/
usr
/
include
/
mysql
/
server
/
private
/
/usr/include/mysql/server/private
mkdir
upload
Name
Size
Mode
Actions
atomic/
-
0755
rm
data/
-
0755
rm
providers/
-
0755
rm
aligned.h
1136
0644
edit
dl
rm
aria_backup.h
1787
0644
edit
dl
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assume_aligned.h
2350
0644
edit
dl
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authors.h
10194
0644
edit
dl
rm
backup.h
1703
0644
edit
dl
rm
bounded_queue.h
6093
0644
edit
dl
rm
client_settings.h
1935
0644
edit
dl
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compat56.h
2280
0644
edit
dl
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config.h
14351
0644
edit
dl
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contributors.h
4931
0644
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dl
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create_options.h
4193
0644
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dl
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create_tmp_table.h
2808
0644
edit
dl
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cset_narrowing.h
3968
0644
edit
dl
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custom_conf.h
1082
0644
edit
dl
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datadict.h
1700
0644
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dl
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ddl_log.h
12807
0644
edit
dl
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debug.h
1234
0644
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debug_sync.h
2046
0644
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derived_handler.h
2379
0644
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derror.h
980
0644
edit
dl
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des_key_file.h
1236
0644
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discover.h
1570
0644
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dur_prop.h
1082
0644
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dl
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embedded_priv.h
1733
0644
edit
dl
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events.h
4704
0644
edit
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event_data_objects.h
4187
0644
edit
dl
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event_db_repository.h
3648
0644
edit
dl
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event_parse_data.h
2899
0644
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dl
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event_queue.h
3438
0644
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dl
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event_scheduler.h
3290
0644
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dl
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field.h
222414
0644
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dl
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field_comp.h
1174
0644
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filesort.h
7283
0644
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filesort_utils.h
8195
0644
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ft_global.h
3113
0644
edit
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gcalc_slicescan.h
17330
0644
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dl
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gcalc_tools.h
11900
0644
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grant.h
2758
0644
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group_by_handler.h
3534
0644
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gstream.h
2437
0644
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handler.h
199857
0644
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handle_connections_win.h
884
0644
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hash.h
4452
0644
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hash_filo.h
5599
0644
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dl
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ha_handler_stats.h
2335
0644
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ha_partition.h
64696
0644
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ha_sequence.h
6245
0644
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heap.h
9487
0644
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dl
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hostname.h
5419
0644
edit
dl
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ilist.h
7237
0644
edit
dl
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init.h
852
0644
edit
dl
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innodb_priv.h
1319
0644
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dl
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item.h
285458
0644
edit
dl
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item_cmpfunc.h
135218
0644
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item_create.h
11508
0644
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item_func.h
138683
0644
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dl
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item_geofunc.h
39612
0644
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dl
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item_jsonfunc.h
25429
0644
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dl
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item_row.h
5229
0644
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item_strfunc.h
75265
0644
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item_subselect.h
59087
0644
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item_sum.h
72695
0644
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item_timefunc.h
65896
0644
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dl
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item_vers.h
4413
0644
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dl
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item_windowfunc.h
35089
0644
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dl
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item_xmlfunc.h
4650
0644
edit
dl
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json_table.h
9667
0644
edit
dl
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key.h
2132
0644
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dl
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keycaches.h
1995
0644
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lex.h
29840
0644
edit
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lex_charset.h
24313
0644
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dl
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lex_hash.h
143108
0644
