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7c673cae
FG
1// -*- mode:C++; tab-width:8; c-basic-offset:2; indent-tabs-mode:t -*-
2// vim: ts=8 sw=2 smarttab
3/*
4 * Ceph - scalable distributed file system
5 *
6 * Copyright (C) 2015 Red Hat
7 *
8 * This is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU Lesser General Public
10 * License version 2.1, as published by the Free Software
11 * Foundation. See file COPYING.
12 *
13 */
14
15#include "common/debug.h"
16#include "common/errno.h"
17
18#include "messages/MClientRequestForward.h"
19#include "messages/MMDSLoadTargets.h"
20#include "messages/MMDSMap.h"
21#include "messages/MMDSTableRequest.h"
22#include "messages/MCommand.h"
23#include "messages/MCommandReply.h"
24
25#include "MDSDaemon.h"
26#include "MDSMap.h"
27#include "SnapClient.h"
28#include "SnapServer.h"
29#include "MDBalancer.h"
30#include "Locker.h"
31#include "Server.h"
32#include "InoTable.h"
33#include "mon/MonClient.h"
34#include "common/HeartbeatMap.h"
35#include "ScrubStack.h"
36
37
38#include "MDSRank.h"
39
40#define dout_context g_ceph_context
41#define dout_subsys ceph_subsys_mds
42#undef dout_prefix
43#define dout_prefix *_dout << "mds." << whoami << '.' << incarnation << ' '
44
45MDSRank::MDSRank(
46 mds_rank_t whoami_,
47 Mutex &mds_lock_,
48 LogChannelRef &clog_,
49 SafeTimer &timer_,
50 Beacon &beacon_,
51 MDSMap *& mdsmap_,
52 Messenger *msgr,
53 MonClient *monc_,
54 Context *respawn_hook_,
55 Context *suicide_hook_)
56 :
57 whoami(whoami_), incarnation(0),
58 mds_lock(mds_lock_), clog(clog_), timer(timer_),
59 mdsmap(mdsmap_),
60 objecter(new Objecter(g_ceph_context, msgr, monc_, nullptr, 0, 0)),
61 server(NULL), mdcache(NULL), locker(NULL), mdlog(NULL),
62 balancer(NULL), scrubstack(NULL),
63 damage_table(whoami_),
64 inotable(NULL), snapserver(NULL), snapclient(NULL),
65 sessionmap(this), logger(NULL), mlogger(NULL),
66 op_tracker(g_ceph_context, g_conf->mds_enable_op_tracker,
67 g_conf->osd_num_op_tracker_shard),
68 last_state(MDSMap::STATE_BOOT),
69 state(MDSMap::STATE_BOOT),
70 cluster_degraded(false), stopping(false),
71 purge_queue(g_ceph_context, whoami_,
72 mdsmap_->get_metadata_pool(), objecter,
73 new FunctionContext(
74 [this](int r){
75 // Purge Queue operates inside mds_lock when we're calling into
76 // it, and outside when in background, so must handle both cases.
77 if (mds_lock.is_locked_by_me()) {
78 damaged();
79 } else {
80 damaged_unlocked();
81 }
82 }
83 )
84 ),
85 progress_thread(this), dispatch_depth(0),
86 hb(NULL), last_tid(0), osd_epoch_barrier(0), beacon(beacon_),
87 mds_slow_req_count(0),
88 last_client_mdsmap_bcast(0),
89 messenger(msgr), monc(monc_),
90 respawn_hook(respawn_hook_),
91 suicide_hook(suicide_hook_),
92 standby_replaying(false)
93{
94 hb = g_ceph_context->get_heartbeat_map()->add_worker("MDSRank", pthread_self());
95
96 purge_queue.update_op_limit(*mdsmap);
97
98 objecter->unset_honor_osdmap_full();
99
100 finisher = new Finisher(msgr->cct);
101
102 mdcache = new MDCache(this, purge_queue);
103 mdlog = new MDLog(this);
104 balancer = new MDBalancer(this, messenger, monc);
105
106 scrubstack = new ScrubStack(mdcache, finisher);
107
108 inotable = new InoTable(this);
109 snapserver = new SnapServer(this, monc);
110 snapclient = new SnapClient(this);
111
112 server = new Server(this);
113 locker = new Locker(this, mdcache);
114
115 op_tracker.set_complaint_and_threshold(msgr->cct->_conf->mds_op_complaint_time,
116 msgr->cct->_conf->mds_op_log_threshold);
117 op_tracker.set_history_size_and_duration(msgr->cct->_conf->mds_op_history_size,
118 msgr->cct->_conf->mds_op_history_duration);
119}
120
121MDSRank::~MDSRank()
122{
123 if (hb) {
124 g_ceph_context->get_heartbeat_map()->remove_worker(hb);
125 }
126
127 if (scrubstack) { delete scrubstack; scrubstack = NULL; }
128 if (mdcache) { delete mdcache; mdcache = NULL; }
129 if (mdlog) { delete mdlog; mdlog = NULL; }
130 if (balancer) { delete balancer; balancer = NULL; }
131 if (inotable) { delete inotable; inotable = NULL; }
132 if (snapserver) { delete snapserver; snapserver = NULL; }
133 if (snapclient) { delete snapclient; snapclient = NULL; }
134 if (mdsmap) { delete mdsmap; mdsmap = 0; }
135
136 if (server) { delete server; server = 0; }
137 if (locker) { delete locker; locker = 0; }
138
139 if (logger) {
140 g_ceph_context->get_perfcounters_collection()->remove(logger);
141 delete logger;
142 logger = 0;
143 }
144 if (mlogger) {
145 g_ceph_context->get_perfcounters_collection()->remove(mlogger);
146 delete mlogger;
147 mlogger = 0;
148 }
149
150 delete finisher;
151 finisher = NULL;
152
153 delete suicide_hook;
154 suicide_hook = NULL;
155
156 delete respawn_hook;
157 respawn_hook = NULL;
158
159 delete objecter;
160 objecter = nullptr;
161}
162
163void MDSRankDispatcher::init()
164{
165 objecter->init();
166 messenger->add_dispatcher_head(objecter);
167
168 objecter->start();
169
170 update_log_config();
171 create_logger();
172
173 // Expose the OSDMap (already populated during MDS::init) to anyone
174 // who is interested in it.
175 handle_osd_map();
176
177 progress_thread.create("mds_rank_progr");
178
179 purge_queue.init();
180
181 finisher->start();
182}
183
184void MDSRank::update_targets(utime_t now)
185{
186 // get MonMap's idea of my export_targets
187 const set<mds_rank_t>& map_targets = mdsmap->get_mds_info(get_nodeid()).export_targets;
188
189 dout(20) << "updating export targets, currently " << map_targets.size() << " ranks are targets" << dendl;
190
191 bool send = false;
192 set<mds_rank_t> new_map_targets;
193
194 auto it = export_targets.begin();
195 while (it != export_targets.end()) {
196 mds_rank_t rank = it->first;
197 double val = it->second.get(now);
198 dout(20) << "export target mds." << rank << " value is " << val << " @ " << now << dendl;
199
200 if (val <= 0.01) {
201 dout(15) << "export target mds." << rank << " is no longer an export target" << dendl;
202 export_targets.erase(it++);
203 send = true;
204 continue;
205 }
206 if (!map_targets.count(rank)) {
207 dout(15) << "export target mds." << rank << " not in map's export_targets" << dendl;
208 send = true;
209 }
210 new_map_targets.insert(rank);
211 it++;
212 }
213 if (new_map_targets.size() < map_targets.size()) {
214 dout(15) << "export target map holds stale targets, sending update" << dendl;
215 send = true;
216 }
217
218 if (send) {
219 dout(15) << "updating export_targets, now " << new_map_targets.size() << " ranks are targets" << dendl;
220 MMDSLoadTargets* m = new MMDSLoadTargets(mds_gid_t(monc->get_global_id()), new_map_targets);
221 monc->send_mon_message(m);
222 }
223}
224
225void MDSRank::hit_export_target(utime_t now, mds_rank_t rank, double amount)
226{
227 double rate = g_conf->mds_bal_target_decay;
228 if (amount < 0.0) {
229 amount = 100.0/g_conf->mds_bal_target_decay; /* a good default for "i am trying to keep this export_target active" */
230 }
231 auto em = export_targets.emplace(std::piecewise_construct, std::forward_as_tuple(rank), std::forward_as_tuple(now, DecayRate(rate)));
232 if (em.second) {
233 dout(15) << "hit export target (new) " << amount << " @ " << now << dendl;
234 } else {
235 dout(15) << "hit export target " << amount << " @ " << now << dendl;
236 }
237 em.first->second.hit(now, amount);
238}
239
240void MDSRankDispatcher::tick()
241{
242 heartbeat_reset();
243
244 if (beacon.is_laggy()) {
245 dout(5) << "tick bailing out since we seem laggy" << dendl;
246 return;
247 }
248
249 check_ops_in_flight();
250
251 // Wake up thread in case we use to be laggy and have waiting_for_nolaggy
252 // messages to progress.
253 progress_thread.signal();
254
255 // make sure mds log flushes, trims periodically
256 mdlog->flush();
257
258 if (is_active() || is_stopping()) {
259 mdcache->trim();
260 mdcache->trim_client_leases();
261 mdcache->check_memory_usage();
262 mdlog->trim(); // NOT during recovery!
263 }
264
265 // log
266 mds_load_t load = balancer->get_load(ceph_clock_now());
267
268 if (logger) {
269 logger->set(l_mds_load_cent, 100 * load.mds_load());
270 logger->set(l_mds_dispatch_queue_len, messenger->get_dispatch_queue_len());
271 logger->set(l_mds_subtrees, mdcache->num_subtrees());
272
273 mdcache->log_stat();
274 }
275
276 // ...
277 if (is_clientreplay() || is_active() || is_stopping()) {
278 server->find_idle_sessions();
279 locker->tick();
280 }
281
282 if (is_reconnect())
283 server->reconnect_tick();
284
285 if (is_active()) {
286 balancer->tick();
287 mdcache->find_stale_fragment_freeze();
288 mdcache->migrator->find_stale_export_freeze();
289 if (snapserver)
290 snapserver->check_osd_map(false);
291 }
292
293 if (is_active() || is_stopping()) {
294 update_targets(ceph_clock_now());
295 }
296
297 // shut down?
298 if (is_stopping()) {
299 mdlog->trim();
300 if (mdcache->shutdown_pass()) {
301 uint64_t pq_progress = 0 ;
302 uint64_t pq_total = 0;
303 size_t pq_in_flight = 0;
304 if (!purge_queue.drain(&pq_progress, &pq_total, &pq_in_flight)) {
305 dout(7) << "shutdown_pass=true, but still waiting for purge queue"
306 << dendl;
307 // This takes unbounded time, so we must indicate progress
308 // to the administrator: we do it in a slightly imperfect way
309 // by sending periodic (tick frequency) clog messages while
310 // in this state.
311 clog->info() << "MDS rank " << whoami << " waiting for purge queue ("
312 << std::dec << pq_progress << "/" << pq_total << " " << pq_in_flight
313 << " files purging" << ")";
314 } else {
315 dout(7) << "shutdown_pass=true, finished w/ shutdown, moving to "
316 "down:stopped" << dendl;
317 stopping_done();
318 }
319 }
320 else {
321 dout(7) << "shutdown_pass=false" << dendl;
322 }
323 }
324
325 // Expose ourselves to Beacon to update health indicators
326 beacon.notify_health(this);
327}
328
329void MDSRankDispatcher::shutdown()
330{
331 // It should never be possible for shutdown to get called twice, because
332 // anyone picking up mds_lock checks if stopping is true and drops
333 // out if it is.
334 assert(stopping == false);
335 stopping = true;
336
337 dout(1) << __func__ << ": shutting down rank " << whoami << dendl;
338
339 timer.shutdown();
340
341 // MDLog has to shut down before the finisher, because some of its
342 // threads block on IOs that require finisher to complete.
343 mdlog->shutdown();
344
345 // shut down cache
346 mdcache->shutdown();
347
348 purge_queue.shutdown();
349
350 mds_lock.Unlock();
351 finisher->stop(); // no flushing
352 mds_lock.Lock();
353
31f18b77 354 if (objecter->initialized)
7c673cae
FG
355 objecter->shutdown();
356
357 monc->shutdown();
358
359 op_tracker.on_shutdown();
360
361 progress_thread.shutdown();
362
363 // release mds_lock for finisher/messenger threads (e.g.
364 // MDSDaemon::ms_handle_reset called from Messenger).
365 mds_lock.Unlock();
366
367 // shut down messenger
368 messenger->shutdown();
369
370 mds_lock.Lock();
371
372 // Workaround unclean shutdown: HeartbeatMap will assert if
373 // worker is not removed (as we do in ~MDS), but ~MDS is not
374 // always called after suicide.
375 if (hb) {
376 g_ceph_context->get_heartbeat_map()->remove_worker(hb);
377 hb = NULL;
378 }
379}
380
381/**
382 * Helper for simple callbacks that call a void fn with no args.
