783 lines
25 KiB
C++
783 lines
25 KiB
C++
// Copyright (c) Vitaliy Filippov, 2019+
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// License: VNPL-1.1 (see README.md for details)
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#include <netinet/tcp.h>
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#include <sys/epoll.h>
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#include <algorithm>
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#include "str_util.h"
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#include "osd.h"
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#define SELF_FD -1
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// Peering loop
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void osd_t::handle_peers()
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{
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if (peering_state & OSD_PEERING_PGS)
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{
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bool still = false;
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for (auto & p: pgs)
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{
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if (p.second.state == PG_PEERING)
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{
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if (continue_pg_peering(p.second))
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{
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ringloop->wakeup();
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return;
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}
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else
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{
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still = true;
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}
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}
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}
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if (!still)
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{
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// Done all PGs
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peering_state = peering_state & ~OSD_PEERING_PGS;
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}
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}
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if ((peering_state & OSD_FLUSHING_PGS) && !readonly)
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{
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bool still = false;
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for (auto & p: pgs)
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{
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if ((p.second.state & (PG_ACTIVE | PG_HAS_UNCLEAN)) == (PG_ACTIVE | PG_HAS_UNCLEAN))
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{
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if (!p.second.flush_batch)
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{
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submit_pg_flush_ops(p.second);
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}
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still = true;
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}
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}
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if (!still)
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{
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peering_state = peering_state & ~OSD_FLUSHING_PGS | OSD_RECOVERING;
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}
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}
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if (!(peering_state & OSD_FLUSHING_PGS) && (peering_state & OSD_RECOVERING) && !readonly)
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{
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if (!continue_recovery())
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{
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peering_state = peering_state & ~OSD_RECOVERING;
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}
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}
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if (peering_state & OSD_SCRUBBING)
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{
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if (!continue_scrub())
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{
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peering_state = peering_state & ~OSD_SCRUBBING;
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}
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}
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}
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void osd_t::break_pg_locks(osd_num_t peer_osd)
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{
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for (auto lock_it = pg_locks.begin(); lock_it != pg_locks.end(); )
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{
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if (lock_it->second.primary_osd == peer_osd)
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{
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if (log_level > 3)
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{
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printf("Break PG %u/%u lock on disconnection of OSD %ju\n", lock_it->first.pool_id, lock_it->first.pg_num, peer_osd);
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}
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pg_locks.erase(lock_it++);
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}
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else
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lock_it++;
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}
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}
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void osd_t::repeer_pgs(osd_num_t peer_osd)
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{
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// Re-peer affected PGs
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for (auto & p: pgs)
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{
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auto & pg = p.second;
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bool repeer = false;
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if (pg.state & (PG_PEERING | PG_ACTIVE | PG_INCOMPLETE))
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{
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for (osd_num_t pg_osd: pg.all_peers)
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{
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if (pg_osd == peer_osd)
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{
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repeer = true;
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break;
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}
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}
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if (repeer)
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{
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// Repeer this pg
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printf("[PG %u/%u] Repeer because of OSD %ju\n", pg.pool_id, pg.pg_num, peer_osd);
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repeer_pg(pg);
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}
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}
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}
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}
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void osd_t::repeer_pg(pg_t & pg)
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{
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if (!(pg.state & (PG_ACTIVE | PG_REPEERING)) || pg.can_repeer())
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{
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start_pg_peering(pg);
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}
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else
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{
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// Stop accepting new operations, wait for current ones to finish or fail
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pg.state = pg.state & ~PG_ACTIVE | PG_REPEERING;
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report_pg_state(pg);
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}
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}
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// Reset PG state (when peering or stopping)