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lex_ident.h
2122
0644
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lex_string.h
4077
0644
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lex_symbol.h
1323
0644
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lex_token.h
42641
0644
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lf.h
6462
0644
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lock.h
2220
0644
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dl
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log.h
46462
0644
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log_event.h
189467
0644
edit
dl
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log_event_data_type.h
1890
0644
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log_event_old.h
19830
0644
edit
dl
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log_slow.h
2442
0644
edit
dl
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maria.h
5872
0644
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dl
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mariadb.h
1277
0644
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dl
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mdl.h
38893
0644
edit
dl
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mem_root_array.h
7106
0644
edit
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message.h
1195
0644
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multi_range_read.h
23179
0644
edit
dl
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myisam.h
17506
0644
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myisamchk.h
4734
0644
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myisammrg.h
4897
0644
edit
dl
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myisampack.h
14929
0644
edit
dl
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mysqld.h
41225
0644
edit
dl
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mysqld_default_groups.h
204
0644
edit
dl
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mysqld_suffix.h
1201
0644
edit
dl
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mysys_err.h
3022
0644
edit
dl
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my_alarm.h
2429
0644
edit
dl
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my_apc.h
4747
0644
edit
dl
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my_atomic.h
7281
0644
edit
dl
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my_atomic_wrapper.h
3051
0644
edit
dl
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my_base.h
27750
0644
edit
dl
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my_bit.h
6196
0644
edit
dl
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my_bitmap.h
5502
0644
edit
dl
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my_check_opt.h
2618
0644
edit
dl
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my_compare.h
11194
0644
edit
dl
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my_counter.h
1721
0644
edit
dl
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my_cpu.h
4885
0644
edit
dl
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my_crypt.h
904
0644
edit
dl
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my_decimal.h
14504
0644
edit
dl
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my_default.h
1880
0644
edit
dl
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my_handler_errors.h
4882
0644
edit
dl
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my_json_writer.h
18706
0644
edit
dl
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my_libwrap.h
1183
0644
edit
dl
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my_md5.h
1486
0644
edit
dl
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my_minidump.h
848
0644
edit
dl
rm
my_nosys.h
1438
0644
edit
dl
rm
my_rdtsc.h
10119
0644
edit
dl
rm
my_rnd.h
1014
0644
edit
dl
rm
my_service_manager.h
2087
0644
edit
dl
rm
my_stacktrace.h
3215
0644
edit
dl
rm
my_stack_alloc.h
6493
0644
edit
dl
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my_time.h
10414
0644
edit
dl
rm
my_tree.h
3991
0644
edit
dl
rm
my_uctype.h
69528
0644
edit
dl
rm
my_user.h
1126
0644
edit
dl
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my_virtual_mem.h
1255
0644
edit
dl
rm
opt_histogram_json.h
4638
0644
edit
dl
rm
opt_range.h
65903
0644
edit
dl
rm
opt_subselect.h
14545
0644
edit
dl
rm
opt_trace.h
9505
0644
edit
dl
rm
opt_trace_context.h
3291
0644
edit
dl
rm
parse_file.h
4424
0644
edit
dl
rm
partition_element.h
5428
0644
edit
dl
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partition_info.h
19864
0644
edit
dl
rm
password.h
1621
0644
edit
dl
rm
pfs_file_provider.h
3153
0644
edit
dl
rm
pfs_idle_provider.h
1385
0644
edit
dl
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pfs_memory_provider.h
1626
0644
edit
dl
rm
pfs_metadata_provider.h
1898
0644
edit
dl
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pfs_socket_provider.h
2258
0644
edit
dl
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pfs_stage_provider.h
1556
0644
edit
dl
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pfs_statement_provider.h
4347
0644
edit
dl
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pfs_table_provider.h
2625
0644
edit
dl
rm
pfs_thread_provider.h
5560
0644
edit
dl
rm
pfs_transaction_provider.h
2846
0644
edit
dl
rm
privilege.h
28853
0644
edit
dl
rm
probes_mysql.h
973
0644
edit
dl
rm
probes_mysql_nodtrace.h
6087
0644
edit
dl
rm
procedure.h
6819
0644
edit
dl
rm
protocol.h
12537
0644
edit
dl
rm
proxy_protocol.h
548
0644
edit
dl
rm
queues.h
3477
0644
edit
dl
rm
records.h
3147
0644
edit
dl
rm
replication.h
16130
0644
edit
dl
rm
repl_failsafe.h
1585
0644
edit
dl
rm
rijndael.h
1711
0644
edit
dl
rm
rowid_filter.h
15474
0644
edit
dl
rm
rpl_constants.h
3357
0644
edit
dl
rm
rpl_filter.h
4774
0644
edit
dl
rm
rpl_gtid.h
29985
0644
edit
dl
rm
rpl_injector.h
9621
0644
edit
dl
rm
rpl_mi.h
16636
0644
edit
dl
rm
rpl_parallel.h
18228
0644
edit
dl
rm
rpl_record.h
1585
0644
edit
dl
rm
rpl_record_old.h
1407
0644
edit
dl
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rpl_reporting.h
3713
0644
edit
dl
rm
rpl_rli.h
36070
0644
edit
dl
rm
rpl_tblmap.h
3177
0644
edit
dl
rm
rpl_utility.h
9800
0644
edit
dl
rm
scheduler.h
3199
0644
edit
dl
rm
scope.h
4393
0644
edit
dl
rm
select_handler.h
2228
0644
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dl
rm
semisync.h
2287
0644
edit
dl
rm
semisync_master.h
25764
0644
edit
dl
rm
semisync_master_ack_receiver.h
8709
0644
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dl
rm
semisync_slave.h
3736
0644
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dl
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service_versions.h
2285
0644
edit
dl
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session_tracker.h
14275
0644
