taosdemo.c 280.2 KB
Newer Older
S
TD-1057  
Shengliang Guan 已提交
1
/*
H
hzcheng 已提交
2 3 4 5 6 7 8 9 10 11 12 13 14 15
 * Copyright (c) 2019 TAOS Data, Inc. <jhtao@taosdata.com>
 *
 * This program is free software: you can use, redistribute, and/or modify
 * it under the terms of the GNU Affero General Public License, version 3
 * or later ("AGPL"), as published by the Free Software Foundation.
 *
 * This program is distributed in the hope that it will be useful, but WITHOUT
 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
 * FITNESS FOR A PARTICULAR PURPOSE.
 *
 * You should have received a copy of the GNU Affero General Public License
 * along with this program. If not, see <http://www.gnu.org/licenses/>.
 */

16 17 18 19 20

/*
   when in some thread query return error, thread don't exit, but return, otherwise coredump in other thread.
*/

21
#include <stdint.h>
22
#include <taos.h>
S
slguan 已提交
23
#define _GNU_SOURCE
24 25
#define CURL_STATICLIB

S
TD-1057  
Shengliang Guan 已提交
26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41
#ifdef LINUX
  #include <argp.h>
  #include <inttypes.h>
  #ifndef _ALPINE
    #include <error.h>
  #endif
  #include <pthread.h>
  #include <semaphore.h>
  #include <stdbool.h>
  #include <stdio.h>
  #include <string.h>
  #include <sys/time.h>
  #include <time.h>
  #include <unistd.h>
  #include <wordexp.h>
  #include <regex.h>
42
#else
S
TD-1057  
Shengliang Guan 已提交
43 44
  #include <regex.h>
  #include <stdio.h>
45
#endif
H
hzcheng 已提交
46

47
#include <assert.h>
48
#include <stdlib.h>
49 50
#include "cJSON.h"

51
#include "os.h"
H
hzcheng 已提交
52
#include "taos.h"
53
#include "taoserror.h"
H
Hui Li 已提交
54
#include "tutil.h"
S
slguan 已提交
55

56 57
#define STMT_IFACE_ENABLED  0

58 59 60
#define REQ_EXTRA_BUF_LEN   1024
#define RESP_BUF_LEN        4096

S
slguan 已提交
61 62
extern char configDir[];

63 64 65 66
#define INSERT_JSON_NAME      "insert.json"
#define QUERY_JSON_NAME       "query.json"
#define SUBSCRIBE_JSON_NAME   "subscribe.json"

67 68
#define STR_INSERT_INTO     "INSERT INTO "

69 70 71 72 73 74
enum TEST_MODE {
    INSERT_TEST,            // 0
    QUERY_TEST,             // 1
    SUBSCRIBE_TEST,         // 2
    INVAID_TEST
};
75

76 77
#define MAX_RECORDS_PER_REQ     32766

78
#define HEAD_BUFF_LEN       TSDB_MAX_COLUMNS*24  // 16*MAX_COLUMNS + (192+32)*2 + insert into ..
79

80 81
#define MAX_SQL_SIZE       65536
#define BUFFER_SIZE        (65536*2)
82
#define COND_BUF_LEN       (BUFFER_SIZE - 30)
83 84 85
#define MAX_USERNAME_SIZE  64
#define MAX_PASSWORD_SIZE  64
#define MAX_HOSTNAME_SIZE  64
86
#define MAX_TB_NAME_SIZE   64
87
#define MAX_DATA_SIZE      (16*TSDB_MAX_COLUMNS)+20     // max record len: 16*MAX_COLUMNS, timestamp string and ,('') need extra space
88 89 90
#define OPT_ABORT          1 /* –abort */
#define STRING_LEN         60000
#define MAX_PREPARED_RAND  1000000
91
#define MAX_FILE_NAME_LEN  256              // max file name length on linux is 255.
92

93 94
#define MAX_SAMPLES_ONCE_FROM_FILE   10000
#define MAX_NUM_COLUMNS        (TSDB_MAX_COLUMNS - 1)      // exclude first column timestamp
95

96 97
#define MAX_DB_COUNT            8
#define MAX_SUPER_TABLE_COUNT   200
98

99 100
#define MAX_QUERY_SQL_COUNT     100
#define MAX_QUERY_SQL_LENGTH    1024
101

102 103
#define MAX_DATABASE_COUNT      256
#define INPUT_BUF_LEN           256
104

105
#define DEFAULT_TIMESTAMP_STEP  1
106

107

108 109 110 111 112
typedef enum CREATE_SUB_TALBE_MOD_EN {
  PRE_CREATE_SUBTBL,
  AUTO_CREATE_SUBTBL,
  NO_CREATE_SUBTBL
} CREATE_SUB_TALBE_MOD_EN;
113

114 115
typedef enum TALBE_EXISTS_EN {
  TBL_NO_EXISTS,
116
  TBL_ALREADY_EXISTS,
117 118 119
  TBL_EXISTS_BUTT
} TALBE_EXISTS_EN;

120
enum enumSYNC_MODE {
121 122
  SYNC_MODE,
  ASYNC_MODE,
123 124
  MODE_BUT
};
125

126 127 128 129 130 131 132
enum enum_TAOS_INTERFACE {
    TAOSC_IFACE,
    REST_IFACE,
    STMT_IFACE,
    INTERFACE_BUT
};

133 134 135 136 137 138
typedef enum enumQUERY_CLASS {
    SPECIFIED_CLASS,
    STABLE_CLASS,
    CLASS_BUT
} QUERY_CLASS;

139
typedef enum enum_PROGRESSIVE_OR_INTERLACE {
140 141 142
    PROGRESSIVE_INSERT_MODE,
    INTERLACE_INSERT_MODE,
    INVALID_INSERT_MODE
143
} PROG_OR_INTERLACE_MODE;
144

145
typedef enum enumQUERY_TYPE {
146
  NO_INSERT_TYPE,
147
  INSERT_TYPE,
148
  QUERY_TYPE_BUT
149
} QUERY_TYPE;
150 151 152 153 154 155 156

enum _show_db_index {
  TSDB_SHOW_DB_NAME_INDEX,
  TSDB_SHOW_DB_CREATED_TIME_INDEX,
  TSDB_SHOW_DB_NTABLES_INDEX,
  TSDB_SHOW_DB_VGROUPS_INDEX,
  TSDB_SHOW_DB_REPLICA_INDEX,
157
  TSDB_SHOW_DB_QUORUM_INDEX,
158 159 160 161 162 163 164 165 166 167
  TSDB_SHOW_DB_DAYS_INDEX,
  TSDB_SHOW_DB_KEEP_INDEX,
  TSDB_SHOW_DB_CACHE_INDEX,
  TSDB_SHOW_DB_BLOCKS_INDEX,
  TSDB_SHOW_DB_MINROWS_INDEX,
  TSDB_SHOW_DB_MAXROWS_INDEX,
  TSDB_SHOW_DB_WALLEVEL_INDEX,
  TSDB_SHOW_DB_FSYNC_INDEX,
  TSDB_SHOW_DB_COMP_INDEX,
  TSDB_SHOW_DB_CACHELAST_INDEX,
168
  TSDB_SHOW_DB_PRECISION_INDEX,
169 170 171 172 173 174 175 176 177 178
  TSDB_SHOW_DB_UPDATE_INDEX,
  TSDB_SHOW_DB_STATUS_INDEX,
  TSDB_MAX_SHOW_DB
};

// -----------------------------------------SHOW TABLES CONFIGURE -------------------------------------
enum _show_stables_index {
  TSDB_SHOW_STABLES_NAME_INDEX,
  TSDB_SHOW_STABLES_CREATED_TIME_INDEX,
  TSDB_SHOW_STABLES_COLUMNS_INDEX,
179 180
  TSDB_SHOW_STABLES_METRIC_INDEX,
  TSDB_SHOW_STABLES_UID_INDEX,
181
  TSDB_SHOW_STABLES_TID_INDEX,
182
  TSDB_SHOW_STABLES_VGID_INDEX,
183
  TSDB_MAX_SHOW_STABLES
184 185
};

186 187 188 189 190 191 192 193
enum _describe_table_index {
  TSDB_DESCRIBE_METRIC_FIELD_INDEX,
  TSDB_DESCRIBE_METRIC_TYPE_INDEX,
  TSDB_DESCRIBE_METRIC_LENGTH_INDEX,
  TSDB_DESCRIBE_METRIC_NOTE_INDEX,
  TSDB_MAX_DESCRIBE_METRIC
};

H
hzcheng 已提交
194
/* Used by main to communicate with parse_opt. */
195 196
static char *g_dupstr = NULL;

197
typedef struct SArguments_S {
198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217
    char *   metaFile;
    uint32_t test_mode;
    char *   host;
    uint16_t port;
    uint16_t iface;
    char *   user;
    char *   password;
    char *   database;
    int      replica;
    char *   tb_prefix;
    char *   sqlFile;
    bool     use_metric;
    bool     drop_database;
    bool     insert_only;
    bool     answer_yes;
    bool     debug_print;
    bool     verbose_print;
    bool     performance_print;
    char *   output_file;
    bool     async_mode;
218
    char *   datatype[MAX_NUM_COLUMNS + 1];
219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236
    uint32_t len_of_binary;
    uint32_t num_of_CPR;
    uint32_t num_of_threads;
    uint64_t insert_interval;
    int64_t  query_times;
    uint32_t interlace_rows;
    uint32_t num_of_RPR;                  // num_of_records_per_req
    uint64_t max_sql_len;
    int64_t  num_of_tables;
    int64_t  num_of_DPT;
    int      abort;
    uint32_t disorderRatio;               // 0: no disorder, >0: x%
    int      disorderRange;               // ms or us by database precision
    uint32_t method_of_delete;
    char **  arg_list;
    uint64_t totalInsertRows;
    uint64_t totalAffectedRows;
    bool     demo_mode;                  // use default column name and semi-random data
237 238 239
} SArguments;

typedef struct SColumn_S {
240 241
  char      field[TSDB_COL_NAME_LEN];
  char      dataType[16];
242
  uint32_t  dataLen;
243
  char      note[128];
244 245 246
} StrColumn;

typedef struct SSuperTable_S {
247 248 249
  char         sTblName[TSDB_TABLE_NAME_LEN];
  char         dataSource[MAX_TB_NAME_SIZE];  // rand_gen or sample
  char         childTblPrefix[TSDB_TABLE_NAME_LEN - 20]; // 20 characters reserved for seq
250 251
  char         insertMode[MAX_TB_NAME_SIZE];    // taosc, rest
  uint16_t     childTblExists;
252
  int64_t      childTblCount;
253 254
  uint64_t     batchCreateTableNum;     // 0: no batch,  > 0: batch table number in one sql
  uint8_t      autoCreateTable;         // 0: create sub table, 1: auto create sub table
255
  uint16_t     iface;                   // 0: taosc, 1: rest, 2: stmt
256
  int64_t      childTblLimit;
257
  uint64_t     childTblOffset;
258

259
//  int          multiThreadWriteOneTbl;  // 0: no, 1: yes
260
  uint32_t     interlaceRows;           //
261 262
  int          disorderRatio;           // 0: no disorder, >0: x%
  int          disorderRange;           // ms or us by database precision
263
  uint64_t     maxSqlLen;               //
264

265
  uint64_t     insertInterval;          // insert interval, will override global insert interval
266
  int64_t      insertRows;
267
  int64_t      timeStampStep;
268
  char         startTimestamp[MAX_TB_NAME_SIZE];
269
  char         sampleFormat[MAX_TB_NAME_SIZE];  // csv, json
270 271
  char         sampleFile[MAX_FILE_NAME_LEN];
  char         tagsFile[MAX_FILE_NAME_LEN];
272

273
  uint32_t     columnCount;
274
  StrColumn    columns[TSDB_MAX_COLUMNS];
275
  uint32_t     tagCount;
276
  StrColumn    tags[TSDB_MAX_TAGS];
277 278

  char*        childTblName;
279
  char*        colsOfCreateChildTable;
280 281
  uint64_t     lenOfOneRow;
  uint64_t     lenOfTagOfOneRow;
282 283 284 285 286

  char*        sampleDataBuf;
  //int          sampleRowCount;
  //int          sampleUsePos;

287
  uint32_t     tagSource;    // 0: rand, 1: tag sample
288
  char*        tagDataBuf;
289 290
  uint32_t     tagSampleCount;
  uint32_t     tagUsePos;
291

292
  // statistics
293 294
  uint64_t     totalInsertRows;
  uint64_t     totalAffectedRows;
295 296 297
} SSuperTable;

typedef struct {
298
  char     name[TSDB_DB_NAME_LEN];
299
  char     create_time[32];
300
  int64_t  ntables;
301
  int32_t  vgroups;
302 303
  int16_t  replica;
  int16_t  quorum;
304
  int16_t  days;
305 306 307 308 309 310 311 312 313 314 315 316 317 318
  char     keeplist[32];
  int32_t  cache; //MB
  int32_t  blocks;
  int32_t  minrows;
  int32_t  maxrows;
  int8_t   wallevel;
  int32_t  fsync;
  int8_t   comp;
  int8_t   cachelast;
  char     precision[8];   // time resolution
  int8_t   update;
  char     status[16];
} SDbInfo;

319
typedef struct SDbCfg_S {
320
//  int       maxtablesPerVnode;
321 322
  uint32_t  minRows;        // 0 means default
  uint32_t  maxRows;        // 0 means default
323 324
  int       comp;
  int       walLevel;
325
  int       cacheLast;
326
  int       fsync;
327 328 329 330 331 332 333
  int       replica;
  int       update;
  int       keep;
  int       days;
  int       cache;
  int       blocks;
  int       quorum;
334
  char      precision[8];
335 336 337
} SDbCfg;

typedef struct SDataBase_S {
338
  char         dbName[TSDB_DB_NAME_LEN];
339
  bool         drop;  // 0: use exists, 1: if exists, drop then new create
340
  SDbCfg       dbCfg;
341
  uint64_t     superTblCount;
342 343 344 345
  SSuperTable  superTbls[MAX_SUPER_TABLE_COUNT];
} SDataBase;

typedef struct SDbs_S {
346
  char         cfgDir[MAX_FILE_NAME_LEN];
347
  char         host[MAX_HOSTNAME_SIZE];
348 349
  struct sockaddr_in serv_addr;

350
  uint16_t     port;
351 352
  char         user[MAX_USERNAME_SIZE];
  char         password[MAX_PASSWORD_SIZE];
353
  char         resultFile[MAX_FILE_NAME_LEN];
354 355 356
  bool         use_metric;
  bool         insert_only;
  bool         do_aggreFunc;
357
  bool         asyncMode;
358

359 360 361
  uint32_t     threadCount;
  uint32_t     threadCountByCreateTbl;
  uint32_t     dbCount;
362 363 364
  SDataBase    db[MAX_DB_COUNT];

  // statistics
365 366
  uint64_t     totalInsertRows;
  uint64_t     totalAffectedRows;
367

368 369
} SDbs;

370
typedef struct SpecifiedQueryInfo_S {
371
  uint64_t     queryInterval;  // 0: unlimit  > 0   loop/s
372
  uint32_t     concurrent;
373
  int          sqlCount;
374
  uint32_t     asyncMode; // 0: sync, 1: async
375 376
  uint64_t     subscribeInterval; // ms
  uint64_t     queryTimes;
377
  bool         subscribeRestart;
378
  int          subscribeKeepProgress;
379
  char         sql[MAX_QUERY_SQL_COUNT][MAX_QUERY_SQL_LENGTH+1];
380
  char         result[MAX_QUERY_SQL_COUNT][MAX_FILE_NAME_LEN];
381
  int          resubAfterConsume[MAX_QUERY_SQL_COUNT];
382
  int          endAfterConsume[MAX_QUERY_SQL_COUNT];
383
  TAOS_SUB*    tsub[MAX_QUERY_SQL_COUNT];
384 385 386
  char         topic[MAX_QUERY_SQL_COUNT][32];
  int          consumed[MAX_QUERY_SQL_COUNT];
  TAOS_RES*    res[MAX_QUERY_SQL_COUNT];
387
  uint64_t     totalQueried;
388
} SpecifiedQueryInfo;
389

390
typedef struct SuperQueryInfo_S {
391
  char         sTblName[TSDB_TABLE_NAME_LEN];
392 393
  uint64_t     queryInterval;  // 0: unlimit  > 0   loop/s
  uint32_t     threadCnt;
394
  uint32_t     asyncMode; // 0: sync, 1: async
395
  uint64_t     subscribeInterval; // ms
396
  bool         subscribeRestart;
397
  int          subscribeKeepProgress;
398
  uint64_t     queryTimes;
399
  int64_t      childTblCount;
400
  char         childTblPrefix[TSDB_TABLE_NAME_LEN - 20];    // 20 characters reserved for seq
401
  int          sqlCount;
402
  char         sql[MAX_QUERY_SQL_COUNT][MAX_QUERY_SQL_LENGTH+1];
403
  char         result[MAX_QUERY_SQL_COUNT][MAX_FILE_NAME_LEN];
404
  int          resubAfterConsume;
405
  int          endAfterConsume;
406
  TAOS_SUB*    tsub[MAX_QUERY_SQL_COUNT];
407

408
  char*        childTblName;
409
  uint64_t     totalQueried;
410
} SuperQueryInfo;
411 412

typedef struct SQueryMetaInfo_S {
413
  char         cfgDir[MAX_FILE_NAME_LEN];
414
  char         host[MAX_HOSTNAME_SIZE];
415
  uint16_t     port;
416
  struct       sockaddr_in serv_addr;
417 418
  char         user[MAX_USERNAME_SIZE];
  char         password[MAX_PASSWORD_SIZE];
419
  char         dbName[TSDB_DB_NAME_LEN];
420
  char         queryMode[MAX_TB_NAME_SIZE];  // taosc, rest
421

422
  SpecifiedQueryInfo  specifiedQueryInfo;
423
  SuperQueryInfo      superQueryInfo;
424
  uint64_t     totalQueried;
425 426 427
} SQueryMetaInfo;

typedef struct SThreadInfo_S {
428 429 430 431 432 433 434 435 436 437 438 439 440 441 442 443 444 445 446 447 448 449 450 451 452 453 454 455 456 457 458 459 460 461 462 463 464 465 466 467 468
    TAOS *    taos;
    TAOS_STMT *stmt;
    int       threadID;
    char      db_name[TSDB_DB_NAME_LEN];
    uint32_t  time_precision;
    char      filePath[4096];
    FILE      *fp;
    char      tb_prefix[TSDB_TABLE_NAME_LEN];
    uint64_t  start_table_from;
    uint64_t  end_table_to;
    int64_t   ntables;
    uint64_t  data_of_rate;
    int64_t   start_time;
    char*     cols;
    bool      use_metric;
    SSuperTable* superTblInfo;
    char      *buffer;    // sql cmd buffer

    // for async insert
    tsem_t    lock_sem;
    int64_t   counter;
    uint64_t  st;
    uint64_t  et;
    uint64_t  lastTs;

    // sample data
    int64_t   samplePos;
    // statistics
    uint64_t  totalInsertRows;
    uint64_t  totalAffectedRows;

    // insert delay statistics
    uint64_t  cntDelay;
    uint64_t  totalDelay;
    uint64_t  avgDelay;
    uint64_t  maxDelay;
    uint64_t  minDelay;

    // seq of query or subscribe
    uint64_t  querySeq;   // sequence number of sql command
    TAOS_SUB*  tsub;
469

470 471
} threadInfo;

472
#ifdef WINDOWS
473 474
#define _CRT_RAND_S

475
#include <windows.h>
476 477 478 479 480
#include <winsock2.h>

typedef unsigned __int32 uint32_t;

#pragma comment ( lib, "ws2_32.lib" )
481 482
// Some old MinGW/CYGWIN distributions don't define this:
#ifndef ENABLE_VIRTUAL_TERMINAL_PROCESSING
483 484
  #define ENABLE_VIRTUAL_TERMINAL_PROCESSING  0x0004
#endif // ENABLE_VIRTUAL_TERMINAL_PROCESSING
485 486 487 488

static HANDLE g_stdoutHandle;
static DWORD g_consoleMode;

489
static void setupForAnsiEscape(void) {
490 491 492 493 494 495 496 497 498 499 500 501 502 503 504 505 506 507
  DWORD mode = 0;
  g_stdoutHandle = GetStdHandle(STD_OUTPUT_HANDLE);

  if(g_stdoutHandle == INVALID_HANDLE_VALUE) {
    exit(GetLastError());
  }

  if(!GetConsoleMode(g_stdoutHandle, &mode)) {
    exit(GetLastError());
  }

  g_consoleMode = mode;

  // Enable ANSI escape codes
  mode |= ENABLE_VIRTUAL_TERMINAL_PROCESSING;

  if(!SetConsoleMode(g_stdoutHandle, mode)) {
    exit(GetLastError());
508
  }
509 510
}

511
static void resetAfterAnsiEscape(void) {
512
  // Reset colors
513
  printf("\x1b[0m");
514 515 516 517 518 519

  // Reset console mode
  if(!SetConsoleMode(g_stdoutHandle, g_consoleMode)) {
    exit(GetLastError());
  }
}
520

521
static int taosRandom()
522 523 524 525 526 527
{
    int number;
    rand_s(&number);

    return number;
}
528
#else   // Not windows
529
static void setupForAnsiEscape(void) {}
530

531
static void resetAfterAnsiEscape(void) {
532 533 534
  // Reset colors
  printf("\x1b[0m");
}
535

536 537
#include <time.h>

538
static int taosRandom()
539
{
540
  return rand();
541 542
}

543
#endif // ifdef Windows
544

545
static void prompt();
546
static int createDatabasesAndStables();
547
static void createChildTables();
548
static int queryDbExec(TAOS *taos, char *command, QUERY_TYPE type, bool quiet);
549
static int postProceSql(char *host, struct sockaddr_in *pServAddr,
550
        uint16_t port, char* sqlstr, threadInfo *pThreadInfo);
551
static int64_t getTSRandTail(int64_t timeStampStep, int32_t seq,
552
        int disorderRatio, int disorderRange);
553 554
static bool getInfoFromJsonFile(char* file);
static void init_rand_data();
555 556 557 558 559 560 561

/* ************ Global variables ************  */

int32_t  randint[MAX_PREPARED_RAND];
int64_t  randbigint[MAX_PREPARED_RAND];
float    randfloat[MAX_PREPARED_RAND];
double   randdouble[MAX_PREPARED_RAND];
562
char *aggreFunc[] = {"*", "count(*)", "avg(col0)", "sum(col0)",
563 564
    "max(col0)", "min(col0)", "first(col0)", "last(col0)"};

565 566
#define DEFAULT_DATATYPE_NUM    3

567
SArguments g_args = {
568 569 570 571
    NULL,            // metaFile
    0,               // test_mode
    "127.0.0.1",     // host
    6030,            // port
572
    INTERFACE_BUT,   // iface
573 574 575 576 577 578 579 580 581 582 583 584 585 586 587 588 589 590 591 592 593 594 595 596
    "root",          // user
#ifdef _TD_POWER_
    "powerdb",      // password
#elif (_TD_TQ_ == true)
    "tqueue",      // password
#else
    "taosdata",      // password
#endif
    "test",          // database
    1,               // replica
    "d",             // tb_prefix
    NULL,            // sqlFile
    true,            // use_metric
    true,            // drop_database
    true,            // insert_only
    false,           // debug_print
    false,           // verbose_print
    false,           // performance statistic print
    false,           // answer_yes;
    "./output.txt",  // output_file
    0,               // mode : sync or async
    {
        "FLOAT",         // datatype
        "INT",           // datatype
597
        "FLOAT",         // datatype. DEFAULT_DATATYPE_NUM is 3
598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613 614 615 616
    },
    16,              // len_of_binary
    4,               // num_of_CPR
    10,              // num_of_connections/thread
    0,               // insert_interval
    1,               // query_times
    0,               // interlace_rows;
    30000,           // num_of_RPR
    (1024*1024),     // max_sql_len
    10000,           // num_of_tables
    10000,           // num_of_DPT
    0,               // abort
    0,               // disorderRatio
    1000,            // disorderRange
    1,               // method_of_delete
    NULL,            // arg_list
    0,               // totalInsertRows;
    0,               // totalAffectedRows;
    true,            // demo_mode;
617 618 619 620 621
};



static SDbs            g_Dbs;
622
static int64_t         g_totalChildTables = 0;
623 624 625
static SQueryMetaInfo  g_queryInfo;
static FILE *          g_fpOfInsertResult = NULL;

626 627 628 629
#if _MSC_VER <= 1900
#define __func__ __FUNCTION__
#endif

630
#define debugPrint(fmt, ...) \
631
    do { if (g_args.debug_print || g_args.verbose_print) \
632
      fprintf(stderr, "DEBG: "fmt, __VA_ARGS__); } while(0)
633

634
#define verbosePrint(fmt, ...) \
635 636
    do { if (g_args.verbose_print) \
        fprintf(stderr, "VERB: "fmt, __VA_ARGS__); } while(0)
637

638 639 640 641
#define performancePrint(fmt, ...) \
    do { if (g_args.performance_print) \
        fprintf(stderr, "VERB: "fmt, __VA_ARGS__); } while(0)

642 643 644
#define errorPrint(fmt, ...) \
    do { fprintf(stderr, "ERROR: "fmt, __VA_ARGS__); } while(0)

645 646 647
// for strncpy buffer overflow
#define min(a, b) (((a) < (b)) ? (a) : (b))

648

649
///////////////////////////////////////////////////
H
hzcheng 已提交
650

651 652
static void ERROR_EXIT(const char *msg) { perror(msg); exit(-1); }

653 654 655 656 657 658 659 660
#ifndef TAOSDEMO_COMMIT_SHA1
#define TAOSDEMO_COMMIT_SHA1 "unknown"
#endif

#ifndef TD_VERNUMBER
#define TD_VERNUMBER    "unknown"
#endif

661
#ifndef TAOSDEMO_STATUS
662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678
#define TAOSDEMO_STATUS "unknown"
#endif

static void printVersion() {
    char tdengine_ver[] = TD_VERNUMBER;
    char taosdemo_ver[] = TAOSDEMO_COMMIT_SHA1;
    char taosdemo_status[] = TAOSDEMO_STATUS;

    if (strlen(taosdemo_status) == 0) {
        printf("taosdemo verison %s-%s\n",
                tdengine_ver, taosdemo_ver);
    } else {
        printf("taosdemo verison %s-%s, status:%s\n",
                tdengine_ver, taosdemo_ver, taosdemo_status);
    }
}

679
static void printHelp() {
680 681 682 683 684
    char indent[10] = "        ";
    printf("%s%s%s%s\n", indent, "-f", indent,
            "The meta file to the execution procedure. Default is './meta.json'.");
    printf("%s%s%s%s\n", indent, "-u", indent,
            "The TDengine user name to use when connecting to the server. Default is 'root'.");
685
#ifdef _TD_POWER_
686 687 688 689 690 691 692 693 694
    printf("%s%s%s%s\n", indent, "-P", indent,
            "The password to use when connecting to the server. Default is 'powerdb'.");
    printf("%s%s%s%s\n", indent, "-c", indent,
            "Configuration directory. Default is '/etc/power/'.");
#elif (_TD_TQ_ == true)
    printf("%s%s%s%s\n", indent, "-P", indent,
            "The password to use when connecting to the server. Default is 'tqueue'.");
    printf("%s%s%s%s\n", indent, "-c", indent,
            "Configuration directory. Default is '/etc/tq/'.");
695
#else
696 697 698 699
    printf("%s%s%s%s\n", indent, "-P", indent,
            "The password to use when connecting to the server. Default is 'taosdata'.");
    printf("%s%s%s%s\n", indent, "-c", indent,
            "Configuration directory. Default is '/etc/taos/'.");
700
#endif
701 702 703 704 705
    printf("%s%s%s%s\n", indent, "-h", indent,
            "The host to connect to TDengine. Default is localhost.");
    printf("%s%s%s%s\n", indent, "-p", indent,
            "The TCP/IP port number to use for the connection. Default is 0.");
    printf("%s%s%s%s\n", indent, "-I", indent,
706
#if STMT_IFACE_ENABLED == 1
707
            "The interface (taosc, rest, and stmt) taosdemo uses. Default is 'taosc'.");
708
#else
709
    "The interface (taosc, rest) taosdemo uses. Default is 'taosc'.");
710
#endif
711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726
    printf("%s%s%s%s\n", indent, "-d", indent,
            "Destination database. Default is 'test'.");
    printf("%s%s%s%s\n", indent, "-a", indent,
            "Set the replica parameters of the database, Default 1, min: 1, max: 3.");
    printf("%s%s%s%s\n", indent, "-m", indent,
            "Table prefix name. Default is 'd'.");
    printf("%s%s%s%s\n", indent, "-s", indent, "The select sql file.");
    printf("%s%s%s%s\n", indent, "-N", indent, "Use normal table flag.");
    printf("%s%s%s%s\n", indent, "-o", indent,
            "Direct output to the named file. Default is './output.txt'.");
    printf("%s%s%s%s\n", indent, "-q", indent,
            "Query mode -- 0: SYNC, 1: ASYNC. Default is SYNC.");
    printf("%s%s%s%s\n", indent, "-b", indent,
            "The data_type of columns, default: FLOAT, INT, FLOAT.");
    printf("%s%s%s%s\n", indent, "-w", indent,
            "The length of data_type 'BINARY' or 'NCHAR'. Default is 16");
727 728 729 730
    printf("%s%s%s%s%d%s%d\n", indent, "-l", indent,
            "The number of columns per record. Default is ",
            DEFAULT_DATATYPE_NUM,
            ". Max values is ",
731
            MAX_NUM_COLUMNS);
732 733
    printf("%s%s%s%s\n", indent, indent, indent,
            "All of the new column(s) type is INT. If use -b to specify column type, -l will be ignored.");
734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761
    printf("%s%s%s%s\n", indent, "-T", indent,
            "The number of threads. Default is 10.");
    printf("%s%s%s%s\n", indent, "-i", indent,
            "The sleep time (ms) between insertion. Default is 0.");
    printf("%s%s%s%s\n", indent, "-r", indent,
            "The number of records per request. Default is 30000.");
    printf("%s%s%s%s\n", indent, "-t", indent,
            "The number of tables. Default is 10000.");
    printf("%s%s%s%s\n", indent, "-n", indent,
            "The number of records per table. Default is 10000.");
    printf("%s%s%s%s\n", indent, "-M", indent,
            "The value of records generated are totally random.");
    printf("%s%s%s%s\n", indent, indent, indent,
            " The default is to simulate power equipment senario.");
    printf("%s%s%s%s\n", indent, "-x", indent, "Not insert only flag.");
    printf("%s%s%s%s\n", indent, "-y", indent, "Default input yes for prompt.");
    printf("%s%s%s%s\n", indent, "-O", indent,
            "Insert mode--0: In order, 1 ~ 50: disorder ratio. Default is in order.");
    printf("%s%s%s%s\n", indent, "-R", indent,
            "Out of order data's range, ms, default is 1000.");
    printf("%s%s%s%s\n", indent, "-g", indent,
            "Print debug info.");
    printf("%s%s%s\n", indent, "-V, --version\t",
            "Print version info.");
    printf("%s%s%s%s\n", indent, "--help\t", indent,
            "Print command line arguments list info.");
    /*    printf("%s%s%s%s\n", indent, "-D", indent,
          "Delete database if exists. 0: no, 1: yes, default is 1");
762 763 764
          */
}

765 766
static bool isStringNumber(char *input)
{
767 768 769 770
    int len = strlen(input);
    if (0 == len) {
        return false;
    }
771

772 773 774 775
    for (int i = 0; i < len; i++) {
        if (!isdigit(input[i]))
            return false;
    }
776

777
    return true;
778 779
}

780
static void parse_args(int argc, char *argv[], SArguments *arguments) {
781

782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818
    for (int i = 1; i < argc; i++) {
        if (strcmp(argv[i], "-f") == 0) {
            arguments->demo_mode = false;
            arguments->metaFile = argv[++i];
        } else if (strcmp(argv[i], "-c") == 0) {
            if (argc == i+1) {
                printHelp();
                errorPrint("%s", "\n\t-c need a valid path following!\n");
                exit(EXIT_FAILURE);
            }
            tstrncpy(configDir, argv[++i], TSDB_FILENAME_LEN);
        } else if (strcmp(argv[i], "-h") == 0) {
            if (argc == i+1) {
                printHelp();
                errorPrint("%s", "\n\t-h need a valid string following!\n");
                exit(EXIT_FAILURE);
            }
            arguments->host = argv[++i];
        } else if (strcmp(argv[i], "-p") == 0) {
            if ((argc == i+1) ||
                    (!isStringNumber(argv[i+1]))) {
                printHelp();
                errorPrint("%s", "\n\t-p need a number following!\n");
                exit(EXIT_FAILURE);
            }
            arguments->port = atoi(argv[++i]);
        } else if (strcmp(argv[i], "-I") == 0) {
            if (argc == i+1) {
                printHelp();
                errorPrint("%s", "\n\t-I need a valid string following!\n");
                exit(EXIT_FAILURE);
            }
            ++i;
            if (0 == strcasecmp(argv[i], "taosc")) {
                arguments->iface = TAOSC_IFACE;
            } else if (0 == strcasecmp(argv[i], "rest")) {
                arguments->iface = REST_IFACE;
819
#if STMT_IFACE_ENABLED == 1
820 821
            } else if (0 == strcasecmp(argv[i], "stmt")) {
                arguments->iface = STMT_IFACE;
822
#endif
823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935
            } else {
                errorPrint("%s", "\n\t-I need a valid string following!\n");
                exit(EXIT_FAILURE);
            }
        } else if (strcmp(argv[i], "-u") == 0) {
            if (argc == i+1) {
                printHelp();
                errorPrint("%s", "\n\t-u need a valid string following!\n");
                exit(EXIT_FAILURE);
            }
            arguments->user = argv[++i];
        } else if (strcmp(argv[i], "-P") == 0) {
            if (argc == i+1) {
                printHelp();
                errorPrint("%s", "\n\t-P need a valid string following!\n");
                exit(EXIT_FAILURE);
            }
            arguments->password = argv[++i];
        } else if (strcmp(argv[i], "-o") == 0) {
            if (argc == i+1) {
                printHelp();
                errorPrint("%s", "\n\t-o need a valid string following!\n");
                exit(EXIT_FAILURE);
            }
            arguments->output_file = argv[++i];
        } else if (strcmp(argv[i], "-s") == 0) {
            if (argc == i+1) {
                printHelp();
                errorPrint("%s", "\n\t-s need a valid string following!\n");
                exit(EXIT_FAILURE);
            }
            arguments->sqlFile = argv[++i];
        } else if (strcmp(argv[i], "-q") == 0) {
            if ((argc == i+1)
                    || (!isStringNumber(argv[i+1]))) {
                printHelp();
                errorPrint("%s", "\n\t-q need a number following!\nQuery mode -- 0: SYNC, not-0: ASYNC. Default is SYNC.\n");
                exit(EXIT_FAILURE);
            }
            arguments->async_mode = atoi(argv[++i]);
        } else if (strcmp(argv[i], "-T") == 0) {
            if ((argc == i+1)
                    || (!isStringNumber(argv[i+1]))) {
                printHelp();
                errorPrint("%s", "\n\t-T need a number following!\n");
                exit(EXIT_FAILURE);
            }
            arguments->num_of_threads = atoi(argv[++i]);
        } else if (strcmp(argv[i], "-i") == 0) {
            if ((argc == i+1) ||
                    (!isStringNumber(argv[i+1]))) {
                printHelp();
                errorPrint("%s", "\n\t-i need a number following!\n");
                exit(EXIT_FAILURE);
            }
            arguments->insert_interval = atoi(argv[++i]);
        } else if (strcmp(argv[i], "-qt") == 0) {
            if ((argc == i+1)
                    || (!isStringNumber(argv[i+1]))) {
                printHelp();
                errorPrint("%s", "\n\t-qt need a number following!\n");
                exit(EXIT_FAILURE);
            }
            arguments->query_times = atoi(argv[++i]);
        } else if (strcmp(argv[i], "-B") == 0) {
            if ((argc == i+1)
                    || (!isStringNumber(argv[i+1]))) {
                printHelp();
                errorPrint("%s", "\n\t-B need a number following!\n");
                exit(EXIT_FAILURE);
            }
            arguments->interlace_rows = atoi(argv[++i]);
        } else if (strcmp(argv[i], "-r") == 0) {
            if ((argc == i+1)
                    || (!isStringNumber(argv[i+1]))) {
                printHelp();
                errorPrint("%s", "\n\t-r need a number following!\n");
                exit(EXIT_FAILURE);
            }
            arguments->num_of_RPR = atoi(argv[++i]);
        } else if (strcmp(argv[i], "-t") == 0) {
            if ((argc == i+1) ||
                    (!isStringNumber(argv[i+1]))) {
                printHelp();
                errorPrint("%s", "\n\t-t need a number following!\n");
                exit(EXIT_FAILURE);
            }
            arguments->num_of_tables = atoi(argv[++i]);
        } else if (strcmp(argv[i], "-n") == 0) {
            if ((argc == i+1) ||
                    (!isStringNumber(argv[i+1]))) {
                printHelp();
                errorPrint("%s", "\n\t-n need a number following!\n");
                exit(EXIT_FAILURE);
            }
            arguments->num_of_DPT = atoi(argv[++i]);
        } else if (strcmp(argv[i], "-d") == 0) {
            if (argc == i+1) {
                printHelp();
                errorPrint("%s", "\n\t-d need a valid string following!\n");
                exit(EXIT_FAILURE);
            }
            arguments->database = argv[++i];
        } else if (strcmp(argv[i], "-l") == 0) {
            arguments->demo_mode = false;
            if (argc == i+1) {
                if (!isStringNumber(argv[i+1])) {
                    printHelp();
                    errorPrint("%s", "\n\t-l need a number following!\n");
                    exit(EXIT_FAILURE);
                }
            }
            arguments->num_of_CPR = atoi(argv[++i]);
936

937 938
            if (arguments->num_of_CPR > MAX_NUM_COLUMNS) {
                printf("WARNING: max acceptible columns count is %d\n", MAX_NUM_COLUMNS);
939
                prompt();
940
                arguments->num_of_CPR = MAX_NUM_COLUMNS;
941
            }
942

943 944 945
            for (int col = DEFAULT_DATATYPE_NUM; col < arguments->num_of_CPR; col ++) {
                arguments->datatype[col] = "INT";
            }
946
            for (int col = arguments->num_of_CPR; col < MAX_NUM_COLUMNS; col++) {
947 948
                arguments->datatype[col] = NULL;
            }
949

950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998
        } else if (strcmp(argv[i], "-b") == 0) {
            arguments->demo_mode = false;
            if (argc == i+1) {
                printHelp();
                errorPrint("%s", "\n\t-b need valid string following!\n");
                exit(EXIT_FAILURE);
            }
            ++i;
            if (strstr(argv[i], ",") == NULL) {
                // only one col
                if (strcasecmp(argv[i], "INT")
                        && strcasecmp(argv[i], "FLOAT")
                        && strcasecmp(argv[i], "TINYINT")
                        && strcasecmp(argv[i], "BOOL")
                        && strcasecmp(argv[i], "SMALLINT")
                        && strcasecmp(argv[i], "BIGINT")
                        && strcasecmp(argv[i], "DOUBLE")
                        && strcasecmp(argv[i], "BINARY")
                        && strcasecmp(argv[i], "TIMESTAMP")
                        && strcasecmp(argv[i], "NCHAR")) {
                    printHelp();
                    errorPrint("%s", "-b: Invalid data_type!\n");
                    exit(EXIT_FAILURE);
                }
                arguments->datatype[0] = argv[i];
            } else {
                // more than one col
                int index = 0;
                g_dupstr = strdup(argv[i]);
                char *running = g_dupstr;
                char *token = strsep(&running, ",");
                while(token != NULL) {
                    if (strcasecmp(token, "INT")
                            && strcasecmp(token, "FLOAT")
                            && strcasecmp(token, "TINYINT")
                            && strcasecmp(token, "BOOL")
                            && strcasecmp(token, "SMALLINT")
                            && strcasecmp(token, "BIGINT")
                            && strcasecmp(token, "DOUBLE")
                            && strcasecmp(token, "BINARY")
                            && strcasecmp(token, "TIMESTAMP")
                            && strcasecmp(token, "NCHAR")) {
                        printHelp();
                        free(g_dupstr);
                        errorPrint("%s", "-b: Invalid data_type!\n");
                        exit(EXIT_FAILURE);
                    }
                    arguments->datatype[index++] = token;
                    token = strsep(&running, ",");
999
                    if (index >= MAX_NUM_COLUMNS) break;
1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039
                }
                arguments->datatype[index] = NULL;
            }
        } else if (strcmp(argv[i], "-w") == 0) {
            if ((argc == i+1) ||
                    (!isStringNumber(argv[i+1]))) {
                printHelp();
                errorPrint("%s", "\n\t-w need a number following!\n");
                exit(EXIT_FAILURE);
            }
            arguments->len_of_binary = atoi(argv[++i]);
        } else if (strcmp(argv[i], "-m") == 0) {
            if ((argc == i+1) ||
                    (isStringNumber(argv[i+1]))) {
                printHelp();
                errorPrint("%s", "\n\t-m need a letter-initial string following!\n");
                exit(EXIT_FAILURE);
            }
            arguments->tb_prefix = argv[++i];
        } else if (strcmp(argv[i], "-N") == 0) {
            arguments->use_metric = false;
        } else if (strcmp(argv[i], "-M") == 0) {
            arguments->demo_mode = false;
        } else if (strcmp(argv[i], "-x") == 0) {
            arguments->insert_only = false;
        } else if (strcmp(argv[i], "-y") == 0) {
            arguments->answer_yes = true;
        } else if (strcmp(argv[i], "-g") == 0) {
            arguments->debug_print = true;
        } else if (strcmp(argv[i], "-gg") == 0) {
            arguments->verbose_print = true;
        } else if (strcmp(argv[i], "-pp") == 0) {
            arguments->performance_print = true;
        } else if (strcmp(argv[i], "-O") == 0) {
            if ((argc == i+1) ||
                    (!isStringNumber(argv[i+1]))) {
                printHelp();
                errorPrint("%s", "\n\t-O need a number following!\n");
                exit(EXIT_FAILURE);
            }
1040

1041
            arguments->disorderRatio = atoi(argv[++i]);
1042

1043 1044 1045
            if (arguments->disorderRatio > 50) {
                arguments->disorderRatio = 50;
            }
1046

1047 1048 1049
            if (arguments->disorderRatio < 0) {
                arguments->disorderRatio = 0;
            }
1050

1051 1052 1053 1054 1055 1056 1057
        } else if (strcmp(argv[i], "-R") == 0) {
            if ((argc == i+1) ||
                    (!isStringNumber(argv[i+1]))) {
                printHelp();
                errorPrint("%s", "\n\t-R need a number following!\n");
                exit(EXIT_FAILURE);
            }
1058

1059 1060 1061
            arguments->disorderRange = atoi(argv[++i]);
            if (arguments->disorderRange < 0)
                arguments->disorderRange = 1000;
1062

1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091
        } else if (strcmp(argv[i], "-a") == 0) {
            if ((argc == i+1) ||
                    (!isStringNumber(argv[i+1]))) {
                printHelp();
                errorPrint("%s", "\n\t-a need a number following!\n");
                exit(EXIT_FAILURE);
            }
            arguments->replica = atoi(argv[++i]);
            if (arguments->replica > 3 || arguments->replica < 1) {
                arguments->replica = 1;
            }
        } else if (strcmp(argv[i], "-D") == 0) {
            arguments->method_of_delete = atoi(argv[++i]);
            if (arguments->method_of_delete > 3) {
                errorPrint("%s", "\n\t-D need a valud (0~3) number following!\n");
                exit(EXIT_FAILURE);
            }
        } else if ((strcmp(argv[i], "--version") == 0) ||
                (strcmp(argv[i], "-V") == 0)){
            printVersion();
            exit(0);
        } else if (strcmp(argv[i], "--help") == 0) {
            printHelp();
            exit(0);
        } else {
            printHelp();
            errorPrint("%s", "ERROR: wrong options\n");
            exit(EXIT_FAILURE);
        }
S
TD-1057  
Shengliang Guan 已提交
1092
    }
1093

1094
    int columnCount;
1095
    for (columnCount = 0; columnCount < MAX_NUM_COLUMNS; columnCount ++) {
1096 1097 1098
        if (g_args.datatype[columnCount] == NULL) {
            break;
        }
1099 1100
    }

1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119
    if (0 == columnCount) {
        perror("data type error!");
        exit(-1);
    }
    g_args.num_of_CPR = columnCount;

    if (((arguments->debug_print) && (arguments->metaFile == NULL))
            || arguments->verbose_print) {
        printf("###################################################################\n");
        printf("# meta file:                         %s\n", arguments->metaFile);
        printf("# Server IP:                         %s:%hu\n",
                arguments->host == NULL ? "localhost" : arguments->host,
                arguments->port );
        printf("# User:                              %s\n", arguments->user);
        printf("# Password:                          %s\n", arguments->password);
        printf("# Use metric:                        %s\n",
                arguments->use_metric ? "true" : "false");
        if (*(arguments->datatype)) {
            printf("# Specified data type:               ");
1120
            for (int i = 0; i < MAX_NUM_COLUMNS; i++)
1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152
                if (arguments->datatype[i])
                    printf("%s,", arguments->datatype[i]);
                else
                    break;
            printf("\n");
        }
        printf("# Insertion interval:                %"PRIu64"\n",
                arguments->insert_interval);
        printf("# Number of records per req:         %u\n",
                arguments->num_of_RPR);
        printf("# Max SQL length:                    %"PRIu64"\n",
                arguments->max_sql_len);
        printf("# Length of Binary:                  %d\n", arguments->len_of_binary);
        printf("# Number of Threads:                 %d\n", arguments->num_of_threads);
        printf("# Number of Tables:                  %"PRId64"\n",
                arguments->num_of_tables);
        printf("# Number of Data per Table:          %"PRId64"\n",
                arguments->num_of_DPT);
        printf("# Database name:                     %s\n", arguments->database);
        printf("# Table prefix:                      %s\n", arguments->tb_prefix);
        if (arguments->disorderRatio) {
            printf("# Data order:                        %d\n", arguments->disorderRatio);
            printf("# Data out of order rate:            %d\n", arguments->disorderRange);

        }
        printf("# Delete method:                     %d\n", arguments->method_of_delete);
        printf("# Answer yes when prompt:            %d\n", arguments->answer_yes);
        printf("# Print debug info:                  %d\n", arguments->debug_print);
        printf("# Print verbose info:                %d\n", arguments->verbose_print);
        printf("###################################################################\n");

        prompt();
1153
    }
1154
}
H
hzcheng 已提交
1155

1156
static void tmfclose(FILE *fp) {
1157 1158 1159
    if (NULL != fp) {
        fclose(fp);
    }
1160
}
1161

1162
static void tmfree(char *buf) {
1163 1164 1165
    if (NULL != buf) {
        free(buf);
    }
1166
}
H
Hui Li 已提交
1167

1168
static int queryDbExec(TAOS *taos, char *command, QUERY_TYPE type, bool quiet) {
1169 1170 1171 1172 1173 1174 1175 1176 1177
    int i;
    TAOS_RES *res = NULL;
    int32_t   code = -1;

    for (i = 0; i < 5 /* retry */; i++) {
        if (NULL != res) {
            taos_free_result(res);
            res = NULL;
        }
1178

1179 1180 1181 1182 1183
        res = taos_query(taos, command);
        code = taos_errno(res);
        if (0 == code) {
            break;
        }
H
hzcheng 已提交
1184
    }
1185