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void osd_t::reset_pg(pg_t & pg)
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{
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pg.cur_peers.clear();
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pg.dead_peers.clear();
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pg.state_dict.clear();
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copies_to_delete_after_sync_count -= pg.copies_to_delete_after_sync.size();
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pg.copies_to_delete_after_sync.clear();
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corrupted_objects -= pg.corrupted_count;
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incomplete_objects -= pg.incomplete_objects.size();
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misplaced_objects -= pg.misplaced_objects.size();
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degraded_objects -= pg.degraded_objects.size();
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pg.corrupted_count = 0;
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pg.incomplete_objects.clear();
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pg.misplaced_objects.clear();
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pg.degraded_objects.clear();
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pg.flush_actions.clear();
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pg.ver_override.clear();
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if (pg.flush_batch)
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{
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delete pg.flush_batch;
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}
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pg.flush_batch = NULL;
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for (auto p: pg.write_queue)
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{
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cancel_primary_write(p.second);
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}
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pg.write_queue.clear();
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uint64_t pg_stripe_size = st_cli.pool_config[pg.pool_id].pg_stripe_size;
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for (auto it = unstable_writes.begin(); it != unstable_writes.end(); )
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{
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// Forget this PG's unstable writes
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if (INODE_POOL(it->first.oid.inode) == pg.pool_id && map_to_pg(it->first.oid, pg_stripe_size) == pg.pg_num)
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unstable_writes.erase(it++);
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else
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it++;
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}
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dirty_pgs.erase({ .pool_id = pg.pool_id, .pg_num = pg.pg_num });
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}
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// Drop connections of clients who have this PG in dirty_pgs
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void osd_t::drop_dirty_pg_connections(pool_pg_num_t pg)
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{
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if (immediate_commit != IMMEDIATE_ALL)
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{
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std::vector<int> to_stop;
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for (auto & cp: msgr.clients)
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{
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if (cp.second->dirty_pgs.find(pg) != cp.second->dirty_pgs.end())
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{
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to_stop.push_back(cp.first);
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}
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}
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for (auto peer_fd: to_stop)
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{
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msgr.stop_client(peer_fd);
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}
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}
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}
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// Repeer on each connect/disconnect peer event
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void osd_t::start_pg_peering(pg_t & pg)
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{
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pg.state = PG_PEERING;
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this->peering_state |= OSD_PEERING_PGS;
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reset_pg(pg);
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drop_dirty_pg_connections({ .pool_id = pg.pool_id, .pg_num = pg.pg_num });
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// Try to connect with current peers if they're up, but we don't have connections to them
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// Otherwise we may erroneously decide that the pg is incomplete :-)
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bool all_connected = true;
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for (auto pg_osd: pg.all_peers)
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{
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if (pg_osd != this->osd_num &&
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msgr.osd_peer_fds.find(pg_osd) == msgr.osd_peer_fds.end())
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{
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if (msgr.wanted_peers.find(pg_osd) == msgr.wanted_peers.end())
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msgr.connect_peer(pg_osd, st_cli.peer_states[pg_osd]);
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if (!st_cli.peer_states[pg_osd].is_null())
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all_connected = false;
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}
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}
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if (!all_connected && !allow_net_split)
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{
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// Wait until all OSDs are either connected or their /osd/state disappears from etcd
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pg.state = PG_INCOMPLETE;
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// Fall through to cleanup list results
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}
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// Calculate current write OSD set
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pg.pg_cursize = 0;
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pg.cur_set.resize(pg.target_set.size());
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pg.cur_loc_set.clear();
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for (int role = 0; role < pg.target_set.size(); role++)
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{
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pg.cur_set[role] = pg.target_set[role] == this->osd_num ||
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msgr.osd_peer_fds.find(pg.target_set[role]) != msgr.osd_peer_fds.end() ? pg.target_set[role] : 0;
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if (pg.cur_set[role] != 0)
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{
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pg.pg_cursize++;
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pg.cur_loc_set.push_back({
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.role = (uint64_t)role,
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.osd_num = pg.cur_set[role],
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.loc_bad = 0,
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});
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}
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}
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if (pg.pg_cursize < pg.pg_minsize)
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{
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// FIXME: Incomplete EC PGs may currently easily lead to write hangs ("slow ops" in OSD logs)
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// because such PGs don't flush unstable entries on secondary OSDs so they can't remove these
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// entries from their journals...
