• Home
  • Features
  • Pricing
  • Docs
  • Announcements
  • Sign In

taosdata / TDengine / #3661

17 Mar 2025 05:39AM UTC coverage: 62.007% (-0.03%) from 62.039%
#3661

push

travis-ci

web-flow
tests: add tdb ut (#30093)

* fix: compile warnings

* tests: add tdb ut

* test(tdb): fix return code

* test: recover ut

* fix: minor changes

* fix: enable test

* fix: ut errors

---------

Co-authored-by: Minglei Jin <mljin@taosdata.com>

153829 of 317582 branches covered (48.44%)

Branch coverage included in aggregate %.

240310 of 318051 relevant lines covered (75.56%)

19602636.8 hits per line

Source File
Press 'n' to go to next uncovered line, 'b' for previous

39.71
/include/common/tmsg.h
1
/*
2
 * Copyright (c) 2019 TAOS Data, Inc. <jhtao@taosdata.com>
3
 *
4
 * This program is free software: you can use, redistribute, and/or modify
5
 * it under the terms of the GNU Affero General Public License, version 3
6
 * or later ("AGPL"), as published by the Free Software Foundation.
7
 *
8
 * This program is distributed in the hope that it will be useful, but WITHOUT
9
 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
10
 * FITNESS FOR A PARTICULAR PURPOSE.
11
 *
12
 * You should have received a copy of the GNU Affero General Public License
13
 * along with this program. If not, see <http://www.gnu.org/licenses/>.
14
 */
15

16
#ifndef _TD_COMMON_TAOS_MSG_H_
17
#define _TD_COMMON_TAOS_MSG_H_
18

19
#include "taosdef.h"
20
#include "taoserror.h"
21
#include "tarray.h"
22
#include "tcoding.h"
23
#include "tcol.h"
24
#include "tencode.h"
25
#include "thash.h"
26
#include "tlist.h"
27
#include "tname.h"
28
#include "trow.h"
29
#include "tuuid.h"
30

31
#ifdef __cplusplus
32
extern "C" {
33
#endif
34

35
/* ------------------------ MESSAGE DEFINITIONS ------------------------ */
36

37
#define TD_MSG_NUMBER_
38
#undef TD_MSG_DICT_
39
#undef TD_MSG_INFO_
40
#undef TD_MSG_TYPE_INFO_
41
#undef TD_MSG_RANGE_CODE_
42
#undef TD_MSG_SEG_CODE_
43
#include "tmsgdef.h"
44

45
#undef TD_MSG_NUMBER_
46
#undef TD_MSG_DICT_
47
#undef TD_MSG_INFO_
48
#undef TD_MSG_TYPE_INFO_
49
#undef TD_MSG_RANGE_CODE_
50
#define TD_MSG_SEG_CODE_
51
#include "tmsgdef.h"
52

53
#undef TD_MSG_NUMBER_
54
#undef TD_MSG_DICT_
55
#undef TD_MSG_INFO_
56
#undef TD_MSG_TYPE_INFO_
57
#undef TD_MSG_SEG_CODE_
58
#undef TD_MSG_RANGE_CODE_
59
#include "tmsgdef.h"
60

61
extern char*   tMsgInfo[];
62
extern int32_t tMsgDict[];
63
extern int32_t tMsgRangeDict[];
64

65
typedef uint16_t tmsg_t;
66

67
#define TMSG_SEG_CODE(TYPE) (((TYPE)&0xff00) >> 8)
68
#define TMSG_SEG_SEQ(TYPE)  ((TYPE)&0xff)
69
#define TMSG_INDEX(TYPE)    (tMsgDict[TMSG_SEG_CODE(TYPE)] + TMSG_SEG_SEQ(TYPE))
70

71
static inline bool tmsgIsValid(tmsg_t type) {
131,093,526✔
72
  // static int8_t sz = sizeof(tMsgRangeDict) / sizeof(tMsgRangeDict[0]);
73
  int8_t maxSegIdx = TMSG_SEG_CODE(TDMT_MAX_MSG_MIN);
131,093,526✔
74
  int    segIdx = TMSG_SEG_CODE(type);
131,093,526✔
75
  if (segIdx >= 0 && segIdx < maxSegIdx) {
131,093,526!
76
    return type < tMsgRangeDict[segIdx];
131,100,004✔
77
  }
78
  return false;
23✔
79
}
80

81
#define TMSG_INFO(type) (tmsgIsValid(type) ? tMsgInfo[TMSG_INDEX(type)] : "unKnown")
82

83
static inline bool vnodeIsMsgBlock(tmsg_t type) {
3,380,842✔
84
  return (type == TDMT_VND_CREATE_TABLE) || (type == TDMT_VND_ALTER_TABLE) || (type == TDMT_VND_DROP_TABLE) ||
3,355,110!
85
         (type == TDMT_VND_UPDATE_TAG_VAL) || (type == TDMT_VND_ALTER_CONFIRM) || (type == TDMT_VND_COMMIT) ||
6,735,952!
86
         (type == TDMT_SYNC_CONFIG_CHANGE);
87
}
88

89
static inline bool syncUtilUserCommit(tmsg_t msgType) {
55,474,665✔
90
  return msgType != TDMT_SYNC_NOOP && msgType != TDMT_SYNC_LEADER_TRANSFER;
55,474,665✔
91
}
92

93
/* ------------------------ OTHER DEFINITIONS ------------------------ */
94
// IE type
95
#define TSDB_IE_TYPE_SEC         1
96
#define TSDB_IE_TYPE_META        2
97
#define TSDB_IE_TYPE_MGMT_IP     3
98
#define TSDB_IE_TYPE_DNODE_CFG   4
99
#define TSDB_IE_TYPE_NEW_VERSION 5
100
#define TSDB_IE_TYPE_DNODE_EXT   6
101
#define TSDB_IE_TYPE_DNODE_STATE 7
102

103
enum {
104
  CONN_TYPE__QUERY = 1,
105
  CONN_TYPE__TMQ,
106
  CONN_TYPE__UDFD,
107
  CONN_TYPE__MAX,
108
};
109

110
enum {
111
  HEARTBEAT_KEY_USER_AUTHINFO = 1,
112
  HEARTBEAT_KEY_DBINFO,
113
  HEARTBEAT_KEY_STBINFO,
114
  HEARTBEAT_KEY_TMQ,
115
  HEARTBEAT_KEY_DYN_VIEW,
116
  HEARTBEAT_KEY_VIEWINFO,
117
  HEARTBEAT_KEY_TSMA,
118
};
119

120
typedef enum _mgmt_table {
121
  TSDB_MGMT_TABLE_START,
122
  TSDB_MGMT_TABLE_DNODE,
123
  TSDB_MGMT_TABLE_MNODE,
124
  TSDB_MGMT_TABLE_MODULE,
125
  TSDB_MGMT_TABLE_QNODE,
126
  TSDB_MGMT_TABLE_SNODE,
127
  TSDB_MGMT_TABLE_BNODE,  // no longer used
128
  TSDB_MGMT_TABLE_CLUSTER,
129
  TSDB_MGMT_TABLE_DB,
130
  TSDB_MGMT_TABLE_FUNC,
131
  TSDB_MGMT_TABLE_INDEX,
132
  TSDB_MGMT_TABLE_STB,
133
  TSDB_MGMT_TABLE_STREAMS,
134
  TSDB_MGMT_TABLE_TABLE,
135
  TSDB_MGMT_TABLE_TAG,
136
  TSDB_MGMT_TABLE_COL,
137
  TSDB_MGMT_TABLE_USER,
138
  TSDB_MGMT_TABLE_GRANTS,
139
  TSDB_MGMT_TABLE_VGROUP,
140
  TSDB_MGMT_TABLE_TOPICS,
141
  TSDB_MGMT_TABLE_CONSUMERS,
142
  TSDB_MGMT_TABLE_SUBSCRIPTIONS,
143
  TSDB_MGMT_TABLE_TRANS,
144
  TSDB_MGMT_TABLE_SMAS,
145
  TSDB_MGMT_TABLE_CONFIGS,
146
  TSDB_MGMT_TABLE_CONNS,
147
  TSDB_MGMT_TABLE_QUERIES,
148
  TSDB_MGMT_TABLE_VNODES,
149
  TSDB_MGMT_TABLE_APPS,
150
  TSDB_MGMT_TABLE_STREAM_TASKS,
151
  TSDB_MGMT_TABLE_PRIVILEGES,
152
  TSDB_MGMT_TABLE_VIEWS,
153
  TSDB_MGMT_TABLE_TSMAS,
154
  TSDB_MGMT_TABLE_COMPACT,
155
  TSDB_MGMT_TABLE_COMPACT_DETAIL,
156
  TSDB_MGMT_TABLE_GRANTS_FULL,
157
  TSDB_MGMT_TABLE_GRANTS_LOGS,
158
  TSDB_MGMT_TABLE_MACHINES,
159
  TSDB_MGMT_TABLE_ARBGROUP,
160
  TSDB_MGMT_TABLE_ENCRYPTIONS,
161
  TSDB_MGMT_TABLE_USER_FULL,
162
  TSDB_MGMT_TABLE_ANODE,
163
  TSDB_MGMT_TABLE_ANODE_FULL,
164
  TSDB_MGMT_TABLE_USAGE,
165
  TSDB_MGMT_TABLE_FILESETS,
166
  TSDB_MGMT_TABLE_TRANSACTION_DETAIL,
167
  TSDB_MGMT_TABLE_MAX,
168
} EShowType;
169

170
#define TSDB_ALTER_TABLE_ADD_TAG                         1
171
#define TSDB_ALTER_TABLE_DROP_TAG                        2
172
#define TSDB_ALTER_TABLE_UPDATE_TAG_NAME                 3
173
#define TSDB_ALTER_TABLE_UPDATE_TAG_VAL                  4
174
#define TSDB_ALTER_TABLE_ADD_COLUMN                      5
175
#define TSDB_ALTER_TABLE_DROP_COLUMN                     6
176
#define TSDB_ALTER_TABLE_UPDATE_COLUMN_BYTES             7
177
#define TSDB_ALTER_TABLE_UPDATE_TAG_BYTES                8
178
#define TSDB_ALTER_TABLE_UPDATE_OPTIONS                  9
179
#define TSDB_ALTER_TABLE_UPDATE_COLUMN_NAME              10
180
#define TSDB_ALTER_TABLE_ADD_TAG_INDEX                   11
181
#define TSDB_ALTER_TABLE_DROP_TAG_INDEX                  12
182
#define TSDB_ALTER_TABLE_UPDATE_COLUMN_COMPRESS          13
183
#define TSDB_ALTER_TABLE_ADD_COLUMN_WITH_COMPRESS_OPTION 14
184
#define TSDB_ALTER_TABLE_UPDATE_MULTI_TAG_VAL            15
185
#define TSDB_ALTER_TABLE_ALTER_COLUMN_REF                16
186
#define TSDB_ALTER_TABLE_REMOVE_COLUMN_REF               17
187
#define TSDB_ALTER_TABLE_ADD_COLUMN_WITH_COLUMN_REF      18
188

189
#define TSDB_FILL_NONE        0
190
#define TSDB_FILL_NULL        1
191
#define TSDB_FILL_NULL_F      2
192
#define TSDB_FILL_SET_VALUE   3
193
#define TSDB_FILL_SET_VALUE_F 4
194
#define TSDB_FILL_LINEAR      5
195
#define TSDB_FILL_PREV        6
196
#define TSDB_FILL_NEXT        7
197
#define TSDB_FILL_NEAR        8
198

199
#define TSDB_ALTER_USER_PASSWD          0x1
200
#define TSDB_ALTER_USER_SUPERUSER       0x2
201
#define TSDB_ALTER_USER_ENABLE          0x3
202
#define TSDB_ALTER_USER_SYSINFO         0x4
203
#define TSDB_ALTER_USER_ADD_PRIVILEGES  0x5
204
#define TSDB_ALTER_USER_DEL_PRIVILEGES  0x6
205
#define TSDB_ALTER_USER_ADD_WHITE_LIST  0x7
206
#define TSDB_ALTER_USER_DROP_WHITE_LIST 0x8
207
#define TSDB_ALTER_USER_CREATEDB        0x9
208

209
#define TSDB_KILL_MSG_LEN 30
210

211
#define TSDB_TABLE_NUM_UNIT 100000
212

213
#define TSDB_VN_READ_ACCCESS  ((char)0x1)
214
#define TSDB_VN_WRITE_ACCCESS ((char)0x2)
215
#define TSDB_VN_ALL_ACCCESS   (TSDB_VN_READ_ACCCESS | TSDB_VN_WRITE_ACCCESS)
216

217
#define TSDB_COL_NORMAL 0x0u  // the normal column of the table
218
#define TSDB_COL_TAG    0x1u  // the tag column type
219
#define TSDB_COL_UDC    0x2u  // the user specified normal string column, it is a dummy column
220
#define TSDB_COL_TMP    0x4u  // internal column generated by the previous operators
221
#define TSDB_COL_NULL   0x8u  // the column filter NULL or not
222

223
#define TSDB_COL_IS_TAG(f)        (((f & (~(TSDB_COL_NULL))) & TSDB_COL_TAG) != 0)
224
#define TSDB_COL_IS_NORMAL_COL(f) ((f & (~(TSDB_COL_NULL))) == TSDB_COL_NORMAL)
225
#define TSDB_COL_IS_UD_COL(f)     ((f & (~(TSDB_COL_NULL))) == TSDB_COL_UDC)
226
#define TSDB_COL_REQ_NULL(f)      (((f)&TSDB_COL_NULL) != 0)
227

228
#define TD_SUPER_TABLE          TSDB_SUPER_TABLE
229
#define TD_CHILD_TABLE          TSDB_CHILD_TABLE
230
#define TD_NORMAL_TABLE         TSDB_NORMAL_TABLE
231
#define TD_VIRTUAL_NORMAL_TABLE TSDB_VIRTUAL_NORMAL_TABLE
232
#define TD_VIRTUAL_CHILD_TABLE  TSDB_VIRTUAL_CHILD_TABLE
233

234
typedef enum ENodeType {
235
  // Syntax nodes are used in parser and planner module, and some are also used in executor module, such as COLUMN,
236
  // VALUE, OPERATOR, FUNCTION and so on.
237
  QUERY_NODE_COLUMN = 1,
238
  QUERY_NODE_VALUE,
239
  QUERY_NODE_OPERATOR,
240
  QUERY_NODE_LOGIC_CONDITION,
241
  QUERY_NODE_FUNCTION,
242
  QUERY_NODE_REAL_TABLE,
243
  QUERY_NODE_TEMP_TABLE,
244
  QUERY_NODE_JOIN_TABLE,
245
  QUERY_NODE_GROUPING_SET,
246
  QUERY_NODE_ORDER_BY_EXPR,
247
  QUERY_NODE_LIMIT,
248
  QUERY_NODE_STATE_WINDOW,
249
  QUERY_NODE_SESSION_WINDOW,
250
  QUERY_NODE_INTERVAL_WINDOW,
251
  QUERY_NODE_NODE_LIST,
252
  QUERY_NODE_FILL,
253
  QUERY_NODE_RAW_EXPR,  // Only be used in parser module.
254
  QUERY_NODE_TARGET,
255
  QUERY_NODE_DATABLOCK_DESC,
256
  QUERY_NODE_SLOT_DESC,
257
  QUERY_NODE_COLUMN_DEF,
258
  QUERY_NODE_DOWNSTREAM_SOURCE,
259
  QUERY_NODE_DATABASE_OPTIONS,
260
  QUERY_NODE_TABLE_OPTIONS,
261
  QUERY_NODE_INDEX_OPTIONS,
262
  QUERY_NODE_EXPLAIN_OPTIONS,
263
  QUERY_NODE_STREAM_OPTIONS,
264
  QUERY_NODE_LEFT_VALUE,
265
  QUERY_NODE_COLUMN_REF,
266
  QUERY_NODE_WHEN_THEN,
267
  QUERY_NODE_CASE_WHEN,
268
  QUERY_NODE_EVENT_WINDOW,
269
  QUERY_NODE_HINT,
270
  QUERY_NODE_VIEW,
271
  QUERY_NODE_WINDOW_OFFSET,
272
  QUERY_NODE_COUNT_WINDOW,
273
  QUERY_NODE_COLUMN_OPTIONS,
274
  QUERY_NODE_TSMA_OPTIONS,
275
  QUERY_NODE_ANOMALY_WINDOW,
276
  QUERY_NODE_RANGE_AROUND,
277
  QUERY_NODE_STREAM_NOTIFY_OPTIONS,
278
  QUERY_NODE_VIRTUAL_TABLE,
279

280
  // Statement nodes are used in parser and planner module.
281
  QUERY_NODE_SET_OPERATOR = 100,
282
  QUERY_NODE_SELECT_STMT,
283
  QUERY_NODE_VNODE_MODIFY_STMT,
284
  QUERY_NODE_CREATE_DATABASE_STMT,
285
  QUERY_NODE_DROP_DATABASE_STMT,
286
  QUERY_NODE_ALTER_DATABASE_STMT,
287
  QUERY_NODE_FLUSH_DATABASE_STMT,
288
  QUERY_NODE_TRIM_DATABASE_STMT,
289
  QUERY_NODE_CREATE_TABLE_STMT,
290
  QUERY_NODE_CREATE_SUBTABLE_CLAUSE,
291
  QUERY_NODE_CREATE_MULTI_TABLES_STMT,
292
  QUERY_NODE_DROP_TABLE_CLAUSE,
293
  QUERY_NODE_DROP_TABLE_STMT,
294
  QUERY_NODE_DROP_SUPER_TABLE_STMT,
295
  QUERY_NODE_ALTER_TABLE_STMT,
296
  QUERY_NODE_ALTER_SUPER_TABLE_STMT,
297
  QUERY_NODE_CREATE_USER_STMT,
298
  QUERY_NODE_ALTER_USER_STMT,
299
  QUERY_NODE_DROP_USER_STMT,
300
  QUERY_NODE_USE_DATABASE_STMT,
301
  QUERY_NODE_CREATE_DNODE_STMT,
302
  QUERY_NODE_DROP_DNODE_STMT,
303
  QUERY_NODE_ALTER_DNODE_STMT,
304
  QUERY_NODE_CREATE_INDEX_STMT,
305
  QUERY_NODE_DROP_INDEX_STMT,
306
  QUERY_NODE_CREATE_QNODE_STMT,
307
  QUERY_NODE_DROP_QNODE_STMT,
308
  QUERY_NODE_CREATE_BNODE_STMT,
309
  QUERY_NODE_DROP_BNODE_STMT,
310
  QUERY_NODE_CREATE_SNODE_STMT,
311
  QUERY_NODE_DROP_SNODE_STMT,
312
  QUERY_NODE_CREATE_MNODE_STMT,
313
  QUERY_NODE_DROP_MNODE_STMT,
314
  QUERY_NODE_CREATE_TOPIC_STMT,
315
  QUERY_NODE_DROP_TOPIC_STMT,
316
  QUERY_NODE_DROP_CGROUP_STMT,
317
  QUERY_NODE_ALTER_LOCAL_STMT,
318
  QUERY_NODE_EXPLAIN_STMT,
319
  QUERY_NODE_DESCRIBE_STMT,
320
  QUERY_NODE_RESET_QUERY_CACHE_STMT,
321
  QUERY_NODE_COMPACT_DATABASE_STMT,
322
  QUERY_NODE_COMPACT_VGROUPS_STMT,
323
  QUERY_NODE_CREATE_FUNCTION_STMT,
324
  QUERY_NODE_DROP_FUNCTION_STMT,
325
  QUERY_NODE_CREATE_STREAM_STMT,
326
  QUERY_NODE_DROP_STREAM_STMT,
327
  QUERY_NODE_BALANCE_VGROUP_STMT,
328
  QUERY_NODE_MERGE_VGROUP_STMT,
329
  QUERY_NODE_REDISTRIBUTE_VGROUP_STMT,
330
  QUERY_NODE_SPLIT_VGROUP_STMT,
331
  QUERY_NODE_SYNCDB_STMT,
332
  QUERY_NODE_GRANT_STMT,
333
  QUERY_NODE_REVOKE_STMT,
334
  QUERY_NODE_ALTER_CLUSTER_STMT,
335
  QUERY_NODE_S3MIGRATE_DATABASE_STMT,
336
  QUERY_NODE_CREATE_TSMA_STMT,
337
  QUERY_NODE_DROP_TSMA_STMT,
338
  QUERY_NODE_CREATE_VIRTUAL_TABLE_STMT,
339
  QUERY_NODE_CREATE_VIRTUAL_SUBTABLE_STMT,
340
  QUERY_NODE_DROP_VIRTUAL_TABLE_STMT,
341
  QUERY_NODE_ALTER_VIRTUAL_TABLE_STMT,
342

343
  // placeholder for [154, 180]
344
  QUERY_NODE_SHOW_CREATE_VIEW_STMT = 181,
345
  QUERY_NODE_SHOW_CREATE_DATABASE_STMT,
346
  QUERY_NODE_SHOW_CREATE_TABLE_STMT,
347
  QUERY_NODE_SHOW_CREATE_STABLE_STMT,
348
  QUERY_NODE_SHOW_TABLE_DISTRIBUTED_STMT,
349
  QUERY_NODE_SHOW_LOCAL_VARIABLES_STMT,
350
  QUERY_NODE_SHOW_SCORES_STMT,
351
  QUERY_NODE_SHOW_TABLE_TAGS_STMT,
352
  QUERY_NODE_KILL_CONNECTION_STMT,
353
  QUERY_NODE_KILL_QUERY_STMT,
354
  QUERY_NODE_KILL_TRANSACTION_STMT,
355
  QUERY_NODE_KILL_COMPACT_STMT,
356
  QUERY_NODE_DELETE_STMT,
357
  QUERY_NODE_INSERT_STMT,
358
  QUERY_NODE_QUERY,
359
  QUERY_NODE_SHOW_DB_ALIVE_STMT,
360
  QUERY_NODE_SHOW_CLUSTER_ALIVE_STMT,
361
  QUERY_NODE_BALANCE_VGROUP_LEADER_STMT,
362
  QUERY_NODE_BALANCE_VGROUP_LEADER_DATABASE_STMT,
363
  QUERY_NODE_RESTORE_DNODE_STMT,
364
  QUERY_NODE_RESTORE_QNODE_STMT,
365
  QUERY_NODE_RESTORE_MNODE_STMT,
366
  QUERY_NODE_RESTORE_VNODE_STMT,
367
  QUERY_NODE_PAUSE_STREAM_STMT,
368
  QUERY_NODE_RESUME_STREAM_STMT,
369
  QUERY_NODE_CREATE_VIEW_STMT,
370
  QUERY_NODE_DROP_VIEW_STMT,
371
  QUERY_NODE_CREATE_SUBTABLE_FROM_FILE_CLAUSE,
372
  QUERY_NODE_CREATE_ANODE_STMT,
373
  QUERY_NODE_DROP_ANODE_STMT,
374
  QUERY_NODE_UPDATE_ANODE_STMT,
375
  QUERY_NODE_ASSIGN_LEADER_STMT,
376
  QUERY_NODE_SHOW_CREATE_TSMA_STMT,
377
  QUERY_NODE_SHOW_CREATE_VTABLE_STMT,
378

379
  // show statement nodes
380
  // see 'sysTableShowAdapter', 'SYSTABLE_SHOW_TYPE_OFFSET'
381
  QUERY_NODE_SHOW_DNODES_STMT = 400,
382
  QUERY_NODE_SHOW_MNODES_STMT,
383
  QUERY_NODE_SHOW_MODULES_STMT,
384
  QUERY_NODE_SHOW_QNODES_STMT,
385
  QUERY_NODE_SHOW_SNODES_STMT,
386
  QUERY_NODE_SHOW_BNODES_STMT,
387
  QUERY_NODE_SHOW_ARBGROUPS_STMT,
388
  QUERY_NODE_SHOW_CLUSTER_STMT,
389
  QUERY_NODE_SHOW_DATABASES_STMT,
390
  QUERY_NODE_SHOW_FUNCTIONS_STMT,
391
  QUERY_NODE_SHOW_INDEXES_STMT,
392
  QUERY_NODE_SHOW_STABLES_STMT,
393
  QUERY_NODE_SHOW_STREAMS_STMT,
394
  QUERY_NODE_SHOW_TABLES_STMT,
395
  QUERY_NODE_SHOW_TAGS_STMT,
396
  QUERY_NODE_SHOW_USERS_STMT,
397
  QUERY_NODE_SHOW_USERS_FULL_STMT,
398
  QUERY_NODE_SHOW_LICENCES_STMT,
399
  QUERY_NODE_SHOW_VGROUPS_STMT,
400
  QUERY_NODE_SHOW_TOPICS_STMT,
401
  QUERY_NODE_SHOW_CONSUMERS_STMT,
402
  QUERY_NODE_SHOW_CONNECTIONS_STMT,
403
  QUERY_NODE_SHOW_QUERIES_STMT,
404
  QUERY_NODE_SHOW_APPS_STMT,
405
  QUERY_NODE_SHOW_VARIABLES_STMT,
406
  QUERY_NODE_SHOW_DNODE_VARIABLES_STMT,
407
  QUERY_NODE_SHOW_TRANSACTIONS_STMT,
408
  QUERY_NODE_SHOW_SUBSCRIPTIONS_STMT,
409
  QUERY_NODE_SHOW_VNODES_STMT,
410
  QUERY_NODE_SHOW_USER_PRIVILEGES_STMT,
411
  QUERY_NODE_SHOW_VIEWS_STMT,
412
  QUERY_NODE_SHOW_COMPACTS_STMT,
413
  QUERY_NODE_SHOW_COMPACT_DETAILS_STMT,
414
  QUERY_NODE_SHOW_GRANTS_FULL_STMT,
415
  QUERY_NODE_SHOW_GRANTS_LOGS_STMT,
416
  QUERY_NODE_SHOW_CLUSTER_MACHINES_STMT,
417
  QUERY_NODE_SHOW_ENCRYPTIONS_STMT,
418
  QUERY_NODE_SHOW_TSMAS_STMT,
419
  QUERY_NODE_SHOW_ANODES_STMT,
420
  QUERY_NODE_SHOW_ANODES_FULL_STMT,
421
  QUERY_NODE_SHOW_USAGE_STMT,
422
  QUERY_NODE_SHOW_FILESETS_STMT,
423
  QUERY_NODE_SHOW_TRANSACTION_DETAILS_STMT,
424
  QUERY_NODE_SHOW_VTABLES_STMT,
425

426
  // logic plan node
427
  QUERY_NODE_LOGIC_PLAN_SCAN = 1000,
428
  QUERY_NODE_LOGIC_PLAN_JOIN,
429
  QUERY_NODE_LOGIC_PLAN_AGG,
430
  QUERY_NODE_LOGIC_PLAN_PROJECT,
431
  QUERY_NODE_LOGIC_PLAN_VNODE_MODIFY,
432
  QUERY_NODE_LOGIC_PLAN_EXCHANGE,
433
  QUERY_NODE_LOGIC_PLAN_MERGE,
434
  QUERY_NODE_LOGIC_PLAN_WINDOW,
435
  QUERY_NODE_LOGIC_PLAN_FILL,
436
  QUERY_NODE_LOGIC_PLAN_SORT,
437
  QUERY_NODE_LOGIC_PLAN_PARTITION,
438
  QUERY_NODE_LOGIC_PLAN_INDEF_ROWS_FUNC,
439
  QUERY_NODE_LOGIC_PLAN_INTERP_FUNC,
440
  QUERY_NODE_LOGIC_SUBPLAN,
441
  QUERY_NODE_LOGIC_PLAN,
442
  QUERY_NODE_LOGIC_PLAN_GROUP_CACHE,
443
  QUERY_NODE_LOGIC_PLAN_DYN_QUERY_CTRL,
444
  QUERY_NODE_LOGIC_PLAN_FORECAST_FUNC,
445
  QUERY_NODE_LOGIC_PLAN_VIRTUAL_TABLE_SCAN,
446

447
  // physical plan node
448
  QUERY_NODE_PHYSICAL_PLAN_TAG_SCAN = 1100,
449
  QUERY_NODE_PHYSICAL_PLAN_TABLE_SCAN,
450
  QUERY_NODE_PHYSICAL_PLAN_TABLE_SEQ_SCAN,  // INACTIVE
451
  QUERY_NODE_PHYSICAL_PLAN_TABLE_MERGE_SCAN,
452
  QUERY_NODE_PHYSICAL_PLAN_STREAM_SCAN,
453
  QUERY_NODE_PHYSICAL_PLAN_SYSTABLE_SCAN,
454
  QUERY_NODE_PHYSICAL_PLAN_BLOCK_DIST_SCAN,
455
  QUERY_NODE_PHYSICAL_PLAN_LAST_ROW_SCAN,
456
  QUERY_NODE_PHYSICAL_PLAN_PROJECT,
457
  QUERY_NODE_PHYSICAL_PLAN_MERGE_JOIN,
458
  QUERY_NODE_PHYSICAL_PLAN_HASH_AGG,
459
  QUERY_NODE_PHYSICAL_PLAN_EXCHANGE,
460
  QUERY_NODE_PHYSICAL_PLAN_MERGE,
461
  QUERY_NODE_PHYSICAL_PLAN_SORT,
462
  QUERY_NODE_PHYSICAL_PLAN_GROUP_SORT,
463
  QUERY_NODE_PHYSICAL_PLAN_HASH_INTERVAL,
464
  QUERY_NODE_PHYSICAL_PLAN_MERGE_INTERVAL,  // INACTIVE
465
  QUERY_NODE_PHYSICAL_PLAN_MERGE_ALIGNED_INTERVAL,
466
  QUERY_NODE_PHYSICAL_PLAN_STREAM_INTERVAL,
467
  QUERY_NODE_PHYSICAL_PLAN_STREAM_FINAL_INTERVAL,
468
  QUERY_NODE_PHYSICAL_PLAN_STREAM_SEMI_INTERVAL,
469
  QUERY_NODE_PHYSICAL_PLAN_FILL,
470
  QUERY_NODE_PHYSICAL_PLAN_STREAM_FILL,
471
  QUERY_NODE_PHYSICAL_PLAN_MERGE_SESSION,
472
  QUERY_NODE_PHYSICAL_PLAN_STREAM_SESSION,
473
  QUERY_NODE_PHYSICAL_PLAN_STREAM_SEMI_SESSION,
474
  QUERY_NODE_PHYSICAL_PLAN_STREAM_FINAL_SESSION,
475
  QUERY_NODE_PHYSICAL_PLAN_MERGE_STATE,
476
  QUERY_NODE_PHYSICAL_PLAN_STREAM_STATE,
477
  QUERY_NODE_PHYSICAL_PLAN_PARTITION,
478
  QUERY_NODE_PHYSICAL_PLAN_STREAM_PARTITION,
479
  QUERY_NODE_PHYSICAL_PLAN_INDEF_ROWS_FUNC,
480
  QUERY_NODE_PHYSICAL_PLAN_INTERP_FUNC,
481
  QUERY_NODE_PHYSICAL_PLAN_DISPATCH,
482
  QUERY_NODE_PHYSICAL_PLAN_INSERT,
483
  QUERY_NODE_PHYSICAL_PLAN_QUERY_INSERT,
484
  QUERY_NODE_PHYSICAL_PLAN_DELETE,
485
  QUERY_NODE_PHYSICAL_SUBPLAN,
486
  QUERY_NODE_PHYSICAL_PLAN,
487
  QUERY_NODE_PHYSICAL_PLAN_TABLE_COUNT_SCAN,
488
  QUERY_NODE_PHYSICAL_PLAN_MERGE_EVENT,
489
  QUERY_NODE_PHYSICAL_PLAN_STREAM_EVENT,
490
  QUERY_NODE_PHYSICAL_PLAN_HASH_JOIN,
491
  QUERY_NODE_PHYSICAL_PLAN_GROUP_CACHE,
492
  QUERY_NODE_PHYSICAL_PLAN_DYN_QUERY_CTRL,
493
  QUERY_NODE_PHYSICAL_PLAN_MERGE_COUNT,
494
  QUERY_NODE_PHYSICAL_PLAN_STREAM_COUNT,
495
  QUERY_NODE_PHYSICAL_PLAN_STREAM_MID_INTERVAL,
496
  QUERY_NODE_PHYSICAL_PLAN_STREAM_CONTINUE_INTERVAL,
497
  QUERY_NODE_PHYSICAL_PLAN_MERGE_ANOMALY,
498
  QUERY_NODE_PHYSICAL_PLAN_STREAM_ANOMALY,
499
  QUERY_NODE_PHYSICAL_PLAN_FORECAST_FUNC,
500
  QUERY_NODE_PHYSICAL_PLAN_STREAM_INTERP_FUNC,
501
  QUERY_NODE_RESET_STREAM_STMT,
502
  QUERY_NODE_PHYSICAL_PLAN_STREAM_CONTINUE_SEMI_INTERVAL,
503
  QUERY_NODE_PHYSICAL_PLAN_STREAM_CONTINUE_FINAL_INTERVAL,
504
  QUERY_NODE_PHYSICAL_PLAN_STREAM_CONTINUE_SESSION,
505
  QUERY_NODE_PHYSICAL_PLAN_STREAM_CONTINUE_SEMI_SESSION,
506
  QUERY_NODE_PHYSICAL_PLAN_STREAM_CONTINUE_FINAL_SESSION,
507
  QUERY_NODE_PHYSICAL_PLAN_STREAM_CONTINUE_STATE,
508
  QUERY_NODE_PHYSICAL_PLAN_STREAM_CONTINUE_EVENT,
509
  QUERY_NODE_PHYSICAL_PLAN_STREAM_CONTINUE_COUNT,
510
  QUERY_NODE_PHYSICAL_PLAN_VIRTUAL_TABLE_SCAN,
511
} ENodeType;
512