1186 1187 1188 1189 1190 1191 1192 1193 1194
    verbosePrint("%s() LN%d - command: %s\n", __func__, __LINE__, command);
    if (code != 0) {
        if (!quiet) {
            errorPrint("Failed to execute %s, reason: %s\n",
                    command, taos_errstr(res));
        }
        taos_free_result(res);
        //taos_close(taos);
        return -1;
1195
    }
H
hzcheng 已提交
1196

1197 1198 1199 1200
    if (INSERT_TYPE == type) {
        int affectedRows = taos_affected_rows(res);
        taos_free_result(res);
        return affectedRows;
1201
    }
H
hzcheng 已提交
1202

1203
    taos_free_result(res);
1204
    return 0;
1205
}
H
hzcheng 已提交
1206

1207
static void appendResultBufToFile(char *resultBuf, threadInfo *pThreadInfo)
1208
{
1209 1210 1211 1212 1213 1214 1215
    pThreadInfo->fp = fopen(pThreadInfo->filePath, "at");
    if (pThreadInfo->fp == NULL) {
        errorPrint(
                "%s() LN%d, failed to open result file: %s, result will not save to file\n",
                __func__, __LINE__, pThreadInfo->filePath);
        return;
    }
1216

1217 1218 1219
    fprintf(pThreadInfo->fp, "%s", resultBuf);
    tmfclose(pThreadInfo->fp);
    pThreadInfo->fp = NULL;
1220
}
1221

1222
static void fetchResult(TAOS_RES *res, threadInfo* pThreadInfo) {
1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233
    TAOS_ROW    row = NULL;
    int         num_rows = 0;
    int         num_fields = taos_field_count(res);
    TAOS_FIELD *fields     = taos_fetch_fields(res);

    char* databuf = (char*) calloc(1, 100*1024*1024);
    if (databuf == NULL) {
        errorPrint("%s() LN%d, failed to malloc, warning: save result to file slowly!\n",
                __func__, __LINE__);
        return ;
    }
H
hzcheng 已提交
1234

1235
    int64_t   totalLen = 0;
H
hzcheng 已提交
1236

1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261
    // fetch the records row by row
    while((row = taos_fetch_row(res))) {
        if (totalLen >= 100*1024*1024 - 32000) {
            if (strlen(pThreadInfo->filePath) > 0)
                appendResultBufToFile(databuf, pThreadInfo);
            totalLen = 0;
            memset(databuf, 0, 100*1024*1024);
        }
        num_rows++;
        char  temp[16000] = {0};
        int len = taos_print_row(temp, row, fields, num_fields);
        len += sprintf(temp + len, "\n");
        //printf("query result:%s\n", temp);
        memcpy(databuf + totalLen, temp, len);
        totalLen += len;
        verbosePrint("%s() LN%d, totalLen: %"PRId64"\n",
                __func__, __LINE__, totalLen);
    }

    verbosePrint("%s() LN%d, databuf=%s resultFile=%s\n",
            __func__, __LINE__, databuf, pThreadInfo->filePath);
    if (strlen(pThreadInfo->filePath) > 0) {
        appendResultBufToFile(databuf, pThreadInfo);
    }
    free(databuf);
1262
}
H
hzcheng 已提交
1263

1264
static void selectAndGetResult(
1265
        threadInfo *pThreadInfo, char *command)
1266
{
1267 1268 1269 1270 1271 1272 1273 1274
    if (0 == strncasecmp(g_queryInfo.queryMode, "taosc", strlen("taosc"))) {
        TAOS_RES *res = taos_query(pThreadInfo->taos, command);
        if (res == NULL || taos_errno(res) != 0) {
            errorPrint("%s() LN%d, failed to execute sql:%s, reason:%s\n",
                    __func__, __LINE__, command, taos_errstr(res));
            taos_free_result(res);
            return;
        }
1275

1276 1277
        fetchResult(res, pThreadInfo);
        taos_free_result(res);
1278

1279 1280 1281 1282 1283 1284 1285 1286
    } else if (0 == strncasecmp(g_queryInfo.queryMode, "rest", strlen("rest"))) {
        int retCode = postProceSql(
                g_queryInfo.host, &(g_queryInfo.serv_addr), g_queryInfo.port,
                command,
                pThreadInfo);
        if (0 != retCode) {
            printf("====restful return fail, threadID[%d]\n", pThreadInfo->threadID);
        }
1287

1288 1289 1290 1291
    } else {
        errorPrint("%s() LN%d, unknown query mode: %s\n",
                __func__, __LINE__, g_queryInfo.queryMode);
    }
1292
}
H
hzcheng 已提交
1293

1294
static int32_t rand_bool(){
1295 1296 1297 1298
    static int cursor;
    cursor++;
    cursor = cursor % MAX_PREPARED_RAND;
    return randint[cursor] % 2;
1299 1300 1301
}

static int32_t rand_tinyint(){
1302 1303 1304 1305
    static int cursor;
    cursor++;
    cursor = cursor % MAX_PREPARED_RAND;
    return randint[cursor] % 128;
1306 1307 1308
}

static int32_t rand_smallint(){
1309 1310 1311 1312
    static int cursor;
    cursor++;
    cursor = cursor % MAX_PREPARED_RAND;
    return randint[cursor] % 32767;
1313 1314 1315
}

static int32_t rand_int(){
1316 1317 1318 1319
    static int cursor;
    cursor++;
    cursor = cursor % MAX_PREPARED_RAND;
    return randint[cursor];
1320 1321 1322
}

static int64_t rand_bigint(){
1323 1324 1325 1326
    static int cursor;
    cursor++;
    cursor = cursor % MAX_PREPARED_RAND;
    return randbigint[cursor];
1327 1328 1329
}

static float rand_float(){
1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354
    static int cursor;
    cursor++;
    cursor = cursor % MAX_PREPARED_RAND;
    return randfloat[cursor];
}

static float demo_current_float(){
    static int cursor;
    cursor++;
    cursor = cursor % MAX_PREPARED_RAND;
    return (float)(9.8 + 0.04 * (randint[cursor] % 10) + randfloat[cursor]/1000000000);
}

static int32_t demo_voltage_int(){
    static int cursor;
    cursor++;
    cursor = cursor % MAX_PREPARED_RAND;
    return 215 + randint[cursor] % 10;
}

static float demo_phase_float(){
    static int cursor;
    cursor++;
    cursor = cursor % MAX_PREPARED_RAND;
    return (float)((115 + randint[cursor] % 10 + randfloat[cursor]/1000000000)/360);
1355 1356
}

1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373
#if 0
static const char charNum[] = "0123456789";

static void nonrand_string(char *, int) __attribute__ ((unused));   // reserve for debugging purpose
static void nonrand_string(char *str, int size)
{
  str[0] = 0;
  if (size > 0) {
    int n;
    for (n = 0; n < size; n++) {
      str[n] = charNum[n % 10];
    }
    str[n] = 0;
  }
}
#endif

1374
static const char charset[] = "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ1234567890";
1375

1376
static void rand_string(char *str, int size) {
1377 1378 1379 1380 1381 1382 1383 1384 1385
    str[0] = 0;
    if (size > 0) {
        //--size;
        int n;
        for (n = 0; n < size; n++) {
            int key = abs(rand_tinyint()) % (int)(sizeof(charset) - 1);
            str[n] = charset[key];
        }
        str[n] = 0;
1386 1387 1388 1389
    }
}

static double rand_double() {
1390 1391 1392 1393
    static int cursor;
    cursor++;
    cursor = cursor % MAX_PREPARED_RAND;
    return randdouble[cursor];
1394 1395 1396
}

static void init_rand_data() {
1397 1398 1399 1400 1401 1402
    for (int i = 0; i < MAX_PREPARED_RAND; i++){
        randint[i] = (int)(taosRandom() % 65535);
        randbigint[i] = (int64_t)(taosRandom() % 2147483648);
        randfloat[i] = (float)(taosRandom() / 1000.0);
        randdouble[i] = (double)(taosRandom() / 1000000.0);
    }
1403 1404
}

1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424
#define SHOW_PARSE_RESULT_START()   \
    do { if (g_args.metaFile)  \
        printf("\033[1m\033[40;32m================ %s parse result START ================\033[0m\n", \
                g_args.metaFile); } while(0)

#define SHOW_PARSE_RESULT_END() \
    do { if (g_args.metaFile)   \
        printf("\033[1m\033[40;32m================ %s parse result END================\033[0m\n", \
                g_args.metaFile); } while(0)

#define SHOW_PARSE_RESULT_START_TO_FILE(fp)   \
    do { if (g_args.metaFile)  \
        fprintf(fp, "\033[1m\033[40;32m================ %s parse result START ================\033[0m\n", \
                g_args.metaFile); } while(0)

#define SHOW_PARSE_RESULT_END_TO_FILE(fp) \
    do { if (g_args.metaFile)   \
        fprintf(fp, "\033[1m\033[40;32m================ %s parse result END================\033[0m\n", \
                g_args.metaFile); } while(0)

1425
static int printfInsertMeta() {
1426 1427
    SHOW_PARSE_RESULT_START();

1428 1429 1430 1431 1432
    if (g_args.demo_mode)
        printf("\ntaosdemo is simulating data generated by power equipments monitoring...\n\n");
    else
        printf("\ntaosdemo is simulating random data as you request..\n\n");

1433 1434 1435 1436 1437 1438 1439
    if (g_args.iface != INTERFACE_BUT) {
        // first time if no iface specified
        printf("interface:                  \033[33m%s\033[0m\n",
            (g_args.iface==TAOSC_IFACE)?"taosc":
            (g_args.iface==REST_IFACE)?"rest":"stmt");
    }

1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456
    printf("host:                       \033[33m%s:%u\033[0m\n",
            g_Dbs.host, g_Dbs.port);
    printf("user:                       \033[33m%s\033[0m\n", g_Dbs.user);
    printf("password:                   \033[33m%s\033[0m\n", g_Dbs.password);
    printf("configDir:                  \033[33m%s\033[0m\n", configDir);
    printf("resultFile:                 \033[33m%s\033[0m\n", g_Dbs.resultFile);
    printf("thread num of insert data:  \033[33m%d\033[0m\n", g_Dbs.threadCount);
    printf("thread num of create table: \033[33m%d\033[0m\n",
            g_Dbs.threadCountByCreateTbl);
    printf("top insert interval:        \033[33m%"PRIu64"\033[0m\n",
            g_args.insert_interval);
    printf("number of records per req:  \033[33m%u\033[0m\n",
            g_args.num_of_RPR);
    printf("max sql length:             \033[33m%"PRIu64"\033[0m\n",
            g_args.max_sql_len);

    printf("database count:             \033[33m%d\033[0m\n", g_Dbs.dbCount);
1457

1458 1459 1460 1461 1462 1463 1464 1465 1466
    for (int i = 0; i < g_Dbs.dbCount; i++) {
        printf("database[\033[33m%d\033[0m]:\n", i);
        printf("  database[%d] name:      \033[33m%s\033[0m\n",
                i, g_Dbs.db[i].dbName);
        if (0 == g_Dbs.db[i].drop) {
            printf("  drop:                  \033[33mno\033[0m\n");
        } else {
            printf("  drop:                  \033[33myes\033[0m\n");
        }
1467

1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525
        if (g_Dbs.db[i].dbCfg.blocks > 0) {
            printf("  blocks:                \033[33m%d\033[0m\n",
                    g_Dbs.db[i].dbCfg.blocks);
        }
        if (g_Dbs.db[i].dbCfg.cache > 0) {
            printf("  cache:                 \033[33m%d\033[0m\n",
                    g_Dbs.db[i].dbCfg.cache);
        }
        if (g_Dbs.db[i].dbCfg.days > 0) {
            printf("  days:                  \033[33m%d\033[0m\n",
                    g_Dbs.db[i].dbCfg.days);
        }
        if (g_Dbs.db[i].dbCfg.keep > 0) {
            printf("  keep:                  \033[33m%d\033[0m\n",
                    g_Dbs.db[i].dbCfg.keep);
        }
        if (g_Dbs.db[i].dbCfg.replica > 0) {
            printf("  replica:               \033[33m%d\033[0m\n",
                    g_Dbs.db[i].dbCfg.replica);
        }
        if (g_Dbs.db[i].dbCfg.update > 0) {
            printf("  update:                \033[33m%d\033[0m\n",
                    g_Dbs.db[i].dbCfg.update);
        }
        if (g_Dbs.db[i].dbCfg.minRows > 0) {
            printf("  minRows:               \033[33m%d\033[0m\n",
                    g_Dbs.db[i].dbCfg.minRows);
        }
        if (g_Dbs.db[i].dbCfg.maxRows > 0) {
            printf("  maxRows:               \033[33m%d\033[0m\n",
                    g_Dbs.db[i].dbCfg.maxRows);
        }
        if (g_Dbs.db[i].dbCfg.comp > 0) {
            printf("  comp:                  \033[33m%d\033[0m\n", g_Dbs.db[i].dbCfg.comp);
        }
        if (g_Dbs.db[i].dbCfg.walLevel > 0) {
            printf("  walLevel:              \033[33m%d\033[0m\n",
                    g_Dbs.db[i].dbCfg.walLevel);
        }
        if (g_Dbs.db[i].dbCfg.fsync > 0) {
            printf("  fsync:                 \033[33m%d\033[0m\n",
                    g_Dbs.db[i].dbCfg.fsync);
        }
        if (g_Dbs.db[i].dbCfg.quorum > 0) {
            printf("  quorum:                \033[33m%d\033[0m\n",
                    g_Dbs.db[i].dbCfg.quorum);
        }
        if (g_Dbs.db[i].dbCfg.precision[0] != 0) {
            if ((0 == strncasecmp(g_Dbs.db[i].dbCfg.precision, "ms", 2))
                    || (0 == strncasecmp(g_Dbs.db[i].dbCfg.precision, "us", 2))) {
                printf("  precision:             \033[33m%s\033[0m\n",
                        g_Dbs.db[i].dbCfg.precision);
            } else {
                printf("\033[1m\033[40;31m  precision error:       %s\033[0m\n",
                        g_Dbs.db[i].dbCfg.precision);
                return -1;
            }
        }
1526

1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542
        printf("  super table count:     \033[33m%"PRIu64"\033[0m\n",
                g_Dbs.db[i].superTblCount);
        for (uint64_t j = 0; j < g_Dbs.db[i].superTblCount; j++) {
            printf("  super table[\033[33m%"PRIu64"\033[0m]:\n", j);

            printf("      stbName:           \033[33m%s\033[0m\n",
                    g_Dbs.db[i].superTbls[j].sTblName);

            if (PRE_CREATE_SUBTBL == g_Dbs.db[i].superTbls[j].autoCreateTable) {
                printf("      autoCreateTable:   \033[33m%s\033[0m\n",  "no");
            } else if (AUTO_CREATE_SUBTBL ==
                    g_Dbs.db[i].superTbls[j].autoCreateTable) {
                printf("      autoCreateTable:   \033[33m%s\033[0m\n",  "yes");
            } else {
                printf("      autoCreateTable:   \033[33m%s\033[0m\n",  "error");
            }
1543

1544 1545 1546 1547 1548 1549 1550
            if (TBL_NO_EXISTS == g_Dbs.db[i].superTbls[j].childTblExists) {
                printf("      childTblExists:    \033[33m%s\033[0m\n",  "no");
            } else if (TBL_ALREADY_EXISTS == g_Dbs.db[i].superTbls[j].childTblExists) {
                printf("      childTblExists:    \033[33m%s\033[0m\n",  "yes");
            } else {
                printf("      childTblExists:    \033[33m%s\033[0m\n",  "error");
            }
1551

1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584
            printf("      childTblCount:     \033[33m%"PRId64"\033[0m\n",
                    g_Dbs.db[i].superTbls[j].childTblCount);
            printf("      childTblPrefix:    \033[33m%s\033[0m\n",
                    g_Dbs.db[i].superTbls[j].childTblPrefix);
            printf("      dataSource:        \033[33m%s\033[0m\n",
                    g_Dbs.db[i].superTbls[j].dataSource);
            printf("      iface:             \033[33m%s\033[0m\n",
                    (g_Dbs.db[i].superTbls[j].iface==TAOSC_IFACE)?"taosc":
                    (g_Dbs.db[i].superTbls[j].iface==REST_IFACE)?"rest":"stmt");
            if (g_Dbs.db[i].superTbls[j].childTblLimit > 0) {
                printf("      childTblLimit:     \033[33m%"PRId64"\033[0m\n",
                        g_Dbs.db[i].superTbls[j].childTblLimit);
            }
            if (g_Dbs.db[i].superTbls[j].childTblOffset > 0) {
                printf("      childTblOffset:    \033[33m%"PRIu64"\033[0m\n",
                        g_Dbs.db[i].superTbls[j].childTblOffset);
            }
            printf("      insertRows:        \033[33m%"PRId64"\033[0m\n",
                    g_Dbs.db[i].superTbls[j].insertRows);
            /*
               if (0 == g_Dbs.db[i].superTbls[j].multiThreadWriteOneTbl) {
               printf("      multiThreadWriteOneTbl:  \033[33mno\033[0m\n");
               }else {
               printf("      multiThreadWriteOneTbl:  \033[33myes\033[0m\n");
               }
               */
            printf("      interlaceRows:     \033[33m%u\033[0m\n",
                    g_Dbs.db[i].superTbls[j].interlaceRows);

            if (g_Dbs.db[i].superTbls[j].interlaceRows > 0) {
                printf("      stable insert interval:   \033[33m%"PRIu64"\033[0m\n",
                        g_Dbs.db[i].superTbls[j].insertInterval);
            }
1585

1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636
            printf("      disorderRange:     \033[33m%d\033[0m\n",
                    g_Dbs.db[i].superTbls[j].disorderRange);
            printf("      disorderRatio:     \033[33m%d\033[0m\n",
                    g_Dbs.db[i].superTbls[j].disorderRatio);
            printf("      maxSqlLen:         \033[33m%"PRIu64"\033[0m\n",
                    g_Dbs.db[i].superTbls[j].maxSqlLen);
            printf("      timeStampStep:     \033[33m%"PRId64"\033[0m\n",
                    g_Dbs.db[i].superTbls[j].timeStampStep);
            printf("      startTimestamp:    \033[33m%s\033[0m\n",
                    g_Dbs.db[i].superTbls[j].startTimestamp);
            printf("      sampleFormat:      \033[33m%s\033[0m\n",
                    g_Dbs.db[i].superTbls[j].sampleFormat);
            printf("      sampleFile:        \033[33m%s\033[0m\n",
                    g_Dbs.db[i].superTbls[j].sampleFile);
            printf("      tagsFile:          \033[33m%s\033[0m\n",
                    g_Dbs.db[i].superTbls[j].tagsFile);
            printf("      columnCount:       \033[33m%d\033[0m\n",
                    g_Dbs.db[i].superTbls[j].columnCount);
            for (int k = 0; k < g_Dbs.db[i].superTbls[j].columnCount; k++) {
                //printf("dataType:%s, dataLen:%d\t", g_Dbs.db[i].superTbls[j].columns[k].dataType, g_Dbs.db[i].superTbls[j].columns[k].dataLen);
                if ((0 == strncasecmp(g_Dbs.db[i].superTbls[j].columns[k].dataType,
                                "binary", 6))
                        || (0 == strncasecmp(g_Dbs.db[i].superTbls[j].columns[k].dataType,
                                "nchar", 5))) {
                    printf("column[\033[33m%d\033[0m]:\033[33m%s(%d)\033[0m ", k,
                            g_Dbs.db[i].superTbls[j].columns[k].dataType,
                            g_Dbs.db[i].superTbls[j].columns[k].dataLen);
                } else {
                    printf("column[%d]:\033[33m%s\033[0m ", k,
                            g_Dbs.db[i].superTbls[j].columns[k].dataType);
                }
            }
            printf("\n");

            printf("      tagCount:            \033[33m%d\033[0m\n        ",
                    g_Dbs.db[i].superTbls[j].tagCount);
            for (int k = 0; k < g_Dbs.db[i].superTbls[j].tagCount; k++) {
                //printf("dataType:%s, dataLen:%d\t", g_Dbs.db[i].superTbls[j].tags[k].dataType, g_Dbs.db[i].superTbls[j].tags[k].dataLen);
                if ((0 == strncasecmp(g_Dbs.db[i].superTbls[j].tags[k].dataType,
                                "binary", strlen("binary")))
                        || (0 == strncasecmp(g_Dbs.db[i].superTbls[j].tags[k].dataType,
                                "nchar", strlen("nchar")))) {
                    printf("tag[%d]:\033[33m%s(%d)\033[0m ", k,
                            g_Dbs.db[i].superTbls[j].tags[k].dataType,
                            g_Dbs.db[i].superTbls[j].tags[k].dataLen);
                } else {
                    printf("tag[%d]:\033[33m%s\033[0m ", k,
                            g_Dbs.db[i].superTbls[j].tags[k].dataType);
                }
            }
            printf("\n");
1637
        }
1638
        printf("\n");
1639
    }
1640

1641
    SHOW_PARSE_RESULT_END();
1642

1643
    return 0;
1644 1645 1646
}

static void printfInsertMetaToFile(FILE* fp) {
1647

1648
    SHOW_PARSE_RESULT_START_TO_FILE(fp);
1649

1650 1651 1652 1653 1654 1655 1656 1657 1658
    fprintf(fp, "host:                       %s:%u\n", g_Dbs.host, g_Dbs.port);
    fprintf(fp, "user:                       %s\n", g_Dbs.user);
    fprintf(fp, "configDir:                  %s\n", configDir);
    fprintf(fp, "resultFile:                 %s\n", g_Dbs.resultFile);
    fprintf(fp, "thread num of insert data:  %d\n", g_Dbs.threadCount);
    fprintf(fp, "thread num of create table: %d\n", g_Dbs.threadCountByCreateTbl);
    fprintf(fp, "number of records per req:  %u\n", g_args.num_of_RPR);
    fprintf(fp, "max sql length:             %"PRIu64"\n", g_args.max_sql_len);
    fprintf(fp, "database count:          %d\n", g_Dbs.dbCount);
1659

1660 1661 1662 1663 1664 1665 1666 1667
    for (int i = 0; i < g_Dbs.dbCount; i++) {
        fprintf(fp, "database[%d]:\n", i);
        fprintf(fp, "  database[%d] name:       %s\n", i, g_Dbs.db[i].dbName);
        if (0 == g_Dbs.db[i].drop) {
            fprintf(fp, "  drop:                  no\n");
        }else {
            fprintf(fp, "  drop:                  yes\n");
        }
1668

1669 1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714
        if (g_Dbs.db[i].dbCfg.blocks > 0) {
            fprintf(fp, "  blocks:                %d\n", g_Dbs.db[i].dbCfg.blocks);
        }
        if (g_Dbs.db[i].dbCfg.cache > 0) {
            fprintf(fp, "  cache:                 %d\n", g_Dbs.db[i].dbCfg.cache);
        }
        if (g_Dbs.db[i].dbCfg.days > 0) {
            fprintf(fp, "  days:                  %d\n", g_Dbs.db[i].dbCfg.days);
        }
        if (g_Dbs.db[i].dbCfg.keep > 0) {
            fprintf(fp, "  keep:                  %d\n", g_Dbs.db[i].dbCfg.keep);
        }
        if (g_Dbs.db[i].dbCfg.replica > 0) {
            fprintf(fp, "  replica:               %d\n", g_Dbs.db[i].dbCfg.replica);
        }
        if (g_Dbs.db[i].dbCfg.update > 0) {
            fprintf(fp, "  update:                %d\n", g_Dbs.db[i].dbCfg.update);
        }
        if (g_Dbs.db[i].dbCfg.minRows > 0) {
            fprintf(fp, "  minRows:               %d\n", g_Dbs.db[i].dbCfg.minRows);
        }
        if (g_Dbs.db[i].dbCfg.maxRows > 0) {
            fprintf(fp, "  maxRows:               %d\n", g_Dbs.db[i].dbCfg.maxRows);
        }
        if (g_Dbs.db[i].dbCfg.comp > 0) {
            fprintf(fp, "  comp:                  %d\n", g_Dbs.db[i].dbCfg.comp);
        }
        if (g_Dbs.db[i].dbCfg.walLevel > 0) {
            fprintf(fp, "  walLevel:              %d\n", g_Dbs.db[i].dbCfg.walLevel);
        }
        if (g_Dbs.db[i].dbCfg.fsync > 0) {
            fprintf(fp, "  fsync:                 %d\n", g_Dbs.db[i].dbCfg.fsync);
        }
        if (g_Dbs.db[i].dbCfg.quorum > 0) {
            fprintf(fp, "  quorum:                %d\n", g_Dbs.db[i].dbCfg.quorum);
        }
        if (g_Dbs.db[i].dbCfg.precision[0] != 0) {
            if ((0 == strncasecmp(g_Dbs.db[i].dbCfg.precision, "ms", 2))
                    || (0 == strncasecmp(g_Dbs.db[i].dbCfg.precision, "us", 2))) {
                fprintf(fp, "  precision:             %s\n",
                        g_Dbs.db[i].dbCfg.precision);
            } else {
                fprintf(fp, "  precision error:       %s\n",
                        g_Dbs.db[i].dbCfg.precision);
            }
        }
1715

1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731
        fprintf(fp, "  super table count:     %"PRIu64"\n",
                g_Dbs.db[i].superTblCount);
        for (int j = 0; j < g_Dbs.db[i].superTblCount; j++) {
            fprintf(fp, "  super table[%d]:\n", j);

            fprintf(fp, "      stbName:           %s\n",
                    g_Dbs.db[i].superTbls[j].sTblName);

            if (PRE_CREATE_SUBTBL == g_Dbs.db[i].superTbls[j].autoCreateTable) {
                fprintf(fp, "      autoCreateTable:   %s\n",  "no");
            } else if (AUTO_CREATE_SUBTBL
                    == g_Dbs.db[i].superTbls[j].autoCreateTable) {
                fprintf(fp, "      autoCreateTable:   %s\n",  "yes");
            } else {
                fprintf(fp, "      autoCreateTable:   %s\n",  "error");
            }
1732

1733 1734 1735 1736 1737 1738 1739 1740
            if (TBL_NO_EXISTS == g_Dbs.db[i].superTbls[j].childTblExists) {
                fprintf(fp, "      childTblExists:    %s\n",  "no");
            } else if (TBL_ALREADY_EXISTS
                    == g_Dbs.db[i].superTbls[j].childTblExists) {
                fprintf(fp, "      childTblExists:    %s\n",  "yes");
            } else {
                fprintf(fp, "      childTblExists:    %s\n",  "error");
            }
1741

1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821
            fprintf(fp, "      childTblCount:     %"PRId64"\n",
                    g_Dbs.db[i].superTbls[j].childTblCount);
            fprintf(fp, "      childTblPrefix:    %s\n",
                    g_Dbs.db[i].superTbls[j].childTblPrefix);
            fprintf(fp, "      dataSource:        %s\n",
                    g_Dbs.db[i].superTbls[j].dataSource);
            fprintf(fp, "      iface:             %s\n",
                    (g_Dbs.db[i].superTbls[j].iface==TAOSC_IFACE)?"taosc":
                    (g_Dbs.db[i].superTbls[j].iface==REST_IFACE)?"rest":"stmt");
            fprintf(fp, "      insertRows:        %"PRId64"\n",
                    g_Dbs.db[i].superTbls[j].insertRows);
            fprintf(fp, "      interlace rows:    %u\n",
                    g_Dbs.db[i].superTbls[j].interlaceRows);
            if (g_Dbs.db[i].superTbls[j].interlaceRows > 0) {
                fprintf(fp, "      stable insert interval:   %"PRIu64"\n",
                        g_Dbs.db[i].superTbls[j].insertInterval);
            }
            /*
               if (0 == g_Dbs.db[i].superTbls[j].multiThreadWriteOneTbl) {
               fprintf(fp, "      multiThreadWriteOneTbl:  no\n");
               }else {
               fprintf(fp, "      multiThreadWriteOneTbl:  yes\n");
               }
               */
            fprintf(fp, "      interlaceRows:     %u\n",
                    g_Dbs.db[i].superTbls[j].interlaceRows);
            fprintf(fp, "      disorderRange:     %d\n",
                    g_Dbs.db[i].superTbls[j].disorderRange);
            fprintf(fp, "      disorderRatio:     %d\n",
                    g_Dbs.db[i].superTbls[j].disorderRatio);
            fprintf(fp, "      maxSqlLen:         %"PRIu64"\n",
                    g_Dbs.db[i].superTbls[j].maxSqlLen);

            fprintf(fp, "      timeStampStep:     %"PRId64"\n",
                    g_Dbs.db[i].superTbls[j].timeStampStep);
            fprintf(fp, "      startTimestamp:    %s\n",
                    g_Dbs.db[i].superTbls[j].startTimestamp);
            fprintf(fp, "      sampleFormat:      %s\n",
                    g_Dbs.db[i].superTbls[j].sampleFormat);
            fprintf(fp, "      sampleFile:        %s\n",
                    g_Dbs.db[i].superTbls[j].sampleFile);
            fprintf(fp, "      tagsFile:          %s\n",
                    g_Dbs.db[i].superTbls[j].tagsFile);

            fprintf(fp, "      columnCount:       %d\n        ",
                    g_Dbs.db[i].superTbls[j].columnCount);
            for (int k = 0; k < g_Dbs.db[i].superTbls[j].columnCount; k++) {
                //printf("dataType:%s, dataLen:%d\t", g_Dbs.db[i].superTbls[j].columns[k].dataType, g_Dbs.db[i].superTbls[j].columns[k].dataLen);
                if ((0 == strncasecmp(
                                g_Dbs.db[i].superTbls[j].columns[k].dataType,
                                "binary", strlen("binary")))
                        || (0 == strncasecmp(
                                g_Dbs.db[i].superTbls[j].columns[k].dataType,
                                "nchar", strlen("nchar")))) {
                    fprintf(fp, "column[%d]:%s(%d) ", k,
                            g_Dbs.db[i].superTbls[j].columns[k].dataType,
                            g_Dbs.db[i].superTbls[j].columns[k].dataLen);
                } else {
                    fprintf(fp, "column[%d]:%s ",
                            k, g_Dbs.db[i].superTbls[j].columns[k].dataType);
                }
            }
            fprintf(fp, "\n");

            fprintf(fp, "      tagCount:            %d\n        ",
                    g_Dbs.db[i].superTbls[j].tagCount);
            for (int k = 0; k < g_Dbs.db[i].superTbls[j].tagCount; k++) {
                //printf("dataType:%s, dataLen:%d\t", g_Dbs.db[i].superTbls[j].tags[k].dataType, g_Dbs.db[i].superTbls[j].tags[k].dataLen);
                if ((0 == strncasecmp(g_Dbs.db[i].superTbls[j].tags[k].dataType,
                                "binary", strlen("binary")))
                        || (0 == strncasecmp(g_Dbs.db[i].superTbls[j].tags[k].dataType,
                                "nchar", strlen("nchar")))) {
                    fprintf(fp, "tag[%d]:%s(%d) ",
                            k, g_Dbs.db[i].superTbls[j].tags[k].dataType,
                            g_Dbs.db[i].superTbls[j].tags[k].dataLen);
                } else {
                    fprintf(fp, "tag[%d]:%s ", k, g_Dbs.db[i].superTbls[j].tags[k].dataType);
                }
            }
            fprintf(fp, "\n");
1822
        }
1823
        fprintf(fp, "\n");
1824
    }
1825

1826
    SHOW_PARSE_RESULT_END_TO_FILE(fp);
1827 1828 1829
}

static void printfQueryMeta() {
1830

1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874 1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899
    SHOW_PARSE_RESULT_START();

    printf("host:                    \033[33m%s:%u\033[0m\n",
            g_queryInfo.host, g_queryInfo.port);
    printf("user:                    \033[33m%s\033[0m\n", g_queryInfo.user);
    printf("database name:           \033[33m%s\033[0m\n", g_queryInfo.dbName);

    printf("\n");

    if ((SUBSCRIBE_TEST == g_args.test_mode) || (QUERY_TEST == g_args.test_mode)) {
        printf("specified table query info:                   \n");
        printf("sqlCount:       \033[33m%d\033[0m\n",
                g_queryInfo.specifiedQueryInfo.sqlCount);
        if (g_queryInfo.specifiedQueryInfo.sqlCount > 0) {
            printf("specified tbl query times:\n");
            printf("                \033[33m%"PRIu64"\033[0m\n",
                    g_queryInfo.specifiedQueryInfo.queryTimes);
            printf("query interval: \033[33m%"PRIu64" ms\033[0m\n",
                    g_queryInfo.specifiedQueryInfo.queryInterval);
            printf("top query times:\033[33m%"PRIu64"\033[0m\n", g_args.query_times);
            printf("concurrent:     \033[33m%d\033[0m\n",
                    g_queryInfo.specifiedQueryInfo.concurrent);
            printf("mod:            \033[33m%s\033[0m\n",
                    (g_queryInfo.specifiedQueryInfo.asyncMode)?"async":"sync");
            printf("interval:       \033[33m%"PRIu64"\033[0m\n",
                    g_queryInfo.specifiedQueryInfo.subscribeInterval);
            printf("restart:        \033[33m%d\033[0m\n",
                    g_queryInfo.specifiedQueryInfo.subscribeRestart);
            printf("keepProgress:   \033[33m%d\033[0m\n",
                    g_queryInfo.specifiedQueryInfo.subscribeKeepProgress);

            for (int i = 0; i < g_queryInfo.specifiedQueryInfo.sqlCount; i++) {
                printf("  sql[%d]: \033[33m%s\033[0m\n",
                        i, g_queryInfo.specifiedQueryInfo.sql[i]);
            }
            printf("\n");
        }

        printf("super table query info:\n");
        printf("sqlCount:       \033[33m%d\033[0m\n",
                g_queryInfo.superQueryInfo.sqlCount);

        if (g_queryInfo.superQueryInfo.sqlCount > 0) {
            printf("query interval: \033[33m%"PRIu64"\033[0m\n",
                    g_queryInfo.superQueryInfo.queryInterval);
            printf("threadCnt:      \033[33m%d\033[0m\n",
                    g_queryInfo.superQueryInfo.threadCnt);
            printf("childTblCount:  \033[33m%"PRId64"\033[0m\n",
                    g_queryInfo.superQueryInfo.childTblCount);
            printf("stable name:    \033[33m%s\033[0m\n",
                    g_queryInfo.superQueryInfo.sTblName);
            printf("stb query times:\033[33m%"PRIu64"\033[0m\n",
                    g_queryInfo.superQueryInfo.queryTimes);

            printf("mod:            \033[33m%s\033[0m\n",
                    (g_queryInfo.superQueryInfo.asyncMode)?"async":"sync");
            printf("interval:       \033[33m%"PRIu64"\033[0m\n",
                    g_queryInfo.superQueryInfo.subscribeInterval);
            printf("restart:        \033[33m%d\033[0m\n",
                    g_queryInfo.superQueryInfo.subscribeRestart);
            printf("keepProgress:   \033[33m%d\033[0m\n",
                    g_queryInfo.superQueryInfo.subscribeKeepProgress);

            for (int i = 0; i < g_queryInfo.superQueryInfo.sqlCount; i++) {
                printf("  sql[%d]: \033[33m%s\033[0m\n",
                        i, g_queryInfo.superQueryInfo.sql[i]);
            }
            printf("\n");
        }
1900
    }
1901

1902
    SHOW_PARSE_RESULT_END();
1903 1904
}

1905
static char* formatTimestamp(char* buf, int64_t val, int precision) {
1906 1907 1908 1909 1910 1911 1912 1913
    time_t tt;
    if (precision == TSDB_TIME_PRECISION_NANO) {
        tt = (time_t)(val / 1000000000);
    } else if (precision == TSDB_TIME_PRECISION_MICRO) {
        tt = (time_t)(val / 1000000);
    } else {
        tt = (time_t)(val / 1000);
    }
1914

1915 1916 1917 1918 1919 1920 1921
    /* comment out as it make testcases like select_with_tags.sim fail.
       but in windows, this may cause the call to localtime crash if tt < 0,
       need to find a better solution.
       if (tt < 0) {
       tt = 0;
       }
       */
1922 1923

#ifdef WINDOWS
1924
    if (tt < 0) tt = 0;
1925 1926
#endif

1927 1928
    struct tm* ptm = localtime(&tt);
    size_t pos = strftime(buf, 32, "%Y-%m-%d %H:%M:%S", ptm);
1929

1930 1931 1932 1933 1934 1935 1936
    if (precision == TSDB_TIME_PRECISION_NANO) {
        sprintf(buf + pos, ".%09d", (int)(val % 1000000000));
    } else if (precision == TSDB_TIME_PRECISION_MICRO) {
        sprintf(buf + pos, ".%06d", (int)(val % 1000000));
    } else {
        sprintf(buf + pos, ".%03d", (int)(val % 1000));
    }
1937

1938
    return buf;
1939 1940
}

1941 1942 1943
static void xDumpFieldToFile(FILE* fp, const char* val,
        TAOS_FIELD* field, int32_t length, int precision) {

1944 1945 1946 1947
    if (val == NULL) {
        fprintf(fp, "%s", TSDB_DATA_NULL_STR);
        return;
    }
1948

1949 1950 1951 1952 1953 1954 1955 1956 1957 1958 1959 1960 1961 1962 1963 1964 1965 1966 1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980 1981 1982 1983 1984
    char buf[TSDB_MAX_BYTES_PER_ROW];
    switch (field->type) {
        case TSDB_DATA_TYPE_BOOL:
            fprintf(fp, "%d", ((((int32_t)(*((char *)val))) == 1) ? 1 : 0));
            break;
        case TSDB_DATA_TYPE_TINYINT:
            fprintf(fp, "%d", *((int8_t *)val));
            break;
        case TSDB_DATA_TYPE_SMALLINT:
            fprintf(fp, "%d", *((int16_t *)val));
            break;
        case TSDB_DATA_TYPE_INT:
            fprintf(fp, "%d", *((int32_t *)val));
            break;
        case TSDB_DATA_TYPE_BIGINT:
            fprintf(fp, "%" PRId64, *((int64_t *)val));
            break;
        case TSDB_DATA_TYPE_FLOAT:
            fprintf(fp, "%.5f", GET_FLOAT_VAL(val));
            break;
        case TSDB_DATA_TYPE_DOUBLE:
            fprintf(fp, "%.9f", GET_DOUBLE_VAL(val));
            break;
        case TSDB_DATA_TYPE_BINARY:
        case TSDB_DATA_TYPE_NCHAR:
            memcpy(buf, val, length);
            buf[length] = 0;
            fprintf(fp, "\'%s\'", buf);
            break;
        case TSDB_DATA_TYPE_TIMESTAMP:
            formatTimestamp(buf, *(int64_t*)val, precision);
            fprintf(fp, "'%s'", buf);
            break;
        default:
            break;
    }
1985 1986 1987
}

static int xDumpResultToFile(const char* fname, TAOS_RES* tres) {
1988 1989 1990 1991
    TAOS_ROW row = taos_fetch_row(tres);
    if (row == NULL) {
        return 0;
    }
1992

1993 1994 1995 1996 1997 1998
    FILE* fp = fopen(fname, "at");
    if (fp == NULL) {
        errorPrint("%s() LN%d, failed to open file: %s\n",
                __func__, __LINE__, fname);
        return -1;
    }
1999

2000 2001 2002
    int num_fields = taos_num_fields(tres);
    TAOS_FIELD *fields = taos_fetch_fields(tres);
    int precision = taos_result_precision(tres);
2003

2004 2005 2006 2007 2008
    for (int col = 0; col < num_fields; col++) {
        if (col > 0) {
            fprintf(fp, ",");
        }
        fprintf(fp, "%s", fields[col].name);
2009 2010 2011
    }
    fputc('\n', fp);

2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025 2026
    int numOfRows = 0;
    do {
        int32_t* length = taos_fetch_lengths(tres);
        for (int i = 0; i < num_fields; i++) {
            if (i > 0) {
                fputc(',', fp);
            }
            xDumpFieldToFile(fp,
                    (const char*)row[i], fields +i, length[i], precision);
        }
        fputc('\n', fp);

        numOfRows++;
        row = taos_fetch_row(tres);
    } while( row != NULL);
2027

2028
    fclose(fp);
2029

2030
    return numOfRows;
2031 2032
}

2033
static int getDbFromServer(TAOS * taos, SDbInfo** dbInfos) {
2034 2035 2036
    TAOS_RES * res;
    TAOS_ROW row = NULL;
    int count = 0;
2037

2038 2039
    res = taos_query(taos, "show databases;");
    int32_t code = taos_errno(res);
2040

2041 2042 2043 2044
    if (code != 0) {
        errorPrint( "failed to run <show databases>, reason: %s\n",
                taos_errstr(res));
        return -1;
2045
    }
2046

2047
    TAOS_FIELD *fields = taos_fetch_fields(res);
2048

2049 2050 2051 2052 2053 2054
    while((row = taos_fetch_row(res)) != NULL) {
        // sys database name : 'log'
        if (strncasecmp(row[TSDB_SHOW_DB_NAME_INDEX], "log",
                    fields[TSDB_SHOW_DB_NAME_INDEX].bytes) == 0) {
            continue;
        }
2055

2056 2057 2058 2059 2060 2061 2062 2063 2064 2065 2066 2067 2068 2069 2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094 2095 2096 2097
        dbInfos[count] = (SDbInfo *)calloc(1, sizeof(SDbInfo));
        if (dbInfos[count] == NULL) {
            errorPrint( "failed to allocate memory for some dbInfo[%d]\n", count);
            return -1;
        }

        tstrncpy(dbInfos[count]->name, (char *)row[TSDB_SHOW_DB_NAME_INDEX],
                fields[TSDB_SHOW_DB_NAME_INDEX].bytes);
        formatTimestamp(dbInfos[count]->create_time,
                *(int64_t*)row[TSDB_SHOW_DB_CREATED_TIME_INDEX],
                TSDB_TIME_PRECISION_MILLI);
        dbInfos[count]->ntables = *((int64_t *)row[TSDB_SHOW_DB_NTABLES_INDEX]);
        dbInfos[count]->vgroups = *((int32_t *)row[TSDB_SHOW_DB_VGROUPS_INDEX]);
        dbInfos[count]->replica = *((int16_t *)row[TSDB_SHOW_DB_REPLICA_INDEX]);
        dbInfos[count]->quorum = *((int16_t *)row[TSDB_SHOW_DB_QUORUM_INDEX]);
        dbInfos[count]->days = *((int16_t *)row[TSDB_SHOW_DB_DAYS_INDEX]);

        tstrncpy(dbInfos[count]->keeplist, (char *)row[TSDB_SHOW_DB_KEEP_INDEX],
                fields[TSDB_SHOW_DB_KEEP_INDEX].bytes);
        dbInfos[count]->cache = *((int32_t *)row[TSDB_SHOW_DB_CACHE_INDEX]);
        dbInfos[count]->blocks = *((int32_t *)row[TSDB_SHOW_DB_BLOCKS_INDEX]);
        dbInfos[count]->minrows = *((int32_t *)row[TSDB_SHOW_DB_MINROWS_INDEX]);
        dbInfos[count]->maxrows = *((int32_t *)row[TSDB_SHOW_DB_MAXROWS_INDEX]);
        dbInfos[count]->wallevel = *((int8_t *)row[TSDB_SHOW_DB_WALLEVEL_INDEX]);
        dbInfos[count]->fsync = *((int32_t *)row[TSDB_SHOW_DB_FSYNC_INDEX]);
        dbInfos[count]->comp = (int8_t)(*((int8_t *)row[TSDB_SHOW_DB_COMP_INDEX]));
        dbInfos[count]->cachelast =
            (int8_t)(*((int8_t *)row[TSDB_SHOW_DB_CACHELAST_INDEX]));

        tstrncpy(dbInfos[count]->precision,
                (char *)row[TSDB_SHOW_DB_PRECISION_INDEX],
                fields[TSDB_SHOW_DB_PRECISION_INDEX].bytes);
        dbInfos[count]->update = *((int8_t *)row[TSDB_SHOW_DB_UPDATE_INDEX]);
        tstrncpy(dbInfos[count]->status, (char *)row[TSDB_SHOW_DB_STATUS_INDEX],
                fields[TSDB_SHOW_DB_STATUS_INDEX].bytes);

        count++;
        if (count > MAX_DATABASE_COUNT) {
            errorPrint("%s() LN%d, The database count overflow than %d\n",
                    __func__, __LINE__, MAX_DATABASE_COUNT);
            break;
        }
2098 2099
    }

2100
    return count;
2101 2102
}

2103 2104
static void printfDbInfoForQueryToFile(
        char* filename, SDbInfo* dbInfos, int index) {
2105

2106 2107
    if (filename[0] == 0)
        return;
2108

2109 2110 2111 2112 2113
    FILE *fp = fopen(filename, "at");
    if (fp == NULL) {
        errorPrint( "failed to open file: %s\n", filename);
        return;
    }
2114

2115 2116 2117 2118 2119 2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135
    fprintf(fp, "================ database[%d] ================\n", index);
    fprintf(fp, "name: %s\n", dbInfos->name);
    fprintf(fp, "created_time: %s\n", dbInfos->create_time);
    fprintf(fp, "ntables: %"PRId64"\n", dbInfos->ntables);
    fprintf(fp, "vgroups: %d\n", dbInfos->vgroups);
    fprintf(fp, "replica: %d\n", dbInfos->replica);
    fprintf(fp, "quorum: %d\n", dbInfos->quorum);
    fprintf(fp, "days: %d\n", dbInfos->days);
    fprintf(fp, "keep0,keep1,keep(D): %s\n", dbInfos->keeplist);
    fprintf(fp, "cache(MB): %d\n", dbInfos->cache);
    fprintf(fp, "blocks: %d\n", dbInfos->blocks);
    fprintf(fp, "minrows: %d\n", dbInfos->minrows);
    fprintf(fp, "maxrows: %d\n", dbInfos->maxrows);
    fprintf(fp, "wallevel: %d\n", dbInfos->wallevel);
    fprintf(fp, "fsync: %d\n", dbInfos->fsync);
    fprintf(fp, "comp: %d\n", dbInfos->comp);
    fprintf(fp, "cachelast: %d\n", dbInfos->cachelast);
    fprintf(fp, "precision: %s\n", dbInfos->precision);
    fprintf(fp, "update: %d\n", dbInfos->update);
    fprintf(fp, "status: %s\n", dbInfos->status);
    fprintf(fp, "\n");
2136

2137
    fclose(fp);
2138 2139 2140
}

static void printfQuerySystemInfo(TAOS * taos) {
2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155
    char filename[MAX_QUERY_SQL_LENGTH+1] = {0};
    char buffer[MAX_QUERY_SQL_LENGTH+1] = {0};
    TAOS_RES* res;

    time_t t;
    struct tm* lt;
    time(&t);
    lt = localtime(&t);
    snprintf(filename, MAX_QUERY_SQL_LENGTH, "querySystemInfo-%d-%d-%d %d:%d:%d",
            lt->tm_year+1900, lt->tm_mon, lt->tm_mday, lt->tm_hour, lt->tm_min,
            lt->tm_sec);

    // show variables
    res = taos_query(taos, "show variables;");
    //fetchResult(res, filename);
2156
    xDumpResultToFile(filename, res);
2157

2158 2159
    // show dnodes
    res = taos_query(taos, "show dnodes;");
2160
    xDumpResultToFile(filename, res);
2161
    //fetchResult(res, filename);
2162

2163 2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191
    // show databases
    res = taos_query(taos, "show databases;");
    SDbInfo** dbInfos = (SDbInfo **)calloc(MAX_DATABASE_COUNT, sizeof(SDbInfo *));
    if (dbInfos == NULL) {
        errorPrint("%s() LN%d, failed to allocate memory\n", __func__, __LINE__);
        return;
    }
    int dbCount = getDbFromServer(taos, dbInfos);
    if (dbCount <= 0) {
        free(dbInfos);
        return;
    }

    for (int i = 0; i < dbCount; i++) {
        // printf database info
        printfDbInfoForQueryToFile(filename, dbInfos[i], i);