383 */
384class C_MDS_VoidFn : public MDSInternalContext
385{
386 typedef void (MDSRank::*fn_ptr)();
387 protected:
388 fn_ptr fn;
389 public:
390 C_MDS_VoidFn(MDSRank *mds_, fn_ptr fn_)
391 : MDSInternalContext(mds_), fn(fn_)
392 {
393 assert(mds_);
394 assert(fn_);
395 }
396
397 void finish(int r) override
398 {
399 (mds->*fn)();
400 }
401};
402
403int64_t MDSRank::get_metadata_pool()
404{
405 return mdsmap->get_metadata_pool();
406}
407
408MDSTableClient *MDSRank::get_table_client(int t)
409{
410 switch (t) {
411 case TABLE_ANCHOR: return NULL;
412 case TABLE_SNAP: return snapclient;
413 default: ceph_abort();
414 }
415}
416
417MDSTableServer *MDSRank::get_table_server(int t)
418{
419 switch (t) {
420 case TABLE_ANCHOR: return NULL;
421 case TABLE_SNAP: return snapserver;
422 default: ceph_abort();
423 }
424}
425
426void MDSRank::suicide()
427{
428 if (suicide_hook) {
429 suicide_hook->complete(0);
430 suicide_hook = NULL;
431 }
432}
433
434void MDSRank::respawn()
435{
436 if (respawn_hook) {
437 respawn_hook->complete(0);
438 respawn_hook = NULL;
439 }
440}
441
442void MDSRank::damaged()
443{
444 assert(whoami != MDS_RANK_NONE);
445 assert(mds_lock.is_locked_by_me());
446
447 beacon.set_want_state(mdsmap, MDSMap::STATE_DAMAGED);
448 monc->flush_log(); // Flush any clog error from before we were called
449 beacon.notify_health(this); // Include latest status in our swan song
450 beacon.send_and_wait(g_conf->mds_mon_shutdown_timeout);
451
452 // It's okay if we timed out and the mon didn't get our beacon, because
453 // another daemon (or ourselves after respawn) will eventually take the
454 // rank and report DAMAGED again when it hits same problem we did.
455
456 respawn(); // Respawn into standby in case mon has other work for us
457}
458
459void MDSRank::damaged_unlocked()
460{
461 Mutex::Locker l(mds_lock);
462 damaged();
463}
464
465void MDSRank::handle_write_error(int err)
466{
467 if (err == -EBLACKLISTED) {
468 derr << "we have been blacklisted (fenced), respawning..." << dendl;
469 respawn();
470 return;
471 }
472
473 if (g_conf->mds_action_on_write_error >= 2) {
474 derr << "unhandled write error " << cpp_strerror(err) << ", suicide..." << dendl;
475 respawn();
476 } else if (g_conf->mds_action_on_write_error == 1) {
477 derr << "unhandled write error " << cpp_strerror(err) << ", force readonly..." << dendl;
478 mdcache->force_readonly();
479 } else {
480 // ignore;
481 derr << "unhandled write error " << cpp_strerror(err) << ", ignore..." << dendl;
482 }
483}
484
485void *MDSRank::ProgressThread::entry()
486{
487 Mutex::Locker l(mds->mds_lock);
488 while (true) {
489 while (!mds->stopping &&
490 mds->finished_queue.empty() &&
491 (mds->waiting_for_nolaggy.empty() || mds->beacon.is_laggy())) {
492 cond.Wait(mds->mds_lock);
493 }
494
495 if (mds->stopping) {
496 break;
497 }
498
499 mds->_advance_queues();
500 }
501
502 return NULL;
503}
504
505
506void MDSRank::ProgressThread::shutdown()
507{
508 assert(mds->mds_lock.is_locked_by_me());
509 assert(mds->stopping);
510
511 if (am_self()) {
512 // Stopping is set, we will fall out of our main loop naturally
513 } else {
514 // Kick the thread to notice mds->stopping, and join it
515 cond.Signal();
516 mds->mds_lock.Unlock();
517 if (is_started())
518 join();
519 mds->mds_lock.Lock();
520 }
521}
522
523bool MDSRankDispatcher::ms_dispatch(Message *m)
524{
525 bool ret;
526 inc_dispatch_depth();
527 ret = _dispatch(m, true);
528 dec_dispatch_depth();
529 return ret;
530}
531
532/* If this function returns true, it recognizes the message and has taken the
533 * reference. If it returns false, it has done neither. */
534bool MDSRank::_dispatch(Message *m, bool new_msg)
535{
536 if (is_stale_message(m)) {
537 m->put();
538 return true;
539 }
540
541 if (beacon.is_laggy()) {
542 dout(10) << " laggy, deferring " << *m << dendl;
543 waiting_for_nolaggy.push_back(m);
544 } else if (new_msg && !waiting_for_nolaggy.empty()) {
545 dout(10) << " there are deferred messages, deferring " << *m << dendl;
546 waiting_for_nolaggy.push_back(m);
547 } else {
548 if (!handle_deferrable_message(m)) {
549 dout(0) << "unrecognized message " << *m << dendl;
550 return false;
551 }
552
553 heartbeat_reset();
554 }
555
556 if (dispatch_depth > 1)
557 return true;
558
559 // finish any triggered contexts
560 _advance_queues();
561
562 if (beacon.is_laggy()) {
563 // We've gone laggy during dispatch, don't do any
564 // more housekeeping
565 return true;
566 }
567
568 // done with all client replayed requests?
569 if (is_clientreplay() &&
570 mdcache->is_open() &&
571 replay_queue.empty() &&
572 beacon.get_want_state() == MDSMap::STATE_CLIENTREPLAY) {
573 int num_requests = mdcache->get_num_client_requests();
574 dout(10) << " still have " << num_requests << " active replay requests" << dendl;
575 if (num_requests == 0)
576 clientreplay_done();
577 }
578
579 // hack: thrash exports
580 static utime_t start;
581 utime_t now = ceph_clock_now();
582 if (start == utime_t())
583 start = now;
584 /*double el = now - start;
585 if (el > 30.0 &&
586 el < 60.0)*/
587 for (int i=0; i<g_conf->mds_thrash_exports; i++) {
588 set<mds_rank_t> s;
589 if (!is_active()) break;
590 mdsmap->get_mds_set(s, MDSMap::STATE_ACTIVE);
591 if (s.size() < 2 || CInode::count() < 10)
592 break; // need peers for this to work.
593 if (mdcache->migrator->get_num_exporting() > g_conf->mds_thrash_exports * 5 ||
594 mdcache->migrator->get_export_queue_size() > g_conf->mds_thrash_exports * 10)
595 break;
596
597 dout(7) << "mds thrashing exports pass " << (i+1) << "/" << g_conf->mds_thrash_exports << dendl;
598
599 // pick a random dir inode
600 CInode *in = mdcache->hack_pick_random_inode();
601
602 list<CDir*> ls;
603 in->get_dirfrags(ls);
604 if (!ls.empty()) { // must be an open dir.
605 list<CDir*>::iterator p = ls.begin();
606 int n = rand() % ls.size();
607 while (n--)
608 ++p;
609 CDir *dir = *p;
610 if (!dir->get_parent_dir()) continue; // must be linked.
611 if (!dir->is_auth()) continue; // must be auth.
612
613 mds_rank_t dest;
614 do {
615 int k = rand() % s.size();
616 set<mds_rank_t>::iterator p = s.begin();
617 while (k--) ++p;
618 dest = *p;
619 } while (dest == whoami);
620 mdcache->migrator->export_dir_nicely(dir,dest);
621 }
622 }
623 // hack: thrash fragments
624 for (int i=0; i<g_conf->mds_thrash_fragments; i++) {
625 if (!is_active()) break;
626 if (mdcache->get_num_fragmenting_dirs() > 5 * g_conf->mds_thrash_fragments) break;
627 dout(7) << "mds thrashing fragments pass " << (i+1) << "/" << g_conf->mds_thrash_fragments << dendl;
628
629 // pick a random dir inode
630 CInode *in = mdcache->hack_pick_random_inode();
631
632 list<CDir*> ls;
633 in->get_dirfrags(ls);
634 if (ls.empty()) continue; // must be an open dir.
635 CDir *dir = ls.front();
636 if (!dir->get_parent_dir()) continue; // must be linked.
637 if (!dir->is_auth()) continue; // must be auth.
638 frag_t fg = dir->get_frag();
639 if (mdsmap->allows_dirfrags()) {
640 if ((fg == frag_t() || (rand() % (1 << fg.bits()) == 0))) {
641 mdcache->split_dir(dir, 1);
642 } else {
643 balancer->queue_merge(dir);
644 }
645 }
646 }
647
648 // hack: force hash root?
649 /*
650 if (false &&
651 mdcache->get_root() &&
652 mdcache->get_root()->dir &&
653 !(mdcache->get_root()->dir->is_hashed() ||
654 mdcache->get_root()->dir->is_hashing())) {
655 dout(0) << "hashing root" << dendl;
656 mdcache->migrator->hash_dir(mdcache->get_root()->dir);
657 }
658 */
659
660 if (mlogger) {
661 mlogger->set(l_mdm_ino, CInode::count());
662 mlogger->set(l_mdm_dir, CDir::count());
663 mlogger->set(l_mdm_dn, CDentry::count());
664 mlogger->set(l_mdm_cap, Capability::count());
665
666 mlogger->set(l_mdm_inoa, CInode::increments());
667 mlogger->set(l_mdm_inos, CInode::decrements());
668 mlogger->set(l_mdm_dira, CDir::increments());
669 mlogger->set(l_mdm_dirs, CDir::decrements());
670 mlogger->set(l_mdm_dna, CDentry::increments());
671 mlogger->set(l_mdm_dns, CDentry::decrements());
672 mlogger->set(l_mdm_capa, Capability::increments());
673 mlogger->set(l_mdm_caps, Capability::decrements());
674
675 mlogger->set(l_mdm_buf, buffer::get_total_alloc());
676 }
677
678 return true;
679}
680
681/*
682 * lower priority messages we defer if we seem laggy
683 */
684bool MDSRank::handle_deferrable_message(Message *m)
685{
686 int port = m->get_type() & 0xff00;
687
688 switch (port) {
689 case MDS_PORT_CACHE:
690 ALLOW_MESSAGES_FROM(CEPH_ENTITY_TYPE_MDS);
691 mdcache->dispatch(m);
692 break;
693
694 case MDS_PORT_MIGRATOR:
695 ALLOW_MESSAGES_FROM(CEPH_ENTITY_TYPE_MDS);
696 mdcache->migrator->dispatch(m);
697 break;
698
699 default:
700 switch (m->get_type()) {
701 // SERVER
702 case CEPH_MSG_CLIENT_SESSION:
703 case CEPH_MSG_CLIENT_RECONNECT:
704 ALLOW_MESSAGES_FROM(CEPH_ENTITY_TYPE_CLIENT);
705 // fall-thru
706 case CEPH_MSG_CLIENT_REQUEST:
707 server->dispatch(m);
708 break;
709 case MSG_MDS_SLAVE_REQUEST:
710 ALLOW_MESSAGES_FROM(CEPH_ENTITY_TYPE_MDS);
711 server->dispatch(m);
712 break;
713
714 case MSG_MDS_HEARTBEAT:
715 ALLOW_MESSAGES_FROM(CEPH_ENTITY_TYPE_MDS);
716 balancer->proc_message(m);
717 break;
718
719 case MSG_MDS_TABLE_REQUEST:
720 ALLOW_MESSAGES_FROM(CEPH_ENTITY_TYPE_MDS);
721 {
722 MMDSTableRequest *req = static_cast<MMDSTableRequest*>(m);
723 if (req->op < 0) {
724 MDSTableClient *client = get_table_client(req->table);
725 client->handle_request(req);
726 } else {
727 MDSTableServer *server = get_table_server(req->table);
728 server->handle_request(req);
729 }
730 }
731 break;
732
733 case MSG_MDS_LOCK:
734 case MSG_MDS_INODEFILECAPS:
735 ALLOW_MESSAGES_FROM(CEPH_ENTITY_TYPE_MDS);
736 locker->dispatch(m);
737 break;
738
739 case CEPH_MSG_CLIENT_CAPS:
740 case CEPH_MSG_CLIENT_CAPRELEASE:
741 case CEPH_MSG_CLIENT_LEASE:
742 ALLOW_MESSAGES_FROM(CEPH_ENTITY_TYPE_CLIENT);
743 locker->dispatch(m);
744 break;
745
746 default:
747 return false;
748 }
749 }
750
751 return true;
752}
753
754/**
755 * Advance finished_queue and waiting_for_nolaggy.
756 *
757 * Usually drain both queues, but may not drain waiting_for_nolaggy
758 * if beacon is currently laggy.
759 */
760void MDSRank::_advance_queues()
761{
762 assert(mds_lock.is_locked_by_me());
763
764 while (!finished_queue.empty()) {
765 dout(7) << "mds has " << finished_queue.size() << " queued contexts" << dendl;
766 dout(10) << finished_queue << dendl;
767 list<MDSInternalContextBase*> ls;
768 ls.swap(finished_queue);
769 while (!ls.empty()) {
770 dout(10) << " finish " << ls.front() << dendl;
771 ls.front()->complete(0);
772 ls.pop_front();
773
774 heartbeat_reset();
775 }
776 }
777
778 while (!waiting_for_nolaggy.empty()) {
779 // stop if we're laggy now!
780 if (beacon.is_laggy())
781 break;
782
783 Message *old = waiting_for_nolaggy.front();
784 waiting_for_nolaggy.pop_front();
785
786 if (is_stale_message(old)) {
787 old->put();
788 } else {
789 dout(7) << " processing laggy deferred " << *old << dendl;
790 if (!handle_deferrable_message(old)) {
791 dout(0) << "unrecognized message " << *old << dendl;
792 old->put();
793 }
794 }
795
796 heartbeat_reset();
797 }
798}
799
800/**
801 * Call this when you take mds_lock, or periodically if you're going to
802 * hold the lock for a long time (e.g. iterating over clients/inodes)
803 */
804void MDSRank::heartbeat_reset()
805{
806 // Any thread might jump into mds_lock and call us immediately
807 // after a call to suicide() completes, in which case MDSRank::hb
808 // has been freed and we are a no-op.
