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ocfs2/cluster: Show pin state for each o2hb region
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CommitLineData
a7f6a5fb
MF
1/* -*- mode: c; c-basic-offset: 8; -*-
2 * vim: noexpandtab sw=8 ts=8 sts=0:
3 *
4 * Copyright (C) 2004, 2005 Oracle. All rights reserved.
5 *
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public
8 * License as published by the Free Software Foundation; either
9 * version 2 of the License, or (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public
17 * License along with this program; if not, write to the
18 * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
19 * Boston, MA 021110-1307, USA.
20 */
21
22#include <linux/kernel.h>
23#include <linux/sched.h>
24#include <linux/jiffies.h>
25#include <linux/module.h>
26#include <linux/fs.h>
27#include <linux/bio.h>
28#include <linux/blkdev.h>
29#include <linux/delay.h>
30#include <linux/file.h>
31#include <linux/kthread.h>
32#include <linux/configfs.h>
33#include <linux/random.h>
34#include <linux/crc32.h>
35#include <linux/time.h>
87d3d3f3 36#include <linux/debugfs.h>
5a0e3ad6 37#include <linux/slab.h>
a7f6a5fb
MF
38
39#include "heartbeat.h"
40#include "tcp.h"
41#include "nodemanager.h"
42#include "quorum.h"
43
44#include "masklog.h"
45
46
47/*
48 * The first heartbeat pass had one global thread that would serialize all hb
49 * callback calls. This global serializing sem should only be removed once
50 * we've made sure that all callees can deal with being called concurrently
51 * from multiple hb region threads.
52 */
53static DECLARE_RWSEM(o2hb_callback_sem);
54
55/*
56 * multiple hb threads are watching multiple regions. A node is live
57 * whenever any of the threads sees activity from the node in its region.
58 */
34af946a 59static DEFINE_SPINLOCK(o2hb_live_lock);
a7f6a5fb
MF
60static struct list_head o2hb_live_slots[O2NM_MAX_NODES];
61static unsigned long o2hb_live_node_bitmap[BITS_TO_LONGS(O2NM_MAX_NODES)];
62static LIST_HEAD(o2hb_node_events);
63static DECLARE_WAIT_QUEUE_HEAD(o2hb_steady_queue);
64
536f0741
SM
65/*
66 * In global heartbeat, we maintain a series of region bitmaps.
67 * - o2hb_region_bitmap allows us to limit the region number to max region.
e7d656ba 68 * - o2hb_live_region_bitmap tracks live regions (seen steady iterations).
43182d2a
SM
69 * - o2hb_quorum_region_bitmap tracks live regions that have seen all nodes
70 * heartbeat on it.
b1c5ebfb 71 * - o2hb_failed_region_bitmap tracks the regions that have seen io timeouts.
536f0741
SM
72 */
73static unsigned long o2hb_region_bitmap[BITS_TO_LONGS(O2NM_MAX_REGIONS)];
e7d656ba 74static unsigned long o2hb_live_region_bitmap[BITS_TO_LONGS(O2NM_MAX_REGIONS)];
43182d2a 75static unsigned long o2hb_quorum_region_bitmap[BITS_TO_LONGS(O2NM_MAX_REGIONS)];
b1c5ebfb 76static unsigned long o2hb_failed_region_bitmap[BITS_TO_LONGS(O2NM_MAX_REGIONS)];
536f0741 77
8ca8b0bb 78#define O2HB_DB_TYPE_LIVENODES 0
a6de0136
SM
79#define O2HB_DB_TYPE_LIVEREGIONS 1
80#define O2HB_DB_TYPE_QUORUMREGIONS 2
81#define O2HB_DB_TYPE_FAILEDREGIONS 3
1f285305
SM
82#define O2HB_DB_TYPE_REGION_LIVENODES 4
83#define O2HB_DB_TYPE_REGION_NUMBER 5
43695d09 84#define O2HB_DB_TYPE_REGION_ELAPSED_TIME 6
cb0586bd 85#define O2HB_DB_TYPE_REGION_PINNED 7
8ca8b0bb
SM
86struct o2hb_debug_buf {
87 int db_type;
88 int db_size;
89 int db_len;
90 void *db_data;
91};
92
93static struct o2hb_debug_buf *o2hb_db_livenodes;
a6de0136
SM
94static struct o2hb_debug_buf *o2hb_db_liveregions;
95static struct o2hb_debug_buf *o2hb_db_quorumregions;
96static struct o2hb_debug_buf *o2hb_db_failedregions;
8ca8b0bb 97
87d3d3f3
SM
98#define O2HB_DEBUG_DIR "o2hb"
99#define O2HB_DEBUG_LIVENODES "livenodes"
a6de0136
SM
100#define O2HB_DEBUG_LIVEREGIONS "live_regions"
101#define O2HB_DEBUG_QUORUMREGIONS "quorum_regions"
102#define O2HB_DEBUG_FAILEDREGIONS "failed_regions"
1f285305 103#define O2HB_DEBUG_REGION_NUMBER "num"
43695d09 104#define O2HB_DEBUG_REGION_ELAPSED_TIME "elapsed_time_in_ms"
cb0586bd 105#define O2HB_DEBUG_REGION_PINNED "pinned"
8ca8b0bb 106
87d3d3f3
SM
107static struct dentry *o2hb_debug_dir;
108static struct dentry *o2hb_debug_livenodes;
a6de0136
SM
109static struct dentry *o2hb_debug_liveregions;
110static struct dentry *o2hb_debug_quorumregions;
111static struct dentry *o2hb_debug_failedregions;
87d3d3f3 112
a7f6a5fb
MF
113static LIST_HEAD(o2hb_all_regions);
114
115static struct o2hb_callback {
116 struct list_head list;
117} o2hb_callbacks[O2HB_NUM_CB];
118
119static struct o2hb_callback *hbcall_from_type(enum o2hb_callback_type type);
120
121#define O2HB_DEFAULT_BLOCK_BITS 9
122
54b5187b
SM
123enum o2hb_heartbeat_modes {
124 O2HB_HEARTBEAT_LOCAL = 0,
125 O2HB_HEARTBEAT_GLOBAL,
126 O2HB_HEARTBEAT_NUM_MODES,
127};
128
129char *o2hb_heartbeat_mode_desc[O2HB_HEARTBEAT_NUM_MODES] = {
130 "local", /* O2HB_HEARTBEAT_LOCAL */
131 "global", /* O2HB_HEARTBEAT_GLOBAL */
132};
133
a7f6a5fb 134unsigned int o2hb_dead_threshold = O2HB_DEFAULT_DEAD_THRESHOLD;
54b5187b 135unsigned int o2hb_heartbeat_mode = O2HB_HEARTBEAT_LOCAL;
a7f6a5fb 136
58a3158a
SM
137/*
138 * o2hb_dependent_users tracks the number of registered callbacks that depend
139 * on heartbeat. o2net and o2dlm are two entities that register this callback.
140 * However only o2dlm depends on the heartbeat. It does not want the heartbeat
141 * to stop while a dlm domain is still active.
142 */
143unsigned int o2hb_dependent_users;
144
145/*
146 * In global heartbeat mode, all regions are pinned if there are one or more
147 * dependent users and the quorum region count is <= O2HB_PIN_CUT_OFF. All
148 * regions are unpinned if the region count exceeds the cut off or the number
149 * of dependent users falls to zero.
150 */
151#define O2HB_PIN_CUT_OFF 3
152
153/*
154 * In local heartbeat mode, we assume the dlm domain name to be the same as
155 * region uuid. This is true for domains created for the file system but not
156 * necessarily true for userdlm domains. This is a known limitation.
157 *
158 * In global heartbeat mode, we pin/unpin all o2hb regions. This solution
159 * works for both file system and userdlm domains.
160 */
161static int o2hb_region_pin(const char *region_uuid);
162static void o2hb_region_unpin(const char *region_uuid);
163
2bd63216 164/* Only sets a new threshold if there are no active regions.
a7f6a5fb
MF
165 *
166 * No locking or otherwise interesting code is required for reading
167 * o2hb_dead_threshold as it can't change once regions are active and
168 * it's not interesting to anyone until then anyway. */
169static void o2hb_dead_threshold_set(unsigned int threshold)
170{
171 if (threshold > O2HB_MIN_DEAD_THRESHOLD) {
172 spin_lock(&o2hb_live_lock);
173 if (list_empty(&o2hb_all_regions))
174 o2hb_dead_threshold = threshold;
175 spin_unlock(&o2hb_live_lock);
176 }
177}
178
54b5187b
SM
179static int o2hb_global_hearbeat_mode_set(unsigned int hb_mode)
180{
181 int ret = -1;
182
183 if (hb_mode < O2HB_HEARTBEAT_NUM_MODES) {
184 spin_lock(&o2hb_live_lock);
185 if (list_empty(&o2hb_all_regions)) {
186 o2hb_heartbeat_mode = hb_mode;
187 ret = 0;
188 }
189 spin_unlock(&o2hb_live_lock);
190 }
191
192 return ret;
193}
194
a7f6a5fb
MF
195struct o2hb_node_event {
196 struct list_head hn_item;
197 enum o2hb_callback_type hn_event_type;
198 struct o2nm_node *hn_node;
199 int hn_node_num;
200};
201
202struct o2hb_disk_slot {
203 struct o2hb_disk_heartbeat_block *ds_raw_block;
204 u8 ds_node_num;
205 u64 ds_last_time;
206 u64 ds_last_generation;
207 u16 ds_equal_samples;
208 u16 ds_changed_samples;
209 struct list_head ds_live_item;
210};
211
212/* each thread owns a region.. when we're asked to tear down the region
213 * we ask the thread to stop, who cleans up the region */
214struct o2hb_region {
215 struct config_item hr_item;
216
217 struct list_head hr_all_item;
58a3158a
SM
218 unsigned hr_unclean_stop:1,
219 hr_item_pinned:1,
220 hr_item_dropped:1;
a7f6a5fb
MF
221
222 /* protected by the hr_callback_sem */
223 struct task_struct *hr_task;
224
225 unsigned int hr_blocks;
226 unsigned long long hr_start_block;
227
228 unsigned int hr_block_bits;
229 unsigned int hr_block_bytes;
230
231 unsigned int hr_slots_per_page;
232 unsigned int hr_num_pages;
233
234 struct page **hr_slot_data;
235 struct block_device *hr_bdev;
236 struct o2hb_disk_slot *hr_slots;
237
823a637a
SM
238 /* live node map of this region */
239 unsigned long hr_live_node_bitmap[BITS_TO_LONGS(O2NM_MAX_NODES)];
536f0741 240 unsigned int hr_region_num;
823a637a 241
1f285305
SM
242 struct dentry *hr_debug_dir;
243 struct dentry *hr_debug_livenodes;
244 struct dentry *hr_debug_regnum;
43695d09 245 struct dentry *hr_debug_elapsed_time;
cb0586bd 246 struct dentry *hr_debug_pinned;
1f285305
SM
247 struct o2hb_debug_buf *hr_db_livenodes;
248 struct o2hb_debug_buf *hr_db_regnum;
43695d09 249 struct o2hb_debug_buf *hr_db_elapsed_time;
cb0586bd 250 struct o2hb_debug_buf *hr_db_pinned;
1f285305 251
a7f6a5fb
MF
252 /* let the person setting up hb wait for it to return until it
253 * has reached a 'steady' state. This will be fixed when we have
254 * a more complete api that doesn't lead to this sort of fragility. */
255 atomic_t hr_steady_iterations;
256
257 char hr_dev_name[BDEVNAME_SIZE];
258
259 unsigned int hr_timeout_ms;
260
261 /* randomized as the region goes up and down so that a node
262 * recognizes a node going up and down in one iteration */
263 u64 hr_generation;
264
c4028958 265 struct delayed_work hr_write_timeout_work;
a7f6a5fb
MF
266 unsigned long hr_last_timeout_start;
267
268 /* Used during o2hb_check_slot to hold a copy of the block
269 * being checked because we temporarily have to zero out the
270 * crc field. */
271 struct o2hb_disk_heartbeat_block *hr_tmp_block;
272};
273
274struct o2hb_bio_wait_ctxt {
275 atomic_t wc_num_reqs;
276 struct completion wc_io_complete;
a9e2ae39 277 int wc_error;
a7f6a5fb
MF
278};
279
b1c5ebfb
SM
280static int o2hb_pop_count(void *map, int count)
281{
282 int i = -1, pop = 0;
283
284 while ((i = find_next_bit(map, count, i + 1)) < count)
285 pop++;
286 return pop;
287}
288
c4028958 289static void o2hb_write_timeout(struct work_struct *work)
a7f6a5fb 290{
b1c5ebfb
SM
291 int failed, quorum;
292 unsigned long flags;
c4028958
DH
293 struct o2hb_region *reg =
294 container_of(work, struct o2hb_region,
295 hr_write_timeout_work.work);
a7f6a5fb
MF
296
297 mlog(ML_ERROR, "Heartbeat write timeout to device %s after %u "
298 "milliseconds\n", reg->hr_dev_name,
2bd63216 299 jiffies_to_msecs(jiffies - reg->hr_last_timeout_start));
b1c5ebfb
SM
300
301 if (o2hb_global_heartbeat_active()) {
302 spin_lock_irqsave(&o2hb_live_lock, flags);
303 if (test_bit(reg->hr_region_num, o2hb_quorum_region_bitmap))
304 set_bit(reg->hr_region_num, o2hb_failed_region_bitmap);
305 failed = o2hb_pop_count(&o2hb_failed_region_bitmap,
306 O2NM_MAX_REGIONS);
307 quorum = o2hb_pop_count(&o2hb_quorum_region_bitmap,
308 O2NM_MAX_REGIONS);
309 spin_unlock_irqrestore(&o2hb_live_lock, flags);
310
311 mlog(ML_HEARTBEAT, "Number of regions %d, failed regions %d\n",
312 quorum, failed);
313
314 /*
315 * Fence if the number of failed regions >= half the number
316 * of quorum regions
317 */
318 if ((failed << 1) < quorum)
319 return;
320 }
321
a7f6a5fb
MF
322 o2quo_disk_timeout();
323}
324
325static void o2hb_arm_write_timeout(struct o2hb_region *reg)
326{
b31d308d
TM
327 mlog(ML_HEARTBEAT, "Queue write timeout for %u ms\n",
328 O2HB_MAX_WRITE_TIMEOUT_MS);
a7f6a5fb 329
b1c5ebfb
SM
330 if (o2hb_global_heartbeat_active()) {
331 spin_lock(&o2hb_live_lock);
332 clear_bit(reg->hr_region_num, o2hb_failed_region_bitmap);