        // show db.vgroups
        snprintf(buffer, MAX_QUERY_SQL_LENGTH, "show %s.vgroups;", dbInfos[i]->name);
        res = taos_query(taos, buffer);
        xDumpResultToFile(filename, res);

        // show db.stables
        snprintf(buffer, MAX_QUERY_SQL_LENGTH, "show %s.stables;", dbInfos[i]->name);
        res = taos_query(taos, buffer);
        xDumpResultToFile(filename, res);

        free(dbInfos[i]);
    }
2192

2193
    free(dbInfos);
2194 2195
}

2196
static int postProceSql(char *host, struct sockaddr_in *pServAddr, uint16_t port,
2197
        char* sqlstr, threadInfo *pThreadInfo)
2198
{
2199
    char *req_fmt = "POST %s HTTP/1.1\r\nHost: %s:%d\r\nAccept: */*\r\nAuthorization: Basic %s\r\nContent-Length: %d\r\nContent-Type: application/x-www-form-urlencoded\r\n\r\n%s";
2200 2201 2202

    char *url = "/rest/sql";

2203
    int bytes, sent, received, req_str_len, resp_len;
2204 2205 2206
    char *request_buf;
    char response_buf[RESP_BUF_LEN];
    uint16_t rest_port = port + TSDB_PORT_HTTP;
2207

2208 2209 2210
    int req_buf_len = strlen(sqlstr) + REQ_EXTRA_BUF_LEN;

    request_buf = malloc(req_buf_len);
2211 2212 2213 2214
    if (NULL == request_buf) {
      errorPrint("%s", "ERROR, cannot allocate memory.\n");
      exit(EXIT_FAILURE);
    }
2215

2216 2217 2218 2219 2220 2221 2222 2223 2224 2225 2226
    char userpass_buf[INPUT_BUF_LEN];
    int mod_table[] = {0, 2, 1};

    static char base64[] = {'A', 'B', 'C', 'D', 'E', 'F', 'G', 'H',
      'I', 'J', 'K', 'L', 'M', 'N', 'O', 'P',
      'Q', 'R', 'S', 'T', 'U', 'V', 'W', 'X',
      'Y', 'Z', 'a', 'b', 'c', 'd', 'e', 'f',
      'g', 'h', 'i', 'j', 'k', 'l', 'm', 'n',
      'o', 'p', 'q', 'r', 's', 't', 'u', 'v',
      'w', 'x', 'y', 'z', '0', '1', '2', '3',
      '4', '5', '6', '7', '8', '9', '+', '/'};
2227

2228 2229 2230 2231 2232 2233
    snprintf(userpass_buf, INPUT_BUF_LEN, "%s:%s",
        g_Dbs.user, g_Dbs.password);
    size_t userpass_buf_len = strlen(userpass_buf);
    size_t encoded_len = 4 * ((userpass_buf_len +2) / 3);

    char base64_buf[INPUT_BUF_LEN];
2234
#ifdef WINDOWS
2235
    WSADATA wsaData;
2236
    WSAStartup(MAKEWORD(2, 2), &wsaData);
2237 2238 2239 2240
    SOCKET sockfd;
#else
    int sockfd;
#endif
2241
    sockfd = socket(AF_INET, SOCK_STREAM, 0);
2242
    if (sockfd < 0) {
2243
#ifdef WINDOWS
2244
        errorPrint( "Could not create socket : %d" , WSAGetLastError());
2245
#endif
2246
        debugPrint("%s() LN%d, sockfd=%d\n", __func__, __LINE__, sockfd);
2247
        free(request_buf);
2248
        ERROR_EXIT("ERROR opening socket");
2249
    }
2250

2251
    int retConn = connect(sockfd, (struct sockaddr *)pServAddr, sizeof(struct sockaddr));
2252 2253
    debugPrint("%s() LN%d connect() return %d\n", __func__, __LINE__, retConn);
    if (retConn < 0) {
2254
        free(request_buf);
2255
        ERROR_EXIT("ERROR connecting");
2256
    }
2257

2258 2259 2260
    memset(base64_buf, 0, INPUT_BUF_LEN);

    for (int n = 0, m = 0; n < userpass_buf_len;) {
2261
      uint32_t oct_a = n < userpass_buf_len ?
2262
        (unsigned char) userpass_buf[n++]:0;
2263
      uint32_t oct_b = n < userpass_buf_len ?
2264
        (unsigned char) userpass_buf[n++]:0;
2265
      uint32_t oct_c = n < userpass_buf_len ?
2266 2267 2268 2269 2270 2271 2272 2273 2274 2275 2276 2277
        (unsigned char) userpass_buf[n++]:0;
      uint32_t triple = (oct_a << 0x10) + (oct_b << 0x08) + oct_c;

      base64_buf[m++] = base64[(triple >> 3* 6) & 0x3f];
      base64_buf[m++] = base64[(triple >> 2* 6) & 0x3f];
      base64_buf[m++] = base64[(triple >> 1* 6) & 0x3f];
      base64_buf[m++] = base64[(triple >> 0* 6) & 0x3f];
    }

    for (int l = 0; l < mod_table[userpass_buf_len % 3]; l++)
      base64_buf[encoded_len - 1 - l] = '=';

2278 2279
    debugPrint("%s() LN%d: auth string base64 encoded: %s\n",
            __func__, __LINE__, base64_buf);
2280 2281
    char *auth = base64_buf;

2282 2283 2284
    int r = snprintf(request_buf,
            req_buf_len,
            req_fmt, url, host, rest_port,
2285 2286 2287 2288 2289
            auth, strlen(sqlstr), sqlstr);
    if (r >= req_buf_len) {
        free(request_buf);
        ERROR_EXIT("ERROR too long request");
    }
2290
    verbosePrint("%s() LN%d: Request:\n%s\n", __func__, __LINE__, request_buf);
2291

2292
    req_str_len = strlen(request_buf);
2293 2294
    sent = 0;
    do {
2295 2296 2297
#ifdef WINDOWS
        bytes = send(sockfd, request_buf + sent, req_str_len - sent, 0);
#else
2298
        bytes = write(sockfd, request_buf + sent, req_str_len - sent);
2299
#endif
2300
        if (bytes < 0)
2301
            ERROR_EXIT("ERROR writing message to socket");
2302 2303 2304
        if (bytes == 0)
            break;
        sent+=bytes;
2305
    } while(sent < req_str_len);
2306

2307 2308
    memset(response_buf, 0, RESP_BUF_LEN);
    resp_len = sizeof(response_buf) - 1;
2309 2310
    received = 0;
    do {
2311 2312 2313
#ifdef WINDOWS
        bytes = recv(sockfd, response_buf + received, resp_len - received, 0);
#else
2314
        bytes = read(sockfd, response_buf + received, resp_len - received);
2315
#endif
2316 2317
        if (bytes < 0) {
            free(request_buf);
2318
            ERROR_EXIT("ERROR reading response from socket");
2319
        }
2320 2321
        if (bytes == 0)
            break;
2322
        received += bytes;
2323
    } while(received < resp_len);
2324

2325 2326
    if (received == resp_len) {
        free(request_buf);
2327
        ERROR_EXIT("ERROR storing complete response from socket");
2328
    }
2329

2330
    response_buf[RESP_BUF_LEN - 1] = '\0';
2331 2332
    printf("Response:\n%s\n", response_buf);

2333 2334
    if (strlen(pThreadInfo->filePath) > 0) {
       appendResultBufToFile(response_buf, pThreadInfo);
2335 2336
    }

2337
    free(request_buf);
2338 2339 2340 2341
#ifdef WINDOWS
    closesocket(sockfd);
    WSACleanup();
#else
2342
    close(sockfd);
2343
#endif
2344 2345 2346 2347

    return 0;
}

2348
static char* getTagValueFromTagSample(SSuperTable* stbInfo, int tagUsePos) {
2349 2350 2351 2352 2353 2354
    char*  dataBuf = (char*)calloc(TSDB_MAX_SQL_LEN+1, 1);
    if (NULL == dataBuf) {
        errorPrint("%s() LN%d, calloc failed! size:%d\n",
                __func__, __LINE__, TSDB_MAX_SQL_LEN+1);
        return NULL;
    }
2355

2356 2357 2358
    int    dataLen = 0;
    dataLen += snprintf(dataBuf + dataLen, TSDB_MAX_SQL_LEN - dataLen,
            "(%s)", stbInfo->tagDataBuf + stbInfo->lenOfTagOfOneRow * tagUsePos);
2359

2360
    return dataBuf;
2361 2362
}

2363
static char* generateTagVaulesForStb(SSuperTable* stbInfo, int32_t tableSeq) {
2364 2365 2366
    char*  dataBuf = (char*)calloc(TSDB_MAX_SQL_LEN+1, 1);
    if (NULL == dataBuf) {
        printf("calloc failed! size:%d\n", TSDB_MAX_SQL_LEN+1);
2367
        return NULL;
2368
    }
2369

2370 2371 2372 2373 2374 2375 2376 2377 2378 2379 2380 2381 2382
    int    dataLen = 0;
    dataLen += snprintf(dataBuf + dataLen, TSDB_MAX_SQL_LEN - dataLen, "(");
    for (int i = 0; i < stbInfo->tagCount; i++) {
        if ((0 == strncasecmp(stbInfo->tags[i].dataType,
                        "binary", strlen("binary")))
                || (0 == strncasecmp(stbInfo->tags[i].dataType,
                        "nchar", strlen("nchar")))) {
            if (stbInfo->tags[i].dataLen > TSDB_MAX_BINARY_LEN) {
                printf("binary or nchar length overflow, max size:%u\n",
                        (uint32_t)TSDB_MAX_BINARY_LEN);
                tmfree(dataBuf);
                return NULL;
            }
2383

2384 2385 2386 2387 2388 2389 2390 2391 2392 2393 2394 2395 2396 2397 2398 2399 2400 2401 2402
            int tagBufLen = stbInfo->tags[i].dataLen + 1;
            char* buf = (char*)calloc(tagBufLen, 1);
            if (NULL == buf) {
                printf("calloc failed! size:%d\n", stbInfo->tags[i].dataLen);
                tmfree(dataBuf);
                return NULL;
            }

            if (tableSeq % 2) {
                tstrncpy(buf, "beijing", tagBufLen);
            } else {
                tstrncpy(buf, "shanghai", tagBufLen);
            }
            //rand_string(buf, stbInfo->tags[i].dataLen);
            dataLen += snprintf(dataBuf + dataLen, TSDB_MAX_SQL_LEN - dataLen,
                    "\'%s\', ", buf);
            tmfree(buf);
        } else if (0 == strncasecmp(stbInfo->tags[i].dataType,
                    "int", strlen("int"))) {
2403 2404 2405 2406 2407 2408 2409
            if ((g_args.demo_mode) && (i == 0)) {
                dataLen += snprintf(dataBuf + dataLen,
                        TSDB_MAX_SQL_LEN - dataLen,
                    "%d, ", tableSeq % 10);
            } else {
                dataLen += snprintf(dataBuf + dataLen,
                        TSDB_MAX_SQL_LEN - dataLen,
2410
                    "%d, ", tableSeq);
2411
            }
2412 2413 2414 2415 2416 2417 2418 2419 2420 2421 2422 2423 2424 2425 2426 2427 2428 2429 2430 2431 2432 2433 2434 2435 2436 2437 2438 2439 2440 2441 2442 2443 2444
        } else if (0 == strncasecmp(stbInfo->tags[i].dataType,
                    "bigint", strlen("bigint"))) {
            dataLen += snprintf(dataBuf + dataLen, TSDB_MAX_SQL_LEN - dataLen,
                    "%"PRId64", ", rand_bigint());
        }  else if (0 == strncasecmp(stbInfo->tags[i].dataType,
                    "float", strlen("float"))) {
            dataLen += snprintf(dataBuf + dataLen, TSDB_MAX_SQL_LEN - dataLen,
                    "%f, ", rand_float());
        }  else if (0 == strncasecmp(stbInfo->tags[i].dataType,
                    "double", strlen("double"))) {
            dataLen += snprintf(dataBuf + dataLen, TSDB_MAX_SQL_LEN - dataLen,
                    "%f, ", rand_double());
        }  else if (0 == strncasecmp(stbInfo->tags[i].dataType,
                    "smallint", strlen("smallint"))) {
            dataLen += snprintf(dataBuf + dataLen, TSDB_MAX_SQL_LEN - dataLen,
                    "%d, ", rand_smallint());
        }  else if (0 == strncasecmp(stbInfo->tags[i].dataType,
                    "tinyint", strlen("tinyint"))) {
            dataLen += snprintf(dataBuf + dataLen, TSDB_MAX_SQL_LEN - dataLen,
                    "%d, ", rand_tinyint());
        }  else if (0 == strncasecmp(stbInfo->tags[i].dataType,
                    "bool", strlen("bool"))) {
            dataLen += snprintf(dataBuf + dataLen, TSDB_MAX_SQL_LEN - dataLen,
                    "%d, ", rand_bool());
        }  else if (0 == strncasecmp(stbInfo->tags[i].dataType,
                    "timestamp", strlen("timestamp"))) {
            dataLen += snprintf(dataBuf + dataLen, TSDB_MAX_SQL_LEN - dataLen,
                    "%"PRId64", ", rand_bigint());
        }  else {
            printf("No support data type: %s\n", stbInfo->tags[i].dataType);
            tmfree(dataBuf);
            return NULL;
        }
2445
    }
2446

2447 2448 2449
    dataLen -= 2;
    dataLen += snprintf(dataBuf + dataLen, TSDB_MAX_SQL_LEN - dataLen, ")");
    return dataBuf;
2450 2451
}

2452
static int calcRowLen(SSuperTable*  superTbls) {
2453 2454
  int colIndex;
  int  lenOfOneRow = 0;
2455

2456 2457
  for (colIndex = 0; colIndex < superTbls->columnCount; colIndex++) {
    char* dataType = superTbls->columns[colIndex].dataType;
2458

2459 2460 2461 2462 2463 2464 2465 2466 2467 2468 2469 2470 2471 2472 2473 2474
    if (strcasecmp(dataType, "BINARY") == 0) {
      lenOfOneRow += superTbls->columns[colIndex].dataLen + 3;
    } else if (strcasecmp(dataType, "NCHAR") == 0) {
      lenOfOneRow += superTbls->columns[colIndex].dataLen + 3;
    } else if (strcasecmp(dataType, "INT") == 0)  {
      lenOfOneRow += 11;
    } else if (strcasecmp(dataType, "BIGINT") == 0)  {
      lenOfOneRow += 21;
    } else if (strcasecmp(dataType, "SMALLINT") == 0)  {
      lenOfOneRow += 6;
    } else if (strcasecmp(dataType, "TINYINT") == 0)  {
      lenOfOneRow += 4;
    } else if (strcasecmp(dataType, "BOOL") == 0)  {
      lenOfOneRow += 6;
    } else if (strcasecmp(dataType, "FLOAT") == 0) {
      lenOfOneRow += 22;
2475
    } else if (strcasecmp(dataType, "DOUBLE") == 0) {
2476
      lenOfOneRow += 42;
2477
    }  else if (strcasecmp(dataType, "TIMESTAMP") == 0) {
2478 2479 2480 2481 2482 2483 2484 2485 2486 2487 2488 2489 2490
      lenOfOneRow += 21;
    } else {
      printf("get error data type : %s\n", dataType);
      exit(-1);
    }
  }

  superTbls->lenOfOneRow = lenOfOneRow + 20; // timestamp

  int tagIndex;
  int lenOfTagOfOneRow = 0;
  for (tagIndex = 0; tagIndex < superTbls->tagCount; tagIndex++) {
    char* dataType = superTbls->tags[tagIndex].dataType;
2491

2492 2493 2494 2495 2496 2497 2498 2499 2500 2501 2502 2503 2504 2505 2506 2507
    if (strcasecmp(dataType, "BINARY") == 0) {
      lenOfTagOfOneRow += superTbls->tags[tagIndex].dataLen + 3;
    } else if (strcasecmp(dataType, "NCHAR") == 0) {
      lenOfTagOfOneRow += superTbls->tags[tagIndex].dataLen + 3;
    } else if (strcasecmp(dataType, "INT") == 0)  {
      lenOfTagOfOneRow += superTbls->tags[tagIndex].dataLen + 11;
    } else if (strcasecmp(dataType, "BIGINT") == 0)  {
      lenOfTagOfOneRow += superTbls->tags[tagIndex].dataLen + 21;
    } else if (strcasecmp(dataType, "SMALLINT") == 0)  {
      lenOfTagOfOneRow += superTbls->tags[tagIndex].dataLen + 6;
    } else if (strcasecmp(dataType, "TINYINT") == 0)  {
      lenOfTagOfOneRow += superTbls->tags[tagIndex].dataLen + 4;
    } else if (strcasecmp(dataType, "BOOL") == 0)  {
      lenOfTagOfOneRow += superTbls->tags[tagIndex].dataLen + 6;
    } else if (strcasecmp(dataType, "FLOAT") == 0) {
      lenOfTagOfOneRow += superTbls->tags[tagIndex].dataLen + 22;
2508
    } else if (strcasecmp(dataType, "DOUBLE") == 0) {
2509 2510 2511 2512 2513 2514 2515 2516
      lenOfTagOfOneRow += superTbls->tags[tagIndex].dataLen + 42;
    } else {
      printf("get error tag type : %s\n", dataType);
      exit(-1);
    }
  }

  superTbls->lenOfTagOfOneRow = lenOfTagOfOneRow;
2517

2518 2519 2520 2521
  return 0;
}


2522 2523
static int getChildNameOfSuperTableWithLimitAndOffset(TAOS * taos,
        char* dbName, char* sTblName, char** childTblNameOfSuperTbl,
2524
        int64_t* childTblCountOfSuperTbl, int64_t limit, uint64_t offset) {
2525

2526
  char command[BUFFER_SIZE] = "\0";
2527 2528
  char limitBuf[100] = "\0";

2529
  TAOS_RES * res;
2530 2531 2532
  TAOS_ROW row = NULL;

  char* childTblName = *childTblNameOfSuperTbl;
2533 2534

  if (offset >= 0) {
2535
    snprintf(limitBuf, 100, " limit %"PRId64" offset %"PRIu64"",
2536
            limit, offset);
2537 2538
  }

2539
  //get all child table name use cmd: select tbname from superTblName;
2540 2541
  snprintf(command, BUFFER_SIZE, "select tbname from %s.%s %s",
          dbName, sTblName, limitBuf);
2542

2543
  res = taos_query(taos, command);
2544 2545 2546 2547
  int32_t code = taos_errno(res);
  if (code != 0) {
    taos_free_result(res);
    taos_close(taos);
2548 2549
    errorPrint("%s() LN%d, failed to run command %s\n",
           __func__, __LINE__, command);
2550 2551 2552
    exit(-1);
  }

2553 2554
  int64_t childTblCount = (limit < 0)?10000:limit;
  int64_t count = 0;
2555 2556 2557 2558 2559 2560 2561 2562 2563 2564
  if (childTblName == NULL) {
    childTblName = (char*)calloc(1, childTblCount * TSDB_TABLE_NAME_LEN);
    if (NULL ==  childTblName) {
    taos_free_result(res);
        taos_close(taos);
        errorPrint("%s() LN%d, failed to allocate memory!\n", __func__, __LINE__);
        exit(-1);
    }
  }

2565
  char* pTblName = childTblName;
2566
  while((row = taos_fetch_row(res)) != NULL) {
2567
    int32_t* len = taos_fetch_lengths(res);
2568 2569 2570 2571 2572 2573 2574

    if (0 == strlen((char *)row[0])) {
        errorPrint("%s() LN%d, No.%"PRId64" table return empty name\n",
            __func__, __LINE__, count);
        exit(-1);
    }

2575
    tstrncpy(pTblName, (char *)row[0], len[0]+1);
2576 2577 2578
    //printf("==== sub table name: %s\n", pTblName);
    count++;
    if (count >= childTblCount - 1) {
2579 2580
      char *tmp = realloc(childTblName,
              (size_t)childTblCount*1.5*TSDB_TABLE_NAME_LEN+1);
2581 2582 2583
      if (tmp != NULL) {
        childTblName = tmp;
        childTblCount = (int)(childTblCount*1.5);
2584 2585
        memset(childTblName + count*TSDB_TABLE_NAME_LEN, 0,
                (size_t)((childTblCount-count)*TSDB_TABLE_NAME_LEN));
2586 2587
      } else {
        // exit, if allocate more memory failed
2588 2589
        errorPrint("%s() LN%d, realloc fail for save child table name of %s.%s\n",
               __func__, __LINE__, dbName, sTblName);
2590 2591 2592 2593 2594 2595
        tmfree(childTblName);
        taos_free_result(res);
        taos_close(taos);
        exit(-1);
      }
    }
2596
    pTblName = childTblName + count * TSDB_TABLE_NAME_LEN;
2597
  }
2598

2599 2600 2601 2602 2603 2604 2605
  *childTblCountOfSuperTbl = count;
  *childTblNameOfSuperTbl  = childTblName;

  taos_free_result(res);
  return 0;
}

2606 2607
static int getAllChildNameOfSuperTable(TAOS * taos, char* dbName,
        char* sTblName, char** childTblNameOfSuperTbl,
2608
        int64_t* childTblCountOfSuperTbl) {
2609 2610 2611

    return getChildNameOfSuperTableWithLimitAndOffset(taos, dbName, sTblName,
            childTblNameOfSuperTbl, childTblCountOfSuperTbl,
2612
            -1, 0);
2613 2614
}

2615 2616
static int getSuperTableFromServer(TAOS * taos, char* dbName,
        SSuperTable*  superTbls) {
2617

2618
  char command[BUFFER_SIZE] = "\0";
2619
  TAOS_RES * res;
2620 2621
  TAOS_ROW row = NULL;
  int count = 0;
2622

2623
  //get schema use cmd: describe superTblName;
2624
  snprintf(command, BUFFER_SIZE, "describe %s.%s", dbName, superTbls->sTblName);
2625
  res = taos_query(taos, command);
2626 2627 2628
  int32_t code = taos_errno(res);
  if (code != 0) {
    printf("failed to run command %s\n", command);
2629
    taos_free_result(res);
2630 2631 2632 2633 2634 2635
    return -1;
  }

  int tagIndex = 0;
  int columnIndex = 0;
  TAOS_FIELD *fields = taos_fetch_fields(res);
2636
  while((row = taos_fetch_row(res)) != NULL) {
2637 2638 2639
    if (0 == count) {
      count++;
      continue;
2640
    }
2641 2642

    if (strcmp((char *)row[TSDB_DESCRIBE_METRIC_NOTE_INDEX], "TAG") == 0) {
2643 2644 2645 2646 2647
      tstrncpy(superTbls->tags[tagIndex].field,
              (char *)row[TSDB_DESCRIBE_METRIC_FIELD_INDEX],
              fields[TSDB_DESCRIBE_METRIC_FIELD_INDEX].bytes);
      tstrncpy(superTbls->tags[tagIndex].dataType,
              (char *)row[TSDB_DESCRIBE_METRIC_TYPE_INDEX],
2648
              min(15, fields[TSDB_DESCRIBE_METRIC_TYPE_INDEX].bytes));
2649 2650 2651 2652 2653
      superTbls->tags[tagIndex].dataLen =
          *((int *)row[TSDB_DESCRIBE_METRIC_LENGTH_INDEX]);
      tstrncpy(superTbls->tags[tagIndex].note,
              (char *)row[TSDB_DESCRIBE_METRIC_NOTE_INDEX],
              fields[TSDB_DESCRIBE_METRIC_NOTE_INDEX].bytes);
2654
      tagIndex++;
2655
    } else {
2656 2657 2658 2659 2660
      tstrncpy(superTbls->columns[columnIndex].field,
              (char *)row[TSDB_DESCRIBE_METRIC_FIELD_INDEX],
              fields[TSDB_DESCRIBE_METRIC_FIELD_INDEX].bytes);
      tstrncpy(superTbls->columns[columnIndex].dataType,
              (char *)row[TSDB_DESCRIBE_METRIC_TYPE_INDEX],
2661
              min(15, fields[TSDB_DESCRIBE_METRIC_TYPE_INDEX].bytes));
2662 2663 2664 2665 2666
      superTbls->columns[columnIndex].dataLen =
          *((int *)row[TSDB_DESCRIBE_METRIC_LENGTH_INDEX]);
      tstrncpy(superTbls->columns[columnIndex].note,
              (char *)row[TSDB_DESCRIBE_METRIC_NOTE_INDEX],
              fields[TSDB_DESCRIBE_METRIC_NOTE_INDEX].bytes);
2667 2668 2669 2670 2671 2672 2673 2674 2675 2676 2677
      columnIndex++;
    }
    count++;
  }

  superTbls->columnCount = columnIndex;
  superTbls->tagCount    = tagIndex;
  taos_free_result(res);

  calcRowLen(superTbls);

2678
/*
2679
  if (TBL_ALREADY_EXISTS == superTbls->childTblExists) {
2680
    //get all child table name use cmd: select tbname from superTblName;
2681 2682 2683
    int childTblCount = 10000;
    superTbls->childTblName = (char*)calloc(1, childTblCount * TSDB_TABLE_NAME_LEN);
    if (superTbls->childTblName == NULL) {
2684
      errorPrint("%s() LN%d, alloc memory failed!\n", __func__, __LINE__);
2685 2686
      return -1;
    }
2687
    getAllChildNameOfSuperTable(taos, dbName,
2688 2689 2690
            superTbls->sTblName,
            &superTbls->childTblName,
            &superTbls->childTblCount);
2691
  }
2692
  */
2693 2694 2695
  return 0;
}

2696 2697
static int createSuperTable(
        TAOS * taos, char* dbName,
2698
        SSuperTable*  superTbl) {
2699

2700
    char command[BUFFER_SIZE] = "\0";
2701

2702 2703 2704
    char cols[STRING_LEN] = "\0";
    int colIndex;
    int len = 0;
2705

2706
    int  lenOfOneRow = 0;
2707

2708 2709 2710 2711 2712
    if (superTbl->columnCount == 0) {
        errorPrint("%s() LN%d, super table column count is %d\n",
                __func__, __LINE__, superTbl->columnCount);
        return -1;
    }
2713

2714 2715 2716 2717 2718 2719 2720 2721 2722 2723 2724 2725 2726 2727 2728 2729 2730 2731 2732 2733 2734 2735 2736 2737 2738 2739 2740 2741 2742 2743 2744 2745 2746 2747 2748 2749 2750 2751 2752 2753 2754 2755 2756 2757 2758
    for (colIndex = 0; colIndex < superTbl->columnCount; colIndex++) {
        char* dataType = superTbl->columns[colIndex].dataType;

        if (strcasecmp(dataType, "BINARY") == 0) {
            len += snprintf(cols + len, STRING_LEN - len,
                    ", col%d %s(%d)", colIndex, "BINARY",
                    superTbl->columns[colIndex].dataLen);
            lenOfOneRow += superTbl->columns[colIndex].dataLen + 3;
        } else if (strcasecmp(dataType, "NCHAR") == 0) {
            len += snprintf(cols + len, STRING_LEN - len,
                    ", col%d %s(%d)", colIndex, "NCHAR",
                    superTbl->columns[colIndex].dataLen);
            lenOfOneRow += superTbl->columns[colIndex].dataLen + 3;
        } else if (strcasecmp(dataType, "INT") == 0)  {
            if ((g_args.demo_mode) && (colIndex == 1)) {
                    len += snprintf(cols + len, STRING_LEN - len,
                            ", VOLTAGE INT");
            } else {
                len += snprintf(cols + len, STRING_LEN - len, ", col%d %s", colIndex, "INT");
            }
            lenOfOneRow += 11;
        } else if (strcasecmp(dataType, "BIGINT") == 0)  {
            len += snprintf(cols + len, STRING_LEN - len, ", col%d %s",
                    colIndex, "BIGINT");
            lenOfOneRow += 21;
        } else if (strcasecmp(dataType, "SMALLINT") == 0)  {
            len += snprintf(cols + len, STRING_LEN - len, ", col%d %s",
                    colIndex, "SMALLINT");
            lenOfOneRow += 6;
        } else if (strcasecmp(dataType, "TINYINT") == 0)  {
            len += snprintf(cols + len, STRING_LEN - len, ", col%d %s", colIndex, "TINYINT");
            lenOfOneRow += 4;
        } else if (strcasecmp(dataType, "BOOL") == 0)  {
            len += snprintf(cols + len, STRING_LEN - len, ", col%d %s", colIndex, "BOOL");
            lenOfOneRow += 6;
        } else if (strcasecmp(dataType, "FLOAT") == 0) {
            if (g_args.demo_mode) {
                if (colIndex == 0) {
                    len += snprintf(cols + len, STRING_LEN - len, ", CURRENT FLOAT");
                } else if (colIndex == 2) {
                    len += snprintf(cols + len, STRING_LEN - len, ", PHASE FLOAT");
                }
            } else {
                len += snprintf(cols + len, STRING_LEN - len, ", col%d %s", colIndex, "FLOAT");
            }
2759

2760 2761 2762 2763 2764 2765 2766 2767 2768 2769 2770 2771 2772 2773 2774
            lenOfOneRow += 22;
        } else if (strcasecmp(dataType, "DOUBLE") == 0) {
            len += snprintf(cols + len, STRING_LEN - len, ", col%d %s",
                    colIndex, "DOUBLE");
            lenOfOneRow += 42;
        }  else if (strcasecmp(dataType, "TIMESTAMP") == 0) {
            len += snprintf(cols + len, STRING_LEN - len, ", col%d %s",
                    colIndex, "TIMESTAMP");
            lenOfOneRow += 21;
        } else {
            taos_close(taos);
            errorPrint("%s() LN%d, config error data type : %s\n",
                    __func__, __LINE__, dataType);
            exit(-1);
        }
2775 2776
    }

2777
    superTbl->lenOfOneRow = lenOfOneRow + 20; // timestamp
2778

2779 2780 2781 2782 2783 2784 2785 2786
    // save for creating child table
    superTbl->colsOfCreateChildTable = (char*)calloc(len+20, 1);
    if (NULL == superTbl->colsOfCreateChildTable) {
        errorPrint("%s() LN%d, Failed when calloc, size:%d",
                __func__, __LINE__, len+1);
        taos_close(taos);
        exit(-1);
    }
2787

2788 2789 2790
    snprintf(superTbl->colsOfCreateChildTable, len+20, "(ts timestamp%s)", cols);
    verbosePrint("%s() LN%d: %s\n",
            __func__, __LINE__, superTbl->colsOfCreateChildTable);
2791

2792 2793 2794 2795 2796
    if (superTbl->tagCount == 0) {
        errorPrint("%s() LN%d, super table tag count is %d\n",
                __func__, __LINE__, superTbl->tagCount);
        return -1;
    }
2797

2798 2799 2800
    char tags[STRING_LEN] = "\0";
    int tagIndex;
    len = 0;
2801

2802 2803 2804 2805 2806 2807
    int lenOfTagOfOneRow = 0;
    len += snprintf(tags + len, STRING_LEN - len, "(");
    for (tagIndex = 0; tagIndex < superTbl->tagCount; tagIndex++) {
        char* dataType = superTbl->tags[tagIndex].dataType;

        if (strcasecmp(dataType, "BINARY") == 0) {
2808 2809 2810 2811 2812 2813 2814 2815
            if ((g_args.demo_mode) && (tagIndex == 1)) {
                len += snprintf(tags + len, STRING_LEN - len,
                        "loction BINARY(%d), ",
                        superTbl->tags[tagIndex].dataLen);
            } else {
                len += snprintf(tags + len, STRING_LEN - len, "t%d %s(%d), ",
                        tagIndex, "BINARY", superTbl->tags[tagIndex].dataLen);
            }
2816 2817 2818 2819 2820 2821
            lenOfTagOfOneRow += superTbl->tags[tagIndex].dataLen + 3;
        } else if (strcasecmp(dataType, "NCHAR") == 0) {
            len += snprintf(tags + len, STRING_LEN - len, "t%d %s(%d), ", tagIndex,
                    "NCHAR", superTbl->tags[tagIndex].dataLen);
            lenOfTagOfOneRow += superTbl->tags[tagIndex].dataLen + 3;
        } else if (strcasecmp(dataType, "INT") == 0)  {
2822 2823 2824 2825
            if ((g_args.demo_mode) && (tagIndex == 0)) {
                len += snprintf(tags + len, STRING_LEN - len, "groupId INT, ");
            } else {
                len += snprintf(tags + len, STRING_LEN - len, "t%d %s, ", tagIndex,
2826
                    "INT");
2827
            }
2828 2829 2830 2831 2832 2833 2834 2835 2836 2837 2838 2839 2840 2841 2842 2843 2844 2845 2846 2847 2848 2849 2850 2851 2852 2853 2854 2855 2856 2857 2858
            lenOfTagOfOneRow += superTbl->tags[tagIndex].dataLen + 11;
        } else if (strcasecmp(dataType, "BIGINT") == 0)  {
            len += snprintf(tags + len, STRING_LEN - len, "t%d %s, ", tagIndex,
                    "BIGINT");
            lenOfTagOfOneRow += superTbl->tags[tagIndex].dataLen + 21;
        } else if (strcasecmp(dataType, "SMALLINT") == 0)  {
            len += snprintf(tags + len, STRING_LEN - len, "t%d %s, ", tagIndex,
                    "SMALLINT");
            lenOfTagOfOneRow += superTbl->tags[tagIndex].dataLen + 6;
        } else if (strcasecmp(dataType, "TINYINT") == 0)  {
            len += snprintf(tags + len, STRING_LEN - len, "t%d %s, ", tagIndex,
                    "TINYINT");
            lenOfTagOfOneRow += superTbl->tags[tagIndex].dataLen + 4;
        } else if (strcasecmp(dataType, "BOOL") == 0)  {
            len += snprintf(tags + len, STRING_LEN - len, "t%d %s, ", tagIndex,
                    "BOOL");
            lenOfTagOfOneRow += superTbl->tags[tagIndex].dataLen + 6;
        } else if (strcasecmp(dataType, "FLOAT") == 0) {
            len += snprintf(tags + len, STRING_LEN - len, "t%d %s, ", tagIndex,
                    "FLOAT");
            lenOfTagOfOneRow += superTbl->tags[tagIndex].dataLen + 22;
        } else if (strcasecmp(dataType, "DOUBLE") == 0) {
            len += snprintf(tags + len, STRING_LEN - len, "t%d %s, ", tagIndex,
                    "DOUBLE");
            lenOfTagOfOneRow += superTbl->tags[tagIndex].dataLen + 42;
        } else {
            taos_close(taos);
            errorPrint("%s() LN%d, config error tag type : %s\n",
                    __func__, __LINE__, dataType);
            exit(-1);
        }
2859
    }
2860

2861 2862
    len -= 2;
    len += snprintf(tags + len, STRING_LEN - len, ")");
2863

2864
    superTbl->lenOfTagOfOneRow = lenOfTagOfOneRow;
2865

2866 2867 2868 2869 2870 2871 2872 2873 2874 2875
    snprintf(command, BUFFER_SIZE,
            "create table if not exists %s.%s (ts timestamp%s) tags %s",
            dbName, superTbl->sTblName, cols, tags);
    if (0 != queryDbExec(taos, command, NO_INSERT_TYPE, false)) {
        errorPrint( "create supertable %s failed!\n\n",
                superTbl->sTblName);
        return -1;
    }
    debugPrint("create supertable %s success!\n\n", superTbl->sTblName);
    return 0;
2876 2877
}

2878
static int createDatabasesAndStables() {
2879 2880 2881 2882
  TAOS * taos = NULL;
  int    ret = 0;
  taos = taos_connect(g_Dbs.host, g_Dbs.user, g_Dbs.password, NULL, g_Dbs.port);
  if (taos == NULL) {
2883
    errorPrint( "Failed to connect to TDengine, reason:%s\n", taos_errstr(NULL));
2884
    return -1;
2885 2886 2887
  }
  char command[BUFFER_SIZE] = "\0";

2888
  for (int i = 0; i < g_Dbs.dbCount; i++) {
2889 2890
    if (g_Dbs.db[i].drop) {
      sprintf(command, "drop database if exists %s;", g_Dbs.db[i].dbName);
2891
      if (0 != queryDbExec(taos, command, NO_INSERT_TYPE, false)) {
2892 2893 2894 2895
        taos_close(taos);
        return -1;
      }

2896
      int dataLen = 0;
2897
      dataLen += snprintf(command + dataLen,
2898
          BUFFER_SIZE - dataLen, "create database if not exists %s", g_Dbs.db[i].dbName);
2899

2900 2901 2902 2903 2904 2905 2906 2907 2908 2909 2910 2911 2912 2913 2914 2915 2916 2917 2918 2919 2920 2921 2922 2923 2924 2925 2926 2927 2928 2929 2930 2931 2932 2933 2934 2935 2936 2937 2938 2939 2940 2941 2942 2943 2944 2945 2946 2947 2948 2949 2950 2951 2952 2953 2954 2955 2956 2957 2958 2959 2960 2961 2962 2963 2964 2965 2966 2967 2968
      if (g_Dbs.db[i].dbCfg.blocks > 0) {
        dataLen += snprintf(command + dataLen,
            BUFFER_SIZE - dataLen, " blocks %d", g_Dbs.db[i].dbCfg.blocks);
      }
      if (g_Dbs.db[i].dbCfg.cache > 0) {
        dataLen += snprintf(command + dataLen,
            BUFFER_SIZE - dataLen, " cache %d", g_Dbs.db[i].dbCfg.cache);
      }
      if (g_Dbs.db[i].dbCfg.days > 0) {
        dataLen += snprintf(command + dataLen,
            BUFFER_SIZE - dataLen, " days %d", g_Dbs.db[i].dbCfg.days);
      }
      if (g_Dbs.db[i].dbCfg.keep > 0) {
        dataLen += snprintf(command + dataLen,
            BUFFER_SIZE - dataLen, " keep %d", g_Dbs.db[i].dbCfg.keep);
      }
      if (g_Dbs.db[i].dbCfg.quorum > 1) {
        dataLen += snprintf(command + dataLen,
            BUFFER_SIZE - dataLen, " quorum %d", g_Dbs.db[i].dbCfg.quorum);
      }
      if (g_Dbs.db[i].dbCfg.replica > 0) {
        dataLen += snprintf(command + dataLen,
            BUFFER_SIZE - dataLen, " replica %d", g_Dbs.db[i].dbCfg.replica);
      }
      if (g_Dbs.db[i].dbCfg.update > 0) {
        dataLen += snprintf(command + dataLen,
            BUFFER_SIZE - dataLen, " update %d", g_Dbs.db[i].dbCfg.update);
      }
      //if (g_Dbs.db[i].dbCfg.maxtablesPerVnode > 0) {
      //  dataLen += snprintf(command + dataLen,
      //  BUFFER_SIZE - dataLen, "tables %d ", g_Dbs.db[i].dbCfg.maxtablesPerVnode);
      //}
      if (g_Dbs.db[i].dbCfg.minRows > 0) {
        dataLen += snprintf(command + dataLen,
            BUFFER_SIZE - dataLen, " minrows %d", g_Dbs.db[i].dbCfg.minRows);
      }
      if (g_Dbs.db[i].dbCfg.maxRows > 0) {
        dataLen += snprintf(command + dataLen,
            BUFFER_SIZE - dataLen, " maxrows %d", g_Dbs.db[i].dbCfg.maxRows);
      }
      if (g_Dbs.db[i].dbCfg.comp > 0) {
        dataLen += snprintf(command + dataLen,
            BUFFER_SIZE - dataLen, " comp %d", g_Dbs.db[i].dbCfg.comp);
      }
      if (g_Dbs.db[i].dbCfg.walLevel > 0) {
        dataLen += snprintf(command + dataLen,
            BUFFER_SIZE - dataLen, " wal %d", g_Dbs.db[i].dbCfg.walLevel);
      }
      if (g_Dbs.db[i].dbCfg.cacheLast > 0) {
        dataLen += snprintf(command + dataLen,
            BUFFER_SIZE - dataLen, " cachelast %d", g_Dbs.db[i].dbCfg.cacheLast);
      }
      if (g_Dbs.db[i].dbCfg.fsync > 0) {
        dataLen += snprintf(command + dataLen, BUFFER_SIZE - dataLen,
                " fsync %d", g_Dbs.db[i].dbCfg.fsync);
      }
      if ((0 == strncasecmp(g_Dbs.db[i].dbCfg.precision, "ms", strlen("ms")))
              || (0 == strncasecmp(g_Dbs.db[i].dbCfg.precision,
                      "us", strlen("us")))) {
        dataLen += snprintf(command + dataLen, BUFFER_SIZE - dataLen,
                " precision \'%s\';", g_Dbs.db[i].dbCfg.precision);
      }

      if (0 != queryDbExec(taos, command, NO_INSERT_TYPE, false)) {
        taos_close(taos);
        errorPrint( "\ncreate database %s failed!\n\n", g_Dbs.db[i].dbName);
        return -1;
      }
      printf("\ncreate database %s success!\n\n", g_Dbs.db[i].dbName);
2969 2970
    }

2971
    debugPrint("%s() LN%d supertbl count:%"PRIu64"\n",
2972
            __func__, __LINE__, g_Dbs.db[i].superTblCount);
2973 2974 2975

    int validStbCount = 0;

2976
    for (uint64_t j = 0; j < g_Dbs.db[i].superTblCount; j++) {
2977 2978 2979 2980 2981
      sprintf(command, "describe %s.%s;", g_Dbs.db[i].dbName,
              g_Dbs.db[i].superTbls[j].sTblName);
      ret = queryDbExec(taos, command, NO_INSERT_TYPE, true);

      if ((ret != 0) || (g_Dbs.db[i].drop)) {
2982
        ret = createSuperTable(taos, g_Dbs.db[i].dbName,
2983
                &g_Dbs.db[i].superTbls[j]);
2984

2985
        if (0 != ret) {
2986
          errorPrint("create super table %"PRIu64" failed!\n\n", j);
2987
          continue;
2988 2989 2990
        }
      }

2991
      ret = getSuperTableFromServer(taos, g_Dbs.db[i].dbName,
2992
                &g_Dbs.db[i].superTbls[j]);
2993 2994 2995
      if (0 != ret) {
        errorPrint("\nget super table %s.%s info failed!\n\n",
                g_Dbs.db[i].dbName, g_Dbs.db[i].superTbls[j].sTblName);
2996
        continue;
2997
      }
2998 2999

      validStbCount ++;
3000
    }
3001 3002

    g_Dbs.db[i].superTblCount = validStbCount;
3003 3004 3005 3006 3007 3008
  }

  taos_close(taos);
  return 0;
}

3009 3010
static void* createTable(void *sarg)
{
3011 3012
  threadInfo *pThreadInfo = (threadInfo *)sarg;
  SSuperTable* superTblInfo = pThreadInfo->superTblInfo;
3013

3014
  uint64_t  lastPrintTime = taosGetTimestampMs();
3015

3016
  int buff_len;
3017
  buff_len = BUFFER_SIZE / 8;
3018

3019 3020
  pThreadInfo->buffer = calloc(buff_len, 1);
  if (pThreadInfo->buffer == NULL) {
3021
    errorPrint("%s() LN%d, Memory allocated failed!\n", __func__, __LINE__);
3022 3023
    exit(-1);
  }
3024 3025 3026

  int len = 0;
  int batchNum = 0;
3027

3028
  verbosePrint("%s() LN%d: Creating table from %"PRIu64" to %"PRIu64"\n",
3029
          __func__, __LINE__,
3030
          pThreadInfo->start_table_from, pThreadInfo->end_table_to);
3031

3032
  for (uint64_t i = pThreadInfo->start_table_from;
3033
          i <= pThreadInfo->end_table_to; i++) {
3034
    if (0 == g_Dbs.use_metric) {
3035
      snprintf(pThreadInfo->buffer, buff_len,
3036
              "create table if not exists %s.%s%"PRIu64" %s;",
3037
              pThreadInfo->db_name,
3038
              g_args.tb_prefix, i,
3039
              pThreadInfo->cols);
3040
    } else {
3041 3042 3043
      if (superTblInfo == NULL) {
        errorPrint("%s() LN%d, use metric, but super table info is NULL\n",
                  __func__, __LINE__);
3044
        free(pThreadInfo->buffer);
3045 3046 3047 3048
        exit(-1);
      } else {
        if (0 == len) {
          batchNum = 0;
3049 3050
          memset(pThreadInfo->buffer, 0, buff_len);
          len += snprintf(pThreadInfo->buffer + len,
3051 3052 3053 3054
                  buff_len - len, "create table ");
        }
        char* tagsValBuf = NULL;
        if (0 == superTblInfo->tagSource) {
3055
          tagsValBuf = generateTagVaulesForStb(superTblInfo, i);
3056 3057 3058 3059 3060 3061
        } else {
          tagsValBuf = getTagValueFromTagSample(
                  superTblInfo,
                  i % superTblInfo->tagSampleCount);
        }
        if (NULL == tagsValBuf) {
3062
          free(pThreadInfo->buffer);
3063 3064
          return NULL;
        }
3065
        len += snprintf(pThreadInfo->buffer + len,
3066
                buff_len - len,
3067
                "if not exists %s.%s%"PRIu64" using %s.%s tags %s ",
3068 3069
                pThreadInfo->db_name, superTblInfo->childTblPrefix,
                i, pThreadInfo->db_name,
3070 3071 3072 3073
                superTblInfo->sTblName, tagsValBuf);
        free(tagsValBuf);
        batchNum++;
        if ((batchNum < superTblInfo->batchCreateTableNum)
3074
                && ((buff_len - len)
3075 3076 3077
                    >= (superTblInfo->lenOfTagOfOneRow + 256))) {
          continue;
        }
3078 3079 3080 3081
      }
    }

    len = 0;
3082 3083 3084 3085
    if (0 != queryDbExec(pThreadInfo->taos, pThreadInfo->buffer,
                NO_INSERT_TYPE, false)){
      errorPrint( "queryDbExec() failed. buffer:\n%s\n", pThreadInfo->buffer);
      free(pThreadInfo->buffer);
3086 3087 3088
      return NULL;
    }

3089
    uint64_t  currentPrintTime = taosGetTimestampMs();
3090
    if (currentPrintTime - lastPrintTime > 30*1000) {
3091
      printf("thread[%d] already create %"PRIu64" - %"PRIu64" tables\n",
3092
              pThreadInfo->threadID, pThreadInfo->start_table_from, i);
3093 3094 3095
      lastPrintTime = currentPrintTime;
    }
  }
3096

3097
  if (0 != len) {
3098 3099 3100
    if (0 != queryDbExec(pThreadInfo->taos, pThreadInfo->buffer,
                NO_INSERT_TYPE, false)) {
      errorPrint( "queryDbExec() failed. buffer:\n%s\n", pThreadInfo->buffer);
3101
    }
3102
  }
3103

3104
  free(pThreadInfo->buffer);
3105 3106 3107
  return NULL;
}

3108
static int startMultiThreadCreateChildTable(
3109
        char* cols, int threads, uint64_t tableFrom, int64_t ntables,
3110
        char* db_name, SSuperTable* superTblInfo) {
3111

3112
  pthread_t *pids = calloc(1, threads * sizeof(pthread_t));
3113
  threadInfo *infos = calloc(1, threads * sizeof(threadInfo));
3114 3115 3116 3117 3118 3119 3120 3121 3122 3123

  if ((NULL == pids) || (NULL == infos)) {
    printf("malloc failed\n");
    exit(-1);
  }

  if (threads < 1) {
    threads = 1;
  }

3124
  int64_t a = ntables / threads;
3125 3126 3127 3128 3129
  if (a < 1) {
    threads = ntables;
    a = 1;
  }