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dl
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set_var.h
17331
0644
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dl
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slave.h
12392
0644
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dl
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socketpair.h
842
0644
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dl
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source_revision.h
67
0644
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dl
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sp.h
22588
0644
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dl
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span.h
3931
0644
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dl
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spatial.h
22698
0644
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sp_cache.h
2037
0644
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dl
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sp_head.h
64917
0644
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dl
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sp_pcontext.h
25427
0644
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dl
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sp_rcontext.h
14441
0644
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dl
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sql_acl.h
14167
0644
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dl
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sql_admin.h
2915
0644
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dl
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sql_alloc.h
1732
0644
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dl
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sql_alter.h
15395
0644
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dl
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sql_analyse.h
11052
0644
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dl
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sql_analyze_stmt.h
12683
0644
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dl
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sql_array.h
6858
0644
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dl
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sql_audit.h
14162
0644
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dl
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sql_base.h
26050
0644
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dl
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sql_basic_types.h
9523
0644
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dl
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sql_binlog.h
895
0644
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dl
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sql_bitmap.h
7842
0644
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dl
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sql_bootstrap.h
1812
0644
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dl
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sql_cache.h
21676
0644
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dl
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sql_callback.h
1542
0644
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dl
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sql_class.h
271836
0644
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dl
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sql_cmd.h
5962
0644
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dl
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sql_command.h
4800
0644
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dl
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sql_connect.h
4087
0644
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dl
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sql_const.h
11630
0644
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sql_crypt.h
1437
0644
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dl
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sql_cte.h
16494
0644
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dl
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sql_cursor.h
4428
0644
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dl
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sql_db.h
2438
0644
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dl
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sql_debug.h
5727
0644
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dl
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sql_delete.h
1343
0644
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sql_derived.h
1289
0644
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sql_digest.h
3819
0644
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sql_digest_stream.h
1567
0644
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sql_do.h
954
0644
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dl
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sql_error.h
39843
0644
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sql_explain.h
30319
0644
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sql_expression_cache.h
4359
0644
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sql_get_diagnostics.h
7883
0644
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dl
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sql_handler.h
2910
0644
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dl
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sql_help.h
995
0644
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sql_hset.h
3401
0644
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sql_insert.h
5173
0644
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sql_i_s.h
8487
0644
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dl
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sql_join_cache.h
48659
0644
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sql_lex.h
174931
0644
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sql_lifo_buffer.h
9685
0644
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sql_limit.h
3187
0644
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dl
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sql_list.h
22391
0644
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sql_load.h
1276
0644
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dl
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sql_locale.h
2701
0644
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sql_manager.h
960
0644
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sql_mode.h