513
typedef struct {
514
  int32_t     vgId;
515
  uint8_t     option;  // 0x0 REQ_OPT_TBNAME, 0x01 REQ_OPT_TBUID
516
  uint8_t     autoCreateCtb;  // 0x0 not auto create, 0x01 auto create
517
  const char* dbFName;
518
  const char* tbName;
519
} SBuildTableInput;
520

521
typedef struct {
522
  char    db[TSDB_DB_FNAME_LEN];
523
  int64_t dbId;
524
  int32_t vgVersion;
525
  int32_t numOfTable;  // unit is TSDB_TABLE_NUM_UNIT
526
  int64_t stateTs;
527
} SBuildUseDBInput;
528

529
typedef struct SField {
530
  char    name[TSDB_COL_NAME_LEN];
531
  uint8_t type;
532
  int8_t  flags;
533
  int32_t bytes;
534
} SField;
535
typedef struct SFieldWithOptions {
536
  char     name[TSDB_COL_NAME_LEN];
537
  uint8_t  type;
538
  int8_t   flags;
539
  int32_t  bytes;
540
  uint32_t compress;
541
  STypeMod typeMod;
542
} SFieldWithOptions;
543

544
typedef struct SRetention {
545
  int64_t freq;
546
  int64_t keep;
547
  int8_t  freqUnit;
548
  int8_t  keepUnit;
549
} SRetention;
550

551
#define RETENTION_VALID(l, r) ((((l) == 0 && (r)->freq >= 0) || ((r)->freq > 0)) && ((r)->keep > 0))
552

553
#pragma pack(push, 1)
554
// null-terminated string instead of char array to avoid too many memory consumption in case of more than 1M tableMeta
555
typedef struct SEp {
556
  char     fqdn[TSDB_FQDN_LEN];
557
  uint16_t port;
558
} SEp;
559

560
typedef struct {
561
  int32_t contLen;
562
  int32_t vgId;
563
} SMsgHead;
564

565
// Submit message for one table
566
typedef struct SSubmitBlk {
567
  int64_t uid;        // table unique id
568
  int64_t suid;       // stable id
569
  int32_t sversion;   // data schema version
570
  int32_t dataLen;    // data part length, not including the SSubmitBlk head
571
  int32_t schemaLen;  // schema length, if length is 0, no schema exists
572
  int32_t numOfRows;  // total number of rows in current submit block
573
  char    data[];
574
} SSubmitBlk;
575

576
// Submit message for this TSDB
577
typedef struct {
578
  SMsgHead header;
579
  int64_t  version;
580
  int32_t  length;
581
  int32_t  numOfBlocks;
582
  char     blocks[];
583
} SSubmitReq;
584

585
typedef struct {
586
  int32_t totalLen;
587
  int32_t len;
588
  STSRow* row;
589
} SSubmitBlkIter;
590

591
typedef struct {
592
  int32_t totalLen;
593
  int32_t len;
594
  // head of SSubmitBlk
595
  int64_t uid;        // table unique id
596
  int64_t suid;       // stable id
597
  int32_t sversion;   // data schema version
598
  int32_t dataLen;    // data part length, not including the SSubmitBlk head
599
  int32_t schemaLen;  // schema length, if length is 0, no schema exists
600
  int32_t numOfRows;  // total number of rows in current submit block
601
  // head of SSubmitBlk
602
  int32_t     numOfBlocks;
603
  const void* pMsg;
604
} SSubmitMsgIter;
605

606
int32_t tInitSubmitMsgIter(const SSubmitReq* pMsg, SSubmitMsgIter* pIter);
607
int32_t tGetSubmitMsgNext(SSubmitMsgIter* pIter, SSubmitBlk** pPBlock);
608
int32_t tInitSubmitBlkIter(SSubmitMsgIter* pMsgIter, SSubmitBlk* pBlock, SSubmitBlkIter* pIter);
609
STSRow* tGetSubmitBlkNext(SSubmitBlkIter* pIter);
610
// for debug
611
int32_t tPrintFixedSchemaSubmitReq(SSubmitReq* pReq, STSchema* pSchema);
612

613
typedef struct {
614
  bool     hasRef;
615
  col_id_t id;
616
  char     refDbName[TSDB_DB_NAME_LEN];
617
  char     refTableName[TSDB_TABLE_NAME_LEN];
618
  char     refColName[TSDB_COL_NAME_LEN];
619
} SColRef;
620

621
typedef struct {
622
  int32_t   nCols;
623
  int32_t   version;
624
  SColRef*  pColRef;
625
} SColRefWrapper;
626

627
typedef struct {
628
  int32_t vgId;
629
  SColRef colRef;
630
} SColRefEx;
631

632
typedef struct {
633
  int16_t colId;
634
  char    refDbName[TSDB_DB_NAME_LEN];
635
  char    refTableName[TSDB_TABLE_NAME_LEN];
636
  char    refColName[TSDB_COL_NAME_LEN];
637
} SRefColInfo;
638

639
typedef struct SVCTableRefCols {
640
  uint64_t     uid;
641
  int32_t      numOfSrcTbls;
642
  int32_t      numOfColRefs;
643
  SRefColInfo* refCols;
644
} SVCTableRefCols;
645

646
typedef struct SVCTableMergeInfo {
647
  uint64_t     uid;
648
  int32_t      numOfSrcTbls;
649
} SVCTableMergeInfo;
650

651
typedef struct {
652
  int32_t     nCols;
653
  SColRefEx*  pColRefEx;
654
} SColRefExWrapper;
655

656
struct SSchema {
657
  int8_t   type;
658
  int8_t   flags;
659
  col_id_t colId;
660
  int32_t  bytes;
661
  char     name[TSDB_COL_NAME_LEN];
662
};
663
struct SSchemaExt {
664
  col_id_t colId;
665
  uint32_t compress;
666
  STypeMod typeMod;
667
};
668

669
//
670

671
struct SSchema2 {
672
  int8_t   type;
673
  int8_t   flags;
674
  col_id_t colId;
675
  int32_t  bytes;
676
  char     name[TSDB_COL_NAME_LEN];
677
  uint32_t compress;
678
};
679

680
typedef struct {
681
  char        tbName[TSDB_TABLE_NAME_LEN];
682
  char        stbName[TSDB_TABLE_NAME_LEN];
683
  char        dbFName[TSDB_DB_FNAME_LEN];
684
  int64_t     dbId;
685
  int32_t     numOfTags;
686
  int32_t     numOfColumns;
687
  int8_t      precision;
688
  int8_t      tableType;
689
  int32_t     sversion;
690
  int32_t     tversion;
691
  uint64_t    suid;
692
  uint64_t    tuid;
693
  int32_t     vgId;
694
  int8_t      sysInfo;
695
  SSchema*    pSchemas;
696
  SSchemaExt* pSchemaExt;
697
  int8_t      virtualStb;
698
  int32_t     numOfColRefs;
699
  SColRef*    pColRefs;
700
} STableMetaRsp;
701

702
typedef struct {
703
  int32_t        code;
704
  int64_t        uid;
705
  char*          tblFName;
706
  int32_t        numOfRows;
707
  int32_t        affectedRows;
708
  int64_t        sver;
709
  STableMetaRsp* pMeta;
710
} SSubmitBlkRsp;
711

712
typedef struct {
713
  int32_t numOfRows;
714
  int32_t affectedRows;
715
  int32_t nBlocks;
716
  union {
717
    SArray*        pArray;
718
    SSubmitBlkRsp* pBlocks;
719
  };
720
} SSubmitRsp;
721

722
// int32_t tEncodeSSubmitRsp(SEncoder* pEncoder, const SSubmitRsp* pRsp);
723
// int32_t tDecodeSSubmitRsp(SDecoder* pDecoder, SSubmitRsp* pRsp);
724
// void    tFreeSSubmitBlkRsp(void* param);
725
void tFreeSSubmitRsp(SSubmitRsp* pRsp);
726

727
#define COL_SMA_ON     ((int8_t)0x1)
728
#define COL_IDX_ON     ((int8_t)0x2)
729
#define COL_IS_KEY     ((int8_t)0x4)
730
#define COL_SET_NULL   ((int8_t)0x10)
731
#define COL_SET_VAL    ((int8_t)0x20)
732
#define COL_IS_SYSINFO ((int8_t)0x40)
733
#define COL_HAS_TYPE_MOD ((int8_t)0x80)
734

735
#define COL_IS_SET(FLG)  (((FLG) & (COL_SET_VAL | COL_SET_NULL)) != 0)
736
#define COL_CLR_SET(FLG) ((FLG) &= (~(COL_SET_VAL | COL_SET_NULL)))
737

738
#define IS_BSMA_ON(s)  (((s)->flags & 0x01) == COL_SMA_ON)
739
#define IS_IDX_ON(s)   (((s)->flags & 0x02) == COL_IDX_ON)
740
#define IS_SET_NULL(s) (((s)->flags & COL_SET_NULL) == COL_SET_NULL)
741

742
#define SSCHMEA_SET_IDX_ON(s) \
743
  do {                        \
744
    (s)->flags |= COL_IDX_ON; \
745
  } while (0)
746

747
#define SSCHMEA_SET_IDX_OFF(s)   \
748
  do {                           \
749
    (s)->flags &= (~COL_IDX_ON); \
750
  } while (0)
751

752
#define SSCHEMA_SET_TYPE_MOD(s)     \
753
  do {                              \
754
    (s)->flags |= COL_HAS_TYPE_MOD; \
755
  } while (0)
756

757
#define HAS_TYPE_MOD(s) (((s)->flags & COL_HAS_TYPE_MOD))
758

759
#define SSCHMEA_TYPE(s)  ((s)->type)
760
#define SSCHMEA_FLAGS(s) ((s)->flags)
761
#define SSCHMEA_COLID(s) ((s)->colId)
762
#define SSCHMEA_BYTES(s) ((s)->bytes)
763
#define SSCHMEA_NAME(s)  ((s)->name)
764

765
typedef struct {
766
  bool    tsEnableMonitor;
767
  int32_t tsMonitorInterval;
768
  int32_t tsSlowLogThreshold;
769
  int32_t tsSlowLogMaxLen;
770
  int32_t tsSlowLogScope;
771
  int32_t tsSlowLogThresholdTest;  // Obsolete
772
  char    tsSlowLogExceptDb[TSDB_DB_NAME_LEN];
773
} SMonitorParas;
774

775
typedef struct {
776
  STypeMod typeMod;
777
} SExtSchema;
778

779
bool hasExtSchema(const SExtSchema* pExtSchema);
780

781
typedef struct {
782
  int32_t  nCols;
783
  int32_t  version;
784
  SSchema* pSchema;
785
} SSchemaWrapper;
786

787
typedef struct {
788
  col_id_t id;
789
  uint32_t alg;
790
} SColCmpr;
791

792
typedef struct {
793
  int32_t   nCols;
794
  int32_t   version;
795
  SColCmpr* pColCmpr;
796
} SColCmprWrapper;
797

798

799
static FORCE_INLINE int32_t tInitDefaultSColRefWrapperByCols(SColRefWrapper* pRef, int32_t nCols) {
800
  if (pRef->pColRef) {
253!
801
    return TSDB_CODE_INVALID_PARA;
×
802
  }
803
  pRef->pColRef = (SColRef*)taosMemoryCalloc(nCols, sizeof(SColRef));
253!
804
  if (pRef->pColRef == NULL) {
253!
805
    return terrno;
×
806
  }
807
  pRef->nCols = nCols;
253✔
808
  for (int32_t i = 0; i < nCols; i++) {
3,668✔
809
    pRef->pColRef[i].hasRef = false;
3,415✔
810
    pRef->pColRef[i].id = (col_id_t)(i + 1);
3,415✔
811
  }
812
  return 0;
253✔
813
}
814

815
static FORCE_INLINE SColCmprWrapper* tCloneSColCmprWrapper(const SColCmprWrapper* pSrcWrapper) {
816
  if (pSrcWrapper->pColCmpr == NULL || pSrcWrapper->nCols == 0) {
817
    terrno = TSDB_CODE_INVALID_PARA;
818
    return NULL;
819
  }
820

821
  SColCmprWrapper* pDstWrapper = (SColCmprWrapper*)taosMemoryMalloc(sizeof(SColCmprWrapper));
822
  if (pDstWrapper == NULL) {
823
    return NULL;
824
  }
825
  pDstWrapper->nCols = pSrcWrapper->nCols;
826
  pDstWrapper->version = pSrcWrapper->version;
827

828
  int32_t size = sizeof(SColCmpr) * pDstWrapper->nCols;
829
  pDstWrapper->pColCmpr = (SColCmpr*)taosMemoryCalloc(1, size);
830
  if (pDstWrapper->pColCmpr == NULL) {
831
    taosMemoryFree(pDstWrapper);
832
    return NULL;
833
  }
834
  (void)memcpy(pDstWrapper->pColCmpr, pSrcWrapper->pColCmpr, size);
835

836
  return pDstWrapper;
837
}
838

839
static FORCE_INLINE int32_t tInitDefaultSColCmprWrapperByCols(SColCmprWrapper* pCmpr, int32_t nCols) {
840
  if (!(!pCmpr->pColCmpr)) {
13,211!
841
    return TSDB_CODE_INVALID_PARA;
×
842
  }
843
  pCmpr->pColCmpr = (SColCmpr*)taosMemoryCalloc(nCols, sizeof(SColCmpr));
13,211!
844
  if (pCmpr->pColCmpr == NULL) {
13,211!
845
    return terrno;
×
846
  }
847
  pCmpr->nCols = nCols;
13,211✔
848
  return 0;
13,211✔
849
}
850

851
static FORCE_INLINE int32_t tInitDefaultSColCmprWrapper(SColCmprWrapper* pCmpr, SSchemaWrapper* pSchema) {
852
  pCmpr->nCols = pSchema->nCols;
853
  if (!(!pCmpr->pColCmpr)) {
854
    return TSDB_CODE_INVALID_PARA;
855
  }
856
  pCmpr->pColCmpr = (SColCmpr*)taosMemoryCalloc(pCmpr->nCols, sizeof(SColCmpr));
857
  if (pCmpr->pColCmpr == NULL) {
858
    return terrno;
859
  }
860
  for (int32_t i = 0; i < pCmpr->nCols; i++) {
861
    SColCmpr* pColCmpr = &pCmpr->pColCmpr[i];
862
    SSchema*  pColSchema = &pSchema->pSchema[i];
863
    pColCmpr->id = pColSchema->colId;
864
    pColCmpr->alg = 0;
865
  }
866
  return 0;
867
}
868

869
static FORCE_INLINE void tDeleteSColCmprWrapper(SColCmprWrapper* pWrapper) {
870
  if (pWrapper == NULL) return;
871

872
  taosMemoryFreeClear(pWrapper->pColCmpr);
873
  taosMemoryFreeClear(pWrapper);
874
}
875
static FORCE_INLINE SSchemaWrapper* tCloneSSchemaWrapper(const SSchemaWrapper* pSchemaWrapper) {
876
  if (pSchemaWrapper->pSchema == NULL) return NULL;
11,324,464!
877

878
  SSchemaWrapper* pSW = (SSchemaWrapper*)taosMemoryMalloc(sizeof(SSchemaWrapper));
11,324,464!
879
  if (pSW == NULL) {
11,321,305!
880
    return NULL;
×
881
  }
882
  pSW->nCols = pSchemaWrapper->nCols;
11,321,305✔
883
  pSW->version = pSchemaWrapper->version;
11,321,305✔
884
  pSW->pSchema = (SSchema*)taosMemoryCalloc(pSW->nCols, sizeof(SSchema));
11,321,305!
885
  if (pSW->pSchema == NULL) {
11,320,737!
886
    taosMemoryFree(pSW);
×
887
    return NULL;
×
888
  }
889

890
  (void)memcpy(pSW->pSchema, pSchemaWrapper->pSchema, pSW->nCols * sizeof(SSchema));
11,320,737✔
891
  return pSW;
11,320,737✔
892
}
893

894
static FORCE_INLINE void tDeleteSchemaWrapper(SSchemaWrapper* pSchemaWrapper) {
1,056,883✔
895
  if (pSchemaWrapper) {
27,266,627!
896
    taosMemoryFree(pSchemaWrapper->pSchema);
10,658,057!
897
    taosMemoryFree(pSchemaWrapper);
10,658,177!
898
  }
899
}
27,148,801✔
900

901
static FORCE_INLINE void tDeleteSSchemaWrapperForHash(void* pSchemaWrapper) {
1,541,105✔
902
  if (pSchemaWrapper != NULL && *(SSchemaWrapper**)pSchemaWrapper != NULL) {
1,541,105!
903
    taosMemoryFree((*(SSchemaWrapper**)pSchemaWrapper)->pSchema);
1,541,263!
904
    taosMemoryFree(*(SSchemaWrapper**)pSchemaWrapper);
1,541,511!
905
  }
906
}
1,540,845✔
907

908
static FORCE_INLINE int32_t taosEncodeSSchema(void** buf, const SSchema* pSchema) {
909
  int32_t tlen = 0;
16,145,978✔
910
  tlen += taosEncodeFixedI8(buf, pSchema->type);
32,291,956✔
911
  tlen += taosEncodeFixedI8(buf, pSchema->flags);
16,145,978!
912
  tlen += taosEncodeFixedI32(buf, pSchema->bytes);
16,145,978!
913
  tlen += taosEncodeFixedI16(buf, pSchema->colId);
16,145,978!
914
  tlen += taosEncodeString(buf, pSchema->name);
16,145,978✔
915
  return tlen;
16,145,978✔
916
}
917

918
static FORCE_INLINE void* taosDecodeSSchema(const void* buf, SSchema* pSchema) {
919
  buf = taosDecodeFixedI8(buf, &pSchema->type);
18,138,940✔
920
  buf = taosDecodeFixedI8(buf, &pSchema->flags);
9,069,470✔
921
  buf = taosDecodeFixedI32(buf, &pSchema->bytes);
9,069,470!
922
  buf = taosDecodeFixedI16(buf, &pSchema->colId);
9,069,470!
923
  buf = taosDecodeStringTo(buf, pSchema->name);
9,069,470✔
924
  return (void*)buf;
9,069,470✔
925
}
926

927
static FORCE_INLINE int32_t tEncodeSSchema(SEncoder* pEncoder, const SSchema* pSchema) {
928
  TAOS_CHECK_RETURN(tEncodeI8(pEncoder, pSchema->type));
701,430,553!
929
  TAOS_CHECK_RETURN(tEncodeI8(pEncoder, pSchema->flags));
727,371,614!
930
  TAOS_CHECK_RETURN(tEncodeI32v(pEncoder, pSchema->bytes));
727,371,614!
931
  TAOS_CHECK_RETURN(tEncodeI16v(pEncoder, pSchema->colId));
727,371,614!
932
  TAOS_CHECK_RETURN(tEncodeCStr(pEncoder, pSchema->name));
727,371,614!
933
  return 0;
363,685,807✔
934
}
935

936
static FORCE_INLINE int32_t tDecodeSSchema(SDecoder* pDecoder, SSchema* pSchema) {
937
  TAOS_CHECK_RETURN(tDecodeI8(pDecoder, &pSchema->type));
722,931,692!
938
  TAOS_CHECK_RETURN(tDecodeI8(pDecoder, &pSchema->flags));
1,414,436,237!
939
  TAOS_CHECK_RETURN(tDecodeI32v(pDecoder, &pSchema->bytes));
1,408,038,884!
940
  TAOS_CHECK_RETURN(tDecodeI16v(pDecoder, &pSchema->colId));
1,424,751,479!
941
  TAOS_CHECK_RETURN(tDecodeCStrTo(pDecoder, pSchema->name));
713,623,177!
942
  return 0;
767,953,329✔
943
}
944

945
static FORCE_INLINE int32_t tEncodeSSchemaExt(SEncoder* pEncoder, const SSchemaExt* pSchemaExt) {
946
  TAOS_CHECK_RETURN(tEncodeI16v(pEncoder, pSchemaExt->colId));
418,852,880!
947
  TAOS_CHECK_RETURN(tEncodeU32(pEncoder, pSchemaExt->compress));
418,852,880!
948
  TAOS_CHECK_RETURN(tEncodeI32(pEncoder, pSchemaExt->typeMod));
418,852,880!
949
  return 0;
209,426,440✔
950
}
951

952
static FORCE_INLINE int32_t tDecodeSSchemaExt(SDecoder* pDecoder, SSchemaExt* pSchemaExt) {
953
  TAOS_CHECK_RETURN(tDecodeI16v(pDecoder, &pSchemaExt->colId));
8,526,148!
954
  TAOS_CHECK_RETURN(tDecodeU32(pDecoder, &pSchemaExt->compress));
8,526,141!
955
  TAOS_CHECK_RETURN(tDecodeI32(pDecoder, &pSchemaExt->typeMod));
8,526,116!
956
  return 0;
4,263,052✔
957
}
958

959
static FORCE_INLINE int32_t tEncodeSColRef(SEncoder* pEncoder, const SColRef* pColRef) {
960
  TAOS_CHECK_RETURN(tEncodeI8(pEncoder, pColRef->hasRef));
×
961
  TAOS_CHECK_RETURN(tEncodeI16(pEncoder, pColRef->id));
×
962
  if (pColRef->hasRef) {
×
963
    TAOS_CHECK_RETURN(tEncodeCStr(pEncoder, pColRef->refDbName));
×
964
    TAOS_CHECK_RETURN(tEncodeCStr(pEncoder, pColRef->refTableName));
×
965
    TAOS_CHECK_RETURN(tEncodeCStr(pEncoder, pColRef->refColName));
×
966
  }
967
  return 0;
×
968
}
969

970
static FORCE_INLINE int32_t tDecodeSColRef(SDecoder* pDecoder, SColRef* pColRef) {
971
  TAOS_CHECK_RETURN(tDecodeI8(pDecoder, (int8_t*)&pColRef->hasRef));
24,292!
972
  TAOS_CHECK_RETURN(tDecodeI16(pDecoder, &pColRef->id));
24,292!
973
  if (pColRef->hasRef) {
12,146✔
974
    TAOS_CHECK_RETURN(tDecodeCStrTo(pDecoder, pColRef->refDbName));
6,518!
975
    TAOS_CHECK_RETURN(tDecodeCStrTo(pDecoder, pColRef->refTableName));
6,518!
976
    TAOS_CHECK_RETURN(tDecodeCStrTo(pDecoder, pColRef->refColName));
6,518!
977
  }
978

979
  return 0;
12,146✔
980
}
981

982
static FORCE_INLINE int32_t taosEncodeSSchemaWrapper(void** buf, const SSchemaWrapper* pSW) {
983
  int32_t tlen = 0;
2,127,746✔
984
  tlen += taosEncodeVariantI32(buf, pSW->nCols);
2,127,746✔
985
  tlen += taosEncodeVariantI32(buf, pSW->version);
2,127,746✔
986
  for (int32_t i = 0; i < pSW->nCols; i++) {
18,273,724✔
987
    tlen += taosEncodeSSchema(buf, &pSW->pSchema[i]);
32,291,956!
988
  }
989
  return tlen;
2,127,746✔
990
}
991

992
static FORCE_INLINE void* taosDecodeSSchemaWrapper(const void* buf, SSchemaWrapper* pSW) {
993
  buf = taosDecodeVariantI32(buf, &pSW->nCols);
1,146,780✔
994
  buf = taosDecodeVariantI32(buf, &pSW->version);
1,146,780✔
995
  if (pSW->nCols > 0) {
1,146,780✔
996
    pSW->pSchema = (SSchema*)taosMemoryCalloc(pSW->nCols, sizeof(SSchema));
756,800!
997
    if (pSW->pSchema == NULL) {
756,800!
998
      return NULL;
×
999
    }
1000

1001
    for (int32_t i = 0; i < pSW->nCols; i++) {
9,826,270✔
1002
      buf = taosDecodeSSchema(buf, &pSW->pSchema[i]);
18,138,940✔
1003
    }
1004
  } else {
1005
    pSW->pSchema = NULL;
389,980✔
1006
  }
1007
  return (void*)buf;
1,146,780✔
1008
}
1009

1010
static FORCE_INLINE int32_t tEncodeSSchemaWrapper(SEncoder* pEncoder, const SSchemaWrapper* pSW) {
1011
  if (pSW == NULL) {return TSDB_CODE_INVALID_PARA;}
1,089,682!
1012
  TAOS_CHECK_RETURN(tEncodeI32v(pEncoder, pSW->nCols));
2,179,364!
1013
  TAOS_CHECK_RETURN(tEncodeI32v(pEncoder, pSW->version));
2,179,364!
1014
  for (int32_t i = 0; i < pSW->nCols; i++) {
27,030,743!
1015
    TAOS_CHECK_RETURN(tEncodeSSchema(pEncoder, &pSW->pSchema[i]));
51,882,122!
1016
  }
1017
  return 0;
1,089,682✔
1018
}
1019

1020
static FORCE_INLINE int32_t tDecodeSSchemaWrapper(SDecoder* pDecoder, SSchemaWrapper* pSW) {
1021
  if (pSW == NULL) {return TSDB_CODE_INVALID_PARA;}
1,624,709!
1022
  TAOS_CHECK_RETURN(tDecodeI32v(pDecoder, &pSW->nCols));
3,249,431!
1023
  TAOS_CHECK_RETURN(tDecodeI32v(pDecoder, &pSW->version));
3,249,454!
1024

1025
  pSW->pSchema = (SSchema*)taosMemoryCalloc(pSW->nCols, sizeof(SSchema));
1,624,732!
1026
  if (pSW->pSchema == NULL) {
1,624,822!
1027
    TAOS_RETURN(TSDB_CODE_OUT_OF_MEMORY);
×
1028
  }
1029
  for (int32_t i = 0; i < pSW->nCols; i++) {
18,835,871!
1030
    TAOS_CHECK_RETURN(tDecodeSSchema(pDecoder, &pSW->pSchema[i]));
34,422,452!
1031
  }
1032

1033
  return 0;
1,624,468✔
1034
}
1035

1036
static FORCE_INLINE int32_t tDecodeSSchemaWrapperEx(SDecoder* pDecoder, SSchemaWrapper* pSW) {
1037
  TAOS_CHECK_RETURN(tDecodeI32v(pDecoder, &pSW->nCols));
83,788,086!
1038
  TAOS_CHECK_RETURN(tDecodeI32v(pDecoder, &pSW->version));
84,448,798!
1039

1040
  pSW->pSchema = (SSchema*)tDecoderMalloc(pDecoder, pSW->nCols * sizeof(SSchema));
42,205,133!
1041
  if (pSW->pSchema == NULL) {
42,474,545!
1042
    TAOS_RETURN(TSDB_CODE_OUT_OF_MEMORY);
×
1043
  }
1044
  for (int32_t i = 0; i < pSW->nCols; i++) {
787,810,779!
1045
    TAOS_CHECK_RETURN(tDecodeSSchema(pDecoder, &pSW->pSchema[i]));
1,489,761,025!
1046
  }
1047

1048
  return 0;
43,385,988✔
1049
}
1050

1051
typedef struct {
1052
  char     name[TSDB_TABLE_FNAME_LEN];
1053
  int8_t   igExists;
1054
  int8_t   source;  // TD_REQ_FROM_TAOX-taosX or TD_REQ_FROM_APP-taosClient
1055
  int8_t   reserved[6];
1056
  tb_uid_t suid;
1057
  int64_t  delay1;
1058
  int64_t  delay2;
1059
  int64_t  watermark1;
1060
  int64_t  watermark2;
1061
  int32_t  ttl;
1062
  int32_t  colVer;
1063
  int32_t  tagVer;
1064
  int32_t  numOfColumns;
1065
  int32_t  numOfTags;
1066
  int32_t  numOfFuncs;
1067
  int32_t  commentLen;
1068
  int32_t  ast1Len;
1069
  int32_t  ast2Len;
1070
  SArray*  pColumns;  // array of SFieldWithOptions
1071
  SArray*  pTags;     // array of SField
1072
  SArray*  pFuncs;
1073
  char*    pComment;
1074
  char*    pAst1;
1075
  char*    pAst2;
1076
  int64_t  deleteMark1;
1077
  int64_t  deleteMark2;
1078
  int32_t  sqlLen;
1079
  char*    sql;
1080
  int64_t  keep;
1081
  int8_t   virtualStb;
1082
} SMCreateStbReq;
1083

1084
int32_t tSerializeSMCreateStbReq(void* buf, int32_t bufLen, SMCreateStbReq* pReq);
1085
int32_t tDeserializeSMCreateStbReq(void* buf, int32_t bufLen, SMCreateStbReq* pReq);
1086
void    tFreeSMCreateStbReq(SMCreateStbReq* pReq);
1087