3130
  int64_t b = 0;
3131
  b = ntables % threads;
3132

3133
  for (int64_t i = 0; i < threads; i++) {
3134 3135
    threadInfo *pThreadInfo = infos + i;
    pThreadInfo->threadID = i;
3136
    tstrncpy(pThreadInfo->db_name, db_name, TSDB_DB_NAME_LEN);
3137
    pThreadInfo->superTblInfo = superTblInfo;
3138
    verbosePrint("%s() %d db_name: %s\n", __func__, __LINE__, db_name);
3139
    pThreadInfo->taos = taos_connect(
3140 3141 3142 3143 3144
            g_Dbs.host,
            g_Dbs.user,
            g_Dbs.password,
            db_name,
            g_Dbs.port);
3145
    if (pThreadInfo->taos == NULL) {
3146 3147
      errorPrint( "%s() LN%d, Failed to connect to TDengine, reason:%s\n",
         __func__, __LINE__, taos_errstr(NULL));
3148
      free(pids);
3149
      free(infos);
3150 3151
      return -1;
    }
3152

3153
    pThreadInfo->start_table_from = tableFrom;
3154
    pThreadInfo->ntables = i<b?a+1:a;
3155 3156
    pThreadInfo->end_table_to = i < b ? tableFrom + a : tableFrom + a - 1;
    tableFrom = pThreadInfo->end_table_to + 1;
3157 3158 3159 3160
    pThreadInfo->use_metric = true;
    pThreadInfo->cols = cols;
    pThreadInfo->minDelay = UINT64_MAX;
    pthread_create(pids + i, NULL, createTable, pThreadInfo);
3161
  }
3162

3163 3164 3165 3166 3167
  for (int i = 0; i < threads; i++) {
    pthread_join(pids[i], NULL);
  }

  for (int i = 0; i < threads; i++) {
3168 3169
    threadInfo *pThreadInfo = infos + i;
    taos_close(pThreadInfo->taos);
3170 3171 3172
  }

  free(pids);
3173
  free(infos);
3174 3175

  return 0;
3176 3177
}

3178 3179 3180 3181
static void createChildTables() {
    char tblColsBuf[MAX_SQL_SIZE];
    int len;

3182 3183 3184 3185 3186 3187 3188 3189 3190 3191 3192 3193 3194 3195 3196 3197 3198 3199 3200 3201 3202 3203 3204 3205 3206 3207 3208 3209 3210 3211 3212 3213 3214 3215 3216 3217 3218 3219 3220 3221
    for (int i = 0; i < g_Dbs.dbCount; i++) {
        if (g_Dbs.use_metric) {
            if (g_Dbs.db[i].superTblCount > 0) {
                // with super table
                for (int j = 0; j < g_Dbs.db[i].superTblCount; j++) {
                    if ((AUTO_CREATE_SUBTBL == g_Dbs.db[i].superTbls[j].autoCreateTable)
                            || (TBL_ALREADY_EXISTS == g_Dbs.db[i].superTbls[j].childTblExists)) {
                        continue;
                    }
                    verbosePrint("%s() LN%d: %s\n", __func__, __LINE__,
                          g_Dbs.db[i].superTbls[j].colsOfCreateChildTable);
                    uint64_t startFrom = 0;
                    g_totalChildTables += g_Dbs.db[i].superTbls[j].childTblCount;

                    verbosePrint("%s() LN%d: create %"PRId64" child tables from %"PRIu64"\n",
                            __func__, __LINE__, g_totalChildTables, startFrom);

                    startMultiThreadCreateChildTable(
                            g_Dbs.db[i].superTbls[j].colsOfCreateChildTable,
                            g_Dbs.threadCountByCreateTbl,
                            startFrom,
                            g_Dbs.db[i].superTbls[j].childTblCount,
                            g_Dbs.db[i].dbName, &(g_Dbs.db[i].superTbls[j]));
                }
            }
        } else {
            // normal table
            len = snprintf(tblColsBuf, MAX_SQL_SIZE, "(TS TIMESTAMP");
            for (int j = 0; j < g_args.num_of_CPR; j++) {
                if ((strncasecmp(g_args.datatype[j], "BINARY", strlen("BINARY")) == 0)
                        || (strncasecmp(g_args.datatype[j],
                                "NCHAR", strlen("NCHAR")) == 0)) {
                    snprintf(tblColsBuf + len, MAX_SQL_SIZE - len,
                            ", COL%d %s(%d)", j, g_args.datatype[j], g_args.len_of_binary);
                } else {
                    snprintf(tblColsBuf + len, MAX_SQL_SIZE - len,
                            ", COL%d %s", j, g_args.datatype[j]);
                }
                len = strlen(tblColsBuf);
            }
3222

3223 3224 3225 3226 3227 3228 3229 3230 3231 3232 3233 3234
            snprintf(tblColsBuf + len, MAX_SQL_SIZE - len, ")");

            verbosePrint("%s() LN%d: dbName: %s num of tb: %"PRId64" schema: %s\n",
                    __func__, __LINE__,
                    g_Dbs.db[i].dbName, g_args.num_of_tables, tblColsBuf);
            startMultiThreadCreateChildTable(
                    tblColsBuf,
                    g_Dbs.threadCountByCreateTbl,
                    0,
                    g_args.num_of_tables,
                    g_Dbs.db[i].dbName,
                    NULL);
3235
        }
3236
    }
3237 3238 3239 3240 3241
}

/*
  Read 10000 lines at most. If more than 10000 lines, continue to read after using
*/
3242
static int readTagFromCsvFileToMem(SSuperTable  * superTblInfo) {
3243 3244 3245
  size_t  n = 0;
  ssize_t readLen = 0;
  char *  line = NULL;
3246

3247 3248
  FILE *fp = fopen(superTblInfo->tagsFile, "r");
  if (fp == NULL) {
3249 3250
    printf("Failed to open tags file: %s, reason:%s\n",
            superTblInfo->tagsFile, strerror(errno));
3251 3252 3253 3254 3255 3256 3257
    return -1;
  }

  if (superTblInfo->tagDataBuf) {
    free(superTblInfo->tagDataBuf);
    superTblInfo->tagDataBuf = NULL;
  }
3258

3259 3260 3261 3262 3263 3264 3265 3266 3267
  int tagCount = 10000;
  int count = 0;
  char* tagDataBuf = calloc(1, superTblInfo->lenOfTagOfOneRow * tagCount);
  if (tagDataBuf == NULL) {
    printf("Failed to calloc, reason:%s\n", strerror(errno));
    fclose(fp);
    return -1;
  }

3268
  while((readLen = tgetline(&line, &n, fp)) != -1) {
3269 3270 3271 3272 3273 3274 3275 3276 3277 3278 3279 3280
    if (('\r' == line[readLen - 1]) || ('\n' == line[readLen - 1])) {
      line[--readLen] = 0;
    }

    if (readLen == 0) {
      continue;
    }

    memcpy(tagDataBuf + count * superTblInfo->lenOfTagOfOneRow, line, readLen);
    count++;

    if (count >= tagCount - 1) {
3281 3282
      char *tmp = realloc(tagDataBuf,
              (size_t)tagCount*1.5*superTblInfo->lenOfTagOfOneRow);
3283 3284 3285
      if (tmp != NULL) {
        tagDataBuf = tmp;
        tagCount = (int)(tagCount*1.5);
3286 3287
        memset(tagDataBuf + count*superTblInfo->lenOfTagOfOneRow,
                0, (size_t)((tagCount-count)*superTblInfo->lenOfTagOfOneRow));
3288 3289 3290 3291 3292 3293 3294 3295 3296 3297 3298 3299 3300 3301 3302 3303 3304 3305 3306 3307 3308 3309
      } else {
        // exit, if allocate more memory failed
        printf("realloc fail for save tag val from %s\n", superTblInfo->tagsFile);
        tmfree(tagDataBuf);
        free(line);
        fclose(fp);
        return -1;
      }
    }
  }

  superTblInfo->tagDataBuf = tagDataBuf;
  superTblInfo->tagSampleCount = count;

  free(line);
  fclose(fp);
  return 0;
}

/*
  Read 10000 lines at most. If more than 10000 lines, continue to read after using
*/
3310 3311
static int readSampleFromCsvFileToMem(
        SSuperTable* superTblInfo) {
3312 3313 3314 3315
  size_t  n = 0;
  ssize_t readLen = 0;
  char *  line = NULL;
  int getRows = 0;
3316

3317 3318
  FILE*  fp = fopen(superTblInfo->sampleFile, "r");
  if (fp == NULL) {
3319
      errorPrint( "Failed to open sample file: %s, reason:%s\n",
3320 3321 3322
              superTblInfo->sampleFile, strerror(errno));
      return -1;
  }
3323

3324
  assert(superTblInfo->sampleDataBuf);
3325 3326
  memset(superTblInfo->sampleDataBuf, 0,
          MAX_SAMPLES_ONCE_FROM_FILE * superTblInfo->lenOfOneRow);
3327
  while(1) {
3328
    readLen = tgetline(&line, &n, fp);
3329 3330
    if (-1 == readLen) {
      if(0 != fseek(fp, 0, SEEK_SET)) {
3331
        errorPrint( "Failed to fseek file: %s, reason:%s\n",
3332
                superTblInfo->sampleFile, strerror(errno));
3333
        fclose(fp);
3334 3335 3336 3337
        return -1;
      }
      continue;
    }
3338

3339 3340 3341 3342 3343 3344 3345 3346 3347
    if (('\r' == line[readLen - 1]) || ('\n' == line[readLen - 1])) {
      line[--readLen] = 0;
    }

    if (readLen == 0) {
      continue;
    }

    if (readLen > superTblInfo->lenOfOneRow) {
3348
      printf("sample row len[%d] overflow define schema len[%"PRIu64"], so discard this row\n",
3349
              (int32_t)readLen, superTblInfo->lenOfOneRow);
3350 3351 3352
      continue;
    }

3353 3354
    memcpy(superTblInfo->sampleDataBuf + getRows * superTblInfo->lenOfOneRow,
          line, readLen);
3355 3356 3357 3358 3359 3360 3361
    getRows++;

    if (getRows == MAX_SAMPLES_ONCE_FROM_FILE) {
      break;
    }
  }

3362
  fclose(fp);
3363 3364 3365 3366
  tmfree(line);
  return 0;
}

3367 3368
static bool getColumnAndTagTypeFromInsertJsonFile(
        cJSON* stbInfo, SSuperTable* superTbls) {
3369
  bool  ret = false;
3370

3371
  // columns
3372 3373
  cJSON *columns = cJSON_GetObjectItem(stbInfo, "columns");
  if (columns && columns->type != cJSON_Array) {
3374
    printf("ERROR: failed to read json, columns not found\n");
3375 3376 3377 3378 3379 3380
    goto PARSE_OVER;
  } else if (NULL == columns) {
    superTbls->columnCount = 0;
    superTbls->tagCount    = 0;
    return true;
  }
3381

3382
  int columnSize = cJSON_GetArraySize(columns);
3383
  if ((columnSize + 1/* ts */) > TSDB_MAX_COLUMNS) {
3384
    errorPrint("%s() LN%d, failed to read json, column size overflow, max column size is %d\n",
3385
            __func__, __LINE__, TSDB_MAX_COLUMNS);
3386 3387 3388 3389 3390 3391
    goto PARSE_OVER;
  }

  int count = 1;
  int index = 0;
  StrColumn    columnCase;
3392

3393
  //superTbls->columnCount = columnSize;
3394 3395 3396 3397 3398 3399 3400
  for (int k = 0; k < columnSize; ++k) {
    cJSON* column = cJSON_GetArrayItem(columns, k);
    if (column == NULL) continue;

    count = 1;
    cJSON* countObj = cJSON_GetObjectItem(column, "count");
    if (countObj && countObj->type == cJSON_Number) {
3401
      count = countObj->valueint;
3402
    } else if (countObj && countObj->type != cJSON_Number) {
3403 3404
      errorPrint("%s() LN%d, failed to read json, column count not found\n",
          __func__, __LINE__);
3405 3406 3407 3408 3409
      goto PARSE_OVER;
    } else {
      count = 1;
    }

3410
    // column info
3411 3412
    memset(&columnCase, 0, sizeof(StrColumn));
    cJSON *dataType = cJSON_GetObjectItem(column, "type");
3413 3414 3415 3416
    if (!dataType || dataType->type != cJSON_String
        || dataType->valuestring == NULL) {
      errorPrint("%s() LN%d: failed to read json, column type not found\n",
          __func__, __LINE__);
3417 3418
      goto PARSE_OVER;
    }
3419
    //tstrncpy(superTbls->columns[k].dataType, dataType->valuestring, MAX_TB_NAME_SIZE);
3420
    tstrncpy(columnCase.dataType, dataType->valuestring, strlen(dataType->valuestring) + 1);
3421

3422 3423
    cJSON* dataLen = cJSON_GetObjectItem(column, "len");
    if (dataLen && dataLen->type == cJSON_Number) {
3424
      columnCase.dataLen = dataLen->valueint;
3425
    } else if (dataLen && dataLen->type != cJSON_Number) {
3426 3427
      debugPrint("%s() LN%d: failed to read json, column len not found\n",
          __func__, __LINE__);
3428 3429 3430 3431
      goto PARSE_OVER;
    } else {
      columnCase.dataLen = 8;
    }
3432

3433
    for (int n = 0; n < count; ++n) {
3434
      tstrncpy(superTbls->columns[index].dataType,
3435
              columnCase.dataType, strlen(columnCase.dataType) + 1);
3436
      superTbls->columns[index].dataLen = columnCase.dataLen;
3437 3438
      index++;
    }
3439
  }
3440

3441
  if ((index + 1 /* ts */) > MAX_NUM_COLUMNS) {
3442
    errorPrint("%s() LN%d, failed to read json, column size overflow, allowed max column size is %d\n",
3443
            __func__, __LINE__, MAX_NUM_COLUMNS);
3444 3445 3446
    goto PARSE_OVER;
  }

3447
  superTbls->columnCount = index;
3448

3449 3450
  count = 1;
  index = 0;
3451
  // tags
3452 3453
  cJSON *tags = cJSON_GetObjectItem(stbInfo, "tags");
  if (!tags || tags->type != cJSON_Array) {
3454 3455
    errorPrint("%s() LN%d, failed to read json, tags not found\n",
        __func__, __LINE__);
3456 3457
    goto PARSE_OVER;
  }
3458

3459
  int tagSize = cJSON_GetArraySize(tags);
3460
  if (tagSize > TSDB_MAX_TAGS) {
3461
    errorPrint("%s() LN%d, failed to read json, tags size overflow, max tag size is %d\n",
3462
        __func__, __LINE__, TSDB_MAX_TAGS);
3463 3464
    goto PARSE_OVER;
  }
3465 3466

  //superTbls->tagCount = tagSize;
3467 3468 3469
  for (int k = 0; k < tagSize; ++k) {
    cJSON* tag = cJSON_GetArrayItem(tags, k);
    if (tag == NULL) continue;
3470

3471 3472 3473
    count = 1;
    cJSON* countObj = cJSON_GetObjectItem(tag, "count");
    if (countObj && countObj->type == cJSON_Number) {
3474
      count = countObj->valueint;
3475
    } else if (countObj && countObj->type != cJSON_Number) {
3476
      printf("ERROR: failed to read json, column count not found\n");
3477 3478 3479 3480 3481
      goto PARSE_OVER;
    } else {
      count = 1;
    }

3482
    // column info
3483 3484
    memset(&columnCase, 0, sizeof(StrColumn));
    cJSON *dataType = cJSON_GetObjectItem(tag, "type");
3485 3486 3487 3488
    if (!dataType || dataType->type != cJSON_String
        || dataType->valuestring == NULL) {
      errorPrint("%s() LN%d, failed to read json, tag type not found\n",
          __func__, __LINE__);
3489 3490
      goto PARSE_OVER;
    }
3491
    tstrncpy(columnCase.dataType, dataType->valuestring, strlen(dataType->valuestring) + 1);
3492

3493 3494
    cJSON* dataLen = cJSON_GetObjectItem(tag, "len");
    if (dataLen && dataLen->type == cJSON_Number) {
3495
      columnCase.dataLen = dataLen->valueint;
3496
    } else if (dataLen && dataLen->type != cJSON_Number) {
3497 3498
      errorPrint("%s() LN%d, failed to read json, column len not found\n",
          __func__, __LINE__);
3499 3500 3501
      goto PARSE_OVER;
    } else {
      columnCase.dataLen = 0;
3502 3503
    }

3504
    for (int n = 0; n < count; ++n) {
3505
      tstrncpy(superTbls->tags[index].dataType, columnCase.dataType,
3506
          strlen(columnCase.dataType) + 1);
3507
      superTbls->tags[index].dataLen = columnCase.dataLen;
3508 3509
      index++;
    }
3510
  }
3511

3512
  if (index > TSDB_MAX_TAGS) {
3513
    errorPrint("%s() LN%d, failed to read json, tags size overflow, allowed max tag count is %d\n",
3514
        __func__, __LINE__, TSDB_MAX_TAGS);
3515 3516 3517
    goto PARSE_OVER;
  }

3518 3519
  superTbls->tagCount = index;

3520
  if ((superTbls->columnCount + superTbls->tagCount + 1 /* ts */) > TSDB_MAX_COLUMNS) {
3521
    errorPrint("%s() LN%d, columns + tags is more than allowed max columns count: %d\n",
3522
        __func__, __LINE__, TSDB_MAX_COLUMNS);
3523 3524
    goto PARSE_OVER;
  }
3525 3526 3527 3528 3529 3530 3531 3532 3533 3534 3535
  ret = true;

PARSE_OVER:
  return ret;
}

static bool getMetaFromInsertJsonFile(cJSON* root) {
  bool  ret = false;

  cJSON* cfgdir = cJSON_GetObjectItem(root, "cfgdir");
  if (cfgdir && cfgdir->type == cJSON_String && cfgdir->valuestring != NULL) {
3536
    tstrncpy(g_Dbs.cfgDir, cfgdir->valuestring, MAX_FILE_NAME_LEN);
3537 3538 3539 3540
  }

  cJSON* host = cJSON_GetObjectItem(root, "host");
  if (host && host->type == cJSON_String && host->valuestring != NULL) {
3541
    tstrncpy(g_Dbs.host, host->valuestring, MAX_HOSTNAME_SIZE);
3542
  } else if (!host) {
3543
    tstrncpy(g_Dbs.host, "127.0.0.1", MAX_HOSTNAME_SIZE);
3544
  } else {
3545
    printf("ERROR: failed to read json, host not found\n");
3546 3547 3548 3549 3550 3551 3552 3553 3554 3555 3556 3557
    goto PARSE_OVER;
  }

  cJSON* port = cJSON_GetObjectItem(root, "port");
  if (port && port->type == cJSON_Number) {
    g_Dbs.port = port->valueint;
  } else if (!port) {
    g_Dbs.port = 6030;
  }

  cJSON* user = cJSON_GetObjectItem(root, "user");
  if (user && user->type == cJSON_String && user->valuestring != NULL) {
3558
    tstrncpy(g_Dbs.user, user->valuestring, MAX_USERNAME_SIZE);
3559
  } else if (!user) {
3560
    tstrncpy(g_Dbs.user, "root", MAX_USERNAME_SIZE);
3561 3562 3563 3564
  }

  cJSON* password = cJSON_GetObjectItem(root, "password");
  if (password && password->type == cJSON_String && password->valuestring != NULL) {
3565
    tstrncpy(g_Dbs.password, password->valuestring, MAX_PASSWORD_SIZE);
3566
  } else if (!password) {
3567
    tstrncpy(g_Dbs.password, "taosdata", MAX_PASSWORD_SIZE);
3568 3569 3570 3571
  }

  cJSON* resultfile = cJSON_GetObjectItem(root, "result_file");
  if (resultfile && resultfile->type == cJSON_String && resultfile->valuestring != NULL) {
3572
    tstrncpy(g_Dbs.resultFile, resultfile->valuestring, MAX_FILE_NAME_LEN);
3573
  } else if (!resultfile) {
3574
    tstrncpy(g_Dbs.resultFile, "./insert_res.txt", MAX_FILE_NAME_LEN);
3575 3576 3577 3578 3579 3580 3581 3582
  }

  cJSON* threads = cJSON_GetObjectItem(root, "thread_count");
  if (threads && threads->type == cJSON_Number) {
    g_Dbs.threadCount = threads->valueint;
  } else if (!threads) {
    g_Dbs.threadCount = 1;
  } else {
3583
    printf("ERROR: failed to read json, threads not found\n");
3584
    goto PARSE_OVER;
3585 3586
  }

3587 3588 3589 3590
  cJSON* threads2 = cJSON_GetObjectItem(root, "thread_count_create_tbl");
  if (threads2 && threads2->type == cJSON_Number) {
    g_Dbs.threadCountByCreateTbl = threads2->valueint;
  } else if (!threads2) {
3591
    g_Dbs.threadCountByCreateTbl = 1;
3592
  } else {
3593 3594
    errorPrint("%s() LN%d, failed to read json, threads2 not found\n",
            __func__, __LINE__);
3595
    goto PARSE_OVER;
3596
  }
3597

3598 3599
  cJSON* gInsertInterval = cJSON_GetObjectItem(root, "insert_interval");
  if (gInsertInterval && gInsertInterval->type == cJSON_Number) {
3600 3601 3602 3603 3604
    if (gInsertInterval->valueint <0) {
      errorPrint("%s() LN%d, failed to read json, insert interval input mistake\n",
            __func__, __LINE__);
      goto PARSE_OVER;
    }
3605 3606 3607 3608
    g_args.insert_interval = gInsertInterval->valueint;
  } else if (!gInsertInterval) {
    g_args.insert_interval = 0;
  } else {
3609 3610
    errorPrint("%s() LN%d, failed to read json, insert_interval input mistake\n",
        __func__, __LINE__);
3611 3612
    goto PARSE_OVER;
  }
3613

3614 3615
  cJSON* interlaceRows = cJSON_GetObjectItem(root, "interlace_rows");
  if (interlaceRows && interlaceRows->type == cJSON_Number) {
3616 3617 3618 3619 3620 3621
    if (interlaceRows->valueint < 0) {
      errorPrint("%s() LN%d, failed to read json, interlace_rows input mistake\n",
        __func__, __LINE__);
      goto PARSE_OVER;

    }
3622 3623
    g_args.interlace_rows = interlaceRows->valueint;
  } else if (!interlaceRows) {
3624
    g_args.interlace_rows = 0; // 0 means progressive mode, > 0 mean interlace mode. max value is less or equ num_of_records_per_req
3625
  } else {
3626 3627
    errorPrint("%s() LN%d, failed to read json, interlace_rows input mistake\n",
        __func__, __LINE__);
3628
    goto PARSE_OVER;
3629
  }
3630

3631 3632
  cJSON* maxSqlLen = cJSON_GetObjectItem(root, "max_sql_len");
  if (maxSqlLen && maxSqlLen->type == cJSON_Number) {
3633 3634 3635 3636 3637
    if (maxSqlLen->valueint < 0) {
      errorPrint("%s() LN%d, failed to read json, max_sql_len input mistake\n",
        __func__, __LINE__);
      goto PARSE_OVER;
    }
3638 3639
    g_args.max_sql_len = maxSqlLen->valueint;
  } else if (!maxSqlLen) {
3640
    g_args.max_sql_len = (1024*1024);
3641
  } else {
3642 3643
    errorPrint("%s() LN%d, failed to read json, max_sql_len input mistake\n",
        __func__, __LINE__);
3644 3645 3646 3647 3648
    goto PARSE_OVER;
  }

  cJSON* numRecPerReq = cJSON_GetObjectItem(root, "num_of_records_per_req");
  if (numRecPerReq && numRecPerReq->type == cJSON_Number) {
3649
    if (numRecPerReq->valueint <= 0) {
3650 3651 3652
      errorPrint("%s() LN%d, failed to read json, num_of_records_per_req input mistake\n",
        __func__, __LINE__);
      goto PARSE_OVER;
3653
    } else if (numRecPerReq->valueint > MAX_RECORDS_PER_REQ) {
3654 3655 3656 3657 3658
      printf("NOTICE: number of records per request value %"PRIu64" > %d\n\n",
              numRecPerReq->valueint, MAX_RECORDS_PER_REQ);
      printf("        number of records per request value will be set to %d\n\n",
              MAX_RECORDS_PER_REQ);
      prompt();
3659
      numRecPerReq->valueint = MAX_RECORDS_PER_REQ;
3660
    }
3661 3662
    g_args.num_of_RPR = numRecPerReq->valueint;
  } else if (!numRecPerReq) {
3663
    g_args.num_of_RPR = MAX_RECORDS_PER_REQ;
3664
  } else {
3665 3666
    errorPrint("%s() LN%d, failed to read json, num_of_records_per_req not found\n",
        __func__, __LINE__);
3667 3668 3669
    goto PARSE_OVER;
  }

3670
  cJSON *answerPrompt = cJSON_GetObjectItem(root, "confirm_parameter_prompt"); // yes, no,
3671
  if (answerPrompt
3672 3673
          && answerPrompt->type == cJSON_String
          && answerPrompt->valuestring != NULL) {
3674 3675 3676 3677 3678 3679 3680 3681
    if (0 == strncasecmp(answerPrompt->valuestring, "yes", 3)) {
      g_args.answer_yes = false;
    } else if (0 == strncasecmp(answerPrompt->valuestring, "no", 2)) {
      g_args.answer_yes = true;
    } else {
      g_args.answer_yes = false;
    }
  } else if (!answerPrompt) {
3682
    g_args.answer_yes = true;   // default is no, mean answer_yes.
3683
  } else {
3684
    errorPrint("%s", "failed to read json, confirm_parameter_prompt input mistake\n");
3685
    goto PARSE_OVER;
3686
  }
3687

3688 3689
  // rows per table need be less than insert batch
  if (g_args.interlace_rows > g_args.num_of_RPR) {
3690
      printf("NOTICE: interlace rows value %u > num_of_records_per_req %u\n\n",
3691
              g_args.interlace_rows, g_args.num_of_RPR);
3692
      printf("        interlace rows value will be set to num_of_records_per_req %u\n\n",
3693 3694 3695 3696 3697
              g_args.num_of_RPR);
      prompt();
      g_args.interlace_rows = g_args.num_of_RPR;
  }

3698 3699
  cJSON* dbs = cJSON_GetObjectItem(root, "databases");
  if (!dbs || dbs->type != cJSON_Array) {
3700
    printf("ERROR: failed to read json, databases not found\n");
3701 3702 3703 3704 3705
    goto PARSE_OVER;
  }

  int dbSize = cJSON_GetArraySize(dbs);
  if (dbSize > MAX_DB_COUNT) {
3706
    errorPrint(
3707 3708
            "ERROR: failed to read json, databases size overflow, max database is %d\n",
            MAX_DB_COUNT);
3709 3710 3711 3712 3713 3714 3715 3716
    goto PARSE_OVER;
  }

  g_Dbs.dbCount = dbSize;
  for (int i = 0; i < dbSize; ++i) {
    cJSON* dbinfos = cJSON_GetArrayItem(dbs, i);
    if (dbinfos == NULL) continue;

3717
    // dbinfo
3718 3719
    cJSON *dbinfo = cJSON_GetObjectItem(dbinfos, "dbinfo");
    if (!dbinfo || dbinfo->type != cJSON_Object) {
3720
      printf("ERROR: failed to read json, dbinfo not found\n");
3721 3722
      goto PARSE_OVER;
    }
3723

3724 3725
    cJSON *dbName = cJSON_GetObjectItem(dbinfo, "name");
    if (!dbName || dbName->type != cJSON_String || dbName->valuestring == NULL) {
3726
      printf("ERROR: failed to read json, db name not found\n");
3727 3728
      goto PARSE_OVER;
    }
3729
    tstrncpy(g_Dbs.db[i].dbName, dbName->valuestring, TSDB_DB_NAME_LEN);
3730 3731 3732

    cJSON *drop = cJSON_GetObjectItem(dbinfo, "drop");
    if (drop && drop->type == cJSON_String && drop->valuestring != NULL) {
3733 3734
      if (0 == strncasecmp(drop->valuestring, "yes", strlen("yes"))) {
        g_Dbs.db[i].drop = true;
3735
      } else {
3736
        g_Dbs.db[i].drop = false;
3737
      }
3738
    } else if (!drop) {
3739
      g_Dbs.db[i].drop = g_args.drop_database;
3740
    } else {
3741 3742
      errorPrint("%s() LN%d, failed to read json, drop input mistake\n",
              __func__, __LINE__);
3743 3744 3745 3746
      goto PARSE_OVER;
    }

    cJSON *precision = cJSON_GetObjectItem(dbinfo, "precision");
3747 3748 3749
    if (precision && precision->type == cJSON_String
            && precision->valuestring != NULL) {
      tstrncpy(g_Dbs.db[i].dbCfg.precision, precision->valuestring,
3750
              8);
3751
    } else if (!precision) {
3752
      memset(g_Dbs.db[i].dbCfg.precision, 0, 8);
3753
    } else {
3754
      printf("ERROR: failed to read json, precision not found\n");
3755 3756 3757 3758 3759 3760 3761 3762 3763
      goto PARSE_OVER;
    }

    cJSON* update = cJSON_GetObjectItem(dbinfo, "update");
    if (update && update->type == cJSON_Number) {
      g_Dbs.db[i].dbCfg.update = update->valueint;
    } else if (!update) {
      g_Dbs.db[i].dbCfg.update = -1;
    } else {
3764
      printf("ERROR: failed to read json, update not found\n");
3765 3766 3767 3768 3769 3770 3771 3772 3773
      goto PARSE_OVER;
    }

    cJSON* replica = cJSON_GetObjectItem(dbinfo, "replica");
    if (replica && replica->type == cJSON_Number) {
      g_Dbs.db[i].dbCfg.replica = replica->valueint;
    } else if (!replica) {
      g_Dbs.db[i].dbCfg.replica = -1;
    } else {
3774
      printf("ERROR: failed to read json, replica not found\n");
3775 3776 3777 3778 3779 3780 3781 3782 3783
      goto PARSE_OVER;
    }

    cJSON* keep = cJSON_GetObjectItem(dbinfo, "keep");
    if (keep && keep->type == cJSON_Number) {
      g_Dbs.db[i].dbCfg.keep = keep->valueint;
    } else if (!keep) {
      g_Dbs.db[i].dbCfg.keep = -1;
    } else {
3784
     printf("ERROR: failed to read json, keep not found\n");
3785 3786
     goto PARSE_OVER;
    }
3787

3788 3789 3790 3791 3792 3793
    cJSON* days = cJSON_GetObjectItem(dbinfo, "days");
    if (days && days->type == cJSON_Number) {
      g_Dbs.db[i].dbCfg.days = days->valueint;
    } else if (!days) {
      g_Dbs.db[i].dbCfg.days = -1;
    } else {
3794
     printf("ERROR: failed to read json, days not found\n");
3795 3796
     goto PARSE_OVER;
    }
3797

3798 3799 3800 3801 3802 3803
    cJSON* cache = cJSON_GetObjectItem(dbinfo, "cache");
    if (cache && cache->type == cJSON_Number) {
      g_Dbs.db[i].dbCfg.cache = cache->valueint;
    } else if (!cache) {
      g_Dbs.db[i].dbCfg.cache = -1;
    } else {
3804
     printf("ERROR: failed to read json, cache not found\n");
3805 3806
     goto PARSE_OVER;
    }
3807

3808 3809 3810 3811 3812 3813
    cJSON* blocks= cJSON_GetObjectItem(dbinfo, "blocks");
    if (blocks && blocks->type == cJSON_Number) {
      g_Dbs.db[i].dbCfg.blocks = blocks->valueint;
    } else if (!blocks) {
      g_Dbs.db[i].dbCfg.blocks = -1;
    } else {
3814
     printf("ERROR: failed to read json, block not found\n");
3815 3816 3817 3818 3819 3820 3821 3822 3823 3824 3825 3826 3827 3828 3829 3830 3831
     goto PARSE_OVER;
    }

    //cJSON* maxtablesPerVnode= cJSON_GetObjectItem(dbinfo, "maxtablesPerVnode");
    //if (maxtablesPerVnode && maxtablesPerVnode->type == cJSON_Number) {
    //  g_Dbs.db[i].dbCfg.maxtablesPerVnode = maxtablesPerVnode->valueint;
    //} else if (!maxtablesPerVnode) {
    //  g_Dbs.db[i].dbCfg.maxtablesPerVnode = TSDB_DEFAULT_TABLES;
    //} else {
    // printf("failed to read json, maxtablesPerVnode not found");
    // goto PARSE_OVER;
    //}

    cJSON* minRows= cJSON_GetObjectItem(dbinfo, "minRows");
    if (minRows && minRows->type == cJSON_Number) {
      g_Dbs.db[i].dbCfg.minRows = minRows->valueint;
    } else if (!minRows) {
3832
      g_Dbs.db[i].dbCfg.minRows = 0;    // 0 means default
3833
    } else {
3834
     printf("ERROR: failed to read json, minRows not found\n");
3835 3836 3837 3838 3839 3840 3841
     goto PARSE_OVER;
    }

    cJSON* maxRows= cJSON_GetObjectItem(dbinfo, "maxRows");
    if (maxRows && maxRows->type == cJSON_Number) {
      g_Dbs.db[i].dbCfg.maxRows = maxRows->valueint;
    } else if (!maxRows) {
3842
      g_Dbs.db[i].dbCfg.maxRows = 0;    // 0 means default
3843
    } else {
3844
     printf("ERROR: failed to read json, maxRows not found\n");
3845 3846 3847 3848 3849 3850 3851 3852 3853
     goto PARSE_OVER;
    }

    cJSON* comp= cJSON_GetObjectItem(dbinfo, "comp");
    if (comp && comp->type == cJSON_Number) {
      g_Dbs.db[i].dbCfg.comp = comp->valueint;
    } else if (!comp) {
      g_Dbs.db[i].dbCfg.comp = -1;
    } else {
3854
     printf("ERROR: failed to read json, comp not found\n");
3855 3856 3857 3858 3859 3860 3861 3862 3863
     goto PARSE_OVER;
    }

    cJSON* walLevel= cJSON_GetObjectItem(dbinfo, "walLevel");
    if (walLevel && walLevel->type == cJSON_Number) {
      g_Dbs.db[i].dbCfg.walLevel = walLevel->valueint;
    } else if (!walLevel) {
      g_Dbs.db[i].dbCfg.walLevel = -1;
    } else {
3864
     printf("ERROR: failed to read json, walLevel not found\n");
3865 3866 3867
     goto PARSE_OVER;
    }

3868 3869 3870 3871 3872 3873
    cJSON* cacheLast= cJSON_GetObjectItem(dbinfo, "cachelast");
    if (cacheLast && cacheLast->type == cJSON_Number) {
      g_Dbs.db[i].dbCfg.cacheLast = cacheLast->valueint;
    } else if (!cacheLast) {
      g_Dbs.db[i].dbCfg.cacheLast = -1;
    } else {
3874
     printf("ERROR: failed to read json, cacheLast not found\n");
3875 3876 3877
     goto PARSE_OVER;
    }

3878 3879 3880 3881
    cJSON* quorum= cJSON_GetObjectItem(dbinfo, "quorum");
    if (quorum && quorum->type == cJSON_Number) {
      g_Dbs.db[i].dbCfg.quorum = quorum->valueint;
    } else if (!quorum) {
3882
      g_Dbs.db[i].dbCfg.quorum = 1;
3883
    } else {
3884
     printf("failed to read json, quorum input mistake");
3885 3886 3887 3888 3889 3890 3891 3892 3893
     goto PARSE_OVER;
    }

    cJSON* fsync= cJSON_GetObjectItem(dbinfo, "fsync");
    if (fsync && fsync->type == cJSON_Number) {
      g_Dbs.db[i].dbCfg.fsync = fsync->valueint;
    } else if (!fsync) {
      g_Dbs.db[i].dbCfg.fsync = -1;
    } else {
3894 3895 3896
      errorPrint("%s() LN%d, failed to read json, fsync input mistake\n",
              __func__, __LINE__);
      goto PARSE_OVER;
3897
    }
3898

3899
    // super_talbes
3900 3901
    cJSON *stables = cJSON_GetObjectItem(dbinfos, "super_tables");
    if (!stables || stables->type != cJSON_Array) {
3902 3903
      errorPrint("%s() LN%d, failed to read json, super_tables not found\n",
              __func__, __LINE__);
3904
      goto PARSE_OVER;
3905 3906
    }

3907 3908
    int stbSize = cJSON_GetArraySize(stables);
    if (stbSize > MAX_SUPER_TABLE_COUNT) {
3909
      errorPrint(
3910 3911
              "%s() LN%d, failed to read json, supertable size overflow, max supertable is %d\n",
              __func__, __LINE__, MAX_SUPER_TABLE_COUNT);
3912 3913 3914 3915 3916 3917 3918
      goto PARSE_OVER;
    }

    g_Dbs.db[i].superTblCount = stbSize;
    for (int j = 0; j < stbSize; ++j) {
      cJSON* stbInfo = cJSON_GetArrayItem(stables, j);
      if (stbInfo == NULL) continue;
3919 3920

      // dbinfo
3921
      cJSON *stbName = cJSON_GetObjectItem(stbInfo, "name");
3922 3923
      if (!stbName || stbName->type != cJSON_String
              || stbName->valuestring == NULL) {
3924 3925
        errorPrint("%s() LN%d, failed to read json, stb name not found\n",
                __func__, __LINE__);
3926 3927
        goto PARSE_OVER;
      }
3928
      tstrncpy(g_Dbs.db[i].superTbls[j].sTblName, stbName->valuestring,
3929
              TSDB_TABLE_NAME_LEN);
3930

3931 3932
      cJSON *prefix = cJSON_GetObjectItem(stbInfo, "childtable_prefix");
      if (!prefix || prefix->type != cJSON_String || prefix->valuestring == NULL) {
3933
        printf("ERROR: failed to read json, childtable_prefix not found\n");
3934 3935
        goto PARSE_OVER;
      }
3936
      tstrncpy(g_Dbs.db[i].superTbls[j].childTblPrefix, prefix->valuestring,
3937
              TSDB_TABLE_NAME_LEN - 20);
3938

3939
      cJSON *autoCreateTbl = cJSON_GetObjectItem(stbInfo, "auto_create_table");
3940 3941 3942
      if (autoCreateTbl
              && autoCreateTbl->type == cJSON_String
              && autoCreateTbl->valuestring != NULL) {
3943 3944 3945 3946 3947 3948 3949 3950
          if ((0 == strncasecmp(autoCreateTbl->valuestring, "yes", 3))
                  && (TBL_ALREADY_EXISTS != g_Dbs.db[i].superTbls[j].childTblExists)) {
              g_Dbs.db[i].superTbls[j].autoCreateTable = AUTO_CREATE_SUBTBL;
          } else if (0 == strncasecmp(autoCreateTbl->valuestring, "no", 2)) {
              g_Dbs.db[i].superTbls[j].autoCreateTable = PRE_CREATE_SUBTBL;
          } else {
              g_Dbs.db[i].superTbls[j].autoCreateTable = PRE_CREATE_SUBTBL;
          }
3951
      } else if (!autoCreateTbl) {
3952
          g_Dbs.db[i].superTbls[j].autoCreateTable = PRE_CREATE_SUBTBL;
3953
      } else {
3954 3955
          printf("ERROR: failed to read json, auto_create_table not found\n");
          goto PARSE_OVER;
3956
      }
3957

3958 3959 3960 3961
      cJSON* batchCreateTbl = cJSON_GetObjectItem(stbInfo, "batch_create_tbl_num");
      if (batchCreateTbl && batchCreateTbl->type == cJSON_Number) {
        g_Dbs.db[i].superTbls[j].batchCreateTableNum = batchCreateTbl->valueint;
      } else if (!batchCreateTbl) {
3962
        g_Dbs.db[i].superTbls[j].batchCreateTableNum = 1000;
3963
      } else {
3964
        printf("ERROR: failed to read json, batch_create_tbl_num not found\n");
3965
        goto PARSE_OVER;
3966
      }
3967 3968

      cJSON *childTblExists = cJSON_GetObjectItem(stbInfo, "child_table_exists"); // yes, no
3969 3970 3971
      if (childTblExists
              && childTblExists->type == cJSON_String
              && childTblExists->valuestring != NULL) {
3972 3973
        if ((0 == strncasecmp(childTblExists->valuestring, "yes", 3))
            && (g_Dbs.db[i].drop == false)) {
3974
          g_Dbs.db[i].superTbls[j].childTblExists = TBL_ALREADY_EXISTS;
3975 3976
        } else if ((0 == strncasecmp(childTblExists->valuestring, "no", 2)
              || (g_Dbs.db[i].drop == true))) {
3977 3978 3979 3980 3981 3982 3983
          g_Dbs.db[i].superTbls[j].childTblExists = TBL_NO_EXISTS;
        } else {
          g_Dbs.db[i].superTbls[j].childTblExists = TBL_NO_EXISTS;
        }
      } else if (!childTblExists) {
        g_Dbs.db[i].superTbls[j].childTblExists = TBL_NO_EXISTS;
      } else {
3984 3985
        errorPrint("%s() LN%d, failed to read json, child_table_exists not found\n",
                __func__, __LINE__);
3986 3987
        goto PARSE_OVER;
      }
3988

3989 3990 3991 3992
      if (TBL_ALREADY_EXISTS == g_Dbs.db[i].superTbls[j].childTblExists) {
          g_Dbs.db[i].superTbls[j].autoCreateTable = PRE_CREATE_SUBTBL;
      }

3993 3994
      cJSON* count = cJSON_GetObjectItem(stbInfo, "childtable_count");
      if (!count || count->type != cJSON_Number || 0 >= count->valueint) {
3995
        errorPrint("%s() LN%d, failed to read json, childtable_count input mistake\n",
3996
                __func__, __LINE__);
3997 3998 3999 4000 4001
        goto PARSE_OVER;
      }
      g_Dbs.db[i].superTbls[j].childTblCount = count->valueint;

      cJSON *dataSource = cJSON_GetObjectItem(stbInfo, "data_source");
4002 4003 4004
      if (dataSource && dataSource->type == cJSON_String
              && dataSource->valuestring != NULL) {
        tstrncpy(g_Dbs.db[i].superTbls[j].dataSource,
4005
                dataSource->valuestring, TSDB_DB_NAME_LEN);
4006
      } else if (!dataSource) {
4007
        tstrncpy(g_Dbs.db[i].superTbls[j].dataSource, "rand", TSDB_DB_NAME_LEN);
4008
      } else {
4009 4010
        errorPrint("%s() LN%d, failed to read json, data_source not found\n",
            __func__, __LINE__);
4011 4012 4013
        goto PARSE_OVER;
      }

4014 4015 4016 4017 4018 4019 4020
      cJSON *stbIface = cJSON_GetObjectItem(stbInfo, "insert_mode"); // taosc , rest, stmt
      if (stbIface && stbIface->type == cJSON_String
              && stbIface->valuestring != NULL) {
        if (0 == strcasecmp(stbIface->valuestring, "taosc")) {
            g_Dbs.db[i].superTbls[j].iface= TAOSC_IFACE;
        } else if (0 == strcasecmp(stbIface->valuestring, "rest")) {
            g_Dbs.db[i].superTbls[j].iface= REST_IFACE;
4021
#if STMT_IFACE_ENABLED == 1
4022 4023
        } else if (0 == strcasecmp(stbIface->valuestring, "stmt")) {
            g_Dbs.db[i].superTbls[j].iface= STMT_IFACE;
4024
#endif
4025 4026 4027 4028 4029 4030 4031
        } else {
            errorPrint("%s() LN%d, failed to read json, insert_mode %s not recognized\n",
                    __func__, __LINE__, stbIface->valuestring);
            goto PARSE_OVER;
        }
      } else if (!stbIface) {
        g_Dbs.db[i].superTbls[j].iface = TAOSC_IFACE;
4032
      } else {
4033
        errorPrint("%s", "failed to read json, insert_mode not found\n");
4034 4035 4036
        goto PARSE_OVER;
      }

4037
      cJSON* childTbl_limit = cJSON_GetObjectItem(stbInfo, "childtable_limit");
4038 4039
      if ((childTbl_limit) && (g_Dbs.db[i].drop != true)
          && (g_Dbs.db[i].superTbls[j].childTblExists == TBL_ALREADY_EXISTS)) {
4040 4041 4042 4043 4044 4045
        if (childTbl_limit->type != cJSON_Number) {
            printf("ERROR: failed to read json, childtable_limit\n");
            goto PARSE_OVER;
        }
        g_Dbs.db[i].superTbls[j].childTblLimit = childTbl_limit->valueint;
      } else {
4046
        g_Dbs.db[i].superTbls[j].childTblLimit = -1;    // select ... limit -1 means all query result, drop = yes mean all table need recreate, limit value is invalid.
4047 4048 4049
      }

      cJSON* childTbl_offset = cJSON_GetObjectItem(stbInfo, "childtable_offset");
4050 4051
      if ((childTbl_offset) && (g_Dbs.db[i].drop != true)
          && (g_Dbs.db[i].superTbls[j].childTblExists == TBL_ALREADY_EXISTS)) {
4052 4053
        if ((childTbl_offset->type != cJSON_Number)
                || (0 > childTbl_offset->valueint)) {
4054 4055 4056 4057 4058 4059 4060 4061
            printf("ERROR: failed to read json, childtable_offset\n");
            goto PARSE_OVER;
        }
        g_Dbs.db[i].superTbls[j].childTblOffset = childTbl_offset->valueint;
      } else {
        g_Dbs.db[i].superTbls[j].childTblOffset = 0;
      }

4062 4063
      cJSON *ts = cJSON_GetObjectItem(stbInfo, "start_timestamp");
      if (ts && ts->type == cJSON_String && ts->valuestring != NULL) {
4064
        tstrncpy(g_Dbs.db[i].superTbls[j].startTimestamp,
4065
                ts->valuestring, TSDB_DB_NAME_LEN);
4066
      } else if (!ts) {
4067
        tstrncpy(g_Dbs.db[i].superTbls[j].startTimestamp,
4068
                "now", TSDB_DB_NAME_LEN);
4069
      } else {
4070
        printf("ERROR: failed to read json, start_timestamp not found\n");
4071 4072
        goto PARSE_OVER;
      }
4073

4074 4075 4076 4077
      cJSON* timestampStep = cJSON_GetObjectItem(stbInfo, "timestamp_step");
      if (timestampStep && timestampStep->type == cJSON_Number) {
        g_Dbs.db[i].superTbls[j].timeStampStep = timestampStep->valueint;
      } else if (!timestampStep) {
4078
        g_Dbs.db[i].superTbls[j].timeStampStep = DEFAULT_TIMESTAMP_STEP;
4079
      } else {
4080
        printf("ERROR: failed to read json, timestamp_step not found\n");
4081 4082 4083 4084
        goto PARSE_OVER;
      }

      cJSON *sampleFormat = cJSON_GetObjectItem(stbInfo, "sample_format");
4085 4086
      if (sampleFormat && sampleFormat->type
              == cJSON_String && sampleFormat->valuestring != NULL) {
4087
        tstrncpy(g_Dbs.db[i].superTbls[j].sampleFormat,
4088
                sampleFormat->valuestring, TSDB_DB_NAME_LEN);
4089
      } else if (!sampleFormat) {
4090
        tstrncpy(g_Dbs.db[i].superTbls[j].sampleFormat, "csv", TSDB_DB_NAME_LEN);
4091
      } else {
4092
        printf("ERROR: failed to read json, sample_format not found\n");
4093
        goto PARSE_OVER;
4094
      }
4095