333 spin_unlock(&o2hb_live_lock);
334 }
a7f6a5fb
MF
335 cancel_delayed_work(&reg->hr_write_timeout_work);
336 reg->hr_last_timeout_start = jiffies;
337 schedule_delayed_work(&reg->hr_write_timeout_work,
338 msecs_to_jiffies(O2HB_MAX_WRITE_TIMEOUT_MS));
339}
340
341static void o2hb_disarm_write_timeout(struct o2hb_region *reg)
342{
343 cancel_delayed_work(&reg->hr_write_timeout_work);
344 flush_scheduled_work();
345}
346
b559292e 347static inline void o2hb_bio_wait_init(struct o2hb_bio_wait_ctxt *wc)
a7f6a5fb 348{
b559292e 349 atomic_set(&wc->wc_num_reqs, 1);
a7f6a5fb 350 init_completion(&wc->wc_io_complete);
a9e2ae39 351 wc->wc_error = 0;
a7f6a5fb
MF
352}
353
354/* Used in error paths too */
355static inline void o2hb_bio_wait_dec(struct o2hb_bio_wait_ctxt *wc,
356 unsigned int num)
357{
358 /* sadly atomic_sub_and_test() isn't available on all platforms. The
359 * good news is that the fast path only completes one at a time */
360 while(num--) {
361 if (atomic_dec_and_test(&wc->wc_num_reqs)) {
362 BUG_ON(num > 0);
363 complete(&wc->wc_io_complete);
364 }
365 }
366}
367
368static void o2hb_wait_on_io(struct o2hb_region *reg,
369 struct o2hb_bio_wait_ctxt *wc)
370{
371 struct address_space *mapping = reg->hr_bdev->bd_inode->i_mapping;
372
373 blk_run_address_space(mapping);
b559292e 374 o2hb_bio_wait_dec(wc, 1);
a7f6a5fb
MF
375
376 wait_for_completion(&wc->wc_io_complete);
377}
378
782e3b3b 379static void o2hb_bio_end_io(struct bio *bio,
a7f6a5fb
MF
380 int error)
381{
382 struct o2hb_bio_wait_ctxt *wc = bio->bi_private;
383
a9e2ae39 384 if (error) {
a7f6a5fb 385 mlog(ML_ERROR, "IO Error %d\n", error);
a9e2ae39
MF
386 wc->wc_error = error;
387 }
a7f6a5fb 388
a7f6a5fb 389 o2hb_bio_wait_dec(wc, 1);
b559292e 390 bio_put(bio);
a7f6a5fb
MF
391}
392
393/* Setup a Bio to cover I/O against num_slots slots starting at
394 * start_slot. */
395static struct bio *o2hb_setup_one_bio(struct o2hb_region *reg,
396 struct o2hb_bio_wait_ctxt *wc,
b559292e
PR
397 unsigned int *current_slot,
398 unsigned int max_slots)
a7f6a5fb 399{
b559292e 400 int len, current_page;
a7f6a5fb
MF
401 unsigned int vec_len, vec_start;
402 unsigned int bits = reg->hr_block_bits;
403 unsigned int spp = reg->hr_slots_per_page;
b559292e 404 unsigned int cs = *current_slot;
a7f6a5fb
MF
405 struct bio *bio;
406 struct page *page;
407
a7f6a5fb
MF
408 /* Testing has shown this allocation to take long enough under
409 * GFP_KERNEL that the local node can get fenced. It would be
410 * nicest if we could pre-allocate these bios and avoid this
411 * all together. */
b559292e 412 bio = bio_alloc(GFP_ATOMIC, 16);
a7f6a5fb
MF
413 if (!bio) {
414 mlog(ML_ERROR, "Could not alloc slots BIO!\n");
415 bio = ERR_PTR(-ENOMEM);
416 goto bail;
417 }
418
419 /* Must put everything in 512 byte sectors for the bio... */
b559292e 420 bio->bi_sector = (reg->hr_start_block + cs) << (bits - 9);
a7f6a5fb
MF
421 bio->bi_bdev = reg->hr_bdev;
422 bio->bi_private = wc;
423 bio->bi_end_io = o2hb_bio_end_io;
424
b559292e
PR
425 vec_start = (cs << bits) % PAGE_CACHE_SIZE;
426 while(cs < max_slots) {
427 current_page = cs / spp;
428 page = reg->hr_slot_data[current_page];
a7f6a5fb 429
bc7e97cb 430 vec_len = min(PAGE_CACHE_SIZE - vec_start,
b559292e 431 (max_slots-cs) * (PAGE_CACHE_SIZE/spp) );
a7f6a5fb
MF
432
433 mlog(ML_HB_BIO, "page %d, vec_len = %u, vec_start = %u\n",
b559292e 434 current_page, vec_len, vec_start);
a7f6a5fb
MF
435
436 len = bio_add_page(bio, page, vec_len, vec_start);
b559292e 437 if (len != vec_len) break;
a7f6a5fb 438
b559292e 439 cs += vec_len / (PAGE_CACHE_SIZE/spp);
a7f6a5fb
MF
440 vec_start = 0;
441 }
442
443bail:
b559292e 444 *current_slot = cs;
a7f6a5fb
MF
445 return bio;
446}
447
a7f6a5fb
MF
448static int o2hb_read_slots(struct o2hb_region *reg,
449 unsigned int max_slots)
450{
b559292e
PR
451 unsigned int current_slot=0;
452 int status;
a7f6a5fb 453 struct o2hb_bio_wait_ctxt wc;
a7f6a5fb
MF
454 struct bio *bio;
455
b559292e 456 o2hb_bio_wait_init(&wc);
a7f6a5fb 457
b559292e
PR
458 while(current_slot < max_slots) {
459 bio = o2hb_setup_one_bio(reg, &wc, &current_slot, max_slots);
a7f6a5fb 460 if (IS_ERR(bio)) {
a7f6a5fb
MF
461 status = PTR_ERR(bio);
462 mlog_errno(status);
463 goto bail_and_wait;
464 }
a7f6a5fb 465
b559292e 466 atomic_inc(&wc.wc_num_reqs);
a7f6a5fb
MF
467 submit_bio(READ, bio);
468 }
469
470 status = 0;
471
472bail_and_wait:
473 o2hb_wait_on_io(reg, &wc);
a9e2ae39
MF
474 if (wc.wc_error && !status)
475 status = wc.wc_error;
a7f6a5fb 476
a7f6a5fb
MF
477 return status;
478}
479
480static int o2hb_issue_node_write(struct o2hb_region *reg,
a7f6a5fb
MF
481 struct o2hb_bio_wait_ctxt *write_wc)
482{
483 int status;
484 unsigned int slot;
485 struct bio *bio;
486
b559292e 487 o2hb_bio_wait_init(write_wc);
a7f6a5fb
MF
488
489 slot = o2nm_this_node();
490
b559292e 491 bio = o2hb_setup_one_bio(reg, write_wc, &slot, slot+1);
a7f6a5fb
MF
492 if (IS_ERR(bio)) {
493 status = PTR_ERR(bio);
494 mlog_errno(status);
495 goto bail;
496 }
497
b559292e 498 atomic_inc(&write_wc->wc_num_reqs);
a7f6a5fb
MF
499 submit_bio(WRITE, bio);
500
a7f6a5fb
MF
501 status = 0;
502bail:
503 return status;
504}
505
506static u32 o2hb_compute_block_crc_le(struct o2hb_region *reg,
507 struct o2hb_disk_heartbeat_block *hb_block)
508{
509 __le32 old_cksum;
510 u32 ret;
511
512 /* We want to compute the block crc with a 0 value in the
513 * hb_cksum field. Save it off here and replace after the
514 * crc. */
515 old_cksum = hb_block->hb_cksum;
516 hb_block->hb_cksum = 0;
517
518 ret = crc32_le(0, (unsigned char *) hb_block, reg->hr_block_bytes);
519
520 hb_block->hb_cksum = old_cksum;
521
522 return ret;
523}
524
525static void o2hb_dump_slot(struct o2hb_disk_heartbeat_block *hb_block)
526{
70bacbdb
MF
527 mlog(ML_ERROR, "Dump slot information: seq = 0x%llx, node = %u, "
528 "cksum = 0x%x, generation 0x%llx\n",
529 (long long)le64_to_cpu(hb_block->hb_seq),
530 hb_block->hb_node, le32_to_cpu(hb_block->hb_cksum),
531 (long long)le64_to_cpu(hb_block->hb_generation));
a7f6a5fb
MF
532}
533
534static int o2hb_verify_crc(struct o2hb_region *reg,
535 struct o2hb_disk_heartbeat_block *hb_block)
536{
537 u32 read, computed;
538
539 read = le32_to_cpu(hb_block->hb_cksum);
540 computed = o2hb_compute_block_crc_le(reg, hb_block);
541
542 return read == computed;
543}
544
545/* We want to make sure that nobody is heartbeating on top of us --
546 * this will help detect an invalid configuration. */
547static int o2hb_check_last_timestamp(struct o2hb_region *reg)
548{
549 int node_num, ret;
550 struct o2hb_disk_slot *slot;
551 struct o2hb_disk_heartbeat_block *hb_block;
552
553 node_num = o2nm_this_node();
554
555 ret = 1;
556 slot = &reg->hr_slots[node_num];
557 /* Don't check on our 1st timestamp */
558 if (slot->ds_last_time) {
559 hb_block = slot->ds_raw_block;
560
561 if (le64_to_cpu(hb_block->hb_seq) != slot->ds_last_time)
562 ret = 0;
563 }
564
565 return ret;
566}
567
568static inline void o2hb_prepare_block(struct o2hb_region *reg,
569 u64 generation)
570{
571 int node_num;
572 u64 cputime;
573 struct o2hb_disk_slot *slot;
574 struct o2hb_disk_heartbeat_block *hb_block;
575
576 node_num = o2nm_this_node();
577 slot = &reg->hr_slots[node_num];
578
579 hb_block = (struct o2hb_disk_heartbeat_block *)slot->ds_raw_block;
580 memset(hb_block, 0, reg->hr_block_bytes);
581 /* TODO: time stuff */
582 cputime = CURRENT_TIME.tv_sec;
583 if (!cputime)
584 cputime = 1;
585
586 hb_block->hb_seq = cpu_to_le64(cputime);
587 hb_block->hb_node = node_num;
588 hb_block->hb_generation = cpu_to_le64(generation);
0db638f4 589 hb_block->hb_dead_ms = cpu_to_le32(o2hb_dead_threshold * O2HB_REGION_TIMEOUT_MS);
a7f6a5fb
MF
590
591 /* This step must always happen last! */
592 hb_block->hb_cksum = cpu_to_le32(o2hb_compute_block_crc_le(reg,
593 hb_block));
594
70bacbdb 595 mlog(ML_HB_BIO, "our node generation = 0x%llx, cksum = 0x%x\n",
5fdf1e67 596 (long long)generation,
70bacbdb 597 le32_to_cpu(hb_block->hb_cksum));
a7f6a5fb
MF
598}
599
600static void o2hb_fire_callbacks(struct o2hb_callback *hbcall,
601 struct o2nm_node *node,
602 int idx)
603{
604 struct list_head *iter;
605 struct o2hb_callback_func *f;
606
607 list_for_each(iter, &hbcall->list) {
608 f = list_entry(iter, struct o2hb_callback_func, hc_item);
609 mlog(ML_HEARTBEAT, "calling funcs %p\n", f);
610 (f->hc_func)(node, idx, f->hc_data);
611 }
612}
613
614/* Will run the list in order until we process the passed event */
615static void o2hb_run_event_list(struct o2hb_node_event *queued_event)
616{
617 int empty;
618 struct o2hb_callback *hbcall;
619 struct o2hb_node_event *event;
620
621 spin_lock(&o2hb_live_lock);
622 empty = list_empty(&queued_event->hn_item);
623 spin_unlock(&o2hb_live_lock);
624 if (empty)
625 return;
626
627 /* Holding callback sem assures we don't alter the callback
628 * lists when doing this, and serializes ourselves with other
629 * processes wanting callbacks. */
630 down_write(&o2hb_callback_sem);
631
632 spin_lock(&o2hb_live_lock);
633 while (!list_empty(&o2hb_node_events)
634 && !list_empty(&queued_event->hn_item)) {
635 event = list_entry(o2hb_node_events.next,
636 struct o2hb_node_event,
637 hn_item);
638 list_del_init(&event->hn_item);
639 spin_unlock(&o2hb_live_lock);
640
641 mlog(ML_HEARTBEAT, "Node %s event for %d\n",
642 event->hn_event_type == O2HB_NODE_UP_CB ? "UP" : "DOWN",
643 event->hn_node_num);
644
645 hbcall = hbcall_from_type(event->hn_event_type);
646
647 /* We should *never* have gotten on to the list with a
648 * bad type... This isn't something that we should try
649 * to recover from. */
650 BUG_ON(IS_ERR(hbcall));
651
652 o2hb_fire_callbacks(hbcall, event->hn_node, event->hn_node_num);
653
654 spin_lock(&o2hb_live_lock);
655 }
656 spin_unlock(&o2hb_live_lock);
657
658 up_write(&o2hb_callback_sem);
659}
660
661static void o2hb_queue_node_event(struct o2hb_node_event *event,
662 enum o2hb_callback_type type,
663 struct o2nm_node *node,
664 int node_num)
665{
666 assert_spin_locked(&o2hb_live_lock);
667
0e105d37
SM
668 BUG_ON((!node) && (type != O2HB_NODE_DOWN_CB));
669
a7f6a5fb
MF
670 event->hn_event_type = type;
671 event->hn_node = node;
672 event->hn_node_num = node_num;
673
674 mlog(ML_HEARTBEAT, "Queue node %s event for node %d\n",
675 type == O2HB_NODE_UP_CB ? "UP" : "DOWN", node_num);
676
677 list_add_tail(&event->hn_item, &o2hb_node_events);
678}
679
680static void o2hb_shutdown_slot(struct o2hb_disk_slot *slot)
681{
682 struct o2hb_node_event event =
683 { .hn_item = LIST_HEAD_INIT(event.hn_item), };
684 struct o2nm_node *node;
685
686 node = o2nm_get_node_by_num(slot->ds_node_num);
687 if (!node)
688 return;
689
690 spin_lock(&o2hb_live_lock);
691 if (!list_empty(&slot->ds_live_item)) {
692 mlog(ML_HEARTBEAT, "Shutdown, node %d leaves region\n",
693 slot->ds_node_num);
694
695 list_del_init(&slot->ds_live_item);
696
697 if (list_empty(&o2hb_live_slots[slot->ds_node_num])) {
698 clear_bit(slot->ds_node_num, o2hb_live_node_bitmap);
699
700 o2hb_queue_node_event(&event, O2HB_NODE_DOWN_CB, node,
701 slot->ds_node_num);
702 }
703 }
704 spin_unlock(&o2hb_live_lock);
705
706 o2hb_run_event_list(&event);
707
708 o2nm_node_put(node);
709}
710
43182d2a
SM
711static void o2hb_set_quorum_device(struct o2hb_region *reg,
712 struct o2hb_disk_slot *slot)
713{
714 assert_spin_locked(&o2hb_live_lock);
715
716 if (!o2hb_global_heartbeat_active())
717 return;
718
719 if (test_bit(reg->hr_region_num, o2hb_quorum_region_bitmap))
720 return;
721
722 /*
723 * A region can be added to the quorum only when it sees all
724 * live nodes heartbeat on it. In other words, the region has been
725 * added to all nodes.
