;
3120}
3121
3b98c0c2 3122void drbd_bcast_event(struct drbd_conf *mdev, const struct sib_info *sib)
b411b363 3123{
3b98c0c2
LE
3124 static atomic_t drbd_genl_seq = ATOMIC_INIT(2); /* two. */
3125 struct sk_buff *msg;
3126 struct drbd_genlmsghdr *d_out;
3127 unsigned seq;
3128 int err = -ENOMEM;
3129
3130 seq = atomic_inc_return(&drbd_genl_seq);
3131 msg = genlmsg_new(NLMSG_GOODSIZE, GFP_NOIO);
3132 if (!msg)
3133 goto failed;
3134
3135 err = -EMSGSIZE;
3136 d_out = genlmsg_put(msg, 0, seq, &drbd_genl_family, 0, DRBD_EVENT);
3137 if (!d_out) /* cannot happen, but anyways. */
3138 goto nla_put_failure;
3139 d_out->minor = mdev_to_minor(mdev);
3140 d_out->ret_code = 0;
3141
3142 if (nla_put_status_info(msg, mdev, sib))
3143 goto nla_put_failure;
3144 genlmsg_end(msg, d_out);
3145 err = drbd_genl_multicast_events(msg, 0);
3146 /* msg has been consumed or freed in netlink_broadcast() */
3147 if (err && err != -ESRCH)
3148 goto failed;
b411b363 3149
3b98c0c2 3150 return;
b411b363 3151
3b98c0c2
LE
3152nla_put_failure:
3153 nlmsg_free(msg);
3154failed:
3155 dev_err(DEV, "Error %d while broadcasting event. "
3156 "Event seq:%u sib_reason:%u\n",
3157 err, seq, sib->sib_reason);
b411b363 3158}