6735
0644
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sql_parse.h
8970
0644
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sql_partition.h
12674
0644
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sql_partition_admin.h
5940
0644
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sql_plist.h
7711
0644
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sql_plugin.h
7577
0644
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sql_plugin_compat.h
2237
0644
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dl
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sql_prepare.h
11409
0644
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sql_priv.h
18528
0644
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sql_profile.h
7816
0644
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sql_reload.h
1036
0644
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sql_rename.h
982
0644
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sql_repl.h
3045
0644
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sql_schema.h
3303
0644
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sql_select.h
89743
0644
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sql_sequence.h
5177
0644
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sql_servers.h
1777
0644
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sql_show.h
9819
0644
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sql_signal.h
3362
0644
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sql_sort.h
21964
0644
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sql_statistics.h
16504
0644
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sql_string.h
39009
0644
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sql_table.h
9812
0644
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sql_test.h
2665
0644
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sql_time.h
8505
0644
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sql_trigger.h
12332
0644
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sql_truncate.h
2079
0644
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sql_tvc.h
2418
0644
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sql_type.h
297272
0644
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sql_type_fixedbin.h
65578
0644
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sql_type_fixedbin_storage.h
5467
0644
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sql_type_geom.h
19039
0644
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sql_type_int.h
10001
0644
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sql_type_json.h
6155
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sql_type_real.h
1257
0644
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sql_type_string.h
1629
0644
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sql_udf.h
4850
0644
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sql_union.h
1068
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sql_update.h
1923
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sql_view.h
2470
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sql_window.h
6814
0644
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ssl_compat.h
3380
0644
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strfunc.h
2549
0644
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structs.h
29457
0644
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sys_vars_shared.h
2729
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table.h
119009
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table_cache.h
4232
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threadpool.h
4810
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threadpool_generic.h
3969
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threadpool_winsockets.h
2290
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thread_cache.h
5905
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thr_alarm.h
2932
0644
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thr_lock.h
7350
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thr_malloc.h
1202
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thr_timer.h
1563
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transaction.h
1466
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tzfile.h
5014
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tztime.h
3397
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t_ctype.h
5639
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uniques.h
4217
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unireg.h
7722
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vers_string.h
2543
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violite.h
9956
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waiting_threads.h
4532
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dl
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welcome_copyright_notice.h
1218
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winservice.h
6019
0644
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win_tzname_data.h
6506
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wqueue.h
1565
0644
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wsrep.h
3308
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wsrep_allowlist_service.h
1035
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wsrep_applier.h
2703
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wsrep_binlog.h
3551
0644
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wsrep_client_service.h
2602
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wsrep_client_state.h
1566
0644
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wsrep_condition_variable.h
1484
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wsrep_high_priority_service.h
4912
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wsrep_mutex.h
1239
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wsrep_mysqld.h
22006
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wsrep_mysqld_c.h
1227
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wsrep_on.h
1718
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wsrep_priv.h
1634
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wsrep_schema.h
5886
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wsrep_server_service.h
3631
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wsrep_server_state.h
2529
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wsrep_sst.h
3951
0644
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wsrep_status.h
1816
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wsrep_storage_service.h
1809
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wsrep_thd.h
11487
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wsrep_trans_observer.h