809 if (!hb) {
810 assert(stopping);
811 return;
812 }
813
814 // NB not enabling suicide grace, because the mon takes care of killing us
815 // (by blacklisting us) when we fail to send beacons, and it's simpler to
816 // only have one way of dying.
817 g_ceph_context->get_heartbeat_map()->reset_timeout(hb, g_conf->mds_beacon_grace, 0);
818}
819
820bool MDSRank::is_stale_message(Message *m) const
821{
822 // from bad mds?
823 if (m->get_source().is_mds()) {
824 mds_rank_t from = mds_rank_t(m->get_source().num());
825 if (!mdsmap->have_inst(from) ||
826 mdsmap->get_inst(from) != m->get_source_inst() ||
827 mdsmap->is_down(from)) {
828 // bogus mds?
829 if (m->get_type() == CEPH_MSG_MDS_MAP) {
830 dout(5) << "got " << *m << " from old/bad/imposter mds " << m->get_source()
831 << ", but it's an mdsmap, looking at it" << dendl;
832 } else if (m->get_type() == MSG_MDS_CACHEEXPIRE &&
833 mdsmap->get_inst(from) == m->get_source_inst()) {
834 dout(5) << "got " << *m << " from down mds " << m->get_source()
835 << ", but it's a cache_expire, looking at it" << dendl;
836 } else {
837 dout(5) << "got " << *m << " from down/old/bad/imposter mds " << m->get_source()
838 << ", dropping" << dendl;
839 return true;
840 }
841 }
842 }
843 return false;
844}
845
846
847void MDSRank::send_message(Message *m, Connection *c)
848{
849 assert(c);
850 c->send_message(m);
851}
852
853
854void MDSRank::send_message_mds(Message *m, mds_rank_t mds)
855{
856 if (!mdsmap->is_up(mds)) {
857 dout(10) << "send_message_mds mds." << mds << " not up, dropping " << *m << dendl;
858 m->put();
859 return;
860 }
861
862 // send mdsmap first?
863 if (mds != whoami && peer_mdsmap_epoch[mds] < mdsmap->get_epoch()) {
864 messenger->send_message(new MMDSMap(monc->get_fsid(), mdsmap),
865 mdsmap->get_inst(mds));
866 peer_mdsmap_epoch[mds] = mdsmap->get_epoch();
867 }
868
869 // send message
870 messenger->send_message(m, mdsmap->get_inst(mds));
871}
872
873void MDSRank::forward_message_mds(Message *m, mds_rank_t mds)
874{
875 assert(mds != whoami);
876
877 // client request?
878 if (m->get_type() == CEPH_MSG_CLIENT_REQUEST &&
879 (static_cast<MClientRequest*>(m))->get_source().is_client()) {
880 MClientRequest *creq = static_cast<MClientRequest*>(m);
881 creq->inc_num_fwd(); // inc forward counter
882
883 /*
884 * don't actually forward if non-idempotent!
885 * client has to do it. although the MDS will ignore duplicate requests,
886 * the affected metadata may migrate, in which case the new authority
887 * won't have the metareq_id in the completed request map.
888 */
889 // NEW: always make the client resend!
890 bool client_must_resend = true; //!creq->can_forward();
891
892 // tell the client where it should go
893 messenger->send_message(new MClientRequestForward(creq->get_tid(), mds, creq->get_num_fwd(),
894 client_must_resend),
895 creq->get_source_inst());
896
897 if (client_must_resend) {
898 m->put();
899 return;
900 }
901 }
902
903 // these are the only types of messages we should be 'forwarding'; they
904 // explicitly encode their source mds, which gets clobbered when we resend
905 // them here.
906 assert(m->get_type() == MSG_MDS_DIRUPDATE ||
907 m->get_type() == MSG_MDS_EXPORTDIRDISCOVER);
908
909 // send mdsmap first?
910 if (peer_mdsmap_epoch[mds] < mdsmap->get_epoch()) {
911 messenger->send_message(new MMDSMap(monc->get_fsid(), mdsmap),
912 mdsmap->get_inst(mds));
913 peer_mdsmap_epoch[mds] = mdsmap->get_epoch();
914 }
915
916 messenger->send_message(m, mdsmap->get_inst(mds));
917}
918
919
920
921void MDSRank::send_message_client_counted(Message *m, client_t client)
922{
923 Session *session = sessionmap.get_session(entity_name_t::CLIENT(client.v));
924 if (session) {
925 send_message_client_counted(m, session);
926 } else {
927 dout(10) << "send_message_client_counted no session for client." << client << " " << *m << dendl;
928 }
929}
930
931void MDSRank::send_message_client_counted(Message *m, Connection *connection)
932{
933 Session *session = static_cast<Session *>(connection->get_priv());
934 if (session) {
935 session->put(); // do not carry ref
936 send_message_client_counted(m, session);
937 } else {
938 dout(10) << "send_message_client_counted has no session for " << m->get_source_inst() << dendl;
939 // another Connection took over the Session
940 }
941}
942
943void MDSRank::send_message_client_counted(Message *m, Session *session)
944{
945 version_t seq = session->inc_push_seq();
946 dout(10) << "send_message_client_counted " << session->info.inst.name << " seq "
947 << seq << " " << *m << dendl;
948 if (session->connection) {
949 session->connection->send_message(m);
950 } else {
951 session->preopen_out_queue.push_back(m);
952 }
953}
954
955void MDSRank::send_message_client(Message *m, Session *session)
956{
957 dout(10) << "send_message_client " << session->info.inst << " " << *m << dendl;
958 if (session->connection) {
959 session->connection->send_message(m);
960 } else {
961 session->preopen_out_queue.push_back(m);
962 }
963}
964
965/**
966 * This is used whenever a RADOS operation has been cancelled
967 * or a RADOS client has been blacklisted, to cause the MDS and
968 * any clients to wait for this OSD epoch before using any new caps.
969 *
970 * See doc/cephfs/eviction
971 */
972void MDSRank::set_osd_epoch_barrier(epoch_t e)
973{
974 dout(4) << __func__ << ": epoch=" << e << dendl;
975 osd_epoch_barrier = e;
976}
977
7c673cae
FG
978void MDSRank::retry_dispatch(Message *m)
979{
980 inc_dispatch_depth();
981 _dispatch(m, false);
982 dec_dispatch_depth();
983}
984
985utime_t MDSRank::get_laggy_until() const
986{
987 return beacon.get_laggy_until();
988}
989
990bool MDSRank::is_daemon_stopping() const
991{
992 return stopping;
993}
994
995void MDSRank::request_state(MDSMap::DaemonState s)
996{
997 dout(3) << "request_state " << ceph_mds_state_name(s) << dendl;
998 beacon.set_want_state(mdsmap, s);
999 beacon.send();
1000}
1001
1002
1003class C_MDS_BootStart : public MDSInternalContext {
1004 MDSRank::BootStep nextstep;
1005public:
1006 C_MDS_BootStart(MDSRank *m, MDSRank::BootStep n)
1007 : MDSInternalContext(m), nextstep(n) {}
1008 void finish(int r) override {
1009 mds->boot_start(nextstep, r);
1010 }
1011};
1012
1013
1014void MDSRank::boot_start(BootStep step, int r)
1015{
1016 // Handle errors from previous step
1017 if (r < 0) {
1018 if (is_standby_replay() && (r == -EAGAIN)) {
1019 dout(0) << "boot_start encountered an error EAGAIN"
1020 << ", respawning since we fell behind journal" << dendl;
1021 respawn();
1022 } else if (r == -EINVAL || r == -ENOENT) {
1023 // Invalid or absent data, indicates damaged on-disk structures
1024 clog->error() << "Error loading MDS rank " << whoami << ": "
1025 << cpp_strerror(r);
1026 damaged();
1027 assert(r == 0); // Unreachable, damaged() calls respawn()
1028 } else {
1029 // Completely unexpected error, give up and die
1030 dout(0) << "boot_start encountered an error, failing" << dendl;
1031 suicide();
1032 return;
1033 }
1034 }
1035
1036 assert(is_starting() || is_any_replay());
1037
1038 switch(step) {
1039 case MDS_BOOT_INITIAL:
1040 {
1041 mdcache->init_layouts();
1042
1043 MDSGatherBuilder gather(g_ceph_context,
1044 new C_MDS_BootStart(this, MDS_BOOT_OPEN_ROOT));
1045 dout(2) << "boot_start " << step << ": opening inotable" << dendl;
1046 inotable->set_rank(whoami);
1047 inotable->load(gather.new_sub());
1048
1049 dout(2) << "boot_start " << step << ": opening sessionmap" << dendl;
1050 sessionmap.set_rank(whoami);
1051 sessionmap.load(gather.new_sub());
1052
1053 dout(2) << "boot_start " << step << ": opening mds log" << dendl;
1054 mdlog->open(gather.new_sub());
1055
1056 if (mdsmap->get_tableserver() == whoami) {
1057 dout(2) << "boot_start " << step << ": opening snap table" << dendl;
1058 snapserver->set_rank(whoami);
1059 snapserver->load(gather.new_sub());
1060 }
1061
1062 gather.activate();
1063 }
1064 break;
1065 case MDS_BOOT_OPEN_ROOT:
1066 {
1067 dout(2) << "boot_start " << step << ": loading/discovering base inodes" << dendl;
1068
1069 MDSGatherBuilder gather(g_ceph_context,
1070 new C_MDS_BootStart(this, MDS_BOOT_PREPARE_LOG));
1071
1072 mdcache->open_mydir_inode(gather.new_sub());
1073
1074 purge_queue.open(new C_IO_Wrapper(this, gather.new_sub()));
1075
1076 if (is_starting() ||
1077 whoami == mdsmap->get_root()) { // load root inode off disk if we are auth
1078 mdcache->open_root_inode(gather.new_sub());
1079 } else {
1080 // replay. make up fake root inode to start with
1081 (void)mdcache->create_root_inode();
1082 }
1083 gather.activate();
1084 }
1085 break;
1086 case MDS_BOOT_PREPARE_LOG:
1087 if (is_any_replay()) {
1088 dout(2) << "boot_start " << step << ": replaying mds log" << dendl;
1089 mdlog->replay(new C_MDS_BootStart(this, MDS_BOOT_REPLAY_DONE));
1090 } else {
1091 dout(2) << "boot_start " << step << ": positioning at end of old mds log" << dendl;
1092 mdlog->append();
1093 starting_done();
1094 }
1095 break;
1096 case MDS_BOOT_REPLAY_DONE:
1097 assert(is_any_replay());
1098
1099 // Sessiontable and inotable should be in sync after replay, validate
1100 // that they are consistent.
1101 validate_sessions();
1102
1103 replay_done();
1104 break;
1105 }
1106}
1107
1108void MDSRank::validate_sessions()
1109{
1110 assert(mds_lock.is_locked_by_me());
1111 std::vector<Session*> victims;
1112
1113 // Identify any sessions which have state inconsistent with other,
1114 // after they have been loaded from rados during startup.