1088
typedef struct {
1089
  STableMetaRsp* pMeta;
1090
} SMCreateStbRsp;
1091

1092
int32_t tEncodeSMCreateStbRsp(SEncoder* pEncoder, const SMCreateStbRsp* pRsp);
1093
int32_t tDecodeSMCreateStbRsp(SDecoder* pDecoder, SMCreateStbRsp* pRsp);
1094
void    tFreeSMCreateStbRsp(SMCreateStbRsp* pRsp);
1095

1096
typedef struct {
1097
  char     name[TSDB_TABLE_FNAME_LEN];
1098
  int8_t   igNotExists;
1099
  int8_t   source;  // TD_REQ_FROM_TAOX-taosX or TD_REQ_FROM_APP-taosClient
1100
  int8_t   reserved[6];
1101
  tb_uid_t suid;
1102
  int32_t  sqlLen;
1103
  char*    sql;
1104
} SMDropStbReq;
1105

1106
int32_t tSerializeSMDropStbReq(void* buf, int32_t bufLen, SMDropStbReq* pReq);
1107
int32_t tDeserializeSMDropStbReq(void* buf, int32_t bufLen, SMDropStbReq* pReq);
1108
void    tFreeSMDropStbReq(SMDropStbReq* pReq);
1109

1110
typedef struct {
1111
  char    name[TSDB_TABLE_FNAME_LEN];
1112
  int8_t  alterType;
1113
  int32_t numOfFields;
1114
  SArray* pFields;
1115
  int32_t ttl;
1116
  int32_t commentLen;
1117
  char*   comment;
1118
  int32_t sqlLen;
1119
  char*   sql;
1120
  int64_t keep;
1121
  SArray* pTypeMods;
1122
} SMAlterStbReq;
1123

1124
int32_t tSerializeSMAlterStbReq(void* buf, int32_t bufLen, SMAlterStbReq* pReq);
1125
int32_t tDeserializeSMAlterStbReq(void* buf, int32_t bufLen, SMAlterStbReq* pReq);
1126
void    tFreeSMAltertbReq(SMAlterStbReq* pReq);
1127

1128
typedef struct SEpSet {
1129
  int8_t inUse;
1130
  int8_t numOfEps;
1131
  SEp    eps[TSDB_MAX_REPLICA];
1132
} SEpSet;
1133

1134
int32_t tEncodeSEpSet(SEncoder* pEncoder, const SEpSet* pEp);
1135
int32_t tDecodeSEpSet(SDecoder* pDecoder, SEpSet* pEp);
1136
int32_t taosEncodeSEpSet(void** buf, const SEpSet* pEp);
1137
void*   taosDecodeSEpSet(const void* buf, SEpSet* pEp);
1138

1139
int32_t tSerializeSEpSet(void* buf, int32_t bufLen, const SEpSet* pEpset);
1140
int32_t tDeserializeSEpSet(void* buf, int32_t buflen, SEpSet* pEpset);
1141

1142
typedef struct {
1143
  int8_t  connType;
1144
  int32_t pid;
1145
  char    app[TSDB_APP_NAME_LEN];
1146
  char    db[TSDB_DB_NAME_LEN];
1147
  char    user[TSDB_USER_LEN];
1148
  char    passwd[TSDB_PASSWORD_LEN];
1149
  int64_t startTime;
1150
  char    sVer[TSDB_VERSION_LEN];
1151
} SConnectReq;
1152

1153
int32_t tSerializeSConnectReq(void* buf, int32_t bufLen, SConnectReq* pReq);
1154
int32_t tDeserializeSConnectReq(void* buf, int32_t bufLen, SConnectReq* pReq);
1155

1156
typedef struct {
1157
  int32_t       acctId;
1158
  int64_t       clusterId;
1159
  uint32_t      connId;
1160
  int32_t       dnodeNum;
1161
  int8_t        superUser;
1162
  int8_t        sysInfo;
1163
  int8_t        connType;
1164
  SEpSet        epSet;
1165
  int32_t       svrTimestamp;
1166
  int32_t       passVer;
1167
  int32_t       authVer;
1168
  char          sVer[TSDB_VERSION_LEN];
1169
  char          sDetailVer[128];
1170
  int64_t       whiteListVer;
1171
  SMonitorParas monitorParas;
1172
  int8_t        enableAuditDelete;
1173
} SConnectRsp;
1174

1175
int32_t tSerializeSConnectRsp(void* buf, int32_t bufLen, SConnectRsp* pRsp);
1176
int32_t tDeserializeSConnectRsp(void* buf, int32_t bufLen, SConnectRsp* pRsp);
1177

1178
typedef struct {
1179
  char    user[TSDB_USER_LEN];
1180
  char    pass[TSDB_PASSWORD_LEN];
1181
  int32_t maxUsers;
1182
  int32_t maxDbs;
1183
  int32_t maxTimeSeries;
1184
  int32_t maxStreams;
1185
  int32_t accessState;  // Configured only by command
1186
  int64_t maxStorage;
1187
} SCreateAcctReq, SAlterAcctReq;
1188

1189
// int32_t tSerializeSCreateAcctReq(void* buf, int32_t bufLen, SCreateAcctReq* pReq);
1190
// int32_t tDeserializeSCreateAcctReq(void* buf, int32_t bufLen, SCreateAcctReq* pReq);
1191

1192
typedef struct {
1193
  char    user[TSDB_USER_LEN];
1194
  int32_t sqlLen;
1195
  char*   sql;
1196
} SDropUserReq, SDropAcctReq;
1197

1198
int32_t tSerializeSDropUserReq(void* buf, int32_t bufLen, SDropUserReq* pReq);
1199
int32_t tDeserializeSDropUserReq(void* buf, int32_t bufLen, SDropUserReq* pReq);
1200
void    tFreeSDropUserReq(SDropUserReq* pReq);
1201

1202
typedef struct SIpV4Range {
1203
  uint32_t ip;
1204
  uint32_t mask;
1205
} SIpV4Range;
1206

1207
typedef struct {
1208
  int32_t    num;
1209
  SIpV4Range pIpRange[];
1210
} SIpWhiteList;
1211

1212
SIpWhiteList* cloneIpWhiteList(SIpWhiteList* pIpWhiteList);
1213
typedef struct {
1214
  int8_t      createType;
1215
  int8_t      superUser;  // denote if it is a super user or not
1216
  int8_t      sysInfo;
1217
  int8_t      enable;
1218
  char        user[TSDB_USER_LEN];
1219
  char        pass[TSDB_USET_PASSWORD_LEN];
1220
  int32_t     numIpRanges;
1221
  SIpV4Range* pIpRanges;
1222
  int32_t     sqlLen;
1223
  char*       sql;
1224
  int8_t      isImport;
1225
  int8_t      createDb;
1226
  int8_t      passIsMd5;
1227
} SCreateUserReq;
1228

1229
int32_t tSerializeSCreateUserReq(void* buf, int32_t bufLen, SCreateUserReq* pReq);
1230
int32_t tDeserializeSCreateUserReq(void* buf, int32_t bufLen, SCreateUserReq* pReq);
1231
void    tFreeSCreateUserReq(SCreateUserReq* pReq);
1232

1233
typedef struct {
1234
  int64_t     ver;
1235
  char        user[TSDB_USER_LEN];
1236
  int32_t     numOfRange;
1237
  SIpV4Range* pIpRanges;
1238
} SUpdateUserIpWhite;
1239
typedef struct {
1240
  int64_t             ver;
1241
  int                 numOfUser;
1242
  SUpdateUserIpWhite* pUserIpWhite;
1243
} SUpdateIpWhite;
1244

1245
int32_t tSerializeSUpdateIpWhite(void* buf, int32_t bufLen, SUpdateIpWhite* pReq);
1246
int32_t tDeserializeSUpdateIpWhite(void* buf, int32_t bufLen, SUpdateIpWhite* pReq);
1247
void    tFreeSUpdateIpWhiteReq(SUpdateIpWhite* pReq);
1248
int32_t cloneSUpdateIpWhiteReq(SUpdateIpWhite* pReq, SUpdateIpWhite** pUpdate);
1249

1250
typedef struct {
1251
  int64_t ipWhiteVer;
1252
} SRetrieveIpWhiteReq;
1253

1254
int32_t tSerializeRetrieveIpWhite(void* buf, int32_t bufLen, SRetrieveIpWhiteReq* pReq);
1255
int32_t tDeserializeRetrieveIpWhite(void* buf, int32_t bufLen, SRetrieveIpWhiteReq* pReq);
1256

1257
typedef struct {
1258
  int32_t dnodeId;
1259
  int64_t analVer;
1260
} SRetrieveAnalAlgoReq;
1261

1262
typedef struct {
1263
  int64_t   ver;
1264
  SHashObj* hash;  // algoname:algotype -> SAnalUrl
1265
} SRetrieveAnalAlgoRsp;
1266

1267
int32_t tSerializeRetrieveAnalAlgoReq(void* buf, int32_t bufLen, SRetrieveAnalAlgoReq* pReq);
1268
int32_t tDeserializeRetrieveAnalAlgoReq(void* buf, int32_t bufLen, SRetrieveAnalAlgoReq* pReq);
1269
int32_t tSerializeRetrieveAnalAlgoRsp(void* buf, int32_t bufLen, SRetrieveAnalAlgoRsp* pRsp);
1270
int32_t tDeserializeRetrieveAnalAlgoRsp(void* buf, int32_t bufLen, SRetrieveAnalAlgoRsp* pRsp);
1271
void    tFreeRetrieveAnalAlgoRsp(SRetrieveAnalAlgoRsp* pRsp);
1272

1273
typedef struct {
1274
  int8_t alterType;
1275
  int8_t superUser;
1276
  int8_t sysInfo;
1277
  int8_t enable;
1278
  int8_t isView;
1279
  union {
1280
    uint8_t flag;
1281
    struct {
1282
      uint8_t createdb : 1;
1283
      uint8_t reserve : 7;
1284
    };
1285
  };
1286
  char        user[TSDB_USER_LEN];
1287
  char        pass[TSDB_USET_PASSWORD_LEN];
1288
  char        objname[TSDB_DB_FNAME_LEN];  // db or topic
1289
  char        tabName[TSDB_TABLE_NAME_LEN];
1290
  char*       tagCond;
1291
  int32_t     tagCondLen;
1292
  int32_t     numIpRanges;
1293
  SIpV4Range* pIpRanges;
1294
  int64_t     privileges;
1295
  int32_t     sqlLen;
1296
  char*       sql;
1297
  int8_t      passIsMd5;
1298
} SAlterUserReq;
1299

1300
int32_t tSerializeSAlterUserReq(void* buf, int32_t bufLen, SAlterUserReq* pReq);
1301
int32_t tDeserializeSAlterUserReq(void* buf, int32_t bufLen, SAlterUserReq* pReq);
1302
void    tFreeSAlterUserReq(SAlterUserReq* pReq);
1303

1304
typedef struct {
1305
  char user[TSDB_USER_LEN];
1306
} SGetUserAuthReq;
1307

1308
int32_t tSerializeSGetUserAuthReq(void* buf, int32_t bufLen, SGetUserAuthReq* pReq);
1309
int32_t tDeserializeSGetUserAuthReq(void* buf, int32_t bufLen, SGetUserAuthReq* pReq);
1310

1311
typedef struct {
1312
  char      user[TSDB_USER_LEN];
1313
  int32_t   version;
1314
  int32_t   passVer;
1315
  int8_t    superAuth;
1316
  int8_t    sysInfo;
1317
  int8_t    enable;
1318
  int8_t    dropped;
1319
  SHashObj* createdDbs;
1320
  SHashObj* readDbs;
1321
  SHashObj* writeDbs;
1322
  SHashObj* readTbs;
1323
  SHashObj* writeTbs;
1324
  SHashObj* alterTbs;
1325
  SHashObj* readViews;
1326
  SHashObj* writeViews;
1327
  SHashObj* alterViews;
1328
  SHashObj* useDbs;
1329
  int64_t   whiteListVer;
1330
} SGetUserAuthRsp;
1331

1332
int32_t tSerializeSGetUserAuthRsp(void* buf, int32_t bufLen, SGetUserAuthRsp* pRsp);
1333
int32_t tDeserializeSGetUserAuthRsp(void* buf, int32_t bufLen, SGetUserAuthRsp* pRsp);
1334
void    tFreeSGetUserAuthRsp(SGetUserAuthRsp* pRsp);
1335

1336
typedef struct {
1337
  char user[TSDB_USER_LEN];
1338
} SGetUserWhiteListReq;
1339

1340
int32_t tSerializeSGetUserWhiteListReq(void* buf, int32_t bufLen, SGetUserWhiteListReq* pReq);
1341
int32_t tDeserializeSGetUserWhiteListReq(void* buf, int32_t bufLen, SGetUserWhiteListReq* pReq);
1342

1343
typedef struct {
1344
  char        user[TSDB_USER_LEN];
1345
  int32_t     numWhiteLists;
1346
  SIpV4Range* pWhiteLists;
1347
} SGetUserWhiteListRsp;
1348

1349
int32_t tSerializeSGetUserWhiteListRsp(void* buf, int32_t bufLen, SGetUserWhiteListRsp* pRsp);
1350
int32_t tDeserializeSGetUserWhiteListRsp(void* buf, int32_t bufLen, SGetUserWhiteListRsp* pRsp);
1351
void    tFreeSGetUserWhiteListRsp(SGetUserWhiteListRsp* pRsp);
1352

1353
/*
1354
 * for client side struct, only column id, type, bytes are necessary
1355
 * But for data in vnode side, we need all the following information.
1356
 */
1357
typedef struct {
1358
  union {
1359
    col_id_t colId;
1360
    int16_t  slotId;
1361
  };
1362

1363
  uint8_t precision;
1364
  uint8_t scale;
1365
  int32_t bytes;
1366
  int8_t  type;
1367
  uint8_t pk;
1368
  bool    noData;
1369
} SColumnInfo;
1370

1371
typedef struct STimeWindow {
1372
  TSKEY skey;
1373
  TSKEY ekey;
1374
} STimeWindow;
1375

1376
typedef struct SQueryHint {
1377
  bool batchScan;
1378
} SQueryHint;
1379

1380
typedef struct {
1381
  int32_t tsOffset;       // offset value in current msg body, NOTE: ts list is compressed
1382
  int32_t tsLen;          // total length of ts comp block
1383
  int32_t tsNumOfBlocks;  // ts comp block numbers
1384
  int32_t tsOrder;        // ts comp block order
1385
} STsBufInfo;
1386

1387
typedef struct {
1388
  void*       timezone;
1389
  char        intervalUnit;
1390
  char        slidingUnit;
1391
  char        offsetUnit;
1392
  int8_t      precision;
1393
  int64_t     interval;
1394
  int64_t     sliding;
1395
  int64_t     offset;
1396
  STimeWindow timeRange;
1397
} SInterval;
1398

1399
typedef struct STbVerInfo {
1400
  char    tbFName[TSDB_TABLE_FNAME_LEN];
1401
  int32_t sversion;
1402
  int32_t tversion;
1403
} STbVerInfo;
1404

1405
typedef struct {
1406
  int32_t code;
1407
  int64_t affectedRows;
1408
  SArray* tbVerInfo;  // STbVerInfo
1409
} SQueryTableRsp;
1410

1411
int32_t tSerializeSQueryTableRsp(void* buf, int32_t bufLen, SQueryTableRsp* pRsp);
1412

1413
int32_t tDeserializeSQueryTableRsp(void* buf, int32_t bufLen, SQueryTableRsp* pRsp);
1414

1415
typedef struct {
1416
  SMsgHead header;
1417
  char     dbFName[TSDB_DB_FNAME_LEN];
1418
  char     tbName[TSDB_TABLE_NAME_LEN];
1419
} STableCfgReq;
1420

1421
typedef struct {
1422
  char        tbName[TSDB_TABLE_NAME_LEN];
1423
  char        stbName[TSDB_TABLE_NAME_LEN];
1424
  char        dbFName[TSDB_DB_FNAME_LEN];
1425
  int32_t     numOfTags;
1426
  int32_t     numOfColumns;
1427
  int8_t      tableType;
1428
  int64_t     delay1;
1429
  int64_t     delay2;
1430
  int64_t     watermark1;
1431
  int64_t     watermark2;
1432
  int32_t     ttl;
1433
  SArray*     pFuncs;
1434
  int32_t     commentLen;
1435
  char*       pComment;
1436
  SSchema*    pSchemas;
1437
  int32_t     tagsLen;
1438
  char*       pTags;
1439
  SSchemaExt* pSchemaExt;
1440
  int8_t      virtualStb;
1441
  SColRef*    pColRefs;
1442
} STableCfg;
1443

1444
typedef STableCfg STableCfgRsp;
1445

1446
int32_t tSerializeSTableCfgReq(void* buf, int32_t bufLen, STableCfgReq* pReq);
1447
int32_t tDeserializeSTableCfgReq(void* buf, int32_t bufLen, STableCfgReq* pReq);
1448

1449
int32_t tSerializeSTableCfgRsp(void* buf, int32_t bufLen, STableCfgRsp* pRsp);
1450
int32_t tDeserializeSTableCfgRsp(void* buf, int32_t bufLen, STableCfgRsp* pRsp);
1451
void    tFreeSTableCfgRsp(STableCfgRsp* pRsp);
1452

1453
typedef struct {
1454
  SMsgHead header;
1455
  tb_uid_t suid;
1456
} SVSubTablesReq;
1457

1458
int32_t tSerializeSVSubTablesReq(void *buf, int32_t bufLen, SVSubTablesReq *pReq);
1459
int32_t tDeserializeSVSubTablesReq(void *buf, int32_t bufLen, SVSubTablesReq *pReq);
1460

1461
typedef struct {
1462
  int32_t  vgId;
1463
  SArray*  pTables;   //SArray<SVCTableRefCols*>
1464
} SVSubTablesRsp;
1465

1466
int32_t tSerializeSVSubTablesRsp(void *buf, int32_t bufLen, SVSubTablesRsp *pRsp);
1467
int32_t tDeserializeSVSubTablesRsp(void *buf, int32_t bufLen, SVSubTablesRsp *pRsp);
1468
void tDestroySVSubTablesRsp(void* rsp);
1469

1470

1471
typedef struct {
1472
  char    db[TSDB_DB_FNAME_LEN];
1473
  int32_t numOfVgroups;
1474
  int32_t numOfStables;  // single_stable
1475
  int32_t buffer;        // MB
1476
  int32_t pageSize;
1477
  int32_t pages;
1478
  int32_t cacheLastSize;
1479
  int32_t daysPerFile;
1480
  int32_t daysToKeep0;
1481
  int32_t daysToKeep1;
1482
  int32_t daysToKeep2;
1483
  int32_t keepTimeOffset;
1484
  int32_t minRows;
1485
  int32_t maxRows;
1486
  int32_t walFsyncPeriod;
1487
  int8_t  walLevel;
1488
  int8_t  precision;  // time resolution
1489
  int8_t  compression;
1490
  int8_t  replications;
1491
  int8_t  strict;
1492
  int8_t  cacheLast;
1493
  int8_t  schemaless;
1494
  int8_t  ignoreExist;
1495
  int32_t numOfRetensions;
1496
  SArray* pRetensions;  // SRetention
1497
  int32_t walRetentionPeriod;
1498
  int64_t walRetentionSize;
1499
  int32_t walRollPeriod;
1500
  int64_t walSegmentSize;
1501
  int32_t sstTrigger;
1502
  int16_t hashPrefix;
1503
  int16_t hashSuffix;
1504
  int32_t s3ChunkSize;
1505
  int32_t s3KeepLocal;
1506
  int8_t  s3Compact;
1507
  int32_t tsdbPageSize;
1508
  int32_t sqlLen;
1509
  char*   sql;
1510
  int8_t  withArbitrator;
1511
  int8_t  encryptAlgorithm;
1512
  char    dnodeListStr[TSDB_DNODE_LIST_LEN];
1513
  // 1. add auto-compact parameters
1514
  int32_t compactInterval;    // minutes
1515
  int32_t compactStartTime;   // minutes
1516
  int32_t compactEndTime;     // minutes
1517
  int8_t  compactTimeOffset;  // hour
1518
} SCreateDbReq;
1519

1520
int32_t tSerializeSCreateDbReq(void* buf, int32_t bufLen, SCreateDbReq* pReq);
1521
int32_t tDeserializeSCreateDbReq(void* buf, int32_t bufLen, SCreateDbReq* pReq);
1522
void    tFreeSCreateDbReq(SCreateDbReq* pReq);
1523

1524
typedef struct {
1525
  char    db[TSDB_DB_FNAME_LEN];
1526
  int32_t buffer;
1527
  int32_t pageSize;
1528
  int32_t pages;
1529
  int32_t cacheLastSize;
1530
  int32_t daysPerFile;
1531
  int32_t daysToKeep0;
1532
  int32_t daysToKeep1;
1533
  int32_t daysToKeep2;
1534
  int32_t keepTimeOffset;
1535
  int32_t walFsyncPeriod;
1536
  int8_t  walLevel;
1537
  int8_t  strict;
1538
  int8_t  cacheLast;
1539
  int8_t  replications;
1540
  int32_t sstTrigger;
1541
  int32_t minRows;
1542
  int32_t walRetentionPeriod;
1543
  int32_t walRetentionSize;
1544
  int32_t s3KeepLocal;
1545
  int8_t  s3Compact;
1546
  int32_t sqlLen;
1547
  char*   sql;
1548
  int8_t  withArbitrator;
1549
  // 1. add auto-compact parameters
1550
  int32_t compactInterval;
1551
  int32_t compactStartTime;
1552
  int32_t compactEndTime;
1553
  int8_t  compactTimeOffset;
1554
} SAlterDbReq;
1555

1556
int32_t tSerializeSAlterDbReq(void* buf, int32_t bufLen, SAlterDbReq* pReq);
1557
int32_t tDeserializeSAlterDbReq(void* buf, int32_t bufLen, SAlterDbReq* pReq);
1558
void    tFreeSAlterDbReq(SAlterDbReq* pReq);
1559

1560
typedef struct {
1561
  char    db[TSDB_DB_FNAME_LEN];
1562
  int8_t  ignoreNotExists;
1563
  int32_t sqlLen;
1564
  char*   sql;
1565
} SDropDbReq;
1566

1567
int32_t tSerializeSDropDbReq(void* buf, int32_t bufLen, SDropDbReq* pReq);
1568
int32_t tDeserializeSDropDbReq(void* buf, int32_t bufLen, SDropDbReq* pReq);
1569
void    tFreeSDropDbReq(SDropDbReq* pReq);
1570

1571
typedef struct {
1572
  char    db[TSDB_DB_FNAME_LEN];
1573
  int64_t uid;
1574
} SDropDbRsp;
1575

1576
int32_t tSerializeSDropDbRsp(void* buf, int32_t bufLen, SDropDbRsp* pRsp);
1577
int32_t tDeserializeSDropDbRsp(void* buf, int32_t bufLen, SDropDbRsp* pRsp);
1578

1579
typedef struct {
1580
  char    db[TSDB_DB_FNAME_LEN];
1581
  int64_t dbId;
1582
  int32_t vgVersion;
1583
  int32_t numOfTable;  // unit is TSDB_TABLE_NUM_UNIT
1584
  int64_t stateTs;     // ms
1585
} SUseDbReq;
1586

1587
int32_t tSerializeSUseDbReq(void* buf, int32_t bufLen, SUseDbReq* pReq);
1588
int32_t tDeserializeSUseDbReq(void* buf, int32_t bufLen, SUseDbReq* pReq);
1589

1590
typedef struct {
1591
  char    db[TSDB_DB_FNAME_LEN];
1592
  int64_t uid;
1593
  int32_t vgVersion;
1594
  int32_t vgNum;
1595
  int16_t hashPrefix;
1596
  int16_t hashSuffix;
1597
  int8_t  hashMethod;
1598
  SArray* pVgroupInfos;  // Array of SVgroupInfo
1599
  int32_t errCode;
1600
  int64_t stateTs;  // ms
1601
} SUseDbRsp;
1602

1603
int32_t tSerializeSUseDbRsp(void* buf, int32_t bufLen, const SUseDbRsp* pRsp);
1604
int32_t tDeserializeSUseDbRsp(void* buf, int32_t bufLen, SUseDbRsp* pRsp);
1605
int32_t tSerializeSUseDbRspImp(SEncoder* pEncoder, const SUseDbRsp* pRsp);
1606
int32_t tDeserializeSUseDbRspImp(SDecoder* pDecoder, SUseDbRsp* pRsp);
1607
void    tFreeSUsedbRsp(SUseDbRsp* pRsp);
1608

1609
typedef struct {
1610
  char db[TSDB_DB_FNAME_LEN];
1611
} SDbCfgReq;
1612

1613
int32_t tSerializeSDbCfgReq(void* buf, int32_t bufLen, SDbCfgReq* pReq);
1614
int32_t tDeserializeSDbCfgReq(void* buf, int32_t bufLen, SDbCfgReq* pReq);
1615

1616
typedef struct {
1617
  char    db[TSDB_DB_FNAME_LEN];
1618
  int32_t maxSpeed;
1619
} STrimDbReq;
1620

1621
int32_t tSerializeSTrimDbReq(void* buf, int32_t bufLen, STrimDbReq* pReq);
1622
int32_t tDeserializeSTrimDbReq(void* buf, int32_t bufLen, STrimDbReq* pReq);
1623

1624
typedef struct {
1625
  int32_t timestamp;
1626
} SVTrimDbReq;
1627

1628
int32_t tSerializeSVTrimDbReq(void* buf, int32_t bufLen, SVTrimDbReq* pReq);
1629
int32_t tDeserializeSVTrimDbReq(void* buf, int32_t bufLen, SVTrimDbReq* pReq);
1630

1631
typedef struct {
1632
  char db[TSDB_DB_FNAME_LEN];
1633
} SS3MigrateDbReq;
1634

1635
int32_t tSerializeSS3MigrateDbReq(void* buf, int32_t bufLen, SS3MigrateDbReq* pReq);
1636
int32_t tDeserializeSS3MigrateDbReq(void* buf, int32_t bufLen, SS3MigrateDbReq* pReq);
1637

1638
typedef struct {
1639
  int32_t timestamp;
1640
} SVS3MigrateDbReq;
1641

1642
int32_t tSerializeSVS3MigrateDbReq(void* buf, int32_t bufLen, SVS3MigrateDbReq* pReq);
1643
int32_t tDeserializeSVS3MigrateDbReq(void* buf, int32_t bufLen, SVS3MigrateDbReq* pReq);
1644

1645
typedef struct {
1646
  int32_t timestampSec;
1647
  int32_t ttlDropMaxCount;
1648
  int32_t nUids;
1649
  SArray* pTbUids;
1650
} SVDropTtlTableReq;
1651

1652
int32_t tSerializeSVDropTtlTableReq(void* buf, int32_t bufLen, SVDropTtlTableReq* pReq);
1653
int32_t tDeserializeSVDropTtlTableReq(void* buf, int32_t bufLen, SVDropTtlTableReq* pReq);
1654

1655
typedef struct {
1656
  char    db[TSDB_DB_FNAME_LEN];
1657
  int64_t dbId;
1658
  int32_t cfgVersion;
1659
  int32_t numOfVgroups;
1660
  int32_t numOfStables;
1661
  int32_t buffer;
1662
  int32_t cacheSize;
1663
  int32_t pageSize;
1664
  int32_t pages;
1665
  int32_t daysPerFile;
1666
  int32_t daysToKeep0;
1667
  int32_t daysToKeep1;
1668
  int32_t daysToKeep2;
1669
  int32_t keepTimeOffset;
1670
  int32_t minRows;
1671
  int32_t maxRows;
1672
  int32_t walFsyncPeriod;
1673
  int16_t hashPrefix;
1674
  int16_t hashSuffix;
1675
  int8_t  hashMethod;
1676
  int8_t  walLevel;
1677
  int8_t  precision;
1678
  int8_t  compression;
1679
  int8_t  replications;
1680
  int8_t  strict;
1681
  int8_t  cacheLast;
1682
  int8_t  encryptAlgorithm;
1683
  int32_t s3ChunkSize;
1684
  int32_t s3KeepLocal;
1685
  int8_t  s3Compact;
1686
  int8_t  compactTimeOffset;
1687
  int32_t compactInterval;
1688
  int32_t compactStartTime;
1689
  int32_t compactEndTime;
1690
  int32_t tsdbPageSize;
1691
  int32_t walRetentionPeriod;
1692
  int32_t walRollPeriod;
1693
  int64_t walRetentionSize;
1694
  int64_t walSegmentSize;
1695
  int32_t numOfRetensions;
1696
  SArray* pRetensions;
1697
  int8_t  schemaless;
1698
  int16_t sstTrigger;
1699
  int8_t  withArbitrator;
1700
} SDbCfgRsp;
1701

1702
typedef SDbCfgRsp SDbCfgInfo;
1703

1704
int32_t tSerializeSDbCfgRspImpl(SEncoder* encoder, const SDbCfgRsp* pRsp);
1705
int32_t tSerializeSDbCfgRsp(void* buf, int32_t bufLen, const SDbCfgRsp* pRsp);
1706
int32_t tDeserializeSDbCfgRsp(void* buf, int32_t bufLen, SDbCfgRsp* pRsp);
1707
int32_t tDeserializeSDbCfgRspImpl(SDecoder* decoder, SDbCfgRsp* pRsp);
1708
void    tFreeSDbCfgRsp(SDbCfgRsp* pRsp);
1709

1710
typedef struct {
1711
  int32_t rowNum;
1712
} SQnodeListReq;
1713

1714
int32_t tSerializeSQnodeListReq(void* buf, int32_t bufLen, SQnodeListReq* pReq);
1715
int32_t tDeserializeSQnodeListReq(void* buf, int32_t bufLen, SQnodeListReq* pReq);
1716

1717
typedef struct {
1718
  int32_t rowNum;
1719
} SDnodeListReq;
1720

1721
int32_t tSerializeSDnodeListReq(void* buf, int32_t bufLen, SDnodeListReq* pReq);
1722

1723
typedef struct {
1724
  int32_t useless;  // useless
1725
} SServerVerReq;
1726

1727
int32_t tSerializeSServerVerReq(void* buf, int32_t bufLen, SServerVerReq* pReq);
1728
// int32_t tDeserializeSServerVerReq(void* buf, int32_t bufLen, SServerVerReq* pReq);
1729

1730
typedef struct {
1731
  char ver[TSDB_VERSION_LEN];
1732
} SServerVerRsp;
1733

1734
int32_t tSerializeSServerVerRsp(void* buf, int32_t bufLen, SServerVerRsp* pRsp);
1735
int32_t tDeserializeSServerVerRsp(void* buf, int32_t bufLen, SServerVerRsp* pRsp);
1736

1737
typedef struct SQueryNodeAddr {
1738
  int32_t nodeId;  // vgId or qnodeId
1739
  SEpSet  epSet;
1740
} SQueryNodeAddr;
1741

1742
typedef struct {
1743
  SQueryNodeAddr addr;
1744
  uint64_t       load;
1745
} SQueryNodeLoad;
1746

1747
typedef struct {
1748
  SArray* qnodeList;  // SArray<SQueryNodeLoad>
1749
} SQnodeListRsp;
1750