726 */
727 if (memcmp(reg->hr_live_node_bitmap, o2hb_live_node_bitmap,
728 sizeof(o2hb_live_node_bitmap)))
729 return;
730
731 if (slot->ds_changed_samples < O2HB_LIVE_THRESHOLD)
732 return;
733
734 printk(KERN_NOTICE "o2hb: Region %s is now a quorum device\n",
735 config_item_name(&reg->hr_item));
736
737 set_bit(reg->hr_region_num, o2hb_quorum_region_bitmap);
58a3158a
SM
738
739 /*
740 * If global heartbeat active, unpin all regions if the
741 * region count > CUT_OFF
742 */
743 if (o2hb_pop_count(&o2hb_quorum_region_bitmap,
744 O2NM_MAX_REGIONS) > O2HB_PIN_CUT_OFF)
745 o2hb_region_unpin(NULL);
43182d2a
SM
746}
747
a7f6a5fb
MF
748static int o2hb_check_slot(struct o2hb_region *reg,
749 struct o2hb_disk_slot *slot)
750{
751 int changed = 0, gen_changed = 0;
752 struct o2hb_node_event event =
753 { .hn_item = LIST_HEAD_INIT(event.hn_item), };
754 struct o2nm_node *node;
755 struct o2hb_disk_heartbeat_block *hb_block = reg->hr_tmp_block;
756 u64 cputime;
0db638f4
MF
757 unsigned int dead_ms = o2hb_dead_threshold * O2HB_REGION_TIMEOUT_MS;
758 unsigned int slot_dead_ms;
0e105d37 759 int tmp;
a7f6a5fb
MF
760
761 memcpy(hb_block, slot->ds_raw_block, reg->hr_block_bytes);
762
0e105d37
SM
763 /*
764 * If a node is no longer configured but is still in the livemap, we
765 * may need to clear that bit from the livemap.
766 */
a7f6a5fb 767 node = o2nm_get_node_by_num(slot->ds_node_num);
0e105d37
SM
768 if (!node) {
769 spin_lock(&o2hb_live_lock);
770 tmp = test_bit(slot->ds_node_num, o2hb_live_node_bitmap);
771 spin_unlock(&o2hb_live_lock);
772 if (!tmp)
773 return 0;
774 }
a7f6a5fb
MF
775
776 if (!o2hb_verify_crc(reg, hb_block)) {
777 /* all paths from here will drop o2hb_live_lock for
778 * us. */
779 spin_lock(&o2hb_live_lock);
780
781 /* Don't print an error on the console in this case -
782 * a freshly formatted heartbeat area will not have a
783 * crc set on it. */
784 if (list_empty(&slot->ds_live_item))
785 goto out;
786
787 /* The node is live but pushed out a bad crc. We
788 * consider it a transient miss but don't populate any
789 * other values as they may be junk. */
790 mlog(ML_ERROR, "Node %d has written a bad crc to %s\n",
791 slot->ds_node_num, reg->hr_dev_name);
792 o2hb_dump_slot(hb_block);
793
794 slot->ds_equal_samples++;
795 goto fire_callbacks;
796 }
797
798 /* we don't care if these wrap.. the state transitions below
799 * clear at the right places */
800 cputime = le64_to_cpu(hb_block->hb_seq);
801 if (slot->ds_last_time != cputime)
802 slot->ds_changed_samples++;
803 else
804 slot->ds_equal_samples++;
805 slot->ds_last_time = cputime;
806
807 /* The node changed heartbeat generations. We assume this to
808 * mean it dropped off but came back before we timed out. We
809 * want to consider it down for the time being but don't want
810 * to lose any changed_samples state we might build up to
811 * considering it live again. */
812 if (slot->ds_last_generation != le64_to_cpu(hb_block->hb_generation)) {
813 gen_changed = 1;
814 slot->ds_equal_samples = 0;
70bacbdb
MF
815 mlog(ML_HEARTBEAT, "Node %d changed generation (0x%llx "
816 "to 0x%llx)\n", slot->ds_node_num,
817 (long long)slot->ds_last_generation,
818 (long long)le64_to_cpu(hb_block->hb_generation));
a7f6a5fb
MF
819 }
820
821 slot->ds_last_generation = le64_to_cpu(hb_block->hb_generation);
822
70bacbdb
MF
823 mlog(ML_HEARTBEAT, "Slot %d gen 0x%llx cksum 0x%x "
824 "seq %llu last %llu changed %u equal %u\n",
825 slot->ds_node_num, (long long)slot->ds_last_generation,
826 le32_to_cpu(hb_block->hb_cksum),
2bd63216 827 (unsigned long long)le64_to_cpu(hb_block->hb_seq),
70bacbdb 828 (unsigned long long)slot->ds_last_time, slot->ds_changed_samples,
a7f6a5fb
MF
829 slot->ds_equal_samples);
830
831 spin_lock(&o2hb_live_lock);
832
833fire_callbacks:
834 /* dead nodes only come to life after some number of
835 * changes at any time during their dead time */
836 if (list_empty(&slot->ds_live_item) &&
837 slot->ds_changed_samples >= O2HB_LIVE_THRESHOLD) {
70bacbdb
MF
838 mlog(ML_HEARTBEAT, "Node %d (id 0x%llx) joined my region\n",
839 slot->ds_node_num, (long long)slot->ds_last_generation);
a7f6a5fb 840
823a637a
SM
841 set_bit(slot->ds_node_num, reg->hr_live_node_bitmap);
842
a7f6a5fb
MF
843 /* first on the list generates a callback */
844 if (list_empty(&o2hb_live_slots[slot->ds_node_num])) {
d6aa1c7c
SM
845 mlog(ML_HEARTBEAT, "o2hb: Add node %d to live nodes "
846 "bitmap\n", slot->ds_node_num);
a7f6a5fb
MF
847 set_bit(slot->ds_node_num, o2hb_live_node_bitmap);
848
849 o2hb_queue_node_event(&event, O2HB_NODE_UP_CB, node,
850 slot->ds_node_num);
851
852 changed = 1;
853 }
854
855 list_add_tail(&slot->ds_live_item,
856 &o2hb_live_slots[slot->ds_node_num]);
857
858 slot->ds_equal_samples = 0;
0db638f4
MF
859
860 /* We want to be sure that all nodes agree on the
861 * number of milliseconds before a node will be
862 * considered dead. The self-fencing timeout is
863 * computed from this value, and a discrepancy might
864 * result in heartbeat calling a node dead when it
865 * hasn't self-fenced yet. */
866 slot_dead_ms = le32_to_cpu(hb_block->hb_dead_ms);
867 if (slot_dead_ms && slot_dead_ms != dead_ms) {
868 /* TODO: Perhaps we can fail the region here. */
869 mlog(ML_ERROR, "Node %d on device %s has a dead count "
870 "of %u ms, but our count is %u ms.\n"
871 "Please double check your configuration values "
872 "for 'O2CB_HEARTBEAT_THRESHOLD'\n",
873 slot->ds_node_num, reg->hr_dev_name, slot_dead_ms,
874 dead_ms);
875 }
a7f6a5fb
MF
876 goto out;
877 }
878
879 /* if the list is dead, we're done.. */
880 if (list_empty(&slot->ds_live_item))
881 goto out;
882
883 /* live nodes only go dead after enough consequtive missed
884 * samples.. reset the missed counter whenever we see
885 * activity */
886 if (slot->ds_equal_samples >= o2hb_dead_threshold || gen_changed) {
887 mlog(ML_HEARTBEAT, "Node %d left my region\n",
888 slot->ds_node_num);
889
823a637a
SM
890 clear_bit(slot->ds_node_num, reg->hr_live_node_bitmap);
891
a7f6a5fb
MF
892 /* last off the live_slot generates a callback */
893 list_del_init(&slot->ds_live_item);
894 if (list_empty(&o2hb_live_slots[slot->ds_node_num])) {
d6aa1c7c
SM
895 mlog(ML_HEARTBEAT, "o2hb: Remove node %d from live "
896 "nodes bitmap\n", slot->ds_node_num);
a7f6a5fb
MF
897 clear_bit(slot->ds_node_num, o2hb_live_node_bitmap);
898
0e105d37
SM
899 /* node can be null */
900 o2hb_queue_node_event(&event, O2HB_NODE_DOWN_CB,
901 node, slot->ds_node_num);
a7f6a5fb
MF
902
903 changed = 1;
904 }
905
906 /* We don't clear this because the node is still
907 * actually writing new blocks. */
908 if (!gen_changed)
909 slot->ds_changed_samples = 0;
910 goto out;
911 }
912 if (slot->ds_changed_samples) {
913 slot->ds_changed_samples = 0;
914 slot->ds_equal_samples = 0;
915 }
916out:
43182d2a
SM
917 o2hb_set_quorum_device(reg, slot);
918
a7f6a5fb
MF
919 spin_unlock(&o2hb_live_lock);
920
921 o2hb_run_event_list(&event);
922
0e105d37
SM
923 if (node)
924 o2nm_node_put(node);
a7f6a5fb
MF
925 return changed;
926}
927
928/* This could be faster if we just implmented a find_last_bit, but I
929 * don't think the circumstances warrant it. */
930static int o2hb_highest_node(unsigned long *nodes,
931 int numbits)
932{
933 int highest, node;
934
935 highest = numbits;
936 node = -1;
937 while ((node = find_next_bit(nodes, numbits, node + 1)) != -1) {
938 if (node >= numbits)
939 break;
940
941 highest = node;
942 }
943
944 return highest;
945}
946
a9e2ae39 947static int o2hb_do_disk_heartbeat(struct o2hb_region *reg)
a7f6a5fb
MF
948{
949 int i, ret, highest_node, change = 0;
950 unsigned long configured_nodes[BITS_TO_LONGS(O2NM_MAX_NODES)];
0e105d37 951 unsigned long live_node_bitmap[BITS_TO_LONGS(O2NM_MAX_NODES)];
a7f6a5fb
MF
952 struct o2hb_bio_wait_ctxt write_wc;
953
a9e2ae39
MF
954 ret = o2nm_configured_node_map(configured_nodes,
955 sizeof(configured_nodes));
956 if (ret) {
957 mlog_errno(ret);
958 return ret;
959 }
a7f6a5fb 960
0e105d37
SM
961 /*
962 * If a node is not configured but is in the livemap, we still need
963 * to read the slot so as to be able to remove it from the livemap.