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pg.state = PG_INCOMPLETE;
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}
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std::set<osd_num_t> cur_peers;
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std::set<osd_num_t> dead_peers;
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for (auto pg_osd: pg.all_peers)
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{
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if (pg_osd == this->osd_num || msgr.osd_peer_fds.find(pg_osd) != msgr.osd_peer_fds.end())
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cur_peers.insert(pg_osd);
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else
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dead_peers.insert(pg_osd);
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}
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pg.cur_peers.insert(pg.cur_peers.begin(), cur_peers.begin(), cur_peers.end());
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pg.dead_peers.insert(pg.dead_peers.begin(), dead_peers.begin(), dead_peers.end());
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if (pg.target_history.size())
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{
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// Refuse to start PG if no peers are available from any of the historical OSD sets
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// (PG history is kept up to the latest active+clean state)
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for (auto & history_set: pg.target_history)
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{
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int nonzero = 0, found = 0;
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for (auto history_osd: history_set)
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{
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if (history_osd != 0)
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{
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nonzero++;
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if (history_osd == this->osd_num ||
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msgr.osd_peer_fds.find(history_osd) != msgr.osd_peer_fds.end())
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{
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found++;
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}
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}
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}
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if (nonzero >= pg.pg_data_size && found < pg.pg_data_size)
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{
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pg.state = PG_INCOMPLETE;
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}
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}
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}
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if (pg.peering_state)
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{
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// Adjust the peering operation that's still in progress - discard unneeded results
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for (auto it = pg.peering_state->list_ops.begin(); it != pg.peering_state->list_ops.end();)
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{
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if (pg.state == PG_INCOMPLETE || cur_peers.find(it->first) == cur_peers.end())
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{
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// Discard the result after completion, which, chances are, will be unsuccessful
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discard_list_subop(it->second);
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pg.peering_state->list_ops.erase(it++);
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}
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else
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it++;
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}
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for (auto it = pg.peering_state->list_results.begin(); it != pg.peering_state->list_results.end();)
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{
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if (pg.state == PG_INCOMPLETE || cur_peers.find(it->first) == cur_peers.end())
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{
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if (it->second.buf)
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{
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free(it->second.buf);
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}
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pg.peering_state->list_results.erase(it++);
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}
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else
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it++;
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}
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}
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if (pg.state == PG_INCOMPLETE)
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{
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if (pg.peering_state)
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{
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delete pg.peering_state;
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pg.peering_state = NULL;
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}
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report_pg_state(pg);
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return;
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}
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if (!pg.peering_state)
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{
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pg.peering_state = new pg_peering_state_t();
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pg.peering_state->pool_id = pg.pool_id;
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pg.peering_state->pg_num = pg.pg_num;
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}
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pg.peering_state->locked = false;
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pg.peering_state->lists_done = false;
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report_pg_state(pg);
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}
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bool osd_t::continue_pg_peering(pg_t & pg)
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{
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if (pg.peering_state->locked)
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{
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pg.peering_state->lists_done = true;
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for (osd_num_t peer_osd: pg.cur_peers)
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{
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if (pg.peering_state->list_results.find(peer_osd) == pg.peering_state->list_results.end())
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{
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pg.peering_state->lists_done = false;
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}
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if (pg.peering_state->list_ops.find(peer_osd) != pg.peering_state->list_ops.end() ||
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pg.peering_state->list_results.find(peer_osd) != pg.peering_state->list_results.end())
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{
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continue;
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}
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submit_list_subop(peer_osd, pg.peering_state);
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}
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}
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if (pg.peering_state->lists_done)
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{
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pg.calc_object_states(log_level);
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report_pg_state(pg);
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schedule_scrub(pg);
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incomplete_objects += pg.incomplete_objects.size();
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misplaced_objects += pg.misplaced_objects.size();
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// FIXME: degraded objects may currently include misplaced, too! Report them separately?