1115 // Mitigate bugs like: http://tracker.ceph.com/issues/16842
1116 const auto &sessions = sessionmap.get_sessions();
1117 for (const auto &i : sessions) {
1118 Session *session = i.second;
1119 interval_set<inodeno_t> badones;
1120 if (inotable->intersects_free(session->info.prealloc_inos, &badones)) {
1121 clog->error() << "Client session loaded with invalid preallocated "
1122 "inodes, evicting session " << *session;
1123
1124 // Make the session consistent with inotable so that it can
1125 // be cleanly torn down
1126 session->info.prealloc_inos.subtract(badones);
1127
1128 victims.push_back(session);
1129 }
1130 }
1131
1132 for (const auto &session: victims) {
1133 server->kill_session(session, nullptr);
1134 }
1135}
1136
1137void MDSRank::starting_done()
1138{
1139 dout(3) << "starting_done" << dendl;
1140 assert(is_starting());
1141 request_state(MDSMap::STATE_ACTIVE);
1142
1143 mdcache->open_root();
1144
1145 // start new segment
1146 mdlog->start_new_segment();
1147}
1148
1149
1150void MDSRank::calc_recovery_set()
1151{
1152 // initialize gather sets
1153 set<mds_rank_t> rs;
1154 mdsmap->get_recovery_mds_set(rs);
1155 rs.erase(whoami);
1156 mdcache->set_recovery_set(rs);
1157
1158 dout(1) << " recovery set is " << rs << dendl;
1159}
1160
1161
1162void MDSRank::replay_start()
1163{
1164 dout(1) << "replay_start" << dendl;
1165
1166 if (is_standby_replay())
1167 standby_replaying = true;
1168
1169 calc_recovery_set();
1170
1171 // Check if we need to wait for a newer OSD map before starting
1172 Context *fin = new C_IO_Wrapper(this, new C_MDS_BootStart(this, MDS_BOOT_INITIAL));
1173 bool const ready = objecter->wait_for_map(
1174 mdsmap->get_last_failure_osd_epoch(),
1175 fin);
1176
1177 if (ready) {
1178 delete fin;
1179 boot_start();
1180 } else {
1181 dout(1) << " waiting for osdmap " << mdsmap->get_last_failure_osd_epoch()
1182 << " (which blacklists prior instance)" << dendl;
1183 }
1184}
1185
1186
1187class MDSRank::C_MDS_StandbyReplayRestartFinish : public MDSIOContext {
1188 uint64_t old_read_pos;
1189public:
1190 C_MDS_StandbyReplayRestartFinish(MDSRank *mds_, uint64_t old_read_pos_) :
1191 MDSIOContext(mds_), old_read_pos(old_read_pos_) {}
1192 void finish(int r) override {
1193 mds->_standby_replay_restart_finish(r, old_read_pos);
1194 }
1195};
1196
1197void MDSRank::_standby_replay_restart_finish(int r, uint64_t old_read_pos)
1198{
1199 if (old_read_pos < mdlog->get_journaler()->get_trimmed_pos()) {
1200 dout(0) << "standby MDS fell behind active MDS journal's expire_pos, restarting" << dendl;
1201 respawn(); /* we're too far back, and this is easier than
1202 trying to reset everything in the cache, etc */
1203 } else {
1204 mdlog->standby_trim_segments();
1205 boot_start(MDS_BOOT_PREPARE_LOG, r);
1206 }
1207}
1208
1209inline void MDSRank::standby_replay_restart()
1210{
1211 if (standby_replaying) {
1212 /* Go around for another pass of replaying in standby */
1213 dout(4) << "standby_replay_restart (as standby)" << dendl;
1214 mdlog->get_journaler()->reread_head_and_probe(
1215 new C_MDS_StandbyReplayRestartFinish(
1216 this,
1217 mdlog->get_journaler()->get_read_pos()));
1218 } else {
1219 /* We are transitioning out of standby: wait for OSD map update
1220 before making final pass */
1221 dout(1) << "standby_replay_restart (final takeover pass)" << dendl;
1222 Context *fin = new C_IO_Wrapper(this, new C_MDS_BootStart(this, MDS_BOOT_PREPARE_LOG));
1223 bool const ready =
1224 objecter->wait_for_map(mdsmap->get_last_failure_osd_epoch(), fin);
1225 if (ready) {
1226 delete fin;
1227 mdlog->get_journaler()->reread_head_and_probe(
1228 new C_MDS_StandbyReplayRestartFinish(
1229 this,
1230 mdlog->get_journaler()->get_read_pos()));
1231 } else {
1232 dout(1) << " waiting for osdmap " << mdsmap->get_last_failure_osd_epoch()
1233 << " (which blacklists prior instance)" << dendl;
1234 }
1235 }
1236}
1237
1238class MDSRank::C_MDS_StandbyReplayRestart : public MDSInternalContext {
1239public:
1240 explicit C_MDS_StandbyReplayRestart(MDSRank *m) : MDSInternalContext(m) {}
1241 void finish(int r) override {
1242 assert(!r);
1243 mds->standby_replay_restart();
1244 }
1245};
1246
1247void MDSRank::replay_done()
1248{
1249 dout(1) << "replay_done" << (standby_replaying ? " (as standby)" : "") << dendl;
1250
1251 if (is_standby_replay()) {
1252 // The replay was done in standby state, and we are still in that state
1253 assert(standby_replaying);
1254 dout(10) << "setting replay timer" << dendl;
1255 timer.add_event_after(g_conf->mds_replay_interval,
1256 new C_MDS_StandbyReplayRestart(this));
1257 return;
1258 } else if (standby_replaying) {
1259 // The replay was done in standby state, we have now _left_ that state
1260 dout(10) << " last replay pass was as a standby; making final pass" << dendl;
1261 standby_replaying = false;
1262 standby_replay_restart();
1263 return;
1264 } else {
1265 // Replay is complete, journal read should be up to date
1266 assert(mdlog->get_journaler()->get_read_pos() == mdlog->get_journaler()->get_write_pos());
1267 assert(!is_standby_replay());
1268
1269 // Reformat and come back here
1270 if (mdlog->get_journaler()->get_stream_format() < g_conf->mds_journal_format) {
1271 dout(4) << "reformatting journal on standbyreplay->replay transition" << dendl;
1272 mdlog->reopen(new C_MDS_BootStart(this, MDS_BOOT_REPLAY_DONE));
1273 return;
1274 }
1275 }
1276
1277 dout(1) << "making mds journal writeable" << dendl;
1278 mdlog->get_journaler()->set_writeable();
1279 mdlog->get_journaler()->trim_tail();
1280
1281 if (g_conf->mds_wipe_sessions) {
1282 dout(1) << "wiping out client sessions" << dendl;
1283 sessionmap.wipe();
1284 sessionmap.save(new C_MDSInternalNoop);
1285 }
1286 if (g_conf->mds_wipe_ino_prealloc) {
1287 dout(1) << "wiping out ino prealloc from sessions" << dendl;
1288 sessionmap.wipe_ino_prealloc();
1289 sessionmap.save(new C_MDSInternalNoop);
1290 }
1291 if (g_conf->mds_skip_ino) {
1292 inodeno_t i = g_conf->mds_skip_ino;
1293 dout(1) << "skipping " << i << " inodes" << dendl;
1294 inotable->skip_inos(i);
1295 inotable->save(new C_MDSInternalNoop);
1296 }
1297
1298 if (mdsmap->get_num_in_mds() == 1 &&
1299 mdsmap->get_num_failed_mds() == 0) { // just me!
1300 dout(2) << "i am alone, moving to state reconnect" << dendl;
1301 request_state(MDSMap::STATE_RECONNECT);
1302 } else {
1303 dout(2) << "i am not alone, moving to state resolve" << dendl;
1304 request_state(MDSMap::STATE_RESOLVE);
1305 }
1306}
1307
1308void MDSRank::reopen_log()
1309{
1310 dout(1) << "reopen_log" << dendl;
1311 mdcache->rollback_uncommitted_fragments();
1312}
1313
1314
1315void MDSRank::resolve_start()
1316{
1317 dout(1) << "resolve_start" << dendl;
1318
1319 reopen_log();
1320
1321 mdcache->resolve_start(new C_MDS_VoidFn(this, &MDSRank::resolve_done));
1322 finish_contexts(g_ceph_context, waiting_for_resolve);
1323}
1324void MDSRank::resolve_done()
1325{
1326 dout(1) << "resolve_done" << dendl;
1327 request_state(MDSMap::STATE_RECONNECT);
1328}
1329
1330void MDSRank::reconnect_start()
1331{
1332 dout(1) << "reconnect_start" << dendl;
1333
1334 if (last_state == MDSMap::STATE_REPLAY) {
1335 reopen_log();
1336 }
1337
31f18b77
FG
1338 // Drop any blacklisted clients from the SessionMap before going
1339 // into reconnect, so that we don't wait for them.
1340 objecter->enable_blacklist_events();
1341 std::set<entity_addr_t> blacklist;
1342 epoch_t epoch = 0;
1343 objecter->with_osdmap([this, &blacklist, &epoch](const OSDMap& o) {
1344 o.get_blacklist(&blacklist);
1345 epoch = o.get_epoch();
1346 });
1347 auto killed = server->apply_blacklist(blacklist);
1348 dout(4) << "reconnect_start: killed " << killed << " blacklisted sessions ("
1349 << blacklist.size() << " blacklist entries, "
1350 << sessionmap.get_sessions().size() << ")" << dendl;
1351 if (killed) {
1352 set_osd_epoch_barrier(epoch);
1353 }
1354
7c673cae
FG
1355 server->reconnect_clients(new C_MDS_VoidFn(this, &MDSRank::reconnect_done));
1356 finish_contexts(g_ceph_context, waiting_for_reconnect);
1357}
1358void MDSRank::reconnect_done()
1359{
1360 dout(1) << "reconnect_done" << dendl;
1361 request_state(MDSMap::STATE_REJOIN); // move to rejoin state
1362}
1363
1364void MDSRank::rejoin_joint_start()
1365{
1366 dout(1) << "rejoin_joint_start" << dendl;
1367 mdcache->rejoin_send_rejoins();
1368}
1369void MDSRank::rejoin_start()
1370{
1371 dout(1) << "rejoin_start" << dendl;
1372 mdcache->rejoin_start(new C_MDS_VoidFn(this, &MDSRank::rejoin_done));
1373}
1374void MDSRank::rejoin_done()
1375{
1376 dout(1) << "rejoin_done" << dendl;
1377 mdcache->show_subtrees();
1378 mdcache->show_cache();
1379
1380 // funny case: is our cache empty? no subtrees?
1381 if (!mdcache->is_subtrees()) {
1382 if (whoami == 0) {
1383 // The root should always have a subtree!
1384 clog->error() << "No subtrees found for root MDS rank!";
1385 damaged();
1386 assert(mdcache->is_subtrees());
1387 } else {
1388 dout(1) << " empty cache, no subtrees, leaving cluster" << dendl;
1389 request_state(MDSMap::STATE_STOPPED);
1390 }
1391 return;
1392 }
1393
1394 if (replay_queue.empty())
1395 request_state(MDSMap::STATE_ACTIVE);
1396 else
1397 request_state(MDSMap::STATE_CLIENTREPLAY);
1398}
1399
1400void MDSRank::clientreplay_start()
1401{
1402 dout(1) << "clientreplay_start" << dendl;
1403 finish_contexts(g_ceph_context, waiting_for_replay); // kick waiters
1404 mdcache->start_files_to_recover();
1405 queue_one_replay();
1406}
1407
1408bool MDSRank::queue_one_replay()
1409{
1410 if (replay_queue.empty()) {
1411 mdlog->wait_for_safe(new C_MDS_VoidFn(this, &MDSRank::clientreplay_done));
1412 return false;
1413 }
1414 queue_waiter(replay_queue.front());
1415 replay_queue.pop_front();
1416 return true;
1417}
1418
1419void MDSRank::clientreplay_done()
1420{
1421 dout(1) << "clientreplay_done" << dendl;
1422 request_state(MDSMap::STATE_ACTIVE);
1423}
1424
1425void MDSRank::active_start()
1426{
1427 dout(1) << "active_start" << dendl;
1428
1429 if (last_state == MDSMap::STATE_CREATING) {
1430 mdcache->open_root();
1431 }
1432
1433 mdcache->clean_open_file_lists();
1434 mdcache->export_remaining_imported_caps();
1435 finish_contexts(g_ceph_context, waiting_for_replay); // kick waiters
1436 mdcache->start_files_to_recover();
1437
1438 mdcache->reissue_all_caps();
1439 mdcache->activate_stray_manager();
1440
1441 finish_contexts(g_ceph_context, waiting_for_active); // kick waiters
1442}
1443
1444void MDSRank::recovery_done(int oldstate)
1445{
1446 dout(1) << "recovery_done -- successful recovery!" << dendl;
1447 assert(is_clientreplay() || is_active());
1448
1449 // kick snaptable (resent AGREEs)
1450 if (mdsmap->get_tableserver() == whoami) {
1451 set<mds_rank_t> active;
1452 mdsmap->get_clientreplay_or_active_or_stopping_mds_set(active);
1453 snapserver->finish_recovery(active);
1454 }
1455
1456 if (oldstate == MDSMap::STATE_CREATING)
1457 return;
1458
1459 mdcache->start_recovered_truncates();
1460 mdcache->do_file_recover();
1461
1462 // tell connected clients
1463 //bcast_mds_map(); // not anymore, they get this from the monitor
1464
1465 mdcache->populate_mydir();
1466}
1467
1468void MDSRank::creating_done()
1469{
1470 dout(1)<< "creating_done" << dendl;
1471 request_state(MDSMap::STATE_ACTIVE);
1472}
1473
1474void MDSRank::boot_create()
1475{
1476 dout(3) << "boot_create" << dendl;
1477
1478 MDSGatherBuilder fin(g_ceph_context, new C_MDS_VoidFn(this, &MDSRank::creating_done));
1479
1480 mdcache->init_layouts();
1481
1482 snapserver->set_rank(whoami);
1483 inotable->set_rank(whoami);
1484 sessionmap.set_rank(whoami);
1485
1486 // start with a fresh journal
1487 dout(10) << "boot_create creating fresh journal" << dendl;
1488 mdlog->create(fin.new_sub());
1489
1490 // open new journal segment, but do not journal subtree map (yet)
1491 mdlog->prepare_new_segment();
1492
1493 if (whoami == mdsmap->get_root()) {
1494 dout(3) << "boot_create creating fresh hierarchy" << dendl;
1495 mdcache->create_empty_hierarchy(fin.get());
1496 }
1497
1498 dout(3) << "boot_create creating mydir hierarchy" << dendl;
1499 mdcache->create_mydir_hierarchy(fin.get());
1500
1501 // fixme: fake out inotable (reset, pretend loaded)
1502 dout(10) << "boot_create creating fresh inotable table" << dendl;
1503 inotable->reset();
1504 inotable->save(fin.new_sub());
1505
1506 // write empty sessionmap
1507 sessionmap.save(fin.new_sub());
1508
1509 // Create empty purge queue
1510 purge_queue.create(new C_IO_Wrapper(this, fin.new_sub()));
1511
1512 // initialize tables
1513 if (mdsmap->get_tableserver() == whoami) {
1514 dout(10) << "boot_create creating fresh snaptable" << dendl;
1515 snapserver->reset();
1516 snapserver->save(fin.new_sub());
1517 }
1518
1519 assert(g_conf->mds_kill_create_at != 1);
1520
1521 // ok now journal it
1522 mdlog->journal_segment_subtree_map(fin.new_sub());
1523 mdlog->flush();
1524
31f18b77
FG
1525 // Usually we do this during reconnect, but creation skips that.
1526 objecter->enable_blacklist_events();
1527
7c673cae
FG
1528 fin.activate();
1529}
1530
1531void MDSRank::stopping_start()
1532{
1533 dout(2) << "stopping_start" << dendl;
1534
1535 if (mdsmap->get_num_in_mds() == 1 && !sessionmap.empty()) {
1536 // we're the only mds up!