18174
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wsrep_types.h
1110
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wsrep_utils.h
10251
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/usr/include/mysql/server/private/rpl_gtid.h
(29985B)
/* Copyright (c) 2013, Kristian Nielsen and MariaDB Services Ab. This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; version 2 of the License. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program; if not, write to the Free Software Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1335 USA */ #ifndef RPL_GTID_H #define RPL_GTID_H #include "hash.h" #include "queues.h" #include <atomic> /* Definitions for MariaDB global transaction ID (GTID). */ extern const LEX_CSTRING rpl_gtid_slave_state_table_name; class String; #define PARAM_GTID(G) G.domain_id, G.server_id, G.seq_no #define GTID_MAX_STR_LENGTH (10+1+10+1+20) #define PARAM_GTID(G) G.domain_id, G.server_id, G.seq_no struct rpl_gtid { uint32 domain_id; uint32 server_id; uint64 seq_no; }; inline bool operator==(const rpl_gtid& lhs, const rpl_gtid& rhs) { return lhs.domain_id == rhs.domain_id && lhs.server_id == rhs.server_id && lhs.seq_no == rhs.seq_no; }; inline bool operator<(const rpl_gtid& lhs, const rpl_gtid& rhs) { return (lhs.domain_id == rhs.domain_id) ? lhs.seq_no < rhs.seq_no : lhs.domain_id < rhs.domain_id; }; inline bool operator>(const rpl_gtid& lhs, const rpl_gtid& rhs) { return (lhs.domain_id == rhs.domain_id) ? lhs.seq_no > rhs.seq_no : lhs.domain_id > rhs.domain_id; }; enum enum_gtid_skip_type { GTID_SKIP_NOT, GTID_SKIP_STANDALONE, GTID_SKIP_TRANSACTION }; /* Structure to keep track of threads waiting in MASTER_GTID_WAIT(). Since replication is (mostly) single-threaded, we want to minimise the performance impact on that from MASTER_GTID_WAIT(). To achieve this, we are careful to keep the common lock between replication threads and MASTER_GTID_WAIT threads held for as short as possible. We keep only a single thread waiting to be notified by the replication threads; this thread then handles all the (potentially heavy) lifting of dealing with all current waiting threads. */ struct gtid_waiting { /* Elements in the hash, basically a priority queue for each domain. */ struct hash_element { QUEUE queue; uint32 domain_id; }; /* A priority queue to handle waiters in one domain in seq_no order. */ struct queue_element { uint64 wait_seq_no; THD *thd; int queue_idx; /* do_small_wait is true if we have responsibility for ensuring that there is a small waiter. */ bool do_small_wait; /* The flag `done' is set when the wait is completed (either due to reaching the position waited for, or due to timeout or kill). The queue_element is in the queue if and only if `done' is true. */ bool done; }; mysql_mutex_t LOCK_gtid_waiting; HASH hash; void init(); void destroy(); hash_element *get_entry(uint32 domain_id); int wait_for_pos(THD *thd, String *gtid_str, longlong timeout_us); void promote_new_waiter(gtid_waiting::hash_element *he); int wait_for_gtid(THD *thd, rpl_gtid *wait_gtid, struct timespec *wait_until); void process_wait_hash(uint64 wakeup_seq_no, gtid_waiting::hash_element *he); int register_in_wait_queue(THD *thd, rpl_gtid *wait_gtid, hash_element *he, queue_element *elem); void remove_from_wait_queue(hash_element *he, queue_element *elem); }; class Relay_log_info; struct rpl_group_info; class Gtid_list_log_event; /* Replication slave state. For every independent replication stream (identified by domain_id), this remembers the last gtid applied on the slave within this domain. Since events are always committed in-order within a single domain, this is sufficient to maintain the state of the replication slave. */ struct rpl_slave_state { /* Elements in the list of GTIDs kept for each domain_id. */ struct list_element { struct list_element *next; uint64 sub_id; uint32 domain_id; uint32 server_id; uint64 seq_no; /* hton of mysql.gtid_slave_pos* table used to record this GTID. Can be NULL if the gtid table failed to load (eg. missing mysql.gtid_slave_pos table following an upgrade). */ void *hton; }; /* Elements in the HASH that hold the state for one domain_id. */ struct element { struct list_element *list; uint32 domain_id; /* Highest seq_no seen so far in this domain. */ uint64 highest_seq_no; /* If this is non-NULL, then it is the waiter responsible for the small wait in MASTER_GTID_WAIT(). */ gtid_waiting::queue_element *gtid_waiter; /* If gtid_waiter is non-NULL, then this is the seq_no that its MASTER_GTID_WAIT() is waiting on. When we reach this seq_no, we need to signal the waiter on COND_wait_gtid. */ uint64 min_wait_seq_no; mysql_cond_t COND_wait_gtid; /* For --gtid-ignore-duplicates. The Relay_log_info that currently owns this domain, and the number of worker threads that are active in it. The idea is that only one of multiple master connections is allowed to actively apply events for a given domain. Other connections must either discard the events (if the seq_no in GTID shows they have already been applied), or wait to see if the current owner will apply it. */ const Relay_log_info *owner_rli; uint32 owner_count; mysql_cond_t COND_gtid_ignore_duplicates; list_element *grab_list() { list_element *l= list; list= NULL; return l; } void add(list_element *l) { l->next= list; list= l; } }; /* Descriptor for mysql.gtid_slave_posXXX table in specific engine. */ enum gtid_pos_table_state { GTID_POS_AUTO_CREATE, GTID_POS_CREATE_REQUESTED, GTID_POS_CREATE_IN_PROGRESS, GTID_POS_AVAILABLE }; struct gtid_pos_table { struct gtid_pos_table *next; /* Use a void * here, rather than handlerton *, to make explicit that we are not using the value to access any functionality in the engine. It is just used as an opaque value to identify which engine we are using for each GTID row. */ void *table_hton; LEX_CSTRING table_name; uint8 state; }; /* Mapping from domain_id to its element. */ HASH hash; /* GTIDs added since last purge of old mysql.gtid_slave_pos rows. */ uint32 pending_gtid_count; /* Mutex protecting access to the state. */ mysql_mutex_t LOCK_slave_state; /* Auxiliary buffer to sort gtid list. */ DYNAMIC_ARRAY gtid_sort_array; uint64 last_sub_id; /* List of tables available for durably storing the slave GTID position. Accesses to this table is protected by LOCK_slave_state. However for efficiency, there is also a provision for read access to it from a running slave without lock. An element can be added at the head of a list by storing the new gtid_pos_tables pointer atomically with release semantics, to ensure that the next pointer of the new element is visible to readers of the new list. Other changes (like deleting or replacing elements) must happen only while all SQL driver threads