4096
      cJSON *sampleFile = cJSON_GetObjectItem(stbInfo, "sample_file");
4097 4098
      if (sampleFile && sampleFile->type == cJSON_String
          && sampleFile->valuestring != NULL) {
4099 4100
        tstrncpy(g_Dbs.db[i].superTbls[j].sampleFile,
                sampleFile->valuestring, MAX_FILE_NAME_LEN);
4101 4102 4103
      } else if (!sampleFile) {
        memset(g_Dbs.db[i].superTbls[j].sampleFile, 0, MAX_FILE_NAME_LEN);
      } else {
4104
        printf("ERROR: failed to read json, sample_file not found\n");
4105
        goto PARSE_OVER;
4106
      }
4107

4108
      cJSON *tagsFile = cJSON_GetObjectItem(stbInfo, "tags_file");
4109 4110
      if ((tagsFile && tagsFile->type == cJSON_String)
              && (tagsFile->valuestring != NULL)) {
4111 4112
        tstrncpy(g_Dbs.db[i].superTbls[j].tagsFile,
                tagsFile->valuestring, MAX_FILE_NAME_LEN);
4113 4114 4115 4116 4117 4118 4119 4120 4121
        if (0 == g_Dbs.db[i].superTbls[j].tagsFile[0]) {
          g_Dbs.db[i].superTbls[j].tagSource = 0;
        } else {
          g_Dbs.db[i].superTbls[j].tagSource = 1;
        }
      } else if (!tagsFile) {
        memset(g_Dbs.db[i].superTbls[j].tagsFile, 0, MAX_FILE_NAME_LEN);
        g_Dbs.db[i].superTbls[j].tagSource = 0;
      } else {
4122
        printf("ERROR: failed to read json, tags_file not found\n");
4123 4124
        goto PARSE_OVER;
      }
4125

4126 4127 4128
      cJSON* stbMaxSqlLen = cJSON_GetObjectItem(stbInfo, "max_sql_len");
      if (stbMaxSqlLen && stbMaxSqlLen->type == cJSON_Number) {
        int32_t len = stbMaxSqlLen->valueint;
4129 4130
        if (len > TSDB_MAX_ALLOWED_SQL_LEN) {
          len = TSDB_MAX_ALLOWED_SQL_LEN;
4131 4132
        } else if (len < 5) {
          len = 5;
4133
        }
4134 4135
        g_Dbs.db[i].superTbls[j].maxSqlLen = len;
      } else if (!maxSqlLen) {
4136
        g_Dbs.db[i].superTbls[j].maxSqlLen = g_args.max_sql_len;
4137
      } else {
4138
        errorPrint("%s() LN%d, failed to read json, stbMaxSqlLen input mistake\n",
4139
            __func__, __LINE__);
4140
        goto PARSE_OVER;
4141
      }
4142
/*
4143 4144 4145 4146 4147
      cJSON *multiThreadWriteOneTbl =
          cJSON_GetObjectItem(stbInfo, "multi_thread_write_one_tbl"); // no , yes
      if (multiThreadWriteOneTbl
              && multiThreadWriteOneTbl->type == cJSON_String
              && multiThreadWriteOneTbl->valuestring != NULL) {
4148 4149 4150 4151
        if (0 == strncasecmp(multiThreadWriteOneTbl->valuestring, "yes", 3)) {
          g_Dbs.db[i].superTbls[j].multiThreadWriteOneTbl = 1;
        } else {
          g_Dbs.db[i].superTbls[j].multiThreadWriteOneTbl = 0;
4152
        }
4153 4154 4155
      } else if (!multiThreadWriteOneTbl) {
        g_Dbs.db[i].superTbls[j].multiThreadWriteOneTbl = 0;
      } else {
4156
        printf("ERROR: failed to read json, multiThreadWriteOneTbl not found\n");
4157 4158
        goto PARSE_OVER;
      }
4159
*/
4160 4161 4162
      cJSON* stbInterlaceRows = cJSON_GetObjectItem(stbInfo, "interlace_rows");
      if (stbInterlaceRows && stbInterlaceRows->type == cJSON_Number) {
        if (stbInterlaceRows->valueint < 0) {
4163 4164 4165 4166
          errorPrint("%s() LN%d, failed to read json, interlace rows input mistake\n",
            __func__, __LINE__);
          goto PARSE_OVER;
        }
4167
        g_Dbs.db[i].superTbls[j].interlaceRows = stbInterlaceRows->valueint;
4168 4169
        // rows per table need be less than insert batch
        if (g_Dbs.db[i].superTbls[j].interlaceRows > g_args.num_of_RPR) {
4170 4171 4172 4173
          printf("NOTICE: db[%d].superTbl[%d]'s interlace rows value %u > num_of_records_per_req %u\n\n",
                  i, j, g_Dbs.db[i].superTbls[j].interlaceRows,
                  g_args.num_of_RPR);
          printf("        interlace rows value will be set to num_of_records_per_req %u\n\n",
4174
                  g_args.num_of_RPR);
4175
          prompt();
4176 4177
          g_Dbs.db[i].superTbls[j].interlaceRows = g_args.num_of_RPR;
        }
4178
      } else if (!stbInterlaceRows) {
4179
        g_Dbs.db[i].superTbls[j].interlaceRows = 0; // 0 means progressive mode, > 0 mean interlace mode. max value is less or equ num_of_records_per_req
4180
      } else {
4181 4182 4183
        errorPrint(
                "%s() LN%d, failed to read json, interlace rows input mistake\n",
                __func__, __LINE__);
4184
        goto PARSE_OVER;
4185
      }
4186 4187 4188

      cJSON* disorderRatio = cJSON_GetObjectItem(stbInfo, "disorder_ratio");
      if (disorderRatio && disorderRatio->type == cJSON_Number) {
4189 4190 4191 4192 4193 4194
        if (disorderRatio->valueint > 50)
          disorderRatio->valueint = 50;

        if (disorderRatio->valueint < 0)
          disorderRatio->valueint = 0;

4195 4196 4197 4198
        g_Dbs.db[i].superTbls[j].disorderRatio = disorderRatio->valueint;
      } else if (!disorderRatio) {
        g_Dbs.db[i].superTbls[j].disorderRatio = 0;
      } else {
4199
        printf("ERROR: failed to read json, disorderRatio not found\n");
4200
        goto PARSE_OVER;
4201
      }
4202 4203 4204 4205 4206 4207 4208

      cJSON* disorderRange = cJSON_GetObjectItem(stbInfo, "disorder_range");
      if (disorderRange && disorderRange->type == cJSON_Number) {
        g_Dbs.db[i].superTbls[j].disorderRange = disorderRange->valueint;
      } else if (!disorderRange) {
        g_Dbs.db[i].superTbls[j].disorderRange = 1000;
      } else {
4209
        printf("ERROR: failed to read json, disorderRange not found\n");
4210 4211
        goto PARSE_OVER;
      }
4212

4213 4214
      cJSON* insertRows = cJSON_GetObjectItem(stbInfo, "insert_rows");
      if (insertRows && insertRows->type == cJSON_Number) {
4215 4216 4217 4218 4219
        if (insertRows->valueint < 0) {
          errorPrint("%s() LN%d, failed to read json, insert_rows input mistake\n",
                __func__, __LINE__);
          goto PARSE_OVER;
        }
4220 4221 4222 4223
        g_Dbs.db[i].superTbls[j].insertRows = insertRows->valueint;
      } else if (!insertRows) {
        g_Dbs.db[i].superTbls[j].insertRows = 0x7FFFFFFFFFFFFFFF;
      } else {
4224 4225
        errorPrint("%s() LN%d, failed to read json, insert_rows input mistake\n",
                __func__, __LINE__);
4226 4227 4228 4229 4230 4231
        goto PARSE_OVER;
      }

      cJSON* insertInterval = cJSON_GetObjectItem(stbInfo, "insert_interval");
      if (insertInterval && insertInterval->type == cJSON_Number) {
        g_Dbs.db[i].superTbls[j].insertInterval = insertInterval->valueint;
4232 4233 4234 4235 4236
        if (insertInterval->valueint < 0) {
          errorPrint("%s() LN%d, failed to read json, insert_interval input mistake\n",
                __func__, __LINE__);
          goto PARSE_OVER;
        }
4237
      } else if (!insertInterval) {
4238
        verbosePrint("%s() LN%d: stable insert interval be overrided by global %"PRIu64".\n",
4239 4240 4241
                __func__, __LINE__, g_args.insert_interval);
        g_Dbs.db[i].superTbls[j].insertInterval = g_args.insert_interval;
      } else {
4242 4243
        errorPrint("%s() LN%d, failed to read json, insert_interval input mistake\n",
                __func__, __LINE__);
4244 4245 4246
        goto PARSE_OVER;
      }

4247 4248
      int retVal = getColumnAndTagTypeFromInsertJsonFile(
              stbInfo, &g_Dbs.db[i].superTbls[j]);
4249 4250
      if (false == retVal) {
        goto PARSE_OVER;
4251 4252
      }
    }
4253 4254 4255 4256 4257 4258 4259 4260 4261 4262 4263 4264 4265
  }

  ret = true;

PARSE_OVER:
  return ret;
}

static bool getMetaFromQueryJsonFile(cJSON* root) {
  bool  ret = false;

  cJSON* cfgdir = cJSON_GetObjectItem(root, "cfgdir");
  if (cfgdir && cfgdir->type == cJSON_String && cfgdir->valuestring != NULL) {
4266
    tstrncpy(g_queryInfo.cfgDir, cfgdir->valuestring, MAX_FILE_NAME_LEN);
4267 4268 4269 4270
  }

  cJSON* host = cJSON_GetObjectItem(root, "host");
  if (host && host->type == cJSON_String && host->valuestring != NULL) {
4271
    tstrncpy(g_queryInfo.host, host->valuestring, MAX_HOSTNAME_SIZE);
4272
  } else if (!host) {
4273
    tstrncpy(g_queryInfo.host, "127.0.0.1", MAX_HOSTNAME_SIZE);
4274
  } else {
4275
    printf("ERROR: failed to read json, host not found\n");
4276 4277 4278 4279 4280 4281 4282 4283 4284 4285 4286 4287
    goto PARSE_OVER;
  }

  cJSON* port = cJSON_GetObjectItem(root, "port");
  if (port && port->type == cJSON_Number) {
    g_queryInfo.port = port->valueint;
  } else if (!port) {
    g_queryInfo.port = 6030;
  }

  cJSON* user = cJSON_GetObjectItem(root, "user");
  if (user && user->type == cJSON_String && user->valuestring != NULL) {
4288
    tstrncpy(g_queryInfo.user, user->valuestring, MAX_USERNAME_SIZE);
4289
  } else if (!user) {
4290
    tstrncpy(g_queryInfo.user, "root", MAX_USERNAME_SIZE); ;
4291 4292 4293 4294
  }

  cJSON* password = cJSON_GetObjectItem(root, "password");
  if (password && password->type == cJSON_String && password->valuestring != NULL) {
4295
    tstrncpy(g_queryInfo.password, password->valuestring, MAX_PASSWORD_SIZE);
4296
  } else if (!password) {
4297
    tstrncpy(g_queryInfo.password, "taosdata", MAX_PASSWORD_SIZE);;
4298
  }
H
hzcheng 已提交
4299

4300
  cJSON *answerPrompt = cJSON_GetObjectItem(root, "confirm_parameter_prompt"); // yes, no,
4301 4302
  if (answerPrompt && answerPrompt->type == cJSON_String
          && answerPrompt->valuestring != NULL) {
4303 4304 4305 4306
    if (0 == strncasecmp(answerPrompt->valuestring, "yes", 3)) {
      g_args.answer_yes = false;
    } else if (0 == strncasecmp(answerPrompt->valuestring, "no", 2)) {
      g_args.answer_yes = true;
H
hzcheng 已提交
4307
    } else {
4308
      g_args.answer_yes = false;
H
hzcheng 已提交
4309
    }
4310 4311 4312
  } else if (!answerPrompt) {
    g_args.answer_yes = false;
  } else {
4313
    printf("ERROR: failed to read json, confirm_parameter_prompt not found\n");
4314
    goto PARSE_OVER;
4315
  }
4316

4317 4318
  cJSON* gQueryTimes = cJSON_GetObjectItem(root, "query_times");
  if (gQueryTimes && gQueryTimes->type == cJSON_Number) {
4319
    if (gQueryTimes->valueint <= 0) {
4320 4321
      errorPrint("%s() LN%d, failed to read json, query_times input mistake\n",
        __func__, __LINE__);
4322 4323
      goto PARSE_OVER;
    }
4324 4325 4326 4327
    g_args.query_times = gQueryTimes->valueint;
  } else if (!gQueryTimes) {
    g_args.query_times = 1;
  } else {
4328 4329
    errorPrint("%s() LN%d, failed to read json, query_times input mistake\n",
        __func__, __LINE__);
4330 4331 4332
    goto PARSE_OVER;
  }

4333 4334
  cJSON* dbs = cJSON_GetObjectItem(root, "databases");
  if (dbs && dbs->type == cJSON_String && dbs->valuestring != NULL) {
4335
    tstrncpy(g_queryInfo.dbName, dbs->valuestring, TSDB_DB_NAME_LEN);
4336
  } else if (!dbs) {
4337
    printf("ERROR: failed to read json, databases not found\n");
4338
    goto PARSE_OVER;
H
hzcheng 已提交
4339
  }
4340 4341 4342

  cJSON* queryMode = cJSON_GetObjectItem(root, "query_mode");
  if (queryMode && queryMode->type == cJSON_String && queryMode->valuestring != NULL) {
4343
    tstrncpy(g_queryInfo.queryMode, queryMode->valuestring, MAX_TB_NAME_SIZE);
4344
  } else if (!queryMode) {
4345
    tstrncpy(g_queryInfo.queryMode, "taosc", MAX_TB_NAME_SIZE);
4346
  } else {
4347
    printf("ERROR: failed to read json, query_mode not found\n");
4348
    goto PARSE_OVER;
H
hzcheng 已提交
4349
  }
4350

4351
  // specified_table_query
4352 4353
  cJSON *specifiedQuery = cJSON_GetObjectItem(root, "specified_table_query");
  if (!specifiedQuery) {
4354
    g_queryInfo.specifiedQueryInfo.concurrent = 1;
4355 4356
    g_queryInfo.specifiedQueryInfo.sqlCount = 0;
  } else if (specifiedQuery->type != cJSON_Object) {
4357
    printf("ERROR: failed to read json, super_table_query not found\n");
4358
    goto PARSE_OVER;
4359
  } else {
4360 4361 4362 4363 4364
    cJSON* queryInterval = cJSON_GetObjectItem(specifiedQuery, "query_interval");
    if (queryInterval && queryInterval->type == cJSON_Number) {
      g_queryInfo.specifiedQueryInfo.queryInterval = queryInterval->valueint;
    } else if (!queryInterval) {
      g_queryInfo.specifiedQueryInfo.queryInterval = 0;
4365 4366
    }

4367 4368
    cJSON* specifiedQueryTimes = cJSON_GetObjectItem(specifiedQuery,
        "query_times");
4369
    if (specifiedQueryTimes && specifiedQueryTimes->type == cJSON_Number) {
4370
      if (specifiedQueryTimes->valueint <= 0) {
4371 4372
        errorPrint(
                "%s() LN%d, failed to read json, query_times: %"PRId64", need be a valid (>0) number\n",
4373
          __func__, __LINE__, specifiedQueryTimes->valueint);
4374 4375 4376
        goto PARSE_OVER;

      }
4377 4378 4379 4380
      g_queryInfo.specifiedQueryInfo.queryTimes = specifiedQueryTimes->valueint;
    } else if (!specifiedQueryTimes) {
      g_queryInfo.specifiedQueryInfo.queryTimes = g_args.query_times;
    } else {
4381 4382
      errorPrint("%s() LN%d, failed to read json, query_times input mistake\n",
          __func__, __LINE__);
4383
      goto PARSE_OVER;
4384
    }
4385

4386
    cJSON* concurrent = cJSON_GetObjectItem(specifiedQuery, "concurrent");
4387
    if (concurrent && concurrent->type == cJSON_Number) {
4388
      if (concurrent->valueint <= 0) {
4389
        errorPrint(
4390
                "%s() LN%d, query sqlCount %d or concurrent %d is not correct.\n",
4391 4392
              __func__, __LINE__,
              g_queryInfo.specifiedQueryInfo.sqlCount,
4393 4394 4395
              g_queryInfo.specifiedQueryInfo.concurrent);
        goto PARSE_OVER;
      }
4396
      g_queryInfo.specifiedQueryInfo.concurrent = concurrent->valueint;
4397
    } else if (!concurrent) {
4398
      g_queryInfo.specifiedQueryInfo.concurrent = 1;
4399
    }
4400

4401 4402 4403 4404 4405 4406 4407
    cJSON* specifiedAsyncMode = cJSON_GetObjectItem(specifiedQuery, "mode");
    if (specifiedAsyncMode && specifiedAsyncMode->type == cJSON_String
        && specifiedAsyncMode->valuestring != NULL) {
      if (0 == strcmp("sync", specifiedAsyncMode->valuestring)) {
        g_queryInfo.specifiedQueryInfo.asyncMode = SYNC_MODE;
      } else if (0 == strcmp("async", specifiedAsyncMode->valuestring)) {
        g_queryInfo.specifiedQueryInfo.asyncMode = ASYNC_MODE;
4408
      } else {
4409
        errorPrint("%s() LN%d, failed to read json, async mode input error\n",
4410
            __func__, __LINE__);
4411 4412 4413
        goto PARSE_OVER;
      }
    } else {
4414
      g_queryInfo.specifiedQueryInfo.asyncMode = SYNC_MODE;
4415
    }
4416

4417
    cJSON* interval = cJSON_GetObjectItem(specifiedQuery, "interval");
4418
    if (interval && interval->type == cJSON_Number) {
4419
      g_queryInfo.specifiedQueryInfo.subscribeInterval = interval->valueint;
4420
    } else if (!interval) {
4421 4422
      //printf("failed to read json, subscribe interval no found\n");
      //goto PARSE_OVER;
4423
      g_queryInfo.specifiedQueryInfo.subscribeInterval = 10000;
4424
    }
4425

4426
    cJSON* restart = cJSON_GetObjectItem(specifiedQuery, "restart");
4427
    if (restart && restart->type == cJSON_String && restart->valuestring != NULL) {
4428
      if (0 == strcmp("yes", restart->valuestring)) {
4429
        g_queryInfo.specifiedQueryInfo.subscribeRestart = true;
4430
      } else if (0 == strcmp("no", restart->valuestring)) {
4431
        g_queryInfo.specifiedQueryInfo.subscribeRestart = false;
4432
      } else {
4433
        printf("ERROR: failed to read json, subscribe restart error\n");
4434 4435 4436
        goto PARSE_OVER;
      }
    } else {
4437
      g_queryInfo.specifiedQueryInfo.subscribeRestart = true;
4438
    }
4439

4440
    cJSON* keepProgress = cJSON_GetObjectItem(specifiedQuery, "keepProgress");
4441 4442 4443
    if (keepProgress
            && keepProgress->type == cJSON_String
            && keepProgress->valuestring != NULL) {
4444
      if (0 == strcmp("yes", keepProgress->valuestring)) {
4445
        g_queryInfo.specifiedQueryInfo.subscribeKeepProgress = 1;
4446
      } else if (0 == strcmp("no", keepProgress->valuestring)) {
4447
        g_queryInfo.specifiedQueryInfo.subscribeKeepProgress = 0;
4448
      } else {
4449
        printf("ERROR: failed to read json, subscribe keepProgress error\n");
4450 4451 4452
        goto PARSE_OVER;
      }
    } else {
4453
      g_queryInfo.specifiedQueryInfo.subscribeKeepProgress = 0;
4454 4455
    }

4456
    // sqls
4457 4458
    cJSON* specifiedSqls = cJSON_GetObjectItem(specifiedQuery, "sqls");
    if (!specifiedSqls) {
4459
      g_queryInfo.specifiedQueryInfo.sqlCount = 0;
4460
    } else if (specifiedSqls->type != cJSON_Array) {
4461 4462
      errorPrint("%s() LN%d, failed to read json, super sqls not found\n",
          __func__, __LINE__);
4463
      goto PARSE_OVER;
4464
    } else {
4465 4466 4467 4468 4469 4470 4471 4472
      int superSqlSize = cJSON_GetArraySize(specifiedSqls);
      if (superSqlSize * g_queryInfo.specifiedQueryInfo.concurrent
              > MAX_QUERY_SQL_COUNT) {
        errorPrint("%s() LN%d, failed to read json, query sql(%d) * concurrent(%d) overflow, max is %d\n",
           __func__, __LINE__,
           superSqlSize,
           g_queryInfo.specifiedQueryInfo.concurrent,
           MAX_QUERY_SQL_COUNT);
4473 4474
        goto PARSE_OVER;
      }
4475

4476
      g_queryInfo.specifiedQueryInfo.sqlCount = superSqlSize;
4477
      for (int j = 0; j < superSqlSize; ++j) {
4478
        cJSON* sql = cJSON_GetArrayItem(specifiedSqls, j);
4479
        if (sql == NULL) continue;
4480

4481 4482
        cJSON *sqlStr = cJSON_GetObjectItem(sql, "sql");
        if (!sqlStr || sqlStr->type != cJSON_String || sqlStr->valuestring == NULL) {
4483
          printf("ERROR: failed to read json, sql not found\n");
4484 4485
          goto PARSE_OVER;
        }
4486 4487 4488
        tstrncpy(g_queryInfo.specifiedQueryInfo.sql[j],
                sqlStr->valuestring, MAX_QUERY_SQL_LENGTH);

4489 4490
        // default value is -1, which mean infinite loop
        g_queryInfo.specifiedQueryInfo.endAfterConsume[j] = -1;
4491 4492 4493 4494 4495 4496 4497
        cJSON* endAfterConsume =
            cJSON_GetObjectItem(specifiedQuery, "endAfterConsume");
        if (endAfterConsume
                && endAfterConsume->type == cJSON_Number) {
            g_queryInfo.specifiedQueryInfo.endAfterConsume[j]
                = endAfterConsume->valueint;
        }
4498 4499
        if (g_queryInfo.specifiedQueryInfo.endAfterConsume[j] < -1)
            g_queryInfo.specifiedQueryInfo.endAfterConsume[j] = -1;
4500

4501
        g_queryInfo.specifiedQueryInfo.resubAfterConsume[j] = -1;
4502 4503
        cJSON* resubAfterConsume =
            cJSON_GetObjectItem(specifiedQuery, "resubAfterConsume");
4504 4505 4506
        if ((resubAfterConsume)
                && (resubAfterConsume->type == cJSON_Number)
                && (resubAfterConsume->valueint >= 0)) {
4507 4508 4509
            g_queryInfo.specifiedQueryInfo.resubAfterConsume[j]
                = resubAfterConsume->valueint;
        }
H
hzcheng 已提交
4510

4511 4512 4513
        if (g_queryInfo.specifiedQueryInfo.resubAfterConsume[j] < -1)
            g_queryInfo.specifiedQueryInfo.resubAfterConsume[j] = -1;

4514
        cJSON *result = cJSON_GetObjectItem(sql, "result");
4515 4516 4517 4518
        if ((NULL != result) && (result->type == cJSON_String)
                && (result->valuestring != NULL)) {
          tstrncpy(g_queryInfo.specifiedQueryInfo.result[j],
                  result->valuestring, MAX_FILE_NAME_LEN);
4519
        } else if (NULL == result) {
4520 4521
          memset(g_queryInfo.specifiedQueryInfo.result[j],
                  0, MAX_FILE_NAME_LEN);
4522
        } else {
4523
          printf("ERROR: failed to read json, super query result file not found\n");
4524
          goto PARSE_OVER;
4525
        }
4526 4527 4528
      }
    }
  }
4529

4530
  // super_table_query
4531 4532
  cJSON *superQuery = cJSON_GetObjectItem(root, "super_table_query");
  if (!superQuery) {
4533
    g_queryInfo.superQueryInfo.threadCnt = 1;
4534 4535
    g_queryInfo.superQueryInfo.sqlCount = 0;
  } else if (superQuery->type != cJSON_Object) {
4536
    printf("ERROR: failed to read json, sub_table_query not found\n");
4537 4538
    ret = true;
    goto PARSE_OVER;
H
hzcheng 已提交
4539
  } else {
4540
    cJSON* subrate = cJSON_GetObjectItem(superQuery, "query_interval");
4541
    if (subrate && subrate->type == cJSON_Number) {
4542
      g_queryInfo.superQueryInfo.queryInterval = subrate->valueint;
4543
    } else if (!subrate) {
4544
      g_queryInfo.superQueryInfo.queryInterval = 0;
4545 4546 4547 4548
    }

    cJSON* superQueryTimes = cJSON_GetObjectItem(superQuery, "query_times");
    if (superQueryTimes && superQueryTimes->type == cJSON_Number) {
4549 4550 4551
      if (superQueryTimes->valueint <= 0) {
        errorPrint("%s() LN%d, failed to read json, query_times: %"PRId64", need be a valid (>0) number\n",
          __func__, __LINE__, superQueryTimes->valueint);
4552 4553
        goto PARSE_OVER;
      }
4554 4555 4556 4557
      g_queryInfo.superQueryInfo.queryTimes = superQueryTimes->valueint;
    } else if (!superQueryTimes) {
      g_queryInfo.superQueryInfo.queryTimes = g_args.query_times;
    } else {
4558 4559
      errorPrint("%s() LN%d, failed to read json, query_times input mistake\n",
          __func__, __LINE__);
4560
      goto PARSE_OVER;
4561
    }
4562

4563
    cJSON* threads = cJSON_GetObjectItem(superQuery, "threads");
4564
    if (threads && threads->type == cJSON_Number) {
4565 4566 4567 4568 4569 4570
      if (threads->valueint <= 0) {
        errorPrint("%s() LN%d, failed to read json, threads input mistake\n",
          __func__, __LINE__);
        goto PARSE_OVER;

      }
4571
      g_queryInfo.superQueryInfo.threadCnt = threads->valueint;
4572
    } else if (!threads) {
4573
      g_queryInfo.superQueryInfo.threadCnt = 1;
4574
    }
4575

4576
    //cJSON* subTblCnt = cJSON_GetObjectItem(superQuery, "childtable_count");
4577
    //if (subTblCnt && subTblCnt->type == cJSON_Number) {
4578
    //  g_queryInfo.superQueryInfo.childTblCount = subTblCnt->valueint;
4579
    //} else if (!subTblCnt) {
4580
    //  g_queryInfo.superQueryInfo.childTblCount = 0;
4581
    //}
4582

4583
    cJSON* stblname = cJSON_GetObjectItem(superQuery, "stblname");
4584 4585 4586
    if (stblname && stblname->type == cJSON_String
        && stblname->valuestring != NULL) {
      tstrncpy(g_queryInfo.superQueryInfo.sTblName, stblname->valuestring,
4587
          TSDB_TABLE_NAME_LEN);
4588
    } else {
4589 4590
      errorPrint("%s() LN%d, failed to read json, super table name input error\n",
          __func__, __LINE__);
4591 4592
      goto PARSE_OVER;
    }
4593

4594 4595 4596 4597 4598 4599 4600
    cJSON* superAsyncMode = cJSON_GetObjectItem(superQuery, "mode");
    if (superAsyncMode && superAsyncMode->type == cJSON_String
        && superAsyncMode->valuestring != NULL) {
      if (0 == strcmp("sync", superAsyncMode->valuestring)) {
        g_queryInfo.superQueryInfo.asyncMode = SYNC_MODE;
      } else if (0 == strcmp("async", superAsyncMode->valuestring)) {
        g_queryInfo.superQueryInfo.asyncMode = ASYNC_MODE;
4601
      } else {
4602
        errorPrint("%s() LN%d, failed to read json, async mode input error\n",
4603
            __func__, __LINE__);
4604 4605 4606
        goto PARSE_OVER;
      }
    } else {
4607
      g_queryInfo.superQueryInfo.asyncMode = SYNC_MODE;
4608
    }
4609

4610 4611 4612 4613 4614 4615 4616 4617 4618
    cJSON* superInterval = cJSON_GetObjectItem(superQuery, "interval");
    if (superInterval && superInterval->type == cJSON_Number) {
      if (superInterval->valueint < 0) {
        errorPrint("%s() LN%d, failed to read json, interval input mistake\n",
            __func__, __LINE__);
        goto PARSE_OVER;
      }
      g_queryInfo.superQueryInfo.subscribeInterval = superInterval->valueint;
    } else if (!superInterval) {
4619 4620
      //printf("failed to read json, subscribe interval no found\n");
      //goto PARSE_OVER;
4621
      g_queryInfo.superQueryInfo.subscribeInterval = 10000;
4622
    }
4623

4624
    cJSON* subrestart = cJSON_GetObjectItem(superQuery, "restart");
4625 4626
    if (subrestart && subrestart->type == cJSON_String
        && subrestart->valuestring != NULL) {
4627
      if (0 == strcmp("yes", subrestart->valuestring)) {
4628
        g_queryInfo.superQueryInfo.subscribeRestart = true;
4629
      } else if (0 == strcmp("no", subrestart->valuestring)) {
4630
        g_queryInfo.superQueryInfo.subscribeRestart = false;
4631
      } else {
4632
        printf("ERROR: failed to read json, subscribe restart error\n");
4633 4634 4635
        goto PARSE_OVER;
      }
    } else {
4636
      g_queryInfo.superQueryInfo.subscribeRestart = true;
4637
    }
4638

4639 4640 4641 4642 4643
    cJSON* superkeepProgress = cJSON_GetObjectItem(superQuery, "keepProgress");
    if (superkeepProgress &&
            superkeepProgress->type == cJSON_String
            && superkeepProgress->valuestring != NULL) {
      if (0 == strcmp("yes", superkeepProgress->valuestring)) {
4644
        g_queryInfo.superQueryInfo.subscribeKeepProgress = 1;
4645
      } else if (0 == strcmp("no", superkeepProgress->valuestring)) {
4646
        g_queryInfo.superQueryInfo.subscribeKeepProgress = 0;
4647
      } else {
4648
        printf("ERROR: failed to read json, subscribe super table keepProgress error\n");
4649 4650 4651
        goto PARSE_OVER;
      }
    } else {
4652
      g_queryInfo.superQueryInfo.subscribeKeepProgress = 0;
4653
    }
4654

4655 4656
    // default value is -1, which mean do not resub
    g_queryInfo.superQueryInfo.endAfterConsume = -1;
4657 4658 4659 4660 4661 4662 4663
    cJSON* superEndAfterConsume =
            cJSON_GetObjectItem(superQuery, "endAfterConsume");
    if (superEndAfterConsume
            && superEndAfterConsume->type == cJSON_Number) {
        g_queryInfo.superQueryInfo.endAfterConsume =
            superEndAfterConsume->valueint;
    }
4664 4665
    if (g_queryInfo.superQueryInfo.endAfterConsume < -1)
        g_queryInfo.superQueryInfo.endAfterConsume = -1;
4666

4667 4668
    // default value is -1, which mean do not resub
    g_queryInfo.superQueryInfo.resubAfterConsume = -1;
4669
    cJSON* superResubAfterConsume =
4670 4671 4672 4673 4674
            cJSON_GetObjectItem(superQuery, "resubAfterConsume");
    if ((superResubAfterConsume)
            && (superResubAfterConsume->type == cJSON_Number)
            && (superResubAfterConsume->valueint >= 0)) {
        g_queryInfo.superQueryInfo.resubAfterConsume =
4675 4676
            superResubAfterConsume->valueint;
    }
4677 4678
    if (g_queryInfo.superQueryInfo.resubAfterConsume < -1)
        g_queryInfo.superQueryInfo.resubAfterConsume = -1;
4679

4680 4681 4682
    // supert table sqls
    cJSON* superSqls = cJSON_GetObjectItem(superQuery, "sqls");
    if (!superSqls) {
4683
      g_queryInfo.superQueryInfo.sqlCount = 0;
4684
    } else if (superSqls->type != cJSON_Array) {
4685 4686
      errorPrint("%s() LN%d: failed to read json, super sqls not found\n",
          __func__, __LINE__);
4687
      goto PARSE_OVER;
4688
    } else {
4689
      int superSqlSize = cJSON_GetArraySize(superSqls);
4690
      if (superSqlSize > MAX_QUERY_SQL_COUNT) {
4691 4692
        errorPrint("%s() LN%d, failed to read json, query sql size overflow, max is %d\n",
           __func__, __LINE__, MAX_QUERY_SQL_COUNT);
4693 4694
        goto PARSE_OVER;
      }
4695

4696
      g_queryInfo.superQueryInfo.sqlCount = superSqlSize;
4697
      for (int j = 0; j < superSqlSize; ++j) {
4698
        cJSON* sql = cJSON_GetArrayItem(superSqls, j);
4699
        if (sql == NULL) continue;
4700

4701
        cJSON *sqlStr = cJSON_GetObjectItem(sql, "sql");
4702 4703 4704 4705
        if (!sqlStr || sqlStr->type != cJSON_String
            || sqlStr->valuestring == NULL) {
          errorPrint("%s() LN%d, failed to read json, sql not found\n",
              __func__, __LINE__);
4706 4707
          goto PARSE_OVER;
        }
4708 4709
        tstrncpy(g_queryInfo.superQueryInfo.sql[j], sqlStr->valuestring,
            MAX_QUERY_SQL_LENGTH);
4710 4711

        cJSON *result = cJSON_GetObjectItem(sql, "result");
4712 4713 4714 4715
        if (result != NULL && result->type == cJSON_String
            && result->valuestring != NULL){
          tstrncpy(g_queryInfo.superQueryInfo.result[j],
              result->valuestring, MAX_FILE_NAME_LEN);
4716
        } else if (NULL == result) {
4717
          memset(g_queryInfo.superQueryInfo.result[j], 0, MAX_FILE_NAME_LEN);
4718
        }  else {
4719 4720
          errorPrint("%s() LN%d, failed to read json, sub query result file not found\n",
              __func__, __LINE__);
4721
          goto PARSE_OVER;
4722
        }
4723 4724
      }
    }
H
hzcheng 已提交
4725 4726
  }

4727
  ret = true;
H
hzcheng 已提交
4728

4729 4730 4731
PARSE_OVER:
  return ret;
}
H
hzcheng 已提交
4732

4733
static bool getInfoFromJsonFile(char* file) {
4734
    debugPrint("%s %d %s\n", __func__, __LINE__, file);
4735

4736 4737 4738 4739 4740
  FILE *fp = fopen(file, "r");
  if (!fp) {
    printf("failed to read %s, reason:%s\n", file, strerror(errno));
    return false;
  }
H
Hui Li 已提交
4741

4742
  bool  ret = false;
4743
  int   maxLen = 6400000;
4744 4745 4746 4747 4748 4749 4750
  char *content = calloc(1, maxLen + 1);
  int   len = fread(content, 1, maxLen, fp);
  if (len <= 0) {
    free(content);
    fclose(fp);
    printf("failed to read %s, content is null", file);
    return false;
H
hzcheng 已提交
4751
  }
H
Hui Li 已提交
4752

4753 4754 4755
  content[len] = 0;
  cJSON* root = cJSON_Parse(content);
  if (root == NULL) {
4756
    printf("ERROR: failed to cjson parse %s, invalid json format\n", file);
4757 4758
    goto PARSE_OVER;
  }
H
Hui Li 已提交
4759

4760 4761 4762
  cJSON* filetype = cJSON_GetObjectItem(root, "filetype");
  if (filetype && filetype->type == cJSON_String && filetype->valuestring != NULL) {
    if (0 == strcasecmp("insert", filetype->valuestring)) {
4763
      g_args.test_mode = INSERT_TEST;
4764
    } else if (0 == strcasecmp("query", filetype->valuestring)) {
4765
      g_args.test_mode = QUERY_TEST;
4766
    } else if (0 == strcasecmp("subscribe", filetype->valuestring)) {
4767
      g_args.test_mode = SUBSCRIBE_TEST;
4768
    } else {
4769
      printf("ERROR: failed to read json, filetype not support\n");
4770 4771 4772
      goto PARSE_OVER;
    }
  } else if (!filetype) {
4773
    g_args.test_mode = INSERT_TEST;
4774
  } else {
4775
    printf("ERROR: failed to read json, filetype not found\n");
4776 4777
    goto PARSE_OVER;
  }
H
hzcheng 已提交
4778

4779
  if (INSERT_TEST == g_args.test_mode) {
4780
    ret = getMetaFromInsertJsonFile(root);
4781 4782
  } else if ((QUERY_TEST == g_args.test_mode)
          || (SUBSCRIBE_TEST == g_args.test_mode)) {
4783 4784
    ret = getMetaFromQueryJsonFile(root);
  } else {
4785 4786
    errorPrint("%s() LN%d, input json file type error! please input correct file type: insert or query or subscribe\n",
            __func__, __LINE__);
4787
    goto PARSE_OVER;
4788
  }
4789 4790 4791 4792

PARSE_OVER:
  free(content);
  cJSON_Delete(root);
H
hzcheng 已提交
4793
  fclose(fp);
4794 4795
  return ret;
}
H
hzcheng 已提交
4796

4797
static int prepareSampleData() {
4798
  for (int i = 0; i < g_Dbs.dbCount; i++) {
4799 4800
    for (int j = 0; j < g_Dbs.db[i].superTblCount; j++) {
      if (g_Dbs.db[i].superTbls[j].tagsFile[0] != 0) {
4801 4802 4803
        if (readTagFromCsvFileToMem(&g_Dbs.db[i].superTbls[j]) != 0) {
          return -1;
        }
S
Shuaiqiang Chang 已提交
4804
      }
4805 4806
    }
  }
4807 4808

  return 0;
4809 4810
}

4811
static void postFreeResource() {
4812
  tmfclose(g_fpOfInsertResult);
4813
  for (int i = 0; i < g_Dbs.dbCount; i++) {
4814
    for (uint64_t j = 0; j < g_Dbs.db[i].superTblCount; j++) {
4815 4816 4817
      if (0 != g_Dbs.db[i].superTbls[j].colsOfCreateChildTable) {
        free(g_Dbs.db[i].superTbls[j].colsOfCreateChildTable);
        g_Dbs.db[i].superTbls[j].colsOfCreateChildTable = NULL;
S
Shuaiqiang Chang 已提交
4818
      }
4819 4820 4821 4822 4823 4824 4825 4826 4827 4828 4829 4830
      if (0 != g_Dbs.db[i].superTbls[j].sampleDataBuf) {
        free(g_Dbs.db[i].superTbls[j].sampleDataBuf);
        g_Dbs.db[i].superTbls[j].sampleDataBuf = NULL;
      }
      if (0 != g_Dbs.db[i].superTbls[j].tagDataBuf) {
        free(g_Dbs.db[i].superTbls[j].tagDataBuf);
        g_Dbs.db[i].superTbls[j].tagDataBuf = NULL;
      }
      if (0 != g_Dbs.db[i].superTbls[j].childTblName) {
        free(g_Dbs.db[i].superTbls[j].childTblName);
        g_Dbs.db[i].superTbls[j].childTblName = NULL;
      }
S
Shuaiqiang Chang 已提交
4831
    }
4832 4833
  }
}
S
Shuaiqiang Chang 已提交
4834

4835 4836
static int getRowDataFromSample(
        char* dataBuf, int64_t maxLen, int64_t timestamp,
4837 4838 4839 4840 4841 4842 4843 4844 4845 4846 4847 4848 4849 4850 4851 4852 4853 4854 4855 4856 4857 4858 4859 4860 4861 4862
      SSuperTable* superTblInfo, int64_t* sampleUsePos)
{
    if ((*sampleUsePos) == MAX_SAMPLES_ONCE_FROM_FILE) {
        /*    int ret = readSampleFromCsvFileToMem(superTblInfo);
              if (0 != ret) {
              tmfree(superTblInfo->sampleDataBuf);
              superTblInfo->sampleDataBuf = NULL;
              return -1;
              }
              */
        *sampleUsePos = 0;
    }

    int    dataLen = 0;

    dataLen += snprintf(dataBuf + dataLen, maxLen - dataLen,
            "(%" PRId64 ", ", timestamp);
    dataLen += snprintf(dataBuf + dataLen, maxLen - dataLen,
            "%s",
            superTblInfo->sampleDataBuf
            + superTblInfo->lenOfOneRow * (*sampleUsePos));
    dataLen += snprintf(dataBuf + dataLen, maxLen - dataLen, ")");

    (*sampleUsePos)++;

    return dataLen;
4863
}
S
Shuaiqiang Chang 已提交
4864

4865 4866 4867 4868
static int64_t generateStbRowData(
        SSuperTable* stbInfo,
        char* recBuf, int64_t timestamp)
{
4869 4870 4871 4872 4873 4874 4875 4876 4877 4878 4879 4880 4881 4882 4883 4884 4885
    int64_t   dataLen = 0;
    char  *pstr = recBuf;
    int64_t maxLen = MAX_DATA_SIZE;

    dataLen += snprintf(pstr + dataLen, maxLen - dataLen,
            "(%" PRId64 ",", timestamp);

    for (int i = 0; i < stbInfo->columnCount; i++) {
        if ((0 == strncasecmp(stbInfo->columns[i].dataType,
                        "BINARY", strlen("BINARY")))
                || (0 == strncasecmp(stbInfo->columns[i].dataType,
                        "NCHAR", strlen("NCHAR")))) {
            if (stbInfo->columns[i].dataLen > TSDB_MAX_BINARY_LEN) {
                errorPrint( "binary or nchar length overflow, max size:%u\n",
                        (uint32_t)TSDB_MAX_BINARY_LEN);
                return -1;
            }
4886

4887 4888 4889 4890 4891 4892 4893 4894 4895 4896 4897 4898 4899 4900 4901 4902 4903 4904 4905 4906 4907 4908 4909 4910 4911 4912 4913 4914 4915 4916 4917 4918 4919 4920 4921 4922 4923 4924 4925 4926 4927 4928 4929 4930 4931 4932 4933 4934 4935 4936 4937 4938 4939 4940 4941 4942 4943 4944 4945
            char* buf = (char*)calloc(stbInfo->columns[i].dataLen+1, 1);
            if (NULL == buf) {
                errorPrint( "calloc failed! size:%d\n", stbInfo->columns[i].dataLen);
                return -1;
            }
            rand_string(buf, stbInfo->columns[i].dataLen);
            dataLen += snprintf(pstr + dataLen, maxLen - dataLen, "\'%s\',", buf);
            tmfree(buf);
        } else if (0 == strncasecmp(stbInfo->columns[i].dataType,
                    "INT", strlen("INT"))) {
            if ((g_args.demo_mode) && (i == 1)) {
                dataLen += snprintf(pstr + dataLen, maxLen - dataLen,
                        "%d,", demo_voltage_int());
            } else {
                dataLen += snprintf(pstr + dataLen, maxLen - dataLen,
                        "%d,", rand_int());
            }
        } else if (0 == strncasecmp(stbInfo->columns[i].dataType,
                    "BIGINT", strlen("BIGINT"))) {
            dataLen += snprintf(pstr + dataLen, maxLen - dataLen,
                    "%"PRId64",", rand_bigint());
        }  else if (0 == strncasecmp(stbInfo->columns[i].dataType,
                    "FLOAT", strlen("FLOAT"))) {
            if (g_args.demo_mode) {
                if (i == 0) {
                    dataLen += snprintf(pstr + dataLen, maxLen - dataLen,
                            "%f,", demo_current_float());
                } else {
                    dataLen += snprintf(pstr + dataLen, maxLen - dataLen,
                            "%f,", demo_phase_float());
                }
            } else {
                dataLen += snprintf(pstr + dataLen, maxLen - dataLen,
                        "%f,", rand_float());
            }
        }  else if (0 == strncasecmp(stbInfo->columns[i].dataType,
                    "DOUBLE", strlen("DOUBLE"))) {
            dataLen += snprintf(pstr + dataLen, maxLen - dataLen,
                    "%f,", rand_double());
        }  else if (0 == strncasecmp(stbInfo->columns[i].dataType,
                    "SMALLINT", strlen("SMALLINT"))) {
            dataLen += snprintf(pstr + dataLen, maxLen - dataLen,
                    "%d,", rand_smallint());
        }  else if (0 == strncasecmp(stbInfo->columns[i].dataType,
                    "TINYINT", strlen("TINYINT"))) {
            dataLen += snprintf(pstr + dataLen, maxLen - dataLen,
                    "%d,", rand_tinyint());
        }  else if (0 == strncasecmp(stbInfo->columns[i].dataType,
                    "BOOL", strlen("BOOL"))) {
            dataLen += snprintf(pstr + dataLen, maxLen - dataLen,
                    "%d,", rand_bool());
        }  else if (0 == strncasecmp(stbInfo->columns[i].dataType,
                    "TIMESTAMP", strlen("TIMESTAMP"))) {
            dataLen += snprintf(pstr + dataLen, maxLen - dataLen,
                    "%"PRId64",", rand_bigint());
        }  else {
            errorPrint( "Not support data type: %s\n", stbInfo->columns[i].dataType);
            return -1;
        }
4946
    }
4947

4948 4949
    dataLen -= 1;
    dataLen += snprintf(pstr + dataLen, maxLen - dataLen, ")");
4950

4951 4952
    verbosePrint("%s() LN%d, dataLen:%"PRId64"\n", __func__, __LINE__, dataLen);
    verbosePrint("%s() LN%d, recBuf:\n\t%s\n", __func__, __LINE__, recBuf);
4953

4954
    return strlen(recBuf);
4955
}
S
Shuaiqiang Chang 已提交
4956

4957
static int64_t generateData(char *recBuf, char **data_type,
4958
        int64_t timestamp, int lenOfBinary) {
4959 4960
  memset(recBuf, 0, MAX_DATA_SIZE);
  char *pstr = recBuf;
4961 4962
  pstr += sprintf(pstr, "(%" PRId64, timestamp);

4963
  int columnCount = g_args.num_of_CPR;
4964

4965 4966
  for (int i = 0; i < columnCount; i++) {
    if (strcasecmp(data_type[i % columnCount], "TINYINT") == 0) {
4967
      pstr += sprintf(pstr, ",%d", rand_tinyint() );
4968
    } else if (strcasecmp(data_type[i % columnCount], "SMALLINT") == 0) {
4969
      pstr += sprintf(pstr, ",%d", rand_smallint());
4970
    } else if (strcasecmp(data_type[i % columnCount], "INT") == 0) {
4971
      pstr += sprintf(pstr, ",%d", rand_int());
4972
    } else if (strcasecmp(data_type[i % columnCount], "BIGINT") == 0) {
4973
      pstr += sprintf(pstr, ",%" PRId64, rand_bigint());
4974 4975 4976
    } else if (strcasecmp(data_type[i % columnCount], "TIMESTAMP") == 0) {
      pstr += sprintf(pstr, ",%" PRId64, rand_bigint());
    } else if (strcasecmp(data_type[i % columnCount], "FLOAT") == 0) {
4977
      pstr += sprintf(pstr, ",%10.4f", rand_float());
4978
    } else if (strcasecmp(data_type[i % columnCount], "DOUBLE") == 0) {
4979
      double t = rand_double();
4980
      pstr += sprintf(pstr, ",%20.8f", t);
4981
    } else if (strcasecmp(data_type[i % columnCount], "BOOL") == 0) {
4982
      bool b = rand_bool() & 1;
4983
      pstr += sprintf(pstr, ",%s", b ? "true" : "false");
4984
    } else if (strcasecmp(data_type[i % columnCount], "BINARY") == 0) {
4985 4986
      char *s = malloc(lenOfBinary);
      rand_string(s, lenOfBinary);
4987
      pstr += sprintf(pstr, ",\"%s\"", s);
4988
      free(s);
4989
    } else if (strcasecmp(data_type[i % columnCount], "NCHAR") == 0) {
4990 4991
      char *s = malloc(lenOfBinary);
      rand_string(s, lenOfBinary);
4992
      pstr += sprintf(pstr, ",\"%s\"", s);
4993 4994 4995
      free(s);
    }