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degraded_objects += pg.degraded_objects.size();
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if (pg.state & PG_HAS_UNCLEAN)
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this->peering_state = peering_state | OSD_FLUSHING_PGS;
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else if (pg.state & (PG_HAS_DEGRADED | PG_HAS_MISPLACED))
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{
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this->peering_state = peering_state | OSD_RECOVERING;
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if (pg.state & PG_HAS_DEGRADED)
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{
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// Restart recovery from degraded objects
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this->recovery_last_degraded = true;
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this->recovery_last_pg = {};
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this->recovery_last_oid = {};
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}
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}
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return true;
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}
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return false;
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}
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void osd_t::record_pg_lock(pg_t & pg, osd_num_t peer_osd, uint64_t pg_state)
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{
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if (!pg_state)
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pg.lock_peers.erase(peer_osd);
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else
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pg.lock_peers[peer_osd] = pg_state;
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}
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void osd_t::relock_pg(pg_t & pg)
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{
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if (!enable_pg_locks || pg.disable_pg_locks && !pg.lock_peers.size())
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{
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if (pg.state & PG_PEERING)
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pg.peering_state->locked = true;
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continue_pg(pg);
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return;
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}
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if (pg.inflight_locks > 0 || pg.lock_waiting)
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{
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return;
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}
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// Check that lock_peers are equal to cur_peers and correct the difference, if any
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uint64_t wanted_state = pg.state;
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std::vector<osd_num_t> diff_osds;
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if (!(pg.state & (PG_STOPPING | PG_OFFLINE | PG_INCOMPLETE)) && !pg.disable_pg_locks)
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{
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for (osd_num_t peer_osd: pg.cur_peers)
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{
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if (peer_osd != this->osd_num)
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{
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auto lock_it = pg.lock_peers.find(peer_osd);
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if (lock_it == pg.lock_peers.end())
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diff_osds.push_back(peer_osd);
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else
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{
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if (lock_it->second != wanted_state)
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diff_osds.push_back(peer_osd);
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lock_it->second |= ((uint64_t)1 << 63);
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}
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}
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}