964 */
965 o2hb_fill_node_map(live_node_bitmap, sizeof(live_node_bitmap));
966 i = -1;
967 while ((i = find_next_bit(live_node_bitmap,
968 O2NM_MAX_NODES, i + 1)) < O2NM_MAX_NODES) {
969 set_bit(i, configured_nodes);
970 }
971
a7f6a5fb
MF
972 highest_node = o2hb_highest_node(configured_nodes, O2NM_MAX_NODES);
973 if (highest_node >= O2NM_MAX_NODES) {
974 mlog(ML_NOTICE, "ocfs2_heartbeat: no configured nodes found!\n");
a9e2ae39 975 return -EINVAL;
a7f6a5fb
MF
976 }
977
978 /* No sense in reading the slots of nodes that don't exist
979 * yet. Of course, if the node definitions have holes in them
980 * then we're reading an empty slot anyway... Consider this
981 * best-effort. */
982 ret = o2hb_read_slots(reg, highest_node + 1);
983 if (ret < 0) {
984 mlog_errno(ret);
a9e2ae39 985 return ret;
a7f6a5fb
MF
986 }
987
988 /* With an up to date view of the slots, we can check that no
989 * other node has been improperly configured to heartbeat in
990 * our slot. */
991 if (!o2hb_check_last_timestamp(reg))
992 mlog(ML_ERROR, "Device \"%s\": another node is heartbeating "
993 "in our slot!\n", reg->hr_dev_name);
994
995 /* fill in the proper info for our next heartbeat */
996 o2hb_prepare_block(reg, reg->hr_generation);
997
998 /* And fire off the write. Note that we don't wait on this I/O
999 * until later. */
b559292e 1000 ret = o2hb_issue_node_write(reg, &write_wc);
a7f6a5fb
MF
1001 if (ret < 0) {
1002 mlog_errno(ret);
a9e2ae39 1003 return ret;
a7f6a5fb
MF
1004 }
1005
1006 i = -1;
1007 while((i = find_next_bit(configured_nodes, O2NM_MAX_NODES, i + 1)) < O2NM_MAX_NODES) {
1008
1009 change |= o2hb_check_slot(reg, &reg->hr_slots[i]);
1010 }
1011
1012 /*
1013 * We have to be sure we've advertised ourselves on disk
1014 * before we can go to steady state. This ensures that
1015 * people we find in our steady state have seen us.
1016 */
1017 o2hb_wait_on_io(reg, &write_wc);
a9e2ae39
MF
1018 if (write_wc.wc_error) {
1019 /* Do not re-arm the write timeout on I/O error - we
1020 * can't be sure that the new block ever made it to
1021 * disk */
1022 mlog(ML_ERROR, "Write error %d on device \"%s\"\n",
1023 write_wc.wc_error, reg->hr_dev_name);
1024 return write_wc.wc_error;
1025 }
1026
a7f6a5fb
MF
1027 o2hb_arm_write_timeout(reg);
1028
1029 /* let the person who launched us know when things are steady */
1030 if (!change && (atomic_read(&reg->hr_steady_iterations) != 0)) {
1031 if (atomic_dec_and_test(&reg->hr_steady_iterations))
1032 wake_up(&o2hb_steady_queue);
1033 }
a9e2ae39
MF
1034
1035 return 0;
a7f6a5fb
MF
1036}
1037
1038/* Subtract b from a, storing the result in a. a *must* have a larger
1039 * value than b. */
1040static void o2hb_tv_subtract(struct timeval *a,
1041 struct timeval *b)
1042{
1043 /* just return 0 when a is after b */
1044 if (a->tv_sec < b->tv_sec ||
1045 (a->tv_sec == b->tv_sec && a->tv_usec < b->tv_usec)) {
1046 a->tv_sec = 0;
1047 a->tv_usec = 0;
1048 return;
1049 }
1050
1051 a->tv_sec -= b->tv_sec;
1052 a->tv_usec -= b->tv_usec;
1053 while ( a->tv_usec < 0 ) {
1054 a->tv_sec--;
1055 a->tv_usec += 1000000;
1056 }
1057}
1058
1059static unsigned int o2hb_elapsed_msecs(struct timeval *start,
1060 struct timeval *end)
1061{
1062 struct timeval res = *end;
1063
1064 o2hb_tv_subtract(&res, start);
1065
1066 return res.tv_sec * 1000 + res.tv_usec / 1000;
1067}
1068
1069/*
1070 * we ride the region ref that the region dir holds. before the region
1071 * dir is removed and drops it ref it will wait to tear down this
1072 * thread.
1073 */
1074static int o2hb_thread(void *data)
1075{
1076 int i, ret;
1077 struct o2hb_region *reg = data;
a7f6a5fb
MF
1078 struct o2hb_bio_wait_ctxt write_wc;
1079 struct timeval before_hb, after_hb;
1080 unsigned int elapsed_msec;
1081
1082 mlog(ML_HEARTBEAT|ML_KTHREAD, "hb thread running\n");
1083
1084 set_user_nice(current, -20);
1085
1086 while (!kthread_should_stop() && !reg->hr_unclean_stop) {
1087 /* We track the time spent inside
025dfdaf 1088 * o2hb_do_disk_heartbeat so that we avoid more than
a7f6a5fb
MF
1089 * hr_timeout_ms between disk writes. On busy systems
1090 * this should result in a heartbeat which is less
1091 * likely to time itself out. */
1092 do_gettimeofday(&before_hb);
1093
a9e2ae39
MF
1094 i = 0;
1095 do {
1096 ret = o2hb_do_disk_heartbeat(reg);
1097 } while (ret && ++i < 2);
a7f6a5fb
MF
1098
1099 do_gettimeofday(&after_hb);
1100 elapsed_msec = o2hb_elapsed_msecs(&before_hb, &after_hb);
1101
b31d308d
TM
1102 mlog(ML_HEARTBEAT,
1103 "start = %lu.%lu, end = %lu.%lu, msec = %u\n",
215c7f9f
MF
1104 before_hb.tv_sec, (unsigned long) before_hb.tv_usec,
1105 after_hb.tv_sec, (unsigned long) after_hb.tv_usec,
1106 elapsed_msec);
a7f6a5fb
MF
1107
1108 if (elapsed_msec < reg->hr_timeout_ms) {
1109 /* the kthread api has blocked signals for us so no
1110 * need to record the return value. */
1111 msleep_interruptible(reg->hr_timeout_ms - elapsed_msec);
1112 }
1113 }
1114
1115 o2hb_disarm_write_timeout(reg);
1116
1117 /* unclean stop is only used in very bad situation */
1118 for(i = 0; !reg->hr_unclean_stop && i < reg->hr_blocks; i++)
1119 o2hb_shutdown_slot(&reg->hr_slots[i]);
1120
1121 /* Explicit down notification - avoid forcing the other nodes
1122 * to timeout on this region when we could just as easily
1123 * write a clear generation - thus indicating to them that
1124 * this node has left this region.
1125 *
1126 * XXX: Should we skip this on unclean_stop? */
1127 o2hb_prepare_block(reg, 0);
b559292e 1128 ret = o2hb_issue_node_write(reg, &write_wc);
a7f6a5fb
MF
1129 if (ret == 0) {
1130 o2hb_wait_on_io(reg, &write_wc);
a7f6a5fb
MF
1131 } else {
1132 mlog_errno(ret);
1133 }
1134
1135 mlog(ML_HEARTBEAT|ML_KTHREAD, "hb thread exiting\n");
1136
1137 return 0;
1138}
1139
87d3d3f3
SM
1140#ifdef CONFIG_DEBUG_FS
1141static int o2hb_debug_open(struct inode *inode, struct file *file)
1142{
8ca8b0bb 1143 struct o2hb_debug_buf *db = inode->i_private;
1f285305 1144 struct o2hb_region *reg;
87d3d3f3
SM
1145 unsigned long map[BITS_TO_LONGS(O2NM_MAX_NODES)];
1146 char *buf = NULL;
1147 int i = -1;
1148 int out = 0;
1149
8ca8b0bb
SM
1150 /* max_nodes should be the largest bitmap we pass here */
1151 BUG_ON(sizeof(map) < db->db_size);
1152
87d3d3f3
SM
1153 buf = kmalloc(PAGE_SIZE, GFP_KERNEL);
1154 if (!buf)
1155 goto bail;
1156
8ca8b0bb
SM
1157 switch (db->db_type) {
1158 case O2HB_DB_TYPE_LIVENODES:
a6de0136
SM
1159 case O2HB_DB_TYPE_LIVEREGIONS:
1160 case O2HB_DB_TYPE_QUORUMREGIONS:
1161 case O2HB_DB_TYPE_FAILEDREGIONS:
8ca8b0bb
SM
1162 spin_lock(&o2hb_live_lock);
1163 memcpy(map, db->db_data, db->db_size);
1164 spin_unlock(&o2hb_live_lock);
1165 break;
87d3d3f3 1166
1f285305
SM
1167 case O2HB_DB_TYPE_REGION_LIVENODES:
1168 spin_lock(&o2hb_live_lock);
1169 reg = (struct o2hb_region *)db->db_data;
1170 memcpy(map, reg->hr_live_node_bitmap, db->db_size);
1171 spin_unlock(&o2hb_live_lock);
1172 break;
1173
1174 case O2HB_DB_TYPE_REGION_NUMBER:
1175 reg = (struct o2hb_region *)db->db_data;
1176 out += snprintf(buf + out, PAGE_SIZE - out, "%d\n",
1177 reg->hr_region_num);
1178 goto done;
1179
43695d09
SM
1180 case O2HB_DB_TYPE_REGION_ELAPSED_TIME:
1181 reg = (struct o2hb_region *)db->db_data;
1182 out += snprintf(buf + out, PAGE_SIZE - out, "%u\n",
1183 jiffies_to_msecs(jiffies -
1184 reg->hr_last_timeout_start));
1185 goto done;
1186
cb0586bd
SM
1187 case O2HB_DB_TYPE_REGION_PINNED:
1188 reg = (struct o2hb_region *)db->db_data;
1189 out += snprintf(buf + out, PAGE_SIZE - out, "%u\n",
1190 !!reg->hr_item_pinned);
1191 goto done;
1192
8ca8b0bb
SM
1193 default:
1194 goto done;
1195 }
1196
1197 while ((i = find_next_bit(map, db->db_len, i + 1)) < db->db_len)
87d3d3f3
SM
1198 out += snprintf(buf + out, PAGE_SIZE - out, "%d ", i);
1199 out += snprintf(buf + out, PAGE_SIZE - out, "\n");
1200
8ca8b0bb 1201done:
87d3d3f3
SM
1202 i_size_write(inode, out);
1203
1204 file->private_data = buf;
1205
1206 return 0;
1207bail:
1208 return -ENOMEM;
1209}
1210
1211static int o2hb_debug_release(struct inode *inode, struct file *file)
1212{
1213 kfree(file->private_data);
1214 return 0;
1215}
1216
1217static ssize_t o2hb_debug_read(struct file *file, char __user *buf,
1218 size_t nbytes, loff_t *ppos)
1219{
1220 return simple_read_from_buffer(buf, nbytes, ppos, file->private_data,
1221 i_size_read(file->f_mapping->host));
1222}
1223#else
1224static int o2hb_debug_open(struct inode *inode, struct file *file)
1225{
1226 return 0;
1227}
1228static int o2hb_debug_release(struct inode *inode, struct file *file)
1229{
1230 return 0;
1231}
1232static ssize_t o2hb_debug_read(struct file *file, char __user *buf,
1233 size_t nbytes, loff_t *ppos)
1234{
1235 return 0;
1236}
1237#endif /* CONFIG_DEBUG_FS */
1238
828c0950 1239static const struct file_operations o2hb_debug_fops = {
87d3d3f3
SM
1240 .open = o2hb_debug_open,
1241 .release = o2hb_debug_release,
1242 .read = o2hb_debug_read,
1243 .llseek = generic_file_llseek,
1244};
1245
1246void o2hb_exit(void)
1247{
8ca8b0bb 1248 kfree(o2hb_db_livenodes);
a6de0136
SM
1249 kfree(o2hb_db_liveregions);
1250 kfree(o2hb_db_quorumregions);
1251 kfree(o2hb_db_failedregions);
1252 debugfs_remove(o2hb_debug_failedregions);
1253 debugfs_remove(o2hb_debug_quorumregions);
1254 debugfs_remove(o2hb_debug_liveregions);
8ca8b0bb
SM
1255 debugfs_remove(o2hb_debug_livenodes);
1256 debugfs_remove(o2hb_debug_dir);
1257}
1258
1259static struct dentry *o2hb_debug_create(const char *name, struct dentry *dir,
1260 struct o2hb_debug_buf **db, int db_len,
1261 int type, int size, int len, void *data)
1262{
1263 *db = kmalloc(db_len, GFP_KERNEL);
1264 if (!*db)
1265 return NULL;
1266
1267 (*db)->db_type = type;