4996
    if (strlen(recBuf) > MAX_DATA_SIZE) {
4997 4998 4999 5000 5001 5002 5003
      perror("column length too long, abort");
      exit(-1);
    }
  }

  pstr += sprintf(pstr, ")");

5004 5005
  verbosePrint("%s() LN%d, recBuf:\n\t%s\n", __func__, __LINE__, recBuf);

5006
  return (int32_t)strlen(recBuf);
5007 5008
}

5009
static int prepareSampleDataForSTable(SSuperTable *superTblInfo) {
5010 5011
  char* sampleDataBuf = NULL;

5012
  sampleDataBuf = calloc(
5013
            superTblInfo->lenOfOneRow * MAX_SAMPLES_ONCE_FROM_FILE, 1);
5014
  if (sampleDataBuf == NULL) {
5015
      errorPrint("%s() LN%d, Failed to calloc %"PRIu64" Bytes, reason:%s\n",
5016
              __func__, __LINE__,
5017
              superTblInfo->lenOfOneRow * MAX_SAMPLES_ONCE_FROM_FILE,
5018
              strerror(errno));
5019
      return -1;
5020
  }
5021

5022 5023 5024 5025
  superTblInfo->sampleDataBuf = sampleDataBuf;
  int ret = readSampleFromCsvFileToMem(superTblInfo);

  if (0 != ret) {
5026 5027
      errorPrint("%s() LN%d, read sample from csv file failed.\n",
          __func__, __LINE__);
5028
      tmfree(sampleDataBuf);
5029
      superTblInfo->sampleDataBuf = NULL;
5030
      return -1;
H
Hui Li 已提交
5031
  }
5032

5033 5034 5035
  return 0;
}

5036
static int32_t execInsert(threadInfo *pThreadInfo, uint32_t k)
5037
{
5038 5039
    int32_t affectedRows;
    SSuperTable* superTblInfo = pThreadInfo->superTblInfo;
5040

5041 5042 5043 5044 5045 5046
    verbosePrint("[%d] %s() LN%d %s\n", pThreadInfo->threadID,
            __func__, __LINE__, pThreadInfo->buffer);

    uint16_t iface;
    if (superTblInfo)
        iface = superTblInfo->iface;
5047 5048 5049 5050 5051 5052
    else {
        if (g_args.iface == INTERFACE_BUT)
            iface = TAOSC_IFACE;
        else
            iface = g_args.iface;
    }
5053 5054 5055

    debugPrint("[%d] %s() LN%d %s\n", pThreadInfo->threadID,
            __func__, __LINE__,
5056 5057
            (iface==TAOSC_IFACE)?
            "taosc":(iface==REST_IFACE)?"rest":"stmt");
5058 5059 5060 5061 5062 5063 5064 5065 5066 5067

    switch(iface) {
        case TAOSC_IFACE:
            affectedRows = queryDbExec(
                    pThreadInfo->taos,
                    pThreadInfo->buffer, INSERT_TYPE, false);
            break;

        case REST_IFACE:
            if (0 != postProceSql(g_Dbs.host, &g_Dbs.serv_addr, g_Dbs.port,
5068
                        pThreadInfo->buffer, pThreadInfo)) {
5069 5070 5071 5072 5073 5074 5075 5076
                affectedRows = -1;
                printf("========restful return fail, threadID[%d]\n",
                        pThreadInfo->threadID);
            } else {
                affectedRows = k;
            }
            break;

5077
#if STMT_IFACE_ENABLED == 1
5078 5079 5080 5081 5082 5083 5084 5085 5086
        case STMT_IFACE:
            debugPrint("%s() LN%d, stmt=%p", __func__, __LINE__, pThreadInfo->stmt);
            if (0 != taos_stmt_execute(pThreadInfo->stmt)) {
                errorPrint("%s() LN%d, failied to execute insert statement\n",
                        __func__, __LINE__);
                exit(-1);
            }
            affectedRows = k;
            break;
5087
#endif
5088 5089 5090 5091 5092

        default:
            errorPrint("%s() LN%d: unknown insert mode: %d\n",
                    __func__, __LINE__, superTblInfo->iface);
            affectedRows = 0;
5093
    }
5094

5095
    return affectedRows;
5096 5097
}

5098 5099
static void getTableName(char *pTblName,
        threadInfo* pThreadInfo, uint64_t tableSeq)
5100
{
5101 5102 5103 5104 5105 5106 5107 5108 5109 5110 5111 5112 5113 5114 5115 5116 5117 5118 5119
    SSuperTable* superTblInfo = pThreadInfo->superTblInfo;
    if (superTblInfo) {
        if (AUTO_CREATE_SUBTBL != superTblInfo->autoCreateTable) {
            if (superTblInfo->childTblLimit > 0) {
                snprintf(pTblName, TSDB_TABLE_NAME_LEN, "%s",
                        superTblInfo->childTblName +
                        (tableSeq - superTblInfo->childTblOffset) * TSDB_TABLE_NAME_LEN);
            } else {
                verbosePrint("[%d] %s() LN%d: from=%"PRIu64" count=%"PRId64" seq=%"PRIu64"\n",
                        pThreadInfo->threadID, __func__, __LINE__,
                        pThreadInfo->start_table_from,
                        pThreadInfo->ntables, tableSeq);
                snprintf(pTblName, TSDB_TABLE_NAME_LEN, "%s",
                        superTblInfo->childTblName + tableSeq * TSDB_TABLE_NAME_LEN);
            }
        } else {
            snprintf(pTblName, TSDB_TABLE_NAME_LEN, "%s%"PRIu64"",
                    superTblInfo->childTblPrefix, tableSeq);
        }
5120
    } else {
5121 5122
        snprintf(pTblName, TSDB_TABLE_NAME_LEN, "%s%"PRIu64"",
                g_args.tb_prefix, tableSeq);
5123 5124 5125
    }
}

5126 5127 5128 5129 5130
static int32_t generateDataTailWithoutStb(
        uint32_t batch, char* buffer,
        int64_t remainderBufLen, int64_t insertRows,
        uint64_t recordFrom, int64_t startTime,
        /* int64_t *pSamplePos, */int64_t *dataLen) {
5131

5132
  uint64_t len = 0;
5133 5134
  char *pstr = buffer;

5135 5136 5137 5138 5139 5140 5141 5142 5143 5144 5145 5146 5147 5148 5149 5150 5151 5152 5153 5154 5155 5156 5157 5158 5159 5160 5161 5162 5163 5164 5165 5166 5167 5168
  verbosePrint("%s() LN%d batch=%d\n", __func__, __LINE__, batch);

  int32_t k = 0;
  for (k = 0; k < batch;) {
    char data[MAX_DATA_SIZE];
    memset(data, 0, MAX_DATA_SIZE);

    int64_t retLen = 0;

    char **data_type = g_args.datatype;
    int lenOfBinary = g_args.len_of_binary;

    retLen = generateData(data, data_type,
            startTime + getTSRandTail(
                (int64_t) DEFAULT_TIMESTAMP_STEP, k,
                g_args.disorderRatio,
                g_args.disorderRange),
            lenOfBinary);

    if (len > remainderBufLen)
        break;

    pstr += sprintf(pstr, "%s", data);
    k++;
    len += retLen;
    remainderBufLen -= retLen;

    verbosePrint("%s() LN%d len=%"PRIu64" k=%d \nbuffer=%s\n",
            __func__, __LINE__, len, k, buffer);

    recordFrom ++;

    if (recordFrom >= insertRows) {
      break;
5169
    }
5170 5171
  }

5172 5173 5174 5175 5176 5177 5178 5179 5180 5181 5182 5183 5184 5185 5186 5187 5188 5189 5190 5191 5192 5193 5194 5195 5196 5197 5198 5199 5200
  *dataLen = len;
  return k;
}

static int64_t getTSRandTail(int64_t timeStampStep, int32_t seq,
        int disorderRatio, int disorderRange)
{
    int64_t randTail = timeStampStep * seq;
    if (disorderRatio > 0) {
        int rand_num = taosRandom() % 100;
        if(rand_num < disorderRatio) {
            randTail = (randTail +
                    (taosRandom() % disorderRange + 1)) * (-1);
            debugPrint("rand data generated, back %"PRId64"\n", randTail);
        }
    }

    return randTail;
}

static int32_t generateStbDataTail(
        SSuperTable* superTblInfo,
        uint32_t batch, char* buffer,
        int64_t remainderBufLen, int64_t insertRows,
        uint64_t recordFrom, int64_t startTime,
        int64_t *pSamplePos, int64_t *dataLen) {
  uint64_t len = 0;

  char *pstr = buffer;
5201

5202
  bool tsRand;
5203 5204 5205 5206
  if (0 == strncasecmp(superTblInfo->dataSource, "rand", strlen("rand"))) {
      tsRand = true;
  } else {
      tsRand = false;
5207
  }
5208 5209
  verbosePrint("%s() LN%d batch=%u buflen=%"PRId64"\n",
          __func__, __LINE__, batch, remainderBufLen);
5210

5211
  int32_t k = 0;
5212
  for (k = 0; k < batch;) {
5213
    char data[MAX_DATA_SIZE];
5214 5215
    memset(data, 0, MAX_DATA_SIZE);

5216
    int64_t lenOfRow = 0;
5217

5218
    if (tsRand) {
5219
        lenOfRow = generateStbRowData(superTblInfo, data,
5220
                startTime + getTSRandTail(
5221 5222 5223 5224 5225
                    superTblInfo->timeStampStep, k,
                    superTblInfo->disorderRatio,
                    superTblInfo->disorderRange)
                );
    } else {
5226
        lenOfRow = getRowDataFromSample(
5227
                  data,
5228
                  (remainderBufLen < MAX_DATA_SIZE)?remainderBufLen:MAX_DATA_SIZE,
5229 5230 5231 5232
                  startTime + superTblInfo->timeStampStep * k,
                  superTblInfo,
                  pSamplePos);
    }
5233

5234
    if ((lenOfRow + 1) > remainderBufLen) {
5235
        break;
5236 5237
    }

5238
    pstr += snprintf(pstr , lenOfRow + 1, "%s", data);
5239
    k++;
5240 5241
    len += lenOfRow;
    remainderBufLen -= lenOfRow;
5242 5243

    verbosePrint("%s() LN%d len=%"PRIu64" k=%u \nbuffer=%s\n",
5244
            __func__, __LINE__, len, k, buffer);
5245

5246
    recordFrom ++;
5247

5248
    if (recordFrom >= insertRows) {
5249
      break;
5250
    }
5251
  }
5252

5253 5254 5255
  *dataLen = len;
  return k;
}
5256

5257 5258 5259

static int generateSQLHeadWithoutStb(char *tableName,
        char *dbName,
5260
        char *buffer, int remainderBufLen)
5261 5262
{
  int len;
5263 5264 5265

  char headBuf[HEAD_BUFF_LEN];

5266 5267 5268 5269 5270 5271 5272 5273 5274 5275 5276 5277 5278 5279 5280 5281 5282 5283 5284 5285 5286 5287 5288 5289 5290
  len = snprintf(
          headBuf,
          HEAD_BUFF_LEN,
          "%s.%s values",
          dbName,
          tableName);

  if (len > remainderBufLen)
    return -1;

  tstrncpy(buffer, headBuf, len + 1);

  return len;
}

static int generateStbSQLHead(
        SSuperTable* superTblInfo,
        char *tableName, int32_t tableSeq,
        char *dbName,
        char *buffer, int remainderBufLen)
{
  int len;

  char headBuf[HEAD_BUFF_LEN];

5291
  if (AUTO_CREATE_SUBTBL == superTblInfo->autoCreateTable) {
5292 5293
      char* tagsValBuf = NULL;
      if (0 == superTblInfo->tagSource) {
5294
            tagsValBuf = generateTagVaulesForStb(superTblInfo, tableSeq);
5295 5296 5297 5298 5299 5300
      } else {
            tagsValBuf = getTagValueFromTagSample(
                    superTblInfo,
                    tableSeq % superTblInfo->tagSampleCount);
      }
      if (NULL == tagsValBuf) {
5301 5302
        errorPrint("%s() LN%d, tag buf failed to allocate  memory\n",
            __func__, __LINE__);
5303 5304 5305
        return -1;
      }

5306 5307 5308
      len = snprintf(
          headBuf,
                  HEAD_BUFF_LEN,
5309
                  "%s.%s using %s.%s tags %s values",
5310
                  dbName,
5311
                  tableName,
5312
                  dbName,
5313 5314 5315 5316
                  superTblInfo->sTblName,
                  tagsValBuf);
      tmfree(tagsValBuf);
    } else if (TBL_ALREADY_EXISTS == superTblInfo->childTblExists) {
5317 5318 5319
      len = snprintf(
          headBuf,
                  HEAD_BUFF_LEN,
5320
                  "%s.%s values",
5321
                  dbName,
5322
                  tableName);
5323
    } else {
5324 5325 5326
      len = snprintf(
          headBuf,
                  HEAD_BUFF_LEN,
5327
                  "%s.%s values",
5328
                  dbName,
5329 5330 5331
                  tableName);
  }

5332 5333 5334 5335 5336
  if (len > remainderBufLen)
    return -1;

  tstrncpy(buffer, headBuf, len + 1);

5337 5338 5339
  return len;
}

5340 5341 5342 5343 5344
static int32_t generateStbInterlaceData(
        SSuperTable *superTblInfo,
        char *tableName, uint32_t batchPerTbl,
        uint64_t i,
        uint32_t batchPerTblTimes,
5345
        uint64_t tableSeq,
5346
        threadInfo *pThreadInfo, char *buffer,
5347
        int64_t insertRows,
5348
        int64_t startTime,
5349
        uint64_t *pRemainderBufLen)
5350
{
5351
  assert(buffer);
5352 5353
  char *pstr = buffer;

5354 5355 5356 5357
  int headLen = generateStbSQLHead(
          superTblInfo,
          tableName, tableSeq, pThreadInfo->db_name,
          pstr, *pRemainderBufLen);
5358 5359 5360 5361 5362

  if (headLen <= 0) {
    return 0;
  }
  // generate data buffer
5363
  verbosePrint("[%d] %s() LN%d i=%"PRIu64" buffer:\n%s\n",
5364 5365 5366 5367 5368
            pThreadInfo->threadID, __func__, __LINE__, i, buffer);

  pstr += headLen;
  *pRemainderBufLen -= headLen;

5369
  int64_t dataLen = 0;
5370

5371
  verbosePrint("[%d] %s() LN%d i=%"PRIu64" batchPerTblTimes=%u batchPerTbl = %u\n",
5372 5373 5374
            pThreadInfo->threadID, __func__, __LINE__,
            i, batchPerTblTimes, batchPerTbl);

5375
  if (0 == strncasecmp(superTblInfo->startTimestamp, "now", 3)) {
5376 5377
      startTime = taosGetTimestamp(pThreadInfo->time_precision);
  }
5378

5379 5380 5381 5382 5383
  int32_t k = generateStbDataTail(
            superTblInfo,
            batchPerTbl, pstr, *pRemainderBufLen, insertRows, 0,
            startTime,
            &(pThreadInfo->samplePos), &dataLen);
5384

5385
  if (k == batchPerTbl) {
5386 5387 5388
    pstr += dataLen;
    *pRemainderBufLen -= dataLen;
  } else {
5389
    debugPrint("%s() LN%d, generated data tail: %u, not equal batch per table: %u\n",
5390
            __func__, __LINE__, k, batchPerTbl);
5391 5392
    pstr -= headLen;
    pstr[0] = '\0';
5393
    k = 0;
5394 5395 5396 5397 5398
  }

  return k;
}

5399 5400 5401 5402 5403 5404 5405
static int64_t generateInterlaceDataWithoutStb(
        char *tableName, uint32_t batch,
        uint64_t tableSeq,
        char *dbName, char *buffer,
        int64_t insertRows,
        int64_t startTime,
        uint64_t *pRemainderBufLen)
5406
{
5407 5408 5409 5410 5411 5412 5413 5414 5415 5416 5417 5418 5419 5420 5421 5422 5423 5424 5425 5426 5427 5428 5429 5430 5431 5432 5433 5434 5435 5436 5437 5438 5439 5440 5441 5442 5443
  assert(buffer);
  char *pstr = buffer;

  int headLen = generateSQLHeadWithoutStb(
          tableName, dbName,
            pstr, *pRemainderBufLen);

  if (headLen <= 0) {
    return 0;
  }

  pstr += headLen;
  *pRemainderBufLen -= headLen;

  int64_t dataLen = 0;

  int32_t k = generateDataTailWithoutStb(
            batch, pstr, *pRemainderBufLen, insertRows, 0,
            startTime,
            &dataLen);

  if (k == batch) {
    pstr += dataLen;
    *pRemainderBufLen -= dataLen;
  } else {
    debugPrint("%s() LN%d, generated data tail: %d, not equal batch per table: %u\n",
            __func__, __LINE__, k, batch);
    pstr -= headLen;
    pstr[0] = '\0';
    k = 0;
  }

  return k;
}

#if STMT_IFACE_ENABLED == 1
static int32_t prepareStmtBindArrayByType(TAOS_BIND *bind,
5444
        char *dataType, int32_t dataLen, char **ptr, char *value)
5445 5446 5447 5448 5449 5450 5451 5452 5453 5454 5455
{
    if (0 == strncasecmp(dataType,
                "BINARY", strlen("BINARY"))) {
        if (dataLen > TSDB_MAX_BINARY_LEN) {
            errorPrint( "binary length overflow, max size:%u\n",
                    (uint32_t)TSDB_MAX_BINARY_LEN);
            return -1;
        }
        char *bind_binary = (char *)*ptr;

        bind->buffer_type = TSDB_DATA_TYPE_BINARY;
5456 5457 5458 5459 5460 5461 5462 5463
        if (value) {
            strncpy(bind_binary, value, strlen(value));
            bind->buffer_length = strlen(bind_binary);
        } else {
            rand_string(bind_binary, dataLen);
            bind->buffer_length = dataLen;
        }

5464
        bind->length = &bind->buffer_length;
5465
        bind->buffer = bind_binary;
5466 5467 5468 5469 5470 5471 5472 5473 5474
        bind->is_null = NULL;

        *ptr += bind->buffer_length;
    } else if (0 == strncasecmp(dataType,
                "NCHAR", strlen("NCHAR"))) {
        if (dataLen > TSDB_MAX_BINARY_LEN) {
            errorPrint( "nchar length overflow, max size:%u\n",
                    (uint32_t)TSDB_MAX_BINARY_LEN);
            return -1;
5475
        }
5476 5477 5478
        char *bind_nchar = (char *)*ptr;

        bind->buffer_type = TSDB_DATA_TYPE_NCHAR;
5479 5480 5481 5482 5483 5484
        if (value) {
            strncpy(bind_nchar, value, strlen(value));
        } else {
            rand_string(bind_nchar, dataLen);
        }

5485 5486 5487 5488 5489 5490 5491 5492 5493 5494
        bind->buffer_length = strlen(bind_nchar);
        bind->buffer = bind_nchar;
        bind->length = &bind->buffer_length;
        bind->is_null = NULL;

        *ptr += bind->buffer_length;
    } else if (0 == strncasecmp(dataType,
                "INT", strlen("INT"))) {
        int32_t *bind_int = (int32_t *)*ptr;

5495 5496 5497 5498 5499
        if (value) {
            *bind_int = atoi(value);
        } else {
            *bind_int = rand_int();
        }
5500 5501 5502 5503 5504 5505 5506 5507 5508 5509 5510
        bind->buffer_type = TSDB_DATA_TYPE_INT;
        bind->buffer_length = sizeof(int32_t);
        bind->buffer = bind_int;
        bind->length = &bind->buffer_length;
        bind->is_null = NULL;

        *ptr += bind->buffer_length;
    } else if (0 == strncasecmp(dataType,
                "BIGINT", strlen("BIGINT"))) {
        int64_t *bind_bigint = (int64_t *)*ptr;

5511 5512 5513 5514 5515
        if (value) {
            *bind_bigint = atoll(value);
        } else {
            *bind_bigint = rand_bigint();
        }
5516 5517 5518 5519 5520 5521 5522 5523 5524 5525 5526
        bind->buffer_type = TSDB_DATA_TYPE_BIGINT;
        bind->buffer_length = sizeof(int64_t);
        bind->buffer = bind_bigint;
        bind->length = &bind->buffer_length;
        bind->is_null = NULL;

        *ptr += bind->buffer_length;
    }  else if (0 == strncasecmp(dataType,
                "FLOAT", strlen("FLOAT"))) {
        float   *bind_float = (float *) *ptr;

5527 5528 5529 5530 5531
        if (value) {
            *bind_float = (float)atof(value);
        } else {
            *bind_float = rand_float();
        }
5532 5533 5534 5535 5536 5537 5538 5539 5540 5541 5542
        bind->buffer_type = TSDB_DATA_TYPE_FLOAT;
        bind->buffer_length = sizeof(float);
        bind->buffer = bind_float;
        bind->length = &bind->buffer_length;
        bind->is_null = NULL;

        *ptr += bind->buffer_length;
    }  else if (0 == strncasecmp(dataType,
                "DOUBLE", strlen("DOUBLE"))) {
        double  *bind_double = (double *)*ptr;

5543 5544 5545 5546 5547
        if (value) {
            *bind_double = atof(value);
        } else {
            *bind_double = rand_double();
        }
5548 5549 5550 5551 5552 5553 5554 5555 5556 5557 5558
        bind->buffer_type = TSDB_DATA_TYPE_DOUBLE;
        bind->buffer_length = sizeof(double);
        bind->buffer = bind_double;
        bind->length = &bind->buffer_length;
        bind->is_null = NULL;

        *ptr += bind->buffer_length;
    }  else if (0 == strncasecmp(dataType,
                "SMALLINT", strlen("SMALLINT"))) {
        int16_t *bind_smallint = (int16_t *)*ptr;

5559 5560 5561 5562 5563
        if (value) {
            *bind_smallint = (int16_t)atoi(value);
        } else {
            *bind_smallint = rand_smallint();
        }
5564 5565 5566 5567 5568 5569 5570 5571 5572 5573 5574
        bind->buffer_type = TSDB_DATA_TYPE_SMALLINT;
        bind->buffer_length = sizeof(int16_t);
        bind->buffer = bind_smallint;
        bind->length = &bind->buffer_length;
        bind->is_null = NULL;

        *ptr += bind->buffer_length;
    }  else if (0 == strncasecmp(dataType,
                "TINYINT", strlen("TINYINT"))) {
        int8_t  *bind_tinyint = (int8_t *)*ptr;

5575 5576 5577 5578 5579
        if (value) {
            *bind_tinyint = (int8_t)atoi(value);
        } else {
            *bind_tinyint = rand_tinyint();
        }
5580 5581 5582 5583 5584 5585 5586 5587 5588 5589 5590 5591 5592 5593 5594 5595 5596 5597 5598 5599 5600 5601
        bind->buffer_type = TSDB_DATA_TYPE_TINYINT;
        bind->buffer_length = sizeof(int8_t);
        bind->buffer = bind_tinyint;
        bind->length = &bind->buffer_length;
        bind->is_null = NULL;
        *ptr += bind->buffer_length;
    }  else if (0 == strncasecmp(dataType,
                "BOOL", strlen("BOOL"))) {
        int8_t  *bind_bool = (int8_t *)*ptr;

        *bind_bool = rand_bool();
        bind->buffer_type = TSDB_DATA_TYPE_BOOL;
        bind->buffer_length = sizeof(int8_t);
        bind->buffer = bind_bool;
        bind->length = &bind->buffer_length;
        bind->is_null = NULL;

        *ptr += bind->buffer_length;
    }  else if (0 == strncasecmp(dataType,
                "TIMESTAMP", strlen("TIMESTAMP"))) {
        int64_t *bind_ts2 = (int64_t *) *ptr;

5602 5603 5604 5605 5606
        if (value) {
            *bind_ts2 = atoll(value);
        } else {
            *bind_ts2 = rand_bigint();
        }
5607 5608 5609 5610 5611 5612 5613 5614 5615 5616 5617
        bind->buffer_type = TSDB_DATA_TYPE_TIMESTAMP;
        bind->buffer_length = sizeof(int64_t);
        bind->buffer = bind_ts2;
        bind->length = &bind->buffer_length;
        bind->is_null = NULL;

        *ptr += bind->buffer_length;
    }  else {
        errorPrint( "No support data type: %s\n",
                dataType);
        return -1;
5618 5619
    }

5620
    return 0;
5621 5622
}

5623 5624
static int32_t prepareStmtWithoutStb(
        TAOS_STMT *stmt,
5625
        char *tableName,
5626
        uint32_t batch,
5627
        int64_t insertRows,
5628 5629
        int64_t recordFrom,
        int64_t startTime)
5630
{
5631 5632 5633 5634 5635 5636
    int ret = taos_stmt_set_tbname(stmt, tableName);
    if (ret != 0) {
        errorPrint("failed to execute taos_stmt_set_tbname(%s). return 0x%x. reason: %s\n",
                tableName, ret, taos_errstr(NULL));
        return ret;
    }
5637

5638
    char **data_type = g_args.datatype;
5639

5640 5641 5642 5643 5644 5645 5646 5647 5648 5649 5650 5651 5652 5653 5654 5655 5656 5657 5658 5659 5660 5661 5662 5663 5664 5665 5666 5667 5668 5669 5670 5671
    char *bindArray = malloc(sizeof(TAOS_BIND) * (g_args.num_of_CPR + 1));
    if (bindArray == NULL) {
        errorPrint("Failed to allocate %d bind params\n",
                (g_args.num_of_CPR + 1));
        return -1;
    }

    int32_t k = 0;
    for (k = 0; k < batch;) {
        /* columnCount + 1 (ts) */
        char data[MAX_DATA_SIZE];
        memset(data, 0, MAX_DATA_SIZE);

        char *ptr = data;
        TAOS_BIND *bind = (TAOS_BIND *)(bindArray + 0);

        int64_t *bind_ts;

        bind_ts = (int64_t *)ptr;
        bind->buffer_type = TSDB_DATA_TYPE_TIMESTAMP;
        *bind_ts = startTime + getTSRandTail(
                (int64_t)DEFAULT_TIMESTAMP_STEP, k,
                g_args.disorderRatio,
                g_args.disorderRange);
        bind->buffer_length = sizeof(int64_t);
        bind->buffer = bind_ts;
        bind->length = &bind->buffer_length;
        bind->is_null = NULL;

        ptr += bind->buffer_length;

        for (int i = 0; i < g_args.num_of_CPR; i ++) {
5672 5673
            bind = (TAOS_BIND *)((char *)bindArray
                    + (sizeof(TAOS_BIND) * (i + 1)));
5674 5675 5676 5677
            if ( -1 == prepareStmtBindArrayByType(
                        bind,
                        data_type[i],
                        g_args.len_of_binary,
5678
                        &ptr, NULL)) {
5679 5680 5681 5682 5683 5684 5685 5686 5687 5688 5689 5690 5691 5692
                return -1;
            }
        }
        taos_stmt_bind_param(stmt, (TAOS_BIND *)bindArray);
        // if msg > 3MB, break
        taos_stmt_add_batch(stmt);

        k++;
        recordFrom ++;
        if (recordFrom >= insertRows) {
            break;
        }
    }

5693
    free(bindArray);
5694 5695 5696
    return k;
}

5697 5698
static int32_t prepareStbStmt(
        SSuperTable *stbInfo,
5699 5700 5701 5702
        TAOS_STMT *stmt,
        char *tableName, uint32_t batch,
        uint64_t insertRows,
        uint64_t recordFrom,
5703 5704
        int64_t startTime,
        int64_t *pSamplePos)
5705 5706 5707 5708 5709 5710 5711 5712 5713 5714
{
    int ret = taos_stmt_set_tbname(stmt, tableName);
    if (ret != 0) {
        errorPrint("failed to execute taos_stmt_set_tbname(%s). return 0x%x. reason: %s\n",
                tableName, ret, taos_errstr(NULL));
        return ret;
    }

    char *bindArray = malloc(sizeof(TAOS_BIND) * (stbInfo->columnCount + 1));
    if (bindArray == NULL) {
5715 5716
        errorPrint("%s() LN%d, Failed to allocate %d bind params\n",
                __func__, __LINE__, (stbInfo->columnCount + 1));
5717
        return -1;
5718 5719
    }

5720
    bool sourceRand;
5721
    if (0 == strncasecmp(stbInfo->dataSource, "rand", strlen("rand"))) {
5722
        sourceRand = true;
5723
    } else {
5724 5725 5726 5727 5728 5729 5730 5731 5732
        sourceRand = false;     // from sample data file
    }

    char *bindBuffer = malloc(g_args.len_of_binary);
    if (bindBuffer == NULL) {
        errorPrint("%s() LN%d, Failed to allocate %d bind buffer\n",
                __func__, __LINE__, g_args.len_of_binary);
        free(bindArray);
        return -1;
5733 5734 5735 5736 5737 5738 5739 5740 5741 5742 5743 5744 5745 5746 5747
    }

    uint32_t k;
    for (k = 0; k < batch;) {
        /* columnCount + 1 (ts) */
        char data[MAX_DATA_SIZE];
        memset(data, 0, MAX_DATA_SIZE);

        char *ptr = data;
        TAOS_BIND *bind = (TAOS_BIND *)(bindArray + 0);

        int64_t *bind_ts;

        bind_ts = (int64_t *)ptr;
        bind->buffer_type = TSDB_DATA_TYPE_TIMESTAMP;
5748
        if (sourceRand) {
5749 5750 5751 5752 5753 5754 5755 5756 5757 5758 5759 5760 5761 5762
            *bind_ts = startTime + getTSRandTail(
                    stbInfo->timeStampStep, k,
                    stbInfo->disorderRatio,
                    stbInfo->disorderRange);
        } else {
            *bind_ts = startTime + stbInfo->timeStampStep * k;
        }
        bind->buffer_length = sizeof(int64_t);
        bind->buffer = bind_ts;
        bind->length = &bind->buffer_length;
        bind->is_null = NULL;

        ptr += bind->buffer_length;

5763
        int cursor = 0;
5764 5765
        for (int i = 0; i < stbInfo->columnCount; i ++) {
            bind = (TAOS_BIND *)((char *)bindArray + (sizeof(TAOS_BIND) * (i + 1)));
5766 5767 5768 5769 5770 5771 5772 5773 5774 5775 5776 5777 5778 5779 5780 5781 5782 5783 5784 5785 5786 5787 5788 5789 5790 5791 5792 5793 5794 5795 5796 5797 5798 5799 5800 5801 5802

            if (sourceRand) {
                if ( -1 == prepareStmtBindArrayByType(
                            bind,
                            stbInfo->columns[i].dataType,
                            stbInfo->columns[i].dataLen,
                            &ptr,
                            NULL)) {
                    free(bindArray);
                    free(bindBuffer);
                    return -1;
                }
            } else {
                char *restStr = stbInfo->sampleDataBuf + cursor;
                int lengthOfRest = strlen(restStr);

                int index = 0;
                for (index = 0; index < lengthOfRest; index ++) {
                    if (restStr[index] == ',') {
                        break;
                    }
                }

                memset(bindBuffer, 0, g_args.len_of_binary);
                strncpy(bindBuffer, restStr, index);
                cursor += index + 1; // skip ',' too

                if ( -1 == prepareStmtBindArrayByType(
                            bind,
                            stbInfo->columns[i].dataType,
                            stbInfo->columns[i].dataLen,
                            &ptr,
                            bindBuffer)) {
                    free(bindArray);
                    free(bindBuffer);
                    return -1;
                }
5803 5804 5805 5806 5807 5808 5809 5810
            }
        }
        taos_stmt_bind_param(stmt, (TAOS_BIND *)bindArray);
        // if msg > 3MB, break
        taos_stmt_add_batch(stmt);

        k++;
        recordFrom ++;
5811 5812 5813 5814

        if (!sourceRand) {
            (*pSamplePos) ++;
        }
5815 5816 5817 5818 5819
        if (recordFrom >= insertRows) {
            break;
        }
    }

5820
    free(bindBuffer);
5821
    free(bindArray);
5822 5823 5824 5825 5826 5827 5828 5829 5830 5831 5832 5833 5834
    return k;
}
#endif

static int32_t generateStbProgressiveData(
        SSuperTable *superTblInfo,
        char *tableName,
        int64_t tableSeq,
        char *dbName, char *buffer,
        int64_t insertRows,
        uint64_t recordFrom, int64_t startTime, int64_t *pSamplePos,
        int64_t *pRemainderBufLen)
{
5835
  assert(buffer != NULL);
5836
  char *pstr = buffer;
5837

5838
  memset(buffer, 0, *pRemainderBufLen);
5839

5840 5841 5842
  int64_t headLen = generateStbSQLHead(
              superTblInfo,
          tableName, tableSeq, dbName,
5843
          buffer, *pRemainderBufLen);
5844 5845 5846 5847

  if (headLen <= 0) {
    return 0;
  }
5848
  pstr += headLen;
5849
  *pRemainderBufLen -= headLen;
5850

5851
  int64_t dataLen;
5852 5853 5854 5855

  return generateStbDataTail(superTblInfo,
          g_args.num_of_RPR, pstr, *pRemainderBufLen,
          insertRows, recordFrom,
5856
          startTime,
5857
          pSamplePos, &dataLen);
5858
}
5859

5860 5861 5862 5863 5864 5865 5866 5867 5868 5869 5870 5871 5872 5873 5874 5875 5876 5877 5878 5879 5880 5881 5882 5883 5884 5885 5886 5887 5888
static int32_t generateProgressiveDataWithoutStb(
        char *tableName,
        /* int64_t tableSeq, */
        threadInfo *pThreadInfo, char *buffer,
        int64_t insertRows,
        uint64_t recordFrom, int64_t startTime, /*int64_t *pSamplePos, */
        int64_t *pRemainderBufLen)
{
  assert(buffer != NULL);
  char *pstr = buffer;

  memset(buffer, 0, *pRemainderBufLen);

  int64_t headLen = generateSQLHeadWithoutStb(
          tableName, pThreadInfo->db_name,
          buffer, *pRemainderBufLen);

  if (headLen <= 0) {
    return 0;
  }
  pstr += headLen;
  *pRemainderBufLen -= headLen;

  int64_t dataLen;

  return generateDataTailWithoutStb(
          g_args.num_of_RPR, pstr, *pRemainderBufLen, insertRows, recordFrom,
          startTime,
          /*pSamplePos, */&dataLen);
5889
}
5890

5891 5892
static void printStatPerThread(threadInfo *pThreadInfo)
{
5893
    fprintf(stderr, "====thread[%d] completed total inserted rows: %"PRIu64 ", total affected rows: %"PRIu64". %.2f records/second====\n",
5894 5895 5896
          pThreadInfo->threadID,
          pThreadInfo->totalInsertRows,
          pThreadInfo->totalAffectedRows,
5897
          (pThreadInfo->totalDelay)?(double)((pThreadInfo->totalAffectedRows / (pThreadInfo->totalDelay)/1000.0)): FLT_MAX);
5898 5899
}

5900
// sync write interlace data
5901
static void* syncWriteInterlace(threadInfo *pThreadInfo) {
5902 5903
  debugPrint("[%d] %s() LN%d: ### interlace write\n",
         pThreadInfo->threadID, __func__, __LINE__);
5904

5905
  int64_t insertRows;
5906 5907 5908 5909
  uint32_t interlaceRows;
  uint64_t maxSqlLen;
  int64_t nTimeStampStep;
  uint64_t insert_interval;
5910

5911
  SSuperTable* superTblInfo = pThreadInfo->superTblInfo;
5912

5913 5914 5915 5916 5917 5918 5919 5920 5921
  if (superTblInfo) {
    insertRows = superTblInfo->insertRows;

    if ((superTblInfo->interlaceRows == 0)
        && (g_args.interlace_rows > 0)) {
      interlaceRows = g_args.interlace_rows;
    } else {
      interlaceRows = superTblInfo->interlaceRows;
    }
5922 5923 5924
    maxSqlLen = superTblInfo->maxSqlLen;
    nTimeStampStep = superTblInfo->timeStampStep;
    insert_interval = superTblInfo->insertInterval;
5925 5926 5927
  } else {
    insertRows = g_args.num_of_DPT;
    interlaceRows = g_args.interlace_rows;
5928 5929 5930
    maxSqlLen = g_args.max_sql_len;
    nTimeStampStep = DEFAULT_TIMESTAMP_STEP;
    insert_interval = g_args.insert_interval;
5931
  }
5932

5933 5934 5935 5936 5937
  debugPrint("[%d] %s() LN%d: start_table_from=%"PRIu64" ntables=%"PRId64" insertRows=%"PRIu64"\n",
          pThreadInfo->threadID, __func__, __LINE__,
          pThreadInfo->start_table_from,
          pThreadInfo->ntables, insertRows);

5938
  if (interlaceRows > insertRows)
5939
    interlaceRows = insertRows;
5940

5941 5942
  if (interlaceRows > g_args.num_of_RPR)
    interlaceRows = g_args.num_of_RPR;
5943

5944 5945
  uint32_t batchPerTbl = interlaceRows;
  uint32_t batchPerTblTimes;
5946

5947 5948 5949
  if ((interlaceRows > 0) && (pThreadInfo->ntables > 1)) {
    batchPerTblTimes =
        g_args.num_of_RPR / interlaceRows;
5950
  } else {
5951
    batchPerTblTimes = 1;
5952 5953
  }

5954 5955
  pThreadInfo->buffer = calloc(maxSqlLen, 1);
  if (NULL == pThreadInfo->buffer) {
5956
    errorPrint( "%s() LN%d, Failed to alloc %"PRIu64" Bytes, reason:%s\n",
5957
              __func__, __LINE__, maxSqlLen, strerror(errno));
5958 5959 5960 5961 5962 5963
    return NULL;
  }

  pThreadInfo->totalInsertRows = 0;
  pThreadInfo->totalAffectedRows = 0;

5964 5965
  uint64_t st = 0;
  uint64_t et = UINT64_MAX;
5966

5967 5968 5969
  uint64_t lastPrintTime = taosGetTimestampMs();
  uint64_t startTs = taosGetTimestampMs();
  uint64_t endTs;
5970

5971
  uint64_t tableSeq = pThreadInfo->start_table_from;
5972 5973
  int64_t startTime = pThreadInfo->start_time;

5974
  uint64_t generatedRecPerTbl = 0;
5975
  bool flagSleep = true;
5976
  uint64_t sleepTimeTotal = 0;
5977

5978
  while(pThreadInfo->totalInsertRows < pThreadInfo->ntables * insertRows) {
5979
    if ((flagSleep) && (insert_interval)) {
5980
        st = taosGetTimestampMs();
5981
        flagSleep = false;
5982 5983
    }
    // generate data
5984
    memset(pThreadInfo->buffer, 0, maxSqlLen);
5985
    uint64_t remainderBufLen = maxSqlLen;
5986

5987
    char *pstr = pThreadInfo->buffer;
5988

5989 5990
    int len = snprintf(pstr,
            strlen(STR_INSERT_INTO) + 1, "%s", STR_INSERT_INTO);
5991 5992 5993
    pstr += len;
    remainderBufLen -= len;

5994 5995 5996 5997
    uint32_t recOfBatch = 0;

    for (uint32_t i = 0; i < batchPerTblTimes; i ++) {
        char tableName[TSDB_TABLE_NAME_LEN];
5998

5999
      getTableName(tableName, pThreadInfo, tableSeq);
6000 6001 6002
      if (0 == strlen(tableName)) {
        errorPrint("[%d] %s() LN%d, getTableName return null\n",
            pThreadInfo->threadID, __func__, __LINE__);
6003
        free(pThreadInfo->buffer);
6004 6005
        return NULL;
      }
6006

6007
      uint64_t oldRemainderLen = remainderBufLen;
6008 6009 6010 6011 6012

      int32_t generated;
      if (superTblInfo) {
          if (superTblInfo->iface == STMT_IFACE) {
#if STMT_IFACE_ENABLED == 1
6013 6014
              generated = prepareStbStmt(
                      superTblInfo,
6015 6016 6017 6018 6019
                      pThreadInfo->stmt,
                      tableName,
                      batchPerTbl,
                      insertRows, i,
                      startTime,
6020
                      &(pThreadInfo->samplePos));
6021 6022 6023 6024 6025 6026 6027 6028 6029 6030 6031 6032 6033 6034 6035 6036 6037 6038 6039 6040 6041 6042 6043 6044 6045 6046 6047 6048 6049 6050 6051 6052 6053 6054 6055 6056 6057 6058 6059 6060 6061
#else
              generated = -1;
#endif
          } else {
              generated = generateStbInterlaceData(
                      superTblInfo,
                      tableName, batchPerTbl, i,
                      batchPerTblTimes,
                      tableSeq,
                      pThreadInfo, pstr,
                      insertRows,
                      startTime,
                      &remainderBufLen);
          }
      } else {
          if (g_args.iface == STMT_IFACE) {
              debugPrint("[%d] %s() LN%d, tableName:%s, batch:%d startTime:%"PRId64"\n",
                      pThreadInfo->threadID,
                      __func__, __LINE__,
                      tableName, batchPerTbl, startTime);
#if STMT_IFACE_ENABLED == 1
              generated = prepareStmtWithoutStb(
                      pThreadInfo->stmt, tableName,
                      batchPerTbl,
                      insertRows, i,
                      startTime);
#else
              generated = -1;
#endif
          } else {
              generated = generateInterlaceDataWithoutStb(
                      tableName, batchPerTbl,
                      tableSeq,
                      pThreadInfo->db_name, pstr,
                      insertRows,
                      startTime,
                      &remainderBufLen);
          }
      }

      debugPrint("[%d] %s() LN%d, generated records is %d\n",
6062
                  pThreadInfo->threadID, __func__, __LINE__, generated);
6063
      if (generated < 0) {
6064
        errorPrint("[%d] %s() LN%d, generated records is %d\n",
6065
                  pThreadInfo->threadID, __func__, __LINE__, generated);
6066
        goto free_of_interlace;
6067 6068
      } else if (generated == 0) {
        break;
6069 6070
      }

6071
      tableSeq ++;
6072
      recOfBatch += batchPerTbl;
6073

6074
      pstr += (oldRemainderLen - remainderBufLen);
6075
      pThreadInfo->totalInsertRows += batchPerTbl;
6076 6077

      verbosePrint("[%d] %s() LN%d batchPerTbl=%d recOfBatch=%d\n",
6078 6079
                pThreadInfo->threadID, __func__, __LINE__,
                batchPerTbl, recOfBatch);
6080

6081
      if (tableSeq == pThreadInfo->start_table_from + pThreadInfo->ntables) {
6082 6083
            // turn to first table
            tableSeq = pThreadInfo->start_table_from;
6084
            generatedRecPerTbl += batchPerTbl;
6085 6086

            startTime = pThreadInfo->start_time
6087
              + generatedRecPerTbl * nTimeStampStep;
6088

6089 6090 6091 6092
            flagSleep = true;
            if (generatedRecPerTbl >= insertRows)
              break;

6093
            int64_t remainRows = insertRows - generatedRecPerTbl;
6094 6095 6096
            if ((remainRows > 0) && (batchPerTbl > remainRows))
              batchPerTbl = remainRows;

6097 6098
            if (pThreadInfo->ntables * batchPerTbl < g_args.num_of_RPR)
                break;
6099 6100
      }

6101
      verbosePrint("[%d] %s() LN%d generatedRecPerTbl=%"PRId64" insertRows=%"PRId64"\n",
6102 6103 6104 6105
                pThreadInfo->threadID, __func__, __LINE__,
                generatedRecPerTbl, insertRows);

      if ((g_args.num_of_RPR - recOfBatch) < batchPerTbl)
6106 6107 6108
        break;
    }

6109
    verbosePrint("[%d] %s() LN%d recOfBatch=%d totalInsertRows=%"PRIu64"\n",
6110 6111 6112
              pThreadInfo->threadID, __func__, __LINE__, recOfBatch,
              pThreadInfo->totalInsertRows);
    verbosePrint("[%d] %s() LN%d, buffer=%s\n",
6113
           pThreadInfo->threadID, __func__, __LINE__, pThreadInfo->buffer);
6114

6115
    startTs = taosGetTimestampMs();
6116

6117
    if (recOfBatch == 0) {
6118 6119 6120
        errorPrint("[%d] %s() LN%d Failed to insert records of batch %d\n",
                pThreadInfo->threadID, __func__, __LINE__,
                batchPerTbl);
6121 6122 6123 6124
        if (batchPerTbl > 0) {
          errorPrint("\tIf the batch is %d, the length of the SQL to insert a row must be less then %"PRId64"\n",
              batchPerTbl, maxSqlLen / batchPerTbl);
        }
6125 6126 6127
        errorPrint("\tPlease check if the buffer length(%"PRId64") or batch(%d) is set with proper value!\n",
                maxSqlLen, batchPerTbl);
        goto free_of_interlace;
6128
    }
6129
    int64_t affectedRows = execInsert(pThreadInfo, recOfBatch);
6130

6131
    endTs = taosGetTimestampMs();
6132 6133
    uint64_t delay = endTs - startTs;
    performancePrint("%s() LN%d, insert execution time is %"PRIu64"ms\n",
6134
            __func__, __LINE__, delay);
6135 6136 6137
    verbosePrint("[%d] %s() LN%d affectedRows=%"PRId64"\n",
            pThreadInfo->threadID,
            __func__, __LINE__, affectedRows);
6138 6139 6140 6141 6142 6143

    if (delay > pThreadInfo->maxDelay) pThreadInfo->maxDelay = delay;
    if (delay < pThreadInfo->minDelay) pThreadInfo->minDelay = delay;
    pThreadInfo->cntDelay++;
    pThreadInfo->totalDelay += delay;

6144
    if (recOfBatch != affectedRows) {
6145
        errorPrint("[%d] %s() LN%d execInsert insert %d, affected rows: %"PRId64"\n%s\n",
6146
                pThreadInfo->threadID, __func__, __LINE__,
6147
                recOfBatch, affectedRows, pThreadInfo->buffer);
6148
        goto free_of_interlace;
6149
    }
6150

6151
    pThreadInfo->totalAffectedRows += affectedRows;
6152

6153 6154
    int64_t  currentPrintTime = taosGetTimestampMs();
    if (currentPrintTime - lastPrintTime > 30*1000) {
6155
      printf("thread[%d] has currently inserted rows: %"PRIu64 ", affected rows: %"PRIu64 "\n",
6156 6157 6158
                    pThreadInfo->threadID,
                    pThreadInfo->totalInsertRows,
                    pThreadInfo->totalAffectedRows);
6159 6160
      lastPrintTime = currentPrintTime;
    }
6161

6162
    if ((insert_interval) && flagSleep) {
6163
      et = taosGetTimestampMs();
6164

6165
      if (insert_interval > (et - st) ) {
6166 6167
        uint64_t sleepTime = insert_interval - (et -st);
        performancePrint("%s() LN%d sleep: %"PRId64" ms for insert interval\n",
6168
                    __func__, __LINE__, sleepTime);
6169 6170 6171
        taosMsleep(sleepTime); // ms
        sleepTimeTotal += insert_interval;
      }
6172
    }
6173 6174
  }

6175
free_of_interlace:
6176
  tmfree(pThreadInfo->buffer);
6177
  printStatPerThread(pThreadInfo);
6178 6179 6180
  return NULL;
}

6181
// sync insertion progressive data
6182
static void* syncWriteProgressive(threadInfo *pThreadInfo) {
6183
  debugPrint("%s() LN%d: ### progressive write\n", __func__, __LINE__);
6184