are stopped. LOCK_slave_state must be held in any case. The list can be read without lock by an SQL driver thread or worker thread by reading the gtid_pos_tables pointer atomically with acquire semantics, to ensure that it will see the correct next pointer of a new head element. */ std::atomic<gtid_pos_table*> gtid_pos_tables; /* The default entry in gtid_pos_tables, mysql.gtid_slave_pos. */ std::atomic<gtid_pos_table*> default_gtid_pos_table; bool loaded; rpl_slave_state(); ~rpl_slave_state(); void truncate_hash(); ulong count() const { return hash.records; } int update(uint32 domain_id, uint32 server_id, uint64 sub_id, uint64 seq_no, void *hton, rpl_group_info *rgi); int update_nolock(uint32 domain_id, uint32 server_id, uint64 sub_id, uint64 seq_no, void *hton, rpl_group_info *rgi); int truncate_state_table(THD *thd); void select_gtid_pos_table(THD *thd, LEX_CSTRING *out_tablename); int record_gtid(THD *thd, const rpl_gtid *gtid, uint64 sub_id, bool in_transaction, bool in_statement, void **out_hton); list_element *gtid_grab_pending_delete_list(); LEX_CSTRING *select_gtid_pos_table(void *hton); void gtid_delete_pending(THD *thd, rpl_slave_state::list_element **list_ptr); uint64 next_sub_id(uint32 domain_id); int iterate(int (*cb)(rpl_gtid *, void *), void *data, rpl_gtid *extra_gtids, uint32 num_extra, bool sort); int tostring(String *dest, rpl_gtid *extra_gtids, uint32 num_extra); bool domain_to_gtid(uint32 domain_id, rpl_gtid *out_gtid); int load(THD *thd, const char *state_from_master, size_t len, bool reset, bool in_statement); bool is_empty(); element *get_element(uint32 domain_id); int put_back_list(list_element *list); void update_state_hash(uint64 sub_id, rpl_gtid *gtid, void *hton, rpl_group_info *rgi); int record_and_update_gtid(THD *thd, struct rpl_group_info *rgi); int check_duplicate_gtid(rpl_gtid *gtid, rpl_group_info *rgi); void release_domain_owner(rpl_group_info *rgi); void set_gtid_pos_tables_list(gtid_pos_table *new_list, gtid_pos_table *default_entry); void add_gtid_pos_table(gtid_pos_table *entry); struct gtid_pos_table *alloc_gtid_pos_table(LEX_CSTRING *table_name, void *hton, rpl_slave_state::gtid_pos_table_state state); void free_gtid_pos_tables(struct gtid_pos_table *list); }; /* Binlog state. This keeps the last GTID written to the binlog for every distinct (domain_id, server_id) pair. This will be logged at the start of the next binlog file as a Gtid_list_log_event; this way, it is easy to find the binlog file containing a given GTID, by simply scanning backwards from the newest one until a lower seq_no is found in the Gtid_list_log_event at the start of a binlog for the given domain_id and server_id. We also remember the last logged GTID for every domain_id. This is used to know where to start when a master is changed to a slave. As a side effect, it also allows to skip a hash lookup in the very common case of logging a new GTID with same server id as last GTID. */ struct rpl_binlog_state { struct element { uint32 domain_id; HASH hash; /* Containing all server_id for one domain_id */ /* The most recent entry in the hash. */ rpl_gtid *last_gtid; /* Counter to allocate next seq_no for this domain. */ uint64 seq_no_counter; int update_element(const rpl_gtid *gtid); }; /* Mapping from domain_id to collection of elements. */ HASH hash; /* Mutex protecting access to the state. */ mysql_mutex_t LOCK_binlog_state; my_bool initialized; /* Auxiliary buffer to sort gtid list. */ DYNAMIC_ARRAY gtid_sort_array; rpl_binlog_state() :initialized(0) {} ~rpl_binlog_state(); void init(); void reset_nolock(); void reset(); void free(); bool load(struct rpl_gtid *list, uint32 count); bool load(rpl_slave_state *slave_pos); int update_nolock(const struct rpl_gtid *gtid, bool strict); int update(const struct rpl_gtid *gtid, bool strict); int update_with_next_gtid(uint32 domain_id, uint32 server_id, rpl_gtid *gtid); int alloc_element_nolock(const rpl_gtid *gtid); bool check_strict_sequence(uint32 domain_id, uint32 server_id, uint64 seq_no, bool no_error= false); int bump_seq_no_if_needed(uint32 domain_id, uint64 seq_no); int write_to_iocache(IO_CACHE *dest); int read_from_iocache(IO_CACHE *src); uint32 count(); int get_gtid_list(rpl_gtid *gtid_list, uint32 list_size); int get_most_recent_gtid_list(rpl_gtid **list, uint32 *size); bool append_pos(String *str); bool append_state(String *str); rpl_gtid *find_nolock(uint32 domain_id, uint32 server_id); rpl_gtid *find(uint32 domain_id, uint32 server_id); rpl_gtid *find_most_recent(uint32 domain_id); const char* drop_domain(DYNAMIC_ARRAY *ids, Gtid_list_log_event *glev, char*, size_t errbuf_size); }; /* Represent the GTID state that a slave connection to a master requests the master to start sending binlog events from. */ struct slave_connection_state { struct entry { rpl_gtid gtid; uint32 flags; }; /* Bits for 'flags' */ enum start_flags { START_OWN_SLAVE_POS= 0x1, START_ON_EMPTY_DOMAIN= 0x2 }; /* Mapping from domain_id to the entry with GTID requested for that domain. */ HASH hash; /* Auxiliary buffer to sort gtid list. */ DYNAMIC_ARRAY gtid_sort_array; slave_connection_state(); ~slave_connection_state(); void reset() { my_hash_reset(&hash); } int load(const char *slave_request, size_t len); int load(const rpl_gtid *gtid_list, uint32 count); int load(rpl_slave_state *state, rpl_gtid *extra_gtids, uint32 num_extra); rpl_gtid *find(uint32 domain_id); entry *find_entry(uint32 domain_id); int update(const rpl_gtid *in_gtid); void remove(const rpl_gtid *gtid); void remove_if_present(const rpl_gtid *in_gtid); ulong count() const { return hash.records; } int to_string(String *out_str); int append_to_string(String *out_str); int get_gtid_list(rpl_gtid *gtid_list, uint32 list_size); bool is_pos_reached(); }; extern bool rpl_slave_state_tostring_helper(String *dest, const rpl_gtid *gtid, bool *first); extern int gtid_check_rpl_slave_state_table(TABLE *table); extern rpl_gtid *gtid_parse_string_to_list(const char *p, size_t len, uint32 *out_len); extern rpl_gtid *gtid_unpack_string_to_list(const char *p, size_t len, uint32 *out_len); /* This class ensures that the GTID state of an event stream is consistent with the set of provided binary log files. In particular, it has two concerns: 1) Ensuring that GTID events are monotonically increasing within each domain 2) Ensuring that the GTID state of the specified binary logs is consistent both with the initial state that a user provides, and between binary logs (if multiple are specified) */ class Binlog_gtid_state_validator { public: struct audit_elem { uint32 domain_id; /* Holds the largest GTID received, and is indexed by domain_id */ rpl_gtid last_gtid; /* Holds the largest GTID received, and is indexed by domain_id */ rpl_gtid start_gtid; /* List