1268 (*db)->db_size = size;
1269 (*db)->db_len = len;
1270 (*db)->db_data = data;
1271
1272 return debugfs_create_file(name, S_IFREG|S_IRUSR, dir, *db,
1273 &o2hb_debug_fops);
1274}
1275
1276static int o2hb_debug_init(void)
1277{
1278 int ret = -ENOMEM;
1279
1280 o2hb_debug_dir = debugfs_create_dir(O2HB_DEBUG_DIR, NULL);
1281 if (!o2hb_debug_dir) {
1282 mlog_errno(ret);
1283 goto bail;
1284 }
1285
1286 o2hb_debug_livenodes = o2hb_debug_create(O2HB_DEBUG_LIVENODES,
1287 o2hb_debug_dir,
1288 &o2hb_db_livenodes,
1289 sizeof(*o2hb_db_livenodes),
1290 O2HB_DB_TYPE_LIVENODES,
1291 sizeof(o2hb_live_node_bitmap),
1292 O2NM_MAX_NODES,
1293 o2hb_live_node_bitmap);
1294 if (!o2hb_debug_livenodes) {
1295 mlog_errno(ret);
1296 goto bail;
1297 }
a6de0136
SM
1298
1299 o2hb_debug_liveregions = o2hb_debug_create(O2HB_DEBUG_LIVEREGIONS,
1300 o2hb_debug_dir,
1301 &o2hb_db_liveregions,
1302 sizeof(*o2hb_db_liveregions),
1303 O2HB_DB_TYPE_LIVEREGIONS,
1304 sizeof(o2hb_live_region_bitmap),
1305 O2NM_MAX_REGIONS,
1306 o2hb_live_region_bitmap);
1307 if (!o2hb_debug_liveregions) {
1308 mlog_errno(ret);
1309 goto bail;
1310 }
1311
1312 o2hb_debug_quorumregions =
1313 o2hb_debug_create(O2HB_DEBUG_QUORUMREGIONS,
1314 o2hb_debug_dir,
1315 &o2hb_db_quorumregions,
1316 sizeof(*o2hb_db_quorumregions),
1317 O2HB_DB_TYPE_QUORUMREGIONS,
1318 sizeof(o2hb_quorum_region_bitmap),
1319 O2NM_MAX_REGIONS,
1320 o2hb_quorum_region_bitmap);
1321 if (!o2hb_debug_quorumregions) {
1322 mlog_errno(ret);
1323 goto bail;
1324 }
1325
1326 o2hb_debug_failedregions =
1327 o2hb_debug_create(O2HB_DEBUG_FAILEDREGIONS,
1328 o2hb_debug_dir,
1329 &o2hb_db_failedregions,
1330 sizeof(*o2hb_db_failedregions),
1331 O2HB_DB_TYPE_FAILEDREGIONS,
1332 sizeof(o2hb_failed_region_bitmap),
1333 O2NM_MAX_REGIONS,
1334 o2hb_failed_region_bitmap);
1335 if (!o2hb_debug_failedregions) {
1336 mlog_errno(ret);
1337 goto bail;
1338 }
1339
8ca8b0bb
SM
1340 ret = 0;
1341bail:
1342 if (ret)
1343 o2hb_exit();
1344
1345 return ret;
87d3d3f3
SM
1346}
1347
1348int o2hb_init(void)
a7f6a5fb
MF
1349{
1350 int i;
1351
1352 for (i = 0; i < ARRAY_SIZE(o2hb_callbacks); i++)
1353 INIT_LIST_HEAD(&o2hb_callbacks[i].list);
1354
1355 for (i = 0; i < ARRAY_SIZE(o2hb_live_slots); i++)
1356 INIT_LIST_HEAD(&o2hb_live_slots[i]);
1357
1358 INIT_LIST_HEAD(&o2hb_node_events);
1359
1360 memset(o2hb_live_node_bitmap, 0, sizeof(o2hb_live_node_bitmap));
536f0741 1361 memset(o2hb_region_bitmap, 0, sizeof(o2hb_region_bitmap));
e7d656ba 1362 memset(o2hb_live_region_bitmap, 0, sizeof(o2hb_live_region_bitmap));
43182d2a 1363 memset(o2hb_quorum_region_bitmap, 0, sizeof(o2hb_quorum_region_bitmap));
b1c5ebfb 1364 memset(o2hb_failed_region_bitmap, 0, sizeof(o2hb_failed_region_bitmap));
87d3d3f3 1365
58a3158a
SM
1366 o2hb_dependent_users = 0;
1367
8ca8b0bb 1368 return o2hb_debug_init();
a7f6a5fb
MF
1369}
1370
1371/* if we're already in a callback then we're already serialized by the sem */
1372static void o2hb_fill_node_map_from_callback(unsigned long *map,
1373 unsigned bytes)
1374{
1375 BUG_ON(bytes < (BITS_TO_LONGS(O2NM_MAX_NODES) * sizeof(unsigned long)));
1376
1377 memcpy(map, &o2hb_live_node_bitmap, bytes);
1378}
1379
1380/*
1381 * get a map of all nodes that are heartbeating in any regions
1382 */
1383void o2hb_fill_node_map(unsigned long *map, unsigned bytes)
1384{
1385 /* callers want to serialize this map and callbacks so that they
1386 * can trust that they don't miss nodes coming to the party */
1387 down_read(&o2hb_callback_sem);
1388 spin_lock(&o2hb_live_lock);
1389 o2hb_fill_node_map_from_callback(map, bytes);
1390 spin_unlock(&o2hb_live_lock);
1391 up_read(&o2hb_callback_sem);
1392}
1393EXPORT_SYMBOL_GPL(o2hb_fill_node_map);
1394
1395/*
1396 * heartbeat configfs bits. The heartbeat set is a default set under
1397 * the cluster set in nodemanager.c.
1398 */
1399
1400static struct o2hb_region *to_o2hb_region(struct config_item *item)
1401{
1402 return item ? container_of(item, struct o2hb_region, hr_item) : NULL;
1403}
1404
1405/* drop_item only drops its ref after killing the thread, nothing should
1406 * be using the region anymore. this has to clean up any state that
1407 * attributes might have built up. */
1408static void o2hb_region_release(struct config_item *item)
1409{
1410 int i;
1411 struct page *page;
1412 struct o2hb_region *reg = to_o2hb_region(item);
1413
1414 if (reg->hr_tmp_block)
1415 kfree(reg->hr_tmp_block);
1416
1417 if (reg->hr_slot_data) {
1418 for (i = 0; i < reg->hr_num_pages; i++) {
1419 page = reg->hr_slot_data[i];
1420 if (page)
1421 __free_page(page);
1422 }
1423 kfree(reg->hr_slot_data);
1424 }
1425
1426 if (reg->hr_bdev)
9a1c3542 1427 blkdev_put(reg->hr_bdev, FMODE_READ|FMODE_WRITE);
a7f6a5fb
MF
1428
1429 if (reg->hr_slots)
1430 kfree(reg->hr_slots);
1431
1f285305
SM
1432 kfree(reg->hr_db_regnum);
1433 kfree(reg->hr_db_livenodes);
1434 debugfs_remove(reg->hr_debug_livenodes);
1435 debugfs_remove(reg->hr_debug_regnum);
d4396eaf 1436 debugfs_remove(reg->hr_debug_elapsed_time);
cb0586bd 1437 debugfs_remove(reg->hr_debug_pinned);
1f285305
SM
1438 debugfs_remove(reg->hr_debug_dir);
1439
a7f6a5fb
MF
1440 spin_lock(&o2hb_live_lock);
1441 list_del(&reg->hr_all_item);
1442 spin_unlock(&o2hb_live_lock);
1443
1444 kfree(reg);
1445}
1446
1447static int o2hb_read_block_input(struct o2hb_region *reg,
1448 const char *page,
1449 size_t count,
1450 unsigned long *ret_bytes,
1451 unsigned int *ret_bits)
1452{
1453 unsigned long bytes;
1454 char *p = (char *)page;
1455
1456 bytes = simple_strtoul(p, &p, 0);
1457 if (!p || (*p && (*p != '\n')))
1458 return -EINVAL;
1459
1460 /* Heartbeat and fs min / max block sizes are the same. */
1461 if (bytes > 4096 || bytes < 512)
1462 return -ERANGE;
1463 if (hweight16(bytes) != 1)
1464 return -EINVAL;
1465
1466 if (ret_bytes)
1467 *ret_bytes = bytes;
1468 if (ret_bits)
1469 *ret_bits = ffs(bytes) - 1;
1470
1471 return 0;
1472}
1473
1474static ssize_t o2hb_region_block_bytes_read(struct o2hb_region *reg,
1475 char *page)
1476{
1477 return sprintf(page, "%u\n", reg->hr_block_bytes);
1478}
1479
1480static ssize_t o2hb_region_block_bytes_write(struct o2hb_region *reg,
1481 const char *page,
1482 size_t count)
1483{
1484 int status;
1485 unsigned long block_bytes;
1486 unsigned int block_bits;
1487
1488 if (reg->hr_bdev)
1489 return -EINVAL;
1490
1491 status = o2hb_read_block_input(reg, page, count,
1492 &block_bytes, &block_bits);
1493 if (status)
1494 return status;
1495
1496 reg->hr_block_bytes = (unsigned int)block_bytes;
1497 reg->hr_block_bits = block_bits;
1498
1499 return count;
1500}
1501
1502static ssize_t o2hb_region_start_block_read(struct o2hb_region *reg,
1503 char *page)
1504{
1505 return sprintf(page, "%llu\n", reg->hr_start_block);
1506}
1507
1508static ssize_t o2hb_region_start_block_write(struct o2hb_region *reg,
1509 const char *page,
1510 size_t count)
1511{
1512 unsigned long long tmp;
1513 char *p = (char *)page;
1514
1515 if (reg->hr_bdev)
1516 return -EINVAL;
1517
1518 tmp = simple_strtoull(p, &p, 0);
1519 if (!p || (*p && (*p != '\n')))
1520 return -EINVAL;
1521
1522 reg->hr_start_block = tmp;
1523
1524 return count;
1525}
1526
1527static ssize_t o2hb_region_blocks_read(struct o2hb_region *reg,
1528 char *page)
1529{
1530 return sprintf(page, "%d\n", reg->hr_blocks);
1531}
1532
1533static ssize_t o2hb_region_blocks_write(struct o2hb_region *reg,
1534 const char *page,
1535 size_t count)
1536{
1537 unsigned long tmp;
1538 char *p = (char *)page;
1539
1540 if (reg->hr_bdev)
1541 return -EINVAL;
1542
1543 tmp = simple_strtoul(p, &p, 0);
1544 if (!p || (*p && (*p != '\n')))
1545 return -EINVAL;
1546
1547 if (tmp > O2NM_MAX_NODES || tmp == 0)
1548 return -ERANGE;
1549
1550 reg->hr_blocks = (unsigned int)tmp;
1551
1552 return count;
1553}
1554
1555static ssize_t o2hb_region_dev_read(struct o2hb_region *reg,
1556 char *page)
1557{
1558 unsigned int ret = 0;
1559
1560 if (reg->hr_bdev)
1561 ret = sprintf(page, "%s\n", reg->hr_dev_name);
1562
1563 return ret;
1564}
1565
1566static void o2hb_init_region_params(struct o2hb_region *reg)
1567{
1568 reg->hr_slots_per_page = PAGE_CACHE_SIZE >> reg->hr_block_bits;
1569 reg->hr_timeout_ms = O2HB_REGION_TIMEOUT_MS;
1570
1571 mlog(ML_HEARTBEAT, "hr_start_block = %llu, hr_blocks = %u\n",
1572 reg->hr_start_block, reg->hr_blocks);
1573 mlog(ML_HEARTBEAT, "hr_block_bytes = %u, hr_block_bits = %u\n",
1574 reg->hr_block_bytes, reg->hr_block_bits);
1575 mlog(ML_HEARTBEAT, "hr_timeout_ms = %u\n", reg->hr_timeout_ms);
1576 mlog(ML_HEARTBEAT, "dead threshold = %u\n", o2hb_dead_threshold);
1577}
1578
1579static int o2hb_map_slot_data(struct o2hb_region *reg)
1580{
1581 int i, j;
1582 unsigned int last_slot;
1583 unsigned int spp = reg->hr_slots_per_page;
1584 struct page *page;
1585 char *raw;
1586 struct o2hb_disk_slot *slot;
1587
1588 reg->hr_tmp_block = kmalloc(reg->hr_block_bytes, GFP_KERNEL);
1589 if (reg->hr_tmp_block == NULL) {
1590 mlog_errno(-ENOMEM);
1591 return -ENOMEM;
1592 }
1593
1594 reg->hr_slots = kcalloc(reg->hr_blocks,
1595 sizeof(struct o2hb_disk_slot), GFP_KERNEL);
1596 if (reg->hr_slots == NULL) {
1597 mlog_errno(-ENOMEM);
1598 return -ENOMEM;
1599 }
1600
1601 for(i = 0; i < reg->hr_blocks; i++) {
1602 slot = &reg->hr_slots[i];
1603 slot->ds_node_num = i;
1604 INIT_LIST_HEAD(&slot->ds_live_item);
1605 slot->ds_raw_block = NULL;
1606 }
1607
1608 reg->hr_num_pages = (reg->hr_blocks + spp - 1) / spp;
1609 mlog(ML_HEARTBEAT, "Going to require %u pages to cover %u blocks "
1610 "at %u blocks per page\n",
1611 reg->hr_num_pages, reg->hr_blocks, spp);
1612
1613 reg->hr_slot_data = kcalloc(reg->hr_num_pages, sizeof(struct page *),