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}
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int relock_osd_count = diff_osds.size();
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for (auto & lp: pg.lock_peers)
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{
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if (!(lp.second & ((uint64_t)1 << 63)))
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diff_osds.push_back(lp.first);
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lp.second &= ~((uint64_t)1 << 63);
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}
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if (!diff_osds.size())
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{
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if (pg.state & PG_PEERING)
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pg.peering_state->locked = true;
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continue_pg(pg);
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return;
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}
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pg.inflight_locks++;
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for (int i = 0; i < diff_osds.size(); i++)
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{
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bool unlock_peer = (i >= relock_osd_count);
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uint64_t new_state = unlock_peer ? 0 : pg.state;
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auto peer_osd = diff_osds[i];
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auto peer_fd_it = msgr.osd_peer_fds.find(peer_osd);
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if (peer_fd_it == msgr.osd_peer_fds.end())
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{
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if (unlock_peer)
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{
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// Peer is dead - unlocked automatically
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record_pg_lock(pg, peer_osd, new_state);
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diff_osds.erase(diff_osds.begin()+(i--));
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}
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continue;
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}
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int peer_fd = peer_fd_it->second;
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auto cl = msgr.clients.at(peer_fd);
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if (!cl->enable_pg_locks)
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{
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// Peer does not support locking - just instantly remember the lock as successful
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record_pg_lock(pg, peer_osd, new_state);
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diff_osds.erase(diff_osds.begin()+(i--));
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continue;
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}
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pg.inflight_locks++;
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osd_op_t *op = new osd_op_t();
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op->op_type = OSD_OP_OUT;
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op->peer_fd = peer_fd;
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op->req = (osd_any_op_t){
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.sec_lock = {
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.header = {
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.magic = SECONDARY_OSD_OP_MAGIC,
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.opcode = OSD_OP_SEC_LOCK,
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},
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.flags = (uint64_t)(unlock_peer ? OSD_SEC_UNLOCK_PG : OSD_SEC_LOCK_PG),
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.pool_id = pg.pool_id,
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.pg_num = pg.pg_num,
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.pg_state = new_state,
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},
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};
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op->callback = [this, peer_osd](osd_op_t *op)