of the problematic GTIDs received which were out of order */ DYNAMIC_ARRAY late_gtids_real; /* For each problematic GTID in late_gtids_real, this list contains the last GTID of the domain at the time of receiving the out of order GTID. */ DYNAMIC_ARRAY late_gtids_previous; }; Binlog_gtid_state_validator(); ~Binlog_gtid_state_validator(); /* Initialize where we should start monitoring for invalid GTID entries in the event stream. Note that these start positions must occur at or after a given binary logs GTID state (from Gtid_list_log_event) */ void initialize_start_gtids(rpl_gtid *start_gtids, size_t n_gtids); /* Initialize our current state so we know where to expect GTIDs to start increasing from. Error if the state exists after our expected start_gtid positions, because we know we will be missing event data (possibly from a purged log). */ my_bool initialize_gtid_state(FILE *out, rpl_gtid *gtids, size_t n_gtids); /* Ensures that the expected stop GTID positions exist within the specified binary logs. */ my_bool verify_stop_state(FILE *out, rpl_gtid *stop_gtids, size_t n_stop_gtids); /* Ensure a GTID state (e.g., from a Gtid_list_log_event) is consistent with the current state of our auditing. For example, if we see a GTID from a Gtid_list_log_event that is ahead of our current state for that domain, we have missed events (perhaps from a missing log). */ my_bool verify_gtid_state(FILE *out, rpl_gtid *gtid_state_cur); /* Take note of a new GTID being processed. returns TRUE if the GTID is invalid, FALSE on success */ my_bool record(rpl_gtid *gtid); /* Writes warnings/errors (if any) during GTID processing Returns TRUE if any findings were reported, FALSE otherwise */ my_bool report(FILE *out, my_bool is_strict_mode); static void report_details(FILE *out, const char *format, va_list args) { vfprintf(out, format, args); fprintf(out, "\n"); } static void warn(FILE *out, const char *format,...) { va_list args; va_start(args, format); fprintf(out, "WARNING: "); report_details(out, format, args); } static void error(FILE *out, const char *format,...) { va_list args; va_start(args, format); fprintf(out, "ERROR: "); report_details(out, format, args); } private: /* Holds the records for each domain id we are monitoring. Elements are of type `struct audit_elem` and indexed by domian_id. */ HASH m_audit_elem_domain_lookup; }; /* Interface to support different methods of filtering log events by GTID */ class Gtid_event_filter { public: Gtid_event_filter() {}; virtual ~Gtid_event_filter() {}; enum gtid_event_filter_type { DELEGATING_GTID_FILTER_TYPE = 1, WINDOW_GTID_FILTER_TYPE = 2, ACCEPT_ALL_GTID_FILTER_TYPE = 3, REJECT_ALL_GTID_FILTER_TYPE = 4, INTERSECTING_GTID_FILTER_TYPE = 5 }; enum class id_restriction_mode { MODE_NOT_SET, WHITELIST_MODE, BLACKLIST_MODE, }; /* Run the filter on an input gtid to test if the corresponding log events should be excluded from a result Returns TRUE when the event group corresponding to the input GTID should be excluded. Returns FALSE when the event group should be included. */ virtual my_bool exclude(rpl_gtid *) = 0; /* The gtid_event_filter_type that corresponds to the underlying filter implementation */ virtual uint32 get_filter_type() = 0; /* For filters that can maintain their own state, this tests if the filter implementation has completed. Returns TRUE when completed, and FALSE when the filter has not finished. */ virtual my_bool has_finished() = 0; /** Check that this filter implementation is at a final, completed state, and warn if it is not. For a filter that can maintain their own state, this not only validates if the filter ::has_finished(), but may also print specific warnings for its variety of non-final states. For a filter that manage multiple subfilters, this should iterate through all of those to have each self-report any ineffectiveness. This cumulative result may not correlate with the ::has_finished() state. @return `false` if the filter is at a completed state, or `true` if it warned incompleteness (This scheme is the opposite of has_finished()!) */ virtual bool verify_final_state() { return false; } }; /* Filter implementation which will include any and all input GTIDs. This is used to set default behavior for GTIDs that do not have explicit filters set on their domain_id, e.g. when a Window_gtid_event_filter is used for a specific domain, then all other domain_ids will be accepted using this filter implementation. */ class Accept_all_gtid_filter : public Gtid_event_filter { public: Accept_all_gtid_filter() {} ~Accept_all_gtid_filter() {} my_bool exclude(rpl_gtid *) override { return FALSE; } uint32 get_filter_type() override { return ACCEPT_ALL_GTID_FILTER_TYPE; } my_bool has_finished() override { return FALSE; } }; /* Filter implementation to exclude all tested GTIDs. */ class Reject_all_gtid_filter : public Gtid_event_filter { public: Reject_all_gtid_filter() {} ~Reject_all_gtid_filter() {} my_bool exclude(rpl_gtid *) override { return TRUE; } uint32 get_filter_type() override { return REJECT_ALL_GTID_FILTER_TYPE; } my_bool has_finished() override { return FALSE; } }; /* A filter implementation that includes events that exist between two GTID positions, m_start (exclusive) and m_stop (inclusive), within a domain. This filter is stateful, such that it expects GTIDs to be an increasing stream, and internally, the window will activate and deactivate when the start and stop positions of the event stream have passed through, respectively. */ class Window_gtid_event_filter : public Gtid_event_filter { public: Window_gtid_event_filter(); ~Window_gtid_event_filter() {} my_bool exclude(rpl_gtid*) override; my_bool has_finished() override; bool verify_final_state() override; /* Set the GTID that begins this window (exclusive) Returns 0 on ok, non-zero on error */ int set_start_gtid(rpl_gtid *start); /* Set the GTID that ends this window (inclusive) Returns 0 on ok, non-zero on error */ int set_stop_gtid(rpl_gtid *stop); uint32 get_filter_type() override { return WINDOW_GTID_FILTER_TYPE; } /* Validates the underlying range is correct, and writes an error if not, i.e. m_start >= m_stop. Returns FALSE on ok, TRUE if range is invalid */ my_bool is_range_invalid(); /* Getter/setter methods */ my_bool has_start() { return m_has_start; } my_bool has_stop() { return m_has_stop; } rpl_gtid get_start_gtid() { return m_start; } rpl_gtid get_stop_gtid() { return m_stop; } void clear_start_pos() { m_has_start= FALSE; m_start= {0, 0, 0}; } void clear_stop_pos() { m_has_stop= FALSE; m_stop= {0, 0, 0}; } private: enum warning_flags { WARN_GTID_SEQUENCE_NUMBER_OUT_OF_ORDER= 0x1 }; /* m_has_start : Indicates if a start to this window has been explicitly provided. A window starts immediately if not provided. */ my_bool m_has_start; /* m_has_stop : Indicates if a stop to this window has been explicitly provided. A window continues indefinitely if not provided. */ my_bool m_has_stop; /* m_is_active : Indicates whether or not the program is currently reading events from within this window. When TRUE, events with different server ids than those specified by m_start or m_stop will be passed through. */ my_bool m_is_active; /* m_has_passed : Indicates whether or not the program is currently reading events from beyond this window. */ my_bool m_has_passed; /* m_start : marks the GTID that begins the window (exclusive). */ rpl_gtid m_start; /* m_stop : marks the GTID that ends the range (inclusive). */ rpl_gtid m_stop; }; template <typename T> struct gtid_filter_element { Gtid_event_filter *filter; T identifier; /* Used for HASH lookup */ }; /* Gtid_event_filter subclass which has no specific implementation, but rather delegates the filtering to specific identifiable/mapped implementations. A default filter is used for GTIDs that are passed through which no explicit filter can be identified. This class should be subclassed, where the get_id_from_gtid function specifies how to extract the filter identifier from a GTID. The type of the filter identifier is a template for the class. */ template <typename T> class Id_delegating_gtid_event_filter : public Gtid_event_filter { public: Id_delegating_gtid_event_filter(); ~Id_delegating_gtid_event_filter(); my_bool exclude(rpl_gtid *gtid) override; my_bool has_finished() override; bool verify_final_state() override; void set_default_filter(Gtid_event_filter *default_filter); uint32 get_filter_type() override { return DELEGATING_GTID_FILTER_TYPE; } virtual T get_id_from_gtid(rpl_gtid *) = 0; virtual const char* get_id_type_name() = 0; /* Sets restrictions on entire ids using the corresponding mode (i.e. either whitelist or blacklist, refer to Gtid_event_filter::id_restriction_mode) A blacklist will allow all ids except for the ones provided in the input list. A whitelist will only allow ids provided in the input list. Returns 0 on ok, non-zero on error. */ int set_id_restrictions(T *id_list, size_t n_ids, Gtid_event_filter::id_restriction_mode mode); protected: uint32 m_num_stateful_filters; uint32 m_num_completed_filters; Gtid_event_filter *m_default_filter; HASH m_filters_by_id_hash; Gtid_event_filter::id_restriction_mode m_id_restriction_mode; gtid_filter_element<T> *find_or_create_filter_element_for_id(T); }; /* A subclass of Id_delegating_gtid_event_filter which identifies filters using the domain id of a GTID. Additional helper functions include: add_start_gtid(GTID) : adds a start GTID position to this filter, to be identified by its domain id add_stop_gtid(GTID) : adds a stop GTID position to this filter, to be identified by its domain id clear_start_gtids() : removes existing GTID start positions clear_stop_gtids() : removes existing GTID stop positions get_start_gtids() : gets all added GTID start positions get_stop_gtids() : gets all added GTID stop positions get_num_start_gtids() : gets the count of added GTID start positions get_num_stop_gtids() : gets the count of added GTID stop positions */ class Domain_gtid_event_filter : public Id_delegating_gtid_event_filter<decltype(rpl_gtid::domain_id)> { public: Domain_gtid_event_filter() { my_init_dynamic_array(PSI_INSTRUMENT_ME, &m_start_filters, sizeof(decltype(rpl_gtid::domain_id) *), 8, 8, MYF(0)); my_init_dynamic_array(PSI_INSTRUMENT_ME, &m_stop_filters, sizeof(decltype(rpl_gtid::domain_id) *), 8, 8, MYF(0)); } ~Domain_gtid_event_filter() { delete_dynamic(&m_start_filters); delete_dynamic(&m_stop_filters); } /* Returns the domain id of from the input GTID */ decltype(rpl_gtid::domain_id) get_id_from_gtid(rpl_gtid *gtid) override { return gtid->domain_id; } const char* get_id_type_name() override { return "domain"; } /* Override Id_delegating_gtid_event_filter to extend with domain specific filtering logic */ my_bool exclude(rpl_gtid*) override; /* Validates that window filters with both a start and stop GTID satisfy stop_gtid > start_gtid Returns 0 on ok, non-zero if any windows are invalid. */ int validate_window_filters(); /* Helper function to start a GTID window filter at the given GTID Returns 0 on ok, non-zero on error */ int add_start_gtid(rpl_gtid *gtid); /* Helper function to end a GTID window filter at the given GTID Returns 0 on ok, non-zero on error */ int add_stop_gtid(rpl_gtid *gtid); /* If start or stop position is respecified, we remove all existing values and start over with the new specification. */ void clear_start_gtids(); void clear_stop_gtids(); /* Return list of all GTIDs used as start position. Note that this list is allocated and it is up to the user to free it */ rpl_gtid *get_start_gtids(); /* Return list of all GTIDs used as stop position. Note that this list is allocated and it is up to the user to free it */ rpl_gtid *get_stop_gtids(); size_t get_num_start_gtids() { return m_start_filters.elements; } size_t get_num_stop_gtids() { return m_stop_filters.elements; } private: DYNAMIC_ARRAY m_start_filters; DYNAMIC_ARRAY m_stop_filters; Window_gtid_event_filter * find_or_create_window_filter_for_id(decltype(rpl_gtid::domain_id)); }; /* A subclass of Id_delegating_gtid_event_filter which identifies filters using the server id of a GTID. */ class Server_gtid_event_filter : public Id_delegating_gtid_event_filter<decltype(rpl_gtid::server_id)> { public: /* Returns the server id of from the input GTID */ decltype(rpl_gtid::server_id) get_id_from_gtid(rpl_gtid *gtid) override { return gtid->server_id; } const char* get_id_type_name() override { return "server"; } }; /* A Gtid_event_filter implementation that delegates the filtering to other filters, where the result is the intersection between them all. */ class Intersecting_gtid_event_filter : public Gtid_event_filter { public: Intersecting_gtid_event_filter(Gtid_event_filter *filter1, Gtid_event_filter *filter2); ~Intersecting_gtid_event_filter(); /* Returns TRUE if any filers exclude the gtid, returns FALSE otherwise, i.e. all filters must allow the GTID. */ my_bool exclude(rpl_gtid *gtid) override; /* Returns true if any filters have finished. To elaborate, as this filter performs an intersection, if any filter has finished, the result would be excluded regardless. */ my_bool has_finished() override; bool verify_final_state() override; uint32 get_filter_type() override { return INTERSECTING_GTID_FILTER_TYPE; } /* Adds a new filter to the intersection */ my_bool add_filter(Gtid_event_filter *filter) { return insert_dynamic(&m_filters, (void *) &filter); } protected: DYNAMIC_ARRAY m_filters; }; #endif /* RPL_GTID_H */
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