1537 dout(0) << "we are the last MDS, and have mounted clients: we cannot flush our journal. suicide!" << dendl;
1538 suicide();
1539 }
1540
1541 mdcache->shutdown_start();
1542}
1543
1544void MDSRank::stopping_done()
1545{
1546 dout(2) << "stopping_done" << dendl;
1547
1548 // tell monitor we shut down cleanly.
1549 request_state(MDSMap::STATE_STOPPED);
1550}
1551
1552void MDSRankDispatcher::handle_mds_map(
1553 MMDSMap *m,
1554 MDSMap *oldmap)
1555{
1556 // I am only to be passed MDSMaps in which I hold a rank
1557 assert(whoami != MDS_RANK_NONE);
1558
1559 MDSMap::DaemonState oldstate = state;
1560 mds_gid_t mds_gid = mds_gid_t(monc->get_global_id());
1561 state = mdsmap->get_state_gid(mds_gid);
1562 if (state != oldstate) {
1563 last_state = oldstate;
1564 incarnation = mdsmap->get_inc_gid(mds_gid);
1565 }
1566
1567 version_t epoch = m->get_epoch();
1568
1569 // note source's map version
1570 if (m->get_source().is_mds() &&
1571 peer_mdsmap_epoch[mds_rank_t(m->get_source().num())] < epoch) {
1572 dout(15) << " peer " << m->get_source()
1573 << " has mdsmap epoch >= " << epoch
1574 << dendl;
1575 peer_mdsmap_epoch[mds_rank_t(m->get_source().num())] = epoch;
1576 }
1577
1578 // Validate state transitions while I hold a rank
1579 if (!MDSMap::state_transition_valid(oldstate, state)) {
1580 derr << "Invalid state transition " << ceph_mds_state_name(oldstate)
1581 << "->" << ceph_mds_state_name(state) << dendl;
1582 respawn();
1583 }
1584
1585 if (oldstate != state) {
1586 // update messenger.
1587 if (state == MDSMap::STATE_STANDBY_REPLAY) {
1588 dout(1) << "handle_mds_map i am now mds." << mds_gid << "." << incarnation
1589 << " replaying mds." << whoami << "." << incarnation << dendl;
1590 messenger->set_myname(entity_name_t::MDS(mds_gid));
1591 } else {
1592 dout(1) << "handle_mds_map i am now mds." << whoami << "." << incarnation << dendl;
1593 messenger->set_myname(entity_name_t::MDS(whoami));
1594 }
1595 }
1596
1597 // tell objecter my incarnation
1598 if (objecter->get_client_incarnation() != incarnation)
1599 objecter->set_client_incarnation(incarnation);
1600
1601 // for debug
1602 if (g_conf->mds_dump_cache_on_map)
1603 mdcache->dump_cache();
1604
1605 // did it change?
1606 if (oldstate != state) {
1607 dout(1) << "handle_mds_map state change "
1608 << ceph_mds_state_name(oldstate) << " --> "
1609 << ceph_mds_state_name(state) << dendl;
1610 beacon.set_want_state(mdsmap, state);
1611
1612 if (oldstate == MDSMap::STATE_STANDBY_REPLAY) {
1613 dout(10) << "Monitor activated us! Deactivating replay loop" << dendl;
1614 assert (state == MDSMap::STATE_REPLAY);
1615 } else {
1616 // did i just recover?
1617 if ((is_active() || is_clientreplay()) &&
1618 (oldstate == MDSMap::STATE_CREATING ||
1619 oldstate == MDSMap::STATE_REJOIN ||
1620 oldstate == MDSMap::STATE_RECONNECT))
1621 recovery_done(oldstate);
1622
1623 if (is_active()) {
1624 active_start();
1625 } else if (is_any_replay()) {
1626 replay_start();
1627 } else if (is_resolve()) {
1628 resolve_start();
1629 } else if (is_reconnect()) {
1630 reconnect_start();
1631 } else if (is_rejoin()) {
1632 rejoin_start();
1633 } else if (is_clientreplay()) {
1634 clientreplay_start();
1635 } else if (is_creating()) {
1636 boot_create();
1637 } else if (is_starting()) {
1638 boot_start();
1639 } else if (is_stopping()) {
1640 assert(oldstate == MDSMap::STATE_ACTIVE);
1641 stopping_start();
1642 }
1643 }
1644 }
1645
1646 // RESOLVE
1647 // is someone else newly resolving?
1648 if (is_resolve() || is_reconnect() || is_rejoin() ||
1649 is_clientreplay() || is_active() || is_stopping()) {
1650 if (!oldmap->is_resolving() && mdsmap->is_resolving()) {
1651 set<mds_rank_t> resolve;
1652 mdsmap->get_mds_set(resolve, MDSMap::STATE_RESOLVE);
1653 dout(10) << " resolve set is " << resolve << dendl;
1654 calc_recovery_set();
1655 mdcache->send_resolves();
1656 }
1657 }
1658
1659 // REJOIN
1660 // is everybody finally rejoining?
1661 if (is_rejoin() || is_clientreplay() || is_active() || is_stopping()) {
1662 // did we start?
1663 if (!oldmap->is_rejoining() && mdsmap->is_rejoining())
1664 rejoin_joint_start();
1665
1666 // did we finish?
1667 if (g_conf->mds_dump_cache_after_rejoin &&
1668 oldmap->is_rejoining() && !mdsmap->is_rejoining())
1669 mdcache->dump_cache(); // for DEBUG only
1670
1671 if (oldstate >= MDSMap::STATE_REJOIN) {
1672 // ACTIVE|CLIENTREPLAY|REJOIN => we can discover from them.
1673 set<mds_rank_t> olddis, dis;
1674 oldmap->get_mds_set(olddis, MDSMap::STATE_ACTIVE);
1675 oldmap->get_mds_set(olddis, MDSMap::STATE_CLIENTREPLAY);
1676 oldmap->get_mds_set(olddis, MDSMap::STATE_REJOIN);
1677 mdsmap->get_mds_set(dis, MDSMap::STATE_ACTIVE);
1678 mdsmap->get_mds_set(dis, MDSMap::STATE_CLIENTREPLAY);
1679 mdsmap->get_mds_set(dis, MDSMap::STATE_REJOIN);
1680 for (set<mds_rank_t>::iterator p = dis.begin(); p != dis.end(); ++p)
1681 if (*p != whoami && // not me
1682 olddis.count(*p) == 0) { // newly so?
1683 mdcache->kick_discovers(*p);
1684 mdcache->kick_open_ino_peers(*p);
1685 }
1686 }
1687 }
1688
1689 cluster_degraded = mdsmap->is_degraded();
1690 if (oldmap->is_degraded() && !cluster_degraded && state >= MDSMap::STATE_ACTIVE) {
1691 dout(1) << "cluster recovered." << dendl;
1692 auto it = waiting_for_active_peer.find(MDS_RANK_NONE);
1693 if (it != waiting_for_active_peer.end()) {
1694 queue_waiters(it->second);
1695 waiting_for_active_peer.erase(it);
1696 }
1697 }
1698
1699 // did someone go active?
1700 if (oldstate >= MDSMap::STATE_CLIENTREPLAY &&
1701 (is_clientreplay() || is_active() || is_stopping())) {
1702 set<mds_rank_t> oldactive, active;
1703 oldmap->get_mds_set(oldactive, MDSMap::STATE_ACTIVE);
1704 oldmap->get_mds_set(oldactive, MDSMap::STATE_CLIENTREPLAY);
1705 mdsmap->get_mds_set(active, MDSMap::STATE_ACTIVE);
1706 mdsmap->get_mds_set(active, MDSMap::STATE_CLIENTREPLAY);
1707 for (set<mds_rank_t>::iterator p = active.begin(); p != active.end(); ++p)
1708 if (*p != whoami && // not me
1709 oldactive.count(*p) == 0) // newly so?
1710 handle_mds_recovery(*p);
1711 }
1712
1713 // did someone fail?
1714 // new down?
1715 {
1716 set<mds_rank_t> olddown, down;
1717 oldmap->get_down_mds_set(&olddown);
1718 mdsmap->get_down_mds_set(&down);
1719 for (set<mds_rank_t>::iterator p = down.begin(); p != down.end(); ++p) {
1720 if (oldmap->have_inst(*p) && olddown.count(*p) == 0) {
1721 messenger->mark_down(oldmap->get_inst(*p).addr);
1722 handle_mds_failure(*p);
1723 }
1724 }
1725 }
1726
1727 // did someone fail?
1728 // did their addr/inst change?
1729 {
1730 set<mds_rank_t> up;
1731 mdsmap->get_up_mds_set(up);
1732 for (set<mds_rank_t>::iterator p = up.begin(); p != up.end(); ++p) {
1733 if (oldmap->have_inst(*p) &&
1734 oldmap->get_inst(*p) != mdsmap->get_inst(*p)) {
1735 messenger->mark_down(oldmap->get_inst(*p).addr);
1736 handle_mds_failure(*p);
1737 }
1738 }
1739 }
1740
1741 if (is_clientreplay() || is_active() || is_stopping()) {
1742 // did anyone stop?
1743 set<mds_rank_t> oldstopped, stopped;
1744 oldmap->get_stopped_mds_set(oldstopped);
1745 mdsmap->get_stopped_mds_set(stopped);
1746 for (set<mds_rank_t>::iterator p = stopped.begin(); p != stopped.end(); ++p)
1747 if (oldstopped.count(*p) == 0) // newly so?