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{
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pool_pg_num_t pg_id = { .pool_id = (pool_id_t)op->req.sec_lock.pool_id, .pg_num = (pg_num_t)op->req.sec_lock.pg_num };
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auto pg_it = pgs.find(pg_id);
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if (pg_it == pgs.end())
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{
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printf("Warning: PG %u/%u is gone during lock attempt\n", pg_id.pool_id, pg_id.pg_num);
|
|
return;
|
|
}
|
|
auto & pg = pg_it->second;
|
|
if (op->reply.hdr.retval == 0)
|
|
{
|
|
record_pg_lock(pg_it->second, peer_osd, op->req.sec_lock.pg_state);
|
|
}
|
|
else if (op->reply.hdr.retval != -EPIPE)
|
|
{
|
|
printf("Failed to %s PG %u/%u on OSD %ju - ", op->req.sec_lock.flags == OSD_SEC_UNLOCK_PG ? "unlock" : "lock",
|
|
pg_id.pool_id, pg_id.pg_num, peer_osd);
|
|
if (op->reply.hdr.retval == -ENOENT)
|
|
printf("peer didn't load PG info yet\n");
|
|
else if (op->reply.sec_lock.cur_primary)
|
|
printf("taken by OSD %ju (retval=%jd)\n", op->reply.sec_lock.cur_primary, op->reply.hdr.retval);
|
|
else
|
|
printf("retval=%jd\n", op->reply.hdr.retval);
|
|
// Retry relocking/unlocking PG after a short time
|
|
pg.lock_waiting = true;
|
|
tfd->set_timer(pg_lock_retry_interval_ms, false, [this, pg_id](int)
|
|
{
|
|
auto pg_it = pgs.find(pg_id);
|
|
if (pg_it != pgs.end())
|
|
{
|
|
pg_it->second.lock_waiting = false;
|
|
relock_pg(pg_it->second);
|
|
}
|
|
});
|
|
}
|
|
pg.inflight_locks--;
|
|
relock_pg(pg);
|
|
delete op;
|
|
};
|
|
msgr.outbox_push(op);
|
|
}
|
|
if (pg.state & PG_PEERING)
|
|
{
|
|
pg.peering_state->locked = !diff_osds.size();
|
|
}
|
|
pg.inflight_locks--;
|
|
continue_pg(pg);
|
|
}
|
|
|
|
void osd_t::submit_list_subop(osd_num_t role_osd, pg_peering_state_t *ps)
|
|
{
|
|
if (role_osd == this->osd_num)
|
|
{
|
|
// Self
|
|
osd_op_t *op = new osd_op_t();
|
|
op->op_type = 0;
|
|
op->peer_fd = SELF_FD;
|
|
clock_gettime(CLOCK_REALTIME, &op->tv_begin);
|
|
op->bs_op = new blockstore_op_t();
|
|
op->bs_op->opcode = BS_OP_LIST;
|
|
op->bs_op->pg_alignment = st_cli.pool_config[ps->pool_id].pg_stripe_size;
|
|
op->bs_op->min_oid.inode = ((uint64_t)ps->pool_id << (64 - POOL_ID_BITS));
|
|
op->bs_op->max_oid.inode = ((uint64_t)(ps->pool_id+1) << (64 - POOL_ID_BITS)) - 1;
|
|
op->bs_op->max_oid.stripe = UINT64_MAX;
|
|
op->bs_op->pg_count = pg_counts[ps->pool_id];
|
|
op->bs_op->pg_number = ps->pg_num-1;
|
|
op->bs_op->callback = [this, ps, op, role_osd](blockstore_op_t *bs_op)
|
|
{
|
|
if (op->bs_op->retval < 0)
|
|
{
|
|
printf("Local OP_LIST failed: retval=%d\n", op->bs_op->retval);
|
|
force_stop(1);
|
|
return;
|
|
}
|
|
add_bs_subop_stats(op);
|
|
printf(
|
|
"[PG %u/%u] Got object list from OSD %ju (local): %d object versions (%ju of them stable)\n",
|
|
ps->pool_id, ps->pg_num, role_osd, bs_op->retval, bs_op->version
|
|
);
|
|
ps->list_results[role_osd] = {
|
|
.buf = (obj_ver_id*)op->bs_op->buf,
|
|
.total_count = (uint64_t)op->bs_op->retval,
|
|
.stable_count = op->bs_op->version,
|
|
};
|
|
ps->list_ops.erase(role_osd);
|
|
delete op->bs_op;
|
|
op->bs_op = NULL;
|
|
delete op;
|
|
};
|
|
ps->list_ops[role_osd] = op;
|
|
bs->enqueue_op(op->bs_op);
|
|
}
|
|
else
|
|
{
|
|
auto role_fd_it = msgr.osd_peer_fds.find(role_osd);
|
|
if (role_fd_it == msgr.osd_peer_fds.end())
|
|
{
|
|
printf("Failed to get object list from OSD %ju because it is disconnected\n", role_osd);
|
|
return;
|
|
}
|
|
// Peer
|
|
osd_op_t *op = new osd_op_t();
|
|
op->op_type = OSD_OP_OUT;
|
|
op->peer_fd = role_fd_it->second;
|
|
op->req = (osd_any_op_t){
|
|
.sec_list = {
|
|
.header = {
|
|
.magic = SECONDARY_OSD_OP_MAGIC,
|
|
.opcode = OSD_OP_SEC_LIST,
|
|
},
|
|
.list_pg = ps->pg_num,
|
|
.pg_count = pg_counts[ps->pool_id],
|
|
.pg_stripe_size = st_cli.pool_config[ps->pool_id].pg_stripe_size,
|
|
.min_inode = ((uint64_t)(ps->pool_id) << (64 - POOL_ID_BITS)),
|
|
.max_inode = ((uint64_t)(ps->pool_id+1) << (64 - POOL_ID_BITS)) - 1,
|
|
},
|
|
};
|
|
op->callback = [this, ps, role_osd](osd_op_t *op)
|
|
{
|
|
if (op->reply.hdr.retval < 0)
|
|
{
|
|
printf("Failed to get object list from OSD %ju (retval=%jd), disconnecting peer\n", role_osd, op->reply.hdr.retval);
|
|
int fail_fd = op->peer_fd;
|
|
ps->list_ops.erase(role_osd);
|
|
delete op;
|
|
msgr.stop_client(fail_fd);
|
|
return;
|
|
}
|
|
printf(
|
|
"[PG %u/%u] Got object list from OSD %ju: %jd object versions (%ju of them stable)\n",