1751
int32_t tSerializeSQnodeListRsp(void* buf, int32_t bufLen, SQnodeListRsp* pRsp);
1752
int32_t tDeserializeSQnodeListRsp(void* buf, int32_t bufLen, SQnodeListRsp* pRsp);
1753
void    tFreeSQnodeListRsp(SQnodeListRsp* pRsp);
1754

1755
typedef struct {
1756
  SArray* dnodeList;  // SArray<SEpSet>
1757
} SDnodeListRsp;
1758

1759
int32_t tSerializeSDnodeListRsp(void* buf, int32_t bufLen, SDnodeListRsp* pRsp);
1760
int32_t tDeserializeSDnodeListRsp(void* buf, int32_t bufLen, SDnodeListRsp* pRsp);
1761
void    tFreeSDnodeListRsp(SDnodeListRsp* pRsp);
1762

1763
typedef struct {
1764
  SArray* pTsmas;  // SArray<STableTSMAInfo*>
1765
} STableTSMAInfoRsp;
1766

1767
typedef struct {
1768
  SUseDbRsp*         useDbRsp;
1769
  SDbCfgRsp*         cfgRsp;
1770
  STableTSMAInfoRsp* pTsmaRsp;
1771
  int32_t            dbTsmaVersion;
1772
  char               db[TSDB_DB_FNAME_LEN];
1773
  int64_t            dbId;
1774
} SDbHbRsp;
1775

1776
typedef struct {
1777
  SArray* pArray;  // Array of SDbHbRsp
1778
} SDbHbBatchRsp;
1779

1780
int32_t tSerializeSDbHbBatchRsp(void* buf, int32_t bufLen, SDbHbBatchRsp* pRsp);
1781
int32_t tDeserializeSDbHbBatchRsp(void* buf, int32_t bufLen, SDbHbBatchRsp* pRsp);
1782
void    tFreeSDbHbBatchRsp(SDbHbBatchRsp* pRsp);
1783

1784
typedef struct {
1785
  SArray* pArray;  // Array of SGetUserAuthRsp
1786
} SUserAuthBatchRsp;
1787

1788
int32_t tSerializeSUserAuthBatchRsp(void* buf, int32_t bufLen, SUserAuthBatchRsp* pRsp);
1789
int32_t tDeserializeSUserAuthBatchRsp(void* buf, int32_t bufLen, SUserAuthBatchRsp* pRsp);
1790
void    tFreeSUserAuthBatchRsp(SUserAuthBatchRsp* pRsp);
1791

1792
typedef struct {
1793
  char        db[TSDB_DB_FNAME_LEN];
1794
  STimeWindow timeRange;
1795
  int32_t     sqlLen;
1796
  char*       sql;
1797
  SArray*     vgroupIds;
1798
  int8_t      metaOnly;
1799
} SCompactDbReq;
1800

1801
int32_t tSerializeSCompactDbReq(void* buf, int32_t bufLen, SCompactDbReq* pReq);
1802
int32_t tDeserializeSCompactDbReq(void* buf, int32_t bufLen, SCompactDbReq* pReq);
1803
void    tFreeSCompactDbReq(SCompactDbReq* pReq);
1804

1805
typedef struct {
1806
  int32_t compactId;
1807
  int8_t  bAccepted;
1808
} SCompactDbRsp;
1809

1810
int32_t tSerializeSCompactDbRsp(void* buf, int32_t bufLen, SCompactDbRsp* pRsp);
1811
int32_t tDeserializeSCompactDbRsp(void* buf, int32_t bufLen, SCompactDbRsp* pRsp);
1812

1813
typedef struct {
1814
  int32_t compactId;
1815
  int32_t sqlLen;
1816
  char*   sql;
1817
} SKillCompactReq;
1818

1819
int32_t tSerializeSKillCompactReq(void* buf, int32_t bufLen, SKillCompactReq* pReq);
1820
int32_t tDeserializeSKillCompactReq(void* buf, int32_t bufLen, SKillCompactReq* pReq);
1821
void    tFreeSKillCompactReq(SKillCompactReq* pReq);
1822

1823
typedef struct {
1824
  char    name[TSDB_FUNC_NAME_LEN];
1825
  int8_t  igExists;
1826
  int8_t  funcType;
1827
  int8_t  scriptType;
1828
  int8_t  outputType;
1829
  int32_t outputLen;
1830
  int32_t bufSize;
1831
  int32_t codeLen;
1832
  int64_t signature;
1833
  char*   pComment;
1834
  char*   pCode;
1835
  int8_t  orReplace;
1836
} SCreateFuncReq;
1837

1838
int32_t tSerializeSCreateFuncReq(void* buf, int32_t bufLen, SCreateFuncReq* pReq);
1839
int32_t tDeserializeSCreateFuncReq(void* buf, int32_t bufLen, SCreateFuncReq* pReq);
1840
void    tFreeSCreateFuncReq(SCreateFuncReq* pReq);
1841

1842
typedef struct {
1843
  char   name[TSDB_FUNC_NAME_LEN];
1844
  int8_t igNotExists;
1845
} SDropFuncReq;
1846

1847
int32_t tSerializeSDropFuncReq(void* buf, int32_t bufLen, SDropFuncReq* pReq);
1848
int32_t tDeserializeSDropFuncReq(void* buf, int32_t bufLen, SDropFuncReq* pReq);
1849

1850
typedef struct {
1851
  int32_t numOfFuncs;
1852
  bool    ignoreCodeComment;
1853
  SArray* pFuncNames;
1854
} SRetrieveFuncReq;
1855

1856
int32_t tSerializeSRetrieveFuncReq(void* buf, int32_t bufLen, SRetrieveFuncReq* pReq);
1857
int32_t tDeserializeSRetrieveFuncReq(void* buf, int32_t bufLen, SRetrieveFuncReq* pReq);
1858
void    tFreeSRetrieveFuncReq(SRetrieveFuncReq* pReq);
1859

1860
typedef struct {
1861
  char    name[TSDB_FUNC_NAME_LEN];
1862
  int8_t  funcType;
1863
  int8_t  scriptType;
1864
  int8_t  outputType;
1865
  int32_t outputLen;
1866
  int32_t bufSize;
1867
  int64_t signature;
1868
  int32_t commentSize;
1869
  int32_t codeSize;
1870
  char*   pComment;
1871
  char*   pCode;
1872
} SFuncInfo;
1873

1874
typedef struct {
1875
  int32_t funcVersion;
1876
  int64_t funcCreatedTime;
1877
} SFuncExtraInfo;
1878

1879
typedef struct {
1880
  int32_t numOfFuncs;
1881
  SArray* pFuncInfos;
1882
  SArray* pFuncExtraInfos;
1883
} SRetrieveFuncRsp;
1884

1885
int32_t tSerializeSRetrieveFuncRsp(void* buf, int32_t bufLen, SRetrieveFuncRsp* pRsp);
1886
int32_t tDeserializeSRetrieveFuncRsp(void* buf, int32_t bufLen, SRetrieveFuncRsp* pRsp);
1887
void    tFreeSFuncInfo(SFuncInfo* pInfo);
1888
void    tFreeSRetrieveFuncRsp(SRetrieveFuncRsp* pRsp);
1889

1890
typedef struct {
1891
  int32_t       statusInterval;
1892
  int64_t       checkTime;                  // 1970-01-01 00:00:00.000
1893
  char          timezone[TD_TIMEZONE_LEN];  // tsTimezone
1894
  char          locale[TD_LOCALE_LEN];      // tsLocale
1895
  char          charset[TD_LOCALE_LEN];     // tsCharset
1896
  int8_t        ttlChangeOnWrite;
1897
  int8_t        enableWhiteList;
1898
  int8_t        encryptionKeyStat;
1899
  uint32_t      encryptionKeyChksum;
1900
  SMonitorParas monitorParas;
1901
} SClusterCfg;
1902

1903
typedef struct {
1904
  int32_t openVnodes;
1905
  int32_t dropVnodes;
1906
  int32_t totalVnodes;
1907
  int32_t masterNum;
1908
  int64_t numOfSelectReqs;
1909
  int64_t numOfInsertReqs;
1910
  int64_t numOfInsertSuccessReqs;
1911
  int64_t numOfBatchInsertReqs;
1912
  int64_t numOfBatchInsertSuccessReqs;
1913
  int64_t errors;
1914
} SVnodesStat;
1915

1916
typedef struct {
1917
  int32_t vgId;
1918
  int8_t  syncState;
1919
  int8_t  syncRestore;
1920
  int64_t syncTerm;
1921
  int64_t roleTimeMs;
1922
  int64_t startTimeMs;
1923
  int8_t  syncCanRead;
1924
  int64_t cacheUsage;
1925
  int64_t numOfTables;
1926
  int64_t numOfTimeSeries;
1927
  int64_t totalStorage;
1928
  int64_t compStorage;
1929
  int64_t pointsWritten;
1930
  int64_t numOfSelectReqs;
1931
  int64_t numOfInsertReqs;
1932
  int64_t numOfInsertSuccessReqs;
1933
  int64_t numOfBatchInsertReqs;
1934
  int64_t numOfBatchInsertSuccessReqs;
1935
  int32_t numOfCachedTables;
1936
  int32_t learnerProgress;  // use one reservered
1937
  int64_t syncAppliedIndex;
1938
  int64_t syncCommitIndex;
1939
} SVnodeLoad;
1940

1941
typedef struct {
1942
  int32_t     vgId;
1943
  int64_t     numOfTables;
1944
  int64_t     memSize;
1945
  int64_t     l1Size;
1946
  int64_t     l2Size;
1947
  int64_t     l3Size;
1948
  int64_t     cacheSize;
1949
  int64_t     walSize;
1950
  int64_t     metaSize;
1951
  int64_t     rawDataSize;
1952
  int64_t     s3Size;
1953
  const char* dbname;
1954
} SDbSizeStatisInfo;
1955

1956
typedef struct {
1957
  int32_t vgId;
1958
  int64_t nTimeSeries;
1959
} SVnodeLoadLite;
1960

1961
typedef struct {
1962
  int8_t  syncState;
1963
  int64_t syncTerm;
1964
  int8_t  syncRestore;
1965
  int64_t roleTimeMs;
1966
} SMnodeLoad;
1967

1968
typedef struct {
1969
  int32_t dnodeId;
1970
  int64_t numOfProcessedQuery;
1971
  int64_t numOfProcessedCQuery;
1972
  int64_t numOfProcessedFetch;
1973
  int64_t numOfProcessedDrop;
1974
  int64_t numOfProcessedNotify;
1975
  int64_t numOfProcessedHb;
1976
  int64_t numOfProcessedDelete;
1977
  int64_t cacheDataSize;
1978
  int64_t numOfQueryInQueue;
1979
  int64_t numOfFetchInQueue;
1980
  int64_t timeInQueryQueue;
1981
  int64_t timeInFetchQueue;
1982
} SQnodeLoad;
1983

1984
typedef struct {
1985
  int32_t     sver;      // software version
1986
  int64_t     dnodeVer;  // dnode table version in sdb
1987
  int32_t     dnodeId;
1988
  int64_t     clusterId;
1989
  int64_t     rebootTime;
1990
  int64_t     updateTime;
1991
  float       numOfCores;
1992
  int32_t     numOfSupportVnodes;
1993
  int32_t     numOfDiskCfg;
1994
  int64_t     memTotal;
1995
  int64_t     memAvail;
1996
  char        dnodeEp[TSDB_EP_LEN];
1997
  char        machineId[TSDB_MACHINE_ID_LEN + 1];
1998
  SMnodeLoad  mload;
1999
  SQnodeLoad  qload;
2000
  SClusterCfg clusterCfg;
2001
  SArray*     pVloads;  // array of SVnodeLoad
2002
  int32_t     statusSeq;
2003
  int64_t     ipWhiteVer;
2004
  int64_t     analVer;
2005
  int64_t     timestamp;
2006
} SStatusReq;
2007

2008
int32_t tSerializeSStatusReq(void* buf, int32_t bufLen, SStatusReq* pReq);
2009
int32_t tDeserializeSStatusReq(void* buf, int32_t bufLen, SStatusReq* pReq);
2010
void    tFreeSStatusReq(SStatusReq* pReq);
2011

2012
typedef struct {
2013
  int32_t forceReadConfig;
2014
  int32_t cver;
2015
  SArray* array;
2016
} SConfigReq;
2017

2018
int32_t tSerializeSConfigReq(void* buf, int32_t bufLen, SConfigReq* pReq);
2019
int32_t tDeserializeSConfigReq(void* buf, int32_t bufLen, SConfigReq* pReq);
2020
void    tFreeSConfigReq(SConfigReq* pReq);
2021

2022
typedef struct {
2023
  int32_t dnodeId;
2024
  char    machineId[TSDB_MACHINE_ID_LEN + 1];
2025
} SDnodeInfoReq;
2026

2027
int32_t tSerializeSDnodeInfoReq(void* buf, int32_t bufLen, SDnodeInfoReq* pReq);
2028
int32_t tDeserializeSDnodeInfoReq(void* buf, int32_t bufLen, SDnodeInfoReq* pReq);
2029

2030
typedef enum {
2031
  MONITOR_TYPE_COUNTER = 0,
2032
  MONITOR_TYPE_SLOW_LOG = 1,
2033
} MONITOR_TYPE;
2034

2035
typedef struct {
2036
  int32_t      contLen;
2037
  char*        pCont;
2038
  MONITOR_TYPE type;
2039
} SStatisReq;
2040

2041
int32_t tSerializeSStatisReq(void* buf, int32_t bufLen, SStatisReq* pReq);
2042
int32_t tDeserializeSStatisReq(void* buf, int32_t bufLen, SStatisReq* pReq);
2043
void    tFreeSStatisReq(SStatisReq* pReq);
2044

2045
typedef struct {
2046
  char    db[TSDB_DB_FNAME_LEN];
2047
  char    table[TSDB_TABLE_NAME_LEN];
2048
  char    operation[AUDIT_OPERATION_LEN];
2049
  int32_t sqlLen;
2050
  char*   pSql;
2051
} SAuditReq;
2052
int32_t tSerializeSAuditReq(void* buf, int32_t bufLen, SAuditReq* pReq);
2053
int32_t tDeserializeSAuditReq(void* buf, int32_t bufLen, SAuditReq* pReq);
2054
void    tFreeSAuditReq(SAuditReq* pReq);
2055

2056
typedef struct {
2057
  int32_t dnodeId;
2058
  int64_t clusterId;
2059
  SArray* pVloads;
2060
} SNotifyReq;
2061

2062
int32_t tSerializeSNotifyReq(void* buf, int32_t bufLen, SNotifyReq* pReq);
2063
int32_t tDeserializeSNotifyReq(void* buf, int32_t bufLen, SNotifyReq* pReq);
2064
void    tFreeSNotifyReq(SNotifyReq* pReq);
2065

2066
typedef struct {
2067
  int32_t dnodeId;
2068
  int64_t clusterId;
2069
} SDnodeCfg;
2070

2071
typedef struct {
2072
  int32_t id;
2073
  int8_t  isMnode;
2074
  SEp     ep;
2075
} SDnodeEp;
2076

2077
typedef struct {
2078
  int32_t id;
2079
  int8_t  isMnode;
2080
  int8_t  offlineReason;
2081
  SEp     ep;
2082
  char    active[TSDB_ACTIVE_KEY_LEN];
2083
  char    connActive[TSDB_CONN_ACTIVE_KEY_LEN];
2084
} SDnodeInfo;
2085

2086
typedef struct {
2087
  int64_t   dnodeVer;
2088
  SDnodeCfg dnodeCfg;
2089
  SArray*   pDnodeEps;  // Array of SDnodeEp
2090
  int32_t   statusSeq;
2091
  int64_t   ipWhiteVer;
2092
  int64_t   analVer;
2093
} SStatusRsp;
2094

2095
int32_t tSerializeSStatusRsp(void* buf, int32_t bufLen, SStatusRsp* pRsp);
2096
int32_t tDeserializeSStatusRsp(void* buf, int32_t bufLen, SStatusRsp* pRsp);
2097
void    tFreeSStatusRsp(SStatusRsp* pRsp);
2098

2099
typedef struct {
2100
  int32_t forceReadConfig;
2101
  int32_t isConifgVerified;
2102
  int32_t isVersionVerified;
2103
  int32_t cver;
2104
  SArray* array;
2105
} SConfigRsp;
2106

2107
int32_t tSerializeSConfigRsp(void* buf, int32_t bufLen, SConfigRsp* pRsp);
2108
int32_t tDeserializeSConfigRsp(void* buf, int32_t bufLen, SConfigRsp* pRsp);
2109
void    tFreeSConfigRsp(SConfigRsp* pRsp);
2110

2111
typedef struct {
2112
  int32_t reserved;
2113
} SMTimerReq;
2114

2115
int32_t tSerializeSMTimerMsg(void* buf, int32_t bufLen, SMTimerReq* pReq);
2116
// int32_t tDeserializeSMTimerMsg(void* buf, int32_t bufLen, SMTimerReq* pReq);
2117

2118
typedef struct SOrphanTask {
2119
  int64_t streamId;
2120
  int32_t taskId;
2121
  int32_t nodeId;
2122
} SOrphanTask;
2123

2124
typedef struct SMStreamDropOrphanMsg {
2125
  SArray* pList;  // SArray<SOrphanTask>
2126
} SMStreamDropOrphanMsg;
2127

2128
int32_t tSerializeDropOrphanTaskMsg(void* buf, int32_t bufLen, SMStreamDropOrphanMsg* pMsg);
2129
int32_t tDeserializeDropOrphanTaskMsg(void* buf, int32_t bufLen, SMStreamDropOrphanMsg* pMsg);
2130
void    tDestroyDropOrphanTaskMsg(SMStreamDropOrphanMsg* pMsg);
2131

2132
typedef struct {
2133
  int32_t  id;
2134
  uint16_t port;                 // node sync Port
2135
  char     fqdn[TSDB_FQDN_LEN];  // node FQDN
2136
} SReplica;
2137

2138
typedef struct {
2139
  int32_t  vgId;
2140
  char     db[TSDB_DB_FNAME_LEN];
2141
  int64_t  dbUid;
2142
  int32_t  vgVersion;
2143
  int32_t  numOfStables;
2144
  int32_t  buffer;
2145
  int32_t  pageSize;
2146
  int32_t  pages;
2147
  int32_t  cacheLastSize;
2148
  int32_t  daysPerFile;
2149
  int32_t  daysToKeep0;
2150
  int32_t  daysToKeep1;
2151
  int32_t  daysToKeep2;
2152
  int32_t  keepTimeOffset;
2153
  int32_t  minRows;
2154
  int32_t  maxRows;
2155
  int32_t  walFsyncPeriod;
2156
  uint32_t hashBegin;
2157
  uint32_t hashEnd;
2158
  int8_t   hashMethod;
2159
  int8_t   walLevel;
2160
  int8_t   precision;
2161
  int8_t   compression;
2162
  int8_t   strict;
2163
  int8_t   cacheLast;
2164
  int8_t   isTsma;
2165
  int8_t   replica;
2166
  int8_t   selfIndex;
2167
  SReplica replicas[TSDB_MAX_REPLICA];
2168
  int32_t  numOfRetensions;
2169
  SArray*  pRetensions;  // SRetention
2170
  void*    pTsma;
2171
  int32_t  walRetentionPeriod;
2172
  int64_t  walRetentionSize;
2173
  int32_t  walRollPeriod;
2174
  int64_t  walSegmentSize;
2175
  int16_t  sstTrigger;
2176
  int16_t  hashPrefix;
2177
  int16_t  hashSuffix;
2178
  int32_t  tsdbPageSize;
2179
  int32_t  s3ChunkSize;
2180
  int32_t  s3KeepLocal;
2181
  int8_t   s3Compact;
2182
  int64_t  reserved[6];
2183
  int8_t   learnerReplica;
2184
  int8_t   learnerSelfIndex;
2185
  SReplica learnerReplicas[TSDB_MAX_LEARNER_REPLICA];
2186
  int32_t  changeVersion;
2187
  int8_t   encryptAlgorithm;
2188
} SCreateVnodeReq;
2189

2190
int32_t tSerializeSCreateVnodeReq(void* buf, int32_t bufLen, SCreateVnodeReq* pReq);
2191
int32_t tDeserializeSCreateVnodeReq(void* buf, int32_t bufLen, SCreateVnodeReq* pReq);
2192
int32_t tFreeSCreateVnodeReq(SCreateVnodeReq* pReq);
2193

2194
typedef struct {
2195
  int32_t compactId;
2196
  int32_t vgId;
2197
  int32_t dnodeId;
2198
} SQueryCompactProgressReq;
2199

2200
int32_t tSerializeSQueryCompactProgressReq(void* buf, int32_t bufLen, SQueryCompactProgressReq* pReq);
2201
int32_t tDeserializeSQueryCompactProgressReq(void* buf, int32_t bufLen, SQueryCompactProgressReq* pReq);
2202

2203
typedef struct {
2204
  int32_t compactId;
2205
  int32_t vgId;
2206
  int32_t dnodeId;
2207
  int32_t numberFileset;
2208
  int32_t finished;
2209
  int32_t progress;
2210
  int64_t remainingTime;
2211
} SQueryCompactProgressRsp;
2212

2213
int32_t tSerializeSQueryCompactProgressRsp(void* buf, int32_t bufLen, SQueryCompactProgressRsp* pReq);
2214
int32_t tDeserializeSQueryCompactProgressRsp(void* buf, int32_t bufLen, SQueryCompactProgressRsp* pReq);
2215

2216
typedef struct {
2217
  int32_t vgId;
2218
  int32_t dnodeId;
2219
  int64_t dbUid;
2220
  char    db[TSDB_DB_FNAME_LEN];
2221
  int64_t reserved[8];
2222
} SDropVnodeReq;
2223

2224
int32_t tSerializeSDropVnodeReq(void* buf, int32_t bufLen, SDropVnodeReq* pReq);
2225
int32_t tDeserializeSDropVnodeReq(void* buf, int32_t bufLen, SDropVnodeReq* pReq);
2226

2227
typedef struct {
2228
  char    colName[TSDB_COL_NAME_LEN];
2229
  char    stb[TSDB_TABLE_FNAME_LEN];
2230
  int64_t stbUid;
2231
  int64_t dbUid;
2232
  int64_t reserved[8];
2233
} SDropIndexReq;
2234

2235
int32_t tSerializeSDropIdxReq(void* buf, int32_t bufLen, SDropIndexReq* pReq);
2236
int32_t tDeserializeSDropIdxReq(void* buf, int32_t bufLen, SDropIndexReq* pReq);
2237

2238
typedef struct {
2239
  int64_t     dbUid;
2240
  char        db[TSDB_DB_FNAME_LEN];
2241
  int64_t     compactStartTime;
2242
  STimeWindow tw;
2243
  int32_t     compactId;
2244
  int8_t      metaOnly;
2245
} SCompactVnodeReq;
2246

2247
int32_t tSerializeSCompactVnodeReq(void* buf, int32_t bufLen, SCompactVnodeReq* pReq);
2248
int32_t tDeserializeSCompactVnodeReq(void* buf, int32_t bufLen, SCompactVnodeReq* pReq);
2249

2250
typedef struct {
2251
  int32_t compactId;
2252
  int32_t vgId;
2253
  int32_t dnodeId;
2254
} SVKillCompactReq;
2255

2256
int32_t tSerializeSVKillCompactReq(void* buf, int32_t bufLen, SVKillCompactReq* pReq);
2257
int32_t tDeserializeSVKillCompactReq(void* buf, int32_t bufLen, SVKillCompactReq* pReq);
2258

2259
typedef struct {
2260
  int32_t vgVersion;
2261
  int32_t buffer;
2262
  int32_t pageSize;
2263
  int32_t pages;
2264
  int32_t cacheLastSize;
2265
  int32_t daysPerFile;
2266
  int32_t daysToKeep0;
2267
  int32_t daysToKeep1;
2268
  int32_t daysToKeep2;
2269
  int32_t keepTimeOffset;
2270
  int32_t walFsyncPeriod;
2271
  int8_t  walLevel;
2272
  int8_t  strict;
2273
  int8_t  cacheLast;
2274
  int64_t reserved[7];
2275
  // 1st modification
2276
  int16_t sttTrigger;
2277
  int32_t minRows;
2278
  // 2nd modification
2279
  int32_t walRetentionPeriod;
2280
  int32_t walRetentionSize;
2281
  int32_t s3KeepLocal;
2282
  int8_t  s3Compact;
2283
} SAlterVnodeConfigReq;
2284

2285
int32_t tSerializeSAlterVnodeConfigReq(void* buf, int32_t bufLen, SAlterVnodeConfigReq* pReq);
2286
int32_t tDeserializeSAlterVnodeConfigReq(void* buf, int32_t bufLen, SAlterVnodeConfigReq* pReq);
2287

2288
typedef struct {
2289
  int32_t  vgId;
2290
  int8_t   strict;
2291
  int8_t   selfIndex;
2292
  int8_t   replica;
2293
  SReplica replicas[TSDB_MAX_REPLICA];
2294
  int64_t  reserved[8];
2295
  int8_t   learnerSelfIndex;
2296
  int8_t   learnerReplica;
2297
  SReplica learnerReplicas[TSDB_MAX_LEARNER_REPLICA];
2298
  int32_t  changeVersion;
2299
} SAlterVnodeReplicaReq, SAlterVnodeTypeReq, SCheckLearnCatchupReq;
2300

2301
int32_t tSerializeSAlterVnodeReplicaReq(void* buf, int32_t bufLen, SAlterVnodeReplicaReq* pReq);
2302
int32_t tDeserializeSAlterVnodeReplicaReq(void* buf, int32_t bufLen, SAlterVnodeReplicaReq* pReq);
2303

2304
typedef struct {
2305
  int32_t vgId;
2306
  int8_t  disable;
2307
} SDisableVnodeWriteReq;
2308

2309
int32_t tSerializeSDisableVnodeWriteReq(void* buf, int32_t bufLen, SDisableVnodeWriteReq* pReq);
2310
int32_t tDeserializeSDisableVnodeWriteReq(void* buf, int32_t bufLen, SDisableVnodeWriteReq* pReq);
2311

2312
typedef struct {
2313
  int32_t  srcVgId;
2314
  int32_t  dstVgId;
2315
  uint32_t hashBegin;
2316
  uint32_t hashEnd;
2317
  int32_t  changeVersion;
2318
  int32_t  reserved;
2319
} SAlterVnodeHashRangeReq;
2320

2321
int32_t tSerializeSAlterVnodeHashRangeReq(void* buf, int32_t bufLen, SAlterVnodeHashRangeReq* pReq);
2322
int32_t tDeserializeSAlterVnodeHashRangeReq(void* buf, int32_t bufLen, SAlterVnodeHashRangeReq* pReq);
2323

2324
#define REQ_OPT_TBNAME 0x0
2325
#define REQ_OPT_TBUID  0x01
2326
typedef struct {
2327
  SMsgHead header;
2328
  char     dbFName[TSDB_DB_FNAME_LEN];
2329
  char     tbName[TSDB_TABLE_NAME_LEN];
2330
  uint8_t  option;
2331
  uint8_t  autoCreateCtb;
2332
} STableInfoReq;
2333

2334
int32_t tSerializeSTableInfoReq(void* buf, int32_t bufLen, STableInfoReq* pReq);
2335
int32_t tDeserializeSTableInfoReq(void* buf, int32_t bufLen, STableInfoReq* pReq);
2336

2337
typedef struct {
2338
  int8_t  metaClone;  // create local clone of the cached table meta
2339
  int32_t numOfVgroups;
2340
  int32_t numOfTables;
2341
  int32_t numOfUdfs;
2342
  char    tableNames[];
2343
} SMultiTableInfoReq;
2344

2345
// todo refactor
2346
typedef struct SVgroupInfo {
2347
  int32_t  vgId;
2348
  uint32_t hashBegin;
2349
  uint32_t hashEnd;
2350
  SEpSet   epSet;
2351
  union {
2352
    int32_t numOfTable;  // unit is TSDB_TABLE_NUM_UNIT
2353
    int32_t taskId;      // used in stream
2354
  };
2355
} SVgroupInfo;
2356

2357
typedef struct {
2358
  int32_t     numOfVgroups;
2359
  SVgroupInfo vgroups[];
2360
} SVgroupsInfo;
2361

2362
typedef struct {
2363
  STableMetaRsp* pMeta;
2364
} SMAlterStbRsp;
2365

2366
int32_t tEncodeSMAlterStbRsp(SEncoder* pEncoder, const SMAlterStbRsp* pRsp);
2367
int32_t tDecodeSMAlterStbRsp(SDecoder* pDecoder, SMAlterStbRsp* pRsp);
2368
void    tFreeSMAlterStbRsp(SMAlterStbRsp* pRsp);
2369

2370
int32_t tSerializeSTableMetaRsp(void* buf, int32_t bufLen, STableMetaRsp* pRsp);
2371
int32_t tDeserializeSTableMetaRsp(void* buf, int32_t bufLen, STableMetaRsp* pRsp);
2372
void    tFreeSTableMetaRsp(void* pRsp);
2373
void    tFreeSTableIndexRsp(void* info);
2374

2375
typedef struct {
2376
  SArray* pMetaRsp;   // Array of STableMetaRsp
2377
  SArray* pIndexRsp;  // Array of STableIndexRsp;
2378
} SSTbHbRsp;
2379

2380
int32_t tSerializeSSTbHbRsp(void* buf, int32_t bufLen, SSTbHbRsp* pRsp);
2381
int32_t tDeserializeSSTbHbRsp(void* buf, int32_t bufLen, SSTbHbRsp* pRsp);
2382
void    tFreeSSTbHbRsp(SSTbHbRsp* pRsp);
2383

2384
typedef struct {
2385
  SArray* pViewRsp;  // Array of SViewMetaRsp*;
2386
} SViewHbRsp;
2387

2388
int32_t tSerializeSViewHbRsp(void* buf, int32_t bufLen, SViewHbRsp* pRsp);
2389
int32_t tDeserializeSViewHbRsp(void* buf, int32_t bufLen, SViewHbRsp* pRsp);
2390
void    tFreeSViewHbRsp(SViewHbRsp* pRsp);
2391

2392
typedef struct {
2393
  int32_t numOfTables;
2394
  int32_t numOfVgroup;
2395
  int32_t numOfUdf;
2396
  int32_t contLen;
2397
  int8_t  compressed;  // denote if compressed or not
2398
  int32_t rawLen;      // size before compress
2399
  uint8_t metaClone;   // make meta clone after retrieve meta from mnode
2400
  char    meta[];
2401
} SMultiTableMeta;
2402

2403
typedef struct {
2404
  int32_t dataLen;
2405
  char    name[TSDB_TABLE_FNAME_LEN];
2406
  char*   data;
2407
} STagData;
2408

2409
typedef struct {
2410
  int32_t  opType;
2411
  uint32_t valLen;
2412
  char*    val;
2413
} SShowVariablesReq;
2414

2415
int32_t tSerializeSShowVariablesReq(void* buf, int32_t bufLen, SShowVariablesReq* pReq);
2416
int32_t tDeserializeSShowVariablesReq(void* buf, int32_t bufLen, SShowVariablesReq* pReq);
2417
void    tFreeSShowVariablesReq(SShowVariablesReq* pReq);
2418