6185
  SSuperTable* superTblInfo = pThreadInfo->superTblInfo;
6186
  uint64_t maxSqlLen = superTblInfo?superTblInfo->maxSqlLen:g_args.max_sql_len;
6187 6188 6189 6190 6191 6192
  int64_t timeStampStep =
      superTblInfo?superTblInfo->timeStampStep:DEFAULT_TIMESTAMP_STEP;
  int64_t insertRows =
        (superTblInfo)?superTblInfo->insertRows:g_args.num_of_DPT;
  verbosePrint("%s() LN%d insertRows=%"PRId64"\n",
            __func__, __LINE__, insertRows);
6193

6194 6195
  pThreadInfo->buffer = calloc(maxSqlLen, 1);
  if (NULL == pThreadInfo->buffer) {
6196
    errorPrint( "Failed to alloc %"PRIu64" Bytes, reason:%s\n",
6197
              maxSqlLen,
6198 6199 6200
              strerror(errno));
    return NULL;
  }
6201

6202 6203 6204
  uint64_t lastPrintTime = taosGetTimestampMs();
  uint64_t startTs = taosGetTimestampMs();
  uint64_t endTs;
6205

6206 6207
  pThreadInfo->totalInsertRows = 0;
  pThreadInfo->totalAffectedRows = 0;
6208

6209
  pThreadInfo->samplePos = 0;
6210

6211 6212 6213
  for (uint64_t tableSeq = pThreadInfo->start_table_from;
          tableSeq <= pThreadInfo->end_table_to;
          tableSeq ++) {
6214
    int64_t start_time = pThreadInfo->start_time;
6215

6216
    for (uint64_t i = 0; i < insertRows;) {
6217 6218
      char tableName[TSDB_TABLE_NAME_LEN];
      getTableName(tableName, pThreadInfo, tableSeq);
6219
      verbosePrint("%s() LN%d: tid=%d seq=%"PRId64" tableName=%s\n",
6220 6221
             __func__, __LINE__,
             pThreadInfo->threadID, tableSeq, tableName);
6222 6223 6224 6225 6226 6227
      if (0 == strlen(tableName)) {
        errorPrint("[%d] %s() LN%d, getTableName return null\n",
            pThreadInfo->threadID, __func__, __LINE__);
        free(pThreadInfo->buffer);
        return NULL;
      }
6228

6229
      int64_t remainderBufLen = maxSqlLen;
6230
      char *pstr = pThreadInfo->buffer;
6231

6232 6233
      int len = snprintf(pstr,
              strlen(STR_INSERT_INTO) + 1, "%s", STR_INSERT_INTO);
6234 6235 6236 6237

      pstr += len;
      remainderBufLen -= len;

6238 6239 6240 6241 6242 6243 6244 6245 6246
      int32_t generated;
      if (superTblInfo) {
          if (superTblInfo->iface == STMT_IFACE) {
#if STMT_IFACE_ENABLED == 1
              generated = prepareStbStmt(
                      superTblInfo,
                      pThreadInfo->stmt,
                      tableName,
                      g_args.num_of_RPR,
6247 6248
                      insertRows, i, start_time,
                      &(pThreadInfo->samplePos));
6249 6250 6251 6252 6253 6254 6255 6256 6257 6258 6259 6260 6261 6262 6263 6264 6265 6266 6267 6268 6269 6270 6271 6272 6273 6274 6275 6276 6277 6278 6279 6280 6281
#else
              generated = -1;
#endif
          } else {
              generated = generateStbProgressiveData(
                      superTblInfo,
                      tableName, tableSeq, pThreadInfo->db_name, pstr,
                      insertRows, i, start_time,
                      &(pThreadInfo->samplePos),
                      &remainderBufLen);
          }
      } else {
          if (g_args.iface == STMT_IFACE) {
#if STMT_IFACE_ENABLED == 1
              generated = prepareStmtWithoutStb(
                      pThreadInfo->stmt,
                      tableName,
                      g_args.num_of_RPR,
                      insertRows, i,
                      start_time);
#else
              generated = -1;
#endif
          } else {
              generated = generateProgressiveDataWithoutStb(
                      tableName,
                      /*  tableSeq, */
                      pThreadInfo, pstr, insertRows,
                      i, start_time,
                      /* &(pThreadInfo->samplePos), */
                      &remainderBufLen);
          }
      }
6282 6283 6284
      if (generated > 0)
        i += generated;
      else
6285
        goto free_of_progressive;
6286

6287
      start_time +=  generated * timeStampStep;
6288
      pThreadInfo->totalInsertRows += generated;
6289

6290
      startTs = taosGetTimestampMs();
6291

6292
      int32_t affectedRows = execInsert(pThreadInfo, generated);
6293

6294
      endTs = taosGetTimestampMs();
6295
      uint64_t delay = endTs - startTs;
6296 6297
      performancePrint("%s() LN%d, insert execution time is %"PRId64"ms\n",
              __func__, __LINE__, delay);
6298
      verbosePrint("[%d] %s() LN%d affectedRows=%d\n",
6299 6300
            pThreadInfo->threadID,
            __func__, __LINE__, affectedRows);
6301

6302 6303 6304 6305
      if (delay > pThreadInfo->maxDelay) pThreadInfo->maxDelay = delay;
      if (delay < pThreadInfo->minDelay) pThreadInfo->minDelay = delay;
      pThreadInfo->cntDelay++;
      pThreadInfo->totalDelay += delay;
6306

6307
      if (affectedRows < 0) {
6308
        errorPrint("%s() LN%d, affected rows: %d\n",
6309 6310 6311
                __func__, __LINE__, affectedRows);
        goto free_of_progressive;
      }
6312 6313 6314

      pThreadInfo->totalAffectedRows += affectedRows;

6315 6316
      int64_t  currentPrintTime = taosGetTimestampMs();
      if (currentPrintTime - lastPrintTime > 30*1000) {
6317
        printf("thread[%d] has currently inserted rows: %"PRId64 ", affected rows: %"PRId64 "\n",
6318 6319 6320
                    pThreadInfo->threadID,
                    pThreadInfo->totalInsertRows,
                    pThreadInfo->totalAffectedRows);
6321 6322 6323
        lastPrintTime = currentPrintTime;
      }

6324
      if (i >= insertRows)
6325 6326 6327
        break;
    }   // num_of_DPT

6328 6329
    if ((g_args.verbose_print) &&
      (tableSeq == pThreadInfo->ntables - 1) && (superTblInfo) &&
6330 6331
        (0 == strncasecmp(
                    superTblInfo->dataSource, "sample", strlen("sample")))) {
6332
          verbosePrint("%s() LN%d samplePos=%"PRId64"\n",
6333
                  __func__, __LINE__, pThreadInfo->samplePos);
6334
    }
6335
  } // tableSeq
6336

6337
free_of_progressive:
6338
  tmfree(pThreadInfo->buffer);
6339
  printStatPerThread(pThreadInfo);
6340
  return NULL;
H
Hui Li 已提交
6341 6342
}

6343 6344
static void* syncWrite(void *sarg) {

6345 6346
  threadInfo *pThreadInfo = (threadInfo *)sarg;
  SSuperTable* superTblInfo = pThreadInfo->superTblInfo;
6347

6348
  uint32_t interlaceRows;
6349 6350 6351 6352 6353 6354 6355 6356 6357 6358 6359

  if (superTblInfo) {
    if ((superTblInfo->interlaceRows == 0)
        && (g_args.interlace_rows > 0)) {
      interlaceRows = g_args.interlace_rows;
    } else {
      interlaceRows = superTblInfo->interlaceRows;
    }
  } else {
    interlaceRows = g_args.interlace_rows;
  }
6360

6361
  if (interlaceRows > 0) {
6362
    // interlace mode
6363
    return syncWriteInterlace(pThreadInfo);
6364 6365
  } else {
    // progressive mode
6366
    return syncWriteProgressive(pThreadInfo);
6367 6368 6369
  }
}

6370
static void callBack(void *param, TAOS_RES *res, int code) {
6371 6372
  threadInfo* pThreadInfo = (threadInfo*)param;
  SSuperTable* superTblInfo = pThreadInfo->superTblInfo;
6373

6374 6375
  int insert_interval =
      superTblInfo?superTblInfo->insertInterval:g_args.insert_interval;
6376
  if (insert_interval) {
6377 6378 6379
    pThreadInfo->et = taosGetTimestampMs();
    if ((pThreadInfo->et - pThreadInfo->st) < insert_interval) {
      taosMsleep(insert_interval - (pThreadInfo->et - pThreadInfo->st)); // ms
6380
    }
H
Hui Li 已提交
6381
  }
6382

6383
  char *buffer = calloc(1, pThreadInfo->superTblInfo->maxSqlLen);
6384
  char data[MAX_DATA_SIZE];
6385
  char *pstr = buffer;
6386 6387
  pstr += sprintf(pstr, "insert into %s.%s%"PRId64" values",
          pThreadInfo->db_name, pThreadInfo->tb_prefix,
6388 6389 6390 6391 6392 6393 6394 6395
          pThreadInfo->start_table_from);
//  if (pThreadInfo->counter >= pThreadInfo->superTblInfo->insertRows) {
  if (pThreadInfo->counter >= g_args.num_of_RPR) {
    pThreadInfo->start_table_from++;
    pThreadInfo->counter = 0;
  }
  if (pThreadInfo->start_table_from > pThreadInfo->end_table_to) {
    tsem_post(&pThreadInfo->lock_sem);
6396 6397 6398 6399
    free(buffer);
    taos_free_result(res);
    return;
  }
6400

6401
  for (int i = 0; i < g_args.num_of_RPR; i++) {
6402
    int rand_num = taosRandom() % 100;
6403 6404
    if (0 != pThreadInfo->superTblInfo->disorderRatio
            && rand_num < pThreadInfo->superTblInfo->disorderRatio) {
6405 6406
      int64_t d = pThreadInfo->lastTs
          - (taosRandom() % pThreadInfo->superTblInfo->disorderRange + 1);
6407
      generateStbRowData(pThreadInfo->superTblInfo, data, d);
6408
    } else {
6409 6410
      generateStbRowData(pThreadInfo->superTblInfo,
              data, pThreadInfo->lastTs += 1000);
H
Hui Li 已提交
6411
    }
6412
    pstr += sprintf(pstr, "%s", data);
6413
    pThreadInfo->counter++;
H
Hui Li 已提交
6414

6415
    if (pThreadInfo->counter >= pThreadInfo->superTblInfo->insertRows) {
6416
      break;
H
Hui Li 已提交
6417 6418
    }
  }
6419

6420
  if (insert_interval) {
6421
    pThreadInfo->st = taosGetTimestampMs();
6422
  }
6423
  taos_query_a(pThreadInfo->taos, buffer, callBack, pThreadInfo);
6424
  free(buffer);
H
Hui Li 已提交
6425

6426
  taos_free_result(res);
H
Hui Li 已提交
6427 6428
}

6429
static void *asyncWrite(void *sarg) {
6430 6431
  threadInfo *pThreadInfo = (threadInfo *)sarg;
  SSuperTable* superTblInfo = pThreadInfo->superTblInfo;
6432

6433 6434 6435
  pThreadInfo->st = 0;
  pThreadInfo->et = 0;
  pThreadInfo->lastTs = pThreadInfo->start_time;
6436

6437
  int insert_interval =
6438
      superTblInfo?superTblInfo->insertInterval:g_args.insert_interval;
6439
  if (insert_interval) {
6440
    pThreadInfo->st = taosGetTimestampMs();
H
Hui Li 已提交
6441
  }
6442
  taos_query_a(pThreadInfo->taos, "show databases", callBack, pThreadInfo);
6443

6444
  tsem_wait(&(pThreadInfo->lock_sem));
H
Hui Li 已提交
6445 6446 6447 6448

  return NULL;
}

6449 6450 6451 6452 6453 6454 6455 6456 6457 6458 6459 6460 6461 6462 6463 6464 6465 6466 6467 6468 6469 6470 6471 6472 6473 6474
static int convertHostToServAddr(char *host, uint16_t port, struct sockaddr_in *serv_addr)
{
  uint16_t rest_port = port + TSDB_PORT_HTTP;
  struct hostent *server = gethostbyname(host);
  if ((server == NULL) || (server->h_addr == NULL)) {
    errorPrint("%s", "ERROR, no such host");
    return -1;
  }

  debugPrint("h_name: %s\nh_addr=%p\nh_addretype: %s\nh_length: %d\n",
            server->h_name,
            server->h_addr,
            (server->h_addrtype == AF_INET)?"ipv4":"ipv6",
            server->h_length);

  memset(serv_addr, 0, sizeof(struct sockaddr_in));
  serv_addr->sin_family = AF_INET;
  serv_addr->sin_port = htons(rest_port);
#ifdef WINDOWS
  serv_addr->sin_addr.s_addr = inet_addr(host);
#else
  memcpy(&(serv_addr->sin_addr.s_addr), server->h_addr, server->h_length);
#endif
  return 0;
}

6475
static void startMultiThreadInsertData(int threads, char* db_name,
6476
        char* precision, SSuperTable* superTblInfo) {
6477

6478 6479 6480 6481 6482 6483 6484
  int32_t timePrec = TSDB_TIME_PRECISION_MILLI;
  if (0 != precision[0]) {
    if (0 == strncasecmp(precision, "ms", 2)) {
      timePrec = TSDB_TIME_PRECISION_MILLI;
    }  else if (0 == strncasecmp(precision, "us", 2)) {
      timePrec = TSDB_TIME_PRECISION_MICRO;
    }  else {
6485
      errorPrint("Not support precision: %s\n", precision);
6486 6487 6488 6489
      exit(-1);
    }
  }

6490
  int64_t start_time;
6491 6492 6493
  if (superTblInfo) {
    if (0 == strncasecmp(superTblInfo->startTimestamp, "now", 3)) {
        start_time = taosGetTimestamp(timePrec);
6494
    } else {
6495 6496 6497 6498 6499
      if (TSDB_CODE_SUCCESS != taosParseTime(
        superTblInfo->startTimestamp,
        &start_time,
        strlen(superTblInfo->startTimestamp),
        timePrec, 0)) {
6500
          ERROR_EXIT("failed to parse time!\n");
6501
      }
6502
    }
6503 6504
  } else {
     start_time = 1500000000000;
6505 6506
  }

6507
  int64_t start = taosGetTimestampMs();
6508

6509
  // read sample data from file first
6510
  if ((superTblInfo) && (0 == strncasecmp(superTblInfo->dataSource,
6511
              "sample", strlen("sample")))) {
6512
    if (0 != prepareSampleDataForSTable(superTblInfo)) {
6513 6514
      errorPrint("%s() LN%d, prepare sample data for stable failed!\n",
              __func__, __LINE__);
6515 6516 6517 6518
      exit(-1);
    }
  }

6519
  TAOS* taos0 = taos_connect(
6520 6521
              g_Dbs.host, g_Dbs.user,
              g_Dbs.password, db_name, g_Dbs.port);
6522
  if (NULL == taos0) {
6523 6524
    errorPrint("%s() LN%d, connect to server fail , reason: %s\n",
                __func__, __LINE__, taos_errstr(NULL));
6525 6526 6527
    exit(-1);
  }

6528
  int64_t ntables = 0;
6529
  uint64_t tableFrom;
6530

6531
  if (superTblInfo) {
6532 6533
    int64_t limit;
    uint64_t offset;
6534

6535
    if ((NULL != g_args.sqlFile) && (superTblInfo->childTblExists == TBL_NO_EXISTS) &&
6536
            ((superTblInfo->childTblOffset != 0) || (superTblInfo->childTblLimit >= 0))) {
6537
      printf("WARNING: offset and limit will not be used since the child tables not exists!\n");
6538 6539
    }

6540
    if (superTblInfo->childTblExists == TBL_ALREADY_EXISTS) {
6541 6542
      if ((superTblInfo->childTblLimit < 0)
          || ((superTblInfo->childTblOffset + superTblInfo->childTblLimit)
6543
            > (superTblInfo->childTblCount))) {
6544 6545 6546 6547 6548 6549
        superTblInfo->childTblLimit =
            superTblInfo->childTblCount - superTblInfo->childTblOffset;
      }

      offset = superTblInfo->childTblOffset;
      limit = superTblInfo->childTblLimit;
6550
    } else {
6551 6552
      limit = superTblInfo->childTblCount;
      offset = 0;
6553 6554
    }

6555
    ntables = limit;
6556
    tableFrom = offset;
6557

6558 6559 6560 6561
    if ((superTblInfo->childTblExists != TBL_NO_EXISTS)
        && ((superTblInfo->childTblOffset + superTblInfo->childTblLimit )
            > superTblInfo->childTblCount)) {
      printf("WARNING: specified offset + limit > child table count!\n");
6562
      prompt();
6563 6564 6565 6566 6567
    }

    if ((superTblInfo->childTblExists != TBL_NO_EXISTS)
            && (0 == superTblInfo->childTblLimit)) {
      printf("WARNING: specified limit = 0, which cannot find table name to insert or query! \n");
6568
      prompt();
6569 6570
    }

6571 6572 6573
    superTblInfo->childTblName = (char*)calloc(1,
        limit * TSDB_TABLE_NAME_LEN);
    if (superTblInfo->childTblName == NULL) {
6574
      errorPrint("%s() LN%d, alloc memory failed!\n", __func__, __LINE__);
6575
      taos_close(taos0);
6576 6577 6578
      exit(-1);
    }

6579
    int64_t childTblCount;
6580
    getChildNameOfSuperTableWithLimitAndOffset(
6581
        taos0,
6582 6583 6584 6585
        db_name, superTblInfo->sTblName,
        &superTblInfo->childTblName, &childTblCount,
        limit,
        offset);
6586 6587
  } else {
    ntables = g_args.num_of_tables;
6588
    tableFrom = 0;
6589
  }
6590

6591
  taos_close(taos0);
6592

6593
  int64_t a = ntables / threads;
6594 6595 6596 6597 6598
  if (a < 1) {
    threads = ntables;
    a = 1;
  }

6599
  int64_t b = 0;
6600 6601 6602 6603
  if (threads != 0) {
    b = ntables % threads;
  }

6604
  if ((superTblInfo)
6605 6606 6607 6608 6609
      && (superTblInfo->iface == REST_IFACE)) {
      if (convertHostToServAddr(
                  g_Dbs.host, g_Dbs.port, &(g_Dbs.serv_addr)) != 0) {
        exit(-1);
      }
6610 6611
  }

6612
  pthread_t *pids = calloc(1, threads * sizeof(pthread_t));
6613 6614 6615 6616 6617 6618 6619 6620
  assert(pids != NULL);

  threadInfo *infos = calloc(1, threads * sizeof(threadInfo));
  assert(infos != NULL);

  memset(pids, 0, threads * sizeof(pthread_t));
  memset(infos, 0, threads * sizeof(threadInfo));

H
Hui Li 已提交
6621
  for (int i = 0; i < threads; i++) {
6622 6623
    threadInfo *pThreadInfo = infos + i;
    pThreadInfo->threadID = i;
6624
    tstrncpy(pThreadInfo->db_name, db_name, TSDB_DB_NAME_LEN);
6625 6626
    pThreadInfo->time_precision = timePrec;
    pThreadInfo->superTblInfo = superTblInfo;
6627

6628 6629
    pThreadInfo->start_time = start_time;
    pThreadInfo->minDelay = UINT64_MAX;
6630

6631
    if ((NULL == superTblInfo) ||
6632 6633
            (superTblInfo->iface != REST_IFACE)) {
      //t_info->taos = taos;
6634
      pThreadInfo->taos = taos_connect(
6635
              g_Dbs.host, g_Dbs.user,
6636
              g_Dbs.password, db_name, g_Dbs.port);
6637
      if (NULL == pThreadInfo->taos) {
6638
        errorPrint(
6639 6640
                "%s() LN%d, connect to server fail from insert sub thread, reason: %s\n",
                __func__, __LINE__,
6641
                taos_errstr(NULL));
6642
        free(infos);
6643 6644
        exit(-1);
      }
6645

6646
#if STMT_IFACE_ENABLED == 1
6647 6648 6649 6650 6651 6652 6653 6654 6655 6656 6657 6658 6659 6660 6661 6662 6663 6664 6665 6666 6667 6668 6669 6670 6671 6672 6673 6674 6675 6676 6677 6678 6679 6680 6681 6682 6683 6684 6685
      if ((g_args.iface == STMT_IFACE)
          || ((superTblInfo) && (superTblInfo->iface == STMT_IFACE))) {

          int columnCount;
          if (superTblInfo) {
              columnCount = superTblInfo->columnCount;
          } else {
              columnCount = g_args.num_of_CPR;
          }

        pThreadInfo->stmt = taos_stmt_init(pThreadInfo->taos);
        if (NULL == pThreadInfo->stmt) {
            errorPrint(
                "%s() LN%d, failed init stmt, reason: %s\n",
                __func__, __LINE__,
                taos_errstr(NULL));
            free(pids);
            free(infos);
            exit(-1);
        }

        char buffer[3000];
        char *pstr = buffer;
        pstr += sprintf(pstr, "INSERT INTO ? values(?");

        for (int col = 0; col < columnCount; col ++) {
            pstr += sprintf(pstr, ",?");
        }
        pstr += sprintf(pstr, ")");

        int ret = taos_stmt_prepare(pThreadInfo->stmt, buffer, 0);
        if (ret != 0){
            errorPrint("failed to execute taos_stmt_prepare. return 0x%x. reason: %s\n",
                    ret, taos_errstr(NULL));
            free(pids);
            free(infos);
            exit(-1);
        }
      }
6686
#endif
6687
    } else {
6688
      pThreadInfo->taos = NULL;
6689 6690
    }

6691
/*    if ((NULL == superTblInfo)
6692
            || (0 == superTblInfo->multiThreadWriteOneTbl)) {
6693
            */
6694
      pThreadInfo->start_table_from = tableFrom;
6695
      pThreadInfo->ntables = i<b?a+1:a;
6696 6697
      pThreadInfo->end_table_to = i < b ? tableFrom + a : tableFrom + a - 1;
      tableFrom = pThreadInfo->end_table_to + 1;
6698
/*    } else {
6699 6700 6701
      pThreadInfo->start_table_from = 0;
      pThreadInfo->ntables = superTblInfo->childTblCount;
      pThreadInfo->start_time = pThreadInfo->start_time + rand_int() % 10000 - rand_tinyint();
6702
    }
6703
*/
6704
    tsem_init(&(pThreadInfo->lock_sem), 0, 0);
6705
    if (ASYNC_MODE == g_Dbs.asyncMode) {
6706
      pthread_create(pids + i, NULL, asyncWrite, pThreadInfo);
6707
    } else {
6708
      pthread_create(pids + i, NULL, syncWrite, pThreadInfo);
6709
    }
H
Hui Li 已提交
6710
  }
6711

H
Hui Li 已提交
6712 6713 6714 6715
  for (int i = 0; i < threads; i++) {
    pthread_join(pids[i], NULL);
  }

6716 6717 6718 6719
  uint64_t totalDelay = 0;
  uint64_t maxDelay = 0;
  uint64_t minDelay = UINT64_MAX;
  uint64_t cntDelay = 1;
6720 6721
  double  avgDelay = 0;

H
Hui Li 已提交
6722
  for (int i = 0; i < threads; i++) {
6723
    threadInfo *pThreadInfo = infos + i;
6724

6725 6726
    tsem_destroy(&(pThreadInfo->lock_sem));

6727
#if STMT_IFACE_ENABLED == 1
6728 6729 6730
    if (pThreadInfo->stmt) {
      taos_stmt_close(pThreadInfo->stmt);
    }
6731
#endif
6732 6733
    tsem_destroy(&(pThreadInfo->lock_sem));
    taos_close(pThreadInfo->taos);
6734

6735
    debugPrint("%s() LN%d, [%d] totalInsert=%"PRIu64" totalAffected=%"PRIu64"\n",
6736
            __func__, __LINE__,
6737 6738
            pThreadInfo->threadID, pThreadInfo->totalInsertRows,
            pThreadInfo->totalAffectedRows);
6739
    if (superTblInfo) {
6740 6741
        superTblInfo->totalAffectedRows += pThreadInfo->totalAffectedRows;
        superTblInfo->totalInsertRows += pThreadInfo->totalInsertRows;
6742
    } else {
6743 6744
        g_args.totalAffectedRows += pThreadInfo->totalAffectedRows;
        g_args.totalInsertRows += pThreadInfo->totalInsertRows;
6745
    }
6746

6747 6748 6749 6750
    totalDelay  += pThreadInfo->totalDelay;
    cntDelay   += pThreadInfo->cntDelay;
    if (pThreadInfo->maxDelay > maxDelay) maxDelay = pThreadInfo->maxDelay;
    if (pThreadInfo->minDelay < minDelay) minDelay = pThreadInfo->minDelay;
H
Hui Li 已提交
6751
  }
6752
  cntDelay -= 1;
H
Hui Li 已提交
6753

6754
  if (cntDelay == 0)    cntDelay = 1;
6755 6756
  avgDelay = (double)totalDelay / cntDelay;

6757 6758
  int64_t end = taosGetTimestampMs();
  int64_t t = end - start;
6759 6760

  if (superTblInfo) {
6761
    fprintf(stderr, "Spent %.2f seconds to insert rows: %"PRIu64", affected rows: %"PRIu64" with %d thread(s) into %s.%s. %.2f records/second\n\n",
6762
          t / 1000.0, superTblInfo->totalInsertRows,
6763 6764
          superTblInfo->totalAffectedRows,
          threads, db_name, superTblInfo->sTblName,
6765
          (double)superTblInfo->totalInsertRows / (t / 1000.0));
6766 6767 6768 6769

    if (g_fpOfInsertResult) {
      fprintf(g_fpOfInsertResult,
          "Spent %.2f seconds to insert rows: %"PRIu64", affected rows: %"PRIu64" with %d thread(s) into %s.%s. %.2f records/second\n\n",
6770
          t / 1000.0, superTblInfo->totalInsertRows,
6771 6772
          superTblInfo->totalAffectedRows,
          threads, db_name, superTblInfo->sTblName,
6773
          (double)superTblInfo->totalInsertRows / (t / 1000.0));
6774
    }
6775
  } else {
6776
    fprintf(stderr, "Spent %.2f seconds to insert rows: %"PRIu64", affected rows: %"PRIu64" with %d thread(s) into %s %.2f records/second\n\n",
6777
          t / 1000.0, g_args.totalInsertRows,
6778 6779
          g_args.totalAffectedRows,
          threads, db_name,
6780
          (double)g_args.totalInsertRows / (t / 1000.0));
6781 6782 6783
    if (g_fpOfInsertResult) {
      fprintf(g_fpOfInsertResult,
          "Spent %.2f seconds to insert rows: %"PRIu64", affected rows: %"PRIu64" with %d thread(s) into %s %.2f records/second\n\n",
6784
          t * 1000.0, g_args.totalInsertRows,
6785 6786
          g_args.totalAffectedRows,
          threads, db_name,
6787
          (double)g_args.totalInsertRows / (t / 1000.0));
6788
    }
6789
  }
6790

6791
  fprintf(stderr, "insert delay, avg: %10.2fms, max: %"PRIu64"ms, min: %"PRIu64"ms\n\n",
6792
          avgDelay, maxDelay, minDelay);
6793 6794
  if (g_fpOfInsertResult) {
    fprintf(g_fpOfInsertResult, "insert delay, avg:%10.2fms, max: %"PRIu64"ms, min: %"PRIu64"ms\n\n",
6795
          avgDelay, maxDelay, minDelay);
6796
  }
6797

6798 6799
  //taos_close(taos);

H
Hui Li 已提交
6800
  free(pids);
6801
  free(infos);
H
Hui Li 已提交
6802 6803
}

6804
static void *readTable(void *sarg) {
6805
#if 1
6806 6807
  threadInfo *pThreadInfo = (threadInfo *)sarg;
  TAOS *taos = pThreadInfo->taos;
H
hzcheng 已提交
6808
  char command[BUFFER_SIZE] = "\0";
6809 6810 6811
  uint64_t sTime = pThreadInfo->start_time;
  char *tb_prefix = pThreadInfo->tb_prefix;
  FILE *fp = fopen(pThreadInfo->filePath, "a");
H
Hui Li 已提交
6812
  if (NULL == fp) {
6813
    errorPrint( "fopen %s fail, reason:%s.\n", pThreadInfo->filePath, strerror(errno));
H
Hui Li 已提交
6814 6815
    return NULL;
  }
6816

6817
  int64_t num_of_DPT;
6818 6819
/*  if (pThreadInfo->superTblInfo) {
    num_of_DPT = pThreadInfo->superTblInfo->insertRows; //  nrecords_per_table;
6820
  } else {
6821
  */
6822
      num_of_DPT = g_args.num_of_DPT;
6823
//  }
6824

6825
  int64_t num_of_tables = pThreadInfo->ntables; // rinfo->end_table_to - rinfo->start_table_from + 1;
6826
  int64_t totalData = num_of_DPT * num_of_tables;
6827
  bool do_aggreFunc = g_Dbs.do_aggreFunc;
H
hzcheng 已提交
6828 6829 6830 6831 6832

  int n = do_aggreFunc ? (sizeof(aggreFunc) / sizeof(aggreFunc[0])) : 2;
  if (!do_aggreFunc) {
    printf("\nThe first field is either Binary or Bool. Aggregation functions are not supported.\n");
  }
6833
  printf("%"PRId64" records:\n", totalData);
H
hzcheng 已提交
6834 6835
  fprintf(fp, "| QFunctions |    QRecords    |   QSpeed(R/s)   |  QLatency(ms) |\n");

6836
  for (int j = 0; j < n; j++) {
H
hzcheng 已提交
6837
    double totalT = 0;
6838
    uint64_t count = 0;
6839 6840
    for (int64_t i = 0; i < num_of_tables; i++) {
      sprintf(command, "select %s from %s%"PRId64" where ts>= %" PRIu64,
6841
              aggreFunc[j], tb_prefix, i, sTime);
H
hzcheng 已提交
6842

6843
      double t = taosGetTimestampMs();
S
Shuaiqiang Chang 已提交
6844 6845
      TAOS_RES *pSql = taos_query(taos, command);
      int32_t code = taos_errno(pSql);
H
hzcheng 已提交
6846

S
Shuaiqiang Chang 已提交
6847
      if (code != 0) {
6848
        errorPrint( "Failed to query:%s\n", taos_errstr(pSql));
S
Shuaiqiang Chang 已提交
6849
        taos_free_result(pSql);
H
hzcheng 已提交
6850
        taos_close(taos);
6851
        fclose(fp);
6852
        return NULL;
H
hzcheng 已提交
6853 6854
      }

6855
      while(taos_fetch_row(pSql) != NULL) {
H
hzcheng 已提交
6856 6857 6858
        count++;
      }

6859
      t = taosGetTimestampMs() - t;
H
hzcheng 已提交
6860 6861
      totalT += t;

S
Shuaiqiang Chang 已提交
6862
      taos_free_result(pSql);
H
hzcheng 已提交
6863 6864
    }

6865
    fprintf(fp, "|%10s  |   %"PRId64"   |  %12.2f   |   %10.2f  |\n",
S
slguan 已提交
6866
            aggreFunc[j][0] == '*' ? "   *   " : aggreFunc[j], totalData,
H
hzcheng 已提交
6867
            (double)(num_of_tables * num_of_DPT) / totalT, totalT * 1000);
6868
    printf("select %10s took %.6f second(s)\n", aggreFunc[j], totalT * 1000);
H
hzcheng 已提交
6869 6870 6871
  }
  fprintf(fp, "\n");
  fclose(fp);
6872
#endif
H
hzcheng 已提交
6873 6874 6875
  return NULL;
}

6876
static void *readMetric(void *sarg) {
6877
#if 1
6878 6879
  threadInfo *pThreadInfo = (threadInfo *)sarg;
  TAOS *taos = pThreadInfo->taos;
H
hzcheng 已提交
6880
  char command[BUFFER_SIZE] = "\0";
6881
  FILE *fp = fopen(pThreadInfo->filePath, "a");
H
Hui Li 已提交
6882
  if (NULL == fp) {
6883
    printf("fopen %s fail, reason:%s.\n", pThreadInfo->filePath, strerror(errno));
H
Hui Li 已提交
6884 6885
    return NULL;
  }
6886

6887 6888
  int64_t num_of_DPT = pThreadInfo->superTblInfo->insertRows;
  int64_t num_of_tables = pThreadInfo->ntables; // rinfo->end_table_to - rinfo->start_table_from + 1;
6889
  int64_t totalData = num_of_DPT * num_of_tables;
6890
  bool do_aggreFunc = g_Dbs.do_aggreFunc;
H
hzcheng 已提交
6891 6892 6893 6894 6895

  int n = do_aggreFunc ? (sizeof(aggreFunc) / sizeof(aggreFunc[0])) : 2;
  if (!do_aggreFunc) {
    printf("\nThe first field is either Binary or Bool. Aggregation functions are not supported.\n");
  }
6896 6897
  printf("%"PRId64" records:\n", totalData);
  fprintf(fp, "Querying On %"PRId64" records:\n", totalData);
H
hzcheng 已提交
6898 6899

  for (int j = 0; j < n; j++) {
6900
    char condition[COND_BUF_LEN] = "\0";
B
Bomin Zhang 已提交
6901
    char tempS[64] = "\0";
H
hzcheng 已提交
6902

6903
    int64_t m = 10 < num_of_tables ? 10 : num_of_tables;
H
hzcheng 已提交
6904

6905
    for (int64_t i = 1; i <= m; i++) {
H
hzcheng 已提交
6906
      if (i == 1) {
6907
        sprintf(tempS, "t1 = %"PRId64"", i);
H
hzcheng 已提交
6908
      } else {
6909
        sprintf(tempS, " or t1 = %"PRId64" ", i);
H
hzcheng 已提交
6910
      }
6911
      strncat(condition, tempS, COND_BUF_LEN - 1);
H
hzcheng 已提交
6912

L
liu0x54 已提交
6913
      sprintf(command, "select %s from meters where %s", aggreFunc[j], condition);
H
hzcheng 已提交
6914 6915 6916 6917

      printf("Where condition: %s\n", condition);
      fprintf(fp, "%s\n", command);

6918
      double t = taosGetTimestampMs();
H
hzcheng 已提交
6919

S
Shuaiqiang Chang 已提交
6920 6921 6922 6923
      TAOS_RES *pSql = taos_query(taos, command);
      int32_t code = taos_errno(pSql);

      if (code != 0) {
6924
        errorPrint( "Failed to query:%s\n", taos_errstr(pSql));
S
Shuaiqiang Chang 已提交
6925
        taos_free_result(pSql);
H
hzcheng 已提交
6926
        taos_close(taos);
6927
        fclose(fp);
6928
        return NULL;
H
hzcheng 已提交
6929 6930
      }
      int count = 0;
6931
      while(taos_fetch_row(pSql) != NULL) {
H
hzcheng 已提交
6932 6933
        count++;
      }
6934
      t = taosGetTimestampMs() - t;
H
hzcheng 已提交
6935

6936
      fprintf(fp, "| Speed: %12.2f(per s) | Latency: %.4f(ms) |\n",
6937 6938
              num_of_tables * num_of_DPT / (t * 1000.0), t);
      printf("select %10s took %.6f second(s)\n\n", aggreFunc[j], t * 1000.0);
H
hzcheng 已提交
6939

S
Shuaiqiang Chang 已提交
6940
      taos_free_result(pSql);
H
hzcheng 已提交
6941 6942 6943 6944
    }
    fprintf(fp, "\n");
  }
  fclose(fp);
6945
#endif
H
hzcheng 已提交
6946 6947 6948
  return NULL;
}

6949 6950 6951
static void prompt()
{
  if (!g_args.answer_yes) {
6952
    printf("         Press enter key to continue or Ctrl-C to stop\n\n");
6953 6954 6955 6956
    (void)getchar();
  }
}

6957
static int insertTestProcess() {
6958

6959 6960 6961
  setupForAnsiEscape();
  int ret = printfInsertMeta();
  resetAfterAnsiEscape();
6962

6963 6964 6965
  if (ret == -1)
    exit(EXIT_FAILURE);

6966
  debugPrint("%d result file: %s\n", __LINE__, g_Dbs.resultFile);
6967 6968
  g_fpOfInsertResult = fopen(g_Dbs.resultFile, "a");
  if (NULL == g_fpOfInsertResult) {
6969
    errorPrint( "Failed to open %s for save result\n", g_Dbs.resultFile);
6970 6971
    return -1;
  }
6972

6973 6974
  if (g_fpOfInsertResult)
    printfInsertMetaToFile(g_fpOfInsertResult);
6975

6976
  prompt();
6977

6978 6979 6980
  init_rand_data();

  // create database and super tables
6981
  if(createDatabasesAndStables() != 0) {
6982 6983
    if (g_fpOfInsertResult)
      fclose(g_fpOfInsertResult);
6984 6985
    return -1;
  }
6986 6987

  // pretreatement
6988 6989 6990 6991 6992
  if (prepareSampleData() != 0) {
    if (g_fpOfInsertResult)
      fclose(g_fpOfInsertResult);
    return -1;
  }
6993

6994 6995 6996 6997
  double start;
  double end;

  // create child tables
6998
  start = taosGetTimestampMs();
6999
  createChildTables();
7000
  end = taosGetTimestampMs();
7001

7002
  if (g_totalChildTables > 0) {
7003
    fprintf(stderr, "Spent %.4f seconds to create %"PRId64" tables with %d thread(s)\n\n",
7004
            (end - start)/1000.0, g_totalChildTables, g_Dbs.threadCountByCreateTbl);
7005 7006
    if (g_fpOfInsertResult) {
      fprintf(g_fpOfInsertResult,
7007
            "Spent %.4f seconds to create %"PRId64" tables with %d thread(s)\n\n",
7008
            (end - start)/1000.0, g_totalChildTables, g_Dbs.threadCountByCreateTbl);
7009
    }
7010
  }
7011

7012
  // create sub threads for inserting data
7013
  //start = taosGetTimestampMs();
7014
  for (int i = 0; i < g_Dbs.dbCount; i++) {
7015 7016
    if (g_Dbs.use_metric) {
      if (g_Dbs.db[i].superTblCount > 0) {
7017
        for (uint64_t j = 0; j < g_Dbs.db[i].superTblCount; j++) {
7018 7019 7020 7021 7022 7023 7024 7025 7026 7027

          SSuperTable* superTblInfo = &g_Dbs.db[i].superTbls[j];

          if (superTblInfo && (superTblInfo->insertRows > 0)) {
            startMultiThreadInsertData(
              g_Dbs.threadCount,
              g_Dbs.db[i].dbName,
              g_Dbs.db[i].dbCfg.precision,
              superTblInfo);
          }
7028
        }
7029
      }
7030 7031
    } else {
        startMultiThreadInsertData(
7032 7033 7034
          g_Dbs.threadCount,
          g_Dbs.db[i].dbName,
          g_Dbs.db[i].dbCfg.precision,
7035
          NULL);
H
Hui Li 已提交
7036
    }
7037
  }
7038
  //end = taosGetTimestampMs();
7039

7040
  //int64_t    totalInsertRows = 0;
7041
  //int64_t    totalAffectedRows = 0;
7042
  //for (int i = 0; i < g_Dbs.dbCount; i++) {
7043
  //  for (int j = 0; j < g_Dbs.db[i].superTblCount; j++) {
7044
  //  totalInsertRows+= g_Dbs.db[i].superTbls[j].totalInsertRows;
7045 7046
  //  totalAffectedRows += g_Dbs.db[i].superTbls[j].totalAffectedRows;
  //}
7047
  //printf("Spent %.4f seconds to insert rows: %"PRId64", affected rows: %"PRId64" with %d thread(s)\n\n", end - start, totalInsertRows, totalAffectedRows, g_Dbs.threadCount);
7048
  postFreeResource();
7049

7050 7051 7052
  return 0;
}

7053 7054
static void *specifiedTableQuery(void *sarg) {
  threadInfo *pThreadInfo = (threadInfo *)sarg;
7055

7056
  if (pThreadInfo->taos == NULL) {
7057 7058 7059 7060 7061 7062 7063 7064
    TAOS * taos = NULL;
    taos = taos_connect(g_queryInfo.host,
          g_queryInfo.user,
          g_queryInfo.password,
          NULL,
          g_queryInfo.port);
    if (taos == NULL) {
      errorPrint("[%d] Failed to connect to TDengine, reason:%s\n",
7065
            pThreadInfo->threadID, taos_errstr(NULL));
7066 7067
      return NULL;
    } else {
7068
      pThreadInfo->taos = taos;
7069 7070 7071
    }
  }

7072
  char sqlStr[TSDB_DB_NAME_LEN + 5];
7073
  sprintf(sqlStr, "use %s", g_queryInfo.dbName);
7074 7075
  if (0 != queryDbExec(pThreadInfo->taos, sqlStr, NO_INSERT_TYPE, false)) {
    taos_close(pThreadInfo->taos);
7076 7077 7078 7079
    errorPrint( "use database %s failed!\n\n",
                g_queryInfo.dbName);
    return NULL;
  }
7080

7081 7082
  uint64_t st = 0;
  uint64_t et = 0;
7083

7084
  uint64_t queryTimes = g_queryInfo.specifiedQueryInfo.queryTimes;
7085

7086 7087 7088
  uint64_t totalQueried = 0;
  uint64_t lastPrintTime = taosGetTimestampMs();
  uint64_t startTs = taosGetTimestampMs();
7089

7090
  if (g_queryInfo.specifiedQueryInfo.result[pThreadInfo->querySeq][0] != '\0') {
7091
    sprintf(pThreadInfo->filePath, "%s-%d",
7092 7093 7094 7095
                g_queryInfo.specifiedQueryInfo.result[pThreadInfo->querySeq],
                pThreadInfo->threadID);
  }

7096
  while(queryTimes --) {
7097 7098 7099
    if (g_queryInfo.specifiedQueryInfo.queryInterval && (et - st) <
            (int64_t)g_queryInfo.specifiedQueryInfo.queryInterval) {
      taosMsleep(g_queryInfo.specifiedQueryInfo.queryInterval - (et - st)); // ms
7100 7101
    }

7102 7103 7104
    st = taosGetTimestampMs();

    selectAndGetResult(pThreadInfo,
7105
          g_queryInfo.specifiedQueryInfo.sql[pThreadInfo->querySeq]);
7106

7107 7108 7109 7110
    et = taosGetTimestampMs();
    printf("=thread[%"PRId64"] use %s complete one sql, Spent %10.3f s\n",
              taosGetSelfPthreadId(), g_queryInfo.queryMode, (et - st)/1000.0);

7111 7112
    totalQueried ++;
    g_queryInfo.specifiedQueryInfo.totalQueried ++;
7113

7114 7115
    uint64_t  currentPrintTime = taosGetTimestampMs();
    uint64_t  endTs = taosGetTimestampMs();
7116
    if (currentPrintTime - lastPrintTime > 30*1000) {
7117
      debugPrint("%s() LN%d, endTs=%"PRIu64"ms, startTs=%"PRIu64"ms\n",
7118
          __func__, __LINE__, endTs, startTs);
7119
      printf("thread[%d] has currently completed queries: %"PRIu64", QPS: %10.6f\n",
7120 7121
                    pThreadInfo->threadID,
                    totalQueried,
7122
                    (double)(totalQueried/((endTs-startTs)/1000.0)));
7123
      lastPrintTime = currentPrintTime;
7124
    }
H
Hui Li 已提交
7125
  }
7126 7127
  return NULL;
}
H
Hui Li 已提交
7128

7129
static void replaceChildTblName(char* inSql, char* outSql, int tblIndex) {
7130 7131
  char sourceString[32] = "xxxx";
  char subTblName[MAX_TB_NAME_SIZE*3];
7132 7133
  sprintf(subTblName, "%s.%s",
          g_queryInfo.dbName,
7134
          g_queryInfo.superQueryInfo.childTblName + tblIndex*TSDB_TABLE_NAME_LEN);
7135 7136

  //printf("inSql: %s\n", inSql);
7137

7138 7139
  char* pos = strstr(inSql, sourceString);
  if (0 == pos) {
7140
    return;
H
Hui Li 已提交
7141
  }
7142

7143
  tstrncpy(outSql, inSql, pos - inSql + 1);
7144
  //printf("1: %s\n", outSql);
7145
  strncat(outSql, subTblName, MAX_QUERY_SQL_LENGTH - 1);
7146
  //printf("2: %s\n", outSql);
7147
  strncat(outSql, pos+strlen(sourceString), MAX_QUERY_SQL_LENGTH - 1);
7148
  //printf("3: %s\n", outSql);
H
Hui Li 已提交
7149 7150
}

7151
static void *superTableQuery(void *sarg) {
7152
  char sqlstr[MAX_QUERY_SQL_LENGTH];
7153
  threadInfo *pThreadInfo = (threadInfo *)sarg;
7154

7155
  if (pThreadInfo->taos == NULL) {
7156 7157 7158 7159 7160 7161 7162 7163
    TAOS * taos = NULL;
    taos = taos_connect(g_queryInfo.host,
          g_queryInfo.user,
          g_queryInfo.password,
          NULL,
          g_queryInfo.port);
    if (taos == NULL) {
      errorPrint("[%d] Failed to connect to TDengine, reason:%s\n",
7164
            pThreadInfo->threadID, taos_errstr(NULL));
7165 7166
      return NULL;
    } else {
7167
      pThreadInfo->taos = taos;
7168 7169 7170
    }
  }

7171 7172
  uint64_t st = 0;
  uint64_t et = (int64_t)g_queryInfo.superQueryInfo.queryInterval;
7173

7174 7175 7176
  uint64_t queryTimes = g_queryInfo.superQueryInfo.queryTimes;
  uint64_t totalQueried = 0;
  uint64_t  startTs = taosGetTimestampMs();
7177

7178
  uint64_t  lastPrintTime = taosGetTimestampMs();
7179
  while(queryTimes --) {
7180 7181 7182
    if (g_queryInfo.superQueryInfo.queryInterval
            && (et - st) < (int64_t)g_queryInfo.superQueryInfo.queryInterval) {
      taosMsleep(g_queryInfo.superQueryInfo.queryInterval - (et - st)); // ms
7183
      //printf("========sleep duration:%"PRId64 "========inserted rows:%d, table range:%d - %d\n", (1000 - (et - st)), i, pThreadInfo->start_table_from, pThreadInfo->end_table_to);
7184
    }
H
Hui Li 已提交
7185

7186
    st = taosGetTimestampMs();
7187
    for (int i = pThreadInfo->start_table_from; i <= pThreadInfo->end_table_to; i++) {
7188
      for (int j = 0; j < g_queryInfo.superQueryInfo.sqlCount; j++) {
7189
        memset(sqlstr,0,sizeof(sqlstr));
7190
        replaceChildTblName(g_queryInfo.superQueryInfo.sql[j], sqlstr, i);
7191
        if (g_queryInfo.superQueryInfo.result[j][0] != '\0') {
7192
          sprintf(pThreadInfo->filePath, "%s-%d",
7193
                  g_queryInfo.superQueryInfo.result[j],
7194
                  pThreadInfo->threadID);
7195
        }
7196
        selectAndGetResult(pThreadInfo, sqlstr);
7197 7198 7199 7200 7201 7202 7203

        totalQueried++;
        g_queryInfo.superQueryInfo.totalQueried ++;

        int64_t  currentPrintTime = taosGetTimestampMs();
        int64_t  endTs = taosGetTimestampMs();
        if (currentPrintTime - lastPrintTime > 30*1000) {
7204
          printf("thread[%d] has currently completed queries: %"PRIu64", QPS: %10.3f\n",
7205 7206
                    pThreadInfo->threadID,
                    totalQueried,
7207
                    (double)(totalQueried/((endTs-startTs)/1000.0)));
7208
          lastPrintTime = currentPrintTime;
7209
        }
7210
      }
H
Hui Li 已提交
7211
    }
7212
    et = taosGetTimestampMs();
7213
    printf("####thread[%"PRId64"] complete all sqls to allocate all sub-tables[%"PRIu64" - %"PRIu64"] once queries duration:%.4fs\n\n",
7214
            taosGetSelfPthreadId(),
7215 7216
            pThreadInfo->start_table_from,
            pThreadInfo->end_table_to,
7217
            (double)(et - st)/1000.0);
7218
  }
7219