1748 mdcache->migrator->handle_mds_failure_or_stop(*p);
1749 }
1750
1751 {
1752 map<epoch_t,list<MDSInternalContextBase*> >::iterator p = waiting_for_mdsmap.begin();
1753 while (p != waiting_for_mdsmap.end() && p->first <= mdsmap->get_epoch()) {
1754 list<MDSInternalContextBase*> ls;
1755 ls.swap(p->second);
1756 waiting_for_mdsmap.erase(p++);
1757 finish_contexts(g_ceph_context, ls);
1758 }
1759 }
1760
1761 if (is_active()) {
1762 // Before going active, set OSD epoch barrier to latest (so that
1763 // we don't risk handing out caps to clients with old OSD maps that
1764 // might not include barriers from the previous incarnation of this MDS)
1765 set_osd_epoch_barrier(objecter->with_osdmap(
1766 std::mem_fn(&OSDMap::get_epoch)));
1767 }
1768
1769 if (is_active()) {
1770 bool found = false;
1771 MDSMap::mds_info_t info = mdsmap->get_info(whoami);
1772
1773 for (map<mds_gid_t,MDSMap::mds_info_t>::const_iterator p = mdsmap->get_mds_info().begin();
1774 p != mdsmap->get_mds_info().end();
1775 ++p) {
1776 if (p->second.state == MDSMap::STATE_STANDBY_REPLAY &&
1777 (p->second.standby_for_rank == whoami ||(info.name.length() && p->second.standby_for_name == info.name))) {
1778 found = true;
1779 break;
1780 }
1781 if (found)
1782 mdlog->set_write_iohint(0);
1783 else
1784 mdlog->set_write_iohint(CEPH_OSD_OP_FLAG_FADVISE_DONTNEED);
1785 }
1786 }
1787
1788 if (oldmap->get_max_mds() != mdsmap->get_max_mds()) {
1789 purge_queue.update_op_limit(*mdsmap);
1790 }
1791}
1792
1793void MDSRank::handle_mds_recovery(mds_rank_t who)
1794{
1795 dout(5) << "handle_mds_recovery mds." << who << dendl;
1796
1797 mdcache->handle_mds_recovery(who);
1798
1799 if (mdsmap->get_tableserver() == whoami) {
1800 snapserver->handle_mds_recovery(who);
1801 }
1802
1803 queue_waiters(waiting_for_active_peer[who]);
1804 waiting_for_active_peer.erase(who);
1805}
1806
1807void MDSRank::handle_mds_failure(mds_rank_t who)
1808{
1809 if (who == whoami) {
1810 dout(5) << "handle_mds_failure for myself; not doing anything" << dendl;
1811 return;
1812 }
1813 dout(5) << "handle_mds_failure mds." << who << dendl;
1814
1815 mdcache->handle_mds_failure(who);
1816
1817 snapclient->handle_mds_failure(who);
1818}
1819
1820bool MDSRankDispatcher::handle_asok_command(
1821 std::string command, cmdmap_t& cmdmap, Formatter *f,
1822 std::ostream& ss)
1823{
1824 if (command == "dump_ops_in_flight" ||
1825 command == "ops") {
1826 if (!op_tracker.dump_ops_in_flight(f)) {
1827 ss << "op_tracker tracking is not enabled now, so no ops are tracked currently, even those get stuck. \
1828 please enable \"osd_enable_op_tracker\", and the tracker will start to track new ops received afterwards.";
1829 }
1830 } else if (command == "dump_blocked_ops") {
1831 if (!op_tracker.dump_ops_in_flight(f, true)) {
1832 ss << "op_tracker tracking is not enabled now, so no ops are tracked currently, even those get stuck. \
1833 Please enable \"osd_enable_op_tracker\", and the tracker will start to track new ops received afterwards.";
1834 }
1835 } else if (command == "dump_historic_ops") {
1836 if (!op_tracker.dump_historic_ops(f)) {
1837 ss << "op_tracker tracking is not enabled now, so no ops are tracked currently, even those get stuck. \
1838 please enable \"osd_enable_op_tracker\", and the tracker will start to track new ops received afterwards.";
1839 }
1840 } else if (command == "dump_historic_ops_by_duration") {
1841 if (!op_tracker.dump_historic_ops(f, true)) {
1842 ss << "op_tracker tracking is not enabled now, so no ops are tracked currently, even those get stuck. \
1843 please enable \"osd_enable_op_tracker\", and the tracker will start to track new ops received afterwards.";
1844 }
1845 } else if (command == "osdmap barrier") {
1846 int64_t target_epoch = 0;
1847 bool got_val = cmd_getval(g_ceph_context, cmdmap, "target_epoch", target_epoch);
1848
1849 if (!got_val) {
1850 ss << "no target epoch given";
1851 return true;
1852 }
1853
1854 mds_lock.Lock();
1855 set_osd_epoch_barrier(target_epoch);
1856 mds_lock.Unlock();
1857
1858 C_SaferCond cond;
1859 bool already_got = objecter->wait_for_map(target_epoch, &cond);
1860 if (!already_got) {
1861 dout(4) << __func__ << ": waiting for OSD epoch " << target_epoch << dendl;
1862 cond.wait();
1863 }
1864 } else if (command == "session ls") {
1865 Mutex::Locker l(mds_lock);
1866
1867 heartbeat_reset();
1868
1869 dump_sessions(SessionFilter(), f);
1870 } else if (command == "session evict") {
1871 std::string client_id;
1872 const bool got_arg = cmd_getval(g_ceph_context, cmdmap, "client_id", client_id);
1873 if(!got_arg) {
1874 ss << "Invalid client_id specified";
1875 return true;
1876 }
1877
1878 mds_lock.Lock();
31f18b77
FG
1879 std::stringstream dss;
1880 bool evicted = evict_client(strtol(client_id.c_str(), 0, 10), true,
1881 g_conf->mds_session_blacklist_on_evict, dss);
1882 if (!evicted) {
7c673cae
FG
1883 dout(15) << dss.str() << dendl;
1884 ss << dss.str();
1885 }
1886 mds_lock.Unlock();
1887 } else if (command == "scrub_path") {
1888 string path;
1889 vector<string> scrubop_vec;
1890 cmd_getval(g_ceph_context, cmdmap, "scrubops", scrubop_vec);
1891 cmd_getval(g_ceph_context, cmdmap, "path", path);
1892 command_scrub_path(f, path, scrubop_vec);
1893 } else if (command == "tag path") {
1894 string path;
1895 cmd_getval(g_ceph_context, cmdmap, "path", path);
1896 string tag;
1897 cmd_getval(g_ceph_context, cmdmap, "tag", tag);
1898 command_tag_path(f, path, tag);
1899 } else if (command == "flush_path") {
1900 string path;
1901 cmd_getval(g_ceph_context, cmdmap, "path", path);
1902 command_flush_path(f, path);
1903 } else if (command == "flush journal") {
1904 command_flush_journal(f);
1905 } else if (command == "get subtrees") {
1906 command_get_subtrees(f);
1907 } else if (command == "export dir") {
1908 string path;
1909 if(!cmd_getval(g_ceph_context, cmdmap, "path", path)) {
1910 ss << "malformed path";
1911 return true;
1912 }
1913 int64_t rank;
1914 if(!cmd_getval(g_ceph_context, cmdmap, "rank", rank)) {
1915 ss << "malformed rank";
1916 return true;
1917 }
1918 command_export_dir(f, path, (mds_rank_t)rank);
1919 } else if (command == "dump cache") {
1920 Mutex::Locker l(mds_lock);
1921 string path;
31f18b77 1922 int r;
7c673cae 1923 if(!cmd_getval(g_ceph_context, cmdmap, "path", path)) {
31f18b77 1924 r = mdcache->dump_cache(f);
7c673cae 1925 } else {
31f18b77
FG
1926 r = mdcache->dump_cache(path);
1927 }
1928
1929 if (r != 0) {
1930 ss << "Failed to dump cache: " << cpp_strerror(r);
7c673cae
FG
1931 }
1932 } else if (command == "dump tree") {
1933 string root;
1934 int64_t depth;
1935 cmd_getval(g_ceph_context, cmdmap, "root", root);
1936 if (!cmd_getval(g_ceph_context, cmdmap, "depth", depth))
1937 depth = -1;
1938 {
1939 Mutex::Locker l(mds_lock);
31f18b77
FG
1940 int r = mdcache->dump_cache(root, depth, f);
1941 if (r != 0) {
1942 ss << "Failed to dump tree: " << cpp_strerror(r);
1943 }
7c673cae
FG
1944 }
1945 } else if (command == "force_readonly") {
1946 Mutex::Locker l(mds_lock);
1947 mdcache->force_readonly();
1948 } else if (command == "dirfrag split") {
1949 command_dirfrag_split(cmdmap, ss);
1950 } else if (command == "dirfrag merge") {
1951 command_dirfrag_merge(cmdmap, ss);
1952 } else if (command == "dirfrag ls") {
1953 command_dirfrag_ls(cmdmap, ss, f);
1954 } else {
1955 return false;
1956 }
1957
1958 return true;
1959}
1960
1961class C_MDS_Send_Command_Reply : public MDSInternalContext
1962{
1963protected:
1964 MCommand *m;
1965public:
1966 C_MDS_Send_Command_Reply(MDSRank *_mds, MCommand *_m) :
1967 MDSInternalContext(_mds), m(_m) { m->get(); }
1968 void send (int r, const std::string& out_str) {
1969 bufferlist bl;
1970 MDSDaemon::send_command_reply(m, mds, r, bl, out_str);
1971 m->put();
1972 }
1973 void finish (int r) override {
1974 send(r, "");
1975 }
1976};
1977
1978/**
1979 * This function drops the mds_lock, so don't do anything with
1980 * MDSRank after calling it (we could have gone into shutdown): just
1981 * send your result back to the calling client and finish.
1982 */
31f18b77 1983void MDSRankDispatcher::evict_clients(const SessionFilter &filter, MCommand *m)
7c673cae
FG
1984{
1985 C_MDS_Send_Command_Reply *reply = new C_MDS_Send_Command_Reply(this, m);
1986
1987 if (is_any_replay()) {
1988 reply->send(-EAGAIN, "MDS is replaying log");
1989 delete reply;
1990 return;
1991 }
1992
1993 std::list<Session*> victims;
1994 const auto sessions = sessionmap.get_sessions();
1995 for (const auto p : sessions) {
1996 if (!p.first.is_client()) {
1997 continue;
1998 }
1999
2000 Session *s = p.second;
2001
2002 if (filter.match(*s, std::bind(&Server::waiting_for_reconnect, server, std::placeholders::_1))) {
2003 victims.push_back(s);
2004 }
2005 }
2006
2007 dout(20) << __func__ << " matched " << victims.size() << " sessions" << dendl;
2008
2009 if (victims.empty()) {
2010 reply->send(0, "");
2011 delete reply;
2012 return;
2013 }
2014
2015 C_GatherBuilder gather(g_ceph_context, reply);
2016 for (const auto s : victims) {
31f18b77
FG
2017 std::stringstream ss;
2018 evict_client(s->info.inst.name.num(), false,
2019 g_conf->mds_session_blacklist_on_evict, ss, gather.new_sub());
7c673cae
FG
2020 }
2021 gather.activate();
2022}
2023
2024void MDSRankDispatcher::dump_sessions(const SessionFilter &filter, Formatter *f) const
2025{
2026 // Dump sessions, decorated with recovery/replay status
2027 f->open_array_section("sessions");
2028 const ceph::unordered_map<entity_name_t, Session*> session_map = sessionmap.get_sessions();
2029 for (ceph::unordered_map<entity_name_t,Session*>::const_iterator p = session_map.begin();
2030 p != session_map.end();
2031 ++p) {
2032 if (!p->first.is_client()) {
2033 continue;
2034 }
2035
2036 Session *s = p->second;
2037
2038 if (!filter.match(*s, std::bind(&Server::waiting_for_reconnect, server, std::placeholders::_1))) {
2039 continue;
2040 }
2041
2042 f->open_object_section("session");
2043 f->dump_int("id", p->first.num());
2044
2045 f->dump_int("num_leases", s->leases.size());
2046 f->dump_int("num_caps", s->caps.size());
2047
2048 f->dump_string("state", s->get_state_name());
2049 f->dump_int("replay_requests", is_clientreplay() ? s->get_request_count() : 0);
2050 f->dump_unsigned("completed_requests", s->get_num_completed_requests());
2051 f->dump_bool("reconnecting", server->waiting_for_reconnect(p->first.num()));
2052 f->dump_stream("inst") << s->info.inst;
2053 f->open_object_section("client_metadata");
2054 for (map<string, string>::const_iterator i = s->info.client_metadata.begin();
2055 i != s->info.client_metadata.end(); ++i) {
2056 f->dump_string(i->first.c_str(), i->second);
2057 }
2058 f->close_section(); // client_metadata
2059 f->close_section(); //session
2060 }
2061 f->close_section(); //sessions
2062}
2063
2064void MDSRank::command_scrub_path(Formatter *f, const string& path, vector<string>& scrubop_vec)
2065{
2066 bool force = false;
2067 bool recursive = false;
2068 bool repair = false;
2069 for (vector<string>::iterator i = scrubop_vec.begin() ; i != scrubop_vec.end(); ++i) {
2070 if (*i == "force")
2071 force = true;
2072 else if (*i == "recursive")
2073 recursive = true;
2074 else if (*i == "repair")
2075 repair = true;
2076 }
2077 C_SaferCond scond;
2078 {
2079 Mutex::Locker l(mds_lock);
2080 mdcache->enqueue_scrub(path, "", force, recursive, repair, f, &scond);
2081 }
2082 scond.wait();
2083 // scrub_dentry() finishers will dump the data for us; we're done!
2084}
2085
2086void MDSRank::command_tag_path(Formatter *f,
2087 const string& path, const std::string &tag)
2088{
2089 C_SaferCond scond;
2090 {
2091 Mutex::Locker l(mds_lock);
2092 mdcache->enqueue_scrub(path, tag, true, true, false, f, &scond);
2093 }
2094 scond.wait();
2095}
2096
2097void MDSRank::command_flush_path(Formatter *f, const string& path)
2098{
2099 C_SaferCond scond;
2100 {
2101 Mutex::Locker l(mds_lock);
2102 mdcache->flush_dentry(path, &scond);
2103 }
2104 int r = scond.wait();
2105 f->open_object_section("results");
2106 f->dump_int("return_code", r);
2107 f->close_section(); // results
2108}
2109
2110/**
2111 * Wrapper around _command_flush_journal that
2112 * handles serialization of result
2113 */
2114void MDSRank::command_flush_journal(Formatter *f)
2115{
2116 assert(f != NULL);
2117
2118 std::stringstream ss;
2119 const int r = _command_flush_journal(&ss);
2120 f->open_object_section("result");
2121 f->dump_string("message", ss.str());
2122 f->dump_int("return_code", r);
2123 f->close_section();
2124}
2125
2126/**
2127 * Implementation of "flush journal" asok command.
2128 *
2129 * @param ss
2130 * Optionally populate with a human readable string describing the
2131 * reason for any unexpected return status.
2132 */
2133int MDSRank::_command_flush_journal(std::stringstream *ss)
2134{
2135 assert(ss != NULL);
2136
2137 Mutex::Locker l(mds_lock);
2138
2139 if (mdcache->is_readonly()) {
2140 dout(5) << __func__ << ": read-only FS" << dendl;
2141 return -EROFS;
2142 }
2143
2144 if (!is_active()) {
2145 dout(5) << __func__ << ": MDS not active, no-op" << dendl;
2146 return 0;
2147 }
2148
2149 // I need to seal off the current segment, and then mark all previous segments
2150 // for expiry
2151 mdlog->start_new_segment();
2152 int r = 0;
2153
2154 // Flush initially so that all the segments older than our new one
2155 // will be elegible for expiry
2156 {
2157 C_SaferCond mdlog_flushed;
2158 mdlog->flush();
2159 mdlog->wait_for_safe(new MDSInternalContextWrapper(this, &mdlog_flushed));
2160 mds_lock.Unlock();
2161 r = mdlog_flushed.wait();
2162 mds_lock.Lock();
2163 if (r != 0) {
2164 *ss << "Error " << r << " (" << cpp_strerror(r) << ") while flushing journal";
2165 return r;
2166 }
2167 }
2168
2169 // Because we may not be the last wait_for_safe context on MDLog, and
2170 // subsequent contexts might wake up in the middle of our later trim_all
2171 // and interfere with expiry (by e.g. marking dirs/dentries dirty
2172 // on previous log segments), we run a second wait_for_safe here.