2419
typedef struct {
2420
  char name[TSDB_CONFIG_OPTION_LEN + 1];
2421
  char value[TSDB_CONFIG_PATH_LEN + 1];
2422
  char scope[TSDB_CONFIG_SCOPE_LEN + 1];
2423
  char category[TSDB_CONFIG_CATEGORY_LEN + 1];
2424
  char info[TSDB_CONFIG_INFO_LEN + 1];
2425
} SVariablesInfo;
2426

2427
typedef struct {
2428
  SArray* variables;  // SArray<SVariablesInfo>
2429
} SShowVariablesRsp;
2430

2431
int32_t tSerializeSShowVariablesRsp(void* buf, int32_t bufLen, SShowVariablesRsp* pReq);
2432
int32_t tDeserializeSShowVariablesRsp(void* buf, int32_t bufLen, SShowVariablesRsp* pReq);
2433

2434
void tFreeSShowVariablesRsp(SShowVariablesRsp* pRsp);
2435

2436
/*
2437
 * sql: show tables like '%a_%'
2438
 * payload is the query condition, e.g., '%a_%'
2439
 * payloadLen is the length of payload
2440
 */
2441
typedef struct {
2442
  int32_t type;
2443
  char    db[TSDB_DB_FNAME_LEN];
2444
  int32_t payloadLen;
2445
  char*   payload;
2446
} SShowReq;
2447

2448
int32_t tSerializeSShowReq(void* buf, int32_t bufLen, SShowReq* pReq);
2449
// int32_t tDeserializeSShowReq(void* buf, int32_t bufLen, SShowReq* pReq);
2450
void tFreeSShowReq(SShowReq* pReq);
2451

2452
typedef struct {
2453
  int64_t       showId;
2454
  STableMetaRsp tableMeta;
2455
} SShowRsp, SVShowTablesRsp;
2456

2457
// int32_t tSerializeSShowRsp(void* buf, int32_t bufLen, SShowRsp* pRsp);
2458
// int32_t tDeserializeSShowRsp(void* buf, int32_t bufLen, SShowRsp* pRsp);
2459
// void    tFreeSShowRsp(SShowRsp* pRsp);
2460

2461
typedef struct {
2462
  char    db[TSDB_DB_FNAME_LEN];
2463
  char    tb[TSDB_TABLE_NAME_LEN];
2464
  char    user[TSDB_USER_LEN];
2465
  char    filterTb[TSDB_TABLE_NAME_LEN];  // for ins_columns
2466
  int64_t showId;
2467
  int64_t compactId;  // for compact
2468
  bool    withFull;   // for show users full
2469
} SRetrieveTableReq;
2470

2471
typedef struct SSysTableSchema {
2472
  int8_t   type;
2473
  col_id_t colId;
2474
  int32_t  bytes;
2475
} SSysTableSchema;
2476

2477
int32_t tSerializeSRetrieveTableReq(void* buf, int32_t bufLen, SRetrieveTableReq* pReq);
2478
int32_t tDeserializeSRetrieveTableReq(void* buf, int32_t bufLen, SRetrieveTableReq* pReq);
2479

2480
#define RETRIEVE_TABLE_RSP_VERSION          0
2481
#define RETRIEVE_TABLE_RSP_TMQ_VERSION      1
2482
#define RETRIEVE_TABLE_RSP_TMQ_RAW_VERSION  2
2483

2484
typedef struct {
2485
  int64_t useconds;
2486
  int8_t  completed;  // all results are returned to client
2487
  int8_t  precision;
2488
  int8_t  compressed;
2489
  int8_t  streamBlockType;
2490
  int32_t payloadLen;
2491
  int32_t compLen;
2492
  int32_t numOfBlocks;
2493
  int64_t numOfRows;  // from int32_t change to int64_t
2494
  int64_t numOfCols;
2495
  int64_t skey;
2496
  int64_t ekey;
2497
  int64_t version;                         // for stream
2498
  TSKEY   watermark;                       // for stream
2499
  char    parTbName[TSDB_TABLE_NAME_LEN];  // for stream
2500
  char    data[];
2501
} SRetrieveTableRsp;
2502

2503
#define PAYLOAD_PREFIX_LEN ((sizeof(int32_t)) << 1)
2504

2505
#define SET_PAYLOAD_LEN(_p, _compLen, _fullLen) \
2506
  do {                                          \
2507
    ((int32_t*)(_p))[0] = (_compLen);           \
2508
    ((int32_t*)(_p))[1] = (_fullLen);           \
2509
  } while (0);
2510

2511
typedef struct {
2512
  int64_t version;
2513
  int64_t numOfRows;
2514
  int8_t  compressed;
2515
  int8_t  precision;
2516
  char    data[];
2517
} SRetrieveTableRspForTmq;
2518

2519
typedef struct {
2520
  int64_t handle;
2521
  int64_t useconds;
2522
  int8_t  completed;  // all results are returned to client
2523
  int8_t  precision;
2524
  int8_t  compressed;
2525
  int32_t compLen;
2526
  int32_t numOfRows;
2527
  int32_t fullLen;
2528
  char    data[];
2529
} SRetrieveMetaTableRsp;
2530

2531
typedef struct SExplainExecInfo {
2532
  double   startupCost;
2533
  double   totalCost;
2534
  uint64_t numOfRows;
2535
  uint32_t verboseLen;
2536
  void*    verboseInfo;
2537
} SExplainExecInfo;
2538

2539
typedef struct {
2540
  int32_t           numOfPlans;
2541
  SExplainExecInfo* subplanInfo;
2542
} SExplainRsp;
2543

2544
typedef struct {
2545
  SExplainRsp rsp;
2546
  uint64_t    qId;
2547
  uint64_t    cId;
2548
  uint64_t    tId;
2549
  int64_t     rId;
2550
  int32_t     eId;
2551
} SExplainLocalRsp;
2552

2553
typedef struct STableScanAnalyzeInfo {
2554
  uint64_t totalRows;
2555
  uint64_t totalCheckedRows;
2556
  uint32_t totalBlocks;
2557
  uint32_t loadBlocks;
2558
  uint32_t loadBlockStatis;
2559
  uint32_t skipBlocks;
2560
  uint32_t filterOutBlocks;
2561
  double   elapsedTime;
2562
  double   filterTime;
2563
} STableScanAnalyzeInfo;
2564

2565
int32_t tSerializeSExplainRsp(void* buf, int32_t bufLen, SExplainRsp* pRsp);
2566
int32_t tDeserializeSExplainRsp(void* buf, int32_t bufLen, SExplainRsp* pRsp);
2567
void    tFreeSExplainRsp(SExplainRsp* pRsp);
2568

2569
typedef struct {
2570
  char    config[TSDB_DNODE_CONFIG_LEN];
2571
  char    value[TSDB_CLUSTER_VALUE_LEN];
2572
  int32_t sqlLen;
2573
  char*   sql;
2574
} SMCfgClusterReq;
2575

2576
int32_t tSerializeSMCfgClusterReq(void* buf, int32_t bufLen, SMCfgClusterReq* pReq);
2577
int32_t tDeserializeSMCfgClusterReq(void* buf, int32_t bufLen, SMCfgClusterReq* pReq);
2578
void    tFreeSMCfgClusterReq(SMCfgClusterReq* pReq);
2579

2580
typedef struct {
2581
  char    fqdn[TSDB_FQDN_LEN];  // end point, hostname:port
2582
  int32_t port;
2583
  int32_t sqlLen;
2584
  char*   sql;
2585
} SCreateDnodeReq;
2586

2587
int32_t tSerializeSCreateDnodeReq(void* buf, int32_t bufLen, SCreateDnodeReq* pReq);
2588
int32_t tDeserializeSCreateDnodeReq(void* buf, int32_t bufLen, SCreateDnodeReq* pReq);
2589
void    tFreeSCreateDnodeReq(SCreateDnodeReq* pReq);
2590

2591
typedef struct {
2592
  int32_t dnodeId;
2593
  char    fqdn[TSDB_FQDN_LEN];
2594
  int32_t port;
2595
  int8_t  force;
2596
  int8_t  unsafe;
2597
  int32_t sqlLen;
2598
  char*   sql;
2599
} SDropDnodeReq;
2600

2601
int32_t tSerializeSDropDnodeReq(void* buf, int32_t bufLen, SDropDnodeReq* pReq);
2602
int32_t tDeserializeSDropDnodeReq(void* buf, int32_t bufLen, SDropDnodeReq* pReq);
2603
void    tFreeSDropDnodeReq(SDropDnodeReq* pReq);
2604

2605
enum {
2606
  RESTORE_TYPE__ALL = 1,
2607
  RESTORE_TYPE__MNODE,
2608
  RESTORE_TYPE__VNODE,
2609
  RESTORE_TYPE__QNODE,
2610
};
2611

2612
typedef struct {
2613
  int32_t dnodeId;
2614
  int8_t  restoreType;
2615
  int32_t sqlLen;
2616
  char*   sql;
2617
} SRestoreDnodeReq;
2618

2619
int32_t tSerializeSRestoreDnodeReq(void* buf, int32_t bufLen, SRestoreDnodeReq* pReq);
2620
int32_t tDeserializeSRestoreDnodeReq(void* buf, int32_t bufLen, SRestoreDnodeReq* pReq);
2621
void    tFreeSRestoreDnodeReq(SRestoreDnodeReq* pReq);
2622

2623
typedef struct {
2624
  int32_t dnodeId;
2625
  char    config[TSDB_DNODE_CONFIG_LEN];
2626
  char    value[TSDB_DNODE_VALUE_LEN];
2627
  int32_t sqlLen;
2628
  char*   sql;
2629
} SMCfgDnodeReq;
2630

2631
int32_t tSerializeSMCfgDnodeReq(void* buf, int32_t bufLen, SMCfgDnodeReq* pReq);
2632
int32_t tDeserializeSMCfgDnodeReq(void* buf, int32_t bufLen, SMCfgDnodeReq* pReq);
2633
void    tFreeSMCfgDnodeReq(SMCfgDnodeReq* pReq);
2634

2635
typedef struct {
2636
  char    config[TSDB_DNODE_CONFIG_LEN];
2637
  char    value[TSDB_DNODE_VALUE_LEN];
2638
  int32_t version;
2639
} SDCfgDnodeReq;
2640

2641
int32_t tSerializeSDCfgDnodeReq(void* buf, int32_t bufLen, SDCfgDnodeReq* pReq);
2642
int32_t tDeserializeSDCfgDnodeReq(void* buf, int32_t bufLen, SDCfgDnodeReq* pReq);
2643

2644
typedef struct {
2645
  int32_t dnodeId;
2646
  int32_t sqlLen;
2647
  char*   sql;
2648
} SMCreateMnodeReq, SMDropMnodeReq, SDDropMnodeReq, SMCreateQnodeReq, SMDropQnodeReq, SDCreateQnodeReq, SDDropQnodeReq,
2649
    SMCreateSnodeReq, SMDropSnodeReq, SDCreateSnodeReq, SDDropSnodeReq;
2650

2651
int32_t tSerializeSCreateDropMQSNodeReq(void* buf, int32_t bufLen, SMCreateQnodeReq* pReq);
2652
int32_t tDeserializeSCreateDropMQSNodeReq(void* buf, int32_t bufLen, SMCreateQnodeReq* pReq);
2653
void    tFreeSMCreateQnodeReq(SMCreateQnodeReq* pReq);
2654
void    tFreeSDDropQnodeReq(SDDropQnodeReq* pReq);
2655
typedef struct {
2656
  int8_t   replica;
2657
  SReplica replicas[TSDB_MAX_REPLICA];
2658
  int8_t   learnerReplica;
2659
  SReplica learnerReplicas[TSDB_MAX_LEARNER_REPLICA];
2660
  int64_t  lastIndex;
2661
} SDCreateMnodeReq, SDAlterMnodeReq, SDAlterMnodeTypeReq;
2662

2663
int32_t tSerializeSDCreateMnodeReq(void* buf, int32_t bufLen, SDCreateMnodeReq* pReq);
2664
int32_t tDeserializeSDCreateMnodeReq(void* buf, int32_t bufLen, SDCreateMnodeReq* pReq);
2665

2666
typedef struct {
2667
  int32_t urlLen;
2668
  int32_t sqlLen;
2669
  char*   url;
2670
  char*   sql;
2671
} SMCreateAnodeReq;
2672

2673
int32_t tSerializeSMCreateAnodeReq(void* buf, int32_t bufLen, SMCreateAnodeReq* pReq);
2674
int32_t tDeserializeSMCreateAnodeReq(void* buf, int32_t bufLen, SMCreateAnodeReq* pReq);
2675
void    tFreeSMCreateAnodeReq(SMCreateAnodeReq* pReq);
2676

2677
typedef struct {
2678
  int32_t anodeId;
2679
  int32_t sqlLen;
2680
  char*   sql;
2681
} SMDropAnodeReq, SMUpdateAnodeReq;
2682

2683
int32_t tSerializeSMDropAnodeReq(void* buf, int32_t bufLen, SMDropAnodeReq* pReq);
2684
int32_t tDeserializeSMDropAnodeReq(void* buf, int32_t bufLen, SMDropAnodeReq* pReq);
2685
void    tFreeSMDropAnodeReq(SMDropAnodeReq* pReq);
2686
int32_t tSerializeSMUpdateAnodeReq(void* buf, int32_t bufLen, SMUpdateAnodeReq* pReq);
2687
int32_t tDeserializeSMUpdateAnodeReq(void* buf, int32_t bufLen, SMUpdateAnodeReq* pReq);
2688
void    tFreeSMUpdateAnodeReq(SMUpdateAnodeReq* pReq);
2689

2690
typedef struct {
2691
  int32_t vgId;
2692
  int32_t hbSeq;
2693
} SVArbHbReqMember;
2694

2695
typedef struct {
2696
  int32_t dnodeId;
2697
  char*   arbToken;
2698
  int64_t arbTerm;
2699
  SArray* hbMembers;  // SVArbHbReqMember
2700
} SVArbHeartBeatReq;
2701

2702
int32_t tSerializeSVArbHeartBeatReq(void* buf, int32_t bufLen, SVArbHeartBeatReq* pReq);
2703
int32_t tDeserializeSVArbHeartBeatReq(void* buf, int32_t bufLen, SVArbHeartBeatReq* pReq);
2704
void    tFreeSVArbHeartBeatReq(SVArbHeartBeatReq* pReq);
2705

2706
typedef struct {
2707
  int32_t vgId;
2708
  char    memberToken[TSDB_ARB_TOKEN_SIZE];
2709
  int32_t hbSeq;
2710
} SVArbHbRspMember;
2711

2712
typedef struct {
2713
  char    arbToken[TSDB_ARB_TOKEN_SIZE];
2714
  int32_t dnodeId;
2715
  SArray* hbMembers;  // SVArbHbRspMember
2716
} SVArbHeartBeatRsp;
2717

2718
int32_t tSerializeSVArbHeartBeatRsp(void* buf, int32_t bufLen, SVArbHeartBeatRsp* pRsp);
2719
int32_t tDeserializeSVArbHeartBeatRsp(void* buf, int32_t bufLen, SVArbHeartBeatRsp* pRsp);
2720
void    tFreeSVArbHeartBeatRsp(SVArbHeartBeatRsp* pRsp);
2721

2722
typedef struct {
2723
  char*   arbToken;
2724
  int64_t arbTerm;
2725
  char*   member0Token;
2726
  char*   member1Token;
2727
} SVArbCheckSyncReq;
2728

2729
int32_t tSerializeSVArbCheckSyncReq(void* buf, int32_t bufLen, SVArbCheckSyncReq* pReq);
2730
int32_t tDeserializeSVArbCheckSyncReq(void* buf, int32_t bufLen, SVArbCheckSyncReq* pReq);
2731
void    tFreeSVArbCheckSyncReq(SVArbCheckSyncReq* pRsp);
2732

2733
typedef struct {
2734
  char*   arbToken;
2735
  char*   member0Token;
2736
  char*   member1Token;
2737
  int32_t vgId;
2738
  int32_t errCode;
2739
} SVArbCheckSyncRsp;
2740

2741
int32_t tSerializeSVArbCheckSyncRsp(void* buf, int32_t bufLen, SVArbCheckSyncRsp* pRsp);
2742
int32_t tDeserializeSVArbCheckSyncRsp(void* buf, int32_t bufLen, SVArbCheckSyncRsp* pRsp);
2743
void    tFreeSVArbCheckSyncRsp(SVArbCheckSyncRsp* pRsp);
2744

2745
typedef struct {
2746
  char*   arbToken;
2747
  int64_t arbTerm;
2748
  char*   memberToken;
2749
  int8_t  force;
2750
} SVArbSetAssignedLeaderReq;
2751

2752
int32_t tSerializeSVArbSetAssignedLeaderReq(void* buf, int32_t bufLen, SVArbSetAssignedLeaderReq* pReq);
2753
int32_t tDeserializeSVArbSetAssignedLeaderReq(void* buf, int32_t bufLen, SVArbSetAssignedLeaderReq* pReq);
2754
void    tFreeSVArbSetAssignedLeaderReq(SVArbSetAssignedLeaderReq* pReq);
2755

2756
typedef struct {
2757
  char*   arbToken;
2758
  char*   memberToken;
2759
  int32_t vgId;
2760
} SVArbSetAssignedLeaderRsp;
2761

2762
int32_t tSerializeSVArbSetAssignedLeaderRsp(void* buf, int32_t bufLen, SVArbSetAssignedLeaderRsp* pRsp);
2763
int32_t tDeserializeSVArbSetAssignedLeaderRsp(void* buf, int32_t bufLen, SVArbSetAssignedLeaderRsp* pRsp);
2764
void    tFreeSVArbSetAssignedLeaderRsp(SVArbSetAssignedLeaderRsp* pRsp);
2765

2766
typedef struct {
2767
  int32_t dnodeId;
2768
  char*   token;
2769
} SMArbUpdateGroupMember;
2770

2771
typedef struct {
2772
  int32_t dnodeId;
2773
  char*   token;
2774
  int8_t  acked;
2775
} SMArbUpdateGroupAssigned;
2776

2777
typedef struct {
2778
  int32_t                  vgId;
2779
  int64_t                  dbUid;
2780
  SMArbUpdateGroupMember   members[2];
2781
  int8_t                   isSync;
2782
  int8_t                   assignedAcked;
2783
  SMArbUpdateGroupAssigned assignedLeader;
2784
  int64_t                  version;
2785
  int32_t                  code;
2786
  int64_t                  updateTimeMs;
2787
} SMArbUpdateGroup;
2788

2789
typedef struct {
2790
  SArray* updateArray;  // SMArbUpdateGroup
2791
} SMArbUpdateGroupBatchReq;
2792

2793
int32_t tSerializeSMArbUpdateGroupBatchReq(void* buf, int32_t bufLen, SMArbUpdateGroupBatchReq* pReq);
2794
int32_t tDeserializeSMArbUpdateGroupBatchReq(void* buf, int32_t bufLen, SMArbUpdateGroupBatchReq* pReq);
2795
void    tFreeSMArbUpdateGroupBatchReq(SMArbUpdateGroupBatchReq* pReq);
2796

2797
typedef struct {
2798
  char queryStrId[TSDB_QUERY_ID_LEN];
2799
} SKillQueryReq;
2800

2801
int32_t tSerializeSKillQueryReq(void* buf, int32_t bufLen, SKillQueryReq* pReq);
2802
int32_t tDeserializeSKillQueryReq(void* buf, int32_t bufLen, SKillQueryReq* pReq);
2803

2804
typedef struct {
2805
  uint32_t connId;
2806
} SKillConnReq;
2807

2808
int32_t tSerializeSKillConnReq(void* buf, int32_t bufLen, SKillConnReq* pReq);
2809
int32_t tDeserializeSKillConnReq(void* buf, int32_t bufLen, SKillConnReq* pReq);
2810

2811
typedef struct {
2812
  int32_t transId;
2813
} SKillTransReq;
2814

2815
int32_t tSerializeSKillTransReq(void* buf, int32_t bufLen, SKillTransReq* pReq);
2816
int32_t tDeserializeSKillTransReq(void* buf, int32_t bufLen, SKillTransReq* pReq);
2817

2818
typedef struct {
2819
  int32_t useless;  // useless
2820
  int32_t sqlLen;
2821
  char*   sql;
2822
} SBalanceVgroupReq;
2823

2824
int32_t tSerializeSBalanceVgroupReq(void* buf, int32_t bufLen, SBalanceVgroupReq* pReq);
2825
int32_t tDeserializeSBalanceVgroupReq(void* buf, int32_t bufLen, SBalanceVgroupReq* pReq);
2826
void    tFreeSBalanceVgroupReq(SBalanceVgroupReq* pReq);
2827

2828
typedef struct {
2829
  int32_t useless;  // useless
2830
  int32_t sqlLen;
2831
  char*   sql;
2832
} SAssignLeaderReq;
2833

2834
int32_t tSerializeSAssignLeaderReq(void* buf, int32_t bufLen, SAssignLeaderReq* pReq);
2835
int32_t tDeserializeSAssignLeaderReq(void* buf, int32_t bufLen, SAssignLeaderReq* pReq);
2836
void    tFreeSAssignLeaderReq(SAssignLeaderReq* pReq);
2837
typedef struct {
2838
  int32_t vgId1;
2839
  int32_t vgId2;
2840
} SMergeVgroupReq;
2841

2842
int32_t tSerializeSMergeVgroupReq(void* buf, int32_t bufLen, SMergeVgroupReq* pReq);
2843
int32_t tDeserializeSMergeVgroupReq(void* buf, int32_t bufLen, SMergeVgroupReq* pReq);
2844

2845
typedef struct {
2846
  int32_t vgId;
2847
  int32_t dnodeId1;
2848
  int32_t dnodeId2;
2849
  int32_t dnodeId3;
2850
  int32_t sqlLen;
2851
  char*   sql;
2852
} SRedistributeVgroupReq;
2853

2854
int32_t tSerializeSRedistributeVgroupReq(void* buf, int32_t bufLen, SRedistributeVgroupReq* pReq);
2855
int32_t tDeserializeSRedistributeVgroupReq(void* buf, int32_t bufLen, SRedistributeVgroupReq* pReq);
2856
void    tFreeSRedistributeVgroupReq(SRedistributeVgroupReq* pReq);
2857

2858
typedef struct {
2859
  int32_t reserved;
2860
  int32_t vgId;
2861
  int32_t sqlLen;
2862
  char*   sql;
2863
  char    db[TSDB_DB_FNAME_LEN];
2864
} SBalanceVgroupLeaderReq;
2865

2866
int32_t tSerializeSBalanceVgroupLeaderReq(void* buf, int32_t bufLen, SBalanceVgroupLeaderReq* pReq);
2867
int32_t tDeserializeSBalanceVgroupLeaderReq(void* buf, int32_t bufLen, SBalanceVgroupLeaderReq* pReq);
2868
void    tFreeSBalanceVgroupLeaderReq(SBalanceVgroupLeaderReq* pReq);
2869

2870
typedef struct {
2871
  int32_t vgId;
2872
} SForceBecomeFollowerReq;
2873

2874
int32_t tSerializeSForceBecomeFollowerReq(void* buf, int32_t bufLen, SForceBecomeFollowerReq* pReq);
2875
// int32_t tDeserializeSForceBecomeFollowerReq(void* buf, int32_t bufLen, SForceBecomeFollowerReq* pReq);
2876

2877
typedef struct {
2878
  int32_t vgId;
2879
} SSplitVgroupReq;
2880

2881
int32_t tSerializeSSplitVgroupReq(void* buf, int32_t bufLen, SSplitVgroupReq* pReq);
2882
int32_t tDeserializeSSplitVgroupReq(void* buf, int32_t bufLen, SSplitVgroupReq* pReq);
2883

2884
typedef struct {
2885
  char user[TSDB_USER_LEN];
2886
  char spi;
2887
  char encrypt;
2888
  char secret[TSDB_PASSWORD_LEN];
2889
  char ckey[TSDB_PASSWORD_LEN];
2890
} SAuthReq, SAuthRsp;
2891

2892
// int32_t tSerializeSAuthReq(void* buf, int32_t bufLen, SAuthReq* pReq);
2893
// int32_t tDeserializeSAuthReq(void* buf, int32_t bufLen, SAuthReq* pReq);
2894

2895
typedef struct {
2896
  int32_t statusCode;
2897
  char    details[1024];
2898
} SServerStatusRsp;
2899

2900
int32_t tSerializeSServerStatusRsp(void* buf, int32_t bufLen, SServerStatusRsp* pRsp);
2901
int32_t tDeserializeSServerStatusRsp(void* buf, int32_t bufLen, SServerStatusRsp* pRsp);
2902

2903
/**
2904
 * The layout of the query message payload is as following:
2905
 * +--------------------+---------------------------------+
2906
 * |Sql statement       | Physical plan                   |
2907
 * |(denoted by sqlLen) |(In JSON, denoted by contentLen) |
2908
 * +--------------------+---------------------------------+
2909
 */
2910
typedef struct SSubQueryMsg {
2911
  SMsgHead header;
2912
  uint64_t sId;
2913
  uint64_t queryId;
2914
  uint64_t clientId;
2915
  uint64_t taskId;
2916
  int64_t  refId;
2917
  int32_t  execId;
2918
  int32_t  msgMask;
2919
  int8_t   taskType;
2920
  int8_t   explain;
2921
  int8_t   needFetch;
2922
  int8_t   compress;
2923
  uint32_t sqlLen;
2924
  char*    sql;
2925
  uint32_t msgLen;
2926
  char*    msg;
2927
} SSubQueryMsg;
2928

2929
int32_t tSerializeSSubQueryMsg(void* buf, int32_t bufLen, SSubQueryMsg* pReq);
2930
int32_t tDeserializeSSubQueryMsg(void* buf, int32_t bufLen, SSubQueryMsg* pReq);
2931
void    tFreeSSubQueryMsg(SSubQueryMsg* pReq);
2932

2933
typedef struct {
2934
  SMsgHead header;
2935
  uint64_t sId;
2936
  uint64_t queryId;
2937
  uint64_t taskId;
2938
} SSinkDataReq;
2939

2940
typedef struct {
2941
  SMsgHead header;
2942
  uint64_t sId;
2943
  uint64_t queryId;
2944
  uint64_t clientId;
2945
  uint64_t taskId;
2946
  int32_t  execId;
2947
} SQueryContinueReq;
2948

2949
typedef struct {
2950
  SMsgHead header;
2951
  uint64_t sId;
2952
  uint64_t queryId;
2953
  uint64_t taskId;
2954
} SResReadyReq;
2955

2956
typedef struct {
2957
  int32_t code;
2958
  char    tbFName[TSDB_TABLE_FNAME_LEN];
2959
  int32_t sversion;
2960
  int32_t tversion;
2961
} SResReadyRsp;
2962

2963
typedef struct SOperatorParam {
2964
  int32_t opType;
2965
  int32_t downstreamIdx;
2966
  void*   value;
2967
  SArray* pChildren;  // SArray<SOperatorParam*>
2968
  bool    reUse;
2969
} SOperatorParam;
2970

2971
typedef struct SColIdNameKV {
2972
  col_id_t colId;
2973
  char     colName[TSDB_COL_NAME_LEN];
2974
} SColIdNameKV;
2975

2976
typedef struct SColIdPair {
2977
  col_id_t vtbColId;
2978
  col_id_t orgColId;
2979
} SColIdPair;
2980

2981
typedef struct SOrgTbInfo {
2982
  int32_t   vgId;
2983
  char      tbName[TSDB_TABLE_FNAME_LEN];
2984
  SArray*   colMap;  // SArray<SColIdNameKV>
2985
} SOrgTbInfo;
2986

2987
typedef struct STableScanOperatorParam {
2988
  bool           tableSeq;
2989
  SArray*        pUidList;
2990
  SOrgTbInfo*    pOrgTbInfo;
2991
  STimeWindow    window;
2992
} STableScanOperatorParam;
2993

2994
typedef struct SVTableScanOperatorParam {
2995
  uint64_t       uid;
2996
  SArray*        pOpParamArray;  // SArray<SOperatorParam>
2997
} SVTableScanOperatorParam;
2998

2999
typedef struct {
3000
  SMsgHead        header;
3001
  uint64_t        sId;
3002
  uint64_t        queryId;
3003
  uint64_t        clientId;
3004
  uint64_t        taskId;
3005
  int32_t         execId;
3006
  SOperatorParam* pOpParam;
3007
} SResFetchReq;
3008

3009
int32_t tSerializeSResFetchReq(void* buf, int32_t bufLen, SResFetchReq* pReq);
3010
int32_t tDeserializeSResFetchReq(void* buf, int32_t bufLen, SResFetchReq* pReq);
3011

3012
typedef struct {
3013
  SMsgHead header;
3014
  uint64_t clientId;
3015
} SSchTasksStatusReq;
3016

3017
typedef struct {
3018
  uint64_t queryId;
3019
  uint64_t clientId;
3020
  uint64_t taskId;
3021
  int64_t  refId;
3022
  int32_t  execId;
3023
  int8_t   status;
3024
} STaskStatus;
3025

3026
typedef struct {
3027
  int64_t refId;
3028
  SArray* taskStatus;  // SArray<STaskStatus>
3029
} SSchedulerStatusRsp;
3030

3031
typedef struct {
3032
  uint64_t queryId;
3033
  uint64_t taskId;
3034
  int8_t   action;
3035
} STaskAction;
3036

3037
typedef struct SQueryNodeEpId {
3038
  int32_t nodeId;  // vgId or qnodeId
3039
  SEp     ep;
3040
} SQueryNodeEpId;
3041

3042
typedef struct {
3043
  SMsgHead       header;
3044
  uint64_t       clientId;
3045
  SQueryNodeEpId epId;
3046
  SArray*        taskAction;  // SArray<STaskAction>
3047
} SSchedulerHbReq;
3048

3049
int32_t tSerializeSSchedulerHbReq(void* buf, int32_t bufLen, SSchedulerHbReq* pReq);
3050
int32_t tDeserializeSSchedulerHbReq(void* buf, int32_t bufLen, SSchedulerHbReq* pReq);
3051
void    tFreeSSchedulerHbReq(SSchedulerHbReq* pReq);
3052

3053
typedef struct {
3054
  SQueryNodeEpId epId;
3055
  SArray*        taskStatus;  // SArray<STaskStatus>
3056
} SSchedulerHbRsp;
3057

3058
int32_t tSerializeSSchedulerHbRsp(void* buf, int32_t bufLen, SSchedulerHbRsp* pRsp);
3059
int32_t tDeserializeSSchedulerHbRsp(void* buf, int32_t bufLen, SSchedulerHbRsp* pRsp);
3060
void    tFreeSSchedulerHbRsp(SSchedulerHbRsp* pRsp);
3061

3062
typedef struct {
3063
  SMsgHead header;
3064
  uint64_t sId;
3065
  uint64_t queryId;
3066
  uint64_t clientId;
3067
  uint64_t taskId;
3068
  int64_t  refId;
3069
  int32_t  execId;
3070
} STaskCancelReq;
3071

3072
typedef struct {
3073
  int32_t code;
3074
} STaskCancelRsp;
3075

3076
typedef struct {
3077
  SMsgHead header;
3078
  uint64_t sId;
3079
  uint64_t queryId;
3080
  uint64_t clientId;
3081
  uint64_t taskId;
3082
  int64_t  refId;
3083
  int32_t  execId;
3084
} STaskDropReq;
3085