1614 GFP_KERNEL);
1615 if (!reg->hr_slot_data) {
1616 mlog_errno(-ENOMEM);
1617 return -ENOMEM;
1618 }
1619
1620 for(i = 0; i < reg->hr_num_pages; i++) {
1621 page = alloc_page(GFP_KERNEL);
1622 if (!page) {
1623 mlog_errno(-ENOMEM);
1624 return -ENOMEM;
1625 }
1626
1627 reg->hr_slot_data[i] = page;
1628
1629 last_slot = i * spp;
1630 raw = page_address(page);
1631 for (j = 0;
1632 (j < spp) && ((j + last_slot) < reg->hr_blocks);
1633 j++) {
1634 BUG_ON((j + last_slot) >= reg->hr_blocks);
1635
1636 slot = &reg->hr_slots[j + last_slot];
1637 slot->ds_raw_block =
1638 (struct o2hb_disk_heartbeat_block *) raw;
1639
1640 raw += reg->hr_block_bytes;
1641 }
1642 }
1643
1644 return 0;
1645}
1646
1647/* Read in all the slots available and populate the tracking
1648 * structures so that we can start with a baseline idea of what's
1649 * there. */
1650static int o2hb_populate_slot_data(struct o2hb_region *reg)
1651{
1652 int ret, i;
1653 struct o2hb_disk_slot *slot;
1654 struct o2hb_disk_heartbeat_block *hb_block;
1655
1656 mlog_entry_void();
1657
1658 ret = o2hb_read_slots(reg, reg->hr_blocks);
1659 if (ret) {
1660 mlog_errno(ret);
1661 goto out;
1662 }
1663
1664 /* We only want to get an idea of the values initially in each
1665 * slot, so we do no verification - o2hb_check_slot will
1666 * actually determine if each configured slot is valid and
1667 * whether any values have changed. */
1668 for(i = 0; i < reg->hr_blocks; i++) {
1669 slot = &reg->hr_slots[i];
1670 hb_block = (struct o2hb_disk_heartbeat_block *) slot->ds_raw_block;
1671
1672 /* Only fill the values that o2hb_check_slot uses to
1673 * determine changing slots */
1674 slot->ds_last_time = le64_to_cpu(hb_block->hb_seq);
1675 slot->ds_last_generation = le64_to_cpu(hb_block->hb_generation);
1676 }
1677
1678out:
1679 mlog_exit(ret);
1680 return ret;
1681}
1682
1683/* this is acting as commit; we set up all of hr_bdev and hr_task or nothing */
1684static ssize_t o2hb_region_dev_write(struct o2hb_region *reg,
1685 const char *page,
1686 size_t count)
1687{
e6c352db 1688 struct task_struct *hb_task;
a7f6a5fb
MF
1689 long fd;
1690 int sectsize;
1691 char *p = (char *)page;
1692 struct file *filp = NULL;
1693 struct inode *inode = NULL;
1694 ssize_t ret = -EINVAL;
1695
1696 if (reg->hr_bdev)
1697 goto out;
1698
1699 /* We can't heartbeat without having had our node number
1700 * configured yet. */
1701 if (o2nm_this_node() == O2NM_MAX_NODES)
1702 goto out;
1703
1704 fd = simple_strtol(p, &p, 0);
1705 if (!p || (*p && (*p != '\n')))
1706 goto out;
1707
1708 if (fd < 0 || fd >= INT_MAX)
1709 goto out;
1710
1711 filp = fget(fd);
1712 if (filp == NULL)
1713 goto out;
1714
1715 if (reg->hr_blocks == 0 || reg->hr_start_block == 0 ||
1716 reg->hr_block_bytes == 0)
1717 goto out;
1718
1719 inode = igrab(filp->f_mapping->host);
1720 if (inode == NULL)
1721 goto out;
1722
1723 if (!S_ISBLK(inode->i_mode))
1724 goto out;
1725
1726 reg->hr_bdev = I_BDEV(filp->f_mapping->host);
572c4892 1727 ret = blkdev_get(reg->hr_bdev, FMODE_WRITE | FMODE_READ);
a7f6a5fb
MF
1728 if (ret) {
1729 reg->hr_bdev = NULL;
1730 goto out;
1731 }
1732 inode = NULL;
1733
1734 bdevname(reg->hr_bdev, reg->hr_dev_name);
1735
e1defc4f 1736 sectsize = bdev_logical_block_size(reg->hr_bdev);
a7f6a5fb
MF
1737 if (sectsize != reg->hr_block_bytes) {
1738 mlog(ML_ERROR,
1739 "blocksize %u incorrect for device, expected %d",
1740 reg->hr_block_bytes, sectsize);
1741 ret = -EINVAL;
1742 goto out;
1743 }
1744
1745 o2hb_init_region_params(reg);
1746
1747 /* Generation of zero is invalid */
1748 do {
1749 get_random_bytes(&reg->hr_generation,
1750 sizeof(reg->hr_generation));
1751 } while (reg->hr_generation == 0);
1752
1753 ret = o2hb_map_slot_data(reg);
1754 if (ret) {
1755 mlog_errno(ret);
1756 goto out;
1757 }
1758
1759 ret = o2hb_populate_slot_data(reg);
1760 if (ret) {
1761 mlog_errno(ret);
1762 goto out;
1763 }
1764
c4028958 1765 INIT_DELAYED_WORK(&reg->hr_write_timeout_work, o2hb_write_timeout);
a7f6a5fb
MF
1766
1767 /*
1768 * A node is considered live after it has beat LIVE_THRESHOLD
1769 * times. We're not steady until we've given them a chance
1770 * _after_ our first read.
1771 */
1772 atomic_set(&reg->hr_steady_iterations, O2HB_LIVE_THRESHOLD + 1);
1773
e6c352db
JB
1774 hb_task = kthread_run(o2hb_thread, reg, "o2hb-%s",
1775 reg->hr_item.ci_name);
1776 if (IS_ERR(hb_task)) {
1777 ret = PTR_ERR(hb_task);
a7f6a5fb 1778 mlog_errno(ret);
a7f6a5fb
MF
1779 goto out;
1780 }
1781
e6c352db
JB
1782 spin_lock(&o2hb_live_lock);
1783 reg->hr_task = hb_task;
1784 spin_unlock(&o2hb_live_lock);
1785
a7f6a5fb
MF
1786 ret = wait_event_interruptible(o2hb_steady_queue,
1787 atomic_read(&reg->hr_steady_iterations) == 0);
1788 if (ret) {
e6df3a66 1789 /* We got interrupted (hello ptrace!). Clean up */
e6c352db
JB
1790 spin_lock(&o2hb_live_lock);
1791 hb_task = reg->hr_task;
a7f6a5fb 1792 reg->hr_task = NULL;
e6c352db
JB
1793 spin_unlock(&o2hb_live_lock);
1794
1795 if (hb_task)
1796 kthread_stop(hb_task);
a7f6a5fb
MF
1797 goto out;
1798 }
1799
e6df3a66
JB
1800 /* Ok, we were woken. Make sure it wasn't by drop_item() */
1801 spin_lock(&o2hb_live_lock);
1802 hb_task = reg->hr_task;
e7d656ba
SM
1803 if (o2hb_global_heartbeat_active())
1804 set_bit(reg->hr_region_num, o2hb_live_region_bitmap);
e6df3a66
JB
1805 spin_unlock(&o2hb_live_lock);
1806
1807 if (hb_task)
1808 ret = count;
1809 else
1810 ret = -EIO;
1811
18c50cb0
SM
1812 if (hb_task && o2hb_global_heartbeat_active())
1813 printk(KERN_NOTICE "o2hb: Heartbeat started on region %s\n",
1814 config_item_name(&reg->hr_item));
1815
a7f6a5fb
MF
1816out:
1817 if (filp)
1818 fput(filp);
1819 if (inode)
1820 iput(inode);
1821 if (ret < 0) {
1822 if (reg->hr_bdev) {
9a1c3542 1823 blkdev_put(reg->hr_bdev, FMODE_READ|FMODE_WRITE);
a7f6a5fb
MF
1824 reg->hr_bdev = NULL;
1825 }
1826 }
1827 return ret;
1828}
1829
92efc152
ZW
1830static ssize_t o2hb_region_pid_read(struct o2hb_region *reg,
1831 char *page)
1832{
e6c352db
JB
1833 pid_t pid = 0;
1834
1835 spin_lock(&o2hb_live_lock);
1836 if (reg->hr_task)
ba25f9dc 1837 pid = task_pid_nr(reg->hr_task);
e6c352db
JB
1838 spin_unlock(&o2hb_live_lock);
1839
1840 if (!pid)
92efc152
ZW
1841 return 0;
1842
e6c352db 1843 return sprintf(page, "%u\n", pid);
92efc152
ZW
1844}
1845
a7f6a5fb
MF
1846struct o2hb_region_attribute {
1847 struct configfs_attribute attr;
1848 ssize_t (*show)(struct o2hb_region *, char *);
1849 ssize_t (*store)(struct o2hb_region *, const char *, size_t);
1850};
1851
1852static struct o2hb_region_attribute o2hb_region_attr_block_bytes = {
1853 .attr = { .ca_owner = THIS_MODULE,
1854 .ca_name = "block_bytes",
1855 .ca_mode = S_IRUGO | S_IWUSR },
1856 .show = o2hb_region_block_bytes_read,
1857 .store = o2hb_region_block_bytes_write,
1858};
1859
1860static struct o2hb_region_attribute o2hb_region_attr_start_block = {
1861 .attr = { .ca_owner = THIS_MODULE,
1862 .ca_name = "start_block",
1863 .ca_mode = S_IRUGO | S_IWUSR },
1864 .show = o2hb_region_start_block_read,
1865 .store = o2hb_region_start_block_write,
1866};
1867
1868static struct o2hb_region_attribute o2hb_region_attr_blocks = {
1869 .attr = { .ca_owner = THIS_MODULE,
1870 .ca_name = "blocks",
1871 .ca_mode = S_IRUGO | S_IWUSR },
1872 .show = o2hb_region_blocks_read,
1873 .store = o2hb_region_blocks_write,
1874};
1875
1876static struct o2hb_region_attribute o2hb_region_attr_dev = {
1877 .attr = { .ca_owner = THIS_MODULE,
1878 .ca_name = "dev",
1879 .ca_mode = S_IRUGO | S_IWUSR },
1880 .show = o2hb_region_dev_read,
1881 .store = o2hb_region_dev_write,
1882};
1883
92efc152
ZW
1884static struct o2hb_region_attribute o2hb_region_attr_pid = {
1885 .attr = { .ca_owner = THIS_MODULE,
1886 .ca_name = "pid",
1887 .ca_mode = S_IRUGO | S_IRUSR },
1888 .show = o2hb_region_pid_read,
1889};
1890
a7f6a5fb
MF
1891static struct configfs_attribute *o2hb_region_attrs[] = {
1892 &o2hb_region_attr_block_bytes.attr,
1893 &o2hb_region_attr_start_block.attr,
1894 &o2hb_region_attr_blocks.attr,
1895 &o2hb_region_attr_dev.attr,
92efc152 1896 &o2hb_region_attr_pid.attr,
a7f6a5fb
MF
1897 NULL,
1898};
1899
1900static ssize_t o2hb_region_show(struct config_item *item,
1901 struct configfs_attribute *attr,
1902 char *page)
1903{
1904 struct o2hb_region *reg = to_o2hb_region(item);
1905 struct o2hb_region_attribute *o2hb_region_attr =
1906 container_of(attr, struct o2hb_region_attribute, attr);
1907 ssize_t ret = 0;
1908
1909 if (o2hb_region_attr->show)
1910 ret = o2hb_region_attr->show(reg, page);
1911 return ret;
1912}
1913
1914static ssize_t o2hb_region_store(struct config_item *item,
1915 struct configfs_attribute *attr,
1916 const char *page, size_t count)
1917{
1918 struct o2hb_region *reg = to_o2hb_region(item);
1919 struct o2hb_region_attribute *o2hb_region_attr =
1920 container_of(attr, struct o2hb_region_attribute, attr);
1921 ssize_t ret = -EINVAL;
1922
1923 if (o2hb_region_attr->store)
1924 ret = o2hb_region_attr->store(reg, page, count);
1925 return ret;
1926}
1927
1928static struct configfs_item_operations o2hb_region_item_ops = {
1929 .release = o2hb_region_release,
1930 .show_attribute = o2hb_region_show,
1931 .store_attribute = o2hb_region_store,
1932};
1933
1934static struct config_item_type o2hb_region_type = {
1935 .ct_item_ops = &o2hb_region_item_ops,
1936 .ct_attrs = o2hb_region_attrs,
1937 .ct_owner = THIS_MODULE,
1938};
1939
1940/* heartbeat set */
1941
1942struct o2hb_heartbeat_group {
1943 struct config_group hs_group;
1944 /* some stuff? */
1945};
1946
1947static struct o2hb_heartbeat_group *to_o2hb_heartbeat_group(struct config_group *group)
1948{
1949 return group ?