2173 // See #10368
2174 {
2175 C_SaferCond mdlog_cleared;
2176 mdlog->wait_for_safe(new MDSInternalContextWrapper(this, &mdlog_cleared));
2177 mds_lock.Unlock();
2178 r = mdlog_cleared.wait();
2179 mds_lock.Lock();
2180 if (r != 0) {
2181 *ss << "Error " << r << " (" << cpp_strerror(r) << ") while flushing journal";
2182 return r;
2183 }
2184 }
2185
2186 // Put all the old log segments into expiring or expired state
2187 dout(5) << __func__ << ": beginning segment expiry" << dendl;
2188 r = mdlog->trim_all();
2189 if (r != 0) {
2190 *ss << "Error " << r << " (" << cpp_strerror(r) << ") while trimming log";
2191 return r;
2192 }
2193
2194 // Attach contexts to wait for all expiring segments to expire
2195 MDSGatherBuilder expiry_gather(g_ceph_context);
2196
2197 const std::set<LogSegment*> &expiring_segments = mdlog->get_expiring_segments();
2198 for (std::set<LogSegment*>::const_iterator i = expiring_segments.begin();
2199 i != expiring_segments.end(); ++i) {
2200 (*i)->wait_for_expiry(expiry_gather.new_sub());
2201 }
2202 dout(5) << __func__ << ": waiting for " << expiry_gather.num_subs_created()
2203 << " segments to expire" << dendl;
2204
2205 if (expiry_gather.has_subs()) {
2206 C_SaferCond cond;
2207 expiry_gather.set_finisher(new MDSInternalContextWrapper(this, &cond));
2208 expiry_gather.activate();
2209
2210 // Drop mds_lock to allow progress until expiry is complete
2211 mds_lock.Unlock();
2212 int r = cond.wait();
2213 mds_lock.Lock();
2214
2215 assert(r == 0); // MDLog is not allowed to raise errors via wait_for_expiry
2216 }
2217
2218 dout(5) << __func__ << ": expiry complete, expire_pos/trim_pos is now " << std::hex <<
2219 mdlog->get_journaler()->get_expire_pos() << "/" <<
2220 mdlog->get_journaler()->get_trimmed_pos() << dendl;
2221
2222 // Now everyone I'm interested in is expired
2223 mdlog->trim_expired_segments();
2224
2225 dout(5) << __func__ << ": trim complete, expire_pos/trim_pos is now " << std::hex <<
2226 mdlog->get_journaler()->get_expire_pos() << "/" <<
2227 mdlog->get_journaler()->get_trimmed_pos() << dendl;
2228
2229 // Flush the journal header so that readers will start from after the flushed region
2230 C_SaferCond wrote_head;
2231 mdlog->get_journaler()->write_head(&wrote_head);
2232 mds_lock.Unlock(); // Drop lock to allow messenger dispatch progress
2233 r = wrote_head.wait();
2234 mds_lock.Lock();
2235 if (r != 0) {
2236 *ss << "Error " << r << " (" << cpp_strerror(r) << ") while writing header";
2237 return r;
2238 }
2239
2240 dout(5) << __func__ << ": write_head complete, all done!" << dendl;
2241
2242 return 0;
2243}
2244
2245
2246void MDSRank::command_get_subtrees(Formatter *f)
2247{
2248 assert(f != NULL);
2249 Mutex::Locker l(mds_lock);
2250
2251 std::list<CDir*> subtrees;
2252 mdcache->list_subtrees(subtrees);
2253
2254 f->open_array_section("subtrees");
2255 for (std::list<CDir*>::iterator i = subtrees.begin(); i != subtrees.end(); ++i) {
2256 const CDir *dir = *i;
2257
2258 f->open_object_section("subtree");
2259 {
2260 f->dump_bool("is_auth", dir->is_auth());
2261 f->dump_int("auth_first", dir->get_dir_auth().first);
2262 f->dump_int("auth_second", dir->get_dir_auth().second);
2263 f->open_object_section("dir");
2264 dir->dump(f);
2265 f->close_section();
2266 }
2267 f->close_section();
2268 }
2269 f->close_section();
2270}
2271
2272
2273void MDSRank::command_export_dir(Formatter *f,
2274 const std::string &path,
2275 mds_rank_t target)
2276{
2277 int r = _command_export_dir(path, target);
2278 f->open_object_section("results");
2279 f->dump_int("return_code", r);
2280 f->close_section(); // results
2281}
2282
2283int MDSRank::_command_export_dir(
2284 const std::string &path,
2285 mds_rank_t target)
2286{
2287 Mutex::Locker l(mds_lock);
2288 filepath fp(path.c_str());
2289
2290 if (target == whoami || !mdsmap->is_up(target) || !mdsmap->is_in(target)) {
2291 derr << "bad MDS target " << target << dendl;
2292 return -ENOENT;
2293 }
2294
2295 CInode *in = mdcache->cache_traverse(fp);
2296 if (!in) {
2297 derr << "Bath path '" << path << "'" << dendl;
2298 return -ENOENT;
2299 }
2300 CDir *dir = in->get_dirfrag(frag_t());
2301 if (!dir || !(dir->is_auth())) {
2302 derr << "bad export_dir path dirfrag frag_t() or dir not auth" << dendl;
2303 return -EINVAL;
2304 }
2305
2306 mdcache->migrator->export_dir(dir, target);
2307 return 0;
2308}
2309
2310CDir *MDSRank::_command_dirfrag_get(
2311 const cmdmap_t &cmdmap,
2312 std::ostream &ss)
2313{
2314 std::string path;
2315 bool got = cmd_getval(g_ceph_context, cmdmap, "path", path);
2316 if (!got) {
2317 ss << "missing path argument";
2318 return NULL;
2319 }
2320
2321 std::string frag_str;
2322 if (!cmd_getval(g_ceph_context, cmdmap, "frag", frag_str)) {
2323 ss << "missing frag argument";
2324 return NULL;
2325 }
2326
2327 CInode *in = mdcache->cache_traverse(filepath(path.c_str()));
2328 if (!in) {
2329 // TODO really we should load something in if it's not in cache,
2330 // but the infrastructure is harder, and we might still be unable
2331 // to act on it if someone else is auth.
2332 ss << "directory '" << path << "' inode not in cache";
2333 return NULL;
2334 }
2335
2336 frag_t fg;
2337
2338 if (!fg.parse(frag_str.c_str())) {
2339 ss << "frag " << frag_str << " failed to parse";
2340 return NULL;
2341 }
2342
2343 CDir *dir = in->get_dirfrag(fg);
2344 if (!dir) {
2345 ss << "frag 0x" << std::hex << in->ino() << "/" << fg << " not in cache ("
2346 "use `dirfrag ls` to see if it should exist)";
2347 return NULL;
2348 }
2349
2350 if (!dir->is_auth()) {
2351 ss << "frag " << dir->dirfrag() << " not auth (auth = "
2352 << dir->authority() << ")";
2353 return NULL;
2354 }
2355
2356 return dir;
2357}
2358
2359bool MDSRank::command_dirfrag_split(
2360 cmdmap_t cmdmap,
2361 std::ostream &ss)
2362{
2363 Mutex::Locker l(mds_lock);
2364 if (!mdsmap->allows_dirfrags()) {
2365 ss << "dirfrags are disallowed by the mds map!";
2366 return false;
2367 }
2368
2369 int64_t by = 0;
2370 if (!cmd_getval(g_ceph_context, cmdmap, "bits", by)) {
2371 ss << "missing bits argument";
2372 return false;
2373 }
2374
2375 if (by <= 0) {
2376 ss << "must split by >0 bits";
2377 return false;
2378 }
2379
2380 CDir *dir = _command_dirfrag_get(cmdmap, ss);
2381 if (!dir) {
2382 return false;
2383 }
2384
2385 mdcache->split_dir(dir, by);
2386
2387 return true;
2388}
2389
2390bool MDSRank::command_dirfrag_merge(
2391 cmdmap_t cmdmap,
2392 std::ostream &ss)
2393{
2394 Mutex::Locker l(mds_lock);
2395 std::string path;
2396 bool got = cmd_getval(g_ceph_context, cmdmap, "path", path);
2397 if (!got) {
2398 ss << "missing path argument";
2399 return false;
2400 }
2401
2402 std::string frag_str;
2403 if (!cmd_getval(g_ceph_context, cmdmap, "frag", frag_str)) {
2404 ss << "missing frag argument";
2405 return false;
2406 }
2407
2408 CInode *in = mdcache->cache_traverse(filepath(path.c_str()));
2409 if (!in) {
2410 ss << "directory '" << path << "' inode not in cache";
2411 return false;
2412 }
2413
2414 frag_t fg;
2415 if (!fg.parse(frag_str.c_str())) {
2416 ss << "frag " << frag_str << " failed to parse";
2417 return false;
2418 }
2419
2420 mdcache->merge_dir(in, fg);
2421
2422 return true;
2423}
2424
2425bool MDSRank::command_dirfrag_ls(
2426 cmdmap_t cmdmap,
2427 std::ostream &ss,
2428 Formatter *f)
2429{
2430 Mutex::Locker l(mds_lock);
2431 std::string path;
2432 bool got = cmd_getval(g_ceph_context, cmdmap, "path", path);
2433 if (!got) {
2434 ss << "missing path argument";
2435 return false;
2436 }
2437
2438 CInode *in = mdcache->cache_traverse(filepath(path.c_str()));
2439 if (!in) {
2440 ss << "directory inode not in cache";
2441 return false;
2442 }
2443
2444 f->open_array_section("frags");
2445 std::list<frag_t> frags;
2446 // NB using get_leaves_under instead of get_dirfrags to give
2447 // you the list of what dirfrags may exist, not which are in cache
2448 in->dirfragtree.get_leaves_under(frag_t(), frags);
2449 for (std::list<frag_t>::iterator i = frags.begin();
2450 i != frags.end(); ++i) {
2451 f->open_object_section("frag");
2452 f->dump_int("value", i->value());
2453 f->dump_int("bits", i->bits());
2454 std::ostringstream frag_str;
2455 frag_str << std::hex << i->value() << "/" << std::dec << i->bits();
2456 f->dump_string("str", frag_str.str());
2457 f->close_section();
2458 }
2459 f->close_section();
2460
2461 return true;
2462}
2463
2464void MDSRank::dump_status(Formatter *f) const
2465{
2466 if (state == MDSMap::STATE_REPLAY ||
2467 state == MDSMap::STATE_STANDBY_REPLAY) {
2468 mdlog->dump_replay_status(f);
2469 } else if (state == MDSMap::STATE_RESOLVE) {
2470 mdcache->dump_resolve_status(f);
2471 } else if (state == MDSMap::STATE_RECONNECT) {
2472 server->dump_reconnect_status(f);
2473 } else if (state == MDSMap::STATE_REJOIN) {
2474 mdcache->dump_rejoin_status(f);
2475 } else if (state == MDSMap::STATE_CLIENTREPLAY) {
2476 dump_clientreplay_status(f);
2477 }
2478}
2479
2480void MDSRank::dump_clientreplay_status(Formatter *f) const
2481{
2482 f->open_object_section("clientreplay_status");
2483 f->dump_unsigned("clientreplay_queue", replay_queue.size());
2484 f->dump_unsigned("active_replay", mdcache->get_num_client_requests());
2485 f->close_section();
2486}
2487
2488void MDSRankDispatcher::update_log_config()
2489{
2490 map<string,string> log_to_monitors;
2491 map<string,string> log_to_syslog;
2492 map<string,string> log_channel;
2493 map<string,string> log_prio;
2494 map<string,string> log_to_graylog;
2495 map<string,string> log_to_graylog_host;
2496 map<string,string> log_to_graylog_port;
2497 uuid_d fsid;
2498 string host;
2499
2500 if (parse_log_client_options(g_ceph_context, log_to_monitors, log_to_syslog,
2501 log_channel, log_prio, log_to_graylog,
2502 log_to_graylog_host, log_to_graylog_port,
2503 fsid, host) == 0)
2504 clog->update_config(log_to_monitors, log_to_syslog,
2505 log_channel, log_prio, log_to_graylog,
2506 log_to_graylog_host, log_to_graylog_port,
2507 fsid, host);
2508 dout(10) << __func__ << " log_to_monitors " << log_to_monitors << dendl;
2509}
2510
2511void MDSRank::create_logger()
2512{
2513 dout(10) << "create_logger" << dendl;
2514 {
2515 PerfCountersBuilder mds_plb(g_ceph_context, "mds", l_mds_first, l_mds_last);
2516
2517 mds_plb.add_u64_counter(
2518 l_mds_request, "request", "Requests", "req",
2519 PerfCountersBuilder::PRIO_CRITICAL);
2520 mds_plb.add_u64_counter(l_mds_reply, "reply", "Replies");
2521 mds_plb.add_time_avg(
2522 l_mds_reply_latency, "reply_latency", "Reply latency", "rlat",
2523 PerfCountersBuilder::PRIO_CRITICAL);
2524 mds_plb.add_u64_counter(
2525 l_mds_forward, "forward", "Forwarding request", "fwd",
2526 PerfCountersBuilder::PRIO_INTERESTING);
2527 mds_plb.add_u64_counter(l_mds_dir_fetch, "dir_fetch", "Directory fetch");
2528 mds_plb.add_u64_counter(l_mds_dir_commit, "dir_commit", "Directory commit");
2529 mds_plb.add_u64_counter(l_mds_dir_split, "dir_split", "Directory split");
2530 mds_plb.add_u64_counter(l_mds_dir_merge, "dir_merge", "Directory merge");
2531
2532 mds_plb.add_u64(l_mds_inode_max, "inode_max", "Max inodes, cache size");