3086
int32_t tSerializeSTaskDropReq(void* buf, int32_t bufLen, STaskDropReq* pReq);
3087
int32_t tDeserializeSTaskDropReq(void* buf, int32_t bufLen, STaskDropReq* pReq);
3088

3089
typedef enum {
3090
  TASK_NOTIFY_FINISHED = 1,
3091
} ETaskNotifyType;
3092

3093
typedef struct {
3094
  SMsgHead        header;
3095
  uint64_t        sId;
3096
  uint64_t        queryId;
3097
  uint64_t        clientId;
3098
  uint64_t        taskId;
3099
  int64_t         refId;
3100
  int32_t         execId;
3101
  ETaskNotifyType type;
3102
} STaskNotifyReq;
3103

3104
int32_t tSerializeSTaskNotifyReq(void* buf, int32_t bufLen, STaskNotifyReq* pReq);
3105
int32_t tDeserializeSTaskNotifyReq(void* buf, int32_t bufLen, STaskNotifyReq* pReq);
3106

3107
int32_t tSerializeSQueryTableRsp(void* buf, int32_t bufLen, SQueryTableRsp* pRsp);
3108
int32_t tDeserializeSQueryTableRsp(void* buf, int32_t bufLen, SQueryTableRsp* pRsp);
3109

3110
typedef struct {
3111
  int32_t code;
3112
} STaskDropRsp;
3113

3114
#define STREAM_TRIGGER_AT_ONCE                 1
3115
#define STREAM_TRIGGER_WINDOW_CLOSE            2
3116
#define STREAM_TRIGGER_MAX_DELAY               3
3117
#define STREAM_TRIGGER_FORCE_WINDOW_CLOSE      4
3118
#define STREAM_TRIGGER_CONTINUOUS_WINDOW_CLOSE 5
3119

3120
#define STREAM_DEFAULT_IGNORE_EXPIRED 1
3121
#define STREAM_FILL_HISTORY_ON        1
3122
#define STREAM_FILL_HISTORY_OFF       0
3123
#define STREAM_DEFAULT_FILL_HISTORY   STREAM_FILL_HISTORY_OFF
3124
#define STREAM_DEFAULT_IGNORE_UPDATE  1
3125
#define STREAM_CREATE_STABLE_TRUE     1
3126
#define STREAM_CREATE_STABLE_FALSE    0
3127

3128
typedef struct SColLocation {
3129
  int16_t  slotId;
3130
  col_id_t colId;
3131
  int8_t   type;
3132
} SColLocation;
3133

3134
typedef struct SVgroupVer {
3135
  int32_t vgId;
3136
  int64_t ver;
3137
} SVgroupVer;
3138

3139
typedef struct {
3140
  char    name[TSDB_STREAM_FNAME_LEN];
3141
  char    sourceDB[TSDB_DB_FNAME_LEN];
3142
  char    targetStbFullName[TSDB_TABLE_FNAME_LEN];
3143
  char*   sql;
3144
  char*   ast;
3145
  int8_t  igExists;
3146
  int8_t  triggerType;
3147
  int8_t  igExpired;
3148
  int8_t  fillHistory;  // process data inserted before creating stream
3149
  int64_t maxDelay;
3150
  int64_t watermark;
3151
  int32_t numOfTags;
3152
  SArray* pTags;  // array of SField
3153
  // 3.0.20
3154
  int64_t checkpointFreq;  // ms
3155
  // 3.0.2.3
3156
  int8_t   createStb;
3157
  uint64_t targetStbUid;
3158
  SArray*  fillNullCols;  // array of SColLocation
3159
  int64_t  deleteMark;
3160
  int8_t   igUpdate;
3161
  int64_t  lastTs;
3162
  SArray*  pVgroupVerList;
3163
  // 3.3.0.0
3164
  SArray* pCols;  // array of SField
3165
  int64_t smaId;
3166
  // 3.3.6.0
3167
  SArray* pNotifyAddrUrls;
3168
  int32_t notifyEventTypes;
3169
  int32_t notifyErrorHandle;
3170
  int8_t  notifyHistory;
3171
  int64_t recalculateInterval;
3172
  char    pWstartName[TSDB_COL_NAME_LEN];
3173
  char    pWendName[TSDB_COL_NAME_LEN];
3174
  char    pGroupIdName[TSDB_COL_NAME_LEN];
3175
  char    pIsWindowFilledName[TSDB_COL_NAME_LEN];
3176
  SArray* pVSubTables; // array of SVSubTablesRsp
3177
} SCMCreateStreamReq;
3178

3179
typedef struct STaskNotifyEventStat {
3180
  int64_t notifyEventAddTimes;     // call times of add function
3181
  int64_t notifyEventAddElems;     // elements added by add function
3182
  double  notifyEventAddCostSec;   // time cost of add function
3183
  int64_t notifyEventPushTimes;    // call times of push function
3184
  int64_t notifyEventPushElems;    // elements pushed by push function
3185
  double  notifyEventPushCostSec;  // time cost of push function
3186
  int64_t notifyEventPackTimes;    // call times of pack function
3187
  int64_t notifyEventPackElems;    // elements packed by pack function
3188
  double  notifyEventPackCostSec;  // time cost of pack function
3189
  int64_t notifyEventSendTimes;    // call times of send function
3190
  int64_t notifyEventSendElems;    // elements sent by send function
3191
  double  notifyEventSendCostSec;  // time cost of send function
3192
  int64_t notifyEventHoldElems;    // elements hold due to watermark
3193
} STaskNotifyEventStat;
3194

3195
typedef struct {
3196
  int64_t streamId;
3197
} SCMCreateStreamRsp;
3198

3199
int32_t tSerializeSCMCreateStreamReq(void* buf, int32_t bufLen, const SCMCreateStreamReq* pReq);
3200
int32_t tDeserializeSCMCreateStreamReq(void* buf, int32_t bufLen, SCMCreateStreamReq* pReq);
3201
void    tFreeSCMCreateStreamReq(SCMCreateStreamReq* pReq);
3202

3203
enum {
3204
  TOPIC_SUB_TYPE__DB = 1,
3205
  TOPIC_SUB_TYPE__TABLE,
3206
  TOPIC_SUB_TYPE__COLUMN,
3207
};
3208

3209
#define DEFAULT_MAX_POLL_INTERVAL  300000
3210
#define DEFAULT_SESSION_TIMEOUT    12000
3211
#define DEFAULT_MAX_POLL_WAIT_TIME 1000
3212
#define DEFAULT_MIN_POLL_ROWS      4096
3213

3214
typedef struct {
3215
  char   name[TSDB_TOPIC_FNAME_LEN];  // accout.topic
3216
  int8_t igExists;
3217
  int8_t subType;
3218
  int8_t withMeta;
3219
  char*  sql;
3220
  char   subDbName[TSDB_DB_FNAME_LEN];
3221
  char*  ast;
3222
  char   subStbName[TSDB_TABLE_FNAME_LEN];
3223
} SCMCreateTopicReq;
3224

3225
int32_t tSerializeSCMCreateTopicReq(void* buf, int32_t bufLen, const SCMCreateTopicReq* pReq);
3226
int32_t tDeserializeSCMCreateTopicReq(void* buf, int32_t bufLen, SCMCreateTopicReq* pReq);
3227
void    tFreeSCMCreateTopicReq(SCMCreateTopicReq* pReq);
3228

3229
typedef struct {
3230
  int64_t consumerId;
3231
} SMqConsumerRecoverMsg, SMqConsumerClearMsg;
3232

3233
typedef struct {
3234
  int64_t consumerId;
3235
  char    cgroup[TSDB_CGROUP_LEN];
3236
  char    clientId[TSDB_CLIENT_ID_LEN];
3237
  char    user[TSDB_USER_LEN];
3238
  char    fqdn[TSDB_FQDN_LEN];
3239
  SArray* topicNames;  // SArray<char**>
3240

3241
  int8_t  withTbName;
3242
  int8_t  autoCommit;
3243
  int32_t autoCommitInterval;
3244
  int8_t  resetOffsetCfg;
3245
  int8_t  enableReplay;
3246
  int8_t  enableBatchMeta;
3247
  int32_t sessionTimeoutMs;
3248
  int32_t maxPollIntervalMs;
3249
} SCMSubscribeReq;
3250

3251
static FORCE_INLINE int32_t tSerializeSCMSubscribeReq(void** buf, const SCMSubscribeReq* pReq) {
3252
  int32_t tlen = 0;
2,462✔
3253
  tlen += taosEncodeFixedI64(buf, pReq->consumerId);
2,462!
3254
  tlen += taosEncodeString(buf, pReq->cgroup);
2,462✔
3255
  tlen += taosEncodeString(buf, pReq->clientId);
2,462✔
3256

3257
  int32_t topicNum = taosArrayGetSize(pReq->topicNames);
2,462!
3258
  tlen += taosEncodeFixedI32(buf, topicNum);
2,462✔
3259

3260
  for (int32_t i = 0; i < topicNum; i++) {
3,470✔
3261
    tlen += taosEncodeString(buf, (char*)taosArrayGetP(pReq->topicNames, i));
2,015✔
3262
  }
3263

3264
  tlen += taosEncodeFixedI8(buf, pReq->withTbName);
2,463!
3265
  tlen += taosEncodeFixedI8(buf, pReq->autoCommit);
2,463!
3266
  tlen += taosEncodeFixedI32(buf, pReq->autoCommitInterval);
2,463!
3267
  tlen += taosEncodeFixedI8(buf, pReq->resetOffsetCfg);
2,463!
3268
  tlen += taosEncodeFixedI8(buf, pReq->enableReplay);
2,463!
3269
  tlen += taosEncodeFixedI8(buf, pReq->enableBatchMeta);
2,463!
3270
  tlen += taosEncodeFixedI32(buf, pReq->sessionTimeoutMs);
2,463!
3271
  tlen += taosEncodeFixedI32(buf, pReq->maxPollIntervalMs);
2,463!
3272
  tlen += taosEncodeString(buf, pReq->user);
2,463✔
3273
  tlen += taosEncodeString(buf, pReq->fqdn);
2,463✔
3274

3275
  return tlen;
2,463✔
3276
}
3277

3278
static FORCE_INLINE int32_t tDeserializeSCMSubscribeReq(void* buf, SCMSubscribeReq* pReq, int32_t len) {
3279
  void* start = buf;
1,333✔
3280
  buf = taosDecodeFixedI64(buf, &pReq->consumerId);
1,333!
3281
  buf = taosDecodeStringTo(buf, pReq->cgroup);
1,333✔
3282
  buf = taosDecodeStringTo(buf, pReq->clientId);
1,333✔
3283

3284
  int32_t topicNum = 0;
1,333!
3285
  buf = taosDecodeFixedI32(buf, &topicNum);
1,333✔
3286

3287
  pReq->topicNames = taosArrayInit(topicNum, sizeof(void*));
1,333✔
3288
  if (pReq->topicNames == NULL) {
1,333!
3289
    return terrno;
×
3290
  }
3291
  for (int32_t i = 0; i < topicNum; i++) {
1,944✔
3292
    char* name = NULL;
611✔
3293
    buf = taosDecodeString(buf, &name);
611✔
3294
    if (taosArrayPush(pReq->topicNames, &name) == NULL) {
1,222!
3295
      return terrno;
×
3296
    }
3297
  }
3298

3299
  buf = taosDecodeFixedI8(buf, &pReq->withTbName);
1,333✔
3300
  buf = taosDecodeFixedI8(buf, &pReq->autoCommit);
1,333✔
3301
  buf = taosDecodeFixedI32(buf, &pReq->autoCommitInterval);
1,333!
3302
  buf = taosDecodeFixedI8(buf, &pReq->resetOffsetCfg);
1,333✔
3303
  buf = taosDecodeFixedI8(buf, &pReq->enableReplay);
1,333✔
3304
  buf = taosDecodeFixedI8(buf, &pReq->enableBatchMeta);
1,333✔
3305
  if ((char*)buf - (char*)start < len) {
1,333!
3306
    buf = taosDecodeFixedI32(buf, &pReq->sessionTimeoutMs);
1,333!
3307
    buf = taosDecodeFixedI32(buf, &pReq->maxPollIntervalMs);
1,333!
3308
    buf = taosDecodeStringTo(buf, pReq->user);
1,333✔
3309
    buf = taosDecodeStringTo(buf, pReq->fqdn);
2,666✔
3310
  } else {
3311
    pReq->sessionTimeoutMs = DEFAULT_SESSION_TIMEOUT;
×
3312
    pReq->maxPollIntervalMs = DEFAULT_MAX_POLL_INTERVAL;
×
3313
  }
3314

3315
  return 0;
1,333✔
3316
}
3317

3318
typedef struct {
3319
  char    key[TSDB_SUBSCRIBE_KEY_LEN];
3320
  SArray* removedConsumers;  // SArray<int64_t>
3321
  SArray* newConsumers;      // SArray<int64_t>
3322
} SMqRebInfo;
3323

3324
static FORCE_INLINE SMqRebInfo* tNewSMqRebSubscribe(const char* key) {
3325
  SMqRebInfo* pRebInfo = (SMqRebInfo*)taosMemoryCalloc(1, sizeof(SMqRebInfo));
1,301!
3326
  if (pRebInfo == NULL) {
1,301!
3327
    return NULL;
×
3328
  }
3329
  tstrncpy(pRebInfo->key, key, TSDB_SUBSCRIBE_KEY_LEN);
1,301✔
3330
  pRebInfo->removedConsumers = taosArrayInit(0, sizeof(int64_t));
1,301✔
3331
  if (pRebInfo->removedConsumers == NULL) {
1,301!
3332
    goto _err;
×
3333
  }
3334
  pRebInfo->newConsumers = taosArrayInit(0, sizeof(int64_t));
1,301✔
3335
  if (pRebInfo->newConsumers == NULL) {
1,301!
3336
    goto _err;
×
3337
  }
3338
  return pRebInfo;
1,301✔
3339
_err:
×
3340
  taosArrayDestroy(pRebInfo->removedConsumers);
×
3341
  taosArrayDestroy(pRebInfo->newConsumers);
×
3342
  taosMemoryFreeClear(pRebInfo);
×
3343
  return NULL;
×
3344
}
3345

3346
typedef struct {
3347
  int64_t streamId;
3348
  int64_t checkpointId;
3349
  char    streamName[TSDB_STREAM_FNAME_LEN];
3350
} SMStreamDoCheckpointMsg;
3351

3352
typedef struct {
3353
  int64_t status;
3354
} SMVSubscribeRsp;
3355

3356
typedef struct {
3357
  char    name[TSDB_TOPIC_FNAME_LEN];
3358
  int8_t  igNotExists;
3359
  int32_t sqlLen;
3360
  char*   sql;
3361
} SMDropTopicReq;
3362

3363
int32_t tSerializeSMDropTopicReq(void* buf, int32_t bufLen, SMDropTopicReq* pReq);
3364
int32_t tDeserializeSMDropTopicReq(void* buf, int32_t bufLen, SMDropTopicReq* pReq);
3365
void    tFreeSMDropTopicReq(SMDropTopicReq* pReq);
3366

3367
typedef struct {
3368
  char   topic[TSDB_TOPIC_FNAME_LEN];
3369
  char   cgroup[TSDB_CGROUP_LEN];
3370
  int8_t igNotExists;
3371
} SMDropCgroupReq;
3372

3373
int32_t tSerializeSMDropCgroupReq(void* buf, int32_t bufLen, SMDropCgroupReq* pReq);
3374
int32_t tDeserializeSMDropCgroupReq(void* buf, int32_t bufLen, SMDropCgroupReq* pReq);
3375

3376
typedef struct {
3377
  int8_t reserved;
3378
} SMDropCgroupRsp;
3379

3380
typedef struct {
3381
  char    name[TSDB_TABLE_FNAME_LEN];
3382
  int8_t  alterType;
3383
  SSchema schema;
3384
} SAlterTopicReq;
3385

3386
typedef struct {
3387
  SMsgHead head;
3388
  char     name[TSDB_TABLE_FNAME_LEN];
3389
  int64_t  tuid;
3390
  int32_t  sverson;
3391
  int32_t  execLen;
3392
  char*    executor;
3393
  int32_t  sqlLen;
3394
  char*    sql;
3395
} SDCreateTopicReq;
3396

3397
typedef struct {
3398
  SMsgHead head;
3399
  char     name[TSDB_TABLE_FNAME_LEN];
3400
  int64_t  tuid;
3401
} SDDropTopicReq;
3402

3403
typedef struct {
3404
  int64_t maxdelay[2];
3405
  int64_t watermark[2];
3406
  int64_t deleteMark[2];
3407
  int32_t qmsgLen[2];
3408
  char*   qmsg[2];  // pAst:qmsg:SRetention => trigger aggr task1/2
3409
} SRSmaParam;
3410

3411
int32_t tEncodeSRSmaParam(SEncoder* pCoder, const SRSmaParam* pRSmaParam);
3412
int32_t tDecodeSRSmaParam(SDecoder* pCoder, SRSmaParam* pRSmaParam);
3413

3414
// TDMT_VND_CREATE_STB ==============
3415
typedef struct SVCreateStbReq {
3416
  char*           name;
3417
  tb_uid_t        suid;
3418
  int8_t          rollup;
3419
  SSchemaWrapper  schemaRow;
3420
  SSchemaWrapper  schemaTag;
3421
  SRSmaParam      rsmaParam;
3422
  int32_t         alterOriDataLen;
3423
  void*           alterOriData;
3424
  int8_t          source;
3425
  int8_t          colCmpred;
3426
  SColCmprWrapper colCmpr;
3427
  int64_t         keep;
3428
  SExtSchema*     pExtSchemas;
3429
  int8_t          virtualStb;
3430
} SVCreateStbReq;
3431

3432
int tEncodeSVCreateStbReq(SEncoder* pCoder, const SVCreateStbReq* pReq);
3433
int tDecodeSVCreateStbReq(SDecoder* pCoder, SVCreateStbReq* pReq);
3434

3435
// TDMT_VND_DROP_STB ==============
3436
typedef struct SVDropStbReq {
3437
  char*    name;
3438
  tb_uid_t suid;
3439
} SVDropStbReq;
3440

3441
int32_t tEncodeSVDropStbReq(SEncoder* pCoder, const SVDropStbReq* pReq);
3442
int32_t tDecodeSVDropStbReq(SDecoder* pCoder, SVDropStbReq* pReq);
3443

3444
// TDMT_VND_CREATE_TABLE ==============
3445
#define TD_CREATE_IF_NOT_EXISTS 0x1
3446
typedef struct SVCreateTbReq {
3447
  int32_t  flags;
3448
  char*    name;
3449
  tb_uid_t uid;
3450
  int64_t  btime;
3451
  int32_t  ttl;
3452
  int32_t  commentLen;
3453
  char*    comment;
3454
  int8_t   type;
3455
  union {
3456
    struct {
3457
      char*    stbName;  // super table name
3458
      uint8_t  tagNum;
3459
      tb_uid_t suid;
3460
      SArray*  tagName;
3461
      uint8_t* pTag;
3462
    } ctb;
3463
    struct {
3464
      SSchemaWrapper schemaRow;
3465
    } ntb;
3466
  };
3467
  int32_t         sqlLen;
3468
  char*           sql;
3469
  SColCmprWrapper colCmpr;
3470
  SExtSchema*     pExtSchemas;
3471
  SColRefWrapper  colRef; // col reference for virtual table
3472
} SVCreateTbReq;
3473

3474
int  tEncodeSVCreateTbReq(SEncoder* pCoder, const SVCreateTbReq* pReq);
3475
int  tDecodeSVCreateTbReq(SDecoder* pCoder, SVCreateTbReq* pReq);
3476
void tDestroySVCreateTbReq(SVCreateTbReq* pReq, int32_t flags);
3477

3478
static FORCE_INLINE void tdDestroySVCreateTbReq(SVCreateTbReq* req) {
6,805✔
3479
  if (NULL == req) {
19,645,906!
3480
    return;
19,314,218✔
3481
  }
3482

3483
  taosMemoryFreeClear(req->sql);
331,688!
3484
  taosMemoryFreeClear(req->name);
331,688!
3485
  taosMemoryFreeClear(req->comment);
331,709!
3486
  if (req->type == TSDB_CHILD_TABLE || req->type == TSDB_VIRTUAL_CHILD_TABLE) {
331,709!
3487
    taosMemoryFreeClear(req->ctb.pTag);
318,356!
3488
    taosMemoryFreeClear(req->ctb.stbName);
318,377!
3489
    taosArrayDestroy(req->ctb.tagName);
318,385✔
3490
    req->ctb.tagName = NULL;
318,361✔
3491
  } else if (req->type == TSDB_NORMAL_TABLE || req->type == TSDB_VIRTUAL_NORMAL_TABLE) {
13,353!
3492
    taosMemoryFreeClear(req->ntb.schemaRow.pSchema);
13,353!
3493
  }
3494
  taosMemoryFreeClear(req->colCmpr.pColCmpr);
331,714!
3495
  taosMemoryFreeClear(req->pExtSchemas);
331,714!
3496
  taosMemoryFreeClear(req->colRef.pColRef);
331,714!
3497
}
3498

3499
typedef struct {
3500
  int32_t nReqs;
3501
  union {
3502
    SVCreateTbReq* pReqs;
3503
    SArray*        pArray;
3504
  };
3505
  int8_t source;  // TD_REQ_FROM_TAOX-taosX or TD_REQ_FROM_APP-taosClient
3506
} SVCreateTbBatchReq;
3507

3508
int  tEncodeSVCreateTbBatchReq(SEncoder* pCoder, const SVCreateTbBatchReq* pReq);
3509
int  tDecodeSVCreateTbBatchReq(SDecoder* pCoder, SVCreateTbBatchReq* pReq);
3510
void tDeleteSVCreateTbBatchReq(SVCreateTbBatchReq* pReq);
3511

3512
typedef struct {
3513
  int32_t        code;
3514
  STableMetaRsp* pMeta;
3515
} SVCreateTbRsp, SVUpdateTbRsp;
3516

3517
int  tEncodeSVCreateTbRsp(SEncoder* pCoder, const SVCreateTbRsp* pRsp);
3518
int  tDecodeSVCreateTbRsp(SDecoder* pCoder, SVCreateTbRsp* pRsp);
3519
void tFreeSVCreateTbRsp(void* param);
3520

3521
int32_t tSerializeSVCreateTbReq(void** buf, SVCreateTbReq* pReq);
3522
void*   tDeserializeSVCreateTbReq(void* buf, SVCreateTbReq* pReq);
3523

3524
typedef struct {
3525
  int32_t nRsps;
3526
  union {
3527
    SVCreateTbRsp* pRsps;
3528
    SArray*        pArray;
3529
  };
3530
} SVCreateTbBatchRsp;
3531

3532
int tEncodeSVCreateTbBatchRsp(SEncoder* pCoder, const SVCreateTbBatchRsp* pRsp);
3533
int tDecodeSVCreateTbBatchRsp(SDecoder* pCoder, SVCreateTbBatchRsp* pRsp);
3534

3535
// int32_t tSerializeSVCreateTbBatchRsp(void* buf, int32_t bufLen, SVCreateTbBatchRsp* pRsp);
3536
// int32_t tDeserializeSVCreateTbBatchRsp(void* buf, int32_t bufLen, SVCreateTbBatchRsp* pRsp);
3537

3538
// TDMT_VND_DROP_TABLE =================
3539
typedef struct {
3540
  char*    name;
3541
  uint64_t suid;  // for tmq in wal format
3542
  int64_t  uid;
3543
  int8_t   igNotExists;
3544
  int8_t   isVirtual;
3545
} SVDropTbReq;
3546

3547
typedef struct {
3548
  int32_t code;
3549
} SVDropTbRsp;
3550

3551
typedef struct {
3552
  int32_t nReqs;
3553
  union {
3554
    SVDropTbReq* pReqs;
3555
    SArray*      pArray;
3556
  };
3557
} SVDropTbBatchReq;
3558

3559
int32_t tEncodeSVDropTbBatchReq(SEncoder* pCoder, const SVDropTbBatchReq* pReq);
3560
int32_t tDecodeSVDropTbBatchReq(SDecoder* pCoder, SVDropTbBatchReq* pReq);
3561

3562
typedef struct {
3563
  int32_t nRsps;
3564
  union {
3565
    SVDropTbRsp* pRsps;
3566
    SArray*      pArray;
3567
  };
3568
} SVDropTbBatchRsp;
3569

3570
int32_t tEncodeSVDropTbBatchRsp(SEncoder* pCoder, const SVDropTbBatchRsp* pRsp);
3571
int32_t tDecodeSVDropTbBatchRsp(SDecoder* pCoder, SVDropTbBatchRsp* pRsp);
3572

3573
// TDMT_VND_ALTER_TABLE =====================
3574
typedef struct SMultiTagUpateVal {
3575
  char*    tagName;
3576
  int32_t  colId;
3577
  int8_t   tagType;
3578
  int8_t   tagFree;
3579
  uint32_t nTagVal;
3580
  uint8_t* pTagVal;
3581
  int8_t   isNull;
3582
  SArray*  pTagArray;
3583
} SMultiTagUpateVal;
3584
typedef struct SVAlterTbReq{
3585
  char*   tbName;
3586
  int8_t  action;
3587
  char*   colName;
3588
  int32_t colId;
3589
  // TSDB_ALTER_TABLE_ADD_COLUMN
3590
  int8_t  type;
3591
  int8_t  flags;
3592
  int32_t bytes;
3593
  // TSDB_ALTER_TABLE_DROP_COLUMN
3594
  // TSDB_ALTER_TABLE_UPDATE_COLUMN_BYTES
3595
  int8_t   colModType;
3596
  int32_t  colModBytes;
3597
  char*    colNewName;  // TSDB_ALTER_TABLE_UPDATE_COLUMN_NAME
3598
  char*    tagName;     // TSDB_ALTER_TABLE_UPDATE_TAG_VAL
3599
  int8_t   isNull;
3600
  int8_t   tagType;
3601
  int8_t   tagFree;
3602
  uint32_t nTagVal;
3603
  uint8_t* pTagVal;
3604
  SArray*  pTagArray;
3605
  // TSDB_ALTER_TABLE_UPDATE_OPTIONS
3606
  int8_t   updateTTL;
3607
  int32_t  newTTL;
3608
  int32_t  newCommentLen;
3609
  char*    newComment;
3610
  int64_t  ctimeMs;    // fill by vnode
3611
  int8_t   source;     // TD_REQ_FROM_TAOX-taosX or TD_REQ_FROM_APP-taosClient
3612
  uint32_t compress;   // TSDB_ALTER_TABLE_UPDATE_COLUMN_COMPRESS
3613
  SArray*  pMultiTag;  // TSDB_ALTER_TABLE_ADD_MULTI_TAGS
3614
  // for Add column
3615
  STypeMod typeMod;
3616
  // TSDB_ALTER_TABLE_ALTER_COLUMN_REF
3617
  char*    refDbName;
3618
  char*    refTbName;
3619
  char*    refColName;
3620
  // TSDB_ALTER_TABLE_REMOVE_COLUMN_REF
3621
} SVAlterTbReq;
3622

3623
int32_t tEncodeSVAlterTbReq(SEncoder* pEncoder, const SVAlterTbReq* pReq);
3624
int32_t tDecodeSVAlterTbReq(SDecoder* pDecoder, SVAlterTbReq* pReq);
3625
int32_t tDecodeSVAlterTbReqSetCtime(SDecoder* pDecoder, SVAlterTbReq* pReq, int64_t ctimeMs);
3626
void    tfreeMultiTagUpateVal(void* pMultiTag);
3627

3628
typedef struct {
3629
  int32_t        code;
3630
  STableMetaRsp* pMeta;
3631
} SVAlterTbRsp;
3632

3633
int32_t tEncodeSVAlterTbRsp(SEncoder* pEncoder, const SVAlterTbRsp* pRsp);
3634
int32_t tDecodeSVAlterTbRsp(SDecoder* pDecoder, SVAlterTbRsp* pRsp);
3635
// ======================
3636

3637
typedef struct {
3638
  SMsgHead head;
3639
  int64_t  uid;
3640
  int32_t  tid;
3641
  int16_t  tversion;
3642
  int16_t  colId;
3643
  int8_t   type;
3644
  int16_t  bytes;
3645
  int32_t  tagValLen;
3646
  int16_t  numOfTags;
3647
  int32_t  schemaLen;
3648
  char     data[];
3649
} SUpdateTagValReq;
3650

3651
typedef struct {
3652
  SMsgHead head;
3653
} SUpdateTagValRsp;
3654

3655
typedef struct {
3656
  SMsgHead head;
3657
} SVShowTablesReq;
3658

3659
typedef struct {
3660
  SMsgHead head;
3661
  int32_t  id;
3662
} SVShowTablesFetchReq;
3663

3664
typedef struct {
3665
  int64_t useconds;
3666
  int8_t  completed;  // all results are returned to client
3667
  int8_t  precision;
3668
  int8_t  compressed;
3669
  int32_t compLen;
3670
  int32_t numOfRows;
3671
  char    data[];
3672
} SVShowTablesFetchRsp;
3673

3674
typedef struct {
3675
  int64_t consumerId;
3676
  int32_t epoch;
3677
  char    cgroup[TSDB_CGROUP_LEN];
3678
} SMqAskEpReq;
3679

3680
typedef struct {
3681
  int32_t key;
3682
  int32_t valueLen;
3683
  void*   value;
3684
} SKv;
3685

3686
typedef struct {
3687
  int64_t tscRid;
3688
  int8_t  connType;
3689
} SClientHbKey;
3690

3691
typedef struct {
3692
  int64_t tid;
3693
  char    status[TSDB_JOB_STATUS_LEN];
3694
} SQuerySubDesc;
3695

3696
typedef struct {
3697
  char     sql[TSDB_SHOW_SQL_LEN];
3698
  uint64_t queryId;
3699
  int64_t  useconds;
3700
  int64_t  stime;  // timestamp precision ms
3701
  int64_t  reqRid;
3702
  bool     stableQuery;
3703
  bool     isSubQuery;
3704
  char     fqdn[TSDB_FQDN_LEN];
3705
  int32_t  subPlanNum;
3706
  SArray*  subDesc;  // SArray<SQuerySubDesc>
3707
} SQueryDesc;
3708

3709
typedef struct {
3710
  uint32_t connId;
3711
  SArray*  queryDesc;  // SArray<SQueryDesc>
3712
} SQueryHbReqBasic;
3713

3714
typedef struct {
3715
  uint32_t connId;
3716
  uint64_t killRid;
3717
  int32_t  totalDnodes;
3718
  int32_t  onlineDnodes;
3719
  int8_t   killConnection;
3720
  int8_t   align[3];
3721
  SEpSet   epSet;
3722
  SArray*  pQnodeList;
3723
} SQueryHbRspBasic;
3724

3725
typedef struct SAppClusterSummary {
3726
  uint64_t numOfInsertsReq;
3727
  uint64_t numOfInsertRows;
3728
  uint64_t insertElapsedTime;
3729
  uint64_t insertBytes;  // submit to tsdb since launched.
3730

3731
  uint64_t fetchBytes;
3732
  uint64_t numOfQueryReq;
3733
  uint64_t queryElapsedTime;
3734
  uint64_t numOfSlowQueries;
3735
  uint64_t totalRequests;
3736
  uint64_t currentRequests;  // the number of SRequestObj
3737
} SAppClusterSummary;
3738