1950 container_of(group, struct o2hb_heartbeat_group, hs_group)
1951 : NULL;
1952}
1953
1f285305
SM
1954static int o2hb_debug_region_init(struct o2hb_region *reg, struct dentry *dir)
1955{
1956 int ret = -ENOMEM;
1957
1958 reg->hr_debug_dir =
1959 debugfs_create_dir(config_item_name(&reg->hr_item), dir);
1960 if (!reg->hr_debug_dir) {
1961 mlog_errno(ret);
1962 goto bail;
1963 }
1964
1965 reg->hr_debug_livenodes =
1966 o2hb_debug_create(O2HB_DEBUG_LIVENODES,
1967 reg->hr_debug_dir,
1968 &(reg->hr_db_livenodes),
1969 sizeof(*(reg->hr_db_livenodes)),
1970 O2HB_DB_TYPE_REGION_LIVENODES,
1971 sizeof(reg->hr_live_node_bitmap),
1972 O2NM_MAX_NODES, reg);
1973 if (!reg->hr_debug_livenodes) {
1974 mlog_errno(ret);
1975 goto bail;
1976 }
1977
1978 reg->hr_debug_regnum =
1979 o2hb_debug_create(O2HB_DEBUG_REGION_NUMBER,
1980 reg->hr_debug_dir,
1981 &(reg->hr_db_regnum),
1982 sizeof(*(reg->hr_db_regnum)),
1983 O2HB_DB_TYPE_REGION_NUMBER,
1984 0, O2NM_MAX_NODES, reg);
1985 if (!reg->hr_debug_regnum) {
1986 mlog_errno(ret);
1987 goto bail;
1988 }
1989
43695d09
SM
1990 reg->hr_debug_elapsed_time =
1991 o2hb_debug_create(O2HB_DEBUG_REGION_ELAPSED_TIME,
1992 reg->hr_debug_dir,
1993 &(reg->hr_db_elapsed_time),
1994 sizeof(*(reg->hr_db_elapsed_time)),
1995 O2HB_DB_TYPE_REGION_ELAPSED_TIME,
1996 0, 0, reg);
1997 if (!reg->hr_debug_elapsed_time) {
1998 mlog_errno(ret);
1999 goto bail;
2000 }
2001
cb0586bd
SM
2002 reg->hr_debug_pinned =
2003 o2hb_debug_create(O2HB_DEBUG_REGION_PINNED,
2004 reg->hr_debug_dir,
2005 &(reg->hr_db_pinned),
2006 sizeof(*(reg->hr_db_pinned)),
2007 O2HB_DB_TYPE_REGION_PINNED,
2008 0, 0, reg);
2009 if (!reg->hr_debug_pinned) {
2010 mlog_errno(ret);
2011 goto bail;
2012 }
2013
1f285305
SM
2014 ret = 0;
2015bail:
2016 return ret;
2017}
2018
f89ab861
JB
2019static struct config_item *o2hb_heartbeat_group_make_item(struct config_group *group,
2020 const char *name)
a7f6a5fb
MF
2021{
2022 struct o2hb_region *reg = NULL;
1f285305 2023 int ret;
a7f6a5fb 2024
cd861280 2025 reg = kzalloc(sizeof(struct o2hb_region), GFP_KERNEL);
f89ab861 2026 if (reg == NULL)
a6795e9e 2027 return ERR_PTR(-ENOMEM);
a7f6a5fb 2028
1cf257f5
JS
2029 if (strlen(name) > O2HB_MAX_REGION_NAME_LEN) {
2030 ret = -ENAMETOOLONG;
2031 goto free;
2032 }
b3c85c4c 2033
a7f6a5fb 2034 spin_lock(&o2hb_live_lock);
536f0741
SM
2035 reg->hr_region_num = 0;
2036 if (o2hb_global_heartbeat_active()) {
2037 reg->hr_region_num = find_first_zero_bit(o2hb_region_bitmap,
2038 O2NM_MAX_REGIONS);
2039 if (reg->hr_region_num >= O2NM_MAX_REGIONS) {
2040 spin_unlock(&o2hb_live_lock);
1cf257f5
JS
2041 ret = -EFBIG;
2042 goto free;
536f0741
SM
2043 }
2044 set_bit(reg->hr_region_num, o2hb_region_bitmap);
2045 }
a7f6a5fb
MF
2046 list_add_tail(&reg->hr_all_item, &o2hb_all_regions);
2047 spin_unlock(&o2hb_live_lock);
a7f6a5fb 2048
536f0741
SM
2049 config_item_init_type_name(&reg->hr_item, name, &o2hb_region_type);
2050
1f285305
SM
2051 ret = o2hb_debug_region_init(reg, o2hb_debug_dir);
2052 if (ret) {
2053 config_item_put(&reg->hr_item);
1cf257f5 2054 goto free;
1f285305
SM
2055 }
2056
a6795e9e 2057 return &reg->hr_item;
1cf257f5
JS
2058free:
2059 kfree(reg);
2060 return ERR_PTR(ret);
a7f6a5fb
MF
2061}
2062
2063static void o2hb_heartbeat_group_drop_item(struct config_group *group,
2064 struct config_item *item)
2065{
e6c352db 2066 struct task_struct *hb_task;
a7f6a5fb 2067 struct o2hb_region *reg = to_o2hb_region(item);
58a3158a 2068 int quorum_region = 0;
a7f6a5fb
MF
2069
2070 /* stop the thread when the user removes the region dir */
e6c352db 2071 spin_lock(&o2hb_live_lock);
e7d656ba 2072 if (o2hb_global_heartbeat_active()) {
536f0741 2073 clear_bit(reg->hr_region_num, o2hb_region_bitmap);
e7d656ba 2074 clear_bit(reg->hr_region_num, o2hb_live_region_bitmap);
58a3158a
SM
2075 if (test_bit(reg->hr_region_num, o2hb_quorum_region_bitmap))
2076 quorum_region = 1;
ffee223a 2077 clear_bit(reg->hr_region_num, o2hb_quorum_region_bitmap);
e7d656ba 2078 }
e6c352db
JB
2079 hb_task = reg->hr_task;
2080 reg->hr_task = NULL;
58a3158a 2081 reg->hr_item_dropped = 1;
e6c352db
JB
2082 spin_unlock(&o2hb_live_lock);
2083
2084 if (hb_task)
2085 kthread_stop(hb_task);
a7f6a5fb 2086
e6df3a66
JB
2087 /*
2088 * If we're racing a dev_write(), we need to wake them. They will
2089 * check reg->hr_task
2090 */
2091 if (atomic_read(&reg->hr_steady_iterations) != 0) {
2092 atomic_set(&reg->hr_steady_iterations, 0);
2093 wake_up(&o2hb_steady_queue);
2094 }
2095
18c50cb0
SM
2096 if (o2hb_global_heartbeat_active())
2097 printk(KERN_NOTICE "o2hb: Heartbeat stopped on region %s\n",
2098 config_item_name(&reg->hr_item));
58a3158a 2099
a7f6a5fb 2100 config_item_put(item);
58a3158a
SM
2101
2102 if (!o2hb_global_heartbeat_active() || !quorum_region)
2103 return;
2104
2105 /*
2106 * If global heartbeat active and there are dependent users,
2107 * pin all regions if quorum region count <= CUT_OFF
2108 */
2109 spin_lock(&o2hb_live_lock);
2110
2111 if (!o2hb_dependent_users)
2112 goto unlock;
2113
2114 if (o2hb_pop_count(&o2hb_quorum_region_bitmap,
2115 O2NM_MAX_REGIONS) <= O2HB_PIN_CUT_OFF)
2116 o2hb_region_pin(NULL);
2117
2118unlock:
2119 spin_unlock(&o2hb_live_lock);
a7f6a5fb
MF
2120}
2121
2122struct o2hb_heartbeat_group_attribute {
2123 struct configfs_attribute attr;
2124 ssize_t (*show)(struct o2hb_heartbeat_group *, char *);
2125 ssize_t (*store)(struct o2hb_heartbeat_group *, const char *, size_t);
2126};
2127
2128static ssize_t o2hb_heartbeat_group_show(struct config_item *item,
2129 struct configfs_attribute *attr,
2130 char *page)
2131{
2132 struct o2hb_heartbeat_group *reg = to_o2hb_heartbeat_group(to_config_group(item));
2133 struct o2hb_heartbeat_group_attribute *o2hb_heartbeat_group_attr =
2134 container_of(attr, struct o2hb_heartbeat_group_attribute, attr);
2135 ssize_t ret = 0;
2136
2137 if (o2hb_heartbeat_group_attr->show)
2138 ret = o2hb_heartbeat_group_attr->show(reg, page);
2139 return ret;
2140}
2141
2142static ssize_t o2hb_heartbeat_group_store(struct config_item *item,
2143 struct configfs_attribute *attr,
2144 const char *page, size_t count)
2145{
2146 struct o2hb_heartbeat_group *reg = to_o2hb_heartbeat_group(to_config_group(item));
2147 struct o2hb_heartbeat_group_attribute *o2hb_heartbeat_group_attr =
2148 container_of(attr, struct o2hb_heartbeat_group_attribute, attr);
2149 ssize_t ret = -EINVAL;
2150
2151 if (o2hb_heartbeat_group_attr->store)
2152 ret = o2hb_heartbeat_group_attr->store(reg, page, count);
2153 return ret;
2154}
2155
2156static ssize_t o2hb_heartbeat_group_threshold_show(struct o2hb_heartbeat_group *group,
2157 char *page)
2158{
2159 return sprintf(page, "%u\n", o2hb_dead_threshold);
2160}
2161
2162static ssize_t o2hb_heartbeat_group_threshold_store(struct o2hb_heartbeat_group *group,
2163 const char *page,
2164 size_t count)
2165{
2166 unsigned long tmp;
2167 char *p = (char *)page;
2168
2169 tmp = simple_strtoul(p, &p, 10);
2170 if (!p || (*p && (*p != '\n')))
2171 return -EINVAL;
2172
2173 /* this will validate ranges for us. */
2174 o2hb_dead_threshold_set((unsigned int) tmp);
2175
2176 return count;
2177}
2178
54b5187b
SM
2179static
2180ssize_t o2hb_heartbeat_group_mode_show(struct o2hb_heartbeat_group *group,
2181 char *page)
2182{
2183 return sprintf(page, "%s\n",
2184 o2hb_heartbeat_mode_desc[o2hb_heartbeat_mode]);
2185}
2186
2187static
2188ssize_t o2hb_heartbeat_group_mode_store(struct o2hb_heartbeat_group *group,
2189 const char *page, size_t count)
2190{
2191 unsigned int i;
2192 int ret;
2193 size_t len;
2194
2195 len = (page[count - 1] == '\n') ? count - 1 : count;
2196 if (!len)
2197 return -EINVAL;
2198
2199 for (i = 0; i < O2HB_HEARTBEAT_NUM_MODES; ++i) {
2200 if (strnicmp(page, o2hb_heartbeat_mode_desc[i], len))
2201 continue;
2202
2203 ret = o2hb_global_hearbeat_mode_set(i);
2204 if (!ret)
18c50cb0 2205 printk(KERN_NOTICE "o2hb: Heartbeat mode set to %s\n",
54b5187b
SM
2206 o2hb_heartbeat_mode_desc[i]);
2207 return count;
2208 }
2209
2210 return -EINVAL;
2211
2212}
2213
a7f6a5fb
MF
2214static struct o2hb_heartbeat_group_attribute o2hb_heartbeat_group_attr_threshold = {
2215 .attr = { .ca_owner = THIS_MODULE,
2216 .ca_name = "dead_threshold",
2217 .ca_mode = S_IRUGO | S_IWUSR },
2218 .show = o2hb_heartbeat_group_threshold_show,
2219 .store = o2hb_heartbeat_group_threshold_store,
2220};
2221
54b5187b
SM
2222static struct o2hb_heartbeat_group_attribute o2hb_heartbeat_group_attr_mode = {
2223 .attr = { .ca_owner = THIS_MODULE,
2224 .ca_name = "mode",
2225 .ca_mode = S_IRUGO | S_IWUSR },
2226 .show = o2hb_heartbeat_group_mode_show,
2227 .store = o2hb_heartbeat_group_mode_store,
2228};
2229
a7f6a5fb
MF
2230static struct configfs_attribute *o2hb_heartbeat_group_attrs[] = {
2231 &o2hb_heartbeat_group_attr_threshold.attr,
54b5187b 2232 &o2hb_heartbeat_group_attr_mode.attr,
a7f6a5fb
MF
2233 NULL,
2234};
2235
2236static struct configfs_item_operations o2hb_hearbeat_group_item_ops = {
2237 .show_attribute = o2hb_heartbeat_group_show,
2238 .store_attribute = o2hb_heartbeat_group_store,
2239};
2240
2241static struct configfs_group_operations o2hb_heartbeat_group_group_ops = {
2242 .make_item = o2hb_heartbeat_group_make_item,
2243 .drop_item = o2hb_heartbeat_group_drop_item,
2244};
2245
2246static struct config_item_type o2hb_heartbeat_group_type = {
2247 .ct_group_ops = &o2hb_heartbeat_group_group_ops,
2248 .ct_item_ops = &o2hb_hearbeat_group_item_ops,
2249 .ct_attrs = o2hb_heartbeat_group_attrs,
2250 .ct_owner = THIS_MODULE,
2251};
2252
2253/* this is just here to avoid touching group in heartbeat.h which the
2254 * entire damn world #includes */
2255struct config_group *o2hb_alloc_hb_set(void)
2256{
2257 struct o2hb_heartbeat_group *hs = NULL;
2258 struct config_group *ret = NULL;
2259
cd861280 2260 hs = kzalloc(sizeof(struct o2hb_heartbeat_group), GFP_KERNEL);
a7f6a5fb
MF
2261 if (hs == NULL)
2262 goto out;
2263
2264 config_group_init_type_name(&hs->hs_group, "heartbeat",
2265 &o2hb_heartbeat_group_type);
2266
2267 ret = &hs->hs_group;
2268out:
2269 if (ret == NULL)
2270 kfree(hs);
2271 return ret;
2272}
2273
2274void o2hb_free_hb_set(struct config_group *group)
2275{
2276 struct o2hb_heartbeat_group *hs = to_o2hb_heartbeat_group(group);
2277 kfree(hs);
2278}
2279
2280/* hb callback registration and issueing */
2281
2282static struct o2hb_callback *hbcall_from_type(enum o2hb_callback_type type)
2283{
2284 if (type == O2HB_NUM_CB)
2285 return ERR_PTR(-EINVAL);
2286
2287 return &o2hb_callbacks[type];
2288}
2289
2290void o2hb_setup_callback(struct o2hb_callback_func *hc,
2291 enum o2hb_callback_type type,
2292 o2hb_cb_func *func,
2293 void *data,
2294 int priority)
2295{
2296 INIT_LIST_HEAD(&hc->hc_item);
2297 hc->hc_func = func;
2298 hc->hc_data = data;
2299 hc->hc_priority = priority;
2300 hc->hc_type = type;
2301 hc->hc_magic = O2HB_CB_MAGIC;
2302}
2303EXPORT_SYMBOL_GPL(o2hb_setup_callback);
2304
58a3158a
SM
2305/*
2306 * In local heartbeat mode, region_uuid passed matches the dlm domain name.