|
|
ps->pool_id, ps->pg_num, role_osd, op->reply.hdr.retval, op->reply.sec_list.stable_count
|
|
);
|
|
ps->list_results[role_osd] = {
|
|
.buf = (obj_ver_id*)op->buf,
|
|
.total_count = (uint64_t)op->reply.hdr.retval,
|
|
.stable_count = op->reply.sec_list.stable_count,
|
|
};
|
|
// set op->buf to NULL so it doesn't get freed
|
|
op->buf = NULL;
|
|
ps->list_ops.erase(role_osd);
|
|
delete op;
|
|
};
|
|
ps->list_ops[role_osd] = op;
|
|
msgr.outbox_push(op);
|
|
}
|
|
}
|
|
|
|
void osd_t::discard_list_subop(osd_op_t *list_op)
|
|
{
|
|
if (list_op->peer_fd == SELF_FD)
|
|
{
|
|
// Self
|
|
list_op->bs_op->callback = [list_op](blockstore_op_t *bs_op)
|
|
{
|
|
if (list_op->bs_op->buf)
|
|
free(list_op->bs_op->buf);
|
|
delete list_op->bs_op;
|
|
list_op->bs_op = NULL;
|
|
delete list_op;
|
|
};
|
|
}
|
|
else
|
|
{
|
|
// Peer
|
|
list_op->callback = [](osd_op_t *list_op)
|
|
{
|
|
delete list_op;
|
|
};
|
|
}
|
|
}
|
|
|
|
bool osd_t::stop_pg(pg_t & pg)
|
|
{
|
|
if (pg.peering_state)
|
|
{
|
|
// Stop peering
|
|
for (auto it = pg.peering_state->list_ops.begin(); it != pg.peering_state->list_ops.end(); it++)
|
|
{
|
|
discard_list_subop(it->second);
|
|
}
|
|
for (auto it = pg.peering_state->list_results.begin(); it != pg.peering_state->list_results.end(); it++)
|
|
{
|
|
if (it->second.buf)
|
|
{
|
|
free(it->second.buf);
|
|
}
|
|
}
|
|
delete pg.peering_state;
|
|
pg.peering_state = NULL;
|
|
}
|
|
if (pg.state & (PG_STOPPING | PG_OFFLINE))
|
|
{
|
|
return false;
|
|
}
|
|
drop_dirty_pg_connections({ .pool_id = pg.pool_id, .pg_num = pg.pg_num });
|
|
pg.state = pg.state & ~PG_STARTING & ~PG_PEERING & ~PG_INCOMPLETE & ~PG_ACTIVE & ~PG_REPEERING & ~PG_OFFLINE | PG_STOPPING;
|
|
if (pg.can_stop())
|
|
{
|
|
finish_stop_pg(pg);
|
|
}
|
|
else
|
|
{
|
|
report_pg_state(pg);
|
|
}
|
|
return true;
|
|
}
|
|
|
|
void osd_t::finish_stop_pg(pg_t & pg)
|
|
{
|
|
pg.state = PG_OFFLINE;
|
|
reset_pg(pg);
|
|
report_pg_state(pg);
|
|
}
|
|
|
|
void osd_t::report_pg_state(pg_t & pg)
|
|
{
|
|
pg.print_state();
|
|
this->pg_state_dirty.insert({ .pool_id = pg.pool_id, .pg_num = pg.pg_num });
|
|
if (pg.state & PG_ACTIVE)
|
|
{
|
|
plan_scrub(pg, false);
|
|
}
|
|
if (pg.state == PG_ACTIVE && (pg.target_history.size() > 0 || pg.all_peers.size() > pg.target_set.size()))
|
|
{
|
|
// Clear history of active+clean PGs
|
|
pg.history_changed = true;
|
|
pg.target_history.clear();
|
|
pg.all_peers = pg.target_set;
|
|
std::sort(pg.all_peers.begin(), pg.all_peers.end());
|
|
pg.cur_peers = pg.target_set;
|
|
// Change pg_config at the same time, otherwise our PG reconciling loop may try to apply the old metadata
|
|
auto & pg_cfg = st_cli.pool_config[pg.pool_id].pg_config[pg.pg_num];
|
|
pg_cfg.target_history = pg.target_history;
|
|
pg_cfg.all_peers = pg.all_peers;
|
|
}
|
|
else if (pg.state == (PG_ACTIVE|PG_LEFT_ON_DEAD))
|
|
{
|
|
// Clear history of active+left_on_dead PGs, but leave dead OSDs in all_peers
|
|
if (pg.target_history.size())
|
|
{
|
|
pg.history_changed = true;
|
|
pg.target_history.clear();
|
|
}
|
|
std::set<osd_num_t> dead_peers;
|
|
for (auto pg_osd: pg.all_peers)
|
|
{
|
|
dead_peers.insert(pg_osd);
|
|
}
|
|
for (auto pg_osd: pg.cur_peers)
|
|
{
|
|
dead_peers.erase(pg_osd);
|
|
}
|
|
for (auto pg_osd: pg.target_set)
|
|
{
|
|
if (pg_osd)
|
|
{
|
|
dead_peers.insert(pg_osd);
|
|
}
|
|
}
|
|
auto new_all_peers = std::vector<osd_num_t>(dead_peers.begin(), dead_peers.end());
|
|
if (pg.all_peers != new_all_peers)
|
|
{
|
|
pg.history_changed = true;
|
|
pg.all_peers = new_all_peers;
|
|
}
|
|
pg.cur_peers.clear();
|
|
for (auto pg_osd: pg.target_set)
|
|
{
|
|
if (pg_osd)
|
|
{
|
|
pg.cur_peers.push_back(pg_osd);
|
|
}
|
|
}
|
|
auto & pg_cfg = st_cli.pool_config[pg.pool_id].pg_config[pg.pg_num];
|
|
pg_cfg.target_history = pg.target_history;
|
|
pg_cfg.all_peers = pg.all_peers;
|
|
}
|
|
relock_pg(pg);
|
|
if (pg.state == PG_OFFLINE && !this->pg_config_applied)
|
|
{
|
|
apply_pg_config();
|
|
}
|
|
report_pg_states();
|
|
}
|
|
|
|
void osd_t::rm_inflight(pg_t & pg)
|
|
{
|
|
pg.inflight--;
|
|
assert(pg.inflight >= 0);
|
|
continue_pg(pg);
|
|
}
|
|
|
|
void osd_t::continue_pg(pg_t & pg)
|
|
{
|
|
if ((pg.state & PG_STOPPING) && pg.can_stop())
|
|
{
|
|
finish_stop_pg(pg);
|
|
}
|
|
else if ((pg.state & PG_REPEERING) && pg.can_repeer())
|
|
{
|
|
start_pg_peering(pg);
|
|
}
|
|
else if ((pg.state & PG_PEERING) && pg.peering_state->locked)
|
|
{
|
|
continue_pg_peering(pg);
|
|
}
|
|
}
|