3739
typedef struct {
3740
  int64_t            appId;
3741
  int32_t            pid;
3742
  char               name[TSDB_APP_NAME_LEN];
3743
  int64_t            startTime;
3744
  SAppClusterSummary summary;
3745
} SAppHbReq;
3746

3747
typedef struct {
3748
  SClientHbKey      connKey;
3749
  int64_t           clusterId;
3750
  SAppHbReq         app;
3751
  SQueryHbReqBasic* query;
3752
  SHashObj*         info;  // hash<Skv.key, Skv>
3753
  char              userApp[TSDB_APP_NAME_LEN];
3754
  uint32_t          userIp;
3755
} SClientHbReq;
3756

3757
typedef struct {
3758
  int64_t reqId;
3759
  SArray* reqs;  // SArray<SClientHbReq>
3760
  int64_t ipWhiteList;
3761
} SClientHbBatchReq;
3762

3763
typedef struct {
3764
  SClientHbKey      connKey;
3765
  int32_t           status;
3766
  SQueryHbRspBasic* query;
3767
  SArray*           info;  // Array<Skv>
3768
} SClientHbRsp;
3769

3770
typedef struct {
3771
  int64_t       reqId;
3772
  int64_t       rspId;
3773
  int32_t       svrTimestamp;
3774
  SArray*       rsps;  // SArray<SClientHbRsp>
3775
  SMonitorParas monitorParas;
3776
  int8_t        enableAuditDelete;
3777
  int8_t        enableStrongPass;
3778
} SClientHbBatchRsp;
3779

3780
static FORCE_INLINE uint32_t hbKeyHashFunc(const char* key, uint32_t keyLen) { return taosIntHash_64(key, keyLen); }
293,954✔
3781

3782
static FORCE_INLINE void tFreeReqKvHash(SHashObj* info) {
3783
  void* pIter = taosHashIterate(info, NULL);
552,872✔
3784
  while (pIter != NULL) {
947,429!
3785
    SKv* kv = (SKv*)pIter;
394,435✔
3786
    taosMemoryFreeClear(kv->value);
394,435!
3787
    pIter = taosHashIterate(info, pIter);
394,436✔
3788
  }
3789
}
552,994✔
3790

3791
static FORCE_INLINE void tFreeClientHbQueryDesc(void* pDesc) {
351,348✔
3792
  SQueryDesc* desc = (SQueryDesc*)pDesc;
351,348✔
3793
  if (desc->subDesc) {
351,348✔
3794
    taosArrayDestroy(desc->subDesc);
343,268✔
3795
    desc->subDesc = NULL;
343,272✔
3796
  }
3797
}
351,352✔
3798

3799
static FORCE_INLINE void tFreeClientHbReq(void* pReq) {
665,583✔
3800
  SClientHbReq* req = (SClientHbReq*)pReq;
693,072✔
3801
  if (req->query) {
693,072!
3802
    if (req->query->queryDesc) {
653,838!
3803
      taosArrayDestroyEx(req->query->queryDesc, tFreeClientHbQueryDesc);
48,122✔
3804
    }
3805
    taosMemoryFreeClear(req->query);
653,838!
3806
  }
3807

3808
  if (req->info) {
693,029!
3809
    tFreeReqKvHash(req->info);
552,872✔
3810
    taosHashCleanup(req->info);
552,994✔
3811
    req->info = NULL;
552,962✔
3812
  }
3813
}
544,312✔
3814

3815
int32_t tSerializeSClientHbBatchReq(void* buf, int32_t bufLen, const SClientHbBatchReq* pReq);
3816
int32_t tDeserializeSClientHbBatchReq(void* buf, int32_t bufLen, SClientHbBatchReq* pReq);
3817

3818
static FORCE_INLINE void tFreeClientHbBatchReq(void* pReq) {
3819
  if (pReq == NULL) return;
45,716!
3820
  SClientHbBatchReq* req = (SClientHbBatchReq*)pReq;
45,716✔
3821
  taosArrayDestroyEx(req->reqs, tFreeClientHbReq);
45,716✔
3822
  taosMemoryFree(pReq);
45,716!
3823
}
3824

3825
static FORCE_INLINE void tFreeClientKv(void* pKv) {
149,237✔
3826
  SKv* kv = (SKv*)pKv;
149,237✔
3827
  if (kv) {
149,237!
3828
    taosMemoryFreeClear(kv->value);
149,238!
3829
  }
3830
}
149,238✔
3831

3832
static FORCE_INLINE void tFreeClientHbRsp(void* pRsp) {
662,431✔
3833
  SClientHbRsp* rsp = (SClientHbRsp*)pRsp;
662,431✔
3834
  if (rsp->query) {
662,431✔
3835
    taosArrayDestroy(rsp->query->pQnodeList);
650,821✔
3836
    taosMemoryFreeClear(rsp->query);
650,928!
3837
  }
3838
  if (rsp->info) taosArrayDestroyEx(rsp->info, tFreeClientKv);
662,594!
3839
}
145,958✔
3840

3841
static FORCE_INLINE void tFreeClientHbBatchRsp(void* pRsp) {
3842
  SClientHbBatchRsp* rsp = (SClientHbBatchRsp*)pRsp;
435,460✔
3843
  taosArrayDestroyEx(rsp->rsps, tFreeClientHbRsp);
435,460✔
3844
}
435,581✔
3845

3846
int32_t tSerializeSClientHbBatchRsp(void* buf, int32_t bufLen, const SClientHbBatchRsp* pBatchRsp);
3847
int32_t tDeserializeSClientHbBatchRsp(void* buf, int32_t bufLen, SClientHbBatchRsp* pBatchRsp);
3848
void    tFreeSClientHbBatchRsp(SClientHbBatchRsp* pBatchRsp);
3849

3850
static FORCE_INLINE int32_t tEncodeSKv(SEncoder* pEncoder, const SKv* pKv) {
3851
  TAOS_CHECK_RETURN(tEncodeI32(pEncoder, pKv->key));
1,522,732!
3852
  TAOS_CHECK_RETURN(tEncodeI32(pEncoder, pKv->valueLen));
1,522,732!
3853
  TAOS_CHECK_RETURN(tEncodeBinary(pEncoder, (uint8_t*)pKv->value, pKv->valueLen));
1,522,732!
3854
  return 0;
761,366✔
3855
}
3856

3857
static FORCE_INLINE int32_t tDecodeSKv(SDecoder* pDecoder, SKv* pKv) {
3858
  TAOS_CHECK_RETURN(tDecodeI32(pDecoder, &pKv->key));
1,522,587!
3859
  TAOS_CHECK_RETURN(tDecodeI32(pDecoder, &pKv->valueLen));
1,522,580!
3860
  pKv->value = taosMemoryMalloc(pKv->valueLen + 1);
761,307!
3861
  if (pKv->value == NULL) {
761,312!
3862
    TAOS_CHECK_RETURN(TSDB_CODE_OUT_OF_MEMORY);
×
3863
  }
3864
  TAOS_CHECK_RETURN(tDecodeCStrTo(pDecoder, (char*)pKv->value));
761,312!
3865
  return 0;
761,298✔
3866
}
3867

3868
static FORCE_INLINE int32_t tEncodeSClientHbKey(SEncoder* pEncoder, const SClientHbKey* pKey) {
3869
  TAOS_CHECK_RETURN(tEncodeI64(pEncoder, pKey->tscRid));
5,419,238!
3870
  TAOS_CHECK_RETURN(tEncodeI8(pEncoder, pKey->connType));
5,419,238!
3871
  return 0;
2,709,619✔
3872
}
3873

3874
static FORCE_INLINE int32_t tDecodeSClientHbKey(SDecoder* pDecoder, SClientHbKey* pKey) {
3875
  TAOS_CHECK_RETURN(tDecodeI64(pDecoder, &pKey->tscRid));
2,698,031!
3876
  TAOS_CHECK_RETURN(tDecodeI8(pDecoder, &pKey->connType));
2,698,160!
3877
  return 0;
1,349,176✔
3878
}
3879

3880
typedef struct {
3881
  int32_t vgId;
3882
  // TODO stas
3883
} SMqReportVgInfo;
3884

3885
static FORCE_INLINE int32_t taosEncodeSMqVgInfo(void** buf, const SMqReportVgInfo* pVgInfo) {
3886
  int32_t tlen = 0;
3887
  tlen += taosEncodeFixedI32(buf, pVgInfo->vgId);
3888
  return tlen;
3889
}
3890

3891
static FORCE_INLINE void* taosDecodeSMqVgInfo(void* buf, SMqReportVgInfo* pVgInfo) {
3892
  buf = taosDecodeFixedI32(buf, &pVgInfo->vgId);
3893
  return buf;
3894
}
3895

3896
typedef struct {
3897
  int32_t epoch;
3898
  int64_t topicUid;
3899
  char    name[TSDB_TOPIC_FNAME_LEN];
3900
  SArray* pVgInfo;  // SArray<SMqHbVgInfo>
3901
} SMqTopicInfo;
3902

3903
static FORCE_INLINE int32_t taosEncodeSMqTopicInfoMsg(void** buf, const SMqTopicInfo* pTopicInfo) {
3904
  int32_t tlen = 0;
3905
  tlen += taosEncodeFixedI32(buf, pTopicInfo->epoch);
3906
  tlen += taosEncodeFixedI64(buf, pTopicInfo->topicUid);
3907
  tlen += taosEncodeString(buf, pTopicInfo->name);
3908
  int32_t sz = taosArrayGetSize(pTopicInfo->pVgInfo);
3909
  tlen += taosEncodeFixedI32(buf, sz);
3910
  for (int32_t i = 0; i < sz; i++) {
3911
    SMqReportVgInfo* pVgInfo = (SMqReportVgInfo*)taosArrayGet(pTopicInfo->pVgInfo, i);
3912
    tlen += taosEncodeSMqVgInfo(buf, pVgInfo);
3913
  }
3914
  return tlen;
3915
}
3916

3917
static FORCE_INLINE void* taosDecodeSMqTopicInfoMsg(void* buf, SMqTopicInfo* pTopicInfo) {
3918
  buf = taosDecodeFixedI32(buf, &pTopicInfo->epoch);
3919
  buf = taosDecodeFixedI64(buf, &pTopicInfo->topicUid);
3920
  buf = taosDecodeStringTo(buf, pTopicInfo->name);
3921
  int32_t sz;
3922
  buf = taosDecodeFixedI32(buf, &sz);
3923
  if ((pTopicInfo->pVgInfo = taosArrayInit(sz, sizeof(SMqReportVgInfo))) == NULL) {
3924
    return NULL;
3925
  }
3926
  for (int32_t i = 0; i < sz; i++) {
3927
    SMqReportVgInfo vgInfo;
3928
    buf = taosDecodeSMqVgInfo(buf, &vgInfo);
3929
    if (taosArrayPush(pTopicInfo->pVgInfo, &vgInfo) == NULL) {
3930
      return NULL;
3931
    }
3932
  }
3933
  return buf;
3934
}
3935

3936
typedef struct {
3937
  int32_t status;  // ask hb endpoint
3938
  int32_t epoch;
3939
  int64_t consumerId;
3940
  SArray* pTopics;  // SArray<SMqHbTopicInfo>
3941
} SMqReportReq;
3942

3943
static FORCE_INLINE int32_t taosEncodeSMqReportMsg(void** buf, const SMqReportReq* pMsg) {
3944
  int32_t tlen = 0;
3945
  tlen += taosEncodeFixedI32(buf, pMsg->status);
3946
  tlen += taosEncodeFixedI32(buf, pMsg->epoch);
3947
  tlen += taosEncodeFixedI64(buf, pMsg->consumerId);
3948
  int32_t sz = taosArrayGetSize(pMsg->pTopics);
3949
  tlen += taosEncodeFixedI32(buf, sz);
3950
  for (int32_t i = 0; i < sz; i++) {
3951
    SMqTopicInfo* topicInfo = (SMqTopicInfo*)taosArrayGet(pMsg->pTopics, i);
3952
    tlen += taosEncodeSMqTopicInfoMsg(buf, topicInfo);
3953
  }
3954
  return tlen;
3955
}
3956

3957
static FORCE_INLINE void* taosDecodeSMqReportMsg(void* buf, SMqReportReq* pMsg) {
3958
  buf = taosDecodeFixedI32(buf, &pMsg->status);
3959
  buf = taosDecodeFixedI32(buf, &pMsg->epoch);
3960
  buf = taosDecodeFixedI64(buf, &pMsg->consumerId);
3961
  int32_t sz;
3962
  buf = taosDecodeFixedI32(buf, &sz);
3963
  if ((pMsg->pTopics = taosArrayInit(sz, sizeof(SMqTopicInfo))) == NULL) {
3964
    return NULL;
3965
  }
3966
  for (int32_t i = 0; i < sz; i++) {
3967
    SMqTopicInfo topicInfo;
3968
    buf = taosDecodeSMqTopicInfoMsg(buf, &topicInfo);
3969
    if (taosArrayPush(pMsg->pTopics, &topicInfo) == NULL) {
3970
      return NULL;
3971
    }
3972
  }
3973
  return buf;
3974
}
3975

3976
typedef struct {
3977
  SMsgHead head;
3978
  int64_t  leftForVer;
3979
  int32_t  vgId;
3980
  int64_t  consumerId;
3981
  char     subKey[TSDB_SUBSCRIBE_KEY_LEN];
3982
} SMqVDeleteReq;
3983

3984
typedef struct {
3985
  int8_t reserved;
3986
} SMqVDeleteRsp;
3987

3988
typedef struct {
3989
  char    name[TSDB_STREAM_FNAME_LEN];
3990
  int8_t  igNotExists;
3991
  int32_t sqlLen;
3992
  char*   sql;
3993
} SMDropStreamReq;
3994

3995
typedef struct {
3996
  int8_t reserved;
3997
} SMDropStreamRsp;
3998

3999
typedef struct {
4000
  SMsgHead head;
4001
  int64_t  resetRelHalt;  // reset related stream task halt status
4002
  int64_t  streamId;
4003
  int32_t  taskId;
4004
} SVDropStreamTaskReq;
4005

4006
typedef struct {
4007
  int8_t reserved;
4008
} SVDropStreamTaskRsp;
4009

4010
int32_t tSerializeSMDropStreamReq(void* buf, int32_t bufLen, const SMDropStreamReq* pReq);
4011
int32_t tDeserializeSMDropStreamReq(void* buf, int32_t bufLen, SMDropStreamReq* pReq);
4012
void    tFreeMDropStreamReq(SMDropStreamReq* pReq);
4013

4014
typedef struct SVUpdateCheckpointInfoReq {
4015
  SMsgHead head;
4016
  int64_t  streamId;
4017
  int32_t  taskId;
4018
  int64_t  checkpointId;
4019
  int64_t  checkpointVer;
4020
  int64_t  checkpointTs;
4021
  int32_t  transId;
4022
  int64_t  hStreamId;  // add encode/decode
4023
  int64_t  hTaskId;
4024
  int8_t   dropRelHTask;
4025
} SVUpdateCheckpointInfoReq;
4026

4027
typedef struct {
4028
  int64_t leftForVer;
4029
  int32_t vgId;
4030
  int64_t oldConsumerId;
4031
  int64_t newConsumerId;
4032
  char    subKey[TSDB_SUBSCRIBE_KEY_LEN];
4033
  int8_t  subType;
4034
  int8_t  withMeta;
4035
  char*   qmsg;  // SubPlanToString
4036
  int64_t suid;
4037
} SMqRebVgReq;
4038

4039
int32_t tEncodeSMqRebVgReq(SEncoder* pCoder, const SMqRebVgReq* pReq);
4040
int32_t tDecodeSMqRebVgReq(SDecoder* pCoder, SMqRebVgReq* pReq);
4041

4042
typedef struct {
4043
  char    topic[TSDB_TOPIC_FNAME_LEN];
4044
  int64_t ntbUid;
4045
  SArray* colIdList;  // SArray<int16_t>
4046
} STqCheckInfo;
4047

4048
int32_t tEncodeSTqCheckInfo(SEncoder* pEncoder, const STqCheckInfo* pInfo);
4049
int32_t tDecodeSTqCheckInfo(SDecoder* pDecoder, STqCheckInfo* pInfo);
4050
void    tDeleteSTqCheckInfo(STqCheckInfo* pInfo);
4051

4052
// tqOffset
4053
enum {
4054
  TMQ_OFFSET__RESET_NONE = -3,
4055
  TMQ_OFFSET__RESET_EARLIEST = -2,
4056
  TMQ_OFFSET__RESET_LATEST = -1,
4057
  TMQ_OFFSET__LOG = 1,
4058
  TMQ_OFFSET__SNAPSHOT_DATA = 2,
4059
  TMQ_OFFSET__SNAPSHOT_META = 3,
4060
};
4061

4062
enum {
4063
  WITH_DATA = 0,
4064
  WITH_META = 1,
4065
  ONLY_META = 2,
4066
};
4067

4068
#define TQ_OFFSET_VERSION 1
4069

4070
typedef struct {
4071
  int8_t type;
4072
  union {
4073
    // snapshot
4074
    struct {
4075
      int64_t uid;
4076
      int64_t ts;
4077
      SValue  primaryKey;
4078
    };
4079
    // log
4080
    struct {
4081
      int64_t version;
4082
    };
4083
  };
4084
} STqOffsetVal;
4085

4086
static FORCE_INLINE void tqOffsetResetToData(STqOffsetVal* pOffsetVal, int64_t uid, int64_t ts, SValue primaryKey) {
4087
  pOffsetVal->type = TMQ_OFFSET__SNAPSHOT_DATA;
219,720✔
4088
  pOffsetVal->uid = uid;
219,720✔
4089
  pOffsetVal->ts = ts;
219,720✔
4090
  if (IS_VAR_DATA_TYPE(pOffsetVal->primaryKey.type)) {
219,720!
4091
    taosMemoryFree(pOffsetVal->primaryKey.pData);
×
4092
  }
4093
  pOffsetVal->primaryKey = primaryKey;
219,729✔
4094
}
219,729✔
4095

4096
static FORCE_INLINE void tqOffsetResetToMeta(STqOffsetVal* pOffsetVal, int64_t uid) {
4097
  pOffsetVal->type = TMQ_OFFSET__SNAPSHOT_META;
143✔
4098
  pOffsetVal->uid = uid;
143✔
4099
}
143✔
4100

4101
static FORCE_INLINE void tqOffsetResetToLog(STqOffsetVal* pOffsetVal, int64_t ver) {
4102
  pOffsetVal->type = TMQ_OFFSET__LOG;
3,589,205✔
4103
  pOffsetVal->version = ver;
3,589,205✔
4104
}
3,589,205✔
4105

4106
int32_t tEncodeSTqOffsetVal(SEncoder* pEncoder, const STqOffsetVal* pOffsetVal);
4107
int32_t tDecodeSTqOffsetVal(SDecoder* pDecoder, STqOffsetVal* pOffsetVal);
4108
void    tFormatOffset(char* buf, int32_t maxLen, const STqOffsetVal* pVal);
4109
bool    tOffsetEqual(const STqOffsetVal* pLeft, const STqOffsetVal* pRight);
4110
void    tOffsetCopy(STqOffsetVal* pLeft, const STqOffsetVal* pRight);
4111
void    tOffsetDestroy(void* pVal);
4112

4113
typedef struct {
4114
  STqOffsetVal val;
4115
  char         subKey[TSDB_SUBSCRIBE_KEY_LEN];
4116
} STqOffset;
4117

4118
int32_t tEncodeSTqOffset(SEncoder* pEncoder, const STqOffset* pOffset);
4119
int32_t tDecodeSTqOffset(SDecoder* pDecoder, STqOffset* pOffset);
4120
void    tDeleteSTqOffset(void* val);
4121

4122
typedef struct SMqVgOffset {
4123
  int64_t   consumerId;
4124
  STqOffset offset;
4125
} SMqVgOffset;
4126

4127
int32_t tEncodeMqVgOffset(SEncoder* pEncoder, const SMqVgOffset* pOffset);
4128
int32_t tDecodeMqVgOffset(SDecoder* pDecoder, SMqVgOffset* pOffset);
4129

4130
typedef struct {
4131
  SMsgHead head;
4132
  int64_t  streamId;
4133
  int32_t  taskId;
4134
} SVPauseStreamTaskReq;
4135

4136
typedef struct {
4137
  SMsgHead head;
4138
  int64_t  streamId;
4139
  int32_t  taskId;
4140
  int64_t  chkptId;
4141
} SVResetStreamTaskReq;
4142

4143
typedef struct {
4144
  char   name[TSDB_STREAM_FNAME_LEN];
4145
  int8_t igNotExists;
4146
} SMPauseStreamReq;
4147

4148
int32_t tSerializeSMPauseStreamReq(void* buf, int32_t bufLen, const SMPauseStreamReq* pReq);
4149
int32_t tDeserializeSMPauseStreamReq(void* buf, int32_t bufLen, SMPauseStreamReq* pReq);
4150

4151
typedef struct {
4152
  SMsgHead head;
4153
  int32_t  taskId;
4154
  int64_t  streamId;
4155
  int8_t   igUntreated;
4156
} SVResumeStreamTaskReq;
4157

4158
typedef struct {
4159
  int8_t reserved;
4160
} SVResumeStreamTaskRsp;
4161

4162
typedef struct {
4163
  char   name[TSDB_STREAM_FNAME_LEN];
4164
  int8_t igNotExists;
4165
  int8_t igUntreated;
4166
} SMResumeStreamReq;
4167

4168
int32_t tSerializeSMResumeStreamReq(void* buf, int32_t bufLen, const SMResumeStreamReq* pReq);
4169
int32_t tDeserializeSMResumeStreamReq(void* buf, int32_t bufLen, SMResumeStreamReq* pReq);
4170

4171
typedef struct {
4172
  char   name[TSDB_STREAM_FNAME_LEN];
4173
  int8_t igNotExists;
4174
  int8_t igUntreated;
4175
} SMResetStreamReq;
4176

4177
int32_t tSerializeSMResetStreamReq(void* buf, int32_t bufLen, const SMResetStreamReq* pReq);
4178
int32_t tDeserializeSMResetStreamReq(void* buf, int32_t bufLen, SMResetStreamReq* pReq);
4179

4180
typedef struct {
4181
  char    name[TSDB_TABLE_FNAME_LEN];
4182
  char    stb[TSDB_TABLE_FNAME_LEN];
4183
  int8_t  igExists;
4184
  int8_t  intervalUnit;
4185
  int8_t  slidingUnit;
4186
  int8_t  timezone;  // int8_t is not enough, timezone is unit of second
4187
  int32_t dstVgId;   // for stream
4188
  int64_t interval;
4189
  int64_t offset;
4190
  int64_t sliding;
4191
  int64_t maxDelay;
4192
  int64_t watermark;
4193
  int32_t exprLen;        // strlen + 1
4194
  int32_t tagsFilterLen;  // strlen + 1
4195
  int32_t sqlLen;         // strlen + 1
4196
  int32_t astLen;         // strlen + 1
4197
  char*   expr;
4198
  char*   tagsFilter;
4199
  char*   sql;
4200
  char*   ast;
4201
  int64_t deleteMark;
4202
  int64_t lastTs;
4203
  int64_t normSourceTbUid;  // the Uid of source tb if its a normal table, otherwise 0
4204
  SArray* pVgroupVerList;
4205
  int8_t  recursiveTsma;
4206
  char    baseTsmaName[TSDB_TABLE_FNAME_LEN];  // base tsma name for recursively created tsma
4207
} SMCreateSmaReq;
4208

4209
int32_t tSerializeSMCreateSmaReq(void* buf, int32_t bufLen, SMCreateSmaReq* pReq);
4210
int32_t tDeserializeSMCreateSmaReq(void* buf, int32_t bufLen, SMCreateSmaReq* pReq);
4211
void    tFreeSMCreateSmaReq(SMCreateSmaReq* pReq);
4212

4213
typedef struct {
4214
  char   name[TSDB_TABLE_FNAME_LEN];
4215
  int8_t igNotExists;
4216
} SMDropSmaReq;
4217

4218
int32_t tSerializeSMDropSmaReq(void* buf, int32_t bufLen, SMDropSmaReq* pReq);
4219
int32_t tDeserializeSMDropSmaReq(void* buf, int32_t bufLen, SMDropSmaReq* pReq);
4220

4221
typedef struct {
4222
  char   dbFName[TSDB_DB_FNAME_LEN];
4223
  char   stbName[TSDB_TABLE_NAME_LEN];
4224
  char   colName[TSDB_COL_NAME_LEN];
4225
  char   idxName[TSDB_INDEX_FNAME_LEN];
4226
  int8_t idxType;
4227
} SCreateTagIndexReq;
4228

4229
int32_t tSerializeSCreateTagIdxReq(void* buf, int32_t bufLen, SCreateTagIndexReq* pReq);
4230
int32_t tDeserializeSCreateTagIdxReq(void* buf, int32_t bufLen, SCreateTagIndexReq* pReq);
4231

4232
typedef SMDropSmaReq SDropTagIndexReq;
4233

4234
// int32_t tSerializeSDropTagIdxReq(void* buf, int32_t bufLen, SDropTagIndexReq* pReq);
4235
int32_t tDeserializeSDropTagIdxReq(void* buf, int32_t bufLen, SDropTagIndexReq* pReq);
4236

4237
typedef struct {
4238
  int8_t         version;       // for compatibility(default 0)
4239
  int8_t         intervalUnit;  // MACRO: TIME_UNIT_XXX
4240
  int8_t         slidingUnit;   // MACRO: TIME_UNIT_XXX
4241
  int8_t         timezoneInt;   // sma data expired if timezone changes.
4242
  int32_t        dstVgId;
4243
  char           indexName[TSDB_INDEX_NAME_LEN];
4244
  int32_t        exprLen;
4245
  int32_t        tagsFilterLen;
4246
  int64_t        indexUid;
4247
  tb_uid_t       tableUid;  // super/child/common table uid
4248
  tb_uid_t       dstTbUid;  // for dstVgroup
4249
  int64_t        interval;
4250
  int64_t        offset;  // use unit by precision of DB
4251
  int64_t        sliding;
4252
  char*          dstTbName;  // for dstVgroup
4253
  char*          expr;       // sma expression
4254
  char*          tagsFilter;
4255
  SSchemaWrapper schemaRow;  // for dstVgroup
4256
  SSchemaWrapper schemaTag;  // for dstVgroup
4257
} STSma;                     // Time-range-wise SMA
4258

4259
typedef STSma SVCreateTSmaReq;
4260

4261
typedef struct {
4262
  int8_t  type;  // 0 status report, 1 update data
4263
  int64_t indexUid;
4264
  int64_t skey;  // start TS key of interval/sliding window
4265
} STSmaMsg;
4266

4267
typedef struct {
4268
  int64_t indexUid;
4269
  char    indexName[TSDB_INDEX_NAME_LEN];
4270
} SVDropTSmaReq;
4271

4272
typedef struct {
4273
  int tmp;  // TODO: to avoid compile error
4274
} SVCreateTSmaRsp, SVDropTSmaRsp;
4275

4276
#if 0
4277
int32_t tSerializeSVCreateTSmaReq(void** buf, SVCreateTSmaReq* pReq);
4278
void*   tDeserializeSVCreateTSmaReq(void* buf, SVCreateTSmaReq* pReq);
4279
int32_t tSerializeSVDropTSmaReq(void** buf, SVDropTSmaReq* pReq);
4280
void*   tDeserializeSVDropTSmaReq(void* buf, SVDropTSmaReq* pReq);
4281
#endif
4282

4283
int32_t tEncodeSVCreateTSmaReq(SEncoder* pCoder, const SVCreateTSmaReq* pReq);
4284
int32_t tDecodeSVCreateTSmaReq(SDecoder* pCoder, SVCreateTSmaReq* pReq);
4285
int32_t tEncodeSVDropTSmaReq(SEncoder* pCoder, const SVDropTSmaReq* pReq);
4286
// int32_t tDecodeSVDropTSmaReq(SDecoder* pCoder, SVDropTSmaReq* pReq);
4287

4288
typedef struct {
4289
  int32_t number;
4290
  STSma*  tSma;
4291
} STSmaWrapper;
4292

4293
static FORCE_INLINE void tDestroyTSma(STSma* pSma) {
4294
  if (pSma) {
×
4295
    taosMemoryFreeClear(pSma->dstTbName);
×
4296
    taosMemoryFreeClear(pSma->expr);
×
4297
    taosMemoryFreeClear(pSma->tagsFilter);
×
4298
  }
4299
}
×
4300

4301
static FORCE_INLINE void tDestroyTSmaWrapper(STSmaWrapper* pSW, bool deepCopy) {
4302
  if (pSW) {
×
4303
    if (pSW->tSma) {
×
4304
      if (deepCopy) {
×
4305
        for (uint32_t i = 0; i < pSW->number; ++i) {
×
4306
          tDestroyTSma(pSW->tSma + i);
×
4307
        }
4308
      }
4309
      taosMemoryFreeClear(pSW->tSma);
×
4310
    }
4311
  }
4312
}
×
4313

4314
static FORCE_INLINE void* tFreeTSmaWrapper(STSmaWrapper* pSW, bool deepCopy) {
4315
  tDestroyTSmaWrapper(pSW, deepCopy);
×
4316
  taosMemoryFreeClear(pSW);
×
4317
  return NULL;
×
4318
}
4319

4320
int32_t tEncodeSVCreateTSmaReq(SEncoder* pCoder, const SVCreateTSmaReq* pReq);
4321
int32_t tDecodeSVCreateTSmaReq(SDecoder* pCoder, SVCreateTSmaReq* pReq);
4322

4323
int32_t tEncodeTSma(SEncoder* pCoder, const STSma* pSma);
4324
int32_t tDecodeTSma(SDecoder* pCoder, STSma* pSma, bool deepCopy);
4325

4326
static int32_t tEncodeTSmaWrapper(SEncoder* pEncoder, const STSmaWrapper* pReq) {
×
4327
  TAOS_CHECK_RETURN(tEncodeI32(pEncoder, pReq->number));
×
4328
  for (int32_t i = 0; i < pReq->number; ++i) {
×
4329
    TAOS_CHECK_RETURN(tEncodeTSma(pEncoder, pReq->tSma + i));
×
4330
  }
4331
  return 0;
×
4332
}
4333

4334
static int32_t tDecodeTSmaWrapper(SDecoder* pDecoder, STSmaWrapper* pReq, bool deepCopy) {
×
4335
  TAOS_CHECK_RETURN(tDecodeI32(pDecoder, &pReq->number));
×
4336
  for (int32_t i = 0; i < pReq->number; ++i) {
×
4337
    TAOS_CHECK_RETURN(tDecodeTSma(pDecoder, pReq->tSma + i, deepCopy));
×
4338
  }
4339
  return 0;
×
4340
}
4341

4342
typedef struct {
4343
  int idx;
4344
} SMCreateFullTextReq;
4345

4346
int32_t tSerializeSMCreateFullTextReq(void* buf, int32_t bufLen, SMCreateFullTextReq* pReq);
4347
int32_t tDeserializeSMCreateFullTextReq(void* buf, int32_t bufLen, SMCreateFullTextReq* pReq);
4348
void    tFreeSMCreateFullTextReq(SMCreateFullTextReq* pReq);
4349