2307 * In global heartbeat mode, region_uuid passed is NULL.
2308 *
2309 * In local, we only pin the matching region. In global we pin all the active
2310 * regions.
2311 */
2312static int o2hb_region_pin(const char *region_uuid)
14829422 2313{
58a3158a
SM
2314 int ret = 0, found = 0;
2315 struct o2hb_region *reg;
2316 char *uuid;
14829422
JB
2317
2318 assert_spin_locked(&o2hb_live_lock);
2319
58a3158a
SM
2320 list_for_each_entry(reg, &o2hb_all_regions, hr_all_item) {
2321 uuid = config_item_name(&reg->hr_item);
2322
2323 /* local heartbeat */
2324 if (region_uuid) {
2325 if (strcmp(region_uuid, uuid))
2326 continue;
2327 found = 1;
14829422 2328 }
58a3158a
SM
2329
2330 if (reg->hr_item_pinned || reg->hr_item_dropped)
2331 goto skip_pin;
2332
2333 /* Ignore ENOENT only for local hb (userdlm domain) */
2334 ret = o2nm_depend_item(&reg->hr_item);
2335 if (!ret) {
2336 mlog(ML_CLUSTER, "Pin region %s\n", uuid);
2337 reg->hr_item_pinned = 1;
2338 } else {
2339 if (ret == -ENOENT && found)
2340 ret = 0;
2341 else {
2342 mlog(ML_ERROR, "Pin region %s fails with %d\n",
2343 uuid, ret);
2344 break;
2345 }
2346 }
2347skip_pin:
2348 if (found)
2349 break;
14829422
JB
2350 }
2351
58a3158a 2352 return ret;
14829422
JB
2353}
2354
58a3158a
SM
2355/*
2356 * In local heartbeat mode, region_uuid passed matches the dlm domain name.
2357 * In global heartbeat mode, region_uuid passed is NULL.
2358 *
2359 * In local, we only unpin the matching region. In global we unpin all the
2360 * active regions.
2361 */
2362static void o2hb_region_unpin(const char *region_uuid)
14829422 2363{
14829422 2364 struct o2hb_region *reg;
58a3158a
SM
2365 char *uuid;
2366 int found = 0;
14829422 2367
58a3158a 2368 assert_spin_locked(&o2hb_live_lock);
14829422 2369
58a3158a
SM
2370 list_for_each_entry(reg, &o2hb_all_regions, hr_all_item) {
2371 uuid = config_item_name(&reg->hr_item);
2372 if (region_uuid) {
2373 if (strcmp(region_uuid, uuid))
2374 continue;
2375 found = 1;
2376 }
14829422 2377
58a3158a
SM
2378 if (reg->hr_item_pinned) {
2379 mlog(ML_CLUSTER, "Unpin region %s\n", uuid);
2380 o2nm_undepend_item(&reg->hr_item);
2381 reg->hr_item_pinned = 0;
2382 }
2383 if (found)
2384 break;
2385 }
2386}
16c6a4f2 2387
58a3158a
SM
2388static int o2hb_region_inc_user(const char *region_uuid)
2389{
2390 int ret = 0;
14829422 2391
58a3158a 2392 spin_lock(&o2hb_live_lock);
16c6a4f2 2393
58a3158a
SM
2394 /* local heartbeat */
2395 if (!o2hb_global_heartbeat_active()) {
2396 ret = o2hb_region_pin(region_uuid);
2397 goto unlock;
2398 }
2399
2400 /*
2401 * if global heartbeat active and this is the first dependent user,
2402 * pin all regions if quorum region count <= CUT_OFF
2403 */
2404 o2hb_dependent_users++;
2405 if (o2hb_dependent_users > 1)
2406 goto unlock;
2407
2408 if (o2hb_pop_count(&o2hb_quorum_region_bitmap,
2409 O2NM_MAX_REGIONS) <= O2HB_PIN_CUT_OFF)
2410 ret = o2hb_region_pin(NULL);
2411
2412unlock:
2413 spin_unlock(&o2hb_live_lock);
14829422
JB
2414 return ret;
2415}
2416
58a3158a 2417void o2hb_region_dec_user(const char *region_uuid)
14829422 2418{
14829422
JB
2419 spin_lock(&o2hb_live_lock);
2420
58a3158a
SM
2421 /* local heartbeat */
2422 if (!o2hb_global_heartbeat_active()) {
2423 o2hb_region_unpin(region_uuid);
2424 goto unlock;
2425 }
14829422 2426
58a3158a
SM
2427 /*
2428 * if global heartbeat active and there are no dependent users,
2429 * unpin all quorum regions
2430 */
2431 o2hb_dependent_users--;
2432 if (!o2hb_dependent_users)
2433 o2hb_region_unpin(NULL);
14829422 2434
58a3158a
SM
2435unlock:
2436 spin_unlock(&o2hb_live_lock);
14829422
JB
2437}
2438
2439int o2hb_register_callback(const char *region_uuid,
2440 struct o2hb_callback_func *hc)
a7f6a5fb
MF
2441{
2442 struct o2hb_callback_func *tmp;
2443 struct list_head *iter;
2444 struct o2hb_callback *hbcall;
2445 int ret;
2446
2447 BUG_ON(hc->hc_magic != O2HB_CB_MAGIC);
2448 BUG_ON(!list_empty(&hc->hc_item));
2449
2450 hbcall = hbcall_from_type(hc->hc_type);
2451 if (IS_ERR(hbcall)) {
2452 ret = PTR_ERR(hbcall);
2453 goto out;
2454 }
2455
14829422 2456 if (region_uuid) {
58a3158a
SM
2457 ret = o2hb_region_inc_user(region_uuid);
2458 if (ret) {
2459 mlog_errno(ret);
14829422 2460 goto out;
58a3158a 2461 }
14829422
JB
2462 }
2463
a7f6a5fb
MF
2464 down_write(&o2hb_callback_sem);
2465
2466 list_for_each(iter, &hbcall->list) {
2467 tmp = list_entry(iter, struct o2hb_callback_func, hc_item);
2468 if (hc->hc_priority < tmp->hc_priority) {
2469 list_add_tail(&hc->hc_item, iter);
2470 break;
2471 }
2472 }
2473 if (list_empty(&hc->hc_item))
2474 list_add_tail(&hc->hc_item, &hbcall->list);
2475
2476 up_write(&o2hb_callback_sem);
2477 ret = 0;
2478out:
58a3158a 2479 mlog(ML_CLUSTER, "returning %d on behalf of %p for funcs %p\n",
a7f6a5fb
MF
2480 ret, __builtin_return_address(0), hc);
2481 return ret;
2482}
2483EXPORT_SYMBOL_GPL(o2hb_register_callback);
2484
14829422
JB
2485void o2hb_unregister_callback(const char *region_uuid,
2486 struct o2hb_callback_func *hc)
a7f6a5fb
MF
2487{
2488 BUG_ON(hc->hc_magic != O2HB_CB_MAGIC);
2489
58a3158a 2490 mlog(ML_CLUSTER, "on behalf of %p for funcs %p\n",
a7f6a5fb
MF
2491 __builtin_return_address(0), hc);
2492
14829422 2493 /* XXX Can this happen _with_ a region reference? */
a7f6a5fb 2494 if (list_empty(&hc->hc_item))
c24f72cc 2495 return;
a7f6a5fb 2496
14829422 2497 if (region_uuid)
58a3158a 2498 o2hb_region_dec_user(region_uuid);
14829422 2499
a7f6a5fb
MF
2500 down_write(&o2hb_callback_sem);
2501
2502 list_del_init(&hc->hc_item);
2503
2504 up_write(&o2hb_callback_sem);
a7f6a5fb
MF
2505}
2506EXPORT_SYMBOL_GPL(o2hb_unregister_callback);
2507
2508int o2hb_check_node_heartbeating(u8 node_num)
2509{
2510 unsigned long testing_map[BITS_TO_LONGS(O2NM_MAX_NODES)];
2511
2512 o2hb_fill_node_map(testing_map, sizeof(testing_map));
2513 if (!test_bit(node_num, testing_map)) {
2514 mlog(ML_HEARTBEAT,
2515 "node (%u) does not have heartbeating enabled.\n",
2516 node_num);
2517 return 0;
2518 }
2519
2520 return 1;
2521}
2522EXPORT_SYMBOL_GPL(o2hb_check_node_heartbeating);
2523
2524int o2hb_check_node_heartbeating_from_callback(u8 node_num)
2525{
2526 unsigned long testing_map[BITS_TO_LONGS(O2NM_MAX_NODES)];
2527
2528 o2hb_fill_node_map_from_callback(testing_map, sizeof(testing_map));
2529 if (!test_bit(node_num, testing_map)) {
2530 mlog(ML_HEARTBEAT,
2531 "node (%u) does not have heartbeating enabled.\n",
2532 node_num);
2533 return 0;
2534 }
2535
2536 return 1;
2537}
2538EXPORT_SYMBOL_GPL(o2hb_check_node_heartbeating_from_callback);
2539
2540/* Makes sure our local node is configured with a node number, and is
2541 * heartbeating. */
2542int o2hb_check_local_node_heartbeating(void)
2543{
2544 u8 node_num;
2545
2546 /* if this node was set then we have networking */
2547 node_num = o2nm_this_node();
2548 if (node_num == O2NM_MAX_NODES) {
2549 mlog(ML_HEARTBEAT, "this node has not been configured.\n");
2550 return 0;
2551 }
2552
2553 return o2hb_check_node_heartbeating(node_num);
2554}
2555EXPORT_SYMBOL_GPL(o2hb_check_local_node_heartbeating);
2556
2557/*
2558 * this is just a hack until we get the plumbing which flips file systems
2559 * read only and drops the hb ref instead of killing the node dead.
2560 */
2561void o2hb_stop_all_regions(void)
2562{
2563 struct o2hb_region *reg;
2564
2565 mlog(ML_ERROR, "stopping heartbeat on all active regions.\n");
2566
2567 spin_lock(&o2hb_live_lock);
2568
2569 list_for_each_entry(reg, &o2hb_all_regions, hr_all_item)
2570 reg->hr_unclean_stop = 1;
2571
2572 spin_unlock(&o2hb_live_lock);
2573}
2574EXPORT_SYMBOL_GPL(o2hb_stop_all_regions);
b3c85c4c
SM
2575
2576int o2hb_get_all_regions(char *region_uuids, u8 max_regions)
2577{
2578 struct o2hb_region *reg;
2579 int numregs = 0;
2580 char *p;
2581
2582 spin_lock(&o2hb_live_lock);
2583
2584 p = region_uuids;
2585 list_for_each_entry(reg, &o2hb_all_regions, hr_all_item) {
2586 mlog(0, "Region: %s\n", config_item_name(&reg->hr_item));
2587 if (numregs < max_regions) {
2588 memcpy(p, config_item_name(&reg->hr_item),
2589 O2HB_MAX_REGION_NAME_LEN);
2590 p += O2HB_MAX_REGION_NAME_LEN;
2591 }
2592 numregs++;
2593 }
2594
2595 spin_unlock(&o2hb_live_lock);
2596
2597 return numregs;
2598}
2599EXPORT_SYMBOL_GPL(o2hb_get_all_regions);
2600
2601int o2hb_global_heartbeat_active(void)
2602{
4d94aa1b 2603 return (o2hb_heartbeat_mode == O2HB_HEARTBEAT_GLOBAL);
b3c85c4c
SM
2604}
2605EXPORT_SYMBOL(o2hb_global_heartbeat_active);