2533 mds_plb.add_u64(l_mds_inodes, "inodes", "Inodes", "inos",
2534 PerfCountersBuilder::PRIO_CRITICAL);
2535 mds_plb.add_u64(l_mds_inodes_top, "inodes_top", "Inodes on top");
2536 mds_plb.add_u64(l_mds_inodes_bottom, "inodes_bottom", "Inodes on bottom");
2537 mds_plb.add_u64(
2538 l_mds_inodes_pin_tail, "inodes_pin_tail", "Inodes on pin tail");
2539 mds_plb.add_u64(l_mds_inodes_pinned, "inodes_pinned", "Inodes pinned");
2540 mds_plb.add_u64(l_mds_inodes_expired, "inodes_expired", "Inodes expired");
2541 mds_plb.add_u64(
2542 l_mds_inodes_with_caps, "inodes_with_caps", "Inodes with capabilities");
2543 mds_plb.add_u64(l_mds_caps, "caps", "Capabilities", "caps",
2544 PerfCountersBuilder::PRIO_INTERESTING);
2545 mds_plb.add_u64(l_mds_subtrees, "subtrees", "Subtrees");
2546
2547 mds_plb.add_u64_counter(l_mds_traverse, "traverse", "Traverses");
2548 mds_plb.add_u64_counter(l_mds_traverse_hit, "traverse_hit", "Traverse hits");
2549 mds_plb.add_u64_counter(l_mds_traverse_forward, "traverse_forward",
2550 "Traverse forwards");
2551 mds_plb.add_u64_counter(l_mds_traverse_discover, "traverse_discover",
2552 "Traverse directory discovers");
2553 mds_plb.add_u64_counter(l_mds_traverse_dir_fetch, "traverse_dir_fetch",
2554 "Traverse incomplete directory content fetchings");
2555 mds_plb.add_u64_counter(l_mds_traverse_remote_ino, "traverse_remote_ino",
2556 "Traverse remote dentries");
2557 mds_plb.add_u64_counter(l_mds_traverse_lock, "traverse_lock",
2558 "Traverse locks");
2559
2560 mds_plb.add_u64(l_mds_load_cent, "load_cent", "Load per cent");
2561 mds_plb.add_u64(l_mds_dispatch_queue_len, "q", "Dispatch queue length");
2562
2563 mds_plb.add_u64_counter(l_mds_exported, "exported", "Exports");
2564 mds_plb.add_u64_counter(
2565 l_mds_exported_inodes, "exported_inodes", "Exported inodes", "exi",
2566 PerfCountersBuilder::PRIO_INTERESTING);
2567 mds_plb.add_u64_counter(l_mds_imported, "imported", "Imports");
2568 mds_plb.add_u64_counter(
2569 l_mds_imported_inodes, "imported_inodes", "Imported inodes", "imi",
2570 PerfCountersBuilder::PRIO_INTERESTING);
2571 logger = mds_plb.create_perf_counters();
2572 g_ceph_context->get_perfcounters_collection()->add(logger);
2573 }
2574
2575 {
2576 PerfCountersBuilder mdm_plb(g_ceph_context, "mds_mem", l_mdm_first, l_mdm_last);
2577 mdm_plb.add_u64(l_mdm_ino, "ino", "Inodes");
2578 mdm_plb.add_u64_counter(l_mdm_inoa, "ino+", "Inodes opened");
2579 mdm_plb.add_u64_counter(l_mdm_inos, "ino-", "Inodes closed");
2580 mdm_plb.add_u64(l_mdm_dir, "dir", "Directories");
2581 mdm_plb.add_u64_counter(l_mdm_dira, "dir+", "Directories opened");
2582 mdm_plb.add_u64_counter(l_mdm_dirs, "dir-", "Directories closed");
2583 mdm_plb.add_u64(l_mdm_dn, "dn", "Dentries");
2584 mdm_plb.add_u64_counter(l_mdm_dna, "dn+", "Dentries opened");
2585 mdm_plb.add_u64_counter(l_mdm_dns, "dn-", "Dentries closed");
2586 mdm_plb.add_u64(l_mdm_cap, "cap", "Capabilities");
2587 mdm_plb.add_u64_counter(l_mdm_capa, "cap+", "Capabilities added");
2588 mdm_plb.add_u64_counter(l_mdm_caps, "cap-", "Capabilities removed");
2589 mdm_plb.add_u64(l_mdm_rss, "rss", "RSS");
2590 mdm_plb.add_u64(l_mdm_heap, "heap", "Heap size");
2591 mdm_plb.add_u64(l_mdm_buf, "buf", "Buffer size");
2592 mlogger = mdm_plb.create_perf_counters();
2593 g_ceph_context->get_perfcounters_collection()->add(mlogger);
2594 }
2595
2596 mdlog->create_logger();
2597 server->create_logger();
2598 purge_queue.create_logger();
2599 sessionmap.register_perfcounters();
2600 mdcache->register_perfcounters();
2601}
2602
2603void MDSRank::check_ops_in_flight()
2604{
2605 vector<string> warnings;
2606 int slow = 0;
2607 if (op_tracker.check_ops_in_flight(warnings, &slow)) {
2608 for (vector<string>::iterator i = warnings.begin();
2609 i != warnings.end();
2610 ++i) {
2611 clog->warn() << *i;
2612 }
2613 }
2614
2615 // set mds slow request count
2616 mds_slow_req_count = slow;
2617 return;
2618}
2619
2620void MDSRankDispatcher::handle_osd_map()
2621{
2622 if (is_active() && snapserver) {
2623 snapserver->check_osd_map(true);
2624 }
2625
2626 server->handle_osd_map();
2627
2628 purge_queue.update_op_limit(*mdsmap);
2629
31f18b77
FG
2630 std::set<entity_addr_t> newly_blacklisted;
2631 objecter->consume_blacklist_events(&newly_blacklisted);
2632 auto epoch = objecter->with_osdmap([](const OSDMap &o){return o.get_epoch();});
2633 dout(4) << "handle_osd_map epoch " << epoch << ", "
2634 << newly_blacklisted.size() << " new blacklist entries" << dendl;
2635 auto victims = server->apply_blacklist(newly_blacklisted);
2636 if (victims) {
2637 set_osd_epoch_barrier(epoch);
2638 }
2639
2640
7c673cae
FG
2641 // By default the objecter only requests OSDMap updates on use,
2642 // we would like to always receive the latest maps in order to
2643 // apply policy based on the FULL flag.
2644 objecter->maybe_request_map();
2645}
2646
31f18b77
FG
2647bool MDSRank::evict_client(int64_t session_id,
2648 bool wait, bool blacklist, std::stringstream& err_ss,
2649 Context *on_killed)
7c673cae 2650{
31f18b77
FG
2651 assert(mds_lock.is_locked_by_me());
2652
2653 // Mutually exclusive args
2654 assert(!(wait && on_killed != nullptr));
2655
7c673cae
FG
2656 if (is_any_replay()) {
2657 err_ss << "MDS is replaying log";
2658 return false;
2659 }
2660
31f18b77
FG
2661 Session *session = sessionmap.get_session(
2662 entity_name_t(CEPH_ENTITY_TYPE_CLIENT, session_id));
7c673cae
FG
2663 if (!session) {
2664 err_ss << "session " << session_id << " not in sessionmap!";
2665 return false;
2666 }
7c673cae 2667
31f18b77
FG
2668 dout(4) << "Preparing blacklist command... (wait=" << wait << ")" << dendl;
2669 stringstream ss;
2670 ss << "{\"prefix\":\"osd blacklist\", \"blacklistop\":\"add\",";
2671 ss << "\"addr\":\"";
2672 ss << session->info.inst.addr;
2673 ss << "\"}";
2674 std::string tmp = ss.str();
2675 std::vector<std::string> cmd = {tmp};
2676
2677 auto kill_mds_session = [this, session_id, on_killed](){
2678 assert(mds_lock.is_locked_by_me());
2679 Session *session = sessionmap.get_session(
2680 entity_name_t(CEPH_ENTITY_TYPE_CLIENT, session_id));
2681 if (session) {
2682 if (on_killed) {
2683 server->kill_session(session, on_killed);
2684 } else {
2685 C_SaferCond on_safe;
2686 server->kill_session(session, &on_safe);
2687
2688 mds_lock.Unlock();
2689 on_safe.wait();
2690 mds_lock.Lock();
2691 }
2692 } else {
2693 dout(1) << "session " << session_id << " was removed while we waited "
2694 "for blacklist" << dendl;
2695
2696 // Even though it wasn't us that removed it, kick our completion
2697 // as the session has been removed.
2698 if (on_killed) {
2699 on_killed->complete(0);
2700 }
2701 }
2702 };
2703
2704 auto background_blacklist = [this, session_id, cmd](std::function<void ()> fn){
2705 assert(mds_lock.is_locked_by_me());
2706
2707 Context *on_blacklist_done = new FunctionContext([this, session_id, fn](int r) {
2708 objecter->wait_for_latest_osdmap(
2709 new C_OnFinisher(
2710 new FunctionContext([this, session_id, fn](int r) {
2711 Mutex::Locker l(mds_lock);
2712 auto epoch = objecter->with_osdmap([](const OSDMap &o){
2713 return o.get_epoch();
2714 });
2715
2716 set_osd_epoch_barrier(epoch);
2717
2718 fn();
2719 }), finisher)
2720 );
2721 });
2722
2723 dout(4) << "Sending mon blacklist command: " << cmd[0] << dendl;
2724 monc->start_mon_command(cmd, {}, nullptr, nullptr, on_blacklist_done);
2725 };
2726
2727 auto blocking_blacklist = [this, cmd, &err_ss, background_blacklist](){
2728 C_SaferCond inline_ctx;
2729 background_blacklist([&inline_ctx](){inline_ctx.complete(0);});
7c673cae 2730 mds_lock.Unlock();
31f18b77 2731 inline_ctx.wait();
7c673cae 2732 mds_lock.Lock();
31f18b77
FG
2733 };
2734
2735 if (wait) {
2736 if (blacklist) {
2737 blocking_blacklist();
2738 }
2739
2740 // We dropped mds_lock, so check that session still exists
2741 session = sessionmap.get_session(entity_name_t(CEPH_ENTITY_TYPE_CLIENT,
2742 session_id));
2743 if (!session) {
2744 dout(1) << "session " << session_id << " was removed while we waited "
2745 "for blacklist" << dendl;
2746 return true;
2747 }
2748 kill_mds_session();
7c673cae 2749 } else {
31f18b77
FG
2750 if (blacklist) {
2751 background_blacklist(kill_mds_session);
2752 } else {
2753 kill_mds_session();
2754 }
7c673cae 2755 }
31f18b77 2756
7c673cae
FG
2757 return true;
2758}
2759
2760void MDSRank::bcast_mds_map()
2761{
2762 dout(7) << "bcast_mds_map " << mdsmap->get_epoch() << dendl;
2763
2764 // share the map with mounted clients
2765 set<Session*> clients;
2766 sessionmap.get_client_session_set(clients);
2767 for (set<Session*>::const_iterator p = clients.begin();
2768 p != clients.end();
2769 ++p)
2770 (*p)->connection->send_message(new MMDSMap(monc->get_fsid(), mdsmap));
2771 last_client_mdsmap_bcast = mdsmap->get_epoch();
2772}
2773
2774MDSRankDispatcher::MDSRankDispatcher(
2775 mds_rank_t whoami_,
2776 Mutex &mds_lock_,
2777 LogChannelRef &clog_,
2778 SafeTimer &timer_,
2779 Beacon &beacon_,
2780 MDSMap *& mdsmap_,
2781 Messenger *msgr,
2782 MonClient *monc_,
2783 Context *respawn_hook_,
2784 Context *suicide_hook_)
2785 : MDSRank(whoami_, mds_lock_, clog_, timer_, beacon_, mdsmap_,
2786 msgr, monc_, respawn_hook_, suicide_hook_)
2787{}
2788
2789bool MDSRankDispatcher::handle_command(
2790 const cmdmap_t &cmdmap,
2791 MCommand *m,
2792 int *r,
2793 std::stringstream *ds,
2794 std::stringstream *ss,
2795 bool *need_reply)
2796{
2797 assert(r != nullptr);
2798 assert(ds != nullptr);
2799 assert(ss != nullptr);
2800
2801 *need_reply = true;
2802
2803 std::string prefix;
2804 cmd_getval(g_ceph_context, cmdmap, "prefix", prefix);
2805
31f18b77 2806 if (prefix == "session ls" || prefix == "client ls") {
7c673cae
FG
2807 std::vector<std::string> filter_args;
2808 cmd_getval(g_ceph_context, cmdmap, "filters", filter_args);
2809
2810 SessionFilter filter;
2811 *r = filter.parse(filter_args, ss);
2812 if (*r != 0) {
2813 return true;
2814 }
2815
2816 Formatter *f = new JSONFormatter(true);
2817 dump_sessions(filter, f);
2818 f->flush(*ds);
2819 delete f;
2820 return true;
31f18b77 2821 } else if (prefix == "session evict" || prefix == "client evict") {
7c673cae
FG
2822 std::vector<std::string> filter_args;
2823 cmd_getval(g_ceph_context, cmdmap, "filters", filter_args);
2824
2825 SessionFilter filter;
2826 *r = filter.parse(filter_args, ss);
2827 if (*r != 0) {
2828 return true;
2829 }
2830
31f18b77 2831 evict_clients(filter, m);
7c673cae
FG
2832
2833 *need_reply = false;
2834 return true;
2835 } else if (prefix == "damage ls") {
2836 Formatter *f = new JSONFormatter(true);
2837 damage_table.dump(f);
2838 f->flush(*ds);
2839 delete f;
2840 return true;
2841 } else if (prefix == "damage rm") {
2842 damage_entry_id_t id = 0;
2843 bool got = cmd_getval(g_ceph_context, cmdmap, "damage_id", (int64_t&)id);
2844 if (!got) {
2845 *r = -EINVAL;
2846 return true;
2847 }
2848
2849 damage_table.erase(id);
2850 return true;
2851 } else {
2852 return false;
2853 }
2854}
2855
2856epoch_t MDSRank::get_osd_epoch() const
2857{
2858 return objecter->with_osdmap(std::mem_fn(&OSDMap::get_epoch));
2859}
2860