4350
typedef struct {
4351
  char   name[TSDB_TABLE_FNAME_LEN];
4352
  int8_t igNotExists;
4353
} SMDropFullTextReq;
4354

4355
// int32_t tSerializeSMDropFullTextReq(void* buf, int32_t bufLen, SMDropFullTextReq* pReq);
4356
// int32_t tDeserializeSMDropFullTextReq(void* buf, int32_t bufLen, SMDropFullTextReq* pReq);
4357

4358
typedef struct {
4359
  char indexFName[TSDB_INDEX_FNAME_LEN];
4360
} SUserIndexReq;
4361

4362
int32_t tSerializeSUserIndexReq(void* buf, int32_t bufLen, SUserIndexReq* pReq);
4363
int32_t tDeserializeSUserIndexReq(void* buf, int32_t bufLen, SUserIndexReq* pReq);
4364

4365
typedef struct {
4366
  char dbFName[TSDB_DB_FNAME_LEN];
4367
  char tblFName[TSDB_TABLE_FNAME_LEN];
4368
  char colName[TSDB_COL_NAME_LEN];
4369
  char indexType[TSDB_INDEX_TYPE_LEN];
4370
  char indexExts[TSDB_INDEX_EXTS_LEN];
4371
} SUserIndexRsp;
4372

4373
int32_t tSerializeSUserIndexRsp(void* buf, int32_t bufLen, const SUserIndexRsp* pRsp);
4374
int32_t tDeserializeSUserIndexRsp(void* buf, int32_t bufLen, SUserIndexRsp* pRsp);
4375

4376
typedef struct {
4377
  char tbFName[TSDB_TABLE_FNAME_LEN];
4378
} STableIndexReq;
4379

4380
int32_t tSerializeSTableIndexReq(void* buf, int32_t bufLen, STableIndexReq* pReq);
4381
int32_t tDeserializeSTableIndexReq(void* buf, int32_t bufLen, STableIndexReq* pReq);
4382

4383
typedef struct {
4384
  int8_t  intervalUnit;
4385
  int8_t  slidingUnit;
4386
  int64_t interval;
4387
  int64_t offset;
4388
  int64_t sliding;
4389
  int64_t dstTbUid;
4390
  int32_t dstVgId;
4391
  SEpSet  epSet;
4392
  char*   expr;
4393
} STableIndexInfo;
4394

4395
typedef struct {
4396
  char     tbName[TSDB_TABLE_NAME_LEN];
4397
  char     dbFName[TSDB_DB_FNAME_LEN];
4398
  uint64_t suid;
4399
  int32_t  version;
4400
  int32_t  indexSize;
4401
  SArray*  pIndex;  // STableIndexInfo
4402
} STableIndexRsp;
4403

4404
int32_t tSerializeSTableIndexRsp(void* buf, int32_t bufLen, const STableIndexRsp* pRsp);
4405
int32_t tDeserializeSTableIndexRsp(void* buf, int32_t bufLen, STableIndexRsp* pRsp);
4406
void    tFreeSerializeSTableIndexRsp(STableIndexRsp* pRsp);
4407

4408
void tFreeSTableIndexInfo(void* pInfo);
4409

4410
typedef struct {
4411
  int8_t  mqMsgType;
4412
  int32_t code;
4413
  int32_t epoch;
4414
  int64_t consumerId;
4415
  int64_t walsver;
4416
  int64_t walever;
4417
} SMqRspHead;
4418

4419
typedef struct {
4420
  SMsgHead     head;
4421
  char         subKey[TSDB_SUBSCRIBE_KEY_LEN];
4422
  int8_t       withTbName;
4423
  int8_t       useSnapshot;
4424
  int32_t      epoch;
4425
  uint64_t     reqId;
4426
  int64_t      consumerId;
4427
  int64_t      timeout;
4428
  STqOffsetVal reqOffset;
4429
  int8_t       enableReplay;
4430
  int8_t       sourceExcluded;
4431
  int8_t       rawData;
4432
  int32_t      minPollRows;
4433
  int8_t       enableBatchMeta;
4434
  SHashObj     *uidHash;  // to find if uid is duplicated
4435
} SMqPollReq;
4436

4437
int32_t tSerializeSMqPollReq(void* buf, int32_t bufLen, SMqPollReq* pReq);
4438
int32_t tDeserializeSMqPollReq(void* buf, int32_t bufLen, SMqPollReq* pReq);
4439
void    tDestroySMqPollReq(SMqPollReq* pReq);
4440

4441
typedef struct {
4442
  int32_t vgId;
4443
  int64_t offset;
4444
  SEpSet  epSet;
4445
} SMqSubVgEp;
4446

4447
static FORCE_INLINE int32_t tEncodeSMqSubVgEp(void** buf, const SMqSubVgEp* pVgEp) {
4448
  int32_t tlen = 0;
2,129,464✔
4449
  tlen += taosEncodeFixedI32(buf, pVgEp->vgId);
2,129,464✔
4450
  tlen += taosEncodeFixedI64(buf, pVgEp->offset);
2,129,464✔
4451
  tlen += taosEncodeSEpSet(buf, &pVgEp->epSet);
2,129,464✔
4452
  return tlen;
2,129,464✔
4453
}
4454

4455
static FORCE_INLINE void* tDecodeSMqSubVgEp(void* buf, SMqSubVgEp* pVgEp) {
4456
  buf = taosDecodeFixedI32(buf, &pVgEp->vgId);
1,147,815!
4457
  buf = taosDecodeFixedI64(buf, &pVgEp->offset);
1,147,815!
4458
  buf = taosDecodeSEpSet(buf, &pVgEp->epSet);
1,147,815✔
4459
  return buf;
1,147,815✔
4460
}
4461

4462
typedef struct {
4463
  char           topic[TSDB_TOPIC_FNAME_LEN];
4464
  char           db[TSDB_DB_FNAME_LEN];
4465
  SArray*        vgs;  // SArray<SMqSubVgEp>
4466
  SSchemaWrapper schema;
4467
} SMqSubTopicEp;
4468

4469
int32_t tEncodeMqSubTopicEp(void** buf, const SMqSubTopicEp* pTopicEp);
4470
void*   tDecodeMqSubTopicEp(void* buf, SMqSubTopicEp* pTopicEp);
4471
void    tDeleteMqSubTopicEp(SMqSubTopicEp* pSubTopicEp);
4472

4473
typedef struct {
4474
  SMqRspHead   head;
4475
  STqOffsetVal rspOffset;
4476
  int16_t      resMsgType;
4477
  int32_t      metaRspLen;
4478
  void*        metaRsp;
4479
} SMqMetaRsp;
4480

4481
int32_t tEncodeMqMetaRsp(SEncoder* pEncoder, const SMqMetaRsp* pRsp);
4482
int32_t tDecodeMqMetaRsp(SDecoder* pDecoder, SMqMetaRsp* pRsp);
4483
void    tDeleteMqMetaRsp(SMqMetaRsp* pRsp);
4484

4485
#define MQ_DATA_RSP_VERSION 100
4486

4487
typedef struct {
4488
  SMqRspHead   head;
4489
  STqOffsetVal rspOffset;
4490
  STqOffsetVal reqOffset;
4491
  int32_t      blockNum;
4492
  int8_t       withTbName;
4493
  int8_t       withSchema;
4494
  SArray*      blockDataLen;
4495
  SArray*      blockData;
4496
  SArray*      blockTbName;
4497
  SArray*      blockSchema;
4498

4499
  union {
4500
    struct {
4501
      int64_t sleepTime;
4502
    };
4503
    struct {
4504
      int32_t createTableNum;
4505
      SArray* createTableLen;
4506
      SArray* createTableReq;
4507
    };
4508
    struct{
4509
      int32_t len;
4510
      void*   rawData;
4511
    };
4512
  };
4513
  void*   data;  //for free in client, only effected if type is data or metadata. raw data not effected
4514
  bool    blockDataElementFree;   // if true, free blockDataElement in blockData,(true in server, false in client)
4515
} SMqDataRsp;
4516

4517
int32_t tEncodeMqDataRsp(SEncoder* pEncoder, const SMqDataRsp* pObj);
4518
int32_t tDecodeMqDataRsp(SDecoder* pDecoder, SMqDataRsp* pRsp);
4519
int32_t tDecodeMqRawDataRsp(SDecoder* pDecoder, SMqDataRsp* pRsp);
4520
void    tDeleteMqDataRsp(SMqDataRsp* pRsp);
4521
void    tDeleteMqRawDataRsp(SMqDataRsp* pRsp);
4522

4523
int32_t tEncodeSTaosxRsp(SEncoder* pEncoder, const SMqDataRsp* pRsp);
4524
int32_t tDecodeSTaosxRsp(SDecoder* pDecoder, SMqDataRsp* pRsp);
4525
void    tDeleteSTaosxRsp(SMqDataRsp* pRsp);
4526

4527
typedef struct SMqBatchMetaRsp {
4528
  SMqRspHead   head;  // not serialize
4529
  STqOffsetVal rspOffset;
4530
  SArray*      batchMetaLen;
4531
  SArray*      batchMetaReq;
4532
  void*        pMetaBuff;    // not serialize
4533
  uint32_t     metaBuffLen;  // not serialize
4534
} SMqBatchMetaRsp;
4535

4536
int32_t tEncodeMqBatchMetaRsp(SEncoder* pEncoder, const SMqBatchMetaRsp* pRsp);
4537
int32_t tDecodeMqBatchMetaRsp(SDecoder* pDecoder, SMqBatchMetaRsp* pRsp);
4538
int32_t tSemiDecodeMqBatchMetaRsp(SDecoder* pDecoder, SMqBatchMetaRsp* pRsp);
4539
void    tDeleteMqBatchMetaRsp(SMqBatchMetaRsp* pRsp);
4540

4541
typedef struct {
4542
  SMqRspHead head;
4543
  char       cgroup[TSDB_CGROUP_LEN];
4544
  SArray*    topics;  // SArray<SMqSubTopicEp>
4545
} SMqAskEpRsp;
4546

4547
static FORCE_INLINE int32_t tEncodeSMqAskEpRsp(void** buf, const SMqAskEpRsp* pRsp) {
4548
  int32_t tlen = 0;
1,038,605✔
4549
  // tlen += taosEncodeString(buf, pRsp->cgroup);
4550
  int32_t sz = taosArrayGetSize(pRsp->topics);
1,038,605!
4551
  tlen += taosEncodeFixedI32(buf, sz);
1,038,606✔
4552
  for (int32_t i = 0; i < sz; i++) {
2,066,650✔
4553
    SMqSubTopicEp* pVgEp = (SMqSubTopicEp*)taosArrayGet(pRsp->topics, i);
1,028,044✔
4554
    tlen += tEncodeMqSubTopicEp(buf, pVgEp);
1,028,044✔
4555
  }
4556
  return tlen;
1,038,606✔
4557
}
4558

4559
static FORCE_INLINE void* tDecodeSMqAskEpRsp(void* buf, SMqAskEpRsp* pRsp) {
4560
  // buf = taosDecodeStringTo(buf, pRsp->cgroup);
4561
  int32_t sz;
4562
  buf = taosDecodeFixedI32(buf, &sz);
518,994✔
4563
  pRsp->topics = taosArrayInit(sz, sizeof(SMqSubTopicEp));
518,994✔
4564
  if (pRsp->topics == NULL) {
518,994!
4565
    return NULL;
×
4566
  }
4567
  for (int32_t i = 0; i < sz; i++) {
1,032,909✔
4568
    SMqSubTopicEp topicEp;
4569
    buf = tDecodeMqSubTopicEp(buf, &topicEp);
513,915✔
4570
    if (buf == NULL) {
513,915!
4571
      return NULL;
×
4572
    }
4573
    if ((taosArrayPush(pRsp->topics, &topicEp) == NULL)) {
1,027,830!
4574
      return NULL;
×
4575
    }
4576
  }
4577
  return buf;
518,994✔
4578
}
4579

4580
static FORCE_INLINE void tDeleteSMqAskEpRsp(SMqAskEpRsp* pRsp) {
4581
  taosArrayDestroyEx(pRsp->topics, (FDelete)tDeleteMqSubTopicEp);
1,041,531✔
4582
}
1,041,531✔
4583

4584
typedef struct {
4585
  int32_t      vgId;
4586
  STqOffsetVal offset;
4587
  int64_t      rows;
4588
  int64_t      ever;
4589
} OffsetRows;
4590

4591
typedef struct {
4592
  char    topicName[TSDB_TOPIC_FNAME_LEN];
4593
  SArray* offsetRows;
4594
} TopicOffsetRows;
4595

4596
typedef struct {
4597
  int64_t consumerId;
4598
  int32_t epoch;
4599
  SArray* topics;
4600
  int8_t  pollFlag;
4601
} SMqHbReq;
4602

4603
typedef struct {
4604
  char   topic[TSDB_TOPIC_FNAME_LEN];
4605
  int8_t noPrivilege;
4606
} STopicPrivilege;
4607

4608
typedef struct {
4609
  SArray* topicPrivileges;  // SArray<STopicPrivilege>
4610
  int32_t debugFlag;
4611
} SMqHbRsp;
4612

4613
typedef struct {
4614
  SMsgHead head;
4615
  int64_t  consumerId;
4616
  char     subKey[TSDB_SUBSCRIBE_KEY_LEN];
4617
} SMqSeekReq;
4618

4619
#define TD_AUTO_CREATE_TABLE 0x1
4620
typedef struct {
4621
  int64_t       suid;
4622
  int64_t       uid;
4623
  int32_t       sver;
4624
  uint32_t      nData;
4625
  uint8_t*      pData;
4626
  SVCreateTbReq cTbReq;
4627
} SVSubmitBlk;
4628

4629
typedef struct {
4630
  SMsgHead header;
4631
  uint64_t sId;
4632
  uint64_t queryId;
4633
  uint64_t clientId;
4634
  uint64_t taskId;
4635
  uint32_t sqlLen;
4636
  uint32_t phyLen;
4637
  char*    sql;
4638
  char*    msg;
4639
  int8_t   source;
4640
} SVDeleteReq;
4641

4642
int32_t tSerializeSVDeleteReq(void* buf, int32_t bufLen, SVDeleteReq* pReq);
4643
int32_t tDeserializeSVDeleteReq(void* buf, int32_t bufLen, SVDeleteReq* pReq);
4644

4645
typedef struct {
4646
  int64_t affectedRows;
4647
} SVDeleteRsp;
4648

4649
int32_t tEncodeSVDeleteRsp(SEncoder* pCoder, const SVDeleteRsp* pReq);
4650
int32_t tDecodeSVDeleteRsp(SDecoder* pCoder, SVDeleteRsp* pReq);
4651

4652
typedef struct SDeleteRes {
4653
  uint64_t suid;
4654
  SArray*  uidList;
4655
  int64_t  skey;
4656
  int64_t  ekey;
4657
  int64_t  affectedRows;
4658
  char     tableFName[TSDB_TABLE_NAME_LEN];
4659
  char     tsColName[TSDB_COL_NAME_LEN];
4660
  int64_t  ctimeMs;  // fill by vnode
4661
  int8_t   source;
4662
} SDeleteRes;
4663

4664
int32_t tEncodeDeleteRes(SEncoder* pCoder, const SDeleteRes* pRes);
4665
int32_t tDecodeDeleteRes(SDecoder* pCoder, SDeleteRes* pRes);
4666

4667
typedef struct {
4668
  // int64_t uid;
4669
  char    tbname[TSDB_TABLE_NAME_LEN];
4670
  int64_t startTs;
4671
  int64_t endTs;
4672
} SSingleDeleteReq;
4673

4674
int32_t tEncodeSSingleDeleteReq(SEncoder* pCoder, const SSingleDeleteReq* pReq);
4675
int32_t tDecodeSSingleDeleteReq(SDecoder* pCoder, SSingleDeleteReq* pReq);
4676

4677
typedef struct {
4678
  int64_t suid;
4679
  SArray* deleteReqs;  // SArray<SSingleDeleteReq>
4680
  int64_t ctimeMs;     // fill by vnode
4681
  int8_t  level;       // 0 tsdb(default), 1 rsma1 , 2 rsma2
4682
} SBatchDeleteReq;
4683

4684
int32_t tEncodeSBatchDeleteReq(SEncoder* pCoder, const SBatchDeleteReq* pReq);
4685
int32_t tDecodeSBatchDeleteReq(SDecoder* pCoder, SBatchDeleteReq* pReq);
4686
int32_t tDecodeSBatchDeleteReqSetCtime(SDecoder* pDecoder, SBatchDeleteReq* pReq, int64_t ctimeMs);
4687

4688
typedef struct {
4689
  int32_t msgIdx;
4690
  int32_t msgType;
4691
  int32_t msgLen;
4692
  void*   msg;
4693
} SBatchMsg;
4694

4695
typedef struct {
4696
  SMsgHead header;
4697
  SArray*  pMsgs;  // SArray<SBatchMsg>
4698
} SBatchReq;
4699

4700
typedef struct {
4701
  int32_t reqType;
4702
  int32_t msgIdx;
4703
  int32_t msgLen;
4704
  int32_t rspCode;
4705
  void*   msg;
4706
} SBatchRspMsg;
4707

4708
typedef struct {
4709
  SArray* pRsps;  // SArray<SBatchRspMsg>
4710
} SBatchRsp;
4711

4712
int32_t                  tSerializeSBatchReq(void* buf, int32_t bufLen, SBatchReq* pReq);
4713
int32_t                  tDeserializeSBatchReq(void* buf, int32_t bufLen, SBatchReq* pReq);
4714
static FORCE_INLINE void tFreeSBatchReqMsg(void* msg) {
7,039,732✔
4715
  if (NULL == msg) {
7,039,732!
4716
    return;
×
4717
  }
4718
  SBatchMsg* pMsg = (SBatchMsg*)msg;
7,039,732✔
4719
  taosMemoryFree(pMsg->msg);
7,039,732!
4720
}
4721

4722
int32_t tSerializeSBatchRsp(void* buf, int32_t bufLen, SBatchRsp* pRsp);
4723
int32_t tDeserializeSBatchRsp(void* buf, int32_t bufLen, SBatchRsp* pRsp);
4724

4725
static FORCE_INLINE void tFreeSBatchRspMsg(void* p) {
1,617,915✔
4726
  if (NULL == p) {
1,617,915!
4727
    return;
×
4728
  }
4729

4730
  SBatchRspMsg* pRsp = (SBatchRspMsg*)p;
1,617,915✔
4731
  taosMemoryFree(pRsp->msg);
1,617,915!
4732
}
4733

4734
int32_t tSerializeSMqAskEpReq(void* buf, int32_t bufLen, SMqAskEpReq* pReq);
4735
int32_t tDeserializeSMqAskEpReq(void* buf, int32_t bufLen, SMqAskEpReq* pReq);
4736
int32_t tSerializeSMqHbReq(void* buf, int32_t bufLen, SMqHbReq* pReq);
4737
int32_t tDeserializeSMqHbReq(void* buf, int32_t bufLen, SMqHbReq* pReq);
4738
void    tDestroySMqHbReq(SMqHbReq* pReq);
4739

4740
int32_t tSerializeSMqHbRsp(void* buf, int32_t bufLen, SMqHbRsp* pRsp);
4741
int32_t tDeserializeSMqHbRsp(void* buf, int32_t bufLen, SMqHbRsp* pRsp);
4742
void    tDestroySMqHbRsp(SMqHbRsp* pRsp);
4743

4744
int32_t tSerializeSMqSeekReq(void* buf, int32_t bufLen, SMqSeekReq* pReq);
4745
int32_t tDeserializeSMqSeekReq(void* buf, int32_t bufLen, SMqSeekReq* pReq);
4746

4747
#define TD_REQ_FROM_APP               0x0
4748
#define SUBMIT_REQ_AUTO_CREATE_TABLE  0x1
4749
#define SUBMIT_REQ_COLUMN_DATA_FORMAT 0x2
4750
#define SUBMIT_REQ_FROM_FILE          0x4
4751
#define TD_REQ_FROM_TAOX              0x8
4752
#define SUBMIT_REQUEST_VERSION        (1)
4753

4754
#define TD_REQ_FROM_TAOX_OLD 0x1  // for compatibility
4755

4756
typedef struct {
4757
  int32_t        flags;
4758
  SVCreateTbReq* pCreateTbReq;
4759
  int64_t        suid;
4760
  int64_t        uid;
4761
  int32_t        sver;
4762
  union {
4763
    SArray* aRowP;
4764
    SArray* aCol;
4765
  };
4766
  int64_t ctimeMs;
4767
} SSubmitTbData;
4768

4769
typedef struct {
4770
  SArray* aSubmitTbData;  // SArray<SSubmitTbData>
4771
  bool    raw;
4772
} SSubmitReq2;
4773

4774
typedef struct {
4775
  SMsgHead header;
4776
  int64_t  version;
4777
  char     data[];  // SSubmitReq2
4778
} SSubmitReq2Msg;
4779

4780
int32_t transformRawSSubmitTbData(void* data, int64_t suid, int64_t uid, int32_t sver);
4781
int32_t tEncodeSubmitReq(SEncoder* pCoder, const SSubmitReq2* pReq);
4782
int32_t tDecodeSubmitReq(SDecoder* pCoder, SSubmitReq2* pReq, SArray* rawList);
4783
void    tDestroySubmitTbData(SSubmitTbData* pTbData, int32_t flag);
4784
void    tDestroySubmitReq(SSubmitReq2* pReq, int32_t flag);
4785

4786
typedef struct {
4787
  int32_t affectedRows;
4788
  SArray* aCreateTbRsp;  // SArray<SVCreateTbRsp>
4789
} SSubmitRsp2;
4790

4791
int32_t tEncodeSSubmitRsp2(SEncoder* pCoder, const SSubmitRsp2* pRsp);
4792
int32_t tDecodeSSubmitRsp2(SDecoder* pCoder, SSubmitRsp2* pRsp);
4793
void    tDestroySSubmitRsp2(SSubmitRsp2* pRsp, int32_t flag);
4794

4795
#define TSDB_MSG_FLG_ENCODE 0x1
4796
#define TSDB_MSG_FLG_DECODE 0x2
4797
#define TSDB_MSG_FLG_CMPT   0x3
4798

4799
typedef struct {
4800
  union {
4801
    struct {
4802
      void*   msgStr;
4803
      int32_t msgLen;
4804
      int64_t ver;
4805
    };
4806
    void* pDataBlock;
4807
  };
4808
} SPackedData;
4809

4810
typedef struct {
4811
  char     fullname[TSDB_VIEW_FNAME_LEN];
4812
  char     name[TSDB_VIEW_NAME_LEN];
4813
  char     dbFName[TSDB_DB_FNAME_LEN];
4814
  char*    querySql;
4815
  char*    sql;
4816
  int8_t   orReplace;
4817
  int8_t   precision;
4818
  int32_t  numOfCols;
4819
  SSchema* pSchema;
4820
} SCMCreateViewReq;
4821

4822
int32_t tSerializeSCMCreateViewReq(void* buf, int32_t bufLen, const SCMCreateViewReq* pReq);
4823
int32_t tDeserializeSCMCreateViewReq(void* buf, int32_t bufLen, SCMCreateViewReq* pReq);
4824
void    tFreeSCMCreateViewReq(SCMCreateViewReq* pReq);
4825

4826
typedef struct {
4827
  char   fullname[TSDB_VIEW_FNAME_LEN];
4828
  char   name[TSDB_VIEW_NAME_LEN];
4829
  char   dbFName[TSDB_DB_FNAME_LEN];
4830
  char*  sql;
4831
  int8_t igNotExists;
4832
} SCMDropViewReq;
4833

4834
int32_t tSerializeSCMDropViewReq(void* buf, int32_t bufLen, const SCMDropViewReq* pReq);
4835
int32_t tDeserializeSCMDropViewReq(void* buf, int32_t bufLen, SCMDropViewReq* pReq);
4836
void    tFreeSCMDropViewReq(SCMDropViewReq* pReq);
4837

4838
typedef struct {
4839
  char fullname[TSDB_VIEW_FNAME_LEN];
4840
} SViewMetaReq;
4841
int32_t tSerializeSViewMetaReq(void* buf, int32_t bufLen, const SViewMetaReq* pReq);
4842
int32_t tDeserializeSViewMetaReq(void* buf, int32_t bufLen, SViewMetaReq* pReq);
4843

4844
typedef struct {
4845
  char     name[TSDB_VIEW_NAME_LEN];
4846
  char     dbFName[TSDB_DB_FNAME_LEN];
4847
  char*    user;
4848
  uint64_t dbId;
4849
  uint64_t viewId;
4850
  char*    querySql;
4851
  int8_t   precision;
4852
  int8_t   type;
4853
  int32_t  version;
4854
  int32_t  numOfCols;
4855
  SSchema* pSchema;
4856
} SViewMetaRsp;
4857
int32_t tSerializeSViewMetaRsp(void* buf, int32_t bufLen, const SViewMetaRsp* pRsp);
4858
int32_t tDeserializeSViewMetaRsp(void* buf, int32_t bufLen, SViewMetaRsp* pRsp);
4859
void    tFreeSViewMetaRsp(SViewMetaRsp* pRsp);
4860
typedef struct {
4861
  char name[TSDB_TABLE_FNAME_LEN];  // table name or tsma name
4862
  bool fetchingWithTsmaName;        // if we are fetching with tsma name
4863
} STableTSMAInfoReq;
4864

4865
int32_t tSerializeTableTSMAInfoReq(void* buf, int32_t bufLen, const STableTSMAInfoReq* pReq);
4866
int32_t tDeserializeTableTSMAInfoReq(void* buf, int32_t bufLen, STableTSMAInfoReq* pReq);
4867

4868
typedef struct {
4869
  int32_t  funcId;
4870
  col_id_t colId;
4871
} STableTSMAFuncInfo;
4872

4873
typedef struct {
4874
  char     name[TSDB_TABLE_NAME_LEN];
4875
  uint64_t tsmaId;
4876
  char     targetTb[TSDB_TABLE_NAME_LEN];
4877
  char     targetDbFName[TSDB_DB_FNAME_LEN];
4878
  char     tb[TSDB_TABLE_NAME_LEN];
4879
  char     dbFName[TSDB_DB_FNAME_LEN];
4880
  uint64_t suid;
4881
  uint64_t destTbUid;
4882
  uint64_t dbId;
4883
  int32_t  version;
4884
  int64_t  interval;
4885
  int8_t   unit;
4886
  SArray*  pFuncs;     // SArray<STableTSMAFuncInfo>
4887
  SArray*  pTags;      // SArray<SSchema>
4888
  SArray*  pUsedCols;  // SArray<SSchema>
4889
  char*    ast;
4890

4891
  int64_t streamUid;
4892
  int64_t reqTs;
4893
  int64_t rspTs;
4894
  int64_t delayDuration;  // ms
4895
  bool    fillHistoryFinished;
4896
} STableTSMAInfo;
4897

4898
int32_t tSerializeTableTSMAInfoRsp(void* buf, int32_t bufLen, const STableTSMAInfoRsp* pRsp);
4899
int32_t tDeserializeTableTSMAInfoRsp(void* buf, int32_t bufLen, STableTSMAInfoRsp* pRsp);
4900
int32_t tCloneTbTSMAInfo(STableTSMAInfo* pInfo, STableTSMAInfo** pRes);
4901
void    tFreeTableTSMAInfo(void* p);
4902
void    tFreeAndClearTableTSMAInfo(void* p);
4903
void    tFreeTableTSMAInfoRsp(STableTSMAInfoRsp* pRsp);
4904

4905
#define STSMAHbRsp            STableTSMAInfoRsp
4906
#define tSerializeTSMAHbRsp   tSerializeTableTSMAInfoRsp
4907
#define tDeserializeTSMAHbRsp tDeserializeTableTSMAInfoRsp
4908
#define tFreeTSMAHbRsp        tFreeTableTSMAInfoRsp
4909

4910
typedef struct SStreamProgressReq {
4911
  int64_t streamId;
4912
  int32_t vgId;
4913
  int32_t fetchIdx;
4914
  int32_t subFetchIdx;
4915
} SStreamProgressReq;
4916

4917
int32_t tSerializeStreamProgressReq(void* buf, int32_t bufLen, const SStreamProgressReq* pReq);
4918
int32_t tDeserializeStreamProgressReq(void* buf, int32_t bufLen, SStreamProgressReq* pReq);
4919

4920
typedef struct SStreamProgressRsp {
4921
  int64_t streamId;
4922
  int32_t vgId;
4923
  bool    fillHisFinished;
4924
  int64_t progressDelay;
4925
  int32_t fetchIdx;
4926
  int32_t subFetchIdx;
4927
} SStreamProgressRsp;
4928

4929
int32_t tSerializeStreamProgressRsp(void* buf, int32_t bufLen, const SStreamProgressRsp* pRsp);
4930
int32_t tDeserializeSStreamProgressRsp(void* buf, int32_t bufLen, SStreamProgressRsp* pRsp);
4931

4932
typedef struct SDropCtbWithTsmaSingleVgReq {
4933
  SVgroupInfo vgInfo;
4934
  SArray*     pTbs;  // SVDropTbReq
4935
} SMDropTbReqsOnSingleVg;
4936

4937
int32_t tEncodeSMDropTbReqOnSingleVg(SEncoder* pEncoder, const SMDropTbReqsOnSingleVg* pReq);
4938
int32_t tDecodeSMDropTbReqOnSingleVg(SDecoder* pDecoder, SMDropTbReqsOnSingleVg* pReq);
4939
void    tFreeSMDropTbReqOnSingleVg(void* p);
4940

4941
typedef struct SDropTbsReq {
4942
  SArray* pVgReqs;  // SMDropTbReqsOnSingleVg
4943
} SMDropTbsReq;
4944

4945
int32_t tSerializeSMDropTbsReq(void* buf, int32_t bufLen, const SMDropTbsReq* pReq);
4946
int32_t tDeserializeSMDropTbsReq(void* buf, int32_t bufLen, SMDropTbsReq* pReq);
4947
void    tFreeSMDropTbsReq(void*);
4948

4949
typedef struct SVFetchTtlExpiredTbsRsp {
4950
  SArray* pExpiredTbs;  // SVDropTbReq
4951
  int32_t vgId;
4952
} SVFetchTtlExpiredTbsRsp;
4953

4954
int32_t tEncodeVFetchTtlExpiredTbsRsp(SEncoder* pCoder, const SVFetchTtlExpiredTbsRsp* pRsp);
4955
int32_t tDecodeVFetchTtlExpiredTbsRsp(SDecoder* pCoder, SVFetchTtlExpiredTbsRsp* pRsp);
4956

4957
void tFreeFetchTtlExpiredTbsRsp(void* p);
4958

4959
void setDefaultOptionsForField(SFieldWithOptions* field);
4960
void setFieldWithOptions(SFieldWithOptions* fieldWithOptions, SField* field);
4961

4962
#pragma pack(pop)
4963

4964
#ifdef __cplusplus
4965
}
4966
#endif
4967

4968
#endif /*_TD_COMMON_TAOS_MSG_H_*/
STATUS · Troubleshooting · Open an Issue · Sales · Support · CAREERS · ENTERPRISE · START FREE · SCHEDULE DEMO
ANNOUNCEMENTS · TWITTER · TOS & SLA · Supported CI Services · What's a CI service? · Automated Testing

© 2026 Coveralls, Inc