7220 7221 7222
  return NULL;
}

7223
static int queryTestProcess() {
7224 7225 7226 7227

  setupForAnsiEscape();
  printfQueryMeta();
  resetAfterAnsiEscape();
7228 7229 7230 7231 7232 7233

  TAOS * taos = NULL;
  taos = taos_connect(g_queryInfo.host,
          g_queryInfo.user,
          g_queryInfo.password,
          NULL,
7234
          g_queryInfo.port);
7235
  if (taos == NULL) {
7236 7237
    errorPrint( "Failed to connect to TDengine, reason:%s\n",
            taos_errstr(NULL));
7238 7239 7240
    exit(-1);
  }

7241
  if (0 != g_queryInfo.superQueryInfo.sqlCount) {
7242 7243
    getAllChildNameOfSuperTable(taos,
            g_queryInfo.dbName,
7244 7245 7246
            g_queryInfo.superQueryInfo.sTblName,
            &g_queryInfo.superQueryInfo.childTblName,
            &g_queryInfo.superQueryInfo.childTblCount);
7247
  }
7248

7249
  prompt();
7250

7251 7252 7253
  if (g_args.debug_print || g_args.verbose_print) {
    printfQuerySystemInfo(taos);
  }
7254

7255 7256 7257 7258 7259 7260
  if (0 == strncasecmp(g_queryInfo.queryMode, "rest", strlen("rest"))) {
    if (convertHostToServAddr(
        g_queryInfo.host, g_queryInfo.port, &g_queryInfo.serv_addr) != 0)
      exit(-1);
  }

7261 7262 7263
  pthread_t  *pids  = NULL;
  threadInfo *infos = NULL;
  //==== create sub threads for query from specify table
7264
  int nConcurrent = g_queryInfo.specifiedQueryInfo.concurrent;
7265
  uint64_t nSqlCount = g_queryInfo.specifiedQueryInfo.sqlCount;
7266

7267
  uint64_t startTs = taosGetTimestampMs();
7268

7269 7270
  if ((nSqlCount > 0) && (nConcurrent > 0)) {

7271 7272
    pids  = calloc(1, nConcurrent * nSqlCount * sizeof(pthread_t));
    infos = calloc(1, nConcurrent * nSqlCount * sizeof(threadInfo));
7273 7274

    if ((NULL == pids) || (NULL == infos)) {
7275
      taos_close(taos);
7276
      ERROR_EXIT("memory allocation failed for create threads\n");
7277
    }
7278

7279 7280 7281
    for (uint64_t i = 0; i < nSqlCount; i++) {
        for (int j = 0; j < nConcurrent; j++) {
            uint64_t seq = i * nConcurrent + j;
7282 7283 7284
            threadInfo *pThreadInfo = infos + seq;
            pThreadInfo->threadID = seq;
            pThreadInfo->querySeq = i;
7285 7286 7287 7288 7289 7290 7291 7292 7293 7294 7295 7296 7297 7298

            if (0 == strncasecmp(g_queryInfo.queryMode, "taosc", 5)) {

                char sqlStr[MAX_TB_NAME_SIZE*2];
                sprintf(sqlStr, "use %s", g_queryInfo.dbName);
                if (0 != queryDbExec(taos, sqlStr, NO_INSERT_TYPE, false)) {
                    taos_close(taos);
                    free(infos);
                    free(pids);
                    errorPrint( "use database %s failed!\n\n",
                        g_queryInfo.dbName);
                    return -1;
                }
            }
7299

7300
            pThreadInfo->taos = NULL;// TODO: workaround to use separate taos connection;
7301

7302
            pthread_create(pids + seq, NULL, specifiedTableQuery,
7303
                pThreadInfo);
7304
        }
7305
    }
7306
  } else {
7307
    g_queryInfo.specifiedQueryInfo.concurrent = 0;
7308
  }
7309

7310 7311
  taos_close(taos);

7312 7313 7314
  pthread_t  *pidsOfSub  = NULL;
  threadInfo *infosOfSub = NULL;
  //==== create sub threads for query from all sub table of the super table
7315 7316
  if ((g_queryInfo.superQueryInfo.sqlCount > 0)
          && (g_queryInfo.superQueryInfo.threadCnt > 0)) {
7317 7318
    pidsOfSub  = calloc(1, g_queryInfo.superQueryInfo.threadCnt * sizeof(pthread_t));
    infosOfSub = calloc(1, g_queryInfo.superQueryInfo.threadCnt * sizeof(threadInfo));
7319 7320

    if ((NULL == pidsOfSub) || (NULL == infosOfSub)) {
7321 7322
      free(infos);
      free(pids);
7323

7324
      ERROR_EXIT("memory allocation failed for create threads\n");
7325
    }
7326

7327
    int64_t ntables = g_queryInfo.superQueryInfo.childTblCount;
7328
    int threads = g_queryInfo.superQueryInfo.threadCnt;
7329

7330
    int64_t a = ntables / threads;
7331 7332 7333 7334
    if (a < 1) {
      threads = ntables;
      a = 1;
    }
7335

7336
    int64_t b = 0;
7337 7338 7339
    if (threads != 0) {
      b = ntables % threads;
    }
7340

7341
    uint64_t tableFrom = 0;
7342
    for (int i = 0; i < threads; i++) {
7343 7344
      threadInfo *pThreadInfo = infosOfSub + i;
      pThreadInfo->threadID = i;
7345

7346
      pThreadInfo->start_table_from = tableFrom;
7347
      pThreadInfo->ntables = i<b?a+1:a;
7348 7349
      pThreadInfo->end_table_to = i < b ? tableFrom + a : tableFrom + a - 1;
      tableFrom = pThreadInfo->end_table_to + 1;
7350 7351
      pThreadInfo->taos = NULL; // TODO: workaround to use separate taos connection;
      pthread_create(pidsOfSub + i, NULL, superTableQuery, pThreadInfo);
7352 7353
    }

7354
    g_queryInfo.superQueryInfo.threadCnt = threads;
7355
  } else {
7356
    g_queryInfo.superQueryInfo.threadCnt = 0;
7357
  }
7358

7359 7360 7361 7362 7363 7364
  if ((nSqlCount > 0) && (nConcurrent > 0)) {
    for (int i = 0; i < nConcurrent; i++) {
      for (int j = 0; j < nSqlCount; j++) {
        pthread_join(pids[i * nSqlCount + j], NULL);
      }
    }
7365
  }
S
Shuaiqiang Chang 已提交
7366

7367
  tmfree((char*)pids);
7368
  tmfree((char*)infos);
7369

7370
  for (int i = 0; i < g_queryInfo.superQueryInfo.threadCnt; i++) {
7371
    pthread_join(pidsOfSub[i], NULL);
H
hzcheng 已提交
7372
  }
H
Hui Li 已提交
7373

7374
  tmfree((char*)pidsOfSub);
7375
  tmfree((char*)infosOfSub);
7376

7377
//  taos_close(taos);// TODO: workaround to use separate taos connection;
7378
  uint64_t endTs = taosGetTimestampMs();
7379

7380
  uint64_t totalQueried = g_queryInfo.specifiedQueryInfo.totalQueried +
7381 7382
    g_queryInfo.superQueryInfo.totalQueried;

7383
  fprintf(stderr, "==== completed total queries: %"PRIu64", the QPS of all threads: %10.3f====\n",
7384
          totalQueried,
7385
          (double)(totalQueried/((endTs-startTs)/1000.0)));
7386 7387 7388
  return 0;
}

7389 7390 7391 7392 7393 7394 7395 7396 7397
static void stable_sub_callback(
        TAOS_SUB* tsub, TAOS_RES *res, void* param, int code) {
  if (res == NULL || taos_errno(res) != 0) {
    errorPrint("%s() LN%d, failed to subscribe result, code:%d, reason:%s\n",
           __func__, __LINE__, code, taos_errstr(res));
    return;
  }

  if (param)
7398
    fetchResult(res, (threadInfo *)param);
7399 7400 7401 7402 7403
  // tao_unscribe() will free result.
}

static void specified_sub_callback(
        TAOS_SUB* tsub, TAOS_RES *res, void* param, int code) {
7404
  if (res == NULL || taos_errno(res) != 0) {
7405 7406
    errorPrint("%s() LN%d, failed to subscribe result, code:%d, reason:%s\n",
           __func__, __LINE__, code, taos_errstr(res));
7407 7408
    return;
  }
7409

7410
  if (param)
7411
    fetchResult(res, (threadInfo *)param);
7412
  // tao_unscribe() will free result.
H
hzcheng 已提交
7413 7414
}

7415
static TAOS_SUB* subscribeImpl(
7416
        QUERY_CLASS class,
7417
        threadInfo *pThreadInfo,
7418
        char *sql, char* topic, bool restart, uint64_t interval)
7419
{
7420
  TAOS_SUB* tsub = NULL;
H
hzcheng 已提交
7421

7422 7423
  if ((SPECIFIED_CLASS == class)
          && (ASYNC_MODE == g_queryInfo.specifiedQueryInfo.asyncMode)) {
7424 7425
    tsub = taos_subscribe(
            pThreadInfo->taos,
7426
            restart,
7427
            topic, sql, specified_sub_callback, (void*)pThreadInfo,
7428
            g_queryInfo.specifiedQueryInfo.subscribeInterval);
7429 7430
  } else if ((STABLE_CLASS == class)
          && (ASYNC_MODE == g_queryInfo.superQueryInfo.asyncMode)) {
7431 7432 7433 7434 7435
    tsub = taos_subscribe(
            pThreadInfo->taos,
            restart,
            topic, sql, stable_sub_callback, (void*)pThreadInfo,
            g_queryInfo.superQueryInfo.subscribeInterval);
7436
  } else {
7437 7438
    tsub = taos_subscribe(
            pThreadInfo->taos,
7439
            restart,
7440
            topic, sql, NULL, NULL, interval);
7441
  }
7442

7443
  if (tsub == NULL) {
7444 7445
      errorPrint("failed to create subscription. topic:%s, sql:%s\n", topic, sql);
      return NULL;
7446
  }
7447

7448 7449
  return tsub;
}
H
hzcheng 已提交
7450

7451
static void *superSubscribe(void *sarg) {
7452 7453 7454 7455 7456 7457 7458 7459 7460 7461
    threadInfo *pThreadInfo = (threadInfo *)sarg;
    char subSqlstr[MAX_QUERY_SQL_LENGTH];
    TAOS_SUB*    tsub[MAX_QUERY_SQL_COUNT] = {0};
    uint64_t tsubSeq;

    if (pThreadInfo->ntables > MAX_QUERY_SQL_COUNT) {
        errorPrint("The table number(%"PRId64") of the thread is more than max query sql count: %d\n",
                pThreadInfo->ntables, MAX_QUERY_SQL_COUNT);
        exit(-1);
    }
7462

7463
    if (pThreadInfo->taos == NULL) {
7464 7465 7466 7467 7468 7469 7470 7471 7472 7473
        pThreadInfo->taos = taos_connect(g_queryInfo.host,
                g_queryInfo.user,
                g_queryInfo.password,
                g_queryInfo.dbName,
                g_queryInfo.port);
        if (pThreadInfo->taos == NULL) {
            errorPrint("[%d] Failed to connect to TDengine, reason:%s\n",
                    pThreadInfo->threadID, taos_errstr(NULL));
            return NULL;
        }
7474 7475
    }

7476 7477 7478 7479 7480
    char sqlStr[MAX_TB_NAME_SIZE*2];
    sprintf(sqlStr, "use %s", g_queryInfo.dbName);
    if (0 != queryDbExec(pThreadInfo->taos, sqlStr, NO_INSERT_TYPE, false)) {
        taos_close(pThreadInfo->taos);
        errorPrint( "use database %s failed!\n\n",
7481
                g_queryInfo.dbName);
7482 7483
        return NULL;
    }
7484

7485 7486 7487 7488 7489 7490 7491 7492 7493 7494 7495 7496 7497 7498 7499 7500 7501 7502 7503 7504
    char topic[32] = {0};
    for (uint64_t i = pThreadInfo->start_table_from;
            i <= pThreadInfo->end_table_to; i++) {
        tsubSeq = i - pThreadInfo->start_table_from;
        verbosePrint("%s() LN%d, [%d], start=%"PRId64" end=%"PRId64" i=%"PRIu64"\n",
                __func__, __LINE__,
                pThreadInfo->threadID,
                pThreadInfo->start_table_from,
                pThreadInfo->end_table_to, i);
        sprintf(topic, "taosdemo-subscribe-%"PRIu64"-%"PRIu64"",
                i, pThreadInfo->querySeq);
        memset(subSqlstr, 0, sizeof(subSqlstr));
        replaceChildTblName(
                g_queryInfo.superQueryInfo.sql[pThreadInfo->querySeq],
                subSqlstr, i);
        if (g_queryInfo.superQueryInfo.result[pThreadInfo->querySeq][0] != 0) {
            sprintf(pThreadInfo->filePath, "%s-%d",
                    g_queryInfo.superQueryInfo.result[pThreadInfo->querySeq],
                    pThreadInfo->threadID);
        }
7505

7506
        verbosePrint("%s() LN%d, [%d] subSqlstr: %s\n",
7507 7508 7509 7510 7511 7512 7513 7514 7515 7516 7517
                __func__, __LINE__, pThreadInfo->threadID, subSqlstr);
        tsub[tsubSeq] = subscribeImpl(
                STABLE_CLASS,
                pThreadInfo, subSqlstr, topic,
                g_queryInfo.superQueryInfo.subscribeRestart,
                g_queryInfo.superQueryInfo.subscribeInterval);
        if (NULL == tsub[tsubSeq]) {
            taos_close(pThreadInfo->taos);
            return NULL;
        }
    }
7518

7519 7520 7521 7522 7523 7524
    // start loop to consume result
    int consumed[MAX_QUERY_SQL_COUNT];
    for (int i = 0; i < MAX_QUERY_SQL_COUNT; i++) {
        consumed[i] = 0;
    }
    TAOS_RES* res = NULL;
7525

7526
    uint64_t st = 0, et = 0;
7527

7528 7529 7530 7531
    while ((g_queryInfo.superQueryInfo.endAfterConsume == -1)
            || (g_queryInfo.superQueryInfo.endAfterConsume >
                consumed[pThreadInfo->end_table_to
                - pThreadInfo->start_table_from])) {
7532

7533 7534 7535 7536 7537 7538 7539 7540 7541 7542 7543 7544 7545 7546 7547 7548 7549 7550 7551 7552 7553 7554 7555 7556 7557 7558 7559 7560 7561 7562 7563 7564 7565 7566 7567 7568 7569 7570 7571 7572 7573 7574 7575 7576 7577 7578 7579 7580 7581 7582 7583 7584 7585 7586 7587
        verbosePrint("super endAfterConsume: %d, consumed: %d\n",
                g_queryInfo.superQueryInfo.endAfterConsume,
                consumed[pThreadInfo->end_table_to
                - pThreadInfo->start_table_from]);
        for (uint64_t i = pThreadInfo->start_table_from;
                i <= pThreadInfo->end_table_to; i++) {
            tsubSeq = i - pThreadInfo->start_table_from;
            if (ASYNC_MODE == g_queryInfo.superQueryInfo.asyncMode) {
                continue;
            }

            st = taosGetTimestampMs();
            performancePrint("st: %"PRIu64" et: %"PRIu64" st-et: %"PRIu64"\n", st, et, (st - et));
            res = taos_consume(tsub[tsubSeq]);
            et = taosGetTimestampMs();
            performancePrint("st: %"PRIu64" et: %"PRIu64" delta: %"PRIu64"\n", st, et, (et - st));

            if (res) {
                if (g_queryInfo.superQueryInfo.result[pThreadInfo->querySeq][0] != 0) {
                    sprintf(pThreadInfo->filePath, "%s-%d",
                            g_queryInfo.superQueryInfo.result[pThreadInfo->querySeq],
                            pThreadInfo->threadID);
                    fetchResult(res, pThreadInfo);
                }
                consumed[tsubSeq] ++;

                if ((g_queryInfo.superQueryInfo.resubAfterConsume != -1)
                        && (consumed[tsubSeq] >=
                            g_queryInfo.superQueryInfo.resubAfterConsume)) {
                    verbosePrint("%s() LN%d, keepProgress:%d, resub super table query: %"PRIu64"\n",
                            __func__, __LINE__,
                            g_queryInfo.superQueryInfo.subscribeKeepProgress,
                            pThreadInfo->querySeq);
                    taos_unsubscribe(tsub[tsubSeq],
                            g_queryInfo.superQueryInfo.subscribeKeepProgress);
                    consumed[tsubSeq]= 0;
                    tsub[tsubSeq] = subscribeImpl(
                            STABLE_CLASS,
                            pThreadInfo, subSqlstr, topic,
                            g_queryInfo.superQueryInfo.subscribeRestart,
                            g_queryInfo.superQueryInfo.subscribeInterval
                            );
                    if (NULL == tsub[tsubSeq]) {
                        taos_close(pThreadInfo->taos);
                        return NULL;
                    }
                }
            }
        }
    }
    verbosePrint("%s() LN%d, super endAfterConsume: %d, consumed: %d\n",
            __func__, __LINE__,
            g_queryInfo.superQueryInfo.endAfterConsume,
            consumed[pThreadInfo->end_table_to - pThreadInfo->start_table_from]);
    taos_free_result(res);
7588

7589 7590
    for (uint64_t i = pThreadInfo->start_table_from;
            i <= pThreadInfo->end_table_to; i++) {
7591 7592
        tsubSeq = i - pThreadInfo->start_table_from;
        taos_unsubscribe(tsub[tsubSeq], 0);
H
hzcheng 已提交
7593
    }
7594

7595 7596
    taos_close(pThreadInfo->taos);
    return NULL;
H
hzcheng 已提交
7597 7598
}

7599 7600
static void *specifiedSubscribe(void *sarg) {
  threadInfo *pThreadInfo = (threadInfo *)sarg;
7601
//  TAOS_SUB*  tsub = NULL;
7602

7603
  if (pThreadInfo->taos == NULL) {
7604
    pThreadInfo->taos = taos_connect(g_queryInfo.host,
7605 7606 7607 7608
          g_queryInfo.user,
          g_queryInfo.password,
          g_queryInfo.dbName,
          g_queryInfo.port);
7609
    if (pThreadInfo->taos == NULL) {
7610
      errorPrint("[%d] Failed to connect to TDengine, reason:%s\n",
7611
            pThreadInfo->threadID, taos_errstr(NULL));
7612 7613 7614 7615
      return NULL;
    }
  }

7616 7617
  char sqlStr[MAX_TB_NAME_SIZE*2];
  sprintf(sqlStr, "use %s", g_queryInfo.dbName);
7618 7619
  if (0 != queryDbExec(pThreadInfo->taos, sqlStr, NO_INSERT_TYPE, false)) {
    taos_close(pThreadInfo->taos);
7620 7621
    return NULL;
  }
7622

7623 7624 7625 7626
  sprintf(g_queryInfo.specifiedQueryInfo.topic[pThreadInfo->threadID],
          "taosdemo-subscribe-%"PRIu64"-%d",
          pThreadInfo->querySeq,
          pThreadInfo->threadID);
7627
  if (g_queryInfo.specifiedQueryInfo.result[pThreadInfo->querySeq][0] != '\0') {
7628
      sprintf(pThreadInfo->filePath, "%s-%d",
7629
                g_queryInfo.specifiedQueryInfo.result[pThreadInfo->querySeq],
7630
                pThreadInfo->threadID);
7631
  }
7632 7633
  g_queryInfo.specifiedQueryInfo.tsub[pThreadInfo->threadID] = subscribeImpl(
          SPECIFIED_CLASS, pThreadInfo,
7634
          g_queryInfo.specifiedQueryInfo.sql[pThreadInfo->querySeq],
7635
          g_queryInfo.specifiedQueryInfo.topic[pThreadInfo->threadID],
7636 7637
          g_queryInfo.specifiedQueryInfo.subscribeRestart,
          g_queryInfo.specifiedQueryInfo.subscribeInterval);
7638
  if (NULL == g_queryInfo.specifiedQueryInfo.tsub[pThreadInfo->threadID]) {
7639 7640
      taos_close(pThreadInfo->taos);
      return NULL;
7641
  }
7642

7643
  // start loop to consume result
7644

7645
  g_queryInfo.specifiedQueryInfo.consumed[pThreadInfo->threadID] = 0;
7646 7647 7648 7649
  while((g_queryInfo.specifiedQueryInfo.endAfterConsume[pThreadInfo->querySeq] == -1)
          || (g_queryInfo.specifiedQueryInfo.consumed[pThreadInfo->threadID] <
              g_queryInfo.specifiedQueryInfo.endAfterConsume[pThreadInfo->querySeq])) {

7650 7651 7652 7653 7654
      printf("consumed[%d]: %d, endAfterConsum[%"PRId64"]: %d\n",
              pThreadInfo->threadID,
              g_queryInfo.specifiedQueryInfo.consumed[pThreadInfo->threadID],
              pThreadInfo->querySeq,
              g_queryInfo.specifiedQueryInfo.endAfterConsume[pThreadInfo->querySeq]);
7655
      if (ASYNC_MODE == g_queryInfo.specifiedQueryInfo.asyncMode) {
7656
          continue;
7657
      }
7658

7659 7660 7661
      g_queryInfo.specifiedQueryInfo.res[pThreadInfo->threadID] = taos_consume(
              g_queryInfo.specifiedQueryInfo.tsub[pThreadInfo->threadID]);
      if (g_queryInfo.specifiedQueryInfo.res[pThreadInfo->threadID]) {
7662 7663
          if (g_queryInfo.specifiedQueryInfo.result[pThreadInfo->querySeq][0]
                  != 0) {
7664
              sprintf(pThreadInfo->filePath, "%s-%d",
7665 7666 7667
                      g_queryInfo.specifiedQueryInfo.result[pThreadInfo->querySeq],
                      pThreadInfo->threadID);
          }
7668 7669 7670
          fetchResult(
                  g_queryInfo.specifiedQueryInfo.res[pThreadInfo->threadID],
                  pThreadInfo);
7671

7672
          g_queryInfo.specifiedQueryInfo.consumed[pThreadInfo->threadID] ++;
7673
          if ((g_queryInfo.specifiedQueryInfo.resubAfterConsume[pThreadInfo->querySeq] != -1)
7674
                && (g_queryInfo.specifiedQueryInfo.consumed[pThreadInfo->threadID] >=
7675 7676 7677 7678
                    g_queryInfo.specifiedQueryInfo.resubAfterConsume[pThreadInfo->querySeq])) {
              printf("keepProgress:%d, resub specified query: %"PRIu64"\n",
                    g_queryInfo.specifiedQueryInfo.subscribeKeepProgress,
                    pThreadInfo->querySeq);
7679 7680
              g_queryInfo.specifiedQueryInfo.consumed[pThreadInfo->threadID] = 0;
              taos_unsubscribe(g_queryInfo.specifiedQueryInfo.tsub[pThreadInfo->threadID],
7681
                      g_queryInfo.specifiedQueryInfo.subscribeKeepProgress);
7682 7683 7684 7685 7686 7687 7688 7689
              g_queryInfo.specifiedQueryInfo.tsub[pThreadInfo->threadID] =
                  subscribeImpl(
                          SPECIFIED_CLASS,
                          pThreadInfo,
                          g_queryInfo.specifiedQueryInfo.sql[pThreadInfo->querySeq],
                          g_queryInfo.specifiedQueryInfo.topic[pThreadInfo->threadID],
                          g_queryInfo.specifiedQueryInfo.subscribeRestart,
                          g_queryInfo.specifiedQueryInfo.subscribeInterval);
7690
              if (NULL == g_queryInfo.specifiedQueryInfo.tsub[pThreadInfo->threadID]) {
7691 7692
                  taos_close(pThreadInfo->taos);
                  return NULL;
7693 7694
              }
          }
7695 7696
      }
  }
7697
  taos_free_result(g_queryInfo.specifiedQueryInfo.res[pThreadInfo->threadID]);
7698
  taos_close(pThreadInfo->taos);
7699

H
hzcheng 已提交
7700 7701 7702
  return NULL;
}

7703
static int subscribeTestProcess() {
7704
  setupForAnsiEscape();
7705
  printfQueryMeta();
7706
  resetAfterAnsiEscape();
7707

7708
  prompt();
7709

7710 7711 7712 7713 7714
  TAOS * taos = NULL;
  taos = taos_connect(g_queryInfo.host,
          g_queryInfo.user,
          g_queryInfo.password,
          g_queryInfo.dbName,
7715
          g_queryInfo.port);
7716
  if (taos == NULL) {
7717 7718
    errorPrint( "Failed to connect to TDengine, reason:%s\n",
            taos_errstr(NULL));
7719 7720 7721
    exit(-1);
  }

7722
  if (0 != g_queryInfo.superQueryInfo.sqlCount) {
7723 7724
    getAllChildNameOfSuperTable(taos,
            g_queryInfo.dbName,
7725 7726 7727
            g_queryInfo.superQueryInfo.sTblName,
            &g_queryInfo.superQueryInfo.childTblName,
            &g_queryInfo.superQueryInfo.childTblCount);
7728 7729
  }

7730 7731
  taos_close(taos); // TODO: workaround to use separate taos connection;

7732 7733
  pthread_t  *pids = NULL;
  threadInfo *infos = NULL;
7734 7735 7736 7737 7738

  pthread_t  *pidsOfStable  = NULL;
  threadInfo *infosOfStable = NULL;

  //==== create threads for query for specified table
7739
  if (g_queryInfo.specifiedQueryInfo.sqlCount <= 0) {
7740
    debugPrint("%s() LN%d, sepcified query sqlCount %d.\n",
7741
              __func__, __LINE__,
7742 7743 7744
              g_queryInfo.specifiedQueryInfo.sqlCount);
  } else {
    if (g_queryInfo.specifiedQueryInfo.concurrent <= 0) {
7745
        errorPrint("%s() LN%d, sepcified query sqlCount %d.\n",
7746 7747 7748 7749
              __func__, __LINE__,
              g_queryInfo.specifiedQueryInfo.sqlCount);
        exit(-1);
    }
7750

7751 7752
    pids  = calloc(
            1,
7753 7754 7755
            g_queryInfo.specifiedQueryInfo.sqlCount *
            g_queryInfo.specifiedQueryInfo.concurrent *
            sizeof(pthread_t));
7756 7757
    infos = calloc(
            1,
7758 7759 7760
            g_queryInfo.specifiedQueryInfo.sqlCount *
            g_queryInfo.specifiedQueryInfo.concurrent *
            sizeof(threadInfo));
7761 7762 7763 7764
    if ((NULL == pids) || (NULL == infos)) {
        errorPrint("%s() LN%d, malloc failed for create threads\n", __func__, __LINE__);
        exit(-1);
    }
7765

7766 7767 7768
    for (int i = 0; i < g_queryInfo.specifiedQueryInfo.sqlCount; i++) {
        for (int j = 0; j < g_queryInfo.specifiedQueryInfo.concurrent; j++) {
            uint64_t seq = i * g_queryInfo.specifiedQueryInfo.concurrent + j;
7769 7770 7771 7772 7773
            threadInfo *pThreadInfo = infos + seq;
            pThreadInfo->threadID = seq;
            pThreadInfo->querySeq = i;
            pThreadInfo->taos = NULL;  // TODO: workaround to use separate taos connection;
            pthread_create(pids + seq, NULL, specifiedSubscribe, pThreadInfo);
7774
        }
7775
    }
H
hzcheng 已提交
7776
  }
7777

7778
  //==== create threads for super table query
7779
  if (g_queryInfo.superQueryInfo.sqlCount <= 0) {
7780
    debugPrint("%s() LN%d, super table query sqlCount %d.\n",
7781
              __func__, __LINE__,
7782
              g_queryInfo.superQueryInfo.sqlCount);
7783 7784
  } else {
    if ((g_queryInfo.superQueryInfo.sqlCount > 0)
7785
          && (g_queryInfo.superQueryInfo.threadCnt > 0)) {
7786 7787
        pidsOfStable  = calloc(
                1,
7788 7789
                g_queryInfo.superQueryInfo.sqlCount *
                g_queryInfo.superQueryInfo.threadCnt *
7790
            sizeof(pthread_t));
7791 7792
        infosOfStable = calloc(
                1,
7793 7794
                g_queryInfo.superQueryInfo.sqlCount *
                g_queryInfo.superQueryInfo.threadCnt *
7795
            sizeof(threadInfo));
7796 7797
        if ((NULL == pidsOfStable) || (NULL == infosOfStable)) {
            errorPrint("%s() LN%d, malloc failed for create threads\n",
7798
              __func__, __LINE__);
7799 7800 7801
            // taos_close(taos);
            exit(-1);
        }
7802

7803 7804
        int64_t ntables = g_queryInfo.superQueryInfo.childTblCount;
        int threads = g_queryInfo.superQueryInfo.threadCnt;
7805

7806 7807 7808 7809 7810
        int64_t a = ntables / threads;
        if (a < 1) {
            threads = ntables;
            a = 1;
        }
7811

7812 7813 7814 7815
        int64_t b = 0;
        if (threads != 0) {
            b = ntables % threads;
        }
7816

7817
        for (uint64_t i = 0; i < g_queryInfo.superQueryInfo.sqlCount; i++) {
7818
            uint64_t tableFrom = 0;
7819 7820
            for (int j = 0; j < threads; j++) {
                uint64_t seq = i * threads + j;
7821 7822 7823 7824
                threadInfo *pThreadInfo = infosOfStable + seq;
                pThreadInfo->threadID = seq;
                pThreadInfo->querySeq = i;

7825
                pThreadInfo->start_table_from = tableFrom;
7826
                pThreadInfo->ntables = j<b?a+1:a;
7827 7828
                pThreadInfo->end_table_to = j<b?tableFrom+a:tableFrom+a-1;
                tableFrom = pThreadInfo->end_table_to + 1;
7829
                pThreadInfo->taos = NULL; // TODO: workaround to use separate taos connection;
7830
                pthread_create(pidsOfStable + seq,
7831
                        NULL, superSubscribe, pThreadInfo);
7832 7833
            }
        }
7834

7835
        g_queryInfo.superQueryInfo.threadCnt = threads;
7836

7837 7838 7839 7840 7841 7842
        for (int i = 0; i < g_queryInfo.superQueryInfo.sqlCount; i++) {
            for (int j = 0; j < threads; j++) {
                uint64_t seq = i * threads + j;
                pthread_join(pidsOfStable[seq], NULL);
            }
        }
7843
    }
H
hzcheng 已提交
7844
  }
7845

7846 7847 7848 7849 7850
  for (int i = 0; i < g_queryInfo.specifiedQueryInfo.sqlCount; i++) {
    for (int j = 0; j < g_queryInfo.specifiedQueryInfo.concurrent; j++) {
        uint64_t seq = i * g_queryInfo.specifiedQueryInfo.concurrent + j;
        pthread_join(pids[seq], NULL);
    }
7851
  }
H
hzcheng 已提交
7852

7853
  tmfree((char*)pids);
7854
  tmfree((char*)infos);
H
hzcheng 已提交
7855

7856 7857
  tmfree((char*)pidsOfStable);
  tmfree((char*)infosOfStable);
7858
//   taos_close(taos);
7859
  return 0;
H
hzcheng 已提交
7860 7861
}

7862
static void initOfInsertMeta() {
7863
  memset(&g_Dbs, 0, sizeof(SDbs));
7864

7865
  // set default values
7866
  tstrncpy(g_Dbs.host, "127.0.0.1", MAX_HOSTNAME_SIZE);
7867
  g_Dbs.port = 6030;
7868 7869
  tstrncpy(g_Dbs.user, TSDB_DEFAULT_USER, MAX_USERNAME_SIZE);
  tstrncpy(g_Dbs.password, TSDB_DEFAULT_PASS, MAX_PASSWORD_SIZE);
7870
  g_Dbs.threadCount = 2;
7871 7872

  g_Dbs.use_metric = g_args.use_metric;
L
Liu Tao 已提交
7873 7874
}

7875
static void initOfQueryMeta() {
7876
  memset(&g_queryInfo, 0, sizeof(SQueryMetaInfo));
7877

7878
  // set default values
7879
  tstrncpy(g_queryInfo.host, "127.0.0.1", MAX_HOSTNAME_SIZE);
7880
  g_queryInfo.port = 6030;
7881 7882
  tstrncpy(g_queryInfo.user, TSDB_DEFAULT_USER, MAX_USERNAME_SIZE);
  tstrncpy(g_queryInfo.password, TSDB_DEFAULT_PASS, MAX_PASSWORD_SIZE);
L
Liu Tao 已提交
7883 7884
}

7885
static void setParaFromArg(){
7886
  if (g_args.host) {
7887
    tstrncpy(g_Dbs.host, g_args.host, MAX_HOSTNAME_SIZE);
7888
  } else {
7889
    tstrncpy(g_Dbs.host, "127.0.0.1", MAX_HOSTNAME_SIZE);
7890
  }
L
Liu Tao 已提交
7891

7892
  if (g_args.user) {
7893
    tstrncpy(g_Dbs.user, g_args.user, MAX_USERNAME_SIZE);
7894
  }
7895 7896

  if (g_args.password) {
7897
    tstrncpy(g_Dbs.password, g_args.password, MAX_PASSWORD_SIZE);
7898 7899
  }

7900 7901
  if (g_args.port) {
    g_Dbs.port = g_args.port;
7902
  }
L
Liu Tao 已提交
7903

7904 7905 7906
  g_Dbs.threadCount = g_args.num_of_threads;
  g_Dbs.threadCountByCreateTbl = g_args.num_of_threads;

7907
  g_Dbs.dbCount = 1;
7908
  g_Dbs.db[0].drop = true;
7909

7910
  tstrncpy(g_Dbs.db[0].dbName, g_args.database, TSDB_DB_NAME_LEN);
7911
  g_Dbs.db[0].dbCfg.replica = g_args.replica;
7912
  tstrncpy(g_Dbs.db[0].dbCfg.precision, "ms", 8);
L
Liu Tao 已提交
7913

7914
  tstrncpy(g_Dbs.resultFile, g_args.output_file, MAX_FILE_NAME_LEN);
7915 7916 7917 7918 7919

  g_Dbs.use_metric = g_args.use_metric;
  g_Dbs.insert_only = g_args.insert_only;

  g_Dbs.do_aggreFunc = true;
L
Liu Tao 已提交
7920

7921 7922
  char dataString[STRING_LEN];
  char **data_type = g_args.datatype;
7923

7924
  memset(dataString, 0, STRING_LEN);
L
Liu Tao 已提交
7925

7926 7927
  if (strcasecmp(data_type[0], "BINARY") == 0
          || strcasecmp(data_type[0], "BOOL") == 0
7928
          || strcasecmp(data_type[0], "NCHAR") == 0 ) {
7929
    g_Dbs.do_aggreFunc = false;
L
Liu Tao 已提交
7930
  }
H
hzcheng 已提交
7931

7932 7933
  if (g_args.use_metric) {
    g_Dbs.db[0].superTblCount = 1;
7934
    tstrncpy(g_Dbs.db[0].superTbls[0].sTblName, "meters", TSDB_TABLE_NAME_LEN);
7935 7936
    g_Dbs.db[0].superTbls[0].childTblCount = g_args.num_of_tables;
    g_Dbs.threadCount = g_args.num_of_threads;
7937
    g_Dbs.threadCountByCreateTbl = g_args.num_of_threads;
7938
    g_Dbs.asyncMode = g_args.async_mode;
7939

7940 7941 7942 7943
    g_Dbs.db[0].superTbls[0].autoCreateTable = PRE_CREATE_SUBTBL;
    g_Dbs.db[0].superTbls[0].childTblExists = TBL_NO_EXISTS;
    g_Dbs.db[0].superTbls[0].disorderRange = g_args.disorderRange;
    g_Dbs.db[0].superTbls[0].disorderRatio = g_args.disorderRatio;
7944
    tstrncpy(g_Dbs.db[0].superTbls[0].childTblPrefix,
7945
            g_args.tb_prefix, TSDB_TABLE_NAME_LEN - 20);
7946
    tstrncpy(g_Dbs.db[0].superTbls[0].dataSource, "rand", MAX_TB_NAME_SIZE);
7947 7948 7949 7950 7951 7952

    if (g_args.iface == INTERFACE_BUT) {
        g_Dbs.db[0].superTbls[0].iface = TAOSC_IFACE;
    } else {
        g_Dbs.db[0].superTbls[0].iface = g_args.iface;
    }
7953
    tstrncpy(g_Dbs.db[0].superTbls[0].startTimestamp,
7954
            "2017-07-14 10:40:00.000", MAX_TB_NAME_SIZE);
7955
    g_Dbs.db[0].superTbls[0].timeStampStep = DEFAULT_TIMESTAMP_STEP;
7956

7957
    g_Dbs.db[0].superTbls[0].insertRows = g_args.num_of_DPT;
7958
    g_Dbs.db[0].superTbls[0].maxSqlLen = g_args.max_sql_len;
7959

7960
    g_Dbs.db[0].superTbls[0].columnCount = 0;
7961
    for (int i = 0; i < MAX_NUM_COLUMNS; i++) {
7962 7963 7964
      if (data_type[i] == NULL) {
        break;
      }
7965

7966
      tstrncpy(g_Dbs.db[0].superTbls[0].columns[i].dataType,
7967
              data_type[i], strlen(data_type[i]) + 1);
7968
      g_Dbs.db[0].superTbls[0].columns[i].dataLen = g_args.len_of_binary;
7969 7970
      g_Dbs.db[0].superTbls[0].columnCount++;
    }
7971

7972 7973 7974
    if (g_Dbs.db[0].superTbls[0].columnCount > g_args.num_of_CPR) {
      g_Dbs.db[0].superTbls[0].columnCount = g_args.num_of_CPR;
    } else {
7975 7976 7977
      for (int i = g_Dbs.db[0].superTbls[0].columnCount;
              i < g_args.num_of_CPR; i++) {
        tstrncpy(g_Dbs.db[0].superTbls[0].columns[i].dataType,
7978
                "INT", strlen("INT") + 1);
7979
        g_Dbs.db[0].superTbls[0].columns[i].dataLen = 0;
7980 7981 7982
        g_Dbs.db[0].superTbls[0].columnCount++;
      }
    }
7983

7984
    tstrncpy(g_Dbs.db[0].superTbls[0].tags[0].dataType,
7985
            "INT", strlen("INT") + 1);
7986
    g_Dbs.db[0].superTbls[0].tags[0].dataLen = 0;
7987

7988
    tstrncpy(g_Dbs.db[0].superTbls[0].tags[1].dataType,
7989
            "BINARY", strlen("BINARY") + 1);
7990 7991
    g_Dbs.db[0].superTbls[0].tags[1].dataLen = g_args.len_of_binary;
    g_Dbs.db[0].superTbls[0].tagCount = 2;
7992
  } else {
7993 7994
    g_Dbs.threadCountByCreateTbl = g_args.num_of_threads;
    g_Dbs.db[0].superTbls[0].tagCount = 0;
H
hzcheng 已提交
7995
  }
7996 7997 7998 7999 8000 8001
}

/* Function to do regular expression check */
static int regexMatch(const char *s, const char *reg, int cflags) {
  regex_t regex;
  char    msgbuf[100] = {0};
H
hzcheng 已提交
8002

8003 8004 8005
  /* Compile regular expression */
  if (regcomp(&regex, reg, cflags) != 0) {
    printf("Fail to compile regex\n");
H
Hui Li 已提交
8006 8007 8008
    exit(-1);
  }

8009 8010 8011 8012 8013 8014 8015 8016 8017 8018 8019 8020 8021 8022 8023 8024 8025 8026 8027 8028 8029 8030 8031 8032
  /* Execute regular expression */
  int reti = regexec(&regex, s, 0, NULL, 0);
  if (!reti) {
    regfree(&regex);
    return 1;
  } else if (reti == REG_NOMATCH) {
    regfree(&regex);
    return 0;
  } else {
    regerror(reti, &regex, msgbuf, sizeof(msgbuf));
    printf("Regex match failed: %s\n", msgbuf);
    regfree(&regex);
    exit(-1);
  }

  return 0;
}

static int isCommentLine(char *line) {
  if (line == NULL) return 1;

  return regexMatch(line, "^\\s*#.*", REG_EXTENDED);
}

8033
static void querySqlFile(TAOS* taos, char* sqlFile)
8034 8035 8036 8037 8038 8039
{
  FILE *fp = fopen(sqlFile, "r");
  if (fp == NULL) {
    printf("failed to open file %s, reason:%s\n", sqlFile, strerror(errno));
    return;
  }
8040

8041 8042 8043 8044 8045 8046
  int       read_len = 0;
  char *    cmd = calloc(1, MAX_SQL_SIZE);
  size_t    cmd_len = 0;
  char *    line = NULL;
  size_t    line_len = 0;

8047
  double t = taosGetTimestampMs();
8048

8049
  while((read_len = tgetline(&line, &line_len, fp)) != -1) {
8050 8051 8052 8053 8054 8055 8056 8057 8058 8059 8060 8061
    if (read_len >= MAX_SQL_SIZE) continue;
    line[--read_len] = '\0';

    if (read_len == 0 || isCommentLine(line)) {  // line starts with #
      continue;
    }

    if (line[read_len - 1] == '\\') {
      line[read_len - 1] = ' ';
      memcpy(cmd + cmd_len, line, read_len);
      cmd_len += read_len;
      continue;
8062
    }
8063 8064

    memcpy(cmd + cmd_len, line, read_len);
8065 8066 8067
    if (0 != queryDbExec(taos, cmd, NO_INSERT_TYPE, false)) {
        errorPrint("%s() LN%d, queryDbExec %s failed!\n",
               __func__, __LINE__, cmd);
8068 8069 8070 8071 8072
        tmfree(cmd);
        tmfree(line);
        tmfclose(fp);
        return;
    }
8073 8074
    memset(cmd, 0, MAX_SQL_SIZE);
    cmd_len = 0;
H
hzcheng 已提交
8075 8076
  }

8077
  t = taosGetTimestampMs() - t;
8078
  printf("run %s took %.6f second(s)\n\n", sqlFile, t);
8079

8080 8081 8082 8083
  tmfree(cmd);
  tmfree(line);
  tmfclose(fp);
  return;
H
hzcheng 已提交
8084 8085
}

8086
static void testMetaFile() {
8087
    if (INSERT_TEST == g_args.test_mode) {
8088 8089
      if (g_Dbs.cfgDir[0])
          taos_options(TSDB_OPTION_CONFIGDIR, g_Dbs.cfgDir);
8090

8091
      insertTestProcess();
8092

8093
    } else if (QUERY_TEST == g_args.test_mode) {
8094 8095
      if (g_queryInfo.cfgDir[0])
          taos_options(TSDB_OPTION_CONFIGDIR, g_queryInfo.cfgDir);
8096

8097
      queryTestProcess();
8098

8099
    } else if (SUBSCRIBE_TEST == g_args.test_mode) {
8100 8101
      if (g_queryInfo.cfgDir[0])
          taos_options(TSDB_OPTION_CONFIGDIR, g_queryInfo.cfgDir);
8102

8103
      subscribeTestProcess();
8104

8105 8106 8107
    }  else {
      ;
    }
8108
}
8109

8110
static void queryResult() {
8111
  // query data
8112

8113
  pthread_t read_id;
8114
  threadInfo *pThreadInfo = calloc(1, sizeof(threadInfo));
8115 8116 8117
  assert(pThreadInfo);
  pThreadInfo->start_time = 1500000000000;  // 2017-07-14 10:40:00.000
  pThreadInfo->start_table_from = 0;
8118

8119
  //pThreadInfo->do_aggreFunc = g_Dbs.do_aggreFunc;
8120
  if (g_args.use_metric) {
8121 8122 8123 8124
    pThreadInfo->ntables = g_Dbs.db[0].superTbls[0].childTblCount;
    pThreadInfo->end_table_to = g_Dbs.db[0].superTbls[0].childTblCount - 1;
    pThreadInfo->superTblInfo = &g_Dbs.db[0].superTbls[0];
    tstrncpy(pThreadInfo->tb_prefix,
8125
          g_Dbs.db[0].superTbls[0].childTblPrefix, TSDB_TABLE_NAME_LEN - 20);
8126
  } else {
8127 8128
    pThreadInfo->ntables = g_args.num_of_tables;
    pThreadInfo->end_table_to = g_args.num_of_tables -1;
8129
    tstrncpy(pThreadInfo->tb_prefix, g_args.tb_prefix, TSDB_TABLE_NAME_LEN);
8130 8131
  }

8132
  pThreadInfo->taos = taos_connect(
8133 8134 8135 8136 8137
          g_Dbs.host,
          g_Dbs.user,
          g_Dbs.password,
          g_Dbs.db[0].dbName,
          g_Dbs.port);
8138
  if (pThreadInfo->taos == NULL) {
8139 8140
    errorPrint( "Failed to connect to TDengine, reason:%s\n",
            taos_errstr(NULL));
8141
    free(pThreadInfo);
8142 8143 8144
    exit(-1);
  }

8145
  tstrncpy(pThreadInfo->filePath, g_Dbs.resultFile, MAX_FILE_NAME_LEN);
8146 8147

  if (!g_Dbs.use_metric) {
8148
    pthread_create(&read_id, NULL, readTable, pThreadInfo);
8149
  } else {
8150
    pthread_create(&read_id, NULL, readMetric, pThreadInfo);
8151 8152
  }
  pthread_join(read_id, NULL);
8153 8154
  taos_close(pThreadInfo->taos);
  free(pThreadInfo);
8155 8156
}

8157 8158
static void testCmdLine() {

8159 8160 8161 8162 8163 8164 8165 8166 8167 8168
  if (strlen(configDir)) {
    wordexp_t full_path;
    if (wordexp(configDir, &full_path, 0) != 0) {
      errorPrint( "Invalid path %s\n", configDir);
      return;
    }
    taos_options(TSDB_OPTION_CONFIGDIR, full_path.we_wordv[0]);
    wordfree(&full_path);
  }

8169 8170
  g_args.test_mode = INSERT_TEST;
  insertTestProcess();
8171

8172
  if (false == g_Dbs.insert_only)
8173
    queryResult();
8174 8175
}

8176 8177 8178
int main(int argc, char *argv[]) {
  parse_args(argc, argv, &g_args);

8179
  debugPrint("meta file: %s\n", g_args.metaFile);
8180 8181 8182

  if (g_args.metaFile) {
    initOfInsertMeta();
8183
    initOfQueryMeta();
8184 8185 8186 8187 8188 8189 8190 8191 8192 8193 8194 8195 8196

    if (false == getInfoFromJsonFile(g_args.metaFile)) {
      printf("Failed to read %s\n", g_args.metaFile);
      return 1;
    }

    testMetaFile();
  } else {
    memset(&g_Dbs, 0, sizeof(SDbs));
    setParaFromArg();

    if (NULL != g_args.sqlFile) {
      TAOS* qtaos = taos_connect(
8197 8198 8199 8200
          g_Dbs.host,
          g_Dbs.user,
          g_Dbs.password,
          g_Dbs.db[0].dbName,
8201
          g_Dbs.port);
8202
      querySqlFile(qtaos, g_args.sqlFile);
8203 8204 8205 8206 8207
      taos_close(qtaos);

    } else {
      testCmdLine();
    }
8208 8209 8210

    if (g_dupstr)
        free(g_dupstr);
H
hzcheng 已提交
8211
  }
8212 8213

  return 0;
H
hzcheng 已提交
8214
}
8215